When a computed jump cannot be resolved to a jump table, every instruction in
the function becomes an entry point, because the jump could land on any of
them. That fallback was also applied to JALR, which is not a jump but a call:
it transfers control to another function and returns to the instruction after
the delay slot. That return address is already queued as a resume target a few
lines above, so nothing else in the function needs to be reachable from
outside.
Indirect calls are ordinary code -- function pointers, virtual dispatch,
callbacks -- so the fallback fired constantly. On a 3 MB PS2 executable, 2,210
of the 2,422 unresolved sites were JALR, and 1,078 of the 1,282 affected
functions contained no unresolved jump at all.
Restrict the fallback to JR. Promoted entries drop from 189,876 to 1,688,
registered table entries from 156,783 to 75,386, the generated registration
file from 13 MB to 6 MB, and total output from 180 MB to 163 MB. Every
indirect call site in real code keeps its return-address resume entry (the
only sites that lose one are bogus functions carved out of rodata, where the
address is outside the function anyway).
* feat: added guestBranchKind enum to categorize branch types
feat: added missingFunctionPolicy enum to define behaviors for missing function scenarios
refactor: added handle guest branches and report missing functions
feat lookupFunction to utilize new dispatch logic and improve error handling for unregistered functions
* fix: fix test conflict
* feat: added debug sound driver logs
* feat: emmiter for return
* feat: added recompiler reporter
feat: added strict diagnostics flag for heavy debug calls
* feat: staticc table insted of hashmap for runtime
* feat: back file to ignore
* feat: explode code across helpers and classes
* feat: update codegen test
feat: better guest nop check
* feat: fix link problem on linux
* feat: fix Segmentation fault