diff --git a/config/overlays.mk b/config/overlays.mk index 0b763f4fe..b5d0c18a3 100644 --- a/config/overlays.mk +++ b/config/overlays.mk @@ -4347,7 +4347,7 @@ ov_SC06_022_ELF := $(ov_SC06_022_OUT).elf ov_SC06_022_MAPFILE := $(ov_SC06_022_OUT).map ov_SC06_022_LD_SCRIPT := $(ov_SC06_022_OUT).ld ov_SC06_022_SPLAT_YAML := config/splat.ov_SC06_022.yaml -ov_SC06_022_JTBL_INTERLEAVE := --order tail.data.o,ov_SC06_022.o,ov_SC06_022_jr_8012ACE0.o,tail2.data.o,ov_SC06_022_jr_80135888.o,tail3.data.o,ov_SC06_022_jr_80135A4C.o,tail4.data.o,ov_SC06_022_jr_80135D20.o,tail5.data.o,ov_SC06_022_jr_801380E0.o,ov_SC06_022_o0c.o,tail6.data.o,ov_SC06_022_jr_8013F350.o,tail7.data.o,ov_SC06_022_jr_8013FFD8.o,tail8.data.o,ov_SC06_022_jr_80140608.o,tail9.data.o,ov_SC06_022_jr_8015444C.o,ov_SC06_022_jr_80154C24.o,ov_SC06_022_jr_801588CC.o,ov_SC06_022_jr_80159C84.o,tail10.data.o,ov_SC06_022_jr_8015A3C8.o,tail11.data.o,ov_SC06_022_jr_8015AE2C.o,tail12.data.o,ov_SC06_022_jr_8015C32C.o,tail13.data.o,ov_SC06_022_jr_8016AB6C.o,tail14.data.o,ov_SC06_022_jr_80171B4C.o,ov_SC06_022_jr_801734BC.o,tail15.data.o,ov_SC06_022_jr_801789AC.o,ov_SC06_022_jr_80178D40.o,tail16.data.o,ov_SC06_022_jr_8017A4AC.o,tail17.data.o,ov_SC06_022_jr_8017AE2C.o,ov_SC06_022_jr_8017BEBC.o,tail18.data.o,trailing.o # Phase-26 §8 jtbl-rodata carve +ov_SC06_022_JTBL_INTERLEAVE := --order tail.data.o,ov_SC06_022.o,ov_SC06_022_jr_8012ACE0.o,tail2.data.o,ov_SC06_022_jr_80135888.o,tail3.data.o,ov_SC06_022_jr_80135A4C.o,tail4.data.o,ov_SC06_022_jr_80135D20.o,tail5.data.o,ov_SC06_022_jr_801380E0.o,ov_SC06_022_o0c.o,tail6.data.o,ov_SC06_022_jr_8013F350.o,tail7.data.o,ov_SC06_022_jr_8013FFD8.o,tail8.data.o,ov_SC06_022_jr_80140608.o,tail9.data.o,ov_SC06_022_jr_8015444C.o,ov_SC06_022_jr_80154C24.o,ov_SC06_022_jr_801588CC.o,ov_SC06_022_jr_80159C84.o,tail10.data.o,ov_SC06_022_jr_8015A3C8.o,tail11.data.o,ov_SC06_022_jr_8015AE2C.o,tail12.data.o,ov_SC06_022_jr_8015C32C.o,tail13.data.o,ov_SC06_022_jr_8016AB6C.o,tail14.data.o,ov_SC06_022_jr_80171B4C.o,ov_SC06_022_jr_801734BC.o,tail15.data.o,ov_SC06_022_jr_801789AC.o,ov_SC06_022_jr_80178D40.o,tail16.data.o,ov_SC06_022_jr_8017A4AC.o,tail17.data.o,ov_SC06_022_jr_8017AE2C.o,ov_SC06_022_jr_8017BEBC.o,tail18.data.o,ov_SC06_022_jr_80184A28.o,tail19.data.o,trailing.o # Phase-26 §8 jtbl-rodata carve build/src/ov_SC06_022/ov_SC06_022.o: JTBL_PADS := 0,0 # §8e pads (jtbl_carve.py) tables=+0x0,+0x14 build/src/ov_SC06_022/ov_SC06_022_jr_8012ACE0.o: JTBL_PADS := 0,0,0 # §8e pads (jtbl_carve.py) tables=+0x0,+0xcc,+0xe0 build/src/ov_SC06_022/ov_SC06_022_jr_80135D20.o: JTBL_PADS := 0,4 # §8e pads (jtbl_carve.py) tables=+0x0,+0x18 @@ -4382,7 +4382,7 @@ ov_SC06_024_ELF := $(ov_SC06_024_OUT).elf ov_SC06_024_MAPFILE := $(ov_SC06_024_OUT).map ov_SC06_024_LD_SCRIPT := $(ov_SC06_024_OUT).ld ov_SC06_024_SPLAT_YAML := config/splat.ov_SC06_024.yaml -ov_SC06_024_JTBL_INTERLEAVE := --order tail.data.o,ov_SC06_024.o,ov_SC06_024_jr_8012ACE0.o,tail2.data.o,ov_SC06_024_jr_80135888.o,tail3.data.o,ov_SC06_024_jr_80135A4C.o,tail4.data.o,ov_SC06_024_jr_80135D20.o,tail5.data.o,ov_SC06_024_jr_801380E0.o,ov_SC06_024_o0c.o,tail6.data.o,ov_SC06_024_jr_8013F350.o,tail7.data.o,ov_SC06_024_jr_8013FFD8.o,tail8.data.o,ov_SC06_024_jr_80140608.o,tail9.data.o,ov_SC06_024_jr_8015444C.o,ov_SC06_024_jr_80154C24.o,ov_SC06_024_jr_801588CC.o,ov_SC06_024_jr_80159C84.o,tail10.data.o,ov_SC06_024_jr_8015A3C8.o,tail11.data.o,ov_SC06_024_jr_8015AE2C.o,tail12.data.o,ov_SC06_024_jr_8015C32C.o,tail13.data.o,ov_SC06_024_jr_8016AB6C.o,tail14.data.o,ov_SC06_024_jr_80171B4C.o,ov_SC06_024_jr_801734BC.o,tail15.data.o,ov_SC06_024_jr_801789AC.o,ov_SC06_024_jr_80178D40.o,tail16.data.o,ov_SC06_024_jr_8017A4AC.o,tail17.data.o,ov_SC06_024_jr_8017AE2C.o,ov_SC06_024_jr_8017BEBC.o,tail18.data.o,trailing.o # Phase-26 §8 jtbl-rodata carve +ov_SC06_024_JTBL_INTERLEAVE := --order tail.data.o,ov_SC06_024.o,ov_SC06_024_jr_8012ACE0.o,tail2.data.o,ov_SC06_024_jr_80135888.o,tail3.data.o,ov_SC06_024_jr_80135A4C.o,tail4.data.o,ov_SC06_024_jr_80135D20.o,tail5.data.o,ov_SC06_024_jr_801380E0.o,ov_SC06_024_o0c.o,tail6.data.o,ov_SC06_024_jr_8013F350.o,tail7.data.o,ov_SC06_024_jr_8013FFD8.o,tail8.data.o,ov_SC06_024_jr_80140608.o,tail9.data.o,ov_SC06_024_jr_8015444C.o,ov_SC06_024_jr_80154C24.o,ov_SC06_024_jr_801588CC.o,ov_SC06_024_jr_80159C84.o,tail10.data.o,ov_SC06_024_jr_8015A3C8.o,tail11.data.o,ov_SC06_024_jr_8015AE2C.o,tail12.data.o,ov_SC06_024_jr_8015C32C.o,tail13.data.o,ov_SC06_024_jr_8016AB6C.o,tail14.data.o,ov_SC06_024_jr_80171B4C.o,ov_SC06_024_jr_801734BC.o,tail15.data.o,ov_SC06_024_jr_801789AC.o,ov_SC06_024_jr_80178D40.o,tail16.data.o,ov_SC06_024_jr_8017A4AC.o,tail17.data.o,ov_SC06_024_jr_8017AE2C.o,ov_SC06_024_jr_8017BEBC.o,tail18.data.o,ov_SC06_024_jr_80186F00.o,tail19.data.o,trailing.o # Phase-26 §8 jtbl-rodata carve build/src/ov_SC06_024/ov_SC06_024.o: JTBL_PADS := 0,0 # §8e pads (jtbl_carve.py) tables=+0x0,+0x14 build/src/ov_SC06_024/ov_SC06_024_jr_8012ACE0.o: JTBL_PADS := 0,0,0 # §8e pads (jtbl_carve.py) tables=+0x0,+0xcc,+0xe0 build/src/ov_SC06_024/ov_SC06_024_jr_80135D20.o: JTBL_PADS := 0,4 # §8e pads (jtbl_carve.py) tables=+0x0,+0x18 diff --git a/config/splat.ov_SC06_022.yaml b/config/splat.ov_SC06_022.yaml index 9550ddca3..48c3b33ef 100644 --- a/config/splat.ov_SC06_022.yaml +++ b/config/splat.ov_SC06_022.yaml @@ -121,6 +121,7 @@ segments: - [0x52354, c, ov_SC06_022_jr_8017A4AC] - [0x52cd4, c, ov_SC06_022_jr_8017AE2C] - [0x53d64, c, ov_SC06_022_jr_8017BEBC] + - [0x5c8d0, c, ov_SC06_022_jr_80184A28] - [0x65174, data, tail] - [0xb782c, .rodata, ov_SC06_022] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) - [0xb7908, .rodata, ov_SC06_022_jr_8012ACE0] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) @@ -164,6 +165,8 @@ segments: - [0xb894c, .rodata, ov_SC06_022_jr_8017AE2C] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) - [0xb8960, .rodata, ov_SC06_022_jr_8017BEBC] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) - [0xb8980, data, tail18] + - [0xb8acc, .rodata, ov_SC06_022_jr_80184A28] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) + - [0xb8ae0, data, tail19] - [0xBA114, bin, trailing] # final 3 bytes (EOF not 4-aligned; spimdisasm drops a partial word) - [0xBA117] # EOF marker = the 0.4.dec byte length # @TRAILING@ (above) is replaced by tools/new_overlay.sh: for a non-4-aligned overlay it becomes diff --git a/config/splat.ov_SC06_024.yaml b/config/splat.ov_SC06_024.yaml index 3f38f7031..35ecc0d28 100644 --- a/config/splat.ov_SC06_024.yaml +++ b/config/splat.ov_SC06_024.yaml @@ -121,6 +121,7 @@ segments: - [0x52354, c, ov_SC06_024_jr_8017A4AC] - [0x52cd4, c, ov_SC06_024_jr_8017AE2C] - [0x53d64, c, ov_SC06_024_jr_8017BEBC] + - [0x5eda8, c, ov_SC06_024_jr_80186F00] - [0x6764c, data, tail] - [0xb6970, .rodata, ov_SC06_024] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) - [0xb6a4c, .rodata, ov_SC06_024_jr_8012ACE0] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) @@ -164,6 +165,8 @@ segments: - [0xb7a90, .rodata, ov_SC06_024_jr_8017AE2C] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) - [0xb7aa4, .rodata, ov_SC06_024_jr_8017BEBC] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) - [0xb7ac4, data, tail18] + - [0xb7c50, .rodata, ov_SC06_024_jr_80186F00] # Phase-26 §8 jtbl-rodata carve (jtbl_carve.py) + - [0xb7c64, data, tail19] - [0xB980C, bin, trailing] # final 3 bytes (EOF not 4-aligned; spimdisasm drops a partial word) - [0xB980F] # EOF marker = the 0.4.dec byte length # @TRAILING@ (above) is replaced by tools/new_overlay.sh: for a non-4-aligned overlay it becomes diff --git a/src/ov_SC06_022/ov_SC06_022_jr_8017BEBC.c b/src/ov_SC06_022/ov_SC06_022_jr_8017BEBC.c index 29ee238be..20a1ff6f4 100644 --- a/src/ov_SC06_022/ov_SC06_022_jr_8017BEBC.c +++ b/src/ov_SC06_022/ov_SC06_022_jr_8017BEBC.c @@ -4303,3959 +4303,3 @@ INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018492 INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80184970); INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801849BC); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80184A28); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80184E14); - -extern void func_80187EF4(s32 arg0, s32 arg1); - void func_80184F68(s32 arg0) { - func_80187EF4(arg0, 0x9B7); - } - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80184F88); - - -extern void func_801850CC(void); -extern void func_80185578(s32 a0, s32 a1); -extern void func_8012A828(s32 a0, void *a1); - -void func_8018500C(s32 param_1) { - - extern s32 D_801D50C8; - u16 uVar1; - s32 iVar2; - - *(s16 *)(param_1 + 0x34) = 0; - if ((*(u32 *)(param_1 + 0xe0) & 8) == 0) { - func_801850CC(); - } else { - if ((*(u32 *)(param_1 + 0xe0) & 0x20) != 0) { - func_80185578(param_1, -0x8000); - } - *(s16 *)(param_1 + 2) = 0x22; - func_8012A828(param_1, &D_801D50C8); - } - iVar2 = *(s32 *)(param_1 + 0x20); - *(s16 *)(iVar2 + 0x14) = 0; - *(s16 *)(iVar2 + 0x10) = 0; - uVar1 = *(u16 *)(*(s32 *)(param_1 + 0x78) + 2); - *(u32 *)(param_1 + 0xe0) = (*(u32 *)(param_1 + 0xe0) & 0xffffffd5) | 0x400; - *(s16 *)(param_1 + 0x5e) = 0; - *(u16 *)(param_1 + 0xae) = *(u16 *)(param_1 + 0xae) & 0xfffe; - *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) & 0xfffffffb; - *(s16 *)(param_1 + 0x5c) = uVar1; -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801850CC); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801851C4); - - - -extern s32 func_8012BCCC(s32 a0); -extern s32 func_80187460(s32 a0, s32 a1); -extern void func_8012F214(s32, s32, s32); -extern s32 func_80187318(void *a0, s32 a1, s32 a2); - -/* Two load-bearing constructs (do NOT "clean up"): - * 1. `goto ret0` / `goto store` with `ret0:` placed BEFORE the store block — cookbook L1344 - * shared-ret0 goto. A trailing `return 0` makes gcc sink the merged ret0 tail past the - * store block (7 mismatches: BRANCH-POLARITY + swapped tail). - * 2. `register s32 r __asm__("$2")` on the func_80187460 result + `return r`. Plain - * `return 0;` there emits `set v0,0; j epi`, which cross_jump (§5a) merges into the - * ret0 block, so the branch lands on ret0 instead of the epilogue. Pinning r to $v0 - * makes `return r` a self-copy that dies before jump2, leaving a bare `j epi` that - * jump.c collapses into `beqz $v0, .L8018730C`. (A plain `s32 r` does NOT work — cse2 - * const-folds `r` to 0 on the fall-through edge and the merge comes back.) */ -s32 func_801852E4(s32 p) { - - extern s32 D_80126B9C; - extern u8 D_801BD0BC[]; - s32 buf10[2]; - register s32 r __asm__("$2"); /* $v0 — see note 2 above */ - - if ((*(u32 *)(p + 0xE0) & 1) == 0) { - goto ret0; - } - if (*(u16 *)(p + 2) == 1) { - goto ret0; - } - if (*(u16 *)(p + 2) == 0xD) { - return 0; - } - if ((D_80126B9C & 2) == 0) { - return 0; - } - if (0x10000 < func_8012BCCC(p)) { - return 0; - } - r = func_80187460(p, 0x380); - if (r == 0) { - return r; - } - ((void (*)(s32, void *, void *))func_8012F214)(p, D_801BD0BC, buf10); - if (func_80187318(buf10, *(s16 *)(*(s32 *)(p + 0x20) + 0x12), 0x380) != 0) { - goto store; - } -ret0: - return 0; -store: - *(u16 *)(p + 2) = 0xC; - return 1; -} - - - -/* func_801853B4 — walk the 0x60-entry / 0x10C-stride entity table D_801202A0 and - * react to the first neighbour of class 0x27A (get pushed away from it) or 0x2F4 - * (get clamped down onto it). - * - * §71 sibling-first: the callee signatures below are copied VERBATIM from this TU's - * own already-matched neighbours — func_8012B0B4 (TU L6971/7855/8177), func_8012B6D4 - * (TU L6419), func_8012CEB0 (TU L7226, the func_80187844 block), func_8012C098 - * (TU L5379) — and D_801202A0 is the TU's file-scope `extern u8 D_801202A0[];` (L384). - * func_8012BC60 / func_8012ADE4 are not declared in this TU; the forms below are the - * fleet-majority shapes (func_8012ADE4 verbatim; func_8012BC60 with `void *` instead of - * `struct Vec *` so the draft does not depend on engine_types.h being in scope). - * - * FIVE load-bearing constructs (do NOT "clean up"): - * - * 1. NO SECOND WALKED POINTER. All of +0x6/+0xA/+0xE are written as `*(T *)(p + k)` - * off the single biv `p`. combine_givs then merges the three DEST_ADDR givs onto - * ONE anchor = the LAST-emitted one (+0xE, from the case-0x2F4 `lh`), giving the - * target's `$s3 = $s2 + 0xE` with -0x8/-0x4/0x0 displacements. - * An explicit `q = p + 0xE` with `*(u16 *)q` looks equivalent and is NOT: - * gcc-2.7.2 excludes a bare `*q` (mult 1, add 0) from givs (find_mem_givs:4198), - * so q stays a live biv AND the remaining two accesses combine onto their own - * anchor +0xA => THREE IVs, the wrong anchor, and the $s6 hoist lost to pressure - * (measured: 111 ins, 87 mismatched). gcc-2.7.2-map/loop.md §L1 rules 4 & 6. - * - * 2. `switch`, not `if/else if`. The two-case switch is what emits the target's - * compare CHAIN with BOTH arms out of line (`beq`/`beq`/`j default`, 6 slots). - * An `if (id == 0x27A) ... else if (id == 0x2F4)` inverts the first test and lets - * the 0x27A arm fall through — 2 instructions short. - * - * 3. do-while with `i++` BEFORE `p += 0x10C`. strength_reduce inserts the reduced - * giv's `addiu` immediately before ITS biv's increment, so the source order - * i-then-p is what produces `addiu $s4,$s4,1` / `addiu $s3,$s3,0x10C` / - * (delay) `addiu $s2,$s2,0x10C`. A `for (i = 0; i < 0x60; i++)` with `p += 0x10C` - * last puts the giv add first and swaps the pair. - * - * 4. `self4` and `sc` are REAL pre-loop locals, in that order. Both are loop - * invariants; written inline as `(s16 *)(a0 + 4)` / `(unsigned int *)sp20` at the - * call, combine folds the address straight into the argument move - * (`addiu $a0,$sp,0x20`) and the target's `$s6 = $sp + 0x20` hoist never happens. - * Assigning them in a *different basic block* from their uses is what keeps the - * pseudos alive; the declaration ORDER (p, i, self4, sc) is what gives - * $s2/$s4/$s5/$s6 in the target's prologue emission order. - * - * 5. `s16 y` (a SHORT local), and `s32 sp20[2]` (an EIGHT-byte scratch). - * - The short local is why `y` gets a second pseudo: gcc-2.7.2 emits - * `(set (reg:HI B) (subreg:HI (reg:SI A)))` for the HImode assignment, i.e. the - * target's `addu $a1,$a0,$zero` in the branch delay slot, with the two `- 0x60` - * recomputed from A ($a0, the compare) and B ($a1, the stored value). - * An `s32 y` coalesces the pair away and loses that instruction. - * - The short local also costs a DEAD 4-byte reload home at the top of the frame - * (`(use (mem:SI (plus $sp 48)))` in the greg dump, no insn references it). - * That is exactly why the func_8012B0B4 buffer is 8 bytes, not 16: 0x10 + 8 - * (v10) + 8 (v18) + 8 (sp20) + 4 (dead) rounds to 0x30 = the target's first - * saved-register slot. 8 bytes also matches the fleet's canonical shape for a - * func_8012B0B4 output buffer (`unsigned int buf[2]`). - */ - - -extern s32 func_8012BC60(void *a0, void *a1); -extern s32 func_8012B6D4(s16 *a0, s16 *a1); -extern void func_8012B0B4(unsigned int *p, int a1, int a2); -extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); -extern void func_8012ADE4(u8 *a0); -extern void func_8012C098(void *param_1); - -void func_801853B4(s32 a0) { - - extern u8 D_801202A0[]; - u8 *p; - s16 *self4; - unsigned int *sc; - s32 i; - s16 y; - s32 z; - s32 ang; - s16 v10[4]; /* sp+0x10 */ - s16 v18[4]; /* sp+0x18 */ - s32 sp20[2]; /* sp+0x20 — func_8012B0B4 output */ - - p = D_801202A0; - i = 0; - self4 = (s16 *)(a0 + 4); - sc = (unsigned int *)sp20; - do { - if ((u8 *)a0 != p) { - switch (*(u16 *)p) { - case 0x27A: - if (func_8012BC60((void *)self4, (void *)(p + 4)) < 0x6400) { - ang = func_8012B6D4(self4, (s16 *)(p + 4)); - func_8012B0B4(sc, ang, 0xA1); - v18[0] = *(u16 *)(p + 6); - v18[1] = *(u16 *)(p + 0xA); - v18[2] = *(u16 *)(p + 0xE); - v18[0] += sp20[0]; - v18[2] += sp20[0] >> 16; - v18[1] = *(u16 *)(a0 + 0xA); - v10[0] = *(u16 *)(a0 + 0x3A); - v10[1] = *(u16 *)(a0 + 0x3E); - v10[2] = *(u16 *)(a0 + 0x42); - if ((func_8012CEB0(v10, v18, 0) & 0x2000) == 0) { - func_8012ADE4((u8 *)a0); - return; - } - *(u16 *)(a0 + 6) = v18[0]; - *(u16 *)(a0 + 0xA) = v18[1]; - *(u16 *)(a0 + 0xE) = v18[2]; - return; - } - break; - case 0x2F4: - y = *(s16 *)(p + 0xE); - z = *(s16 *)(a0 + 0xE); - if (y + 0x10 < z) { - func_8012C098((void *)a0); - return; - } - if (y - 0x60 < z) { - *(s16 *)(a0 + 0xE) = y - 0x60; - } - break; - } - } - i++; - p += 0x10C; - } while (i < 0x60); -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80185578); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801856F0); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80185750); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80185878); - - -/* func_801858D8 — line-of-sight / collision probe. - * - * Rotate the direction SVECTOR D_801BD30C[dir] through the entity's matrix - * (*(0x20) + 0x34) into a scratch SVECTOR at sp+0x10, build the segment - * start (sp+0x18) = entity pos and end (sp+0x20) = entity pos + rotated - * vector, then hand the pair to func_8012CEB0 / func_800132BC. - * - * §71 sibling-first: DEFINE_func_80169408 / DEFINE_func_8016986C in - * src/shared/engine_core.h are the house shape for this ApplyMatrixSV + - * SVECTOR-local family — `s16 vNN[4]` locals declared in ASCENDING stack - * offset order (sp+0x10, sp+0x18, sp+0x20) and the entity position read as - * `*(u16 *)(s1 + 0x6 / 0xA / 0xE)` (which is what makes the loads `lhu`). - * - * The target stores each of sp+0x20/0x22/0x24 TWICE — a plain copy first, - * then the copy plus the rotated component — so the source assigns the - * position, then `+=` the delta as separate statements (the local's address - * is taken, so gcc-2.7.2 cannot kill the first store). - */ - -extern void ApplyMatrixSV(void *a0, void *a1, void *a2); -extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); -extern s32 func_800132BC(void *a0, void *a1); - -s32 func_801858D8(s32 a0, s32 a1) { - - extern s16 D_801BD30C[][4]; - extern s32 D_801E1FB0; - s32 s0 = a0; - s16 v10[4]; /* sp+0x10 SVECTOR — ApplyMatrixSV out */ - s16 v18[4]; /* sp+0x18 SVECTOR — segment start */ - s16 v20[4]; /* sp+0x20 SVECTOR — segment end */ - s32 r; - - ApplyMatrixSV((void *)(*(s32 *)(s0 + 0x20) + 0x34), D_801BD30C[a1], v10); - v18[0] = *(u16 *)(s0 + 0x6); - v18[1] = *(u16 *)(s0 + 0xA); - v18[2] = *(u16 *)(s0 + 0xE); - v20[0] = *(u16 *)(s0 + 0x6); - v20[1] = *(u16 *)(s0 + 0xA); - v20[2] = *(u16 *)(s0 + 0xE); - v20[0] = v20[0] + v10[0]; - v20[1] = v20[1] + v10[1]; - v20[2] = v20[2] + v10[2]; - r = func_8012CEB0(v18, v20, 0); - D_801E1FB0 = func_800132BC(v18, v20); - return r != 0x2000; -} - - - -extern void (*D_801BD34C[])(void); - -void func_801859B8(void *a0) { - D_801BD34C[*(u16 *)((s32)a0 + 0x2)](); -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801859F4); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80185B80); - - -extern void func_8012C218(void *a0); -extern void func_8012E8A8(u8 *a0); - -/* §48-C2: lwl/lwr/swl/swr block copy == a plain struct assign of a 2-byte-aligned struct */ - -void func_80185E64(s32 param_1) -{ - s32 t1 = *(s32 *)(param_1 + 0x64); - s32 pad[2]; - - if (*(s16 *)(t1 + 0x36) != *(s16 *)(param_1 + 0x10A)) { - func_8012C218((void *)param_1); - return; - } - { - if ((*(u32 *)(t1 + 0xE0) & 4) != 0) { - func_8012E8A8((u8 *)param_1); - return; - } - { - s32 a2 = *(s32 *)(*(s32 *)(t1 + 0x20) + 0x20); - s32 a3 = param_1 + 0xFC; - - if (a2 != 0) { - if ((a2 & 0x1000000) != 0) { - s32 a1 = a2 & 0xFEFFFFFF; - register u32 v0 __asm__("$2"); - u32 a0; - u32 v1a; - u32 v1b; - u32 v0b; - u32 v1; - - *(u16 *)(param_1 + 0x102) = *(u16 *)(a1 + 0x66); - - v0 = *(u32 *)(a1 + 0x60); - a0 = *(u8 *)(a1 + 0x61); - v1a = (v0 & 0xF) << 8; - a0 = a0 | v1a; - v1b = ((s32)v0 >> 16) & 0xFF; - v0b = (v0 & 0xF0) << 4; - v1 = v1b | v0b; - *(u16 *)(param_1 + 0x104) = (u16)a0; - *(u16 *)(param_1 + 0x106) = (u16)v1; - - *(s16 *)(param_1 + 0xFC) = (s8)*(u8 *)(a1 + 0x63); - *(s16 *)(param_1 + 0xFE) = (s8)*(u8 *)(a1 + 0x64); - *(s16 *)(param_1 + 0x100) = (s8)*(u8 *)(a1 + 0x65); - } else { - *(UAlign12_80185E64 *)(param_1 + 0xFC) = *(UAlign12_80185E64 *)(a2 + 0x90); - } - *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = a3; - } - - if ((*(u32 *)(t1 + 0xE0) & 0x80) != 0) { - if (*(u16 *)(param_1 + 0x34) == 0) { - s16 sVar2 = *(u16 *)(param_1 + 0x108) + 0x40; - *(s16 *)(param_1 + 0x108) = sVar2; - if (sVar2 > 0x200) { - *(u16 *)(param_1 + 0x108) = 0x200; - *(s16 *)(param_1 + 0x34) = *(s16 *)(param_1 + 0x34) + 1; - } - } else { - u16 uVar3 = *(u16 *)(param_1 + 0x108) - 0x80; - *(u16 *)(param_1 + 0x108) = uVar3; - if ((s16)uVar3 < 0) { - *(u16 *)(param_1 + 0x108) = 0; - *(u16 *)(param_1 + 0x34) = 0; - *(u32 *)(t1 + 0xE0) = *(u32 *)(t1 + 0xE0) & ~0x80; - } - } - } - - *(u16 *)(a3 + 6) = *(u16 *)(a3 + 6) + *(u16 *)(param_1 + 0x108); - - *(u32 *)(param_1 + 4) = *(u32 *)(t1 + 4); - *(u32 *)(param_1 + 8) = *(u32 *)(t1 + 8); - *(u32 *)(param_1 + 0xC) = *(u32 *)(t1 + 0xC); - - *(UAlign8_80185E64 *)(param_1 + 0x50) = *(UAlign8_80185E64 *)(t1 + 0x50); - - { - s32 dst = *(s32 *)(param_1 + 0x20); - s32 src = *(s32 *)(t1 + 0x20); - *(UAlign8_80185E64 *)(dst + 0x10) = *(UAlign8_80185E64 *)(src + 0x10); - } - { - s32 dst = *(s32 *)(param_1 + 0x20); - s32 src = *(s32 *)(t1 + 0x20); - *(UAlign8_80185E64 *)(dst + 0x18) = *(UAlign8_80185E64 *)(src + 0x18); - } - { - s32 src = *(s32 *)(t1 + 0x20); - s32 dst = *(s32 *)(param_1 + 0x20); - *(u32 *)(dst + 4) = *(u32 *)(src + 4); - } - { - s32 src = *(s32 *)(t1 + 0x20); - s32 dst = *(s32 *)(param_1 + 0x20); - *(u16 *)(dst + 0x2C) = *(u16 *)(src + 0x2C); - } - } - } -} - - - -extern void (*D_801BD4A4[])(void); - -void func_8018611C(void *a0) { - D_801BD4A4[*(u16 *)((s32)a0 + 0x2)](); -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80186158); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801862C8); - - -extern void func_8012C218(void *a0); -extern s32 func_8012D5E4(s32 a0, s32 a1, s32 a2, s32 a3); -extern void func_80187094(s32 a0, s32 a1); -extern s32 func_8012B8E4(s32 a0, s32 a1); -extern s32 func_8012BEE8(s32 a0); -extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); -extern s32 func_8012CBF4(s32 a0); -extern void func_8012B178(s32 a0, s32 a1); -extern u8 *func_8012913C(s32 a0); -extern void func_8012F214(s32 a0, s32 a1, s32 a2); - - -void func_80186330(s32 param_1) { - - extern u8 D_801BD41C; - extern u8 D_801BD4D0[]; - extern u16 D_80126CB4; - extern u16 D_80126CB6; - extern u16 D_80126CB8; - u16 uVar1; - - if (0xf < *(s16 *)(param_1 + 0xA)) { - func_8012C218((void *)param_1); - return; - } - - { - s32 base = (s32)&D_801BD41C; - s32 r = func_8012D5E4(param_1, base, base + 8, 0x78); - if (r == 1 || (*(u16 *)(param_1 + 0x5C) & 1) != 0) { - func_80187094(param_1, 1); - func_8012C218((void *)param_1); - return; - } - } - - uVar1 = *(u16 *)(param_1 + 0x34); - switch (uVar1) { - default: - return; - case 0: - { - s32 sVar3 = func_8012B608((s32)*(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10), 0, 0x18); - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + sVar3; - } - { - s32 r = func_8012CBF4(param_1); - if (r != 0) { - goto LAB_8018847c; - } - } - { - s32 r = func_8012BEE8(param_1); - if (r == 0) return; - } - *(u16 *)(param_1 + 0xF4) = D_80126CB4; - *(u16 *)(param_1 + 0xF6) = D_80126CB6; - { - u16 tmp = D_80126CB8; - *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; - *(s32 *)(param_1 + 0x1C) = 0x3C; - *(u16 *)(param_1 + 0xF8) = tmp; - } - return; - case 1: - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) += func_8012B8E4(param_1, 0x20); - { - s32 r = func_8012BEE8(param_1); - if (r != 0) { - *(s32 *)(param_1 + 0x1C) = 0x5A; - *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; - } - } - break; - case 2: - break; - } - - *(u16 *)(param_1 + 0xF2) = *(u16 *)(param_1 + 0xF2) - 0x100; - func_8012B178(param_1, 0xFFEC0000); - { - s32 r = func_8012CBF4(param_1); - if (r != 0) goto LAB_8018847c; - } - if (*(u16 *)(param_1 + 0x34) != 2) goto LAB_80188494; - { - s32 r = func_8012BEE8(param_1); - if (r != 1) goto LAB_80188494; - } -LAB_8018847c: - *(u16 *)(param_1 + 2) = 9; - func_80187094(param_1, 1); - return; -LAB_80188494: - { - s32 iv = (s32)func_8012913C(0x80); - if (iv == 0) return; - { - u16 out[4]; - ((void (*)(s32, void *, void *))func_8012F214)(param_1, D_801BD4D0, out); - *(u16 *)(iv + 6) = out[0]; - *(u16 *)(iv + 0xA) = out[1]; - *(u16 *)(iv + 0xE) = out[2]; - } - return; - } -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80186588); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801865E8); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80186720); - - -// @class: struct -// @stuck: none — MATCH (276 ins, relocation-masked). Verified BOTH standalone (match_one) and -// spliced into src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c (whole-TU cc1 -O2 clean, -// masked structured_diff 0/276). -// Keys: (1) the first func_8012C218 call gets a NOP delay slot because reload_cse_regs deletes the -// redundant `move a0,s1` -- $a0 still holds the incoming param on the fall-through path -// (no CODE_LABEL between the prologue and the jal). The second call site is behind a -// label, so the move survives. Source is the natural `func_8012C218((void *)param_1)` at -// BOTH sites -- do NOT write a zero-arg call (it also breaks in-TU: the composite type -// from the earlier file-scope `extern void func_8012C218(void *a0);` rejects 0 args). -// (2) case 0's guard is an `||` with an early return -- that is what puts `beqz -> fail` then -// `beq -> ok` (an `&&` would emit `bne -> fail`). -// (3) `register s32 sVar2 __asm__("$2")` holds the p+0x34 reload in cases 1/2 so the two arms -// cross-jump into the shared .L80188928 tail. -// (4) `__asm__ __volatile__("")` after the func_8012C658 arm forces the `lw v1,0x1C(s1)` -// reload before the cross-jumped `li v0,9` (§21 zero-byte re-tie). -// (5) `-((iVar3 << 0x10) / 0x22)` reproduces the 0x78787879/sra-4 magic-divide by 34 + negu. -// (6) `*p * 0xc` then `>>4` with the manual `if (x<0) x+=0xf` is the /16 rounding form. - -extern void func_8012C218(void *a0); -extern void func_80187414(s32, void*, void*, s32); -extern s32 func_80013328(s32 a0, s32 a1); -extern void func_8012B14C(s32 a0, s32 a1); -extern void func_8012CC64(s32 a0, s32 a1); /* fleet-canonical: void; $v0 used -> cast at use */ -extern s32 func_8012C658(s32, s32, s32); -extern s32 func_80143B6C(s32 a0, s32 a1); /* fleet-canonical */ -extern s32 func_8012BEE8(s32 a0); -extern void func_80016714(void*, s32); -extern void func_80187094(s32 a0, s32 a1); - - -void func_80186744(s32 param_1) { - - extern u8 D_801D51D0; - extern u8 D_801BD444; - extern u8 D_801BD44C; - extern u8 D_801BD43C; - extern u8 D_80126B5C; - u16 uVar1; - register s32 sVar2 __asm__("$2"); - s32 iVar3; - s32 iVar4; - s32 iVar5; - u32 uVar4; - s32 psVar5; - u16 buf[8]; - s32 vec[3]; - - if (0xf < *(s16 *)(param_1 + 0xA)) { - func_8012C218((void *)param_1); - return; - } - uVar1 = *(u16 *)(param_1 + 0x34); - switch (uVar1) { - case 0: - psVar5 = *(s32 *)(param_1 + 0x64); - if ((*(u16 *)psVar5 == 0) || - (*(s32 *)(psVar5 + 0x90) != (s32)&D_801D51D0)) { - func_8012C218((void *)param_1); - return; - } - if (*(s32 *)(psVar5 + 0x94) < 0x11) { - ((void (*)(void *, void *, void *, s32))func_80187414)((void *)psVar5, (void *)&D_801BD444, buf, 5); - *(s16 *)(param_1 + 6) = buf[0]; - *(s16 *)(param_1 + 0xA) = buf[1]; - *(s16 *)(param_1 + 0xE) = buf[2]; - return; - } - ((void (*)(void *, void *, void *, s32))func_80187414)((void *)psVar5, (void *)&D_801BD44C, buf, 4); - ((void (*)(void *, void *, void *, s32))func_80187414)((void *)psVar5, (void *)&D_801BD44C, &buf[4], 5); - *(s16 *)(param_1 + 6) = - (s16)((*(s16 *)&buf[0] + *(s16 *)&buf[4]) >> 1); - *(s16 *)(param_1 + 0xA) = - (s16)((*(s16 *)&buf[1] + *(s16 *)&buf[5]) >> 1); - *(s16 *)(param_1 + 0xE) = - (s16)((*(s16 *)&buf[2] + *(s16 *)&buf[6]) >> 1); - if (*(s32 *)(psVar5 + 0x94) != 0x19) { - return; - } - *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; - vec[0] = 0; - vec[1] = 0xfff40000; - iVar3 = func_80013328((s32)&D_80126B5C, param_1 + 4); - vec[2] = -((iVar3 << 0x10) / 0x22); - func_8012B14C(param_1, (s32)vec); - *(s32 *)(param_1 + 0x48) = 0xc000; - return; - case 1: - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x80; - iVar3 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BD43C); - if (iVar3 == 0) { - return; - } - sVar2 = *(u16 *)(param_1 + 0x34); - *(s32 *)(param_1 + 0x1c) = 0; - *(u16 *)(param_1 + 0x34) = sVar2 + 1; - return; - case 2: - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x40; - uVar4 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BD43C); - if ((uVar4 & 0x2000) == 0) { - return; - } - iVar4 = *(s32 *)(param_1 + 0x1c) + 1; - *(s32 *)(param_1 + 0x1c) = iVar4; - if (iVar4 >= 4) { - sVar2 = *(u16 *)(param_1 + 0x34); - *(s32 *)(param_1 + 0x1c) = 0x1e; - *(u16 *)(param_1 + 0x34) = sVar2 + 1; - return; - } - iVar3 = *(s32 *)(param_1 + 0x10) * 0xc; - if (iVar3 < 0) { - iVar3 = iVar3 + 0xf; - } - *(s32 *)(param_1 + 0x10) = iVar3 >> 4; - iVar5 = *(s32 *)(param_1 + 0x18) * 0xc; - if (iVar5 < 0) { - iVar5 = iVar5 + 0xf; - } - *(s32 *)(param_1 + 0x18) = iVar5 >> 4; - *(s32 *)(param_1 + 0x14) = -(0x80000 / *(s32 *)(param_1 + 0x1c)); - func_80143B6C(param_1, 1); - return; - case 3: - uVar4 = *(u32 *)(param_1 + 0x1c); - if ((uVar4 - 0xe < 0xb) && ((uVar4 & 1) == 0)) { - ((void (*)(s32, s32, s32))func_8012C658)(0x2a8, (s32)*(s16 *)(param_1 + 0x104), param_1); - *(u16 *)(param_1 + 0x104) = *(u16 *)(param_1 + 0x104) + 1; - __asm__ __volatile__(""); - uVar4 = *(u32 *)(param_1 + 0x1c); - } - if (uVar4 == 9) { - *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) = - *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) & 0x7fffffff; - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 8) = *(u16 *)(param_1 + 6); - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xa) = - *(u16 *)(param_1 + 0xa) - 0x24; - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xc) = *(u16 *)(param_1 + 0xe); - } - if (*(s32 *)(param_1 + 0x1c) - 4U < 6) { - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) = - *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) + 0x200; - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) = - *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) + 0x200; - } - iVar3 = func_8012BEE8(param_1); - if (iVar3 != 1) { - return; - } - ((void (*)(s32, s32))func_80016714)(*(s32 *)(param_1 + 0xcc), 0x38); - *(s16 *)(param_1 + 2) = 9; - func_80187094(param_1, 0); - return; - } - return; -} - - - -extern void func_80049CAC(s32, s32); -extern void func_800484EC(s32, s32, s32); -extern void func_8012B260(u8 *a0); - -void func_80186B94(s32 p) { - s32 g10[4]; /* sp+0x10 */ - u16 g20[4]; /* sp+0x20 */ - s32 buf28[8]; /* sp+0x28 */ - u16 v; - - g10[2] = 0xFFF00000; - g10[1] = 0; - g10[0] = 0; - g20[0] = 0x10; - v = *(u16 *)(*(s32 *)(*(s32 *)(p + 0x64) + 0x20) + 0x12) + - *(u16 *)(p + 0xFC); - g20[1] = v; - *(u16 *)(p + 0xFE) = v; - g20[2] = 0; - ((void (*)(void *, void *))func_80049CAC)(g20, buf28); - ((void (*)(void *, void *, s32))func_800484EC)(buf28, g10, p + 0x10); - *(u16 *)(p + 2) = 8; - *(s32 *)(p + 0x1C) = 0x40; - ((void (*)(s32))func_8012B260)(p); -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80186C30); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80186DE8); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80186E24); - - -/* func_80186EA4 @ ov_SC06_018 (subseg ov_SC06_018_jr_8017C24C) — 124 ins. MATCH. - * - * GATE: .venv/bin/python tools/match_one.py func_80186EA4 \ - * --c .run/wave-s40/ov_SC06_018/func_80186EA4.c \ - * --asm-subdir asm/ov_SC06_018/nonmatchings/ov_SC06_018_jr_8017C24C - * - * ------------------------------------------------------------------ what it is - * "Try to hand this object off to another live entity of kind 0x282." - * 1. Build two 8-byte position vectors off `self` via func_8012F214 (the - * fleet's local->world transform; see the ov_SC02_026 walker family, - * e.g. src/ov_SC03_103/ov_SC03_103_jr_8017C294.c:4106 func_8017EC0C, which - * is the byte-matched sibling this draft's types were lifted from). - * 2. Keep a third copy of the destination vector (`c = b`) — 8 bytes at - * align 2, so gcc emits the inline lwl/lwr + swl/swr block move, exactly - * the "8 bytes, align 2 -> lwl/lwr/swl/swr copy" note carried in that - * sibling. This is why `c` must be a STRUCT ASSIGN, not a memcpy. - * 3. If the global-collision probe func_80135888(D_80126B78, D_80126B90, &a, &b) - * says the move is blocked, punt to func_8012F568 and return 1. - * 4. Otherwise walk the 0x60-entry / 0x10C-stride entity table D_801202A0 - * looking for a 0x282 entity that (a) matches `kind` (or, when - * kind == 0xFFFF, only self->f70), (b) is not `self`, and (c) passes the - * same collision probe against its own f20/f58 volumes. First hit gets - * state 9 and func_80187094(e, 0); return 1. No hit -> 0. - * - * ---------------------------------------------------------------- the levers - * L1 ARG 5 IS A `u16` (stack slot 0x60(sp) read with `lhu`). The redundant - * `andi $v1,$s2,0xffff` in the target is gcc's zero_extendhisi2 for the - * HImode->SImode widening at `kind != 0xFFFF`; it comes free with a plain - * ANSI `u16` param and CANNOT be reproduced from an `s32`/`s16` param. - * That same zero-extended $v1 is then reused as the loop compare operand - * (`addu $s4,$v1,$zero`), which is why the kind test inside the loop must - * be written against `kind` itself and not a re-cast copy. - * - * L2 `i` MUST BE INITIALISED IN EACH LOOP'S for-INIT, NOT ONCE BEFORE THE - * `if`. This is the whole match. <-- the only residual v1 had. - * With `e = ...; i = 0; if (kind != 0xFFFF) {...}` the draft is 124/124 - * instructions with FOUR bytes wrong: `kind` lands in $s4 instead of $s2 - * (and the two prologue `sw`s swap slots to follow it). Reason (regalloc.md - * K3/K5, class RC-3): `kind` is the lowest-density allocno (2 refs over a - * ~50-insn range) so it is assigned LAST, and find_reg then takes the - * LOWEST-numbered non-conflicting callee-saved register. Hoisting `i = 0` - * above the `andi` that reads `kind` makes `i`'s live range OVERLAP - * `kind`'s, so $s2 becomes a conflict and $s4 is the next free slot. - * Sinking `i = 0` into both for-inits removes the overlap -> $s2. - * The single `addu $s2,$zero,$zero` you see in the delay slot of the - * `beq` is dbr: it lifts the fall-through arm's `i = 0` into the slot and - * drops the other arm's copy as redundant (both arms set it before any - * use, so it is safe on both paths). Do NOT "simplify" it back to one - * shared initialiser — that is the 4-byte regression. - * - * L3 THE ARMS ARE `!=` FIRST. `if (kind != 0xFFFF) {kind-or-self loop} - * else {self-only loop}` gives `beq $v1,$v0,` with the kind-aware - * loop falling through, which is the target order. Writing it as - * `if (kind == 0xFFFF)` emits `bne` and swaps the two bodies. - * - * L4 BOTH ARMS' HIT-BLOCKS ARE TEXTUALLY IDENTICAL, which lets jump.c's - * cross-jump tail-merge collapse them: the second loop's - * `bnez $v0,.L80188F5C` branches into the FIRST loop's - * `sh 9; jal func_80187094; return 1` block. Keep them identical. - * - * L5 LOCAL DECL ORDER IS THE FRAME LAYOUT (regalloc.md K1/K7): `a`,`b`,`c` - * land at 0x18 / 0x20 / 0x28, immediately above the 0x18-byte outgoing-arg - * area that func_8012F568's 6 arguments force. Frame 0x50. Reordering - * the three declarations shifts every sp displacement. - * - * L6 `e != self` is a POINTER compare against the `self` param (`beq $s1,$s3`), - * so `self` must be typed as the same Ent pointer, not an s32. - * - * ---------------------------------------------------------------- banking note - * The real TU src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c already declares - * `extern u8 D_801202A0[];` (L384), `extern s32 func_80135888(s32,s32,s32,s32);` - * (L589), `extern void func_8012F214(s32,s32,s32);` (L2641), - * `extern void func_80187094(s32 a0, s32 a1);` (L7388, and DEFINES it at L7711) - * and `extern u8 D_801152A8[];` (L598) — all fleet-canonical and identical to - * the spellings below, so only the two `D_80126B7 8/90` pointer externs - * (canonical form `extern s32 *D_80126B78;`, 3297 fleet occurrences) and the - * two local typedefs need to travel. Uniquify the typedef names per §120 if - * the TU already carries a V4/Ent (it carries neither of these two spellings). - * - * SIBLINGS (the 5 other h_norm members): every DATA symbol this body touches — - * D_801202A0, D_801152A8, D_80126B78, D_80126B90 — is RESIDENT (fixed VA, not - * per-overlay tail.data), and three of the four callees (func_8012F214, - * func_80135888, func_8012F568) are resident too. The ONLY per-overlay symbol - * is func_80187094, and in this overlay it is defined in the SAME TU - * (ov_SC06_018_jr_8017C24C.c:7711). So the §40 remap for the siblings is - * expected to be near-identity: re-point func_80187094 at each sibling's own - * address and check that sibling TU's canonical spellings for the four externs - * before sweeping (§56b — carry the TU's types, not this draft's). - */ - -typedef struct { u16 x, y, z, w; } V4_80188E10_80186EA4; - -typedef struct { - u16 f0; /* 0x00 entity kind; 0x282 is the one we want */ - s16 f2; /* 0x02 state -> 9 on a hit */ - u8 p04[0x20 - 0x04]; - s32 f20; /* 0x20 collision volume A */ - u8 p24[0x58 - 0x24]; - s32 f58; /* 0x58 collision volume B */ - u8 p5C[0x70 - 0x5C]; - s16 f70; /* 0x70 sub-kind / owner tag */ - u8 p72[0x10C - 0x72]; /* stride 0x10C, 0x60 entries (0x6480) */ -} Ent_80188E10_80186EA4; - -extern void func_8012F214(s32 a0, s32 a1, s32 a2); -extern s32 func_80135888(s32 a0, s32 a1, s32 a2, s32 a3); -extern void func_8012F568(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5); -extern void func_80187094(s32 a0, s32 a1); - - -s32 func_80186EA4(Ent_80188E10_80186EA4 *self, s32 arg1, s32 arg2, s32 arg3, u16 kind) { - - extern s32 *D_80126B78; - extern s32 *D_80126B90; - extern u8 D_801202A0[]; - V4_80188E10_80186EA4 a; /* 0x18(sp) */ - V4_80188E10_80186EA4 b; /* 0x20(sp) */ - V4_80188E10_80186EA4 c; /* 0x28(sp) */ - Ent_80188E10_80186EA4 *e; - s32 i; - - func_8012F214((s32)self, arg1, (s32)&a); - func_8012F214((s32)self, arg2, (s32)&b); - c = b; /* L2: lwl/lwr block move */ - if (func_80135888((s32)D_80126B78, (s32)D_80126B90, (s32)&a, (s32)&b) != 0) { - func_8012F568(1, 1, *(s16 *)(self->f20 + 0x12), arg3, (s32)&b, (s32)D_801152A8); - return 1; - } - e = (Ent_80188E10_80186EA4 *)D_801202A0; - if (kind != 0xFFFF) { /* L3 */ - for (i = 0; i < 0x60; i++, e++) { /* L2: i=0 HERE, not above */ - if (e->f0 == 0x282 && (e->f70 == kind || e->f70 == self->f70) && e != self && - func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { - e->f2 = 9; /* L4: keep identical */ - func_80187094((s32)e, 0); - return 1; - } - } - return 0; - } else { - for (i = 0; i < 0x60; i++, e++) { /* L2 */ - if (e->f0 == 0x282 && e->f70 == self->f70 && e != self && - func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { - e->f2 = 9; /* L4: keep identical */ - func_80187094((s32)e, 0); - return 1; - } - } - return 0; - } -} - - - -extern s32 func_80132EF4(s32 a0, s32 a1); -extern void func_8012B0B4(unsigned int *p, int a1, int a2); -extern void func_80049CAC(s32, s32); -extern void func_800484EC(s32, s32, s32); -extern s32 func_8012C658(s32, s32, s32); -extern void func_80187EF4(s32 a0, s32 a1); -extern s32 rand(void); - -void func_80187094(s32 a0, s32 a1) { - s32 buf10[8]; /* sp+0x10 (0x20) - func_80049CAC out / func_800484EC in */ - s32 g40[4]; /* sp+0x30, only [0..2] used - func_800484EC vec3 arg */ - u16 g30[4]; /* sp+0x40, only [0..2] used - func_80049CAC vec3 arg */ - unsigned int buf48[2]; /* sp+0x48 (8) - func_8012B0B4 output */ - unsigned int *p48; - s32 i; - s32 baseY; - s32 e; - u32 uVar; - s32 scratch; - s32 tmp; - - i = 0; - p48 = buf48; - baseY = 0x100; - do { - e = func_80132EF4(a0, 0x23); - if (e != 0) { - *(s16 *)(e + 0x34) = rand() % 0x4000 + 0x1000; - *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc008; - - func_8012B0B4(p48, rand() % 0x1000, rand() % 0x58); - - tmp = *(s32 *)buf48; - *(s16 *)(e + 6) = *(s16 *)(e + 6) + (s16)tmp; - *(s16 *)(e + 0xe) = *(s16 *)(e + 0xe) + (s16)(tmp >> 16); - - tmp = rand(); - scratch = tmp % 0x80; - uVar = rand(); - g30[0] = (uVar & 1) == 0 ? -scratch + 0x400 : scratch + 0x400; - - scratch = rand() % 0xc0; - uVar = rand(); - g30[1] = (uVar & 1) != 0 ? baseY + scratch : baseY - scratch; - - g30[2] = 0; - g40[1] = 0; - g40[0] = 0; - g40[2] = (rand() % 4 + 3) << 16; - - ((void (*)(void *, void *))func_80049CAC)(g30, buf10); - ((void (*)(void *, void *, s32))func_800484EC)(buf10, g40, e + 0x10); - } - i++; - baseY += 0x200; - } while (i < 8); - - e = func_80132EF4(a0, 0x23); - if (e != 0) { - *(u16 *)(e + 0x34) = 0x7ff1; - *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc004; - *(s32 *)(e + 0x14) = 0xfffb0000; - } - - i = 0; - do { - func_8012C658(0x29d, (u16)a1, a0); - i++; - } while (i < 4); - - func_80187EF4(a0, 0x95e); -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80187318); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801873B0); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80187414); - - -extern s32 func_8012B6D4(s16 *a0, s16 *a1); - -// @class: branch-polarity -// @stuck: none — MATCH (32 ins), iteration 2. §3-T4: gcc-2.7.2 lays this out as -// "branch TO the then-arm, fall through to the else", so the source condition is -// `d < 0x800` (the bnez sense read off the target opcode), NOT Ghidra's inverted -// arm order. The wrong polarity also cost one instruction (match_one printed -// LENGTH-DRIFT/-1): with the arms swapped, the `sll $v0,$s0,16` of the s16 param -// lands in the branch delay slot and is SHARED by both arms; the correct polarity -// puts `addiu $v1,$zero,0x1000` there and each arm gets its own sll/sra. -// a1 is an ANSI s16 param (sign-extended at each use, once per arm) — not K&R §43. -s32 aF80187460(s32 a0, s16 a1) __asm__("func_80187460"); -s32 aF80187460(s32 a0, s16 a1) -{ - /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every - LATER function in this TU, which blocks a byte-true decl of a different type. - Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ - extern u8 D_80126B5C; - /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every - LATER function in this TU, which blocks a byte-true decl of a different type. - Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ - extern s32 *D_80126B78; - s32 d; - - d = (func_8012B6D4((s16 *)&D_80126B5C, (s16 *)(a0 + 4)) - - *(s16 *)((s32)D_80126B78 + 0x12)) & 0xFFF; - if (d < 0x800) { - return d < a1; - } else { - return (0x1000 - d) < a1; - } -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_801874E0); - - -extern void (*D_801BD4D8[])(void); - -void func_80187548(void *a0) { - D_801BD4D8[*(u16 *)((s32)a0 + 0x2)](); -} - - - - -extern s32 rand(void); -extern void func_8012C1B8(void); -extern void func_8012CAE4(void*); -extern void func_8001C214(s32 a0, s32 a1); -extern void func_8012B2CC(s32 a0); -extern void func_8012B178(s32 a0, s32 a1); - -void func_80187584(s32 param_1) { - - extern u8 D_801BD4E0[]; - s32 unused[2]; /* dead 8-byte local — frame padding (cookbook idiom 6) */ - s32 obj; - s16 raw; - s32 r; - s32 sgn; - s32 v; - u8 *tbl; - s16 *p; - s32 q; - s32 w; - - obj = ((s32 (*)(void))func_8012C1B8)(); - if (obj == 0) { - ((void (*)(s32))func_8012CAE4)(param_1); - return; - } - *(s32 *)(param_1 + 0x20) = obj; - func_8001C214(obj, 0); - - raw = rand(); - r = raw; - *(u16 *)(obj + 0x2C) = *(u16 *)(obj + 0x2C) | 0x10; - v = r % 384 + 0x400; - *(s16 *)(obj + 0x1C) = v; - *(s16 *)(obj + 0x1A) = v; - *(s16 *)(obj + 0x18) = v; - sgn = -1; - if (raw & 1) { - sgn = 1; - } - *(s16 *)(obj + 0x10) = sgn * (r % 128) - 0x300; - *(s16 *)(obj + 0x12) = r % 4096; - *(s32 *)(param_1 + 0x48) = 0xC000; - *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x19; - func_8012B2CC(param_1); - func_8012B178(param_1, -0xC0000 - ((r % 8) << 16)); - *(s32 *)(param_1 + 0x1C) = 0x3C; - *(s16 *)(param_1 + 0xFE) = rand() & 0xF0; - *(s16 *)(param_1 + 0x100) = rand() & 0x1F0; - *(s16 *)(param_1 + 0x102) = rand() & 0x30; - tbl = &D_801BD4E0[(*(u16 *)(param_1 + 0x70) & 0xF) * 4]; - - p = (s16 *)(param_1 + 0xDC); - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[0] = w; - p[1] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[2] = w; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[4] = w; - p[5] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[6] = w; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[8] = w; - p[9] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[10] = w; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[12] = w; - p[13] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[14] = w; - - *((u8 *)p + 0x20) = tbl[0]; - *((u8 *)p + 0x21) = tbl[1]; - *((u8 *)p + 0x22) = tbl[2]; - *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; -} - - - -extern s32 func_8012CBF4(s32 a0); -extern s32 func_8012BEE8(s32 a0); -extern void func_8012C218(void *a0); /* TU-canonical (ov_SC06_018_jr_8017C24C L5455) */ -extern void func_80017274(s32 a0, s32 a1); - -void func_801879E8(s32 param_1) { - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + *(u16 *)(param_1 + 0xFE); - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + *(u16 *)(param_1 + 0x100); - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) + *(u16 *)(param_1 + 0x102); - - if (func_8012CBF4(param_1) != 0 || func_8012BEE8(param_1) != 0) { - func_8012C218((void *)param_1); - } else { - func_80017274(param_1 + 0xDC, *(s32 *)(param_1 + 0x20) + 0x34); - } -} - - - -extern void (*D_801BD4F8[])(void); - -void func_80187A8C(void *a0) { - D_801BD4F8[*(u16 *)((s32)a0 + 0x2)](); -} - - - -extern s32 rand(void); -extern void func_8012C1B8(void); /* TU-canonical (ov_SC06_018_jr_8017C24C) */ -extern void func_8012CAE4(void*); -extern void func_8001C214(s32 a0, s32 a1); -extern void func_8012B0B4(unsigned int *p, int a1, int a2); /* TU-canonical */ -extern void func_8012B2CC(s32 a0); - -void func_80187AC8(s32 param_1) { - u32 buf[2]; - s32 obj; - s32 o2; - s32 base; - s32 off; - s32 v; - s32 t; - - obj = ((s32 (*)(void))func_8012C1B8)(); - *(s32 *)(param_1 + 0x20) = obj; - if (obj == 0) { - ((void (*)(s32))func_8012CAE4)(param_1); - } else { - func_8001C214(obj, 0); - if ((*(s16 *)(param_1 + 0x70) & 0x8000) == 0) { - *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = -0x80 - (rand() % 0x300); - o2 = *(s32 *)(param_1 + 0x20); - off = rand() % 0xC0; - base = *(s16 *)(param_1 + 0x70) * 0x300 + 0x180; - if (rand() & 1) { - v = base + off; - } else { - v = base - off; - } - *(s16 *)(o2 + 0x12) = v; - func_8012B0B4(buf, *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + 0x800, - rand() % 0x10 + 8); - t = buf[0]; - *(u16 *)(param_1 + 0x6) = *(u16 *)(param_1 + 0x6) + t; - *(u16 *)(param_1 + 0xE) = *(u16 *)(param_1 + 0xE) + (t >> 16); - *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x10; - func_8012B2CC(param_1); - *(s32 *)(param_1 + 0x1C) = 4; - *(u16 *)(param_1 + 0x2) = *(u16 *)(param_1 + 0x2) + 1; - } else { - *(s16 *)(param_1 + 0xDC) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCC); - *(s16 *)(param_1 + 0xDE) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCE); - *(s16 *)(param_1 + 0xE0) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD0); - *(s16 *)(param_1 + 0xE4) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD4); - *(s16 *)(param_1 + 0xE6) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD6); - *(s16 *)(param_1 + 0xE8) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD8); - *(s16 *)(param_1 + 0x2) = 2; - *(s32 *)(param_1 + 0x1C) = 8; - } - } -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80187CBC); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80187DF8); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_80187EF4); - - -extern void (*D_801BD504[])(void); - -void func_80188060(void *a0) { - D_801BD504[*(u16 *)((s32)a0 + 0x2)](); -} - - - -extern void func_80128EA8(s32 a0, s32 a1, s32 a2); - -void func_8018809C(s32 param_1) { - - extern u8 D_800D387C[]; - extern u8 D_800D3888[]; - s32 t; - - *(u32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = (u32)&D_800D387C; - - *(u32 *)(*(s32 *)(param_1 + 0x20) + 4) |= 0x50000000; - - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x27) = 0x9c; - - t = *(s32 *)(param_1 + 0x20); - *(u16 *)(t + 0x1a) = 0x2000; - *(u16 *)(t + 0x18) = 0x2000; - - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x24) = 0xff; - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x25) = 0; - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x26) = 0; - - func_80128EA8(*(s32 *)(param_1 + 0x20), param_1 + 0x24, (s32)&D_800D3888); - - *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; -} - - - -extern void func_8012931C(s32 a0); -extern s32 func_80128ED8(s32 param_1, s32 *param_2); -extern void func_801292C8(s32 a0); - -void func_8018814C(s32 param_1) { - s32 q; - u8 a; - u8 b; - u16 h; - - q = *(s32 *)(param_1 + 0x20); - - a = *(u8 *)(q + 0x24) - 0x20; - *(u8 *)(q + 0x24) = a; - if (a < 0x80) { - *(u8 *)(q + 0x24) = 0x80; - } - - b = *(u8 *)(q + 0x25) + 0x20; - *(u8 *)(q + 0x25) = b; - if (b > 0x80) { - *(u8 *)(q + 0x25) = 0x80; - } - - h = *(u16 *)(q + 0x1A) + 0x400; - *(u8 *)(q + 0x26) = *(u8 *)(q + 0x25); - *(u16 *)(q + 0x1A) = h; - *(u16 *)(q + 0x18) = h; - - func_8012931C(param_1); - - if (func_80128ED8((void *)q, (void *)(param_1 + 0x24)) != 0) { - func_801292C8(param_1); - } -} - - - -extern s32 D_801E20F8; -extern s32 func_8012C588(s32 a0, s32 a1); - -s32 func_80188204(s32 a0, s32 a1) { - D_801E20F8 = a1; - return func_8012C588(0x85, a0); -} - - -extern u8 D_801152A8[]; -extern s32 D_801E20F8; -extern s32 func_80017DC4(void *a0, void *a1); -extern void func_80017E68(void *a0, void *a1); -extern void func_800D20C0(void *a0, void *a1, s32 a2); -extern void func_800D23D0(void *a0); -extern void func_8012A828(s32 a0, void *a1); -extern void func_8012C218(void *a0); -extern void func_8012F14C(s32 a0, s32 a1, s32 a2); -extern s32 func_80134510(s32 arg); - -// @class: regalloc-order -// @stuck: none — MATCH (145/145 ins, match_one confirmed) - - - - -s32 func_80188234(s32 param_1) { - - extern M2C_UNK D_8018D644; - extern s32 func_8012C354(s32 a0, s32 a1); - extern void RotMatrixZ(s32, void *); - extern void MulMatrix0(s32, void *, s32); - extern s32 D_801D530C; - extern char * D_801D5340; - extern char D_801E20D8[]; - - S8_80184F08 s60; - SVECTOR_80184F08 sStack_58; - S8_80184F08 s50; - int auStack_48[8]; - s32 iVar5, iVar8; - char *puVar2, *puVar4; - u16 uVar3; - - if (((s32 (*)(s32, void *))func_8012C354)(param_1, &D_801D530C) == 0) { - ((void (*)(s32))func_8012C218)(param_1); - } - ((void(*)(s32, void *))func_8012A828)(param_1, &(*(s32 *)&D_8018D644)); - iVar5 = *(s32 *)(param_1 + 0x20); - *(s16 *)(param_1 + 0x70) = 0x80; - *(s32 *)(iVar5 + 4) |= 0x50000040; - *(u16 *)(iVar5 + 0x2c) |= 1; - iVar8 = *(s32 *)(*(s32 *)(param_1 + 0x64) + 0x20) + 0x34; - ((void (*)(s32, s32, void *))func_8012F14C)(iVar8, D_801E20F8, &s60); - s50 = s60; - sStack_58.vz = 0x1800; - sStack_58.vy = 0x1800; - sStack_58.vx = 0x1800; - ((void (*)(void *, void *))func_80017DC4)(&sStack_58, auStack_48); - RotMatrixZ(rand() & 0xfff, auStack_48); - MulMatrix0(iVar8, auStack_48, iVar5 + 0x34); - ((void (*)(void *, s32))func_80017E68)(&s50, iVar5 + 0x34); - - /* pool-alloc: gcc routes the loaded pointer through a caller-saved reg ($v0) - before the callee-saved home ($s1) — pin it to reproduce the extra move. */ - { - register char *tmp __asm__("$2"); - tmp = D_801D5340; - puVar2 = tmp; - } - puVar4 = puVar2 + 0x20; - D_801D5340 = puVar4; - *(char **)(param_1 + 0xcc) = puVar2; - if (D_801E20D8 < puVar4) { - D_801D5340 = D_801E20D8 - 0x120; - } - func_800D20C0(&s60, &sStack_58, 7); - func_800D23D0(&sStack_58); - ((void(*)(void *, void *))RotMatrixYXZ)(&sStack_58, puVar2); - ((void (*)(void *, s32))func_80017E68)(&s60, (s32)puVar2); - - uVar3 = *(u16 *)((char *)&s50 + 2); - if (((s32 (*)(void *))func_80134510)(&s50) != 0 && - (s32)(s16)uVar3 - (s32)*(s16 *)((char *)&s50 + 2) < 0x80) { - *(s16 *)((char *)&s50 + 2) = *(s16 *)((char *)&s50 + 2) - 4; - { - register char *tmp __asm__("$3"); - tmp = D_801D5340; - puVar2 = tmp; - } - puVar4 = puVar2 + 0x20; - D_801D5340 = puVar4; - *(char **)(param_1 + 0xd0) = puVar2; - if (D_801E20D8 < puVar4) { - D_801D5340 = D_801E20D8 - 0x120; - } - func_800D23D0(&(*(s32 *)&D_801152A8)); - ((void(*)(void *, void *))RotMatrixYXZ)(&(*(s32 *)&D_801152A8), puVar2); - ((void (*)(void *, s32))func_80017E68)(&s50, (s32)puVar2); - } - *(s16 *)(param_1 + 2) = *(s16 *)(param_1 + 2) + 1; -} - - -extern s32 func_80017758(void *a0, void *a1); -extern void func_8012C218(void *a0); - - -// @class: regalloc-order -// @stuck: none — MATCH (168 ins). Keys: (1) pin param->$s1 via `register int self __asm__("$17")=param_1` -// (natural alloc put the short loop-counter in $s1); (2) block2's guarded dest via a test-temp -// `td=load; if(td){dest=td; ...}` forces the range-split `lw $a1; addu $s3,$a1,$0` the target has; -// (3) counter is `short i` do-while (keeps the `addu $s2,$v0,$0` raw-copy + sll16/sra16 compare); -// (4) gcc-2.7.2 loads s8/s16 via lbu/lhu+shift-extend (not lb/lh) so `signed char *p; *(s16*)buf=*p++` -// emits lbu;sll24;sra24;sh; (5) else-branch zero-byte asm barrier forces `addu $a0,$s1,$0` (else gcc -// reuses the still-live incoming $a0 with a nop delay slot). - -s32 func_80188478(s32 param_1) { - - extern signed char D_801D52F8[]; - register int self __asm__("$17") = ((int)param_1); - int iVar6; - int iVar1; - unsigned char buf[0x34]; - signed char *p; - short i; - int dest; - int td; - unsigned short t; - - iVar1 = *(int *)(self + 0x1c); - iVar6 = *(int *)(self + 0x20); - *(int *)(self + 0x1c) = iVar1 + 1; - if (iVar1 < 2) { - p = D_801D52F8; - i = 0; - dest = *(int *)(self + 0xcc); - t = *(unsigned short *)(self + 0x70); - *(short *)(buf + 0x0c) = 0; - *(short *)(buf + 0x0a) = 0; - *(short *)(buf + 0x08) = 0; - *(short *)(buf + 0x1c) = 0; - *(short *)(buf + 0x14) = 0; - *(short *)(buf + 0x04) = 0; - buf[0x22] = 0; - buf[0x21] = 0; - buf[0x20] = 0; - buf[0x2a] = 0; - buf[0x29] = 0; - buf[0x28] = 0; - buf[0x2e] = 0; - buf[0x2d] = 0; - buf[0x2c] = 0; - *(int *)(buf + 0x30) = 0x50000000; - buf[0x25] = t; - buf[0x26] = t; - buf[0x24] = t; - do { - *(short *)(buf + 0x00) = *p++; - *(short *)(buf + 0x02) = *p++; - *(short *)(buf + 0x10) = *p++; - *(short *)(buf + 0x12) = *p++; - *(short *)(buf + 0x18) = *p++; - *(short *)(buf + 0x1a) = *p--; - func_80017758(buf, (void *)dest); - i++; - } while (i < 4); - - td = *(int *)(self + 0xd0); - if (td != 0) { - dest = td; - p = D_801D52F8; - i = 0; - t = *(unsigned short *)(self + 0x70); - *(short *)(buf + 0x0c) = 0; - *(short *)(buf + 0x0a) = 0; - *(short *)(buf + 0x08) = 0; - *(short *)(buf + 0x1c) = 0; - *(short *)(buf + 0x14) = 0; - *(short *)(buf + 0x04) = 0; - buf[0x22] = 0; - buf[0x21] = 0; - buf[0x20] = 0; - buf[0x2a] = 0; - buf[0x29] = 0; - buf[0x28] = 0; - buf[0x2e] = 0; - buf[0x2d] = 0; - buf[0x2c] = 0; - *(int *)(buf + 0x30) = 0x50000000; - buf[0x25] = t; - buf[0x26] = t; - buf[0x24] = t; - do { - *(short *)(buf + 0x00) = *p++; - *(short *)(buf + 0x02) = *p++; - *(short *)(buf + 0x10) = *p++; - *(short *)(buf + 0x12) = *p++; - *(short *)(buf + 0x18) = *p++; - *(short *)(buf + 0x1a) = *p--; - func_80017758(buf, (void *)dest); - i++; - } while (i < 4); - } - *(short *)(self + 0x70) = *(short *)(self + 0x70) >> 1; - *(unsigned short *)(iVar6 + 0x2c) |= 1; - } else { - __asm__ __volatile__("" : "=r"(self) : "0"(self)); - func_8012C218((void *)self); - } -} - - - -extern void (*D_801D5344[])(void); - -void func_80188718(void *a0) { - D_801D5344[*(u16 *)((s32)a0 + 0x2)](); -} - - - - -// @class: schedule -// @stuck: none — MATCH (132 ins, match_one). Levers: (1) block2 statement order — compute sv1.vz (with the *(p+0xe) load) right after the 2nd call so gcc hoists that load into $v1, forcing the sv2.vx=sv1.vx copy through $a3, which globally pushes every `func*param>>12` product from $a3 to $t0; (2) sv2 store order vx-before-vy; (3) SHARED return-0 join via gotos placed BEFORE the copy block (ret0: before docopy:) — this blocks gcc's conditional-jump-over-jump inversion + return-threading, so the copy block falls through to the epilogue with v0=1 preset in the beqz delay slot (drops the extra `li v0,1`). - - -extern int func_8004787C(int); -extern int func_80047948(int); -extern s32 func_80133784(s32, void*, s32); - -int func_80188754(int param_1, short param_2) -{ - int iVar1; - unsigned int uVar2; - int iVar3; - SVECTOR sv1; - SVECTOR sv2; - - if (*(int *)(param_1 + 0xdc) != 0) goto ret0; - sv1.vx = *(short *)(param_1 + 6); - sv1.vy = *(short *)(param_1 + 0xa) + -0x20; - sv1.vz = *(short *)(param_1 + 0xe); - iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - iVar3 = (int)param_2; - sv2.vy = sv1.vy; - sv2.vx = sv1.vx - (short)(iVar1 * iVar3 >> 0xc); - iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - sv2.vz = sv1.vz - (short)(iVar1 * iVar3 >> 0xc); - uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); - if ((uVar2 & 0x8000) != 0) { - iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - *(short *)(param_1 + 6) = sv2.vx + (short)(iVar1 * iVar3 >> 0xc); - iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - *(short *)(param_1 + 0xe) = sv2.vz + (short)(iVar1 * iVar3 >> 0xc); - return 1; - } - iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - sv1.vx = *(short *)(param_1 + 6) - (short)(iVar1 * iVar3 >> 0xc); - sv1.vy = *(short *)(param_1 + 0xa) + -0x10; - iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - sv1.vz = *(short *)(param_1 + 0xe) - (short)(iVar1 * iVar3 >> 0xc); - sv2.vx = sv1.vx; - sv2.vy = sv1.vy + 0x20; - sv2.vz = sv1.vz; - uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); - if ((uVar2 & 0x6000) == 0) goto docopy; -ret0: - return 0; -docopy: - *(int *)(param_1 + 4) = *(int *)(param_1 + 0x38); - *(int *)(param_1 + 8) = *(int *)(param_1 + 0x3c); - *(int *)(param_1 + 0xc) = *(int *)(param_1 + 0x40); - return 1; -} - - - - -/* func_80188964 — ov_SC06_008 / ov_SC06_008_jr_8017C294 - * - * Two-arm actor tick keyed on the s16 countdown at actor+0xFC: - * arm A (counter == 0, the FALL-THROUGH / longer block): three func_8012C658 - * spawns with offset pokes, a sound cue, two child-actor state pokes, an - * 8-iteration 0x281 particle burst, then the RTP positional-sound block - * (the byte-proven RTP_SND shape from ov_SC03_099_jr_8017BEBC.c:5406). - * arm B (counter != 0): a func_8012913C(0x23) spawn scattered around the - * actor, VectorNormalSS toward D_801151D4->{0x5C,0x60,0x64}, sound 0xAF8. - * - * Declarations copied VERBATIM from the TU (one-pass grep, D2): - * D_801151D4 src/ov_SC06_008/ov_SC06_008_jr_8017C294.c:323 - * rand :956 - * VectorNormalSS :1849 - * func_8012C658 :2523 - * func_8012C588 :3767 - * func_8012C218 :3782 - * func_8002D4C8 :59 - * func_8004914C :2645 - * func_800491AC :2646 - * func_8012913C :4356 (non-prototype form, BELOW the splice point) - * func_8002AC00 :5447 (block-scope extern only) - * RotTransPers / D_800AF648 / func_8002A04C are not in this TU -> fleet-dominant forms. - */ - -extern s32 rand(void); -extern s32 VectorNormalSS(void *a0, void *a1); -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012C218(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002A04C(s32 a0); -extern void func_8002AC00(s32 a0); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern u8 *func_8012913C(); - -void func_80188964(s32 a0) -{ - - extern s32 D_801151D4; - extern u8 D_800AF648; - - /* L5: slot offsets are exact only through ONE struct — plain array locals - get 8-byte-rounded slots and pushed z/flag to 0x28/0x2C (measured). */ - struct { - u16 nv[4]; /* sp+0x10 */ - s16 rv[4]; /* sp+0x18 */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - - s32 g; - s32 s0; - s32 i; - - g = D_801151D4; - - if (*(s16 *)(a0 + 0xFC) == 0) { - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; - } - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; - } - s0 = func_8012C658(0x32, 2, a0); - if (s0 != 0) { - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; - } - func_8002AC00(0x22); - - s0 = *(s32 *)(a0 + 0xCC); - *(s16 *)(s0 + 0x2) = 2; - *(s16 *)(s0 + 0xFC) = 1; - s0 = *(s32 *)(a0 + 0xD0); - *(s16 *)(s0 + 0x2) = 2; - *(s16 *)(s0 + 0xFC) = 1; - - for (i = 0; i < 8; i++) { - s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x30; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - - L.rv[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.rv[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.rv[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); - } - } - func_8002A04C(a0); - func_8012C218((void *)a0); - } else { - s0 = (s32)func_8012913C(0x23); - if (s0 != 0) { - *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; - *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0xE0; - { - s32 r = rand(); - s32 t = *(u16 *)(a0 + 0xE); - *(s16 *)(s0 + 0x34) = 0x1800; - *(s32 *)(s0 + 0x18) = 0; - *(s32 *)(s0 + 0x14) = 0; - *(s32 *)(s0 + 0x10) = 0; - *(s16 *)(s0 + 0xE) = t + (r & 0x7F) - 0x40; - } - L.nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); - L.nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); - L.nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); - VectorNormalSS(L.nv, L.nv); - *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); - *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); - *(s16 *)(s0 + 0x34) = 0x3000; - func_8002D4C8(0xAF8, 0); - } - *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) - 1; - } -} - - - - -// TARGET: func_80188D68 (ov_SC06_008, TU ov_SC06_008_jr_8017C294.c, 93 ins) -// -// Template: func_801821F8 in this SAME TU (src/ov_SC06_008/ov_SC06_008_jr_8017C294.c, -// around line 5283) is an already-MATCHED sibling (126 ins) with a documented byte-exact -// idiom set (its comment, verbatim): -// @class: plumbing -// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the -// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized -// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args -// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 -// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in -// the `< 1` test. -// -// func_80188D68 is the SAME body with the leading "if (*(short*)(param_1+0xfc)==0) {...}" block -// (the 0x64-indirected 3x int-copy + 3x u16-copy prologue) removed, and the "already fired" gate -// field is 0xe2 instead of 0x102. Confirmed against the target .s: no reference anywhere to 0xfc, -// 0x64, or 0x102/0x20 offsets; the gate compare is `lh $v1, 0xE2($s0)` / `sh $v1(=0xA), 0xE2($s0)`. - -extern void func_8002D4C8(int, int); -extern void func_8016AA50(int, int); -extern s32 func_8016B428(s32); -extern void func_80019064(void *); -extern void func_8002A520(int); -extern void func_8002A790(int); -extern void func_80131E00(int, int); - -void func_80188D68(int param_1) -{ - extern unsigned char D_801D5A38[]; - int cVar1; - int unaff_s1; - - cVar1 = *(unsigned char *)(param_1 + 0x5e); - *(char *)(param_1 + 0xc1) = 0; - *(short *)(param_1 + 0x5e) = 0; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; - if (*(short *)(param_1 + 0xe2) == 0) { - *(short *)(param_1 + 0xe2) = 10; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; - func_8002D4C8(0x9b7, 0); - if (*(short *)(param_1 + 0x60) != 0) { - if (cVar1 == 0x1d) { - *(short *)(param_1 + 0x82) = 0; - *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); - *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); - *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); - } - if (*(int *)(param_1 + 0x78) != 0) { - unaff_s1 = (int)*(short *)(param_1 + 0x60) * - (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; - if (unaff_s1 < 1) { - unaff_s1 = 1; - } - } - *(unsigned short *)(param_1 + 0x76) = - *(unsigned short *)(param_1 + 0x76) - unaff_s1; - func_8016AA50(param_1, unaff_s1); - if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { - ((void (*)(int))func_8016B428)(param_1); - func_80019064(D_801D5A38); - } - } - if (cVar1 != 0x1d) { - if (*(unsigned char *)(param_1 + 0xc8) != 0) { - func_8002A520(param_1); - } - if (*(unsigned char *)(param_1 + 0xc9) != 0) { - func_8002A790(param_1); - } - } - if (*(short *)(param_1 + 0x76) < 1) { - *(short *)(param_1 + 0x5c) = 0; - func_80131E00(param_1, 6); - } - } - return; -} - - - -// @class: schedule -// @stuck: none — MATCH; success-block placed last via `goto big` (bnez forward into epilogue), single cae4 merge kept - -extern int func_8012C354(); -extern void func_800599B8(); -extern void func_8001C214(); -extern void func_80143970(); -extern void func_8012B030(); -extern void func_8012A828(); -extern void func_8012B23C(); -extern int func_8012C658(); -extern void func_8012C218(); -extern void func_8012CAE4(); - - -void func_80188EDC(int param_1) { - - extern u8 D_801D5A58[]; - extern u8 D_801D599C[]; - extern u8 D_801D595C[]; - extern u8 D_801D59A4[]; - extern u8 D_801D597C[]; - extern u8 D_801D9CC4[]; - extern u8 D_801DCF74[]; - extern u8 D_801D5A98[]; - extern u8 D_801DCDDC[]; - extern u8 D_801DCE64[]; - extern u8 D_801DCEEC[]; - int iVar1; - - iVar1 = func_8012C354(param_1, D_801D5A58); - if (iVar1 != 0) { - if (*(short *)(param_1 + 0x70) != 0) { - func_800599B8(D_801D599C, D_801D595C); - func_800599B8(D_801D59A4, D_801D597C); - func_8001C214(*(int *)(param_1 + 0x20), D_801D9CC4); - } - *(u8 *)(param_1 + 0xc0) = 1; - *(int *)(param_1 + 0xb4) = 0xffffdfde; - func_80143970(param_1); - func_8012B030(param_1); - *(short *)(param_1 + 0xae) = 0x2100; - func_8012A828(param_1, D_801DCF74); - *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; - func_8012B23C(param_1); - *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) | 2; - iVar1 = func_8012C658(0x26f, (int)*(short *)(param_1 + 0x70), param_1); - if (iVar1 != 0) { - *(int *)(param_1 + 0xcc) = iVar1; - iVar1 = func_8012C658(0x270, (int)*(short *)(param_1 + 0x70), param_1); - if (iVar1 != 0) goto big; - func_8012C218(*(int *)(param_1 + 0xcc)); - } - func_8012CAE4(param_1); - } - return; -big: - *(int *)(param_1 + 0xd0) = iVar1; - *(u32 *)(param_1 + 0xbc) = (u32)D_801D5A98; - *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) = - *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) | 0x10; - *(short *)(*(int *)(param_1 + 0x20) + 0x18) = 0x2400; - *(short *)(*(int *)(param_1 + 0x20) + 0x1a) = 0x2400; - *(short *)(*(int *)(param_1 + 0x20) + 0x1c) = 0x2400; - *(u16 *)(param_1 + 2) = 8; - func_8012A828(param_1, D_801DCDDC); - func_8012A828(*(int *)(param_1 + 0xcc), D_801DCE64); - func_8012A828(*(int *)(param_1 + 0xd0), D_801DCEEC); - return; -} - - - -/* func_8018908C — ov_SC06_008 / ov_SC06_008_jr_8017C294. MATCH 163/163. - * Family of 7 (ov_SC06_008/010/018/022/024/032/033, all 163 ins, all still in - * nonmatchings) — §136e applies: no twin existed, so this is derived from the .s. - * The byte-proven accumulate head (b744 nested inside b608, then two RE-LOADS of - * *(s32*)(a0+0x20)) is copied verbatim from src/ov_SC03_099/..._jr_8017BEBC.c:5424. - * - * Four levers, each measured against match_one: - * - * 1. NO frame padding. args_size already fills sp+0x00..0x1F, so the four saved - * regs land at 0x20..0x2F and the frame is 0x30 with ZERO locals. A 16-byte - * dead aggregate (idiom 6, added on the first draft from a mis-derived - * args_size=0x10) made it 0x40 — idiom 6 only applies when the reg-save area - * does NOT start at args_size. - * - * 2. BRANCH POLARITY / BLOCK LAYOUT (§3-T4, T7). `if (C) goto X;` followed by a - * `break` is REWRITTEN by jump.c's jump-around-jump inversion into - * `if (!C) goto break_target;` — which is the wrong polarity here. The target - * wants the true arm to FALL THROUGH. Two rewrites, both worth +0 instructions - * but different bytes: - * case 1: `if (A||B) goto st2; break;` -> `if (!A && !B) break; goto st2;` - * (TRUTH_ANDIF gives reversed branches to `next`, and the trailing - * `j st2` is the fall-through — exactly `beqz L600 / j L5E0`.) - * case 3: same shape, plus the range test written as the POSITIVE - * `if (r >= -0xFF && r <= 0xFF) break;` so fold_range_test's - * `sltiu (r+0xFF),0x1FF` branches on TRUE to the switch end and case 3 - * falls through into st2 (saves the `j`+`nop`, 165 -> 163 ins). - * Case 0 keeps the plain `if (A||B) {..} else {..}` — there jump.c's inversion - * IS what the target has. - * - * 3. THE SHARED STORE BLOCK. L801815F8/L801815FC (`li v0,1` / `sh v0,0x34`) sit - * AFTER st2 in the target, so they are NOT inline `else` arms (cross-jumping - * keeps the LAST copy, which would put them BEFORE st2). They are explicit - * trailing labels inside the switch with an `ns` join variable; case 2 enters at - * `setstate` with ns=3, cases 0 and 3 enter at `set1`. - * - * 4. REGALLOC-PERM -> the $16 pin (see below). - */ - -extern s32 rand(void); -extern void func_8012B1B4(s32 a0, s32 a1); -extern void func_8012CBCC(s32 a0); -extern void func_8012BE98(s32 a0, u16 *a1); -extern s32 func_8012B744(void *a0, void *a1); -extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); -extern void func_8012BE54(s32 a0); -extern int func_80188754(int param_1, short param_2); - -void func_8018908C(s32 a0) { - - extern u8 D_801D5AB8[]; - - /* §137/K3+K5: unpinned, the a0-copy allocno (R=37/L=137, pri 13503) is - * ranked first and first-fits $s0, pushing `tbl` to $s1 — a clean 2-reg - * perm no source reordering can flip (pri(tbl) = 394). Pinning `tbl` to - * $16 makes $s0 "already dirty" in find_reg pass 0: the a0 copy conflicts - * with it and opens $s1, and case 3's `d` (which does NOT conflict with - * `tbl`) grabs $s0 in pass 0 — exactly the target's assignment. */ - register s32 tbl __asm__("$16"); - s32 ns; - - tbl = (s32)D_801D5AB8; - func_8012B1B4(a0, tbl); - func_8012CBCC(a0); - - switch (*(u16 *)(a0 + 0x34)) { - case 0: - if (func_80188754(a0, 0x48) != 0 || - ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) > - 0x3FFFF) { - s32 r = func_8012B608( - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), - func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 8); - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; - func_8012B1B4(a0, tbl); - } else { - goto set1; - } - break; - - case 1: - if (func_80188754(a0, 0x48) == 0 && - ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) <= - 0x3FFFF) { - break; - } - goto st2; - - case 2: { - s32 r = func_8012B608( - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), - func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 0x10); - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; - } - func_80188754(a0, 0x48); - { - s16 c = *(s16 *)(a0 + 0x102); - if (c == 0) { - ns = 3; - goto setstate; - } - *(s16 *)(a0 + 0x102) = c - 1; - } - break; - - case 3: { - void *p88 = (void *)(a0 + 0x88); - s32 d = ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)p88); - if (func_80188754(a0, 0x48) == 0) { - if (d > 0x40000) { - s32 r = func_8012B608(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), - func_8012B744((void *)(a0 + 4), p88), 1); - if (r >= -0xFF && r <= 0xFF) { - break; - } - } else { - goto set1; - } - } - } - /* fall through into st2 */ - st2: - *(u16 *)(a0 + 0x34) = 2; - *(u16 *)(a0 + 0x102) = (rand() & 7) + 8; - break; - - set1: - ns = 1; - setstate: - *(u16 *)(a0 + 0x34) = ns; - break; - } - - { - s16 t = *(s16 *)(a0 + 0x100); - if (t != 0) { - *(s16 *)(a0 + 0x100) = t - 1; - } else if (((s32(*)(s32))func_8012BE54)(a0) <= 0x24000) { - *(s16 *)(a0 + 0x2) = 5; - *(s16 *)(a0 + 0x100) = 0x3C; - } - } -} - - -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 func_8004787C(s32 a0); -extern s32 func_80047948(s32 a0); -extern void func_8004914C(); -extern void func_800491AC(); -extern u8 *func_8012913C(s32 a0); -extern void func_8012A828(s32 a0, void * a1); -#define RTP_SND(sndid) \ - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); \ - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); \ - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); \ - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } \ - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } \ - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); \ - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF \ - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { \ - s32 x = (s16)L.sxy[0]; \ - s32 ax; \ - ax = x; \ - if (x < 0) { \ - ax = -x; \ - } \ - ax = ((0xF0 - ax) * 0x7F) / 0xF0; \ - __asm__("" : "=r"(ax) : "0"(ax)); \ - x = (x + 0xF0) / 0x1E; \ - if (x == 0x10) { \ - x = 0xF; \ - } \ - x = x << 8; \ - { \ - s32 flg = 0x3000; \ - func_8002D4C8(sndid, ((ax | flg) | x) & 0xFFFF); \ - } \ - } - -void func_80189318(s32 a0) { - - extern u8 D_800AF648; - extern s32 D_801D591C[]; - extern u8 D_801DCDDC[]; - extern u8 D_801DCE64[]; - extern u8 D_801DCEEC[]; - struct { - s16 pad0[4]; /* sp+0x10 — dead, but sizes the frame (idiom 6) */ - s16 v[3]; /* sp+0x18 */ - s16 pad1; /* sp+0x1E */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - s32 t; - s32 ang; - s32 idx; - s32 m; - s32 c; - s32 p; - - if (*(s16 *)(a0 + 0x98) == 0) { - s32 spr = (s32)func_8012913C(0x7F); - if (spr != 0) { - m = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) - + (func_8004787C(*(s16 *)(a0 + 0x104)) >> 3); - *(s16 *)(spr + 0x6) = *(u16 *)(a0 + 0x6) - (func_8004787C(m) * 0x6C) / 0x1000; - *(s16 *)(spr + 0xA) = *(u16 *)(a0 + 0xA) - 0x34; - *(s16 *)(spr + 0xE) = *(u16 *)(a0 + 0xE) - (func_80047948(m) * 0x6C) / 0x1000; - *(s32 *)(spr + 0x14) = 0x40000; - *(s32 *)(spr + 0x10) = -(func_8004787C(m) * 0xC0); - *(s32 *)(spr + 0x18) = -(func_80047948(m) * 0xC0); - } - t = *(u16 *)(a0 + 0x104) + 0x100; - *(s16 *)(a0 + 0x104) = t; - ang = (s16)t; - idx = ang / 0x100; - m = (s16)(idx % 0x10); - if (ang == 0x100) { - RTP_SND(0x95F) - } else if (m == 0) { - RTP_SND(0x960) - } - *(s32 *)(*(s32 *)(a0 + 0x20) + 0x20) = D_801D591C[m]; - c = *(u16 *)(a0 + 0x100) - 1; - *(s16 *)(a0 + 0x100) = c; - if ((s16)c == 0) { - p = *(s32 *)(a0 + 0xCC); - *(s16 *)(a0 + 0x98) = 1; - if (p != 0) { - *(s16 *)(p + 0x98) = 1; - } - p = *(s32 *)(a0 + 0xD0); - if (p != 0) { - *(s16 *)(p + 0x98) = 1; - } - } - } else if ((*(u16 *)(a0 + 0x72) & 0x4000) != 0) { - *(s16 *)(a0 + 0x2) = 7; - *(s16 *)(a0 + 0x100) = 0x3C; - func_8012A828(a0, D_801DCDDC); - p = *(s32 *)(a0 + 0xCC); - if (p != 0) { - func_8012A828(p, D_801DCE64); - } - p = *(s32 *)(a0 + 0xD0); - if (p != 0) { - func_8012A828(p, D_801DCEEC); - } - } -} - - - -extern void func_8012B370(int a0); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - -void func_801897DC(s32 a0) { - - extern u8 D_800AF648; - - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - } L; - - s16 hp; - s32 p; - - hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); - if (hp < 0x301) { - s32 count; - s32 total; - - count = *(u16 *)(a0 + 0xFC); - total = *(u16 *)(a0 + 0xFE); - count = count + 1; - total = total + count; - *(u16 *)(a0 + 0xFC) = count; - *(u16 *)(a0 + 0xFE) = total; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) + total; - } else { - p = *(s32 *)(a0 + 0xD0); - *(s16 *)(a0 + 2) = 3; - *(s32 *)(a0 + 0x1C) = 0x1E; - *(s16 *)(a0 + 0x98) = 0; - *(s16 *)(p + 2) = 3; - *(s32 *)(p + 0x1C) = 0x1E; - *(s16 *)(p + 0x98) = 0; - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - func_8002D4C8(0x961, (ax | (0x3000 | x)) & 0xFFFF); - } - } - func_8012B370(a0); -} - - -extern s32 func_801823F0(void); - -/* func_801899AC -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (family of 7) - * - * Low-HP flinch/knockback reaction. hp = *(s16*)(a0->0x20 ptr + 0x14). If - * 0 < hp < 0xD00, put self AND the partner at a0->0xCC into stagger state 3 - * (a 0x1E-frame timer, status flag cleared), compute a screen-space - * position via RotTransPers and play a positional sound. Otherwise - * (hp==0 or hp>=0xD00) apply the accumulated hit-combo counter (0xFC/0xFE) - * to the target's HP and re-mask its low 12 bits. - * - * §136c sibling-first: the RTP + positional-sound tail is the byte-proven - * RTP_SND form from func_8018165C in this same TU (line 4746) -- v[]/pad, - * u16 sxy[2], s32 z, s32 flag, and the ax/x div-by-0xF0 / div-by-0x1E - * magic-constant idiom (0x88888889); also confirmed against func_801823F0 - * (same TU) which reuses the identical sndid 0x961 and the identical - * `sx = (sx + 0xF0) / 0x1E; if (sx == 0x10) sx = 0xF; sx <<= 8;` tail. - * - * Control flow: gcc-2.7.2 lays out basic blocks in literal SOURCE order, not - * by fallthrough-preference. A nested-if spelling (`if (hp<0xD00) { state=3; - * if (hp!=0) { B; goto end; } } A; end:`) places B (textually the inner - * then-body) inline right after the tests and relocates A after it -- the - * REVERSE of the target, which has the short block A inline and the long - * RTP+sound block B out-of-line. Explicit goto/label with A written BEFORE B - * in source (`if (hp>=0xD00) goto L_A; state=3; if (hp!=0) goto L_B; L_A: A; - * goto L_end; L_B: B; L_end: ...`) reproduces the target's physical layout - * directly -- no branch-polarity inversion needed, just source ORDER. - * - * Frame: RotTransPers args are sp+0x10 (v), sp+0x18 (&sxy), sp+0x1C (&z), - * sp+0x20 (&flag); v[3]+pad1 fills 0x10-0x17, sxy 0x18-0x1B, z 0x1C-0x1F, - * flag 0x20-0x23 -- leaves a dead 4 bytes (0x24-0x27) before the s0 save at - * 0x28. A trailing `pad2` dead struct member (same aggregate, so it can't - * be eliminated) reserves those 4 bytes, mirroring func_8018165C's own - * "dead aggregate sizes the frame" idiom (comment there: idiom 6). - */ - -extern void func_8012B370(int a0); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - -void func_801899AC(s32 a0) { - - extern u8 D_800AF648; - - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - s32 pad2; /* sp+0x24 -- dead, sizes the frame */ - } L; - - s16 hp; - s32 state; - s32 p; - - hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); - if (hp >= 0xD00) { - goto L_A; - } - state = 3; - if (hp != 0) { - goto L_B; - } - -L_A: - { - s32 count; - s32 total; - - count = *(u16 *)(a0 + 0xFC); - total = *(u16 *)(a0 + 0xFE); - count = count + 1; - total = total + count; - *(u16 *)(a0 + 0xFC) = count; - *(u16 *)(a0 + 0xFE) = total; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) - total; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) & 0xFFF; - } - goto L_end; - -L_B: - p = *(s32 *)(a0 + 0xCC); - *(s16 *)(a0 + 2) = state; - *(s32 *)(a0 + 0x1C) = 0x1E; - *(s16 *)(a0 + 0x98) = 0; - *(s16 *)(p + 2) = state; - *(s32 *)(p + 0x1C) = 0x1E; - *(s16 *)(p + 0x98) = 0; - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 sx = (s16)L.sxy[0]; - s32 av; - av = sx; - if (sx < 0) { - av = -sx; - } - av = ((0xF0 - av) * 0x7F) / 0xF0; - sx = (sx + 0xF0) / 0x1E; - if (sx == 0x10) { - sx = 0xF; - } - sx = sx << 8; - func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); - } - -L_end: - func_8012B370(a0); -} - - -extern s32 func_8012C044(s32 a0); -extern void func_8012C098(void *param_1); -extern void func_8012C218(void *a0); -extern int func_80143C74(short *, int); -extern s32 rand(void); - -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern void func_8002D4C8(s32 a0, s32 a1); - -void func_80189B9C(s32 a0) -{ - - extern void (*D_801D5AC8[])(void); - extern u8 D_800AF648; - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - } L; - - D_801D5AC8[*(u16 *)(a0 + 0x2)](); - - if (*(u16 *)(a0 + 0x0) != 0) { - if (*(s16 *)(a0 + 0x70) == 0 && func_8012C044(a0) != 0) { - if (*(s32 *)(a0 + 0xCC) != 0) { - func_8012C218(*(void **)(a0 + 0xCC)); - } - if (*(s32 *)(a0 + 0xD0) != 0) { - func_8012C218(*(void **)(a0 + 0xD0)); - } - func_8012C098((void *)a0); - } else { - s16 v; - - v = *(s16 *)(a0 + 0xE2); - if (v != 0) { - v = v - 1; - *(s16 *)(a0 + 0xE2) = v; - if (v == 0) { - *(u16 *)(a0 + 0x5C) &= 0xBFFF; - } - } - - if ((*(s16 *)(a0 + 0x76) < 5) && ((rand() & 3) == 0)) { - s32 iVar2 = ((s32 (*)(s32, s32))func_80143C74)(a0, 0); - s32 r; - - if (iVar2 != 0) { - r = rand(); - *(s32 *)(iVar2 + 0x10) = ((r & 0x7FF) - 0x400) << 8; - *(s32 *)(iVar2 + 0x14) = 0xFFF00000; - r = rand(); - *(s32 *)(iVar2 + 0x18) = ((r & 0x7FF) - 0x400) << 8; - r = rand(); - *(u16 *)(iVar2 + 0x6) -= 0x20; - *(u16 *)(iVar2 + 0x6) += (r & 0x3F); - *(s16 *)(iVar2 + 0xA) -= 0xC0; - r = rand(); - *(u16 *)(iVar2 + 0xE) -= 0x20; - *(u16 *)(iVar2 + 0xE) += (r & 0x3F); - } - } - - if (*(u16 *)(a0 + 0x2) != 1 && *(u16 *)(a0 + 0x2) != 5) { - *(s16 *)(a0 + 0x84) = 0xE; - } else { - if (*(s16 *)(a0 + 0x84) != 0) { - *(s16 *)(a0 + 0x84) = *(s16 *)(a0 + 0x84) - 1; - } else { - *(s16 *)(a0 + 0x84) = 0xE; - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x8BF, ((ax | flg) | x) & 0xFFFF); - } - } - } - } - } - } -} - - - -// @class: plumbing -// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the -// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized -// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args -// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 -// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in -// the `< 1` test. - -extern void func_8002D4C8(int, int); -extern void func_8016AA50(int, int); -extern s32 func_8016B428(s32); -extern void func_80019064(void *); -extern void func_8002A520(int); -extern void func_8002A790(int); -extern void func_80131E00(int, int); - -void func_80189EB4(int param_1) -{ - - extern unsigned char D_801D5A38[]; - int cVar1; - int unaff_s1; - - cVar1 = *(unsigned char *)(param_1 + 0x5e); - *(char *)(param_1 + 0xc1) = 0; - *(short *)(param_1 + 0x5e) = 0; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; - if (*(short *)(param_1 + 0xfc) == 0) { - *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x64) + 4); - *(int *)(param_1 + 8) = *(int *)(*(int *)(param_1 + 0x64) + 8); - *(int *)(param_1 + 0xc) = *(int *)(*(int *)(param_1 + 0x64) + 0xc); - *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x10) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x10); - *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x12); - *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x14) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x14); - } - if (*(short *)(param_1 + 0x102) == 0) { - *(short *)(param_1 + 0x102) = 10; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; - func_8002D4C8(0x9b7, 0); - if (*(short *)(param_1 + 0x60) != 0) { - if (cVar1 == 0x1d) { - *(short *)(param_1 + 0x82) = 0; - *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); - *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); - *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); - } - if (*(int *)(param_1 + 0x78) != 0) { - unaff_s1 = (int)*(short *)(param_1 + 0x60) * - (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; - if (unaff_s1 < 1) { - unaff_s1 = 1; - } - } - *(unsigned short *)(param_1 + 0x76) = - *(unsigned short *)(param_1 + 0x76) - unaff_s1; - func_8016AA50(param_1, unaff_s1); - if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { - ((void (*)(int))func_8016B428)(param_1); - func_80019064(D_801D5A38); - } - } - if (cVar1 != 0x1d) { - if (*(unsigned char *)(param_1 + 0xc8) != 0) { - func_8002A520(param_1); - } - if (*(unsigned char *)(param_1 + 0xc9) != 0) { - func_8002A790(param_1); - } - } - if (*(short *)(param_1 + 0x76) < 1) { - *(short *)(param_1 + 0x5c) = 0; - func_80131E00(param_1, 6); - } - } - return; -} - - - - - -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012C218(void *a0); -extern u8 *func_8012913C(s32 a0); -extern s32 func_80047948(s32 a0); -extern s32 func_8004787C(s32 a0); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern s32 VectorNormalSS(void *a0, void *a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018A0AC(s32 a0) { - - extern s32 D_801151D4; - - extern void func_8002AC00(s32 arg0); - extern void func_8002A04C(s32 arg0); - extern u8 D_800AF648; - - u16 v10[4]; /* sp+0x10 */ - s16 v18[4]; /* sp+0x18 */ - s32 sxy; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - s32 base; - s32 iv; - s32 i; - s32 t; - s32 r; - - base = D_801151D4; - - if (*(s16 *)(a0 + 0xFC) >= 0x1F) { - iv = func_8012C658(0x33, 3, a0); - if (iv != 0) { - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; - *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; - *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) - 5; - } - iv = func_8012C658(0x33, 3, a0); - if (iv != 0) { - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; - *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; - *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) + 5; - } - iv = func_8012C658(0x32, 2, a0); - if (iv != 0) { - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; - *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) + 8; - } - - func_8002AC00(0x22); - - iv = *(s32 *)(a0 + 0x64); - *(s16 *)(iv + 2) = 2; - iv = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0); - *(s16 *)(iv + 2) = 4; - *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC) = 0; - - i = 0; - do { - iv = func_8012C588(0x281, a0); - if (iv != 0) { - *(s32 *)(iv + 0x1C) = 2; - *(s16 *)(iv + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(iv + 0x16) = -((rand() & 0x0F) + 0x10); - *(s16 *)(iv + 0x1A) = (rand() & 0x1F) - 0x10; - } - i++; - } while (i < 8); - - v18[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - v18[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - v18[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)v18, (s32)&sxy, &z, &flag); - if (flag >= 0 && (u32)((*(u16 *)&sxy + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((*((u16 *)&sxy + 1) + 0xB3) & 0xFFFF) < 0x167) { - s32 sx; - s32 av; - - sx = (s16)*(u16 *)&sxy; - av = sx; - if (sx < 0) { - av = -sx; - } - /* one local for |x| AND the volume: gcc-2.7.2 keeps the single pseudo - in $v1 in place (subu $v1,$v0,$v1); a separate `vol` local steals $a1 - and the whole OR chain drifts (cookbook §136 L1). */ - av = ((0xF0 - av) * 0x7F) / 0xF0; - sx = (sx + 0xF0) / 0x1E; - if (sx == 0x10) { - sx = 0xF; - } - sx = sx << 8; - func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); - } - - func_8002A04C(a0); - func_8012C218((void *)a0); - return; - } - - iv = (s32)func_8012913C(0x23); - if (iv != 0) { - r = rand(); - *(u16 *)(iv + 0x06) = *(u16 *)(a0 + 0x06) + (r & 0x7F) - 0x40; - r = rand(); - *(u16 *)(iv + 0x0A) = *(u16 *)(a0 + 0x0A) + (r & 0x7F) - 0x80; - r = rand(); - *(u16 *)(iv + 0x0E) = *(u16 *)(a0 + 0x0E) + (r & 0x7F) - 0x40; - - t = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(s32 *)(iv + 0x04) = *(s32 *)(iv + 0x04) + (t << 10); - - t = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(u16 *)(iv + 0x34) = 0x1800; - *(s32 *)(iv + 0x18) = 0; - *(s32 *)(iv + 0x14) = 0; - *(s32 *)(iv + 0x10) = 0; - *(s32 *)(iv + 0x0C) = *(s32 *)(iv + 0x0C) - (t << 10); - - v10[0] = *(s32 *)(base + 0x5C) - *(u16 *)(iv + 0x06); - v10[1] = *(s32 *)(base + 0x60) - *(u16 *)(iv + 0x0A); - v10[2] = *(s32 *)(base + 0x64) - *(u16 *)(iv + 0x0E); - VectorNormalSS(v10, v10); - - *(u16 *)(iv + 0x06) = *(u16 *)(iv + 0x06) + ((s16)v10[0] >> 6); - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) + ((s16)v10[1] >> 6); - *(u16 *)(iv + 0x0E) = *(u16 *)(iv + 0x0E) + ((s16)v10[2] >> 6); - *(u16 *)(iv + 0x34) = 0x3000; - func_8002D4C8(0xAF8, 0); - } - - *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; -} - - - -// @class: struct -// @stuck: none — MATCH - -extern int rand(void); -extern int func_80143C74(short *, int); -extern int func_80047948(int); -extern int func_8004787C(int); - -void func_8018A4F4(short *param_1) -{ - - extern void (*D_801D5B50[])(short *); - int iVar3; - unsigned int uVar2; - short v; - - v = param_1[0x81]; - if (v != 0) { - v = v - 1; - param_1[0x81] = v; - if (v == 0) { - *(unsigned short *)(param_1 + 0x2e) &= 0xbfff; - } - } - D_801D5B50[*(unsigned short *)(param_1 + 1)](param_1); - if (*(unsigned short *)param_1 != 0) { - if (param_1[0x7e] == 0) { - *(int *)(param_1 + 2) = *(int *)(*(int *)(param_1 + 0x32) + 4); - *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x32) + 8); - *(int *)(param_1 + 6) = *(int *)(*(int *)(param_1 + 0x32) + 0xc); - *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x10) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x10); - *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x12) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x12); - *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x14) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x14); - } - if ((param_1[0x3b] < 5) && ((rand() & 3) == 0) && - ((iVar3 = func_80143C74(param_1, 0)) != 0)) { - uVar2 = rand(); - *(int *)(iVar3 + 0x10) = ((uVar2 & 0x7ff) - 0x400) * 0x100; - *(unsigned int *)(iVar3 + 0x14) = 0xfff00000; - uVar2 = rand(); - *(int *)(iVar3 + 0x18) = ((uVar2 & 0x7ff) - 0x400) * 0x100; - *(int *)(iVar3 + 4) += - func_80047948((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; - *(int *)(iVar3 + 0xc) -= - func_8004787C((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; - uVar2 = rand(); - *(short *)(iVar3 + 6) -= 0x20; - *(short *)(iVar3 + 6) += (uVar2 & 0x3f); - *(short *)(iVar3 + 0xa) -= 0x40; - uVar2 = rand(); - *(short *)(iVar3 + 0xe) -= 0x20; - *(short *)(iVar3 + 0xe) += (uVar2 & 0x3f); - } - } - return; -} - - - - -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012C218(void *a0); -extern u8 *func_8012913C(); -extern s32 rand(void); -extern s32 func_80047948(s32 a0); -extern s32 func_8004787C(s32 a0); -extern s32 VectorNormalSS(void *a0, void *a1); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern void func_8002A04C(s32 a0); - - -void func_8018A704(s32 a0) { - - extern s32 D_801151D4; - - extern u8 D_800AF648; - extern void func_8002AC00(s32 arg0); - - struct { - u16 nv[4]; /* sp+0x10 */ - s16 v[4]; /* sp+0x18 */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - s32 p; - s32 s0; - s32 i; - - p = D_801151D4; - - if (*(s16 *)(a0 + 0xFC) >= 0x1F) { - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; - } - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; - } - s0 = func_8012C658(0x32, 2, a0); - if (s0 != 0) { - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; - } - func_8002AC00(0x22); - s0 = *(s32 *)(a0 + 0x64); - *(s16 *)(s0 + 0x2) = 4; - s0 = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC); - *(s16 *)(s0 + 0x2) = 4; - - for (i = 0; i < 8; i++) { - s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); - } - } - - *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0) = 0; - func_8002A04C(a0); - func_8012C218((void *)a0); - return; - } - - s0 = (s32)func_8012913C(0x23); - if (s0 != 0) { - *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; - *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0x80; - *(s16 *)(s0 + 0xE) = *(u16 *)(a0 + 0xE) + (rand() & 0x7F) - 0x40; - - *(s32 *)(s0 + 0x4) = - *(s32 *)(s0 + 0x4) - - func_80047948(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; - { - s32 t = func_8004787C(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; - *(s16 *)(s0 + 0x34) = 0x1800; - *(s32 *)(s0 + 0x18) = 0; - *(s32 *)(s0 + 0x14) = 0; - *(s32 *)(s0 + 0x10) = 0; - *(s32 *)(s0 + 0xC) = *(s32 *)(s0 + 0xC) + t; - } - - L.nv[0] = *(s32 *)(p + 0x5C) - *(u16 *)(s0 + 0x6); - L.nv[1] = *(s32 *)(p + 0x60) - *(u16 *)(s0 + 0xA); - L.nv[2] = *(s32 *)(p + 0x64) - *(u16 *)(s0 + 0xE); - VectorNormalSS(L.nv, L.nv); - - *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); - *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); - *(s16 *)(s0 + 0x34) = 0x3000; - func_8002D4C8(0xAF8, 0); - } - - *(s16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; -} - - - -extern s32 rand(void); -extern s32 func_80143C74(); -extern s32 func_80047948(s32 a0); -extern s32 func_8004787C(s32 a0); - -void func_8018AB48(s32 a0) { - - extern void (*D_801D5BC8[])(s32); - s32 iVar3; - s32 iVar4; - s32 r; - - { - s16 t = *(s16 *)(a0 + 0x102); - if (t != 0) { - t--; - *(s16 *)(a0 + 0x102) = t; - if (t == 0) { - *(u16 *)(a0 + 0x5C) &= 0xBFFF; - } - } - } - - D_801D5BC8[*(u16 *)(a0 + 2)](a0); - - if (*(u16 *)(a0 + 0) != 0) { - if (*(s16 *)(a0 + 0xFC) == 0) { - *(s32 *)(a0 + 4) = *(s32 *)(*(s32 *)(a0 + 0x64) + 4); - *(s32 *)(a0 + 8) = *(s32 *)(*(s32 *)(a0 + 0x64) + 8); - *(s32 *)(a0 + 0xC) = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xC); - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x10) = - *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x10); - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x14); - } - if (*(s16 *)(a0 + 0x76) < 5 && (rand() & 3) == 0 && - (iVar3 = func_80143C74(a0, 0)) != 0) { - *(s32 *)(iVar3 + 0x10) = ((rand() & 0x7FF) - 0x400) << 8; - *(s32 *)(iVar3 + 0x14) = 0xFFF00000; - *(s32 *)(iVar3 + 0x18) = ((rand() & 0x7FF) - 0x400) << 8; - iVar4 = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(s32 *)(iVar3 + 4) = *(s32 *)(iVar3 + 4) - iVar4 * 0x400; - iVar4 = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(s32 *)(iVar3 + 0xC) = *(s32 *)(iVar3 + 0xC) + iVar4 * 0x400; - r = rand(); - { - s32 m6 = *(u16 *)(iVar3 + 6) - 0x20; - *(u16 *)(iVar3 + 6) = m6 + (r & 0x3F); - } - *(u16 *)(iVar3 + 0xA) = *(u16 *)(iVar3 + 0xA) - 0x40; - r = rand(); - { - s32 mE = *(u16 *)(iVar3 + 0xE) - 0x20; - *(u16 *)(iVar3 + 0xE) = mE + (r & 0x3F); - } - } - } -} - - - - -// @class: schedule -// @stuck: none — MATCH. Two levers: (1) split rand()-result into its own var (shared iVar1 forced an extra move a0,v0); (2) reorder decrement before sp[0] to group the two lhu loads as target's scheduler does; (3) materialize &D_80126B96 via a local u16* to CSE the address (lui+addiu once) instead of %hi/%lo split-per-access. - - - - - - - - -extern void func_80128EA8(); -extern void func_8012931C(); -extern s32 func_80128ED8(s32 param_1, s32 *param_2); -extern u8 *func_8012913C(); -extern void func_801292C8(); -extern int func_8012D664(); - -extern u16 D_801270C0; - -void func_8018AD58(s32 arg0) { - - extern u8 D_801D59AC; - extern u8 D_801D59B8; - extern u16 D_80126B96; - s32 iVar1; - s32 rv; - u8 *p; - u16 sp[3]; - - if (*(u16 *)(arg0 + 2) == 0) { - *(u8 **)(*(s32 *)(arg0 + 0x20) + 0x20) = &D_801D59AC; - *(u32 *)(*(s32 *)(arg0 + 0x20) + 4) |= 0x50000000; - *(u8 *)(*(s32 *)(arg0 + 0x20) + 0x27) = 0x59; - func_80128EA8(*(s32 *)(arg0 + 0x20), arg0 + 0x24, (s32)&D_801D59B8); - rv = rand(); - *(s32 *)(arg0 + 0x1c) = 0x10; - *(s32 *)(arg0 + 0x2c) = 0x200; - *(s16 *)(arg0 + 0x28) = rv % 15; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = 0x1200; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = 0x1200; - *(u16 *)(arg0 + 2) = *(u16 *)(arg0 + 2) + 1; - } else if (*(s16 *)&D_801270C0 == 1) { - func_8012931C(arg0); - func_80128ED8(*(s32 *)(arg0 + 0x20), arg0 + 0x24); - *(s32 *)(arg0 + 0x1c) -= 1; - if ((rand() & 7) == 0 && (p = func_8012913C(0x22)) != 0) { - *(u16 *)(p + 6) = *(u16 *)(arg0 + 6); - *(u16 *)(p + 0xa) = *(u16 *)(arg0 + 0xa); - *(u16 *)(p + 0xe) = *(u16 *)(arg0 + 0xe); - *(s32 *)(p + 0x10) = *(s32 *)(arg0 + 0x10) >> 3; - *(s32 *)(p + 0x14) = *(s32 *)(arg0 + 0x14) >> 3; - *(s32 *)(p + 0x18) = *(s32 *)(arg0 + 0x18) >> 3; - *(s16 *)(p + 0x34) = *(u16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + 1; - *(u16 *)(*(s32 *)(p + 0x20) + 0x2c) = 0xc008; - } - if (*(s32 *)(arg0 + 0x1c) == 0) { - func_801292C8(arg0); - } else { - *(s32 *)(arg0 + 0x14) = 0xffff0000; - iVar1 = *(s32 *)(arg0 + 0x2c) + 0x80; - *(s32 *)(arg0 + 0x2c) = iVar1; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + (s16)iVar1; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) + (s16)*(s32 *)(arg0 + 0x2c); - *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) - 0x20; - sp[0] = *(u16 *)(arg0 + 6); - sp[1] = *(u16 *)(arg0 + 0xa); - sp[2] = *(u16 *)(arg0 + 0xe); - if (func_8012D664(sp, 0x10, 0xb4) == 1) { - u16 *q = &D_80126B96; - *q |= 0x4200; - } - *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) + 0x20; - } - } -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018AFDC); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018AFFC); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018B0FC); - - -extern void func_8012B370(int a0); -extern void func_8012C218(void *a0); -extern s32 func_8012C588(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018B19C(s32 a0) -{ - s32 t; - register s32 *a1 asm("$5"); - u32 v0; - - t = *(s32 *)(a0 + 0x1C) - 1; - *(s32 *)(a0 + 0x1C) = t; - - if (t != 0) { - a1 = *(s32 **)(a0 + 0x20); - v0 = *(u32 *)(a1 + 0x1); - v0 ^= 0x80000000; - *(u32 *)(a1 + 0x1) = v0; - ((void (*)(void))func_8012B370)(); - - t = *(s32 *)(a0 + 0x1C); - if ((t & 0x3) != 0) { - s32 s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - return; - } - - func_8012C218((void *)a0); -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018B25C); - - - - - - - - - - - - - - - - - - - -void func_8018B2F4(void *a0) -{ - s32 v0 = *((s32 *) (((s32) a0) + 0x64)); - *((s16 *) (v0 + 0x5C)) = 0; - ; - *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xD0))) + 0x5C)) = 0; -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018B314); - -void func_8018B404(void) { -} - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018B40C); - - -extern void func_8012B370(int a0); -extern void func_8012C218(void *a0); -extern s32 func_8012C588(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018B4E0(s32 a0) -{ - s32 t; - register s32 *a1 asm("$5"); - u32 v0; - - t = *(s32 *)(a0 + 0x1C) - 1; - *(s32 *)(a0 + 0x1C) = t; - - if (t != 0) { - a1 = *(s32 **)(a0 + 0x20); - v0 = *(u32 *)(a1 + 0x1); - v0 ^= 0x80000000; - *(u32 *)(a1 + 0x1) = v0; - ((void (*)(void))func_8012B370)(); - - t = *(s32 *)(a0 + 0x1C); - if ((t & 0x3) != 0) { - s32 s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - return; - } - - func_8012C218((void *)a0); -} - - -extern void func_8012B370(int a0); - void func_8018B5A0(void) { - ((void (*)(void))func_8012B370)(); - } - - - - - - - - - - - - - - - - - - - - -void func_8018B5C0(void *a0) -{ - s32 v0 = *((s32 *) (((s32) a0) + 0x64)); - *((s16 *) (v0 + 0x5C)) = 0; - ; - *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xCC))) + 0x5C)) = 0; -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018B5E0); - -void func_8018B6D4(void) { -} - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018B6DC); - - -extern void func_8012B370(int a0); -extern void func_8012C218(void *a0); -extern s32 func_8012C588(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018B7D0(s32 a0) -{ - s32 t; - register s32 *a1 asm("$5"); - u32 v0; - - t = *(s32 *)(a0 + 0x1C) - 1; - *(s32 *)(a0 + 0x1C) = t; - - if (t != 0) { - a1 = *(s32 **)(a0 + 0x20); - v0 = *(u32 *)(a1 + 0x1); - v0 ^= 0x80000000; - *(u32 *)(a1 + 0x1) = v0; - ((void (*)(void))func_8012B370)(); - - t = *(s32 *)(a0 + 0x1C); - if ((t & 0x3) != 0) { - s32 s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - return; - } - - func_8012C218((void *)a0); -} - - -extern void func_8012B370(int a0); - void func_8018B890(void) { - ((void (*)(void))func_8012B370)(); - } - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018B8B0); - - -/* TU declares func_8018B9E8 as void(void) (S35 self-axis) but the asm takes - * $a0 as a pointer parameter — bind through a private C name. */ -extern void aF8017ED80(void *param_1) __asm__("func_8018B9E8"); - -void aF8017ED80(void *param_1) { - u8 *a0 = (u8 *)param_1; - s32 pad_[4]; - s32 iVar2; - u32 uVar1; - - if (*(u16 *)(a0 + 0x0) != 0) { - iVar2 = *(s32 *)(a0 + 0xCC); - *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); - *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); - *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); - *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); - *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFC); - *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); - *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); - *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); - *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); - if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { - register u32 val __asm__("$2"); - val = *(u32 *)(iVar2 + 0x4); - uVar1 = val | 0x80000000; - } else { - __asm__ __volatile__(""); - uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; - } - *(u32 *)(iVar2 + 0x4) = uVar1; - - iVar2 = *(s32 *)(a0 + 0xD0); - *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); - *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); - *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); - *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); - *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFE); - *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); - *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); - *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); - *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); - if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { - register u32 val __asm__("$2"); - val = *(u32 *)(iVar2 + 0x4); - uVar1 = val | 0x80000000; - } else { - __asm__ __volatile__(""); - uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; - } - *(u32 *)(iVar2 + 0x4) = uVar1; - } -} - - - -/* func_8018BBBC -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (open-only h_norm - * cluster exemplar, 7 members). - * - * a0+0x0 : u16 active flag; 0 => early return. - * a0+0x84 : s16 sound cooldown timer. - * cooldown != 0 -> just decrement it. - * cooldown == 0 -> try to play a positional sound (RotTransPers screen - * projection of the parent's position, range-gated on - * screen X/Y, volume from the classic div-by-0xF0 / - * div-by-0x1E magic-constant idiom -- byte-proven sibling - * form is func_80181CF0 in this same TU, sndid 0x849 here - * vs 0x961 there), then unconditionally reset the timer - * to 0xA regardless of whether the sound actually played. - * a0+0xFC / 0xFE : running hit-combo accumulators, bumped by +/-0x280 every - * call (unconditional tail). - * Tail always calls ((void (*)(void *))func_8018B9E8)(a0) (the TU's canonical decl for this - * symbol is void(void) -- S35 self-axis -- so this draft binds its own - * private extern with the asm's real void(void*) shape). - * - * Control flow is EXPLICIT goto/label, mirroring source-order block - * placement (gcc-2.7.2 lays out basic blocks in literal source order, not by - * fallthrough preference -- see the func_80181CF0 comment, same TU): the - * cooldown!=0 decrement is the SHORT block and sits out-of-line (jumped to), - * the cooldown==0 RTP+sound block is the LONG block and sits inline - * (fallthrough), matching the target's physical layout exactly. - * - * MATCH levers (byte-proven, 2026-08-05): - * 1. Naive `if(old!=0){cool=old-1;}else{...}` folds trivially: reorg.c's - * delay-slot filler steals the single-insn decrement into the `bnez`'s - * own delay slot and retargets the branch straight to the join label - * (2 ins short of target). The target instead keeps a genuine copy - * (`addu $v1,$v0,zero`) in the delay slot and a SEPARATE `addiu $v0,$v1,-1` - * at the decrement site. Reproduced by pinning a second variable - * `register s32 v1 __asm__("$3")`, assigned UNCONDITIONALLY right after - * the load (`v1 = old;`) -- the scheduler places that copy in the - * branch's delay slot on its own, and the decrement (`cool = v1 - 1`) - * can no longer be folded away. `cool` is separately pinned to - * `__asm__("$2")` so its other def sites (the three `cool = 0xA` early - * exits) don't drift onto $3 by coalescing with v1. - * 2. The tail's `sh $v0,0x84($s0)` / `addu $a0,$s0,zero` order (store off - * the callee-saved pointer BEFORE reloading it into the call-argument - * register) needed a `__asm__ __volatile__("":::"memory")` fence right - * after the store -- without it, sched1 hoists the independent a0-reload - * ahead of the store even when the reload is written later in source. - * 3. Frame is -0x38, 8 bytes (2 words) larger than the natural -0x30 the - * locals alone produce; `pad2[2]` (dead, address never read) inside `L` - * reserves them, mirroring func_80181CF0's own "dead aggregate sizes the - * frame" idiom. - */ - - -/* §37/§124 def-side asm-label alias (P30 S1d class lever): the TU declares - * `extern void func_8018BBBC(void);` (L4082, L4091) for callers that invoke it with NO args, - * while the byte-true definition takes an s32 in $a0 -> `conflicting types`. Neither side can - * move (a no-prototype escape is illegal once a param promotes), so the DEFINITION gets a - * private C identifier and binds the emitted symbol with a GNU asm label. Zero blast radius: - * the TU's declaration never meets the definition, and the emitted symbol is unchanged. */ -void aF8017EF54(s32 a0) __asm__("func_8018BBBC"); - -void aF8017EF54(s32 a0) -{ - extern void func_8004914C(void *a0); - extern void func_800491AC(void *a0); - extern void func_8002D4C8(s32 a0, s32 a1); - extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - extern u8 D_800AF648; - extern void func_8018B9E8(void); - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - s32 pad2[2]; /* sp+0x24 -- dead, sizes the frame */ - } L; - - register s32 v1 __asm__("$3"); - register s32 cool __asm__("$2"); - s32 old; - - if (*(u16 *)(a0 + 0x0) == 0) { - return; - } - - old = *(s16 *)(a0 + 0x84); - v1 = old; - if (old != 0) { - goto L_dec; - } - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - - if (L.flag < 0) { - cool = 0xA; - goto L_join; - } - if ((u32)((L.sxy[0] + 0xEF) & 0xFFFF) >= 0x1DF) { - cool = 0xA; - goto L_join; - } - if ((u32)((L.sxy[1] + 0xB3) & 0xFFFF) >= 0x167) { - goto L_snd_skip; - } - - { - s32 sx = (s16)L.sxy[0]; - s32 av; - - av = sx; - if (sx < 0) { - av = -sx; - } - av = ((0xF0 - av) * 0x7F) / 0xF0; - sx = (sx + 0xF0) / 0x1E; - if (sx == 0x10) { - sx = 0xF; - } - sx = sx << 8; - func_8002D4C8(0x849, (av | (0x3000 | sx)) & 0xFFFF); - } - -L_snd_skip: - cool = 0xA; - goto L_join; - -L_dec: - cool = v1 - 1; - -L_join: - *(s16 *)(a0 + 0x84) = cool; - __asm__ __volatile__("" ::: "memory"); - - { - s32 p = a0; - *(u16 *)(p + 0xFC) = *(u16 *)(p + 0xFC) + 0x280; - *(u16 *)(p + 0xFE) = *(u16 *)(p + 0xFE) - 0x280; - ((void (*)(void *))func_8018B9E8)((void *)p); - } -} - - - -extern s32 rand(void); -extern s32 VectorNormalSS(void *a0, void *a1); -extern s32 func_8012C588(s32 a0, s32 a1); -extern u8 *func_8012913C(); -extern void func_8018B9E8(void); - -void func_8018BD68(s32 a0) -{ - - extern s32 D_801151D4; - u16 nv[4]; - s32 g; - s32 s0; - s32 idx; - - g = D_801151D4; - - if (*(u16 *)a0 != 0) { - idx = *(s32 *)(a0 + 0x1C) & 3; - switch (idx) { - case 0: - s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - break; - case 1: - break; - case 2: - case 3: - s0 = (s32)func_8012913C(0x23); - if (s0 != 0) { - *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x3F) - 0x20; - *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x3F) - 0x30; - { - s32 r = rand(); - s32 t = *(u16 *)(a0 + 0xE); - *(s32 *)(s0 + 0x18) = 0; - *(s32 *)(s0 + 0x14) = 0; - *(s32 *)(s0 + 0x10) = 0; - *(s16 *)(s0 + 0xE) = t + (r & 0x3F) - 0x20; - } - *(s16 *)(s0 + 0x34) = (rand() & 0x17FF) + 0x800; - nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); - nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); - nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); - VectorNormalSS(nv, nv); - *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)nv[0] >> 6); - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)nv[1] >> 6); - *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)nv[2] >> 6); - } - break; - } - ((void (*)(s32))func_8018B9E8)(a0); - } -} - - - -extern void func_8012B1B4(s32 a0, s32 a1); -extern void func_8012CBCC(s32 a0); -extern void func_8012BE98(s32 a0, u16 *a1); -extern void func_8012BE54(s32 a0); -extern s32 func_8012B744(void *a0, void *a1); -extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); -extern s32 func_8018B8B0(s32 a0, s32 a1); - -void func_8018BF50(s32 a0) -{ - s16 hi; - s16 pos; - s32 sp10[3]; - u16 state; - - hi = *(s16 *)(a0 + 0x8A); - pos = *(s16 *)(a0 + 0xA); - - if (pos >= hi - 8) { - if (*(s32 *)(a0 + 0x48) >= 0) { - *(s32 *)(a0 + 0x48) = -0x8000; - *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; - } - } else { - if (hi + 8 >= pos) { - if (*(s32 *)(a0 + 0x48) <= 0) { - *(s32 *)(a0 + 0x48) = 0x8000; - *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; - } - } - } - - if (*(s32 *)(a0 + 0xDC) < -0x40000) { - *(s32 *)(a0 + 0xDC) = -0x40000; - } - - sp10[0] = 0; - sp10[1] = 0; - sp10[2] = *(s32 *)(a0 + 0xDC); - func_8012B1B4(a0, (s32)sp10); - func_8012CBCC(a0); - - state = *(u16 *)(a0 + 0x34); - switch (state) { - case 0: { - register s32 s0v __asm__("$16"); - s32 ret; - s32 p744; - s32 v1p; - s16 snd; - s32 b608; - register s32 p20 __asm__("$4"); - - s0v = a0 + 0x88; - ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s0v); - if (ret <= 0x3FFFF) { - if (func_8018B8B0(a0, 0x51) == 0) { - goto set_state1; - } - } - p744 = func_8012B744((void *)(a0 + 4), (void *)s0v); - v1p = *(s32 *)(a0 + 0x20); - snd = *(s16 *)(v1p + 0x12); - b608 = func_8012B608(snd, p744, 8); - p20 = *(s32 *)(a0 + 0x20); - *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; - v1p = *(s32 *)(a0 + 0x20); - *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; - func_8012B1B4(a0, (s32)sp10); - break; - } - case 1: { - s32 ret; - - *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; - ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)); - if (ret > 0x3FFFF) { - goto rand_tail; - } - if (func_8018B8B0(a0, 0x51) == 0) { - goto end_switch; - } - goto rand_tail; - } - case 2: { - s32 p744; - s32 v1p; - s16 snd; - s32 b608; - s32 p20; - - p744 = func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)); - v1p = *(s32 *)(a0 + 0x20); - snd = *(s16 *)(v1p + 0x12); - b608 = func_8012B608(snd, p744, 0x10); - p20 = *(s32 *)(a0 + 0x20); - *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; - v1p = *(s32 *)(a0 + 0x20); - *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; - *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) >> 1; - func_8018B8B0(a0, 0x51); - if (*(s16 *)(a0 + 0x102) == 0) { - *(u16 *)(a0 + 0x34) = 3; - } else { - *(s16 *)(a0 + 0x102) = *(s16 *)(a0 + 0x102) - 1; - } - break; - } - case 3: { - register s32 s2v __asm__("$18"); - s32 ret; - s32 p744; - s32 v1p; - s16 snd; - s32 b608; - - s2v = a0 + 0x88; - ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s2v); - *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; - if (func_8018B8B0(a0, 0x51) != 0) { - goto rand_tail; - } - if (ret <= 0x40000) { - goto set_state1; - } - p744 = func_8012B744((void *)(a0 + 4), (void *)s2v); - v1p = *(s32 *)(a0 + 0x20); - snd = *(s16 *)(v1p + 0x12); - b608 = func_8012B608(snd, p744, 1); - if ((u32)(b608 + 0xFF) < 0x1FF) { - goto end_switch; - } - goto rand_tail; - } - } - goto end_switch; - -rand_tail: - *(u16 *)(a0 + 0x34) = 2; - { - s32 r = rand(); - *(s16 *)(a0 + 0x102) = (r & 7) + 8; - } - goto end_switch; - -set_state1: - *(u16 *)(a0 + 0x34) = 1; - -end_switch: - if (*(s16 *)(a0 + 0x100) != 0) { - *(s16 *)(a0 + 0x100) = *(s16 *)(a0 + 0x100) - 1; - } else { - s32 ret3; - - ret3 = ((s32 (*)(s32))func_8012BE54)(a0); - if (ret3 <= 0x24000) { - *(s16 *)(a0 + 0x2) = 2; - *(s16 *)(a0 + 0x100) = 0x3C; - } - } -} - - - - -extern s32 func_80188204(s32 a0, s32 a1); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012F14C(s32 a0, s32 a1, s32 a2); -extern void func_8012B370(int a0); -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - - -void func_8018C28C(s32 param_1) -{ - - extern u8 D_801DD650; - extern u8 D_801DD658; - extern u8 D_801DD660; - extern u8 D_800AF648; - /* L5: slot offsets are exact only through ONE struct — copied verbatim - from the banked RTP_SND sibling func_80180CA8 (same TU) so the - sp+0x10.."0x2B layout reproduces byte-for-byte. */ - struct { - u16 nv[4]; /* sp+0x10 */ - s16 rv[4]; /* sp+0x18 */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - - s16 sVar1; - s32 s0; - - if (*(s32 *)(param_1 + 0x1c) == 0) { - sVar1 = *(s16 *)(param_1 + 0x100) - 1; - *(s16 *)(param_1 + 0x100) = sVar1; - if (sVar1 == 0) { - *(s16 *)(param_1 + 2) = 1; - *(s16 *)(param_1 + 0x100) = 0x3c; - *(s16 *)(param_1 + 0x8a) = *(s16 *)(param_1 + 0xa) - 0x140; - } else { - *(s32 *)(param_1 + 0x1c) = (sVar1 == 1) ? 0x3c : 3; - - func_80188204(param_1, (s32)&D_801DD650); - - s0 = func_8012C588(0x260, param_1); - if (s0 != 0) { - ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DD658, (s32)L.nv); - *(s16 *)(s0 + 6) = L.nv[0]; - *(s16 *)(s0 + 0xA) = L.nv[1]; - *(s16 *)(s0 + 0xE) = L.nv[2]; - func_8012B370(s0); - func_8012C658(0x261, 0, s0); - } - - s0 = func_8012C588(0x260, param_1); - if (s0 != 0) { - ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DD660, (s32)L.nv); - *(s16 *)(s0 + 6) = L.nv[0]; - *(s16 *)(s0 + 0xA) = L.nv[1]; - *(s16 *)(s0 + 0xE) = L.nv[2]; - func_8012B370(s0); - func_8012C658(0x261, 1, s0); - } - - L.rv[0] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x48); - L.rv[1] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x4C); - L.rv[2] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x84A, ((ax | flg) | x) & 0xFFFF); - } - } - } - } else { - *(s32 *)(param_1 + 0x1c) = *(s32 *)(param_1 + 0x1c) - 1; - } -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018C534); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018C664); - - -extern void (*D_801DD6B4[])(void); - -void func_8018C73C(void *a0) { - D_801DD6B4[*(u16 *)((s32)a0 + 0x2)](); -} - - - -/* SV4 is the TU-canonical name (src/shared/engine_types.h) for func_8012F214's - * in/out struct (see ov_SC06_008_jr_8017AE2C.c:3135, "SV4 svec" comment: func_8012F214 out). - * Isolated match_one has no include path to that header, so it is typedef'd - * locally here for the standalone compile only. */ - - -/* func_8018C778 - ov_SC06_008 / ov_SC06_008_jr_8017C294 (93 ins) - * - * One-time init (guarded by state flag at +0x34): mirror the +0x64 sub-object's - * +0x20/+0x12 field into our own +0x20 sub-object, kick off two "core" calls, - * pick an entry from the 2-element 12-byte table D_801DD6BC (indexed by the - * s16 at +0x70), then call func_8012F214 with a zeroed input SV4 and read the - * first 3 fields of the output SV4 back into +6/+0xA/+0xE. Sets the countdown - * at +0x1c to 0x5a and marks the state flag +0x34 = 1. - * - * Always-executed tail: bump the +0x20 sub-object's +0x10/+0x12/+0x14 fields - * (reloading the +0x20 pointer fresh for each field -- no CSE across the - * intervening stores, straight literal translation), mirror +0x14 into +0xDC, - * call func_8012CBCC(a0) and test its return (canonical fleet decl is - * void func_8012CBCC(s32 a0); the return value is read via a function- - * pointer cast at the use site, per the established TU idiom -- see - * ov_SC03_099_jr_8017BEBC.c:5630 comment block). If (ret & 0x6000), decrement - * the +0xac counter (signed s16 compare-to-zero on the POST-decrement value -- - * gcc-2.7.2's sll-by-16/bnez idiom for a s16 local) and negate +0xDC into - * +0x14; on the counter hitting zero, call func_8012C218. Finally decrement - * the +0x1c countdown and call func_8012C218 again when IT hits zero. - */ - -extern void func_8012B2CC(s32 a0); -extern void func_8012B23C(s32 a0); -extern void func_8012B14C(s32 a0, s32 a1); -extern void func_8012F214(s32 a0, s32 a1, s32 a2); -extern void func_8012CBCC(s32 a0); -extern void func_8012C218(void *a0); - - -void func_8018C778(s32 a0) -{ - - extern s32 D_801DD6BC; - SV4 in; - SV4 out; - s16 v1; - u16 uStack_c; - - if (*(u16 *)(a0 + 0x34) == 0) { - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); - func_8012B2CC(a0); - func_8012B23C(a0); - func_8012B14C(a0, *(s16 *)(a0 + 0x70) * 12 + (s32)&D_801DD6BC); - - in.a = 0; - in.b = 0; - in.c = 0x10; - func_8012F214(a0, (s32)&in, (s32)&out); - *(u16 *)(a0 + 6) = out.a; - *(u16 *)(a0 + 0xa) = out.b; - uStack_c = out.c; - *(s32 *)(a0 + 0x1c) = 0x5a; - *(u16 *)(a0 + 0x34) = 1; - *(u16 *)(a0 + 0xe) = uStack_c; - } - - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) += -0x80; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) += 4; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) += *(u16 *)(a0 + 0xfc); - - *(s32 *)(a0 + 0xdc) = *(s32 *)(a0 + 0x14); - if ((((s32 (*)(s32))func_8012CBCC)(a0)) & 0x6000) { - register s32 negdc __asm__("$2"); - negdc = -*(s32 *)(a0 + 0xdc); - v1 = *(u16 *)(a0 + 0xac); - v1 -= 1; - *(s16 *)(a0 + 0xac) = v1; - *(s32 *)(a0 + 0x14) = negdc; - if (v1 == 0) { - func_8012C218((void *)a0); - } - } - - { - s32 iVar3 = *(s32 *)(a0 + 0x1c) - 1; - *(s32 *)(a0 + 0x1c) = iVar3; - if (iVar3 == 0) { - func_8012C218((void *)a0); - } - } -} - - - -extern void (*D_801DD6D4[])(void); - -void func_8018C8EC(void *a0) { - D_801DD6D4[*(u16 *)((s32)a0 + 0x2)](); -} - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018C928); - - -extern void func_8002D4C8(s32 arg0, s32 arg1); -extern void func_8018B9E8(void); - -void func_8018C9B0(void *a0) { - func_8002D4C8(0xB32, 0); - ((void (*)(void *))func_8018B9E8)(a0); -} - - -extern void func_8018BBBC(void); - void func_8018C9E8(s32 *param_1) { - *(short *)(*(int *)((char *)param_1 + 0x20) + 0x10) = 0xe00; - ((void (*)(void))func_8018BBBC)(); - } - - - - -extern void func_8018BBBC(void); - void func_8018CA10(s32 arg0) { - s32 temp_v1 = *(s32 *)(arg0 + 0x20); - *(s16 *)(temp_v1 + 0x10) += 0x20; - ((void (*)(void))func_8018BBBC)(); - } - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CA44); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CA90); - -extern void func_8018B9E8(void); - void func_8018CB7C(s32 *a0) { - *(s32 *)((s32)a0 + 0x10) = *(s32 *)((s32)a0 + 0x10) >> 1; - *(s32 *)((s32)a0 + 0x18) = *(s32 *)((s32)a0 + 0x18) >> 1; - ((void (*)(void))func_8018B9E8)(); - } - - - - -extern void func_8018B9E8(void); - void func_8018CBB0(s32 a0) { - s32 v0; - v0 = 0xc; - *(s8 *)(a0 + 0xc1) = v0; - *(s32 *)(a0 + 0x1c) = 0x3c; - ((void (*)(void))func_8018B9E8)(); - } - - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CBDC); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CC68); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CD90); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CEC4); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CF24); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018CFE4); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018D0B8); - -INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_8017BEBC", func_8018D1B0); - - - - diff --git a/src/ov_SC06_022/ov_SC06_022_jr_80184A28.c b/src/ov_SC06_022/ov_SC06_022_jr_80184A28.c new file mode 100644 index 000000000..eb5fa066a --- /dev/null +++ b/src/ov_SC06_022/ov_SC06_022_jr_80184A28.c @@ -0,0 +1,6885 @@ +#include "common.h" +#include "../shared/engine_core.h" + + +/* ==== Phase-26 §8b carried decl layer (jr_isolate_all.py) =================== + * The file-scope decl environment from earlier code regions of this object — + * file-local types, col-0 decls, DEFINE_func macro externs, and each earlier + * definition's implied prototype (types first, then decls in original order). + * Decls emit no code => byte-neutral. See cookbook §8c. */ +typedef struct { + SVECTOR_8016E7C8 v[4]; /* 0x00 */ + s32 f0, f1, f2, f3, f4, f5; /* 0x20..0x37 */ + u8 f6; /* 0x38 */ + u8 pad[7]; /* -> 0x40 */ +} Prim_8016E7C8; +typedef void (*Handler)(struct Entry_8016E95C *); +extern void func_801458E0(void); +extern s32 D_800AE6AC; +extern s32 D_800AE6B0; +extern s16 D_800B9A0A; +extern u8 D_80078E50; +extern void func_800D185C(u8 *a0); +extern void func_801458E8(void); +extern s32 func_80029504(void); +extern void func_80145B24(void); +extern u8 D_8018F850; +extern u8 D_8018F7C0; +extern u8 D_8018F79C; +extern u8 D_8018F778; +extern u8 D_8018F82C; +extern u8 D_8018F808; +extern u8 D_8018F7E4; +extern u8 D_8018F754; +extern void func_80145934(void); +extern u8 D_8018F8E0; +extern u8 D_8018F8BC; +extern u8 D_8018F898; +extern u8 D_8018F874; +extern void func_80145A2C(void); +extern s32 func_800291DC(s32); +extern void func_800291C8(s32, s32); +extern void func_80162120(void); +extern void func_80029124(s32, s32); +extern s32 func_80165A50(s32); +extern void func_80029514(s32); +extern u8 D_800AF630[]; +extern u8 D_80078EC0; +extern s32 func_80028FBC(void); +extern s32 func_80029000(void); +extern s32 func_80028D9C(void); +extern void func_8002D4C8(s32 a0, s32 a1); +extern void func_80145BF8(void); +extern s32 func_800291B4(s32 arg); +extern void func_800291A0(s32, s32); +extern void func_80145C54(void); +extern s32 func_80145CEC(); +extern s32 func_80029178(s32 arg); +extern void func_80146014(s32 a0); +extern unsigned char D_8018ECD8[]; +extern unsigned char D_8018ED08[]; +extern unsigned char D_8018ED58[]; +extern unsigned char D_8018ED88[]; +extern unsigned char D_8018EDB8[]; +extern void func_80145EE8(s32 param_1); +extern void MoveImage(void *a0, s32 a1, s32 a2); +extern void func_80146074(void); +extern s32 func_80146128(void); +extern void func_80146360(void); +extern void func_801463A0(); +extern void func_8014607C(void); +extern u8 D_80078EC1; +extern s32 D_80078EC8; +extern s32 D_8011F730; +extern u16 D_801152B8; +extern u16 D_8012693A; +extern u8 D_80126BE0[]; +extern u8 D_801150F0[]; +extern void *memcpy(void *dst, const void *src, u32 n); +extern void func_80146FC4(s32 a0); +extern void func_80150A70(s32 a0); +extern void func_80147098(s32 *a0); +extern void func_8014A638(s32 arg0); +extern s32 func_80155458(s32 a0); +extern s32 func_80029104(void); +extern void func_80029344(void); +extern void func_8014ADE0(s32 a0); +extern void func_8014B350(s32 a0); +extern void func_8014B7A4(s16 *param_1); +extern s32 func_80161D58(s32 a0); +extern void func_80161A90(s32 a0); +extern void func_8014B504(u16 *a0); +extern void func_80149BEC(s32 a0); +extern void func_8014B5D0(s32 *a0); +extern void func_8014C99C(u8 *a0); +extern void func_8014B190(s32 s0); +extern void func_80148648(s32 a0, s32 a1); +extern s32 func_80149228(s32 a0); +extern void func_8014A59C(s32 a0); +extern void func_8016F14C(void *a0); +extern void func_80154418(void *a0); +extern void func_80154BE4(s32 a0); +extern void func_80165694(s32 arg0); +extern void func_801654A8(s32 a0); +extern void func_8014A680(s32 a0); +extern void func_8014A6A8(s32 a0); +extern void func_8014A71C(s32 a0); +extern void func_80172588(s32 *a0); +extern void func_801473DC(s32 *a0); +extern void func_80015978(s32 a0, s32 *a1); +extern void (*D_8018EE08[])(void *); +extern u8 D_80126BA4; +extern s32 D_80127098; +extern s32 D_80127094; +extern s32 D_80127090; +extern void func_80146534(void); +extern void func_8001D074(s32 a0, s32 a1); +extern void func_80146554(void); +extern void func_80146578(void); +extern void func_8001CFDC(s32, s32); +extern void func_8014659C(void); +extern void func_8001D074(s32, s32); +extern void func_801465C0(void); +extern void func_801465E4(void); +extern void func_801466F0(s32 a0, s32 a1, s32 a2, s32 a3, s32 sp5, s32 sp6, s32 sp7, s32 sp8); +extern s32 D_8011F9D0; +extern s32 func_80146608(s32 a0, s32 a1, s32 a2, s32 a3, s16 arg9, s32 arg10, s32 arg11, s32 arg12, s32 arg13); +extern void func_801466B4(u16 a0, s32 a1, s32 a2, s32 a3, s32 arg5); +extern s32 D_8011F750; +extern s32 D_8011F754; +extern u8 * func_801468C8(s32 arg0, u8 arg1); +extern s32 D_8011D030; +extern s32 func_80146994(s32 a0, s32 a1, s32 a2, s32 a3); +extern s32 func_80146924(s32 a0, s32 a1, s32 a2, s32 a3, s32 arg5); +extern s32 func_80146A6C(s32 a0, void *a1, s32 a2, s32 a3, s32 a4, s32 a5, s32 a6); +extern s32 func_80146994(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern s32 func_801469C8(int a0, void *a1, int a2, int a3, u16 arg5, int arg6, int arg7, int arg8); +extern s32 func_80146B9C(void *a0); +extern void func_80146AB4(s16 a0, s32 a1, s16 a2, s16 a3, u16 a4, s32 a5, s32 a6); +extern u16 D_8011DA28; +extern s32 func_80146B9C(void * arg0); +extern void func_80146C98(s32 *a0, s16 a1); +extern void func_80146CA0(void *a0); +extern void func_80146CB4(void *a0); +extern void func_80146CC8(s32 a0); +extern void func_80146D30(s32 a0); +extern void func_80146D80(s32 *a0); +extern void func_80146DE8(s32 *a0, s32 a1, s32 a2, s32 a3); +extern void func_80146D90(s32 a0); +extern void func_80146DB8(s32 *a0, s32 *a1); +extern void func_80146DF8(s32 *a0, s32 a1, s32 a2, s32 a3, s32 t0); +extern void func_80146E90(s32 *a0, s32 a1); +extern s32 func_80146E98(s32 a0); +extern void func_80015954(s32 a0, s32 a1); +extern void func_80149374(s32 a0, s32 a1); +extern void func_80146F58(s32 a0, s32 a1); +extern void func_80146EC0(s32 a0, s32 a1, s32 a2, s32 a3); +extern s16 func_8012A68C(void); +extern s16 func_8012A758(void); +extern void func_8004978C(s16 *a0, void *a1); +extern void ApplyMatrixSV(void *a0, void *a1, void *a2); +extern u8 D_80126DB0[]; +extern u16 D_80126DB6; +extern void func_8014704C(s32 *a0); +extern s32 func_80147054(void *a0); +extern void func_80147060(u8 * a0); +extern void func_8014706C(void *arg0); +extern void func_80147078(s32 *a0, s16 a1); +extern void func_80147084(s32 *a0); +extern void func_8014708C(void *arg0); +extern s32 func_801470A0(void *a0); +extern void func_801470AC(s32 *a0); +extern void func_801470B4(s32 arg0); +extern void func_801470C0(s32 a0); +extern void func_80147118(s32 a0); +extern s16 D_80126BB8; +extern s16 D_80126BBA; +extern s16 D_80126BBC; +extern void func_80147264(s32 a0); +extern void func_80147290(void); +extern void func_801472B4(void *a0); +extern s32 func_801472C8(struct S *a0); +extern void *D_8012707C; +extern void func_801472DC(void); +extern void func_801472F0(void *a0); +extern void func_80147364(u16, s32); +extern void func_80147300(u16 arg0); +extern void func_80147324(s32 arg0); +extern void func_801473EC(s32 *a0); +extern void func_80147460(s32 a0); +extern void func_80147514(); +extern void func_80147628(s32 a0); +extern void func_80147478(s32 a0); +extern void func_801474D8(s32 *a0); +extern void func_801474EC(s32 *a0); +extern s32 func_80012C6C(s32 a0, s32 a1, s32 a2); +extern s32 func_800129CC(s32 a0, s32 a1); +extern void func_80147514(s32 arg0); +extern void func_80013F3C(s32 a0); +extern void func_80012558(s32 a0, s32 a1); +extern void func_800126C4(s32 a0, s32 a1); +extern void func_800123F0(s32 a0, s32 a1); +extern void func_80147718(s32 a0); +extern void func_80147788(void *a0, s32 a1); +extern void func_801477A8(void *a0, s32 a1); +extern void func_801477C8(void *a0, s32 a1); +extern void func_801477E8(s32 *a0, s32 a1); +extern void func_80147814(s32 a0, s32 a1); +extern void func_80147928(int a0, int a1); +extern void func_8014799C(int a0, int a1); +extern void func_80147A10(int a0, int a1); +extern void func_80147860(int a0, int a1, int a2, int a3); +extern void func_80147948(s32 a0, s32 a1, s32 a2); +extern void func_801479BC(s32 a0, s32 a1, s32 a2); +extern void func_80147A30(s32 a0, s32 a1, s32 a2); +extern void func_801478B8(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147948(int a0, int a1, int a2); +extern void func_801479BC(int a0, int a1, int a2); +extern void func_80147A30(int a0, int a1, int a2); +extern void func_80147AD4(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern void func_80147A84(s32 arg0); +extern void func_80147C30(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern void func_80147AAC(s32 arg0); +extern void func_80147CC8(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4); +extern void func_80147B5C(s32 a0, void *a1); +extern void func_80147AD4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147D38(s32 a0, s32 a1, s32 a2, s32 a3, void *a4); +extern void func_80147B18(s32 a0); +extern void func_80147B5C(s32 arg0, void *arg1); +extern void func_80147C30(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147DC0(s32 a0, s32 a1); +extern void func_80147D38(s32 a0, s32 a1, s32 a2, s32 a3, void * a4); +extern void func_800484EC(s32 a0, s32 a1, s32 a2); +extern void func_80147E44(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147F78(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern void func_80147F50(s32 arg0); +extern void func_80148038(s32 a0, s32 a1); +extern s32 ratan2(s32 a0, s32 a1); +extern s32 csqrt(s32 a0); +extern s32 func_80012A60(s32 a0, s32 a1); +extern void func_80148094(int param_1, short *param_2, int *param_3); +extern void func_801485B8(s32 a0, s32 a1, s32 a2); +extern void func_801484B0(s32 a0, s32 a1); +extern s32 func_80154358(void *a0); +extern void func_801484E8(s32 a0, s32 a1); +extern void func_80148534(s32 a0, s32 a1); +extern void func_8014856C(s32 a0, s32 a1); +extern void func_801485B8(s32 arg0, s32 arg1, s32 arg2); +extern void func_80148634(void *a0); +extern u8 D_800B9A64; +extern s32 func_80014DC0(); +extern s32 func_80014D68(); +extern s32 func_80014D94(); +extern s32 func_80014CF8(); +extern void func_800120DC(); +extern s32 func_800CF8B4(); +extern u16 func_801487F4(s32 *a0); +extern u16 func_80148800(s32 *a0); +extern u8 func_8014880C(s32 *a0); +extern u16 func_80148818(s32 *a0); +extern s32 func_80047D3C(s32 a0); +extern s32 func_80148824(void *arg0); +extern s32 func_801488A8(u8 *a0); +extern s32 func_8014891C(s32 a0); +extern s32 func_80148980(u8 *a0); +extern s32 func_801489E8(s32 a0); +extern s32 func_80148A48(s32 a0); +extern int func_80148AFC(void *a0); +extern void func_80148AAC(u8 *a0); +extern s32 func_80148C18(void); +extern s32 func_80148C20(s32 a0, s16 a1); +extern s32 func_80148C34(s32 a0, s32 a1); +extern s32 func_80148C4C(s32 a0, s32 a1); +extern s32 func_80148C64(s32 a0, s32 a1); +extern s32 func_80148C7C(void); +extern s32 func_80148C84(s32 a0, s32 a1); +extern s32 func_80148C9C(s32 a0, s32 a1); +extern s32 func_80148CB4(s32 a0, s32 a1); +extern s32 func_80148CCC(s32 a0, s32 a1); +extern s32 func_80148CE4(void); +extern s32 func_80148CEC(void); +extern s32 func_80148CF4(s32 a0, s32 a1); +extern s32 func_80148D0C(s32 a0, s32 a1); +extern s32 func_80148D24(void *a0, int a1); +extern s32 func_80148D3C(void); +extern s32 func_80148F60(void); +extern s32 func_80148F68(s32 a0); +extern s32 func_80148F74(s32 a0); +extern s32 func_80148F80(s32 a0); +extern s32 func_80148F8C(s32 a0); +extern s32 func_80148F98(void); +extern s32 func_80148FA0(s32 a0); +extern s32 func_80148FAC(s32 a0); +extern s32 func_80148FB8(s32 a0); +extern s32 func_80148FC4(s32 a0); +extern s32 func_80148FD0(void); +extern s32 func_80148FD8(void); +extern s32 func_80148FE0(s32 a0); +extern s32 func_80148FEC(s32 a0); +extern s32 func_80148FF8(s32 a0); +extern s32 func_80149004(void); +extern void func_8014900C(s32 *a0); +extern void func_80149020(s32 *a0); +extern void func_80149034(s32 *a0); +extern void func_80149048(s32 *a0); +extern void func_8014905C(u8 *a0); +extern void func_801490E0(s32 *a0, s16 a1); +extern void func_801490E8(s32 *a0, s16 a1); +extern void func_801490F0(s32 *a0, s16 a1); +extern void func_80149078(s32 *a0, s32 a1, s32 a2, s32 a3); +extern s32 func_80012B04(s32 a0, s32 a1, s32 a2); +extern void func_801490F8(s32 a0, s32 a1); +extern s32 func_801491C4(s32 a0); +extern s32 func_80149184(s32 a0); +extern void func_80149204(s32 *a0); +extern void func_80149210(s32 a0, s32 a1); +extern s32 func_80149284(s32 *a0, s32 a1); +extern void func_80149350(s32 arg0); +extern void func_80149290(s32 a0); +extern void func_8012F14C(s32 a0, s32 a1, s32 a2); +extern void func_80149374(s32 arg0, s32 arg1); +extern void func_801493D0(s32 param_1, s32 param_2, s32 param_3); +extern void func_8012F038(int param_1, short *param_2, short *param_3); +extern void func_8014942C(s32 arg0); +extern void func_8012EF70(s32 a0, s32 a1); +extern void func_80149544(s32 arg0, s32 arg1, s32 arg2); +extern void func_8012EFB8(s32 a0); +extern void func_80149584(s32 arg0, s32 arg1, s32 arg2); +extern void func_8014964C(s32 param_1, s32 param_2); +extern s32 func_801496D4(void *a0); +extern void func_8015AD08(); +extern void func_80149704(void); +extern void func_8015ACC4(); +extern void func_80149724(void); +extern u8 D_80078EBF; +extern s32 func_80149744(struct S_80149744 *a0); +extern void func_8015F7A0(); +extern void func_80149788(void); +extern void func_801653B8(); +extern void func_80149864(void); +extern s16 currentLocationId; +extern s32 func_8016F1AC(void); +extern s32 func_80149884(void); +extern void func_80160B00(); +extern void func_801498C0(void); +extern s32 func_80149AA8(s32 *a0); +extern s32 func_80149B54(s32 *a0); +extern void func_80146750(void *a0); +extern s32 func_801498E0(s32 *a0); +extern void func_8012E5CC(s32 param_1, u16 param_2, u16 param_3); +extern void func_80147364(u16 a0, s32 a1); +extern s32 func_800CCF28(s32 a0); +extern s32 func_80149954(s32 s0); +extern s32 func_80149A64(s32 *a0); +extern void func_8015DAC4(s32 *a0); +extern void func_8015554C(s32 *a0); +extern void func_80149AD4(s32 *a0); +extern void func_80149B14(s32 *a0); +extern u8 func_8014BEF8(void); +extern s32 func_80149B54(s32 * arg0); +extern void func_8015DE24(s32 *a0); +extern void func_80157510(s32 *a0); +extern void func_80149BAC(s32 *a0); +extern s32 func_80029178(s32 a0); +extern s32 func_80149C08(s32 arg0); +extern void func_801577C8(); +extern void func_80149C94(void); +extern void func_80157D20(void); +extern void func_80149CB4(void); +extern s32 func_80149CD4(s32 a0); +extern u8 func_8014B5B8(s32 *a0); +extern s32 func_80149D10(s32 a0); +extern s32 func_80149E94(s32 a0); +extern s32 func_80149DD8(s32 a0); +extern s32 func_80149D9C(s32 a0); +extern s32 func_80149F2C(s32 a0, s32 a1); +extern s32 func_80149E94(s32 arg0); +extern void func_80149FA8(void); +extern s32 D_8018EED0[]; +extern u8 D_80078E78[]; +extern s32 func_80149FB0(s32 a0); +extern s32 func_80135260(s32 arg0, s32 arg1, s16 *arg2, s16 *arg3); +extern void func_8014A1B0(s32 a0, s32 a1); +extern s32 func_8014A048(s32 param_1); +extern u16 func_80156370(u16 a0); +extern void func_8014C4AC(s32 a0, s32 a1, s32 a2, s16 *a3, s32 a4); +extern void func_8015D4B4(); +extern void func_8014A218(void); +extern s32 func_8014C278(s32 a0, s32 a1, s32 a2); +extern s32 func_8014C2B0(void *a0, void *a1, s32 a2); +extern s32 func_8014A238(s32 arg0); +extern s32 func_8014A2E4(s32 a0); +extern void func_8014A380(s32 a0, s32 a1); +extern s16 D_801152B0; +extern s16 D_801152B4; +extern s32 func_8014A3E0(struct S_8014A3E0 *a0); +extern s32 func_8014A454(s32 a0); +extern s32 func_8014A4B4(void *a0); +extern void func_8015EDD4(); +extern void func_8014A4FC(void); +extern s32 func_8014A674(s32 *a0); +extern s32 func_8014A69C(s32 *a0); +extern s32 func_8014A6C4(s32 a0); +extern void func_8015E184(); +extern void func_8014A830(void); +extern s32 func_80029AF4(void); +extern s32 func_8014A850(s32 param_1); +extern void func_8014AA04(s32 a0); +extern void func_801599A4(void *a0); +extern void func_80159B3C(void *a0); +extern s32 func_80165A20(s32 a0); +extern void func_8014AB7C(); +extern void func_8014AC10(); +extern void func_8014AA28(void); +extern void func_8014AB5C(void); +extern void func_80162CCC(void); +extern void func_8014AB7C(s32 arg0); +extern void func_8014ABF0(void); +extern void func_80016714(void *a0, s32 a1); +extern void func_8014AC10(s32 arg0); +extern void func_8014ACC0(s32 a0, s32 a1); +extern void func_8014AD30(s32 a0, u16 *a1, s32 a2, s32 a3); +extern void func_8014ACE8(void *a0, s32 a1, s32 a2); +extern void func_80146AFC(void *a0); +extern void func_8014ADA8(s32 a0, s32 a1); +extern void func_8014AD7C(s32 a0); +extern s32 D_80078E8C; +extern void func_8014B034(s32 arg0); +extern void func_8014B00C(s32 arg0); +extern void func_8014B084(void); +extern s16 D_80078E90; +extern void func_8014B034(s32 a0); +extern u16 D_80078EAC; +extern u8 D_80078EBA; +extern void func_800D10EC(void); +extern void func_8002AC98(void); +extern s32 func_8014B154(s32 *a0); +extern void func_8014B12C(void); +extern void func_8014B2F8(void); +extern void func_8014B4C4(void); +extern void func_8014B160(s32 a0); +extern s32 func_8016F1C4(void); +extern s16 D_80078E96; +extern s16 D_80078EB8; +extern u16 D_80078EA6; +extern void func_8014B2A8(void); +extern void func_8014B310(void); +extern void func_8014B2D0(void); +extern s32 D_80078E94; +extern s32 D_80078ECC; +extern void func_8014B33C(void); +extern u8 D_80062BF4[]; +extern void func_8014BC80(s32 a0, s32 a1); +extern void func_80019064(void *a0); +extern s32 D_80078E98; +extern void func_80166244(); +extern void func_8014B4D4(void *a0); +extern s16 D_80078E9A; +extern u8 D_80126D1C; +extern s32 D_80126D74; +extern void func_8014B598(s32 a0, s32 a1); +extern void func_8014B5B0(s32 *a0); +extern void func_8014B5C4(s32 *a0, s32 a1, s32 a2); +extern void func_8014B5D8(s32 s1); +extern s32 D_80078E9C; +extern s32 D_80078ED0; +extern void func_8014B6F0(s32 a0, s32 a1); +extern void func_8014B768(s32 a0, s32 a1); +extern void func_8014B944(s32 a0, s32 a1, s32 a2); +extern s32 D_80078EA4; +extern u16 D_80078EB2; +extern s16 D_80078EB4; +extern void func_8014BB0C(void); +extern void func_8014BB24(s32 a0, s32 a1, s32 a2); +extern void func_8014BC0C(s32 a0, s32 a1); +extern void func_8014BC44(s32 a0, s32 a1); +extern u8 D_800B9A17; +extern void func_8014BCC0(s32 a0, s32 a1); +extern u16 D_80078EB6; +extern s32 func_8014BCEC(s32 a0, s32 a1); +extern void func_8014BD24(s32 a0, s32 a1); +extern void func_8014BD60(s32 param_1, s32 param_2); +extern void func_8014BD98(s32 a0, u16 a1); +extern void func_8014BDC8(void); +extern void func_8014BDE0(void); +extern s32 func_8017267C(s32 *a0); +extern s32 func_80013294(void *a0, void *a1); +extern void func_80029ED4(s32 a0); +extern void func_8014BDE8(s32 a0); +extern void func_8014BE78(void); +extern void func_8014BE9C(void); +extern void func_80029124(s32 a0, s32 a1); +extern void func_8014BEC0(void); +extern void func_8014BF18(s32 a0); +extern void func_8014BF48(void); +extern u8 func_8014BF6C(void); +extern void func_8014BF8C(u8 arg0); +extern void func_8014BFB0(void); +extern u8 func_8014BFD4(void); +extern void func_8014BFF4(s32 a0, s32 a1); +extern void func_8014C010(s32 a0, s32 a1); +extern s32 func_8014C050(s32 a0, s32 a1); +extern s32 func_8014C088(s32 a0, s32 a1); +extern s32 func_8014C0C8(s32 a0_unused, s32 a1, s32 a2); +extern s32 func_8014C118(void * a0, s32 a1, s32 a2); +extern s32 func_8014C168(s32 * param_1, s32 param_2); +extern void func_8014C1C8(s32 arg0, s32 arg1, void *arg2); +extern u8 D_8018EF58[]; +extern void func_8014C1A0(s32 arg0, s32 arg1); +extern s32 func_80013328(s32 a0, s32 a1); +extern s32 func_8014C59C(void *a0, void *a1); +extern s32 func_8014C308(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern s32 func_8014C43C(void *a0, s32 a1, s32 a2, s32 a3, s16 a5); +extern s32 func_8014C3A4(void *a0, s32 a1, s32 a2, s32 a3); +extern s32 func_8014C3D0(void *a0, s32 a1, s32 a2, s32 a3); +extern s32 func_8014C43C(void * a0, s32 a1, s32 a2, s32 a3, s16 a4); +extern s32 ratan2(s32 dx, s32 dy); +extern u8 D_8018EF60; +extern s32 func_8014C5FC(s32 a0, s32 a1, void *a2); +extern s16 func_8014C5D0(s32 a0, s32 a1); +extern s32 func_8014C5FC(s32 a0, s32 a1, void * a2); +extern u8 D_80126D17; +extern void func_8014C6AC(void); +extern void func_8014C6C0(void); +extern u8 D_80126D1E; +extern void func_8014C6D0(void); +extern void func_8014C6E0(void); +extern s32 func_8014C860(s32 a0, s32 a1); +extern void func_8014C8C8(s32 a0, s32 *a1); +extern void func_8014C88C(s32 a0); +extern void func_8014C8C8(s32 dst, s32 * src); +extern void func_8014C8F0(s32 arg0); +extern u8 D_801151F0[]; +extern s32 func_8014C918(s32 a0, s32 a1); +extern s32 D_80126B50; +extern void func_8014C968(void); +extern void func_8014C978(void); +extern s32 func_8014C98C(void); +extern void func_80139914(s32 a0); +extern s32 func_8014CA00(s32 a0); +extern u16 func_8014CA70(s32 a0, s32 a1); +extern s32 func_8014CA14(s32 a0, s32 a1); +extern u16 func_8014CAE4(s32 *a0, s32 a1); +extern s32 func_8014CA88(s32 *a0, s32 a1); +extern s32 func_8014CAFC(void); +extern s32 func_8014CB0C(void); +extern s32 func_8014CB1C(void); +extern u8 D_80126D1F; +extern s32 func_8014CB2C(void); +extern s32 func_8014CB58(void); +extern u8 D_80126D1D; +extern void func_8014CB68(void); +extern s32 func_8014CB7C(void); +extern s32 func_8014CB8C(void); +extern short D_80126C9E; +extern void func_8014CB9C(struct Packed8 *a0); +extern s32 D_80126CDC; +extern void func_8014CBD8(void); +extern s16 D_80126CC4; +extern void func_8014CBE8(void); +extern void func_8014CBF8(void *a0); +extern void func_8014D3E0(s32 a0); +extern void func_8014D04C(void); +extern void func_8014CCB4(void); +extern void func_8014CC28(s32 a0); +extern void func_8014CD0C(u8 *a0); +extern s32 func_8014CF04(s32 a0, s32 a1, void *a2); +extern void func_8014CD80(s32 a0, void *a1, void *a2); +extern void func_8014D0A4(s32 a0); +extern s32 func_8014D2A0(s32 a0, void *a1, void *a2); +extern s32 func_8014D12C(s32 a0, void *a1, void *a2); +extern void func_8014D438(s32 a0); +extern void func_8014D3E0(s32 _arg0); +extern void func_8014D610(s32 a0, void *a1, void *a2); +extern s32 func_8014D4C0(s32 a0, void *a1, void *a2); +extern void func_8014D790(s32 a0); +extern void func_8014D738(void); +extern s32 func_8014DD8C(s32 a0, void *a1, void *a2); +extern s32 func_8014D820(s32 a0, u16 *a1, u16 *a2); +extern s32 func_80135888(s32 a0, s32 a1, s32 a2, s32 a3); +extern s32 func_8014DCE0(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8014DD8C(s32 arg0, void *arg1, void *arg2); +extern void func_8014DF94(s32 arg0); +extern void func_8014DF3C(void); +extern s32 func_8014E284(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014E048(s32 a0, u16 *a1, u16 *a2); /* u16*: def lhu semantics (T5b reconcile; ptr param type codegen-neutral for the caller) */ +extern s32 func_80135A4C(s32 a0, s32 a1, s32 *a2, s32 a3); +extern s32 func_80133784(s32 a0, void *a1, s32 a2); +extern u8 D_801152A8[]; /* canonical TU type (engine_core) — read via *(u16*) cast */ +extern s16 D_801152AC; +extern s32 func_8014E048(s32 param_1, u16 * param_2, u16 * param_3); +extern void func_8014E48C(s32 a0); +extern void func_8014E434(void); +extern void func_8014E5B4(s32 a0, void *a1, void *a2); +extern s32 func_8014E514(u8 *a0, s32 a1, s32 a2); +extern void func_8014E6F8(struct SubE6F8 *a0); +extern void func_8014E6A0(void); +extern s32 func_8014E83C(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014E790(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014E790(s32 arg0, s16 * arg1, s16 * arg2); +extern s32 func_8014E83C(s32 arg0, s16 * arg1, s16 * arg2); +extern void func_8014E934(s32 _arg0); +extern s32 func_8014EA4C(void *a0, void *a1, void *a2, s32 a3); +extern s32 func_8014E98C(void *a0); +extern s32 D_801150D8; +extern s16 D_801152AA; +extern u8 D_80126720[]; +extern s16 D_80126724; +extern s32 func_8014EA4C(void * a0, void * a1, void * a2, s32 _arg3); +extern s32 func_8014ED80(struct SubED80 *a0); +extern int D_801E0DF0; +extern void func_8014ED28(s32 _arg0); +extern s32 func_8014EE14(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014EE14(s32 arg0, s16 * arg1, s16 * arg2); +extern s32 func_8014F24C(struct SubF24C *a0); +extern void func_8014F1F4(void); +extern s32 func_8014F2E0(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014F2E0(s32 arg0, s16 * arg1, s16 * arg2); +extern s32 func_8014F4C0(); +extern s32 func_8014F468(void); +extern int func_8014F74C(); +extern int func_8014F6F4(void); +extern u8 D_800D3918[]; +extern u8 D_801152A8[]; +extern s32 D_801152BC; +extern int func_8014F74C(s32 arg0); +extern s32 func_8014FA70(s32 a0); +extern s32 D_801E0DF4; +extern void func_8014FA04(s32 a0); +extern s32 func_8014FBC0(); +extern s32 func_8014FC18(u8 *self); +extern int func_8014FD54(int param_1); +extern void func_8014FCFC(void); +extern void func_80150170(void *a0); +extern s32 func_8014FE60(void *a0); +extern void func_8014FDF4(struct S8014FDF4 *a0); +extern s32 func_8014FE60(void *e); +extern s32 func_80134510(s32 arg); +extern s32 func_80150150(s32 a, s32 b); +extern s32 func_80150460(s32 a, s32 b); +extern void func_801504D8(u16 *a0); +extern s32 func_80150480(s32 _arg0); +extern s32 func_80150528(void *a0, void *a1, void *a2); +extern s32 func_80150528(void *arg0, void *arg1, void *arg2); +extern s32 func_801506A4(s32 a0, s32 a1); +extern s32 func_801505FC(s32 a0); +extern s32 func_801506A4(s32 arg0, s32 arg1); +extern void func_80150820(s32 a0, s32 a1); +extern void func_8015086C(int param_1); +extern s32 func_801508B4(s32 a0); +extern s32 func_8015094C(s32 a0); +extern short func_801508F8(s32 a0); +extern s32 D_8018EF90; +extern s32 D_80126990; +extern s32 D_80126994; +extern u8 D_80126948[]; +extern s32 func_80021174(s32 a0, s32 a1); +extern s32 func_8015094C(s32 param_1); +extern void func_80150B9C(void); +extern s32 func_80151184(s32 a0, s32 a1, s32 a2); +extern s32 func_80150BA4(s32 a0); +extern s32 func_801619D0(void *a0); +extern void func_80150BC8(s32 *a0); +extern s32 func_80150480(s32 a0); +extern u16 D_800AE6DC; +extern void func_80150C48(s32 a0); +extern int func_80151184(int arg, int a1, int a2); +extern int func_80150CA0(int arg); +extern void func_80150EC4(s32 a, s32 b); +extern void func_80150CC4(s32 a); +extern void func_80150CE4(s32 a); +extern void func_80150D04(s32 a); +extern void func_80150D24(s32 a); +extern void func_80150D44(s32 a); +extern void func_80150D64(s32 a); +extern void func_80150D84(s32 a); +extern void func_80150DA4(s32 a); +extern void func_80150DC4(s32 a); +extern void func_80150DE4(s32 a); +extern void func_80150E04(s32 a); +extern void func_80150E24(s32 a); +extern void func_80150E44(s32 a); +extern void func_80150EC4(s32 a0, s32 a1); +extern void func_80150E64(s32 a0); +extern void func_80150E84(s32 a0); +extern void func_80150EA4(s32 a0); +extern u8 D_800AE6C0; +extern s16 D_800AE6C8; +extern s16 D_800AE6CA; +extern s16 D_800AE6CC; +extern s32 D_800AE6C4; +extern s16 D_800AE6CE; +extern u8 D_800AE6BE; +extern u8 D_801201F8[]; +extern void func_80150F78(void); +extern void func_80150F80(s32 a0); +extern int func_80150FB4(int arg); +extern void func_80150FD8(s32 a0); +extern int func_80151014(int arg); +extern void func_80151038(s32 a0); +extern int func_80151070(int arg); +extern int func_80151094(int arg); +extern void func_801510B8(void); +extern void func_801510C0(void); +extern int func_801510C8(int arg); +extern int func_801510EC(int arg); +extern s32 func_8012DB84(void); +extern s32 func_80151110(void); +extern void func_80151130(void); +extern int func_80151138(int arg); +extern void func_8015115C(s32 *a0, s16 a1); +extern s32 func_80151164(s32 a0, s32 a1); +extern s32 func_80151184(s32 arg0, s32 arg1, s32 arg2); +extern void func_801511A8(u8 *a0); +extern void func_801511C4(u8 *a0); +extern int func_80151204(int arg, int a1); +extern int func_801511E0(int arg); +extern int func_80151204(int a0, int a1); +extern void func_80151238(void *a0); +extern void func_8015126C(u16 *p); +extern void func_80151780(s32 a0); +extern void func_801516F0(s32 *a0); +extern void func_8015173C(s32 *a0); +extern s16 D_8011DB1A; +extern s32 D_80127518; +extern s32 D_801151FC; +extern s32 func_801725CC(u8 *a0); +extern s32 func_80029D3C(void); +extern void func_80151878(void); +extern void func_80153B58(s32 *a0); +extern s32 func_80151880(s32 a0); +extern s32 func_801518D8(s32 a0); +extern s32 func_80151944(void); +extern s32 func_80151924(void); +extern void func_8014E934(s32 a0); +extern s32 func_8014F3E8(s32 a0); +extern void func_801519C8(s32 a0); +extern void func_80151980(s32 a0); +extern M2C_UNK D_800D5880; +extern s32 D_800D58AC; +extern void func_80154274(s32 *a0, s32 a1); +extern void func_80154A74(s32 a0, s32 a1); +extern void func_801519C8(s32 arg0); +extern void func_80151C54(s32 a0); +extern void func_801542DC(s32 *a0, s32 a1); +extern void func_8015BDD0(s32 *a0); +extern void func_80165718(s32 a0); +extern u8 D_800D46E4[]; +extern void func_80151AE4(s32 arg0); +extern void (*D_8018F038[])(void); +extern void func_80151D24(void *a0); +extern void func_80151DB0(s32 a0); +extern void func_80151D60(void *a0); +extern s32 func_80172630(u8 *a0); +extern s32 D_80062C14; +extern void func_80151DB0(s32 param_1); +extern void func_80151E78(s32 *a0); +extern void func_80151ECC(struct S80151ECC *a0); +extern void func_80151FB4(s32 a0); +extern void func_80151F38(s32 *a0); +extern void func_801553C0(s32 a0); +extern void func_80153C18(); +extern void (*D_8018F05C[])(void); +extern void func_80152058(void *a0); +extern void func_801520DC(s32 a0); +extern void func_80152094(s32 a0); +extern void func_80147324(s32 a0); +extern u8 D_80062C04[]; +extern M2C_UNK D_8018F04C; +extern void func_801520DC(s32 arg0); +extern void func_801470B4(s32 a0); +extern void func_8015369C(s32 a0); +extern void func_80152194(s32 *a0); +extern s32 func_801536DC(s32 a0); +extern void func_8015220C(s32 a0); +extern s32 func_80153800(s32 a0); +extern void func_801522CC(s32 a0); +extern void func_80152254(s32 *a0); +extern void (*D_8018F070[])(void); +extern void func_80152370(void *a0); +extern void func_801523F4(s32 a0); +extern void func_801523AC(s32 a0); +extern void func_8001382C(s32 a0, void *a1, void *a2); +extern u8 D_8018F07C[]; +extern void func_801523F4(s32 arg0); +extern void func_801525F4(int); +extern s32 func_801535F4(void *arg0); +extern void func_8015BF48(s32 *a0); +extern void func_80152500(int param_1); +extern void func_801525F4(s32 a0); +extern void (*D_8018F08C[])(void); +extern void func_80152698(void *a0); +extern void func_80152714(s32 a0); +extern void func_801526D4(s32 a0); +extern void func_80152790(s32 a0); +extern void (*D_8018F0A4[])(void); +extern void func_8015282C(void *a0); +extern void func_801528B0(s32 a0); +extern void func_80152868(s32 a0); +extern M2C_UNK D_8018F094; +extern void func_801528B0(s32 arg0); +extern void func_8015294C(s32 a0); +extern void func_80152A08(s32 a0); +extern void func_80152AC8(s32 a0); +extern void func_80152A50(s32 *a0); +extern void (*D_8018F0B8[])(void); +extern void func_80152B6C(void *a0); +extern void func_80152BF0(s32 a0); +extern void func_80152BA8(s32 a0); +extern void func_80152C80(s32 *a0); +extern void func_80152C40(s32 *a0); +extern void (*D_8018F0D4[])(void); +extern void func_80152D24(void *a0); +extern void func_80152DA8(s32 a0); +extern void func_80152D60(s32 a0); +extern M2C_UNK D_8018F0C4; +extern void func_80152DA8(s32 arg0); +extern void func_80152E4C(s32 a0); +extern void func_80152EFC(s32 a0); +extern void func_80152FBC(s32 a0); +extern void func_80152F44(s32 *a0); +extern void (*D_8018F0E8[])(void); +extern void func_80153060(void *a0); +extern void func_801530E4(s32 a0); +extern void func_8015309C(s32 a0); +extern void func_80155440(s32 *a0); +extern void func_801530E4(s32 arg0); +extern void func_80153150(struct S80153150 *a0); +extern void func_801531BC(s32 a0); +extern void func_8015327C(s32 a0); +extern void func_80153204(s32 *a0); +extern void (*D_8018F0FC[])(void); +extern void func_80153320(void *a0); +extern void func_801533A4(s32 a0); +extern void func_8015335C(s32 a0); +extern void func_80153410(s32 *a0); +extern void func_80153490(s32 a0); +extern void func_80153550(s32 a0); +extern void func_801534D8(s32 *a0); +extern void (*D_8011DB28)(s32 a0); +extern s32 func_801536DC(s32 param_1); +extern void func_800139C8(s32 a0, void *a1, void *a2); +extern s32 func_80153978(s32 a0, u16 *src); +extern s32 func_80133784(s32 a0, void *src, s32 dst); +extern s32 func_801539F8(s32 a0, void *a1); +extern s32 func_801539F8(s32 a0, void * a1); +extern s32 func_8016DA04(s32 a0); +extern s32 func_80153BD8(s32 a0); +extern s32 func_80153BF0(s32 a0); +extern void func_80153C18(void); +extern u16 D_8011F748; +extern void func_80153C30(void); +extern void func_80153C74(s16 a0, s16 a1); +extern s16 D_8011DB18; +extern void func_80153C44(int a0, int a1, s16 a2); +extern s16 D_8011DB0C; +extern s32 D_80115210; +extern void func_80153C8C(void); +extern void func_80153C9C(void); +extern s32 func_80153CBC(void); +extern s32 D_8018F110; +extern void (*D_8018F138[])(void *a0); +extern void func_80153CCC(S80153CCC *a0); +extern void func_80153D7C(s32 a0); +extern void func_80153D34(s32 a0); +extern u8 D_8018F118; +extern void func_80153D7C(s32 param_1); +extern void func_8015410C(void); +extern void func_80153E00(s32 param_1); +extern void func_80151664(void); +extern void func_80154134(u8 *a0); +extern void func_80154190(u8 *a0, s32 a1); +extern void func_80154150(s32 a0, s32 a1); +extern void func_80154218(u8 *a0, s32 a1, s32 a2); +extern void func_801541D8(u8 *a0, s32 a1, s32 a2); +extern s32 func_801549F8(s32 a0, s32 a1, s32 a2); +extern void func_801542A4(); +extern void func_801542A4(s32 *a0, s32 a1); +extern void func_8015430C(); +extern void func_8015430C(u8 *arg0, s32 arg1, s32 arg2); +extern void func_8015444C(void *a0, s32 *a1, s32 *a2, s32 *a3); +extern s32 func_80154358(void * arg0); +extern void func_80154AB4(s32 a0, s32 a1); +extern void func_80154B20(s32 a0, s32 a1, s32 a2); +extern void func_80154AE0(s32 a0, s32 a1, s32 a2); +extern void func_80154B7C(u8 *a0, s32 a1); +extern void func_80154B4C(u8 *a0, s32 a1); +extern void func_80154BC8(void *a0, s32 a1, s32 a2); +extern void func_80154B98(void *a0, s32 a1, s32 a2); +extern u8 D_800D8D10[]; +extern s16 D_80078E9E; +extern void func_801550FC(s32 a0); +extern void func_80154ED8(s32 a0, s32 a1); +extern void func_80154F9C(s32 a0); +extern void func_800183E0(s32 a0); +extern void func_801550FC(s32 arg0); +extern void func_8001D150(s32, s32); +extern void func_8001D130(int, int); +extern void func_80155150(int param_1); +extern s32 D_800DE2A4[]; +extern void func_801552F4(s32 a0); +extern void func_80155344(s32 a0); +extern s32 func_80155394(s32 *a0); +extern void func_801553A8(s32 *a0); +extern s32 func_80029178(s32); +extern int (*D_8018F184[])(void); +extern s32 func_80155458(s32 param_1); +extern s32 func_801659DC(u8 *a0); +extern s32 func_801554B8(void *arg0); +extern void func_801555F4(void *a0); +extern void func_80155518(s32 *a0); +extern void func_80155580(void *a0); +extern void (*D_8018F188[])(void); +extern s32 func_80161104(void); +extern void func_801555F4(void *); +extern void func_801555BC(void *a0); +extern int func_80155A44(int param_1); +extern int func_80161208(); +extern u8 D_800D4DA8[]; +extern void func_80155B20(s32 *a0); +extern s32 D_800D4DB4; +extern void func_80155B9C(s32 a0); +extern u8 D_800D4DD4[]; +extern void func_80155C0C(s32 *a0); +extern void func_8014ED28(s32 a0); +extern int func_80155FF8(int arg, int a1); +extern s32 D_800D4DF4; +extern void func_80155C64(s32 a0); +extern void func_8015E880(s32 *a0); +extern void func_80155D70(s32 param_1); +extern void func_80155E30(void *a0); +extern s32 func_80161208(); +extern void func_80155EA4(void *arg0); +extern void func_80155F58(void); +extern s32 func_80155F80(); +extern s32 func_80155F60(void); +extern s32 func_80155F80(s32 a0); +extern int func_80155FB0(int arg, int a1); +extern int func_80155FD4(int arg, int a1); +extern int func_80156044(int arg, int a1); +extern s32 func_80029B4C(s32 a0, s32 a1); +extern s32 func_80029BC8(s32 a0, s32 a1); +extern s32 func_80029C44(s32 a0, s32 a1); +extern s32 func_8015640C(s32 a0, s32 a1); +extern s32 rand(void); +extern u32 func_8015616C(s32 param_1, u16 param_2); +extern u16 func_80156370(u16 param_1); +extern s32 func_801564B0(s32 a0); +extern s32 func_8002A1B4(void); +extern s32 func_8002A400(void); +extern s32 func_8002A670(void); +extern s32 func_8002A8E0(void); +extern s32 D_801151E0[]; +extern s32 func_801565C0(void); +extern void func_80156A14(s32 *a0); +extern void func_80156648(s32 *a0); +extern u8 D_8011DAD8[]; +extern s32 func_8014C568(s16 *a0, s16 *a1); +extern void func_801567BC(s32 a0); +extern u8 D_80126730[]; +extern void func_80156848(s32 param_1, s32 param_2); +extern unsigned char D_8011520C[]; +extern unsigned short D_8018F5EC[]; +extern void func_80156A1C(s32 param_1, s32 param_2); +extern s32 D_801150E0[]; +extern void func_80156A88(s32 a0, s32 a1); +extern void func_80156B74(s32 param_1, u32 param_2, u8 *param_3); +extern void func_80156ECC(int param_1, int param_2, int param_3, int param_4, int param_5); +extern void func_80156FA8(s16 *param_1, s16 *param_2, s16 *param_3); +extern void func_80157158(s32 a0, u16 a1, u16 a2, s32 a3, s32 a4, s32 a5, s32 a6, s32 a7, s32 a8, s32 a9, u16 a10, s32 a11, s32 a12); +extern s32 func_80135004(s32 a0, void *a1, s32 a2); +extern u32 func_801571C4(s32 a0, u16 a1, u16 a2, s32 a3, s32 a4, s32 a5, s32 a6, s32 a7, s32 a8, s32 a9, u16 a10, s32 a11, s32 a12); +extern void func_801575E4(void *a0); +extern void func_801574DC(s32 *a0); +extern void func_80157544(void *a0); +extern void (*D_8018F5FC[])(void); +extern void func_8014CC28(s32 a0); /* defined */ +extern s32 func_8014F3E8(s32 a0); /* declared */ +extern void func_8015BDD0(s32 *a0); /* defined */ +extern void func_801575E4(void *a0); /* defined */ +extern void func_80157580(s32 arg0); +extern u8 D_800D4F14[]; +extern void func_801576A8(void *arg0); +extern s32 func_8015773C(u8 *a0); +extern s32 func_8015771C(u8 *a0); +extern s32 func_8015773C(u8 * arg0); +extern int D_801E0E28; +extern void func_801578C0(s32 a0); +extern void func_80157788(int param_1); +extern void func_801577C8(s32 arg0); +extern void (*D_8018F624[])(void); +extern void func_80157808(void *param_1); +extern void func_80157880(s32 a0); +extern s32 func_801725A4(u8 *a0); +extern u8 D_800D5128; +extern u8 D_8018F604; +extern void func_801578C0(s32 param_1); +extern void func_80147A84(int); +extern void func_80148038(int, int); +extern void func_80147460(int); +extern void func_80146D90(int); +extern void func_80161450(void *a0); +extern void func_80157A8C(int); +extern void func_80154A74(int, int); +extern unsigned char D_800D5178; +extern unsigned char D_8018F614; +extern void func_8015795C(int param_1); +extern void func_80161D20(s32 a0, s32 a1); +extern void func_80157A8C(s32 a0); +extern void func_8016706C(s32 a0); +extern u8 D_800D51AC[]; +extern void func_80157AC8(s32 param_1); +extern void func_80157B74(int param_1); +extern void func_8016158C(void *a0); +extern void func_8015BE04(s32 *a0); +extern void func_80157BC8(s32 a0); +extern void func_80157CCC(s32 a0); +extern void func_80157DC4(void *a0); +extern void func_80157FC4(void *a0); +extern void func_80157D74(u16 *a0); +extern void (*D_8018F664[])(void); +extern void func_80157E38(void *); +extern void func_80157E00(void *a0); +extern void func_80157E38(void * a0); +extern s32 func_80157F64(s32 *a0); +extern s32 func_80156600(void *a0); +extern void func_80157EA4(void *a0); +extern void (*D_8018F66C[])(void); +extern void func_80158038(void *); +extern void func_80158000(void *a0); +extern s32 D_800D51E0; +extern s32 D_8018F638; +extern void func_80158038(void * param); +extern u8 D_800D524C[]; +extern void func_80161418(void *a0); +extern void func_801580B4(s32 a0); +extern void func_801581AC(s32 a0); +extern void (*D_8018F678[])(void); +extern void func_8015824C(void *a0); +extern void func_801582C0(void *); +extern void func_80158288(void *a0); +extern u8 D_800D52A8[]; +extern void func_801585A4(s32 *a0); +extern void func_801582C0(void *a0); +extern s32 func_801585AC(s32 *a0); +extern u8 D_800D52E8[]; +extern void func_80158344(s32 *a0); +extern s32 func_801615C4(void *a0, s32 a1); +extern u8 D_8018F648; +extern u8 D_800D533C; +extern void func_80158434(s32 param_1); +extern void func_80158548(s32 param_1); +extern void func_801585EC(u8 *a0); +extern void func_80158794(void); +extern s32 D_801E0E30; +extern s32 D_801E0E3C; +extern s32 D_801E0E40; +extern void func_80158880(s32 *param); +extern void func_8015879C(s32 param_1); +extern void func_80158814(void *arg0); +extern void (*D_8018F6B4[])(s32 *); +extern void func_80158AE4(void *a0); +extern void func_80158AB4(void *a0); +extern void func_8016F264(void); +extern void func_80165840(void); +extern void func_801658DC(void); +extern void func_80165A78(s32); +extern void func_80158AE4(void * a0); +extern M2C_UNK D_800D58D8; +extern void func_80158BB0(void *arg0); +extern s32 func_80159404(s32 a0, s32 a1); +extern void func_80158C40(s32 *a0); +extern void func_80158CD8(s32 *a0); +extern s32 func_80159434(s32 a0, s32 a1); +extern void func_80158D60(s32 a0); +extern M2C_UNK D_800D5904; +extern void func_80158E24(s32 *a0); +extern s32 D_8018F688[]; +extern int rand(void); +extern s32 func_8013767C(s32 a0); +extern void func_80158F00(int param_1); +extern u8 D_80110C3C[]; +extern s32 func_801399F0(s32); +extern void func_80139914(s32); +extern s32 func_80159464(void); +extern void func_801594E8(s32, s32); +extern void func_80158FA4(s32 param_1); +extern s32 func_801399F0(s32 a0); +extern u8 D_80110C94[]; +extern u8 D_80110CD4[]; +extern void func_80159070(void *a0); +extern s32 func_80029A94(s32); +extern void func_80175454(void); +extern void func_800298BC(void *); +extern void func_8002992C(s32); +extern void func_800CF804(void); +extern void func_800CF818(void); +extern u8 D_80110D0C[]; +extern void func_80159120(s32 a0); +extern void func_801592CC(s32 *a0); +extern u8 D_800AE6BD; +extern s32 D_801E0E38; +extern void func_8015934C(void *arg0); +extern void func_801593E4(A801593E4 *a0); +extern void (*D_8018F904[])(void); +extern void func_80159698(void *a0); +extern s32 func_801596D4(void *a0); +extern void func_80174B6C(void); +extern void func_80129248(s16 a0); +extern void func_8013C938(void); +extern void func_8013CB20(void); +extern void func_8013C98C(void); +extern void func_8002850C(s32, s32, s32); +extern void func_80028620(s32, void *); +extern s16 D_800B9AAC[]; +extern s16 D_800B9B00; +extern u16 D_801270C0; +extern u32 D_800AFAE8[]; +extern char D_8018F724[]; +extern s32 func_801596F0(s32 param_1); +extern s32 func_80159874(void); +extern void func_800167B8(s32 a0); +extern s32 func_8015987C(s32 a0); +extern int func_800167F0(int arg); +extern int func_801598BC(void); +extern void func_80159968(void *a0); +extern void func_801598E0(u8 *a0); +extern void (*D_8018F9A8[])(void); +extern void func_80159A20(void *a0); +extern void func_801599E0(void *a0); +extern void func_80159A18(void); +extern void func_80159BE4(s32); +extern void func_80159B08(s32 *a0); +extern void func_80159B70(void *a0); +extern void func_80159B3C(void * a0); +extern void (*D_8018FAFC[])(void); +extern void func_80159BAC(s32 a0); +extern s32 func_80172590(u8 *a0); +extern unsigned char D_8018F918; +extern void func_80159BE4(s32 arg0); +extern void func_8015A1C8(s32 a0); +extern void func_8015A2D8(s32); +extern void func_8015A1FC(s32 *a0); +extern void func_8015A264(void *a0); +extern void func_8015A230(s32 *a0); +extern void (*D_8018FB04[])(void); +extern void func_8015A2A0(s32 a0); +extern int D_8018F928; +extern s32 func_80172608(u8 *a0); +extern void func_8015A2D8(s32 param_1); +extern u8 D_800D48DC; +extern s32 func_8015AB7C(s32 a0); +extern s32 D_8011F9C4; +extern s32 func_8015ABD4(s32 a0, s32 a1, s32 a2); +extern s32 func_80161CD0(s32 a0, s32 a1); +extern M2C_UNK D_8018F948; +extern void func_8015AC48(s32 arg0); +extern void func_8015AC90(s32 a0); +extern void func_8015ADB0(s32 a0); +extern void func_8015ACC4(s32 *arg0); +extern void func_8015AD3C(void *a0); +extern void func_8015AD08(void *arg0); +extern void (*D_8018FB0C[])(void); +extern void func_8015ADB0(s32); +extern void func_8015AD78(s32 a0); +extern void func_8015ADB0(s32 arg0); +extern s32 D_800D4A9C; +extern int func_8015B6F4(int param_1); +extern u8 D_800D4F8C[]; +extern s32 func_8015B7B4(s32 a0); +extern u8 D_800D4BE0[]; +extern s32 func_8014A51C(void); +extern s32 func_8015B858(u8 *a0); +extern s32 D_800D4B48; +extern void func_8015B8F8(s32 *a0); +extern void func_8015BD8C(s32 *a0); +extern s32 func_8015BE94(); +extern void func_8015BE38(struct Obj *a0); +extern s32 func_8015BE74(void); +extern void func_80161124(void *a0); +extern s32 func_8015BE94(s32 *a0); +extern s32 func_8015AE2C(); +extern s32 func_8015BEC4(void); +extern s32 func_8015B950(s32 arg0); +extern s32 func_8015BEE4(void); +extern void func_8015BF04(s32 *a0); +extern void func_8015C0C4(s32 a0); +extern void func_8015BFF4(void *a0); +extern void func_8015BF7C(s32 *a0); +extern void func_8015C030(s32 *a0, s32 a1); +extern void func_8015BFB0(s32 *a0, s32 a1); +extern void (*D_8018FB34[])(void); +extern void func_8015C0C4(s32); +extern void func_8015C08C(s32 a0); +extern s32 func_8015C128(s32 param_1); +extern void func_8015C6A4(void); +extern void func_8015C788(s32 a0); +extern void func_8015C6AC(s32 *a0); +extern void func_8015C714(void *a0); +extern void func_8015C6E0(s32 *a0); +extern void (*D_8018FB40[])(void); +extern void func_8015C788(s32); +extern void func_8015C750(s32 a0); +extern void func_8015CB94(s32 a0); +extern void func_8015CBCC(void); +extern void func_8015CBD4(void); +extern void func_8015CBDC(void); +extern void func_8015CBE4(void); +extern void func_8015CBEC(void); +extern void func_8015CBF4(void); +extern void func_8015CBFC(void); +extern void func_8015CC04(void); +extern void func_8015CC0C(s32 *param_1); +extern void func_8015CC74(s32 *a0); +extern void func_8015CC40(s32 *a0); +extern s32 func_8015CCD0(); +extern s32 func_8015CCB0(void); +extern s32 func_801725E0(u8 *a0); +extern s32 func_8015CCD0(s32 param_1); +extern s32 func_8015CD20(s32 arg0); +extern void func_8015CF24(s32 a0); +extern void func_8015D01C(); +extern void func_8015CF58(s32 *param_1); +extern void func_8015CFC0(s32 *a0); +extern void func_8015CF8C(s32 *a0); +extern void func_8015CFFC(void); +extern void func_8015D01C(int param_1); +extern void (*D_8018F9B4[])(void *); +extern s32 func_801725F4(u8 *a0); +extern void func_8015D104(void *arg0); +extern s32 D_8018FBE4; +extern void func_8015D380(s32 a0); +extern unsigned char D_8018ECC8[]; +extern void func_8015D414(int param_1); +extern void func_8015D57C(s32); +extern void func_8015D480(s32 *a0); +extern s32 func_8015D4E8(s16 *a0); +extern void func_8015D4B4(s16 *a0); +extern void func_8015D524(s32 arg0); +extern void func_8015D544(s32 a0); +extern void func_801746DC(void); +extern void func_8015D57C(s32 arg0); +extern s32 func_80161B18(void *a0); +extern s32 func_80161B84(void *a0); +extern void func_80154150(int, int); +extern void func_80149374(int, int); +extern unsigned char D_8018FBF8[]; +extern void func_8015D5E8(int param_1); +extern int func_8015E0D4(int); +extern void func_8015DA5C(s32 a0); +extern void func_8015DB6C(s32 a0); +extern void func_8015DA90(s32 *a0); +extern void func_8015DAF8(s32 *a0); +extern void func_8015DB6C(s32); +extern void func_8015DB34(s32 a0); +extern void func_8015DCB8(s32 a0); +extern void func_8014BD60(s32 a0, s32 a1); +extern int func_8015DD74(int); +extern void func_8015DBD4(void *arg0); +extern int func_8015DC84(int a0); +extern s8 D_8018FC34[]; +extern void func_8015DCB8(s32 param_1); +extern int func_8015DD74(int arg0); +extern void func_8015DECC(s32 a0); +extern void func_8015DDF0(s32 *a0); +extern void func_8015DE58(s32 *a0); +extern void func_8015DECC(s32); +extern void func_8015DE94(s32 a0); +extern void func_8015E018(s32 a0); +extern void func_8015DF34(void *arg0); +extern int func_8015DFE4(int a0); +extern void func_8015E018(s32 param_1); +extern int func_8015E0D4(int a0); +extern void func_8015E22C(s32 a0); +extern void func_8015E150(s32 *a0); +extern s32 func_8015E1B8(s32 a0); +extern void func_8015E184(s32 *arg0); +extern void func_8015E22C(s32); +extern void func_8015E1F4(s32 a0); +extern u8 D_800D4FF4[]; +extern u8 D_800D5098[]; +extern u8 D_800D5060[]; +extern s32 func_8014A850(s32 a0); +extern void func_8015E40C(s32 a0); +extern void func_8015E588(void); +extern void func_8015E4B0(s32 a0); +extern void func_8015E288(s32 a0); +extern u16 D_8018FC7C; +extern u16 D_8018FC7E; +extern u16 D_8018FC80; +extern s32 D_8018FC84; +extern void func_80013E94(void *a0, void *a1); +extern void func_8015E4B0(s32 param_1); +extern void func_8013C9C4(void *a0); +extern s32 D_8018FC8C; +extern void func_8015E5B0(u8 *self); +extern void func_8015E714(s32 *a0); +extern void func_8015E95C(s32); +extern void func_8015E84C(s32 *a0); +extern void func_8015E8E8(s32 *a0); +extern void func_8015E9B8(s32 *a0); +extern void func_8015E8B4(s32 *a0); +extern void func_8015E924(s32 a0); +extern void func_8015E95C(s32 a0); +extern s16 D_801152A0; +extern void func_80160818(s32 *a0); +extern void func_8015ED6C(s32 *a0); +extern void func_8015EE7C(s32); +extern void func_8015EDA0(s32 *a0); +extern s32 func_8015EE08(s32 a0); +extern void func_8015EDD4(s32 *arg0); +extern void func_8015EE44(s32 a0); +extern int D_800D4C48; +extern int D_8018F998; +extern void func_8015EE7C(s32 param_1); +extern void func_8015EEE0(void *arg0); +extern void func_8015EF9C(void); +extern void func_8015F080(s32); +extern void func_8015EFA4(s32 *a0); +extern void func_8015F00C(s32 *a0); +extern void func_8015EFD8(s32 *a0); +extern void func_8015F048(s32 a0); +extern void func_8015F080(s32 a0); +extern s32 D_80062BE8; +extern void func_801466F0(s32, s32, s32, s32, s32, s32, s32, s32); +extern s32 func_80161208(void); +extern void func_8015F118(void *a0); +extern void func_8015F260(s32 *a0); +extern void func_8015F380(); +extern void func_8015F2BC(s32 *a0); +extern void func_8015F324(s32 *a0); +extern void func_8015F2F0(s32 *a0); +extern void func_8015F360(void); +extern s32 func_801725B8(u8 *a0); +extern void func_8015F380(void* arg0); +extern void func_8015F738(s32 *a0); +extern void func_8015F848(s32 *a0); +extern void func_8015F76C(s32 *a0); +extern s32 func_8015F7D4(s32 a0); +extern void func_8015F7A0(s32 *arg0); +extern void func_8015F810(s32 *a0); +extern void func_80147078(s32 *, s16); +extern void func_80159B70(void *); +extern void func_8015F89C(void *arg0); +extern void func_8015F948(s32 *param_1); +extern void func_8015F9A4(void *arg0); +extern void func_8015FA24(s32 arg0); +extern void func_8015FBE0(s32 *a0); +extern void func_8015FA44(s32 *a0); +extern void func_8015FAAC(s32 *a0); +extern void func_8015FA78(s32 *a0); +extern s32 func_801612B8(void *a0, s32 a1); +extern void func_8016007C(s32 a0); +extern void func_8015FAE8(void *arg0); +extern void func_8015FCC8(void *param_1); +extern unsigned int D_8018FD10[]; +extern void func_8015FD74(int param_1); +extern s32 func_80028DE0(void); +extern u8 func_80165700(s32 a0, s32 a1); +extern void func_8015FDCC(s32 a0); +extern u8 D_80078EC2; +extern u8 func_801656E8(s32 a0, s32 a1); +extern void func_80165670(s32 a0, s32 a1); +extern void func_8016004C(s32 a0); +extern void func_8015FF20(void *param_1); +extern void func_801601AC(s32 *a0); +extern void func_801600D0(s32 *a0); +extern void func_80160138(s32 *a0); +extern void func_80160104(s32 *a0); +extern void func_80160174(s32 *a0); +extern void func_801601E4(s32 *a0); +extern void func_80160244(s32 *a0); +extern void func_8016032C(void); +extern void func_80160410(s32 *a0); +extern void func_80160334(s32 *a0); +extern void func_8016039C(s32 *a0); +extern void func_80160368(s32 *a0); +extern void func_801603D8(s32 *a0); +extern u8 D_80062BD0; +extern void func_80160410(s32 * a0); +extern void func_801607B8(s32 *a0); +extern void func_801608C0(s32 *a0); +extern void func_801607E4(s32 *a0); +extern void func_8016084C(s32 *a0); +extern void func_80160888(s32 *a0); +extern void func_80160A28(s32 a0); +extern void func_80160A74(s32 *a0); +extern void func_80160BB4(s32 *a0); +extern void func_80160ACC(s32 *a0); +extern s32 func_80160B34(s32 a0); +extern void func_80160B00(s32 *arg0); +extern void func_80160B70(s32 a0); +extern void func_80160C28(void *arg0); +extern void func_80160CB4(s32 *a0); +extern void func_80160D10(void *arg0); +extern void func_80160DEC(u8 *a0); +extern void func_80160F00(); +extern void func_80160E3C(s32 *a0); +extern void func_80160EA4(); +extern void func_80160E70(s32 *a0); +extern void (*D_8018FDC0[])(void); +extern void func_80160EA4(void *a0); +extern void func_80160EE0(void); +extern void func_80160F00(void* arg0); +extern void func_800D0F4C(s32 a0); +extern u8 D_80110EC0; +extern void func_80160F70(s32 a0); +extern void func_80160FE0(s32 *a0); +extern void func_80161034(void *a0); +extern void func_80161094(s32 a0); +extern void func_801610FC(void); +extern void func_801483E8(void); +extern s32 func_80161A60(s32 a0); +extern void func_8016130C(void *a0, s32 a1); +extern void func_80161240(void *a0); +extern void func_80161374(void *a0, s32 a1); +extern void func_80161278(void *a0); +extern s32 func_801612B8(void * a0, s32 a1); +extern void func_8016163C(void *a0, s32 a1); +extern void func_80161774(void *a0, s32 a1); +extern s32 func_8016197C(s32 a0, s32 a1); +extern s32 func_80161488(void *a0); +extern void func_80161888(void *a0, s32 a1); +extern void func_801614E4(void *a0); +extern void func_8016191C(void *a0, s32 a1); +extern void func_8016151C(void *a0); +extern void func_80161554(void *a0); +extern s32 func_801615C4(void * arg0, s32 arg1); +extern s32 func_801619A4(s32 *a0); +extern s32 func_80161A00(s32 a0); +extern s32 func_80161A30(s32 a0); +extern int func_801497A8(void); +extern int func_80161BE0(void *param_1); +extern u16 D_8018FDF0[]; +extern void func_80161C98(int param_1, u32 param_2); +extern void func_80161E08(s32); +extern s32 func_80162438(s32); +extern s32 D_800AE6A8; +extern void func_800D1734(void *); +extern s32 D_8018FE54; +extern void func_80161D88(void); +extern void func_80161E08(s32 param_1); +extern int func_800291DC(int); +extern int func_800D0E30(void *a0); +extern int func_801620C4(void); +extern s32 func_800D0D7C(s32, s32); +extern int D_801E0E48[]; +extern void func_8016216C(void); +extern u8 D_80078EB0; +extern u8 D_80078EB1; +extern s32 func_801621CC(s32 arg0); +extern void func_801622C4(void); +extern void (*D_8018FE78[])(void); +extern void func_80162330(void *a0); +extern void func_8014706C(void *a0); +extern s32 func_8016236C(u8 *a0); +extern void func_800D0C48(s32 a0); +extern s32 func_801623B8(s32 *a0); +extern s32 func_800167F0(s32 a0); +extern s32 func_80162414(void); +extern s32 func_80162438(s32 _unused0); +extern int func_801626B8(void); +extern void func_80162714(void); +extern int D_801E0EA0[]; +extern void func_80162760(void); +extern void func_801627C0(void); +extern void (*D_8018FEC0[])(void); +extern void func_80162834(void *a0); +extern void func_8001CB6C(u8 *a0, s32 a1, s32 a2, s32 a3); +extern void func_80162968(s32 a0); +extern s32 func_80162ACC(u8 *a0); +extern u8 D_800B5CB8; +extern s32 D_8018FEB0; +extern s32 D_800B5CBC; +extern u8 D_800B5CDF; +extern s32 D_800B5CEC; +extern void func_80162870(s32 param_1); +extern void func_801628F4(s32 *a0); +extern void func_80162968(s32 param_1); +extern void func_80162AC0(s32 *a0, s8 a1); +extern s32 func_80162AE0(u8 *a0); +extern void func_80162AF4(void); +extern void func_80162CC4(void); +extern s32 D_80126D40; +extern void func_80162B1C(void); +extern void func_80162D28(s32 *a0); +extern void func_80162D88(s32 *a0); +extern void func_80162DE8(s32 *a0); +extern void func_80162E48(s32 *a0); +extern void func_80162EA8(s32 *a0); +extern void func_80162F60(s32 arg0, s32 arg1); +extern void func_80162F80(s32 arg0, s32 arg1); +extern void func_80162FA0(s32 arg0, s32 arg1); +extern void func_80162F08(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80162FC0(s32 *a0); +extern void func_80162FF4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_801630C4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80163194(s32 a0, s32 a1, s32 a2, s32 a3, s32 arg4); +extern void func_8016325C(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80163234(s32 a0); +extern s32 D_80115100; +extern s32 func_801632E0(void); +extern s32 D_80115200; +extern s32 func_801632F0(void); +extern u16 D_80126B18[]; +extern void func_80163328(void); +extern s32 func_801633A8(void); +extern s32 func_80163408(s32 param_1, s32 param_2, s32 param_3, s32 param_4); +extern void func_80163534(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, u16 * a5); +extern void func_8016345C(s32 a0, u16 a1, s32 a2, u16 a3, s32 a4); +extern char D_801E0598[8]; +extern void *memcpy(void *dst, const void *src, unsigned int n); +extern void func_801634D8(s32 param_1, u16 param_2, u16 param_3, s32 param_4, u16 param_5); +extern void func_80157158(); +extern void func_80163664(s32 a0, u16 a1, u16 a2, s32 a3, s32 a4, s32 a5, s32 a6, s32 a7, s32 a8, s32 a9, u16 a10, s32 a11, s32 a12); +extern void func_801636D0(s32 a0, s32 a1); +extern s32 func_8016380C(struct S8016380C *a0, s32 a1); +extern void *memcpy(void *dst, void *src, s32 n); +extern s32 func_801638A0(u8 *a0, s32 a1); +extern s32 func_80163950(s32 a0); +extern void (*D_8018FEC8[])(void); +extern void func_80163A58(void *a0); +extern void func_80163A94(s32 param_1); +extern void func_80163C2C(s32 param_1); +extern void func_80163EC8(s32 param_1); +extern void func_80164270(s32 *a0); +extern void func_80164418(void); +extern void func_80163764(s32 a0); +extern void func_801642AC(s32 a0); +extern void func_8016432C(s32 a0); +extern void func_80164410(void); +extern s32 func_80012DBC(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80164530(s32 arg0); +extern void (*D_8018FF1C[])(void); +extern void func_80164744(s32 param_1); +extern void func_8001C810(s32 a0, s32 a1); +extern void func_80164A74(s32 *a0); +extern void func_80164930(s32 a); +extern u16 D_800DF2E0; +extern s32 D_8018FEE4; +extern s16 D_8018FF18; +extern s16 D_8018FF16; +extern s16 D_8018FF14; +extern void func_801647A4(int param_1); +extern void func_80164ACC(); +extern void func_80164864(void *a0); +extern void func_80164930(s32 param_1); +extern s32 func_8014C308(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80164ACC(s32 a0); +extern void (*D_8018FF28[])(void); +extern void func_80164BA0(void *a0); +extern void func_8001CD50(s32 a0, s32 a1); +extern void func_800233CC(void *, unsigned short); +extern void func_80164DD0(s32 a0); +extern void func_80164DB0(void); +extern u8 D_801E0F00; +extern u8 D_801E0F01; +extern u8 D_801E0F02; +extern u8 D_801E0F03; +extern u8 D_801E0F04; +extern u8 D_801E0F05; +extern u8 D_801E0F06; +extern u8 D_801E0F07; +extern void func_80164BDC(s32 param_1); +extern void func_80164E40(void); +extern void func_80164CD4(u8 *a0); +extern void func_80164D4C(void *arg0); +extern void (*D_8018FF38[])(void); +extern void func_80164EA4(void *a0); +extern void func_80165124(void *a0); +extern void func_80164EE0(int param_1); +extern s32 func_80165140(s32 a0); +extern void func_801651B8(void *a0); +extern void func_80164F44(void *arg0); +extern void func_80165024(void *a0); +extern void func_80165064(s32 *a0); +extern void func_801650C4(s32 *a0); +extern s32 func_80165140(s32 param_1); +extern s32 func_80165240(s32 a0, s32 a1, s32 a2); +extern s32 D_801E0F40; +extern void func_801651B8(void * param_1); +extern u8 D_80126CF8; +extern void func_8016533C(void); +extern void func_801653F4(s32 a0); +extern void func_80165580(s32 a0); +extern void func_80165374(s32 a0); +extern void func_80165580(s32 _arg0); +extern void func_801653B8(s32 *a0); +extern s32 func_80165624(s32 a0); +extern u8 D_80078EC5; +extern void (*D_8018FF7C[])(void); +extern u8 func_80165658(s32 a0, s32 a1); +extern void func_800CAE0C(s32 a0); +extern void func_801654A8(s32 arg0); +extern void func_80165B28(void *a0); +extern void func_801655E4(s32 a0); +extern u8 D_8018FFF8[]; +extern s32 D_80190018[]; +extern u8 D_80190094[]; +extern u8 func_801656D0(s32 a0, s32 a1); +extern u8 D_801900B4[]; +extern u8 D_801900D4[]; +extern void func_800CAF6C(void); +extern void func_80165770(void); +extern void func_801657D8(void); +extern u8 D_80078EC3; +extern void func_801657A0(void); +extern s32 D_80078EA0; +extern s32 D_80078EA8; +extern u8 D_80078EBB; +extern s32 D_80078ED4; +extern s32 D_80078ED8; +extern s32 D_80078EDC; +extern u8 D_80078EE0; +extern void func_80165874(void); +extern s8 D_80078EC4; +extern void func_801658EC(void); +extern s32 func_80165900(void); +extern s32 func_80165910(void); +extern s32 D_8012672C; +extern s32 D_8012811C; +extern s32 D_80126B08; +extern void func_80165938(void); +extern void func_80165958(void); +extern s32 func_80165978(void); +extern void func_80165988(void); +extern s32 func_801659A8(void); +extern void func_801659B8(void); +extern s32 func_801659CC(void); +extern void func_80165A18(void); +extern s32 func_80165A50(s32 _arg0); +extern void func_80165AC8(void); +extern void func_80165A78(s32 arg0); +extern void (*D_80190170[])(void); +extern void func_80165B08(void); +extern void func_80165B10(void); +extern void func_80165B18(void); +extern void func_80165B20(void); +extern void (*D_801901EC[])(void); +extern void func_80165BB4(u8 *a0); +extern void func_80165B6C(u8 *a0); +extern void func_80165C58(s32 arg0); +extern void func_80165BFC(void *a0); +extern void func_80165C78(void); +extern M2C_UNK D_801E05A8; +extern void func_80165E2C(u16 *arg0); +extern s32 func_80165FA4(s32 a0, s32 a1, s32 a2); +extern s32 func_80167DBC(s32 a0, s32 a1, s32 a2); +extern s32 func_80167AE0(s32 a0, s32 a1, s32 a2); +extern void func_80165E90(void); +extern void func_80020F34(s32 a0, s32 a1); +extern s32 func_80165FA4(s32 arg0, s32 arg1, s32 arg2); +extern void (*D_801901F8[])(void); +extern void func_80166018(void *a0); +extern void func_80166054(s32 arg0); +extern void func_801661CC(s32 param_1); +extern void func_80166244(void* arg0); +extern void func_8016629C(void *a0); +extern void func_801662F4(void *a0); +extern void func_8016634C(void *a0); +extern void func_801663A4(void *a0); +extern void (*D_80190200[])(void); +extern void func_801663FC(void *a0); +extern s32 func_800D21C4(s32 a0, void *a1, s32 a2); +extern void func_800D1FC8(s32 a0, s32 a1); +extern void func_80128EA8(s32 a0, s32 a1, s32 a2); +extern void func_801665B4(); +extern void func_80146C3C(); +extern void func_80166438(u8 *a0); +extern s32 func_80128ED8(s32 param_1, s32 *param_2); +extern void func_800D22E4(s32 a0); +extern void func_801665B4(s32 *a0); +extern void (*D_801902C8[])(void); +extern void func_80166618(void *a0); +extern void (*D_801902D8[])(void); +extern void func_80166654(void *a0); +extern s32 func_80166690(s32 param_1, s32 param_2); +extern s32 func_80166994(); +extern s32 func_80166F58(s32 param_1, s32 param_2, s32 param_3, s32 param_4); +extern s32 func_80167540(s32 arg0); +extern void (*D_801902E8[])(void); +extern void func_801678B4(void *a0); +extern void RotMatrixYXZ(void *a0, void *a1); +extern void func_80048EAC(void *a0, void *a1); +extern s32 func_801670E4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80146C3C(void); +extern void func_801678F0(s32 a0); +extern void (*D_801902F4[])(void); +extern void func_80167A9C(void *a0); +extern void func_80167AD8(void); +extern s32 func_80167AE0(s32 param_1, s32 param_2, s32 param_3); +extern void func_80168070(s32 a0, s16 *a1, s16 *a2, void *a3); +extern u8 D_80190254[]; +extern u8 D_80190268[]; +extern s32 func_80167DBC(s32 arg0, s32 arg1, s32 arg2); +extern void func_800D20C0(void *a0, void *a1, s32 a2); +extern void func_80017E68(void *a0, void *a1); +extern void func_800D23D0(void *a0); +extern void ApplyTransposeMatrixLV(void *a0, void *a1, void *a2); +extern s32 D_801269A4; +extern s32 D_801269A8; +extern s32 D_801269AC; +extern void func_80168070(s32 param_1, s16 *param_2, s16 *param_3, void *param_4); +extern s32 func_80166994(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_8016829C(s32 a0); +extern s32 func_80166690(s32 a0, s32 a1); +extern void func_80168328(s32 arg0); +extern void func_801683D8(s32 a0); +extern void func_801684B4(s32 a0); +extern void func_80168540(s32 a0); +extern void func_801685EC(s32 a0); +extern void func_80168640(s32 a0); +extern s32 RotMatrixX(s32 a0, void *a1); +extern void func_80168664(void *arg0); +extern void (*D_8019030C[])(void); +extern void func_80168744(void *a0); +extern void func_80168BDC(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_801687CC(s32 a0); +extern void func_80168780(s32 a0); +extern void func_80168828(void); +extern void func_801687CC(s32 param_1); +extern void func_80168828(); +extern void (*D_80190314[])(void); +extern void func_801689D8(void *a0); +extern void func_80168A14(s32 *a0); +extern void func_80168A88(void); +extern void (*D_8019031C[])(void); +extern void func_80168AA8(void *a0); +extern void func_80168AE4(s32 a0); +extern void func_800D2318(void); +extern void func_80168BDC(s32 param_1, s32 param_2, s32 param_3, s32 param_4); +extern void (*D_80190324[])(void); +extern void func_80168D58(void *a0); +extern void func_80168D94(int a0); +extern void func_80168F40(); +extern void func_80168EC4(s32 a0); +extern void func_80168F40(void *arg0); +extern void (*D_8019032C[])(void); +extern void func_8016901C(void *a0); +extern void func_80169058(s32 a0); +extern s32 func_80169228(void); +extern void func_801691B8(void *a0); +extern void (*D_80190334[])(void); +extern void func_801693CC(void *a0); +extern void func_80169584(s32 param_1); +extern void func_80169408(s32 a0); +extern void func_8016951C(int param_1); +extern s32 func_80017758(void *a0, void *a1); +extern s32 func_80017DC4(void *a0, void *a1); +extern void func_801696D8(s32 a0, s32 a1); +extern void (*D_8019033C[])(void); +extern void func_80169830(void *a0); +extern void func_8016986C(s32 a0); +extern s32 func_80169A4C(s32 a0, s32 a1); +extern void func_801699D0(void *arg0); +extern void (*D_801903F0[])(void); +extern void func_80169B80(void *a0); +extern void func_80169E44(s32 a0); +extern void (*D_801903F8[])(void); +extern void func_80169F00(void *a0); +extern char D_801903A8[]; +extern char D_80190368[]; +extern void func_80169F3C(int param_1); +extern void func_80169FE0(s32 a0); +extern void (*D_80190430[])(void); +extern void func_8016A020(void *a0); +extern void func_8016A05C(void *a0); +extern void func_8016A290(s32 a, void *b, void *c); +extern void func_8016A08C(s32 param_1); +extern void func_8016A1CC(int param_1); +extern void func_8016A290(s32 param_1, void *param_2, void *param_3); +extern void (*D_8019043C[])(void); +extern void func_8016A700(void *a0); +extern s32 func_8016A73C(s32 arg0); +extern s32 func_8016A8FC(s32 a0); +extern void func_8016A890(s32 arg0); +extern u16 D_80126B5E; +extern u16 D_80126B62; +extern u16 D_80126B66; +extern void func_8016AA50(s32 param_1, s32 param_2); +extern void (*D_80190484[])(void); +extern void func_8016AB30(void *a0); +extern void func_8016B234(void); +extern void func_8016AFB0(s32 a0); +extern void func_8016B114(void *arg0); +extern s32 func_8016B448(s32, s32); +extern s32 func_8016BA48(s32 a0); +extern void func_8016B3F4(s32 a0); +extern s32 func_8016B428(s32 a0); +extern void func_8016B984(void *a0); +extern s32 func_8016B448(s32 arg0, s32 arg1); +extern void (*D_80190500[])(void); +extern void func_8016B4BC(void *a0); +extern int func_8016B9F8(int); +extern int func_8016B834(int, int); +extern void func_8016B91C(int); +extern int D_801E1260; +extern void func_8016B4F8(int param_1); +extern s32 func_8016B9F8(s32 param_1); +extern void func_8016B6BC(s32, s32, s32, s32); +extern void func_8016B91C(s32); +extern s16 D_801904F4[]; +extern void func_8016B5C0(s32 param_1); +extern void func_8001CD9C(int, void *); +extern int *D_80190538[]; +extern unsigned short D_80190540[]; +extern unsigned short D_80190548[]; +extern unsigned char D_801E1268[]; +extern int func_8016B834(int param_1, int param_2); +extern void func_8016B964(SrcB964 *a0, DstB964 *a1); +extern void func_8016B91C(s32 arg0); +extern s32 D_801E1260; +extern s32 func_8016BA68(s32, s32); +extern void func_8016BADC(void *a0, s32 a1, s32 a2); +extern void (*D_80190550[])(void); +extern void func_8016BBA4(void *a0); +extern s32 func_8016BBE0(s32 param_1); +extern void func_8016BFA8(s32 a0, s32 a1, s32 a2, s32 a3); +extern M2C_UNK D_801E139C; +extern M2C_UNK D_801E13A0; +extern void func_8016BCC0(void *arg0); +extern s32 func_8016BD78(s32 param_1); +extern s32 func_8016BEA0(s32 param_1); +extern void func_8016BF34(void *a0); +extern void func_8016BFD0(s32 a0, s32 a1, s32 a2, s32 a3, void *a4); +extern s32 D_801E1328; +extern void (*D_80190580[])(void); +extern void func_8016C14C(void *a0); +extern s32 func_8016C374(s32 a0, s32 a1, s32 a2, s32 a3); +extern u8 D_801E13A4[]; +extern u8 D_801E13AC[]; +extern u8 D_801E135C[]; +extern void func_8016C2C4(s32 param); +extern s32 func_8016C49C(s32 param_1_arg); +extern s32 VectorNormalSS(void *a0, void *a1); +extern void func_8016C74C(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4); +extern short func_8016CF04(s32 a0, s32 a1); +extern void func_8016C83C(s32 a0); +extern void (*D_80190588[])(void); +extern void func_8016CB84(void *a0); +extern short func_8016CF04(s32 param_1, s32 param_2); +extern void (*D_801905A4[])(void); +extern void func_8016D19C(void *a0); +extern void (*D_801905AC[])(void); +extern void func_8016D428(void *a0); +extern void func_8016D464(u8 *a0); +extern void func_8016D4DC(s32 a0); +extern void func_8016D5EC(s32 *a0); +extern short func_8016CBC0(void); +extern void func_8016D64C(int param_1); +extern void func_8016D778(s32 a0); +extern void func_800D20C0(); +extern void func_8016D848(s32 *a0); +extern void func_8016D984(s32 *a0); +extern void func_8016DBD8(u8 *a0); +extern void (*D_80190614[])(int); +extern void func_8016DA30(int param_1); +extern s32 func_8001CC3C(s32 a0, s32 a1, s32 a2, s32 a3); +extern u8 D_801905B8; +extern u8 D_801905C4; +extern void func_8016DA7C(s32 param_1); +extern void func_8016DB34(s32 param_1); +extern void (*D_80190648[])(void); +extern void func_8016DEA4(void *a0); +extern void func_8016DEE0(s32 a0); +extern void (*D_80190650[])(void); +extern void func_8016DF20(void *a0); +extern void func_8016E3CC(s32 a0); +extern void func_8016E1CC(s32 a0); +extern void func_8016E26C(s32 *a0); +extern void func_8016E2E8(void *a0); +extern void func_8016E460(void *a0, void *a1); +extern void func_8016E358(void *a0); +extern void func_8016E460(void *arg0, void *arg1); +extern void (*D_801906A4[])(void); +extern void func_8016E5B8(void *a0); +extern void func_8016E5F4(s32 arg0); +extern void func_8016E778(); +extern void func_8016E688(void *a0); +extern void func_8016E6E4(s32 a0); +extern void func_8016E728(u8 *a0); +extern void func_8016E7C8(int param_1, short *p1, unsigned int *p2); +extern void func_8016E778(int param_1); +extern void func_8016E7C8(int param_1, short *param_2, unsigned int *param_3); +extern s32 D_80115218; +extern void func_8016E8F0(void); +extern void func_8016E918(short param_1, short param_2); +extern s32 func_8016E95C(); +extern u16 D_801906D8[]; +extern s32 func_8016EC0C(s32 a0, s32 a1); +extern void func_8016EAC0(Wave *param_1); +extern u8 D_801906C8[]; +extern void func_8016EB3C(s32 p); +extern void func_8016EBA8(u8 *param_1); +extern void func_8016ED6C(void); +extern s32 D_80126D70; +extern void func_8016EDEC(s32 a0, s32 a1, s32 a2); +extern void func_8016ED8C(s32 a0, s32 a1, s32 a2); +extern void func_8016EE40(s32 a0, s32 a1, s32 a2); +extern void func_8016EDBC(s32 a0, s32 a1, s32 a2); +extern void func_8016EE94(); +extern void func_8016EDEC(s32 _arg0, s32 _arg1, s32 _arg2); +extern void func_8016EF78(s32 a0); +extern void func_8016EE40(s32 _arg0, s32 _arg1, s32 _arg2); +extern void func_801726D0(void *a0); +extern s32 D_80126D50; +extern s32 D_80126D54; +extern u8 D_80126D6C; +extern u8 D_80126D6D; +extern u8 D_80126D6E; +extern s32 D_80126D5C; +extern s32 D_80126D60; +extern s16 D_80126D64; +extern s16 D_80126D66; +extern s16 D_80126D68; +extern s16 D_80126D6A; +extern u8 D_80126D1A; +extern s32 D_80127058; +extern s32 D_8012705C; +extern s32 D_80127060; +extern s32 D_80127064; +extern s32 D_80127068; +extern s32 D_8012706C; +extern s32 D_80127070; +extern s32 D_80127074; +extern s16 D_80126D20; +extern void func_8016EE94(s32 a0, s32 a1); +extern s32 func_8016EFC8(s32); +extern s32 func_8016EFA8(s32 a0); +extern void func_8016F094(s32 *a0); +extern s32 func_8016F0AC(); +extern s32 D_801906F4; +extern void func_8016F250(void); +extern void func_8016F288(void); +extern void func_8016F2A8(void); +extern void func_8016F2C8(void); +extern void func_8016F2EC(void); +extern void func_8016F30C(void); +extern void func_8016F330(void); +extern void func_8016F350(void); +extern void func_8016F374(void); +extern void func_8016F388(void); +extern void func_8016F398(void); +extern s32 func_8016F44C(s32 a0); +extern void func_8016F470(s32 a0); +extern s32 func_8016F410(s32 a0); +extern void func_80175414(s32); +extern s32 func_8016F4C4(s32); +extern s32 func_8016F494(s32 a0); +extern void func_8016F0E4(void); +extern s32 func_8016F4C4(s32 param_1); +extern void func_8016F4F4(void); +extern void func_801719A4(int a0, int a1); +extern void func_800D1724(s32 a0); +extern void func_80171928(void *a0); +extern void *D_8011F738; +extern void func_8016F4FC(void *a0); +extern void func_8014708C(void *a0); +extern void func_8016F540(void *a0); +extern void func_8016F578(s32 *a0); +extern void func_8016F5B0(void *a0); +extern void func_80147060(u8 *a0); +extern void func_8016F5E0(u8 *a0); +extern void func_8016F610(void *a0); +extern void func_8016F648(void *a0); +extern void func_8016F680(void *a0); +extern void func_8016F6B0(void *a0); +extern void (*D_8019076C[])(void); +extern void func_8016F6E0(void *a0); +extern s32 func_80171990(u8 *a0); +extern void func_8016F764(void *a0); +extern void func_8016F71C(u8 *a0); +extern void (*D_80190774[])(void); +extern void func_8016F798(void *a0); +extern void func_8016F804(void *a0); +extern void func_8016F7D4(u8 *a0); +extern void func_80171928(void *); +extern void (*D_8019077C[])(void); +extern void func_8016F834(void *a0); +extern void func_8016F8AC(u8 *a0); +extern void func_8016F870(u8 *a0); +extern void func_80172358(u8 *a0, u8 *a1); +extern void (*D_80190784[])(void); +extern void func_8016F8E4(void *a0); +extern void func_8016F95C(void *a0); +extern void func_8016F920(u8 *a0); +extern s32 func_80171CC4(void *a0, void *a1); +extern s32 func_80171D1C(void *a0, void *a1, s32 a2); +extern u16 D_8011F73E; +extern void (*D_8019078C[])(void); +extern void func_8016F9C4(void *a0); +extern void func_80171B44(s32 *a0); +extern void func_8016FA44(s32 a0); +extern void func_8016FA00(s32 a0); +extern s32 func_80171C64(s32 a0, s32 a1); +extern void (*D_80190794[])(void); +extern void func_8016FA84(void *a0); +extern void func_8016FB10(void *a0); +extern void func_8016FAC0(u8 *a0); +extern void func_8016FB50(void *a0); +extern void (*D_801907A0[])(void); +extern void func_8016FB7C(void *a0); +extern void func_8016FC24(); +extern void func_8016FBB8(s32 a0); +extern s32 func_80171B4C(s32 a0, s32 a1); +extern void func_8016FC24(s32 a0); +extern void func_8016FC64(void *a0); +extern void (*D_801907AC[])(void); +extern void func_8016FC90(void *a0); +extern void func_8016FD08(u8 *a0); +extern void func_8016FCCC(u8 *a0); +extern s32 func_80172658(s32 *a0); +extern void func_8016FD08(u8 *s0); +extern void func_8016FD7C(s32 *a0); +extern void (*D_801907B8[])(void); +extern void func_8016FDB4(void *a0); +extern void func_8016FE2C(u8 *a0); +extern void func_8016FDF0(u8 *a0); +extern void func_8016FE2C(u8 * a0); +extern s32 func_8016FE78(s32 *a0); +extern s32 func_80172664(s32 *a0); +extern void func_8016FED0(s32 *a0); +extern void (*D_801907C8[])(void); +extern void func_8016FF30(void *a0); +extern void func_8016FFA8(u8 *a0); +extern void func_8016FF6C(u8 *a0); +extern void (*D_801907D8[])(void); +extern void func_8016FFDC(void *a0); +extern void func_80170068(u8 *a0); +extern void func_80170018(u8 *a0); +extern void func_801700B8(u8 *a0); +extern void func_80170100(u8 *a0); +extern void (*D_801907E0[])(void); +extern void func_80170150(void *a0); +extern void func_801701C8(u8 *a0); +extern void func_8017018C(u8 *a0); +extern void func_801701C8(u8 * a0); +extern void (*D_801907E8[])(void); +extern void func_80170240(void *a0); +extern void func_801702B8(s32 a0); +extern void func_8017027C(u8 *a0); +extern s16 func_80171AB0(s32 a0, void *a1); +extern void (*D_801907F0[])(void); +extern void func_801702FC(void *a0); +extern void func_80170374(u8 *a0); +extern void func_80170338(u8 *a0); +extern s32 func_8014C168(s32 *a0, s32 a1); +extern void func_80170374(u8 * a0); +extern void (*D_801907F8[])(void); +extern void func_801703E0(void *a0); +extern void func_8017044C(u8 *a0); +extern void func_8017041C(u8 *a0); +extern void func_8017044C(u8 * a0); +extern void (*D_80190800[])(void); +extern void func_801704B0(void *a0); +extern void func_8017051C(void *a0); +extern void func_801704EC(u8 *a0); +extern void (*D_80190808[])(void); +extern void func_80170548(void *a0); +extern void func_801705C0(u8 *a0); +extern void func_80170584(u8 *a0); +extern void func_801705C0(u8 * a0); +extern void (*D_80190810[])(void); +extern void func_801705F8(void *a0); +extern void func_80170670(void *a0); +extern void func_80170634(u8 *a0); +extern void func_8012A568(void (*a0)(void)); +extern void (*D_80190818[])(void); +extern void func_801706AC(void *a0); +extern void func_80170718(void *a0); +extern void func_801706E8(u8 *a0); +extern void func_80129FF4(void); +extern void (*D_80190820[])(void); +extern void func_80170748(void *a0); +extern void func_801707D4(void *a0); +extern void func_80170784(u8 *a0); +extern s32 func_80174ED4(void); +extern void (*D_80190828[])(void); +extern void func_80170810(void *a0); +extern void func_801708B0(void *a0); +extern u8 D_800D5DA8; +extern void func_8017084C(s32 a0); +extern u8 D_800D5A34[]; +extern void func_80170AD8(void *a0); +extern void func_80171904(s32 a0); +extern void func_80170B48(int a0); +extern void func_80170928(void); +extern u8 D_800D59EC[]; +extern void func_80170970(void); +extern u8 D_800D599C[]; +extern void func_801709B8(void); +extern u8 D_800D5934[]; +extern void func_80170A00(void); +extern void func_80170A48(void); +extern u8 D_800D5DC0[]; +extern void func_80170A90(void); +extern void (*D_80190830[])(void); +extern void func_80170B14(int a0); +extern void func_80170B90(u8 *a0); +extern void (*D_80190838[])(void); +extern void func_80170BD8(void *a0); +extern void func_80170C44(u8 *a0); +extern void func_80170C14(u8 *a0); +extern void (*D_80190840[])(void); +extern void func_80170C74(void *a0); +extern s32 func_8017197C(u8 *a0); +extern void func_80170CF0(void *a0); +extern void func_80170CB0(u8 *a0); +extern void (*D_80190848[])(void); +extern void func_80170D68(void *a0); +extern void func_80170DE0(u8 *a0); +extern void func_80170DA4(u8 *a0); +extern s32 D_8011F73C; +extern s32 D_8011F740; +extern void func_801718AC(void *a0); +extern void func_80170DE0(u8 * _arg0); +extern void (*D_80190850[])(void); +extern void func_80170E34(void *a0); +extern void func_80170EAC(u8 *a0); +extern void func_80170E70(u8 *a0); +extern int func_800D0F8C(int a0); +extern void func_80170EAC(u8 * _arg0); +extern void (*D_80190858[])(void); +extern void func_80170EFC(void *a0); +extern void func_80170F74(void *a0); +extern void func_80170F38(u8 *a0); +extern void (*D_80190860[])(void); +extern void func_80170FB0(void *a0); +extern void func_80171028(void *a0); +extern void func_80170FEC(u8 *a0); +extern void (*D_80190868[])(void); +extern void func_80171064(void *a0); +extern void func_801710DC(u8 *a0); +extern void func_801710A0(u8 *a0); +extern u16 D_8011F73A; +extern void func_801710DC(u8 * arg0); +extern void (*D_80190870[])(void); +extern void func_80171120(void *a0); +extern void func_8017118C(u8 *a0); +extern void func_8017115C(u8 *a0); +extern void func_80142454(s32 a0); +extern void func_8017118C(u8 * a0); +extern void (*D_80190878[])(void); +extern void func_801711C0(void *a0); +extern void func_80171238(void); +extern void func_801711FC(u8 *param_1); +extern void (*D_80190880[])(void); +extern void func_80171260(void *a0); +extern s32 func_80012F74(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80171384(void *a0); +extern void (*D_80190888[])(void); +extern void func_801714E4(void *a0); +extern void func_8017162C(void *a0); +extern void func_80171520(s32 a0); +extern s32 func_801716AC(s32 a0, void *a1, s32 *a2); +extern s32 func_80012FC8(s32 a0, s32 a1, s32 a2, s32 a3); +extern u8 D_800A5E94; +extern u8 D_800A5E95; +extern u8 D_800A5E96; +extern s32 func_801716AC(s32 a0, void * a1, s32 * a2); +extern int func_800D0FE0(int a0); +extern void func_801717A0(void *a0); +extern void func_8013E588(void *a0); +extern void func_801717F4(void *a0); +extern void func_80171824(void *a0); +extern void func_80171854(void *a0); +extern void func_80171884(void); +extern void func_80171A1C(u8 *a0); +extern void func_80171928(void * a0); +extern void func_8017196C(s32 *a0, s8 a1); +extern void func_80171A04(s32 *a0); +extern void func_80171A10(s32 *a0); +extern void func_80171A34(s32 *a0, s8 a1); +extern s32 func_80171A44(u8 *a0); +extern s32 func_80171A58(u8 *a0); +extern s32 func_80171A6C(u8 *a0); +extern void func_80171A80(s32 *a0, s32 a1); +extern s32 func_80171A88(s32 a0); +extern s16 func_80171AB0(s32 param_1, void * _arg1); +extern void func_80171B10(void *a0); +extern void func_80171EC8(s32 a0); +extern s32 func_80171C64(s32 param_1, s32 param_2); +extern s32 func_80171D78(s32 a0, s32 a1); +extern int func_8017250C(short *a0, short *a1); +extern s32 func_80171CC4(void * a0, void * a1); +extern s32 func_80171FFC(short *a0, short *a1, s32 a2); +extern s32 func_80171D1C(void * a0, void * a1, s32 a2); +extern s32 func_8017248C(s32 a0, s32 a1); +extern s32 func_80171E08(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); +extern void func_80172170(s32 a0, s32 a1); +extern s32 func_8017209C(void *arg0, void *arg1, s32 arg2, s32 arg3); +extern void func_801722CC(s32 *a0); +extern void func_80172304(s32 *a0); +extern void func_80172310(u8 *a0); +extern void func_801723C4(s32 param_1, s32 param_2); +extern void func_80161C24(s32, s32); +extern void func_80172414(s32 a0); +extern s32 func_801724EC(s32 a0); +extern s32 func_8017248C(s32 arg0, s32 arg1); +extern s32 func_80013450(s32); +extern s32 func_80172560(u8 *a0, u8 *a1); +extern s32 func_8017261C(u8 *a0); +extern s32 func_80172644(u8 *a0); +extern s32 func_80172670(s32 *a0); +extern s32 func_80172688(s32 *a0); +extern s32 func_80172694(s32 *a0); +extern s32 func_801726A0(s32 *a0); +extern s32 func_801726AC(s32 *a0); +extern s32 func_801726B8(s32 *a0); +extern s32 func_801726C4(s32 *a0); +extern s32 func_80172760(s32 a0); +extern s32 func_80174650(s32); +extern void (*D_80127088)(void); +extern s32 D_801270BC; +extern s16 D_80126B0C; +extern void func_801726D0(void * _arg0); +extern void func_80172710(void); +extern void func_80174684(void *); +extern void func_80172738(void); +extern s16 D_80126B30; +extern s32 func_801727D0(void *a0); +extern void func_80172780(void *a0); +extern void func_80172844(u8 *a0); +extern void func_8017280C(u8 *a0); +extern void func_8017288C(void); +extern s32 func_801728E4(void *a0); +extern void func_80172894(void *a0); +extern void func_80172958(u8 *a0); +extern void func_80172920(u8 *a0); +extern s16 D_80126B36; +extern void func_80172958(u8 * a0); +extern void func_801729A8(void); +extern s32 func_801729F0(void *a0); +extern s16 D_80126B34; +extern s16 D_80126B32; +extern void func_801729B0(s32 a0); +extern void func_80172A8C(void *a0); +extern void func_80172A2C(int param_1); +extern void func_80172ACC(u8 *a0); +extern void func_80172B0C(void); +extern s32 func_80172B44(void *a0); +extern void func_80172B14(s16 a0); +extern s32 D_801150F8; +extern void func_80172BC8(void *a0); +extern void func_80172B80(u8 *a0); +extern void func_80172C48(void); +extern void (*D_801908CC[])(void); +extern void func_80172CA0(void *a0); +extern void func_80172D14(u8 *a0); +extern void func_80172CDC(u8 *a0); +extern void func_80172D14(u8 * a0); +extern void func_80172D60(void); +extern s32 D_80127508; +extern s32 func_80172DAC(void *a0); +extern void func_80172D68(s32 a0); +extern void func_80172E20(u8 *a0); +extern void func_80172DE8(u8 *a0); +extern void func_80172E20(u8 * a0); +extern void func_80172E8C(void); +extern void func_8017303C(void *); +extern void func_80172E94(void); +extern void func_80172ED4(void); +extern void func_80172EFC(void); +extern void func_80172F24(void); +extern u8 D_800D47F4[]; +extern void func_80172F4C(void); +extern void func_80172F9C(void); +extern u8 D_800D5C6C[]; +extern void func_80172FEC(void); +extern s32 func_80173078(void *a0); +extern void func_8017303C(void * a0); +extern void func_801730FC(struct S801730FC *a0); +extern void func_801730B4(s32 a0); +extern void func_8017316C(void); +extern s32 func_8017319C(void *a0); +extern void func_80173174(void); +extern u8 D_800D5AA0[]; +extern void func_80173220(void *a0); +extern void func_801731D8(s32 *a0); +extern M2C_UNK D_80190890; +extern void func_80173220(void * arg0); +extern void func_80173294(void); +extern void func_801732C4(); +extern void func_8017329C(void); +extern void func_801732C4(s32 *a0); +extern void func_8017331C(); +extern void func_801732F4(void); +extern void func_8017331C(s32 *a0); +extern void func_80173374(); +extern void func_8017334C(void); +extern void func_80173374(s32 *a0); +extern void func_801733A4(void); +extern void func_801733CC(s32 a0); +extern void func_801734BC(s32 a0, s32 a1); +extern s16 D_80126B3E; +extern void func_80173460(s32 a0, s32 a1); +extern void func_801734BC(s32 arg0, s32 _unused1); +extern void (*D_801908FC[])(void); +extern void func_80173544(void *a0); +extern void func_801735B8(u8 *a0); +extern void func_80173580(u8 *a0); +extern s16 D_80126B40; +extern void func_801735EC(void *a0); +extern void func_80173648(u8 *a0); +extern void func_801736A8(void); +extern s32 func_8014C118(void *a0, s32 a1, s32 a2); +extern s32 func_801736FC(void *a0); +extern void func_801736B0(s32 a0, s32 a1); +extern void func_80173770(u8 *a0); +extern void func_80173738(u8 *a0); +extern void func_801723C4(s32 a0, s32 a1); +extern void func_801737B0(void); +extern s32 func_801737E8(void *a0); +extern void func_801737B8(s16 a0); +extern void func_8017385C(u8 *a0); +extern void func_80173824(u8 *a0); +extern void func_801738D4(void); +extern s32 func_8017390C(void *a0); +extern void func_801738DC(s16 a0); +extern void func_80173980(u8 *a0); +extern void func_80173948(u8 *a0); +extern void func_801739D8(u8 *a0); +extern void func_80173A20(void); +extern s32 D_8012750C; +extern void func_80173A60(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4); +extern void func_80173A28(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5); +extern void (*D_80190938[])(void); +extern void func_80173B4C(void *a0); +extern void func_80173BC0(u8 *a0); +extern void func_80173B88(u8 *a0); +extern void func_80173C64(u8 *a0); +extern void func_80173E1C(s32 a0); +extern s16 D_80126938; +extern s16 D_80126B3A; +extern void func_800D128C(s32, s32); +extern void func_80174158(s32 a0); +extern void func_8002A088(s32); +extern void func_8002A2D4(s32); +extern void func_8002A544(s32); +extern void func_8002A7B4(s32); +extern s32 func_80174188(s32 a0); +extern void func_801741A8(s32 a0); +extern s32 func_800D0EC4(void); +extern void func_800D0F0C(s32, s32); +extern void func_80145EE8(s32); +extern void func_80173EF8(void *param_1); +extern s32 func_8014BCEC(s32, s32); +extern void func_801741A8(s32 _arg0); +extern s16 D_80126B3C; +extern s16 D_8011F9C8; +extern void func_801741EC(u8 *a0); +extern void func_80174274(void); +extern s32 func_801742A4(void *a0); +extern void func_8017427C(void); +extern void func_80174318(u8 *a0); +extern void func_801742E0(u8 *a0); +extern void func_80174354(void); +extern s32 func_80174384(void *a0); +extern void func_8017435C(void); +extern void func_801743F0(u8 *a0); +extern void func_801743C0(u8 *a0); +extern void func_801743F0(u8 * a0); +extern void func_80174430(void); +extern s32 func_80174474(void *a0); +extern void func_80174438(s32 a0); +extern void func_801744E0(u8 *a0); +extern void func_801744B0(u8 *a0); +extern void func_80174524(void); +extern void func_80174554(); +extern void func_8017452C(void); +extern void func_80174554(s32 arg0); +extern void func_801745AC(); +extern void func_80174584(void); +extern void func_801745AC(s32 *a0); +extern void func_80174604(void); +extern void func_801745DC(void); +extern void func_80174630(void); +extern s32 func_80174650(s32 _arg0); +extern void func_80174674(void); +extern void func_801746A4(void); +extern s32 func_800CF8CC(void); +extern void func_80174714(void); +extern s32 func_80174754(void); +extern s16 func_80174764(void); +extern s16 func_80174774(void); +extern s32 func_801747CC(void *a0); +extern void func_80174784(void); +extern s32 func_801747AC(s32 a0); +extern s32 func_80174808(u8 *a0); +extern void func_8017481C(void); +extern s32 func_80174888(void *a0); +extern void func_80174824(void); +extern void func_8017484C(s32 a0); +extern void func_801748C4(s32 a0); +extern void func_801748E4(void); +extern void func_8012A018(s32 a, s32 b); +extern s32 func_8017496C(void *a0); +extern s32 D_80126954; +extern s32 D_80126950; +extern s32 D_8012695C; +extern s16 D_80126968; +extern s16 D_8012696A; +extern s16 D_8012696C; +extern s16 D_80126976; +extern s16 D_80126978; +extern s16 D_8012697A; +extern void func_801748EC(void); +extern s32 func_801749C8(); +extern s32 func_801749A8(s32 a0); +extern void func_80174BBC(void *a0); +extern void func_8012A0E0(void); +extern void func_80174BF4(void *a0); +extern void (*D_80190990[])(); +extern void func_80174BF4(void * arg0); +extern s32 func_80174CB0(s32, s32); +extern s32 func_80174C60(s32 a0); +extern void func_80174C80(s32 a0); +extern s32 D_8012697C; +extern u16 D_80126980; +extern s32 func_80174F28(void *a0); +extern void func_80174E9C(s32 a0); +extern void func_80174EF0(s32 a0, s16 a1); +extern s32 func_80175014(u8 *a0, u8 *a1, s32 a2); +extern void func_80174F64(u8 *a0); +extern void func_80174FBC(u8 *a0); +extern s32 func_8017509C(u8 *a0, s32 a1, u8 *a2, u8 *a3); +extern void func_80175184(s32 *a0); +extern void func_80175114(s32 *a0); +extern void func_80175184(); +extern void func_80175150(s32 *a0); +extern void (*D_801909A0[])(void*); +extern s32 func_80175268(s32); +extern void func_80175184(s32* arg0); +extern s32 func_80175218(void *a0); +extern void func_801751D8(void *a0); +extern void (*D_801909A8[])(s32); +extern s32 func_80175218(void * param_1); +extern void func_801752BC(s32 *a0); +extern u8 D_8011F7A8; +extern u8 D_8011F7A9; +extern u8 D_8011F7AD; +extern u8 D_8011F7AE; +extern void func_80175414(s32 _arg0); +extern void func_80175494(void); +extern void (*D_80190B10[])(); +extern s32 func_801758FC(void); +extern s32 func_80175820(void); +extern s32 func_801759D8(void); +extern void func_8017553C(s32 *param); +extern void func_801757A0(s32 a0); +extern short D_800B9A02; +extern void func_80175590(void *arg0); +extern s16 D_800B9A02; +extern void func_801757A0(s32); +extern void func_80175624(void *a0); +extern void func_801757E0(int); +extern void func_80175668(void); +extern void (*D_80190B1C[])(); +extern void func_80175690(s32 *param); +extern void func_80175DA8(s32 a0); +extern void func_80175AB8(s32 a0); +extern void func_80176144(s32 a0); +extern void func_801756E4(s32 arg0); +extern void func_80175798(void); +extern void func_80176734(s32 a0); +extern void func_80176218(s32 a0); +extern void func_80176D00(s32 a0); +extern void func_801757E0(s32 a0); +extern s32 func_80178004(s32 a0, s32 a1, s32 a2); +extern u8 D_8011F7B1; +extern u16 D_8011F7B4; +extern u16 D_8011F7B6; +extern s16 D_8011F81E; +extern void *func_80177784(void *a0, s32 a1, s32 a2, s32 a3); +extern u32 func_801783D0(s32 a0, s32 a1); +extern void *func_801777BC(void *a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5, s32 a6); +extern u16 D_8011F82C; +extern u16 D_8011F82A; +extern u32 * func_80176D94(void *param_1, u32 param_2, s16 param_3_); +extern void func_801778A8(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80176FF4(s32 a0); +extern u16 D_8011F830; +extern u16 D_8011F82E; +extern u32 * func_801770E0(void *param_1, u32 param_2, s16 param_3_); +extern void func_80177340(s32 a0); +extern u8 D_8011F837; +extern u8 D_8011F7F0; +extern u8 D_8011F7AB; +extern u32 * func_8017742C(u32 *param_1, s32 param_2, s32 param_3); +extern void func_801776EC(u8 *a0); +extern void * func_80177784(void *a0, s32 a1, s32 a2, s32 a3); +extern uint * func_80177EA4(uint *param_1, int param_2, uint param_3, int param_4); +extern void func_80177F84(s32 param_1, s32 param_2); +extern u32 * func_80178298(u32 *param_1, u8 *param_2, short param_3, short param_4); +extern M2C_UNK D_801E07F0; +extern void func_80178438(u16 *arg0); +extern void func_801787D4(void); +extern void func_8012A908(void); +extern void func_8017869C(s32 a0); +extern void func_80130D0C(s32 a0); +extern void func_8013E370(void); +extern s32 D_8011DB08; +extern void func_8017849C(void); +extern void func_8013E4B4(void); +extern s16 D_801270C4; +extern s32 D_801274D8; +extern s16 D_801270C2; +extern u8 D_801270C6; +extern u8 D_801270C7; +extern s32 D_801274DC; +extern s32 D_801274E0; +extern void func_80178608(void); +extern void func_80178744(s32 a0, s32 a1); +extern void func_80178840(); +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern void func_8012E8E0(s32 a0, s32 a1); +extern void func_8012B2CC(s32 a0); +extern s32 func_801788B8(s32 arg0, s32 arg1); +extern s32 func_801789AC(s32 arg0); +extern s16 D_801E21F8; +extern int func_80178970(void); +extern s32 func_80178B18(s32 param_1, s32 param_2); +extern s32 func_80178B70(s32 param_1, s32 param_2); +extern void func_80178BB8(s32 a0, s32 a1); +extern s32 func_80178BF8(); +extern s32 D_801E1AE0; +extern short D_801E226C; +extern void func_80178CBC(s32 arg0, s32 arg1); +extern void func_80178D18(void); +extern s32 func_80178D40(s32 arg0, s32 arg1); +extern void func_80179B28(s32 a0); +extern void func_80179B74(u16 *p); +extern void func_80179D30(u16 *a0); +extern void func_80179D78(u16 *a0); +extern void func_80179DCC(short a0); +extern void func_80179DF8(void); +extern void func_80179E1C(short a0); +extern void func_80179E48(s16 a0); +extern void func_80179E74(s16 a0); +extern void func_80179EA0(u16 *a0); +extern void func_80179EE8(short a0); +extern void func_80179F14(s16 a0, s16 a1); +extern void func_80179F44(void); +extern void func_80179F6C(short a0); +extern void func_80179F98(u16 *a0); +extern void func_80179FEC(u16 *a0); +extern void func_8017A040(u16 *a0); +extern s32 D_801E1F0C; +extern void func_8017A094(s32 arg0); +extern void func_8017A0C4(s32 arg0); +extern void func_8017A0F4(void); +extern void func_8017A11C(void); +extern s32 D_801E1F34; +extern void func_8017A144(s32 a0); +extern void func_8017A180(void); +extern void func_8017A1A8(void); +extern void func_8017A1D0(void); +extern void func_8017A1F8(void); +extern void func_8017A220(void); +extern void func_8017A248(void); +extern void func_8017A270(void); +extern void func_8017A298(void); +extern void func_8017A2C0(void); +extern void func_8017A2E8(void); +extern void func_8017A310(void); +extern void func_8017A338(void); +extern void func_8017A360(void); +extern void func_8017A388(void); +extern s16 D_801E1EF0; +extern s32 func_8017A3B0(void); +extern short D_801E1F2C; +extern short D_801E1F28; +extern int func_800D0CA0(int); +extern int func_8001AAA0(void); +extern int func_800D0CE0(void); +extern int func_8017A3D8(void); +extern void func_80172310(u8*); +extern void func_80172780(void*); +extern void func_80172894(void*); +extern void func_801729B0(s32); +extern void func_80172B14(s16); +extern void func_80172C50(u16 *); +extern void func_80172D68(s32); +extern void func_801733FC(s16, u16 *); +extern void func_80173460(s32, s32); +extern void func_801734BC(s32, s32); +extern void func_801736B0(s32, s32); +extern void func_801737B8(s16); +extern void func_801738DC(s16); +extern void func_80173A28(s32, s32, s32, s32, s32, s32); +extern void func_80174438(s32); +extern void func_8017A4AC(void); +extern s32 func_8017AD0C(s32 arg0); +extern s32 func_8017AD0C(s32); +extern s32 func_8017ADE8(s32 a0); +extern s32 func_8017AE08(void); +extern void func_8017B0E4(int param_1, int param_2); +extern s16 D_801E1EF4; +extern u16 D_801E1F74; +extern u16 D_801E1F76; +extern u16 D_801E1F78; +extern void func_8017B1D8(void); +extern s32 func_8017B238(s32 param_1, s32 param_2); +extern s32 func_8017B368(s32 param); +extern s32 func_8017B614(s32 param_1, s32 param_2); +extern s32 D_80114F30; +extern s32 D_80114F34; +extern s32 D_80114F38; +extern s32 D_80114F24; +extern s32 D_80114F28; +extern s32 D_80114F2C; +extern u8 D_8012694C; +extern s16 D_801E1F6C; +extern s16 D_801E1F6E; +extern s16 D_801E1F70; +extern s16 D_801E1F64; +extern s16 D_801E1F66; +extern s16 D_801E1F68; +extern void func_8017B7A8(void); +extern s16 D_801E1F84; +extern s16 D_801E1F86; +extern s16 D_801E1F88; +extern s16 D_801E1F8C; +extern s16 D_801E1F8E; +extern s16 D_801E1F90; +extern void func_8017B824(void); +extern void func_8017B880(void); +extern s32 func_8017B8E8(s32 src); +extern short D_801E1F7C; +extern short D_801E1F7E; +extern short D_801E1F80; +extern void func_8017B940(void); +extern void func_8012F214(s32 a0, s32 a1, s32 a2); +extern void func_80049CAC(s32 a0, s32 a1); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void RotTransSV(void *a0, void *a1, void *a2); +extern SV4 D_801E1F14; +extern SV4 D_801E1F1C; +extern void func_8017BA3C(s32 param_1, s32 param_2); +extern s32 func_8017BB34(s32 param_1, s32 param_2); +extern void (*D_801E1F3C[10])(int); +extern void func_8017BC38(int param_1); +extern void func_8017B0E4(int, int); +extern void func_8017BCA0(int param_1); +extern void func_8012A4BC(void); +extern void func_8017BCF4(int param_1); +extern void (*D_801E1F38)(void); +extern void func_8017BD50(int param_1); +extern void (*D_80190CF8[])(void); +extern void func_8017BE60(void *a0); +extern void func_8017BE9C(void); +extern void func_8017BEA4(void); +extern void func_8017BEAC(void); +extern void func_8017BEB4(void); +extern void func_8017BEBC(s32 arg0); +extern void (*D_80190DDC[])(void); +extern void func_8017CF14(void *a0); +extern void func_8017D224(void); +extern s32 func_8017CF50(s32 a0); +extern s32 func_8017CF94(void); +extern void (*D_80190DE4[])(void); +extern void func_8017CFB8(void *a0); +extern void func_8017D24C(void); +extern s32 func_8017CFF4(s32 a0); +extern s32 func_8017D038(void); +extern void (*D_80190DEC[])(void); +extern void func_8017D05C(void *a0); +extern void func_8017D274(void); +extern s32 func_8017D098(s32 a0); +extern void func_8001BFD0(void); +extern void func_800D1E28(void); +extern s32 func_8017D0D8(u8 *a0); +extern void func_800D1EBC(void); +extern void func_8017D154(void); +extern void (*D_80190DF8[])(void); +extern void func_8017D174(void *a0); +extern s32 func_8017D1B0(s32 a0); +extern void (*D_80190E20[])(void); +extern void func_8017D59C(void *a0); +extern s32 func_80012ABC(s32 a0, s32 a1, s32 a2); +extern void func_8017D9C0(s32 param_1, s16 *param_2); +extern void func_8017DB58(void); +extern void func_8013B7F4(s32 arg0); +extern s32 D_80190E40[]; +extern void func_8017DB74(int param_1); +extern void func_8017E2A8(void); +extern void func_8012C218(void *a0); +extern void func_8017E2B0(void *arg0); +extern void (*D_80190F7C[])(void); +extern void func_8017E2F4(void *a0); +extern void (*D_80190F84[])(void); +extern void func_8017E40C(void *a0); +extern void func_8017EFD8(void); +extern void (*D_80191058[])(void); +extern void func_8017F2D0(void *a0); +extern s32 func_8017F0D4(void); +extern void func_8017F4B0(void); +extern void (*D_80191070[])(void); +extern void func_8017F4D0(void *a0); +extern void func_8012C1B8(void); +extern void func_8012CAE4(void *a0); +extern void func_8001C214(s32, s32); +extern u32 D_80191060; +extern void func_8017F50C(s32 arg0); +extern void func_8017F588(void); +extern s32 func_8017F590(void); +extern void func_8012DFD4(void *a0); +extern void func_8017F598(void *a0); +extern void func_8017F7FC(void); +extern void func_8012AD44(s32 *a0, s16 a1); +extern void func_8017FED0(s32 a0); +extern void func_801800AC(s32 arg0); +extern void (*D_801AD3B4[])(void); +extern void func_80180310(void *a0); +extern void func_80180CB0(s32 arg0); +extern void (*D_801AD420[])(void); +extern void func_80180EA4(void *a0); +extern void func_80180F30(s32 target, u16 *cur, s32 step); +extern void (*D_801AD44C[])(void); +extern void func_80181168(void *a0); +extern void func_8012B23C(); +extern void func_801812F8(s32 a0); +extern code_fn D_801AD508[]; +extern s32 func_8012B414(s32 a0); +extern void func_801813C8(int param_1); +extern void func_80181418(s32 arg0); +extern void func_8018165C(void); +extern void func_801817D0(void); +extern void func_8012A828(s32 a0, void *a1); +extern void func_80181D70(s32 param_1); +extern void func_80181FA4(s32 param_1); +extern void func_8001C924(s32 a0, void *a1); +extern s32 func_8012BEE8(); +extern s32 func_8012B6D4(s16 *a0, s16 *a1); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern void func_8012B178(s32 a0, s32 a1); +extern s32 func_801856F0(s32 a0); +extern void func_80013350(s32 a0, void *a1); +extern void func_80182610(s32 p); +extern s32 func_8012BDBC(s32 a0, s32 a1); +extern void func_80142414(s32 a0, s16 a1); +extern void func_801828D8(s32 p); +extern u8 D_801D47C0[]; +extern void func_80182998(s32 param_1); +extern void func_801832FC(s32 param_1); +extern void func_80185878(s32 a0); +extern void func_8012F214(s32, s32, s32); +extern s32 func_8012BCCC(s32 a0); +extern s32 func_80187318(void *a0, s32 a1, s32 a2); +extern s32 func_8012BEE8(); /* TU-canonical: an earlier call site passes zero args */ +extern void func_801833B4(s32 p); +extern s32 func_8012B8E4(s32 a0, s32 a1); +extern void func_80187414(s32 a0, void *a1, void *a2, s32 a3); +extern void func_801873B0(s32 a0, void *a1, s32 a2, s32 a3, s32 a4, s32 a5); +extern s32 func_80132EF4(s32 a0, s32 a1); +extern void func_80049CAC(s32, s32); +extern void func_800484EC(s32, s32, s32); +extern void func_80187EF4(s32 a0, s32 a1); +extern void func_8018358C(s32 p); +extern s32 func_8012BEE8(s32 a0); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); +extern s32 func_8012B744(void *a0, void *a1); +extern void func_80187414(s32, void*, void*, s32); +extern void func_801873B0(s32, void*, s32, s32, s32, s32); +extern s32 func_80013478(s32 a0, s32 a1); +extern void func_80183A20(s32 param_1); +extern void func_801850CC(void); +extern void func_80183E3C(s32 arg0); +/* ==== end §8b carried decl layer ==== */ + + +extern void func_80184F88(s32 a0); +extern s32 func_8012DBD0(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80184E14(s32 a0, s32 a1); +extern void func_8012CC64(s32 a0, s32 a1); +extern s32 func_80143B6C(s32 a0, s32 a1); +extern s32 func_8012CBA4(s32 a0); +extern s32 func_8012CBF4(s32 a0); +extern void func_8012B23C(s32 a0); +extern void func_80131C78(s32 a0); +extern void func_80131E00(); +extern void func_80187EF4(s32 a0, s32 a1); + + +void func_80184A28(s32 a0) { + + extern u8 D_801BD2E4; + u16 sp10[4]; + s32 s1; + + if (*(s16 *)(a0 + 0xA) >= 0x10) { + func_80184F88(a0); + return; + } + + if (*(s32 *)(a0 + 0x10) != 0 || *(s32 *)(a0 + 0x18) != 0) { + func_8012DBD0(a0, 0x50, + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) + 0x800, 0x1D); + } + + switch (*(u8 *)(a0 + 0xC2)) { + case 0: + func_80184E14(a0, (s32)&D_801BD2E4); + *(u8 *)(a0 + 0xC2) += 1; + case 1: + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) -= 0x100; + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) >= 0x29) { + func_80131E00(a0, 0xD); + return; + } + s1 = ((s32 (*)(s32, s32))func_8012CC64)(a0, (s32)&D_801BD2E4); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x4000) { + func_8012B23C(a0); + *(u8 *)(a0 + 0xC2) = 4; + } else if (s1 & 0x2000) { + *(u8 *)(a0 + 0xC2) = 2; + func_80143B6C(a0, 1); + *(s32 *)(a0 + 0x14) = 0xFFF30000; + *(s32 *)(a0 + 0x1C) = 0; + func_80187EF4(a0, 0x9B8); + } + break; + + case 2: + { + s32 s2; + + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) -= 0x100; + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) >= 0x29) { + func_80131E00(a0, 0xD); + return; + } + s2 = *(s32 *)(a0 + 0x14); + s1 = ((s32 (*)(s32, s32))func_8012CC64)(a0, (s32)&D_801BD2E4); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x4000) { + func_8012B23C(a0); + *(u8 *)(a0 + 0xC2) = 4; + } else if (s1 & 0x2000) { + func_80143B6C(a0, 1); + *(s32 *)(a0 + 0x14) = (-s2) / 3; + *(s32 *)(a0 + 0x1C) = 0; + *(u8 *)(a0 + 0xC2) = 3; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) = 0; + } + } + break; + + case 3: + *(s32 *)(a0 + 0x10) = *(s32 *)(a0 + 0x10) * 15 / 16; + *(s32 *)(a0 + 0x18) = *(s32 *)(a0 + 0x18) * 15 / 16; + if (*(u8 *)(a0 + 0xC3) & 1) { + s1 = func_8012CBA4(a0); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (!(s1 & 0x6000)) { + func_80131E00(a0, 0xD); + return; + } + } else { + s1 = func_8012CBF4(a0); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x4000) { + func_8012B23C(a0); + *(u8 *)(a0 + 0xC2) = 4; + break; + } else if (s1 & 0x2000) { + *(u8 *)(a0 + 0xC3) |= 1; + func_80187EF4(a0, 0x9B8); + } + } + if ((*(s32 *)(a0 + 0x1C) & 3) == 3) { + func_80143B6C(a0, 1); + } + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) < 0x11) { + break; + } + if (!(s1 & 0x6000)) { + func_80131E00(a0, 0xD); + return; + } + if (*(s16 *)(a0 + 0x76) <= 0) { + func_80131E00(a0, 6); + } else { + func_80131C78(a0); + } + break; + + case 4: + s1 = func_8012CBA4(a0); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x2000) { + if (*(s16 *)(a0 + 0x76) <= 0) { + func_80131E00(a0, 6); + } else { + func_80131C78(a0); + } + } else { + if ((*(s32 *)(a0 + 0x1C) & 3) == 3) { + func_80143B6C(a0, 1); + } + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) >= 0x3D) { + func_80131E00(a0, 0xD); + return; + } + } + break; + } +} + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80184E14); + +extern void func_80187EF4(s32 arg0, s32 arg1); + void func_80184F68(s32 arg0) { + func_80187EF4(arg0, 0x9B7); + } + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80184F88); + + +extern void func_801850CC(void); +extern void func_80185578(s32 a0, s32 a1); +extern void func_8012A828(s32 a0, void *a1); + +void func_8018500C(s32 param_1) { + + extern s32 D_801D50C8; + u16 uVar1; + s32 iVar2; + + *(s16 *)(param_1 + 0x34) = 0; + if ((*(u32 *)(param_1 + 0xe0) & 8) == 0) { + func_801850CC(); + } else { + if ((*(u32 *)(param_1 + 0xe0) & 0x20) != 0) { + func_80185578(param_1, -0x8000); + } + *(s16 *)(param_1 + 2) = 0x22; + func_8012A828(param_1, &D_801D50C8); + } + iVar2 = *(s32 *)(param_1 + 0x20); + *(s16 *)(iVar2 + 0x14) = 0; + *(s16 *)(iVar2 + 0x10) = 0; + uVar1 = *(u16 *)(*(s32 *)(param_1 + 0x78) + 2); + *(u32 *)(param_1 + 0xe0) = (*(u32 *)(param_1 + 0xe0) & 0xffffffd5) | 0x400; + *(s16 *)(param_1 + 0x5e) = 0; + *(u16 *)(param_1 + 0xae) = *(u16 *)(param_1 + 0xae) & 0xfffe; + *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) & 0xfffffffb; + *(s16 *)(param_1 + 0x5c) = uVar1; +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801850CC); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801851C4); + + + +extern s32 func_8012BCCC(s32 a0); +extern s32 func_80187460(s32 a0, s32 a1); +extern void func_8012F214(s32, s32, s32); +extern s32 func_80187318(void *a0, s32 a1, s32 a2); + +/* Two load-bearing constructs (do NOT "clean up"): + * 1. `goto ret0` / `goto store` with `ret0:` placed BEFORE the store block — cookbook L1344 + * shared-ret0 goto. A trailing `return 0` makes gcc sink the merged ret0 tail past the + * store block (7 mismatches: BRANCH-POLARITY + swapped tail). + * 2. `register s32 r __asm__("$2")` on the func_80187460 result + `return r`. Plain + * `return 0;` there emits `set v0,0; j epi`, which cross_jump (§5a) merges into the + * ret0 block, so the branch lands on ret0 instead of the epilogue. Pinning r to $v0 + * makes `return r` a self-copy that dies before jump2, leaving a bare `j epi` that + * jump.c collapses into `beqz $v0, .L8018730C`. (A plain `s32 r` does NOT work — cse2 + * const-folds `r` to 0 on the fall-through edge and the merge comes back.) */ +s32 func_801852E4(s32 p) { + + extern s32 D_80126B9C; + extern u8 D_801BD0BC[]; + s32 buf10[2]; + register s32 r __asm__("$2"); /* $v0 — see note 2 above */ + + if ((*(u32 *)(p + 0xE0) & 1) == 0) { + goto ret0; + } + if (*(u16 *)(p + 2) == 1) { + goto ret0; + } + if (*(u16 *)(p + 2) == 0xD) { + return 0; + } + if ((D_80126B9C & 2) == 0) { + return 0; + } + if (0x10000 < func_8012BCCC(p)) { + return 0; + } + r = func_80187460(p, 0x380); + if (r == 0) { + return r; + } + ((void (*)(s32, void *, void *))func_8012F214)(p, D_801BD0BC, buf10); + if (func_80187318(buf10, *(s16 *)(*(s32 *)(p + 0x20) + 0x12), 0x380) != 0) { + goto store; + } +ret0: + return 0; +store: + *(u16 *)(p + 2) = 0xC; + return 1; +} + + + +/* func_801853B4 — walk the 0x60-entry / 0x10C-stride entity table D_801202A0 and + * react to the first neighbour of class 0x27A (get pushed away from it) or 0x2F4 + * (get clamped down onto it). + * + * §71 sibling-first: the callee signatures below are copied VERBATIM from this TU's + * own already-matched neighbours — func_8012B0B4 (TU L6971/7855/8177), func_8012B6D4 + * (TU L6419), func_8012CEB0 (TU L7226, the func_80187844 block), func_8012C098 + * (TU L5379) — and D_801202A0 is the TU's file-scope `extern u8 D_801202A0[];` (L384). + * func_8012BC60 / func_8012ADE4 are not declared in this TU; the forms below are the + * fleet-majority shapes (func_8012ADE4 verbatim; func_8012BC60 with `void *` instead of + * `struct Vec *` so the draft does not depend on engine_types.h being in scope). + * + * FIVE load-bearing constructs (do NOT "clean up"): + * + * 1. NO SECOND WALKED POINTER. All of +0x6/+0xA/+0xE are written as `*(T *)(p + k)` + * off the single biv `p`. combine_givs then merges the three DEST_ADDR givs onto + * ONE anchor = the LAST-emitted one (+0xE, from the case-0x2F4 `lh`), giving the + * target's `$s3 = $s2 + 0xE` with -0x8/-0x4/0x0 displacements. + * An explicit `q = p + 0xE` with `*(u16 *)q` looks equivalent and is NOT: + * gcc-2.7.2 excludes a bare `*q` (mult 1, add 0) from givs (find_mem_givs:4198), + * so q stays a live biv AND the remaining two accesses combine onto their own + * anchor +0xA => THREE IVs, the wrong anchor, and the $s6 hoist lost to pressure + * (measured: 111 ins, 87 mismatched). gcc-2.7.2-map/loop.md §L1 rules 4 & 6. + * + * 2. `switch`, not `if/else if`. The two-case switch is what emits the target's + * compare CHAIN with BOTH arms out of line (`beq`/`beq`/`j default`, 6 slots). + * An `if (id == 0x27A) ... else if (id == 0x2F4)` inverts the first test and lets + * the 0x27A arm fall through — 2 instructions short. + * + * 3. do-while with `i++` BEFORE `p += 0x10C`. strength_reduce inserts the reduced + * giv's `addiu` immediately before ITS biv's increment, so the source order + * i-then-p is what produces `addiu $s4,$s4,1` / `addiu $s3,$s3,0x10C` / + * (delay) `addiu $s2,$s2,0x10C`. A `for (i = 0; i < 0x60; i++)` with `p += 0x10C` + * last puts the giv add first and swaps the pair. + * + * 4. `self4` and `sc` are REAL pre-loop locals, in that order. Both are loop + * invariants; written inline as `(s16 *)(a0 + 4)` / `(unsigned int *)sp20` at the + * call, combine folds the address straight into the argument move + * (`addiu $a0,$sp,0x20`) and the target's `$s6 = $sp + 0x20` hoist never happens. + * Assigning them in a *different basic block* from their uses is what keeps the + * pseudos alive; the declaration ORDER (p, i, self4, sc) is what gives + * $s2/$s4/$s5/$s6 in the target's prologue emission order. + * + * 5. `s16 y` (a SHORT local), and `s32 sp20[2]` (an EIGHT-byte scratch). + * - The short local is why `y` gets a second pseudo: gcc-2.7.2 emits + * `(set (reg:HI B) (subreg:HI (reg:SI A)))` for the HImode assignment, i.e. the + * target's `addu $a1,$a0,$zero` in the branch delay slot, with the two `- 0x60` + * recomputed from A ($a0, the compare) and B ($a1, the stored value). + * An `s32 y` coalesces the pair away and loses that instruction. + * - The short local also costs a DEAD 4-byte reload home at the top of the frame + * (`(use (mem:SI (plus $sp 48)))` in the greg dump, no insn references it). + * That is exactly why the func_8012B0B4 buffer is 8 bytes, not 16: 0x10 + 8 + * (v10) + 8 (v18) + 8 (sp20) + 4 (dead) rounds to 0x30 = the target's first + * saved-register slot. 8 bytes also matches the fleet's canonical shape for a + * func_8012B0B4 output buffer (`unsigned int buf[2]`). + */ + + +extern s32 func_8012BC60(void *a0, void *a1); +extern s32 func_8012B6D4(s16 *a0, s16 *a1); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); +extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); +extern void func_8012ADE4(u8 *a0); +extern void func_8012C098(void *param_1); + +void func_801853B4(s32 a0) { + + extern u8 D_801202A0[]; + u8 *p; + s16 *self4; + unsigned int *sc; + s32 i; + s16 y; + s32 z; + s32 ang; + s16 v10[4]; /* sp+0x10 */ + s16 v18[4]; /* sp+0x18 */ + s32 sp20[2]; /* sp+0x20 — func_8012B0B4 output */ + + p = D_801202A0; + i = 0; + self4 = (s16 *)(a0 + 4); + sc = (unsigned int *)sp20; + do { + if ((u8 *)a0 != p) { + switch (*(u16 *)p) { + case 0x27A: + if (func_8012BC60((void *)self4, (void *)(p + 4)) < 0x6400) { + ang = func_8012B6D4(self4, (s16 *)(p + 4)); + func_8012B0B4(sc, ang, 0xA1); + v18[0] = *(u16 *)(p + 6); + v18[1] = *(u16 *)(p + 0xA); + v18[2] = *(u16 *)(p + 0xE); + v18[0] += sp20[0]; + v18[2] += sp20[0] >> 16; + v18[1] = *(u16 *)(a0 + 0xA); + v10[0] = *(u16 *)(a0 + 0x3A); + v10[1] = *(u16 *)(a0 + 0x3E); + v10[2] = *(u16 *)(a0 + 0x42); + if ((func_8012CEB0(v10, v18, 0) & 0x2000) == 0) { + func_8012ADE4((u8 *)a0); + return; + } + *(u16 *)(a0 + 6) = v18[0]; + *(u16 *)(a0 + 0xA) = v18[1]; + *(u16 *)(a0 + 0xE) = v18[2]; + return; + } + break; + case 0x2F4: + y = *(s16 *)(p + 0xE); + z = *(s16 *)(a0 + 0xE); + if (y + 0x10 < z) { + func_8012C098((void *)a0); + return; + } + if (y - 0x60 < z) { + *(s16 *)(a0 + 0xE) = y - 0x60; + } + break; + } + } + i++; + p += 0x10C; + } while (i < 0x60); +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80185578); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801856F0); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80185750); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80185878); + + +/* func_801858D8 — line-of-sight / collision probe. + * + * Rotate the direction SVECTOR D_801BD30C[dir] through the entity's matrix + * (*(0x20) + 0x34) into a scratch SVECTOR at sp+0x10, build the segment + * start (sp+0x18) = entity pos and end (sp+0x20) = entity pos + rotated + * vector, then hand the pair to func_8012CEB0 / func_800132BC. + * + * §71 sibling-first: DEFINE_func_80169408 / DEFINE_func_8016986C in + * src/shared/engine_core.h are the house shape for this ApplyMatrixSV + + * SVECTOR-local family — `s16 vNN[4]` locals declared in ASCENDING stack + * offset order (sp+0x10, sp+0x18, sp+0x20) and the entity position read as + * `*(u16 *)(s1 + 0x6 / 0xA / 0xE)` (which is what makes the loads `lhu`). + * + * The target stores each of sp+0x20/0x22/0x24 TWICE — a plain copy first, + * then the copy plus the rotated component — so the source assigns the + * position, then `+=` the delta as separate statements (the local's address + * is taken, so gcc-2.7.2 cannot kill the first store). + */ + +extern void ApplyMatrixSV(void *a0, void *a1, void *a2); +extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); +extern s32 func_800132BC(void *a0, void *a1); + +s32 func_801858D8(s32 a0, s32 a1) { + + extern s16 D_801BD30C[][4]; + extern s32 D_801E1FB0; + s32 s0 = a0; + s16 v10[4]; /* sp+0x10 SVECTOR — ApplyMatrixSV out */ + s16 v18[4]; /* sp+0x18 SVECTOR — segment start */ + s16 v20[4]; /* sp+0x20 SVECTOR — segment end */ + s32 r; + + ApplyMatrixSV((void *)(*(s32 *)(s0 + 0x20) + 0x34), D_801BD30C[a1], v10); + v18[0] = *(u16 *)(s0 + 0x6); + v18[1] = *(u16 *)(s0 + 0xA); + v18[2] = *(u16 *)(s0 + 0xE); + v20[0] = *(u16 *)(s0 + 0x6); + v20[1] = *(u16 *)(s0 + 0xA); + v20[2] = *(u16 *)(s0 + 0xE); + v20[0] = v20[0] + v10[0]; + v20[1] = v20[1] + v10[1]; + v20[2] = v20[2] + v10[2]; + r = func_8012CEB0(v18, v20, 0); + D_801E1FB0 = func_800132BC(v18, v20); + return r != 0x2000; +} + + + +extern void (*D_801BD34C[])(void); + +void func_801859B8(void *a0) { + D_801BD34C[*(u16 *)((s32)a0 + 0x2)](); +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801859F4); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80185B80); + + +extern void func_8012C218(void *a0); +extern void func_8012E8A8(u8 *a0); + +/* §48-C2: lwl/lwr/swl/swr block copy == a plain struct assign of a 2-byte-aligned struct */ + +void func_80185E64(s32 param_1) +{ + s32 t1 = *(s32 *)(param_1 + 0x64); + s32 pad[2]; + + if (*(s16 *)(t1 + 0x36) != *(s16 *)(param_1 + 0x10A)) { + func_8012C218((void *)param_1); + return; + } + { + if ((*(u32 *)(t1 + 0xE0) & 4) != 0) { + func_8012E8A8((u8 *)param_1); + return; + } + { + s32 a2 = *(s32 *)(*(s32 *)(t1 + 0x20) + 0x20); + s32 a3 = param_1 + 0xFC; + + if (a2 != 0) { + if ((a2 & 0x1000000) != 0) { + s32 a1 = a2 & 0xFEFFFFFF; + register u32 v0 __asm__("$2"); + u32 a0; + u32 v1a; + u32 v1b; + u32 v0b; + u32 v1; + + *(u16 *)(param_1 + 0x102) = *(u16 *)(a1 + 0x66); + + v0 = *(u32 *)(a1 + 0x60); + a0 = *(u8 *)(a1 + 0x61); + v1a = (v0 & 0xF) << 8; + a0 = a0 | v1a; + v1b = ((s32)v0 >> 16) & 0xFF; + v0b = (v0 & 0xF0) << 4; + v1 = v1b | v0b; + *(u16 *)(param_1 + 0x104) = (u16)a0; + *(u16 *)(param_1 + 0x106) = (u16)v1; + + *(s16 *)(param_1 + 0xFC) = (s8)*(u8 *)(a1 + 0x63); + *(s16 *)(param_1 + 0xFE) = (s8)*(u8 *)(a1 + 0x64); + *(s16 *)(param_1 + 0x100) = (s8)*(u8 *)(a1 + 0x65); + } else { + *(UAlign12_80185E64 *)(param_1 + 0xFC) = *(UAlign12_80185E64 *)(a2 + 0x90); + } + *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = a3; + } + + if ((*(u32 *)(t1 + 0xE0) & 0x80) != 0) { + if (*(u16 *)(param_1 + 0x34) == 0) { + s16 sVar2 = *(u16 *)(param_1 + 0x108) + 0x40; + *(s16 *)(param_1 + 0x108) = sVar2; + if (sVar2 > 0x200) { + *(u16 *)(param_1 + 0x108) = 0x200; + *(s16 *)(param_1 + 0x34) = *(s16 *)(param_1 + 0x34) + 1; + } + } else { + u16 uVar3 = *(u16 *)(param_1 + 0x108) - 0x80; + *(u16 *)(param_1 + 0x108) = uVar3; + if ((s16)uVar3 < 0) { + *(u16 *)(param_1 + 0x108) = 0; + *(u16 *)(param_1 + 0x34) = 0; + *(u32 *)(t1 + 0xE0) = *(u32 *)(t1 + 0xE0) & ~0x80; + } + } + } + + *(u16 *)(a3 + 6) = *(u16 *)(a3 + 6) + *(u16 *)(param_1 + 0x108); + + *(u32 *)(param_1 + 4) = *(u32 *)(t1 + 4); + *(u32 *)(param_1 + 8) = *(u32 *)(t1 + 8); + *(u32 *)(param_1 + 0xC) = *(u32 *)(t1 + 0xC); + + *(UAlign8_80185E64 *)(param_1 + 0x50) = *(UAlign8_80185E64 *)(t1 + 0x50); + + { + s32 dst = *(s32 *)(param_1 + 0x20); + s32 src = *(s32 *)(t1 + 0x20); + *(UAlign8_80185E64 *)(dst + 0x10) = *(UAlign8_80185E64 *)(src + 0x10); + } + { + s32 dst = *(s32 *)(param_1 + 0x20); + s32 src = *(s32 *)(t1 + 0x20); + *(UAlign8_80185E64 *)(dst + 0x18) = *(UAlign8_80185E64 *)(src + 0x18); + } + { + s32 src = *(s32 *)(t1 + 0x20); + s32 dst = *(s32 *)(param_1 + 0x20); + *(u32 *)(dst + 4) = *(u32 *)(src + 4); + } + { + s32 src = *(s32 *)(t1 + 0x20); + s32 dst = *(s32 *)(param_1 + 0x20); + *(u16 *)(dst + 0x2C) = *(u16 *)(src + 0x2C); + } + } + } +} + + + +extern void (*D_801BD4A4[])(void); + +void func_8018611C(void *a0) { + D_801BD4A4[*(u16 *)((s32)a0 + 0x2)](); +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80186158); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801862C8); + + +extern void func_8012C218(void *a0); +extern s32 func_8012D5E4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80187094(s32 a0, s32 a1); +extern s32 func_8012B8E4(s32 a0, s32 a1); +extern s32 func_8012BEE8(s32 a0); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern s32 func_8012CBF4(s32 a0); +extern void func_8012B178(s32 a0, s32 a1); +extern u8 *func_8012913C(s32 a0); +extern void func_8012F214(s32 a0, s32 a1, s32 a2); + + +void func_80186330(s32 param_1) { + + extern u8 D_801BD41C; + extern u8 D_801BD4D0[]; + extern u16 D_80126CB4; + extern u16 D_80126CB6; + extern u16 D_80126CB8; + u16 uVar1; + + if (0xf < *(s16 *)(param_1 + 0xA)) { + func_8012C218((void *)param_1); + return; + } + + { + s32 base = (s32)&D_801BD41C; + s32 r = func_8012D5E4(param_1, base, base + 8, 0x78); + if (r == 1 || (*(u16 *)(param_1 + 0x5C) & 1) != 0) { + func_80187094(param_1, 1); + func_8012C218((void *)param_1); + return; + } + } + + uVar1 = *(u16 *)(param_1 + 0x34); + switch (uVar1) { + default: + return; + case 0: + { + s32 sVar3 = func_8012B608((s32)*(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10), 0, 0x18); + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + sVar3; + } + { + s32 r = func_8012CBF4(param_1); + if (r != 0) { + goto LAB_8018847c; + } + } + { + s32 r = func_8012BEE8(param_1); + if (r == 0) return; + } + *(u16 *)(param_1 + 0xF4) = D_80126CB4; + *(u16 *)(param_1 + 0xF6) = D_80126CB6; + { + u16 tmp = D_80126CB8; + *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; + *(s32 *)(param_1 + 0x1C) = 0x3C; + *(u16 *)(param_1 + 0xF8) = tmp; + } + return; + case 1: + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) += func_8012B8E4(param_1, 0x20); + { + s32 r = func_8012BEE8(param_1); + if (r != 0) { + *(s32 *)(param_1 + 0x1C) = 0x5A; + *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; + } + } + break; + case 2: + break; + } + + *(u16 *)(param_1 + 0xF2) = *(u16 *)(param_1 + 0xF2) - 0x100; + func_8012B178(param_1, 0xFFEC0000); + { + s32 r = func_8012CBF4(param_1); + if (r != 0) goto LAB_8018847c; + } + if (*(u16 *)(param_1 + 0x34) != 2) goto LAB_80188494; + { + s32 r = func_8012BEE8(param_1); + if (r != 1) goto LAB_80188494; + } +LAB_8018847c: + *(u16 *)(param_1 + 2) = 9; + func_80187094(param_1, 1); + return; +LAB_80188494: + { + s32 iv = (s32)func_8012913C(0x80); + if (iv == 0) return; + { + u16 out[4]; + ((void (*)(s32, void *, void *))func_8012F214)(param_1, D_801BD4D0, out); + *(u16 *)(iv + 6) = out[0]; + *(u16 *)(iv + 0xA) = out[1]; + *(u16 *)(iv + 0xE) = out[2]; + } + return; + } +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80186588); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801865E8); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80186720); + + +// @class: struct +// @stuck: none — MATCH (276 ins, relocation-masked). Verified BOTH standalone (match_one) and +// spliced into src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c (whole-TU cc1 -O2 clean, +// masked structured_diff 0/276). +// Keys: (1) the first func_8012C218 call gets a NOP delay slot because reload_cse_regs deletes the +// redundant `move a0,s1` -- $a0 still holds the incoming param on the fall-through path +// (no CODE_LABEL between the prologue and the jal). The second call site is behind a +// label, so the move survives. Source is the natural `func_8012C218((void *)param_1)` at +// BOTH sites -- do NOT write a zero-arg call (it also breaks in-TU: the composite type +// from the earlier file-scope `extern void func_8012C218(void *a0);` rejects 0 args). +// (2) case 0's guard is an `||` with an early return -- that is what puts `beqz -> fail` then +// `beq -> ok` (an `&&` would emit `bne -> fail`). +// (3) `register s32 sVar2 __asm__("$2")` holds the p+0x34 reload in cases 1/2 so the two arms +// cross-jump into the shared .L80188928 tail. +// (4) `__asm__ __volatile__("")` after the func_8012C658 arm forces the `lw v1,0x1C(s1)` +// reload before the cross-jumped `li v0,9` (§21 zero-byte re-tie). +// (5) `-((iVar3 << 0x10) / 0x22)` reproduces the 0x78787879/sra-4 magic-divide by 34 + negu. +// (6) `*p * 0xc` then `>>4` with the manual `if (x<0) x+=0xf` is the /16 rounding form. + +extern void func_8012C218(void *a0); +extern void func_80187414(s32, void*, void*, s32); +extern s32 func_80013328(s32 a0, s32 a1); +extern void func_8012B14C(s32 a0, s32 a1); +extern void func_8012CC64(s32 a0, s32 a1); /* fleet-canonical: void; $v0 used -> cast at use */ +extern s32 func_8012C658(s32, s32, s32); +extern s32 func_80143B6C(s32 a0, s32 a1); /* fleet-canonical */ +extern s32 func_8012BEE8(s32 a0); +extern void func_80016714(void*, s32); +extern void func_80187094(s32 a0, s32 a1); + + +void func_80186744(s32 param_1) { + + extern u8 D_801D51D0; + extern u8 D_801BD444; + extern u8 D_801BD44C; + extern u8 D_801BD43C; + extern u8 D_80126B5C; + u16 uVar1; + register s32 sVar2 __asm__("$2"); + s32 iVar3; + s32 iVar4; + s32 iVar5; + u32 uVar4; + s32 psVar5; + u16 buf[8]; + s32 vec[3]; + + if (0xf < *(s16 *)(param_1 + 0xA)) { + func_8012C218((void *)param_1); + return; + } + uVar1 = *(u16 *)(param_1 + 0x34); + switch (uVar1) { + case 0: + psVar5 = *(s32 *)(param_1 + 0x64); + if ((*(u16 *)psVar5 == 0) || + (*(s32 *)(psVar5 + 0x90) != (s32)&D_801D51D0)) { + func_8012C218((void *)param_1); + return; + } + if (*(s32 *)(psVar5 + 0x94) < 0x11) { + ((void (*)(void *, void *, void *, s32))func_80187414)((void *)psVar5, (void *)&D_801BD444, buf, 5); + *(s16 *)(param_1 + 6) = buf[0]; + *(s16 *)(param_1 + 0xA) = buf[1]; + *(s16 *)(param_1 + 0xE) = buf[2]; + return; + } + ((void (*)(void *, void *, void *, s32))func_80187414)((void *)psVar5, (void *)&D_801BD44C, buf, 4); + ((void (*)(void *, void *, void *, s32))func_80187414)((void *)psVar5, (void *)&D_801BD44C, &buf[4], 5); + *(s16 *)(param_1 + 6) = + (s16)((*(s16 *)&buf[0] + *(s16 *)&buf[4]) >> 1); + *(s16 *)(param_1 + 0xA) = + (s16)((*(s16 *)&buf[1] + *(s16 *)&buf[5]) >> 1); + *(s16 *)(param_1 + 0xE) = + (s16)((*(s16 *)&buf[2] + *(s16 *)&buf[6]) >> 1); + if (*(s32 *)(psVar5 + 0x94) != 0x19) { + return; + } + *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; + vec[0] = 0; + vec[1] = 0xfff40000; + iVar3 = func_80013328((s32)&D_80126B5C, param_1 + 4); + vec[2] = -((iVar3 << 0x10) / 0x22); + func_8012B14C(param_1, (s32)vec); + *(s32 *)(param_1 + 0x48) = 0xc000; + return; + case 1: + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x80; + iVar3 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BD43C); + if (iVar3 == 0) { + return; + } + sVar2 = *(u16 *)(param_1 + 0x34); + *(s32 *)(param_1 + 0x1c) = 0; + *(u16 *)(param_1 + 0x34) = sVar2 + 1; + return; + case 2: + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x40; + uVar4 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BD43C); + if ((uVar4 & 0x2000) == 0) { + return; + } + iVar4 = *(s32 *)(param_1 + 0x1c) + 1; + *(s32 *)(param_1 + 0x1c) = iVar4; + if (iVar4 >= 4) { + sVar2 = *(u16 *)(param_1 + 0x34); + *(s32 *)(param_1 + 0x1c) = 0x1e; + *(u16 *)(param_1 + 0x34) = sVar2 + 1; + return; + } + iVar3 = *(s32 *)(param_1 + 0x10) * 0xc; + if (iVar3 < 0) { + iVar3 = iVar3 + 0xf; + } + *(s32 *)(param_1 + 0x10) = iVar3 >> 4; + iVar5 = *(s32 *)(param_1 + 0x18) * 0xc; + if (iVar5 < 0) { + iVar5 = iVar5 + 0xf; + } + *(s32 *)(param_1 + 0x18) = iVar5 >> 4; + *(s32 *)(param_1 + 0x14) = -(0x80000 / *(s32 *)(param_1 + 0x1c)); + func_80143B6C(param_1, 1); + return; + case 3: + uVar4 = *(u32 *)(param_1 + 0x1c); + if ((uVar4 - 0xe < 0xb) && ((uVar4 & 1) == 0)) { + ((void (*)(s32, s32, s32))func_8012C658)(0x2a8, (s32)*(s16 *)(param_1 + 0x104), param_1); + *(u16 *)(param_1 + 0x104) = *(u16 *)(param_1 + 0x104) + 1; + __asm__ __volatile__(""); + uVar4 = *(u32 *)(param_1 + 0x1c); + } + if (uVar4 == 9) { + *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) = + *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) & 0x7fffffff; + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 8) = *(u16 *)(param_1 + 6); + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xa) = + *(u16 *)(param_1 + 0xa) - 0x24; + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xc) = *(u16 *)(param_1 + 0xe); + } + if (*(s32 *)(param_1 + 0x1c) - 4U < 6) { + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) = + *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) + 0x200; + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) = + *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) + 0x200; + } + iVar3 = func_8012BEE8(param_1); + if (iVar3 != 1) { + return; + } + ((void (*)(s32, s32))func_80016714)(*(s32 *)(param_1 + 0xcc), 0x38); + *(s16 *)(param_1 + 2) = 9; + func_80187094(param_1, 0); + return; + } + return; +} + + + +extern void func_80049CAC(s32, s32); +extern void func_800484EC(s32, s32, s32); +extern void func_8012B260(u8 *a0); + +void func_80186B94(s32 p) { + s32 g10[4]; /* sp+0x10 */ + u16 g20[4]; /* sp+0x20 */ + s32 buf28[8]; /* sp+0x28 */ + u16 v; + + g10[2] = 0xFFF00000; + g10[1] = 0; + g10[0] = 0; + g20[0] = 0x10; + v = *(u16 *)(*(s32 *)(*(s32 *)(p + 0x64) + 0x20) + 0x12) + + *(u16 *)(p + 0xFC); + g20[1] = v; + *(u16 *)(p + 0xFE) = v; + g20[2] = 0; + ((void (*)(void *, void *))func_80049CAC)(g20, buf28); + ((void (*)(void *, void *, s32))func_800484EC)(buf28, g10, p + 0x10); + *(u16 *)(p + 2) = 8; + *(s32 *)(p + 0x1C) = 0x40; + ((void (*)(s32))func_8012B260)(p); +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80186C30); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80186DE8); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80186E24); + + +/* func_80186EA4 @ ov_SC06_018 (subseg ov_SC06_018_jr_8017C24C) — 124 ins. MATCH. + * + * GATE: .venv/bin/python tools/match_one.py func_80186EA4 \ + * --c .run/wave-s40/ov_SC06_018/func_80186EA4.c \ + * --asm-subdir asm/ov_SC06_018/nonmatchings/ov_SC06_018_jr_8017C24C + * + * ------------------------------------------------------------------ what it is + * "Try to hand this object off to another live entity of kind 0x282." + * 1. Build two 8-byte position vectors off `self` via func_8012F214 (the + * fleet's local->world transform; see the ov_SC02_026 walker family, + * e.g. src/ov_SC03_103/ov_SC03_103_jr_8017C294.c:4106 func_8017EC0C, which + * is the byte-matched sibling this draft's types were lifted from). + * 2. Keep a third copy of the destination vector (`c = b`) — 8 bytes at + * align 2, so gcc emits the inline lwl/lwr + swl/swr block move, exactly + * the "8 bytes, align 2 -> lwl/lwr/swl/swr copy" note carried in that + * sibling. This is why `c` must be a STRUCT ASSIGN, not a memcpy. + * 3. If the global-collision probe func_80135888(D_80126B78, D_80126B90, &a, &b) + * says the move is blocked, punt to func_8012F568 and return 1. + * 4. Otherwise walk the 0x60-entry / 0x10C-stride entity table D_801202A0 + * looking for a 0x282 entity that (a) matches `kind` (or, when + * kind == 0xFFFF, only self->f70), (b) is not `self`, and (c) passes the + * same collision probe against its own f20/f58 volumes. First hit gets + * state 9 and func_80187094(e, 0); return 1. No hit -> 0. + * + * ---------------------------------------------------------------- the levers + * L1 ARG 5 IS A `u16` (stack slot 0x60(sp) read with `lhu`). The redundant + * `andi $v1,$s2,0xffff` in the target is gcc's zero_extendhisi2 for the + * HImode->SImode widening at `kind != 0xFFFF`; it comes free with a plain + * ANSI `u16` param and CANNOT be reproduced from an `s32`/`s16` param. + * That same zero-extended $v1 is then reused as the loop compare operand + * (`addu $s4,$v1,$zero`), which is why the kind test inside the loop must + * be written against `kind` itself and not a re-cast copy. + * + * L2 `i` MUST BE INITIALISED IN EACH LOOP'S for-INIT, NOT ONCE BEFORE THE + * `if`. This is the whole match. <-- the only residual v1 had. + * With `e = ...; i = 0; if (kind != 0xFFFF) {...}` the draft is 124/124 + * instructions with FOUR bytes wrong: `kind` lands in $s4 instead of $s2 + * (and the two prologue `sw`s swap slots to follow it). Reason (regalloc.md + * K3/K5, class RC-3): `kind` is the lowest-density allocno (2 refs over a + * ~50-insn range) so it is assigned LAST, and find_reg then takes the + * LOWEST-numbered non-conflicting callee-saved register. Hoisting `i = 0` + * above the `andi` that reads `kind` makes `i`'s live range OVERLAP + * `kind`'s, so $s2 becomes a conflict and $s4 is the next free slot. + * Sinking `i = 0` into both for-inits removes the overlap -> $s2. + * The single `addu $s2,$zero,$zero` you see in the delay slot of the + * `beq` is dbr: it lifts the fall-through arm's `i = 0` into the slot and + * drops the other arm's copy as redundant (both arms set it before any + * use, so it is safe on both paths). Do NOT "simplify" it back to one + * shared initialiser — that is the 4-byte regression. + * + * L3 THE ARMS ARE `!=` FIRST. `if (kind != 0xFFFF) {kind-or-self loop} + * else {self-only loop}` gives `beq $v1,$v0,` with the kind-aware + * loop falling through, which is the target order. Writing it as + * `if (kind == 0xFFFF)` emits `bne` and swaps the two bodies. + * + * L4 BOTH ARMS' HIT-BLOCKS ARE TEXTUALLY IDENTICAL, which lets jump.c's + * cross-jump tail-merge collapse them: the second loop's + * `bnez $v0,.L80188F5C` branches into the FIRST loop's + * `sh 9; jal func_80187094; return 1` block. Keep them identical. + * + * L5 LOCAL DECL ORDER IS THE FRAME LAYOUT (regalloc.md K1/K7): `a`,`b`,`c` + * land at 0x18 / 0x20 / 0x28, immediately above the 0x18-byte outgoing-arg + * area that func_8012F568's 6 arguments force. Frame 0x50. Reordering + * the three declarations shifts every sp displacement. + * + * L6 `e != self` is a POINTER compare against the `self` param (`beq $s1,$s3`), + * so `self` must be typed as the same Ent pointer, not an s32. + * + * ---------------------------------------------------------------- banking note + * The real TU src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c already declares + * `extern u8 D_801202A0[];` (L384), `extern s32 func_80135888(s32,s32,s32,s32);` + * (L589), `extern void func_8012F214(s32,s32,s32);` (L2641), + * `extern void func_80187094(s32 a0, s32 a1);` (L7388, and DEFINES it at L7711) + * and `extern u8 D_801152A8[];` (L598) — all fleet-canonical and identical to + * the spellings below, so only the two `D_80126B7 8/90` pointer externs + * (canonical form `extern s32 *D_80126B78;`, 3297 fleet occurrences) and the + * two local typedefs need to travel. Uniquify the typedef names per §120 if + * the TU already carries a V4/Ent (it carries neither of these two spellings). + * + * SIBLINGS (the 5 other h_norm members): every DATA symbol this body touches — + * D_801202A0, D_801152A8, D_80126B78, D_80126B90 — is RESIDENT (fixed VA, not + * per-overlay tail.data), and three of the four callees (func_8012F214, + * func_80135888, func_8012F568) are resident too. The ONLY per-overlay symbol + * is func_80187094, and in this overlay it is defined in the SAME TU + * (ov_SC06_018_jr_8017C24C.c:7711). So the §40 remap for the siblings is + * expected to be near-identity: re-point func_80187094 at each sibling's own + * address and check that sibling TU's canonical spellings for the four externs + * before sweeping (§56b — carry the TU's types, not this draft's). + */ + +typedef struct { u16 x, y, z, w; } V4_80188E10_80186EA4; + +typedef struct { + u16 f0; /* 0x00 entity kind; 0x282 is the one we want */ + s16 f2; /* 0x02 state -> 9 on a hit */ + u8 p04[0x20 - 0x04]; + s32 f20; /* 0x20 collision volume A */ + u8 p24[0x58 - 0x24]; + s32 f58; /* 0x58 collision volume B */ + u8 p5C[0x70 - 0x5C]; + s16 f70; /* 0x70 sub-kind / owner tag */ + u8 p72[0x10C - 0x72]; /* stride 0x10C, 0x60 entries (0x6480) */ +} Ent_80188E10_80186EA4; + +extern void func_8012F214(s32 a0, s32 a1, s32 a2); +extern s32 func_80135888(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_8012F568(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5); +extern void func_80187094(s32 a0, s32 a1); + + +s32 func_80186EA4(Ent_80188E10_80186EA4 *self, s32 arg1, s32 arg2, s32 arg3, u16 kind) { + + extern s32 *D_80126B78; + extern s32 *D_80126B90; + extern u8 D_801202A0[]; + V4_80188E10_80186EA4 a; /* 0x18(sp) */ + V4_80188E10_80186EA4 b; /* 0x20(sp) */ + V4_80188E10_80186EA4 c; /* 0x28(sp) */ + Ent_80188E10_80186EA4 *e; + s32 i; + + func_8012F214((s32)self, arg1, (s32)&a); + func_8012F214((s32)self, arg2, (s32)&b); + c = b; /* L2: lwl/lwr block move */ + if (func_80135888((s32)D_80126B78, (s32)D_80126B90, (s32)&a, (s32)&b) != 0) { + func_8012F568(1, 1, *(s16 *)(self->f20 + 0x12), arg3, (s32)&b, (s32)D_801152A8); + return 1; + } + e = (Ent_80188E10_80186EA4 *)D_801202A0; + if (kind != 0xFFFF) { /* L3 */ + for (i = 0; i < 0x60; i++, e++) { /* L2: i=0 HERE, not above */ + if (e->f0 == 0x282 && (e->f70 == kind || e->f70 == self->f70) && e != self && + func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { + e->f2 = 9; /* L4: keep identical */ + func_80187094((s32)e, 0); + return 1; + } + } + return 0; + } else { + for (i = 0; i < 0x60; i++, e++) { /* L2 */ + if (e->f0 == 0x282 && e->f70 == self->f70 && e != self && + func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { + e->f2 = 9; /* L4: keep identical */ + func_80187094((s32)e, 0); + return 1; + } + } + return 0; + } +} + + + +extern s32 func_80132EF4(s32 a0, s32 a1); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); +extern void func_80049CAC(s32, s32); +extern void func_800484EC(s32, s32, s32); +extern s32 func_8012C658(s32, s32, s32); +extern void func_80187EF4(s32 a0, s32 a1); +extern s32 rand(void); + +void func_80187094(s32 a0, s32 a1) { + s32 buf10[8]; /* sp+0x10 (0x20) - func_80049CAC out / func_800484EC in */ + s32 g40[4]; /* sp+0x30, only [0..2] used - func_800484EC vec3 arg */ + u16 g30[4]; /* sp+0x40, only [0..2] used - func_80049CAC vec3 arg */ + unsigned int buf48[2]; /* sp+0x48 (8) - func_8012B0B4 output */ + unsigned int *p48; + s32 i; + s32 baseY; + s32 e; + u32 uVar; + s32 scratch; + s32 tmp; + + i = 0; + p48 = buf48; + baseY = 0x100; + do { + e = func_80132EF4(a0, 0x23); + if (e != 0) { + *(s16 *)(e + 0x34) = rand() % 0x4000 + 0x1000; + *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc008; + + func_8012B0B4(p48, rand() % 0x1000, rand() % 0x58); + + tmp = *(s32 *)buf48; + *(s16 *)(e + 6) = *(s16 *)(e + 6) + (s16)tmp; + *(s16 *)(e + 0xe) = *(s16 *)(e + 0xe) + (s16)(tmp >> 16); + + tmp = rand(); + scratch = tmp % 0x80; + uVar = rand(); + g30[0] = (uVar & 1) == 0 ? -scratch + 0x400 : scratch + 0x400; + + scratch = rand() % 0xc0; + uVar = rand(); + g30[1] = (uVar & 1) != 0 ? baseY + scratch : baseY - scratch; + + g30[2] = 0; + g40[1] = 0; + g40[0] = 0; + g40[2] = (rand() % 4 + 3) << 16; + + ((void (*)(void *, void *))func_80049CAC)(g30, buf10); + ((void (*)(void *, void *, s32))func_800484EC)(buf10, g40, e + 0x10); + } + i++; + baseY += 0x200; + } while (i < 8); + + e = func_80132EF4(a0, 0x23); + if (e != 0) { + *(u16 *)(e + 0x34) = 0x7ff1; + *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc004; + *(s32 *)(e + 0x14) = 0xfffb0000; + } + + i = 0; + do { + func_8012C658(0x29d, (u16)a1, a0); + i++; + } while (i < 4); + + func_80187EF4(a0, 0x95e); +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80187318); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801873B0); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80187414); + + +extern s32 func_8012B6D4(s16 *a0, s16 *a1); + +// @class: branch-polarity +// @stuck: none — MATCH (32 ins), iteration 2. §3-T4: gcc-2.7.2 lays this out as +// "branch TO the then-arm, fall through to the else", so the source condition is +// `d < 0x800` (the bnez sense read off the target opcode), NOT Ghidra's inverted +// arm order. The wrong polarity also cost one instruction (match_one printed +// LENGTH-DRIFT/-1): with the arms swapped, the `sll $v0,$s0,16` of the s16 param +// lands in the branch delay slot and is SHARED by both arms; the correct polarity +// puts `addiu $v1,$zero,0x1000` there and each arm gets its own sll/sra. +// a1 is an ANSI s16 param (sign-extended at each use, once per arm) — not K&R §43. +s32 aF80187460(s32 a0, s16 a1) __asm__("func_80187460"); +s32 aF80187460(s32 a0, s16 a1) +{ + /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every + LATER function in this TU, which blocks a byte-true decl of a different type. + Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ + extern u8 D_80126B5C; + /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every + LATER function in this TU, which blocks a byte-true decl of a different type. + Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ + extern s32 *D_80126B78; + s32 d; + + d = (func_8012B6D4((s16 *)&D_80126B5C, (s16 *)(a0 + 4)) - + *(s16 *)((s32)D_80126B78 + 0x12)) & 0xFFF; + if (d < 0x800) { + return d < a1; + } else { + return (0x1000 - d) < a1; + } +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_801874E0); + + +extern void (*D_801BD4D8[])(void); + +void func_80187548(void *a0) { + D_801BD4D8[*(u16 *)((s32)a0 + 0x2)](); +} + + + + +extern s32 rand(void); +extern void func_8012C1B8(void); +extern void func_8012CAE4(void*); +extern void func_8001C214(s32 a0, s32 a1); +extern void func_8012B2CC(s32 a0); +extern void func_8012B178(s32 a0, s32 a1); + +void func_80187584(s32 param_1) { + + extern u8 D_801BD4E0[]; + s32 unused[2]; /* dead 8-byte local — frame padding (cookbook idiom 6) */ + s32 obj; + s16 raw; + s32 r; + s32 sgn; + s32 v; + u8 *tbl; + s16 *p; + s32 q; + s32 w; + + obj = ((s32 (*)(void))func_8012C1B8)(); + if (obj == 0) { + ((void (*)(s32))func_8012CAE4)(param_1); + return; + } + *(s32 *)(param_1 + 0x20) = obj; + func_8001C214(obj, 0); + + raw = rand(); + r = raw; + *(u16 *)(obj + 0x2C) = *(u16 *)(obj + 0x2C) | 0x10; + v = r % 384 + 0x400; + *(s16 *)(obj + 0x1C) = v; + *(s16 *)(obj + 0x1A) = v; + *(s16 *)(obj + 0x18) = v; + sgn = -1; + if (raw & 1) { + sgn = 1; + } + *(s16 *)(obj + 0x10) = sgn * (r % 128) - 0x300; + *(s16 *)(obj + 0x12) = r % 4096; + *(s32 *)(param_1 + 0x48) = 0xC000; + *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x19; + func_8012B2CC(param_1); + func_8012B178(param_1, -0xC0000 - ((r % 8) << 16)); + *(s32 *)(param_1 + 0x1C) = 0x3C; + *(s16 *)(param_1 + 0xFE) = rand() & 0xF0; + *(s16 *)(param_1 + 0x100) = rand() & 0x1F0; + *(s16 *)(param_1 + 0x102) = rand() & 0x30; + tbl = &D_801BD4E0[(*(u16 *)(param_1 + 0x70) & 0xF) * 4]; + + p = (s16 *)(param_1 + 0xDC); + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[0] = w; + p[1] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[2] = w; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[4] = w; + p[5] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[6] = w; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[8] = w; + p[9] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[10] = w; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[12] = w; + p[13] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[14] = w; + + *((u8 *)p + 0x20) = tbl[0]; + *((u8 *)p + 0x21) = tbl[1]; + *((u8 *)p + 0x22) = tbl[2]; + *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; +} + + + +extern s32 func_8012CBF4(s32 a0); +extern s32 func_8012BEE8(s32 a0); +extern void func_8012C218(void *a0); /* TU-canonical (ov_SC06_018_jr_8017C24C L5455) */ +extern void func_80017274(s32 a0, s32 a1); + +void func_801879E8(s32 param_1) { + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + *(u16 *)(param_1 + 0xFE); + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + *(u16 *)(param_1 + 0x100); + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) + *(u16 *)(param_1 + 0x102); + + if (func_8012CBF4(param_1) != 0 || func_8012BEE8(param_1) != 0) { + func_8012C218((void *)param_1); + } else { + func_80017274(param_1 + 0xDC, *(s32 *)(param_1 + 0x20) + 0x34); + } +} + + + +extern void (*D_801BD4F8[])(void); + +void func_80187A8C(void *a0) { + D_801BD4F8[*(u16 *)((s32)a0 + 0x2)](); +} + + + +extern s32 rand(void); +extern void func_8012C1B8(void); /* TU-canonical (ov_SC06_018_jr_8017C24C) */ +extern void func_8012CAE4(void*); +extern void func_8001C214(s32 a0, s32 a1); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); /* TU-canonical */ +extern void func_8012B2CC(s32 a0); + +void func_80187AC8(s32 param_1) { + u32 buf[2]; + s32 obj; + s32 o2; + s32 base; + s32 off; + s32 v; + s32 t; + + obj = ((s32 (*)(void))func_8012C1B8)(); + *(s32 *)(param_1 + 0x20) = obj; + if (obj == 0) { + ((void (*)(s32))func_8012CAE4)(param_1); + } else { + func_8001C214(obj, 0); + if ((*(s16 *)(param_1 + 0x70) & 0x8000) == 0) { + *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = -0x80 - (rand() % 0x300); + o2 = *(s32 *)(param_1 + 0x20); + off = rand() % 0xC0; + base = *(s16 *)(param_1 + 0x70) * 0x300 + 0x180; + if (rand() & 1) { + v = base + off; + } else { + v = base - off; + } + *(s16 *)(o2 + 0x12) = v; + func_8012B0B4(buf, *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + 0x800, + rand() % 0x10 + 8); + t = buf[0]; + *(u16 *)(param_1 + 0x6) = *(u16 *)(param_1 + 0x6) + t; + *(u16 *)(param_1 + 0xE) = *(u16 *)(param_1 + 0xE) + (t >> 16); + *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x10; + func_8012B2CC(param_1); + *(s32 *)(param_1 + 0x1C) = 4; + *(u16 *)(param_1 + 0x2) = *(u16 *)(param_1 + 0x2) + 1; + } else { + *(s16 *)(param_1 + 0xDC) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCC); + *(s16 *)(param_1 + 0xDE) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCE); + *(s16 *)(param_1 + 0xE0) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD0); + *(s16 *)(param_1 + 0xE4) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD4); + *(s16 *)(param_1 + 0xE6) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD6); + *(s16 *)(param_1 + 0xE8) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD8); + *(s16 *)(param_1 + 0x2) = 2; + *(s32 *)(param_1 + 0x1C) = 8; + } + } +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80187CBC); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80187DF8); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_80187EF4); + + +extern void (*D_801BD504[])(void); + +void func_80188060(void *a0) { + D_801BD504[*(u16 *)((s32)a0 + 0x2)](); +} + + + +extern void func_80128EA8(s32 a0, s32 a1, s32 a2); + +void func_8018809C(s32 param_1) { + + extern u8 D_800D387C[]; + extern u8 D_800D3888[]; + s32 t; + + *(u32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = (u32)&D_800D387C; + + *(u32 *)(*(s32 *)(param_1 + 0x20) + 4) |= 0x50000000; + + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x27) = 0x9c; + + t = *(s32 *)(param_1 + 0x20); + *(u16 *)(t + 0x1a) = 0x2000; + *(u16 *)(t + 0x18) = 0x2000; + + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x24) = 0xff; + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x25) = 0; + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x26) = 0; + + func_80128EA8(*(s32 *)(param_1 + 0x20), param_1 + 0x24, (s32)&D_800D3888); + + *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; +} + + + +extern void func_8012931C(s32 a0); +extern s32 func_80128ED8(s32 param_1, s32 *param_2); +extern void func_801292C8(s32 a0); + +void func_8018814C(s32 param_1) { + s32 q; + u8 a; + u8 b; + u16 h; + + q = *(s32 *)(param_1 + 0x20); + + a = *(u8 *)(q + 0x24) - 0x20; + *(u8 *)(q + 0x24) = a; + if (a < 0x80) { + *(u8 *)(q + 0x24) = 0x80; + } + + b = *(u8 *)(q + 0x25) + 0x20; + *(u8 *)(q + 0x25) = b; + if (b > 0x80) { + *(u8 *)(q + 0x25) = 0x80; + } + + h = *(u16 *)(q + 0x1A) + 0x400; + *(u8 *)(q + 0x26) = *(u8 *)(q + 0x25); + *(u16 *)(q + 0x1A) = h; + *(u16 *)(q + 0x18) = h; + + func_8012931C(param_1); + + if (func_80128ED8((void *)q, (void *)(param_1 + 0x24)) != 0) { + func_801292C8(param_1); + } +} + + + +extern s32 D_801E20F8; +extern s32 func_8012C588(s32 a0, s32 a1); + +s32 func_80188204(s32 a0, s32 a1) { + D_801E20F8 = a1; + return func_8012C588(0x85, a0); +} + + +extern u8 D_801152A8[]; +extern s32 D_801E20F8; +extern s32 func_80017DC4(void *a0, void *a1); +extern void func_80017E68(void *a0, void *a1); +extern void func_800D20C0(void *a0, void *a1, s32 a2); +extern void func_800D23D0(void *a0); +extern void func_8012A828(s32 a0, void *a1); +extern void func_8012C218(void *a0); +extern void func_8012F14C(s32 a0, s32 a1, s32 a2); +extern s32 func_80134510(s32 arg); + +// @class: regalloc-order +// @stuck: none — MATCH (145/145 ins, match_one confirmed) + + + + +s32 func_80188234(s32 param_1) { + + extern M2C_UNK D_8018D644; + extern s32 func_8012C354(s32 a0, s32 a1); + extern void RotMatrixZ(s32, void *); + extern void MulMatrix0(s32, void *, s32); + extern s32 D_801D530C; + extern char * D_801D5340; + extern char D_801E20D8[]; + + S8_80184F08 s60; + SVECTOR_80184F08 sStack_58; + S8_80184F08 s50; + int auStack_48[8]; + s32 iVar5, iVar8; + char *puVar2, *puVar4; + u16 uVar3; + + if (((s32 (*)(s32, void *))func_8012C354)(param_1, &D_801D530C) == 0) { + ((void (*)(s32))func_8012C218)(param_1); + } + ((void(*)(s32, void *))func_8012A828)(param_1, &(*(s32 *)&D_8018D644)); + iVar5 = *(s32 *)(param_1 + 0x20); + *(s16 *)(param_1 + 0x70) = 0x80; + *(s32 *)(iVar5 + 4) |= 0x50000040; + *(u16 *)(iVar5 + 0x2c) |= 1; + iVar8 = *(s32 *)(*(s32 *)(param_1 + 0x64) + 0x20) + 0x34; + ((void (*)(s32, s32, void *))func_8012F14C)(iVar8, D_801E20F8, &s60); + s50 = s60; + sStack_58.vz = 0x1800; + sStack_58.vy = 0x1800; + sStack_58.vx = 0x1800; + ((void (*)(void *, void *))func_80017DC4)(&sStack_58, auStack_48); + RotMatrixZ(rand() & 0xfff, auStack_48); + MulMatrix0(iVar8, auStack_48, iVar5 + 0x34); + ((void (*)(void *, s32))func_80017E68)(&s50, iVar5 + 0x34); + + /* pool-alloc: gcc routes the loaded pointer through a caller-saved reg ($v0) + before the callee-saved home ($s1) — pin it to reproduce the extra move. */ + { + register char *tmp __asm__("$2"); + tmp = D_801D5340; + puVar2 = tmp; + } + puVar4 = puVar2 + 0x20; + D_801D5340 = puVar4; + *(char **)(param_1 + 0xcc) = puVar2; + if (D_801E20D8 < puVar4) { + D_801D5340 = D_801E20D8 - 0x120; + } + func_800D20C0(&s60, &sStack_58, 7); + func_800D23D0(&sStack_58); + ((void(*)(void *, void *))RotMatrixYXZ)(&sStack_58, puVar2); + ((void (*)(void *, s32))func_80017E68)(&s60, (s32)puVar2); + + uVar3 = *(u16 *)((char *)&s50 + 2); + if (((s32 (*)(void *))func_80134510)(&s50) != 0 && + (s32)(s16)uVar3 - (s32)*(s16 *)((char *)&s50 + 2) < 0x80) { + *(s16 *)((char *)&s50 + 2) = *(s16 *)((char *)&s50 + 2) - 4; + { + register char *tmp __asm__("$3"); + tmp = D_801D5340; + puVar2 = tmp; + } + puVar4 = puVar2 + 0x20; + D_801D5340 = puVar4; + *(char **)(param_1 + 0xd0) = puVar2; + if (D_801E20D8 < puVar4) { + D_801D5340 = D_801E20D8 - 0x120; + } + func_800D23D0(&(*(s32 *)&D_801152A8)); + ((void(*)(void *, void *))RotMatrixYXZ)(&(*(s32 *)&D_801152A8), puVar2); + ((void (*)(void *, s32))func_80017E68)(&s50, (s32)puVar2); + } + *(s16 *)(param_1 + 2) = *(s16 *)(param_1 + 2) + 1; +} + + +extern s32 func_80017758(void *a0, void *a1); +extern void func_8012C218(void *a0); + + +// @class: regalloc-order +// @stuck: none — MATCH (168 ins). Keys: (1) pin param->$s1 via `register int self __asm__("$17")=param_1` +// (natural alloc put the short loop-counter in $s1); (2) block2's guarded dest via a test-temp +// `td=load; if(td){dest=td; ...}` forces the range-split `lw $a1; addu $s3,$a1,$0` the target has; +// (3) counter is `short i` do-while (keeps the `addu $s2,$v0,$0` raw-copy + sll16/sra16 compare); +// (4) gcc-2.7.2 loads s8/s16 via lbu/lhu+shift-extend (not lb/lh) so `signed char *p; *(s16*)buf=*p++` +// emits lbu;sll24;sra24;sh; (5) else-branch zero-byte asm barrier forces `addu $a0,$s1,$0` (else gcc +// reuses the still-live incoming $a0 with a nop delay slot). + +s32 func_80188478(s32 param_1) { + + extern signed char D_801D52F8[]; + register int self __asm__("$17") = ((int)param_1); + int iVar6; + int iVar1; + unsigned char buf[0x34]; + signed char *p; + short i; + int dest; + int td; + unsigned short t; + + iVar1 = *(int *)(self + 0x1c); + iVar6 = *(int *)(self + 0x20); + *(int *)(self + 0x1c) = iVar1 + 1; + if (iVar1 < 2) { + p = D_801D52F8; + i = 0; + dest = *(int *)(self + 0xcc); + t = *(unsigned short *)(self + 0x70); + *(short *)(buf + 0x0c) = 0; + *(short *)(buf + 0x0a) = 0; + *(short *)(buf + 0x08) = 0; + *(short *)(buf + 0x1c) = 0; + *(short *)(buf + 0x14) = 0; + *(short *)(buf + 0x04) = 0; + buf[0x22] = 0; + buf[0x21] = 0; + buf[0x20] = 0; + buf[0x2a] = 0; + buf[0x29] = 0; + buf[0x28] = 0; + buf[0x2e] = 0; + buf[0x2d] = 0; + buf[0x2c] = 0; + *(int *)(buf + 0x30) = 0x50000000; + buf[0x25] = t; + buf[0x26] = t; + buf[0x24] = t; + do { + *(short *)(buf + 0x00) = *p++; + *(short *)(buf + 0x02) = *p++; + *(short *)(buf + 0x10) = *p++; + *(short *)(buf + 0x12) = *p++; + *(short *)(buf + 0x18) = *p++; + *(short *)(buf + 0x1a) = *p--; + func_80017758(buf, (void *)dest); + i++; + } while (i < 4); + + td = *(int *)(self + 0xd0); + if (td != 0) { + dest = td; + p = D_801D52F8; + i = 0; + t = *(unsigned short *)(self + 0x70); + *(short *)(buf + 0x0c) = 0; + *(short *)(buf + 0x0a) = 0; + *(short *)(buf + 0x08) = 0; + *(short *)(buf + 0x1c) = 0; + *(short *)(buf + 0x14) = 0; + *(short *)(buf + 0x04) = 0; + buf[0x22] = 0; + buf[0x21] = 0; + buf[0x20] = 0; + buf[0x2a] = 0; + buf[0x29] = 0; + buf[0x28] = 0; + buf[0x2e] = 0; + buf[0x2d] = 0; + buf[0x2c] = 0; + *(int *)(buf + 0x30) = 0x50000000; + buf[0x25] = t; + buf[0x26] = t; + buf[0x24] = t; + do { + *(short *)(buf + 0x00) = *p++; + *(short *)(buf + 0x02) = *p++; + *(short *)(buf + 0x10) = *p++; + *(short *)(buf + 0x12) = *p++; + *(short *)(buf + 0x18) = *p++; + *(short *)(buf + 0x1a) = *p--; + func_80017758(buf, (void *)dest); + i++; + } while (i < 4); + } + *(short *)(self + 0x70) = *(short *)(self + 0x70) >> 1; + *(unsigned short *)(iVar6 + 0x2c) |= 1; + } else { + __asm__ __volatile__("" : "=r"(self) : "0"(self)); + func_8012C218((void *)self); + } +} + + + +extern void (*D_801D5344[])(void); + +void func_80188718(void *a0) { + D_801D5344[*(u16 *)((s32)a0 + 0x2)](); +} + + + + +// @class: schedule +// @stuck: none — MATCH (132 ins, match_one). Levers: (1) block2 statement order — compute sv1.vz (with the *(p+0xe) load) right after the 2nd call so gcc hoists that load into $v1, forcing the sv2.vx=sv1.vx copy through $a3, which globally pushes every `func*param>>12` product from $a3 to $t0; (2) sv2 store order vx-before-vy; (3) SHARED return-0 join via gotos placed BEFORE the copy block (ret0: before docopy:) — this blocks gcc's conditional-jump-over-jump inversion + return-threading, so the copy block falls through to the epilogue with v0=1 preset in the beqz delay slot (drops the extra `li v0,1`). + + +extern int func_8004787C(int); +extern int func_80047948(int); +extern s32 func_80133784(s32, void*, s32); + +int func_80188754(int param_1, short param_2) +{ + int iVar1; + unsigned int uVar2; + int iVar3; + SVECTOR sv1; + SVECTOR sv2; + + if (*(int *)(param_1 + 0xdc) != 0) goto ret0; + sv1.vx = *(short *)(param_1 + 6); + sv1.vy = *(short *)(param_1 + 0xa) + -0x20; + sv1.vz = *(short *)(param_1 + 0xe); + iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + iVar3 = (int)param_2; + sv2.vy = sv1.vy; + sv2.vx = sv1.vx - (short)(iVar1 * iVar3 >> 0xc); + iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + sv2.vz = sv1.vz - (short)(iVar1 * iVar3 >> 0xc); + uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); + if ((uVar2 & 0x8000) != 0) { + iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + *(short *)(param_1 + 6) = sv2.vx + (short)(iVar1 * iVar3 >> 0xc); + iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + *(short *)(param_1 + 0xe) = sv2.vz + (short)(iVar1 * iVar3 >> 0xc); + return 1; + } + iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + sv1.vx = *(short *)(param_1 + 6) - (short)(iVar1 * iVar3 >> 0xc); + sv1.vy = *(short *)(param_1 + 0xa) + -0x10; + iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + sv1.vz = *(short *)(param_1 + 0xe) - (short)(iVar1 * iVar3 >> 0xc); + sv2.vx = sv1.vx; + sv2.vy = sv1.vy + 0x20; + sv2.vz = sv1.vz; + uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); + if ((uVar2 & 0x6000) == 0) goto docopy; +ret0: + return 0; +docopy: + *(int *)(param_1 + 4) = *(int *)(param_1 + 0x38); + *(int *)(param_1 + 8) = *(int *)(param_1 + 0x3c); + *(int *)(param_1 + 0xc) = *(int *)(param_1 + 0x40); + return 1; +} + + + + +/* func_80188964 — ov_SC06_008 / ov_SC06_008_jr_8017C294 + * + * Two-arm actor tick keyed on the s16 countdown at actor+0xFC: + * arm A (counter == 0, the FALL-THROUGH / longer block): three func_8012C658 + * spawns with offset pokes, a sound cue, two child-actor state pokes, an + * 8-iteration 0x281 particle burst, then the RTP positional-sound block + * (the byte-proven RTP_SND shape from ov_SC03_099_jr_8017BEBC.c:5406). + * arm B (counter != 0): a func_8012913C(0x23) spawn scattered around the + * actor, VectorNormalSS toward D_801151D4->{0x5C,0x60,0x64}, sound 0xAF8. + * + * Declarations copied VERBATIM from the TU (one-pass grep, D2): + * D_801151D4 src/ov_SC06_008/ov_SC06_008_jr_8017C294.c:323 + * rand :956 + * VectorNormalSS :1849 + * func_8012C658 :2523 + * func_8012C588 :3767 + * func_8012C218 :3782 + * func_8002D4C8 :59 + * func_8004914C :2645 + * func_800491AC :2646 + * func_8012913C :4356 (non-prototype form, BELOW the splice point) + * func_8002AC00 :5447 (block-scope extern only) + * RotTransPers / D_800AF648 / func_8002A04C are not in this TU -> fleet-dominant forms. + */ + +extern s32 rand(void); +extern s32 VectorNormalSS(void *a0, void *a1); +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012C218(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002A04C(s32 a0); +extern void func_8002AC00(s32 a0); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern u8 *func_8012913C(); + +void func_80188964(s32 a0) +{ + + extern s32 D_801151D4; + extern u8 D_800AF648; + + /* L5: slot offsets are exact only through ONE struct — plain array locals + get 8-byte-rounded slots and pushed z/flag to 0x28/0x2C (measured). */ + struct { + u16 nv[4]; /* sp+0x10 */ + s16 rv[4]; /* sp+0x18 */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + + s32 g; + s32 s0; + s32 i; + + g = D_801151D4; + + if (*(s16 *)(a0 + 0xFC) == 0) { + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; + } + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; + } + s0 = func_8012C658(0x32, 2, a0); + if (s0 != 0) { + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; + } + func_8002AC00(0x22); + + s0 = *(s32 *)(a0 + 0xCC); + *(s16 *)(s0 + 0x2) = 2; + *(s16 *)(s0 + 0xFC) = 1; + s0 = *(s32 *)(a0 + 0xD0); + *(s16 *)(s0 + 0x2) = 2; + *(s16 *)(s0 + 0xFC) = 1; + + for (i = 0; i < 8; i++) { + s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x30; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + + L.rv[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.rv[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.rv[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); + } + } + func_8002A04C(a0); + func_8012C218((void *)a0); + } else { + s0 = (s32)func_8012913C(0x23); + if (s0 != 0) { + *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; + *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0xE0; + { + s32 r = rand(); + s32 t = *(u16 *)(a0 + 0xE); + *(s16 *)(s0 + 0x34) = 0x1800; + *(s32 *)(s0 + 0x18) = 0; + *(s32 *)(s0 + 0x14) = 0; + *(s32 *)(s0 + 0x10) = 0; + *(s16 *)(s0 + 0xE) = t + (r & 0x7F) - 0x40; + } + L.nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); + L.nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); + L.nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); + VectorNormalSS(L.nv, L.nv); + *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); + *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); + *(s16 *)(s0 + 0x34) = 0x3000; + func_8002D4C8(0xAF8, 0); + } + *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) - 1; + } +} + + + + +// TARGET: func_80188D68 (ov_SC06_008, TU ov_SC06_008_jr_8017C294.c, 93 ins) +// +// Template: func_801821F8 in this SAME TU (src/ov_SC06_008/ov_SC06_008_jr_8017C294.c, +// around line 5283) is an already-MATCHED sibling (126 ins) with a documented byte-exact +// idiom set (its comment, verbatim): +// @class: plumbing +// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the +// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized +// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args +// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 +// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in +// the `< 1` test. +// +// func_80188D68 is the SAME body with the leading "if (*(short*)(param_1+0xfc)==0) {...}" block +// (the 0x64-indirected 3x int-copy + 3x u16-copy prologue) removed, and the "already fired" gate +// field is 0xe2 instead of 0x102. Confirmed against the target .s: no reference anywhere to 0xfc, +// 0x64, or 0x102/0x20 offsets; the gate compare is `lh $v1, 0xE2($s0)` / `sh $v1(=0xA), 0xE2($s0)`. + +extern void func_8002D4C8(int, int); +extern void func_8016AA50(int, int); +extern s32 func_8016B428(s32); +extern void func_80019064(void *); +extern void func_8002A520(int); +extern void func_8002A790(int); +extern void func_80131E00(int, int); + +void func_80188D68(int param_1) +{ + extern unsigned char D_801D5A38[]; + int cVar1; + int unaff_s1; + + cVar1 = *(unsigned char *)(param_1 + 0x5e); + *(char *)(param_1 + 0xc1) = 0; + *(short *)(param_1 + 0x5e) = 0; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; + if (*(short *)(param_1 + 0xe2) == 0) { + *(short *)(param_1 + 0xe2) = 10; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; + func_8002D4C8(0x9b7, 0); + if (*(short *)(param_1 + 0x60) != 0) { + if (cVar1 == 0x1d) { + *(short *)(param_1 + 0x82) = 0; + *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); + *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); + *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); + } + if (*(int *)(param_1 + 0x78) != 0) { + unaff_s1 = (int)*(short *)(param_1 + 0x60) * + (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; + if (unaff_s1 < 1) { + unaff_s1 = 1; + } + } + *(unsigned short *)(param_1 + 0x76) = + *(unsigned short *)(param_1 + 0x76) - unaff_s1; + func_8016AA50(param_1, unaff_s1); + if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { + ((void (*)(int))func_8016B428)(param_1); + func_80019064(D_801D5A38); + } + } + if (cVar1 != 0x1d) { + if (*(unsigned char *)(param_1 + 0xc8) != 0) { + func_8002A520(param_1); + } + if (*(unsigned char *)(param_1 + 0xc9) != 0) { + func_8002A790(param_1); + } + } + if (*(short *)(param_1 + 0x76) < 1) { + *(short *)(param_1 + 0x5c) = 0; + func_80131E00(param_1, 6); + } + } + return; +} + + + +// @class: schedule +// @stuck: none — MATCH; success-block placed last via `goto big` (bnez forward into epilogue), single cae4 merge kept + +extern int func_8012C354(); +extern void func_800599B8(); +extern void func_8001C214(); +extern void func_80143970(); +extern void func_8012B030(); +extern void func_8012A828(); +extern void func_8012B23C(); +extern int func_8012C658(); +extern void func_8012C218(); +extern void func_8012CAE4(); + + +void func_80188EDC(int param_1) { + + extern u8 D_801D5A58[]; + extern u8 D_801D599C[]; + extern u8 D_801D595C[]; + extern u8 D_801D59A4[]; + extern u8 D_801D597C[]; + extern u8 D_801D9CC4[]; + extern u8 D_801DCF74[]; + extern u8 D_801D5A98[]; + extern u8 D_801DCDDC[]; + extern u8 D_801DCE64[]; + extern u8 D_801DCEEC[]; + int iVar1; + + iVar1 = func_8012C354(param_1, D_801D5A58); + if (iVar1 != 0) { + if (*(short *)(param_1 + 0x70) != 0) { + func_800599B8(D_801D599C, D_801D595C); + func_800599B8(D_801D59A4, D_801D597C); + func_8001C214(*(int *)(param_1 + 0x20), D_801D9CC4); + } + *(u8 *)(param_1 + 0xc0) = 1; + *(int *)(param_1 + 0xb4) = 0xffffdfde; + func_80143970(param_1); + func_8012B030(param_1); + *(short *)(param_1 + 0xae) = 0x2100; + func_8012A828(param_1, D_801DCF74); + *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; + func_8012B23C(param_1); + *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) | 2; + iVar1 = func_8012C658(0x26f, (int)*(short *)(param_1 + 0x70), param_1); + if (iVar1 != 0) { + *(int *)(param_1 + 0xcc) = iVar1; + iVar1 = func_8012C658(0x270, (int)*(short *)(param_1 + 0x70), param_1); + if (iVar1 != 0) goto big; + func_8012C218(*(int *)(param_1 + 0xcc)); + } + func_8012CAE4(param_1); + } + return; +big: + *(int *)(param_1 + 0xd0) = iVar1; + *(u32 *)(param_1 + 0xbc) = (u32)D_801D5A98; + *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) = + *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) | 0x10; + *(short *)(*(int *)(param_1 + 0x20) + 0x18) = 0x2400; + *(short *)(*(int *)(param_1 + 0x20) + 0x1a) = 0x2400; + *(short *)(*(int *)(param_1 + 0x20) + 0x1c) = 0x2400; + *(u16 *)(param_1 + 2) = 8; + func_8012A828(param_1, D_801DCDDC); + func_8012A828(*(int *)(param_1 + 0xcc), D_801DCE64); + func_8012A828(*(int *)(param_1 + 0xd0), D_801DCEEC); + return; +} + + + +/* func_8018908C — ov_SC06_008 / ov_SC06_008_jr_8017C294. MATCH 163/163. + * Family of 7 (ov_SC06_008/010/018/022/024/032/033, all 163 ins, all still in + * nonmatchings) — §136e applies: no twin existed, so this is derived from the .s. + * The byte-proven accumulate head (b744 nested inside b608, then two RE-LOADS of + * *(s32*)(a0+0x20)) is copied verbatim from src/ov_SC03_099/..._jr_8017BEBC.c:5424. + * + * Four levers, each measured against match_one: + * + * 1. NO frame padding. args_size already fills sp+0x00..0x1F, so the four saved + * regs land at 0x20..0x2F and the frame is 0x30 with ZERO locals. A 16-byte + * dead aggregate (idiom 6, added on the first draft from a mis-derived + * args_size=0x10) made it 0x40 — idiom 6 only applies when the reg-save area + * does NOT start at args_size. + * + * 2. BRANCH POLARITY / BLOCK LAYOUT (§3-T4, T7). `if (C) goto X;` followed by a + * `break` is REWRITTEN by jump.c's jump-around-jump inversion into + * `if (!C) goto break_target;` — which is the wrong polarity here. The target + * wants the true arm to FALL THROUGH. Two rewrites, both worth +0 instructions + * but different bytes: + * case 1: `if (A||B) goto st2; break;` -> `if (!A && !B) break; goto st2;` + * (TRUTH_ANDIF gives reversed branches to `next`, and the trailing + * `j st2` is the fall-through — exactly `beqz L600 / j L5E0`.) + * case 3: same shape, plus the range test written as the POSITIVE + * `if (r >= -0xFF && r <= 0xFF) break;` so fold_range_test's + * `sltiu (r+0xFF),0x1FF` branches on TRUE to the switch end and case 3 + * falls through into st2 (saves the `j`+`nop`, 165 -> 163 ins). + * Case 0 keeps the plain `if (A||B) {..} else {..}` — there jump.c's inversion + * IS what the target has. + * + * 3. THE SHARED STORE BLOCK. L801815F8/L801815FC (`li v0,1` / `sh v0,0x34`) sit + * AFTER st2 in the target, so they are NOT inline `else` arms (cross-jumping + * keeps the LAST copy, which would put them BEFORE st2). They are explicit + * trailing labels inside the switch with an `ns` join variable; case 2 enters at + * `setstate` with ns=3, cases 0 and 3 enter at `set1`. + * + * 4. REGALLOC-PERM -> the $16 pin (see below). + */ + +extern s32 rand(void); +extern void func_8012B1B4(s32 a0, s32 a1); +extern void func_8012CBCC(s32 a0); +extern void func_8012BE98(s32 a0, u16 *a1); +extern s32 func_8012B744(void *a0, void *a1); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern void func_8012BE54(s32 a0); +extern int func_80188754(int param_1, short param_2); + +void func_8018908C(s32 a0) { + + extern u8 D_801D5AB8[]; + + /* §137/K3+K5: unpinned, the a0-copy allocno (R=37/L=137, pri 13503) is + * ranked first and first-fits $s0, pushing `tbl` to $s1 — a clean 2-reg + * perm no source reordering can flip (pri(tbl) = 394). Pinning `tbl` to + * $16 makes $s0 "already dirty" in find_reg pass 0: the a0 copy conflicts + * with it and opens $s1, and case 3's `d` (which does NOT conflict with + * `tbl`) grabs $s0 in pass 0 — exactly the target's assignment. */ + register s32 tbl __asm__("$16"); + s32 ns; + + tbl = (s32)D_801D5AB8; + func_8012B1B4(a0, tbl); + func_8012CBCC(a0); + + switch (*(u16 *)(a0 + 0x34)) { + case 0: + if (func_80188754(a0, 0x48) != 0 || + ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) > + 0x3FFFF) { + s32 r = func_8012B608( + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), + func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 8); + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; + func_8012B1B4(a0, tbl); + } else { + goto set1; + } + break; + + case 1: + if (func_80188754(a0, 0x48) == 0 && + ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) <= + 0x3FFFF) { + break; + } + goto st2; + + case 2: { + s32 r = func_8012B608( + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), + func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 0x10); + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; + } + func_80188754(a0, 0x48); + { + s16 c = *(s16 *)(a0 + 0x102); + if (c == 0) { + ns = 3; + goto setstate; + } + *(s16 *)(a0 + 0x102) = c - 1; + } + break; + + case 3: { + void *p88 = (void *)(a0 + 0x88); + s32 d = ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)p88); + if (func_80188754(a0, 0x48) == 0) { + if (d > 0x40000) { + s32 r = func_8012B608(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), + func_8012B744((void *)(a0 + 4), p88), 1); + if (r >= -0xFF && r <= 0xFF) { + break; + } + } else { + goto set1; + } + } + } + /* fall through into st2 */ + st2: + *(u16 *)(a0 + 0x34) = 2; + *(u16 *)(a0 + 0x102) = (rand() & 7) + 8; + break; + + set1: + ns = 1; + setstate: + *(u16 *)(a0 + 0x34) = ns; + break; + } + + { + s16 t = *(s16 *)(a0 + 0x100); + if (t != 0) { + *(s16 *)(a0 + 0x100) = t - 1; + } else if (((s32(*)(s32))func_8012BE54)(a0) <= 0x24000) { + *(s16 *)(a0 + 0x2) = 5; + *(s16 *)(a0 + 0x100) = 0x3C; + } + } +} + + +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 func_8004787C(s32 a0); +extern s32 func_80047948(s32 a0); +extern void func_8004914C(); +extern void func_800491AC(); +extern u8 *func_8012913C(s32 a0); +extern void func_8012A828(s32 a0, void * a1); +#define RTP_SND(sndid) \ + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); \ + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); \ + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); \ + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } \ + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } \ + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); \ + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF \ + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { \ + s32 x = (s16)L.sxy[0]; \ + s32 ax; \ + ax = x; \ + if (x < 0) { \ + ax = -x; \ + } \ + ax = ((0xF0 - ax) * 0x7F) / 0xF0; \ + __asm__("" : "=r"(ax) : "0"(ax)); \ + x = (x + 0xF0) / 0x1E; \ + if (x == 0x10) { \ + x = 0xF; \ + } \ + x = x << 8; \ + { \ + s32 flg = 0x3000; \ + func_8002D4C8(sndid, ((ax | flg) | x) & 0xFFFF); \ + } \ + } + +void func_80189318(s32 a0) { + + extern u8 D_800AF648; + extern s32 D_801D591C[]; + extern u8 D_801DCDDC[]; + extern u8 D_801DCE64[]; + extern u8 D_801DCEEC[]; + struct { + s16 pad0[4]; /* sp+0x10 — dead, but sizes the frame (idiom 6) */ + s16 v[3]; /* sp+0x18 */ + s16 pad1; /* sp+0x1E */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + s32 t; + s32 ang; + s32 idx; + s32 m; + s32 c; + s32 p; + + if (*(s16 *)(a0 + 0x98) == 0) { + s32 spr = (s32)func_8012913C(0x7F); + if (spr != 0) { + m = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) + + (func_8004787C(*(s16 *)(a0 + 0x104)) >> 3); + *(s16 *)(spr + 0x6) = *(u16 *)(a0 + 0x6) - (func_8004787C(m) * 0x6C) / 0x1000; + *(s16 *)(spr + 0xA) = *(u16 *)(a0 + 0xA) - 0x34; + *(s16 *)(spr + 0xE) = *(u16 *)(a0 + 0xE) - (func_80047948(m) * 0x6C) / 0x1000; + *(s32 *)(spr + 0x14) = 0x40000; + *(s32 *)(spr + 0x10) = -(func_8004787C(m) * 0xC0); + *(s32 *)(spr + 0x18) = -(func_80047948(m) * 0xC0); + } + t = *(u16 *)(a0 + 0x104) + 0x100; + *(s16 *)(a0 + 0x104) = t; + ang = (s16)t; + idx = ang / 0x100; + m = (s16)(idx % 0x10); + if (ang == 0x100) { + RTP_SND(0x95F) + } else if (m == 0) { + RTP_SND(0x960) + } + *(s32 *)(*(s32 *)(a0 + 0x20) + 0x20) = D_801D591C[m]; + c = *(u16 *)(a0 + 0x100) - 1; + *(s16 *)(a0 + 0x100) = c; + if ((s16)c == 0) { + p = *(s32 *)(a0 + 0xCC); + *(s16 *)(a0 + 0x98) = 1; + if (p != 0) { + *(s16 *)(p + 0x98) = 1; + } + p = *(s32 *)(a0 + 0xD0); + if (p != 0) { + *(s16 *)(p + 0x98) = 1; + } + } + } else if ((*(u16 *)(a0 + 0x72) & 0x4000) != 0) { + *(s16 *)(a0 + 0x2) = 7; + *(s16 *)(a0 + 0x100) = 0x3C; + func_8012A828(a0, D_801DCDDC); + p = *(s32 *)(a0 + 0xCC); + if (p != 0) { + func_8012A828(p, D_801DCE64); + } + p = *(s32 *)(a0 + 0xD0); + if (p != 0) { + func_8012A828(p, D_801DCEEC); + } + } +} + + + +extern void func_8012B370(int a0); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + +void func_801897DC(s32 a0) { + + extern u8 D_800AF648; + + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + } L; + + s16 hp; + s32 p; + + hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); + if (hp < 0x301) { + s32 count; + s32 total; + + count = *(u16 *)(a0 + 0xFC); + total = *(u16 *)(a0 + 0xFE); + count = count + 1; + total = total + count; + *(u16 *)(a0 + 0xFC) = count; + *(u16 *)(a0 + 0xFE) = total; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) + total; + } else { + p = *(s32 *)(a0 + 0xD0); + *(s16 *)(a0 + 2) = 3; + *(s32 *)(a0 + 0x1C) = 0x1E; + *(s16 *)(a0 + 0x98) = 0; + *(s16 *)(p + 2) = 3; + *(s32 *)(p + 0x1C) = 0x1E; + *(s16 *)(p + 0x98) = 0; + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + func_8002D4C8(0x961, (ax | (0x3000 | x)) & 0xFFFF); + } + } + func_8012B370(a0); +} + + +extern s32 func_801823F0(void); + +/* func_801899AC -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (family of 7) + * + * Low-HP flinch/knockback reaction. hp = *(s16*)(a0->0x20 ptr + 0x14). If + * 0 < hp < 0xD00, put self AND the partner at a0->0xCC into stagger state 3 + * (a 0x1E-frame timer, status flag cleared), compute a screen-space + * position via RotTransPers and play a positional sound. Otherwise + * (hp==0 or hp>=0xD00) apply the accumulated hit-combo counter (0xFC/0xFE) + * to the target's HP and re-mask its low 12 bits. + * + * §136c sibling-first: the RTP + positional-sound tail is the byte-proven + * RTP_SND form from func_8018165C in this same TU (line 4746) -- v[]/pad, + * u16 sxy[2], s32 z, s32 flag, and the ax/x div-by-0xF0 / div-by-0x1E + * magic-constant idiom (0x88888889); also confirmed against func_801823F0 + * (same TU) which reuses the identical sndid 0x961 and the identical + * `sx = (sx + 0xF0) / 0x1E; if (sx == 0x10) sx = 0xF; sx <<= 8;` tail. + * + * Control flow: gcc-2.7.2 lays out basic blocks in literal SOURCE order, not + * by fallthrough-preference. A nested-if spelling (`if (hp<0xD00) { state=3; + * if (hp!=0) { B; goto end; } } A; end:`) places B (textually the inner + * then-body) inline right after the tests and relocates A after it -- the + * REVERSE of the target, which has the short block A inline and the long + * RTP+sound block B out-of-line. Explicit goto/label with A written BEFORE B + * in source (`if (hp>=0xD00) goto L_A; state=3; if (hp!=0) goto L_B; L_A: A; + * goto L_end; L_B: B; L_end: ...`) reproduces the target's physical layout + * directly -- no branch-polarity inversion needed, just source ORDER. + * + * Frame: RotTransPers args are sp+0x10 (v), sp+0x18 (&sxy), sp+0x1C (&z), + * sp+0x20 (&flag); v[3]+pad1 fills 0x10-0x17, sxy 0x18-0x1B, z 0x1C-0x1F, + * flag 0x20-0x23 -- leaves a dead 4 bytes (0x24-0x27) before the s0 save at + * 0x28. A trailing `pad2` dead struct member (same aggregate, so it can't + * be eliminated) reserves those 4 bytes, mirroring func_8018165C's own + * "dead aggregate sizes the frame" idiom (comment there: idiom 6). + */ + +extern void func_8012B370(int a0); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + +void func_801899AC(s32 a0) { + + extern u8 D_800AF648; + + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + s32 pad2; /* sp+0x24 -- dead, sizes the frame */ + } L; + + s16 hp; + s32 state; + s32 p; + + hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); + if (hp >= 0xD00) { + goto L_A; + } + state = 3; + if (hp != 0) { + goto L_B; + } + +L_A: + { + s32 count; + s32 total; + + count = *(u16 *)(a0 + 0xFC); + total = *(u16 *)(a0 + 0xFE); + count = count + 1; + total = total + count; + *(u16 *)(a0 + 0xFC) = count; + *(u16 *)(a0 + 0xFE) = total; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) - total; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) & 0xFFF; + } + goto L_end; + +L_B: + p = *(s32 *)(a0 + 0xCC); + *(s16 *)(a0 + 2) = state; + *(s32 *)(a0 + 0x1C) = 0x1E; + *(s16 *)(a0 + 0x98) = 0; + *(s16 *)(p + 2) = state; + *(s32 *)(p + 0x1C) = 0x1E; + *(s16 *)(p + 0x98) = 0; + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 sx = (s16)L.sxy[0]; + s32 av; + av = sx; + if (sx < 0) { + av = -sx; + } + av = ((0xF0 - av) * 0x7F) / 0xF0; + sx = (sx + 0xF0) / 0x1E; + if (sx == 0x10) { + sx = 0xF; + } + sx = sx << 8; + func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); + } + +L_end: + func_8012B370(a0); +} + + +extern s32 func_8012C044(s32 a0); +extern void func_8012C098(void *param_1); +extern void func_8012C218(void *a0); +extern int func_80143C74(short *, int); +extern s32 rand(void); + +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern void func_8002D4C8(s32 a0, s32 a1); + +void func_80189B9C(s32 a0) +{ + + extern void (*D_801D5AC8[])(void); + extern u8 D_800AF648; + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + } L; + + D_801D5AC8[*(u16 *)(a0 + 0x2)](); + + if (*(u16 *)(a0 + 0x0) != 0) { + if (*(s16 *)(a0 + 0x70) == 0 && func_8012C044(a0) != 0) { + if (*(s32 *)(a0 + 0xCC) != 0) { + func_8012C218(*(void **)(a0 + 0xCC)); + } + if (*(s32 *)(a0 + 0xD0) != 0) { + func_8012C218(*(void **)(a0 + 0xD0)); + } + func_8012C098((void *)a0); + } else { + s16 v; + + v = *(s16 *)(a0 + 0xE2); + if (v != 0) { + v = v - 1; + *(s16 *)(a0 + 0xE2) = v; + if (v == 0) { + *(u16 *)(a0 + 0x5C) &= 0xBFFF; + } + } + + if ((*(s16 *)(a0 + 0x76) < 5) && ((rand() & 3) == 0)) { + s32 iVar2 = ((s32 (*)(s32, s32))func_80143C74)(a0, 0); + s32 r; + + if (iVar2 != 0) { + r = rand(); + *(s32 *)(iVar2 + 0x10) = ((r & 0x7FF) - 0x400) << 8; + *(s32 *)(iVar2 + 0x14) = 0xFFF00000; + r = rand(); + *(s32 *)(iVar2 + 0x18) = ((r & 0x7FF) - 0x400) << 8; + r = rand(); + *(u16 *)(iVar2 + 0x6) -= 0x20; + *(u16 *)(iVar2 + 0x6) += (r & 0x3F); + *(s16 *)(iVar2 + 0xA) -= 0xC0; + r = rand(); + *(u16 *)(iVar2 + 0xE) -= 0x20; + *(u16 *)(iVar2 + 0xE) += (r & 0x3F); + } + } + + if (*(u16 *)(a0 + 0x2) != 1 && *(u16 *)(a0 + 0x2) != 5) { + *(s16 *)(a0 + 0x84) = 0xE; + } else { + if (*(s16 *)(a0 + 0x84) != 0) { + *(s16 *)(a0 + 0x84) = *(s16 *)(a0 + 0x84) - 1; + } else { + *(s16 *)(a0 + 0x84) = 0xE; + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x8BF, ((ax | flg) | x) & 0xFFFF); + } + } + } + } + } + } +} + + + +// @class: plumbing +// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the +// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized +// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args +// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 +// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in +// the `< 1` test. + +extern void func_8002D4C8(int, int); +extern void func_8016AA50(int, int); +extern s32 func_8016B428(s32); +extern void func_80019064(void *); +extern void func_8002A520(int); +extern void func_8002A790(int); +extern void func_80131E00(int, int); + +void func_80189EB4(int param_1) +{ + + extern unsigned char D_801D5A38[]; + int cVar1; + int unaff_s1; + + cVar1 = *(unsigned char *)(param_1 + 0x5e); + *(char *)(param_1 + 0xc1) = 0; + *(short *)(param_1 + 0x5e) = 0; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; + if (*(short *)(param_1 + 0xfc) == 0) { + *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x64) + 4); + *(int *)(param_1 + 8) = *(int *)(*(int *)(param_1 + 0x64) + 8); + *(int *)(param_1 + 0xc) = *(int *)(*(int *)(param_1 + 0x64) + 0xc); + *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x10) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x10); + *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x12); + *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x14) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x14); + } + if (*(short *)(param_1 + 0x102) == 0) { + *(short *)(param_1 + 0x102) = 10; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; + func_8002D4C8(0x9b7, 0); + if (*(short *)(param_1 + 0x60) != 0) { + if (cVar1 == 0x1d) { + *(short *)(param_1 + 0x82) = 0; + *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); + *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); + *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); + } + if (*(int *)(param_1 + 0x78) != 0) { + unaff_s1 = (int)*(short *)(param_1 + 0x60) * + (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; + if (unaff_s1 < 1) { + unaff_s1 = 1; + } + } + *(unsigned short *)(param_1 + 0x76) = + *(unsigned short *)(param_1 + 0x76) - unaff_s1; + func_8016AA50(param_1, unaff_s1); + if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { + ((void (*)(int))func_8016B428)(param_1); + func_80019064(D_801D5A38); + } + } + if (cVar1 != 0x1d) { + if (*(unsigned char *)(param_1 + 0xc8) != 0) { + func_8002A520(param_1); + } + if (*(unsigned char *)(param_1 + 0xc9) != 0) { + func_8002A790(param_1); + } + } + if (*(short *)(param_1 + 0x76) < 1) { + *(short *)(param_1 + 0x5c) = 0; + func_80131E00(param_1, 6); + } + } + return; +} + + + + + +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012C218(void *a0); +extern u8 *func_8012913C(s32 a0); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern s32 VectorNormalSS(void *a0, void *a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018A0AC(s32 a0) { + + extern s32 D_801151D4; + + extern void func_8002AC00(s32 arg0); + extern void func_8002A04C(s32 arg0); + extern u8 D_800AF648; + + u16 v10[4]; /* sp+0x10 */ + s16 v18[4]; /* sp+0x18 */ + s32 sxy; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + s32 base; + s32 iv; + s32 i; + s32 t; + s32 r; + + base = D_801151D4; + + if (*(s16 *)(a0 + 0xFC) >= 0x1F) { + iv = func_8012C658(0x33, 3, a0); + if (iv != 0) { + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; + *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; + *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) - 5; + } + iv = func_8012C658(0x33, 3, a0); + if (iv != 0) { + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; + *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; + *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) + 5; + } + iv = func_8012C658(0x32, 2, a0); + if (iv != 0) { + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; + *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) + 8; + } + + func_8002AC00(0x22); + + iv = *(s32 *)(a0 + 0x64); + *(s16 *)(iv + 2) = 2; + iv = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0); + *(s16 *)(iv + 2) = 4; + *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC) = 0; + + i = 0; + do { + iv = func_8012C588(0x281, a0); + if (iv != 0) { + *(s32 *)(iv + 0x1C) = 2; + *(s16 *)(iv + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(iv + 0x16) = -((rand() & 0x0F) + 0x10); + *(s16 *)(iv + 0x1A) = (rand() & 0x1F) - 0x10; + } + i++; + } while (i < 8); + + v18[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + v18[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + v18[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)v18, (s32)&sxy, &z, &flag); + if (flag >= 0 && (u32)((*(u16 *)&sxy + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((*((u16 *)&sxy + 1) + 0xB3) & 0xFFFF) < 0x167) { + s32 sx; + s32 av; + + sx = (s16)*(u16 *)&sxy; + av = sx; + if (sx < 0) { + av = -sx; + } + /* one local for |x| AND the volume: gcc-2.7.2 keeps the single pseudo + in $v1 in place (subu $v1,$v0,$v1); a separate `vol` local steals $a1 + and the whole OR chain drifts (cookbook §136 L1). */ + av = ((0xF0 - av) * 0x7F) / 0xF0; + sx = (sx + 0xF0) / 0x1E; + if (sx == 0x10) { + sx = 0xF; + } + sx = sx << 8; + func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); + } + + func_8002A04C(a0); + func_8012C218((void *)a0); + return; + } + + iv = (s32)func_8012913C(0x23); + if (iv != 0) { + r = rand(); + *(u16 *)(iv + 0x06) = *(u16 *)(a0 + 0x06) + (r & 0x7F) - 0x40; + r = rand(); + *(u16 *)(iv + 0x0A) = *(u16 *)(a0 + 0x0A) + (r & 0x7F) - 0x80; + r = rand(); + *(u16 *)(iv + 0x0E) = *(u16 *)(a0 + 0x0E) + (r & 0x7F) - 0x40; + + t = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(s32 *)(iv + 0x04) = *(s32 *)(iv + 0x04) + (t << 10); + + t = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(u16 *)(iv + 0x34) = 0x1800; + *(s32 *)(iv + 0x18) = 0; + *(s32 *)(iv + 0x14) = 0; + *(s32 *)(iv + 0x10) = 0; + *(s32 *)(iv + 0x0C) = *(s32 *)(iv + 0x0C) - (t << 10); + + v10[0] = *(s32 *)(base + 0x5C) - *(u16 *)(iv + 0x06); + v10[1] = *(s32 *)(base + 0x60) - *(u16 *)(iv + 0x0A); + v10[2] = *(s32 *)(base + 0x64) - *(u16 *)(iv + 0x0E); + VectorNormalSS(v10, v10); + + *(u16 *)(iv + 0x06) = *(u16 *)(iv + 0x06) + ((s16)v10[0] >> 6); + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) + ((s16)v10[1] >> 6); + *(u16 *)(iv + 0x0E) = *(u16 *)(iv + 0x0E) + ((s16)v10[2] >> 6); + *(u16 *)(iv + 0x34) = 0x3000; + func_8002D4C8(0xAF8, 0); + } + + *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; +} + + + +// @class: struct +// @stuck: none — MATCH + +extern int rand(void); +extern int func_80143C74(short *, int); +extern int func_80047948(int); +extern int func_8004787C(int); + +void func_8018A4F4(short *param_1) +{ + + extern void (*D_801D5B50[])(short *); + int iVar3; + unsigned int uVar2; + short v; + + v = param_1[0x81]; + if (v != 0) { + v = v - 1; + param_1[0x81] = v; + if (v == 0) { + *(unsigned short *)(param_1 + 0x2e) &= 0xbfff; + } + } + D_801D5B50[*(unsigned short *)(param_1 + 1)](param_1); + if (*(unsigned short *)param_1 != 0) { + if (param_1[0x7e] == 0) { + *(int *)(param_1 + 2) = *(int *)(*(int *)(param_1 + 0x32) + 4); + *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x32) + 8); + *(int *)(param_1 + 6) = *(int *)(*(int *)(param_1 + 0x32) + 0xc); + *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x10) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x10); + *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x12) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x12); + *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x14) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x14); + } + if ((param_1[0x3b] < 5) && ((rand() & 3) == 0) && + ((iVar3 = func_80143C74(param_1, 0)) != 0)) { + uVar2 = rand(); + *(int *)(iVar3 + 0x10) = ((uVar2 & 0x7ff) - 0x400) * 0x100; + *(unsigned int *)(iVar3 + 0x14) = 0xfff00000; + uVar2 = rand(); + *(int *)(iVar3 + 0x18) = ((uVar2 & 0x7ff) - 0x400) * 0x100; + *(int *)(iVar3 + 4) += + func_80047948((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; + *(int *)(iVar3 + 0xc) -= + func_8004787C((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; + uVar2 = rand(); + *(short *)(iVar3 + 6) -= 0x20; + *(short *)(iVar3 + 6) += (uVar2 & 0x3f); + *(short *)(iVar3 + 0xa) -= 0x40; + uVar2 = rand(); + *(short *)(iVar3 + 0xe) -= 0x20; + *(short *)(iVar3 + 0xe) += (uVar2 & 0x3f); + } + } + return; +} + + + + +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012C218(void *a0); +extern u8 *func_8012913C(); +extern s32 rand(void); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); +extern s32 VectorNormalSS(void *a0, void *a1); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern void func_8002A04C(s32 a0); + + +void func_8018A704(s32 a0) { + + extern s32 D_801151D4; + + extern u8 D_800AF648; + extern void func_8002AC00(s32 arg0); + + struct { + u16 nv[4]; /* sp+0x10 */ + s16 v[4]; /* sp+0x18 */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + s32 p; + s32 s0; + s32 i; + + p = D_801151D4; + + if (*(s16 *)(a0 + 0xFC) >= 0x1F) { + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; + } + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; + } + s0 = func_8012C658(0x32, 2, a0); + if (s0 != 0) { + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; + } + func_8002AC00(0x22); + s0 = *(s32 *)(a0 + 0x64); + *(s16 *)(s0 + 0x2) = 4; + s0 = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC); + *(s16 *)(s0 + 0x2) = 4; + + for (i = 0; i < 8; i++) { + s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); + } + } + + *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0) = 0; + func_8002A04C(a0); + func_8012C218((void *)a0); + return; + } + + s0 = (s32)func_8012913C(0x23); + if (s0 != 0) { + *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; + *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0x80; + *(s16 *)(s0 + 0xE) = *(u16 *)(a0 + 0xE) + (rand() & 0x7F) - 0x40; + + *(s32 *)(s0 + 0x4) = + *(s32 *)(s0 + 0x4) - + func_80047948(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; + { + s32 t = func_8004787C(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; + *(s16 *)(s0 + 0x34) = 0x1800; + *(s32 *)(s0 + 0x18) = 0; + *(s32 *)(s0 + 0x14) = 0; + *(s32 *)(s0 + 0x10) = 0; + *(s32 *)(s0 + 0xC) = *(s32 *)(s0 + 0xC) + t; + } + + L.nv[0] = *(s32 *)(p + 0x5C) - *(u16 *)(s0 + 0x6); + L.nv[1] = *(s32 *)(p + 0x60) - *(u16 *)(s0 + 0xA); + L.nv[2] = *(s32 *)(p + 0x64) - *(u16 *)(s0 + 0xE); + VectorNormalSS(L.nv, L.nv); + + *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); + *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); + *(s16 *)(s0 + 0x34) = 0x3000; + func_8002D4C8(0xAF8, 0); + } + + *(s16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; +} + + + +extern s32 rand(void); +extern s32 func_80143C74(); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); + +void func_8018AB48(s32 a0) { + + extern void (*D_801D5BC8[])(s32); + s32 iVar3; + s32 iVar4; + s32 r; + + { + s16 t = *(s16 *)(a0 + 0x102); + if (t != 0) { + t--; + *(s16 *)(a0 + 0x102) = t; + if (t == 0) { + *(u16 *)(a0 + 0x5C) &= 0xBFFF; + } + } + } + + D_801D5BC8[*(u16 *)(a0 + 2)](a0); + + if (*(u16 *)(a0 + 0) != 0) { + if (*(s16 *)(a0 + 0xFC) == 0) { + *(s32 *)(a0 + 4) = *(s32 *)(*(s32 *)(a0 + 0x64) + 4); + *(s32 *)(a0 + 8) = *(s32 *)(*(s32 *)(a0 + 0x64) + 8); + *(s32 *)(a0 + 0xC) = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xC); + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x10) = + *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x10); + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x14); + } + if (*(s16 *)(a0 + 0x76) < 5 && (rand() & 3) == 0 && + (iVar3 = func_80143C74(a0, 0)) != 0) { + *(s32 *)(iVar3 + 0x10) = ((rand() & 0x7FF) - 0x400) << 8; + *(s32 *)(iVar3 + 0x14) = 0xFFF00000; + *(s32 *)(iVar3 + 0x18) = ((rand() & 0x7FF) - 0x400) << 8; + iVar4 = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(s32 *)(iVar3 + 4) = *(s32 *)(iVar3 + 4) - iVar4 * 0x400; + iVar4 = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(s32 *)(iVar3 + 0xC) = *(s32 *)(iVar3 + 0xC) + iVar4 * 0x400; + r = rand(); + { + s32 m6 = *(u16 *)(iVar3 + 6) - 0x20; + *(u16 *)(iVar3 + 6) = m6 + (r & 0x3F); + } + *(u16 *)(iVar3 + 0xA) = *(u16 *)(iVar3 + 0xA) - 0x40; + r = rand(); + { + s32 mE = *(u16 *)(iVar3 + 0xE) - 0x20; + *(u16 *)(iVar3 + 0xE) = mE + (r & 0x3F); + } + } + } +} + + + + +// @class: schedule +// @stuck: none — MATCH. Two levers: (1) split rand()-result into its own var (shared iVar1 forced an extra move a0,v0); (2) reorder decrement before sp[0] to group the two lhu loads as target's scheduler does; (3) materialize &D_80126B96 via a local u16* to CSE the address (lui+addiu once) instead of %hi/%lo split-per-access. + + + + + + + + +extern void func_80128EA8(); +extern void func_8012931C(); +extern s32 func_80128ED8(s32 param_1, s32 *param_2); +extern u8 *func_8012913C(); +extern void func_801292C8(); +extern int func_8012D664(); + +extern u16 D_801270C0; + +void func_8018AD58(s32 arg0) { + + extern u8 D_801D59AC; + extern u8 D_801D59B8; + extern u16 D_80126B96; + s32 iVar1; + s32 rv; + u8 *p; + u16 sp[3]; + + if (*(u16 *)(arg0 + 2) == 0) { + *(u8 **)(*(s32 *)(arg0 + 0x20) + 0x20) = &D_801D59AC; + *(u32 *)(*(s32 *)(arg0 + 0x20) + 4) |= 0x50000000; + *(u8 *)(*(s32 *)(arg0 + 0x20) + 0x27) = 0x59; + func_80128EA8(*(s32 *)(arg0 + 0x20), arg0 + 0x24, (s32)&D_801D59B8); + rv = rand(); + *(s32 *)(arg0 + 0x1c) = 0x10; + *(s32 *)(arg0 + 0x2c) = 0x200; + *(s16 *)(arg0 + 0x28) = rv % 15; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = 0x1200; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = 0x1200; + *(u16 *)(arg0 + 2) = *(u16 *)(arg0 + 2) + 1; + } else if (*(s16 *)&D_801270C0 == 1) { + func_8012931C(arg0); + func_80128ED8(*(s32 *)(arg0 + 0x20), arg0 + 0x24); + *(s32 *)(arg0 + 0x1c) -= 1; + if ((rand() & 7) == 0 && (p = func_8012913C(0x22)) != 0) { + *(u16 *)(p + 6) = *(u16 *)(arg0 + 6); + *(u16 *)(p + 0xa) = *(u16 *)(arg0 + 0xa); + *(u16 *)(p + 0xe) = *(u16 *)(arg0 + 0xe); + *(s32 *)(p + 0x10) = *(s32 *)(arg0 + 0x10) >> 3; + *(s32 *)(p + 0x14) = *(s32 *)(arg0 + 0x14) >> 3; + *(s32 *)(p + 0x18) = *(s32 *)(arg0 + 0x18) >> 3; + *(s16 *)(p + 0x34) = *(u16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + 1; + *(u16 *)(*(s32 *)(p + 0x20) + 0x2c) = 0xc008; + } + if (*(s32 *)(arg0 + 0x1c) == 0) { + func_801292C8(arg0); + } else { + *(s32 *)(arg0 + 0x14) = 0xffff0000; + iVar1 = *(s32 *)(arg0 + 0x2c) + 0x80; + *(s32 *)(arg0 + 0x2c) = iVar1; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + (s16)iVar1; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) + (s16)*(s32 *)(arg0 + 0x2c); + *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) - 0x20; + sp[0] = *(u16 *)(arg0 + 6); + sp[1] = *(u16 *)(arg0 + 0xa); + sp[2] = *(u16 *)(arg0 + 0xe); + if (func_8012D664(sp, 0x10, 0xb4) == 1) { + u16 *q = &D_80126B96; + *q |= 0x4200; + } + *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) + 0x20; + } + } +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018AFDC); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018AFFC); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018B0FC); + + +extern void func_8012B370(int a0); +extern void func_8012C218(void *a0); +extern s32 func_8012C588(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018B19C(s32 a0) +{ + s32 t; + register s32 *a1 asm("$5"); + u32 v0; + + t = *(s32 *)(a0 + 0x1C) - 1; + *(s32 *)(a0 + 0x1C) = t; + + if (t != 0) { + a1 = *(s32 **)(a0 + 0x20); + v0 = *(u32 *)(a1 + 0x1); + v0 ^= 0x80000000; + *(u32 *)(a1 + 0x1) = v0; + ((void (*)(void))func_8012B370)(); + + t = *(s32 *)(a0 + 0x1C); + if ((t & 0x3) != 0) { + s32 s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + return; + } + + func_8012C218((void *)a0); +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018B25C); + + + + + + + + + + + + + + + + + + + +void func_8018B2F4(void *a0) +{ + s32 v0 = *((s32 *) (((s32) a0) + 0x64)); + *((s16 *) (v0 + 0x5C)) = 0; + ; + *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xD0))) + 0x5C)) = 0; +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018B314); + +void func_8018B404(void) { +} + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018B40C); + + +extern void func_8012B370(int a0); +extern void func_8012C218(void *a0); +extern s32 func_8012C588(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018B4E0(s32 a0) +{ + s32 t; + register s32 *a1 asm("$5"); + u32 v0; + + t = *(s32 *)(a0 + 0x1C) - 1; + *(s32 *)(a0 + 0x1C) = t; + + if (t != 0) { + a1 = *(s32 **)(a0 + 0x20); + v0 = *(u32 *)(a1 + 0x1); + v0 ^= 0x80000000; + *(u32 *)(a1 + 0x1) = v0; + ((void (*)(void))func_8012B370)(); + + t = *(s32 *)(a0 + 0x1C); + if ((t & 0x3) != 0) { + s32 s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + return; + } + + func_8012C218((void *)a0); +} + + +extern void func_8012B370(int a0); + void func_8018B5A0(void) { + ((void (*)(void))func_8012B370)(); + } + + + + + + + + + + + + + + + + + + + + +void func_8018B5C0(void *a0) +{ + s32 v0 = *((s32 *) (((s32) a0) + 0x64)); + *((s16 *) (v0 + 0x5C)) = 0; + ; + *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xCC))) + 0x5C)) = 0; +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018B5E0); + +void func_8018B6D4(void) { +} + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018B6DC); + + +extern void func_8012B370(int a0); +extern void func_8012C218(void *a0); +extern s32 func_8012C588(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018B7D0(s32 a0) +{ + s32 t; + register s32 *a1 asm("$5"); + u32 v0; + + t = *(s32 *)(a0 + 0x1C) - 1; + *(s32 *)(a0 + 0x1C) = t; + + if (t != 0) { + a1 = *(s32 **)(a0 + 0x20); + v0 = *(u32 *)(a1 + 0x1); + v0 ^= 0x80000000; + *(u32 *)(a1 + 0x1) = v0; + ((void (*)(void))func_8012B370)(); + + t = *(s32 *)(a0 + 0x1C); + if ((t & 0x3) != 0) { + s32 s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + return; + } + + func_8012C218((void *)a0); +} + + +extern void func_8012B370(int a0); + void func_8018B890(void) { + ((void (*)(void))func_8012B370)(); + } + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018B8B0); + + +/* TU declares func_8018B9E8 as void(void) (S35 self-axis) but the asm takes + * $a0 as a pointer parameter — bind through a private C name. */ +extern void aF8017ED80(void *param_1) __asm__("func_8018B9E8"); + +void aF8017ED80(void *param_1) { + u8 *a0 = (u8 *)param_1; + s32 pad_[4]; + s32 iVar2; + u32 uVar1; + + if (*(u16 *)(a0 + 0x0) != 0) { + iVar2 = *(s32 *)(a0 + 0xCC); + *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); + *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); + *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); + *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); + *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFC); + *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); + *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); + *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); + *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); + if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { + register u32 val __asm__("$2"); + val = *(u32 *)(iVar2 + 0x4); + uVar1 = val | 0x80000000; + } else { + __asm__ __volatile__(""); + uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; + } + *(u32 *)(iVar2 + 0x4) = uVar1; + + iVar2 = *(s32 *)(a0 + 0xD0); + *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); + *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); + *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); + *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); + *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFE); + *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); + *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); + *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); + *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); + if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { + register u32 val __asm__("$2"); + val = *(u32 *)(iVar2 + 0x4); + uVar1 = val | 0x80000000; + } else { + __asm__ __volatile__(""); + uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; + } + *(u32 *)(iVar2 + 0x4) = uVar1; + } +} + + + +/* func_8018BBBC -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (open-only h_norm + * cluster exemplar, 7 members). + * + * a0+0x0 : u16 active flag; 0 => early return. + * a0+0x84 : s16 sound cooldown timer. + * cooldown != 0 -> just decrement it. + * cooldown == 0 -> try to play a positional sound (RotTransPers screen + * projection of the parent's position, range-gated on + * screen X/Y, volume from the classic div-by-0xF0 / + * div-by-0x1E magic-constant idiom -- byte-proven sibling + * form is func_80181CF0 in this same TU, sndid 0x849 here + * vs 0x961 there), then unconditionally reset the timer + * to 0xA regardless of whether the sound actually played. + * a0+0xFC / 0xFE : running hit-combo accumulators, bumped by +/-0x280 every + * call (unconditional tail). + * Tail always calls ((void (*)(void *))func_8018B9E8)(a0) (the TU's canonical decl for this + * symbol is void(void) -- S35 self-axis -- so this draft binds its own + * private extern with the asm's real void(void*) shape). + * + * Control flow is EXPLICIT goto/label, mirroring source-order block + * placement (gcc-2.7.2 lays out basic blocks in literal source order, not by + * fallthrough preference -- see the func_80181CF0 comment, same TU): the + * cooldown!=0 decrement is the SHORT block and sits out-of-line (jumped to), + * the cooldown==0 RTP+sound block is the LONG block and sits inline + * (fallthrough), matching the target's physical layout exactly. + * + * MATCH levers (byte-proven, 2026-08-05): + * 1. Naive `if(old!=0){cool=old-1;}else{...}` folds trivially: reorg.c's + * delay-slot filler steals the single-insn decrement into the `bnez`'s + * own delay slot and retargets the branch straight to the join label + * (2 ins short of target). The target instead keeps a genuine copy + * (`addu $v1,$v0,zero`) in the delay slot and a SEPARATE `addiu $v0,$v1,-1` + * at the decrement site. Reproduced by pinning a second variable + * `register s32 v1 __asm__("$3")`, assigned UNCONDITIONALLY right after + * the load (`v1 = old;`) -- the scheduler places that copy in the + * branch's delay slot on its own, and the decrement (`cool = v1 - 1`) + * can no longer be folded away. `cool` is separately pinned to + * `__asm__("$2")` so its other def sites (the three `cool = 0xA` early + * exits) don't drift onto $3 by coalescing with v1. + * 2. The tail's `sh $v0,0x84($s0)` / `addu $a0,$s0,zero` order (store off + * the callee-saved pointer BEFORE reloading it into the call-argument + * register) needed a `__asm__ __volatile__("":::"memory")` fence right + * after the store -- without it, sched1 hoists the independent a0-reload + * ahead of the store even when the reload is written later in source. + * 3. Frame is -0x38, 8 bytes (2 words) larger than the natural -0x30 the + * locals alone produce; `pad2[2]` (dead, address never read) inside `L` + * reserves them, mirroring func_80181CF0's own "dead aggregate sizes the + * frame" idiom. + */ + + +/* §37/§124 def-side asm-label alias (P30 S1d class lever): the TU declares + * `extern void func_8018BBBC(void);` (L4082, L4091) for callers that invoke it with NO args, + * while the byte-true definition takes an s32 in $a0 -> `conflicting types`. Neither side can + * move (a no-prototype escape is illegal once a param promotes), so the DEFINITION gets a + * private C identifier and binds the emitted symbol with a GNU asm label. Zero blast radius: + * the TU's declaration never meets the definition, and the emitted symbol is unchanged. */ +void aF8017EF54(s32 a0) __asm__("func_8018BBBC"); + +void aF8017EF54(s32 a0) +{ + extern void func_8004914C(void *a0); + extern void func_800491AC(void *a0); + extern void func_8002D4C8(s32 a0, s32 a1); + extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + extern u8 D_800AF648; + extern void func_8018B9E8(void); + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + s32 pad2[2]; /* sp+0x24 -- dead, sizes the frame */ + } L; + + register s32 v1 __asm__("$3"); + register s32 cool __asm__("$2"); + s32 old; + + if (*(u16 *)(a0 + 0x0) == 0) { + return; + } + + old = *(s16 *)(a0 + 0x84); + v1 = old; + if (old != 0) { + goto L_dec; + } + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + + if (L.flag < 0) { + cool = 0xA; + goto L_join; + } + if ((u32)((L.sxy[0] + 0xEF) & 0xFFFF) >= 0x1DF) { + cool = 0xA; + goto L_join; + } + if ((u32)((L.sxy[1] + 0xB3) & 0xFFFF) >= 0x167) { + goto L_snd_skip; + } + + { + s32 sx = (s16)L.sxy[0]; + s32 av; + + av = sx; + if (sx < 0) { + av = -sx; + } + av = ((0xF0 - av) * 0x7F) / 0xF0; + sx = (sx + 0xF0) / 0x1E; + if (sx == 0x10) { + sx = 0xF; + } + sx = sx << 8; + func_8002D4C8(0x849, (av | (0x3000 | sx)) & 0xFFFF); + } + +L_snd_skip: + cool = 0xA; + goto L_join; + +L_dec: + cool = v1 - 1; + +L_join: + *(s16 *)(a0 + 0x84) = cool; + __asm__ __volatile__("" ::: "memory"); + + { + s32 p = a0; + *(u16 *)(p + 0xFC) = *(u16 *)(p + 0xFC) + 0x280; + *(u16 *)(p + 0xFE) = *(u16 *)(p + 0xFE) - 0x280; + ((void (*)(void *))func_8018B9E8)((void *)p); + } +} + + + +extern s32 rand(void); +extern s32 VectorNormalSS(void *a0, void *a1); +extern s32 func_8012C588(s32 a0, s32 a1); +extern u8 *func_8012913C(); +extern void func_8018B9E8(void); + +void func_8018BD68(s32 a0) +{ + + extern s32 D_801151D4; + u16 nv[4]; + s32 g; + s32 s0; + s32 idx; + + g = D_801151D4; + + if (*(u16 *)a0 != 0) { + idx = *(s32 *)(a0 + 0x1C) & 3; + switch (idx) { + case 0: + s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + break; + case 1: + break; + case 2: + case 3: + s0 = (s32)func_8012913C(0x23); + if (s0 != 0) { + *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x3F) - 0x20; + *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x3F) - 0x30; + { + s32 r = rand(); + s32 t = *(u16 *)(a0 + 0xE); + *(s32 *)(s0 + 0x18) = 0; + *(s32 *)(s0 + 0x14) = 0; + *(s32 *)(s0 + 0x10) = 0; + *(s16 *)(s0 + 0xE) = t + (r & 0x3F) - 0x20; + } + *(s16 *)(s0 + 0x34) = (rand() & 0x17FF) + 0x800; + nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); + nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); + nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); + VectorNormalSS(nv, nv); + *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)nv[0] >> 6); + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)nv[1] >> 6); + *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)nv[2] >> 6); + } + break; + } + ((void (*)(s32))func_8018B9E8)(a0); + } +} + + + +extern void func_8012B1B4(s32 a0, s32 a1); +extern void func_8012CBCC(s32 a0); +extern void func_8012BE98(s32 a0, u16 *a1); +extern void func_8012BE54(s32 a0); +extern s32 func_8012B744(void *a0, void *a1); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern s32 func_8018B8B0(s32 a0, s32 a1); + +void func_8018BF50(s32 a0) +{ + s16 hi; + s16 pos; + s32 sp10[3]; + u16 state; + + hi = *(s16 *)(a0 + 0x8A); + pos = *(s16 *)(a0 + 0xA); + + if (pos >= hi - 8) { + if (*(s32 *)(a0 + 0x48) >= 0) { + *(s32 *)(a0 + 0x48) = -0x8000; + *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; + } + } else { + if (hi + 8 >= pos) { + if (*(s32 *)(a0 + 0x48) <= 0) { + *(s32 *)(a0 + 0x48) = 0x8000; + *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; + } + } + } + + if (*(s32 *)(a0 + 0xDC) < -0x40000) { + *(s32 *)(a0 + 0xDC) = -0x40000; + } + + sp10[0] = 0; + sp10[1] = 0; + sp10[2] = *(s32 *)(a0 + 0xDC); + func_8012B1B4(a0, (s32)sp10); + func_8012CBCC(a0); + + state = *(u16 *)(a0 + 0x34); + switch (state) { + case 0: { + register s32 s0v __asm__("$16"); + s32 ret; + s32 p744; + s32 v1p; + s16 snd; + s32 b608; + register s32 p20 __asm__("$4"); + + s0v = a0 + 0x88; + ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s0v); + if (ret <= 0x3FFFF) { + if (func_8018B8B0(a0, 0x51) == 0) { + goto set_state1; + } + } + p744 = func_8012B744((void *)(a0 + 4), (void *)s0v); + v1p = *(s32 *)(a0 + 0x20); + snd = *(s16 *)(v1p + 0x12); + b608 = func_8012B608(snd, p744, 8); + p20 = *(s32 *)(a0 + 0x20); + *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; + v1p = *(s32 *)(a0 + 0x20); + *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; + func_8012B1B4(a0, (s32)sp10); + break; + } + case 1: { + s32 ret; + + *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; + ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)); + if (ret > 0x3FFFF) { + goto rand_tail; + } + if (func_8018B8B0(a0, 0x51) == 0) { + goto end_switch; + } + goto rand_tail; + } + case 2: { + s32 p744; + s32 v1p; + s16 snd; + s32 b608; + s32 p20; + + p744 = func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)); + v1p = *(s32 *)(a0 + 0x20); + snd = *(s16 *)(v1p + 0x12); + b608 = func_8012B608(snd, p744, 0x10); + p20 = *(s32 *)(a0 + 0x20); + *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; + v1p = *(s32 *)(a0 + 0x20); + *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; + *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) >> 1; + func_8018B8B0(a0, 0x51); + if (*(s16 *)(a0 + 0x102) == 0) { + *(u16 *)(a0 + 0x34) = 3; + } else { + *(s16 *)(a0 + 0x102) = *(s16 *)(a0 + 0x102) - 1; + } + break; + } + case 3: { + register s32 s2v __asm__("$18"); + s32 ret; + s32 p744; + s32 v1p; + s16 snd; + s32 b608; + + s2v = a0 + 0x88; + ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s2v); + *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; + if (func_8018B8B0(a0, 0x51) != 0) { + goto rand_tail; + } + if (ret <= 0x40000) { + goto set_state1; + } + p744 = func_8012B744((void *)(a0 + 4), (void *)s2v); + v1p = *(s32 *)(a0 + 0x20); + snd = *(s16 *)(v1p + 0x12); + b608 = func_8012B608(snd, p744, 1); + if ((u32)(b608 + 0xFF) < 0x1FF) { + goto end_switch; + } + goto rand_tail; + } + } + goto end_switch; + +rand_tail: + *(u16 *)(a0 + 0x34) = 2; + { + s32 r = rand(); + *(s16 *)(a0 + 0x102) = (r & 7) + 8; + } + goto end_switch; + +set_state1: + *(u16 *)(a0 + 0x34) = 1; + +end_switch: + if (*(s16 *)(a0 + 0x100) != 0) { + *(s16 *)(a0 + 0x100) = *(s16 *)(a0 + 0x100) - 1; + } else { + s32 ret3; + + ret3 = ((s32 (*)(s32))func_8012BE54)(a0); + if (ret3 <= 0x24000) { + *(s16 *)(a0 + 0x2) = 2; + *(s16 *)(a0 + 0x100) = 0x3C; + } + } +} + + + + +extern s32 func_80188204(s32 a0, s32 a1); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012F14C(s32 a0, s32 a1, s32 a2); +extern void func_8012B370(int a0); +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + + +void func_8018C28C(s32 param_1) +{ + + extern u8 D_801DD650; + extern u8 D_801DD658; + extern u8 D_801DD660; + extern u8 D_800AF648; + /* L5: slot offsets are exact only through ONE struct — copied verbatim + from the banked RTP_SND sibling func_80180CA8 (same TU) so the + sp+0x10.."0x2B layout reproduces byte-for-byte. */ + struct { + u16 nv[4]; /* sp+0x10 */ + s16 rv[4]; /* sp+0x18 */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + + s16 sVar1; + s32 s0; + + if (*(s32 *)(param_1 + 0x1c) == 0) { + sVar1 = *(s16 *)(param_1 + 0x100) - 1; + *(s16 *)(param_1 + 0x100) = sVar1; + if (sVar1 == 0) { + *(s16 *)(param_1 + 2) = 1; + *(s16 *)(param_1 + 0x100) = 0x3c; + *(s16 *)(param_1 + 0x8a) = *(s16 *)(param_1 + 0xa) - 0x140; + } else { + *(s32 *)(param_1 + 0x1c) = (sVar1 == 1) ? 0x3c : 3; + + func_80188204(param_1, (s32)&D_801DD650); + + s0 = func_8012C588(0x260, param_1); + if (s0 != 0) { + ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DD658, (s32)L.nv); + *(s16 *)(s0 + 6) = L.nv[0]; + *(s16 *)(s0 + 0xA) = L.nv[1]; + *(s16 *)(s0 + 0xE) = L.nv[2]; + func_8012B370(s0); + func_8012C658(0x261, 0, s0); + } + + s0 = func_8012C588(0x260, param_1); + if (s0 != 0) { + ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DD660, (s32)L.nv); + *(s16 *)(s0 + 6) = L.nv[0]; + *(s16 *)(s0 + 0xA) = L.nv[1]; + *(s16 *)(s0 + 0xE) = L.nv[2]; + func_8012B370(s0); + func_8012C658(0x261, 1, s0); + } + + L.rv[0] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x48); + L.rv[1] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x4C); + L.rv[2] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x84A, ((ax | flg) | x) & 0xFFFF); + } + } + } + } else { + *(s32 *)(param_1 + 0x1c) = *(s32 *)(param_1 + 0x1c) - 1; + } +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018C534); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018C664); + + +extern void (*D_801DD6B4[])(void); + +void func_8018C73C(void *a0) { + D_801DD6B4[*(u16 *)((s32)a0 + 0x2)](); +} + + + +/* SV4 is the TU-canonical name (src/shared/engine_types.h) for func_8012F214's + * in/out struct (see ov_SC06_008_jr_8017AE2C.c:3135, "SV4 svec" comment: func_8012F214 out). + * Isolated match_one has no include path to that header, so it is typedef'd + * locally here for the standalone compile only. */ + + +/* func_8018C778 - ov_SC06_008 / ov_SC06_008_jr_8017C294 (93 ins) + * + * One-time init (guarded by state flag at +0x34): mirror the +0x64 sub-object's + * +0x20/+0x12 field into our own +0x20 sub-object, kick off two "core" calls, + * pick an entry from the 2-element 12-byte table D_801DD6BC (indexed by the + * s16 at +0x70), then call func_8012F214 with a zeroed input SV4 and read the + * first 3 fields of the output SV4 back into +6/+0xA/+0xE. Sets the countdown + * at +0x1c to 0x5a and marks the state flag +0x34 = 1. + * + * Always-executed tail: bump the +0x20 sub-object's +0x10/+0x12/+0x14 fields + * (reloading the +0x20 pointer fresh for each field -- no CSE across the + * intervening stores, straight literal translation), mirror +0x14 into +0xDC, + * call func_8012CBCC(a0) and test its return (canonical fleet decl is + * void func_8012CBCC(s32 a0); the return value is read via a function- + * pointer cast at the use site, per the established TU idiom -- see + * ov_SC03_099_jr_8017BEBC.c:5630 comment block). If (ret & 0x6000), decrement + * the +0xac counter (signed s16 compare-to-zero on the POST-decrement value -- + * gcc-2.7.2's sll-by-16/bnez idiom for a s16 local) and negate +0xDC into + * +0x14; on the counter hitting zero, call func_8012C218. Finally decrement + * the +0x1c countdown and call func_8012C218 again when IT hits zero. + */ + +extern void func_8012B2CC(s32 a0); +extern void func_8012B23C(s32 a0); +extern void func_8012B14C(s32 a0, s32 a1); +extern void func_8012F214(s32 a0, s32 a1, s32 a2); +extern void func_8012CBCC(s32 a0); +extern void func_8012C218(void *a0); + + +void func_8018C778(s32 a0) +{ + + extern s32 D_801DD6BC; + SV4 in; + SV4 out; + s16 v1; + u16 uStack_c; + + if (*(u16 *)(a0 + 0x34) == 0) { + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); + func_8012B2CC(a0); + func_8012B23C(a0); + func_8012B14C(a0, *(s16 *)(a0 + 0x70) * 12 + (s32)&D_801DD6BC); + + in.a = 0; + in.b = 0; + in.c = 0x10; + func_8012F214(a0, (s32)&in, (s32)&out); + *(u16 *)(a0 + 6) = out.a; + *(u16 *)(a0 + 0xa) = out.b; + uStack_c = out.c; + *(s32 *)(a0 + 0x1c) = 0x5a; + *(u16 *)(a0 + 0x34) = 1; + *(u16 *)(a0 + 0xe) = uStack_c; + } + + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) += -0x80; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) += 4; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) += *(u16 *)(a0 + 0xfc); + + *(s32 *)(a0 + 0xdc) = *(s32 *)(a0 + 0x14); + if ((((s32 (*)(s32))func_8012CBCC)(a0)) & 0x6000) { + register s32 negdc __asm__("$2"); + negdc = -*(s32 *)(a0 + 0xdc); + v1 = *(u16 *)(a0 + 0xac); + v1 -= 1; + *(s16 *)(a0 + 0xac) = v1; + *(s32 *)(a0 + 0x14) = negdc; + if (v1 == 0) { + func_8012C218((void *)a0); + } + } + + { + s32 iVar3 = *(s32 *)(a0 + 0x1c) - 1; + *(s32 *)(a0 + 0x1c) = iVar3; + if (iVar3 == 0) { + func_8012C218((void *)a0); + } + } +} + + + +extern void (*D_801DD6D4[])(void); + +void func_8018C8EC(void *a0) { + D_801DD6D4[*(u16 *)((s32)a0 + 0x2)](); +} + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018C928); + + +extern void func_8002D4C8(s32 arg0, s32 arg1); +extern void func_8018B9E8(void); + +void func_8018C9B0(void *a0) { + func_8002D4C8(0xB32, 0); + ((void (*)(void *))func_8018B9E8)(a0); +} + + +extern void func_8018BBBC(void); + void func_8018C9E8(s32 *param_1) { + *(short *)(*(int *)((char *)param_1 + 0x20) + 0x10) = 0xe00; + ((void (*)(void))func_8018BBBC)(); + } + + + + +extern void func_8018BBBC(void); + void func_8018CA10(s32 arg0) { + s32 temp_v1 = *(s32 *)(arg0 + 0x20); + *(s16 *)(temp_v1 + 0x10) += 0x20; + ((void (*)(void))func_8018BBBC)(); + } + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CA44); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CA90); + +extern void func_8018B9E8(void); + void func_8018CB7C(s32 *a0) { + *(s32 *)((s32)a0 + 0x10) = *(s32 *)((s32)a0 + 0x10) >> 1; + *(s32 *)((s32)a0 + 0x18) = *(s32 *)((s32)a0 + 0x18) >> 1; + ((void (*)(void))func_8018B9E8)(); + } + + + + +extern void func_8018B9E8(void); + void func_8018CBB0(s32 a0) { + s32 v0; + v0 = 0xc; + *(s8 *)(a0 + 0xc1) = v0; + *(s32 *)(a0 + 0x1c) = 0x3c; + ((void (*)(void))func_8018B9E8)(); + } + + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CBDC); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CC68); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CD90); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CEC4); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CF24); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018CFE4); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018D0B8); + +INCLUDE_ASM("asm/ov_SC06_022/nonmatchings/ov_SC06_022_jr_80184A28", func_8018D1B0); + + + + + diff --git a/src/ov_SC06_024/ov_SC06_024_jr_8017BEBC.c b/src/ov_SC06_024/ov_SC06_024_jr_8017BEBC.c index b92ef980f..0574874c4 100644 --- a/src/ov_SC06_024/ov_SC06_024_jr_8017BEBC.c +++ b/src/ov_SC06_024/ov_SC06_024_jr_8017BEBC.c @@ -4950,3947 +4950,3 @@ INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80186E0 INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80186E48); INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80186E94); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80186F00); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801872EC); - -extern void func_8018A3CC(s32 arg0, s32 arg1); - void func_80187440(s32 arg0) { - func_8018A3CC(arg0, 0x9B7); - } - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80187460); - - -extern void func_801875A4(void); -extern void func_80187A50(s32 a0, s32 a1); -extern void func_8012A828(s32 a0, void *a1); - -void func_801874E4(s32 param_1) { - - extern s32 D_801D420C; - u16 uVar1; - s32 iVar2; - - *(s16 *)(param_1 + 0x34) = 0; - if ((*(u32 *)(param_1 + 0xe0) & 8) == 0) { - func_801875A4(); - } else { - if ((*(u32 *)(param_1 + 0xe0) & 0x20) != 0) { - func_80187A50(param_1, -0x8000); - } - *(s16 *)(param_1 + 2) = 0x22; - func_8012A828(param_1, &D_801D420C); - } - iVar2 = *(s32 *)(param_1 + 0x20); - *(s16 *)(iVar2 + 0x14) = 0; - *(s16 *)(iVar2 + 0x10) = 0; - uVar1 = *(u16 *)(*(s32 *)(param_1 + 0x78) + 2); - *(u32 *)(param_1 + 0xe0) = (*(u32 *)(param_1 + 0xe0) & 0xffffffd5) | 0x400; - *(s16 *)(param_1 + 0x5e) = 0; - *(u16 *)(param_1 + 0xae) = *(u16 *)(param_1 + 0xae) & 0xfffe; - *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) & 0xfffffffb; - *(s16 *)(param_1 + 0x5c) = uVar1; -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801875A4); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018769C); - - - -extern s32 func_8012BCCC(s32 a0); -extern s32 func_80189938(s32 a0, s32 a1); -extern void func_8012F214(s32, s32, s32); -extern s32 func_801897F0(void *a0, s32 a1, s32 a2); - -/* Two load-bearing constructs (do NOT "clean up"): - * 1. `goto ret0` / `goto store` with `ret0:` placed BEFORE the store block — cookbook L1344 - * shared-ret0 goto. A trailing `return 0` makes gcc sink the merged ret0 tail past the - * store block (7 mismatches: BRANCH-POLARITY + swapped tail). - * 2. `register s32 r __asm__("$2")` on the func_80189938 result + `return r`. Plain - * `return 0;` there emits `set v0,0; j epi`, which cross_jump (§5a) merges into the - * ret0 block, so the branch lands on ret0 instead of the epilogue. Pinning r to $v0 - * makes `return r` a self-copy that dies before jump2, leaving a bare `j epi` that - * jump.c collapses into `beqz $v0, .L8018730C`. (A plain `s32 r` does NOT work — cse2 - * const-folds `r` to 0 on the fall-through edge and the merge comes back.) */ -s32 func_801877BC(s32 p) { - - extern s32 D_80126B9C; - extern u8 D_801BC200[]; - s32 buf10[2]; - register s32 r __asm__("$2"); /* $v0 — see note 2 above */ - - if ((*(u32 *)(p + 0xE0) & 1) == 0) { - goto ret0; - } - if (*(u16 *)(p + 2) == 1) { - goto ret0; - } - if (*(u16 *)(p + 2) == 0xD) { - return 0; - } - if ((D_80126B9C & 2) == 0) { - return 0; - } - if (0x10000 < func_8012BCCC(p)) { - return 0; - } - r = func_80189938(p, 0x380); - if (r == 0) { - return r; - } - ((void (*)(s32, void *, void *))func_8012F214)(p, D_801BC200, buf10); - if (func_801897F0(buf10, *(s16 *)(*(s32 *)(p + 0x20) + 0x12), 0x380) != 0) { - goto store; - } -ret0: - return 0; -store: - *(u16 *)(p + 2) = 0xC; - return 1; -} - - - -/* func_8018788C — walk the 0x60-entry / 0x10C-stride entity table D_801202A0 and - * react to the first neighbour of class 0x27A (get pushed away from it) or 0x2F4 - * (get clamped down onto it). - * - * §71 sibling-first: the callee signatures below are copied VERBATIM from this TU's - * own already-matched neighbours — func_8012B0B4 (TU L6971/7855/8177), func_8012B6D4 - * (TU L6419), func_8012CEB0 (TU L7226, the func_80187844 block), func_8012C098 - * (TU L5379) — and D_801202A0 is the TU's file-scope `extern u8 D_801202A0[];` (L384). - * func_8012BC60 / func_8012ADE4 are not declared in this TU; the forms below are the - * fleet-majority shapes (func_8012ADE4 verbatim; func_8012BC60 with `void *` instead of - * `struct Vec *` so the draft does not depend on engine_types.h being in scope). - * - * FIVE load-bearing constructs (do NOT "clean up"): - * - * 1. NO SECOND WALKED POINTER. All of +0x6/+0xA/+0xE are written as `*(T *)(p + k)` - * off the single biv `p`. combine_givs then merges the three DEST_ADDR givs onto - * ONE anchor = the LAST-emitted one (+0xE, from the case-0x2F4 `lh`), giving the - * target's `$s3 = $s2 + 0xE` with -0x8/-0x4/0x0 displacements. - * An explicit `q = p + 0xE` with `*(u16 *)q` looks equivalent and is NOT: - * gcc-2.7.2 excludes a bare `*q` (mult 1, add 0) from givs (find_mem_givs:4198), - * so q stays a live biv AND the remaining two accesses combine onto their own - * anchor +0xA => THREE IVs, the wrong anchor, and the $s6 hoist lost to pressure - * (measured: 111 ins, 87 mismatched). gcc-2.7.2-map/loop.md §L1 rules 4 & 6. - * - * 2. `switch`, not `if/else if`. The two-case switch is what emits the target's - * compare CHAIN with BOTH arms out of line (`beq`/`beq`/`j default`, 6 slots). - * An `if (id == 0x27A) ... else if (id == 0x2F4)` inverts the first test and lets - * the 0x27A arm fall through — 2 instructions short. - * - * 3. do-while with `i++` BEFORE `p += 0x10C`. strength_reduce inserts the reduced - * giv's `addiu` immediately before ITS biv's increment, so the source order - * i-then-p is what produces `addiu $s4,$s4,1` / `addiu $s3,$s3,0x10C` / - * (delay) `addiu $s2,$s2,0x10C`. A `for (i = 0; i < 0x60; i++)` with `p += 0x10C` - * last puts the giv add first and swaps the pair. - * - * 4. `self4` and `sc` are REAL pre-loop locals, in that order. Both are loop - * invariants; written inline as `(s16 *)(a0 + 4)` / `(unsigned int *)sp20` at the - * call, combine folds the address straight into the argument move - * (`addiu $a0,$sp,0x20`) and the target's `$s6 = $sp + 0x20` hoist never happens. - * Assigning them in a *different basic block* from their uses is what keeps the - * pseudos alive; the declaration ORDER (p, i, self4, sc) is what gives - * $s2/$s4/$s5/$s6 in the target's prologue emission order. - * - * 5. `s16 y` (a SHORT local), and `s32 sp20[2]` (an EIGHT-byte scratch). - * - The short local is why `y` gets a second pseudo: gcc-2.7.2 emits - * `(set (reg:HI B) (subreg:HI (reg:SI A)))` for the HImode assignment, i.e. the - * target's `addu $a1,$a0,$zero` in the branch delay slot, with the two `- 0x60` - * recomputed from A ($a0, the compare) and B ($a1, the stored value). - * An `s32 y` coalesces the pair away and loses that instruction. - * - The short local also costs a DEAD 4-byte reload home at the top of the frame - * (`(use (mem:SI (plus $sp 48)))` in the greg dump, no insn references it). - * That is exactly why the func_8012B0B4 buffer is 8 bytes, not 16: 0x10 + 8 - * (v10) + 8 (v18) + 8 (sp20) + 4 (dead) rounds to 0x30 = the target's first - * saved-register slot. 8 bytes also matches the fleet's canonical shape for a - * func_8012B0B4 output buffer (`unsigned int buf[2]`). - */ - - -extern s32 func_8012BC60(void *a0, void *a1); -extern s32 func_8012B6D4(s16 *a0, s16 *a1); -extern void func_8012B0B4(unsigned int *p, int a1, int a2); -extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); -extern void func_8012ADE4(u8 *a0); -extern void func_8012C098(void *param_1); - -void func_8018788C(s32 a0) { - - extern u8 D_801202A0[]; - u8 *p; - s16 *self4; - unsigned int *sc; - s32 i; - s16 y; - s32 z; - s32 ang; - s16 v10[4]; /* sp+0x10 */ - s16 v18[4]; /* sp+0x18 */ - s32 sp20[2]; /* sp+0x20 — func_8012B0B4 output */ - - p = D_801202A0; - i = 0; - self4 = (s16 *)(a0 + 4); - sc = (unsigned int *)sp20; - do { - if ((u8 *)a0 != p) { - switch (*(u16 *)p) { - case 0x27A: - if (func_8012BC60((void *)self4, (void *)(p + 4)) < 0x6400) { - ang = func_8012B6D4(self4, (s16 *)(p + 4)); - func_8012B0B4(sc, ang, 0xA1); - v18[0] = *(u16 *)(p + 6); - v18[1] = *(u16 *)(p + 0xA); - v18[2] = *(u16 *)(p + 0xE); - v18[0] += sp20[0]; - v18[2] += sp20[0] >> 16; - v18[1] = *(u16 *)(a0 + 0xA); - v10[0] = *(u16 *)(a0 + 0x3A); - v10[1] = *(u16 *)(a0 + 0x3E); - v10[2] = *(u16 *)(a0 + 0x42); - if ((func_8012CEB0(v10, v18, 0) & 0x2000) == 0) { - func_8012ADE4((u8 *)a0); - return; - } - *(u16 *)(a0 + 6) = v18[0]; - *(u16 *)(a0 + 0xA) = v18[1]; - *(u16 *)(a0 + 0xE) = v18[2]; - return; - } - break; - case 0x2F4: - y = *(s16 *)(p + 0xE); - z = *(s16 *)(a0 + 0xE); - if (y + 0x10 < z) { - func_8012C098((void *)a0); - return; - } - if (y - 0x60 < z) { - *(s16 *)(a0 + 0xE) = y - 0x60; - } - break; - } - } - i++; - p += 0x10C; - } while (i < 0x60); -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80187A50); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80187BC8); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80187C28); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80187D50); - - -/* func_80187DB0 — line-of-sight / collision probe. - * - * Rotate the direction SVECTOR D_801BC450[dir] through the entity's matrix - * (*(0x20) + 0x34) into a scratch SVECTOR at sp+0x10, build the segment - * start (sp+0x18) = entity pos and end (sp+0x20) = entity pos + rotated - * vector, then hand the pair to func_8012CEB0 / func_800132BC. - * - * §71 sibling-first: DEFINE_func_80169408 / DEFINE_func_8016986C in - * src/shared/engine_core.h are the house shape for this ApplyMatrixSV + - * SVECTOR-local family — `s16 vNN[4]` locals declared in ASCENDING stack - * offset order (sp+0x10, sp+0x18, sp+0x20) and the entity position read as - * `*(u16 *)(s1 + 0x6 / 0xA / 0xE)` (which is what makes the loads `lhu`). - * - * The target stores each of sp+0x20/0x22/0x24 TWICE — a plain copy first, - * then the copy plus the rotated component — so the source assigns the - * position, then `+=` the delta as separate statements (the local's address - * is taken, so gcc-2.7.2 cannot kill the first store). - */ - -extern void ApplyMatrixSV(void *a0, void *a1, void *a2); -extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); -extern s32 func_800132BC(void *a0, void *a1); - -s32 func_80187DB0(s32 a0, s32 a1) { - - extern s16 D_801BC450[][4]; - extern s32 D_801E16A8; - s32 s0 = a0; - s16 v10[4]; /* sp+0x10 SVECTOR — ApplyMatrixSV out */ - s16 v18[4]; /* sp+0x18 SVECTOR — segment start */ - s16 v20[4]; /* sp+0x20 SVECTOR — segment end */ - s32 r; - - ApplyMatrixSV((void *)(*(s32 *)(s0 + 0x20) + 0x34), D_801BC450[a1], v10); - v18[0] = *(u16 *)(s0 + 0x6); - v18[1] = *(u16 *)(s0 + 0xA); - v18[2] = *(u16 *)(s0 + 0xE); - v20[0] = *(u16 *)(s0 + 0x6); - v20[1] = *(u16 *)(s0 + 0xA); - v20[2] = *(u16 *)(s0 + 0xE); - v20[0] = v20[0] + v10[0]; - v20[1] = v20[1] + v10[1]; - v20[2] = v20[2] + v10[2]; - r = func_8012CEB0(v18, v20, 0); - D_801E16A8 = func_800132BC(v18, v20); - return r != 0x2000; -} - - - -extern void (*D_801BC490[])(void); - -void func_80187E90(void *a0) { - D_801BC490[*(u16 *)((s32)a0 + 0x2)](); -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80187ECC); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80188058); - - -extern void func_8012C218(s32); -extern void func_8012E8A8(u8 *a0); - -/* §48-C2: lwl/lwr/swl/swr block copy == a plain struct assign of a 2-byte-aligned struct */ - -void func_8018833C(s32 param_1) -{ - s32 t1 = *(s32 *)(param_1 + 0x64); - s32 pad[2]; - - if (*(s16 *)(t1 + 0x36) != *(s16 *)(param_1 + 0x10A)) { - ((void (*)(void *))func_8012C218)((void *)param_1); - return; - } - { - if ((*(u32 *)(t1 + 0xE0) & 4) != 0) { - func_8012E8A8((u8 *)param_1); - return; - } - { - s32 a2 = *(s32 *)(*(s32 *)(t1 + 0x20) + 0x20); - s32 a3 = param_1 + 0xFC; - - if (a2 != 0) { - if ((a2 & 0x1000000) != 0) { - s32 a1 = a2 & 0xFEFFFFFF; - register u32 v0 __asm__("$2"); - u32 a0; - u32 v1a; - u32 v1b; - u32 v0b; - u32 v1; - - *(u16 *)(param_1 + 0x102) = *(u16 *)(a1 + 0x66); - - v0 = *(u32 *)(a1 + 0x60); - a0 = *(u8 *)(a1 + 0x61); - v1a = (v0 & 0xF) << 8; - a0 = a0 | v1a; - v1b = ((s32)v0 >> 16) & 0xFF; - v0b = (v0 & 0xF0) << 4; - v1 = v1b | v0b; - *(u16 *)(param_1 + 0x104) = (u16)a0; - *(u16 *)(param_1 + 0x106) = (u16)v1; - - *(s16 *)(param_1 + 0xFC) = (s8)*(u8 *)(a1 + 0x63); - *(s16 *)(param_1 + 0xFE) = (s8)*(u8 *)(a1 + 0x64); - *(s16 *)(param_1 + 0x100) = (s8)*(u8 *)(a1 + 0x65); - } else { - *(UAlign12_8018833C *)(param_1 + 0xFC) = *(UAlign12_8018833C *)(a2 + 0x90); - } - *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = a3; - } - - if ((*(u32 *)(t1 + 0xE0) & 0x80) != 0) { - if (*(u16 *)(param_1 + 0x34) == 0) { - s16 sVar2 = *(u16 *)(param_1 + 0x108) + 0x40; - *(s16 *)(param_1 + 0x108) = sVar2; - if (sVar2 > 0x200) { - *(u16 *)(param_1 + 0x108) = 0x200; - *(s16 *)(param_1 + 0x34) = *(s16 *)(param_1 + 0x34) + 1; - } - } else { - u16 uVar3 = *(u16 *)(param_1 + 0x108) - 0x80; - *(u16 *)(param_1 + 0x108) = uVar3; - if ((s16)uVar3 < 0) { - *(u16 *)(param_1 + 0x108) = 0; - *(u16 *)(param_1 + 0x34) = 0; - *(u32 *)(t1 + 0xE0) = *(u32 *)(t1 + 0xE0) & ~0x80; - } - } - } - - *(u16 *)(a3 + 6) = *(u16 *)(a3 + 6) + *(u16 *)(param_1 + 0x108); - - *(u32 *)(param_1 + 4) = *(u32 *)(t1 + 4); - *(u32 *)(param_1 + 8) = *(u32 *)(t1 + 8); - *(u32 *)(param_1 + 0xC) = *(u32 *)(t1 + 0xC); - - *(UAlign8_8018833C *)(param_1 + 0x50) = *(UAlign8_8018833C *)(t1 + 0x50); - - { - s32 dst = *(s32 *)(param_1 + 0x20); - s32 src = *(s32 *)(t1 + 0x20); - *(UAlign8_8018833C *)(dst + 0x10) = *(UAlign8_8018833C *)(src + 0x10); - } - { - s32 dst = *(s32 *)(param_1 + 0x20); - s32 src = *(s32 *)(t1 + 0x20); - *(UAlign8_8018833C *)(dst + 0x18) = *(UAlign8_8018833C *)(src + 0x18); - } - { - s32 src = *(s32 *)(t1 + 0x20); - s32 dst = *(s32 *)(param_1 + 0x20); - *(u32 *)(dst + 4) = *(u32 *)(src + 4); - } - { - s32 src = *(s32 *)(t1 + 0x20); - s32 dst = *(s32 *)(param_1 + 0x20); - *(u16 *)(dst + 0x2C) = *(u16 *)(src + 0x2C); - } - } - } -} - - - -extern void (*D_801BC5E8[])(void); - -void func_801885F4(void *a0) { - D_801BC5E8[*(u16 *)((s32)a0 + 0x2)](); -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80188630); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801887A0); - - -extern void func_8012C218(s32); -extern s32 func_8012D5E4(s32 a0, s32 a1, s32 a2, s32 a3); -extern void func_8018956C(s32 a0, s32 a1); -extern s32 func_8012B8E4(s32 a0, s32 a1); -extern s32 func_8012BEE8(s32 a0); -extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); -extern s32 func_8012CBF4(s32 a0); -extern void func_8012B178(s32 a0, s32 a1); -extern u8 *func_8012913C(s32 a0); -extern void func_8012F214(s32 a0, s32 a1, s32 a2); - - -void func_80188808(s32 param_1) { - - extern u8 D_801BC560; - extern u8 D_801BC614[]; - extern u16 D_80126CB4; - extern u16 D_80126CB6; - extern u16 D_80126CB8; - u16 uVar1; - - if (0xf < *(s16 *)(param_1 + 0xA)) { - ((void (*)(void *))func_8012C218)((void *)param_1); - return; - } - - { - s32 base = (s32)&D_801BC560; - s32 r = func_8012D5E4(param_1, base, base + 8, 0x78); - if (r == 1 || (*(u16 *)(param_1 + 0x5C) & 1) != 0) { - func_8018956C(param_1, 1); - ((void (*)(void *))func_8012C218)((void *)param_1); - return; - } - } - - uVar1 = *(u16 *)(param_1 + 0x34); - switch (uVar1) { - default: - return; - case 0: - { - s32 sVar3 = func_8012B608((s32)*(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10), 0, 0x18); - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + sVar3; - } - { - s32 r = func_8012CBF4(param_1); - if (r != 0) { - goto LAB_8018847c; - } - } - { - s32 r = func_8012BEE8(param_1); - if (r == 0) return; - } - *(u16 *)(param_1 + 0xF4) = D_80126CB4; - *(u16 *)(param_1 + 0xF6) = D_80126CB6; - { - u16 tmp = D_80126CB8; - *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; - *(s32 *)(param_1 + 0x1C) = 0x3C; - *(u16 *)(param_1 + 0xF8) = tmp; - } - return; - case 1: - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) += func_8012B8E4(param_1, 0x20); - { - s32 r = func_8012BEE8(param_1); - if (r != 0) { - *(s32 *)(param_1 + 0x1C) = 0x5A; - *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; - } - } - break; - case 2: - break; - } - - *(u16 *)(param_1 + 0xF2) = *(u16 *)(param_1 + 0xF2) - 0x100; - func_8012B178(param_1, 0xFFEC0000); - { - s32 r = func_8012CBF4(param_1); - if (r != 0) goto LAB_8018847c; - } - if (*(u16 *)(param_1 + 0x34) != 2) goto LAB_80188494; - { - s32 r = func_8012BEE8(param_1); - if (r != 1) goto LAB_80188494; - } -LAB_8018847c: - *(u16 *)(param_1 + 2) = 9; - func_8018956C(param_1, 1); - return; -LAB_80188494: - { - s32 iv = (s32)func_8012913C(0x80); - if (iv == 0) return; - { - u16 out[4]; - ((void (*)(s32, void *, void *))func_8012F214)(param_1, D_801BC614, out); - *(u16 *)(iv + 6) = out[0]; - *(u16 *)(iv + 0xA) = out[1]; - *(u16 *)(iv + 0xE) = out[2]; - } - return; - } -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80188A60); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80188AC0); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80188BF8); - - -// @class: struct -// @stuck: none — MATCH (276 ins, relocation-masked). Verified BOTH standalone (match_one) and -// spliced into src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c (whole-TU cc1 -O2 clean, -// masked structured_diff 0/276). -// Keys: (1) the first func_8012C218 call gets a NOP delay slot because reload_cse_regs deletes the -// redundant `move a0,s1` -- $a0 still holds the incoming param on the fall-through path -// (no CODE_LABEL between the prologue and the jal). The second call site is behind a -// label, so the move survives. Source is the natural `((void (*)(void *))func_8012C218)((void *)param_1)` at -// BOTH sites -- do NOT write a zero-arg call (it also breaks in-TU: the composite type -// from the earlier file-scope `extern void ((void (*)(void *))func_8012C218)(void *a0);` rejects 0 args). -// (2) case 0's guard is an `||` with an early return -- that is what puts `beqz -> fail` then -// `beq -> ok` (an `&&` would emit `bne -> fail`). -// (3) `register s32 sVar2 __asm__("$2")` holds the p+0x34 reload in cases 1/2 so the two arms -// cross-jump into the shared .L80188928 tail. -// (4) `__asm__ __volatile__("")` after the func_8012C658 arm forces the `lw v1,0x1C(s1)` -// reload before the cross-jumped `li v0,9` (§21 zero-byte re-tie). -// (5) `-((iVar3 << 0x10) / 0x22)` reproduces the 0x78787879/sra-4 magic-divide by 34 + negu. -// (6) `*p * 0xc` then `>>4` with the manual `if (x<0) x+=0xf` is the /16 rounding form. - -extern void func_8012C218(s32); -extern void func_801898EC(s32, void*, void*, s32); -extern s32 func_80013328(s32 a0, s32 a1); -extern void func_8012B14C(s32 a0, s32 a1); -extern void func_8012CC64(s32 a0, s32 a1); /* fleet-canonical: void; $v0 used -> cast at use */ -extern s32 func_8012C658(s32, s32, s32); -extern s32 func_80143B6C(s32 a0, s32 a1); /* fleet-canonical */ -extern s32 func_8012BEE8(s32 a0); -extern void func_80016714(void*, s32); -extern void func_8018956C(s32 a0, s32 a1); - - -void func_80188C1C(s32 param_1) { - - extern u8 D_801D4314; - extern u8 D_801BC588; - extern u8 D_801BC590; - extern u8 D_801BC580; - extern u8 D_80126B5C; - u16 uVar1; - register s32 sVar2 __asm__("$2"); - s32 iVar3; - s32 iVar4; - s32 iVar5; - u32 uVar4; - s32 psVar5; - u16 buf[8]; - s32 vec[3]; - - if (0xf < *(s16 *)(param_1 + 0xA)) { - ((void (*)(void *))func_8012C218)((void *)param_1); - return; - } - uVar1 = *(u16 *)(param_1 + 0x34); - switch (uVar1) { - case 0: - psVar5 = *(s32 *)(param_1 + 0x64); - if ((*(u16 *)psVar5 == 0) || - (*(s32 *)(psVar5 + 0x90) != (s32)&D_801D4314)) { - ((void (*)(void *))func_8012C218)((void *)param_1); - return; - } - if (*(s32 *)(psVar5 + 0x94) < 0x11) { - ((void (*)(void *, void *, void *, s32))func_801898EC)((void *)psVar5, (void *)&D_801BC588, buf, 5); - *(s16 *)(param_1 + 6) = buf[0]; - *(s16 *)(param_1 + 0xA) = buf[1]; - *(s16 *)(param_1 + 0xE) = buf[2]; - return; - } - ((void (*)(void *, void *, void *, s32))func_801898EC)((void *)psVar5, (void *)&D_801BC590, buf, 4); - ((void (*)(void *, void *, void *, s32))func_801898EC)((void *)psVar5, (void *)&D_801BC590, &buf[4], 5); - *(s16 *)(param_1 + 6) = - (s16)((*(s16 *)&buf[0] + *(s16 *)&buf[4]) >> 1); - *(s16 *)(param_1 + 0xA) = - (s16)((*(s16 *)&buf[1] + *(s16 *)&buf[5]) >> 1); - *(s16 *)(param_1 + 0xE) = - (s16)((*(s16 *)&buf[2] + *(s16 *)&buf[6]) >> 1); - if (*(s32 *)(psVar5 + 0x94) != 0x19) { - return; - } - *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; - vec[0] = 0; - vec[1] = 0xfff40000; - iVar3 = func_80013328((s32)&D_80126B5C, param_1 + 4); - vec[2] = -((iVar3 << 0x10) / 0x22); - func_8012B14C(param_1, (s32)vec); - *(s32 *)(param_1 + 0x48) = 0xc000; - return; - case 1: - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x80; - iVar3 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BC580); - if (iVar3 == 0) { - return; - } - sVar2 = *(u16 *)(param_1 + 0x34); - *(s32 *)(param_1 + 0x1c) = 0; - *(u16 *)(param_1 + 0x34) = sVar2 + 1; - return; - case 2: - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x40; - uVar4 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BC580); - if ((uVar4 & 0x2000) == 0) { - return; - } - iVar4 = *(s32 *)(param_1 + 0x1c) + 1; - *(s32 *)(param_1 + 0x1c) = iVar4; - if (iVar4 >= 4) { - sVar2 = *(u16 *)(param_1 + 0x34); - *(s32 *)(param_1 + 0x1c) = 0x1e; - *(u16 *)(param_1 + 0x34) = sVar2 + 1; - return; - } - iVar3 = *(s32 *)(param_1 + 0x10) * 0xc; - if (iVar3 < 0) { - iVar3 = iVar3 + 0xf; - } - *(s32 *)(param_1 + 0x10) = iVar3 >> 4; - iVar5 = *(s32 *)(param_1 + 0x18) * 0xc; - if (iVar5 < 0) { - iVar5 = iVar5 + 0xf; - } - *(s32 *)(param_1 + 0x18) = iVar5 >> 4; - *(s32 *)(param_1 + 0x14) = -(0x80000 / *(s32 *)(param_1 + 0x1c)); - func_80143B6C(param_1, 1); - return; - case 3: - uVar4 = *(u32 *)(param_1 + 0x1c); - if ((uVar4 - 0xe < 0xb) && ((uVar4 & 1) == 0)) { - ((void (*)(s32, s32, s32))func_8012C658)(0x2a8, (s32)*(s16 *)(param_1 + 0x104), param_1); - *(u16 *)(param_1 + 0x104) = *(u16 *)(param_1 + 0x104) + 1; - __asm__ __volatile__(""); - uVar4 = *(u32 *)(param_1 + 0x1c); - } - if (uVar4 == 9) { - *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) = - *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) & 0x7fffffff; - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 8) = *(u16 *)(param_1 + 6); - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xa) = - *(u16 *)(param_1 + 0xa) - 0x24; - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xc) = *(u16 *)(param_1 + 0xe); - } - if (*(s32 *)(param_1 + 0x1c) - 4U < 6) { - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) = - *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) + 0x200; - *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) = - *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) + 0x200; - } - iVar3 = func_8012BEE8(param_1); - if (iVar3 != 1) { - return; - } - ((void (*)(s32, s32))func_80016714)(*(s32 *)(param_1 + 0xcc), 0x38); - *(s16 *)(param_1 + 2) = 9; - func_8018956C(param_1, 0); - return; - } - return; -} - - - -extern void func_80049CAC(s32, s32); -extern void func_800484EC(s32, s32, s32); -extern void func_8012B260(u8 *a0); - -void func_8018906C(s32 p) { - s32 g10[4]; /* sp+0x10 */ - u16 g20[4]; /* sp+0x20 */ - s32 buf28[8]; /* sp+0x28 */ - u16 v; - - g10[2] = 0xFFF00000; - g10[1] = 0; - g10[0] = 0; - g20[0] = 0x10; - v = *(u16 *)(*(s32 *)(*(s32 *)(p + 0x64) + 0x20) + 0x12) + - *(u16 *)(p + 0xFC); - g20[1] = v; - *(u16 *)(p + 0xFE) = v; - g20[2] = 0; - ((void (*)(void *, void *))func_80049CAC)(g20, buf28); - ((void (*)(void *, void *, s32))func_800484EC)(buf28, g10, p + 0x10); - *(u16 *)(p + 2) = 8; - *(s32 *)(p + 0x1C) = 0x40; - ((void (*)(s32))func_8012B260)(p); -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80189108); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801892C0); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801892FC); - - -/* func_8018937C @ ov_SC06_018 (subseg ov_SC06_018_jr_8017C24C) — 124 ins. MATCH. - * - * GATE: .venv/bin/python tools/match_one.py func_8018937C \ - * --c .run/wave-s40/ov_SC06_018/func_8018937C.c \ - * --asm-subdir asm/ov_SC06_018/nonmatchings/ov_SC06_018_jr_8017C24C - * - * ------------------------------------------------------------------ what it is - * "Try to hand this object off to another live entity of kind 0x282." - * 1. Build two 8-byte position vectors off `self` via func_8012F214 (the - * fleet's local->world transform; see the ov_SC02_026 walker family, - * e.g. src/ov_SC03_103/ov_SC03_103_jr_8017C294.c:4106 func_8017EC0C, which - * is the byte-matched sibling this draft's types were lifted from). - * 2. Keep a third copy of the destination vector (`c = b`) — 8 bytes at - * align 2, so gcc emits the inline lwl/lwr + swl/swr block move, exactly - * the "8 bytes, align 2 -> lwl/lwr/swl/swr copy" note carried in that - * sibling. This is why `c` must be a STRUCT ASSIGN, not a memcpy. - * 3. If the global-collision probe func_80135888(D_80126B78, D_80126B90, &a, &b) - * says the move is blocked, punt to func_8012F568 and return 1. - * 4. Otherwise walk the 0x60-entry / 0x10C-stride entity table D_801202A0 - * looking for a 0x282 entity that (a) matches `kind` (or, when - * kind == 0xFFFF, only self->f70), (b) is not `self`, and (c) passes the - * same collision probe against its own f20/f58 volumes. First hit gets - * state 9 and func_8018956C(e, 0); return 1. No hit -> 0. - * - * ---------------------------------------------------------------- the levers - * L1 ARG 5 IS A `u16` (stack slot 0x60(sp) read with `lhu`). The redundant - * `andi $v1,$s2,0xffff` in the target is gcc's zero_extendhisi2 for the - * HImode->SImode widening at `kind != 0xFFFF`; it comes free with a plain - * ANSI `u16` param and CANNOT be reproduced from an `s32`/`s16` param. - * That same zero-extended $v1 is then reused as the loop compare operand - * (`addu $s4,$v1,$zero`), which is why the kind test inside the loop must - * be written against `kind` itself and not a re-cast copy. - * - * L2 `i` MUST BE INITIALISED IN EACH LOOP'S for-INIT, NOT ONCE BEFORE THE - * `if`. This is the whole match. <-- the only residual v1 had. - * With `e = ...; i = 0; if (kind != 0xFFFF) {...}` the draft is 124/124 - * instructions with FOUR bytes wrong: `kind` lands in $s4 instead of $s2 - * (and the two prologue `sw`s swap slots to follow it). Reason (regalloc.md - * K3/K5, class RC-3): `kind` is the lowest-density allocno (2 refs over a - * ~50-insn range) so it is assigned LAST, and find_reg then takes the - * LOWEST-numbered non-conflicting callee-saved register. Hoisting `i = 0` - * above the `andi` that reads `kind` makes `i`'s live range OVERLAP - * `kind`'s, so $s2 becomes a conflict and $s4 is the next free slot. - * Sinking `i = 0` into both for-inits removes the overlap -> $s2. - * The single `addu $s2,$zero,$zero` you see in the delay slot of the - * `beq` is dbr: it lifts the fall-through arm's `i = 0` into the slot and - * drops the other arm's copy as redundant (both arms set it before any - * use, so it is safe on both paths). Do NOT "simplify" it back to one - * shared initialiser — that is the 4-byte regression. - * - * L3 THE ARMS ARE `!=` FIRST. `if (kind != 0xFFFF) {kind-or-self loop} - * else {self-only loop}` gives `beq $v1,$v0,` with the kind-aware - * loop falling through, which is the target order. Writing it as - * `if (kind == 0xFFFF)` emits `bne` and swaps the two bodies. - * - * L4 BOTH ARMS' HIT-BLOCKS ARE TEXTUALLY IDENTICAL, which lets jump.c's - * cross-jump tail-merge collapse them: the second loop's - * `bnez $v0,.L80188F5C` branches into the FIRST loop's - * `sh 9; jal func_8018956C; return 1` block. Keep them identical. - * - * L5 LOCAL DECL ORDER IS THE FRAME LAYOUT (regalloc.md K1/K7): `a`,`b`,`c` - * land at 0x18 / 0x20 / 0x28, immediately above the 0x18-byte outgoing-arg - * area that func_8012F568's 6 arguments force. Frame 0x50. Reordering - * the three declarations shifts every sp displacement. - * - * L6 `e != self` is a POINTER compare against the `self` param (`beq $s1,$s3`), - * so `self` must be typed as the same Ent pointer, not an s32. - * - * ---------------------------------------------------------------- banking note - * The real TU src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c already declares - * `extern u8 D_801202A0[];` (L384), `extern s32 func_80135888(s32,s32,s32,s32);` - * (L589), `extern void func_8012F214(s32,s32,s32);` (L2641), - * `extern void func_8018956C(s32 a0, s32 a1);` (L7388, and DEFINES it at L7711) - * and `extern u8 D_801152A8[];` (L598) — all fleet-canonical and identical to - * the spellings below, so only the two `D_80126B7 8/90` pointer externs - * (canonical form `extern s32 *D_80126B78;`, 3297 fleet occurrences) and the - * two local typedefs need to travel. Uniquify the typedef names per §120 if - * the TU already carries a V4/Ent (it carries neither of these two spellings). - * - * SIBLINGS (the 5 other h_norm members): every DATA symbol this body touches — - * D_801202A0, D_801152A8, D_80126B78, D_80126B90 — is RESIDENT (fixed VA, not - * per-overlay tail.data), and three of the four callees (func_8012F214, - * func_80135888, func_8012F568) are resident too. The ONLY per-overlay symbol - * is func_8018956C, and in this overlay it is defined in the SAME TU - * (ov_SC06_018_jr_8017C24C.c:7711). So the §40 remap for the siblings is - * expected to be near-identity: re-point func_8018956C at each sibling's own - * address and check that sibling TU's canonical spellings for the four externs - * before sweeping (§56b — carry the TU's types, not this draft's). - */ - -typedef struct { u16 x, y, z, w; } V4_80188E10_8018937C; - -typedef struct { - u16 f0; /* 0x00 entity kind; 0x282 is the one we want */ - s16 f2; /* 0x02 state -> 9 on a hit */ - u8 p04[0x20 - 0x04]; - s32 f20; /* 0x20 collision volume A */ - u8 p24[0x58 - 0x24]; - s32 f58; /* 0x58 collision volume B */ - u8 p5C[0x70 - 0x5C]; - s16 f70; /* 0x70 sub-kind / owner tag */ - u8 p72[0x10C - 0x72]; /* stride 0x10C, 0x60 entries (0x6480) */ -} Ent_80188E10_8018937C; - -extern void func_8012F214(s32 a0, s32 a1, s32 a2); -extern s32 func_80135888(s32 a0, s32 a1, s32 a2, s32 a3); -extern void func_8012F568(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5); -extern void func_8018956C(s32 a0, s32 a1); - - -s32 func_8018937C(Ent_80188E10_8018937C *self, s32 arg1, s32 arg2, s32 arg3, u16 kind) { - - extern s32 *D_80126B78; - extern s32 *D_80126B90; - extern u8 D_801152A8[]; - extern u8 D_801202A0[]; - V4_80188E10_8018937C a; /* 0x18(sp) */ - V4_80188E10_8018937C b; /* 0x20(sp) */ - V4_80188E10_8018937C c; /* 0x28(sp) */ - Ent_80188E10_8018937C *e; - s32 i; - - func_8012F214((s32)self, arg1, (s32)&a); - func_8012F214((s32)self, arg2, (s32)&b); - c = b; /* L2: lwl/lwr block move */ - if (func_80135888((s32)D_80126B78, (s32)D_80126B90, (s32)&a, (s32)&b) != 0) { - func_8012F568(1, 1, *(s16 *)(self->f20 + 0x12), arg3, (s32)&b, (s32)D_801152A8); - return 1; - } - e = (Ent_80188E10_8018937C *)D_801202A0; - if (kind != 0xFFFF) { /* L3 */ - for (i = 0; i < 0x60; i++, e++) { /* L2: i=0 HERE, not above */ - if (e->f0 == 0x282 && (e->f70 == kind || e->f70 == self->f70) && e != self && - func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { - e->f2 = 9; /* L4: keep identical */ - func_8018956C((s32)e, 0); - return 1; - } - } - return 0; - } else { - for (i = 0; i < 0x60; i++, e++) { /* L2 */ - if (e->f0 == 0x282 && e->f70 == self->f70 && e != self && - func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { - e->f2 = 9; /* L4: keep identical */ - func_8018956C((s32)e, 0); - return 1; - } - } - return 0; - } -} - - - -extern s32 func_80132EF4(s32 a0, s32 a1); -extern void func_8012B0B4(unsigned int *p, int a1, int a2); -extern void func_80049CAC(s32, s32); -extern void func_800484EC(s32, s32, s32); -extern s32 func_8012C658(s32, s32, s32); -extern void func_8018A3CC(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018956C(s32 a0, s32 a1) { - s32 buf10[8]; /* sp+0x10 (0x20) - func_80049CAC out / func_800484EC in */ - s32 g40[4]; /* sp+0x30, only [0..2] used - func_800484EC vec3 arg */ - u16 g30[4]; /* sp+0x40, only [0..2] used - func_80049CAC vec3 arg */ - unsigned int buf48[2]; /* sp+0x48 (8) - func_8012B0B4 output */ - unsigned int *p48; - s32 i; - s32 baseY; - s32 e; - u32 uVar; - s32 scratch; - s32 tmp; - - i = 0; - p48 = buf48; - baseY = 0x100; - do { - e = func_80132EF4(a0, 0x23); - if (e != 0) { - *(s16 *)(e + 0x34) = rand() % 0x4000 + 0x1000; - *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc008; - - func_8012B0B4(p48, rand() % 0x1000, rand() % 0x58); - - tmp = *(s32 *)buf48; - *(s16 *)(e + 6) = *(s16 *)(e + 6) + (s16)tmp; - *(s16 *)(e + 0xe) = *(s16 *)(e + 0xe) + (s16)(tmp >> 16); - - tmp = rand(); - scratch = tmp % 0x80; - uVar = rand(); - g30[0] = (uVar & 1) == 0 ? -scratch + 0x400 : scratch + 0x400; - - scratch = rand() % 0xc0; - uVar = rand(); - g30[1] = (uVar & 1) != 0 ? baseY + scratch : baseY - scratch; - - g30[2] = 0; - g40[1] = 0; - g40[0] = 0; - g40[2] = (rand() % 4 + 3) << 16; - - ((void (*)(void *, void *))func_80049CAC)(g30, buf10); - ((void (*)(void *, void *, s32))func_800484EC)(buf10, g40, e + 0x10); - } - i++; - baseY += 0x200; - } while (i < 8); - - e = func_80132EF4(a0, 0x23); - if (e != 0) { - *(u16 *)(e + 0x34) = 0x7ff1; - *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc004; - *(s32 *)(e + 0x14) = 0xfffb0000; - } - - i = 0; - do { - func_8012C658(0x29d, (u16)a1, a0); - i++; - } while (i < 4); - - func_8018A3CC(a0, 0x95e); -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801897F0); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_80189888); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801898EC); - - -extern s32 func_8012B6D4(s16 *a0, s16 *a1); - -// @class: branch-polarity -// @stuck: none — MATCH (32 ins), iteration 2. §3-T4: gcc-2.7.2 lays this out as -// "branch TO the then-arm, fall through to the else", so the source condition is -// `d < 0x800` (the bnez sense read off the target opcode), NOT Ghidra's inverted -// arm order. The wrong polarity also cost one instruction (match_one printed -// LENGTH-DRIFT/-1): with the arms swapped, the `sll $v0,$s0,16` of the s16 param -// lands in the branch delay slot and is SHARED by both arms; the correct polarity -// puts `addiu $v1,$zero,0x1000` there and each arm gets its own sll/sra. -// a1 is an ANSI s16 param (sign-extended at each use, once per arm) — not K&R §43. -s32 aF80189938(s32 a0, s16 a1) __asm__("func_80189938"); -s32 aF80189938(s32 a0, s16 a1) -{ - /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every - LATER function in this TU, which blocks a byte-true decl of a different type. - Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ - extern u8 D_80126B5C; - /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every - LATER function in this TU, which blocks a byte-true decl of a different type. - Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ - extern s32 *D_80126B78; - s32 d; - - d = (func_8012B6D4((s16 *)&D_80126B5C, (s16 *)(a0 + 4)) - - *(s16 *)((s32)D_80126B78 + 0x12)) & 0xFFF; - if (d < 0x800) { - return d < a1; - } else { - return (0x1000 - d) < a1; - } -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_801899B8); - - -extern void (*D_801BC61C[])(void); - -void func_80189A20(void *a0) { - D_801BC61C[*(u16 *)((s32)a0 + 0x2)](); -} - - - - -extern s32 rand(void); -extern void func_8012C1B8(void); -extern void func_8012CAE4(s32 a0); -extern void func_8001C214(s32 a0, s32 a1); -extern void func_8012B2CC(s32 a0); -extern void func_8012B178(s32 a0, s32 a1); - -void func_80189A5C(s32 param_1) { - - extern u8 D_801BC624[]; - s32 unused[2]; /* dead 8-byte local — frame padding (cookbook idiom 6) */ - s32 obj; - s16 raw; - s32 r; - s32 sgn; - s32 v; - u8 *tbl; - s16 *p; - s32 q; - s32 w; - - obj = ((s32 (*)(void))func_8012C1B8)(); - if (obj == 0) { - func_8012CAE4(param_1); - return; - } - *(s32 *)(param_1 + 0x20) = obj; - func_8001C214(obj, 0); - - raw = rand(); - r = raw; - *(u16 *)(obj + 0x2C) = *(u16 *)(obj + 0x2C) | 0x10; - v = r % 384 + 0x400; - *(s16 *)(obj + 0x1C) = v; - *(s16 *)(obj + 0x1A) = v; - *(s16 *)(obj + 0x18) = v; - sgn = -1; - if (raw & 1) { - sgn = 1; - } - *(s16 *)(obj + 0x10) = sgn * (r % 128) - 0x300; - *(s16 *)(obj + 0x12) = r % 4096; - *(s32 *)(param_1 + 0x48) = 0xC000; - *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x19; - func_8012B2CC(param_1); - func_8012B178(param_1, -0xC0000 - ((r % 8) << 16)); - *(s32 *)(param_1 + 0x1C) = 0x3C; - *(s16 *)(param_1 + 0xFE) = rand() & 0xF0; - *(s16 *)(param_1 + 0x100) = rand() & 0x1F0; - *(s16 *)(param_1 + 0x102) = rand() & 0x30; - tbl = &D_801BC624[(*(u16 *)(param_1 + 0x70) & 0xF) * 4]; - - p = (s16 *)(param_1 + 0xDC); - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[0] = w; - p[1] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[2] = w; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[4] = w; - p[5] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[6] = w; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q - 0x18; - } else { - w = q - 0x18; - } - p[8] = w; - p[9] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[10] = w; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[12] = w; - p[13] = 0; - - q = rand() % 12; - if ((rand() & 1) == 0) { - w = -q + 0x18; - } else { - w = q + 0x18; - } - p[14] = w; - - *((u8 *)p + 0x20) = tbl[0]; - *((u8 *)p + 0x21) = tbl[1]; - *((u8 *)p + 0x22) = tbl[2]; - *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; -} - - - -extern s32 func_8012CBF4(s32 a0); -extern s32 func_8012BEE8(s32 a0); -extern void func_8012C218(s32); -extern void func_80017274(s32 a0, s32 a1); - -void func_80189EC0(s32 param_1) { - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + *(u16 *)(param_1 + 0xFE); - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + *(u16 *)(param_1 + 0x100); - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) + *(u16 *)(param_1 + 0x102); - - if (func_8012CBF4(param_1) != 0 || func_8012BEE8(param_1) != 0) { - ((void (*)(void *))func_8012C218)((void *)param_1); - } else { - func_80017274(param_1 + 0xDC, *(s32 *)(param_1 + 0x20) + 0x34); - } -} - - - -extern void (*D_801BC63C[])(void); - -void func_80189F64(void *a0) { - D_801BC63C[*(u16 *)((s32)a0 + 0x2)](); -} - - - -extern s32 rand(void); -extern void func_8012C1B8(void); /* TU-canonical (ov_SC06_018_jr_8017C24C) */ -extern void func_8012CAE4(s32 a0); -extern void func_8001C214(s32 a0, s32 a1); -extern void func_8012B0B4(unsigned int *p, int a1, int a2); /* TU-canonical */ -extern void func_8012B2CC(s32 a0); - -void func_80189FA0(s32 param_1) { - u32 buf[2]; - s32 obj; - s32 o2; - s32 base; - s32 off; - s32 v; - s32 t; - - obj = ((s32 (*)(void))func_8012C1B8)(); - *(s32 *)(param_1 + 0x20) = obj; - if (obj == 0) { - func_8012CAE4(param_1); - } else { - func_8001C214(obj, 0); - if ((*(s16 *)(param_1 + 0x70) & 0x8000) == 0) { - *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = -0x80 - (rand() % 0x300); - o2 = *(s32 *)(param_1 + 0x20); - off = rand() % 0xC0; - base = *(s16 *)(param_1 + 0x70) * 0x300 + 0x180; - if (rand() & 1) { - v = base + off; - } else { - v = base - off; - } - *(s16 *)(o2 + 0x12) = v; - func_8012B0B4(buf, *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + 0x800, - rand() % 0x10 + 8); - t = buf[0]; - *(u16 *)(param_1 + 0x6) = *(u16 *)(param_1 + 0x6) + t; - *(u16 *)(param_1 + 0xE) = *(u16 *)(param_1 + 0xE) + (t >> 16); - *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x10; - func_8012B2CC(param_1); - *(s32 *)(param_1 + 0x1C) = 4; - *(u16 *)(param_1 + 0x2) = *(u16 *)(param_1 + 0x2) + 1; - } else { - *(s16 *)(param_1 + 0xDC) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCC); - *(s16 *)(param_1 + 0xDE) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCE); - *(s16 *)(param_1 + 0xE0) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD0); - *(s16 *)(param_1 + 0xE4) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD4); - *(s16 *)(param_1 + 0xE6) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD6); - *(s16 *)(param_1 + 0xE8) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD8); - *(s16 *)(param_1 + 0x2) = 2; - *(s32 *)(param_1 + 0x1C) = 8; - } - } -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018A194); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018A2D0); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018A3CC); - - -extern void (*D_801BC648[])(void); - -void func_8018A538(void *a0) { - D_801BC648[*(u16 *)((s32)a0 + 0x2)](); -} - - - -extern void func_80128EA8(s32 a0, s32 a1, s32 a2); - -void func_8018A574(s32 param_1) { - - extern u8 D_800D387C[]; - extern u8 D_800D3888[]; - s32 t; - - *(u32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = (u32)&D_800D387C; - - *(u32 *)(*(s32 *)(param_1 + 0x20) + 4) |= 0x50000000; - - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x27) = 0x9c; - - t = *(s32 *)(param_1 + 0x20); - *(u16 *)(t + 0x1a) = 0x2000; - *(u16 *)(t + 0x18) = 0x2000; - - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x24) = 0xff; - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x25) = 0; - *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x26) = 0; - - func_80128EA8(*(s32 *)(param_1 + 0x20), param_1 + 0x24, (s32)&D_800D3888); - - *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; -} - - - -extern void func_8012931C(s32 a0); -extern s32 func_80128ED8(s32 param_1, s32 *param_2); -extern void func_801292C8(u8*); - -void func_8018A624(s32 param_1) { - s32 q; - u8 a; - u8 b; - u16 h; - - q = *(s32 *)(param_1 + 0x20); - - a = *(u8 *)(q + 0x24) - 0x20; - *(u8 *)(q + 0x24) = a; - if (a < 0x80) { - *(u8 *)(q + 0x24) = 0x80; - } - - b = *(u8 *)(q + 0x25) + 0x20; - *(u8 *)(q + 0x25) = b; - if (b > 0x80) { - *(u8 *)(q + 0x25) = 0x80; - } - - h = *(u16 *)(q + 0x1A) + 0x400; - *(u8 *)(q + 0x26) = *(u8 *)(q + 0x25); - *(u16 *)(q + 0x1A) = h; - *(u16 *)(q + 0x18) = h; - - func_8012931C(param_1); - - if (func_80128ED8((void *)q, (void *)(param_1 + 0x24)) != 0) { - ((void (*)(s32))func_801292C8)(param_1); - } -} - - - -extern s32 func_8012C588(s32 a0, s32 a1); - -s32 func_8018A6DC(s32 a0, s32 a1) { - /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every - LATER function in this TU, which blocks a byte-true decl of a different type. - Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ - extern s32 D_801E17F0; - D_801E17F0 = a1; - return func_8012C588(0x85, a0); -} - - -extern s32 func_80017DC4(void *a0, void *a1); -extern void func_80017E68(void *a0, void *a1); -extern void func_800D20C0(void *a0, void *a1, s32 a2); -extern void func_800D23D0(void *a0); -extern void func_8012A828(s32 a0, void *a1); -extern void func_8012C218(s32); -extern void func_8012F14C(s32 a0, s32 a1, s32 a2); -extern s32 func_80134510(s32 arg); - -// @class: regalloc-order -// @stuck: none — MATCH (145/145 ins, match_one confirmed) - - - - -s32 func_8018A70C(s32 param_1) { - - extern u8 D_801152A8[]; - extern M2C_UNK D_8018FB1C; - extern s32 D_801E17F0; - extern s32 func_8012C354(s32, void*); - extern void RotMatrixZ(s32, void *); - extern void MulMatrix0(s32, void *, s32); - extern s32 D_801D4450; - extern char * D_801D4484; - extern char D_801E17D0[]; - - S8_80184F08 s60; - SVECTOR_80184F08 sStack_58; - S8_80184F08 s50; - int auStack_48[8]; - s32 iVar5, iVar8; - char *puVar2, *puVar4; - u16 uVar3; - - if (((s32 (*)(s32, void *))func_8012C354)(param_1, &D_801D4450) == 0) { - ((void (*)(s32))func_8012C218)(param_1); - } - ((void(*)(s32, void *))func_8012A828)(param_1, &(*(s32 *)&D_8018FB1C)); - iVar5 = *(s32 *)(param_1 + 0x20); - *(s16 *)(param_1 + 0x70) = 0x80; - *(s32 *)(iVar5 + 4) |= 0x50000040; - *(u16 *)(iVar5 + 0x2c) |= 1; - iVar8 = *(s32 *)(*(s32 *)(param_1 + 0x64) + 0x20) + 0x34; - ((void (*)(s32, s32, void *))func_8012F14C)(iVar8, D_801E17F0, &s60); - s50 = s60; - sStack_58.vz = 0x1800; - sStack_58.vy = 0x1800; - sStack_58.vx = 0x1800; - ((void (*)(void *, void *))func_80017DC4)(&sStack_58, auStack_48); - RotMatrixZ(rand() & 0xfff, auStack_48); - MulMatrix0(iVar8, auStack_48, iVar5 + 0x34); - ((void (*)(void *, s32))func_80017E68)(&s50, iVar5 + 0x34); - - /* pool-alloc: gcc routes the loaded pointer through a caller-saved reg ($v0) - before the callee-saved home ($s1) — pin it to reproduce the extra move. */ - { - register char *tmp __asm__("$2"); - tmp = D_801D4484; - puVar2 = tmp; - } - puVar4 = puVar2 + 0x20; - D_801D4484 = puVar4; - *(char **)(param_1 + 0xcc) = puVar2; - if (D_801E17D0 < puVar4) { - D_801D4484 = D_801E17D0 - 0x120; - } - func_800D20C0(&s60, &sStack_58, 7); - func_800D23D0(&sStack_58); - ((void(*)(void *, void *))RotMatrixYXZ)(&sStack_58, puVar2); - ((void (*)(void *, s32))func_80017E68)(&s60, (s32)puVar2); - - uVar3 = *(u16 *)((char *)&s50 + 2); - if (((s32 (*)(void *))func_80134510)(&s50) != 0 && - (s32)(s16)uVar3 - (s32)*(s16 *)((char *)&s50 + 2) < 0x80) { - *(s16 *)((char *)&s50 + 2) = *(s16 *)((char *)&s50 + 2) - 4; - { - register char *tmp __asm__("$3"); - tmp = D_801D4484; - puVar2 = tmp; - } - puVar4 = puVar2 + 0x20; - D_801D4484 = puVar4; - *(char **)(param_1 + 0xd0) = puVar2; - if (D_801E17D0 < puVar4) { - D_801D4484 = D_801E17D0 - 0x120; - } - func_800D23D0(&(*(s32 *)&D_801152A8)); - ((void(*)(void *, void *))RotMatrixYXZ)(&(*(s32 *)&D_801152A8), puVar2); - ((void (*)(void *, s32))func_80017E68)(&s50, (s32)puVar2); - } - *(s16 *)(param_1 + 2) = *(s16 *)(param_1 + 2) + 1; -} - - -extern s32 func_80017758(void *a0, void *a1); -extern void func_8012C218(s32); -// (3) counter is `short i` do-while (keeps the `addu $s2,$v0,$0` raw-copy + sll16/sra16 compare); -// (4) gcc-2.7.2 loads s8/s16 via lbu/lhu+shift-extend (not lb/lh) so `signed char *p; *(s16*)buf=*p++` -// emits lbu;sll24;sra24;sh; (5) else-branch zero-byte asm barrier forces `addu $a0,$s1,$0` (else gcc -// reuses the still-live incoming $a0 with a nop delay slot). - -s32 func_8018A950(s32 param_1) { - - extern signed char D_801D443C[]; - register int self __asm__("$17") = ((int)param_1); - int iVar6; - int iVar1; - unsigned char buf[0x34]; - signed char *p; - short i; - int dest; - int td; - unsigned short t; - - iVar1 = *(int *)(self + 0x1c); - iVar6 = *(int *)(self + 0x20); - *(int *)(self + 0x1c) = iVar1 + 1; - if (iVar1 < 2) { - p = D_801D443C; - i = 0; - dest = *(int *)(self + 0xcc); - t = *(unsigned short *)(self + 0x70); - *(short *)(buf + 0x0c) = 0; - *(short *)(buf + 0x0a) = 0; - *(short *)(buf + 0x08) = 0; - *(short *)(buf + 0x1c) = 0; - *(short *)(buf + 0x14) = 0; - *(short *)(buf + 0x04) = 0; - buf[0x22] = 0; - buf[0x21] = 0; - buf[0x20] = 0; - buf[0x2a] = 0; - buf[0x29] = 0; - buf[0x28] = 0; - buf[0x2e] = 0; - buf[0x2d] = 0; - buf[0x2c] = 0; - *(int *)(buf + 0x30) = 0x50000000; - buf[0x25] = t; - buf[0x26] = t; - buf[0x24] = t; - do { - *(short *)(buf + 0x00) = *p++; - *(short *)(buf + 0x02) = *p++; - *(short *)(buf + 0x10) = *p++; - *(short *)(buf + 0x12) = *p++; - *(short *)(buf + 0x18) = *p++; - *(short *)(buf + 0x1a) = *p--; - func_80017758(buf, (void *)dest); - i++; - } while (i < 4); - - td = *(int *)(self + 0xd0); - if (td != 0) { - dest = td; - p = D_801D443C; - i = 0; - t = *(unsigned short *)(self + 0x70); - *(short *)(buf + 0x0c) = 0; - *(short *)(buf + 0x0a) = 0; - *(short *)(buf + 0x08) = 0; - *(short *)(buf + 0x1c) = 0; - *(short *)(buf + 0x14) = 0; - *(short *)(buf + 0x04) = 0; - buf[0x22] = 0; - buf[0x21] = 0; - buf[0x20] = 0; - buf[0x2a] = 0; - buf[0x29] = 0; - buf[0x28] = 0; - buf[0x2e] = 0; - buf[0x2d] = 0; - buf[0x2c] = 0; - *(int *)(buf + 0x30) = 0x50000000; - buf[0x25] = t; - buf[0x26] = t; - buf[0x24] = t; - do { - *(short *)(buf + 0x00) = *p++; - *(short *)(buf + 0x02) = *p++; - *(short *)(buf + 0x10) = *p++; - *(short *)(buf + 0x12) = *p++; - *(short *)(buf + 0x18) = *p++; - *(short *)(buf + 0x1a) = *p--; - func_80017758(buf, (void *)dest); - i++; - } while (i < 4); - } - *(short *)(self + 0x70) = *(short *)(self + 0x70) >> 1; - *(unsigned short *)(iVar6 + 0x2c) |= 1; - } else { - __asm__ __volatile__("" : "=r"(self) : "0"(self)); - ((void (*)(void *))func_8012C218)((void *)self); - } -} - - - -extern void (*D_801D4488[])(void); - -void func_8018ABF0(void *a0) { - D_801D4488[*(u16 *)((s32)a0 + 0x2)](); -} - - - - -// @class: schedule -// @stuck: none — MATCH (132 ins, match_one). Levers: (1) block2 statement order — compute sv1.vz (with the *(p+0xe) load) right after the 2nd call so gcc hoists that load into $v1, forcing the sv2.vx=sv1.vx copy through $a3, which globally pushes every `func*param>>12` product from $a3 to $t0; (2) sv2 store order vx-before-vy; (3) SHARED return-0 join via gotos placed BEFORE the copy block (ret0: before docopy:) — this blocks gcc's conditional-jump-over-jump inversion + return-threading, so the copy block falls through to the epilogue with v0=1 preset in the beqz delay slot (drops the extra `li v0,1`). - - -extern int func_8004787C(int); -extern int func_80047948(int); -extern s32 func_80133784(s32, void*, s32); - -int func_8018AC2C(int param_1, short param_2) -{ - int iVar1; - unsigned int uVar2; - int iVar3; - SVECTOR sv1; - SVECTOR sv2; - - if (*(int *)(param_1 + 0xdc) != 0) goto ret0; - sv1.vx = *(short *)(param_1 + 6); - sv1.vy = *(short *)(param_1 + 0xa) + -0x20; - sv1.vz = *(short *)(param_1 + 0xe); - iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - iVar3 = (int)param_2; - sv2.vy = sv1.vy; - sv2.vx = sv1.vx - (short)(iVar1 * iVar3 >> 0xc); - iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - sv2.vz = sv1.vz - (short)(iVar1 * iVar3 >> 0xc); - uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); - if ((uVar2 & 0x8000) != 0) { - iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - *(short *)(param_1 + 6) = sv2.vx + (short)(iVar1 * iVar3 >> 0xc); - iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - *(short *)(param_1 + 0xe) = sv2.vz + (short)(iVar1 * iVar3 >> 0xc); - return 1; - } - iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - sv1.vx = *(short *)(param_1 + 6) - (short)(iVar1 * iVar3 >> 0xc); - sv1.vy = *(short *)(param_1 + 0xa) + -0x10; - iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); - sv1.vz = *(short *)(param_1 + 0xe) - (short)(iVar1 * iVar3 >> 0xc); - sv2.vx = sv1.vx; - sv2.vy = sv1.vy + 0x20; - sv2.vz = sv1.vz; - uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); - if ((uVar2 & 0x6000) == 0) goto docopy; -ret0: - return 0; -docopy: - *(int *)(param_1 + 4) = *(int *)(param_1 + 0x38); - *(int *)(param_1 + 8) = *(int *)(param_1 + 0x3c); - *(int *)(param_1 + 0xc) = *(int *)(param_1 + 0x40); - return 1; -} - - - - -/* func_8018AE3C — ov_SC06_008 / ov_SC06_008_jr_8017C294 - * - * Two-arm actor tick keyed on the s16 countdown at actor+0xFC: - * arm A (counter == 0, the FALL-THROUGH / longer block): three func_8012C658 - * spawns with offset pokes, a sound cue, two child-actor state pokes, an - * 8-iteration 0x281 particle burst, then the RTP positional-sound block - * (the byte-proven RTP_SND shape from ov_SC03_099_jr_8017BEBC.c:5406). - * arm B (counter != 0): a func_8012913C(0x23) spawn scattered around the - * actor, VectorNormalSS toward D_801151D4->{0x5C,0x60,0x64}, sound 0xAF8. - * - * Declarations copied VERBATIM from the TU (one-pass grep, D2): - * D_801151D4 src/ov_SC06_008/ov_SC06_008_jr_8017C294.c:323 - * rand :956 - * VectorNormalSS :1849 - * func_8012C658 :2523 - * func_8012C588 :3767 - * func_8012C218 :3782 - * func_8002D4C8 :59 - * func_8004914C :2645 - * func_800491AC :2646 - * func_8012913C :4356 (non-prototype form, BELOW the splice point) - * func_8002AC00 :5447 (block-scope extern only) - * RotTransPers / D_800AF648 / func_8002A04C are not in this TU -> fleet-dominant forms. - */ - -extern s32 rand(void); -extern s32 VectorNormalSS(void *a0, void *a1); -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012C218(s32); -extern void func_8002D4C8(s32 a0, s32 a1); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002A04C(s32 a0); -extern void func_8002AC00(s32 a0); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern u8 *func_8012913C(); - -void func_8018AE3C(s32 a0) -{ - - extern s32 D_801151D4; - extern u8 D_800AF648; - - /* L5: slot offsets are exact only through ONE struct — plain array locals - get 8-byte-rounded slots and pushed z/flag to 0x28/0x2C (measured). */ - struct { - u16 nv[4]; /* sp+0x10 */ - s16 rv[4]; /* sp+0x18 */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - - s32 g; - s32 s0; - s32 i; - - g = D_801151D4; - - if (*(s16 *)(a0 + 0xFC) == 0) { - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; - } - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; - } - s0 = func_8012C658(0x32, 2, a0); - if (s0 != 0) { - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; - } - func_8002AC00(0x22); - - s0 = *(s32 *)(a0 + 0xCC); - *(s16 *)(s0 + 0x2) = 2; - *(s16 *)(s0 + 0xFC) = 1; - s0 = *(s32 *)(a0 + 0xD0); - *(s16 *)(s0 + 0x2) = 2; - *(s16 *)(s0 + 0xFC) = 1; - - for (i = 0; i < 8; i++) { - s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x30; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - - L.rv[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.rv[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.rv[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); - } - } - func_8002A04C(a0); - ((void (*)(void *))func_8012C218)((void *)a0); - } else { - s0 = (s32)func_8012913C(0x23); - if (s0 != 0) { - *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; - *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0xE0; - { - s32 r = rand(); - s32 t = *(u16 *)(a0 + 0xE); - *(s16 *)(s0 + 0x34) = 0x1800; - *(s32 *)(s0 + 0x18) = 0; - *(s32 *)(s0 + 0x14) = 0; - *(s32 *)(s0 + 0x10) = 0; - *(s16 *)(s0 + 0xE) = t + (r & 0x7F) - 0x40; - } - L.nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); - L.nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); - L.nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); - VectorNormalSS(L.nv, L.nv); - *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); - *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); - *(s16 *)(s0 + 0x34) = 0x3000; - func_8002D4C8(0xAF8, 0); - } - *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) - 1; - } -} - - - - -// TARGET: func_8018B240 (ov_SC06_008, TU ov_SC06_008_jr_8017C294.c, 93 ins) -// -// Template: func_801821F8 in this SAME TU (src/ov_SC06_008/ov_SC06_008_jr_8017C294.c, -// around line 5283) is an already-MATCHED sibling (126 ins) with a documented byte-exact -// idiom set (its comment, verbatim): -// @class: plumbing -// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the -// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized -// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args -// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 -// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in -// the `< 1` test. -// -// func_8018B240 is the SAME body with the leading "if (*(short*)(param_1+0xfc)==0) {...}" block -// (the 0x64-indirected 3x int-copy + 3x u16-copy prologue) removed, and the "already fired" gate -// field is 0xe2 instead of 0x102. Confirmed against the target .s: no reference anywhere to 0xfc, -// 0x64, or 0x102/0x20 offsets; the gate compare is `lh $v1, 0xE2($s0)` / `sh $v1(=0xA), 0xE2($s0)`. - -extern void func_8002D4C8(int, int); -extern void func_8016AA50(int, int); -extern s32 func_8016B428(s32); -extern void func_80019064(void *); -extern void func_8002A520(int); -extern void func_8002A790(int); -extern void func_80131E00(int, int); - -void func_8018B240(int param_1) -{ - extern unsigned char D_801D4B7C[]; - int cVar1; - int unaff_s1; - - cVar1 = *(unsigned char *)(param_1 + 0x5e); - *(char *)(param_1 + 0xc1) = 0; - *(short *)(param_1 + 0x5e) = 0; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; - if (*(short *)(param_1 + 0xe2) == 0) { - *(short *)(param_1 + 0xe2) = 10; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; - func_8002D4C8(0x9b7, 0); - if (*(short *)(param_1 + 0x60) != 0) { - if (cVar1 == 0x1d) { - *(short *)(param_1 + 0x82) = 0; - *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); - *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); - *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); - } - if (*(int *)(param_1 + 0x78) != 0) { - unaff_s1 = (int)*(short *)(param_1 + 0x60) * - (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; - if (unaff_s1 < 1) { - unaff_s1 = 1; - } - } - *(unsigned short *)(param_1 + 0x76) = - *(unsigned short *)(param_1 + 0x76) - unaff_s1; - func_8016AA50(param_1, unaff_s1); - if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { - ((void (*)(int))func_8016B428)(param_1); - func_80019064(D_801D4B7C); - } - } - if (cVar1 != 0x1d) { - if (*(unsigned char *)(param_1 + 0xc8) != 0) { - func_8002A520(param_1); - } - if (*(unsigned char *)(param_1 + 0xc9) != 0) { - func_8002A790(param_1); - } - } - if (*(short *)(param_1 + 0x76) < 1) { - *(short *)(param_1 + 0x5c) = 0; - func_80131E00(param_1, 6); - } - } - return; -} - - - -// @class: schedule -// @stuck: none — MATCH; success-block placed last via `goto big` (bnez forward into epilogue), single cae4 merge kept - -extern int func_8012C354(); -extern void func_800599B8(); -extern void func_8001C214(); -extern void func_80143970(); -extern void func_8012B030(); -extern void func_8012A828(); -extern void func_8012B23C(); -extern int func_8012C658(); -extern void func_8012C218(); -extern void func_8012CAE4(); - - -void func_8018B3B4(int param_1) { - - extern u8 D_801D4B9C[]; - extern u8 D_801D4AE0[]; - extern u8 D_801D4AA0[]; - extern u8 D_801D4AE8[]; - extern u8 D_801D4AC0[]; - extern u8 D_801D8E08[]; - extern u8 D_801DC0B8[]; - extern u8 D_801D4BDC[]; - extern u8 D_801DBF20[]; - extern u8 D_801DBFA8[]; - extern u8 D_801DC030[]; - int iVar1; - - iVar1 = func_8012C354(param_1, D_801D4B9C); - if (iVar1 != 0) { - if (*(short *)(param_1 + 0x70) != 0) { - func_800599B8(D_801D4AE0, D_801D4AA0); - func_800599B8(D_801D4AE8, D_801D4AC0); - func_8001C214(*(int *)(param_1 + 0x20), D_801D8E08); - } - *(u8 *)(param_1 + 0xc0) = 1; - *(int *)(param_1 + 0xb4) = 0xffffdfde; - func_80143970(param_1); - func_8012B030(param_1); - *(short *)(param_1 + 0xae) = 0x2100; - func_8012A828(param_1, D_801DC0B8); - *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; - func_8012B23C(param_1); - *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) | 2; - iVar1 = func_8012C658(0x26f, (int)*(short *)(param_1 + 0x70), param_1); - if (iVar1 != 0) { - *(int *)(param_1 + 0xcc) = iVar1; - iVar1 = func_8012C658(0x270, (int)*(short *)(param_1 + 0x70), param_1); - if (iVar1 != 0) goto big; - func_8012C218(*(int *)(param_1 + 0xcc)); - } - func_8012CAE4(param_1); - } - return; -big: - *(int *)(param_1 + 0xd0) = iVar1; - *(u32 *)(param_1 + 0xbc) = (u32)D_801D4BDC; - *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) = - *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) | 0x10; - *(short *)(*(int *)(param_1 + 0x20) + 0x18) = 0x2400; - *(short *)(*(int *)(param_1 + 0x20) + 0x1a) = 0x2400; - *(short *)(*(int *)(param_1 + 0x20) + 0x1c) = 0x2400; - *(u16 *)(param_1 + 2) = 8; - func_8012A828(param_1, D_801DBF20); - func_8012A828(*(int *)(param_1 + 0xcc), D_801DBFA8); - func_8012A828(*(int *)(param_1 + 0xd0), D_801DC030); - return; -} - - - -/* func_8018B564 — ov_SC06_008 / ov_SC06_008_jr_8017C294. MATCH 163/163. - * Family of 7 (ov_SC06_008/010/018/022/024/032/033, all 163 ins, all still in - * nonmatchings) — §136e applies: no twin existed, so this is derived from the .s. - * The byte-proven accumulate head (b744 nested inside b608, then two RE-LOADS of - * *(s32*)(a0+0x20)) is copied verbatim from src/ov_SC03_099/..._jr_8017BEBC.c:5424. - * - * Four levers, each measured against match_one: - * - * 1. NO frame padding. args_size already fills sp+0x00..0x1F, so the four saved - * regs land at 0x20..0x2F and the frame is 0x30 with ZERO locals. A 16-byte - * dead aggregate (idiom 6, added on the first draft from a mis-derived - * args_size=0x10) made it 0x40 — idiom 6 only applies when the reg-save area - * does NOT start at args_size. - * - * 2. BRANCH POLARITY / BLOCK LAYOUT (§3-T4, T7). `if (C) goto X;` followed by a - * `break` is REWRITTEN by jump.c's jump-around-jump inversion into - * `if (!C) goto break_target;` — which is the wrong polarity here. The target - * wants the true arm to FALL THROUGH. Two rewrites, both worth +0 instructions - * but different bytes: - * case 1: `if (A||B) goto st2; break;` -> `if (!A && !B) break; goto st2;` - * (TRUTH_ANDIF gives reversed branches to `next`, and the trailing - * `j st2` is the fall-through — exactly `beqz L600 / j L5E0`.) - * case 3: same shape, plus the range test written as the POSITIVE - * `if (r >= -0xFF && r <= 0xFF) break;` so fold_range_test's - * `sltiu (r+0xFF),0x1FF` branches on TRUE to the switch end and case 3 - * falls through into st2 (saves the `j`+`nop`, 165 -> 163 ins). - * Case 0 keeps the plain `if (A||B) {..} else {..}` — there jump.c's inversion - * IS what the target has. - * - * 3. THE SHARED STORE BLOCK. L801815F8/L801815FC (`li v0,1` / `sh v0,0x34`) sit - * AFTER st2 in the target, so they are NOT inline `else` arms (cross-jumping - * keeps the LAST copy, which would put them BEFORE st2). They are explicit - * trailing labels inside the switch with an `ns` join variable; case 2 enters at - * `setstate` with ns=3, cases 0 and 3 enter at `set1`. - * - * 4. REGALLOC-PERM -> the $16 pin (see below). - */ - -extern s32 rand(void); -extern void func_8012B1B4(s32 a0, s32 a1); -extern void func_8012CBCC(s32 a0); -extern void func_8012BE98(s32 a0, u16 *a1); -extern s32 func_8012B744(void *a0, void *a1); -extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); -extern void func_8012BE54(s32 a0); -extern int func_8018AC2C(int param_1, short param_2); - -void func_8018B564(s32 a0) { - - extern u8 D_801D4BFC[]; - - /* §137/K3+K5: unpinned, the a0-copy allocno (R=37/L=137, pri 13503) is - * ranked first and first-fits $s0, pushing `tbl` to $s1 — a clean 2-reg - * perm no source reordering can flip (pri(tbl) = 394). Pinning `tbl` to - * $16 makes $s0 "already dirty" in find_reg pass 0: the a0 copy conflicts - * with it and opens $s1, and case 3's `d` (which does NOT conflict with - * `tbl`) grabs $s0 in pass 0 — exactly the target's assignment. */ - register s32 tbl __asm__("$16"); - s32 ns; - - tbl = (s32)D_801D4BFC; - func_8012B1B4(a0, tbl); - func_8012CBCC(a0); - - switch (*(u16 *)(a0 + 0x34)) { - case 0: - if (func_8018AC2C(a0, 0x48) != 0 || - ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) > - 0x3FFFF) { - s32 r = func_8012B608( - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), - func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 8); - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; - func_8012B1B4(a0, tbl); - } else { - goto set1; - } - break; - - case 1: - if (func_8018AC2C(a0, 0x48) == 0 && - ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) <= - 0x3FFFF) { - break; - } - goto st2; - - case 2: { - s32 r = func_8012B608( - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), - func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 0x10); - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; - } - func_8018AC2C(a0, 0x48); - { - s16 c = *(s16 *)(a0 + 0x102); - if (c == 0) { - ns = 3; - goto setstate; - } - *(s16 *)(a0 + 0x102) = c - 1; - } - break; - - case 3: { - void *p88 = (void *)(a0 + 0x88); - s32 d = ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)p88); - if (func_8018AC2C(a0, 0x48) == 0) { - if (d > 0x40000) { - s32 r = func_8012B608(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), - func_8012B744((void *)(a0 + 4), p88), 1); - if (r >= -0xFF && r <= 0xFF) { - break; - } - } else { - goto set1; - } - } - } - /* fall through into st2 */ - st2: - *(u16 *)(a0 + 0x34) = 2; - *(u16 *)(a0 + 0x102) = (rand() & 7) + 8; - break; - - set1: - ns = 1; - setstate: - *(u16 *)(a0 + 0x34) = ns; - break; - } - - { - s16 t = *(s16 *)(a0 + 0x100); - if (t != 0) { - *(s16 *)(a0 + 0x100) = t - 1; - } else if (((s32(*)(s32))func_8012BE54)(a0) <= 0x24000) { - *(s16 *)(a0 + 0x2) = 5; - *(s16 *)(a0 + 0x100) = 0x3C; - } - } -} - - -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 func_8004787C(s32 a0); -extern s32 func_80047948(s32 a0); -extern void func_8004914C(); -extern void func_800491AC(); -extern u8 *func_8012913C(s32 a0); -extern void func_8012A828(s32 a0, void * a1); -#define RTP_SND(sndid) \ - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); \ - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); \ - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); \ - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } \ - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } \ - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); \ - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF \ - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { \ - s32 x = (s16)L.sxy[0]; \ - s32 ax; \ - ax = x; \ - if (x < 0) { \ - ax = -x; \ - } \ - ax = ((0xF0 - ax) * 0x7F) / 0xF0; \ - __asm__("" : "=r"(ax) : "0"(ax)); \ - x = (x + 0xF0) / 0x1E; \ - if (x == 0x10) { \ - x = 0xF; \ - } \ - x = x << 8; \ - { \ - s32 flg = 0x3000; \ - func_8002D4C8(sndid, ((ax | flg) | x) & 0xFFFF); \ - } \ - } - -void func_8018B7F0(s32 a0) { - - extern u8 D_800AF648; - extern s32 D_801D4A60[]; - extern u8 D_801DBF20[]; - extern u8 D_801DBFA8[]; - extern u8 D_801DC030[]; - struct { - s16 pad0[4]; /* sp+0x10 — dead, but sizes the frame (idiom 6) */ - s16 v[3]; /* sp+0x18 */ - s16 pad1; /* sp+0x1E */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - s32 t; - s32 ang; - s32 idx; - s32 m; - s32 c; - s32 p; - - if (*(s16 *)(a0 + 0x98) == 0) { - s32 spr = (s32)func_8012913C(0x7F); - if (spr != 0) { - m = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) - + (func_8004787C(*(s16 *)(a0 + 0x104)) >> 3); - *(s16 *)(spr + 0x6) = *(u16 *)(a0 + 0x6) - (func_8004787C(m) * 0x6C) / 0x1000; - *(s16 *)(spr + 0xA) = *(u16 *)(a0 + 0xA) - 0x34; - *(s16 *)(spr + 0xE) = *(u16 *)(a0 + 0xE) - (func_80047948(m) * 0x6C) / 0x1000; - *(s32 *)(spr + 0x14) = 0x40000; - *(s32 *)(spr + 0x10) = -(func_8004787C(m) * 0xC0); - *(s32 *)(spr + 0x18) = -(func_80047948(m) * 0xC0); - } - t = *(u16 *)(a0 + 0x104) + 0x100; - *(s16 *)(a0 + 0x104) = t; - ang = (s16)t; - idx = ang / 0x100; - m = (s16)(idx % 0x10); - if (ang == 0x100) { - RTP_SND(0x95F) - } else if (m == 0) { - RTP_SND(0x960) - } - *(s32 *)(*(s32 *)(a0 + 0x20) + 0x20) = D_801D4A60[m]; - c = *(u16 *)(a0 + 0x100) - 1; - *(s16 *)(a0 + 0x100) = c; - if ((s16)c == 0) { - p = *(s32 *)(a0 + 0xCC); - *(s16 *)(a0 + 0x98) = 1; - if (p != 0) { - *(s16 *)(p + 0x98) = 1; - } - p = *(s32 *)(a0 + 0xD0); - if (p != 0) { - *(s16 *)(p + 0x98) = 1; - } - } - } else if ((*(u16 *)(a0 + 0x72) & 0x4000) != 0) { - *(s16 *)(a0 + 0x2) = 7; - *(s16 *)(a0 + 0x100) = 0x3C; - func_8012A828(a0, D_801DBF20); - p = *(s32 *)(a0 + 0xCC); - if (p != 0) { - func_8012A828(p, D_801DBFA8); - } - p = *(s32 *)(a0 + 0xD0); - if (p != 0) { - func_8012A828(p, D_801DC030); - } - } -} - - - -extern void func_8012B370(int a0); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - -void func_8018BCB4(s32 a0) { - - extern u8 D_800AF648; - - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - } L; - - s16 hp; - s32 p; - - hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); - if (hp < 0x301) { - s32 count; - s32 total; - - count = *(u16 *)(a0 + 0xFC); - total = *(u16 *)(a0 + 0xFE); - count = count + 1; - total = total + count; - *(u16 *)(a0 + 0xFC) = count; - *(u16 *)(a0 + 0xFE) = total; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) + total; - } else { - p = *(s32 *)(a0 + 0xD0); - *(s16 *)(a0 + 2) = 3; - *(s32 *)(a0 + 0x1C) = 0x1E; - *(s16 *)(a0 + 0x98) = 0; - *(s16 *)(p + 2) = 3; - *(s32 *)(p + 0x1C) = 0x1E; - *(s16 *)(p + 0x98) = 0; - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - func_8002D4C8(0x961, (ax | (0x3000 | x)) & 0xFFFF); - } - } - func_8012B370(a0); -} - - -extern s32 func_801823F0(void); - -/* func_8018BE84 -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (family of 7) - * - * Low-HP flinch/knockback reaction. hp = *(s16*)(a0->0x20 ptr + 0x14). If - * 0 < hp < 0xD00, put self AND the partner at a0->0xCC into stagger state 3 - * (a 0x1E-frame timer, status flag cleared), compute a screen-space - * position via RotTransPers and play a positional sound. Otherwise - * (hp==0 or hp>=0xD00) apply the accumulated hit-combo counter (0xFC/0xFE) - * to the target's HP and re-mask its low 12 bits. - * - * §136c sibling-first: the RTP + positional-sound tail is the byte-proven - * RTP_SND form from func_8018165C in this same TU (line 4746) -- v[]/pad, - * u16 sxy[2], s32 z, s32 flag, and the ax/x div-by-0xF0 / div-by-0x1E - * magic-constant idiom (0x88888889); also confirmed against func_801823F0 - * (same TU) which reuses the identical sndid 0x961 and the identical - * `sx = (sx + 0xF0) / 0x1E; if (sx == 0x10) sx = 0xF; sx <<= 8;` tail. - * - * Control flow: gcc-2.7.2 lays out basic blocks in literal SOURCE order, not - * by fallthrough-preference. A nested-if spelling (`if (hp<0xD00) { state=3; - * if (hp!=0) { B; goto end; } } A; end:`) places B (textually the inner - * then-body) inline right after the tests and relocates A after it -- the - * REVERSE of the target, which has the short block A inline and the long - * RTP+sound block B out-of-line. Explicit goto/label with A written BEFORE B - * in source (`if (hp>=0xD00) goto L_A; state=3; if (hp!=0) goto L_B; L_A: A; - * goto L_end; L_B: B; L_end: ...`) reproduces the target's physical layout - * directly -- no branch-polarity inversion needed, just source ORDER. - * - * Frame: RotTransPers args are sp+0x10 (v), sp+0x18 (&sxy), sp+0x1C (&z), - * sp+0x20 (&flag); v[3]+pad1 fills 0x10-0x17, sxy 0x18-0x1B, z 0x1C-0x1F, - * flag 0x20-0x23 -- leaves a dead 4 bytes (0x24-0x27) before the s0 save at - * 0x28. A trailing `pad2` dead struct member (same aggregate, so it can't - * be eliminated) reserves those 4 bytes, mirroring func_8018165C's own - * "dead aggregate sizes the frame" idiom (comment there: idiom 6). - */ - -extern void func_8012B370(int a0); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - -void func_8018BE84(s32 a0) { - - extern u8 D_800AF648; - - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - s32 pad2; /* sp+0x24 -- dead, sizes the frame */ - } L; - - s16 hp; - s32 state; - s32 p; - - hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); - if (hp >= 0xD00) { - goto L_A; - } - state = 3; - if (hp != 0) { - goto L_B; - } - -L_A: - { - s32 count; - s32 total; - - count = *(u16 *)(a0 + 0xFC); - total = *(u16 *)(a0 + 0xFE); - count = count + 1; - total = total + count; - *(u16 *)(a0 + 0xFC) = count; - *(u16 *)(a0 + 0xFE) = total; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) - total; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) & 0xFFF; - } - goto L_end; - -L_B: - p = *(s32 *)(a0 + 0xCC); - *(s16 *)(a0 + 2) = state; - *(s32 *)(a0 + 0x1C) = 0x1E; - *(s16 *)(a0 + 0x98) = 0; - *(s16 *)(p + 2) = state; - *(s32 *)(p + 0x1C) = 0x1E; - *(s16 *)(p + 0x98) = 0; - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 sx = (s16)L.sxy[0]; - s32 av; - av = sx; - if (sx < 0) { - av = -sx; - } - av = ((0xF0 - av) * 0x7F) / 0xF0; - sx = (sx + 0xF0) / 0x1E; - if (sx == 0x10) { - sx = 0xF; - } - sx = sx << 8; - func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); - } - -L_end: - func_8012B370(a0); -} - - -extern s32 func_8012C044(s32 a0); -extern void func_8012C098(void *param_1); -extern void func_8012C218(s32); -extern int func_80143C74(short *, int); -extern s32 rand(void); - -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern void func_8002D4C8(s32 a0, s32 a1); - -void func_8018C074(s32 a0) -{ - - extern void (*D_801D4C0C[])(void); - extern u8 D_800AF648; - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - } L; - - D_801D4C0C[*(u16 *)(a0 + 0x2)](); - - if (*(u16 *)(a0 + 0x0) != 0) { - if (*(s16 *)(a0 + 0x70) == 0 && func_8012C044(a0) != 0) { - if (*(s32 *)(a0 + 0xCC) != 0) { - ((void (*)(void *))func_8012C218)(*(void **)(a0 + 0xCC)); - } - if (*(s32 *)(a0 + 0xD0) != 0) { - ((void (*)(void *))func_8012C218)(*(void **)(a0 + 0xD0)); - } - func_8012C098((void *)a0); - } else { - s16 v; - - v = *(s16 *)(a0 + 0xE2); - if (v != 0) { - v = v - 1; - *(s16 *)(a0 + 0xE2) = v; - if (v == 0) { - *(u16 *)(a0 + 0x5C) &= 0xBFFF; - } - } - - if ((*(s16 *)(a0 + 0x76) < 5) && ((rand() & 3) == 0)) { - s32 iVar2 = ((s32 (*)(s32, s32))func_80143C74)(a0, 0); - s32 r; - - if (iVar2 != 0) { - r = rand(); - *(s32 *)(iVar2 + 0x10) = ((r & 0x7FF) - 0x400) << 8; - *(s32 *)(iVar2 + 0x14) = 0xFFF00000; - r = rand(); - *(s32 *)(iVar2 + 0x18) = ((r & 0x7FF) - 0x400) << 8; - r = rand(); - *(u16 *)(iVar2 + 0x6) -= 0x20; - *(u16 *)(iVar2 + 0x6) += (r & 0x3F); - *(s16 *)(iVar2 + 0xA) -= 0xC0; - r = rand(); - *(u16 *)(iVar2 + 0xE) -= 0x20; - *(u16 *)(iVar2 + 0xE) += (r & 0x3F); - } - } - - if (*(u16 *)(a0 + 0x2) != 1 && *(u16 *)(a0 + 0x2) != 5) { - *(s16 *)(a0 + 0x84) = 0xE; - } else { - if (*(s16 *)(a0 + 0x84) != 0) { - *(s16 *)(a0 + 0x84) = *(s16 *)(a0 + 0x84) - 1; - } else { - *(s16 *)(a0 + 0x84) = 0xE; - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x8BF, ((ax | flg) | x) & 0xFFFF); - } - } - } - } - } - } -} - - - -// @class: plumbing -// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the -// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized -// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args -// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 -// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in -// the `< 1` test. - -extern void func_8002D4C8(int, int); -extern void func_8016AA50(int, int); -extern s32 func_8016B428(s32); -extern void func_80019064(void *); -extern void func_8002A520(int); -extern void func_8002A790(int); -extern void func_80131E00(int, int); - -void func_8018C38C(int param_1) -{ - - extern unsigned char D_801D4B7C[]; - int cVar1; - int unaff_s1; - - cVar1 = *(unsigned char *)(param_1 + 0x5e); - *(char *)(param_1 + 0xc1) = 0; - *(short *)(param_1 + 0x5e) = 0; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; - if (*(short *)(param_1 + 0xfc) == 0) { - *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x64) + 4); - *(int *)(param_1 + 8) = *(int *)(*(int *)(param_1 + 0x64) + 8); - *(int *)(param_1 + 0xc) = *(int *)(*(int *)(param_1 + 0x64) + 0xc); - *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x10) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x10); - *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x12); - *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x14) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x14); - } - if (*(short *)(param_1 + 0x102) == 0) { - *(short *)(param_1 + 0x102) = 10; - *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; - func_8002D4C8(0x9b7, 0); - if (*(short *)(param_1 + 0x60) != 0) { - if (cVar1 == 0x1d) { - *(short *)(param_1 + 0x82) = 0; - *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); - *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); - *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); - } - if (*(int *)(param_1 + 0x78) != 0) { - unaff_s1 = (int)*(short *)(param_1 + 0x60) * - (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; - if (unaff_s1 < 1) { - unaff_s1 = 1; - } - } - *(unsigned short *)(param_1 + 0x76) = - *(unsigned short *)(param_1 + 0x76) - unaff_s1; - func_8016AA50(param_1, unaff_s1); - if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { - ((void (*)(int))func_8016B428)(param_1); - func_80019064(D_801D4B7C); - } - } - if (cVar1 != 0x1d) { - if (*(unsigned char *)(param_1 + 0xc8) != 0) { - func_8002A520(param_1); - } - if (*(unsigned char *)(param_1 + 0xc9) != 0) { - func_8002A790(param_1); - } - } - if (*(short *)(param_1 + 0x76) < 1) { - *(short *)(param_1 + 0x5c) = 0; - func_80131E00(param_1, 6); - } - } - return; -} - - - - - -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012C218(s32); -extern u8 *func_8012913C(s32 a0); -extern s32 func_80047948(s32 a0); -extern s32 func_8004787C(s32 a0); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern s32 VectorNormalSS(void *a0, void *a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018C584(s32 a0) { - - extern s32 D_801151D4; - - extern void func_8002AC00(s32 arg0); - extern void func_8002A04C(s32 arg0); - extern u8 D_800AF648; - - u16 v10[4]; /* sp+0x10 */ - s16 v18[4]; /* sp+0x18 */ - s32 sxy; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - s32 base; - s32 iv; - s32 i; - s32 t; - s32 r; - - base = D_801151D4; - - if (*(s16 *)(a0 + 0xFC) >= 0x1F) { - iv = func_8012C658(0x33, 3, a0); - if (iv != 0) { - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; - *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; - *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) - 5; - } - iv = func_8012C658(0x33, 3, a0); - if (iv != 0) { - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; - *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; - *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) + 5; - } - iv = func_8012C658(0x32, 2, a0); - if (iv != 0) { - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; - *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) + 8; - } - - func_8002AC00(0x22); - - iv = *(s32 *)(a0 + 0x64); - *(s16 *)(iv + 2) = 2; - iv = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0); - *(s16 *)(iv + 2) = 4; - *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC) = 0; - - i = 0; - do { - iv = func_8012C588(0x281, a0); - if (iv != 0) { - *(s32 *)(iv + 0x1C) = 2; - *(s16 *)(iv + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(iv + 0x16) = -((rand() & 0x0F) + 0x10); - *(s16 *)(iv + 0x1A) = (rand() & 0x1F) - 0x10; - } - i++; - } while (i < 8); - - v18[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - v18[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - v18[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)v18, (s32)&sxy, &z, &flag); - if (flag >= 0 && (u32)((*(u16 *)&sxy + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((*((u16 *)&sxy + 1) + 0xB3) & 0xFFFF) < 0x167) { - s32 sx; - s32 av; - - sx = (s16)*(u16 *)&sxy; - av = sx; - if (sx < 0) { - av = -sx; - } - /* one local for |x| AND the volume: gcc-2.7.2 keeps the single pseudo - in $v1 in place (subu $v1,$v0,$v1); a separate `vol` local steals $a1 - and the whole OR chain drifts (cookbook §136 L1). */ - av = ((0xF0 - av) * 0x7F) / 0xF0; - sx = (sx + 0xF0) / 0x1E; - if (sx == 0x10) { - sx = 0xF; - } - sx = sx << 8; - func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); - } - - func_8002A04C(a0); - ((void (*)(void *))func_8012C218)((void *)a0); - return; - } - - iv = (s32)func_8012913C(0x23); - if (iv != 0) { - r = rand(); - *(u16 *)(iv + 0x06) = *(u16 *)(a0 + 0x06) + (r & 0x7F) - 0x40; - r = rand(); - *(u16 *)(iv + 0x0A) = *(u16 *)(a0 + 0x0A) + (r & 0x7F) - 0x80; - r = rand(); - *(u16 *)(iv + 0x0E) = *(u16 *)(a0 + 0x0E) + (r & 0x7F) - 0x40; - - t = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(s32 *)(iv + 0x04) = *(s32 *)(iv + 0x04) + (t << 10); - - t = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(u16 *)(iv + 0x34) = 0x1800; - *(s32 *)(iv + 0x18) = 0; - *(s32 *)(iv + 0x14) = 0; - *(s32 *)(iv + 0x10) = 0; - *(s32 *)(iv + 0x0C) = *(s32 *)(iv + 0x0C) - (t << 10); - - v10[0] = *(s32 *)(base + 0x5C) - *(u16 *)(iv + 0x06); - v10[1] = *(s32 *)(base + 0x60) - *(u16 *)(iv + 0x0A); - v10[2] = *(s32 *)(base + 0x64) - *(u16 *)(iv + 0x0E); - VectorNormalSS(v10, v10); - - *(u16 *)(iv + 0x06) = *(u16 *)(iv + 0x06) + ((s16)v10[0] >> 6); - *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) + ((s16)v10[1] >> 6); - *(u16 *)(iv + 0x0E) = *(u16 *)(iv + 0x0E) + ((s16)v10[2] >> 6); - *(u16 *)(iv + 0x34) = 0x3000; - func_8002D4C8(0xAF8, 0); - } - - *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; -} - - - -// @class: struct -// @stuck: none — MATCH - -extern int rand(void); -extern int func_80143C74(short *, int); -extern int func_80047948(int); -extern int func_8004787C(int); - -void func_8018C9CC(short *param_1) -{ - - extern void (*D_801D4C94[])(short *); - int iVar3; - unsigned int uVar2; - short v; - - v = param_1[0x81]; - if (v != 0) { - v = v - 1; - param_1[0x81] = v; - if (v == 0) { - *(unsigned short *)(param_1 + 0x2e) &= 0xbfff; - } - } - D_801D4C94[*(unsigned short *)(param_1 + 1)](param_1); - if (*(unsigned short *)param_1 != 0) { - if (param_1[0x7e] == 0) { - *(int *)(param_1 + 2) = *(int *)(*(int *)(param_1 + 0x32) + 4); - *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x32) + 8); - *(int *)(param_1 + 6) = *(int *)(*(int *)(param_1 + 0x32) + 0xc); - *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x10) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x10); - *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x12) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x12); - *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x14) = - *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x14); - } - if ((param_1[0x3b] < 5) && ((rand() & 3) == 0) && - ((iVar3 = func_80143C74(param_1, 0)) != 0)) { - uVar2 = rand(); - *(int *)(iVar3 + 0x10) = ((uVar2 & 0x7ff) - 0x400) * 0x100; - *(unsigned int *)(iVar3 + 0x14) = 0xfff00000; - uVar2 = rand(); - *(int *)(iVar3 + 0x18) = ((uVar2 & 0x7ff) - 0x400) * 0x100; - *(int *)(iVar3 + 4) += - func_80047948((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; - *(int *)(iVar3 + 0xc) -= - func_8004787C((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; - uVar2 = rand(); - *(short *)(iVar3 + 6) -= 0x20; - *(short *)(iVar3 + 6) += (uVar2 & 0x3f); - *(short *)(iVar3 + 0xa) -= 0x40; - uVar2 = rand(); - *(short *)(iVar3 + 0xe) -= 0x20; - *(short *)(iVar3 + 0xe) += (uVar2 & 0x3f); - } - } - return; -} - - - - -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012C218(s32); -extern u8 *func_8012913C(); -extern s32 rand(void); -extern s32 func_80047948(s32 a0); -extern s32 func_8004787C(s32 a0); -extern s32 VectorNormalSS(void *a0, void *a1); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); -extern void func_8002A04C(s32 a0); - - -void func_8018CBDC(s32 a0) { - - extern s32 D_801151D4; - - extern u8 D_800AF648; - extern void func_8002AC00(s32 arg0); - - struct { - u16 nv[4]; /* sp+0x10 */ - s16 v[4]; /* sp+0x18 */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - s32 p; - s32 s0; - s32 i; - - p = D_801151D4; - - if (*(s16 *)(a0 + 0xFC) >= 0x1F) { - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; - } - s0 = func_8012C658(0x33, 3, a0); - if (s0 != 0) { - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; - *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; - } - s0 = func_8012C658(0x32, 2, a0); - if (s0 != 0) { - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; - *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; - } - func_8002AC00(0x22); - s0 = *(s32 *)(a0 + 0x64); - *(s16 *)(s0 + 0x2) = 4; - s0 = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC); - *(s16 *)(s0 + 0x2) = 4; - - for (i = 0; i < 8; i++) { - s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); - } - } - - *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0) = 0; - func_8002A04C(a0); - ((void (*)(void *))func_8012C218)((void *)a0); - return; - } - - s0 = (s32)func_8012913C(0x23); - if (s0 != 0) { - *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; - *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0x80; - *(s16 *)(s0 + 0xE) = *(u16 *)(a0 + 0xE) + (rand() & 0x7F) - 0x40; - - *(s32 *)(s0 + 0x4) = - *(s32 *)(s0 + 0x4) - - func_80047948(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; - { - s32 t = func_8004787C(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; - *(s16 *)(s0 + 0x34) = 0x1800; - *(s32 *)(s0 + 0x18) = 0; - *(s32 *)(s0 + 0x14) = 0; - *(s32 *)(s0 + 0x10) = 0; - *(s32 *)(s0 + 0xC) = *(s32 *)(s0 + 0xC) + t; - } - - L.nv[0] = *(s32 *)(p + 0x5C) - *(u16 *)(s0 + 0x6); - L.nv[1] = *(s32 *)(p + 0x60) - *(u16 *)(s0 + 0xA); - L.nv[2] = *(s32 *)(p + 0x64) - *(u16 *)(s0 + 0xE); - VectorNormalSS(L.nv, L.nv); - - *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); - *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); - *(s16 *)(s0 + 0x34) = 0x3000; - func_8002D4C8(0xAF8, 0); - } - - *(s16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; -} - - - -extern s32 rand(void); -extern s32 func_80143C74(); -extern s32 func_80047948(s32 a0); -extern s32 func_8004787C(s32 a0); - -void func_8018D020(s32 a0) { - - extern void (*D_801D4D0C[])(s32); - s32 iVar3; - s32 iVar4; - s32 r; - - { - s16 t = *(s16 *)(a0 + 0x102); - if (t != 0) { - t--; - *(s16 *)(a0 + 0x102) = t; - if (t == 0) { - *(u16 *)(a0 + 0x5C) &= 0xBFFF; - } - } - } - - D_801D4D0C[*(u16 *)(a0 + 2)](a0); - - if (*(u16 *)(a0 + 0) != 0) { - if (*(s16 *)(a0 + 0xFC) == 0) { - *(s32 *)(a0 + 4) = *(s32 *)(*(s32 *)(a0 + 0x64) + 4); - *(s32 *)(a0 + 8) = *(s32 *)(*(s32 *)(a0 + 0x64) + 8); - *(s32 *)(a0 + 0xC) = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xC); - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x10) = - *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x10); - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); - *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14) = - *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x14); - } - if (*(s16 *)(a0 + 0x76) < 5 && (rand() & 3) == 0 && - (iVar3 = func_80143C74(a0, 0)) != 0) { - *(s32 *)(iVar3 + 0x10) = ((rand() & 0x7FF) - 0x400) << 8; - *(s32 *)(iVar3 + 0x14) = 0xFFF00000; - *(s32 *)(iVar3 + 0x18) = ((rand() & 0x7FF) - 0x400) << 8; - iVar4 = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(s32 *)(iVar3 + 4) = *(s32 *)(iVar3 + 4) - iVar4 * 0x400; - iVar4 = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); - *(s32 *)(iVar3 + 0xC) = *(s32 *)(iVar3 + 0xC) + iVar4 * 0x400; - r = rand(); - { - s32 m6 = *(u16 *)(iVar3 + 6) - 0x20; - *(u16 *)(iVar3 + 6) = m6 + (r & 0x3F); - } - *(u16 *)(iVar3 + 0xA) = *(u16 *)(iVar3 + 0xA) - 0x40; - r = rand(); - { - s32 mE = *(u16 *)(iVar3 + 0xE) - 0x20; - *(u16 *)(iVar3 + 0xE) = mE + (r & 0x3F); - } - } - } -} - - - - -// @class: schedule -// @stuck: none — MATCH. Two levers: (1) split rand()-result into its own var (shared iVar1 forced an extra move a0,v0); (2) reorder decrement before sp[0] to group the two lhu loads as target's scheduler does; (3) materialize &D_80126B96 via a local u16* to CSE the address (lui+addiu once) instead of %hi/%lo split-per-access. - - - - - - - - -extern void func_80128EA8(); -extern void func_8012931C(); -extern s32 func_80128ED8(s32 param_1, s32 *param_2); -extern u8 *func_8012913C(); -extern void func_801292C8(); -extern int func_8012D664(); - -extern u16 D_801270C0; - -void func_8018D230(s32 arg0) { - - extern u8 D_801D4AF0; - extern u8 D_801D4AFC; - extern u16 D_80126B96; - s32 iVar1; - s32 rv; - u8 *p; - u16 sp[3]; - - if (*(u16 *)(arg0 + 2) == 0) { - *(u8 **)(*(s32 *)(arg0 + 0x20) + 0x20) = &D_801D4AF0; - *(u32 *)(*(s32 *)(arg0 + 0x20) + 4) |= 0x50000000; - *(u8 *)(*(s32 *)(arg0 + 0x20) + 0x27) = 0x59; - func_80128EA8(*(s32 *)(arg0 + 0x20), arg0 + 0x24, (s32)&D_801D4AFC); - rv = rand(); - *(s32 *)(arg0 + 0x1c) = 0x10; - *(s32 *)(arg0 + 0x2c) = 0x200; - *(s16 *)(arg0 + 0x28) = rv % 15; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = 0x1200; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = 0x1200; - *(u16 *)(arg0 + 2) = *(u16 *)(arg0 + 2) + 1; - } else if (*(s16 *)&D_801270C0 == 1) { - func_8012931C(arg0); - func_80128ED8(*(s32 *)(arg0 + 0x20), arg0 + 0x24); - *(s32 *)(arg0 + 0x1c) -= 1; - if ((rand() & 7) == 0 && (p = func_8012913C(0x22)) != 0) { - *(u16 *)(p + 6) = *(u16 *)(arg0 + 6); - *(u16 *)(p + 0xa) = *(u16 *)(arg0 + 0xa); - *(u16 *)(p + 0xe) = *(u16 *)(arg0 + 0xe); - *(s32 *)(p + 0x10) = *(s32 *)(arg0 + 0x10) >> 3; - *(s32 *)(p + 0x14) = *(s32 *)(arg0 + 0x14) >> 3; - *(s32 *)(p + 0x18) = *(s32 *)(arg0 + 0x18) >> 3; - *(s16 *)(p + 0x34) = *(u16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + 1; - *(u16 *)(*(s32 *)(p + 0x20) + 0x2c) = 0xc008; - } - if (*(s32 *)(arg0 + 0x1c) == 0) { - func_801292C8(arg0); - } else { - *(s32 *)(arg0 + 0x14) = 0xffff0000; - iVar1 = *(s32 *)(arg0 + 0x2c) + 0x80; - *(s32 *)(arg0 + 0x2c) = iVar1; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + (s16)iVar1; - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = - *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) + (s16)*(s32 *)(arg0 + 0x2c); - *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) - 0x20; - sp[0] = *(u16 *)(arg0 + 6); - sp[1] = *(u16 *)(arg0 + 0xa); - sp[2] = *(u16 *)(arg0 + 0xe); - if (func_8012D664(sp, 0x10, 0xb4) == 1) { - u16 *q = &D_80126B96; - *q |= 0x4200; - } - *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) + 0x20; - } - } -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018D4B4); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018D4D4); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018D5D4); - - -extern void func_8012B370(int a0); -extern void func_8012C218(s32); -extern s32 func_8012C588(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018D674(s32 a0) -{ - s32 t; - register s32 *a1 asm("$5"); - u32 v0; - - t = *(s32 *)(a0 + 0x1C) - 1; - *(s32 *)(a0 + 0x1C) = t; - - if (t != 0) { - a1 = *(s32 **)(a0 + 0x20); - v0 = *(u32 *)(a1 + 0x1); - v0 ^= 0x80000000; - *(u32 *)(a1 + 0x1) = v0; - ((void (*)(void))func_8012B370)(); - - t = *(s32 *)(a0 + 0x1C); - if ((t & 0x3) != 0) { - s32 s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - return; - } - - ((void (*)(void *))func_8012C218)((void *)a0); -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018D734); - - - - - - - - - - - - - - - - - - - -void func_8018D7CC(void *a0) -{ - s32 v0 = *((s32 *) (((s32) a0) + 0x64)); - *((s16 *) (v0 + 0x5C)) = 0; - ; - *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xD0))) + 0x5C)) = 0; -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018D7EC); - -void func_8018D8DC(void) { -} - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018D8E4); - - -extern void func_8012B370(int a0); -extern void func_8012C218(s32); -extern s32 func_8012C588(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018D9B8(s32 a0) -{ - s32 t; - register s32 *a1 asm("$5"); - u32 v0; - - t = *(s32 *)(a0 + 0x1C) - 1; - *(s32 *)(a0 + 0x1C) = t; - - if (t != 0) { - a1 = *(s32 **)(a0 + 0x20); - v0 = *(u32 *)(a1 + 0x1); - v0 ^= 0x80000000; - *(u32 *)(a1 + 0x1) = v0; - ((void (*)(void))func_8012B370)(); - - t = *(s32 *)(a0 + 0x1C); - if ((t & 0x3) != 0) { - s32 s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - return; - } - - ((void (*)(void *))func_8012C218)((void *)a0); -} - - -extern void func_8012B370(int a0); - void func_8018DA78(void) { - ((s32 (*)(void))func_8012B370)(); - } - - - - - - - - - - - - - - - - - - -void func_8018DA98(void *a0) -{ - s32 v0; - *((s16 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0x5C)) = 0; - ; - *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xCC))) + 0x5C)) = 0; -} - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018DAB8); - -void func_8018DBAC(void) { -} - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018DBB4); - - -extern void func_8012B370(int a0); -extern void func_8012C218(s32); -extern s32 func_8012C588(s32 a0, s32 a1); -extern s32 rand(void); - -void func_8018DCA8(s32 a0) -{ - s32 t; - register s32 *a1 asm("$5"); - u32 v0; - - t = *(s32 *)(a0 + 0x1C) - 1; - *(s32 *)(a0 + 0x1C) = t; - - if (t != 0) { - a1 = *(s32 **)(a0 + 0x20); - v0 = *(u32 *)(a1 + 0x1); - v0 ^= 0x80000000; - *(u32 *)(a1 + 0x1) = v0; - ((void (*)(void))func_8012B370)(); - - t = *(s32 *)(a0 + 0x1C); - if ((t & 0x3) != 0) { - s32 s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - } - return; - } - - ((void (*)(void *))func_8012C218)((void *)a0); -} - - -extern void func_8012B370(int a0); - void func_8018DD68(void) { - ((void (*)(void))func_8012B370)(); - } - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018DD88); - - -/* TU declares func_8018DEC0 as void(void) (S35 self-axis) but the asm takes - * $a0 as a pointer parameter — bind through a private C name. */ -extern void aF8017ED80(void *param_1) __asm__("func_8018DEC0"); - -void aF8017ED80(void *param_1) { - u8 *a0 = (u8 *)param_1; - s32 pad_[4]; - s32 iVar2; - u32 uVar1; - - if (*(u16 *)(a0 + 0x0) != 0) { - iVar2 = *(s32 *)(a0 + 0xCC); - *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); - *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); - *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); - *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); - *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFC); - *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); - *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); - *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); - *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); - if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { - register u32 val __asm__("$2"); - val = *(u32 *)(iVar2 + 0x4); - uVar1 = val | 0x80000000; - } else { - __asm__ __volatile__(""); - uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; - } - *(u32 *)(iVar2 + 0x4) = uVar1; - - iVar2 = *(s32 *)(a0 + 0xD0); - *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); - *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); - *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); - *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); - *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFE); - *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); - *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); - *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); - *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); - if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { - register u32 val __asm__("$2"); - val = *(u32 *)(iVar2 + 0x4); - uVar1 = val | 0x80000000; - } else { - __asm__ __volatile__(""); - uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; - } - *(u32 *)(iVar2 + 0x4) = uVar1; - } -} - - - -/* func_8018E094 -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (open-only h_norm - * cluster exemplar, 7 members). - * - * a0+0x0 : u16 active flag; 0 => early return. - * a0+0x84 : s16 sound cooldown timer. - * cooldown != 0 -> just decrement it. - * cooldown == 0 -> try to play a positional sound (RotTransPers screen - * projection of the parent's position, range-gated on - * screen X/Y, volume from the classic div-by-0xF0 / - * div-by-0x1E magic-constant idiom -- byte-proven sibling - * form is func_80181CF0 in this same TU, sndid 0x849 here - * vs 0x961 there), then unconditionally reset the timer - * to 0xA regardless of whether the sound actually played. - * a0+0xFC / 0xFE : running hit-combo accumulators, bumped by +/-0x280 every - * call (unconditional tail). - * Tail always calls ((void (*)(void *))func_8018DEC0)(a0) (the TU's canonical decl for this - * symbol is void(void) -- S35 self-axis -- so this draft binds its own - * private extern with the asm's real void(void*) shape). - * - * Control flow is EXPLICIT goto/label, mirroring source-order block - * placement (gcc-2.7.2 lays out basic blocks in literal source order, not by - * fallthrough preference -- see the func_80181CF0 comment, same TU): the - * cooldown!=0 decrement is the SHORT block and sits out-of-line (jumped to), - * the cooldown==0 RTP+sound block is the LONG block and sits inline - * (fallthrough), matching the target's physical layout exactly. - * - * MATCH levers (byte-proven, 2026-08-05): - * 1. Naive `if(old!=0){cool=old-1;}else{...}` folds trivially: reorg.c's - * delay-slot filler steals the single-insn decrement into the `bnez`'s - * own delay slot and retargets the branch straight to the join label - * (2 ins short of target). The target instead keeps a genuine copy - * (`addu $v1,$v0,zero`) in the delay slot and a SEPARATE `addiu $v0,$v1,-1` - * at the decrement site. Reproduced by pinning a second variable - * `register s32 v1 __asm__("$3")`, assigned UNCONDITIONALLY right after - * the load (`v1 = old;`) -- the scheduler places that copy in the - * branch's delay slot on its own, and the decrement (`cool = v1 - 1`) - * can no longer be folded away. `cool` is separately pinned to - * `__asm__("$2")` so its other def sites (the three `cool = 0xA` early - * exits) don't drift onto $3 by coalescing with v1. - * 2. The tail's `sh $v0,0x84($s0)` / `addu $a0,$s0,zero` order (store off - * the callee-saved pointer BEFORE reloading it into the call-argument - * register) needed a `__asm__ __volatile__("":::"memory")` fence right - * after the store -- without it, sched1 hoists the independent a0-reload - * ahead of the store even when the reload is written later in source. - * 3. Frame is -0x38, 8 bytes (2 words) larger than the natural -0x30 the - * locals alone produce; `pad2[2]` (dead, address never read) inside `L` - * reserves them, mirroring func_80181CF0's own "dead aggregate sizes the - * frame" idiom. - */ - - -/* §37/§124 def-side asm-label alias (P30 S1d class lever): the TU declares - * `extern void func_8018E094(void);` (L4082, L4091) for callers that invoke it with NO args, - * while the byte-true definition takes an s32 in $a0 -> `conflicting types`. Neither side can - * move (a no-prototype escape is illegal once a param promotes), so the DEFINITION gets a - * private C identifier and binds the emitted symbol with a GNU asm label. Zero blast radius: - * the TU's declaration never meets the definition, and the emitted symbol is unchanged. */ -void aF8017EF54(s32 a0) __asm__("func_8018E094"); - -void aF8017EF54(s32 a0) -{ - extern void func_8004914C(void *a0); - extern void func_800491AC(void *a0); - extern void func_8002D4C8(s32 a0, s32 a1); - extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - extern u8 D_800AF648; - extern void func_8018DEC0(void); - struct { - s16 v[3]; /* sp+0x10 */ - s16 pad1; /* sp+0x16 */ - u16 sxy[2]; /* sp+0x18 */ - s32 z; /* sp+0x1C */ - s32 flag; /* sp+0x20 */ - s32 pad2[2]; /* sp+0x24 -- dead, sizes the frame */ - } L; - - register s32 v1 __asm__("$3"); - register s32 cool __asm__("$2"); - s32 old; - - if (*(u16 *)(a0 + 0x0) == 0) { - return; - } - - old = *(s16 *)(a0 + 0x84); - v1 = old; - if (old != 0) { - goto L_dec; - } - - L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); - L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); - L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); - - if (L.flag < 0) { - cool = 0xA; - goto L_join; - } - if ((u32)((L.sxy[0] + 0xEF) & 0xFFFF) >= 0x1DF) { - cool = 0xA; - goto L_join; - } - if ((u32)((L.sxy[1] + 0xB3) & 0xFFFF) >= 0x167) { - goto L_snd_skip; - } - - { - s32 sx = (s16)L.sxy[0]; - s32 av; - - av = sx; - if (sx < 0) { - av = -sx; - } - av = ((0xF0 - av) * 0x7F) / 0xF0; - sx = (sx + 0xF0) / 0x1E; - if (sx == 0x10) { - sx = 0xF; - } - sx = sx << 8; - func_8002D4C8(0x849, (av | (0x3000 | sx)) & 0xFFFF); - } - -L_snd_skip: - cool = 0xA; - goto L_join; - -L_dec: - cool = v1 - 1; - -L_join: - *(s16 *)(a0 + 0x84) = cool; - __asm__ __volatile__("" ::: "memory"); - - { - s32 p = a0; - *(u16 *)(p + 0xFC) = *(u16 *)(p + 0xFC) + 0x280; - *(u16 *)(p + 0xFE) = *(u16 *)(p + 0xFE) - 0x280; - ((void (*)(void *))func_8018DEC0)((void *)p); - } -} - - - -extern s32 rand(void); -extern s32 VectorNormalSS(void *a0, void *a1); -extern s32 func_8012C588(s32 a0, s32 a1); -extern u8 *func_8012913C(); -extern void func_8018DEC0(void); - -void func_8018E240(s32 a0) -{ - - extern s32 D_801151D4; - u16 nv[4]; - s32 g; - s32 s0; - s32 idx; - - g = D_801151D4; - - if (*(u16 *)a0 != 0) { - idx = *(s32 *)(a0 + 0x1C) & 3; - switch (idx) { - case 0: - s0 = func_8012C588(0x281, a0); - if (s0 != 0) { - *(s32 *)(s0 + 0x1C) = 2; - *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; - *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); - *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; - } - break; - case 1: - break; - case 2: - case 3: - s0 = (s32)func_8012913C(0x23); - if (s0 != 0) { - *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x3F) - 0x20; - *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x3F) - 0x30; - { - s32 r = rand(); - s32 t = *(u16 *)(a0 + 0xE); - *(s32 *)(s0 + 0x18) = 0; - *(s32 *)(s0 + 0x14) = 0; - *(s32 *)(s0 + 0x10) = 0; - *(s16 *)(s0 + 0xE) = t + (r & 0x3F) - 0x20; - } - *(s16 *)(s0 + 0x34) = (rand() & 0x17FF) + 0x800; - nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); - nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); - nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); - VectorNormalSS(nv, nv); - *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)nv[0] >> 6); - *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)nv[1] >> 6); - *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)nv[2] >> 6); - } - break; - } - ((void (*)(s32))func_8018DEC0)(a0); - } -} - - - -extern void func_8012B1B4(s32 a0, s32 a1); -extern void func_8012CBCC(s32 a0); -extern void func_8012BE98(s32 a0, u16 *a1); -extern void func_8012BE54(s32 a0); -extern s32 func_8012B744(void *a0, void *a1); -extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); -extern s32 func_8018DD88(s32 a0, s32 a1); - -void func_8018E428(s32 a0) -{ - s16 hi; - s16 pos; - s32 sp10[3]; - u16 state; - - hi = *(s16 *)(a0 + 0x8A); - pos = *(s16 *)(a0 + 0xA); - - if (pos >= hi - 8) { - if (*(s32 *)(a0 + 0x48) >= 0) { - *(s32 *)(a0 + 0x48) = -0x8000; - *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; - } - } else { - if (hi + 8 >= pos) { - if (*(s32 *)(a0 + 0x48) <= 0) { - *(s32 *)(a0 + 0x48) = 0x8000; - *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; - } - } - } - - if (*(s32 *)(a0 + 0xDC) < -0x40000) { - *(s32 *)(a0 + 0xDC) = -0x40000; - } - - sp10[0] = 0; - sp10[1] = 0; - sp10[2] = *(s32 *)(a0 + 0xDC); - func_8012B1B4(a0, (s32)sp10); - func_8012CBCC(a0); - - state = *(u16 *)(a0 + 0x34); - switch (state) { - case 0: { - register s32 s0v __asm__("$16"); - s32 ret; - s32 p744; - s32 v1p; - s16 snd; - s32 b608; - register s32 p20 __asm__("$4"); - - s0v = a0 + 0x88; - ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s0v); - if (ret <= 0x3FFFF) { - if (func_8018DD88(a0, 0x51) == 0) { - goto set_state1; - } - } - p744 = func_8012B744((void *)(a0 + 4), (void *)s0v); - v1p = *(s32 *)(a0 + 0x20); - snd = *(s16 *)(v1p + 0x12); - b608 = func_8012B608(snd, p744, 8); - p20 = *(s32 *)(a0 + 0x20); - *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; - v1p = *(s32 *)(a0 + 0x20); - *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; - func_8012B1B4(a0, (s32)sp10); - break; - } - case 1: { - s32 ret; - - *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; - ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)); - if (ret > 0x3FFFF) { - goto rand_tail; - } - if (func_8018DD88(a0, 0x51) == 0) { - goto end_switch; - } - goto rand_tail; - } - case 2: { - s32 p744; - s32 v1p; - s16 snd; - s32 b608; - s32 p20; - - p744 = func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)); - v1p = *(s32 *)(a0 + 0x20); - snd = *(s16 *)(v1p + 0x12); - b608 = func_8012B608(snd, p744, 0x10); - p20 = *(s32 *)(a0 + 0x20); - *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; - v1p = *(s32 *)(a0 + 0x20); - *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; - *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) >> 1; - func_8018DD88(a0, 0x51); - if (*(s16 *)(a0 + 0x102) == 0) { - *(u16 *)(a0 + 0x34) = 3; - } else { - *(s16 *)(a0 + 0x102) = *(s16 *)(a0 + 0x102) - 1; - } - break; - } - case 3: { - register s32 s2v __asm__("$18"); - s32 ret; - s32 p744; - s32 v1p; - s16 snd; - s32 b608; - - s2v = a0 + 0x88; - ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s2v); - *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; - if (func_8018DD88(a0, 0x51) != 0) { - goto rand_tail; - } - if (ret <= 0x40000) { - goto set_state1; - } - p744 = func_8012B744((void *)(a0 + 4), (void *)s2v); - v1p = *(s32 *)(a0 + 0x20); - snd = *(s16 *)(v1p + 0x12); - b608 = func_8012B608(snd, p744, 1); - if ((u32)(b608 + 0xFF) < 0x1FF) { - goto end_switch; - } - goto rand_tail; - } - } - goto end_switch; - -rand_tail: - *(u16 *)(a0 + 0x34) = 2; - { - s32 r = rand(); - *(s16 *)(a0 + 0x102) = (r & 7) + 8; - } - goto end_switch; - -set_state1: - *(u16 *)(a0 + 0x34) = 1; - -end_switch: - if (*(s16 *)(a0 + 0x100) != 0) { - *(s16 *)(a0 + 0x100) = *(s16 *)(a0 + 0x100) - 1; - } else { - s32 ret3; - - ret3 = ((s32 (*)(s32))func_8012BE54)(a0); - if (ret3 <= 0x24000) { - *(s16 *)(a0 + 0x2) = 2; - *(s16 *)(a0 + 0x100) = 0x3C; - } - } -} - - - - -extern s32 func_8018A6DC(s32 a0, s32 a1); -extern s32 func_8012C588(s32 a0, s32 a1); -extern void func_8012F14C(s32 a0, s32 a1, s32 a2); -extern void func_8012B370(int a0); -extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); -extern void func_8004914C(void *a0); -extern void func_800491AC(void *a0); -extern void func_8002D4C8(s32 a0, s32 a1); -extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); - - -void func_8018E764(s32 param_1) -{ - - extern u8 D_801DC794; - extern u8 D_801DC79C; - extern u8 D_801DC7A4; - extern u8 D_800AF648; - /* L5: slot offsets are exact only through ONE struct — copied verbatim - from the banked RTP_SND sibling func_80180CA8 (same TU) so the - sp+0x10.."0x2B layout reproduces byte-for-byte. */ - struct { - u16 nv[4]; /* sp+0x10 */ - s16 rv[4]; /* sp+0x18 */ - u16 sxy[2]; /* sp+0x20 */ - s32 z; /* sp+0x24 */ - s32 flag; /* sp+0x28 */ - } L; - - s16 sVar1; - s32 s0; - - if (*(s32 *)(param_1 + 0x1c) == 0) { - sVar1 = *(s16 *)(param_1 + 0x100) - 1; - *(s16 *)(param_1 + 0x100) = sVar1; - if (sVar1 == 0) { - *(s16 *)(param_1 + 2) = 1; - *(s16 *)(param_1 + 0x100) = 0x3c; - *(s16 *)(param_1 + 0x8a) = *(s16 *)(param_1 + 0xa) - 0x140; - } else { - *(s32 *)(param_1 + 0x1c) = (sVar1 == 1) ? 0x3c : 3; - - func_8018A6DC(param_1, (s32)&D_801DC794); - - s0 = func_8012C588(0x260, param_1); - if (s0 != 0) { - ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DC79C, (s32)L.nv); - *(s16 *)(s0 + 6) = L.nv[0]; - *(s16 *)(s0 + 0xA) = L.nv[1]; - *(s16 *)(s0 + 0xE) = L.nv[2]; - func_8012B370(s0); - func_8012C658(0x261, 0, s0); - } - - s0 = func_8012C588(0x260, param_1); - if (s0 != 0) { - ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DC7A4, (s32)L.nv); - *(s16 *)(s0 + 6) = L.nv[0]; - *(s16 *)(s0 + 0xA) = L.nv[1]; - *(s16 *)(s0 + 0xE) = L.nv[2]; - func_8012B370(s0); - func_8012C658(0x261, 1, s0); - } - - L.rv[0] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x48); - L.rv[1] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x4C); - L.rv[2] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x50); - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } - { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } - RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); - if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF - && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { - s32 x = (s16)L.sxy[0]; - s32 ax; - - ax = x; - if (x < 0) { - ax = -x; - } - ax = ((0xF0 - ax) * 0x7F) / 0xF0; - __asm__("" : "=r"(ax) : "0"(ax)); - x = (x + 0xF0) / 0x1E; - if (x == 0x10) { - x = 0xF; - } - x = x << 8; - { - s32 flg = 0x3000; - func_8002D4C8(0x84A, ((ax | flg) | x) & 0xFFFF); - } - } - } - } else { - *(s32 *)(param_1 + 0x1c) = *(s32 *)(param_1 + 0x1c) - 1; - } -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018EA0C); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018EB3C); - - -extern void (*D_801DC7F8[])(void); - -void func_8018EC14(void *a0) { - D_801DC7F8[*(u16 *)((s32)a0 + 0x2)](); -} - - - -/* SV4 is the TU-canonical name (src/shared/engine_types.h) for func_8012F214's - * in/out struct (see ov_SC06_008_jr_8017AE2C.c:3135, "SV4 svec" comment: func_8012F214 out). - * Isolated match_one has no include path to that header, so it is typedef'd - * locally here for the standalone compile only. */ - - -/* func_8018EC50 - ov_SC06_008 / ov_SC06_008_jr_8017C294 (93 ins) - * - * One-time init (guarded by state flag at +0x34): mirror the +0x64 sub-object's - * +0x20/+0x12 field into our own +0x20 sub-object, kick off two "core" calls, - * pick an entry from the 2-element 12-byte table D_801DC800 (indexed by the - * s16 at +0x70), then call func_8012F214 with a zeroed input SV4 and read the - * first 3 fields of the output SV4 back into +6/+0xA/+0xE. Sets the countdown - * at +0x1c to 0x5a and marks the state flag +0x34 = 1. - * - * Always-executed tail: bump the +0x20 sub-object's +0x10/+0x12/+0x14 fields - * (reloading the +0x20 pointer fresh for each field -- no CSE across the - * intervening stores, straight literal translation), mirror +0x14 into +0xDC, - * call func_8012CBCC(a0) and test its return (canonical fleet decl is - * void func_8012CBCC(s32 a0); the return value is read via a function- - * pointer cast at the use site, per the established TU idiom -- see - * ov_SC03_099_jr_8017BEBC.c:5630 comment block). If (ret & 0x6000), decrement - * the +0xac counter (signed s16 compare-to-zero on the POST-decrement value -- - * gcc-2.7.2's sll-by-16/bnez idiom for a s16 local) and negate +0xDC into - * +0x14; on the counter hitting zero, call func_8012C218. Finally decrement - * the +0x1c countdown and call func_8012C218 again when IT hits zero. - */ - -extern void func_8012B2CC(s32 a0); -extern void func_8012B23C(s32 a0); -extern void func_8012B14C(s32 a0, s32 a1); -extern void func_8012F214(s32 a0, s32 a1, s32 a2); -extern void func_8012CBCC(s32 a0); -extern void func_8012C218(s32); - - -void func_8018EC50(s32 a0) -{ - - extern s32 D_801DC800; - SV4 in; - SV4 out; - s16 v1; - u16 uStack_c; - - if (*(u16 *)(a0 + 0x34) == 0) { - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = - *(u16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); - func_8012B2CC(a0); - func_8012B23C(a0); - func_8012B14C(a0, *(s16 *)(a0 + 0x70) * 12 + (s32)&D_801DC800); - - in.a = 0; - in.b = 0; - in.c = 0x10; - func_8012F214(a0, (s32)&in, (s32)&out); - *(u16 *)(a0 + 6) = out.a; - *(u16 *)(a0 + 0xa) = out.b; - uStack_c = out.c; - *(s32 *)(a0 + 0x1c) = 0x5a; - *(u16 *)(a0 + 0x34) = 1; - *(u16 *)(a0 + 0xe) = uStack_c; - } - - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) += -0x80; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) += 4; - *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) += *(u16 *)(a0 + 0xfc); - - *(s32 *)(a0 + 0xdc) = *(s32 *)(a0 + 0x14); - if ((((s32 (*)(s32))func_8012CBCC)(a0)) & 0x6000) { - register s32 negdc __asm__("$2"); - negdc = -*(s32 *)(a0 + 0xdc); - v1 = *(u16 *)(a0 + 0xac); - v1 -= 1; - *(s16 *)(a0 + 0xac) = v1; - *(s32 *)(a0 + 0x14) = negdc; - if (v1 == 0) { - ((void (*)(void *))func_8012C218)((void *)a0); - } - } - - { - s32 iVar3 = *(s32 *)(a0 + 0x1c) - 1; - *(s32 *)(a0 + 0x1c) = iVar3; - if (iVar3 == 0) { - ((void (*)(void *))func_8012C218)((void *)a0); - } - } -} - - - -extern void (*D_801DC818[])(void); - -void func_8018EDC4(void *a0) { - D_801DC818[*(u16 *)((s32)a0 + 0x2)](); -} - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018EE00); - -extern void func_8002D4C8(s32 arg0, s32 arg1); -extern void func_8018DEC0(void); - -void func_8018EE88(void *a0) { - func_8002D4C8(0xB32, 0); - ((void (*)(void *))func_8018DEC0)(a0); -} - - -extern void func_8018E094(void); - void func_8018EEC0(s32 *param_1) { - *(short *)(*(int *)((char *)param_1 + 0x20) + 0x10) = 0xe00; - ((void (*)(void))func_8018E094)(); - } - - -extern void func_8018E094(void); - void func_8018EEE8(s32 arg0) { - s32 temp_v1 = *(s32 *)(arg0 + 0x20); - *(u16 *)(temp_v1 + 0x10) += 0x20; - func_8018E094(); - } - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018EF1C); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018EF68); - -extern void func_8018DEC0(void); - void func_8018F054(s32 *a0) { - *(s32 *)((char *)a0 + 0x10) = *(s32 *)((char *)a0 + 0x10) >> 1; - *(s32 *)((char *)a0 + 0x18) = *(s32 *)((char *)a0 + 0x18) >> 1; - ((void (*)(void))func_8018DEC0)(); - } - - -extern void func_8018DEC0(void); - void func_8018F088(u8 *param_1) { - param_1[0xC1] = 0xC; - *(int *)(param_1 + 0x1C) = 0x3C; - ((void (*)(void))func_8018DEC0)(); - } - - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F0B4); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F140); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F268); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F39C); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F3FC); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F4BC); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F590); - -INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_8017BEBC", func_8018F688); - - - - diff --git a/src/ov_SC06_024/ov_SC06_024_jr_80186F00.c b/src/ov_SC06_024/ov_SC06_024_jr_80186F00.c new file mode 100644 index 000000000..12cc2e1d9 --- /dev/null +++ b/src/ov_SC06_024/ov_SC06_024_jr_80186F00.c @@ -0,0 +1,6905 @@ +#include "common.h" +#include "../shared/engine_core.h" + + +/* ==== Phase-26 §8b carried decl layer (jr_isolate_all.py) =================== + * The file-scope decl environment from earlier code regions of this object — + * file-local types, col-0 decls, DEFINE_func macro externs, and each earlier + * definition's implied prototype (types first, then decls in original order). + * Decls emit no code => byte-neutral. See cookbook §8c. */ +typedef struct { + SVECTOR_8016E7C8 v[4]; /* 0x00 */ + s32 f0, f1, f2, f3, f4, f5; /* 0x20..0x37 */ + u8 f6; /* 0x38 */ + u8 pad[7]; /* -> 0x40 */ +} Prim_8016E7C8; +typedef void (*Handler)(struct Entry_8016E95C *); +extern void func_801458E0(void); +extern s32 D_800AE6AC; +extern s32 D_800AE6B0; +extern s16 D_800B9A0A; +extern u8 D_80078E50; +extern void func_800D185C(u8 *a0); +extern void func_801458E8(void); +extern s32 func_80029504(void); +extern void func_80145B24(void); +extern u8 D_80191D28; +extern u8 D_80191C98; +extern u8 D_80191C74; +extern u8 D_80191C50; +extern u8 D_80191D04; +extern u8 D_80191CE0; +extern u8 D_80191CBC; +extern u8 D_80191C2C; +extern void func_80145934(void); +extern u8 D_80191DB8; +extern u8 D_80191D94; +extern u8 D_80191D70; +extern u8 D_80191D4C; +extern void func_80145A2C(void); +extern s32 func_800291DC(s32); +extern void func_800291C8(s32, s32); +extern void func_80162120(void); +extern void func_80029124(s32, s32); +extern s32 func_80165A50(s32); +extern void func_80029514(s32); +extern u8 D_800AF630[]; +extern u8 D_80078EC0; +extern s32 func_80028FBC(void); +extern s32 func_80029000(void); +extern s32 func_80028D9C(void); +extern void func_8002D4C8(s32 a0, s32 a1); +extern void func_80145BF8(void); +extern s32 func_800291B4(s32 arg); +extern void func_800291A0(s32, s32); +extern void func_80145C54(void); +extern s32 func_80145CEC(); +extern s32 func_80029178(s32 arg); +extern void func_80146014(s32 a0); +extern unsigned char D_801911B0[]; +extern unsigned char D_801911E0[]; +extern unsigned char D_80191230[]; +extern unsigned char D_80191260[]; +extern unsigned char D_80191290[]; +extern void func_80145EE8(s32 param_1); +extern void MoveImage(void *a0, s32 a1, s32 a2); +extern void func_80146074(void); +extern s32 func_80146128(void); +extern void func_80146360(void); +extern void func_801463A0(); +extern void func_8014607C(void); +extern u8 D_80078EC1; +extern s32 D_80078EC8; +extern s32 D_8011F730; +extern u16 D_801152B8; +extern u16 D_8012693A; +extern u8 D_80126BE0[]; +extern u8 D_801150F0[]; +extern void *memcpy(void *dst, const void *src, u32 n); +extern void func_80146FC4(s32 a0); +extern void func_80150A70(s32 a0); +extern void func_80147098(s32 *a0); +extern void func_8014A638(s32 arg0); +extern s32 func_80155458(s32 a0); +extern s32 func_80029104(void); +extern void func_80029344(void); +extern void func_8014ADE0(s32 a0); +extern void func_8014B350(s32 a0); +extern void func_8014B7A4(s16 *param_1); +extern s32 func_80161D58(s32 a0); +extern void func_80161A90(s32 a0); +extern void func_8014B504(u16 *a0); +extern void func_80149BEC(s32 a0); +extern void func_8014B5D0(s32 *a0); +extern void func_8014C99C(u8 *a0); +extern void func_8014B190(s32 s0); +extern void func_80148648(s32 a0, s32 a1); +extern s32 func_80149228(s32 a0); +extern void func_8014A59C(s32 a0); +extern void func_8016F14C(void *a0); +extern void func_80154418(void *a0); +extern void func_80154BE4(s32 a0); +extern void func_80165694(s32 arg0); +extern void func_801654A8(s32 a0); +extern void func_8014A680(s32 a0); +extern void func_8014A6A8(s32 a0); +extern void func_8014A71C(s32 a0); +extern void func_80172588(s32 *a0); +extern void func_801473DC(s32 *a0); +extern void func_80015978(s32 a0, s32 *a1); +extern void (*D_801912E0[])(void *); +extern u8 D_80126BA4; +extern s32 D_80127098; +extern s32 D_80127094; +extern s32 D_80127090; +extern void func_80146534(void); +extern void func_8001D074(s32 a0, s32 a1); +extern void func_80146554(void); +extern void func_80146578(void); +extern void func_8001CFDC(s32, s32); +extern void func_8014659C(void); +extern void func_8001D074(s32, s32); +extern void func_801465C0(void); +extern void func_801465E4(void); +extern void func_801466F0(s32 a0, s32 a1, s32 a2, s32 a3, s32 sp5, s32 sp6, s32 sp7, s32 sp8); +extern s32 D_8011F9D0; +extern s32 func_80146608(s32 a0, s32 a1, s32 a2, s32 a3, s16 arg9, s32 arg10, s32 arg11, s32 arg12, s32 arg13); +extern void func_801466B4(u16 a0, s32 a1, s32 a2, s32 a3, s32 arg5); +extern s32 D_8011F750; +extern s32 D_8011F754; +extern u8 * func_801468C8(s32 arg0, u8 arg1); +extern s32 D_8011D030; +extern s32 func_80146994(s32 a0, s32 a1, s32 a2, s32 a3); +extern s32 func_80146924(s32 a0, s32 a1, s32 a2, s32 a3, s32 arg5); +extern s32 func_80146A6C(s32 a0, void *a1, s32 a2, s32 a3, s32 a4, s32 a5, s32 a6); +extern s32 func_80146994(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern s32 func_801469C8(int a0, void *a1, int a2, int a3, u16 arg5, int arg6, int arg7, int arg8); +extern s32 func_80146B9C(void *a0); +extern void func_80146AB4(s16 a0, s32 a1, s16 a2, s16 a3, u16 a4, s32 a5, s32 a6); +extern u16 D_8011DA28; +extern s32 func_80146B9C(void * arg0); +extern void func_80146C98(s32 *a0, s16 a1); +extern void func_80146CA0(void *a0); +extern void func_80146CB4(void *a0); +extern void func_80146CC8(s32 a0); +extern void func_80146D30(s32 a0); +extern void func_80146D80(s32 *a0); +extern void func_80146DE8(s32 *a0, s32 a1, s32 a2, s32 a3); +extern void func_80146D90(s32 a0); +extern void func_80146DB8(s32 *a0, s32 *a1); +extern void func_80146DF8(s32 *a0, s32 a1, s32 a2, s32 a3, s32 t0); +extern void func_80146E90(s32 *a0, s32 a1); +extern s32 func_80146E98(s32 a0); +extern void func_80015954(s32 a0, s32 a1); +extern void func_80149374(s32 a0, s32 a1); +extern void func_80146F58(s32 a0, s32 a1); +extern void func_80146EC0(s32 a0, s32 a1, s32 a2, s32 a3); +extern s16 func_8012A68C(void); +extern s16 func_8012A758(void); +extern void func_8004978C(s16 *a0, void *a1); +extern void ApplyMatrixSV(void *a0, void *a1, void *a2); +extern u8 D_80126DB0[]; +extern u16 D_80126DB6; +extern void func_8014704C(s32 *a0); +extern s32 func_80147054(void *a0); +extern void func_80147060(u8 * a0); +extern void func_8014706C(void *arg0); +extern void func_80147078(s32 *a0, s16 a1); +extern void func_80147084(s32 *a0); +extern void func_8014708C(void *arg0); +extern s32 func_801470A0(void *a0); +extern void func_801470AC(s32 *a0); +extern void func_801470B4(s32 arg0); +extern void func_801470C0(s32 a0); +extern void func_80147118(s32 a0); +extern s16 D_80126BB8; +extern s16 D_80126BBA; +extern s16 D_80126BBC; +extern void func_80147264(s32 a0); +extern void func_80147290(void); +extern void func_801472B4(void *a0); +extern s32 func_801472C8(struct S *a0); +extern void *D_8012707C; +extern void func_801472DC(void); +extern void func_801472F0(void *a0); +extern void func_80147364(u16, s32); +extern void func_80147300(u16 arg0); +extern void func_80147324(s32 arg0); +extern void func_801473EC(s32 *a0); +extern void func_80147460(s32 a0); +extern void func_80147514(); +extern void func_80147628(s32 a0); +extern void func_80147478(s32 a0); +extern void func_801474D8(s32 *a0); +extern void func_801474EC(s32 *a0); +extern s32 func_80012C6C(s32 a0, s32 a1, s32 a2); +extern s32 func_800129CC(s32 a0, s32 a1); +extern void func_80147514(s32 arg0); +extern void func_80013F3C(s32 a0); +extern void func_80012558(s32 a0, s32 a1); +extern void func_800126C4(s32 a0, s32 a1); +extern void func_800123F0(s32 a0, s32 a1); +extern void func_80147718(s32 a0); +extern void func_80147788(void *a0, s32 a1); +extern void func_801477A8(void *a0, s32 a1); +extern void func_801477C8(void *a0, s32 a1); +extern void func_801477E8(s32 *a0, s32 a1); +extern void func_80147814(s32 a0, s32 a1); +extern void func_80147928(int a0, int a1); +extern void func_8014799C(int a0, int a1); +extern void func_80147A10(int a0, int a1); +extern void func_80147860(int a0, int a1, int a2, int a3); +extern void func_80147948(s32 a0, s32 a1, s32 a2); +extern void func_801479BC(s32 a0, s32 a1, s32 a2); +extern void func_80147A30(s32 a0, s32 a1, s32 a2); +extern void func_801478B8(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147948(int a0, int a1, int a2); +extern void func_801479BC(int a0, int a1, int a2); +extern void func_80147A30(int a0, int a1, int a2); +extern void func_80147AD4(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern void func_80147A84(s32 arg0); +extern void func_80147C30(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern void func_80147AAC(s32 arg0); +extern void func_80147CC8(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4); +extern void func_80147B5C(s32 a0, void *a1); +extern void func_80147AD4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147D38(s32 a0, s32 a1, s32 a2, s32 a3, void *a4); +extern void func_80147B18(s32 a0); +extern void func_80147B5C(s32 arg0, void *arg1); +extern void func_80147C30(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147DC0(s32 a0, s32 a1); +extern void func_80147D38(s32 a0, s32 a1, s32 a2, s32 a3, void * a4); +extern void func_800484EC(s32 a0, s32 a1, s32 a2); +extern void func_80147E44(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80147F78(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern void func_80147F50(s32 arg0); +extern void func_80148038(s32 a0, s32 a1); +extern s32 ratan2(s32 a0, s32 a1); +extern s32 csqrt(s32 a0); +extern s32 func_80012A60(s32 a0, s32 a1); +extern void func_80148094(int param_1, short *param_2, int *param_3); +extern void func_801485B8(s32 a0, s32 a1, s32 a2); +extern void func_801484B0(s32 a0, s32 a1); +extern s32 func_80154358(void *a0); +extern void func_801484E8(s32 a0, s32 a1); +extern void func_80148534(s32 a0, s32 a1); +extern void func_8014856C(s32 a0, s32 a1); +extern void func_801485B8(s32 arg0, s32 arg1, s32 arg2); +extern void func_80148634(void *a0); +extern u8 D_800B9A64; +extern s32 func_80014DC0(); +extern s32 func_80014D68(); +extern s32 func_80014D94(); +extern s32 func_80014CF8(); +extern void func_800120DC(); +extern s32 func_800CF8B4(); +extern u16 func_801487F4(s32 *a0); +extern u16 func_80148800(s32 *a0); +extern u8 func_8014880C(s32 *a0); +extern u16 func_80148818(s32 *a0); +extern s32 func_80047D3C(s32 a0); +extern s32 func_80148824(void *arg0); +extern s32 func_801488A8(u8 *a0); +extern s32 func_8014891C(s32 a0); +extern s32 func_80148980(u8 *a0); +extern s32 func_801489E8(s32 a0); +extern s32 func_80148A48(s32 a0); +extern int func_80148AFC(void *a0); +extern void func_80148AAC(u8 *a0); +extern s32 func_80148C18(void); +extern s32 func_80148C20(s32 a0, s16 a1); +extern s32 func_80148C34(s32 a0, s32 a1); +extern s32 func_80148C4C(s32 a0, s32 a1); +extern s32 func_80148C64(s32 a0, s32 a1); +extern s32 func_80148C7C(void); +extern s32 func_80148C84(s32 a0, s32 a1); +extern s32 func_80148C9C(s32 a0, s32 a1); +extern s32 func_80148CB4(s32 a0, s32 a1); +extern s32 func_80148CCC(s32 a0, s32 a1); +extern s32 func_80148CE4(void); +extern s32 func_80148CEC(void); +extern s32 func_80148CF4(s32 a0, s32 a1); +extern s32 func_80148D0C(s32 a0, s32 a1); +extern s32 func_80148D24(void *a0, int a1); +extern s32 func_80148D3C(void); +extern s32 func_80148F60(void); +extern s32 func_80148F68(s32 a0); +extern s32 func_80148F74(s32 a0); +extern s32 func_80148F80(s32 a0); +extern s32 func_80148F8C(s32 a0); +extern s32 func_80148F98(void); +extern s32 func_80148FA0(s32 a0); +extern s32 func_80148FAC(s32 a0); +extern s32 func_80148FB8(s32 a0); +extern s32 func_80148FC4(s32 a0); +extern s32 func_80148FD0(void); +extern s32 func_80148FD8(void); +extern s32 func_80148FE0(s32 a0); +extern s32 func_80148FEC(s32 a0); +extern s32 func_80148FF8(s32 a0); +extern s32 func_80149004(void); +extern void func_8014900C(s32 *a0); +extern void func_80149020(s32 *a0); +extern void func_80149034(s32 *a0); +extern void func_80149048(s32 *a0); +extern void func_8014905C(u8 *a0); +extern void func_801490E0(s32 *a0, s16 a1); +extern void func_801490E8(s32 *a0, s16 a1); +extern void func_801490F0(s32 *a0, s16 a1); +extern void func_80149078(s32 *a0, s32 a1, s32 a2, s32 a3); +extern s32 func_80012B04(s32 a0, s32 a1, s32 a2); +extern void func_801490F8(s32 a0, s32 a1); +extern s32 func_801491C4(s32 a0); +extern s32 func_80149184(s32 a0); +extern void func_80149204(s32 *a0); +extern void func_80149210(s32 a0, s32 a1); +extern s32 func_80149284(s32 *a0, s32 a1); +extern void func_80149350(s32 arg0); +extern void func_80149290(s32 a0); +extern void func_8012F14C(s32 a0, s32 a1, s32 a2); +extern void func_80149374(s32 arg0, s32 arg1); +extern void func_801493D0(s32 param_1, s32 param_2, s32 param_3); +extern void func_8012F038(int param_1, short *param_2, short *param_3); +extern void func_8014942C(s32 arg0); +extern void func_8012EF70(s32 a0, s32 a1); +extern void func_80149544(s32 arg0, s32 arg1, s32 arg2); +extern void func_8012EFB8(s32 a0); +extern void func_80149584(s32 arg0, s32 arg1, s32 arg2); +extern void func_8014964C(s32 param_1, s32 param_2); +extern s32 func_801496D4(void *a0); +extern void func_8015AD08(); +extern void func_80149704(void); +extern void func_8015ACC4(); +extern void func_80149724(void); +extern u8 D_80078EBF; +extern s32 func_80149744(struct S_80149744 *a0); +extern void func_8015F7A0(); +extern void func_80149788(void); +extern void func_801653B8(); +extern void func_80149864(void); +extern s16 currentLocationId; +extern s32 func_8016F1AC(void); +extern s32 func_80149884(void); +extern void func_80160B00(); +extern void func_801498C0(void); +extern s32 func_80149AA8(s32 *a0); +extern s32 func_80149B54(s32 *a0); +extern void func_80146750(void *a0); +extern s32 func_801498E0(s32 *a0); +extern void func_8012E5CC(s32 param_1, u16 param_2, u16 param_3); +extern void func_80147364(u16 a0, s32 a1); +extern s32 func_800CCF28(s32 a0); +extern s32 func_80149954(s32 s0); +extern s32 func_80149A64(s32 *a0); +extern void func_8015DAC4(s32 *a0); +extern void func_8015554C(s32 *a0); +extern void func_80149AD4(s32 *a0); +extern void func_80149B14(s32 *a0); +extern u8 func_8014BEF8(void); +extern s32 func_80149B54(s32 * arg0); +extern void func_8015DE24(s32 *a0); +extern void func_80157510(s32 *a0); +extern void func_80149BAC(s32 *a0); +extern s32 func_80029178(s32 a0); +extern s32 func_80149C08(s32 arg0); +extern void func_801577C8(); +extern void func_80149C94(void); +extern void func_80157D20(void); +extern void func_80149CB4(void); +extern s32 func_80149CD4(s32 a0); +extern u8 func_8014B5B8(s32 *a0); +extern s32 func_80149D10(s32 a0); +extern s32 func_80149E94(s32 a0); +extern s32 func_80149DD8(s32 a0); +extern s32 func_80149D9C(s32 a0); +extern s32 func_80149F2C(s32 a0, s32 a1); +extern s32 func_80149E94(s32 arg0); +extern void func_80149FA8(void); +extern s32 D_801913A8[]; +extern u8 D_80078E78[]; +extern s32 func_80149FB0(s32 a0); +extern s32 func_80135260(s32 arg0, s32 arg1, s16 *arg2, s16 *arg3); +extern void func_8014A1B0(s32 a0, s32 a1); +extern s32 func_8014A048(s32 param_1); +extern u16 func_80156370(u16 a0); +extern void func_8014C4AC(s32 a0, s32 a1, s32 a2, s16 *a3, s32 a4); +extern void func_8015D4B4(); +extern void func_8014A218(void); +extern s32 func_8014C278(s32 a0, s32 a1, s32 a2); +extern s32 func_8014C2B0(void *a0, void *a1, s32 a2); +extern s32 func_8014A238(s32 arg0); +extern s32 func_8014A2E4(s32 a0); +extern void func_8014A380(s32 a0, s32 a1); +extern s16 D_801152B0; +extern s16 D_801152B4; +extern s32 func_8014A3E0(struct S_8014A3E0 *a0); +extern s32 func_8014A454(s32 a0); +extern s32 func_8014A4B4(void *a0); +extern void func_8015EDD4(); +extern void func_8014A4FC(void); +extern s32 func_8014A674(s32 *a0); +extern s32 func_8014A69C(s32 *a0); +extern s32 func_8014A6C4(s32 a0); +extern void func_8015E184(); +extern void func_8014A830(void); +extern s32 func_80029AF4(void); +extern s32 func_8014A850(s32 param_1); +extern void func_8014AA04(s32 a0); +extern void func_801599A4(void *a0); +extern void func_80159B3C(void *a0); +extern s32 func_80165A20(s32 a0); +extern void func_8014AB7C(); +extern void func_8014AC10(); +extern void func_8014AA28(void); +extern void func_8014AB5C(void); +extern void func_80162CCC(void); +extern void func_8014AB7C(s32 arg0); +extern void func_8014ABF0(void); +extern void func_80016714(void *a0, s32 a1); +extern void func_8014AC10(s32 arg0); +extern void func_8014ACC0(s32 a0, s32 a1); +extern void func_8014AD30(s32 a0, u16 *a1, s32 a2, s32 a3); +extern void func_8014ACE8(void *a0, s32 a1, s32 a2); +extern void func_80146AFC(void *a0); +extern void func_8014ADA8(s32 a0, s32 a1); +extern void func_8014AD7C(s32 a0); +extern s32 D_80078E8C; +extern void func_8014B034(s32 arg0); +extern void func_8014B00C(s32 arg0); +extern void func_8014B084(void); +extern s16 D_80078E90; +extern void func_8014B034(s32 a0); +extern u16 D_80078EAC; +extern u8 D_80078EBA; +extern void func_800D10EC(void); +extern void func_8002AC98(void); +extern s32 func_8014B154(s32 *a0); +extern void func_8014B12C(void); +extern void func_8014B2F8(void); +extern void func_8014B4C4(void); +extern void func_8014B160(s32 a0); +extern s32 func_8016F1C4(void); +extern s16 D_80078E96; +extern s16 D_80078EB8; +extern u16 D_80078EA6; +extern void func_8014B2A8(void); +extern void func_8014B310(void); +extern void func_8014B2D0(void); +extern s32 D_80078E94; +extern s32 D_80078ECC; +extern void func_8014B33C(void); +extern u8 D_80062BF4[]; +extern void func_8014BC80(s32 a0, s32 a1); +extern void func_80019064(void *a0); +extern s32 D_80078E98; +extern void func_80166244(); +extern void func_8014B4D4(void *a0); +extern s16 D_80078E9A; +extern u8 D_80126D1C; +extern s32 D_80126D74; +extern void func_8014B598(s32 a0, s32 a1); +extern void func_8014B5B0(s32 *a0); +extern void func_8014B5C4(s32 *a0, s32 a1, s32 a2); +extern void func_8014B5D8(s32 s1); +extern s32 D_80078E9C; +extern s32 D_80078ED0; +extern void func_8014B6F0(s32 a0, s32 a1); +extern void func_8014B768(s32 a0, s32 a1); +extern void func_8014B944(s32 a0, s32 a1, s32 a2); +extern s32 D_80078EA4; +extern u16 D_80078EB2; +extern s16 D_80078EB4; +extern void func_8014BB0C(void); +extern void func_8014BB24(s32 a0, s32 a1, s32 a2); +extern void func_8014BC0C(s32 a0, s32 a1); +extern void func_8014BC44(s32 a0, s32 a1); +extern u8 D_800B9A17; +extern void func_8014BCC0(s32 a0, s32 a1); +extern u16 D_80078EB6; +extern s32 func_8014BCEC(s32 a0, s32 a1); +extern void func_8014BD24(s32 a0, s32 a1); +extern void func_8014BD60(s32 param_1, s32 param_2); +extern void func_8014BD98(s32 a0, u16 a1); +extern void func_8014BDC8(void); +extern void func_8014BDE0(void); +extern s32 func_8017267C(s32 *a0); +extern s32 func_80013294(void *a0, void *a1); +extern void func_80029ED4(s32 a0); +extern void func_8014BDE8(s32 a0); +extern void func_8014BE78(void); +extern void func_8014BE9C(void); +extern void func_80029124(s32 a0, s32 a1); +extern void func_8014BEC0(void); +extern void func_8014BF18(s32 a0); +extern void func_8014BF48(void); +extern u8 func_8014BF6C(void); +extern void func_8014BF8C(u8 arg0); +extern void func_8014BFB0(void); +extern u8 func_8014BFD4(void); +extern void func_8014BFF4(s32 a0, s32 a1); +extern void func_8014C010(s32 a0, s32 a1); +extern s32 func_8014C050(s32 a0, s32 a1); +extern s32 func_8014C088(s32 a0, s32 a1); +extern s32 func_8014C0C8(s32 a0_unused, s32 a1, s32 a2); +extern s32 func_8014C118(void * a0, s32 a1, s32 a2); +extern s32 func_8014C168(s32 * param_1, s32 param_2); +extern void func_8014C1C8(s32 arg0, s32 arg1, void *arg2); +extern u8 D_80191430[]; +extern void func_8014C1A0(s32 arg0, s32 arg1); +extern s32 func_80013328(s32 a0, s32 a1); +extern s32 func_8014C59C(void *a0, void *a1); +extern s32 func_8014C308(s32 arg0, s32 arg1, s32 arg2, s32 arg3); +extern s32 func_8014C43C(void *a0, s32 a1, s32 a2, s32 a3, s16 a5); +extern s32 func_8014C3A4(void *a0, s32 a1, s32 a2, s32 a3); +extern s32 func_8014C3D0(void *a0, s32 a1, s32 a2, s32 a3); +extern s32 func_8014C43C(void * a0, s32 a1, s32 a2, s32 a3, s16 a4); +extern s32 ratan2(s32 dx, s32 dy); +extern u8 D_80191438; +extern s32 func_8014C5FC(s32 a0, s32 a1, void *a2); +extern s16 func_8014C5D0(s32 a0, s32 a1); +extern s32 func_8014C5FC(s32 a0, s32 a1, void * a2); +extern u8 D_80126D17; +extern void func_8014C6AC(void); +extern void func_8014C6C0(void); +extern u8 D_80126D1E; +extern void func_8014C6D0(void); +extern void func_8014C6E0(void); +extern s32 func_8014C860(s32 a0, s32 a1); +extern void func_8014C8C8(s32 a0, s32 *a1); +extern void func_8014C88C(s32 a0); +extern void func_8014C8C8(s32 dst, s32 * src); +extern void func_8014C8F0(s32 arg0); +extern u8 D_801151F0[]; +extern s32 func_8014C918(s32 a0, s32 a1); +extern s32 D_80126B50; +extern void func_8014C968(void); +extern void func_8014C978(void); +extern s32 func_8014C98C(void); +extern void func_80139914(s32 a0); +extern s32 func_8014CA00(s32 a0); +extern u16 func_8014CA70(s32 a0, s32 a1); +extern s32 func_8014CA14(s32 a0, s32 a1); +extern u16 func_8014CAE4(s32 *a0, s32 a1); +extern s32 func_8014CA88(s32 *a0, s32 a1); +extern s32 func_8014CAFC(void); +extern s32 func_8014CB0C(void); +extern s32 func_8014CB1C(void); +extern u8 D_80126D1F; +extern s32 func_8014CB2C(void); +extern s32 func_8014CB58(void); +extern u8 D_80126D1D; +extern void func_8014CB68(void); +extern s32 func_8014CB7C(void); +extern s32 func_8014CB8C(void); +extern short D_80126C9E; +extern void func_8014CB9C(struct Packed8 *a0); +extern s32 D_80126CDC; +extern void func_8014CBD8(void); +extern s16 D_80126CC4; +extern void func_8014CBE8(void); +extern void func_8014CBF8(void *a0); +extern void func_8014D3E0(s32 a0); +extern void func_8014D04C(void); +extern void func_8014CCB4(void); +extern void func_8014CC28(s32 a0); +extern void func_8014CD0C(u8 *a0); +extern s32 func_8014CF04(s32 a0, s32 a1, void *a2); +extern void func_8014CD80(s32 a0, void *a1, void *a2); +extern void func_8014D0A4(s32 a0); +extern s32 func_8014D2A0(s32 a0, void *a1, void *a2); +extern s32 func_8014D12C(s32 a0, void *a1, void *a2); +extern void func_8014D438(s32 a0); +extern void func_8014D3E0(s32 _arg0); +extern void func_8014D610(s32 a0, void *a1, void *a2); +extern s32 func_8014D4C0(s32 a0, void *a1, void *a2); +extern void func_8014D790(s32 a0); +extern void func_8014D738(void); +extern s32 func_8014DD8C(s32 a0, void *a1, void *a2); +extern s32 func_8014D820(s32 a0, u16 *a1, u16 *a2); +extern s32 func_80135888(s32 a0, s32 a1, s32 a2, s32 a3); +extern s32 func_8014DCE0(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8014DD8C(s32 arg0, void *arg1, void *arg2); +extern void func_8014DF94(s32 arg0); +extern void func_8014DF3C(void); +extern s32 func_8014E284(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014E048(s32 a0, u16 *a1, u16 *a2); /* u16*: def lhu semantics (T5b reconcile; ptr param type codegen-neutral for the caller) */ +extern s32 func_80135A4C(s32 a0, s32 a1, s32 *a2, s32 a3); +extern s32 func_80133784(s32 a0, void *a1, s32 a2); +extern s16 D_801152AC; +extern s32 func_8014E048(s32 param_1, u16 * param_2, u16 * param_3); +extern void func_8014E48C(s32 a0); +extern void func_8014E434(void); +extern void func_8014E5B4(s32 a0, void *a1, void *a2); +extern s32 func_8014E514(u8 *a0, s32 a1, s32 a2); +extern void func_8014E6F8(struct SubE6F8 *a0); +extern void func_8014E6A0(void); +extern s32 func_8014E83C(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014E790(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014E790(s32 arg0, s16 * arg1, s16 * arg2); +extern s32 func_8014E83C(s32 arg0, s16 * arg1, s16 * arg2); +extern void func_8014E934(s32 _arg0); +extern s32 func_8014EA4C(void *a0, void *a1, void *a2, s32 a3); +extern s32 func_8014E98C(void *a0); +extern s32 D_801150D8; +extern s16 D_801152AA; +extern u8 D_80126720[]; +extern s16 D_80126724; +extern s32 func_8014EA4C(void * a0, void * a1, void * a2, s32 _arg3); +extern s32 func_8014ED80(struct SubED80 *a0); +extern int D_801DFF70; +extern void func_8014ED28(s32 _arg0); +extern s32 func_8014EE14(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014EE14(s32 arg0, s16 * arg1, s16 * arg2); +extern s32 func_8014F24C(struct SubF24C *a0); +extern void func_8014F1F4(void); +extern s32 func_8014F2E0(s32 a0, s16 *a1, s16 *a2); +extern s32 func_8014F2E0(s32 arg0, s16 * arg1, s16 * arg2); +extern s32 func_8014F4C0(); +extern s32 func_8014F468(void); +extern int func_8014F74C(); +extern int func_8014F6F4(void); +extern u8 D_800D3918[]; +extern s32 D_801152BC; +extern int func_8014F74C(s32 arg0); +extern s32 func_8014FA70(s32 a0); +extern s32 D_801DFF74; +extern void func_8014FA04(s32 a0); +extern s32 func_8014FBC0(); +extern s32 func_8014FC18(u8 *self); +extern int func_8014FD54(int param_1); +extern void func_8014FCFC(void); +extern void func_80150170(void *a0); +extern s32 func_8014FE60(void *a0); +extern void func_8014FDF4(struct S8014FDF4 *a0); +extern s32 func_8014FE60(void *e); +extern s32 func_80134510(s32 arg); +extern s32 func_80150150(s32 a, s32 b); +extern s32 func_80150460(s32 a, s32 b); +extern void func_801504D8(u16 *a0); +extern s32 func_80150480(s32 _arg0); +extern s32 func_80150528(void *a0, void *a1, void *a2); +extern s32 func_80150528(void *arg0, void *arg1, void *arg2); +extern s32 func_801506A4(s32 a0, s32 a1); +extern s32 func_801505FC(s32 a0); +extern s32 func_801506A4(s32 arg0, s32 arg1); +extern void func_80150820(s32 a0, s32 a1); +extern void func_8015086C(int param_1); +extern s32 func_801508B4(s32 a0); +extern s32 func_8015094C(s32 a0); +extern short func_801508F8(s32 a0); +extern s32 D_80191468; +extern s32 D_80126990; +extern s32 D_80126994; +extern u8 D_80126948[]; +extern s32 func_80021174(s32 a0, s32 a1); +extern s32 func_8015094C(s32 param_1); +extern void func_80150B9C(void); +extern s32 func_80151184(s32 a0, s32 a1, s32 a2); +extern s32 func_80150BA4(s32 a0); +extern s32 func_801619D0(void *a0); +extern void func_80150BC8(s32 *a0); +extern s32 func_80150480(s32 a0); +extern u16 D_800AE6DC; +extern void func_80150C48(s32 a0); +extern int func_80151184(int arg, int a1, int a2); +extern int func_80150CA0(int arg); +extern void func_80150EC4(s32 a, s32 b); +extern void func_80150CC4(s32 a); +extern void func_80150CE4(s32 a); +extern void func_80150D04(s32 a); +extern void func_80150D24(s32 a); +extern void func_80150D44(s32 a); +extern void func_80150D64(s32 a); +extern void func_80150D84(s32 a); +extern void func_80150DA4(s32 a); +extern void func_80150DC4(s32 a); +extern void func_80150DE4(s32 a); +extern void func_80150E04(s32 a); +extern void func_80150E24(s32 a); +extern void func_80150E44(s32 a); +extern void func_80150EC4(s32 a0, s32 a1); +extern void func_80150E64(s32 a0); +extern void func_80150E84(s32 a0); +extern void func_80150EA4(s32 a0); +extern u8 D_800AE6C0; +extern s16 D_800AE6C8; +extern s16 D_800AE6CA; +extern s16 D_800AE6CC; +extern s32 D_800AE6C4; +extern s16 D_800AE6CE; +extern u8 D_800AE6BE; +extern u8 D_801201F8[]; +extern void func_80150F78(void); +extern void func_80150F80(s32 a0); +extern int func_80150FB4(int arg); +extern void func_80150FD8(s32 a0); +extern int func_80151014(int arg); +extern void func_80151038(s32 a0); +extern int func_80151070(int arg); +extern int func_80151094(int arg); +extern void func_801510B8(void); +extern void func_801510C0(void); +extern int func_801510C8(int arg); +extern int func_801510EC(int arg); +extern s32 func_8012DB84(void); +extern s32 func_80151110(void); +extern void func_80151130(void); +extern int func_80151138(int arg); +extern void func_8015115C(s32 *a0, s16 a1); +extern s32 func_80151164(s32 a0, s32 a1); +extern s32 func_80151184(s32 arg0, s32 arg1, s32 arg2); +extern void func_801511A8(u8 *a0); +extern void func_801511C4(u8 *a0); +extern int func_80151204(int arg, int a1); +extern int func_801511E0(int arg); +extern int func_80151204(int a0, int a1); +extern void func_80151238(void *a0); +extern void func_8015126C(u16 *p); +extern void func_80151780(s32 a0); +extern void func_801516F0(s32 *a0); +extern void func_8015173C(s32 *a0); +extern s16 D_8011DB1A; +extern s32 D_80127518; +extern s32 D_801151FC; +extern s32 func_801725CC(u8 *a0); +extern s32 func_80029D3C(void); +extern void func_80151878(void); +extern void func_80153B58(s32 *a0); +extern s32 func_80151880(s32 a0); +extern s32 func_801518D8(s32 a0); +extern s32 func_80151944(void); +extern s32 func_80151924(void); +extern void func_8014E934(s32 a0); +extern s32 func_8014F3E8(s32 a0); +extern void func_801519C8(s32 a0); +extern void func_80151980(s32 a0); +extern M2C_UNK D_800D5880; +extern s32 D_800D58AC; +extern void func_80154274(s32 *a0, s32 a1); +extern void func_80154A74(s32 a0, s32 a1); +extern void func_801519C8(s32 arg0); +extern void func_80151C54(s32 a0); +extern void func_801542DC(s32 *a0, s32 a1); +extern void func_8015BDD0(s32 *a0); +extern void func_80165718(s32 a0); +extern u8 D_800D46E4[]; +extern void func_80151AE4(s32 arg0); +extern void (*D_80191510[])(void); +extern void func_80151D24(void *a0); +extern void func_80151DB0(s32 a0); +extern void func_80151D60(void *a0); +extern s32 func_80172630(u8 *a0); +extern s32 D_80062C14; +extern void func_80151DB0(s32 param_1); +extern void func_80151E78(s32 *a0); +extern void func_80151ECC(struct S80151ECC *a0); +extern void func_80151FB4(s32 a0); +extern void func_80151F38(s32 *a0); +extern void func_801553C0(s32 a0); +extern void func_80153C18(); +extern void (*D_80191534[])(void); +extern void func_80152058(void *a0); +extern void func_801520DC(s32 a0); +extern void func_80152094(s32 a0); +extern void func_80147324(s32 a0); +extern u8 D_80062C04[]; +extern M2C_UNK D_80191524; +extern void func_801520DC(s32 arg0); +extern void func_801470B4(s32 a0); +extern void func_8015369C(s32 a0); +extern void func_80152194(s32 *a0); +extern s32 func_801536DC(s32 a0); +extern void func_8015220C(s32 a0); +extern s32 func_80153800(s32 a0); +extern void func_801522CC(s32 a0); +extern void func_80152254(s32 *a0); +extern void (*D_80191548[])(void); +extern void func_80152370(void *a0); +extern void func_801523F4(s32 a0); +extern void func_801523AC(s32 a0); +extern void func_8001382C(s32 a0, void *a1, void *a2); +extern u8 D_80191554[]; +extern void func_801523F4(s32 arg0); +extern void func_801525F4(int); +extern s32 func_801535F4(void *arg0); +extern void func_8015BF48(s32 *a0); +extern void func_80152500(int param_1); +extern void func_801525F4(s32 a0); +extern void (*D_80191564[])(void); +extern void func_80152698(void *a0); +extern void func_80152714(s32 a0); +extern void func_801526D4(s32 a0); +extern void func_80152790(s32 a0); +extern void (*D_8019157C[])(void); +extern void func_8015282C(void *a0); +extern void func_801528B0(s32 a0); +extern void func_80152868(s32 a0); +extern M2C_UNK D_8019156C; +extern void func_801528B0(s32 arg0); +extern void func_8015294C(s32 a0); +extern void func_80152A08(s32 a0); +extern void func_80152AC8(s32 a0); +extern void func_80152A50(s32 *a0); +extern void (*D_80191590[])(void); +extern void func_80152B6C(void *a0); +extern void func_80152BF0(s32 a0); +extern void func_80152BA8(s32 a0); +extern void func_80152C80(s32 *a0); +extern void func_80152C40(s32 *a0); +extern void (*D_801915AC[])(void); +extern void func_80152D24(void *a0); +extern void func_80152DA8(s32 a0); +extern void func_80152D60(s32 a0); +extern M2C_UNK D_8019159C; +extern void func_80152DA8(s32 arg0); +extern void func_80152E4C(s32 a0); +extern void func_80152EFC(s32 a0); +extern void func_80152FBC(s32 a0); +extern void func_80152F44(s32 *a0); +extern void (*D_801915C0[])(void); +extern void func_80153060(void *a0); +extern void func_801530E4(s32 a0); +extern void func_8015309C(s32 a0); +extern void func_80155440(s32 *a0); +extern void func_801530E4(s32 arg0); +extern void func_80153150(struct S80153150 *a0); +extern void func_801531BC(s32 a0); +extern void func_8015327C(s32 a0); +extern void func_80153204(s32 *a0); +extern void (*D_801915D4[])(void); +extern void func_80153320(void *a0); +extern void func_801533A4(s32 a0); +extern void func_8015335C(s32 a0); +extern void func_80153410(s32 *a0); +extern void func_80153490(s32 a0); +extern void func_80153550(s32 a0); +extern void func_801534D8(s32 *a0); +extern void (*D_8011DB28)(s32 a0); +extern s32 func_801536DC(s32 param_1); +extern void func_800139C8(s32 a0, void *a1, void *a2); +extern s32 func_80153978(s32 a0, u16 *src); +extern s32 func_80133784(s32 a0, void *src, s32 dst); +extern s32 func_801539F8(s32 a0, void *a1); +extern s32 func_801539F8(s32 a0, void * a1); +extern s32 func_8016DA04(s32 a0); +extern s32 func_80153BD8(s32 a0); +extern s32 func_80153BF0(s32 a0); +extern void func_80153C18(void); +extern u16 D_8011F748; +extern void func_80153C30(void); +extern void func_80153C74(s16 a0, s16 a1); +extern s16 D_8011DB18; +extern void func_80153C44(int a0, int a1, s16 a2); +extern s16 D_8011DB0C; +extern s32 D_80115210; +extern void func_80153C8C(void); +extern void func_80153C9C(void); +extern s32 func_80153CBC(void); +extern s32 D_801915E8; +extern void (*D_80191610[])(void *a0); +extern void func_80153CCC(S80153CCC *a0); +extern void func_80153D7C(s32 a0); +extern void func_80153D34(s32 a0); +extern u8 D_801915F0; +extern void func_80153D7C(s32 param_1); +extern void func_8015410C(void); +extern void func_80153E00(s32 param_1); +extern void func_80151664(void); +extern void func_80154134(u8 *a0); +extern void func_80154190(u8 *a0, s32 a1); +extern void func_80154150(s32 a0, s32 a1); +extern void func_80154218(u8 *a0, s32 a1, s32 a2); +extern void func_801541D8(u8 *a0, s32 a1, s32 a2); +extern s32 func_801549F8(s32 a0, s32 a1, s32 a2); +extern void func_801542A4(); +extern void func_801542A4(s32 *a0, s32 a1); +extern void func_8015430C(); +extern void func_8015430C(u8 *arg0, s32 arg1, s32 arg2); +extern void func_8015444C(void *a0, s32 *a1, s32 *a2, s32 *a3); +extern s32 func_80154358(void * arg0); +extern void func_80154AB4(s32 a0, s32 a1); +extern void func_80154B20(s32 a0, s32 a1, s32 a2); +extern void func_80154AE0(s32 a0, s32 a1, s32 a2); +extern void func_80154B7C(u8 *a0, s32 a1); +extern void func_80154B4C(u8 *a0, s32 a1); +extern void func_80154BC8(void *a0, s32 a1, s32 a2); +extern void func_80154B98(void *a0, s32 a1, s32 a2); +extern u8 D_800D8D10[]; +extern s16 D_80078E9E; +extern void func_801550FC(s32 a0); +extern void func_80154ED8(s32 a0, s32 a1); +extern void func_80154F9C(s32 a0); +extern void func_800183E0(s32 a0); +extern void func_801550FC(s32 arg0); +extern void func_8001D150(s32, s32); +extern void func_8001D130(int, int); +extern void func_80155150(int param_1); +extern s32 D_800DE2A4[]; +extern void func_801552F4(s32 a0); +extern void func_80155344(s32 a0); +extern s32 func_80155394(s32 *a0); +extern void func_801553A8(s32 *a0); +extern s32 func_80029178(s32); +extern int (*D_8019165C[])(void); +extern s32 func_80155458(s32 param_1); +extern s32 func_801659DC(u8 *a0); +extern s32 func_801554B8(void *arg0); +extern void func_801555F4(void *a0); +extern void func_80155518(s32 *a0); +extern void func_80155580(void *a0); +extern void (*D_80191660[])(void); +extern s32 func_80161104(void); +extern void func_801555F4(void *); +extern void func_801555BC(void *a0); +extern int func_80155A44(int param_1); +extern int func_80161208(); +extern u8 D_800D4DA8[]; +extern void func_80155B20(s32 *a0); +extern s32 D_800D4DB4; +extern void func_80155B9C(s32 a0); +extern u8 D_800D4DD4[]; +extern void func_80155C0C(s32 *a0); +extern void func_8014ED28(s32 a0); +extern int func_80155FF8(int arg, int a1); +extern s32 D_800D4DF4; +extern void func_80155C64(s32 a0); +extern void func_8015E880(s32 *a0); +extern void func_80155D70(s32 param_1); +extern void func_80155E30(void *a0); +extern s32 func_80161208(); +extern void func_80155EA4(void *arg0); +extern void func_80155F58(void); +extern s32 func_80155F80(); +extern s32 func_80155F60(void); +extern s32 func_80155F80(s32 a0); +extern int func_80155FB0(int arg, int a1); +extern int func_80155FD4(int arg, int a1); +extern int func_80156044(int arg, int a1); +extern s32 func_80029B4C(s32 a0, s32 a1); +extern s32 func_80029BC8(s32 a0, s32 a1); +extern s32 func_80029C44(s32 a0, s32 a1); +extern s32 func_8015640C(s32 a0, s32 a1); +extern s32 rand(void); +extern u32 func_8015616C(s32 param_1, u16 param_2); +extern u16 func_80156370(u16 param_1); +extern s32 func_801564B0(s32 a0); +extern s32 func_8002A1B4(void); +extern s32 func_8002A400(void); +extern s32 func_8002A670(void); +extern s32 func_8002A8E0(void); +extern s32 D_801151E0[]; +extern s32 func_801565C0(void); +extern void func_80156A14(s32 *a0); +extern void func_80156648(s32 *a0); +extern u8 D_8011DAD8[]; +extern s32 func_8014C568(s16 *a0, s16 *a1); +extern void func_801567BC(s32 a0); +extern u8 D_80126730[]; +extern void func_80156848(s32 param_1, s32 param_2); +extern unsigned char D_8011520C[]; +extern unsigned short D_80191AC4[]; +extern void func_80156A1C(s32 param_1, s32 param_2); +extern s32 D_801150E0[]; +extern void func_80156A88(s32 a0, s32 a1); +extern void func_80156B74(s32 param_1, u32 param_2, u8 *param_3); +extern void func_80156ECC(int param_1, int param_2, int param_3, int param_4, int param_5); +extern void func_80156FA8(s16 *param_1, s16 *param_2, s16 *param_3); +extern void func_80157158(s32 a0, u16 a1, u16 a2, s32 a3, s32 a4, s32 a5, s32 a6, s32 a7, s32 a8, s32 a9, u16 a10, s32 a11, s32 a12); +extern s32 func_80135004(s32 a0, void *a1, s32 a2); +extern u32 func_801571C4(s32 a0, u16 a1, u16 a2, s32 a3, s32 a4, s32 a5, s32 a6, s32 a7, s32 a8, s32 a9, u16 a10, s32 a11, s32 a12); +extern void func_801575E4(void *a0); +extern void func_801574DC(s32 *a0); +extern void func_80157544(void *a0); +extern void (*D_80191AD4[])(void); +extern void func_8014CC28(s32 a0); /* defined */ +extern s32 func_8014F3E8(s32 a0); /* declared */ +extern void func_8015BDD0(s32 *a0); /* defined */ +extern void func_801575E4(void *a0); /* defined */ +extern void func_80157580(s32 arg0); +extern u8 D_800D4F14[]; +extern void func_801576A8(void *arg0); +extern s32 func_8015773C(u8 *a0); +extern s32 func_8015771C(u8 *a0); +extern s32 func_8015773C(u8 * arg0); +extern int D_801DFFA8; +extern void func_801578C0(s32 a0); +extern void func_80157788(int param_1); +extern void func_801577C8(s32 arg0); +extern void (*D_80191AFC[])(void); +extern void func_80157808(void *param_1); +extern void func_80157880(s32 a0); +extern s32 func_801725A4(u8 *a0); +extern u8 D_800D5128; +extern u8 D_80191ADC; +extern void func_801578C0(s32 param_1); +extern void func_80147A84(int); +extern void func_80148038(int, int); +extern void func_80147460(int); +extern void func_80146D90(int); +extern void func_80161450(void *a0); +extern void func_80157A8C(int); +extern void func_80154A74(int, int); +extern unsigned char D_800D5178; +extern unsigned char D_80191AEC; +extern void func_8015795C(int param_1); +extern void func_80161D20(s32 a0, s32 a1); +extern void func_80157A8C(s32 a0); +extern void func_8016706C(s32 a0); +extern u8 D_800D51AC[]; +extern void func_80157AC8(s32 param_1); +extern void func_80157B74(int param_1); +extern void func_8016158C(void *a0); +extern void func_8015BE04(s32 *a0); +extern void func_80157BC8(s32 a0); +extern void func_80157CCC(s32 a0); +extern void func_80157DC4(void *a0); +extern void func_80157FC4(void *a0); +extern void func_80157D74(u16 *a0); +extern void (*D_80191B3C[])(void); +extern void func_80157E38(void *); +extern void func_80157E00(void *a0); +extern void func_80157E38(void * a0); +extern s32 func_80157F64(s32 *a0); +extern s32 func_80156600(void *a0); +extern void func_80157EA4(void *a0); +extern void (*D_80191B44[])(void); +extern void func_80158038(void *); +extern void func_80158000(void *a0); +extern s32 D_800D51E0; +extern s32 D_80191B10; +extern void func_80158038(void * param); +extern u8 D_800D524C[]; +extern void func_80161418(void *a0); +extern void func_801580B4(s32 a0); +extern void func_801581AC(s32 a0); +extern void (*D_80191B50[])(void); +extern void func_8015824C(void *a0); +extern void func_801582C0(void *); +extern void func_80158288(void *a0); +extern u8 D_800D52A8[]; +extern void func_801585A4(s32 *a0); +extern void func_801582C0(void *a0); +extern s32 func_801585AC(s32 *a0); +extern u8 D_800D52E8[]; +extern void func_80158344(s32 *a0); +extern s32 func_801615C4(void *a0, s32 a1); +extern u8 D_80191B20; +extern u8 D_800D533C; +extern void func_80158434(s32 param_1); +extern void func_80158548(s32 param_1); +extern void func_801585EC(u8 *a0); +extern void func_80158794(void); +extern s32 D_801DFFB0; +extern s32 D_801DFFBC; +extern s32 D_801DFFC0; +extern void func_80158880(s32 *param); +extern void func_8015879C(s32 param_1); +extern void func_80158814(void *arg0); +extern void (*D_80191B8C[])(s32 *); +extern void func_80158AE4(void *a0); +extern void func_80158AB4(void *a0); +extern void func_8016F264(void); +extern void func_80165840(void); +extern void func_801658DC(void); +extern void func_80165A78(s32); +extern void func_80158AE4(void * a0); +extern M2C_UNK D_800D58D8; +extern void func_80158BB0(void *arg0); +extern s32 func_80159404(s32 a0, s32 a1); +extern void func_80158C40(s32 *a0); +extern void func_80158CD8(s32 *a0); +extern s32 func_80159434(s32 a0, s32 a1); +extern void func_80158D60(s32 a0); +extern M2C_UNK D_800D5904; +extern void func_80158E24(s32 *a0); +extern s32 D_80191B60[]; +extern int rand(void); +extern s32 func_8013767C(s32 a0); +extern void func_80158F00(int param_1); +extern u8 D_80110C3C[]; +extern s32 func_801399F0(s32); +extern void func_80139914(s32); +extern s32 func_80159464(void); +extern void func_801594E8(s32, s32); +extern void func_80158FA4(s32 param_1); +extern s32 func_801399F0(s32 a0); +extern u8 D_80110C94[]; +extern u8 D_80110CD4[]; +extern void func_80159070(void *a0); +extern s32 func_80029A94(s32); +extern void func_80175454(void); +extern void func_800298BC(void *); +extern void func_8002992C(s32); +extern void func_800CF804(void); +extern void func_800CF818(void); +extern u8 D_80110D0C[]; +extern void func_80159120(s32 a0); +extern void func_801592CC(s32 *a0); +extern u8 D_800AE6BD; +extern s32 D_801DFFB8; +extern void func_8015934C(void *arg0); +extern void func_801593E4(A801593E4 *a0); +extern void (*D_80191DDC[])(void); +extern void func_80159698(void *a0); +extern s32 func_801596D4(void *a0); +extern void func_80174B6C(void); +extern void func_80129248(s16 a0); +extern void func_8013C938(void); +extern void func_8013CB20(void); +extern void func_8013C98C(void); +extern void func_8002850C(s32, s32, s32); +extern void func_80028620(s32, void *); +extern s16 D_800B9AAC[]; +extern s16 D_800B9B00; +extern u16 D_801270C0; +extern u32 D_800AFAE8[]; +extern char D_80191BFC[]; +extern s32 func_801596F0(s32 param_1); +extern s32 func_80159874(void); +extern void func_800167B8(s32 a0); +extern s32 func_8015987C(s32 a0); +extern int func_800167F0(int arg); +extern int func_801598BC(void); +extern void func_80159968(void *a0); +extern void func_801598E0(u8 *a0); +extern void (*D_80191E80[])(void); +extern void func_80159A20(void *a0); +extern void func_801599E0(void *a0); +extern void func_80159A18(void); +extern void func_80159BE4(s32); +extern void func_80159B08(s32 *a0); +extern void func_80159B70(void *a0); +extern void func_80159B3C(void * a0); +extern void (*D_80191FD4[])(void); +extern void func_80159BAC(s32 a0); +extern s32 func_80172590(u8 *a0); +extern unsigned char D_80191DF0; +extern void func_80159BE4(s32 arg0); +extern void func_8015A1C8(s32 a0); +extern void func_8015A2D8(s32); +extern void func_8015A1FC(s32 *a0); +extern void func_8015A264(void *a0); +extern void func_8015A230(s32 *a0); +extern void (*D_80191FDC[])(void); +extern void func_8015A2A0(s32 a0); +extern int D_80191E00; +extern s32 func_80172608(u8 *a0); +extern void func_8015A2D8(s32 param_1); +extern u8 D_800D48DC; +extern s32 func_8015AB7C(s32 a0); +extern s32 D_8011F9C4; +extern s32 func_8015ABD4(s32 a0, s32 a1, s32 a2); +extern s32 func_80161CD0(s32 a0, s32 a1); +extern M2C_UNK D_80191E20; +extern void func_8015AC48(s32 arg0); +extern void func_8015AC90(s32 a0); +extern void func_8015ADB0(s32 a0); +extern void func_8015ACC4(s32 *arg0); +extern void func_8015AD3C(void *a0); +extern void func_8015AD08(void *arg0); +extern void (*D_80191FE4[])(void); +extern void func_8015ADB0(s32); +extern void func_8015AD78(s32 a0); +extern void func_8015ADB0(s32 arg0); +extern s32 D_800D4A9C; +extern int func_8015B6F4(int param_1); +extern u8 D_800D4F8C[]; +extern s32 func_8015B7B4(s32 a0); +extern u8 D_800D4BE0[]; +extern s32 func_8014A51C(void); +extern s32 func_8015B858(u8 *a0); +extern s32 D_800D4B48; +extern void func_8015B8F8(s32 *a0); +extern void func_8015BD8C(s32 *a0); +extern s32 func_8015BE94(); +extern void func_8015BE38(struct Obj *a0); +extern s32 func_8015BE74(void); +extern void func_80161124(void *a0); +extern s32 func_8015BE94(s32 *a0); +extern s32 func_8015AE2C(); +extern s32 func_8015BEC4(void); +extern s32 func_8015B950(s32 arg0); +extern s32 func_8015BEE4(void); +extern void func_8015BF04(s32 *a0); +extern void func_8015C0C4(s32 a0); +extern void func_8015BFF4(void *a0); +extern void func_8015BF7C(s32 *a0); +extern void func_8015C030(s32 *a0, s32 a1); +extern void func_8015BFB0(s32 *a0, s32 a1); +extern void (*D_8019200C[])(void); +extern void func_8015C0C4(s32); +extern void func_8015C08C(s32 a0); +extern s32 func_8015C128(s32 param_1); +extern void func_8015C6A4(void); +extern void func_8015C788(s32 a0); +extern void func_8015C6AC(s32 *a0); +extern void func_8015C714(void *a0); +extern void func_8015C6E0(s32 *a0); +extern void (*D_80192018[])(void); +extern void func_8015C788(s32); +extern void func_8015C750(s32 a0); +extern void func_8015CB94(s32 a0); +extern void func_8015CBCC(void); +extern void func_8015CBD4(void); +extern void func_8015CBDC(void); +extern void func_8015CBE4(void); +extern void func_8015CBEC(void); +extern void func_8015CBF4(void); +extern void func_8015CBFC(void); +extern void func_8015CC04(void); +extern void func_8015CC0C(s32 *param_1); +extern void func_8015CC74(s32 *a0); +extern void func_8015CC40(s32 *a0); +extern s32 func_8015CCD0(); +extern s32 func_8015CCB0(void); +extern s32 func_801725E0(u8 *a0); +extern s32 func_8015CCD0(s32 param_1); +extern s32 func_8015CD20(s32 arg0); +extern void func_8015CF24(s32 a0); +extern void func_8015D01C(); +extern void func_8015CF58(s32 *param_1); +extern void func_8015CFC0(s32 *a0); +extern void func_8015CF8C(s32 *a0); +extern void func_8015CFFC(void); +extern void func_8015D01C(int param_1); +extern void (*D_80191E8C[])(void *); +extern s32 func_801725F4(u8 *a0); +extern void func_8015D104(void *arg0); +extern s32 D_801920BC; +extern void func_8015D380(s32 a0); +extern unsigned char D_801911A0[]; +extern void func_8015D414(int param_1); +extern void func_8015D57C(s32); +extern void func_8015D480(s32 *a0); +extern s32 func_8015D4E8(s16 *a0); +extern void func_8015D4B4(s16 *a0); +extern void func_8015D524(s32 arg0); +extern void func_8015D544(s32 a0); +extern void func_801746DC(void); +extern void func_8015D57C(s32 arg0); +extern s32 func_80161B18(void *a0); +extern s32 func_80161B84(void *a0); +extern void func_80154150(int, int); +extern void func_80149374(int, int); +extern unsigned char D_801920D0[]; +extern void func_8015D5E8(int param_1); +extern int func_8015E0D4(int); +extern void func_8015DA5C(s32 a0); +extern void func_8015DB6C(s32 a0); +extern void func_8015DA90(s32 *a0); +extern void func_8015DAF8(s32 *a0); +extern void func_8015DB6C(s32); +extern void func_8015DB34(s32 a0); +extern void func_8015DCB8(s32 a0); +extern void func_8014BD60(s32 a0, s32 a1); +extern int func_8015DD74(int); +extern void func_8015DBD4(void *arg0); +extern int func_8015DC84(int a0); +extern s8 D_8019210C[]; +extern void func_8015DCB8(s32 param_1); +extern int func_8015DD74(int arg0); +extern void func_8015DECC(s32 a0); +extern void func_8015DDF0(s32 *a0); +extern void func_8015DE58(s32 *a0); +extern void func_8015DECC(s32); +extern void func_8015DE94(s32 a0); +extern void func_8015E018(s32 a0); +extern void func_8015DF34(void *arg0); +extern int func_8015DFE4(int a0); +extern void func_8015E018(s32 param_1); +extern int func_8015E0D4(int a0); +extern void func_8015E22C(s32 a0); +extern void func_8015E150(s32 *a0); +extern s32 func_8015E1B8(s32 a0); +extern void func_8015E184(s32 *arg0); +extern void func_8015E22C(s32); +extern void func_8015E1F4(s32 a0); +extern u8 D_800D4FF4[]; +extern u8 D_800D5098[]; +extern u8 D_800D5060[]; +extern s32 func_8014A850(s32 a0); +extern void func_8015E40C(s32 a0); +extern void func_8015E588(void); +extern void func_8015E4B0(s32 a0); +extern void func_8015E288(s32 a0); +extern u16 D_80192154; +extern u16 D_80192156; +extern u16 D_80192158; +extern s32 D_8019215C; +extern void func_80013E94(void *a0, void *a1); +extern void func_8015E4B0(s32 param_1); +extern void func_8013C9C4(void *a0); +extern s32 D_80192164; +extern void func_8015E5B0(u8 *self); +extern void func_8015E714(s32 *a0); +extern void func_8015E95C(s32); +extern void func_8015E84C(s32 *a0); +extern void func_8015E8E8(s32 *a0); +extern void func_8015E9B8(s32 *a0); +extern void func_8015E8B4(s32 *a0); +extern void func_8015E924(s32 a0); +extern void func_8015E95C(s32 a0); +extern s16 D_801152A0; +extern void func_80160818(s32 *a0); +extern void func_8015ED6C(s32 *a0); +extern void func_8015EE7C(s32); +extern void func_8015EDA0(s32 *a0); +extern s32 func_8015EE08(s32 a0); +extern void func_8015EDD4(s32 *arg0); +extern void func_8015EE44(s32 a0); +extern int D_800D4C48; +extern int D_80191E70; +extern void func_8015EE7C(s32 param_1); +extern void func_8015EEE0(void *arg0); +extern void func_8015EF9C(void); +extern void func_8015F080(s32); +extern void func_8015EFA4(s32 *a0); +extern void func_8015F00C(s32 *a0); +extern void func_8015EFD8(s32 *a0); +extern void func_8015F048(s32 a0); +extern void func_8015F080(s32 a0); +extern s32 D_80062BE8; +extern void func_801466F0(s32, s32, s32, s32, s32, s32, s32, s32); +extern s32 func_80161208(void); +extern void func_8015F118(void *a0); +extern void func_8015F260(s32 *a0); +extern void func_8015F380(); +extern void func_8015F2BC(s32 *a0); +extern void func_8015F324(s32 *a0); +extern void func_8015F2F0(s32 *a0); +extern void func_8015F360(void); +extern s32 func_801725B8(u8 *a0); +extern void func_8015F380(void* arg0); +extern void func_8015F738(s32 *a0); +extern void func_8015F848(s32 *a0); +extern void func_8015F76C(s32 *a0); +extern s32 func_8015F7D4(s32 a0); +extern void func_8015F7A0(s32 *arg0); +extern void func_8015F810(s32 *a0); +extern void func_80147078(s32 *, s16); +extern void func_80159B70(void *); +extern void func_8015F89C(void *arg0); +extern void func_8015F948(s32 *param_1); +extern void func_8015F9A4(void *arg0); +extern void func_8015FA24(s32 arg0); +extern void func_8015FBE0(s32 *a0); +extern void func_8015FA44(s32 *a0); +extern void func_8015FAAC(s32 *a0); +extern void func_8015FA78(s32 *a0); +extern s32 func_801612B8(void *a0, s32 a1); +extern void func_8016007C(s32 a0); +extern void func_8015FAE8(void *arg0); +extern void func_8015FCC8(void *param_1); +extern unsigned int D_801921E8[]; +extern void func_8015FD74(int param_1); +extern s32 func_80028DE0(void); +extern u8 func_80165700(s32 a0, s32 a1); +extern void func_8015FDCC(s32 a0); +extern u8 D_80078EC2; +extern u8 func_801656E8(s32 a0, s32 a1); +extern void func_80165670(s32 a0, s32 a1); +extern void func_8016004C(s32 a0); +extern void func_8015FF20(void *param_1); +extern void func_801601AC(s32 *a0); +extern void func_801600D0(s32 *a0); +extern void func_80160138(s32 *a0); +extern void func_80160104(s32 *a0); +extern void func_80160174(s32 *a0); +extern void func_801601E4(s32 *a0); +extern void func_80160244(s32 *a0); +extern void func_8016032C(void); +extern void func_80160410(s32 *a0); +extern void func_80160334(s32 *a0); +extern void func_8016039C(s32 *a0); +extern void func_80160368(s32 *a0); +extern void func_801603D8(s32 *a0); +extern u8 D_80062BD0; +extern void func_80160410(s32 * a0); +extern void func_801607B8(s32 *a0); +extern void func_801608C0(s32 *a0); +extern void func_801607E4(s32 *a0); +extern void func_8016084C(s32 *a0); +extern void func_80160888(s32 *a0); +extern void func_80160A28(s32 a0); +extern void func_80160A74(s32 *a0); +extern void func_80160BB4(s32 *a0); +extern void func_80160ACC(s32 *a0); +extern s32 func_80160B34(s32 a0); +extern void func_80160B00(s32 *arg0); +extern void func_80160B70(s32 a0); +extern void func_80160C28(void *arg0); +extern void func_80160CB4(s32 *a0); +extern void func_80160D10(void *arg0); +extern void func_80160DEC(u8 *a0); +extern void func_80160F00(); +extern void func_80160E3C(s32 *a0); +extern void func_80160EA4(); +extern void func_80160E70(s32 *a0); +extern void (*D_80192298[])(void); +extern void func_80160EA4(void *a0); +extern void func_80160EE0(void); +extern void func_80160F00(void* arg0); +extern void func_800D0F4C(s32 a0); +extern u8 D_80110EC0; +extern void func_80160F70(s32 a0); +extern void func_80160FE0(s32 *a0); +extern void func_80161034(void *a0); +extern void func_80161094(s32 a0); +extern void func_801610FC(void); +extern void func_801483E8(void); +extern s32 func_80161A60(s32 a0); +extern void func_8016130C(void *a0, s32 a1); +extern void func_80161240(void *a0); +extern void func_80161374(void *a0, s32 a1); +extern void func_80161278(void *a0); +extern s32 func_801612B8(void * a0, s32 a1); +extern void func_8016163C(void *a0, s32 a1); +extern void func_80161774(void *a0, s32 a1); +extern s32 func_8016197C(s32 a0, s32 a1); +extern s32 func_80161488(void *a0); +extern void func_80161888(void *a0, s32 a1); +extern void func_801614E4(void *a0); +extern void func_8016191C(void *a0, s32 a1); +extern void func_8016151C(void *a0); +extern void func_80161554(void *a0); +extern s32 func_801615C4(void * arg0, s32 arg1); +extern s32 func_801619A4(s32 *a0); +extern s32 func_80161A00(s32 a0); +extern s32 func_80161A30(s32 a0); +extern int func_801497A8(void); +extern int func_80161BE0(void *param_1); +extern u16 D_801922C8[]; +extern void func_80161C98(int param_1, u32 param_2); +extern void func_80161E08(s32); +extern s32 func_80162438(s32); +extern s32 D_800AE6A8; +extern void func_800D1734(void *); +extern s32 D_8019232C; +extern void func_80161D88(void); +extern void func_80161E08(s32 param_1); +extern int func_800291DC(int); +extern int func_800D0E30(void *a0); +extern int func_801620C4(void); +extern s32 func_800D0D7C(s32, s32); +extern int D_801DFFC8[]; +extern void func_8016216C(void); +extern u8 D_80078EB0; +extern u8 D_80078EB1; +extern s32 func_801621CC(s32 arg0); +extern void func_801622C4(void); +extern void (*D_80192350[])(void); +extern void func_80162330(void *a0); +extern void func_8014706C(void *a0); +extern s32 func_8016236C(u8 *a0); +extern void func_800D0C48(s32 a0); +extern s32 func_801623B8(s32 *a0); +extern s32 func_800167F0(s32 a0); +extern s32 func_80162414(void); +extern s32 func_80162438(s32 _unused0); +extern int func_801626B8(void); +extern void func_80162714(void); +extern int D_801E0020[]; +extern void func_80162760(void); +extern void func_801627C0(void); +extern void (*D_80192398[])(void); +extern void func_80162834(void *a0); +extern void func_8001CB6C(u8 *a0, s32 a1, s32 a2, s32 a3); +extern void func_80162968(s32 a0); +extern s32 func_80162ACC(u8 *a0); +extern u8 D_800B5CB8; +extern s32 D_80192388; +extern s32 D_800B5CBC; +extern u8 D_800B5CDF; +extern s32 D_800B5CEC; +extern void func_80162870(s32 param_1); +extern void func_801628F4(s32 *a0); +extern void func_80162968(s32 param_1); +extern void func_80162AC0(s32 *a0, s8 a1); +extern s32 func_80162AE0(u8 *a0); +extern void func_80162AF4(void); +extern void func_80162CC4(void); +extern s32 D_80126D40; +extern void func_80162B1C(void); +extern void func_80162D28(s32 *a0); +extern void func_80162D88(s32 *a0); +extern void func_80162DE8(s32 *a0); +extern void func_80162E48(s32 *a0); +extern void func_80162EA8(s32 *a0); +extern void func_80162F60(s32 arg0, s32 arg1); +extern void func_80162F80(s32 arg0, s32 arg1); +extern void func_80162FA0(s32 arg0, s32 arg1); +extern void func_80162F08(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80162FC0(s32 *a0); +extern void func_80162FF4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_801630C4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80163194(s32 a0, s32 a1, s32 a2, s32 a3, s32 arg4); +extern void func_8016325C(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80163234(s32 a0); +extern s32 D_80115100; +extern s32 func_801632E0(void); +extern s32 D_80115200; +extern s32 func_801632F0(void); +extern u16 D_80126B18[]; +extern void func_80163328(void); +extern s32 func_801633A8(void); +extern s32 func_80163408(s32 param_1, s32 param_2, s32 param_3, s32 param_4); +extern void func_80163534(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, u16 * a5); +extern void func_8016345C(s32 a0, u16 a1, s32 a2, u16 a3, s32 a4); +extern char D_801DF6DC[8]; +extern void *memcpy(void *dst, const void *src, unsigned int n); +extern void func_801634D8(s32 param_1, u16 param_2, u16 param_3, s32 param_4, u16 param_5); +extern void func_80157158(); +extern void func_80163664(s32 a0, u16 a1, u16 a2, s32 a3, s32 a4, s32 a5, s32 a6, s32 a7, s32 a8, s32 a9, u16 a10, s32 a11, s32 a12); +extern void func_801636D0(s32 a0, s32 a1); +extern s32 func_8016380C(struct S8016380C *a0, s32 a1); +extern void *memcpy(void *dst, void *src, s32 n); +extern s32 func_801638A0(u8 *a0, s32 a1); +extern s32 func_80163950(s32 a0); +extern void (*D_801923A0[])(void); +extern void func_80163A58(void *a0); +extern void func_80163A94(s32 param_1); +extern void func_80163C2C(s32 param_1); +extern void func_80163EC8(s32 param_1); +extern void func_80164270(s32 *a0); +extern void func_80164418(void); +extern void func_80163764(s32 a0); +extern void func_801642AC(s32 a0); +extern void func_8016432C(s32 a0); +extern void func_80164410(void); +extern s32 func_80012DBC(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80164530(s32 arg0); +extern void (*D_801923F4[])(void); +extern void func_80164744(s32 param_1); +extern void func_8001C810(s32 a0, s32 a1); +extern void func_80164A74(s32 *a0); +extern void func_80164930(s32 a); +extern u16 D_800DF2E0; +extern s32 D_801923BC; +extern s16 D_801923F0; +extern s16 D_801923EE; +extern s16 D_801923EC; +extern void func_801647A4(int param_1); +extern void func_80164ACC(); +extern void func_80164864(void *a0); +extern void func_80164930(s32 param_1); +extern s32 func_8014C308(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80164ACC(s32 a0); +extern void (*D_80192400[])(void); +extern void func_80164BA0(void *a0); +extern void func_8001CD50(s32 a0, s32 a1); +extern void func_800233CC(void *, unsigned short); +extern void func_80164DD0(s32 a0); +extern void func_80164DB0(void); +extern u8 D_801E0080; +extern u8 D_801E0081; +extern u8 D_801E0082; +extern u8 D_801E0083; +extern u8 D_801E0084; +extern u8 D_801E0085; +extern u8 D_801E0086; +extern u8 D_801E0087; +extern void func_80164BDC(s32 param_1); +extern void func_80164E40(void); +extern void func_80164CD4(u8 *a0); +extern void func_80164D4C(void *arg0); +extern void (*D_80192410[])(void); +extern void func_80164EA4(void *a0); +extern void func_80165124(void *a0); +extern void func_80164EE0(int param_1); +extern s32 func_80165140(s32 a0); +extern void func_801651B8(void *a0); +extern void func_80164F44(void *arg0); +extern void func_80165024(void *a0); +extern void func_80165064(s32 *a0); +extern void func_801650C4(s32 *a0); +extern s32 func_80165140(s32 param_1); +extern s32 func_80165240(s32 a0, s32 a1, s32 a2); +extern s32 D_801E00C0; +extern void func_801651B8(void * param_1); +extern u8 D_80126CF8; +extern void func_8016533C(void); +extern void func_801653F4(s32 a0); +extern void func_80165580(s32 a0); +extern void func_80165374(s32 a0); +extern void func_80165580(s32 _arg0); +extern void func_801653B8(s32 *a0); +extern s32 func_80165624(s32 a0); +extern u8 D_80078EC5; +extern void (*D_80192454[])(void); +extern u8 func_80165658(s32 a0, s32 a1); +extern void func_800CAE0C(s32 a0); +extern void func_801654A8(s32 arg0); +extern void func_80165B28(void *a0); +extern void func_801655E4(s32 a0); +extern u8 D_801924D0[]; +extern s32 D_801924F0[]; +extern u8 D_8019256C[]; +extern u8 func_801656D0(s32 a0, s32 a1); +extern u8 D_8019258C[]; +extern u8 D_801925AC[]; +extern void func_800CAF6C(void); +extern void func_80165770(void); +extern void func_801657D8(void); +extern u8 D_80078EC3; +extern void func_801657A0(void); +extern s32 D_80078EA0; +extern s32 D_80078EA8; +extern u8 D_80078EBB; +extern s32 D_80078ED4; +extern s32 D_80078ED8; +extern s32 D_80078EDC; +extern u8 D_80078EE0; +extern void func_80165874(void); +extern s8 D_80078EC4; +extern void func_801658EC(void); +extern s32 func_80165900(void); +extern s32 func_80165910(void); +extern s32 D_8012672C; +extern s32 D_8012811C; +extern s32 D_80126B08; +extern void func_80165938(void); +extern void func_80165958(void); +extern s32 func_80165978(void); +extern void func_80165988(void); +extern s32 func_801659A8(void); +extern void func_801659B8(void); +extern s32 func_801659CC(void); +extern void func_80165A18(void); +extern s32 func_80165A50(s32 _arg0); +extern void func_80165AC8(void); +extern void func_80165A78(s32 arg0); +extern void (*D_80192648[])(void); +extern void func_80165B08(void); +extern void func_80165B10(void); +extern void func_80165B18(void); +extern void func_80165B20(void); +extern void (*D_801926C4[])(void); +extern void func_80165BB4(u8 *a0); +extern void func_80165B6C(u8 *a0); +extern void func_80165C58(s32 arg0); +extern void func_80165BFC(void *a0); +extern void func_80165C78(void); +extern M2C_UNK D_801DF6EC; +extern void func_80165E2C(u16 *arg0); +extern s32 func_80165FA4(s32 a0, s32 a1, s32 a2); +extern s32 func_80167DBC(s32 a0, s32 a1, s32 a2); +extern s32 func_80167AE0(s32 a0, s32 a1, s32 a2); +extern void func_80165E90(void); +extern void func_80020F34(s32 a0, s32 a1); +extern s32 func_80165FA4(s32 arg0, s32 arg1, s32 arg2); +extern void (*D_801926D0[])(void); +extern void func_80166018(void *a0); +extern void func_80166054(s32 arg0); +extern void func_801661CC(s32 param_1); +extern void func_80166244(void* arg0); +extern void func_8016629C(void *a0); +extern void func_801662F4(void *a0); +extern void func_8016634C(void *a0); +extern void func_801663A4(void *a0); +extern void (*D_801926D8[])(void); +extern void func_801663FC(void *a0); +extern s32 func_800D21C4(s32 a0, void *a1, s32 a2); +extern void func_800D1FC8(s32 a0, s32 a1); +extern void func_80128EA8(s32 a0, s32 a1, s32 a2); +extern void func_801665B4(); +extern void func_80146C3C(); +extern void func_80166438(u8 *a0); +extern s32 func_80128ED8(s32 param_1, s32 *param_2); +extern void func_800D22E4(s32 a0); +extern void func_801665B4(s32 *a0); +extern void (*D_801927A0[])(void); +extern void func_80166618(void *a0); +extern void (*D_801927B0[])(void); +extern void func_80166654(void *a0); +extern s32 func_80166690(s32 param_1, s32 param_2); +extern s32 func_80166994(); +extern s32 func_80166F58(s32 param_1, s32 param_2, s32 param_3, s32 param_4); +extern s32 func_80167540(s32 arg0); +extern void (*D_801927C0[])(void); +extern void func_801678B4(void *a0); +extern void RotMatrixYXZ(void *a0, void *a1); +extern void func_80048EAC(void *a0, void *a1); +extern s32 func_801670E4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80146C3C(void); +extern void func_801678F0(s32 a0); +extern void (*D_801927CC[])(void); +extern void func_80167A9C(void *a0); +extern void func_80167AD8(void); +extern s32 func_80167AE0(s32 param_1, s32 param_2, s32 param_3); +extern void func_80168070(s32 a0, s16 *a1, s16 *a2, void *a3); +extern u8 D_8019272C[]; +extern u8 D_80192740[]; +extern s32 func_80167DBC(s32 arg0, s32 arg1, s32 arg2); +extern void func_800D20C0(void *a0, void *a1, s32 a2); +extern void func_80017E68(void *a0, void *a1); +extern void func_800D23D0(void *a0); +extern void ApplyTransposeMatrixLV(void *a0, void *a1, void *a2); +extern s32 D_801269A4; +extern s32 D_801269A8; +extern s32 D_801269AC; +extern void func_80168070(s32 param_1, s16 *param_2, s16 *param_3, void *param_4); +extern s32 func_80166994(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_8016829C(s32 a0); +extern s32 func_80166690(s32 a0, s32 a1); +extern void func_80168328(s32 arg0); +extern void func_801683D8(s32 a0); +extern void func_801684B4(s32 a0); +extern void func_80168540(s32 a0); +extern void func_801685EC(s32 a0); +extern void func_80168640(s32 a0); +extern s32 RotMatrixX(s32 a0, void *a1); +extern void func_80168664(void *arg0); +extern void (*D_801927E4[])(void); +extern void func_80168744(void *a0); +extern void func_80168BDC(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_801687CC(s32 a0); +extern void func_80168780(s32 a0); +extern void func_80168828(void); +extern void func_801687CC(s32 param_1); +extern void func_80168828(); +extern void (*D_801927EC[])(void); +extern void func_801689D8(void *a0); +extern void func_80168A14(s32 *a0); +extern void func_80168A88(void); +extern void (*D_801927F4[])(void); +extern void func_80168AA8(void *a0); +extern void func_80168AE4(s32 a0); +extern void func_800D2318(void); +extern void func_80168BDC(s32 param_1, s32 param_2, s32 param_3, s32 param_4); +extern void (*D_801927FC[])(void); +extern void func_80168D58(void *a0); +extern void func_80168D94(int a0); +extern void func_80168F40(); +extern void func_80168EC4(s32 a0); +extern void func_80168F40(void *arg0); +extern void (*D_80192804[])(void); +extern void func_8016901C(void *a0); +extern void func_80169058(s32 a0); +extern s32 func_80169228(void); +extern void func_801691B8(void *a0); +extern void (*D_8019280C[])(void); +extern void func_801693CC(void *a0); +extern void func_80169584(s32 param_1); +extern void func_80169408(s32 a0); +extern void func_8016951C(int param_1); +extern s32 func_80017758(void *a0, void *a1); +extern s32 func_80017DC4(void *a0, void *a1); +extern void func_801696D8(s32 a0, s32 a1); +extern void (*D_80192814[])(void); +extern void func_80169830(void *a0); +extern void func_8016986C(s32 a0); +extern s32 func_80169A4C(s32 a0, s32 a1); +extern void func_801699D0(void *arg0); +extern void (*D_801928C8[])(void); +extern void func_80169B80(void *a0); +extern void func_80169E44(s32 a0); +extern void (*D_801928D0[])(void); +extern void func_80169F00(void *a0); +extern char D_80192880[]; +extern char D_80192840[]; +extern void func_80169F3C(int param_1); +extern void func_80169FE0(s32 a0); +extern void (*D_80192908[])(void); +extern void func_8016A020(void *a0); +extern void func_8016A05C(void *a0); +extern void func_8016A290(s32 a, void *b, void *c); +extern void func_8016A08C(s32 param_1); +extern void func_8016A1CC(int param_1); +extern void func_8016A290(s32 param_1, void *param_2, void *param_3); +extern void (*D_80192914[])(void); +extern void func_8016A700(void *a0); +extern s32 func_8016A73C(s32 arg0); +extern s32 func_8016A8FC(s32 a0); +extern void func_8016A890(s32 arg0); +extern u16 D_80126B5E; +extern u16 D_80126B62; +extern u16 D_80126B66; +extern void func_8016AA50(s32 param_1, s32 param_2); +extern void (*D_8019295C[])(void); +extern void func_8016AB30(void *a0); +extern void func_8016B234(void); +extern void func_8016AFB0(s32 a0); +extern void func_8016B114(void *arg0); +extern s32 func_8016B448(s32, s32); +extern s32 func_8016BA48(s32 a0); +extern void func_8016B3F4(s32 a0); +extern s32 func_8016B428(s32 a0); +extern void func_8016B984(void *a0); +extern s32 func_8016B448(s32 arg0, s32 arg1); +extern void (*D_801929D8[])(void); +extern void func_8016B4BC(void *a0); +extern int func_8016B9F8(int); +extern int func_8016B834(int, int); +extern void func_8016B91C(int); +extern int D_801E03E0; +extern void func_8016B4F8(int param_1); +extern s32 func_8016B9F8(s32 param_1); +extern void func_8016B6BC(s32, s32, s32, s32); +extern void func_8016B91C(s32); +extern s16 D_801929CC[]; +extern void func_8016B5C0(s32 param_1); +extern void func_8001CD9C(int, void *); +extern int *D_80192A10[]; +extern unsigned short D_80192A18[]; +extern unsigned short D_80192A20[]; +extern unsigned char D_801E03E8[]; +extern int func_8016B834(int param_1, int param_2); +extern void func_8016B964(SrcB964 *a0, DstB964 *a1); +extern void func_8016B91C(s32 arg0); +extern s32 D_801E03E0; +extern s32 func_8016BA68(s32, s32); +extern void func_8016BADC(void *a0, s32 a1, s32 a2); +extern void (*D_80192A28[])(void); +extern void func_8016BBA4(void *a0); +extern s32 func_8016BBE0(s32 param_1); +extern void func_8016BFA8(s32 a0, s32 a1, s32 a2, s32 a3); +extern M2C_UNK D_801E051C; +extern M2C_UNK D_801E0520; +extern void func_8016BCC0(void *arg0); +extern s32 func_8016BD78(s32 param_1); +extern s32 func_8016BEA0(s32 param_1); +extern void func_8016BF34(void *a0); +extern void func_8016BFD0(s32 a0, s32 a1, s32 a2, s32 a3, void *a4); +extern s32 D_801E04A8; +extern void (*D_80192A58[])(void); +extern void func_8016C14C(void *a0); +extern s32 func_8016C374(s32 a0, s32 a1, s32 a2, s32 a3); +extern u8 D_801E0524[]; +extern u8 D_801E052C[]; +extern u8 D_801E04DC[]; +extern void func_8016C2C4(s32 param); +extern s32 func_8016C49C(s32 param_1_arg); +extern s32 VectorNormalSS(void *a0, void *a1); +extern void func_8016C74C(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4); +extern short func_8016CF04(s32 a0, s32 a1); +extern void func_8016C83C(s32 a0); +extern void (*D_80192A60[])(void); +extern void func_8016CB84(void *a0); +extern short func_8016CF04(s32 param_1, s32 param_2); +extern void (*D_80192A7C[])(void); +extern void func_8016D19C(void *a0); +extern void (*D_80192A84[])(void); +extern void func_8016D428(void *a0); +extern void func_8016D464(u8 *a0); +extern void func_8016D4DC(s32 a0); +extern void func_8016D5EC(s32 *a0); +extern short func_8016CBC0(void); +extern void func_8016D64C(int param_1); +extern void func_8016D778(s32 a0); +extern void func_800D20C0(); +extern void func_8016D848(s32 *a0); +extern void func_8016D984(s32 *a0); +extern void func_8016DBD8(u8 *a0); +extern void (*D_80192AEC[])(int); +extern void func_8016DA30(int param_1); +extern s32 func_8001CC3C(s32 a0, s32 a1, s32 a2, s32 a3); +extern u8 D_80192A90; +extern u8 D_80192A9C; +extern void func_8016DA7C(s32 param_1); +extern void func_8016DB34(s32 param_1); +extern void (*D_80192B20[])(void); +extern void func_8016DEA4(void *a0); +extern void func_8016DEE0(s32 a0); +extern void (*D_80192B28[])(void); +extern void func_8016DF20(void *a0); +extern void func_8016E3CC(s32 a0); +extern void func_8016E1CC(s32 a0); +extern void func_8016E26C(s32 *a0); +extern void func_8016E2E8(void *a0); +extern void func_8016E460(void *a0, void *a1); +extern void func_8016E358(void *a0); +extern void func_8016E460(void *arg0, void *arg1); +extern void (*D_80192B7C[])(void); +extern void func_8016E5B8(void *a0); +extern void func_8016E5F4(s32 arg0); +extern void func_8016E778(); +extern void func_8016E688(void *a0); +extern void func_8016E6E4(s32 a0); +extern void func_8016E728(u8 *a0); +extern void func_8016E7C8(int param_1, short *p1, unsigned int *p2); +extern void func_8016E778(int param_1); +extern void func_8016E7C8(int param_1, short *param_2, unsigned int *param_3); +extern s32 D_80115218; +extern void func_8016E8F0(void); +extern void func_8016E918(short param_1, short param_2); +extern s32 func_8016E95C(); +extern u16 D_80192BB0[]; +extern s32 func_8016EC0C(s32 a0, s32 a1); +extern void func_8016EAC0(Wave *param_1); +extern u8 D_80192BA0[]; +extern void func_8016EB3C(s32 p); +extern void func_8016EBA8(u8 *param_1); +extern void func_8016ED6C(void); +extern s32 D_80126D70; +extern void func_8016EDEC(s32 a0, s32 a1, s32 a2); +extern void func_8016ED8C(s32 a0, s32 a1, s32 a2); +extern void func_8016EE40(s32 a0, s32 a1, s32 a2); +extern void func_8016EDBC(s32 a0, s32 a1, s32 a2); +extern void func_8016EE94(); +extern void func_8016EDEC(s32 _arg0, s32 _arg1, s32 _arg2); +extern void func_8016EF78(s32 a0); +extern void func_8016EE40(s32 _arg0, s32 _arg1, s32 _arg2); +extern void func_801726D0(void *a0); +extern s32 D_80126D50; +extern s32 D_80126D54; +extern u8 D_80126D6C; +extern u8 D_80126D6D; +extern u8 D_80126D6E; +extern s32 D_80126D5C; +extern s32 D_80126D60; +extern s16 D_80126D64; +extern s16 D_80126D66; +extern s16 D_80126D68; +extern s16 D_80126D6A; +extern u8 D_80126D1A; +extern s32 D_80127058; +extern s32 D_8012705C; +extern s32 D_80127060; +extern s32 D_80127064; +extern s32 D_80127068; +extern s32 D_8012706C; +extern s32 D_80127070; +extern s32 D_80127074; +extern s16 D_80126D20; +extern void func_8016EE94(s32 a0, s32 a1); +extern s32 func_8016EFC8(s32); +extern s32 func_8016EFA8(s32 a0); +extern void func_8016F094(s32 *a0); +extern s32 func_8016F0AC(); +extern s32 D_80192BCC; +extern void func_8016F250(void); +extern void func_8016F288(void); +extern void func_8016F2A8(void); +extern void func_8016F2C8(void); +extern void func_8016F2EC(void); +extern void func_8016F30C(void); +extern void func_8016F330(void); +extern void func_8016F350(void); +extern void func_8016F374(void); +extern void func_8016F388(void); +extern void func_8016F398(void); +extern s32 func_8016F44C(s32 a0); +extern void func_8016F470(s32 a0); +extern s32 func_8016F410(s32 a0); +extern void func_80175414(s32); +extern s32 func_8016F4C4(s32); +extern s32 func_8016F494(s32 a0); +extern void func_8016F0E4(void); +extern s32 func_8016F4C4(s32 param_1); +extern void func_8016F4F4(void); +extern void func_801719A4(int a0, int a1); +extern void func_800D1724(s32 a0); +extern void func_80171928(void *a0); +extern void *D_8011F738; +extern void func_8016F4FC(void *a0); +extern void func_8014708C(void *a0); +extern void func_8016F540(void *a0); +extern void func_8016F578(s32 *a0); +extern void func_8016F5B0(void *a0); +extern void func_80147060(u8 *a0); +extern void func_8016F5E0(u8 *a0); +extern void func_8016F610(void *a0); +extern void func_8016F648(void *a0); +extern void func_8016F680(void *a0); +extern void func_8016F6B0(void *a0); +extern void (*D_80192C44[])(void); +extern void func_8016F6E0(void *a0); +extern s32 func_80171990(u8 *a0); +extern void func_8016F764(void *a0); +extern void func_8016F71C(u8 *a0); +extern void (*D_80192C4C[])(void); +extern void func_8016F798(void *a0); +extern void func_8016F804(void *a0); +extern void func_8016F7D4(u8 *a0); +extern void func_80171928(void *); +extern void (*D_80192C54[])(void); +extern void func_8016F834(void *a0); +extern void func_8016F8AC(u8 *a0); +extern void func_8016F870(u8 *a0); +extern void func_80172358(u8 *a0, u8 *a1); +extern void (*D_80192C5C[])(void); +extern void func_8016F8E4(void *a0); +extern void func_8016F95C(void *a0); +extern void func_8016F920(u8 *a0); +extern s32 func_80171CC4(void *a0, void *a1); +extern s32 func_80171D1C(void *a0, void *a1, s32 a2); +extern u16 D_8011F73E; +extern void (*D_80192C64[])(void); +extern void func_8016F9C4(void *a0); +extern void func_80171B44(s32 *a0); +extern void func_8016FA44(s32 a0); +extern void func_8016FA00(s32 a0); +extern s32 func_80171C64(s32 a0, s32 a1); +extern void (*D_80192C6C[])(void); +extern void func_8016FA84(void *a0); +extern void func_8016FB10(void *a0); +extern void func_8016FAC0(u8 *a0); +extern void func_8016FB50(void *a0); +extern void (*D_80192C78[])(void); +extern void func_8016FB7C(void *a0); +extern void func_8016FC24(); +extern void func_8016FBB8(s32 a0); +extern s32 func_80171B4C(s32 a0, s32 a1); +extern void func_8016FC24(s32 a0); +extern void func_8016FC64(void *a0); +extern void (*D_80192C84[])(void); +extern void func_8016FC90(void *a0); +extern void func_8016FD08(u8 *a0); +extern void func_8016FCCC(u8 *a0); +extern s32 func_80172658(s32 *a0); +extern void func_8016FD08(u8 *s0); +extern void func_8016FD7C(s32 *a0); +extern void (*D_80192C90[])(void); +extern void func_8016FDB4(void *a0); +extern void func_8016FE2C(u8 *a0); +extern void func_8016FDF0(u8 *a0); +extern void func_8016FE2C(u8 * a0); +extern s32 func_8016FE78(s32 *a0); +extern s32 func_80172664(s32 *a0); +extern void func_8016FED0(s32 *a0); +extern void (*D_80192CA0[])(void); +extern void func_8016FF30(void *a0); +extern void func_8016FFA8(u8 *a0); +extern void func_8016FF6C(u8 *a0); +extern void (*D_80192CB0[])(void); +extern void func_8016FFDC(void *a0); +extern void func_80170068(u8 *a0); +extern void func_80170018(u8 *a0); +extern void func_801700B8(u8 *a0); +extern void func_80170100(u8 *a0); +extern void (*D_80192CB8[])(void); +extern void func_80170150(void *a0); +extern void func_801701C8(u8 *a0); +extern void func_8017018C(u8 *a0); +extern void func_801701C8(u8 * a0); +extern void (*D_80192CC0[])(void); +extern void func_80170240(void *a0); +extern void func_801702B8(s32 a0); +extern void func_8017027C(u8 *a0); +extern s16 func_80171AB0(s32 a0, void *a1); +extern void (*D_80192CC8[])(void); +extern void func_801702FC(void *a0); +extern void func_80170374(u8 *a0); +extern void func_80170338(u8 *a0); +extern s32 func_8014C168(s32 *a0, s32 a1); +extern void func_80170374(u8 * a0); +extern void (*D_80192CD0[])(void); +extern void func_801703E0(void *a0); +extern void func_8017044C(u8 *a0); +extern void func_8017041C(u8 *a0); +extern void func_8017044C(u8 * a0); +extern void (*D_80192CD8[])(void); +extern void func_801704B0(void *a0); +extern void func_8017051C(void *a0); +extern void func_801704EC(u8 *a0); +extern void (*D_80192CE0[])(void); +extern void func_80170548(void *a0); +extern void func_801705C0(u8 *a0); +extern void func_80170584(u8 *a0); +extern void func_801705C0(u8 * a0); +extern void (*D_80192CE8[])(void); +extern void func_801705F8(void *a0); +extern void func_80170670(void *a0); +extern void func_80170634(u8 *a0); +extern void func_8012A568(void (*a0)(void)); +extern void (*D_80192CF0[])(void); +extern void func_801706AC(void *a0); +extern void func_80170718(void *a0); +extern void func_801706E8(u8 *a0); +extern void func_80129FF4(void); +extern void (*D_80192CF8[])(void); +extern void func_80170748(void *a0); +extern void func_801707D4(void *a0); +extern void func_80170784(u8 *a0); +extern s32 func_80174ED4(void); +extern void (*D_80192D00[])(void); +extern void func_80170810(void *a0); +extern void func_801708B0(void *a0); +extern u8 D_800D5DA8; +extern void func_8017084C(s32 a0); +extern u8 D_800D5A34[]; +extern void func_80170AD8(void *a0); +extern void func_80171904(s32 a0); +extern void func_80170B48(int a0); +extern void func_80170928(void); +extern u8 D_800D59EC[]; +extern void func_80170970(void); +extern u8 D_800D599C[]; +extern void func_801709B8(void); +extern u8 D_800D5934[]; +extern void func_80170A00(void); +extern void func_80170A48(void); +extern u8 D_800D5DC0[]; +extern void func_80170A90(void); +extern void (*D_80192D08[])(void); +extern void func_80170B14(int a0); +extern void func_80170B90(u8 *a0); +extern void (*D_80192D10[])(void); +extern void func_80170BD8(void *a0); +extern void func_80170C44(u8 *a0); +extern void func_80170C14(u8 *a0); +extern void (*D_80192D18[])(void); +extern void func_80170C74(void *a0); +extern s32 func_8017197C(u8 *a0); +extern void func_80170CF0(void *a0); +extern void func_80170CB0(u8 *a0); +extern void (*D_80192D20[])(void); +extern void func_80170D68(void *a0); +extern void func_80170DE0(u8 *a0); +extern void func_80170DA4(u8 *a0); +extern s32 D_8011F73C; +extern s32 D_8011F740; +extern void func_801718AC(void *a0); +extern void func_80170DE0(u8 * _arg0); +extern void (*D_80192D28[])(void); +extern void func_80170E34(void *a0); +extern void func_80170EAC(u8 *a0); +extern void func_80170E70(u8 *a0); +extern int func_800D0F8C(int a0); +extern void func_80170EAC(u8 * _arg0); +extern void (*D_80192D30[])(void); +extern void func_80170EFC(void *a0); +extern void func_80170F74(void *a0); +extern void func_80170F38(u8 *a0); +extern void (*D_80192D38[])(void); +extern void func_80170FB0(void *a0); +extern void func_80171028(void *a0); +extern void func_80170FEC(u8 *a0); +extern void (*D_80192D40[])(void); +extern void func_80171064(void *a0); +extern void func_801710DC(u8 *a0); +extern void func_801710A0(u8 *a0); +extern u16 D_8011F73A; +extern void func_801710DC(u8 * arg0); +extern void (*D_80192D48[])(void); +extern void func_80171120(void *a0); +extern void func_8017118C(u8 *a0); +extern void func_8017115C(u8 *a0); +extern void func_80142454(s32 a0); +extern void func_8017118C(u8 * a0); +extern void (*D_80192D50[])(void); +extern void func_801711C0(void *a0); +extern void func_80171238(void); +extern void func_801711FC(u8 *param_1); +extern void (*D_80192D58[])(void); +extern void func_80171260(void *a0); +extern s32 func_80012F74(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80171384(void *a0); +extern void (*D_80192D60[])(void); +extern void func_801714E4(void *a0); +extern void func_8017162C(void *a0); +extern void func_80171520(s32 a0); +extern s32 func_801716AC(s32 a0, void *a1, s32 *a2); +extern s32 func_80012FC8(s32 a0, s32 a1, s32 a2, s32 a3); +extern u8 D_800A5E94; +extern u8 D_800A5E95; +extern u8 D_800A5E96; +extern s32 func_801716AC(s32 a0, void * a1, s32 * a2); +extern int func_800D0FE0(int a0); +extern void func_801717A0(void *a0); +extern void func_8013E588(void *a0); +extern void func_801717F4(void *a0); +extern void func_80171824(void *a0); +extern void func_80171854(void *a0); +extern void func_80171884(void); +extern void func_80171A1C(u8 *a0); +extern void func_80171928(void * a0); +extern void func_8017196C(s32 *a0, s8 a1); +extern void func_80171A04(s32 *a0); +extern void func_80171A10(s32 *a0); +extern void func_80171A34(s32 *a0, s8 a1); +extern s32 func_80171A44(u8 *a0); +extern s32 func_80171A58(u8 *a0); +extern s32 func_80171A6C(u8 *a0); +extern void func_80171A80(s32 *a0, s32 a1); +extern s32 func_80171A88(s32 a0); +extern s16 func_80171AB0(s32 param_1, void * _arg1); +extern void func_80171B10(void *a0); +extern void func_80171EC8(s32 a0); +extern s32 func_80171C64(s32 param_1, s32 param_2); +extern s32 func_80171D78(s32 a0, s32 a1); +extern int func_8017250C(short *a0, short *a1); +extern s32 func_80171CC4(void * a0, void * a1); +extern s32 func_80171FFC(short *a0, short *a1, s32 a2); +extern s32 func_80171D1C(void * a0, void * a1, s32 a2); +extern s32 func_8017248C(s32 a0, s32 a1); +extern s32 func_80171E08(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); +extern void func_80172170(s32 a0, s32 a1); +extern s32 func_8017209C(void *arg0, void *arg1, s32 arg2, s32 arg3); +extern void func_801722CC(s32 *a0); +extern void func_80172304(s32 *a0); +extern void func_80172310(u8 *a0); +extern void func_801723C4(s32 param_1, s32 param_2); +extern void func_80161C24(s32, s32); +extern void func_80172414(s32 a0); +extern s32 func_801724EC(s32 a0); +extern s32 func_8017248C(s32 arg0, s32 arg1); +extern s32 func_80013450(s32); +extern s32 func_80172560(u8 *a0, u8 *a1); +extern s32 func_8017261C(u8 *a0); +extern s32 func_80172644(u8 *a0); +extern s32 func_80172670(s32 *a0); +extern s32 func_80172688(s32 *a0); +extern s32 func_80172694(s32 *a0); +extern s32 func_801726A0(s32 *a0); +extern s32 func_801726AC(s32 *a0); +extern s32 func_801726B8(s32 *a0); +extern s32 func_801726C4(s32 *a0); +extern s32 func_80172760(s32 a0); +extern s32 func_80174650(s32); +extern void (*D_80127088)(void); +extern s32 D_801270BC; +extern s16 D_80126B0C; +extern void func_801726D0(void * _arg0); +extern void func_80172710(void); +extern void func_80174684(void *); +extern void func_80172738(void); +extern s16 D_80126B30; +extern s32 func_801727D0(void *a0); +extern void func_80172780(void *a0); +extern void func_80172844(u8 *a0); +extern void func_8017280C(u8 *a0); +extern void func_8017288C(void); +extern s32 func_801728E4(void *a0); +extern void func_80172894(void *a0); +extern void func_80172958(u8 *a0); +extern void func_80172920(u8 *a0); +extern s16 D_80126B36; +extern void func_80172958(u8 * a0); +extern void func_801729A8(void); +extern s32 func_801729F0(void *a0); +extern s16 D_80126B34; +extern s16 D_80126B32; +extern void func_801729B0(s32 a0); +extern void func_80172A8C(void *a0); +extern void func_80172A2C(int param_1); +extern void func_80172ACC(u8 *a0); +extern void func_80172B0C(void); +extern s32 func_80172B44(void *a0); +extern void func_80172B14(s16 a0); +extern s32 D_801150F8; +extern void func_80172BC8(void *a0); +extern void func_80172B80(u8 *a0); +extern void func_80172C48(void); +extern void (*D_80192DA4[])(void); +extern void func_80172CA0(void *a0); +extern void func_80172D14(u8 *a0); +extern void func_80172CDC(u8 *a0); +extern void func_80172D14(u8 * a0); +extern void func_80172D60(void); +extern s32 D_80127508; +extern s32 func_80172DAC(void *a0); +extern void func_80172D68(s32 a0); +extern void func_80172E20(u8 *a0); +extern void func_80172DE8(u8 *a0); +extern void func_80172E20(u8 * a0); +extern void func_80172E8C(void); +extern void func_8017303C(void *); +extern void func_80172E94(void); +extern void func_80172ED4(void); +extern void func_80172EFC(void); +extern void func_80172F24(void); +extern u8 D_800D47F4[]; +extern void func_80172F4C(void); +extern void func_80172F9C(void); +extern u8 D_800D5C6C[]; +extern void func_80172FEC(void); +extern s32 func_80173078(void *a0); +extern void func_8017303C(void * a0); +extern void func_801730FC(struct S801730FC *a0); +extern void func_801730B4(s32 a0); +extern void func_8017316C(void); +extern s32 func_8017319C(void *a0); +extern void func_80173174(void); +extern u8 D_800D5AA0[]; +extern void func_80173220(void *a0); +extern void func_801731D8(s32 *a0); +extern M2C_UNK D_80192D68; +extern void func_80173220(void * arg0); +extern void func_80173294(void); +extern void func_801732C4(); +extern void func_8017329C(void); +extern void func_801732C4(s32 *a0); +extern void func_8017331C(); +extern void func_801732F4(void); +extern void func_8017331C(s32 *a0); +extern void func_80173374(); +extern void func_8017334C(void); +extern void func_80173374(s32 *a0); +extern void func_801733A4(void); +extern void func_801733CC(s32 a0); +extern void func_801734BC(s32 a0, s32 a1); +extern s16 D_80126B3E; +extern void func_80173460(s32 a0, s32 a1); +extern void func_801734BC(s32 arg0, s32 _unused1); +extern void (*D_80192DD4[])(void); +extern void func_80173544(void *a0); +extern void func_801735B8(u8 *a0); +extern void func_80173580(u8 *a0); +extern s16 D_80126B40; +extern void func_801735EC(void *a0); +extern void func_80173648(u8 *a0); +extern void func_801736A8(void); +extern s32 func_8014C118(void *a0, s32 a1, s32 a2); +extern s32 func_801736FC(void *a0); +extern void func_801736B0(s32 a0, s32 a1); +extern void func_80173770(u8 *a0); +extern void func_80173738(u8 *a0); +extern void func_801723C4(s32 a0, s32 a1); +extern void func_801737B0(void); +extern s32 func_801737E8(void *a0); +extern void func_801737B8(s16 a0); +extern void func_8017385C(u8 *a0); +extern void func_80173824(u8 *a0); +extern void func_801738D4(void); +extern s32 func_8017390C(void *a0); +extern void func_801738DC(s16 a0); +extern void func_80173980(u8 *a0); +extern void func_80173948(u8 *a0); +extern void func_801739D8(u8 *a0); +extern void func_80173A20(void); +extern s32 D_8012750C; +extern void func_80173A60(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4); +extern void func_80173A28(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5); +extern void (*D_80192E10[])(void); +extern void func_80173B4C(void *a0); +extern void func_80173BC0(u8 *a0); +extern void func_80173B88(u8 *a0); +extern void func_80173C64(u8 *a0); +extern void func_80173E1C(s32 a0); +extern s16 D_80126938; +extern s16 D_80126B3A; +extern void func_800D128C(s32, s32); +extern void func_80174158(s32 a0); +extern void func_8002A088(s32); +extern void func_8002A2D4(s32); +extern void func_8002A544(s32); +extern void func_8002A7B4(s32); +extern s32 func_80174188(s32 a0); +extern void func_801741A8(s32 a0); +extern s32 func_800D0EC4(void); +extern void func_800D0F0C(s32, s32); +extern void func_80145EE8(s32); +extern void func_80173EF8(void *param_1); +extern s32 func_8014BCEC(s32, s32); +extern void func_801741A8(s32 _arg0); +extern s16 D_80126B3C; +extern s16 D_8011F9C8; +extern void func_801741EC(u8 *a0); +extern void func_80174274(void); +extern s32 func_801742A4(void *a0); +extern void func_8017427C(void); +extern void func_80174318(u8 *a0); +extern void func_801742E0(u8 *a0); +extern void func_80174354(void); +extern s32 func_80174384(void *a0); +extern void func_8017435C(void); +extern void func_801743F0(u8 *a0); +extern void func_801743C0(u8 *a0); +extern void func_801743F0(u8 * a0); +extern void func_80174430(void); +extern s32 func_80174474(void *a0); +extern void func_80174438(s32 a0); +extern void func_801744E0(u8 *a0); +extern void func_801744B0(u8 *a0); +extern void func_80174524(void); +extern void func_80174554(); +extern void func_8017452C(void); +extern void func_80174554(s32 arg0); +extern void func_801745AC(); +extern void func_80174584(void); +extern void func_801745AC(s32 *a0); +extern void func_80174604(void); +extern void func_801745DC(void); +extern void func_80174630(void); +extern s32 func_80174650(s32 _arg0); +extern void func_80174674(void); +extern void func_801746A4(void); +extern s32 func_800CF8CC(void); +extern void func_80174714(void); +extern s32 func_80174754(void); +extern s16 func_80174764(void); +extern s16 func_80174774(void); +extern s32 func_801747CC(void *a0); +extern void func_80174784(void); +extern s32 func_801747AC(s32 a0); +extern s32 func_80174808(u8 *a0); +extern void func_8017481C(void); +extern s32 func_80174888(void *a0); +extern void func_80174824(void); +extern void func_8017484C(s32 a0); +extern void func_801748C4(s32 a0); +extern void func_801748E4(void); +extern void func_8012A018(s32 a, s32 b); +extern s32 func_8017496C(void *a0); +extern s32 D_80126954; +extern s32 D_80126950; +extern s32 D_8012695C; +extern s16 D_80126968; +extern s16 D_8012696A; +extern s16 D_8012696C; +extern s16 D_80126976; +extern s16 D_80126978; +extern s16 D_8012697A; +extern void func_801748EC(void); +extern s32 func_801749C8(); +extern s32 func_801749A8(s32 a0); +extern void func_80174BBC(void *a0); +extern void func_8012A0E0(void); +extern void func_80174BF4(void *a0); +extern void (*D_80192E68[])(); +extern void func_80174BF4(void * arg0); +extern s32 func_80174CB0(s32, s32); +extern s32 func_80174C60(s32 a0); +extern void func_80174C80(s32 a0); +extern s32 D_8012697C; +extern u16 D_80126980; +extern s32 func_80174F28(void *a0); +extern void func_80174E9C(s32 a0); +extern void func_80174EF0(s32 a0, s16 a1); +extern s32 func_80175014(u8 *a0, u8 *a1, s32 a2); +extern void func_80174F64(u8 *a0); +extern void func_80174FBC(u8 *a0); +extern s32 func_8017509C(u8 *a0, s32 a1, u8 *a2, u8 *a3); +extern void func_80175184(s32 *a0); +extern void func_80175114(s32 *a0); +extern void func_80175184(); +extern void func_80175150(s32 *a0); +extern void (*D_80192E78[])(void*); +extern s32 func_80175268(s32); +extern void func_80175184(s32* arg0); +extern s32 func_80175218(void *a0); +extern void func_801751D8(void *a0); +extern void (*D_80192E80[])(s32); +extern s32 func_80175218(void * param_1); +extern void func_801752BC(s32 *a0); +extern u8 D_8011F7A8; +extern u8 D_8011F7A9; +extern u8 D_8011F7AD; +extern u8 D_8011F7AE; +extern void func_80175414(s32 _arg0); +extern void func_80175494(void); +extern void (*D_80192FE8[])(); +extern s32 func_801758FC(void); +extern s32 func_80175820(void); +extern s32 func_801759D8(void); +extern void func_8017553C(s32 *param); +extern void func_801757A0(s32 a0); +extern short D_800B9A02; +extern void func_80175590(void *arg0); +extern s16 D_800B9A02; +extern void func_801757A0(s32); +extern void func_80175624(void *a0); +extern void func_801757E0(int); +extern void func_80175668(void); +extern void (*D_80192FF4[])(); +extern void func_80175690(s32 *param); +extern void func_80175DA8(s32 a0); +extern void func_80175AB8(s32 a0); +extern void func_80176144(s32 a0); +extern void func_801756E4(s32 arg0); +extern void func_80175798(void); +extern void func_80176734(s32 a0); +extern void func_80176218(s32 a0); +extern void func_80176D00(s32 a0); +extern void func_801757E0(s32 a0); +extern s32 func_80178004(s32 a0, s32 a1, s32 a2); +extern u8 D_8011F7B1; +extern u16 D_8011F7B4; +extern u16 D_8011F7B6; +extern s16 D_8011F81E; +extern void *func_80177784(void *a0, s32 a1, s32 a2, s32 a3); +extern u32 func_801783D0(s32 a0, s32 a1); +extern void *func_801777BC(void *a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5, s32 a6); +extern u16 D_8011F82C; +extern u16 D_8011F82A; +extern u32 * func_80176D94(void *param_1, u32 param_2, s16 param_3_); +extern void func_801778A8(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_80176FF4(s32 a0); +extern u16 D_8011F830; +extern u16 D_8011F82E; +extern u32 * func_801770E0(void *param_1, u32 param_2, s16 param_3_); +extern void func_80177340(s32 a0); +extern u8 D_8011F837; +extern u8 D_8011F7F0; +extern u8 D_8011F7AB; +extern u32 * func_8017742C(u32 *param_1, s32 param_2, s32 param_3); +extern void func_801776EC(u8 *a0); +extern void * func_80177784(void *a0, s32 a1, s32 a2, s32 a3); +extern uint * func_80177EA4(uint *param_1, int param_2, uint param_3, int param_4); +extern void func_80177F84(s32 param_1, s32 param_2); +extern u32 * func_80178298(u32 *param_1, u8 *param_2, short param_3, short param_4); +extern M2C_UNK D_801DF934; +extern void func_80178438(u16 *arg0); +extern void func_801787D4(void); +extern void func_8012A908(void); +extern void func_8017869C(s32 a0); +extern void func_80130D0C(s32 a0); +extern void func_8013E370(void); +extern s32 D_8011DB08; +extern void func_8017849C(void); +extern void func_8013E4B4(void); +extern s16 D_801270C4; +extern s32 D_801274D8; +extern s16 D_801270C2; +extern u8 D_801270C6; +extern u8 D_801270C7; +extern s32 D_801274DC; +extern s32 D_801274E0; +extern void func_80178608(void); +extern void func_80178744(s32 a0, s32 a1); +extern void func_80178840(); +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern void func_8012E8E0(s32 a0, s32 a1); +extern void func_8012B2CC(s32 a0); +extern s32 func_801788B8(s32 arg0, s32 arg1); +extern s32 func_801789AC(s32 arg0); +extern s16 D_801E18F0; +extern int func_80178970(void); +extern s32 func_80178B18(s32 param_1, s32 param_2); +extern s32 func_80178B70(s32 param_1, s32 param_2); +extern void func_80178BB8(s32 a0, s32 a1); +extern s32 func_80178BF8(); +extern s32 D_801E0C60; +extern short D_801E1964; +extern void func_80178CBC(s32 arg0, s32 arg1); +extern void func_80178D18(void); +extern s32 func_80178D40(s32 arg0, s32 arg1); +extern void func_80179B28(s32 a0); +extern void func_80179B74(u16 *p); +extern void func_80179D30(u16 *a0); +extern void func_80179D78(u16 *a0); +extern void func_80179DCC(short a0); +extern void func_80179DF8(void); +extern void func_80179E1C(short a0); +extern void func_80179E48(s16 a0); +extern void func_80179E74(s16 a0); +extern void func_80179EA0(u16 *a0); +extern void func_80179EE8(short a0); +extern void func_80179F14(s16 a0, s16 a1); +extern void func_80179F44(void); +extern void func_80179F6C(short a0); +extern void func_80179F98(u16 *a0); +extern void func_80179FEC(u16 *a0); +extern void func_8017A040(u16 *a0); +extern s32 D_801E108C; +extern void func_8017A094(s32 arg0); +extern void func_8017A0C4(s32 arg0); +extern void func_8017A0F4(void); +extern void func_8017A11C(void); +extern s32 D_801E10B4; +extern void func_8017A144(s32 a0); +extern void func_8017A180(void); +extern void func_8017A1A8(void); +extern void func_8017A1D0(void); +extern void func_8017A1F8(void); +extern void func_8017A220(void); +extern void func_8017A248(void); +extern void func_8017A270(void); +extern void func_8017A298(void); +extern void func_8017A2C0(void); +extern void func_8017A2E8(void); +extern void func_8017A310(void); +extern void func_8017A338(void); +extern void func_8017A360(void); +extern void func_8017A388(void); +extern s16 D_801E1070; +extern s32 func_8017A3B0(void); +extern short D_801E10AC; +extern short D_801E10A8; +extern int func_800D0CA0(int); +extern int func_8001AAA0(void); +extern int func_800D0CE0(void); +extern int func_8017A3D8(void); +extern void func_80172310(u8*); +extern void func_80172780(void*); +extern void func_80172894(void*); +extern void func_801729B0(s32); +extern void func_80172B14(s16); +extern void func_80172C50(u16 *); +extern void func_80172D68(s32); +extern void func_801733FC(s16, u16 *); +extern void func_80173460(s32, s32); +extern void func_801734BC(s32, s32); +extern void func_801736B0(s32, s32); +extern void func_801737B8(s16); +extern void func_801738DC(s16); +extern void func_80173A28(s32, s32, s32, s32, s32, s32); +extern void func_80174438(s32); +extern void func_8017A4AC(void); +extern s32 func_8017AD0C(s32 arg0); +extern s32 func_8017AD0C(s32); +extern s32 func_8017ADE8(s32 a0); +extern s32 func_8017AE08(void); +extern void func_8017B0E4(int param_1, int param_2); +extern s16 D_801E1074; +extern u16 D_801E10F4; +extern u16 D_801E10F6; +extern u16 D_801E10F8; +extern void func_8017B1D8(void); +extern s32 func_8017B238(s32 param_1, s32 param_2); +extern s32 func_8017B368(s32 param); +extern s32 func_8017B614(s32 param_1, s32 param_2); +extern s32 D_80114F30; +extern s32 D_80114F34; +extern s32 D_80114F38; +extern s32 D_80114F24; +extern s32 D_80114F28; +extern s32 D_80114F2C; +extern u8 D_8012694C; +extern s16 D_801E10EC; +extern s16 D_801E10EE; +extern s16 D_801E10F0; +extern s16 D_801E10E4; +extern s16 D_801E10E6; +extern s16 D_801E10E8; +extern void func_8017B7A8(void); +extern s16 D_801E1104; +extern s16 D_801E1106; +extern s16 D_801E1108; +extern s16 D_801E110C; +extern s16 D_801E110E; +extern s16 D_801E1110; +extern void func_8017B824(void); +extern void func_8017B880(void); +extern s32 func_8017B8E8(s32 src); +extern short D_801E10FC; +extern short D_801E10FE; +extern short D_801E1100; +extern void func_8017B940(void); +extern void func_8012F214(s32 a0, s32 a1, s32 a2); +extern void func_80049CAC(s32 a0, s32 a1); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void RotTransSV(void *a0, void *a1, void *a2); +extern SV4 D_801E1094; +extern SV4 D_801E109C; +extern void func_8017BA3C(s32 param_1, s32 param_2); +extern s32 func_8017BB34(s32 param_1, s32 param_2); +extern void (*D_801E10BC[10])(int); +extern void func_8017BC38(int param_1); +extern void func_8017B0E4(int, int); +extern void func_8017BCA0(int param_1); +extern void func_8012A4BC(void); +extern void func_8017BCF4(int param_1); +extern void (*D_801E10B8)(void); +extern void func_8017BD50(int param_1); +extern void (*D_801931D0[])(void); +extern void func_8017BE60(void *a0); +extern void func_8017BE9C(void); +extern void func_8017BEA4(void); +extern void func_8017BEAC(void); +extern void func_8017BEB4(void); +extern void func_8017BEBC(s32 arg0); +extern void (*D_8019327C[])(void); +extern void func_8017CE2C(void *a0); +extern void func_8017D0D8(void); +extern s32 func_8017CE68(s32 a0); +extern s32 func_8017CEAC(void); +extern void func_8017D100(void); +extern s32 func_8017CED0(s32 a0); +extern void func_8001BFD0(void); +extern void func_800D1E28(void); +extern s32 func_8017CF10(u8 *a0); +extern void func_800D1EBC(void); +extern void func_8017CF8C(void); +extern void (*D_80193290[])(void); +extern void func_8017CFAC(void *a0); +extern s32 func_8017CFE8(s32 a0); +extern void (*D_8019329C[])(void); +extern void func_8017D05C(void *a0); +extern void func_8017D128(void); +extern s32 func_8017D098(s32 a0); +extern s32 D_801932B4; +extern s32 D_801932C8; +extern void (*D_801932D4[])(void); +extern void func_8017D34C(void *a0); +extern s32 func_80012ABC(s32 a0, s32 a1, s32 a2); +extern void func_8017D63C(s32 param_1, s16 *param_2); +extern void func_8013B7F4(void *a0, int a1); +extern int func_8017D7D4(int param_1); +extern void (*D_801935C8[])(void); +extern void func_8017F7B8(void *a0); +extern void (*D_801935E0[])(void); +extern void func_8017FBF8(void *a0); +extern void func_801292C8(u8 *a0); +extern s32 func_8017FC8C(s32 arg0); +extern void (*D_80193608[])(void); +extern void func_8017FCC0(void *a0); +extern void (*D_8019366C[])(void); +extern void func_80180104(void *a0); +extern void func_801801D0(void); +extern void func_8012E8C4(s32 a0); +extern s32 func_8012BEE8(s32 a0); +extern void func_8012C218(s32 a0); +extern void func_801801D8(s32 a0); +extern s32 func_80180218(void); +extern void func_8012DFD4(void *a0); +extern void func_8018090C(void *a0); +extern void (*D_801937B4[])(void); +extern void func_8018096C(void *a0); +extern void func_80180CE8(s32 a0); +extern void func_80180F2C(void *a0); +extern void (*D_801937D8[])(void); +extern void func_80180FB8(void *a0); +extern void func_801811AC(void *a0); +extern void func_80181204(s32 a0); +extern s32 func_8018148C(void); +extern void func_80181414(s32 a0); +extern void func_801812C0(s32 param_1); +extern void func_80181468(void); +extern void (*D_80193814[])(void); +extern void func_801814D0(void *a0); +extern void func_8001CD9C(int, void*); +extern void func_800233CC(void*, unsigned short); +extern void func_80181700(void*); +extern void func_801816D0(s32*); +extern void func_8018150C(int param_1); +extern s32 func_80181714(s32 *a0, s32 a1); +extern void func_801816D0(s32 *a0); +extern void func_80181658(s32 *a0); +extern void func_801816D0(s32 *param_1); +extern void func_80181700(void *a0); +extern void (*D_8019384C[])(void); +extern void func_8018177C(void *a0); +extern void func_801817B8(s32 param_1); +extern void func_80181854(s32 param_1); +extern void func_80181804(s32 param); +extern void func_8018184C(void); +extern void func_801819B8(); +extern void func_80013F3C(s32); +extern void RotMatrixZ(s32, void *); +extern void func_8004914C(void *); +extern void func_800491AC(void *); +extern void func_80017714(void *); +extern SVECTOR_8017E6D8 D_801E1674[4]; +extern struct PW8017E6D8 D_801E1694; +extern struct PW8017E6D8 D_801E1698; +extern u8 D_801E169C, D_801E169D, D_801E169E, D_801E16A0, D_801E16A1, D_801E16A2; +extern int D_801E16A4; +extern void func_801819B8(int a, s16 *b, SVECTOR_8017E6D8 *c, SVECTOR_8017E6D8 *d, SVECTOR_8017E6D8 *e, SVECTOR_8017E6D8 *f, s16 *g, struct PW8017E6D8 *h); +extern void func_8012AD44(s32 *a0, s16 a1); +extern void func_80181ED4(s32 arg0); +extern void func_801823A8(void *a0); +extern void func_80182584(void *arg0); +extern void (*D_801AC4F8[])(void); +extern void func_801827E8(void *a0); +extern void func_80182EAC(s32 arg0); +extern void func_80183188(s32 arg0); +extern void (*D_801AC564[])(void); +extern void func_8018337C(void *a0); +extern void func_80183408(s32 target, u16 *cur, s32 step); +extern void (*D_801AC590[])(void); +extern void func_80183640(void *a0); +extern void func_8012B23C(); +extern void func_801837D0(s32 a0); +extern code_fn D_801AC64C[]; +extern s32 func_8012B414(s32 a0); +extern void func_801838A0(int param_1); +extern void func_801838F0(s32 arg0); +extern void func_80183B34(void); +extern void func_80183CA8(void); +extern s32 func_8012C354(s32 a0, void *a1); +extern s32 func_80143994(s32 a0, s32 a1); +extern void func_8012A828(s32 a0, void *a1); +extern s32 func_8012C658(s32 a0, s32 a1, s32 a2); +extern void func_8012CAE4(s32 a0); +extern void func_8012B030(s32 a0); +extern void func_80183FDC(s32 param_1); +extern void func_80184248(s32 param_1); +extern void func_8018447C(s32 param_1); +extern void func_8012C218(s32); +extern void func_8001C924(s32 a0, void *a1); +extern s32 func_8012BEE8(); +extern s32 func_8012B6D4(s16 *a0, s16 *a1); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern void func_8012B178(s32 a0, s32 a1); +extern s32 func_80187BC8(s32 a0); +extern void func_80013350(s32 a0, void *a1); +extern void func_80184AE8(s32 p); +extern s32 func_8012BDBC(s32 a0, s32 a1); +extern void func_80142414(s32 a0, s16 a1); +extern void func_80184DB0(s32 p); +extern void func_80184E70(s32 param_1); +extern void func_801857D4(s32 param_1); +extern void func_80187D50(s32 a0); +extern void func_8012F214(s32, s32, s32); +extern s32 func_8012BCCC(s32 a0); +extern s32 func_801897F0(void *a0, s32 a1, s32 a2); +extern s32 func_8012BEE8(); /* TU-canonical: an earlier call site passes zero args */ +extern void func_8018588C(s32 p); +extern void func_8012A828(s32, void*); +extern void func_80185A2C(short *a0); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); +extern s32 func_8012B744(void *a0, void *a1); +extern void func_801898EC(s32, void*, void*, s32); +extern void func_80189888(s32, void*, s32, s32, s32, s32); +extern s32 func_80013478(s32 a0, s32 a1); +extern void func_80185EF8(s32 param_1); +extern void func_801875A4(void); +extern void func_80186314(void *a0); +/* ==== end §8b carried decl layer ==== */ + + +extern void func_80187460(s32 a0); +extern s32 func_8012DBD0(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_801872EC(s32 a0, s32 a1); +extern void func_8012CC64(s32 a0, s32 a1); +extern s32 func_80143B6C(s32 a0, s32 a1); +extern s32 func_8012CBA4(s32 a0); +extern s32 func_8012CBF4(s32 a0); +extern void func_8012B23C(s32 a0); +extern void func_80131C78(s32 a0); +extern void func_80131E00(); +extern void func_8018A3CC(s32 a0, s32 a1); + + +void func_80186F00(s32 a0) { + + extern u8 D_801BC428; + u16 sp10[4]; + s32 s1; + + if (*(s16 *)(a0 + 0xA) >= 0x10) { + func_80187460(a0); + return; + } + + if (*(s32 *)(a0 + 0x10) != 0 || *(s32 *)(a0 + 0x18) != 0) { + func_8012DBD0(a0, 0x50, + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) + 0x800, 0x1D); + } + + switch (*(u8 *)(a0 + 0xC2)) { + case 0: + func_801872EC(a0, (s32)&D_801BC428); + *(u8 *)(a0 + 0xC2) += 1; + case 1: + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) -= 0x100; + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) >= 0x29) { + func_80131E00(a0, 0xD); + return; + } + s1 = ((s32 (*)(s32, s32))func_8012CC64)(a0, (s32)&D_801BC428); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x4000) { + func_8012B23C(a0); + *(u8 *)(a0 + 0xC2) = 4; + } else if (s1 & 0x2000) { + *(u8 *)(a0 + 0xC2) = 2; + func_80143B6C(a0, 1); + *(s32 *)(a0 + 0x14) = 0xFFF30000; + *(s32 *)(a0 + 0x1C) = 0; + func_8018A3CC(a0, 0x9B8); + } + break; + + case 2: + { + s32 s2; + + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) -= 0x100; + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) >= 0x29) { + func_80131E00(a0, 0xD); + return; + } + s2 = *(s32 *)(a0 + 0x14); + s1 = ((s32 (*)(s32, s32))func_8012CC64)(a0, (s32)&D_801BC428); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x4000) { + func_8012B23C(a0); + *(u8 *)(a0 + 0xC2) = 4; + } else if (s1 & 0x2000) { + func_80143B6C(a0, 1); + *(s32 *)(a0 + 0x14) = (-s2) / 3; + *(s32 *)(a0 + 0x1C) = 0; + *(u8 *)(a0 + 0xC2) = 3; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) = 0; + } + } + break; + + case 3: + *(s32 *)(a0 + 0x10) = *(s32 *)(a0 + 0x10) * 15 / 16; + *(s32 *)(a0 + 0x18) = *(s32 *)(a0 + 0x18) * 15 / 16; + if (*(u8 *)(a0 + 0xC3) & 1) { + s1 = func_8012CBA4(a0); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (!(s1 & 0x6000)) { + func_80131E00(a0, 0xD); + return; + } + } else { + s1 = func_8012CBF4(a0); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x4000) { + func_8012B23C(a0); + *(u8 *)(a0 + 0xC2) = 4; + break; + } else if (s1 & 0x2000) { + *(u8 *)(a0 + 0xC3) |= 1; + func_8018A3CC(a0, 0x9B8); + } + } + if ((*(s32 *)(a0 + 0x1C) & 3) == 3) { + func_80143B6C(a0, 1); + } + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) < 0x11) { + break; + } + if (!(s1 & 0x6000)) { + func_80131E00(a0, 0xD); + return; + } + if (*(s16 *)(a0 + 0x76) <= 0) { + func_80131E00(a0, 6); + } else { + func_80131C78(a0); + } + break; + + case 4: + s1 = func_8012CBA4(a0); + if (s1 & 0x8000) { + *(s32 *)(a0 + 0x18) = 0; + *(s32 *)(a0 + 0x10) = 0; + } + if (s1 & 0x2000) { + if (*(s16 *)(a0 + 0x76) <= 0) { + func_80131E00(a0, 6); + } else { + func_80131C78(a0); + } + } else { + if ((*(s32 *)(a0 + 0x1C) & 3) == 3) { + func_80143B6C(a0, 1); + } + *(s32 *)(a0 + 0x1C) += 1; + if (*(s32 *)(a0 + 0x1C) >= 0x3D) { + func_80131E00(a0, 0xD); + return; + } + } + break; + } +} + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801872EC); + +extern void func_8018A3CC(s32 arg0, s32 arg1); + void func_80187440(s32 arg0) { + func_8018A3CC(arg0, 0x9B7); + } + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80187460); + + +extern void func_801875A4(void); +extern void func_80187A50(s32 a0, s32 a1); +extern void func_8012A828(s32 a0, void *a1); + +void func_801874E4(s32 param_1) { + + extern s32 D_801D420C; + u16 uVar1; + s32 iVar2; + + *(s16 *)(param_1 + 0x34) = 0; + if ((*(u32 *)(param_1 + 0xe0) & 8) == 0) { + func_801875A4(); + } else { + if ((*(u32 *)(param_1 + 0xe0) & 0x20) != 0) { + func_80187A50(param_1, -0x8000); + } + *(s16 *)(param_1 + 2) = 0x22; + func_8012A828(param_1, &D_801D420C); + } + iVar2 = *(s32 *)(param_1 + 0x20); + *(s16 *)(iVar2 + 0x14) = 0; + *(s16 *)(iVar2 + 0x10) = 0; + uVar1 = *(u16 *)(*(s32 *)(param_1 + 0x78) + 2); + *(u32 *)(param_1 + 0xe0) = (*(u32 *)(param_1 + 0xe0) & 0xffffffd5) | 0x400; + *(s16 *)(param_1 + 0x5e) = 0; + *(u16 *)(param_1 + 0xae) = *(u16 *)(param_1 + 0xae) & 0xfffe; + *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) & 0xfffffffb; + *(s16 *)(param_1 + 0x5c) = uVar1; +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801875A4); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018769C); + + + +extern s32 func_8012BCCC(s32 a0); +extern s32 func_80189938(s32 a0, s32 a1); +extern void func_8012F214(s32, s32, s32); +extern s32 func_801897F0(void *a0, s32 a1, s32 a2); + +/* Two load-bearing constructs (do NOT "clean up"): + * 1. `goto ret0` / `goto store` with `ret0:` placed BEFORE the store block — cookbook L1344 + * shared-ret0 goto. A trailing `return 0` makes gcc sink the merged ret0 tail past the + * store block (7 mismatches: BRANCH-POLARITY + swapped tail). + * 2. `register s32 r __asm__("$2")` on the func_80189938 result + `return r`. Plain + * `return 0;` there emits `set v0,0; j epi`, which cross_jump (§5a) merges into the + * ret0 block, so the branch lands on ret0 instead of the epilogue. Pinning r to $v0 + * makes `return r` a self-copy that dies before jump2, leaving a bare `j epi` that + * jump.c collapses into `beqz $v0, .L8018730C`. (A plain `s32 r` does NOT work — cse2 + * const-folds `r` to 0 on the fall-through edge and the merge comes back.) */ +s32 func_801877BC(s32 p) { + + extern s32 D_80126B9C; + extern u8 D_801BC200[]; + s32 buf10[2]; + register s32 r __asm__("$2"); /* $v0 — see note 2 above */ + + if ((*(u32 *)(p + 0xE0) & 1) == 0) { + goto ret0; + } + if (*(u16 *)(p + 2) == 1) { + goto ret0; + } + if (*(u16 *)(p + 2) == 0xD) { + return 0; + } + if ((D_80126B9C & 2) == 0) { + return 0; + } + if (0x10000 < func_8012BCCC(p)) { + return 0; + } + r = func_80189938(p, 0x380); + if (r == 0) { + return r; + } + ((void (*)(s32, void *, void *))func_8012F214)(p, D_801BC200, buf10); + if (func_801897F0(buf10, *(s16 *)(*(s32 *)(p + 0x20) + 0x12), 0x380) != 0) { + goto store; + } +ret0: + return 0; +store: + *(u16 *)(p + 2) = 0xC; + return 1; +} + + + +/* func_8018788C — walk the 0x60-entry / 0x10C-stride entity table D_801202A0 and + * react to the first neighbour of class 0x27A (get pushed away from it) or 0x2F4 + * (get clamped down onto it). + * + * §71 sibling-first: the callee signatures below are copied VERBATIM from this TU's + * own already-matched neighbours — func_8012B0B4 (TU L6971/7855/8177), func_8012B6D4 + * (TU L6419), func_8012CEB0 (TU L7226, the func_80187844 block), func_8012C098 + * (TU L5379) — and D_801202A0 is the TU's file-scope `extern u8 D_801202A0[];` (L384). + * func_8012BC60 / func_8012ADE4 are not declared in this TU; the forms below are the + * fleet-majority shapes (func_8012ADE4 verbatim; func_8012BC60 with `void *` instead of + * `struct Vec *` so the draft does not depend on engine_types.h being in scope). + * + * FIVE load-bearing constructs (do NOT "clean up"): + * + * 1. NO SECOND WALKED POINTER. All of +0x6/+0xA/+0xE are written as `*(T *)(p + k)` + * off the single biv `p`. combine_givs then merges the three DEST_ADDR givs onto + * ONE anchor = the LAST-emitted one (+0xE, from the case-0x2F4 `lh`), giving the + * target's `$s3 = $s2 + 0xE` with -0x8/-0x4/0x0 displacements. + * An explicit `q = p + 0xE` with `*(u16 *)q` looks equivalent and is NOT: + * gcc-2.7.2 excludes a bare `*q` (mult 1, add 0) from givs (find_mem_givs:4198), + * so q stays a live biv AND the remaining two accesses combine onto their own + * anchor +0xA => THREE IVs, the wrong anchor, and the $s6 hoist lost to pressure + * (measured: 111 ins, 87 mismatched). gcc-2.7.2-map/loop.md §L1 rules 4 & 6. + * + * 2. `switch`, not `if/else if`. The two-case switch is what emits the target's + * compare CHAIN with BOTH arms out of line (`beq`/`beq`/`j default`, 6 slots). + * An `if (id == 0x27A) ... else if (id == 0x2F4)` inverts the first test and lets + * the 0x27A arm fall through — 2 instructions short. + * + * 3. do-while with `i++` BEFORE `p += 0x10C`. strength_reduce inserts the reduced + * giv's `addiu` immediately before ITS biv's increment, so the source order + * i-then-p is what produces `addiu $s4,$s4,1` / `addiu $s3,$s3,0x10C` / + * (delay) `addiu $s2,$s2,0x10C`. A `for (i = 0; i < 0x60; i++)` with `p += 0x10C` + * last puts the giv add first and swaps the pair. + * + * 4. `self4` and `sc` are REAL pre-loop locals, in that order. Both are loop + * invariants; written inline as `(s16 *)(a0 + 4)` / `(unsigned int *)sp20` at the + * call, combine folds the address straight into the argument move + * (`addiu $a0,$sp,0x20`) and the target's `$s6 = $sp + 0x20` hoist never happens. + * Assigning them in a *different basic block* from their uses is what keeps the + * pseudos alive; the declaration ORDER (p, i, self4, sc) is what gives + * $s2/$s4/$s5/$s6 in the target's prologue emission order. + * + * 5. `s16 y` (a SHORT local), and `s32 sp20[2]` (an EIGHT-byte scratch). + * - The short local is why `y` gets a second pseudo: gcc-2.7.2 emits + * `(set (reg:HI B) (subreg:HI (reg:SI A)))` for the HImode assignment, i.e. the + * target's `addu $a1,$a0,$zero` in the branch delay slot, with the two `- 0x60` + * recomputed from A ($a0, the compare) and B ($a1, the stored value). + * An `s32 y` coalesces the pair away and loses that instruction. + * - The short local also costs a DEAD 4-byte reload home at the top of the frame + * (`(use (mem:SI (plus $sp 48)))` in the greg dump, no insn references it). + * That is exactly why the func_8012B0B4 buffer is 8 bytes, not 16: 0x10 + 8 + * (v10) + 8 (v18) + 8 (sp20) + 4 (dead) rounds to 0x30 = the target's first + * saved-register slot. 8 bytes also matches the fleet's canonical shape for a + * func_8012B0B4 output buffer (`unsigned int buf[2]`). + */ + + +extern s32 func_8012BC60(void *a0, void *a1); +extern s32 func_8012B6D4(s16 *a0, s16 *a1); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); +extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); +extern void func_8012ADE4(u8 *a0); +extern void func_8012C098(void *param_1); + +void func_8018788C(s32 a0) { + + extern u8 D_801202A0[]; + u8 *p; + s16 *self4; + unsigned int *sc; + s32 i; + s16 y; + s32 z; + s32 ang; + s16 v10[4]; /* sp+0x10 */ + s16 v18[4]; /* sp+0x18 */ + s32 sp20[2]; /* sp+0x20 — func_8012B0B4 output */ + + p = D_801202A0; + i = 0; + self4 = (s16 *)(a0 + 4); + sc = (unsigned int *)sp20; + do { + if ((u8 *)a0 != p) { + switch (*(u16 *)p) { + case 0x27A: + if (func_8012BC60((void *)self4, (void *)(p + 4)) < 0x6400) { + ang = func_8012B6D4(self4, (s16 *)(p + 4)); + func_8012B0B4(sc, ang, 0xA1); + v18[0] = *(u16 *)(p + 6); + v18[1] = *(u16 *)(p + 0xA); + v18[2] = *(u16 *)(p + 0xE); + v18[0] += sp20[0]; + v18[2] += sp20[0] >> 16; + v18[1] = *(u16 *)(a0 + 0xA); + v10[0] = *(u16 *)(a0 + 0x3A); + v10[1] = *(u16 *)(a0 + 0x3E); + v10[2] = *(u16 *)(a0 + 0x42); + if ((func_8012CEB0(v10, v18, 0) & 0x2000) == 0) { + func_8012ADE4((u8 *)a0); + return; + } + *(u16 *)(a0 + 6) = v18[0]; + *(u16 *)(a0 + 0xA) = v18[1]; + *(u16 *)(a0 + 0xE) = v18[2]; + return; + } + break; + case 0x2F4: + y = *(s16 *)(p + 0xE); + z = *(s16 *)(a0 + 0xE); + if (y + 0x10 < z) { + func_8012C098((void *)a0); + return; + } + if (y - 0x60 < z) { + *(s16 *)(a0 + 0xE) = y - 0x60; + } + break; + } + } + i++; + p += 0x10C; + } while (i < 0x60); +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80187A50); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80187BC8); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80187C28); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80187D50); + + +/* func_80187DB0 — line-of-sight / collision probe. + * + * Rotate the direction SVECTOR D_801BC450[dir] through the entity's matrix + * (*(0x20) + 0x34) into a scratch SVECTOR at sp+0x10, build the segment + * start (sp+0x18) = entity pos and end (sp+0x20) = entity pos + rotated + * vector, then hand the pair to func_8012CEB0 / func_800132BC. + * + * §71 sibling-first: DEFINE_func_80169408 / DEFINE_func_8016986C in + * src/shared/engine_core.h are the house shape for this ApplyMatrixSV + + * SVECTOR-local family — `s16 vNN[4]` locals declared in ASCENDING stack + * offset order (sp+0x10, sp+0x18, sp+0x20) and the entity position read as + * `*(u16 *)(s1 + 0x6 / 0xA / 0xE)` (which is what makes the loads `lhu`). + * + * The target stores each of sp+0x20/0x22/0x24 TWICE — a plain copy first, + * then the copy plus the rotated component — so the source assigns the + * position, then `+=` the delta as separate statements (the local's address + * is taken, so gcc-2.7.2 cannot kill the first store). + */ + +extern void ApplyMatrixSV(void *a0, void *a1, void *a2); +extern s32 func_8012CEB0(void *a0, void *a1, s32 a2); +extern s32 func_800132BC(void *a0, void *a1); + +s32 func_80187DB0(s32 a0, s32 a1) { + + extern s16 D_801BC450[][4]; + extern s32 D_801E16A8; + s32 s0 = a0; + s16 v10[4]; /* sp+0x10 SVECTOR — ApplyMatrixSV out */ + s16 v18[4]; /* sp+0x18 SVECTOR — segment start */ + s16 v20[4]; /* sp+0x20 SVECTOR — segment end */ + s32 r; + + ApplyMatrixSV((void *)(*(s32 *)(s0 + 0x20) + 0x34), D_801BC450[a1], v10); + v18[0] = *(u16 *)(s0 + 0x6); + v18[1] = *(u16 *)(s0 + 0xA); + v18[2] = *(u16 *)(s0 + 0xE); + v20[0] = *(u16 *)(s0 + 0x6); + v20[1] = *(u16 *)(s0 + 0xA); + v20[2] = *(u16 *)(s0 + 0xE); + v20[0] = v20[0] + v10[0]; + v20[1] = v20[1] + v10[1]; + v20[2] = v20[2] + v10[2]; + r = func_8012CEB0(v18, v20, 0); + D_801E16A8 = func_800132BC(v18, v20); + return r != 0x2000; +} + + + +extern void (*D_801BC490[])(void); + +void func_80187E90(void *a0) { + D_801BC490[*(u16 *)((s32)a0 + 0x2)](); +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80187ECC); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80188058); + + +extern void func_8012C218(s32); +extern void func_8012E8A8(u8 *a0); + +/* §48-C2: lwl/lwr/swl/swr block copy == a plain struct assign of a 2-byte-aligned struct */ + +void func_8018833C(s32 param_1) +{ + s32 t1 = *(s32 *)(param_1 + 0x64); + s32 pad[2]; + + if (*(s16 *)(t1 + 0x36) != *(s16 *)(param_1 + 0x10A)) { + ((void (*)(void *))func_8012C218)((void *)param_1); + return; + } + { + if ((*(u32 *)(t1 + 0xE0) & 4) != 0) { + func_8012E8A8((u8 *)param_1); + return; + } + { + s32 a2 = *(s32 *)(*(s32 *)(t1 + 0x20) + 0x20); + s32 a3 = param_1 + 0xFC; + + if (a2 != 0) { + if ((a2 & 0x1000000) != 0) { + s32 a1 = a2 & 0xFEFFFFFF; + register u32 v0 __asm__("$2"); + u32 a0; + u32 v1a; + u32 v1b; + u32 v0b; + u32 v1; + + *(u16 *)(param_1 + 0x102) = *(u16 *)(a1 + 0x66); + + v0 = *(u32 *)(a1 + 0x60); + a0 = *(u8 *)(a1 + 0x61); + v1a = (v0 & 0xF) << 8; + a0 = a0 | v1a; + v1b = ((s32)v0 >> 16) & 0xFF; + v0b = (v0 & 0xF0) << 4; + v1 = v1b | v0b; + *(u16 *)(param_1 + 0x104) = (u16)a0; + *(u16 *)(param_1 + 0x106) = (u16)v1; + + *(s16 *)(param_1 + 0xFC) = (s8)*(u8 *)(a1 + 0x63); + *(s16 *)(param_1 + 0xFE) = (s8)*(u8 *)(a1 + 0x64); + *(s16 *)(param_1 + 0x100) = (s8)*(u8 *)(a1 + 0x65); + } else { + *(UAlign12_8018833C *)(param_1 + 0xFC) = *(UAlign12_8018833C *)(a2 + 0x90); + } + *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = a3; + } + + if ((*(u32 *)(t1 + 0xE0) & 0x80) != 0) { + if (*(u16 *)(param_1 + 0x34) == 0) { + s16 sVar2 = *(u16 *)(param_1 + 0x108) + 0x40; + *(s16 *)(param_1 + 0x108) = sVar2; + if (sVar2 > 0x200) { + *(u16 *)(param_1 + 0x108) = 0x200; + *(s16 *)(param_1 + 0x34) = *(s16 *)(param_1 + 0x34) + 1; + } + } else { + u16 uVar3 = *(u16 *)(param_1 + 0x108) - 0x80; + *(u16 *)(param_1 + 0x108) = uVar3; + if ((s16)uVar3 < 0) { + *(u16 *)(param_1 + 0x108) = 0; + *(u16 *)(param_1 + 0x34) = 0; + *(u32 *)(t1 + 0xE0) = *(u32 *)(t1 + 0xE0) & ~0x80; + } + } + } + + *(u16 *)(a3 + 6) = *(u16 *)(a3 + 6) + *(u16 *)(param_1 + 0x108); + + *(u32 *)(param_1 + 4) = *(u32 *)(t1 + 4); + *(u32 *)(param_1 + 8) = *(u32 *)(t1 + 8); + *(u32 *)(param_1 + 0xC) = *(u32 *)(t1 + 0xC); + + *(UAlign8_8018833C *)(param_1 + 0x50) = *(UAlign8_8018833C *)(t1 + 0x50); + + { + s32 dst = *(s32 *)(param_1 + 0x20); + s32 src = *(s32 *)(t1 + 0x20); + *(UAlign8_8018833C *)(dst + 0x10) = *(UAlign8_8018833C *)(src + 0x10); + } + { + s32 dst = *(s32 *)(param_1 + 0x20); + s32 src = *(s32 *)(t1 + 0x20); + *(UAlign8_8018833C *)(dst + 0x18) = *(UAlign8_8018833C *)(src + 0x18); + } + { + s32 src = *(s32 *)(t1 + 0x20); + s32 dst = *(s32 *)(param_1 + 0x20); + *(u32 *)(dst + 4) = *(u32 *)(src + 4); + } + { + s32 src = *(s32 *)(t1 + 0x20); + s32 dst = *(s32 *)(param_1 + 0x20); + *(u16 *)(dst + 0x2C) = *(u16 *)(src + 0x2C); + } + } + } +} + + + +extern void (*D_801BC5E8[])(void); + +void func_801885F4(void *a0) { + D_801BC5E8[*(u16 *)((s32)a0 + 0x2)](); +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80188630); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801887A0); + + +extern void func_8012C218(s32); +extern s32 func_8012D5E4(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_8018956C(s32 a0, s32 a1); +extern s32 func_8012B8E4(s32 a0, s32 a1); +extern s32 func_8012BEE8(s32 a0); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern s32 func_8012CBF4(s32 a0); +extern void func_8012B178(s32 a0, s32 a1); +extern u8 *func_8012913C(s32 a0); +extern void func_8012F214(s32 a0, s32 a1, s32 a2); + + +void func_80188808(s32 param_1) { + + extern u8 D_801BC560; + extern u8 D_801BC614[]; + extern u16 D_80126CB4; + extern u16 D_80126CB6; + extern u16 D_80126CB8; + u16 uVar1; + + if (0xf < *(s16 *)(param_1 + 0xA)) { + ((void (*)(void *))func_8012C218)((void *)param_1); + return; + } + + { + s32 base = (s32)&D_801BC560; + s32 r = func_8012D5E4(param_1, base, base + 8, 0x78); + if (r == 1 || (*(u16 *)(param_1 + 0x5C) & 1) != 0) { + func_8018956C(param_1, 1); + ((void (*)(void *))func_8012C218)((void *)param_1); + return; + } + } + + uVar1 = *(u16 *)(param_1 + 0x34); + switch (uVar1) { + default: + return; + case 0: + { + s32 sVar3 = func_8012B608((s32)*(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10), 0, 0x18); + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + sVar3; + } + { + s32 r = func_8012CBF4(param_1); + if (r != 0) { + goto LAB_8018847c; + } + } + { + s32 r = func_8012BEE8(param_1); + if (r == 0) return; + } + *(u16 *)(param_1 + 0xF4) = D_80126CB4; + *(u16 *)(param_1 + 0xF6) = D_80126CB6; + { + u16 tmp = D_80126CB8; + *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; + *(s32 *)(param_1 + 0x1C) = 0x3C; + *(u16 *)(param_1 + 0xF8) = tmp; + } + return; + case 1: + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) += func_8012B8E4(param_1, 0x20); + { + s32 r = func_8012BEE8(param_1); + if (r != 0) { + *(s32 *)(param_1 + 0x1C) = 0x5A; + *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; + } + } + break; + case 2: + break; + } + + *(u16 *)(param_1 + 0xF2) = *(u16 *)(param_1 + 0xF2) - 0x100; + func_8012B178(param_1, 0xFFEC0000); + { + s32 r = func_8012CBF4(param_1); + if (r != 0) goto LAB_8018847c; + } + if (*(u16 *)(param_1 + 0x34) != 2) goto LAB_80188494; + { + s32 r = func_8012BEE8(param_1); + if (r != 1) goto LAB_80188494; + } +LAB_8018847c: + *(u16 *)(param_1 + 2) = 9; + func_8018956C(param_1, 1); + return; +LAB_80188494: + { + s32 iv = (s32)func_8012913C(0x80); + if (iv == 0) return; + { + u16 out[4]; + ((void (*)(s32, void *, void *))func_8012F214)(param_1, D_801BC614, out); + *(u16 *)(iv + 6) = out[0]; + *(u16 *)(iv + 0xA) = out[1]; + *(u16 *)(iv + 0xE) = out[2]; + } + return; + } +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80188A60); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80188AC0); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80188BF8); + + +// @class: struct +// @stuck: none — MATCH (276 ins, relocation-masked). Verified BOTH standalone (match_one) and +// spliced into src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c (whole-TU cc1 -O2 clean, +// masked structured_diff 0/276). +// Keys: (1) the first func_8012C218 call gets a NOP delay slot because reload_cse_regs deletes the +// redundant `move a0,s1` -- $a0 still holds the incoming param on the fall-through path +// (no CODE_LABEL between the prologue and the jal). The second call site is behind a +// label, so the move survives. Source is the natural `((void (*)(void *))func_8012C218)((void *)param_1)` at +// BOTH sites -- do NOT write a zero-arg call (it also breaks in-TU: the composite type +// from the earlier file-scope `extern void ((void (*)(void *))func_8012C218)(void *a0);` rejects 0 args). +// (2) case 0's guard is an `||` with an early return -- that is what puts `beqz -> fail` then +// `beq -> ok` (an `&&` would emit `bne -> fail`). +// (3) `register s32 sVar2 __asm__("$2")` holds the p+0x34 reload in cases 1/2 so the two arms +// cross-jump into the shared .L80188928 tail. +// (4) `__asm__ __volatile__("")` after the func_8012C658 arm forces the `lw v1,0x1C(s1)` +// reload before the cross-jumped `li v0,9` (§21 zero-byte re-tie). +// (5) `-((iVar3 << 0x10) / 0x22)` reproduces the 0x78787879/sra-4 magic-divide by 34 + negu. +// (6) `*p * 0xc` then `>>4` with the manual `if (x<0) x+=0xf` is the /16 rounding form. + +extern void func_8012C218(s32); +extern void func_801898EC(s32, void*, void*, s32); +extern s32 func_80013328(s32 a0, s32 a1); +extern void func_8012B14C(s32 a0, s32 a1); +extern void func_8012CC64(s32 a0, s32 a1); /* fleet-canonical: void; $v0 used -> cast at use */ +extern s32 func_8012C658(s32, s32, s32); +extern s32 func_80143B6C(s32 a0, s32 a1); /* fleet-canonical */ +extern s32 func_8012BEE8(s32 a0); +extern void func_80016714(void*, s32); +extern void func_8018956C(s32 a0, s32 a1); + + +void func_80188C1C(s32 param_1) { + + extern u8 D_801D4314; + extern u8 D_801BC588; + extern u8 D_801BC590; + extern u8 D_801BC580; + extern u8 D_80126B5C; + u16 uVar1; + register s32 sVar2 __asm__("$2"); + s32 iVar3; + s32 iVar4; + s32 iVar5; + u32 uVar4; + s32 psVar5; + u16 buf[8]; + s32 vec[3]; + + if (0xf < *(s16 *)(param_1 + 0xA)) { + ((void (*)(void *))func_8012C218)((void *)param_1); + return; + } + uVar1 = *(u16 *)(param_1 + 0x34); + switch (uVar1) { + case 0: + psVar5 = *(s32 *)(param_1 + 0x64); + if ((*(u16 *)psVar5 == 0) || + (*(s32 *)(psVar5 + 0x90) != (s32)&D_801D4314)) { + ((void (*)(void *))func_8012C218)((void *)param_1); + return; + } + if (*(s32 *)(psVar5 + 0x94) < 0x11) { + ((void (*)(void *, void *, void *, s32))func_801898EC)((void *)psVar5, (void *)&D_801BC588, buf, 5); + *(s16 *)(param_1 + 6) = buf[0]; + *(s16 *)(param_1 + 0xA) = buf[1]; + *(s16 *)(param_1 + 0xE) = buf[2]; + return; + } + ((void (*)(void *, void *, void *, s32))func_801898EC)((void *)psVar5, (void *)&D_801BC590, buf, 4); + ((void (*)(void *, void *, void *, s32))func_801898EC)((void *)psVar5, (void *)&D_801BC590, &buf[4], 5); + *(s16 *)(param_1 + 6) = + (s16)((*(s16 *)&buf[0] + *(s16 *)&buf[4]) >> 1); + *(s16 *)(param_1 + 0xA) = + (s16)((*(s16 *)&buf[1] + *(s16 *)&buf[5]) >> 1); + *(s16 *)(param_1 + 0xE) = + (s16)((*(s16 *)&buf[2] + *(s16 *)&buf[6]) >> 1); + if (*(s32 *)(psVar5 + 0x94) != 0x19) { + return; + } + *(u16 *)(param_1 + 0x34) = *(u16 *)(param_1 + 0x34) + 1; + vec[0] = 0; + vec[1] = 0xfff40000; + iVar3 = func_80013328((s32)&D_80126B5C, param_1 + 4); + vec[2] = -((iVar3 << 0x10) / 0x22); + func_8012B14C(param_1, (s32)vec); + *(s32 *)(param_1 + 0x48) = 0xc000; + return; + case 1: + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x80; + iVar3 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BC580); + if (iVar3 == 0) { + return; + } + sVar2 = *(u16 *)(param_1 + 0x34); + *(s32 *)(param_1 + 0x1c) = 0; + *(u16 *)(param_1 + 0x34) = sVar2 + 1; + return; + case 2: + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + 0x40; + uVar4 = ((s32 (*)(s32, s32))func_8012CC64)(param_1, (s32)&D_801BC580); + if ((uVar4 & 0x2000) == 0) { + return; + } + iVar4 = *(s32 *)(param_1 + 0x1c) + 1; + *(s32 *)(param_1 + 0x1c) = iVar4; + if (iVar4 >= 4) { + sVar2 = *(u16 *)(param_1 + 0x34); + *(s32 *)(param_1 + 0x1c) = 0x1e; + *(u16 *)(param_1 + 0x34) = sVar2 + 1; + return; + } + iVar3 = *(s32 *)(param_1 + 0x10) * 0xc; + if (iVar3 < 0) { + iVar3 = iVar3 + 0xf; + } + *(s32 *)(param_1 + 0x10) = iVar3 >> 4; + iVar5 = *(s32 *)(param_1 + 0x18) * 0xc; + if (iVar5 < 0) { + iVar5 = iVar5 + 0xf; + } + *(s32 *)(param_1 + 0x18) = iVar5 >> 4; + *(s32 *)(param_1 + 0x14) = -(0x80000 / *(s32 *)(param_1 + 0x1c)); + func_80143B6C(param_1, 1); + return; + case 3: + uVar4 = *(u32 *)(param_1 + 0x1c); + if ((uVar4 - 0xe < 0xb) && ((uVar4 & 1) == 0)) { + ((void (*)(s32, s32, s32))func_8012C658)(0x2a8, (s32)*(s16 *)(param_1 + 0x104), param_1); + *(u16 *)(param_1 + 0x104) = *(u16 *)(param_1 + 0x104) + 1; + __asm__ __volatile__(""); + uVar4 = *(u32 *)(param_1 + 0x1c); + } + if (uVar4 == 9) { + *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) = + *(u32 *)(*(s32 *)(param_1 + 0xcc) + 4) & 0x7fffffff; + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 8) = *(u16 *)(param_1 + 6); + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xa) = + *(u16 *)(param_1 + 0xa) - 0x24; + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0xc) = *(u16 *)(param_1 + 0xe); + } + if (*(s32 *)(param_1 + 0x1c) - 4U < 6) { + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) = + *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x18) + 0x200; + *(s16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) = + *(u16 *)(*(s32 *)(param_1 + 0xcc) + 0x1a) + 0x200; + } + iVar3 = func_8012BEE8(param_1); + if (iVar3 != 1) { + return; + } + ((void (*)(s32, s32))func_80016714)(*(s32 *)(param_1 + 0xcc), 0x38); + *(s16 *)(param_1 + 2) = 9; + func_8018956C(param_1, 0); + return; + } + return; +} + + + +extern void func_80049CAC(s32, s32); +extern void func_800484EC(s32, s32, s32); +extern void func_8012B260(u8 *a0); + +void func_8018906C(s32 p) { + s32 g10[4]; /* sp+0x10 */ + u16 g20[4]; /* sp+0x20 */ + s32 buf28[8]; /* sp+0x28 */ + u16 v; + + g10[2] = 0xFFF00000; + g10[1] = 0; + g10[0] = 0; + g20[0] = 0x10; + v = *(u16 *)(*(s32 *)(*(s32 *)(p + 0x64) + 0x20) + 0x12) + + *(u16 *)(p + 0xFC); + g20[1] = v; + *(u16 *)(p + 0xFE) = v; + g20[2] = 0; + ((void (*)(void *, void *))func_80049CAC)(g20, buf28); + ((void (*)(void *, void *, s32))func_800484EC)(buf28, g10, p + 0x10); + *(u16 *)(p + 2) = 8; + *(s32 *)(p + 0x1C) = 0x40; + ((void (*)(s32))func_8012B260)(p); +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80189108); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801892C0); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801892FC); + + +/* func_8018937C @ ov_SC06_018 (subseg ov_SC06_018_jr_8017C24C) — 124 ins. MATCH. + * + * GATE: .venv/bin/python tools/match_one.py func_8018937C \ + * --c .run/wave-s40/ov_SC06_018/func_8018937C.c \ + * --asm-subdir asm/ov_SC06_018/nonmatchings/ov_SC06_018_jr_8017C24C + * + * ------------------------------------------------------------------ what it is + * "Try to hand this object off to another live entity of kind 0x282." + * 1. Build two 8-byte position vectors off `self` via func_8012F214 (the + * fleet's local->world transform; see the ov_SC02_026 walker family, + * e.g. src/ov_SC03_103/ov_SC03_103_jr_8017C294.c:4106 func_8017EC0C, which + * is the byte-matched sibling this draft's types were lifted from). + * 2. Keep a third copy of the destination vector (`c = b`) — 8 bytes at + * align 2, so gcc emits the inline lwl/lwr + swl/swr block move, exactly + * the "8 bytes, align 2 -> lwl/lwr/swl/swr copy" note carried in that + * sibling. This is why `c` must be a STRUCT ASSIGN, not a memcpy. + * 3. If the global-collision probe func_80135888(D_80126B78, D_80126B90, &a, &b) + * says the move is blocked, punt to func_8012F568 and return 1. + * 4. Otherwise walk the 0x60-entry / 0x10C-stride entity table D_801202A0 + * looking for a 0x282 entity that (a) matches `kind` (or, when + * kind == 0xFFFF, only self->f70), (b) is not `self`, and (c) passes the + * same collision probe against its own f20/f58 volumes. First hit gets + * state 9 and func_8018956C(e, 0); return 1. No hit -> 0. + * + * ---------------------------------------------------------------- the levers + * L1 ARG 5 IS A `u16` (stack slot 0x60(sp) read with `lhu`). The redundant + * `andi $v1,$s2,0xffff` in the target is gcc's zero_extendhisi2 for the + * HImode->SImode widening at `kind != 0xFFFF`; it comes free with a plain + * ANSI `u16` param and CANNOT be reproduced from an `s32`/`s16` param. + * That same zero-extended $v1 is then reused as the loop compare operand + * (`addu $s4,$v1,$zero`), which is why the kind test inside the loop must + * be written against `kind` itself and not a re-cast copy. + * + * L2 `i` MUST BE INITIALISED IN EACH LOOP'S for-INIT, NOT ONCE BEFORE THE + * `if`. This is the whole match. <-- the only residual v1 had. + * With `e = ...; i = 0; if (kind != 0xFFFF) {...}` the draft is 124/124 + * instructions with FOUR bytes wrong: `kind` lands in $s4 instead of $s2 + * (and the two prologue `sw`s swap slots to follow it). Reason (regalloc.md + * K3/K5, class RC-3): `kind` is the lowest-density allocno (2 refs over a + * ~50-insn range) so it is assigned LAST, and find_reg then takes the + * LOWEST-numbered non-conflicting callee-saved register. Hoisting `i = 0` + * above the `andi` that reads `kind` makes `i`'s live range OVERLAP + * `kind`'s, so $s2 becomes a conflict and $s4 is the next free slot. + * Sinking `i = 0` into both for-inits removes the overlap -> $s2. + * The single `addu $s2,$zero,$zero` you see in the delay slot of the + * `beq` is dbr: it lifts the fall-through arm's `i = 0` into the slot and + * drops the other arm's copy as redundant (both arms set it before any + * use, so it is safe on both paths). Do NOT "simplify" it back to one + * shared initialiser — that is the 4-byte regression. + * + * L3 THE ARMS ARE `!=` FIRST. `if (kind != 0xFFFF) {kind-or-self loop} + * else {self-only loop}` gives `beq $v1,$v0,` with the kind-aware + * loop falling through, which is the target order. Writing it as + * `if (kind == 0xFFFF)` emits `bne` and swaps the two bodies. + * + * L4 BOTH ARMS' HIT-BLOCKS ARE TEXTUALLY IDENTICAL, which lets jump.c's + * cross-jump tail-merge collapse them: the second loop's + * `bnez $v0,.L80188F5C` branches into the FIRST loop's + * `sh 9; jal func_8018956C; return 1` block. Keep them identical. + * + * L5 LOCAL DECL ORDER IS THE FRAME LAYOUT (regalloc.md K1/K7): `a`,`b`,`c` + * land at 0x18 / 0x20 / 0x28, immediately above the 0x18-byte outgoing-arg + * area that func_8012F568's 6 arguments force. Frame 0x50. Reordering + * the three declarations shifts every sp displacement. + * + * L6 `e != self` is a POINTER compare against the `self` param (`beq $s1,$s3`), + * so `self` must be typed as the same Ent pointer, not an s32. + * + * ---------------------------------------------------------------- banking note + * The real TU src/ov_SC06_018/ov_SC06_018_jr_8017C24C.c already declares + * `extern u8 D_801202A0[];` (L384), `extern s32 func_80135888(s32,s32,s32,s32);` + * (L589), `extern void func_8012F214(s32,s32,s32);` (L2641), + * `extern void func_8018956C(s32 a0, s32 a1);` (L7388, and DEFINES it at L7711) + * and `extern u8 D_801152A8[];` (L598) — all fleet-canonical and identical to + * the spellings below, so only the two `D_80126B7 8/90` pointer externs + * (canonical form `extern s32 *D_80126B78;`, 3297 fleet occurrences) and the + * two local typedefs need to travel. Uniquify the typedef names per §120 if + * the TU already carries a V4/Ent (it carries neither of these two spellings). + * + * SIBLINGS (the 5 other h_norm members): every DATA symbol this body touches — + * D_801202A0, D_801152A8, D_80126B78, D_80126B90 — is RESIDENT (fixed VA, not + * per-overlay tail.data), and three of the four callees (func_8012F214, + * func_80135888, func_8012F568) are resident too. The ONLY per-overlay symbol + * is func_8018956C, and in this overlay it is defined in the SAME TU + * (ov_SC06_018_jr_8017C24C.c:7711). So the §40 remap for the siblings is + * expected to be near-identity: re-point func_8018956C at each sibling's own + * address and check that sibling TU's canonical spellings for the four externs + * before sweeping (§56b — carry the TU's types, not this draft's). + */ + +typedef struct { u16 x, y, z, w; } V4_80188E10_8018937C; + +typedef struct { + u16 f0; /* 0x00 entity kind; 0x282 is the one we want */ + s16 f2; /* 0x02 state -> 9 on a hit */ + u8 p04[0x20 - 0x04]; + s32 f20; /* 0x20 collision volume A */ + u8 p24[0x58 - 0x24]; + s32 f58; /* 0x58 collision volume B */ + u8 p5C[0x70 - 0x5C]; + s16 f70; /* 0x70 sub-kind / owner tag */ + u8 p72[0x10C - 0x72]; /* stride 0x10C, 0x60 entries (0x6480) */ +} Ent_80188E10_8018937C; + +extern void func_8012F214(s32 a0, s32 a1, s32 a2); +extern s32 func_80135888(s32 a0, s32 a1, s32 a2, s32 a3); +extern void func_8012F568(s32 a0, s32 a1, s32 a2, s32 a3, s32 a4, s32 a5); +extern void func_8018956C(s32 a0, s32 a1); + + +s32 func_8018937C(Ent_80188E10_8018937C *self, s32 arg1, s32 arg2, s32 arg3, u16 kind) { + + extern s32 *D_80126B78; + extern s32 *D_80126B90; + extern u8 D_801152A8[]; + extern u8 D_801202A0[]; + V4_80188E10_8018937C a; /* 0x18(sp) */ + V4_80188E10_8018937C b; /* 0x20(sp) */ + V4_80188E10_8018937C c; /* 0x28(sp) */ + Ent_80188E10_8018937C *e; + s32 i; + + func_8012F214((s32)self, arg1, (s32)&a); + func_8012F214((s32)self, arg2, (s32)&b); + c = b; /* L2: lwl/lwr block move */ + if (func_80135888((s32)D_80126B78, (s32)D_80126B90, (s32)&a, (s32)&b) != 0) { + func_8012F568(1, 1, *(s16 *)(self->f20 + 0x12), arg3, (s32)&b, (s32)D_801152A8); + return 1; + } + e = (Ent_80188E10_8018937C *)D_801202A0; + if (kind != 0xFFFF) { /* L3 */ + for (i = 0; i < 0x60; i++, e++) { /* L2: i=0 HERE, not above */ + if (e->f0 == 0x282 && (e->f70 == kind || e->f70 == self->f70) && e != self && + func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { + e->f2 = 9; /* L4: keep identical */ + func_8018956C((s32)e, 0); + return 1; + } + } + return 0; + } else { + for (i = 0; i < 0x60; i++, e++) { /* L2 */ + if (e->f0 == 0x282 && e->f70 == self->f70 && e != self && + func_80135888(e->f20, e->f58, (s32)&a, (s32)&c) != 0) { + e->f2 = 9; /* L4: keep identical */ + func_8018956C((s32)e, 0); + return 1; + } + } + return 0; + } +} + + + +extern s32 func_80132EF4(s32 a0, s32 a1); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); +extern void func_80049CAC(s32, s32); +extern void func_800484EC(s32, s32, s32); +extern s32 func_8012C658(s32, s32, s32); +extern void func_8018A3CC(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018956C(s32 a0, s32 a1) { + s32 buf10[8]; /* sp+0x10 (0x20) - func_80049CAC out / func_800484EC in */ + s32 g40[4]; /* sp+0x30, only [0..2] used - func_800484EC vec3 arg */ + u16 g30[4]; /* sp+0x40, only [0..2] used - func_80049CAC vec3 arg */ + unsigned int buf48[2]; /* sp+0x48 (8) - func_8012B0B4 output */ + unsigned int *p48; + s32 i; + s32 baseY; + s32 e; + u32 uVar; + s32 scratch; + s32 tmp; + + i = 0; + p48 = buf48; + baseY = 0x100; + do { + e = func_80132EF4(a0, 0x23); + if (e != 0) { + *(s16 *)(e + 0x34) = rand() % 0x4000 + 0x1000; + *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc008; + + func_8012B0B4(p48, rand() % 0x1000, rand() % 0x58); + + tmp = *(s32 *)buf48; + *(s16 *)(e + 6) = *(s16 *)(e + 6) + (s16)tmp; + *(s16 *)(e + 0xe) = *(s16 *)(e + 0xe) + (s16)(tmp >> 16); + + tmp = rand(); + scratch = tmp % 0x80; + uVar = rand(); + g30[0] = (uVar & 1) == 0 ? -scratch + 0x400 : scratch + 0x400; + + scratch = rand() % 0xc0; + uVar = rand(); + g30[1] = (uVar & 1) != 0 ? baseY + scratch : baseY - scratch; + + g30[2] = 0; + g40[1] = 0; + g40[0] = 0; + g40[2] = (rand() % 4 + 3) << 16; + + ((void (*)(void *, void *))func_80049CAC)(g30, buf10); + ((void (*)(void *, void *, s32))func_800484EC)(buf10, g40, e + 0x10); + } + i++; + baseY += 0x200; + } while (i < 8); + + e = func_80132EF4(a0, 0x23); + if (e != 0) { + *(u16 *)(e + 0x34) = 0x7ff1; + *(u16 *)(*(s32 *)(e + 0x20) + 0x2c) = 0xc004; + *(s32 *)(e + 0x14) = 0xfffb0000; + } + + i = 0; + do { + func_8012C658(0x29d, (u16)a1, a0); + i++; + } while (i < 4); + + func_8018A3CC(a0, 0x95e); +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801897F0); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_80189888); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801898EC); + + +extern s32 func_8012B6D4(s16 *a0, s16 *a1); + +// @class: branch-polarity +// @stuck: none — MATCH (32 ins), iteration 2. §3-T4: gcc-2.7.2 lays this out as +// "branch TO the then-arm, fall through to the else", so the source condition is +// `d < 0x800` (the bnez sense read off the target opcode), NOT Ghidra's inverted +// arm order. The wrong polarity also cost one instruction (match_one printed +// LENGTH-DRIFT/-1): with the arms swapped, the `sll $v0,$s0,16` of the s16 param +// lands in the branch delay slot and is SHARED by both arms; the correct polarity +// puts `addiu $v1,$zero,0x1000` there and each arm gets its own sll/sra. +// a1 is an ANSI s16 param (sign-extended at each use, once per arm) — not K&R §43. +s32 aF80189938(s32 a0, s16 a1) __asm__("func_80189938"); +s32 aF80189938(s32 a0, s16 a1) +{ + /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every + LATER function in this TU, which blocks a byte-true decl of a different type. + Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ + extern u8 D_80126B5C; + /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every + LATER function in this TU, which blocks a byte-true decl of a different type. + Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ + extern s32 *D_80126B78; + s32 d; + + d = (func_8012B6D4((s16 *)&D_80126B5C, (s16 *)(a0 + 4)) - + *(s16 *)((s32)D_80126B78 + 0x12)) & 0xFFF; + if (d < 0x800) { + return d < a1; + } else { + return (0x1000 - d) < a1; + } +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_801899B8); + + +extern void (*D_801BC61C[])(void); + +void func_80189A20(void *a0) { + D_801BC61C[*(u16 *)((s32)a0 + 0x2)](); +} + + + + +extern s32 rand(void); +extern void func_8012C1B8(void); +extern void func_8012CAE4(s32 a0); +extern void func_8001C214(s32 a0, s32 a1); +extern void func_8012B2CC(s32 a0); +extern void func_8012B178(s32 a0, s32 a1); + +void func_80189A5C(s32 param_1) { + + extern u8 D_801BC624[]; + s32 unused[2]; /* dead 8-byte local — frame padding (cookbook idiom 6) */ + s32 obj; + s16 raw; + s32 r; + s32 sgn; + s32 v; + u8 *tbl; + s16 *p; + s32 q; + s32 w; + + obj = ((s32 (*)(void))func_8012C1B8)(); + if (obj == 0) { + func_8012CAE4(param_1); + return; + } + *(s32 *)(param_1 + 0x20) = obj; + func_8001C214(obj, 0); + + raw = rand(); + r = raw; + *(u16 *)(obj + 0x2C) = *(u16 *)(obj + 0x2C) | 0x10; + v = r % 384 + 0x400; + *(s16 *)(obj + 0x1C) = v; + *(s16 *)(obj + 0x1A) = v; + *(s16 *)(obj + 0x18) = v; + sgn = -1; + if (raw & 1) { + sgn = 1; + } + *(s16 *)(obj + 0x10) = sgn * (r % 128) - 0x300; + *(s16 *)(obj + 0x12) = r % 4096; + *(s32 *)(param_1 + 0x48) = 0xC000; + *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x19; + func_8012B2CC(param_1); + func_8012B178(param_1, -0xC0000 - ((r % 8) << 16)); + *(s32 *)(param_1 + 0x1C) = 0x3C; + *(s16 *)(param_1 + 0xFE) = rand() & 0xF0; + *(s16 *)(param_1 + 0x100) = rand() & 0x1F0; + *(s16 *)(param_1 + 0x102) = rand() & 0x30; + tbl = &D_801BC624[(*(u16 *)(param_1 + 0x70) & 0xF) * 4]; + + p = (s16 *)(param_1 + 0xDC); + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[0] = w; + p[1] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[2] = w; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[4] = w; + p[5] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[6] = w; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q - 0x18; + } else { + w = q - 0x18; + } + p[8] = w; + p[9] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[10] = w; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[12] = w; + p[13] = 0; + + q = rand() % 12; + if ((rand() & 1) == 0) { + w = -q + 0x18; + } else { + w = q + 0x18; + } + p[14] = w; + + *((u8 *)p + 0x20) = tbl[0]; + *((u8 *)p + 0x21) = tbl[1]; + *((u8 *)p + 0x22) = tbl[2]; + *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; +} + + + +extern s32 func_8012CBF4(s32 a0); +extern s32 func_8012BEE8(s32 a0); +extern void func_8012C218(s32); +extern void func_80017274(s32 a0, s32 a1); + +void func_80189EC0(s32 param_1) { + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x10) + *(u16 *)(param_1 + 0xFE); + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + *(u16 *)(param_1 + 0x100); + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(param_1 + 0x20) + 0x14) + *(u16 *)(param_1 + 0x102); + + if (func_8012CBF4(param_1) != 0 || func_8012BEE8(param_1) != 0) { + ((void (*)(void *))func_8012C218)((void *)param_1); + } else { + func_80017274(param_1 + 0xDC, *(s32 *)(param_1 + 0x20) + 0x34); + } +} + + + +extern void (*D_801BC63C[])(void); + +void func_80189F64(void *a0) { + D_801BC63C[*(u16 *)((s32)a0 + 0x2)](); +} + + + +extern s32 rand(void); +extern void func_8012C1B8(void); /* TU-canonical (ov_SC06_018_jr_8017C24C) */ +extern void func_8012CAE4(s32 a0); +extern void func_8001C214(s32 a0, s32 a1); +extern void func_8012B0B4(unsigned int *p, int a1, int a2); /* TU-canonical */ +extern void func_8012B2CC(s32 a0); + +void func_80189FA0(s32 param_1) { + u32 buf[2]; + s32 obj; + s32 o2; + s32 base; + s32 off; + s32 v; + s32 t; + + obj = ((s32 (*)(void))func_8012C1B8)(); + *(s32 *)(param_1 + 0x20) = obj; + if (obj == 0) { + func_8012CAE4(param_1); + } else { + func_8001C214(obj, 0); + if ((*(s16 *)(param_1 + 0x70) & 0x8000) == 0) { + *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x10) = -0x80 - (rand() % 0x300); + o2 = *(s32 *)(param_1 + 0x20); + off = rand() % 0xC0; + base = *(s16 *)(param_1 + 0x70) * 0x300 + 0x180; + if (rand() & 1) { + v = base + off; + } else { + v = base - off; + } + *(s16 *)(o2 + 0x12) = v; + func_8012B0B4(buf, *(s16 *)(*(s32 *)(param_1 + 0x20) + 0x12) + 0x800, + rand() % 0x10 + 8); + t = buf[0]; + *(u16 *)(param_1 + 0x6) = *(u16 *)(param_1 + 0x6) + t; + *(u16 *)(param_1 + 0xE) = *(u16 *)(param_1 + 0xE) + (t >> 16); + *(u16 *)(param_1 + 0xA) = *(u16 *)(param_1 + 0xA) - 0x10; + func_8012B2CC(param_1); + *(s32 *)(param_1 + 0x1C) = 4; + *(u16 *)(param_1 + 0x2) = *(u16 *)(param_1 + 0x2) + 1; + } else { + *(s16 *)(param_1 + 0xDC) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCC); + *(s16 *)(param_1 + 0xDE) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xCE); + *(s16 *)(param_1 + 0xE0) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD0); + *(s16 *)(param_1 + 0xE4) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD4); + *(s16 *)(param_1 + 0xE6) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD6); + *(s16 *)(param_1 + 0xE8) = *(u16 *)(*(s32 *)(param_1 + 0x64) + 0xD8); + *(s16 *)(param_1 + 0x2) = 2; + *(s32 *)(param_1 + 0x1C) = 8; + } + } +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018A194); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018A2D0); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018A3CC); + + +extern void (*D_801BC648[])(void); + +void func_8018A538(void *a0) { + D_801BC648[*(u16 *)((s32)a0 + 0x2)](); +} + + + +extern void func_80128EA8(s32 a0, s32 a1, s32 a2); + +void func_8018A574(s32 param_1) { + + extern u8 D_800D387C[]; + extern u8 D_800D3888[]; + s32 t; + + *(u32 *)(*(s32 *)(param_1 + 0x20) + 0x20) = (u32)&D_800D387C; + + *(u32 *)(*(s32 *)(param_1 + 0x20) + 4) |= 0x50000000; + + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x27) = 0x9c; + + t = *(s32 *)(param_1 + 0x20); + *(u16 *)(t + 0x1a) = 0x2000; + *(u16 *)(t + 0x18) = 0x2000; + + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x24) = 0xff; + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x25) = 0; + *(u8 *)(*(s32 *)(param_1 + 0x20) + 0x26) = 0; + + func_80128EA8(*(s32 *)(param_1 + 0x20), param_1 + 0x24, (s32)&D_800D3888); + + *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; +} + + + +extern void func_8012931C(s32 a0); +extern s32 func_80128ED8(s32 param_1, s32 *param_2); +extern void func_801292C8(u8*); + +void func_8018A624(s32 param_1) { + s32 q; + u8 a; + u8 b; + u16 h; + + q = *(s32 *)(param_1 + 0x20); + + a = *(u8 *)(q + 0x24) - 0x20; + *(u8 *)(q + 0x24) = a; + if (a < 0x80) { + *(u8 *)(q + 0x24) = 0x80; + } + + b = *(u8 *)(q + 0x25) + 0x20; + *(u8 *)(q + 0x25) = b; + if (b > 0x80) { + *(u8 *)(q + 0x25) = 0x80; + } + + h = *(u16 *)(q + 0x1A) + 0x400; + *(u8 *)(q + 0x26) = *(u8 *)(q + 0x25); + *(u16 *)(q + 0x1A) = h; + *(u16 *)(q + 0x18) = h; + + func_8012931C(param_1); + + if (func_80128ED8((void *)q, (void *)(param_1 + 0x24)) != 0) { + ((void (*)(s32))func_801292C8)(param_1); + } +} + + + +extern s32 func_8012C588(s32 a0, s32 a1); + +s32 func_8018A6DC(s32 a0, s32 a1) { + /* [T51] scoped in from file scope: a file-scope decl of these symbols constrains every + LATER function in this TU, which blocks a byte-true decl of a different type. + Declaration-only move (cookbook §103); the whole-binary byte-gate is the arbiter. */ + extern s32 D_801E17F0; + D_801E17F0 = a1; + return func_8012C588(0x85, a0); +} + + +extern s32 func_80017DC4(void *a0, void *a1); +extern void func_80017E68(void *a0, void *a1); +extern void func_800D20C0(void *a0, void *a1, s32 a2); +extern void func_800D23D0(void *a0); +extern void func_8012A828(s32 a0, void *a1); +extern void func_8012C218(s32); +extern void func_8012F14C(s32 a0, s32 a1, s32 a2); +extern s32 func_80134510(s32 arg); + +// @class: regalloc-order +// @stuck: none — MATCH (145/145 ins, match_one confirmed) + + + + +s32 func_8018A70C(s32 param_1) { + + extern u8 D_801152A8[]; + extern M2C_UNK D_8018FB1C; + extern s32 D_801E17F0; + extern s32 func_8012C354(s32, void*); + extern void RotMatrixZ(s32, void *); + extern void MulMatrix0(s32, void *, s32); + extern s32 D_801D4450; + extern char * D_801D4484; + extern char D_801E17D0[]; + + S8_80184F08 s60; + SVECTOR_80184F08 sStack_58; + S8_80184F08 s50; + int auStack_48[8]; + s32 iVar5, iVar8; + char *puVar2, *puVar4; + u16 uVar3; + + if (((s32 (*)(s32, void *))func_8012C354)(param_1, &D_801D4450) == 0) { + ((void (*)(s32))func_8012C218)(param_1); + } + ((void(*)(s32, void *))func_8012A828)(param_1, &(*(s32 *)&D_8018FB1C)); + iVar5 = *(s32 *)(param_1 + 0x20); + *(s16 *)(param_1 + 0x70) = 0x80; + *(s32 *)(iVar5 + 4) |= 0x50000040; + *(u16 *)(iVar5 + 0x2c) |= 1; + iVar8 = *(s32 *)(*(s32 *)(param_1 + 0x64) + 0x20) + 0x34; + ((void (*)(s32, s32, void *))func_8012F14C)(iVar8, D_801E17F0, &s60); + s50 = s60; + sStack_58.vz = 0x1800; + sStack_58.vy = 0x1800; + sStack_58.vx = 0x1800; + ((void (*)(void *, void *))func_80017DC4)(&sStack_58, auStack_48); + RotMatrixZ(rand() & 0xfff, auStack_48); + MulMatrix0(iVar8, auStack_48, iVar5 + 0x34); + ((void (*)(void *, s32))func_80017E68)(&s50, iVar5 + 0x34); + + /* pool-alloc: gcc routes the loaded pointer through a caller-saved reg ($v0) + before the callee-saved home ($s1) — pin it to reproduce the extra move. */ + { + register char *tmp __asm__("$2"); + tmp = D_801D4484; + puVar2 = tmp; + } + puVar4 = puVar2 + 0x20; + D_801D4484 = puVar4; + *(char **)(param_1 + 0xcc) = puVar2; + if (D_801E17D0 < puVar4) { + D_801D4484 = D_801E17D0 - 0x120; + } + func_800D20C0(&s60, &sStack_58, 7); + func_800D23D0(&sStack_58); + ((void(*)(void *, void *))RotMatrixYXZ)(&sStack_58, puVar2); + ((void (*)(void *, s32))func_80017E68)(&s60, (s32)puVar2); + + uVar3 = *(u16 *)((char *)&s50 + 2); + if (((s32 (*)(void *))func_80134510)(&s50) != 0 && + (s32)(s16)uVar3 - (s32)*(s16 *)((char *)&s50 + 2) < 0x80) { + *(s16 *)((char *)&s50 + 2) = *(s16 *)((char *)&s50 + 2) - 4; + { + register char *tmp __asm__("$3"); + tmp = D_801D4484; + puVar2 = tmp; + } + puVar4 = puVar2 + 0x20; + D_801D4484 = puVar4; + *(char **)(param_1 + 0xd0) = puVar2; + if (D_801E17D0 < puVar4) { + D_801D4484 = D_801E17D0 - 0x120; + } + func_800D23D0(&(*(s32 *)&D_801152A8)); + ((void(*)(void *, void *))RotMatrixYXZ)(&(*(s32 *)&D_801152A8), puVar2); + ((void (*)(void *, s32))func_80017E68)(&s50, (s32)puVar2); + } + *(s16 *)(param_1 + 2) = *(s16 *)(param_1 + 2) + 1; +} + + +extern s32 func_80017758(void *a0, void *a1); +extern void func_8012C218(s32); +// (3) counter is `short i` do-while (keeps the `addu $s2,$v0,$0` raw-copy + sll16/sra16 compare); +// (4) gcc-2.7.2 loads s8/s16 via lbu/lhu+shift-extend (not lb/lh) so `signed char *p; *(s16*)buf=*p++` +// emits lbu;sll24;sra24;sh; (5) else-branch zero-byte asm barrier forces `addu $a0,$s1,$0` (else gcc +// reuses the still-live incoming $a0 with a nop delay slot). + +s32 func_8018A950(s32 param_1) { + + extern signed char D_801D443C[]; + register int self __asm__("$17") = ((int)param_1); + int iVar6; + int iVar1; + unsigned char buf[0x34]; + signed char *p; + short i; + int dest; + int td; + unsigned short t; + + iVar1 = *(int *)(self + 0x1c); + iVar6 = *(int *)(self + 0x20); + *(int *)(self + 0x1c) = iVar1 + 1; + if (iVar1 < 2) { + p = D_801D443C; + i = 0; + dest = *(int *)(self + 0xcc); + t = *(unsigned short *)(self + 0x70); + *(short *)(buf + 0x0c) = 0; + *(short *)(buf + 0x0a) = 0; + *(short *)(buf + 0x08) = 0; + *(short *)(buf + 0x1c) = 0; + *(short *)(buf + 0x14) = 0; + *(short *)(buf + 0x04) = 0; + buf[0x22] = 0; + buf[0x21] = 0; + buf[0x20] = 0; + buf[0x2a] = 0; + buf[0x29] = 0; + buf[0x28] = 0; + buf[0x2e] = 0; + buf[0x2d] = 0; + buf[0x2c] = 0; + *(int *)(buf + 0x30) = 0x50000000; + buf[0x25] = t; + buf[0x26] = t; + buf[0x24] = t; + do { + *(short *)(buf + 0x00) = *p++; + *(short *)(buf + 0x02) = *p++; + *(short *)(buf + 0x10) = *p++; + *(short *)(buf + 0x12) = *p++; + *(short *)(buf + 0x18) = *p++; + *(short *)(buf + 0x1a) = *p--; + func_80017758(buf, (void *)dest); + i++; + } while (i < 4); + + td = *(int *)(self + 0xd0); + if (td != 0) { + dest = td; + p = D_801D443C; + i = 0; + t = *(unsigned short *)(self + 0x70); + *(short *)(buf + 0x0c) = 0; + *(short *)(buf + 0x0a) = 0; + *(short *)(buf + 0x08) = 0; + *(short *)(buf + 0x1c) = 0; + *(short *)(buf + 0x14) = 0; + *(short *)(buf + 0x04) = 0; + buf[0x22] = 0; + buf[0x21] = 0; + buf[0x20] = 0; + buf[0x2a] = 0; + buf[0x29] = 0; + buf[0x28] = 0; + buf[0x2e] = 0; + buf[0x2d] = 0; + buf[0x2c] = 0; + *(int *)(buf + 0x30) = 0x50000000; + buf[0x25] = t; + buf[0x26] = t; + buf[0x24] = t; + do { + *(short *)(buf + 0x00) = *p++; + *(short *)(buf + 0x02) = *p++; + *(short *)(buf + 0x10) = *p++; + *(short *)(buf + 0x12) = *p++; + *(short *)(buf + 0x18) = *p++; + *(short *)(buf + 0x1a) = *p--; + func_80017758(buf, (void *)dest); + i++; + } while (i < 4); + } + *(short *)(self + 0x70) = *(short *)(self + 0x70) >> 1; + *(unsigned short *)(iVar6 + 0x2c) |= 1; + } else { + __asm__ __volatile__("" : "=r"(self) : "0"(self)); + ((void (*)(void *))func_8012C218)((void *)self); + } +} + + + +extern void (*D_801D4488[])(void); + +void func_8018ABF0(void *a0) { + D_801D4488[*(u16 *)((s32)a0 + 0x2)](); +} + + + + +// @class: schedule +// @stuck: none — MATCH (132 ins, match_one). Levers: (1) block2 statement order — compute sv1.vz (with the *(p+0xe) load) right after the 2nd call so gcc hoists that load into $v1, forcing the sv2.vx=sv1.vx copy through $a3, which globally pushes every `func*param>>12` product from $a3 to $t0; (2) sv2 store order vx-before-vy; (3) SHARED return-0 join via gotos placed BEFORE the copy block (ret0: before docopy:) — this blocks gcc's conditional-jump-over-jump inversion + return-threading, so the copy block falls through to the epilogue with v0=1 preset in the beqz delay slot (drops the extra `li v0,1`). + + +extern int func_8004787C(int); +extern int func_80047948(int); +extern s32 func_80133784(s32, void*, s32); + +int func_8018AC2C(int param_1, short param_2) +{ + int iVar1; + unsigned int uVar2; + int iVar3; + SVECTOR sv1; + SVECTOR sv2; + + if (*(int *)(param_1 + 0xdc) != 0) goto ret0; + sv1.vx = *(short *)(param_1 + 6); + sv1.vy = *(short *)(param_1 + 0xa) + -0x20; + sv1.vz = *(short *)(param_1 + 0xe); + iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + iVar3 = (int)param_2; + sv2.vy = sv1.vy; + sv2.vx = sv1.vx - (short)(iVar1 * iVar3 >> 0xc); + iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + sv2.vz = sv1.vz - (short)(iVar1 * iVar3 >> 0xc); + uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); + if ((uVar2 & 0x8000) != 0) { + iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + *(short *)(param_1 + 6) = sv2.vx + (short)(iVar1 * iVar3 >> 0xc); + iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + *(short *)(param_1 + 0xe) = sv2.vz + (short)(iVar1 * iVar3 >> 0xc); + return 1; + } + iVar1 = func_8004787C(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + sv1.vx = *(short *)(param_1 + 6) - (short)(iVar1 * iVar3 >> 0xc); + sv1.vy = *(short *)(param_1 + 0xa) + -0x10; + iVar1 = func_80047948(*(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) & 0xfff); + sv1.vz = *(short *)(param_1 + 0xe) - (short)(iVar1 * iVar3 >> 0xc); + sv2.vx = sv1.vx; + sv2.vy = sv1.vy + 0x20; + sv2.vz = sv1.vz; + uVar2 = ((int (*)(int, SVECTOR *, SVECTOR *))func_80133784)(1, &sv1, &sv2); + if ((uVar2 & 0x6000) == 0) goto docopy; +ret0: + return 0; +docopy: + *(int *)(param_1 + 4) = *(int *)(param_1 + 0x38); + *(int *)(param_1 + 8) = *(int *)(param_1 + 0x3c); + *(int *)(param_1 + 0xc) = *(int *)(param_1 + 0x40); + return 1; +} + + + + +/* func_8018AE3C — ov_SC06_008 / ov_SC06_008_jr_8017C294 + * + * Two-arm actor tick keyed on the s16 countdown at actor+0xFC: + * arm A (counter == 0, the FALL-THROUGH / longer block): three func_8012C658 + * spawns with offset pokes, a sound cue, two child-actor state pokes, an + * 8-iteration 0x281 particle burst, then the RTP positional-sound block + * (the byte-proven RTP_SND shape from ov_SC03_099_jr_8017BEBC.c:5406). + * arm B (counter != 0): a func_8012913C(0x23) spawn scattered around the + * actor, VectorNormalSS toward D_801151D4->{0x5C,0x60,0x64}, sound 0xAF8. + * + * Declarations copied VERBATIM from the TU (one-pass grep, D2): + * D_801151D4 src/ov_SC06_008/ov_SC06_008_jr_8017C294.c:323 + * rand :956 + * VectorNormalSS :1849 + * func_8012C658 :2523 + * func_8012C588 :3767 + * func_8012C218 :3782 + * func_8002D4C8 :59 + * func_8004914C :2645 + * func_800491AC :2646 + * func_8012913C :4356 (non-prototype form, BELOW the splice point) + * func_8002AC00 :5447 (block-scope extern only) + * RotTransPers / D_800AF648 / func_8002A04C are not in this TU -> fleet-dominant forms. + */ + +extern s32 rand(void); +extern s32 VectorNormalSS(void *a0, void *a1); +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012C218(s32); +extern void func_8002D4C8(s32 a0, s32 a1); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002A04C(s32 a0); +extern void func_8002AC00(s32 a0); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern u8 *func_8012913C(); + +void func_8018AE3C(s32 a0) +{ + + extern s32 D_801151D4; + extern u8 D_800AF648; + + /* L5: slot offsets are exact only through ONE struct — plain array locals + get 8-byte-rounded slots and pushed z/flag to 0x28/0x2C (measured). */ + struct { + u16 nv[4]; /* sp+0x10 */ + s16 rv[4]; /* sp+0x18 */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + + s32 g; + s32 s0; + s32 i; + + g = D_801151D4; + + if (*(s16 *)(a0 + 0xFC) == 0) { + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; + } + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(u16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; + } + s0 = func_8012C658(0x32, 2, a0); + if (s0 != 0) { + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(u16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; + } + func_8002AC00(0x22); + + s0 = *(s32 *)(a0 + 0xCC); + *(s16 *)(s0 + 0x2) = 2; + *(s16 *)(s0 + 0xFC) = 1; + s0 = *(s32 *)(a0 + 0xD0); + *(s16 *)(s0 + 0x2) = 2; + *(s16 *)(s0 + 0xFC) = 1; + + for (i = 0; i < 8; i++) { + s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(u16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x30; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + + L.rv[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.rv[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.rv[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); + } + } + func_8002A04C(a0); + ((void (*)(void *))func_8012C218)((void *)a0); + } else { + s0 = (s32)func_8012913C(0x23); + if (s0 != 0) { + *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; + *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0xE0; + { + s32 r = rand(); + s32 t = *(u16 *)(a0 + 0xE); + *(s16 *)(s0 + 0x34) = 0x1800; + *(s32 *)(s0 + 0x18) = 0; + *(s32 *)(s0 + 0x14) = 0; + *(s32 *)(s0 + 0x10) = 0; + *(s16 *)(s0 + 0xE) = t + (r & 0x7F) - 0x40; + } + L.nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); + L.nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); + L.nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); + VectorNormalSS(L.nv, L.nv); + *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); + *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); + *(s16 *)(s0 + 0x34) = 0x3000; + func_8002D4C8(0xAF8, 0); + } + *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) - 1; + } +} + + + + +// TARGET: func_8018B240 (ov_SC06_008, TU ov_SC06_008_jr_8017C294.c, 93 ins) +// +// Template: func_801821F8 in this SAME TU (src/ov_SC06_008/ov_SC06_008_jr_8017C294.c, +// around line 5283) is an already-MATCHED sibling (126 ins) with a documented byte-exact +// idiom set (its comment, verbatim): +// @class: plumbing +// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the +// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized +// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args +// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 +// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in +// the `< 1` test. +// +// func_8018B240 is the SAME body with the leading "if (*(short*)(param_1+0xfc)==0) {...}" block +// (the 0x64-indirected 3x int-copy + 3x u16-copy prologue) removed, and the "already fired" gate +// field is 0xe2 instead of 0x102. Confirmed against the target .s: no reference anywhere to 0xfc, +// 0x64, or 0x102/0x20 offsets; the gate compare is `lh $v1, 0xE2($s0)` / `sh $v1(=0xA), 0xE2($s0)`. + +extern void func_8002D4C8(int, int); +extern void func_8016AA50(int, int); +extern s32 func_8016B428(s32); +extern void func_80019064(void *); +extern void func_8002A520(int); +extern void func_8002A790(int); +extern void func_80131E00(int, int); + +void func_8018B240(int param_1) +{ + extern unsigned char D_801D4B7C[]; + int cVar1; + int unaff_s1; + + cVar1 = *(unsigned char *)(param_1 + 0x5e); + *(char *)(param_1 + 0xc1) = 0; + *(short *)(param_1 + 0x5e) = 0; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; + if (*(short *)(param_1 + 0xe2) == 0) { + *(short *)(param_1 + 0xe2) = 10; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; + func_8002D4C8(0x9b7, 0); + if (*(short *)(param_1 + 0x60) != 0) { + if (cVar1 == 0x1d) { + *(short *)(param_1 + 0x82) = 0; + *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); + *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); + *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); + } + if (*(int *)(param_1 + 0x78) != 0) { + unaff_s1 = (int)*(short *)(param_1 + 0x60) * + (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; + if (unaff_s1 < 1) { + unaff_s1 = 1; + } + } + *(unsigned short *)(param_1 + 0x76) = + *(unsigned short *)(param_1 + 0x76) - unaff_s1; + func_8016AA50(param_1, unaff_s1); + if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { + ((void (*)(int))func_8016B428)(param_1); + func_80019064(D_801D4B7C); + } + } + if (cVar1 != 0x1d) { + if (*(unsigned char *)(param_1 + 0xc8) != 0) { + func_8002A520(param_1); + } + if (*(unsigned char *)(param_1 + 0xc9) != 0) { + func_8002A790(param_1); + } + } + if (*(short *)(param_1 + 0x76) < 1) { + *(short *)(param_1 + 0x5c) = 0; + func_80131E00(param_1, 6); + } + } + return; +} + + + +// @class: schedule +// @stuck: none — MATCH; success-block placed last via `goto big` (bnez forward into epilogue), single cae4 merge kept + +extern int func_8012C354(); +extern void func_800599B8(); +extern void func_8001C214(); +extern void func_80143970(); +extern void func_8012B030(); +extern void func_8012A828(); +extern void func_8012B23C(); +extern int func_8012C658(); +extern void func_8012C218(); +extern void func_8012CAE4(); + + +void func_8018B3B4(int param_1) { + + extern u8 D_801D4B9C[]; + extern u8 D_801D4AE0[]; + extern u8 D_801D4AA0[]; + extern u8 D_801D4AE8[]; + extern u8 D_801D4AC0[]; + extern u8 D_801D8E08[]; + extern u8 D_801DC0B8[]; + extern u8 D_801D4BDC[]; + extern u8 D_801DBF20[]; + extern u8 D_801DBFA8[]; + extern u8 D_801DC030[]; + int iVar1; + + iVar1 = func_8012C354(param_1, D_801D4B9C); + if (iVar1 != 0) { + if (*(short *)(param_1 + 0x70) != 0) { + func_800599B8(D_801D4AE0, D_801D4AA0); + func_800599B8(D_801D4AE8, D_801D4AC0); + func_8001C214(*(int *)(param_1 + 0x20), D_801D8E08); + } + *(u8 *)(param_1 + 0xc0) = 1; + *(int *)(param_1 + 0xb4) = 0xffffdfde; + func_80143970(param_1); + func_8012B030(param_1); + *(short *)(param_1 + 0xae) = 0x2100; + func_8012A828(param_1, D_801DC0B8); + *(u16 *)(param_1 + 2) = *(u16 *)(param_1 + 2) + 1; + func_8012B23C(param_1); + *(u32 *)(param_1 + 0xc4) = *(u32 *)(param_1 + 0xc4) | 2; + iVar1 = func_8012C658(0x26f, (int)*(short *)(param_1 + 0x70), param_1); + if (iVar1 != 0) { + *(int *)(param_1 + 0xcc) = iVar1; + iVar1 = func_8012C658(0x270, (int)*(short *)(param_1 + 0x70), param_1); + if (iVar1 != 0) goto big; + func_8012C218(*(int *)(param_1 + 0xcc)); + } + func_8012CAE4(param_1); + } + return; +big: + *(int *)(param_1 + 0xd0) = iVar1; + *(u32 *)(param_1 + 0xbc) = (u32)D_801D4BDC; + *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) = + *(u16 *)(*(int *)(param_1 + 0x20) + 0x2c) | 0x10; + *(short *)(*(int *)(param_1 + 0x20) + 0x18) = 0x2400; + *(short *)(*(int *)(param_1 + 0x20) + 0x1a) = 0x2400; + *(short *)(*(int *)(param_1 + 0x20) + 0x1c) = 0x2400; + *(u16 *)(param_1 + 2) = 8; + func_8012A828(param_1, D_801DBF20); + func_8012A828(*(int *)(param_1 + 0xcc), D_801DBFA8); + func_8012A828(*(int *)(param_1 + 0xd0), D_801DC030); + return; +} + + + +/* func_8018B564 — ov_SC06_008 / ov_SC06_008_jr_8017C294. MATCH 163/163. + * Family of 7 (ov_SC06_008/010/018/022/024/032/033, all 163 ins, all still in + * nonmatchings) — §136e applies: no twin existed, so this is derived from the .s. + * The byte-proven accumulate head (b744 nested inside b608, then two RE-LOADS of + * *(s32*)(a0+0x20)) is copied verbatim from src/ov_SC03_099/..._jr_8017BEBC.c:5424. + * + * Four levers, each measured against match_one: + * + * 1. NO frame padding. args_size already fills sp+0x00..0x1F, so the four saved + * regs land at 0x20..0x2F and the frame is 0x30 with ZERO locals. A 16-byte + * dead aggregate (idiom 6, added on the first draft from a mis-derived + * args_size=0x10) made it 0x40 — idiom 6 only applies when the reg-save area + * does NOT start at args_size. + * + * 2. BRANCH POLARITY / BLOCK LAYOUT (§3-T4, T7). `if (C) goto X;` followed by a + * `break` is REWRITTEN by jump.c's jump-around-jump inversion into + * `if (!C) goto break_target;` — which is the wrong polarity here. The target + * wants the true arm to FALL THROUGH. Two rewrites, both worth +0 instructions + * but different bytes: + * case 1: `if (A||B) goto st2; break;` -> `if (!A && !B) break; goto st2;` + * (TRUTH_ANDIF gives reversed branches to `next`, and the trailing + * `j st2` is the fall-through — exactly `beqz L600 / j L5E0`.) + * case 3: same shape, plus the range test written as the POSITIVE + * `if (r >= -0xFF && r <= 0xFF) break;` so fold_range_test's + * `sltiu (r+0xFF),0x1FF` branches on TRUE to the switch end and case 3 + * falls through into st2 (saves the `j`+`nop`, 165 -> 163 ins). + * Case 0 keeps the plain `if (A||B) {..} else {..}` — there jump.c's inversion + * IS what the target has. + * + * 3. THE SHARED STORE BLOCK. L801815F8/L801815FC (`li v0,1` / `sh v0,0x34`) sit + * AFTER st2 in the target, so they are NOT inline `else` arms (cross-jumping + * keeps the LAST copy, which would put them BEFORE st2). They are explicit + * trailing labels inside the switch with an `ns` join variable; case 2 enters at + * `setstate` with ns=3, cases 0 and 3 enter at `set1`. + * + * 4. REGALLOC-PERM -> the $16 pin (see below). + */ + +extern s32 rand(void); +extern void func_8012B1B4(s32 a0, s32 a1); +extern void func_8012CBCC(s32 a0); +extern void func_8012BE98(s32 a0, u16 *a1); +extern s32 func_8012B744(void *a0, void *a1); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern void func_8012BE54(s32 a0); +extern int func_8018AC2C(int param_1, short param_2); + +void func_8018B564(s32 a0) { + + extern u8 D_801D4BFC[]; + + /* §137/K3+K5: unpinned, the a0-copy allocno (R=37/L=137, pri 13503) is + * ranked first and first-fits $s0, pushing `tbl` to $s1 — a clean 2-reg + * perm no source reordering can flip (pri(tbl) = 394). Pinning `tbl` to + * $16 makes $s0 "already dirty" in find_reg pass 0: the a0 copy conflicts + * with it and opens $s1, and case 3's `d` (which does NOT conflict with + * `tbl`) grabs $s0 in pass 0 — exactly the target's assignment. */ + register s32 tbl __asm__("$16"); + s32 ns; + + tbl = (s32)D_801D4BFC; + func_8012B1B4(a0, tbl); + func_8012CBCC(a0); + + switch (*(u16 *)(a0 + 0x34)) { + case 0: + if (func_8018AC2C(a0, 0x48) != 0 || + ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) > + 0x3FFFF) { + s32 r = func_8012B608( + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), + func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 8); + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; + func_8012B1B4(a0, tbl); + } else { + goto set1; + } + break; + + case 1: + if (func_8018AC2C(a0, 0x48) == 0 && + ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)) <= + 0x3FFFF) { + break; + } + goto st2; + + case 2: { + s32 r = func_8012B608( + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), + func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)), 0x10); + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + r; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) & 0xFFF; + } + func_8018AC2C(a0, 0x48); + { + s16 c = *(s16 *)(a0 + 0x102); + if (c == 0) { + ns = 3; + goto setstate; + } + *(s16 *)(a0 + 0x102) = c - 1; + } + break; + + case 3: { + void *p88 = (void *)(a0 + 0x88); + s32 d = ((s32(*)(s32, u16 *))func_8012BE98)(a0, (u16 *)p88); + if (func_8018AC2C(a0, 0x48) == 0) { + if (d > 0x40000) { + s32 r = func_8012B608(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12), + func_8012B744((void *)(a0 + 4), p88), 1); + if (r >= -0xFF && r <= 0xFF) { + break; + } + } else { + goto set1; + } + } + } + /* fall through into st2 */ + st2: + *(u16 *)(a0 + 0x34) = 2; + *(u16 *)(a0 + 0x102) = (rand() & 7) + 8; + break; + + set1: + ns = 1; + setstate: + *(u16 *)(a0 + 0x34) = ns; + break; + } + + { + s16 t = *(s16 *)(a0 + 0x100); + if (t != 0) { + *(s16 *)(a0 + 0x100) = t - 1; + } else if (((s32(*)(s32))func_8012BE54)(a0) <= 0x24000) { + *(s16 *)(a0 + 0x2) = 5; + *(s16 *)(a0 + 0x100) = 0x3C; + } + } +} + + +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 func_8004787C(s32 a0); +extern s32 func_80047948(s32 a0); +extern void func_8004914C(); +extern void func_800491AC(); +extern u8 *func_8012913C(s32 a0); +extern void func_8012A828(s32 a0, void * a1); +#define RTP_SND(sndid) \ + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); \ + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); \ + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); \ + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } \ + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } \ + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); \ + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF \ + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { \ + s32 x = (s16)L.sxy[0]; \ + s32 ax; \ + ax = x; \ + if (x < 0) { \ + ax = -x; \ + } \ + ax = ((0xF0 - ax) * 0x7F) / 0xF0; \ + __asm__("" : "=r"(ax) : "0"(ax)); \ + x = (x + 0xF0) / 0x1E; \ + if (x == 0x10) { \ + x = 0xF; \ + } \ + x = x << 8; \ + { \ + s32 flg = 0x3000; \ + func_8002D4C8(sndid, ((ax | flg) | x) & 0xFFFF); \ + } \ + } + +void func_8018B7F0(s32 a0) { + + extern u8 D_800AF648; + extern s32 D_801D4A60[]; + extern u8 D_801DBF20[]; + extern u8 D_801DBFA8[]; + extern u8 D_801DC030[]; + struct { + s16 pad0[4]; /* sp+0x10 — dead, but sizes the frame (idiom 6) */ + s16 v[3]; /* sp+0x18 */ + s16 pad1; /* sp+0x1E */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + s32 t; + s32 ang; + s32 idx; + s32 m; + s32 c; + s32 p; + + if (*(s16 *)(a0 + 0x98) == 0) { + s32 spr = (s32)func_8012913C(0x7F); + if (spr != 0) { + m = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) + + (func_8004787C(*(s16 *)(a0 + 0x104)) >> 3); + *(s16 *)(spr + 0x6) = *(u16 *)(a0 + 0x6) - (func_8004787C(m) * 0x6C) / 0x1000; + *(s16 *)(spr + 0xA) = *(u16 *)(a0 + 0xA) - 0x34; + *(s16 *)(spr + 0xE) = *(u16 *)(a0 + 0xE) - (func_80047948(m) * 0x6C) / 0x1000; + *(s32 *)(spr + 0x14) = 0x40000; + *(s32 *)(spr + 0x10) = -(func_8004787C(m) * 0xC0); + *(s32 *)(spr + 0x18) = -(func_80047948(m) * 0xC0); + } + t = *(u16 *)(a0 + 0x104) + 0x100; + *(s16 *)(a0 + 0x104) = t; + ang = (s16)t; + idx = ang / 0x100; + m = (s16)(idx % 0x10); + if (ang == 0x100) { + RTP_SND(0x95F) + } else if (m == 0) { + RTP_SND(0x960) + } + *(s32 *)(*(s32 *)(a0 + 0x20) + 0x20) = D_801D4A60[m]; + c = *(u16 *)(a0 + 0x100) - 1; + *(s16 *)(a0 + 0x100) = c; + if ((s16)c == 0) { + p = *(s32 *)(a0 + 0xCC); + *(s16 *)(a0 + 0x98) = 1; + if (p != 0) { + *(s16 *)(p + 0x98) = 1; + } + p = *(s32 *)(a0 + 0xD0); + if (p != 0) { + *(s16 *)(p + 0x98) = 1; + } + } + } else if ((*(u16 *)(a0 + 0x72) & 0x4000) != 0) { + *(s16 *)(a0 + 0x2) = 7; + *(s16 *)(a0 + 0x100) = 0x3C; + func_8012A828(a0, D_801DBF20); + p = *(s32 *)(a0 + 0xCC); + if (p != 0) { + func_8012A828(p, D_801DBFA8); + } + p = *(s32 *)(a0 + 0xD0); + if (p != 0) { + func_8012A828(p, D_801DC030); + } + } +} + + + +extern void func_8012B370(int a0); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + +void func_8018BCB4(s32 a0) { + + extern u8 D_800AF648; + + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + } L; + + s16 hp; + s32 p; + + hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); + if (hp < 0x301) { + s32 count; + s32 total; + + count = *(u16 *)(a0 + 0xFC); + total = *(u16 *)(a0 + 0xFE); + count = count + 1; + total = total + count; + *(u16 *)(a0 + 0xFC) = count; + *(u16 *)(a0 + 0xFE) = total; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) + total; + } else { + p = *(s32 *)(a0 + 0xD0); + *(s16 *)(a0 + 2) = 3; + *(s32 *)(a0 + 0x1C) = 0x1E; + *(s16 *)(a0 + 0x98) = 0; + *(s16 *)(p + 2) = 3; + *(s32 *)(p + 0x1C) = 0x1E; + *(s16 *)(p + 0x98) = 0; + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + func_8002D4C8(0x961, (ax | (0x3000 | x)) & 0xFFFF); + } + } + func_8012B370(a0); +} + + +extern s32 func_801823F0(void); + +/* func_8018BE84 -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (family of 7) + * + * Low-HP flinch/knockback reaction. hp = *(s16*)(a0->0x20 ptr + 0x14). If + * 0 < hp < 0xD00, put self AND the partner at a0->0xCC into stagger state 3 + * (a 0x1E-frame timer, status flag cleared), compute a screen-space + * position via RotTransPers and play a positional sound. Otherwise + * (hp==0 or hp>=0xD00) apply the accumulated hit-combo counter (0xFC/0xFE) + * to the target's HP and re-mask its low 12 bits. + * + * §136c sibling-first: the RTP + positional-sound tail is the byte-proven + * RTP_SND form from func_8018165C in this same TU (line 4746) -- v[]/pad, + * u16 sxy[2], s32 z, s32 flag, and the ax/x div-by-0xF0 / div-by-0x1E + * magic-constant idiom (0x88888889); also confirmed against func_801823F0 + * (same TU) which reuses the identical sndid 0x961 and the identical + * `sx = (sx + 0xF0) / 0x1E; if (sx == 0x10) sx = 0xF; sx <<= 8;` tail. + * + * Control flow: gcc-2.7.2 lays out basic blocks in literal SOURCE order, not + * by fallthrough-preference. A nested-if spelling (`if (hp<0xD00) { state=3; + * if (hp!=0) { B; goto end; } } A; end:`) places B (textually the inner + * then-body) inline right after the tests and relocates A after it -- the + * REVERSE of the target, which has the short block A inline and the long + * RTP+sound block B out-of-line. Explicit goto/label with A written BEFORE B + * in source (`if (hp>=0xD00) goto L_A; state=3; if (hp!=0) goto L_B; L_A: A; + * goto L_end; L_B: B; L_end: ...`) reproduces the target's physical layout + * directly -- no branch-polarity inversion needed, just source ORDER. + * + * Frame: RotTransPers args are sp+0x10 (v), sp+0x18 (&sxy), sp+0x1C (&z), + * sp+0x20 (&flag); v[3]+pad1 fills 0x10-0x17, sxy 0x18-0x1B, z 0x1C-0x1F, + * flag 0x20-0x23 -- leaves a dead 4 bytes (0x24-0x27) before the s0 save at + * 0x28. A trailing `pad2` dead struct member (same aggregate, so it can't + * be eliminated) reserves those 4 bytes, mirroring func_8018165C's own + * "dead aggregate sizes the frame" idiom (comment there: idiom 6). + */ + +extern void func_8012B370(int a0); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + +void func_8018BE84(s32 a0) { + + extern u8 D_800AF648; + + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + s32 pad2; /* sp+0x24 -- dead, sizes the frame */ + } L; + + s16 hp; + s32 state; + s32 p; + + hp = *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14); + if (hp >= 0xD00) { + goto L_A; + } + state = 3; + if (hp != 0) { + goto L_B; + } + +L_A: + { + s32 count; + s32 total; + + count = *(u16 *)(a0 + 0xFC); + total = *(u16 *)(a0 + 0xFE); + count = count + 1; + total = total + count; + *(u16 *)(a0 + 0xFC) = count; + *(u16 *)(a0 + 0xFE) = total; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) - total; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) & 0xFFF; + } + goto L_end; + +L_B: + p = *(s32 *)(a0 + 0xCC); + *(s16 *)(a0 + 2) = state; + *(s32 *)(a0 + 0x1C) = 0x1E; + *(s16 *)(a0 + 0x98) = 0; + *(s16 *)(p + 2) = state; + *(s32 *)(p + 0x1C) = 0x1E; + *(s16 *)(p + 0x98) = 0; + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 sx = (s16)L.sxy[0]; + s32 av; + av = sx; + if (sx < 0) { + av = -sx; + } + av = ((0xF0 - av) * 0x7F) / 0xF0; + sx = (sx + 0xF0) / 0x1E; + if (sx == 0x10) { + sx = 0xF; + } + sx = sx << 8; + func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); + } + +L_end: + func_8012B370(a0); +} + + +extern s32 func_8012C044(s32 a0); +extern void func_8012C098(void *param_1); +extern void func_8012C218(s32); +extern int func_80143C74(short *, int); +extern s32 rand(void); + +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern void func_8002D4C8(s32 a0, s32 a1); + +void func_8018C074(s32 a0) +{ + + extern void (*D_801D4C0C[])(void); + extern u8 D_800AF648; + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + } L; + + D_801D4C0C[*(u16 *)(a0 + 0x2)](); + + if (*(u16 *)(a0 + 0x0) != 0) { + if (*(s16 *)(a0 + 0x70) == 0 && func_8012C044(a0) != 0) { + if (*(s32 *)(a0 + 0xCC) != 0) { + ((void (*)(void *))func_8012C218)(*(void **)(a0 + 0xCC)); + } + if (*(s32 *)(a0 + 0xD0) != 0) { + ((void (*)(void *))func_8012C218)(*(void **)(a0 + 0xD0)); + } + func_8012C098((void *)a0); + } else { + s16 v; + + v = *(s16 *)(a0 + 0xE2); + if (v != 0) { + v = v - 1; + *(s16 *)(a0 + 0xE2) = v; + if (v == 0) { + *(u16 *)(a0 + 0x5C) &= 0xBFFF; + } + } + + if ((*(s16 *)(a0 + 0x76) < 5) && ((rand() & 3) == 0)) { + s32 iVar2 = ((s32 (*)(s32, s32))func_80143C74)(a0, 0); + s32 r; + + if (iVar2 != 0) { + r = rand(); + *(s32 *)(iVar2 + 0x10) = ((r & 0x7FF) - 0x400) << 8; + *(s32 *)(iVar2 + 0x14) = 0xFFF00000; + r = rand(); + *(s32 *)(iVar2 + 0x18) = ((r & 0x7FF) - 0x400) << 8; + r = rand(); + *(u16 *)(iVar2 + 0x6) -= 0x20; + *(u16 *)(iVar2 + 0x6) += (r & 0x3F); + *(s16 *)(iVar2 + 0xA) -= 0xC0; + r = rand(); + *(u16 *)(iVar2 + 0xE) -= 0x20; + *(u16 *)(iVar2 + 0xE) += (r & 0x3F); + } + } + + if (*(u16 *)(a0 + 0x2) != 1 && *(u16 *)(a0 + 0x2) != 5) { + *(s16 *)(a0 + 0x84) = 0xE; + } else { + if (*(s16 *)(a0 + 0x84) != 0) { + *(s16 *)(a0 + 0x84) = *(s16 *)(a0 + 0x84) - 1; + } else { + *(s16 *)(a0 + 0x84) = 0xE; + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x8BF, ((ax | flg) | x) & 0xFFFF); + } + } + } + } + } + } +} + + + +// @class: plumbing +// @stuck: none — MATCH (126 ins). Keys: (1) cVar1 as `int` (not unsigned char) so the +// lbu-loaded byte stays full-width and gcc omits the per-compare `andi 0xff`; (2) uninitialized +// `int unaff_s1` -> $s1 (live-from-entry across func_8002D4C8); (3) func_8016AA50 takes TWO args +// (param_1, unaff_s1) — a1=unaff_s1 arg-setup is reused by the preceding subtraction and a0=s0 +// hoists into the branch delay slot; (4) 0x76 read UNSIGNED (lhu) in the subtract, SIGNED (lh) in +// the `< 1` test. + +extern void func_8002D4C8(int, int); +extern void func_8016AA50(int, int); +extern s32 func_8016B428(s32); +extern void func_80019064(void *); +extern void func_8002A520(int); +extern void func_8002A790(int); +extern void func_80131E00(int, int); + +void func_8018C38C(int param_1) +{ + + extern unsigned char D_801D4B7C[]; + int cVar1; + int unaff_s1; + + cVar1 = *(unsigned char *)(param_1 + 0x5e); + *(char *)(param_1 + 0xc1) = 0; + *(short *)(param_1 + 0x5e) = 0; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) & 0xfffe; + if (*(short *)(param_1 + 0xfc) == 0) { + *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x64) + 4); + *(int *)(param_1 + 8) = *(int *)(*(int *)(param_1 + 0x64) + 8); + *(int *)(param_1 + 0xc) = *(int *)(*(int *)(param_1 + 0x64) + 0xc); + *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x10) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x10); + *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x12) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x12); + *(unsigned short *)(*(int *)(param_1 + 0x20) + 0x14) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x64) + 0x20) + 0x14); + } + if (*(short *)(param_1 + 0x102) == 0) { + *(short *)(param_1 + 0x102) = 10; + *(unsigned short *)(param_1 + 0x5c) = *(unsigned short *)(param_1 + 0x5c) | 0x4000; + func_8002D4C8(0x9b7, 0); + if (*(short *)(param_1 + 0x60) != 0) { + if (cVar1 == 0x1d) { + *(short *)(param_1 + 0x82) = 0; + *(short *)(param_1 + 0x7c) = *(unsigned short *)(param_1 + 6); + *(short *)(param_1 + 0x7e) = *(unsigned short *)(param_1 + 0xa); + *(short *)(param_1 + 0x80) = *(unsigned short *)(param_1 + 0xe); + } + if (*(int *)(param_1 + 0x78) != 0) { + unaff_s1 = (int)*(short *)(param_1 + 0x60) * + (int)*(short *)(*(int *)(param_1 + 0x78) + 0x30) >> 0xc; + if (unaff_s1 < 1) { + unaff_s1 = 1; + } + } + *(unsigned short *)(param_1 + 0x76) = + *(unsigned short *)(param_1 + 0x76) - unaff_s1; + func_8016AA50(param_1, unaff_s1); + if ((*(unsigned short *)(param_1 + 0x82) & 1) != 0) { + ((void (*)(int))func_8016B428)(param_1); + func_80019064(D_801D4B7C); + } + } + if (cVar1 != 0x1d) { + if (*(unsigned char *)(param_1 + 0xc8) != 0) { + func_8002A520(param_1); + } + if (*(unsigned char *)(param_1 + 0xc9) != 0) { + func_8002A790(param_1); + } + } + if (*(short *)(param_1 + 0x76) < 1) { + *(short *)(param_1 + 0x5c) = 0; + func_80131E00(param_1, 6); + } + } + return; +} + + + + + +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012C218(s32); +extern u8 *func_8012913C(s32 a0); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern s32 VectorNormalSS(void *a0, void *a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018C584(s32 a0) { + + extern s32 D_801151D4; + + extern void func_8002AC00(s32 arg0); + extern void func_8002A04C(s32 arg0); + extern u8 D_800AF648; + + u16 v10[4]; /* sp+0x10 */ + s16 v18[4]; /* sp+0x18 */ + s32 sxy; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + s32 base; + s32 iv; + s32 i; + s32 t; + s32 r; + + base = D_801151D4; + + if (*(s16 *)(a0 + 0xFC) >= 0x1F) { + iv = func_8012C658(0x33, 3, a0); + if (iv != 0) { + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; + *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; + *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) - 5; + } + iv = func_8012C658(0x33, 3, a0); + if (iv != 0) { + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; + *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) - 8; + *(u16 *)(iv + 0x1A) = *(u16 *)(iv + 0x1A) + 5; + } + iv = func_8012C658(0x32, 2, a0); + if (iv != 0) { + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) - 0x20; + *(u16 *)(iv + 0x12) = *(u16 *)(iv + 0x12) + 8; + } + + func_8002AC00(0x22); + + iv = *(s32 *)(a0 + 0x64); + *(s16 *)(iv + 2) = 2; + iv = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0); + *(s16 *)(iv + 2) = 4; + *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC) = 0; + + i = 0; + do { + iv = func_8012C588(0x281, a0); + if (iv != 0) { + *(s32 *)(iv + 0x1C) = 2; + *(s16 *)(iv + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(iv + 0x16) = -((rand() & 0x0F) + 0x10); + *(s16 *)(iv + 0x1A) = (rand() & 0x1F) - 0x10; + } + i++; + } while (i < 8); + + v18[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + v18[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + v18[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)v18, (s32)&sxy, &z, &flag); + if (flag >= 0 && (u32)((*(u16 *)&sxy + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((*((u16 *)&sxy + 1) + 0xB3) & 0xFFFF) < 0x167) { + s32 sx; + s32 av; + + sx = (s16)*(u16 *)&sxy; + av = sx; + if (sx < 0) { + av = -sx; + } + /* one local for |x| AND the volume: gcc-2.7.2 keeps the single pseudo + in $v1 in place (subu $v1,$v0,$v1); a separate `vol` local steals $a1 + and the whole OR chain drifts (cookbook §136 L1). */ + av = ((0xF0 - av) * 0x7F) / 0xF0; + sx = (sx + 0xF0) / 0x1E; + if (sx == 0x10) { + sx = 0xF; + } + sx = sx << 8; + func_8002D4C8(0x961, (av | (0x3000 | sx)) & 0xFFFF); + } + + func_8002A04C(a0); + ((void (*)(void *))func_8012C218)((void *)a0); + return; + } + + iv = (s32)func_8012913C(0x23); + if (iv != 0) { + r = rand(); + *(u16 *)(iv + 0x06) = *(u16 *)(a0 + 0x06) + (r & 0x7F) - 0x40; + r = rand(); + *(u16 *)(iv + 0x0A) = *(u16 *)(a0 + 0x0A) + (r & 0x7F) - 0x80; + r = rand(); + *(u16 *)(iv + 0x0E) = *(u16 *)(a0 + 0x0E) + (r & 0x7F) - 0x40; + + t = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(s32 *)(iv + 0x04) = *(s32 *)(iv + 0x04) + (t << 10); + + t = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(u16 *)(iv + 0x34) = 0x1800; + *(s32 *)(iv + 0x18) = 0; + *(s32 *)(iv + 0x14) = 0; + *(s32 *)(iv + 0x10) = 0; + *(s32 *)(iv + 0x0C) = *(s32 *)(iv + 0x0C) - (t << 10); + + v10[0] = *(s32 *)(base + 0x5C) - *(u16 *)(iv + 0x06); + v10[1] = *(s32 *)(base + 0x60) - *(u16 *)(iv + 0x0A); + v10[2] = *(s32 *)(base + 0x64) - *(u16 *)(iv + 0x0E); + VectorNormalSS(v10, v10); + + *(u16 *)(iv + 0x06) = *(u16 *)(iv + 0x06) + ((s16)v10[0] >> 6); + *(u16 *)(iv + 0x0A) = *(u16 *)(iv + 0x0A) + ((s16)v10[1] >> 6); + *(u16 *)(iv + 0x0E) = *(u16 *)(iv + 0x0E) + ((s16)v10[2] >> 6); + *(u16 *)(iv + 0x34) = 0x3000; + func_8002D4C8(0xAF8, 0); + } + + *(u16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; +} + + + +// @class: struct +// @stuck: none — MATCH + +extern int rand(void); +extern int func_80143C74(short *, int); +extern int func_80047948(int); +extern int func_8004787C(int); + +void func_8018C9CC(short *param_1) +{ + + extern void (*D_801D4C94[])(short *); + int iVar3; + unsigned int uVar2; + short v; + + v = param_1[0x81]; + if (v != 0) { + v = v - 1; + param_1[0x81] = v; + if (v == 0) { + *(unsigned short *)(param_1 + 0x2e) &= 0xbfff; + } + } + D_801D4C94[*(unsigned short *)(param_1 + 1)](param_1); + if (*(unsigned short *)param_1 != 0) { + if (param_1[0x7e] == 0) { + *(int *)(param_1 + 2) = *(int *)(*(int *)(param_1 + 0x32) + 4); + *(int *)(param_1 + 4) = *(int *)(*(int *)(param_1 + 0x32) + 8); + *(int *)(param_1 + 6) = *(int *)(*(int *)(param_1 + 0x32) + 0xc); + *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x10) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x10); + *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x12) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x12); + *(unsigned short *)(*(int *)(param_1 + 0x10) + 0x14) = + *(unsigned short *)(*(int *)(*(int *)(param_1 + 0x32) + 0x20) + 0x14); + } + if ((param_1[0x3b] < 5) && ((rand() & 3) == 0) && + ((iVar3 = func_80143C74(param_1, 0)) != 0)) { + uVar2 = rand(); + *(int *)(iVar3 + 0x10) = ((uVar2 & 0x7ff) - 0x400) * 0x100; + *(unsigned int *)(iVar3 + 0x14) = 0xfff00000; + uVar2 = rand(); + *(int *)(iVar3 + 0x18) = ((uVar2 & 0x7ff) - 0x400) * 0x100; + *(int *)(iVar3 + 4) += + func_80047948((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; + *(int *)(iVar3 + 0xc) -= + func_8004787C((int)*(short *)(*(int *)(param_1 + 0x10) + 0x12)) * 0x400; + uVar2 = rand(); + *(short *)(iVar3 + 6) -= 0x20; + *(short *)(iVar3 + 6) += (uVar2 & 0x3f); + *(short *)(iVar3 + 0xa) -= 0x40; + uVar2 = rand(); + *(short *)(iVar3 + 0xe) -= 0x20; + *(short *)(iVar3 + 0xe) += (uVar2 & 0x3f); + } + } + return; +} + + + + +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012C218(s32); +extern u8 *func_8012913C(); +extern s32 rand(void); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); +extern s32 VectorNormalSS(void *a0, void *a1); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); +extern void func_8002A04C(s32 a0); + + +void func_8018CBDC(s32 a0) { + + extern s32 D_801151D4; + + extern u8 D_800AF648; + extern void func_8002AC00(s32 arg0); + + struct { + u16 nv[4]; /* sp+0x10 */ + s16 v[4]; /* sp+0x18 */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + s32 p; + s32 s0; + s32 i; + + p = D_801151D4; + + if (*(s16 *)(a0 + 0xFC) >= 0x1F) { + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) - 5; + } + s0 = func_8012C658(0x33, 3, a0); + if (s0 != 0) { + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) - 8; + *(s16 *)(s0 + 0x1A) = *(u16 *)(s0 + 0x1A) + 5; + } + s0 = func_8012C658(0x32, 2, a0); + if (s0 != 0) { + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) - 0x20; + *(s16 *)(s0 + 0x12) = *(u16 *)(s0 + 0x12) + 8; + } + func_8002AC00(0x22); + s0 = *(s32 *)(a0 + 0x64); + *(s16 *)(s0 + 0x2) = 4; + s0 = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xCC); + *(s16 *)(s0 + 0x2) = 4; + + for (i = 0; i < 8; i++) { + s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x961, ((ax | flg) | x) & 0xFFFF); + } + } + + *(s32 *)(*(s32 *)(a0 + 0x64) + 0xD0) = 0; + func_8002A04C(a0); + ((void (*)(void *))func_8012C218)((void *)a0); + return; + } + + s0 = (s32)func_8012913C(0x23); + if (s0 != 0) { + *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x7F) - 0x40; + *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x7F) - 0x80; + *(s16 *)(s0 + 0xE) = *(u16 *)(a0 + 0xE) + (rand() & 0x7F) - 0x40; + + *(s32 *)(s0 + 0x4) = + *(s32 *)(s0 + 0x4) - + func_80047948(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; + { + s32 t = func_8004787C(*(s16 *)(*(s32 *)(a0 + 0x20) + 0x12)) * 0x400; + *(s16 *)(s0 + 0x34) = 0x1800; + *(s32 *)(s0 + 0x18) = 0; + *(s32 *)(s0 + 0x14) = 0; + *(s32 *)(s0 + 0x10) = 0; + *(s32 *)(s0 + 0xC) = *(s32 *)(s0 + 0xC) + t; + } + + L.nv[0] = *(s32 *)(p + 0x5C) - *(u16 *)(s0 + 0x6); + L.nv[1] = *(s32 *)(p + 0x60) - *(u16 *)(s0 + 0xA); + L.nv[2] = *(s32 *)(p + 0x64) - *(u16 *)(s0 + 0xE); + VectorNormalSS(L.nv, L.nv); + + *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)L.nv[0] >> 6); + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)L.nv[1] >> 6); + *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)L.nv[2] >> 6); + *(s16 *)(s0 + 0x34) = 0x3000; + func_8002D4C8(0xAF8, 0); + } + + *(s16 *)(a0 + 0xFC) = *(u16 *)(a0 + 0xFC) + 1; +} + + + +extern s32 rand(void); +extern s32 func_80143C74(); +extern s32 func_80047948(s32 a0); +extern s32 func_8004787C(s32 a0); + +void func_8018D020(s32 a0) { + + extern void (*D_801D4D0C[])(s32); + s32 iVar3; + s32 iVar4; + s32 r; + + { + s16 t = *(s16 *)(a0 + 0x102); + if (t != 0) { + t--; + *(s16 *)(a0 + 0x102) = t; + if (t == 0) { + *(u16 *)(a0 + 0x5C) &= 0xBFFF; + } + } + } + + D_801D4D0C[*(u16 *)(a0 + 2)](a0); + + if (*(u16 *)(a0 + 0) != 0) { + if (*(s16 *)(a0 + 0xFC) == 0) { + *(s32 *)(a0 + 4) = *(s32 *)(*(s32 *)(a0 + 0x64) + 4); + *(s32 *)(a0 + 8) = *(s32 *)(*(s32 *)(a0 + 0x64) + 8); + *(s32 *)(a0 + 0xC) = *(s32 *)(*(s32 *)(a0 + 0x64) + 0xC); + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x10) = + *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x10); + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); + *(s16 *)(*(s32 *)(a0 + 0x20) + 0x14) = + *(s16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x14); + } + if (*(s16 *)(a0 + 0x76) < 5 && (rand() & 3) == 0 && + (iVar3 = func_80143C74(a0, 0)) != 0) { + *(s32 *)(iVar3 + 0x10) = ((rand() & 0x7FF) - 0x400) << 8; + *(s32 *)(iVar3 + 0x14) = 0xFFF00000; + *(s32 *)(iVar3 + 0x18) = ((rand() & 0x7FF) - 0x400) << 8; + iVar4 = func_80047948((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(s32 *)(iVar3 + 4) = *(s32 *)(iVar3 + 4) - iVar4 * 0x400; + iVar4 = func_8004787C((s32) * (s16 *)(*(s32 *)(a0 + 0x20) + 0x12)); + *(s32 *)(iVar3 + 0xC) = *(s32 *)(iVar3 + 0xC) + iVar4 * 0x400; + r = rand(); + { + s32 m6 = *(u16 *)(iVar3 + 6) - 0x20; + *(u16 *)(iVar3 + 6) = m6 + (r & 0x3F); + } + *(u16 *)(iVar3 + 0xA) = *(u16 *)(iVar3 + 0xA) - 0x40; + r = rand(); + { + s32 mE = *(u16 *)(iVar3 + 0xE) - 0x20; + *(u16 *)(iVar3 + 0xE) = mE + (r & 0x3F); + } + } + } +} + + + + +// @class: schedule +// @stuck: none — MATCH. Two levers: (1) split rand()-result into its own var (shared iVar1 forced an extra move a0,v0); (2) reorder decrement before sp[0] to group the two lhu loads as target's scheduler does; (3) materialize &D_80126B96 via a local u16* to CSE the address (lui+addiu once) instead of %hi/%lo split-per-access. + + + + + + + + +extern void func_80128EA8(); +extern void func_8012931C(); +extern s32 func_80128ED8(s32 param_1, s32 *param_2); +extern u8 *func_8012913C(); +extern void func_801292C8(); +extern int func_8012D664(); + +extern u16 D_801270C0; + +void func_8018D230(s32 arg0) { + + extern u8 D_801D4AF0; + extern u8 D_801D4AFC; + extern u16 D_80126B96; + s32 iVar1; + s32 rv; + u8 *p; + u16 sp[3]; + + if (*(u16 *)(arg0 + 2) == 0) { + *(u8 **)(*(s32 *)(arg0 + 0x20) + 0x20) = &D_801D4AF0; + *(u32 *)(*(s32 *)(arg0 + 0x20) + 4) |= 0x50000000; + *(u8 *)(*(s32 *)(arg0 + 0x20) + 0x27) = 0x59; + func_80128EA8(*(s32 *)(arg0 + 0x20), arg0 + 0x24, (s32)&D_801D4AFC); + rv = rand(); + *(s32 *)(arg0 + 0x1c) = 0x10; + *(s32 *)(arg0 + 0x2c) = 0x200; + *(s16 *)(arg0 + 0x28) = rv % 15; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = 0x1200; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = 0x1200; + *(u16 *)(arg0 + 2) = *(u16 *)(arg0 + 2) + 1; + } else if (*(s16 *)&D_801270C0 == 1) { + func_8012931C(arg0); + func_80128ED8(*(s32 *)(arg0 + 0x20), arg0 + 0x24); + *(s32 *)(arg0 + 0x1c) -= 1; + if ((rand() & 7) == 0 && (p = func_8012913C(0x22)) != 0) { + *(u16 *)(p + 6) = *(u16 *)(arg0 + 6); + *(u16 *)(p + 0xa) = *(u16 *)(arg0 + 0xa); + *(u16 *)(p + 0xe) = *(u16 *)(arg0 + 0xe); + *(s32 *)(p + 0x10) = *(s32 *)(arg0 + 0x10) >> 3; + *(s32 *)(p + 0x14) = *(s32 *)(arg0 + 0x14) >> 3; + *(s32 *)(p + 0x18) = *(s32 *)(arg0 + 0x18) >> 3; + *(s16 *)(p + 0x34) = *(u16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + 1; + *(u16 *)(*(s32 *)(p + 0x20) + 0x2c) = 0xc008; + } + if (*(s32 *)(arg0 + 0x1c) == 0) { + func_801292C8(arg0); + } else { + *(s32 *)(arg0 + 0x14) = 0xffff0000; + iVar1 = *(s32 *)(arg0 + 0x2c) + 0x80; + *(s32 *)(arg0 + 0x2c) = iVar1; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) = + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x18) + (s16)iVar1; + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) = + *(s16 *)(*(s32 *)(arg0 + 0x20) + 0x1a) + (s16)*(s32 *)(arg0 + 0x2c); + *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) - 0x20; + sp[0] = *(u16 *)(arg0 + 6); + sp[1] = *(u16 *)(arg0 + 0xa); + sp[2] = *(u16 *)(arg0 + 0xe); + if (func_8012D664(sp, 0x10, 0xb4) == 1) { + u16 *q = &D_80126B96; + *q |= 0x4200; + } + *(s16 *)(arg0 + 0xa) = *(s16 *)(arg0 + 0xa) + 0x20; + } + } +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018D4B4); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018D4D4); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018D5D4); + + +extern void func_8012B370(int a0); +extern void func_8012C218(s32); +extern s32 func_8012C588(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018D674(s32 a0) +{ + s32 t; + register s32 *a1 asm("$5"); + u32 v0; + + t = *(s32 *)(a0 + 0x1C) - 1; + *(s32 *)(a0 + 0x1C) = t; + + if (t != 0) { + a1 = *(s32 **)(a0 + 0x20); + v0 = *(u32 *)(a1 + 0x1); + v0 ^= 0x80000000; + *(u32 *)(a1 + 0x1) = v0; + ((void (*)(void))func_8012B370)(); + + t = *(s32 *)(a0 + 0x1C); + if ((t & 0x3) != 0) { + s32 s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + return; + } + + ((void (*)(void *))func_8012C218)((void *)a0); +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018D734); + + + + + + + + + + + + + + + + + + + +void func_8018D7CC(void *a0) +{ + s32 v0 = *((s32 *) (((s32) a0) + 0x64)); + *((s16 *) (v0 + 0x5C)) = 0; + ; + *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xD0))) + 0x5C)) = 0; +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018D7EC); + +void func_8018D8DC(void) { +} + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018D8E4); + + +extern void func_8012B370(int a0); +extern void func_8012C218(s32); +extern s32 func_8012C588(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018D9B8(s32 a0) +{ + s32 t; + register s32 *a1 asm("$5"); + u32 v0; + + t = *(s32 *)(a0 + 0x1C) - 1; + *(s32 *)(a0 + 0x1C) = t; + + if (t != 0) { + a1 = *(s32 **)(a0 + 0x20); + v0 = *(u32 *)(a1 + 0x1); + v0 ^= 0x80000000; + *(u32 *)(a1 + 0x1) = v0; + ((void (*)(void))func_8012B370)(); + + t = *(s32 *)(a0 + 0x1C); + if ((t & 0x3) != 0) { + s32 s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + return; + } + + ((void (*)(void *))func_8012C218)((void *)a0); +} + + +extern void func_8012B370(int a0); + void func_8018DA78(void) { + ((s32 (*)(void))func_8012B370)(); + } + + + + + + + + + + + + + + + + + + +void func_8018DA98(void *a0) +{ + s32 v0; + *((s16 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0x5C)) = 0; + ; + *((s16 *) ((*((s32 *) ((*((s32 *) (((s32) a0) + 0x64))) + 0xCC))) + 0x5C)) = 0; +} + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018DAB8); + +void func_8018DBAC(void) { +} + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018DBB4); + + +extern void func_8012B370(int a0); +extern void func_8012C218(s32); +extern s32 func_8012C588(s32 a0, s32 a1); +extern s32 rand(void); + +void func_8018DCA8(s32 a0) +{ + s32 t; + register s32 *a1 asm("$5"); + u32 v0; + + t = *(s32 *)(a0 + 0x1C) - 1; + *(s32 *)(a0 + 0x1C) = t; + + if (t != 0) { + a1 = *(s32 **)(a0 + 0x20); + v0 = *(u32 *)(a1 + 0x1); + v0 ^= 0x80000000; + *(u32 *)(a1 + 0x1) = v0; + ((void (*)(void))func_8012B370)(); + + t = *(s32 *)(a0 + 0x1C); + if ((t & 0x3) != 0) { + s32 s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + } + return; + } + + ((void (*)(void *))func_8012C218)((void *)a0); +} + + +extern void func_8012B370(int a0); + void func_8018DD68(void) { + ((void (*)(void))func_8012B370)(); + } + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018DD88); + + +/* TU declares func_8018DEC0 as void(void) (S35 self-axis) but the asm takes + * $a0 as a pointer parameter — bind through a private C name. */ +extern void aF8017ED80(void *param_1) __asm__("func_8018DEC0"); + +void aF8017ED80(void *param_1) { + u8 *a0 = (u8 *)param_1; + s32 pad_[4]; + s32 iVar2; + u32 uVar1; + + if (*(u16 *)(a0 + 0x0) != 0) { + iVar2 = *(s32 *)(a0 + 0xCC); + *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); + *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); + *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); + *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); + *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFC); + *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); + *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); + *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); + *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); + if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { + register u32 val __asm__("$2"); + val = *(u32 *)(iVar2 + 0x4); + uVar1 = val | 0x80000000; + } else { + __asm__ __volatile__(""); + uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; + } + *(u32 *)(iVar2 + 0x4) = uVar1; + + iVar2 = *(s32 *)(a0 + 0xD0); + *(u16 *)(iVar2 + 0x8) = *(u16 *)(a0 + 0x6); + *(u16 *)(iVar2 + 0xA) = *(u16 *)(a0 + 0xA); + *(u16 *)(iVar2 + 0xC) = *(u16 *)(a0 + 0xE); + *(u16 *)(iVar2 + 0x10) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10); + *(u16 *)(iVar2 + 0x12) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) + *(u16 *)(a0 + 0xFE); + *(u16 *)(iVar2 + 0x14) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14); + *(u16 *)(iVar2 + 0x18) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x18); + *(u16 *)(iVar2 + 0x1A) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1A); + *(u16 *)(iVar2 + 0x1C) = *(u16 *)(*(s32 *)(a0 + 0x20) + 0x1C); + if (*(s32 *)(*(s32 *)(a0 + 0x20) + 0x4) < 0) { + register u32 val __asm__("$2"); + val = *(u32 *)(iVar2 + 0x4); + uVar1 = val | 0x80000000; + } else { + __asm__ __volatile__(""); + uVar1 = *(u32 *)(iVar2 + 0x4) & 0x7FFFFFFF; + } + *(u32 *)(iVar2 + 0x4) = uVar1; + } +} + + + +/* func_8018E094 -- ov_SC06_008, TU ov_SC06_008_jr_8017C294.c (open-only h_norm + * cluster exemplar, 7 members). + * + * a0+0x0 : u16 active flag; 0 => early return. + * a0+0x84 : s16 sound cooldown timer. + * cooldown != 0 -> just decrement it. + * cooldown == 0 -> try to play a positional sound (RotTransPers screen + * projection of the parent's position, range-gated on + * screen X/Y, volume from the classic div-by-0xF0 / + * div-by-0x1E magic-constant idiom -- byte-proven sibling + * form is func_80181CF0 in this same TU, sndid 0x849 here + * vs 0x961 there), then unconditionally reset the timer + * to 0xA regardless of whether the sound actually played. + * a0+0xFC / 0xFE : running hit-combo accumulators, bumped by +/-0x280 every + * call (unconditional tail). + * Tail always calls ((void (*)(void *))func_8018DEC0)(a0) (the TU's canonical decl for this + * symbol is void(void) -- S35 self-axis -- so this draft binds its own + * private extern with the asm's real void(void*) shape). + * + * Control flow is EXPLICIT goto/label, mirroring source-order block + * placement (gcc-2.7.2 lays out basic blocks in literal source order, not by + * fallthrough preference -- see the func_80181CF0 comment, same TU): the + * cooldown!=0 decrement is the SHORT block and sits out-of-line (jumped to), + * the cooldown==0 RTP+sound block is the LONG block and sits inline + * (fallthrough), matching the target's physical layout exactly. + * + * MATCH levers (byte-proven, 2026-08-05): + * 1. Naive `if(old!=0){cool=old-1;}else{...}` folds trivially: reorg.c's + * delay-slot filler steals the single-insn decrement into the `bnez`'s + * own delay slot and retargets the branch straight to the join label + * (2 ins short of target). The target instead keeps a genuine copy + * (`addu $v1,$v0,zero`) in the delay slot and a SEPARATE `addiu $v0,$v1,-1` + * at the decrement site. Reproduced by pinning a second variable + * `register s32 v1 __asm__("$3")`, assigned UNCONDITIONALLY right after + * the load (`v1 = old;`) -- the scheduler places that copy in the + * branch's delay slot on its own, and the decrement (`cool = v1 - 1`) + * can no longer be folded away. `cool` is separately pinned to + * `__asm__("$2")` so its other def sites (the three `cool = 0xA` early + * exits) don't drift onto $3 by coalescing with v1. + * 2. The tail's `sh $v0,0x84($s0)` / `addu $a0,$s0,zero` order (store off + * the callee-saved pointer BEFORE reloading it into the call-argument + * register) needed a `__asm__ __volatile__("":::"memory")` fence right + * after the store -- without it, sched1 hoists the independent a0-reload + * ahead of the store even when the reload is written later in source. + * 3. Frame is -0x38, 8 bytes (2 words) larger than the natural -0x30 the + * locals alone produce; `pad2[2]` (dead, address never read) inside `L` + * reserves them, mirroring func_80181CF0's own "dead aggregate sizes the + * frame" idiom. + */ + + +/* §37/§124 def-side asm-label alias (P30 S1d class lever): the TU declares + * `extern void func_8018E094(void);` (L4082, L4091) for callers that invoke it with NO args, + * while the byte-true definition takes an s32 in $a0 -> `conflicting types`. Neither side can + * move (a no-prototype escape is illegal once a param promotes), so the DEFINITION gets a + * private C identifier and binds the emitted symbol with a GNU asm label. Zero blast radius: + * the TU's declaration never meets the definition, and the emitted symbol is unchanged. */ +void aF8017EF54(s32 a0) __asm__("func_8018E094"); + +void aF8017EF54(s32 a0) +{ + extern void func_8004914C(void *a0); + extern void func_800491AC(void *a0); + extern void func_8002D4C8(s32 a0, s32 a1); + extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + extern u8 D_800AF648; + extern void func_8018DEC0(void); + struct { + s16 v[3]; /* sp+0x10 */ + s16 pad1; /* sp+0x16 */ + u16 sxy[2]; /* sp+0x18 */ + s32 z; /* sp+0x1C */ + s32 flag; /* sp+0x20 */ + s32 pad2[2]; /* sp+0x24 -- dead, sizes the frame */ + } L; + + register s32 v1 __asm__("$3"); + register s32 cool __asm__("$2"); + s32 old; + + if (*(u16 *)(a0 + 0x0) == 0) { + return; + } + + old = *(s16 *)(a0 + 0x84); + v1 = old; + if (old != 0) { + goto L_dec; + } + + L.v[0] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x48); + L.v[1] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x4C); + L.v[2] = *(s32 *)(*(s32 *)(a0 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.v, (s32)L.sxy, &L.z, &L.flag); + + if (L.flag < 0) { + cool = 0xA; + goto L_join; + } + if ((u32)((L.sxy[0] + 0xEF) & 0xFFFF) >= 0x1DF) { + cool = 0xA; + goto L_join; + } + if ((u32)((L.sxy[1] + 0xB3) & 0xFFFF) >= 0x167) { + goto L_snd_skip; + } + + { + s32 sx = (s16)L.sxy[0]; + s32 av; + + av = sx; + if (sx < 0) { + av = -sx; + } + av = ((0xF0 - av) * 0x7F) / 0xF0; + sx = (sx + 0xF0) / 0x1E; + if (sx == 0x10) { + sx = 0xF; + } + sx = sx << 8; + func_8002D4C8(0x849, (av | (0x3000 | sx)) & 0xFFFF); + } + +L_snd_skip: + cool = 0xA; + goto L_join; + +L_dec: + cool = v1 - 1; + +L_join: + *(s16 *)(a0 + 0x84) = cool; + __asm__ __volatile__("" ::: "memory"); + + { + s32 p = a0; + *(u16 *)(p + 0xFC) = *(u16 *)(p + 0xFC) + 0x280; + *(u16 *)(p + 0xFE) = *(u16 *)(p + 0xFE) - 0x280; + ((void (*)(void *))func_8018DEC0)((void *)p); + } +} + + + +extern s32 rand(void); +extern s32 VectorNormalSS(void *a0, void *a1); +extern s32 func_8012C588(s32 a0, s32 a1); +extern u8 *func_8012913C(); +extern void func_8018DEC0(void); + +void func_8018E240(s32 a0) +{ + + extern s32 D_801151D4; + u16 nv[4]; + s32 g; + s32 s0; + s32 idx; + + g = D_801151D4; + + if (*(u16 *)a0 != 0) { + idx = *(s32 *)(a0 + 0x1C) & 3; + switch (idx) { + case 0: + s0 = func_8012C588(0x281, a0); + if (s0 != 0) { + *(s32 *)(s0 + 0x1C) = 2; + *(s16 *)(s0 + 0x12) = (rand() & 0x1F) - 0x10; + *(s16 *)(s0 + 0x16) = -((rand() & 0xF) + 0x10); + *(s16 *)(s0 + 0x1A) = (rand() & 0x1F) - 0x10; + } + break; + case 1: + break; + case 2: + case 3: + s0 = (s32)func_8012913C(0x23); + if (s0 != 0) { + *(s16 *)(s0 + 0x6) = *(u16 *)(a0 + 0x6) + (rand() & 0x3F) - 0x20; + *(s16 *)(s0 + 0xA) = *(u16 *)(a0 + 0xA) + (rand() & 0x3F) - 0x30; + { + s32 r = rand(); + s32 t = *(u16 *)(a0 + 0xE); + *(s32 *)(s0 + 0x18) = 0; + *(s32 *)(s0 + 0x14) = 0; + *(s32 *)(s0 + 0x10) = 0; + *(s16 *)(s0 + 0xE) = t + (r & 0x3F) - 0x20; + } + *(s16 *)(s0 + 0x34) = (rand() & 0x17FF) + 0x800; + nv[0] = *(s32 *)(g + 0x5C) - *(u16 *)(s0 + 0x6); + nv[1] = *(s32 *)(g + 0x60) - *(u16 *)(s0 + 0xA); + nv[2] = *(s32 *)(g + 0x64) - *(u16 *)(s0 + 0xE); + VectorNormalSS(nv, nv); + *(s16 *)(s0 + 0x6) = *(u16 *)(s0 + 0x6) + ((s16)nv[0] >> 6); + *(s16 *)(s0 + 0xA) = *(u16 *)(s0 + 0xA) + ((s16)nv[1] >> 6); + *(s16 *)(s0 + 0xE) = *(u16 *)(s0 + 0xE) + ((s16)nv[2] >> 6); + } + break; + } + ((void (*)(s32))func_8018DEC0)(a0); + } +} + + + +extern void func_8012B1B4(s32 a0, s32 a1); +extern void func_8012CBCC(s32 a0); +extern void func_8012BE98(s32 a0, u16 *a1); +extern void func_8012BE54(s32 a0); +extern s32 func_8012B744(void *a0, void *a1); +extern s32 func_8012B608(s32 a0, s32 a1, s32 a2); +extern s32 func_8018DD88(s32 a0, s32 a1); + +void func_8018E428(s32 a0) +{ + s16 hi; + s16 pos; + s32 sp10[3]; + u16 state; + + hi = *(s16 *)(a0 + 0x8A); + pos = *(s16 *)(a0 + 0xA); + + if (pos >= hi - 8) { + if (*(s32 *)(a0 + 0x48) >= 0) { + *(s32 *)(a0 + 0x48) = -0x8000; + *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; + } + } else { + if (hi + 8 >= pos) { + if (*(s32 *)(a0 + 0x48) <= 0) { + *(s32 *)(a0 + 0x48) = 0x8000; + *(s32 *)(a0 + 0x14) = *(s32 *)(a0 + 0x14) >> 1; + } + } + } + + if (*(s32 *)(a0 + 0xDC) < -0x40000) { + *(s32 *)(a0 + 0xDC) = -0x40000; + } + + sp10[0] = 0; + sp10[1] = 0; + sp10[2] = *(s32 *)(a0 + 0xDC); + func_8012B1B4(a0, (s32)sp10); + func_8012CBCC(a0); + + state = *(u16 *)(a0 + 0x34); + switch (state) { + case 0: { + register s32 s0v __asm__("$16"); + s32 ret; + s32 p744; + s32 v1p; + s16 snd; + s32 b608; + register s32 p20 __asm__("$4"); + + s0v = a0 + 0x88; + ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s0v); + if (ret <= 0x3FFFF) { + if (func_8018DD88(a0, 0x51) == 0) { + goto set_state1; + } + } + p744 = func_8012B744((void *)(a0 + 4), (void *)s0v); + v1p = *(s32 *)(a0 + 0x20); + snd = *(s16 *)(v1p + 0x12); + b608 = func_8012B608(snd, p744, 8); + p20 = *(s32 *)(a0 + 0x20); + *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; + v1p = *(s32 *)(a0 + 0x20); + *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; + func_8012B1B4(a0, (s32)sp10); + break; + } + case 1: { + s32 ret; + + *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; + ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)(a0 + 0x88)); + if (ret > 0x3FFFF) { + goto rand_tail; + } + if (func_8018DD88(a0, 0x51) == 0) { + goto end_switch; + } + goto rand_tail; + } + case 2: { + s32 p744; + s32 v1p; + s16 snd; + s32 b608; + s32 p20; + + p744 = func_8012B744((void *)(a0 + 4), (void *)(a0 + 0x88)); + v1p = *(s32 *)(a0 + 0x20); + snd = *(s16 *)(v1p + 0x12); + b608 = func_8012B608(snd, p744, 0x10); + p20 = *(s32 *)(a0 + 0x20); + *(u16 *)(p20 + 0x12) = *(u16 *)(p20 + 0x12) + b608; + v1p = *(s32 *)(a0 + 0x20); + *(u16 *)(v1p + 0x12) = *(u16 *)(v1p + 0x12) & 0xFFF; + *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) >> 1; + func_8018DD88(a0, 0x51); + if (*(s16 *)(a0 + 0x102) == 0) { + *(u16 *)(a0 + 0x34) = 3; + } else { + *(s16 *)(a0 + 0x102) = *(s16 *)(a0 + 0x102) - 1; + } + break; + } + case 3: { + register s32 s2v __asm__("$18"); + s32 ret; + s32 p744; + s32 v1p; + s16 snd; + s32 b608; + + s2v = a0 + 0x88; + ret = ((s32 (*)(s32, u16 *))func_8012BE98)(a0, (u16 *)s2v); + *(s32 *)(a0 + 0xDC) = *(s32 *)(a0 + 0xDC) << 1; + if (func_8018DD88(a0, 0x51) != 0) { + goto rand_tail; + } + if (ret <= 0x40000) { + goto set_state1; + } + p744 = func_8012B744((void *)(a0 + 4), (void *)s2v); + v1p = *(s32 *)(a0 + 0x20); + snd = *(s16 *)(v1p + 0x12); + b608 = func_8012B608(snd, p744, 1); + if ((u32)(b608 + 0xFF) < 0x1FF) { + goto end_switch; + } + goto rand_tail; + } + } + goto end_switch; + +rand_tail: + *(u16 *)(a0 + 0x34) = 2; + { + s32 r = rand(); + *(s16 *)(a0 + 0x102) = (r & 7) + 8; + } + goto end_switch; + +set_state1: + *(u16 *)(a0 + 0x34) = 1; + +end_switch: + if (*(s16 *)(a0 + 0x100) != 0) { + *(s16 *)(a0 + 0x100) = *(s16 *)(a0 + 0x100) - 1; + } else { + s32 ret3; + + ret3 = ((s32 (*)(s32))func_8012BE54)(a0); + if (ret3 <= 0x24000) { + *(s16 *)(a0 + 0x2) = 2; + *(s16 *)(a0 + 0x100) = 0x3C; + } + } +} + + + + +extern s32 func_8018A6DC(s32 a0, s32 a1); +extern s32 func_8012C588(s32 a0, s32 a1); +extern void func_8012F14C(s32 a0, s32 a1, s32 a2); +extern void func_8012B370(int a0); +extern s32 func_8012C658(s32 arg0, s32 arg1, s32 arg2); +extern void func_8004914C(void *a0); +extern void func_800491AC(void *a0); +extern void func_8002D4C8(s32 a0, s32 a1); +extern s32 RotTransPers(s32 a0, s32 a1, s32 *a2, s32 *a3); + + +void func_8018E764(s32 param_1) +{ + + extern u8 D_801DC794; + extern u8 D_801DC79C; + extern u8 D_801DC7A4; + extern u8 D_800AF648; + /* L5: slot offsets are exact only through ONE struct — copied verbatim + from the banked RTP_SND sibling func_80180CA8 (same TU) so the + sp+0x10.."0x2B layout reproduces byte-for-byte. */ + struct { + u16 nv[4]; /* sp+0x10 */ + s16 rv[4]; /* sp+0x18 */ + u16 sxy[2]; /* sp+0x20 */ + s32 z; /* sp+0x24 */ + s32 flag; /* sp+0x28 */ + } L; + + s16 sVar1; + s32 s0; + + if (*(s32 *)(param_1 + 0x1c) == 0) { + sVar1 = *(s16 *)(param_1 + 0x100) - 1; + *(s16 *)(param_1 + 0x100) = sVar1; + if (sVar1 == 0) { + *(s16 *)(param_1 + 2) = 1; + *(s16 *)(param_1 + 0x100) = 0x3c; + *(s16 *)(param_1 + 0x8a) = *(s16 *)(param_1 + 0xa) - 0x140; + } else { + *(s32 *)(param_1 + 0x1c) = (sVar1 == 1) ? 0x3c : 3; + + func_8018A6DC(param_1, (s32)&D_801DC794); + + s0 = func_8012C588(0x260, param_1); + if (s0 != 0) { + ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DC79C, (s32)L.nv); + *(s16 *)(s0 + 6) = L.nv[0]; + *(s16 *)(s0 + 0xA) = L.nv[1]; + *(s16 *)(s0 + 0xE) = L.nv[2]; + func_8012B370(s0); + func_8012C658(0x261, 0, s0); + } + + s0 = func_8012C588(0x260, param_1); + if (s0 != 0) { + ((void (*)(s32, s32, s32))func_8012F14C)(*(s32 *)(param_1 + 0x20) + 0x34, (s32)&D_801DC7A4, (s32)L.nv); + *(s16 *)(s0 + 6) = L.nv[0]; + *(s16 *)(s0 + 0xA) = L.nv[1]; + *(s16 *)(s0 + 0xE) = L.nv[2]; + func_8012B370(s0); + func_8012C658(0x261, 1, s0); + } + + L.rv[0] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x48); + L.rv[1] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x4C); + L.rv[2] = *(s32 *)(*(s32 *)(param_1 + 0x20) + 0x50); + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_8004914C(r4); } + { register void *r4 __asm__("$4"); r4 = &D_800AF648; func_800491AC(r4); } + RotTransPers((s32)L.rv, (s32)L.sxy, &L.z, &L.flag); + if (L.flag >= 0 && (u32)((L.sxy[0] + 0xEF) & 0xFFFF) < 0x1DF + && (u32)((L.sxy[1] + 0xB3) & 0xFFFF) < 0x167) { + s32 x = (s16)L.sxy[0]; + s32 ax; + + ax = x; + if (x < 0) { + ax = -x; + } + ax = ((0xF0 - ax) * 0x7F) / 0xF0; + __asm__("" : "=r"(ax) : "0"(ax)); + x = (x + 0xF0) / 0x1E; + if (x == 0x10) { + x = 0xF; + } + x = x << 8; + { + s32 flg = 0x3000; + func_8002D4C8(0x84A, ((ax | flg) | x) & 0xFFFF); + } + } + } + } else { + *(s32 *)(param_1 + 0x1c) = *(s32 *)(param_1 + 0x1c) - 1; + } +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018EA0C); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018EB3C); + + +extern void (*D_801DC7F8[])(void); + +void func_8018EC14(void *a0) { + D_801DC7F8[*(u16 *)((s32)a0 + 0x2)](); +} + + + +/* SV4 is the TU-canonical name (src/shared/engine_types.h) for func_8012F214's + * in/out struct (see ov_SC06_008_jr_8017AE2C.c:3135, "SV4 svec" comment: func_8012F214 out). + * Isolated match_one has no include path to that header, so it is typedef'd + * locally here for the standalone compile only. */ + + +/* func_8018EC50 - ov_SC06_008 / ov_SC06_008_jr_8017C294 (93 ins) + * + * One-time init (guarded by state flag at +0x34): mirror the +0x64 sub-object's + * +0x20/+0x12 field into our own +0x20 sub-object, kick off two "core" calls, + * pick an entry from the 2-element 12-byte table D_801DC800 (indexed by the + * s16 at +0x70), then call func_8012F214 with a zeroed input SV4 and read the + * first 3 fields of the output SV4 back into +6/+0xA/+0xE. Sets the countdown + * at +0x1c to 0x5a and marks the state flag +0x34 = 1. + * + * Always-executed tail: bump the +0x20 sub-object's +0x10/+0x12/+0x14 fields + * (reloading the +0x20 pointer fresh for each field -- no CSE across the + * intervening stores, straight literal translation), mirror +0x14 into +0xDC, + * call func_8012CBCC(a0) and test its return (canonical fleet decl is + * void func_8012CBCC(s32 a0); the return value is read via a function- + * pointer cast at the use site, per the established TU idiom -- see + * ov_SC03_099_jr_8017BEBC.c:5630 comment block). If (ret & 0x6000), decrement + * the +0xac counter (signed s16 compare-to-zero on the POST-decrement value -- + * gcc-2.7.2's sll-by-16/bnez idiom for a s16 local) and negate +0xDC into + * +0x14; on the counter hitting zero, call func_8012C218. Finally decrement + * the +0x1c countdown and call func_8012C218 again when IT hits zero. + */ + +extern void func_8012B2CC(s32 a0); +extern void func_8012B23C(s32 a0); +extern void func_8012B14C(s32 a0, s32 a1); +extern void func_8012F214(s32 a0, s32 a1, s32 a2); +extern void func_8012CBCC(s32 a0); +extern void func_8012C218(s32); + + +void func_8018EC50(s32 a0) +{ + + extern s32 D_801DC800; + SV4 in; + SV4 out; + s16 v1; + u16 uStack_c; + + if (*(u16 *)(a0 + 0x34) == 0) { + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) = + *(u16 *)(*(s32 *)(*(s32 *)(a0 + 0x64) + 0x20) + 0x12); + func_8012B2CC(a0); + func_8012B23C(a0); + func_8012B14C(a0, *(s16 *)(a0 + 0x70) * 12 + (s32)&D_801DC800); + + in.a = 0; + in.b = 0; + in.c = 0x10; + func_8012F214(a0, (s32)&in, (s32)&out); + *(u16 *)(a0 + 6) = out.a; + *(u16 *)(a0 + 0xa) = out.b; + uStack_c = out.c; + *(s32 *)(a0 + 0x1c) = 0x5a; + *(u16 *)(a0 + 0x34) = 1; + *(u16 *)(a0 + 0xe) = uStack_c; + } + + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x10) += -0x80; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x12) += 4; + *(u16 *)(*(s32 *)(a0 + 0x20) + 0x14) += *(u16 *)(a0 + 0xfc); + + *(s32 *)(a0 + 0xdc) = *(s32 *)(a0 + 0x14); + if ((((s32 (*)(s32))func_8012CBCC)(a0)) & 0x6000) { + register s32 negdc __asm__("$2"); + negdc = -*(s32 *)(a0 + 0xdc); + v1 = *(u16 *)(a0 + 0xac); + v1 -= 1; + *(s16 *)(a0 + 0xac) = v1; + *(s32 *)(a0 + 0x14) = negdc; + if (v1 == 0) { + ((void (*)(void *))func_8012C218)((void *)a0); + } + } + + { + s32 iVar3 = *(s32 *)(a0 + 0x1c) - 1; + *(s32 *)(a0 + 0x1c) = iVar3; + if (iVar3 == 0) { + ((void (*)(void *))func_8012C218)((void *)a0); + } + } +} + + + +extern void (*D_801DC818[])(void); + +void func_8018EDC4(void *a0) { + D_801DC818[*(u16 *)((s32)a0 + 0x2)](); +} + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018EE00); + +extern void func_8002D4C8(s32 arg0, s32 arg1); +extern void func_8018DEC0(void); + +void func_8018EE88(void *a0) { + func_8002D4C8(0xB32, 0); + ((void (*)(void *))func_8018DEC0)(a0); +} + + +extern void func_8018E094(void); + void func_8018EEC0(s32 *param_1) { + *(short *)(*(int *)((char *)param_1 + 0x20) + 0x10) = 0xe00; + ((void (*)(void))func_8018E094)(); + } + + +extern void func_8018E094(void); + void func_8018EEE8(s32 arg0) { + s32 temp_v1 = *(s32 *)(arg0 + 0x20); + *(u16 *)(temp_v1 + 0x10) += 0x20; + func_8018E094(); + } + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018EF1C); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018EF68); + +extern void func_8018DEC0(void); + void func_8018F054(s32 *a0) { + *(s32 *)((char *)a0 + 0x10) = *(s32 *)((char *)a0 + 0x10) >> 1; + *(s32 *)((char *)a0 + 0x18) = *(s32 *)((char *)a0 + 0x18) >> 1; + ((void (*)(void))func_8018DEC0)(); + } + + +extern void func_8018DEC0(void); + void func_8018F088(u8 *param_1) { + param_1[0xC1] = 0xC; + *(int *)(param_1 + 0x1C) = 0x3C; + ((void (*)(void))func_8018DEC0)(); + } + + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F0B4); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F140); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F268); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F39C); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F3FC); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F4BC); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F590); + +INCLUDE_ASM("asm/ov_SC06_024/nonmatchings/ov_SC06_024_jr_80186F00", func_8018F688); + + + + +