#include "psprecomp/runtime.hpp" #include "generated_units.hpp" #include #include #include #include namespace psprecomp { static const std::uint16_t kEntryIds_recomp_unit_0049[4093] = { 1, 0, 0, 0, 0, 0, 0, 2, 0, 0, 0, 0, 0, 3, 0, 4, 0, 5, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0, 0, 7, 0, 8, 0, 0, 0, 0, 0, 0, 9, 0, 0, 0, 0, 0, 0, 10, 0, 0, 0, 0, 0, 11, 0, 12, 0, 13, 0, 0, 0, 0, 0, 14, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 15, 0, 16, 0, 17, 0, 0, 0, 0, 18, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 19, 0, 0, 0, 0, 0, 20, 0, 21, 0, 0, 0, 22, 0, 0, 0, 0, 0, 23, 0, 0, 0, 24, 0, 0, 0, 25, 26, 0, 0, 27, 0, 0, 0, 28, 0, 0, 29, 0, 0, 0, 0, 30, 0, 31, 0, 32, 0, 0, 0, 0, 33, 0, 0, 0, 0, 0, 34, 0, 35, 0, 36, 0, 0, 0, 37, 0, 38, 0, 39, 0, 40, 0, 41, 0, 42, 0, 43, 0, 44, 0, 45, 0, 46, 0, 47, 0, 48, 0, 49, 0, 0, 50, 0, 51, 0, 0, 52, 0, 53, 0, 54, 0, 55, 0, 56, 0, 0, 0, 0, 57, 0, 0, 58, 0, 59, 0, 60, 0, 61, 0, 62, 0, 63, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 64, 0, 0, 0, 0, 0, 0, 0, 0, 0, 65, 0, 66, 0, 0, 0, 0, 0, 67, 0, 68, 0, 69, 0, 0, 0, 0, 0, 70, 0, 71, 0, 0, 0, 0, 0, 72, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 73, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 74, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 75, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 76, 0, 0, 0, 0, 77, 0, 0, 0, 78, 0, 79, 0, 80, 0, 0, 0, 0, 81, 0, 0, 0, 0, 0, 0, 0, 0, 0, 82, 0, 0, 0, 0, 83, 0, 0, 0, 0, 0, 0, 84, 0, 0, 0, 0, 0, 85, 0, 0, 0, 0, 0, 0, 0, 0, 86, 0, 0, 87, 0, 0, 0, 0, 0, 0, 0, 0, 88, 0, 0, 89, 0, 90, 0, 91, 0, 0, 92, 0, 0, 0, 0, 0, 0, 0, 0, 93, 0, 0, 94, 0, 0, 0, 0, 0, 0, 0, 0, 95, 0, 0, 96, 0, 97, 0, 98, 0, 0, 99, 0, 0, 0, 0, 0, 0, 0, 0, 100, 0, 0, 101, 0, 0, 0, 0, 0, 0, 0, 0, 102, 0, 0, 103, 0, 104, 0, 105, 0, 0, 106, 0, 0, 0, 0, 0, 0, 0, 0, 107, 0, 0, 108, 0, 0, 0, 0, 0, 0, 0, 0, 109, 0, 0, 110, 0, 111, 0, 112, 0, 0, 113, 0, 0, 0, 0, 0, 0, 0, 0, 114, 0, 0, 115, 0, 0, 0, 0, 0, 0, 0, 0, 116, 0, 0, 117, 0, 118, 0, 119, 0, 0, 120, 0, 0, 0, 0, 0, 0, 0, 0, 121, 0, 0, 122, 0, 123, 0, 0, 0, 0, 0, 0, 0, 0, 124, 0, 0, 0, 0, 0, 0, 0, 0, 125, 126, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 127, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 128, 0, 0, 0, 0, 0, 129, 0, 0, 130, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 131, 0, 0, 132, 0, 0, 133, 0, 0, 0, 0, 0, 0, 134, 0, 0, 0, 135, 0, 136, 0, 0, 0, 0, 0, 0, 137, 0, 0, 0, 0, 138, 0, 0, 0, 139, 0, 0, 0, 0, 0, 140, 0, 141, 0, 142, 0, 143, 0, 0, 0, 144, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 145, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 146, 0, 0, 147, 0, 0, 0, 0, 0, 0, 148, 0, 0, 149, 0, 0, 0, 150, 0, 0, 0, 0, 0, 151, 152, 0, 153, 0, 0, 0, 154, 0, 0, 155, 0, 156, 0, 157, 0, 158, 0, 0, 0, 159, 0, 0, 160, 0, 161, 162, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 163, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 164, 0, 0, 165, 0, 0, 0, 0, 0, 166, 0, 167, 168, 0, 169, 0, 170, 0, 171, 0, 172, 0, 173, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 174, 0, 175, 0, 0, 0, 176, 0, 0, 0, 0, 177, 0, 178, 0, 0, 0, 0, 0, 179, 0, 180, 181, 0, 0, 182, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 183, 0, 0, 0, 184, 0, 0, 0, 185, 0, 186, 0, 187, 0, 0, 188, 0, 189, 190, 0, 0, 0, 0, 191, 0, 0, 192, 0, 193, 0, 0, 0, 194, 0, 0, 0, 0, 195, 0, 196, 0, 197, 0, 198, 0, 0, 0, 0, 0, 0, 199, 0, 0, 0, 200, 201, 0, 0, 0, 0, 0, 202, 0, 0, 0, 0, 0, 0, 203, 0, 0, 0, 0, 204, 0, 0, 0, 0, 205, 0, 206, 0, 207, 0, 208, 0, 0, 209, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 210, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 211, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 212, 0, 0, 0, 0, 0, 0, 0, 213, 0, 0, 214, 0, 215, 0, 0, 0, 0, 0, 0, 216, 0, 0, 0, 0, 0, 217, 0, 0, 0, 0, 0, 218, 0, 0, 0, 0, 0, 219, 0, 0, 0, 220, 0, 0, 0, 221, 0, 0, 0, 222, 0, 0, 0, 223, 0, 0, 0, 224, 225, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 226, 227, 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581, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 582, 0, 583, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 584, 0, 0, 0, 0, 0, 0, 0, 0, 0, 585, 0, 586, 0, 0, 0, 0, 0, 587, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 588, 589, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 590, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 591, 0, 592, 0, 593, 0, 0, 0, 0, 0, 594, 595, 0, 596, 597, 0, 0, 0, 0, 0, 0, 598, 0, 0, 0, 0, 0, 0, 0, 0, 0, 599, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 600, 0, 601, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 602, 0, 603, 0, 604, 0, 0, 0, 0, 0, 605, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 606, 0, 607, 0, 608, 0, 609, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 610, 0, 0, 0, 0, 611, 0, 0, 0, 612, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 613, 0, 0, 0, 0, 0, 0, 0, 614, 0, 0, 0, 0, 0, 615, 0, 616, 0, 617, 0, 0, 0, 0, 0, 0, 0, 618, 0, 0, 0, 0, 0, 0, 0, 619, 0, 0, 0, 0, 0, 620, 0, 621, 0, 622, 0, 0, 0, 0, 0, 0, 0, 623, 0, 0, 0, 0, 0, 0, 0, 624, 0, 0, 0, 0, 0, 625, 0, 626, 0, 627, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 628, 0, 0, 0, 0, 0, 629, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 630, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 631, 0, 0, 0, 0, 0, 632, 0, 0, 0, 0, 0, 0, 0, 633, 0, 0, 0, 0, 0, 0, 0, 634, 0, 0, 0, 0, 0, 635, 0, 636, 0, 637, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 638, 0, 0, 0, 0, 0, 639, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 640, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 641, 0, 0, 0, 0, 0, 0, 0, 642, 0, 0, 0, 0, 0, 0, 0, 643, 0, 0, 0, 0, 0, 644, 0, 645, 0, 646, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 647, 0, 0, 0, 0, 0, 648, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 649, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 650, 0, 0, 0, 0, 0, 651, 0, 0, 0, 0, 0, 0, 0, 652, 0, 0, 0, 0, 0, 0, 0, 653, 0, 0, 0, 0, 0, 654, 0, 655, 0, 656, 0, 0, 0, 0, 0, 0, 0, 657, 0, 0, 0, 0, 0, 0, 0, 658, 0, 0, 0, 0, 0, 659, 0, 660, 0, 661, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 662, 0, 0, 0, 0, 0, 663, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 664, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 665, 0, 0, 0, 0, 0, 666, 0, 0, 0, 0, 0, 0, 0, 667, 0, 0, 0, 0, 0, 0, 0, 668, 0, 0, 0, 0, 0, 669, 0, 670, 0, 671, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 672, 0, 0, 0, 0, 0, 673, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 674, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 675, 0, 0, 0, 0, 0, 0, 0, 676, 0, 0, 0, 0, 0, 0, 0, 677, 0, 0, 0, 0, 0, 678, 0, 679, 0, 680, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 681, 0, 0, 0, 0, 0, 682, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 683, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 684, 0, 0, 0, 0, 0, 0, 0, 685, 0, 0, 0, 0, 0, 0, 0, 686, 0, 0, 0, 0, 0, 687, 0, 688, 0, 689, 0, 0, 0, 0, 0, 0, 0, 690, }; void recomp_unit_0049_entry(Runtime &rt, AllegrexContext &ctx, std::uint16_t direct_entry_id, GuestMemory::AotFastView &aot_mem) { std::uint32_t jump_target = 0u; std::uint32_t local_transfers = 0u; std::uint32_t local_pc = ctx.pc; std::uint32_t entry_id = direct_entry_id; LOCAL_DISPATCH: { if (entry_id == 0u) { const std::uint32_t entry_delta = local_pc - 0x088C8004u; entry_id = (entry_delta < 16372u && (entry_delta & 3u) == 0u) ? kEntryIds_recomp_unit_0049[entry_delta >> 2u] : 0u; } switch (entry_id) { case 1u: goto L_088C8004; case 2u: goto L_088C8020; case 3u: goto L_088C8038; case 4u: goto L_088C8040; case 5u: goto L_088C8048; case 6u: goto L_088C8060; case 7u: goto L_088C8080; case 8u: goto L_088C8088; case 9u: goto L_088C80A4; case 10u: goto L_088C80C0; case 11u: goto L_088C80D8; case 12u: goto L_088C80E0; case 13u: goto L_088C80E8; case 14u: goto L_088C8100; case 15u: goto L_088C812C; case 16u: goto L_088C8134; case 17u: goto L_088C813C; case 18u: goto L_088C8150; case 19u: goto L_088C8180; case 20u: goto L_088C8198; case 21u: goto L_088C81A0; case 22u: goto L_088C81B0; case 23u: goto L_088C81C8; case 24u: goto L_088C81D8; case 25u: goto L_088C81E8; case 26u: goto L_088C81EC; case 27u: goto L_088C81F8; case 28u: goto L_088C8208; case 29u: goto L_088C8214; case 30u: goto L_088C8228; case 31u: goto L_088C8230; case 32u: goto L_088C8238; case 33u: goto L_088C824C; case 34u: goto L_088C8264; case 35u: goto L_088C826C; case 36u: goto L_088C8274; case 37u: goto L_088C8284; case 38u: goto L_088C828C; case 39u: goto L_088C8294; case 40u: goto L_088C829C; case 41u: goto L_088C82A4; case 42u: goto L_088C82AC; case 43u: goto L_088C82B4; case 44u: goto L_088C82BC; case 45u: goto L_088C82C4; case 46u: goto L_088C82CC; case 47u: goto L_088C82D4; case 48u: goto L_088C82DC; case 49u: goto L_088C82E4; case 50u: goto L_088C82F0; case 51u: goto L_088C82F8; case 52u: goto L_088C8304; case 53u: goto L_088C830C; case 54u: goto L_088C8314; case 55u: goto L_088C831C; case 56u: goto L_088C8324; case 57u: goto L_088C8338; case 58u: goto L_088C8344; case 59u: goto L_088C834C; case 60u: goto L_088C8354; case 61u: goto L_088C835C; case 62u: goto L_088C8364; case 63u: goto L_088C836C; case 64u: goto L_088C83A0; case 65u: goto L_088C83C8; case 66u: goto L_088C83D0; case 67u: goto L_088C83E8; case 68u: goto L_088C83F0; case 69u: goto L_088C83F8; case 70u: goto L_088C8410; case 71u: goto L_088C8418; case 72u: goto L_088C8430; case 73u: goto L_088C84F8; case 74u: goto L_088C8524; case 75u: goto L_088C8550; case 76u: goto L_088C857C; case 77u: goto L_088C8590; case 78u: goto L_088C85A0; case 79u: goto L_088C85A8; case 80u: goto L_088C85B0; case 81u: goto L_088C85C4; case 82u: goto L_088C85EC; case 83u: goto L_088C8600; case 84u: goto L_088C861C; case 85u: goto L_088C8634; case 86u: goto L_088C8658; case 87u: goto L_088C8664; case 88u: goto L_088C8688; case 89u: goto L_088C8694; case 90u: goto L_088C869C; case 91u: goto L_088C86A4; case 92u: goto L_088C86B0; case 93u: goto L_088C86D4; case 94u: goto L_088C86E0; case 95u: goto L_088C8704; case 96u: goto L_088C8710; case 97u: goto L_088C8718; case 98u: goto L_088C8720; case 99u: goto L_088C872C; case 100u: goto L_088C8750; case 101u: goto L_088C875C; case 102u: goto L_088C8780; case 103u: goto L_088C878C; case 104u: goto L_088C8794; case 105u: goto L_088C879C; case 106u: goto L_088C87A8; case 107u: goto L_088C87CC; case 108u: goto L_088C87D8; case 109u: goto L_088C87FC; case 110u: goto L_088C8808; case 111u: goto L_088C8810; case 112u: goto L_088C8818; case 113u: goto L_088C8824; case 114u: goto L_088C8848; case 115u: goto L_088C8854; case 116u: goto L_088C8878; case 117u: goto L_088C8884; case 118u: goto L_088C888C; case 119u: goto L_088C8894; case 120u: goto L_088C88A0; case 121u: goto L_088C88C4; case 122u: goto L_088C88D0; case 123u: goto L_088C88D8; case 124u: goto L_088C88FC; case 125u: goto L_088C8920; case 126u: goto L_088C8924; case 127u: goto L_088C8958; case 128u: goto L_088C89BC; case 129u: goto L_088C89D4; case 130u: goto L_088C89E0; case 131u: goto L_088C8A98; case 132u: goto L_088C8AA4; case 133u: goto L_088C8AB0; case 134u: goto L_088C8ACC; case 135u: goto L_088C8ADC; case 136u: goto L_088C8AE4; case 137u: goto L_088C8B00; case 138u: goto L_088C8B14; case 139u: goto L_088C8B24; case 140u: goto L_088C8B3C; case 141u: goto L_088C8B44; case 142u: goto L_088C8B4C; case 143u: goto L_088C8B54; case 144u: goto L_088C8B64; case 145u: goto L_088C8BCC; case 146u: goto L_088C8C10; case 147u: goto L_088C8C1C; case 148u: goto L_088C8C38; case 149u: goto L_088C8C44; case 150u: goto L_088C8C54; case 151u: goto L_088C8C6C; case 152u: goto L_088C8C70; case 153u: goto L_088C8C78; case 154u: goto L_088C8C88; case 155u: goto L_088C8C94; case 156u: goto L_088C8C9C; case 157u: goto L_088C8CA4; case 158u: goto L_088C8CAC; case 159u: goto L_088C8CBC; case 160u: goto L_088C8CC8; case 161u: goto L_088C8CD0; case 162u: goto L_088C8CD4; case 163u: goto L_088C8D04; case 164u: goto L_088C8D68; case 165u: goto L_088C8D74; case 166u: goto L_088C8D8C; case 167u: goto L_088C8D94; case 168u: goto L_088C8D98; case 169u: goto L_088C8DA0; case 170u: goto L_088C8DA8; case 171u: goto L_088C8DB0; case 172u: goto L_088C8DB8; case 173u: goto L_088C8DC0; case 174u: goto L_088C8E00; case 175u: goto L_088C8E08; case 176u: goto L_088C8E18; case 177u: goto L_088C8E2C; case 178u: goto L_088C8E34; case 179u: goto L_088C8E4C; case 180u: goto L_088C8E54; case 181u: goto L_088C8E58; case 182u: goto L_088C8E64; case 183u: goto L_088C8EA8; case 184u: goto L_088C8EB8; case 185u: goto L_088C8EC8; case 186u: goto L_088C8ED0; case 187u: goto L_088C8ED8; case 188u: goto L_088C8EE4; case 189u: goto L_088C8EEC; case 190u: goto L_088C8EF0; case 191u: goto L_088C8F04; case 192u: goto L_088C8F10; case 193u: goto L_088C8F18; case 194u: goto L_088C8F28; case 195u: goto L_088C8F3C; case 196u: goto L_088C8F44; case 197u: goto L_088C8F4C; case 198u: goto L_088C8F54; case 199u: goto L_088C8F70; case 200u: goto L_088C8F80; case 201u: goto L_088C8F84; case 202u: goto L_088C8F9C; case 203u: goto L_088C8FB8; case 204u: goto L_088C8FCC; case 205u: goto L_088C8FE0; case 206u: goto L_088C8FE8; case 207u: goto L_088C8FF0; case 208u: goto L_088C8FF8; case 209u: goto L_088C9004; case 210u: goto L_088C903C; case 211u: goto L_088C90AC; case 212u: goto L_088C90D8; case 213u: goto L_088C90F8; case 214u: goto L_088C9104; case 215u: goto L_088C910C; case 216u: goto L_088C9128; case 217u: goto L_088C9140; case 218u: goto L_088C9158; case 219u: goto L_088C9170; case 220u: goto L_088C9180; case 221u: goto L_088C9190; case 222u: goto L_088C91A0; case 223u: goto L_088C91B0; case 224u: goto L_088C91C0; case 225u: goto L_088C91C4; case 226u: goto L_088C9208; case 227u: goto L_088C920C; case 228u: goto L_088C923C; case 229u: goto L_088C9268; case 230u: goto L_088C928C; case 231u: goto L_088C92B0; case 232u: goto L_088C92D4; case 233u: goto L_088C92D8; case 234u: goto L_088C92EC; case 235u: goto L_088C92F4; case 236u: goto L_088C930C; case 237u: goto L_088C9324; case 238u: goto L_088C932C; case 239u: goto L_088C9344; case 240u: goto L_088C9348; case 241u: goto L_088C935C; case 242u: goto L_088C9374; case 243u: goto L_088C937C; case 244u: goto L_088C9394; case 245u: goto L_088C9398; case 246u: goto L_088C93A4; case 247u: goto L_088C93EC; case 248u: goto L_088C9468; case 249u: goto L_088C947C; case 250u: goto L_088C9484; case 251u: goto L_088C94A4; case 252u: goto L_088C94C4; case 253u: goto L_088C94CC; case 254u: goto L_088C94D8; case 255u: goto L_088C94F8; case 256u: goto L_088C94FC; case 257u: goto L_088C9504; case 258u: goto L_088C9510; case 259u: goto L_088C9530; case 260u: goto L_088C9534; case 261u: goto L_088C9540; case 262u: goto L_088C9580; case 263u: goto L_088C9598; case 264u: goto L_088C95A8; case 265u: goto L_088C95CC; case 266u: goto L_088C95D8; case 267u: goto L_088C95E0; case 268u: goto L_088C95E8; case 269u: goto L_088C95EC; case 270u: goto L_088C9614; case 271u: goto L_088C962C; case 272u: goto L_088C9634; case 273u: goto L_088C9644; case 274u: goto L_088C9648; case 275u: goto L_088C9650; case 276u: goto L_088C965C; case 277u: goto L_088C9668; case 278u: goto L_088C967C; case 279u: goto L_088C9690; case 280u: goto L_088C9698; case 281u: goto L_088C96B0; case 282u: goto L_088C96C0; case 283u: goto L_088C96CC; case 284u: goto L_088C96D4; case 285u: goto L_088C96F0; case 286u: goto L_088C96FC; case 287u: goto L_088C9718; case 288u: goto L_088C9720; case 289u: goto L_088C9728; case 290u: goto L_088C9730; case 291u: goto L_088C9748; case 292u: goto L_088C9750; case 293u: goto L_088C975C; case 294u: goto L_088C976C; case 295u: goto L_088C977C; case 296u: goto L_088C978C; case 297u: goto L_088C9794; case 298u: goto L_088C97AC; case 299u: goto L_088C97BC; case 300u: goto L_088C97C8; case 301u: goto L_088C97D0; case 302u: goto L_088C97E8; case 303u: goto L_088C9800; case 304u: goto L_088C9808; case 305u: goto L_088C9820; case 306u: goto L_088C9838; case 307u: goto L_088C9840; case 308u: goto L_088C9860; case 309u: goto L_088C9868; case 310u: goto L_088C9870; case 311u: goto L_088C987C; case 312u: goto L_088C989C; case 313u: goto L_088C98A4; case 314u: goto L_088C98C4; case 315u: goto L_088C98CC; case 316u: goto L_088C98E4; case 317u: goto L_088C98F8; case 318u: goto L_088C9904; case 319u: goto L_088C9980; case 320u: goto L_088C9990; case 321u: goto L_088C99A0; case 322u: goto L_088C99B0; case 323u: goto L_088C99C4; case 324u: goto L_088C99CC; case 325u: goto L_088C99D4; case 326u: goto L_088C99F4; case 327u: goto L_088C9A0C; case 328u: goto L_088C9A14; case 329u: goto L_088C9A20; case 330u: goto L_088C9A24; case 331u: goto L_088C9A60; case 332u: goto L_088C9ACC; case 333u: goto L_088C9B08; case 334u: goto L_088C9B5C; case 335u: goto L_088C9B64; case 336u: goto L_088C9B80; case 337u: goto L_088C9B9C; case 338u: goto L_088C9BA8; case 339u: goto L_088C9BB8; case 340u: goto L_088C9BC8; case 341u: goto L_088C9BD0; case 342u: goto L_088C9BD8; case 343u: goto L_088C9BF4; case 344u: goto L_088C9C0C; case 345u: goto L_088C9C20; case 346u: goto L_088C9C34; case 347u: goto L_088C9C4C; case 348u: goto L_088C9C5C; case 349u: goto L_088C9C6C; case 350u: goto L_088C9C7C; case 351u: goto L_088C9C84; case 352u: goto L_088C9C90; case 353u: goto L_088C9CA0; case 354u: goto L_088C9CA8; case 355u: goto L_088C9CB0; case 356u: goto L_088C9CC4; case 357u: goto L_088C9CCC; case 358u: goto L_088C9CE4; case 359u: goto L_088C9CF8; case 360u: goto L_088C9D08; case 361u: goto L_088C9D18; case 362u: goto L_088C9D30; case 363u: goto L_088C9D3C; case 364u: goto L_088C9D50; case 365u: goto L_088C9D60; case 366u: goto L_088C9D74; case 367u: goto L_088C9D90; case 368u: goto L_088C9DA4; case 369u: goto L_088C9DB4; case 370u: goto L_088C9DC4; case 371u: goto L_088C9DCC; case 372u: goto L_088C9DD4; case 373u: goto L_088C9DE0; case 374u: goto L_088C9DF0; case 375u: goto L_088C9E00; case 376u: goto L_088C9E08; case 377u: goto L_088C9E10; case 378u: goto L_088C9E38; case 379u: goto L_088C9E50; case 380u: goto L_088C9E58; case 381u: goto L_088C9E70; case 382u: goto L_088C9E84; case 383u: goto L_088C9E94; case 384u: goto L_088C9E9C; case 385u: goto L_088C9EA4; case 386u: goto L_088C9ECC; case 387u: goto L_088C9EE8; case 388u: goto L_088C9F34; case 389u: goto L_088C9F38; case 390u: goto L_088C9F40; case 391u: goto L_088C9F48; case 392u: goto L_088C9F60; case 393u: goto L_088C9F64; case 394u: goto L_088C9F78; case 395u: goto L_088C9F90; case 396u: goto L_088C9FCC; case 397u: goto L_088C9FF8; case 398u: goto L_088CA028; case 399u: goto L_088CA044; case 400u: goto L_088CA058; case 401u: goto L_088CA074; case 402u: goto L_088CA080; case 403u: goto L_088CA084; case 404u: goto L_088CA0C0; case 405u: goto L_088CA0CC; case 406u: goto L_088CA0D8; case 407u: goto L_088CA0EC; case 408u: goto L_088CA0F4; case 409u: goto L_088CA110; case 410u: goto L_088CA118; case 411u: goto L_088CA120; case 412u: goto L_088CA134; case 413u: goto L_088CA144; case 414u: goto L_088CA168; case 415u: goto L_088CA178; case 416u: goto L_088CA198; case 417u: goto L_088CA1B4; case 418u: goto L_088CA1D4; case 419u: goto L_088CA1DC; case 420u: goto L_088CA1E8; case 421u: goto L_088CA21C; case 422u: goto L_088CA228; case 423u: goto L_088CA22C; case 424u: goto L_088CA25C; case 425u: goto L_088CA26C; case 426u: goto L_088CA280; case 427u: goto L_088CA288; case 428u: goto L_088CA2A4; case 429u: goto L_088CA2B4; case 430u: goto L_088CA2CC; case 431u: goto L_088CA2D4; case 432u: goto L_088CA2EC; case 433u: goto L_088CA2F8; case 434u: goto L_088CA300; case 435u: goto L_088CA31C; case 436u: goto L_088CA334; case 437u: goto L_088CA338; case 438u: goto L_088CA340; case 439u: goto L_088CA354; case 440u: goto L_088CA39C; case 441u: goto L_088CA450; case 442u: goto L_088CA45C; case 443u: goto L_088CA470; case 444u: goto L_088CA47C; case 445u: goto L_088CA4A4; case 446u: goto L_088CA4BC; case 447u: goto L_088CA518; case 448u: goto L_088CA538; case 449u: goto L_088CA544; case 450u: goto L_088CA550; case 451u: goto L_088CA558; case 452u: goto L_088CA564; case 453u: goto L_088CA620; case 454u: goto L_088CA650; case 455u: goto L_088CA688; case 456u: goto L_088CA6B0; case 457u: goto L_088CA6CC; case 458u: goto L_088CA6D8; case 459u: goto L_088CA6E0; case 460u: goto L_088CA6E8; case 461u: goto L_088CA6F4; case 462u: goto L_088CA72C; case 463u: goto L_088CA734; case 464u: goto L_088CA740; case 465u: goto L_088CA748; case 466u: goto L_088CA750; case 467u: goto L_088CA76C; case 468u: goto L_088CA774; case 469u: goto L_088CA790; case 470u: goto L_088CA798; case 471u: goto L_088CA79C; case 472u: goto L_088CA7A4; case 473u: goto L_088CA7AC; case 474u: goto L_088CA7D4; case 475u: goto L_088CA804; case 476u: goto L_088CA80C; case 477u: goto L_088CA814; case 478u: goto L_088CA81C; case 479u: goto L_088CA828; case 480u: goto L_088CA830; case 481u: goto L_088CA83C; case 482u: goto L_088CA84C; case 483u: goto L_088CA854; case 484u: goto L_088CA85C; case 485u: goto L_088CA868; case 486u: goto L_088CA878; case 487u: goto L_088CA880; case 488u: goto L_088CA890; case 489u: goto L_088CA8A0; case 490u: goto L_088CA8B8; case 491u: goto L_088CA8C4; case 492u: goto L_088CA8F4; case 493u: goto L_088CA900; case 494u: goto L_088CA914; case 495u: goto L_088CA930; case 496u: goto L_088CA93C; case 497u: goto L_088CA940; case 498u: goto L_088CA948; case 499u: goto L_088CA95C; case 500u: goto L_088CA964; case 501u: goto L_088CA96C; case 502u: goto L_088CA974; case 503u: goto L_088CA994; case 504u: goto L_088CA9C8; case 505u: goto L_088CA9D0; case 506u: goto L_088CA9D8; case 507u: goto L_088CAA04; case 508u: goto L_088CAA30; case 509u: goto L_088CAA38; case 510u: goto L_088CAA74; case 511u: goto L_088CAA80; case 512u: goto L_088CAAB0; case 513u: goto L_088CAABC; case 514u: goto L_088CAAD0; case 515u: goto L_088CAAD8; case 516u: goto L_088CAAE4; case 517u: goto L_088CAB18; case 518u: goto L_088CAB48; case 519u: goto L_088CAB74; case 520u: goto L_088CAB80; case 521u: goto L_088CAB8C; case 522u: goto L_088CAB94; case 523u: goto L_088CABA8; case 524u: goto L_088CABD8; case 525u: goto L_088CABE0; case 526u: goto L_088CAC00; case 527u: goto L_088CAC0C; case 528u: goto L_088CAC18; case 529u: goto L_088CAC20; case 530u: goto L_088CAC2C; case 531u: goto L_088CAC48; case 532u: goto L_088CAC58; case 533u: goto L_088CAC64; case 534u: goto L_088CAC6C; case 535u: goto L_088CAC70; case 536u: goto L_088CAC78; case 537u: goto L_088CAC80; case 538u: goto L_088CAC94; case 539u: goto L_088CAD18; case 540u: goto L_088CAD1C; case 541u: goto L_088CAD34; case 542u: goto L_088CAD48; case 543u: goto L_088CAE40; case 544u: goto L_088CAE44; case 545u: goto L_088CAE4C; case 546u: goto L_088CAE6C; case 547u: goto L_088CAE84; case 548u: goto L_088CAEA0; case 549u: goto L_088CAEB8; case 550u: goto L_088CAED4; case 551u: goto L_088CAEDC; case 552u: goto L_088CAEE4; case 553u: goto L_088CAEEC; case 554u: goto L_088CAF00; case 555u: goto L_088CAF08; case 556u: goto L_088CAF0C; case 557u: goto L_088CAF14; case 558u: goto L_088CB02C; case 559u: goto L_088CB058; case 560u: goto L_088CB060; case 561u: goto L_088CB068; case 562u: goto L_088CB07C; case 563u: goto L_088CB084; case 564u: goto L_088CB088; case 565u: goto L_088CB090; case 566u: goto L_088CB0E0; case 567u: goto L_088CB100; case 568u: goto L_088CB108; case 569u: goto L_088CB138; case 570u: goto L_088CB168; case 571u: goto L_088CB1AC; case 572u: goto L_088CB1B4; case 573u: goto L_088CB1B8; case 574u: goto L_088CB1C0; case 575u: goto L_088CB26C; case 576u: goto L_088CB290; case 577u: goto L_088CB2A4; case 578u: goto L_088CB2B8; case 579u: goto L_088CB2C0; case 580u: goto L_088CB2C8; case 581u: goto L_088CB2D0; case 582u: goto L_088CB3E4; case 583u: goto L_088CB3EC; case 584u: goto L_088CB448; case 585u: goto L_088CB470; case 586u: goto L_088CB478; case 587u: goto L_088CB490; case 588u: goto L_088CB50C; case 589u: goto L_088CB510; case 590u: goto L_088CB540; case 591u: goto L_088CB56C; case 592u: goto L_088CB574; case 593u: goto L_088CB57C; case 594u: goto L_088CB594; case 595u: goto L_088CB598; case 596u: goto L_088CB5A0; case 597u: goto L_088CB5A4; case 598u: goto L_088CB5C0; case 599u: goto L_088CB5E8; case 600u: goto L_088CB624; case 601u: goto L_088CB62C; case 602u: goto L_088CB658; case 603u: goto L_088CB660; case 604u: goto L_088CB668; case 605u: goto L_088CB680; case 606u: goto L_088CB6C4; case 607u: goto L_088CB6CC; case 608u: goto L_088CB6D4; case 609u: goto L_088CB6DC; case 610u: goto L_088CB738; case 611u: goto L_088CB74C; case 612u: goto L_088CB75C; case 613u: goto L_088CB7AC; case 614u: goto L_088CB7CC; case 615u: goto L_088CB7E4; case 616u: goto L_088CB7EC; case 617u: goto L_088CB7F4; case 618u: goto L_088CB814; case 619u: goto L_088CB834; case 620u: goto L_088CB84C; case 621u: goto L_088CB854; case 622u: goto L_088CB85C; case 623u: goto L_088CB87C; case 624u: goto L_088CB89C; case 625u: goto L_088CB8B4; case 626u: goto L_088CB8BC; case 627u: goto L_088CB8C4; case 628u: goto L_088CB8F4; case 629u: goto L_088CB90C; case 630u: goto L_088CB93C; case 631u: goto L_088CB96C; case 632u: goto L_088CB984; case 633u: goto L_088CB9A4; case 634u: goto L_088CB9C4; case 635u: goto L_088CB9DC; case 636u: goto L_088CB9E4; case 637u: goto L_088CB9EC; case 638u: goto L_088CBA1C; case 639u: goto L_088CBA34; case 640u: goto L_088CBA64; case 641u: goto L_088CBA94; case 642u: goto L_088CBAB4; case 643u: goto L_088CBAD4; case 644u: goto L_088CBAEC; case 645u: goto L_088CBAF4; case 646u: goto L_088CBAFC; case 647u: goto L_088CBB2C; case 648u: goto L_088CBB44; case 649u: goto L_088CBB74; case 650u: goto L_088CBBA4; case 651u: goto L_088CBBBC; case 652u: goto L_088CBBDC; case 653u: goto L_088CBBFC; case 654u: goto L_088CBC14; case 655u: goto L_088CBC1C; case 656u: goto L_088CBC24; case 657u: goto L_088CBC44; case 658u: goto L_088CBC64; case 659u: goto L_088CBC7C; case 660u: goto L_088CBC84; case 661u: goto L_088CBC8C; case 662u: goto L_088CBCBC; case 663u: goto L_088CBCD4; case 664u: goto L_088CBD04; case 665u: goto L_088CBD34; case 666u: goto L_088CBD4C; case 667u: goto L_088CBD6C; case 668u: goto L_088CBD8C; case 669u: goto L_088CBDA4; case 670u: goto L_088CBDAC; case 671u: goto L_088CBDB4; case 672u: goto L_088CBDE4; case 673u: goto L_088CBDFC; case 674u: goto L_088CBE2C; case 675u: goto L_088CBE5C; case 676u: goto L_088CBE7C; case 677u: goto L_088CBE9C; case 678u: goto L_088CBEB4; case 679u: goto L_088CBEBC; case 680u: goto L_088CBEC4; case 681u: goto L_088CBEF4; case 682u: goto L_088CBF0C; case 683u: goto L_088CBF3C; case 684u: goto L_088CBF6C; case 685u: goto L_088CBF8C; case 686u: goto L_088CBFAC; case 687u: goto L_088CBFC4; case 688u: goto L_088CBFCC; case 689u: goto L_088CBFD4; case 690u: goto L_088CBFF4; default: if (local_transfers == 0u) rt.unsupported(ctx.pc, 0u, "invalid internal function entry"); else ctx.pc = local_pc; return; } } L_088C8004: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 32768u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); if (branch_taken) { goto L_088C8080; } goto L_088C8020; } L_088C8020: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(92))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(96)); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(0)))))); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); jump_target = ctx.gpr[6]; ctx.gpr[31] = (0x088C8038u); ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[5]); ctx.pc = jump_target; if (rt.invoke_chained_call(ctx, &aot_mem) && ctx.pc == 0x088C8038u) goto L_088C8038; return; L_088C8038: ctx.gpr[31] = (0x088C8040u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 513u, 0x08A065D0u>(ctx, &aot_mem) && ctx.pc == 0x088C8040u) goto L_088C8040; return; L_088C8040: ctx.gpr[31] = (0x088C8048u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 755u, 0x08A2F898u>(ctx, &aot_mem) && ctx.pc == 0x088C8048u) goto L_088C8048; return; L_088C8048: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 32768u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C8080; } goto L_088C8060; } L_088C8060: ctx.gpr[4] = (0u | 1u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 1u); ctx.gpr[6] = (0u + static_cast(-16385)); ctx.gpr[5] = (ctx.gpr[5] & ctx.gpr[6]); ctx.gpr[4] = (ctx.gpr[4] << 14u); ctx.gpr[4] = (ctx.gpr[5] | ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[16] + static_cast(68), ctx.gpr[4]); goto L_088C8080; L_088C8080: { const bool branch_taken = ctx.gpr[17] != 0u; // nop if (branch_taken) { goto L_088C8004; } goto L_088C8088; } L_088C8088: ctx.gpr[4] = (0u | 1u); ctx.gpr[5] = (2230u << 16u); ctx.gpr[6] = (2230u << 16u); aot_mem.aot_store8(ctx.gpr[5] + static_cast(-7145), static_cast(ctx.gpr[4])); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[6] + static_cast(-8112))); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C81A0; } goto L_088C80A4; } L_088C80A4: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 32768u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); if (branch_taken) { goto L_088C8198; } goto L_088C80C0; } L_088C80C0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(92))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(96)); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(0)))))); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); jump_target = ctx.gpr[6]; ctx.gpr[31] = (0x088C80D8u); ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[5]); ctx.pc = jump_target; if (rt.invoke_chained_call(ctx, &aot_mem) && ctx.pc == 0x088C80D8u) goto L_088C80D8; return; L_088C80D8: ctx.gpr[31] = (0x088C80E0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 513u, 0x08A065D0u>(ctx, &aot_mem) && ctx.pc == 0x088C80E0u) goto L_088C80E0; return; L_088C80E0: ctx.gpr[31] = (0x088C80E8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 755u, 0x08A2F898u>(ctx, &aot_mem) && ctx.pc == 0x088C80E8u) goto L_088C80E8; return; L_088C80E8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 32768u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C8198; } goto L_088C8100; } L_088C8100: ctx.gpr[4] = (0u | 1u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 1u); ctx.gpr[6] = (0u + static_cast(-16385)); ctx.gpr[5] = (ctx.gpr[5] & ctx.gpr[6]); ctx.gpr[4] = (ctx.gpr[4] << 14u); ctx.gpr[4] = (ctx.gpr[5] | ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[16] + static_cast(68), ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] & 496u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[4] = (0u | 0u); if (branch_taken) { goto L_088C8134; } goto L_088C812C; } L_088C812C: { const bool branch_taken = 0u == 0u; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088C8134; } goto L_088C8134; } L_088C8134: { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8198; } goto L_088C813C; } L_088C813C: ctx.gpr[4] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(20712))); ctx.gpr[4] = (2230u << 16u); ctx.gpr[31] = (0x088C8150u); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(-8144))); if (rt.invoke_chained_direct<&recomp_unit_0189_entry, 189u, 394u, 0x08AF9BECu>(ctx, &aot_mem) && ctx.pc == 0x088C8150u) goto L_088C8150; return; L_088C8150: ctx.gpr[4] = (std::bit_cast(ctx.fpr[0])); ctx.set_vfpu_scalar_bits_ct<1u>(ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[16] + static_cast(112)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vscl_ct<0u, 0u, 1u, 3u>(); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(92))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(160)); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(0)))))); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); jump_target = ctx.gpr[6]; ctx.gpr[31] = (0x088C8180u); ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[5]); ctx.pc = jump_target; if (rt.invoke_chained_call(ctx, &aot_mem) && ctx.pc == 0x088C8180u) goto L_088C8180; return; L_088C8180: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(92))); ctx.gpr[5] = (ctx.gpr[4] + static_cast(168)); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[5] + static_cast(0)))))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); jump_target = ctx.gpr[5]; ctx.gpr[31] = (0x088C8198u); ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[4]); ctx.pc = jump_target; if (rt.invoke_chained_call(ctx, &aot_mem) && ctx.pc == 0x088C8198u) goto L_088C8198; return; L_088C8198: { const bool branch_taken = ctx.gpr[17] != 0u; // nop if (branch_taken) { goto L_088C80A4; } goto L_088C81A0; } L_088C81A0: ctx.gpr[4] = (2230u << 16u); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(-8112))); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C8364; } goto L_088C81B0; } L_088C81B0: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[5] = (0u | 6u); ctx.gpr[4] = (ctx.gpr[4] & 14u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); if (branch_taken) { goto L_088C8324; } goto L_088C81C8; } L_088C81C8: ctx.gpr[18] = (ctx.gpr[16] | 0u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast(1336))); if (ctx.gpr[4] == 0u) { ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(844))); goto L_088C81EC; } goto L_088C81D8; L_088C81D8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(844))); ctx.gpr[5] = (0u | 48u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088C8208; } goto L_088C81E8; } L_088C81E8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(844))); goto L_088C81EC; L_088C81EC: ctx.gpr[5] = (0u | 58u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C8208; } goto L_088C81F8; } L_088C81F8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(844))); ctx.gpr[5] = (0u | 56u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088C82F8; } goto L_088C8208; } L_088C8208: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(1332))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C82E4; } goto L_088C8214; } L_088C8214: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(1332))); ctx.gpr[5] = (0u | 2u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(836))); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088C8238; } goto L_088C8228; } L_088C8228: ctx.gpr[31] = (0x088C8230u); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0032_entry, 32u, 656u, 0x088875F8u>(ctx, &aot_mem) && ctx.pc == 0x088C8230u) goto L_088C8230; return; L_088C8230: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C82CC; } goto L_088C8238; } L_088C8238: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(844))); ctx.gpr[5] = (ctx.gpr[4] + static_cast(-56)); ctx.gpr[5] = (ctx.gpr[5] < static_cast(7) ? 1u : 0u); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[4] = (ctx.gpr[4] + static_cast(-56)); if (branch_taken) { goto L_088C82C4; } goto L_088C824C; } L_088C824C: ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[1] = (2225u << 16u); ctx.gpr[1] = (ctx.gpr[1] + ctx.gpr[4]); ctx.gpr[1] = (aot_mem.aot_load32(ctx.gpr[1] + static_cast(13400))); jump_target = ctx.gpr[1]; // nop local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088C8264: ctx.gpr[31] = (0x088C826Cu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0034_entry, 34u, 19u, 0x0888C11Cu>(ctx, &aot_mem) && ctx.pc == 0x088C826Cu) goto L_088C826C; return; L_088C826C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C82CC; } goto L_088C8274; } L_088C8274: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(848))); ctx.gpr[5] = (0u | 57u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088C8294; } goto L_088C8284; } L_088C8284: ctx.gpr[31] = (0x088C828Cu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0033_entry, 33u, 814u, 0x0888B764u>(ctx, &aot_mem) && ctx.pc == 0x088C828Cu) goto L_088C828C; return; L_088C828C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C829C; } goto L_088C8294; } L_088C8294: ctx.gpr[31] = (0x088C829Cu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 247u, 0x089B90A4u>(ctx, &aot_mem) && ctx.pc == 0x088C829Cu) goto L_088C829C; return; L_088C829C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C82CC; } goto L_088C82A4; } L_088C82A4: ctx.gpr[31] = (0x088C82ACu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0033_entry, 33u, 814u, 0x0888B764u>(ctx, &aot_mem) && ctx.pc == 0x088C82ACu) goto L_088C82AC; return; L_088C82AC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C82CC; } goto L_088C82B4; } L_088C82B4: ctx.gpr[31] = (0x088C82BCu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0033_entry, 33u, 535u, 0x0888A228u>(ctx, &aot_mem) && ctx.pc == 0x088C82BCu) goto L_088C82BC; return; L_088C82BC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C82CC; } goto L_088C82C4; } L_088C82C4: ctx.gpr[31] = (0x088C82CCu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 247u, 0x089B90A4u>(ctx, &aot_mem) && ctx.pc == 0x088C82CCu) goto L_088C82CC; return; L_088C82CC: ctx.gpr[31] = (0x088C82D4u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 513u, 0x08A065D0u>(ctx, &aot_mem) && ctx.pc == 0x088C82D4u) goto L_088C82D4; return; L_088C82D4: ctx.gpr[31] = (0x088C82DCu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 755u, 0x08A2F898u>(ctx, &aot_mem) && ctx.pc == 0x088C82DCu) goto L_088C82DC; return; L_088C82DC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C831C; } goto L_088C82E4; } L_088C82E4: aot_mem.aot_store8(ctx.gpr[18] + static_cast(1336), static_cast(0u)); ctx.gpr[31] = (0x088C82F0u); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0034_entry, 34u, 621u, 0x0888F0A4u>(ctx, &aot_mem) && ctx.pc == 0x088C82F0u) goto L_088C82F0; return; L_088C82F0: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C831C; } goto L_088C82F8; } L_088C82F8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(1924))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C831C; } goto L_088C8304; } L_088C8304: ctx.gpr[31] = (0x088C830Cu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0110_entry, 110u, 397u, 0x089BDFA4u>(ctx, &aot_mem) && ctx.pc == 0x088C830Cu) goto L_088C830C; return; L_088C830C: ctx.gpr[31] = (0x088C8314u); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 513u, 0x08A065D0u>(ctx, &aot_mem) && ctx.pc == 0x088C8314u) goto L_088C8314; return; L_088C8314: ctx.gpr[31] = (0x088C831Cu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 755u, 0x08A2F898u>(ctx, &aot_mem) && ctx.pc == 0x088C831Cu) goto L_088C831C; return; L_088C831C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C835C; } goto L_088C8324; } L_088C8324: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[5] = (0u | 8u); ctx.gpr[4] = (ctx.gpr[4] & 14u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088C835C; } goto L_088C8338; } L_088C8338: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(456))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C835C; } goto L_088C8344; } L_088C8344: ctx.gpr[31] = (0x088C834Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0014_entry, 14u, 267u, 0x0883D528u>(ctx, &aot_mem) && ctx.pc == 0x088C834Cu) goto L_088C834C; return; L_088C834C: ctx.gpr[31] = (0x088C8354u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 513u, 0x08A065D0u>(ctx, &aot_mem) && ctx.pc == 0x088C8354u) goto L_088C8354; return; L_088C8354: ctx.gpr[31] = (0x088C835Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 755u, 0x08A2F898u>(ctx, &aot_mem) && ctx.pc == 0x088C835Cu) goto L_088C835C; return; L_088C835C: { const bool branch_taken = ctx.gpr[17] != 0u; // nop if (branch_taken) { goto L_088C81B0; } goto L_088C8364; } L_088C8364: ctx.gpr[31] = (0x088C836Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0029_entry, 29u, 209u, 0x08879100u>(ctx, &aot_mem) && ctx.pc == 0x088C836Cu) goto L_088C836C; return; L_088C836C: ctx.gpr[4] = (2230u << 16u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(-8108))); ctx.gpr[5] = (ctx.gpr[4] << 7u); ctx.gpr[6] = (ctx.gpr[5] + ctx.gpr[5]); ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[6]); ctx.gpr[4] = (ctx.gpr[4] << 4u); ctx.gpr[4] = (ctx.gpr[5] - ctx.gpr[4]); ctx.gpr[5] = (2233u << 16u); ctx.gpr[5] = (ctx.gpr[5] + static_cast(-26096)); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[4] = (2230u << 16u); if (branch_taken) { goto L_088C83C8; } goto L_088C83A0; } L_088C83A0: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(-8108))); ctx.gpr[5] = (2233u << 16u); ctx.gpr[6] = (ctx.gpr[4] << 7u); ctx.gpr[7] = (ctx.gpr[6] + ctx.gpr[6]); ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[7]); ctx.gpr[4] = (ctx.gpr[4] << 4u); ctx.gpr[4] = (ctx.gpr[6] - ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[5] + static_cast(-26096)); ctx.gpr[31] = (0x088C83C8u); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 473u, 0x089D7210u>(ctx, &aot_mem) && ctx.pc == 0x088C83C8u) goto L_088C83C8; return; L_088C83C8: ctx.gpr[31] = (0x088C83D0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0165_entry, 165u, 678u, 0x08A9A228u>(ctx, &aot_mem) && ctx.pc == 0x088C83D0u) goto L_088C83D0; return; L_088C83D0: ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8100))); ctx.gpr[4] = (0u | 1u); ctx.gpr[5] = (ctx.gpr[5] & 7u); { const bool branch_taken = ctx.gpr[5] != ctx.gpr[4]; // nop if (branch_taken) { goto L_088C83F8; } goto L_088C83E8; } L_088C83E8: ctx.gpr[31] = (0x088C83F0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 581u, 0x088C3A24u>(ctx, &aot_mem) && ctx.pc == 0x088C83F0u) goto L_088C83F0; return; L_088C83F0: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C8418; } goto L_088C83F8; } L_088C83F8: ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8100))); ctx.gpr[4] = (0u | 5u); ctx.gpr[5] = (ctx.gpr[5] & 7u); { const bool branch_taken = ctx.gpr[5] != ctx.gpr[4]; // nop if (branch_taken) { goto L_088C8418; } goto L_088C8410; } L_088C8410: ctx.gpr[31] = (0x088C8418u); // nop if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 598u, 0x088C3C30u>(ctx, &aot_mem) && ctx.pc == 0x088C8418u) goto L_088C8418; return; L_088C8418: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(20))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(24))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(28))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(48)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088C8430: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-256)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(212), ctx.gpr[18]); ctx.gpr[18] = (ctx.gpr[4] | 0u); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(200), std::bit_cast(ctx.fpr[20])); ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16928u << 16u); ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[20]; ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[13] / ctx.fpr[12]; ctx.gpr[4] = (ctx.gpr[6] & 255u); ctx.gpr[6] = (ctx.gpr[7] & 255u); ctx.gpr[7] = (ctx.gpr[8] & 255u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(180), ctx.gpr[4]); ctx.gpr[8] = (ctx.gpr[9] & 255u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(176), ctx.gpr[6]); ctx.gpr[9] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(256))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(172), ctx.gpr[7]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(168), ctx.gpr[8]); ctx.gpr[8] = (16968u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[8]); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[13]; ctx.gpr[4] = (ctx.gpr[10] & 255u); ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(260))); ctx.gpr[6] = (ctx.gpr[11] & 255u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(164), ctx.gpr[4]); ctx.fpr[14] = std::bit_cast(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[9] & 255u); aot_mem.aot_store8(ctx.gpr[29] + static_cast(153), static_cast(ctx.gpr[6])); ctx.gpr[6] = (ctx.gpr[7] & 255u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(160), ctx.gpr[4]); aot_mem.aot_store8(ctx.gpr[29] + static_cast(152), static_cast(ctx.gpr[6])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(216), ctx.gpr[19]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[14])); ctx.gpr[6] = (0u | 0u); ctx.gpr[19] = (ctx.gpr[5] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(208), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(220), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(224), ctx.gpr[21]); ctx.gpr[17] = (0u | 0u); ctx.gpr[21] = (0u | 0u); ctx.gpr[20] = (2227u << 16u); ctx.gpr[5] = (static_cast(ctx.gpr[6]) < static_cast(ctx.gpr[4]) ? 1u : 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(204), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(228), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(232), ctx.gpr[23]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(236), ctx.gpr[30]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(240), ctx.gpr[31]); if (ctx.gpr[5] != 0u) { ctx.gpr[21] = (ctx.gpr[4] | 0u); goto L_088C84F8; } goto L_088C84F8; L_088C84F8: ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[20]; ctx.fpr[14] = ctx.fpr[14] / ctx.fpr[12]; ctx.gpr[5] = (0u | 0u); ctx.gpr[16] = (0u | 0u); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[14])); ctx.gpr[4] = (std::bit_cast(ctx.fpr[14])); ctx.gpr[5] = (static_cast(ctx.gpr[5]) < static_cast(ctx.gpr[4]) ? 1u : 0u); if (ctx.gpr[5] != 0u) { ctx.gpr[16] = (ctx.gpr[4] | 0u); goto L_088C8524; } goto L_088C8524; L_088C8524: ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[20]; ctx.fpr[14] = ctx.fpr[14] / ctx.fpr[12]; ctx.gpr[4] = (0u | 100u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(156), ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[14])); ctx.gpr[4] = (std::bit_cast(ctx.fpr[14])); ctx.gpr[5] = (static_cast(ctx.gpr[4]) < 100 ? 1u : 0u); if (ctx.gpr[5] != 0u) { aot_mem.aot_store32(ctx.gpr[29] + static_cast(156), ctx.gpr[4]); goto L_088C8550; } goto L_088C8550; L_088C8550: ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[20]; ctx.fpr[12] = ctx.fpr[14] / ctx.fpr[12]; ctx.gpr[4] = (0u | 100u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(196), ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[12] = std::bit_cast(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[12])); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.gpr[5] = (static_cast(ctx.gpr[4]) < 100 ? 1u : 0u); if (ctx.gpr[5] != 0u) { aot_mem.aot_store32(ctx.gpr[29] + static_cast(196), ctx.gpr[4]); goto L_088C857C; } goto L_088C857C; L_088C857C: ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[20] + static_cast(20720))); ctx.gpr[5] = (0u | 65535u); ctx.gpr[4] = (static_cast(ctx.gpr[4]) < static_cast(ctx.gpr[5]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C85A0; } goto L_088C8590; } L_088C8590: ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[20] + static_cast(20720))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(1)); { const bool branch_taken = 0u == 0u; aot_mem.aot_store16(ctx.gpr[20] + static_cast(20720), static_cast(ctx.gpr[4])); if (branch_taken) { goto L_088C85B0; } goto L_088C85A0; } L_088C85A0: ctx.gpr[31] = (0x088C85A8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 166u, 0x088C4CA0u>(ctx, &aot_mem) && ctx.pc == 0x088C85A8u) goto L_088C85A8; return; L_088C85A8: ctx.gpr[4] = (0u | 1u); aot_mem.aot_store16(ctx.gpr[20] + static_cast(20720), static_cast(ctx.gpr[4])); goto L_088C85B0; L_088C85B0: aot_mem.aot_store32(ctx.gpr[29] + static_cast(192), ctx.gpr[21]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(196))); ctx.gpr[4] = (static_cast(ctx.gpr[4]) < static_cast(ctx.gpr[16]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(188), ctx.gpr[16]); if (branch_taken) { goto L_088C8920; } goto L_088C85C4; } L_088C85C4: ctx.gpr[4] = (ctx.gpr[16] << 5u); ctx.gpr[5] = (ctx.gpr[16] + ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[5] << 2u); ctx.gpr[4] = (ctx.gpr[5] - ctx.gpr[4]); ctx.gpr[30] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[23] = (ctx.gpr[29] + static_cast(64)); ctx.gpr[22] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[21] = (ctx.gpr[29] + static_cast(96)); ctx.gpr[20] = (ctx.gpr[29] + static_cast(112)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(184), ctx.gpr[4]); goto L_088C85EC; L_088C85EC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(192))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(156))); ctx.gpr[5] = (static_cast(ctx.gpr[5]) < static_cast(ctx.gpr[4]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[5] != 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(148), ctx.gpr[4]); if (branch_taken) { goto L_088C88FC; } goto L_088C8600; } L_088C8600: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(184))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]); ctx.gpr[5] = (ctx.gpr[4] << 4u); ctx.gpr[4] = (ctx.gpr[5] - ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[4] - ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(144), ctx.gpr[4]); goto L_088C861C; L_088C861C: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); ctx.gpr[4] = (2227u << 16u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20716))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(180))); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[16] = (ctx.gpr[4] + ctx.gpr[16]); if (branch_taken) { goto L_088C86A4; } goto L_088C8634; } L_088C8634: { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[30] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C8658u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C8658: ctx.gpr[4] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C869C; } goto L_088C8664; } L_088C8664: ctx.gpr[4] = (ctx.gpr[16] + static_cast(4)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[30] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C8688u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C8688: ctx.gpr[17] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C86A4; } goto L_088C8694; } L_088C8694: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[17] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C869C; } L_088C869C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[4] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C86A4; } L_088C86A4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(176))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8720; } goto L_088C86B0; } L_088C86B0: ctx.gpr[4] = (ctx.gpr[16] + static_cast(20)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[23] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C86D4u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C86D4: ctx.gpr[4] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C8718; } goto L_088C86E0; } L_088C86E0: ctx.gpr[4] = (ctx.gpr[16] + static_cast(24)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[23] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C8704u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C8704: ctx.gpr[17] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C8720; } goto L_088C8710; } L_088C8710: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[17] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C8718; } L_088C8718: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[4] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C8720; } L_088C8720: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(172))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C879C; } goto L_088C872C; } L_088C872C: ctx.gpr[4] = (ctx.gpr[16] + static_cast(28)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[22] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C8750u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C8750: ctx.gpr[4] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C8794; } goto L_088C875C; } L_088C875C: ctx.gpr[4] = (ctx.gpr[16] + static_cast(32)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[22] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C8780u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C8780: ctx.gpr[17] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C879C; } goto L_088C878C; } L_088C878C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[17] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C8794; } L_088C8794: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[4] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C879C; } L_088C879C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(168))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8818; } goto L_088C87A8; } L_088C87A8: ctx.gpr[4] = (ctx.gpr[16] + static_cast(12)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[21] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[7] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(153))); ctx.gpr[8] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(152))); ctx.gpr[31] = (0x088C87CCu); ctx.gpr[6] = (ctx.gpr[19] | 0u); goto L_088C8958; L_088C87CC: ctx.gpr[4] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C8810; } goto L_088C87D8; } L_088C87D8: ctx.gpr[4] = (ctx.gpr[16] + static_cast(16)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[21] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[7] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(153))); ctx.gpr[8] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(152))); ctx.gpr[31] = (0x088C87FCu); ctx.gpr[6] = (ctx.gpr[19] | 0u); goto L_088C8958; L_088C87FC: ctx.gpr[17] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C8818; } goto L_088C8808; } L_088C8808: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[17] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C8810; } L_088C8810: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[4] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C8818; } L_088C8818: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(164))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8894; } goto L_088C8824; } L_088C8824: ctx.gpr[4] = (ctx.gpr[16] + static_cast(36)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[20] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[20] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C8848u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C8848: ctx.gpr[4] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C888C; } goto L_088C8854; } L_088C8854: ctx.gpr[4] = (ctx.gpr[16] + static_cast(40)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[20] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[20] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C8878u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C8878: ctx.gpr[17] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C8894; } goto L_088C8884; } L_088C8884: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[17] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C888C; } L_088C888C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[4] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C8894; } L_088C8894: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(160))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C88D8; } goto L_088C88A0; } L_088C88A0: ctx.gpr[4] = (ctx.gpr[16] + static_cast(8)); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[5] = (ctx.gpr[29] + static_cast(128)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[6] = (ctx.gpr[19] | 0u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088C88C4u); ctx.gpr[8] = (0u | 0u); goto L_088C8958; L_088C88C4: ctx.gpr[17] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[17] == 0u; // nop if (branch_taken) { goto L_088C88D8; } goto L_088C88D0; } L_088C88D0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[17] | 0u); if (branch_taken) { goto L_088C8924; } goto L_088C88D8; } L_088C88D8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(148))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(156))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(1)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(44)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(148), ctx.gpr[4]); ctx.gpr[6] = (static_cast(ctx.gpr[6]) < static_cast(ctx.gpr[4]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[6] == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(144), ctx.gpr[5]); if (branch_taken) { goto L_088C861C; } goto L_088C88FC; } L_088C88FC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(188))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(184))); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(196))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(1)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(100)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(188), ctx.gpr[4]); ctx.gpr[6] = (static_cast(ctx.gpr[6]) < static_cast(ctx.gpr[4]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[6] == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(184), ctx.gpr[5]); if (branch_taken) { goto L_088C85EC; } goto L_088C8920; } L_088C8920: ctx.gpr[2] = (ctx.gpr[17] | 0u); goto L_088C8924; L_088C8924: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(200))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(204))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(208))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(212))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(216))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(220))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(224))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(228))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(232))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(236))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(240))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(256)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088C8958: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-288)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(272), ctx.gpr[21]); ctx.gpr[21] = (ctx.gpr[7] & 255u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(264), ctx.gpr[19]); ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(148))); ctx.gpr[19] = (ctx.gpr[5] | 0u); ctx.gpr[5] = (0u + static_cast(-2)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(144), 0u); ctx.gpr[5] = (ctx.gpr[7] & ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(148), ctx.gpr[5]); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(21952))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(244), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(260), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(268), ctx.gpr[20]); ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[12])); ctx.gpr[20] = (ctx.gpr[8] & 255u); ctx.gpr[18] = (ctx.gpr[4] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(248), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(252), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(256), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(276), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(280), ctx.gpr[31]); { const bool branch_taken = ctx.gpr[5] != 0u; ctx.gpr[16] = (ctx.gpr[6] | 0u); if (branch_taken) { goto L_088C89E0; } goto L_088C89BC; } L_088C89BC: ctx.gpr[4] = (0u | 1u); ctx.gpr[5] = (2230u << 16u); aot_mem.aot_store32(ctx.gpr[5] + static_cast(21952), ctx.gpr[4]); ctx.gpr[4] = (2230u << 16u); ctx.gpr[31] = (0x088C89D4u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(21968)); if (rt.invoke_chained_direct<&recomp_unit_0000_entry, 0u, 582u, 0x088063D8u>(ctx, &aot_mem) && ctx.pc == 0x088C89D4u) goto L_088C89D4; return; L_088C89D4: ctx.gpr[4] = (2227u << 16u); ctx.gpr[31] = (0x088C89E0u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(20732)); if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 261u, 0x08AF5504u>(ctx, &aot_mem) && ctx.pc == 0x088C89E0u) goto L_088C89E0; return; L_088C89E0: ctx.fpr[12] = std::bit_cast(0u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(48)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(48), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(52), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); ctx.fpr[15] = std::bit_cast(std::bit_cast(ctx.fpr[20]) ^ 0x80000000u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); ctx.gpr[5] = (std::bit_cast(ctx.fpr[12])); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(8))); ctx.gpr[7] = (2230u << 16u); ctx.gpr[6] = (std::bit_cast(ctx.fpr[13])); ctx.gpr[9] = (ctx.gpr[7] + static_cast(21968)); ctx.gpr[8] = (std::bit_cast(ctx.fpr[14])); aot_mem.aot_store32(ctx.gpr[7] + static_cast(21968), ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[9] + static_cast(4), ctx.gpr[6]); aot_mem.aot_store32(ctx.gpr[9] + static_cast(8), ctx.gpr[8]); aot_mem.aot_store32(ctx.gpr[9] + static_cast(12), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[9] + static_cast(16), std::bit_cast(ctx.fpr[15])); aot_mem.aot_store32(ctx.gpr[9] + static_cast(20), std::bit_cast(ctx.fpr[15])); aot_mem.aot_store32(ctx.gpr[9] + static_cast(24), std::bit_cast(ctx.fpr[15])); aot_mem.aot_store32(ctx.gpr[9] + static_cast(32), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[9] + static_cast(36), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[9] + static_cast(40), std::bit_cast(ctx.fpr[20])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); ctx.gpr[5] = (std::bit_cast(ctx.fpr[12])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(8))); ctx.gpr[4] = (std::bit_cast(ctx.fpr[15])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(160), ctx.gpr[5]); ctx.gpr[5] = (std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(164), ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(168), ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(172), std::bit_cast(ctx.fpr[20])); ctx.gpr[4] = (0u | 1u); aot_mem.aot_store16(ctx.gpr[9] + static_cast(48), static_cast(ctx.gpr[4])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(160)); aot_mem.aot_store32(ctx.gpr[9] + static_cast(60), ctx.gpr[4]); aot_mem.aot_store8(ctx.gpr[9] + static_cast(54), static_cast(0u)); aot_mem.aot_store16(ctx.gpr[9] + static_cast(50), static_cast(0u)); aot_mem.aot_store16(ctx.gpr[9] + static_cast(52), static_cast(0u)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(8))); ctx.gpr[31] = (0x088C8A98u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 520u, 0x08A066A0u>(ctx, &aot_mem) && ctx.pc == 0x088C8A98u) goto L_088C8A98; return; L_088C8A98: ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); { const bool branch_taken = ctx.gpr[18] == 0u; // nop if (branch_taken) { goto L_088C8CAC; } goto L_088C8AA4; } L_088C8AA4: ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); { const bool branch_taken = ctx.gpr[17] == 0u; ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); if (branch_taken) { goto L_088C8CA4; } goto L_088C8AB0; } L_088C8AB0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 8u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8B00; } goto L_088C8ACC; } L_088C8ACC: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[17] + static_cast(422)))))); ctx.gpr[4] = (ctx.gpr[4] & 2u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8B00; } goto L_088C8ADC; } L_088C8ADC: { const bool branch_taken = ctx.gpr[20] == 0u; ctx.gpr[4] = (16168u << 16u); if (branch_taken) { goto L_088C8B00; } goto L_088C8AE4; } L_088C8AE4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(40))); ctx.gpr[4] = (ctx.gpr[4] | 62915u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C8CA4; } goto L_088C8B00; } L_088C8B00: ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[17] + static_cast(84))); ctx.gpr[5] = (2227u << 16u); ctx.gpr[5] = (aot_mem.aot_load16(ctx.gpr[5] + static_cast(20720))); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C8CA4; } goto L_088C8B14; } L_088C8B14: ctx.gpr[4] = (2227u << 16u); ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(20720))); { const bool branch_taken = ctx.gpr[17] == ctx.gpr[16]; aot_mem.aot_store16(ctx.gpr[17] + static_cast(84), static_cast(ctx.gpr[4])); if (branch_taken) { goto L_088C8CA4; } goto L_088C8B24; } L_088C8B24: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 512u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8CA4; } goto L_088C8B3C; } L_088C8B3C: { const bool branch_taken = ctx.gpr[21] == 0u; // nop if (branch_taken) { goto L_088C8B54; } goto L_088C8B44; } L_088C8B44: ctx.gpr[31] = (0x088C8B4Cu); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 306u, 0x088C58C8u>(ctx, &aot_mem) && ctx.pc == 0x088C8B4Cu) goto L_088C8B4C; return; L_088C8B4C: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088C8CA4; } goto L_088C8B54; } L_088C8B54: ctx.gpr[22] = (ctx.gpr[29] + static_cast(208)); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C8B64u); ctx.gpr[5] = (ctx.gpr[22] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 7u, 0x088C016Cu>(ctx, &aot_mem) && ctx.pc == 0x088C8B64u) goto L_088C8B64; return; L_088C8B64: { const std::uint32_t vfpu_address = ctx.gpr[19] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(192)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(64)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[22] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[5] = (2229u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20))); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[12] = ctx.fpr[20] + ctx.fpr[12]; ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[12])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C8CA4; } goto L_088C8BCC; } L_088C8BCC: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (2229u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[8] = (2269u << 16u); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(20))); ctx.gpr[5] = (2230u << 16u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[6] = (ctx.gpr[17] | 0u); ctx.gpr[7] = (ctx.gpr[22] | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[5] = (ctx.gpr[5] + static_cast(21968)); ctx.gpr[31] = (0x088C8C10u); ctx.gpr[8] = (ctx.gpr[8] + static_cast(-4528)); if (rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 331u, 0x088CE988u>(ctx, &aot_mem) && ctx.pc == 0x088C8C10u) goto L_088C8C10; return; L_088C8C10: ctx.gpr[4] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C8C70; } goto L_088C8C1C; } L_088C8C1C: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (ctx.gpr[5] & 14u); ctx.gpr[5] = (ctx.gpr[5] ^ 4u); ctx.gpr[5] = (ctx.gpr[5] < static_cast(1) ? 1u : 0u); ctx.gpr[5] = (ctx.gpr[5] & 255u); { const bool branch_taken = ctx.gpr[5] == 0u; // nop if (branch_taken) { goto L_088C8C70; } goto L_088C8C38; } L_088C8C38: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(836))); { const bool branch_taken = ctx.gpr[5] != 0u; // nop if (branch_taken) { goto L_088C8C70; } goto L_088C8C44; } L_088C8C44: ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[6] = (0u | 164u); { const bool branch_taken = ctx.gpr[5] == ctx.gpr[6]; // nop if (branch_taken) { goto L_088C8C70; } goto L_088C8C54; } L_088C8C54: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[22] + static_cast(32))); ctx.fpr[12] = ctx.fpr[20] + ctx.fpr[12]; ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[12])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C8C70; } goto L_088C8C6C; } L_088C8C6C: ctx.gpr[4] = (0u | 1u); goto L_088C8C70; L_088C8C70: { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8CA4; } goto L_088C8C78; } L_088C8C78: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(148))); ctx.gpr[4] = (ctx.gpr[4] & 1u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8C9C; } goto L_088C8C88; } L_088C8C88: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8C9C; } goto L_088C8C94; } L_088C8C94: ctx.gpr[31] = (0x088C8C9Cu); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); if (rt.invoke_chained_direct<&recomp_unit_0134_entry, 134u, 263u, 0x08A1D574u>(ctx, &aot_mem) && ctx.pc == 0x088C8C9Cu) goto L_088C8C9C; return; L_088C8C9C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[17] | 0u); if (branch_taken) { goto L_088C8CD4; } goto L_088C8CA4; } L_088C8CA4: { const bool branch_taken = ctx.gpr[18] != 0u; // nop if (branch_taken) { goto L_088C8AA4; } goto L_088C8CAC; } L_088C8CAC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(148))); ctx.gpr[4] = (ctx.gpr[4] & 1u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8CD0; } goto L_088C8CBC; } L_088C8CBC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8CD0; } goto L_088C8CC8; } L_088C8CC8: ctx.gpr[31] = (0x088C8CD0u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); if (rt.invoke_chained_direct<&recomp_unit_0134_entry, 134u, 263u, 0x08A1D574u>(ctx, &aot_mem) && ctx.pc == 0x088C8CD0u) goto L_088C8CD0; return; L_088C8CD0: ctx.gpr[2] = (0u | 0u); goto L_088C8CD4; L_088C8CD4: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(244))); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(248))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(252))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(256))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(260))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(264))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(268))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(272))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(276))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(280))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(288)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088C8D04: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-112)); ctx.gpr[6] = (2229u << 16u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), ctx.gpr[17]); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[6] + static_cast(-15316))); ctx.gpr[5] = (ctx.gpr[5] & 255u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(48), ctx.gpr[5]); ctx.gpr[5] = (2229u << 16u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(88), ctx.gpr[23]); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-15312))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(80), ctx.gpr[21]); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(76), ctx.gpr[20]); ctx.gpr[20] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(52), std::bit_cast(ctx.fpr[20])); ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[12])); ctx.gpr[5] = (static_cast(ctx.gpr[20]) < static_cast(ctx.gpr[21]) ? 1u : 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(60), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(68), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(84), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(92), ctx.gpr[30]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(96), ctx.gpr[31]); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[22] = (ctx.gpr[4] | 0u); if (branch_taken) { goto L_088C8E18; } goto L_088C8D68; } L_088C8D68: ctx.gpr[19] = (ctx.gpr[29] + static_cast(32)); { const float fs = ctx.fpr[20]; const float ft = ctx.fpr[20]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[22] = std::bit_cast(0x7FC00000u); else ctx.fpr[22] = fs * ft; } ctx.gpr[18] = (0u | 0u); goto L_088C8D74; L_088C8D74: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[20]); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(0))); ctx.gpr[4] = (ctx.gpr[4] & 128u); if (ctx.gpr[4] == 0u) { ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); goto L_088C8D94; } goto L_088C8D8C; L_088C8D8C: { const bool branch_taken = 0u == 0u; ctx.gpr[16] = (0u | 0u); if (branch_taken) { goto L_088C8D98; } goto L_088C8D94; } L_088C8D94: ctx.gpr[16] = (ctx.gpr[16] + ctx.gpr[18]); goto L_088C8D98; L_088C8D98: { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088C8E08; } goto L_088C8DA0; } L_088C8DA0: ctx.gpr[31] = (0x088C8DA8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0103_entry, 103u, 841u, 0x089A38A0u>(ctx, &aot_mem) && ctx.pc == 0x088C8DA8u) goto L_088C8DA8; return; L_088C8DA8: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088C8E08; } goto L_088C8DB0; } L_088C8DB0: ctx.gpr[31] = (0x088C8DB8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0103_entry, 103u, 697u, 0x089A2E7Cu>(ctx, &aot_mem) && ctx.pc == 0x088C8DB8u) goto L_088C8DB8; return; L_088C8DB8: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088C8E08; } goto L_088C8DC0; } L_088C8DC0: ctx.gpr[4] = (ctx.gpr[16] + static_cast(48)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[19] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[22] + static_cast(0))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(36))); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[22] + static_cast(4))); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[15]; { const float fs = ctx.fpr[14]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast(0x7FC00000u); else ctx.fpr[14] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[14]; ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[22])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C8E08; } goto L_088C8E00; } L_088C8E00: ctx.gpr[31] = (0x088C8E08u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0166_entry, 166u, 296u, 0x08A9D7E4u>(ctx, &aot_mem) && ctx.pc == 0x088C8E08u) goto L_088C8E08; return; L_088C8E08: ctx.gpr[20] = (ctx.gpr[20] + static_cast(1)); ctx.gpr[4] = (static_cast(ctx.gpr[20]) < static_cast(ctx.gpr[21]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[18] = (ctx.gpr[18] + static_cast(3248)); if (branch_taken) { goto L_088C8D74; } goto L_088C8E18; } L_088C8E18: ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(8))); ctx.gpr[20] = (0u | 0u); ctx.gpr[4] = (static_cast(ctx.gpr[20]) < static_cast(ctx.gpr[30]) ? 1u : 0u); if (ctx.gpr[4] == 0u) { ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); goto L_088C8F84; } goto L_088C8E2C; L_088C8E2C: { const float fs = ctx.fpr[20]; const float ft = ctx.fpr[20]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[22] = std::bit_cast(0x7FC00000u); else ctx.fpr[22] = fs * ft; } ctx.gpr[21] = (0u | 0u); goto L_088C8E34; L_088C8E34: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[20]); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(0))); ctx.gpr[4] = (ctx.gpr[4] & 128u); if (ctx.gpr[4] == 0u) { ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(0))); goto L_088C8E54; } goto L_088C8E4C; L_088C8E4C: { const bool branch_taken = 0u == 0u; ctx.gpr[19] = (0u | 0u); if (branch_taken) { goto L_088C8E58; } goto L_088C8E54; } L_088C8E54: ctx.gpr[19] = (ctx.gpr[19] + ctx.gpr[21]); goto L_088C8E58; L_088C8E58: ctx.gpr[18] = (ctx.gpr[19] | 0u); { const bool branch_taken = ctx.gpr[18] == 0u; // nop if (branch_taken) { goto L_088C8F70; } goto L_088C8E64; } L_088C8E64: ctx.gpr[4] = (ctx.gpr[18] + static_cast(48)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[22] + static_cast(0))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(36))); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[22] + static_cast(4))); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[15]; { const float fs = ctx.fpr[14]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast(0x7FC00000u); else ctx.fpr[14] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[14]; ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[22])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C8F70; } goto L_088C8EA8; } L_088C8EA8: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[18] + static_cast(597)))))); ctx.gpr[4] = (ctx.gpr[4] & 8u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8EC8; } goto L_088C8EB8; } L_088C8EB8: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[18] + static_cast(88)))))); ctx.gpr[5] = (0u | 157u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088C8F70; } goto L_088C8EC8; } L_088C8EC8: ctx.gpr[31] = (0x088C8ED0u); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0038_entry, 38u, 541u, 0x0889EB14u>(ctx, &aot_mem) && ctx.pc == 0x088C8ED0u) goto L_088C8ED0; return; L_088C8ED0: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088C8F70; } goto L_088C8ED8; } L_088C8ED8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(504))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8EF0; } goto L_088C8EE4; } L_088C8EE4: ctx.gpr[31] = (0x088C8EECu); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(504))); if (rt.invoke_chained_direct<&recomp_unit_0166_entry, 166u, 296u, 0x08A9D7E4u>(ctx, &aot_mem) && ctx.pc == 0x088C8EECu) goto L_088C8EEC; return; L_088C8EEC: aot_mem.aot_store32(ctx.gpr[18] + static_cast(504), 0u); goto L_088C8EF0; L_088C8EF0: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast(544))); ctx.gpr[17] = (0u | 0u); ctx.gpr[4] = (static_cast(ctx.gpr[17]) < static_cast(ctx.gpr[4]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[16] = (ctx.gpr[19] | 0u); if (branch_taken) { goto L_088C8F3C; } goto L_088C8F04; } L_088C8F04: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(508))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C8F28; } goto L_088C8F10; } L_088C8F10: ctx.gpr[31] = (0x088C8F18u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(508))); if (rt.invoke_chained_direct<&recomp_unit_0166_entry, 166u, 296u, 0x08A9D7E4u>(ctx, &aot_mem) && ctx.pc == 0x088C8F18u) goto L_088C8F18; return; L_088C8F18: aot_mem.aot_store32(ctx.gpr[16] + static_cast(508), 0u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast(540))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(-1)); aot_mem.aot_store8(ctx.gpr[18] + static_cast(540), static_cast(ctx.gpr[4])); goto L_088C8F28; L_088C8F28: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast(544))); ctx.gpr[17] = (ctx.gpr[17] + static_cast(1)); ctx.gpr[4] = (static_cast(ctx.gpr[17]) < static_cast(ctx.gpr[4]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[16] = (ctx.gpr[16] + static_cast(4)); if (branch_taken) { goto L_088C8F04; } goto L_088C8F3C; } L_088C8F3C: ctx.gpr[31] = (0x088C8F44u); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0122_entry, 122u, 210u, 0x089ED530u>(ctx, &aot_mem) && ctx.pc == 0x088C8F44u) goto L_088C8F44; return; L_088C8F44: ctx.gpr[31] = (0x088C8F4Cu); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 67u, 0x088C05B0u>(ctx, &aot_mem) && ctx.pc == 0x088C8F4Cu) goto L_088C8F4C; return; L_088C8F4C: { const bool branch_taken = ctx.gpr[19] == 0u; // nop if (branch_taken) { goto L_088C8F70; } goto L_088C8F54; } L_088C8F54: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(92))); ctx.gpr[5] = (0u | 3u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(24)); ctx.gpr[6] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(0)))))); ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); jump_target = ctx.gpr[7]; ctx.gpr[31] = (0x088C8F70u); ctx.gpr[4] = (ctx.gpr[19] + ctx.gpr[6]); ctx.pc = jump_target; if (rt.invoke_chained_call(ctx, &aot_mem) && ctx.pc == 0x088C8F70u) goto L_088C8F70; return; L_088C8F70: ctx.gpr[20] = (ctx.gpr[20] + static_cast(1)); ctx.gpr[4] = (static_cast(ctx.gpr[20]) < static_cast(ctx.gpr[30]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[21] = (ctx.gpr[21] + static_cast(1760)); if (branch_taken) { goto L_088C8E34; } goto L_088C8F80; } L_088C8F80: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); goto L_088C8F84; L_088C8F84: { const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[17] = (ctx.gpr[29] + static_cast(16)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C8F9Cu); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0014_entry, 14u, 306u, 0x0883D844u>(ctx, &aot_mem) && ctx.pc == 0x088C8F9Cu) goto L_088C8F9C; return; L_088C8F9C: ctx.gpr[4] = (2233u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(-25056)); { const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[5] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C8FB8u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0018_entry, 18u, 648u, 0x0884EA64u>(ctx, &aot_mem) && ctx.pc == 0x088C8FB8u) goto L_088C8FB8; return; L_088C8FB8: { const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C8FCCu); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 91u, 0x088C463Cu>(ctx, &aot_mem) && ctx.pc == 0x088C8FCCu) goto L_088C8FCC; return; L_088C8FCC: { const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C8FE0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0144_entry, 144u, 389u, 0x08A46928u>(ctx, &aot_mem) && ctx.pc == 0x088C8FE0u) goto L_088C8FE0; return; L_088C8FE0: { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088C8FF8; } goto L_088C8FE8; } L_088C8FE8: ctx.gpr[31] = (0x088C8FF0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0012_entry, 12u, 140u, 0x08834B8Cu>(ctx, &aot_mem) && ctx.pc == 0x088C8FF0u) goto L_088C8FF0; return; L_088C8FF0: ctx.gpr[31] = (0x088C8FF8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0073_entry, 73u, 325u, 0x0892A9E8u>(ctx, &aot_mem) && ctx.pc == 0x088C8FF8u) goto L_088C8FF8; return; L_088C8FF8: ctx.gpr[4] = (ctx.gpr[22] | 0u); ctx.gpr[31] = (0x088C9004u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0159_entry, 159u, 268u, 0x08A82790u>(ctx, &aot_mem) && ctx.pc == 0x088C9004u) goto L_088C9004; return; L_088C9004: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(60))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(64))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(68))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(72))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(76))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(80))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(84))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(88))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(92))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(96))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(112)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088C903C: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-176)); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(100), std::bit_cast(ctx.fpr[16])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(80), ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(96), std::bit_cast(ctx.fpr[17])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(104), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(108), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(112), std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(116), std::bit_cast(ctx.fpr[26])); ctx.fpr[24] = std::bit_cast(std::bit_cast(ctx.fpr[13])); ctx.fpr[26] = std::bit_cast(std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(88), std::bit_cast(ctx.fpr[19])); ctx.fpr[22] = std::bit_cast(std::bit_cast(ctx.fpr[14])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(120), std::bit_cast(ctx.fpr[28])); ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[15])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(124), std::bit_cast(ctx.fpr[30])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(132), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(140), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(144), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(148), ctx.gpr[21]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(152), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(156), ctx.gpr[23]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(160), ctx.gpr[30]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(164), ctx.gpr[31]); { const bool branch_taken = ctx.gpr[4] == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(92), std::bit_cast(ctx.fpr[18])); if (branch_taken) { goto L_088C93A4; } goto L_088C90AC; } L_088C90AC: ctx.fpr[12] = ctx.fpr[22] + ctx.fpr[26]; ctx.gpr[4] = (16128u << 16u); ctx.fpr[30] = std::bit_cast(ctx.gpr[4]); ctx.gpr[21] = (ctx.gpr[29] + static_cast(32)); ctx.fpr[13] = ctx.fpr[20] + ctx.fpr[24]; ctx.gpr[23] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[22] = (ctx.gpr[29] + static_cast(16)); ctx.fpr[28] = std::bit_cast(0u); { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[30]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } { const float fs = ctx.fpr[13]; const float ft = ctx.fpr[30]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[30] = std::bit_cast(0x7FC00000u); else ctx.fpr[30] = fs * ft; } aot_mem.aot_store32(ctx.gpr[29] + static_cast(84), std::bit_cast(ctx.fpr[12])); goto L_088C90D8; L_088C90D8: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(80))); ctx.gpr[4] = (2227u << 16u); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(8))); ctx.gpr[6] = (aot_mem.aot_load16(ctx.gpr[20] + static_cast(84))); ctx.gpr[7] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(20720))); { const bool branch_taken = ctx.gpr[6] == ctx.gpr[7]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(80), ctx.gpr[5]); if (branch_taken) { goto L_088C9398; } goto L_088C90F8; } L_088C90F8: ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(20720))); ctx.gpr[31] = (0x088C9104u); aot_mem.aot_store16(ctx.gpr[20] + static_cast(84), static_cast(ctx.gpr[4])); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088C9104u) goto L_088C9104; return; L_088C9104: { const bool branch_taken = ctx.gpr[20] == ctx.gpr[2]; // nop if (branch_taken) { goto L_088C9398; } goto L_088C910C; } L_088C910C: ctx.gpr[30] = (ctx.gpr[20] + static_cast(48)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[30] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(100))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9398; } goto L_088C9128; } L_088C9128: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[30] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(92))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9398; } goto L_088C9140; } L_088C9140: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[30] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(96))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9398; } goto L_088C9158; } L_088C9158: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[30] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(88))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9398; } goto L_088C9170; } L_088C9170: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[20] + static_cast(597)))))); ctx.gpr[4] = (ctx.gpr[4] & 1u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9398; } goto L_088C9180; } L_088C9180: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[20] + static_cast(398)))))); ctx.gpr[5] = (0u | 2u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088C91C4; } goto L_088C9190; } L_088C9190: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[20] + static_cast(398)))))); ctx.gpr[5] = (0u | 3u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088C91C4; } goto L_088C91A0; } L_088C91A0: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[20] + static_cast(398)))))); ctx.gpr[5] = (0u | 4u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088C91C4; } goto L_088C91B0; } L_088C91B0: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[20] + static_cast(398)))))); ctx.gpr[5] = (0u | 5u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088C9398; } goto L_088C91C0; } L_088C91C0: ctx.gpr[4] = (0u | 1u); goto L_088C91C4; L_088C91C4: aot_mem.aot_store8(ctx.gpr[20] + static_cast(399), static_cast(ctx.gpr[4])); ctx.gpr[4] = (2230u << 16u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(-8148))); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[20] + static_cast(88)))))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2000)); aot_mem.aot_store32(ctx.gpr[20] + static_cast(400), ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[5] << 2u); ctx.gpr[5] = (2229u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-11604))); ctx.gpr[18] = (0u | 0u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(48)))))); ctx.gpr[4] = (static_cast(ctx.gpr[18]) < static_cast(ctx.gpr[4]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[19] = (0u | 0u); if (branch_taken) { goto L_088C92EC; } goto L_088C9208; } L_088C9208: ctx.gpr[16] = (0u | 0u); goto L_088C920C; L_088C920C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(60))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[16]); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(48), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(52), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[21] | 0u); ctx.gpr[5] = (ctx.gpr[20] | 0u); ctx.gpr[31] = (0x088C923Cu); ctx.gpr[6] = (ctx.gpr[23] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 4u, 0x088C0124u>(ctx, &aot_mem) && ctx.pc == 0x088C923Cu) goto L_088C923C; return; L_088C923C: { const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(16))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(60))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[16]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[26])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C92D8; } goto L_088C9268; } L_088C9268: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(60))); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(16))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[16]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[22])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C92D8; } goto L_088C928C; } L_088C928C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(60))); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(20))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[16]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[24])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C92D8; } goto L_088C92B0; } L_088C92B0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(60))); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(20))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[16]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[20])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C92D8; } goto L_088C92D4; } L_088C92D4: ctx.gpr[19] = (0u | 1u); goto L_088C92D8; L_088C92D8: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(48)))))); ctx.gpr[18] = (ctx.gpr[18] + static_cast(1)); ctx.gpr[4] = (static_cast(ctx.gpr[18]) < static_cast(ctx.gpr[4]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[16] = (ctx.gpr[16] + static_cast(32)); if (branch_taken) { goto L_088C920C; } goto L_088C92EC; } L_088C92EC: { const bool branch_taken = ctx.gpr[19] == 0u; // nop if (branch_taken) { goto L_088C9398; } goto L_088C92F4; } L_088C92F4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[30] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(84))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C932C; } goto L_088C930C; } L_088C930C: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(112))); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[28])); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop if (ctx.fpu_condition()) { ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(112))); goto L_088C9324; } goto L_088C9324; L_088C9324: { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[20] + static_cast(112), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088C9348; } goto L_088C932C; } L_088C932C: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(112))); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[28])); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop if (!ctx.fpu_condition()) { ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(112))); goto L_088C9344; } goto L_088C9344; L_088C9344: aot_mem.aot_store32(ctx.gpr[20] + static_cast(112), std::bit_cast(ctx.fpr[12])); goto L_088C9348; L_088C9348: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[30] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[30])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C937C; } goto L_088C935C; } L_088C935C: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(116))); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[28])); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop if (ctx.fpu_condition()) { ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(116))); goto L_088C9374; } goto L_088C9374; L_088C9374: { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[20] + static_cast(116), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088C9398; } goto L_088C937C; } L_088C937C: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(116))); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[28])); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop if (!ctx.fpu_condition()) { ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(116))); goto L_088C9394; } goto L_088C9394; L_088C9394: aot_mem.aot_store32(ctx.gpr[20] + static_cast(116), std::bit_cast(ctx.fpr[12])); goto L_088C9398; L_088C9398: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C90D8; } goto L_088C93A4; } L_088C93A4: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(104))); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(108))); ctx.fpr[24] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(112))); ctx.fpr[26] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(116))); ctx.fpr[28] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(120))); ctx.fpr[30] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(124))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(140))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(148))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(152))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(156))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(160))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(164))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(176)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088C93EC: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-560)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(524), ctx.gpr[18]); ctx.gpr[18] = (ctx.gpr[7] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(472), ctx.gpr[8]); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(468), ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(528), ctx.gpr[19]); ctx.gpr[7] = (ctx.gpr[9] & 255u); ctx.gpr[19] = (ctx.gpr[6] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(32), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[10] & 255u); aot_mem.aot_store8(ctx.gpr[29] + static_cast(496), static_cast(ctx.gpr[7])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(492), ctx.gpr[6]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(516), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(520), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(532), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(540), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(548), ctx.gpr[30]); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[20] = (ctx.gpr[11] & 255u); ctx.gpr[30] = (0u | 0u); ctx.gpr[17] = (0u | 0u); ctx.gpr[16] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(504), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(508), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(512), std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(536), ctx.gpr[21]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(544), ctx.gpr[23]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(552), ctx.gpr[31]); ctx.gpr[31] = (0x088C9468u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0000_entry, 0u, 582u, 0x088063D8u>(ctx, &aot_mem) && ctx.pc == 0x088C9468u) goto L_088C9468; return; L_088C9468: ctx.gpr[4] = (2230u << 16u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(-7392))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(500), ctx.gpr[18]); { const bool branch_taken = ctx.gpr[4] == 0u; aot_mem.aot_store8(ctx.gpr[29] + static_cast(477), static_cast(ctx.gpr[20])); if (branch_taken) { goto L_088C94C4; } goto L_088C947C; } L_088C947C: { const bool branch_taken = ctx.gpr[22] == 0u; // nop if (branch_taken) { goto L_088C94C4; } goto L_088C9484; } L_088C9484: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 4u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C94C4; } goto L_088C94A4; } L_088C94A4: ctx.gpr[4] = (ctx.gpr[29] + static_cast(176)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(140), ctx.gpr[4]); ctx.gpr[4] = (0u | 6u); aot_mem.aot_store16(ctx.gpr[29] + static_cast(128), static_cast(ctx.gpr[4])); aot_mem.aot_store8(ctx.gpr[29] + static_cast(134), static_cast(0u)); aot_mem.aot_store16(ctx.gpr[29] + static_cast(130), static_cast(0u)); ctx.gpr[16] = (0u | 1u); aot_mem.aot_store16(ctx.gpr[29] + static_cast(132), static_cast(0u)); goto L_088C94C4; L_088C94C4: { const bool branch_taken = ctx.gpr[22] == 0u; ctx.gpr[4] = (2230u << 16u); if (branch_taken) { goto L_088C94FC; } goto L_088C94CC; } L_088C94CC: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(-7399))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C94FC; } goto L_088C94D8; } L_088C94D8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 6u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C94FC; } goto L_088C94F8; } L_088C94F8: ctx.gpr[30] = (0u | 1u); goto L_088C94FC; L_088C94FC: { const bool branch_taken = ctx.gpr[22] == 0u; ctx.gpr[4] = (2230u << 16u); if (branch_taken) { goto L_088C9534; } goto L_088C9504; } L_088C9504: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(-7398))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9534; } goto L_088C9510; } L_088C9510: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 6u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9534; } goto L_088C9530; } L_088C9530: ctx.gpr[17] = (0u | 1u); goto L_088C9534; L_088C9534: aot_mem.aot_store8(ctx.gpr[29] + static_cast(476), static_cast(ctx.gpr[17])); { const bool branch_taken = ctx.gpr[22] == 0u; aot_mem.aot_store8(ctx.gpr[29] + static_cast(488), static_cast(ctx.gpr[16])); if (branch_taken) { goto L_088C99D4; } goto L_088C9540; } L_088C9540: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(468))); ctx.gpr[5] = (2224u << 16u); ctx.gpr[5] = (ctx.gpr[5] + static_cast(-18044)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(16)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(484), ctx.gpr[5]); ctx.fpr[22] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(480), ctx.gpr[4]); ctx.gpr[4] = (48985u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 39322u); ctx.fpr[20] = std::bit_cast(ctx.gpr[4]); ctx.gpr[23] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16217u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 39322u); ctx.gpr[20] = (ctx.gpr[29] + static_cast(384)); ctx.fpr[24] = std::bit_cast(ctx.gpr[4]); ctx.gpr[21] = (2229u << 16u); goto L_088C9580; L_088C9580: ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[17] + static_cast(84))); ctx.gpr[16] = (2227u << 16u); ctx.gpr[5] = (aot_mem.aot_load16(ctx.gpr[16] + static_cast(20720))); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast(8))); if (branch_taken) { goto L_088C99CC; } goto L_088C9598; } L_088C9598: ctx.gpr[4] = (2230u << 16u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(-8004))); { const bool branch_taken = ctx.gpr[17] == ctx.gpr[4]; // nop if (branch_taken) { goto L_088C99CC; } goto L_088C95A8; } L_088C95A8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(476))); ctx.gpr[4] = (ctx.gpr[4] & 512u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); ctx.gpr[4] = (ctx.gpr[4] | ctx.gpr[30]); ctx.gpr[4] = (ctx.gpr[4] | ctx.gpr[5]); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C99CC; } goto L_088C95CC; } L_088C95CC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(492))); if (ctx.gpr[4] == 0u) { ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[16] + static_cast(20720))); goto L_088C95EC; } goto L_088C95D8; L_088C95D8: ctx.gpr[31] = (0x088C95E0u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 306u, 0x088C58C8u>(ctx, &aot_mem) && ctx.pc == 0x088C95E0u) goto L_088C95E0; return; L_088C95E0: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088C99CC; } goto L_088C95E8; } L_088C95E8: ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[16] + static_cast(20720))); goto L_088C95EC; L_088C95EC: aot_mem.aot_store16(ctx.gpr[17] + static_cast(84), static_cast(ctx.gpr[4])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(368), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 6u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[18] = (0u | 0u); if (branch_taken) { goto L_088C96D4; } goto L_088C9614; } L_088C9614: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 512u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C9698; } goto L_088C962C; } L_088C962C: if (ctx.gpr[30] == 0u) { ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(476))); goto L_088C9648; } goto L_088C9634; L_088C9634: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(844))); ctx.gpr[5] = (0u | 55u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C9698; } goto L_088C9644; } L_088C9644: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(476))); goto L_088C9648; L_088C9648: { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9690; } goto L_088C9650; } L_088C9650: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast(1336))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9690; } goto L_088C965C; } L_088C965C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(1332))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9690; } goto L_088C9668; } L_088C9668: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(1332))); ctx.gpr[5] = (0u | 5u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(836))); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C9698; } goto L_088C967C; } L_088C967C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(1332))); ctx.gpr[5] = (0u | 1u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(836))); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C9698; } goto L_088C9690; } L_088C9690: { const bool branch_taken = 0u == 0u; ctx.gpr[18] = (0u | 0u); if (branch_taken) { goto L_088C9838; } goto L_088C9698; } L_088C9698: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (2230u << 16u); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8152))); ctx.gpr[6] = (static_cast(ctx.gpr[4]) < static_cast(ctx.gpr[6]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[6] == 0u; ctx.gpr[5] = (0u | 0u); if (branch_taken) { goto L_088C96C0; } goto L_088C96B0; } L_088C96B0: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); goto L_088C96C0; L_088C96C0: ctx.gpr[4] = (ctx.gpr[5] | 0u); ctx.gpr[31] = (0x088C96CCu); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(80))); if (rt.invoke_chained_direct<&recomp_unit_0102_entry, 102u, 81u, 0x0899CA04u>(ctx, &aot_mem) && ctx.pc == 0x088C96CCu) goto L_088C96CC; return; L_088C96CC: { const bool branch_taken = 0u == 0u; ctx.gpr[18] = (ctx.gpr[2] | 0u); if (branch_taken) { goto L_088C9838; } goto L_088C96D4; } L_088C96D4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 12u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9808; } goto L_088C96F0; } L_088C96F0: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(336))); { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088C9720; } goto L_088C96FC; } L_088C96FC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(108))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(484))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(16)); ctx.gpr[6] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(0)))))); ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); jump_target = ctx.gpr[7]; ctx.gpr[31] = (0x088C9718u); ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[6]); ctx.pc = jump_target; if (rt.invoke_chained_call(ctx, &aot_mem) && ctx.pc == 0x088C9718u) goto L_088C9718; return; L_088C9718: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088C9728; } goto L_088C9720; } L_088C9720: { const bool branch_taken = 0u == 0u; ctx.gpr[16] = (0u | 0u); if (branch_taken) { goto L_088C9728; } goto L_088C9728; } L_088C9728: { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088C97D0; } goto L_088C9730; } L_088C9730: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 512u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C9794; } goto L_088C9748; } L_088C9748: { const bool branch_taken = ctx.gpr[30] == 0u; // nop if (branch_taken) { goto L_088C978C; } goto L_088C9750; } L_088C9750: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(96))); if (ctx.gpr[4] != 0u) { ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(96))); goto L_088C977C; } goto L_088C975C; L_088C975C: ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[16] + static_cast(10)))))); ctx.gpr[6] = (ctx.gpr[29] + static_cast(416)); ctx.gpr[31] = (0x088C976Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0176_entry, 176u, 222u, 0x08AC5938u>(ctx, &aot_mem) && ctx.pc == 0x088C976Cu) goto L_088C976C; return; L_088C976C: aot_mem.aot_store32(ctx.gpr[16] + static_cast(96), ctx.gpr[2]); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(416))); aot_mem.aot_store8(ctx.gpr[16] + static_cast(4), static_cast(ctx.gpr[4])); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(96))); goto L_088C977C; L_088C977C: ctx.gpr[5] = (0u | 55u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(180))); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C9794; } goto L_088C978C; } L_088C978C: { const bool branch_taken = 0u == 0u; ctx.gpr[18] = (0u | 0u); if (branch_taken) { goto L_088C9800; } goto L_088C9794; } L_088C9794: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (2230u << 16u); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8152))); ctx.gpr[6] = (static_cast(ctx.gpr[4]) < static_cast(ctx.gpr[6]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[6] == 0u; ctx.gpr[5] = (0u | 0u); if (branch_taken) { goto L_088C97BC; } goto L_088C97AC; } L_088C97AC: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); goto L_088C97BC; L_088C97BC: ctx.gpr[4] = (ctx.gpr[5] | 0u); ctx.gpr[31] = (0x088C97C8u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(80))); if (rt.invoke_chained_direct<&recomp_unit_0102_entry, 102u, 81u, 0x0899CA04u>(ctx, &aot_mem) && ctx.pc == 0x088C97C8u) goto L_088C97C8; return; L_088C97C8: { const bool branch_taken = 0u == 0u; ctx.gpr[18] = (ctx.gpr[2] | 0u); if (branch_taken) { goto L_088C9800; } goto L_088C97D0; } L_088C97D0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 512u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9800; } goto L_088C97E8; } L_088C97E8: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20))); goto L_088C9800; L_088C9800: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C9838; } goto L_088C9808; } L_088C9808: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 512u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9838; } goto L_088C9820; } L_088C9820: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20))); goto L_088C9838; L_088C9838: { const bool branch_taken = ctx.gpr[18] == 0u; // nop if (branch_taken) { goto L_088C9870; } goto L_088C9840; } L_088C9840: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(468))); ctx.gpr[9] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(496))); ctx.gpr[5] = (ctx.gpr[17] | 0u); ctx.gpr[6] = (ctx.gpr[18] | 0u); ctx.gpr[8] = (ctx.gpr[29] + static_cast(32)); ctx.gpr[7] = (ctx.gpr[19] | 0u); ctx.gpr[31] = (0x088C9860u); ctx.gpr[10] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(477))); if (rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 230u, 0x088CDD0Cu>(ctx, &aot_mem) && ctx.pc == 0x088C9860u) goto L_088C9860; return; L_088C9860: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088C9870; } goto L_088C9868; } L_088C9868: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(472))); aot_mem.aot_store32(ctx.gpr[4] + static_cast(0), ctx.gpr[17]); goto L_088C9870; L_088C9870: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(488))); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(468))); if (branch_taken) { goto L_088C99CC; } goto L_088C987C; } L_088C987C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(92))); ctx.gpr[18] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(288)); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(0)))))); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); ctx.gpr[4] = (ctx.gpr[17] + ctx.gpr[5]); jump_target = ctx.gpr[6]; ctx.gpr[31] = (0x088C989Cu); ctx.gpr[5] = (ctx.gpr[18] | 0u); ctx.pc = jump_target; if (rt.invoke_chained_call(ctx, &aot_mem) && ctx.pc == 0x088C989Cu) goto L_088C989C; return; L_088C989C: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088C99CC; } goto L_088C98A4; } L_088C98A4: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[17] | 0u); ctx.gpr[8] = (ctx.gpr[29] + static_cast(368)); ctx.gpr[6] = (ctx.gpr[18] | 0u); ctx.gpr[7] = (ctx.gpr[23] | 0u); ctx.gpr[10] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(477))); ctx.gpr[31] = (0x088C98C4u); ctx.gpr[9] = (0u | 0u); if (rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 230u, 0x088CDD0Cu>(ctx, &aot_mem) && ctx.pc == 0x088C98C4u) goto L_088C98C4; return; L_088C98C4: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088C99CC; } goto L_088C98CC; } L_088C98CC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(368))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9904; } goto L_088C98E4; } L_088C98E4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(368))); ctx.gpr[4] = (ctx.gpr[19] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(32), std::bit_cast(ctx.fpr[12])); ctx.gpr[31] = (0x088C98F8u); ctx.gpr[5] = (ctx.gpr[23] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0000_entry, 0u, 1u, 0x08804000u>(ctx, &aot_mem) && ctx.pc == 0x088C98F8u) goto L_088C98F8; return; L_088C98F8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(472))); { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[4] + static_cast(0), ctx.gpr[17]); if (branch_taken) { goto L_088C99CC; } goto L_088C9904; } L_088C9904: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(480))); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[20] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[20] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(400), std::bit_cast(ctx.fpr[13])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(404), std::bit_cast(ctx.fpr[13])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(408), std::bit_cast(ctx.fpr[13])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(400)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[17] + static_cast(48)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[20] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[20] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[20])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9990; } goto L_088C9980; } L_088C9980: ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[22])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C99B0; } goto L_088C9990; } L_088C9990: ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[24])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C99CC; } goto L_088C99A0; } L_088C99A0: ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[22])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C99CC; } goto L_088C99B0; } L_088C99B0: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(368))); ctx.gpr[4] = (ctx.gpr[19] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(32), std::bit_cast(ctx.fpr[12])); ctx.gpr[31] = (0x088C99C4u); ctx.gpr[5] = (ctx.gpr[23] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0000_entry, 0u, 1u, 0x08804000u>(ctx, &aot_mem) && ctx.pc == 0x088C99C4u) goto L_088C99C4; return; L_088C99C4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(472))); aot_mem.aot_store32(ctx.gpr[4] + static_cast(0), ctx.gpr[17]); goto L_088C99CC; L_088C99CC: { const bool branch_taken = ctx.gpr[22] != 0u; // nop if (branch_taken) { goto L_088C9580; } goto L_088C99D4; } L_088C99D4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(500))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(140), 0u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9A14; } goto L_088C99F4; } L_088C99F4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); ctx.gpr[5] = (ctx.gpr[4] | 0u); aot_mem.aot_store32(ctx.gpr[5] + static_cast(0), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[31] = (0x088C9A0Cu); ctx.gpr[5] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0000_entry, 0u, 585u, 0x08806498u>(ctx, &aot_mem) && ctx.pc == 0x088C9A0Cu) goto L_088C9A0C; return; L_088C9A0C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088C9A24; } goto L_088C9A14; } L_088C9A14: ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[31] = (0x088C9A20u); ctx.gpr[5] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0000_entry, 0u, 585u, 0x08806498u>(ctx, &aot_mem) && ctx.pc == 0x088C9A20u) goto L_088C9A20; return; L_088C9A20: ctx.gpr[2] = (0u | 0u); goto L_088C9A24; L_088C9A24: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(504))); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(508))); ctx.fpr[24] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(512))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(516))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(520))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(524))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(528))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(532))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(536))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(540))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(544))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(548))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(552))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(560)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088C9A60: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-368)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(352), ctx.gpr[22]); ctx.gpr[7] = (ctx.gpr[7] & 255u); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[8] = (ctx.gpr[8] & 255u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(300), ctx.gpr[7]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(288), ctx.gpr[8]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(316), std::bit_cast(ctx.fpr[26])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(344), ctx.gpr[20]); ctx.fpr[26] = std::bit_cast(std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(276), ctx.gpr[5]); ctx.gpr[20] = (ctx.gpr[6] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(304), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(308), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(312), std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(320), std::bit_cast(ctx.fpr[28])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(324), std::bit_cast(ctx.fpr[30])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(328), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(332), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(336), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(340), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(348), ctx.gpr[21]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(356), ctx.gpr[23]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(360), ctx.gpr[30]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(364), ctx.gpr[31]); { const bool branch_taken = ctx.gpr[22] == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(292), std::bit_cast(ctx.fpr[13])); if (branch_taken) { goto L_088CA354; } goto L_088C9ACC; } L_088C9ACC: ctx.gpr[4] = (2232u << 16u); ctx.fpr[24] = std::bit_cast(0u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(224))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(296), ctx.gpr[4]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(232))); ctx.fpr[28] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(228))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(284), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16256u << 16u); ctx.gpr[6] = (0u | 1u); ctx.fpr[30] = std::bit_cast(ctx.gpr[4]); ctx.gpr[23] = (ctx.gpr[29] + static_cast(96)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(280), std::bit_cast(ctx.fpr[13])); ctx.gpr[21] = (2228u << 16u); ctx.gpr[30] = (2229u << 16u); goto L_088C9B08; L_088C9B08: ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast(0))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast(8))); ctx.gpr[16] = (ctx.gpr[17] + static_cast(48)); { const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(276))); { const std::uint32_t vfpu_address = ctx.gpr[19] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[18] = (ctx.gpr[29] + static_cast(48)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[22] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[26])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CA338; } goto L_088C9B5C; } L_088C9B5C: ctx.gpr[31] = (0x088C9B64u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0019_entry, 19u, 313u, 0x08851D50u>(ctx, &aot_mem) && ctx.pc == 0x088C9B64u) goto L_088C9B64; return; L_088C9B64: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (4u << 16u); ctx.gpr[4] = (ctx.gpr[4] & ctx.gpr[5]); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[6] = (0u | 1u); if (branch_taken) { goto L_088CA338; } goto L_088C9B80; } L_088C9B80: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 6u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9BA8; } goto L_088C9B9C; } L_088C9B9C: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast(1336))); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088CA338; } goto L_088C9BA8; } L_088C9BA8: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (ctx.gpr[5] & 2048u); { const bool branch_taken = ctx.gpr[5] != 0u; ctx.gpr[4] = (0u | 0u); if (branch_taken) { goto L_088C9BC8; } goto L_088C9BB8; } L_088C9BB8: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(72))); ctx.gpr[5] = (ctx.gpr[5] & 4096u); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[4] = (ctx.gpr[4] & 255u); if (branch_taken) { goto L_088C9BD0; } goto L_088C9BC8; } L_088C9BC8: ctx.gpr[4] = (ctx.gpr[6] | 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); goto L_088C9BD0; L_088C9BD0: { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9E70; } goto L_088C9BD8; } L_088C9BD8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 8u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9E58; } goto L_088C9BF4; } L_088C9BF4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(416))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(292))); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9C34; } goto L_088C9C0C; } L_088C9C0C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-31116))); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(324))); { const bool branch_taken = ctx.gpr[5] == ctx.gpr[4]; // nop if (branch_taken) { goto L_088C9C34; } goto L_088C9C20; } L_088C9C20: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-31116))); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(326))); { const bool branch_taken = ctx.gpr[5] != ctx.gpr[4]; // nop if (branch_taken) { goto L_088C9DE0; } goto L_088C9C34; } L_088C9C34: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (2230u << 16u); ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8152))); ctx.gpr[7] = (static_cast(ctx.gpr[4]) < static_cast(ctx.gpr[7]) ? 1u : 0u); { const bool branch_taken = ctx.gpr[7] == 0u; ctx.gpr[5] = (0u | 0u); if (branch_taken) { goto L_088C9C5C; } goto L_088C9C4C; } L_088C9C4C: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[30] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); goto L_088C9C5C; L_088C9C5C: ctx.gpr[4] = (ctx.gpr[5] | 0u); ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(16))); if (ctx.gpr[5] == ctx.gpr[6]) { ctx.gpr[7] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(54))); goto L_088C9C84; } goto L_088C9C6C; L_088C9C6C: ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(16))); ctx.gpr[7] = (0u | 3u); if (ctx.gpr[5] == ctx.gpr[7]) { ctx.gpr[7] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(54))); goto L_088C9C84; } goto L_088C9C7C; L_088C9C7C: { const bool branch_taken = 0u == 0u; ctx.gpr[4] = (0u | 0u); if (branch_taken) { goto L_088C9CA8; } goto L_088C9C84; } L_088C9C84: ctx.gpr[7] = (ctx.gpr[7] & 8192u); { const bool branch_taken = ctx.gpr[7] != 0u; ctx.gpr[5] = (0u | 0u); if (branch_taken) { goto L_088C9CA0; } goto L_088C9C90; } L_088C9C90: ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(54))); ctx.gpr[4] = (ctx.gpr[4] & 16384u); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[4] = (ctx.gpr[5] & 255u); if (branch_taken) { goto L_088C9CA8; } goto L_088C9CA0; } L_088C9CA0: ctx.gpr[5] = (ctx.gpr[6] | 0u); ctx.gpr[4] = (ctx.gpr[5] & 255u); goto L_088C9CA8; L_088C9CA8: { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9CCC; } goto L_088C9CB0; } L_088C9CB0: { const std::uint32_t vfpu_address = ctx.gpr[19] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[5] = (ctx.gpr[29] + static_cast(80)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[31] = (0x088C9CC4u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0000_entry, 0u, 763u, 0x08807384u>(ctx, &aot_mem) && ctx.pc == 0x088C9CC4u) goto L_088C9CC4; return; L_088C9CC4: { const bool branch_taken = 0u == 0u; ctx.gpr[6] = (0u | 1u); if (branch_taken) { goto L_088C9DE0; } goto L_088C9CCC; } L_088C9CCC: ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (0u + static_cast(-2049)); ctx.gpr[5] = (ctx.gpr[6] & ctx.gpr[5]); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C9CE4u); aot_mem.aot_store32(ctx.gpr[17] + static_cast(68), ctx.gpr[5]); if (rt.invoke_chained_direct<&recomp_unit_0130_entry, 130u, 153u, 0x08A0D424u>(ctx, &aot_mem) && ctx.pc == 0x088C9CE4u) goto L_088C9CE4; return; L_088C9CE4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-31116))); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(118))); { const bool branch_taken = ctx.gpr[5] != ctx.gpr[4]; // nop if (branch_taken) { goto L_088C9D74; } goto L_088C9CF8; } L_088C9CF8: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[17] + static_cast(421)))))); ctx.gpr[4] = (ctx.gpr[4] & 64u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C9D74; } goto L_088C9D08; } L_088C9D08: { const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[31] = (0x088C9D18u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(104))); if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 387u, 0x08AF5E68u>(ctx, &aot_mem) && ctx.pc == 0x088C9D18u) goto L_088C9D18; return; L_088C9D18: ctx.gpr[4] = (2227u << 16u); ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20748))); ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20744))); ctx.gpr[5] = (ctx.gpr[3] | 0u); ctx.gpr[31] = (0x088C9D30u); ctx.gpr[4] = (ctx.gpr[2] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 441u, 0x08AF6264u>(ctx, &aot_mem) && ctx.pc == 0x088C9D30u) goto L_088C9D30; return; L_088C9D30: ctx.gpr[5] = (ctx.gpr[3] | 0u); ctx.gpr[31] = (0x088C9D3Cu); ctx.gpr[4] = (ctx.gpr[2] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 561u, 0x08AF6AF8u>(ctx, &aot_mem) && ctx.pc == 0x088C9D3Cu) goto L_088C9D3C; return; L_088C9D3C: aot_mem.aot_store32(ctx.gpr[29] + static_cast(104), std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (0u | 5u); ctx.gpr[5] = (ctx.gpr[23] | 0u); ctx.gpr[31] = (0x088C9D50u); ctx.gpr[6] = (0u | 1u); if (rt.invoke_chained_direct<&recomp_unit_0115_entry, 115u, 547u, 0x089D233Cu>(ctx, &aot_mem) && ctx.pc == 0x088C9D50u) goto L_088C9D50; return; L_088C9D50: ctx.gpr[4] = (0u | 6u); ctx.gpr[5] = (ctx.gpr[23] | 0u); ctx.gpr[31] = (0x088C9D60u); ctx.gpr[6] = (0u | 1u); if (rt.invoke_chained_direct<&recomp_unit_0115_entry, 115u, 547u, 0x089D233Cu>(ctx, &aot_mem) && ctx.pc == 0x088C9D60u) goto L_088C9D60; return; L_088C9D60: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[17] + static_cast(421)))))); ctx.gpr[4] = (ctx.gpr[4] | 64u); aot_mem.aot_store8(ctx.gpr[17] + static_cast(421), static_cast(ctx.gpr[4])); { const bool branch_taken = 0u == 0u; ctx.gpr[6] = (0u | 1u); if (branch_taken) { goto L_088C9DE0; } goto L_088C9D74; } L_088C9D74: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 8u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[6] = (0u | 1u); if (branch_taken) { goto L_088C9DE0; } goto L_088C9D90; } L_088C9D90: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-31116))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (aot_mem.aot_load16(ctx.gpr[5] + static_cast(268))); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C9DC4; } goto L_088C9DA4; } L_088C9DA4: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-31116))); ctx.gpr[5] = (aot_mem.aot_load16(ctx.gpr[5] + static_cast(328))); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088C9DC4; } goto L_088C9DB4; } L_088C9DB4: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(-31116))); ctx.gpr[5] = (aot_mem.aot_load16(ctx.gpr[5] + static_cast(330))); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; ctx.gpr[4] = (0u | 0u); if (branch_taken) { goto L_088C9DCC; } goto L_088C9DC4; } L_088C9DC4: { const bool branch_taken = 0u == 0u; ctx.gpr[4] = (ctx.gpr[6] | 0u); if (branch_taken) { goto L_088C9DCC; } goto L_088C9DCC; } L_088C9DCC: { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088C9DE0; } goto L_088C9DD4; } L_088C9DD4: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[17] + static_cast(421)))))); ctx.gpr[4] = (ctx.gpr[4] | 64u); aot_mem.aot_store8(ctx.gpr[17] + static_cast(421), static_cast(ctx.gpr[4])); goto L_088C9DE0; L_088C9DE0: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (ctx.gpr[5] & 2048u); { const bool branch_taken = ctx.gpr[5] != 0u; ctx.gpr[4] = (0u | 0u); if (branch_taken) { goto L_088C9E00; } goto L_088C9DF0; } L_088C9DF0: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(72))); ctx.gpr[5] = (ctx.gpr[5] & 4096u); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[4] = (ctx.gpr[4] & 255u); if (branch_taken) { goto L_088C9E08; } goto L_088C9E00; } L_088C9E00: ctx.gpr[4] = (ctx.gpr[6] | 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); goto L_088C9E08; L_088C9E08: { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088C9E70; } goto L_088C9E10; } L_088C9E10: ctx.fpr[12] = ctx.fpr[26] - ctx.fpr[22]; ctx.gpr[4] = (16384u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast(0x7FC00000u); else ctx.fpr[13] = fs * ft; } ctx.fpr[13] = ctx.fpr[13] / ctx.fpr[26]; ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[30])); ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[12])); // nop if (ctx.fpu_condition()) { ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[13])); goto L_088C9E38; } goto L_088C9E38; L_088C9E38: ctx.gpr[4] = (17302u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.gpr[5] = (0u | 0u); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C9E50u); { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } if (rt.invoke_chained_direct<&recomp_unit_0014_entry, 14u, 484u, 0x0883F1F4u>(ctx, &aot_mem) && ctx.pc == 0x088C9E50u) goto L_088C9E50; return; L_088C9E50: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088C9E70; } goto L_088C9E58; } L_088C9E58: ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (0u + static_cast(-2049)); ctx.gpr[5] = (ctx.gpr[6] & ctx.gpr[5]); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088C9E70u); aot_mem.aot_store32(ctx.gpr[17] + static_cast(68), ctx.gpr[5]); if (rt.invoke_chained_direct<&recomp_unit_0130_entry, 130u, 153u, 0x08A0D424u>(ctx, &aot_mem) && ctx.pc == 0x088C9E70u) goto L_088C9E70; return; L_088C9E70: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (0u | 0u); ctx.gpr[5] = (ctx.gpr[5] & 2048u); { const bool branch_taken = ctx.gpr[5] != 0u; ctx.gpr[6] = (0u | 1u); if (branch_taken) { goto L_088C9E94; } goto L_088C9E84; } L_088C9E84: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(72))); ctx.gpr[5] = (ctx.gpr[5] & 4096u); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[4] = (ctx.gpr[4] & 255u); if (branch_taken) { goto L_088C9E9C; } goto L_088C9E94; } L_088C9E94: ctx.gpr[4] = (ctx.gpr[6] | 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); goto L_088C9E9C; L_088C9E9C: { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088CA338; } goto L_088C9EA4; } L_088C9EA4: ctx.fpr[12] = ctx.fpr[26] - ctx.fpr[22]; ctx.gpr[4] = (16384u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[26]; ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[30])); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[20])); // nop if (ctx.fpu_condition()) { ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[12])); goto L_088C9ECC; } goto L_088C9ECC; L_088C9ECC: ctx.gpr[4] = (15395u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 55050u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[22])); // nop if (!ctx.fpu_condition()) { ctx.fpr[22] = std::bit_cast(std::bit_cast(ctx.fpr[12])); goto L_088C9EE8; } goto L_088C9EE8; L_088C9EE8: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(292))); ctx.gpr[4] = (17583u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(208))); { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[13]; { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[20]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[22]; ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[4] = (ctx.gpr[29] + static_cast(128)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088C9F38; } goto L_088C9F34; } L_088C9F34: aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[24])); goto L_088C9F38; L_088C9F38: ctx.gpr[31] = (0x088C9F40u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 198u, 0x089D596Cu>(ctx, &aot_mem) && ctx.pc == 0x088C9F40u) goto L_088C9F40; return; L_088C9F40: { const bool branch_taken = ctx.gpr[17] != ctx.gpr[2]; // nop if (branch_taken) { goto L_088C9F64; } goto L_088C9F48; } L_088C9F48: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[30])); ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[12])); // nop if (ctx.fpu_condition()) { ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); goto L_088C9F60; } goto L_088C9F60; L_088C9F60: aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); goto L_088C9F64; L_088C9F64: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); ctx.gpr[31] = (0x088C9F78u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0130_entry, 130u, 278u, 0x08A0E1E4u>(ctx, &aot_mem) && ctx.pc == 0x088C9F78u) goto L_088C9F78; return; L_088C9F78: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 8192u); ctx.gpr[4] = (0u < ctx.gpr[4] ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088CA028; } goto L_088C9F90; } L_088C9F90: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[30] + static_cast(-11604))); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(8))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(40))); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[13] = std::bit_cast(std::bit_cast(ctx.fpr[13]) ^ 0x80000000u); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop if (!ctx.fpu_condition()) { ctx.fpr[13] = std::bit_cast(std::bit_cast(ctx.fpr[12])); goto L_088C9FCC; } goto L_088C9FCC; L_088C9FCC: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[17] + static_cast(88)))))); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[30] + static_cast(-11604))); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(20))); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[12])); // nop if (ctx.fpu_condition()) { ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[13])); goto L_088C9FF8; } goto L_088C9FF8; L_088C9FF8: aot_mem.aot_store32(ctx.gpr[29] + static_cast(176), std::bit_cast(ctx.fpr[24])); ctx.fpr[17] = std::bit_cast(std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(180), std::bit_cast(ctx.fpr[24])); ctx.fpr[15] = std::bit_cast(std::bit_cast(ctx.fpr[24])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); ctx.fpr[16] = std::bit_cast(std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(184), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[13])); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); ctx.gpr[31] = (0x088CA028u); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); if (rt.invoke_chained_direct<&recomp_unit_0130_entry, 130u, 288u, 0x08A0E2E0u>(ctx, &aot_mem) && ctx.pc == 0x088CA028u) goto L_088CA028; return; L_088CA028: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 4u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CA0F4; } goto L_088CA044; } L_088CA044: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (0u | 32u); ctx.gpr[4] = (ctx.gpr[4] & 496u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088CA074; } goto L_088CA058; } L_088CA058: ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[5] = (0u + static_cast(-497)); ctx.gpr[5] = (ctx.gpr[6] & ctx.gpr[5]); ctx.gpr[5] = (ctx.gpr[5] | 48u); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088CA074u); aot_mem.aot_store32(ctx.gpr[17] + static_cast(68), ctx.gpr[5]); if (rt.invoke_chained_direct<&recomp_unit_0122_entry, 122u, 218u, 0x089ED5ACu>(ctx, &aot_mem) && ctx.pc == 0x088CA074u) goto L_088CA074; return; L_088CA074: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(288))); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088CA084; } goto L_088CA080; } L_088CA080: ctx.gpr[4] = (0u | 2u); goto L_088CA084; L_088CA084: ctx.gpr[5] = (17545u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[5] | 32768u); ctx.fpr[12] = static_cast(static_cast(std::bit_cast(ctx.fpr[12]))); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(192), std::bit_cast(ctx.fpr[24])); { const float fs = ctx.fpr[20]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast(0x7FC00000u); else ctx.fpr[13] = fs * ft; } aot_mem.aot_store32(ctx.gpr[29] + static_cast(196), std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(200), std::bit_cast(ctx.fpr[24])); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (ctx.gpr[20] | 0u); { const float fs = ctx.fpr[13]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.gpr[7] = (ctx.gpr[29] + static_cast(192)); ctx.gpr[31] = (0x088CA0C0u); ctx.gpr[6] = (0u | 41u); if (rt.invoke_chained_direct<&recomp_unit_0039_entry, 39u, 274u, 0x088A1870u>(ctx, &aot_mem) && ctx.pc == 0x088CA0C0u) goto L_088CA0C0; return; L_088CA0C0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(300))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CA0EC; } goto L_088CA0CC; } L_088CA0CC: ctx.gpr[4] = (aot_mem.aot_load16(ctx.gpr[17] + static_cast(646))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CA0EC; } goto L_088CA0D8; } L_088CA0D8: ctx.gpr[5] = (aot_mem.aot_load16(ctx.gpr[17] + static_cast(646))); ctx.gpr[4] = (0u | 10u); { const std::int32_t dividend = static_cast(ctx.gpr[5]); const std::int32_t divisor = static_cast(ctx.gpr[4]); if (divisor == 0) { ctx.lo = dividend >= 0 ? 0xFFFFFFFFu : 1u; ctx.hi = static_cast(dividend); } else if (dividend == static_cast(0x80000000u) && divisor == -1) { ctx.lo = 0x80000000u; ctx.hi = 0u; } else { ctx.lo = static_cast(dividend / divisor); ctx.hi = static_cast(dividend % divisor); } } ctx.gpr[4] = (ctx.lo); aot_mem.aot_store16(ctx.gpr[17] + static_cast(646), static_cast(ctx.gpr[4])); goto L_088CA0EC; L_088CA0EC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CA334; } goto L_088CA0F4; } L_088CA0F4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 6u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CA300; } goto L_088CA110; } L_088CA110: ctx.gpr[31] = (0x088CA118u); ctx.gpr[16] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 198u, 0x089D596Cu>(ctx, &aot_mem) && ctx.pc == 0x088CA118u) goto L_088CA118; return; L_088CA118: { const bool branch_taken = ctx.gpr[16] != ctx.gpr[2]; // nop if (branch_taken) { goto L_088CA144; } goto L_088CA120; } L_088CA120: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(296))); ctx.gpr[5] = (0u | 45u); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(2388)))))); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088CA144; } goto L_088CA134; } L_088CA134: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(844))); ctx.gpr[5] = (0u | 12u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088CA2F8; } goto L_088CA144; } L_088CA144: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[12]) ^ 0x80000000u); ctx.gpr[5] = (ctx.gpr[29] + static_cast(208)); ctx.fpr[13] = std::bit_cast(std::bit_cast(ctx.fpr[13]) ^ 0x80000000u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(208), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(212), std::bit_cast(ctx.fpr[13])); ctx.gpr[31] = (0x088CA168u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0102_entry, 102u, 349u, 0x0899E234u>(ctx, &aot_mem) && ctx.pc == 0x088CA168u) goto L_088CA168; return; L_088CA168: ctx.gpr[19] = (ctx.gpr[2] | 0u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(1924))); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[18] = (ctx.gpr[19] & 255u); if (branch_taken) { goto L_088CA1DC; } goto L_088CA178; } L_088CA178: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(1924))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 4u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CA1DC; } goto L_088CA198; } L_088CA198: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(1924))); ctx.gpr[5] = (0u | 5u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 496u); ctx.gpr[4] = (ctx.gpr[4] >> 4u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088CA1DC; } goto L_088CA1B4; } L_088CA1B4: ctx.gpr[9] = (17530u << 16u); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.fpr[12] = std::bit_cast(ctx.gpr[9]); ctx.gpr[5] = (ctx.gpr[20] | 0u); ctx.gpr[6] = (0u | 41u); ctx.gpr[7] = (0u | 0u); ctx.gpr[31] = (0x088CA1D4u); ctx.gpr[8] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0054_entry, 54u, 580u, 0x088DEE94u>(ctx, &aot_mem) && ctx.pc == 0x088CA1D4u) goto L_088CA1D4; return; L_088CA1D4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CA25C; } goto L_088CA1DC; } L_088CA1DC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(1924))); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088CA21C; } goto L_088CA1E8; } L_088CA1E8: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(404))); ctx.fpr[28] = std::bit_cast(std::bit_cast(ctx.fpr[24])); ctx.gpr[4] = (0u + static_cast(-2)); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[28])); ctx.gpr[4] = (ctx.gpr[5] & ctx.gpr[4]); ctx.fpr[13] = std::bit_cast(std::bit_cast(ctx.fpr[28])); ctx.gpr[6] = (16384u << 16u); aot_mem.aot_store32(ctx.gpr[16] + static_cast(404), ctx.gpr[4]); ctx.fpr[14] = std::bit_cast(ctx.gpr[6]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(284), std::bit_cast(ctx.fpr[24])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088CA21Cu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(280), std::bit_cast(ctx.fpr[14])); if (rt.invoke_chained_direct<&recomp_unit_0130_entry, 130u, 278u, 0x08A0E1E4u>(ctx, &aot_mem) && ctx.pc == 0x088CA21Cu) goto L_088CA21C; return; L_088CA21C: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(288))); { const bool branch_taken = ctx.gpr[5] == 0u; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088CA22C; } goto L_088CA228; } L_088CA228: ctx.gpr[4] = (0u | 2u); goto L_088CA22C; L_088CA22C: ctx.gpr[5] = (17274u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[13] = std::bit_cast(ctx.gpr[5]); ctx.gpr[4] = (ctx.gpr[16] | 0u); { const float fs = ctx.fpr[20]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast(0x7FC00000u); else ctx.fpr[13] = fs * ft; } ctx.gpr[5] = (ctx.gpr[20] | 0u); ctx.fpr[12] = static_cast(static_cast(std::bit_cast(ctx.fpr[12]))); ctx.gpr[6] = (0u | 41u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (ctx.gpr[18] | 0u); ctx.gpr[31] = (0x088CA25Cu); { const float fs = ctx.fpr[13]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } if (rt.invoke_chained_direct<&recomp_unit_0054_entry, 54u, 580u, 0x088DEE94u>(ctx, &aot_mem) && ctx.pc == 0x088CA25Cu) goto L_088CA25C; return; L_088CA25C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(844))); ctx.gpr[5] = (0u | 54u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088CA280; } goto L_088CA26C; } L_088CA26C: ctx.gpr[6] = (ctx.gpr[19] + static_cast(25)); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (0u | 2000u); ctx.gpr[31] = (0x088CA280u); ctx.gpr[7] = (0u | 0u); if (rt.invoke_chained_direct<&recomp_unit_0103_entry, 103u, 106u, 0x089A07E8u>(ctx, &aot_mem) && ctx.pc == 0x088CA280u) goto L_088CA280; return; L_088CA280: { const bool branch_taken = ctx.gpr[20] == 0u; // nop if (branch_taken) { goto L_088CA2F8; } goto L_088CA288; } L_088CA288: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[20] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 6u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CA2F8; } goto L_088CA2A4; } L_088CA2A4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(1376))); ctx.gpr[5] = (0u | 6u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088CA2D4; } goto L_088CA2B4; } L_088CA2B4: ctx.gpr[4] = (0u | 12u); ctx.gpr[5] = (0u | 1u); ctx.gpr[6] = (ctx.gpr[17] | 0u); ctx.gpr[7] = (ctx.gpr[20] | 0u); ctx.gpr[31] = (0x088CA2CCu); ctx.gpr[8] = (0u | 10000u); if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 556u, 0x08A927F0u>(ctx, &aot_mem) && ctx.pc == 0x088CA2CCu) goto L_088CA2CC; return; L_088CA2CC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CA2EC; } goto L_088CA2D4; } L_088CA2D4: ctx.gpr[4] = (0u | 11u); ctx.gpr[5] = (0u | 1u); ctx.gpr[6] = (ctx.gpr[17] | 0u); ctx.gpr[7] = (ctx.gpr[20] | 0u); ctx.gpr[31] = (0x088CA2ECu); ctx.gpr[8] = (0u | 10000u); if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 556u, 0x08A927F0u>(ctx, &aot_mem) && ctx.pc == 0x088CA2ECu) goto L_088CA2EC; return; L_088CA2EC: ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088CA2F8u); ctx.gpr[5] = (ctx.gpr[20] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 412u, 0x08899988u>(ctx, &aot_mem) && ctx.pc == 0x088CA2F8u) goto L_088CA2F8; return; L_088CA2F8: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CA334; } goto L_088CA300; } L_088CA300: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 14u); ctx.gpr[4] = (ctx.gpr[4] ^ 8u); ctx.gpr[4] = (ctx.gpr[4] < static_cast(1) ? 1u : 0u); ctx.gpr[4] = (ctx.gpr[4] & 255u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CA334; } goto L_088CA31C; } L_088CA31C: ctx.gpr[4] = (17302u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[5] = (0u | 0u); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[31] = (0x088CA334u); { const float fs = ctx.fpr[20]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } if (rt.invoke_chained_direct<&recomp_unit_0014_entry, 14u, 484u, 0x0883F1F4u>(ctx, &aot_mem) && ctx.pc == 0x088CA334u) goto L_088CA334; return; L_088CA334: ctx.gpr[6] = (0u | 1u); goto L_088CA338; L_088CA338: { const bool branch_taken = ctx.gpr[22] != 0u; // nop if (branch_taken) { goto L_088C9B08; } goto L_088CA340; } L_088CA340: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(284))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(280))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(224), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(228), std::bit_cast(ctx.fpr[28])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(232), std::bit_cast(ctx.fpr[13])); goto L_088CA354; L_088CA354: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(304))); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(308))); ctx.fpr[24] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(312))); ctx.fpr[26] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(316))); ctx.fpr[28] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(320))); ctx.fpr[30] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(324))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(328))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(332))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(336))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(340))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(344))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(348))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(352))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(356))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(360))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(364))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(368)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA39C: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-32)); ctx.gpr[4] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(20676))); ctx.gpr[4] = (16256u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[13] / ctx.fpr[12]; { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[18] = std::bit_cast(0x7FC00000u); else ctx.fpr[18] = fs * ft; } ctx.fpr[13] = ctx.fpr[13] / ctx.fpr[18]; ctx.gpr[5] = (2227u << 16u); ctx.gpr[4] = (16014u << 16u); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(20672))); ctx.gpr[8] = (ctx.gpr[4] | 14571u); ctx.gpr[5] = (2227u << 16u); ctx.gpr[4] = (2227u << 16u); ctx.gpr[7] = (17096u << 16u); ctx.fpr[16] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(20700))); aot_mem.aot_store32(ctx.gpr[4] + static_cast(20680), std::bit_cast(ctx.fpr[14])); ctx.fpr[17] = std::bit_cast(ctx.gpr[7]); ctx.fpr[14] = ctx.fpr[17] / ctx.fpr[15]; ctx.fpr[18] = std::bit_cast(ctx.gpr[8]); ctx.fpr[12] = ctx.fpr[18] / ctx.fpr[12]; ctx.gpr[11] = (2227u << 16u); ctx.gpr[2] = (2227u << 16u); aot_mem.aot_store32(ctx.gpr[11] + static_cast(20688), std::bit_cast(ctx.fpr[13])); ctx.gpr[10] = (16672u << 16u); aot_mem.aot_store32(ctx.gpr[2] + static_cast(20684), std::bit_cast(ctx.fpr[14])); ctx.fpr[14] = std::bit_cast(ctx.gpr[10]); { const float fs = ctx.fpr[13]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast(0x7FC00000u); else ctx.fpr[13] = fs * ft; } ctx.gpr[9] = (15744u << 16u); ctx.gpr[3] = (2227u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[9]); ctx.gpr[12] = (2227u << 16u); ctx.gpr[4] = (2233u << 16u); ctx.gpr[7] = (2224u << 16u); aot_mem.aot_store32(ctx.gpr[3] + static_cast(20692), std::bit_cast(ctx.fpr[13])); { const float fs = ctx.fpr[16]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast(0x7FC00000u); else ctx.fpr[15] = fs * ft; } ctx.gpr[13] = (2227u << 16u); ctx.gpr[5] = (0u | 1u); ctx.gpr[6] = (0u | 368u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(-26096)); ctx.gpr[7] = (ctx.gpr[7] + static_cast(3640)); aot_mem.aot_store32(ctx.gpr[12] + static_cast(20696), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(16), ctx.gpr[31]); ctx.gpr[31] = (0x088CA450u); aot_mem.aot_store32(ctx.gpr[13] + static_cast(20704), std::bit_cast(ctx.fpr[15])); if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 351u, 0x08AF5B00u>(ctx, &aot_mem) && ctx.pc == 0x088CA450u) goto L_088CA450; return; L_088CA450: ctx.gpr[4] = (2227u << 16u); ctx.gpr[31] = (0x088CA45Cu); ctx.gpr[4] = (ctx.gpr[4] + static_cast(20752)); if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 261u, 0x08AF5504u>(ctx, &aot_mem) && ctx.pc == 0x088CA45Cu) goto L_088CA45C; return; L_088CA45C: ctx.gpr[4] = (2230u << 16u); aot_mem.aot_store32(ctx.gpr[4] + static_cast(-8112), 0u); ctx.gpr[4] = (2227u << 16u); ctx.gpr[31] = (0x088CA470u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(20764)); if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 261u, 0x08AF5504u>(ctx, &aot_mem) && ctx.pc == 0x088CA470u) goto L_088CA470; return; L_088CA470: ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(16))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(32)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA47C: { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<4u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(16); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<5u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(32); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<6u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(48); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<7u, 4u>(vfpu_value); } { float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{}; ctx.read_vfpu_matrix(vfpu_matrix, 36u, 3u); ctx.read_vfpu_vector_ct<1u, 3u>(vfpu_target_raw); constexpr std::uint32_t vfpu_side = 3u; constexpr std::uint32_t vfpu_input_length = 3u; for (std::uint32_t i = 0; i < 4u; ++i) vfpu_target[i] = i < vfpu_input_length ? vfpu_target_raw[i] : 0.0f; if (vfpu_side - 1u >= vfpu_input_length) vfpu_target[vfpu_side - 1u] = 1.0f; for (std::uint32_t row = 0; row + 1u < vfpu_side; ++row) { float sum = 0.0f; for (std::uint32_t column = 0; column < vfpu_side; ++column) sum += vfpu_matrix[row * 4u + column] * vfpu_target[column]; vfpu_result[row] = sum; } float vfpu_final_row[4]{vfpu_matrix[(vfpu_side - 1u) * 4u + 0u], vfpu_matrix[(vfpu_side - 1u) * 4u + 1u], vfpu_matrix[(vfpu_side - 1u) * 4u + 2u], vfpu_matrix[(vfpu_side - 1u) * 4u + 3u]}; ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_final_row); ctx.apply_vfpu_source_prefix_ct<4u, 1u>(vfpu_target); for (std::uint32_t column = 0; column < 4u; ++column) vfpu_result[vfpu_side - 1u] += vfpu_final_row[column] * vfpu_target[column]; const std::uint32_t vfpu_destination_prefix = ctx.vfpu_ctrl[2]; const std::uint32_t vfpu_last_lane = vfpu_side - 1u; ctx.vfpu_ctrl[2] = ((vfpu_destination_prefix & (1u << 8u)) << vfpu_last_lane) | ((vfpu_destination_prefix & 3u) << (vfpu_last_lane * 2u)); ctx.write_vfpu_vector_with_destination_prefix(vfpu_result, 0u, vfpu_side); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<7u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } jump_target = ctx.gpr[31]; // nop local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA4A4: { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } jump_target = ctx.gpr[31]; // nop local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA4BC: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-32)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(12), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(16), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(20), ctx.gpr[23]); ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); ctx.gpr[3] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(36))); ctx.gpr[16] = (ctx.gpr[8] | 0u); ctx.gpr[17] = (ctx.gpr[6] | 0u); ctx.gpr[18] = (ctx.gpr[4] | 0u); ctx.gpr[19] = (ctx.gpr[5] | 0u); ctx.gpr[25] = (ctx.gpr[7] | 0u); ctx.gpr[15] = (ctx.gpr[31] | 0u); ctx.gpr[22] = (0u + static_cast(0)); ctx.gpr[6] = (ctx.gpr[9] | 0u); ctx.gpr[5] = (ctx.gpr[10] | 0u); ctx.gpr[23] = (ctx.gpr[11] | 0u); ctx.gpr[7] = (ctx.gpr[2] | 0u); ctx.gpr[3] = (ctx.gpr[3] | 0u); { const bool branch_taken = ctx.gpr[18] == ctx.gpr[19]; ctx.gpr[24] = (0u | 0u); if (branch_taken) { goto L_088CA550; } goto L_088CA518; } L_088CA518: { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(16); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.gpr[18] = (ctx.gpr[18] + static_cast(48)); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<55u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<55u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 3u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<20u, 0u, 3u, 2u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA7A4; } goto L_088CA538; } L_088CA538: ctx.execute_vfpu_vcmp_ct<20u, 1u, 3u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA7A4; } goto L_088CA544; } L_088CA544: ctx.gpr[24] = (aot_mem.aot_load16(ctx.gpr[18] + static_cast(-16))); ctx.gpr[25] = (aot_mem.aot_load16(ctx.gpr[18] + static_cast(-14))); ctx.gpr[25] = (ctx.gpr[25] + static_cast(1)); goto L_088CA550; L_088CA550: { const bool branch_taken = ctx.gpr[24] == ctx.gpr[25]; ctx.gpr[24] = (ctx.gpr[24] << 3u); if (branch_taken) { goto L_088CA7A4; } goto L_088CA558; } L_088CA558: ctx.gpr[25] = (ctx.gpr[25] << 3u); { const bool signed_ok = ctx.execute_signed_add(24u, 24u, 17u); if (!signed_ok) { rt.arithmetic_overflow(0x088CA55Cu, 0x0311C020u); return; } } { const bool signed_ok = ctx.execute_signed_add(25u, 25u, 17u); if (!signed_ok) { rt.arithmetic_overflow(0x088CA560u, 0x0331C820u); return; } } goto L_088CA564; L_088CA564: ctx.gpr[8] = (aot_mem.aot_load16(ctx.gpr[24] + static_cast(0))); ctx.gpr[9] = (aot_mem.aot_load16(ctx.gpr[24] + static_cast(2))); ctx.gpr[10] = (aot_mem.aot_load16(ctx.gpr[24] + static_cast(4))); ctx.gpr[24] = (ctx.gpr[24] + static_cast(8)); ctx.gpr[8] = (ctx.gpr[8] + ctx.gpr[16]); ctx.gpr[9] = (ctx.gpr[9] + ctx.gpr[16]); ctx.gpr[10] = (ctx.gpr[10] + ctx.gpr[16]); ctx.gpr[11] = (rt.memory().aot_load_word_right(ctx.gpr[8] + static_cast(0), ctx.gpr[11])); ctx.gpr[11] = (rt.memory().aot_load_word_left(ctx.gpr[8] + static_cast(3), ctx.gpr[11])); ctx.gpr[8] = (aot_mem.aot_load16(ctx.gpr[8] + static_cast(4))); ctx.gpr[12] = (rt.memory().aot_load_word_right(ctx.gpr[9] + static_cast(0), ctx.gpr[12])); ctx.gpr[12] = (rt.memory().aot_load_word_left(ctx.gpr[9] + static_cast(3), ctx.gpr[12])); ctx.gpr[9] = (aot_mem.aot_load16(ctx.gpr[9] + static_cast(4))); ctx.gpr[13] = (rt.memory().aot_load_word_right(ctx.gpr[10] + static_cast(0), ctx.gpr[13])); ctx.gpr[13] = (rt.memory().aot_load_word_left(ctx.gpr[10] + static_cast(3), ctx.gpr[13])); ctx.gpr[10] = (aot_mem.aot_load16(ctx.gpr[10] + static_cast(4))); ctx.set_vfpu_scalar_bits_ct<8u>(ctx.gpr[11]); ctx.set_vfpu_scalar_bits_ct<40u>(ctx.gpr[8]); ctx.set_vfpu_scalar_bits_ct<9u>(ctx.gpr[12]); ctx.set_vfpu_scalar_bits_ct<41u>(ctx.gpr[9]); ctx.set_vfpu_scalar_bits_ct<10u>(ctx.gpr[13]); ctx.set_vfpu_scalar_bits_ct<42u>(ctx.gpr[10]); ctx.execute_vfpu_vx2i(4u, 8u, 2u, 3u); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_ct<4u, 4u>(vfpu_s); ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_s); const float vfpu_scale = std::ldexp(1.0f, -static_cast(23u)); for (std::uint32_t vfpu_i = 0; vfpu_i < 4u; ++vfpu_i) { const auto vfpu_integer = static_cast(std::bit_cast(vfpu_s[vfpu_i])); vfpu_d[vfpu_i] = static_cast(vfpu_integer) * vfpu_scale; } ctx.write_vfpu_vector_with_destination_prefix_ct<4u, 4u>(vfpu_d); } ctx.execute_vfpu_vx2i(5u, 9u, 2u, 3u); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_ct<5u, 4u>(vfpu_s); ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_s); const float vfpu_scale = std::ldexp(1.0f, -static_cast(23u)); for (std::uint32_t vfpu_i = 0; vfpu_i < 4u; ++vfpu_i) { const auto vfpu_integer = static_cast(std::bit_cast(vfpu_s[vfpu_i])); vfpu_d[vfpu_i] = static_cast(vfpu_integer) * vfpu_scale; } ctx.write_vfpu_vector_with_destination_prefix_ct<5u, 4u>(vfpu_d); } ctx.execute_vfpu_vx2i(6u, 10u, 2u, 3u); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_ct<6u, 4u>(vfpu_s); ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_s); const float vfpu_scale = std::ldexp(1.0f, -static_cast(23u)); for (std::uint32_t vfpu_i = 0; vfpu_i < 4u; ++vfpu_i) { const auto vfpu_integer = static_cast(std::bit_cast(vfpu_s[vfpu_i])); vfpu_d[vfpu_i] = static_cast(vfpu_integer) * vfpu_scale; } ctx.write_vfpu_vector_with_destination_prefix_ct<6u, 4u>(vfpu_d); } ctx.execute_vfpu_horizontal(8u, 36u, 3u, true); ctx.execute_vfpu_horizontal(40u, 37u, 3u, true); ctx.execute_vfpu_horizontal(72u, 38u, 3u, true); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<8u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<12u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<8u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<13u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<8u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<14u, 3u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<15u, 12u, 12u, 3u>(); ctx.execute_vfpu_vdot_ct<47u, 13u, 13u, 3u>(); ctx.execute_vfpu_vdot_ct<79u, 14u, 14u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<8u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<12u, 3u>(vfpu_d); } ctx.execute_vfpu_vminmax(15u, 15u, 47u, 1u, true); ctx.execute_vfpu_vminmax(15u, 15u, 79u, 1u, true); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<15u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<104u, 1u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<0u, 12u, 12u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<104u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<116u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<0u, 32u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA79C; } goto L_088CA620; } L_088CA620: { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<9u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<10u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<15u, 3u>(vfpu_d); } ctx.execute_vfpu_cross_quat(17u, 10u, 9u, 3u); ctx.execute_vfpu_vdot_ct<110u, 17u, 17u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<110u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<110u, 1u>(vfpu_d); } ctx.execute_vfpu_vscl_ct<7u, 17u, 110u, 3u>(); ctx.execute_vfpu_vdot_ct<12u, 7u, 15u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<12u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<12u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<12u, 116u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA79C; } goto L_088CA650; } L_088CA650: ctx.execute_vfpu_vdot_ct<103u, 7u, 4u, 3u>(); { float vfpu_value[4]{}; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_value); } { float vfpu_value[4]{1.0f, 1.0f, 1.0f, 1.0f}; ctx.write_vfpu_vector_with_destination_prefix_ct<96u, 1u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<8u, 4u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 4u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<29u, 4u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<20u, 4u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 4u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<30u, 4u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<9u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<8u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<10u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<11u, 3u>(vfpu_d); } ctx.execute_vfpu_cross_quat(19u, 9u, 10u, 3u); ctx.execute_vfpu_cross_quat(17u, 10u, 9u, 3u); ctx.execute_vfpu_cross_quat(15u, 11u, 8u, 3u); { const bool branch_taken = ctx.gpr[6] == ctx.gpr[5]; ctx.gpr[4] = (ctx.gpr[6] | 0u); if (branch_taken) { goto L_088CA740; } goto L_088CA688; } L_088CA688: { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.set_vfpu_scalar_bits_ct<127u>(aot_mem.aot_load32(ctx.gpr[4] + static_cast(28))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(64)); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<29u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<12u, 3u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<31u, 12u, 12u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<104u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<97u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<63u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<63u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<63u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<63u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<31u, 63u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA72C; } goto L_088CA6B0; } L_088CA6B0: ctx.execute_vfpu_vdot_ct<2u, 1u, 7u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<2u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<103u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<98u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<98u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<34u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<98u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<98u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<63u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<34u, 97u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA72C; } goto L_088CA6CC; } L_088CA6CC: ctx.execute_vfpu_vcmp_ct<63u, 127u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA72C; } goto L_088CA6D8; } L_088CA6D8: ctx.gpr[31] = (0x088CA6E0u); // nop goto L_088CA7D4; L_088CA6E0: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088CA72C; } goto L_088CA6E8; } L_088CA6E8: ctx.execute_vfpu_vcmp_ct<120u, 127u, 1u, 6u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA72C; } goto L_088CA6F4; } L_088CA6F4: { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<24u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<27u, 3u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<120u, 27u, 27u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<120u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<122u, 1u>(vfpu_d); } ctx.execute_vfpu_vscl_ct<28u, 27u, 122u, 3u>(); ctx.gpr[12] = (aot_mem.aot_load16(ctx.gpr[4] + static_cast(-20))); ctx.gpr[13] = (aot_mem.aot_load16(ctx.gpr[24] + static_cast(-18))); ctx.gpr[13] = (ctx.gpr[13] << 16u); ctx.gpr[12] = (ctx.gpr[12] + ctx.gpr[13]); ctx.set_vfpu_scalar_bits_ct<124u>(ctx.gpr[12]); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<24u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(-48); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<28u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(-32); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<120u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<123u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<97u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<123u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<124u, 1u>(vfpu_d); } aot_mem.aot_store32(ctx.gpr[4] + static_cast(-16), ctx.vfpu_scalar_bits_ct<124u>()); goto L_088CA72C; L_088CA72C: { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088CA688; } goto L_088CA734; } L_088CA734: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<30u, 4u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 4u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<20u, 4u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<116u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<117u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<116u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<118u, 1u>(vfpu_d); } goto L_088CA740; L_088CA740: { const bool branch_taken = ctx.gpr[23] == ctx.gpr[7]; ctx.gpr[4] = (ctx.gpr[23] | 0u); if (branch_taken) { goto L_088CA798; } goto L_088CA748; } L_088CA748: { const bool branch_taken = ctx.gpr[3] == 0u; ctx.gpr[11] = (ctx.gpr[3] | 0u); if (branch_taken) { goto L_088CA798; } goto L_088CA750; } L_088CA750: { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(16); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<2u, 4u>(vfpu_value); } ctx.set_vfpu_scalar_bits_ct<127u>(aot_mem.aot_load32(ctx.gpr[11] + static_cast(12))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(32)); ctx.gpr[11] = (ctx.gpr[11] + static_cast(32)); ctx.gpr[31] = (0x088CA76Cu); // nop goto L_088CA948; L_088CA76C: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088CA790; } goto L_088CA774; } L_088CA774: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<24u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<97u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<7u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 3u>(vfpu_d); } ctx.gpr[13] = (aot_mem.aot_load16(ctx.gpr[24] + static_cast(-2))); ctx.gpr[13] = (ctx.gpr[13] << 16u); ctx.set_vfpu_scalar_bits_ct<124u>(ctx.gpr[13]); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<1u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[11] + static_cast(-32); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<28u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[11] + static_cast(-16); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } goto L_088CA790; L_088CA790: { const bool branch_taken = ctx.gpr[4] != ctx.gpr[7]; // nop if (branch_taken) { goto L_088CA750; } goto L_088CA798; } L_088CA798: ctx.gpr[22] = (ctx.gpr[22] + static_cast(1)); goto L_088CA79C; L_088CA79C: { const bool branch_taken = ctx.gpr[24] != ctx.gpr[25]; // nop if (branch_taken) { goto L_088CA564; } goto L_088CA7A4; } L_088CA7A4: { const bool branch_taken = ctx.gpr[18] != ctx.gpr[19]; // nop if (branch_taken) { goto L_088CA518; } goto L_088CA7AC; } L_088CA7AC: ctx.gpr[2] = (ctx.gpr[22] | 0u); ctx.gpr[31] = (ctx.gpr[15] | 0u); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(0))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(4))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(8))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(12))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(16))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(20))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(32)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA7D4: ctx.gpr[2] = (0u + 0u); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<12u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<13u, 3u>(vfpu_d); } ctx.execute_vfpu_cross_quat(18u, 9u, 12u, 3u); ctx.execute_vfpu_cross_quat(16u, 10u, 12u, 3u); ctx.execute_vfpu_cross_quat(14u, 11u, 13u, 3u); ctx.execute_vfpu_vdot_ct<102u, 18u, 19u, 3u>(); ctx.execute_vfpu_vdot_ct<101u, 16u, 17u, 3u>(); ctx.execute_vfpu_vdot_ct<100u, 14u, 15u, 3u>(); ctx.execute_vfpu_vcmp_ct<39u, 0u, 3u, 6u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 2u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA84C; } goto L_088CA804; } L_088CA804: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 1u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA828; } goto L_088CA80C; } L_088CA80C: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA81C; } goto L_088CA814; } L_088CA814: { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA940; } goto L_088CA81C; } L_088CA81C: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<20u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA8A0; } goto L_088CA828; } L_088CA828: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA83C; } goto L_088CA830; } L_088CA830: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<20u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA8A0; } goto L_088CA83C; } L_088CA83C: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<20u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<21u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA8C4; } goto L_088CA84C; } L_088CA84C: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 1u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA878; } goto L_088CA854; } L_088CA854: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA868; } goto L_088CA85C; } L_088CA85C: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<20u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA8A0; } goto L_088CA868; } L_088CA868: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<20u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<21u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA8C4; } goto L_088CA878; } L_088CA878: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA890; } goto L_088CA880; } L_088CA880: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<20u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<21u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA8C4; } goto L_088CA890; } L_088CA890: ctx.execute_vfpu_vscl_ct<25u, 7u, 98u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<25u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA93C; } goto L_088CA8A0; } L_088CA8A0: { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<3u, 3u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<66u, 3u, 3u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<97u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<97u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<99u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<66u, 99u, 1u, 3u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA940; } goto L_088CA8B8; } L_088CA8B8: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 3u>(vfpu_d); } { const bool branch_taken = 0u == 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA93C; } goto L_088CA8C4; } L_088CA8C4: { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<3u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<21u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<22u, 3u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<116u, 22u, 22u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<116u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<117u, 1u>(vfpu_d); } ctx.execute_vfpu_vscl_ct<23u, 22u, 117u, 3u>(); ctx.execute_vfpu_vdot_ct<66u, 3u, 3u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<97u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<97u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<99u, 1u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<118u, 3u, 23u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 3u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<66u, 99u, 1u, 3u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA93C; } goto L_088CA8F4; } L_088CA8F4: ctx.execute_vfpu_vcmp_ct<118u, 0u, 1u, 2u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA940; } goto L_088CA900; } L_088CA900: { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<118u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<118u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<119u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<66u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<119u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<115u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<115u, 99u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA940; } goto L_088CA914; } L_088CA914: { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<116u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<114u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<99u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<115u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<113u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<113u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<112u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<118u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<112u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<121u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<121u, 114u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CA940; } goto L_088CA930; } L_088CA930: ctx.execute_vfpu_vminmax(111u, 118u, 114u, 1u, false); ctx.execute_vfpu_vscl_ct<26u, 23u, 111u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<26u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<20u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 3u>(vfpu_d); } goto L_088CA93C; L_088CA93C: ctx.gpr[2] = (ctx.gpr[2] + static_cast(1)); goto L_088CA940; L_088CA940: jump_target = ctx.gpr[31]; // nop local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA948: ctx.execute_vfpu_vdot_ct<24u, 1u, 7u, 3u>(); ctx.execute_vfpu_vdot_ct<56u, 2u, 7u, 3u>(); ctx.execute_vfpu_vcmp_ct<24u, 103u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; ctx.execute_vfpu_vcmp_ct<56u, 103u, 1u, 7u>(); if (branch_taken) { goto L_088CA96C; } goto L_088CA95C; } L_088CA95C: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) == 0u; // nop if (branch_taken) { goto L_088CA9D0; } goto L_088CA964; } L_088CA964: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CA974; } goto L_088CA96C; } L_088CA96C: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA9D0; } goto L_088CA974; } L_088CA974: { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<2u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<3u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<103u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<24u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 1u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<56u, 3u, 7u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<56u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<56u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<24u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<56u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 1u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<24u, 127u, 1u, 6u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CA9D0; } goto L_088CA994; } L_088CA994: ctx.execute_vfpu_vscl_ct<8u, 3u, 24u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<8u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<12u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<13u, 3u>(vfpu_d); } ctx.execute_vfpu_cross_quat(18u, 9u, 12u, 3u); ctx.execute_vfpu_cross_quat(16u, 10u, 12u, 3u); ctx.execute_vfpu_cross_quat(14u, 11u, 13u, 3u); ctx.execute_vfpu_vdot_ct<102u, 18u, 19u, 3u>(); ctx.execute_vfpu_vdot_ct<101u, 16u, 17u, 3u>(); ctx.execute_vfpu_vdot_ct<100u, 14u, 15u, 3u>(); ctx.execute_vfpu_vcmp_ct<39u, 0u, 3u, 6u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) == 0u; // nop if (branch_taken) { goto L_088CA9D0; } goto L_088CA9C8; } L_088CA9C8: jump_target = ctx.gpr[31]; ctx.gpr[2] = (0u + static_cast(1)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA9D0: jump_target = ctx.gpr[31]; ctx.gpr[2] = (0u + 0u); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CA9D8: ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(64))); ctx.gpr[5] = (2230u << 16u); ctx.gpr[9] = (ctx.gpr[5] + static_cast(30256)); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[4] + static_cast(54)))))); ctx.gpr[4] = (ctx.gpr[4] << 5u); ctx.gpr[10] = (ctx.gpr[8] + ctx.gpr[4]); ctx.gpr[8] = (ctx.gpr[8] | 0u); ctx.gpr[9] = (ctx.gpr[9] | 0u); ctx.gpr[10] = (ctx.gpr[10] | 0u); { const bool branch_taken = ctx.gpr[8] == ctx.gpr[10]; // vflush: architectural no-op that retains VFPU prefixes if (branch_taken) { goto L_088CAA30; } goto L_088CAA04; } L_088CAA04: { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(16); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<4u, 4u>(vfpu_value); } ctx.gpr[8] = (ctx.gpr[8] + static_cast(32)); { float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{}; ctx.read_vfpu_matrix(vfpu_matrix, 44u, 3u); ctx.read_vfpu_vector_ct<0u, 3u>(vfpu_target_raw); constexpr std::uint32_t vfpu_side = 3u; constexpr std::uint32_t vfpu_input_length = 3u; for (std::uint32_t i = 0; i < 4u; ++i) vfpu_target[i] = i < vfpu_input_length ? vfpu_target_raw[i] : 0.0f; if (vfpu_side - 1u >= vfpu_input_length) vfpu_target[vfpu_side - 1u] = 1.0f; for (std::uint32_t row = 0; row + 1u < vfpu_side; ++row) { float sum = 0.0f; for (std::uint32_t column = 0; column < vfpu_side; ++column) sum += vfpu_matrix[row * 4u + column] * vfpu_target[column]; vfpu_result[row] = sum; } float vfpu_final_row[4]{vfpu_matrix[(vfpu_side - 1u) * 4u + 0u], vfpu_matrix[(vfpu_side - 1u) * 4u + 1u], vfpu_matrix[(vfpu_side - 1u) * 4u + 2u], vfpu_matrix[(vfpu_side - 1u) * 4u + 3u]}; ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_final_row); ctx.apply_vfpu_source_prefix_ct<4u, 1u>(vfpu_target); for (std::uint32_t column = 0; column < 4u; ++column) vfpu_result[vfpu_side - 1u] += vfpu_final_row[column] * vfpu_target[column]; const std::uint32_t vfpu_destination_prefix = ctx.vfpu_ctrl[2]; const std::uint32_t vfpu_last_lane = vfpu_side - 1u; ctx.vfpu_ctrl[2] = ((vfpu_destination_prefix & (1u << 8u)) << vfpu_last_lane) | ((vfpu_destination_prefix & 3u) << (vfpu_last_lane * 2u)); ctx.write_vfpu_vector_with_destination_prefix(vfpu_result, 1u, vfpu_side); } { float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{}; ctx.read_vfpu_matrix(vfpu_matrix, 44u, 3u); ctx.read_vfpu_vector_ct<4u, 3u>(vfpu_target_raw); constexpr std::uint32_t vfpu_side = 3u; constexpr std::uint32_t vfpu_input_length = 3u; for (std::uint32_t i = 0; i < 4u; ++i) vfpu_target[i] = i < vfpu_input_length ? vfpu_target_raw[i] : 0.0f; if (vfpu_side - 1u >= vfpu_input_length) vfpu_target[vfpu_side - 1u] = 1.0f; for (std::uint32_t row = 0; row + 1u < vfpu_side; ++row) { float sum = 0.0f; for (std::uint32_t column = 0; column < vfpu_side; ++column) sum += vfpu_matrix[row * 4u + column] * vfpu_target[column]; vfpu_result[row] = sum; } float vfpu_final_row[4]{vfpu_matrix[(vfpu_side - 1u) * 4u + 0u], vfpu_matrix[(vfpu_side - 1u) * 4u + 1u], vfpu_matrix[(vfpu_side - 1u) * 4u + 2u], vfpu_matrix[(vfpu_side - 1u) * 4u + 3u]}; ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_final_row); ctx.apply_vfpu_source_prefix_ct<4u, 1u>(vfpu_target); for (std::uint32_t column = 0; column < 4u; ++column) vfpu_result[vfpu_side - 1u] += vfpu_final_row[column] * vfpu_target[column]; const std::uint32_t vfpu_destination_prefix = ctx.vfpu_ctrl[2]; const std::uint32_t vfpu_last_lane = vfpu_side - 1u; ctx.vfpu_ctrl[2] = ((vfpu_destination_prefix & (1u << 8u)) << vfpu_last_lane) | ((vfpu_destination_prefix & 3u) << (vfpu_last_lane * 2u)); ctx.write_vfpu_vector_with_destination_prefix(vfpu_result, 5u, vfpu_side); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<15u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<15u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<4u, 3u>(vfpu_d); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<4u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(16); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = ctx.gpr[8] != ctx.gpr[10]; ctx.gpr[9] = (ctx.gpr[9] + static_cast(32)); if (branch_taken) { goto L_088CAA04; } goto L_088CAA30; } L_088CAA30: jump_target = ctx.gpr[31]; // nop local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CAA38: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-16)); ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(60))); ctx.gpr[5] = (2230u << 16u); ctx.gpr[9] = (ctx.gpr[5] + static_cast(22064)); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(48)))))); ctx.gpr[4] = (ctx.gpr[4] << 5u); ctx.gpr[11] = (ctx.gpr[8] + ctx.gpr[4]); ctx.gpr[4] = (26451u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 49692u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), std::bit_cast(ctx.fpr[12])); ctx.gpr[8] = (ctx.gpr[8] | 0u); ctx.gpr[11] = (ctx.gpr[11] | 0u); { const bool branch_taken = ctx.gpr[8] == ctx.gpr[11]; ctx.gpr[10] = (0u + static_cast(0)); if (branch_taken) { goto L_088CAAD8; } goto L_088CAA74; } L_088CAA74: ctx.gpr[9] = (ctx.gpr[9] | 0u); { float vfpu_value[4]{}; ctx.write_vfpu_vector_with_destination_prefix_ct<4u, 3u>(vfpu_value); } ctx.set_vfpu_scalar_bits_ct<100u>(aot_mem.aot_load32(ctx.gpr[29] + static_cast(0))); goto L_088CAA80; L_088CAA80: { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.set_vfpu_scalar_bits_ct<101u>(aot_mem.aot_load32(ctx.gpr[8] + static_cast(16))); ctx.gpr[8] = (ctx.gpr[8] + static_cast(32)); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<96u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<97u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<96u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<98u, 1u>(vfpu_d); } { float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{}; ctx.read_vfpu_matrix(vfpu_matrix, 44u, 3u); ctx.read_vfpu_vector_ct<0u, 3u>(vfpu_target_raw); constexpr std::uint32_t vfpu_side = 3u; constexpr std::uint32_t vfpu_input_length = 3u; for (std::uint32_t i = 0; i < 4u; ++i) vfpu_target[i] = i < vfpu_input_length ? vfpu_target_raw[i] : 0.0f; if (vfpu_side - 1u >= vfpu_input_length) vfpu_target[vfpu_side - 1u] = 1.0f; for (std::uint32_t row = 0; row + 1u < vfpu_side; ++row) { float sum = 0.0f; for (std::uint32_t column = 0; column < vfpu_side; ++column) sum += vfpu_matrix[row * 4u + column] * vfpu_target[column]; vfpu_result[row] = sum; } float vfpu_final_row[4]{vfpu_matrix[(vfpu_side - 1u) * 4u + 0u], vfpu_matrix[(vfpu_side - 1u) * 4u + 1u], vfpu_matrix[(vfpu_side - 1u) * 4u + 2u], vfpu_matrix[(vfpu_side - 1u) * 4u + 3u]}; ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_final_row); ctx.apply_vfpu_source_prefix_ct<4u, 1u>(vfpu_target); for (std::uint32_t column = 0; column < 4u; ++column) vfpu_result[vfpu_side - 1u] += vfpu_final_row[column] * vfpu_target[column]; const std::uint32_t vfpu_destination_prefix = ctx.vfpu_ctrl[2]; const std::uint32_t vfpu_last_lane = vfpu_side - 1u; ctx.vfpu_ctrl[2] = ((vfpu_destination_prefix & (1u << 8u)) << vfpu_last_lane) | ((vfpu_destination_prefix & 3u) << (vfpu_last_lane * 2u)); ctx.write_vfpu_vector_with_destination_prefix(vfpu_result, 1u, vfpu_side); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<15u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<35u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<29u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<35u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<25u, 3u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<0u, 24u, 3u, 2u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CAAD0; } goto L_088CAAB0; } L_088CAAB0: ctx.execute_vfpu_vcmp_ct<0u, 25u, 3u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CAAD0; } goto L_088CAABC; } L_088CAABC: { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } aot_mem.aot_store32(ctx.gpr[9] + static_cast(28), ctx.vfpu_scalar_bits_ct<100u>()); aot_mem.aot_store32(ctx.gpr[9] + static_cast(44), ctx.vfpu_scalar_bits_ct<101u>()); ctx.gpr[9] = (ctx.gpr[9] + static_cast(64)); ctx.gpr[10] = (ctx.gpr[10] + static_cast(1)); goto L_088CAAD0; L_088CAAD0: { const bool branch_taken = ctx.gpr[8] != ctx.gpr[11]; // nop if (branch_taken) { goto L_088CAA80; } goto L_088CAAD8; } L_088CAAD8: ctx.gpr[2] = (ctx.gpr[10] | 0u); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(16)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CAAE4: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-16)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), ctx.gpr[18]); ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(60))); ctx.gpr[7] = (2230u << 16u); ctx.gpr[9] = (ctx.gpr[7] + static_cast(30768)); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(48)))))); ctx.gpr[4] = (ctx.gpr[4] << 5u); ctx.gpr[12] = (ctx.gpr[8] + ctx.gpr[4]); ctx.gpr[8] = (ctx.gpr[8] | 0u); ctx.gpr[12] = (ctx.gpr[12] | 0u); { const bool branch_taken = ctx.gpr[8] == ctx.gpr[12]; ctx.gpr[11] = (0u + static_cast(0)); if (branch_taken) { goto L_088CAB94; } goto L_088CAB18; } L_088CAB18: ctx.gpr[10] = (0u + static_cast(0)); ctx.gpr[9] = (ctx.gpr[9] | 0u); ctx.gpr[4] = (2230u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(22064)); ctx.gpr[17] = (ctx.gpr[4] | 0u); ctx.gpr[6] = (ctx.gpr[6] << 6u); ctx.gpr[18] = (ctx.gpr[6] + ctx.gpr[4]); ctx.gpr[18] = (ctx.gpr[18] | 0u); ctx.gpr[4] = (ctx.gpr[5] + static_cast(16)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<30u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(16); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<31u, 4u>(vfpu_value); } { float vfpu_value[4]{}; ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_value); } goto L_088CAB48; L_088CAB48: { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<96u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<97u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<96u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<98u, 1u>(vfpu_d); } { float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{}; ctx.read_vfpu_matrix(vfpu_matrix, 48u, 3u); ctx.read_vfpu_vector_ct<0u, 3u>(vfpu_target_raw); constexpr std::uint32_t vfpu_side = 3u; constexpr std::uint32_t vfpu_input_length = 3u; for (std::uint32_t i = 0; i < 4u; ++i) vfpu_target[i] = i < vfpu_input_length ? vfpu_target_raw[i] : 0.0f; if (vfpu_side - 1u >= vfpu_input_length) vfpu_target[vfpu_side - 1u] = 1.0f; for (std::uint32_t row = 0; row + 1u < vfpu_side; ++row) { float sum = 0.0f; for (std::uint32_t column = 0; column < vfpu_side; ++column) sum += vfpu_matrix[row * 4u + column] * vfpu_target[column]; vfpu_result[row] = sum; } float vfpu_final_row[4]{vfpu_matrix[(vfpu_side - 1u) * 4u + 0u], vfpu_matrix[(vfpu_side - 1u) * 4u + 1u], vfpu_matrix[(vfpu_side - 1u) * 4u + 2u], vfpu_matrix[(vfpu_side - 1u) * 4u + 3u]}; ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_final_row); ctx.apply_vfpu_source_prefix_ct<4u, 1u>(vfpu_target); for (std::uint32_t column = 0; column < 4u; ++column) vfpu_result[vfpu_side - 1u] += vfpu_final_row[column] * vfpu_target[column]; const std::uint32_t vfpu_destination_prefix = ctx.vfpu_ctrl[2]; const std::uint32_t vfpu_last_lane = vfpu_side - 1u; ctx.vfpu_ctrl[2] = ((vfpu_destination_prefix & (1u << 8u)) << vfpu_last_lane) | ((vfpu_destination_prefix & 3u) << (vfpu_last_lane * 2u)); ctx.write_vfpu_vector_with_destination_prefix(vfpu_result, 1u, vfpu_side); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<30u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<35u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<31u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<35u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<25u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<19u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[8] = (ctx.gpr[8] + static_cast(32)); ctx.execute_vfpu_vcmp_ct<0u, 24u, 3u, 2u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CAB8C; } goto L_088CAB74; } L_088CAB74: ctx.execute_vfpu_vcmp_ct<0u, 25u, 3u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CAB8C; } goto L_088CAB80; } L_088CAB80: aot_mem.aot_store32(ctx.gpr[9] + static_cast(0), ctx.gpr[10]); ctx.gpr[9] = (ctx.gpr[9] + static_cast(4)); ctx.gpr[11] = (ctx.gpr[11] + static_cast(1)); goto L_088CAB8C; L_088CAB8C: { const bool branch_taken = ctx.gpr[8] != ctx.gpr[12]; ctx.gpr[10] = (ctx.gpr[10] + static_cast(1)); if (branch_taken) { goto L_088CAB48; } goto L_088CAB94; } L_088CAB94: ctx.gpr[2] = (ctx.gpr[11] | 0u); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(0))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(4))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(16)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CABA8: ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(68))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(50)))))); ctx.gpr[4] = (ctx.gpr[4] << 4u); ctx.gpr[5] = (ctx.gpr[4] + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]); ctx.gpr[12] = (ctx.gpr[8] + ctx.gpr[4]); ctx.gpr[4] = (2230u << 16u); ctx.gpr[9] = (ctx.gpr[4] + static_cast(31280)); ctx.gpr[8] = (ctx.gpr[8] | 0u); ctx.gpr[12] = (ctx.gpr[12] | 0u); { const bool branch_taken = ctx.gpr[8] == ctx.gpr[12]; ctx.gpr[11] = (0u + static_cast(0)); if (branch_taken) { goto L_088CAC20; } goto L_088CABD8; } L_088CABD8: ctx.gpr[10] = (0u + static_cast(0)); ctx.gpr[9] = (ctx.gpr[9] | 0u); goto L_088CABE0; L_088CABE0: { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(16); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.gpr[8] = (ctx.gpr[8] + static_cast(48)); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<55u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<55u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 3u>(vfpu_d); } ctx.execute_vfpu_vcmp_ct<20u, 0u, 3u, 2u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CAC18; } goto L_088CAC00; } L_088CAC00: ctx.execute_vfpu_vcmp_ct<20u, 1u, 3u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 4u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CAC18; } goto L_088CAC0C; } L_088CAC0C: aot_mem.aot_store32(ctx.gpr[9] + static_cast(0), ctx.gpr[10]); ctx.gpr[9] = (ctx.gpr[9] + static_cast(4)); ctx.gpr[11] = (ctx.gpr[11] + static_cast(1)); goto L_088CAC18; L_088CAC18: { const bool branch_taken = ctx.gpr[8] != ctx.gpr[12]; ctx.gpr[10] = (ctx.gpr[10] + static_cast(1)); if (branch_taken) { goto L_088CABE0; } goto L_088CAC20; } L_088CAC20: ctx.gpr[2] = (ctx.gpr[11] | 0u); jump_target = ctx.gpr[31]; // nop local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CAC2C: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-32)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(16), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(20), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(24), ctx.gpr[31]); ctx.gpr[17] = (ctx.gpr[4] | 0u); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[16] = (ctx.gpr[5] | 0u); if (branch_taken) { goto L_088CAC80; } goto L_088CAC48; } L_088CAC48: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 1u); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[4] = (ctx.gpr[16] & 1u); if (branch_taken) { goto L_088CAC70; } goto L_088CAC58; } L_088CAC58: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(64))); if (ctx.gpr[4] == 0u) { ctx.gpr[4] = (ctx.gpr[16] & 1u); goto L_088CAC70; } goto L_088CAC64; L_088CAC64: ctx.gpr[31] = (0x088CAC6Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0134_entry, 134u, 263u, 0x08A1D574u>(ctx, &aot_mem) && ctx.pc == 0x088CAC6Cu) goto L_088CAC6C; return; L_088CAC6C: ctx.gpr[4] = (ctx.gpr[16] & 1u); goto L_088CAC70; L_088CAC70: { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088CAC80; } goto L_088CAC78; } L_088CAC78: ctx.gpr[31] = (0x088CAC80u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0167_entry, 167u, 667u, 0x08AA31D8u>(ctx, &aot_mem) && ctx.pc == 0x088CAC80u) goto L_088CAC80; return; L_088CAC80: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(16))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(20))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(24))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(32)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CAC94: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-144)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(16), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(20), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(24), std::bit_cast(ctx.fpr[12])); { const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[8] = (ctx.gpr[29] + static_cast(16)); { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[8] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.gpr[8] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[14] = std::bit_cast(ctx.gpr[8]); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(12))); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[12]; ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[14]; ctx.fpr[15] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[14] < ctx.fpr[15])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAD1C; } goto L_088CAD18; } L_088CAD18: ctx.fpr[14] = std::bit_cast(0u); goto L_088CAD1C; L_088CAD1C: { const float fs = ctx.fpr[14]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[7] + static_cast(0))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[15])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAE40; } goto L_088CAD34; } L_088CAD34: ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.set_fpu_condition((ctx.fpr[14] < ctx.fpr[15])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAE40; } goto L_088CAD48; } L_088CAD48: ctx.gpr[8] = (ctx.gpr[29] + static_cast(32)); { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_value[4]{}; vfpu_value[0u] = 1.0f; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 1u, 1u, 3u>(); ctx.execute_vfpu_vcmp_ct<28u, 32u, 1u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.execute_vfpu_vscl_ct<1u, 1u, 28u, 3u>(); ctx.execute_vfpu_vcmov_ct<1u, 0u, 3u, 0u, false>(); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<1u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[15])); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(68), std::bit_cast(ctx.fpr[15])); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[15])); ctx.gpr[9] = (std::bit_cast(ctx.fpr[14])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[9]); { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[9] = (ctx.gpr[29] + static_cast(80)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[10] = (ctx.gpr[29] + static_cast(64)); { const std::uint32_t vfpu_address = ctx.gpr[10] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[9] = (ctx.gpr[29] + static_cast(48)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[9] + static_cast(0))); ctx.gpr[10] = (std::bit_cast(ctx.fpr[14])); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[9] + static_cast(4))); ctx.gpr[11] = (std::bit_cast(ctx.fpr[15])); ctx.fpr[16] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[9] + static_cast(8))); ctx.gpr[9] = (std::bit_cast(ctx.fpr[16])); aot_mem.aot_store32(ctx.gpr[6] + static_cast(0), ctx.gpr[10]); aot_mem.aot_store32(ctx.gpr[6] + static_cast(4), ctx.gpr[11]); aot_mem.aot_store32(ctx.gpr[6] + static_cast(8), ctx.gpr[9]); ctx.gpr[9] = (ctx.gpr[6] + static_cast(16)); ctx.fpr[17] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[8] + static_cast(0))); ctx.gpr[10] = (std::bit_cast(ctx.fpr[17])); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[8] + static_cast(4))); ctx.gpr[11] = (std::bit_cast(ctx.fpr[14])); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[8] + static_cast(8))); ctx.gpr[8] = (std::bit_cast(ctx.fpr[15])); aot_mem.aot_store32(ctx.gpr[9] + static_cast(0), ctx.gpr[10]); aot_mem.aot_store32(ctx.gpr[9] + static_cast(4), ctx.gpr[11]); aot_mem.aot_store32(ctx.gpr[9] + static_cast(8), ctx.gpr[8]); ctx.gpr[8] = (ctx.gpr[6] + static_cast(28)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(16)); ctx.gpr[9] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(0))); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(1))); aot_mem.aot_store8(ctx.gpr[8] + static_cast(0), static_cast(ctx.gpr[9])); aot_mem.aot_store8(ctx.gpr[8] + static_cast(1), static_cast(ctx.gpr[4])); ctx.gpr[4] = (ctx.gpr[6] + static_cast(30)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(16)); ctx.gpr[8] = (aot_mem.aot_load8(ctx.gpr[5] + static_cast(0))); ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[5] + static_cast(1))); aot_mem.aot_store8(ctx.gpr[4] + static_cast(0), static_cast(ctx.gpr[8])); aot_mem.aot_store8(ctx.gpr[4] + static_cast(1), static_cast(ctx.gpr[5])); aot_mem.aot_store32(ctx.gpr[6] + static_cast(12), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[7] + static_cast(0), std::bit_cast(ctx.fpr[12])); { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088CAE44; } goto L_088CAE40; } L_088CAE40: ctx.gpr[2] = (0u | 0u); goto L_088CAE44; L_088CAE44: jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(144)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CAE4C: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[14] = ctx.fpr[13] + ctx.fpr[12]; ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); ctx.set_fpu_condition((ctx.fpr[14] < ctx.fpr[15])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAEE4; } goto L_088CAE6C; } L_088CAE6C: ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[12]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(16))); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAEE4; } goto L_088CAE84; } L_088CAE84: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); ctx.fpr[14] = ctx.fpr[13] + ctx.fpr[12]; ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[14] < ctx.fpr[15])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAEDC; } goto L_088CAEA0; } L_088CAEA0: ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[12]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(20))); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAEDC; } goto L_088CAEB8; } L_088CAEB8: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(8))); ctx.fpr[14] = ctx.fpr[13] + ctx.fpr[12]; ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[14] < ctx.fpr[15])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAF00; } goto L_088CAED4; } L_088CAED4: { const bool branch_taken = 0u == 0u; ctx.fpr[12] = ctx.fpr[13] - ctx.fpr[12]; if (branch_taken) { goto L_088CAEEC; } goto L_088CAEDC; } L_088CAEDC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CAF0C; } goto L_088CAEE4; } L_088CAEE4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CAF0C; } goto L_088CAEEC; } L_088CAEEC: ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CAF08; } goto L_088CAF00; } L_088CAF00: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CAF0C; } goto L_088CAF08; } L_088CAF08: ctx.gpr[2] = (0u | 1u); goto L_088CAF0C; L_088CAF0C: jump_target = ctx.gpr[31]; // nop local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CAF14: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-80)); ctx.gpr[6] = (ctx.gpr[4] + static_cast(16)); { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[6] = (ctx.gpr[29] + static_cast(16)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.gpr[7] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[16] = std::bit_cast(ctx.gpr[7]); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), std::bit_cast(ctx.fpr[12])); { const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[7] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[7] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[7] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[6] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[15] = std::bit_cast(ctx.gpr[6]); ctx.gpr[6] = (49152u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[6]); { const float fs = ctx.fpr[15]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast(0x7FC00000u); else ctx.fpr[15] = fs * ft; } ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(12))); { const float fs = ctx.fpr[13]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast(0x7FC00000u); else ctx.fpr[13] = fs * ft; } { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); ctx.gpr[6] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[14] = std::bit_cast(ctx.gpr[6]); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); ctx.gpr[6] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[12] = std::bit_cast(ctx.gpr[6]); ctx.fpr[12] = ctx.fpr[14] + ctx.fpr[12]; ctx.fpr[17] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), std::bit_cast(ctx.fpr[17])); ctx.fpr[17] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), std::bit_cast(ctx.fpr[17])); ctx.fpr[17] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), std::bit_cast(ctx.fpr[17])); { const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[17] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16384u << 16u); ctx.fpr[14] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[17]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[17] = std::bit_cast(0x7FC00000u); else ctx.fpr[17] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[17]; ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; { const float fs = ctx.fpr[15]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast(0x7FC00000u); else ctx.fpr[13] = fs * ft; } { const float fs = ctx.fpr[16]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[18] = std::bit_cast(0x7FC00000u); else ctx.fpr[18] = fs * ft; } ctx.gpr[4] = (16512u << 16u); ctx.fpr[19] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[18]; const float ft = ctx.fpr[19]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[18] = std::bit_cast(0x7FC00000u); else ctx.fpr[18] = fs * ft; } { const float fs = ctx.fpr[18]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[12]; ctx.fpr[12] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB060; } goto L_088CB02C; } L_088CB02C: ctx.fpr[17] = std::bit_cast(std::bit_cast(ctx.fpr[12])); ctx.fpr[13] = std::sqrt(ctx.fpr[13]); ctx.fpr[15] = std::bit_cast(std::bit_cast(ctx.fpr[15]) ^ 0x80000000u); ctx.fpr[12] = ctx.fpr[15] - ctx.fpr[13]; { const float fs = ctx.fpr[16]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[16] = std::bit_cast(0x7FC00000u); else ctx.fpr[16] = fs * ft; } { const float fs = ctx.fpr[16]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast(0x7FC00000u); else ctx.fpr[14] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[14]; ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[17])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB07C; } goto L_088CB058; } L_088CB058: { const bool branch_taken = 0u == 0u; ctx.gpr[4] = (16256u << 16u); if (branch_taken) { goto L_088CB068; } goto L_088CB060; } L_088CB060: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CB088; } goto L_088CB068; } L_088CB068: ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB084; } goto L_088CB07C; } L_088CB07C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CB088; } goto L_088CB084; } L_088CB084: ctx.gpr[2] = (0u | 1u); goto L_088CB088; L_088CB088: jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(80)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB090: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-128)); { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[7] = (ctx.gpr[29] + static_cast(16)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[7] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[7] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[7] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[12] = std::bit_cast(ctx.gpr[7]); ctx.fpr[13] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB108; } goto L_088CB0E0; } L_088CB0E0: { const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB138; } goto L_088CB100; } L_088CB100: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CB168; } goto L_088CB108; } L_088CB108: { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[0] = std::bit_cast(ctx.gpr[4]); { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CB1B8; } goto L_088CB138; } L_088CB138: { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(48)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i])); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[0] = std::bit_cast(ctx.gpr[4]); { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CB1B8; } goto L_088CB168; } L_088CB168: ctx.gpr[4] = (ctx.gpr[29] + static_cast(16)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); { const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[14] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[14]; ctx.fpr[12] = ctx.fpr[13] - ctx.fpr[12]; ctx.fpr[15] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[15])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB1B4; } goto L_088CB1AC; } L_088CB1AC: { const bool branch_taken = 0u == 0u; ctx.fpr[0] = std::bit_cast(0u); if (branch_taken) { goto L_088CB1B8; } goto L_088CB1B4; } L_088CB1B4: ctx.fpr[0] = std::sqrt(ctx.fpr[12]); goto L_088CB1B8; L_088CB1B8: jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(128)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB1C0: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-224)); ctx.gpr[8] = (ctx.gpr[4] + static_cast(16)); { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[8] = (ctx.gpr[29] + static_cast(16)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); ctx.gpr[9] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[14] = std::bit_cast(ctx.gpr[9]); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), std::bit_cast(ctx.fpr[12])); { const std::uint32_t vfpu_address = ctx.gpr[29] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[9] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[8] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[13] = std::bit_cast(ctx.gpr[8]); ctx.fpr[13] = std::bit_cast(std::bit_cast(ctx.fpr[13]) ^ 0x80000000u); { const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 3u>(); ctx.gpr[8] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[12] = std::bit_cast(ctx.gpr[8]); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(12))); { const float fs = ctx.fpr[15]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast(0x7FC00000u); else ctx.fpr[15] = fs * ft; } ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[15]; { const float fs = ctx.fpr[13]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[16] = std::bit_cast(0x7FC00000u); else ctx.fpr[16] = fs * ft; } { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast(0x7FC00000u); else ctx.fpr[12] = fs * ft; } ctx.fpr[12] = ctx.fpr[16] - ctx.fpr[12]; ctx.fpr[17] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[17])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB2C8; } goto L_088CB26C; } L_088CB26C: ctx.fpr[12] = std::sqrt(ctx.fpr[12]); ctx.fpr[13] = std::bit_cast(std::bit_cast(ctx.fpr[13]) ^ 0x80000000u); ctx.fpr[12] = ctx.fpr[13] - ctx.fpr[12]; ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[14]; ctx.fpr[15] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[15])); // nop { const bool branch_taken = ctx.fpu_condition(); ctx.gpr[8] = (16256u << 16u); if (branch_taken) { goto L_088CB2C0; } goto L_088CB290; } L_088CB290: ctx.fpr[13] = std::bit_cast(ctx.gpr[8]); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB2C0; } goto L_088CB2A4; } L_088CB2A4: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[7] + static_cast(0))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB2D0; } goto L_088CB2B8; } L_088CB2B8: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CB3E4; } goto L_088CB2C0; } L_088CB2C0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CB3E4; } goto L_088CB2C8; } L_088CB2C8: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CB3E4; } goto L_088CB2D0; } L_088CB2D0: ctx.gpr[8] = (ctx.gpr[4] + static_cast(16)); { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[8] = (ctx.gpr[29] + static_cast(64)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.gpr[9] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[9]); { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[8] = (ctx.gpr[29] + static_cast(48)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(96)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(80), std::bit_cast(ctx.fpr[13])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(84), std::bit_cast(ctx.fpr[13])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(88), std::bit_cast(ctx.fpr[13])); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[8] = (ctx.gpr[29] + static_cast(80)); { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); } ctx.gpr[8] = (ctx.gpr[29] + static_cast(112)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { float vfpu_value[4]{}; vfpu_value[0u] = 1.0f; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 1u, 1u, 3u>(); ctx.execute_vfpu_vcmp_ct<28u, 32u, 1u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); } ctx.execute_vfpu_vscl_ct<1u, 1u, 28u, 3u>(); ctx.execute_vfpu_vcmov_ct<1u, 0u, 3u, 0u, false>(); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<1u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[9] = (std::bit_cast(ctx.fpr[13])); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); ctx.gpr[10] = (std::bit_cast(ctx.fpr[14])); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(8))); ctx.gpr[4] = (std::bit_cast(ctx.fpr[15])); aot_mem.aot_store32(ctx.gpr[6] + static_cast(0), ctx.gpr[9]); aot_mem.aot_store32(ctx.gpr[6] + static_cast(4), ctx.gpr[10]); aot_mem.aot_store32(ctx.gpr[6] + static_cast(8), ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[6] + static_cast(16)); ctx.fpr[16] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[8] + static_cast(0))); ctx.gpr[9] = (std::bit_cast(ctx.fpr[16])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[8] + static_cast(4))); ctx.gpr[10] = (std::bit_cast(ctx.fpr[13])); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[8] + static_cast(8))); ctx.gpr[8] = (std::bit_cast(ctx.fpr[14])); aot_mem.aot_store32(ctx.gpr[4] + static_cast(0), ctx.gpr[9]); aot_mem.aot_store32(ctx.gpr[4] + static_cast(4), ctx.gpr[10]); aot_mem.aot_store32(ctx.gpr[4] + static_cast(8), ctx.gpr[8]); ctx.gpr[4] = (ctx.gpr[6] + static_cast(30)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(16)); ctx.gpr[8] = (aot_mem.aot_load8(ctx.gpr[5] + static_cast(0))); ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[5] + static_cast(1))); aot_mem.aot_store8(ctx.gpr[4] + static_cast(0), static_cast(ctx.gpr[8])); aot_mem.aot_store8(ctx.gpr[4] + static_cast(1), static_cast(ctx.gpr[5])); ctx.gpr[4] = (0u | 0u); aot_mem.aot_store8(ctx.gpr[6] + static_cast(28), static_cast(ctx.gpr[4])); ctx.gpr[4] = (0u | 0u); aot_mem.aot_store8(ctx.gpr[6] + static_cast(29), static_cast(ctx.gpr[4])); aot_mem.aot_store32(ctx.gpr[7] + static_cast(0), std::bit_cast(ctx.fpr[12])); { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088CB3E4; } goto L_088CB3E4; } L_088CB3E4: jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(224)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB3EC: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-160)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(116), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(120), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(124), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(132), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), ctx.gpr[21]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(140), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(144), ctx.gpr[23]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(148), ctx.gpr[30]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(152), ctx.gpr[31]); ctx.gpr[16] = (ctx.gpr[8] | 0u); ctx.gpr[17] = (ctx.gpr[7] | 0u); ctx.gpr[18] = (ctx.gpr[6] | 0u); ctx.gpr[21] = (ctx.gpr[4] | 0u); ctx.gpr[22] = (ctx.gpr[29] + static_cast(32)); ctx.gpr[23] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[30] = (ctx.gpr[29] + static_cast(64)); ctx.gpr[4] = (ctx.gpr[18] | 0u); ctx.gpr[6] = (ctx.gpr[22] | 0u); ctx.gpr[7] = (ctx.gpr[23] | 0u); ctx.gpr[31] = (0x088CB448u); ctx.gpr[8] = (ctx.gpr[30] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0134_entry, 134u, 312u, 0x08A1E040u>(ctx, &aot_mem) && ctx.pc == 0x088CB448u) goto L_088CB448; return; L_088CB448: ctx.gpr[20] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[19] = (ctx.gpr[29] + static_cast(96)); ctx.gpr[10] = (ctx.gpr[29] + static_cast(112)); ctx.gpr[4] = (ctx.gpr[21] | 0u); ctx.gpr[5] = (ctx.gpr[22] | 0u); ctx.gpr[6] = (ctx.gpr[23] | 0u); ctx.gpr[7] = (ctx.gpr[30] | 0u); ctx.gpr[8] = (ctx.gpr[20] | 0u); ctx.gpr[31] = (0x088CB470u); ctx.gpr[9] = (ctx.gpr[19] | 0u); goto L_088CB680; L_088CB470: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088CB50C; } goto L_088CB478; } L_088CB478: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(112))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(0))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB50C; } goto L_088CB490; } L_088CB490: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(0))); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(4))); ctx.gpr[5] = (std::bit_cast(ctx.fpr[13])); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(8))); ctx.gpr[6] = (std::bit_cast(ctx.fpr[14])); aot_mem.aot_store32(ctx.gpr[17] + static_cast(0), ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[17] + static_cast(4), ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[17] + static_cast(8), ctx.gpr[6]); ctx.gpr[4] = (ctx.gpr[17] + static_cast(16)); ctx.fpr[15] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(0))); ctx.gpr[5] = (std::bit_cast(ctx.fpr[15])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(4))); ctx.gpr[6] = (std::bit_cast(ctx.fpr[12])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(8))); ctx.gpr[7] = (std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[4] + static_cast(0), ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[4] + static_cast(4), ctx.gpr[6]); aot_mem.aot_store32(ctx.gpr[4] + static_cast(8), ctx.gpr[7]); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast(6))); aot_mem.aot_store8(ctx.gpr[17] + static_cast(30), static_cast(ctx.gpr[4])); ctx.gpr[4] = (0u | 0u); aot_mem.aot_store8(ctx.gpr[17] + static_cast(31), static_cast(ctx.gpr[4])); ctx.gpr[4] = (0u | 0u); aot_mem.aot_store8(ctx.gpr[17] + static_cast(28), static_cast(ctx.gpr[4])); ctx.gpr[4] = (0u | 0u); aot_mem.aot_store8(ctx.gpr[17] + static_cast(29), static_cast(ctx.gpr[4])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(112))); aot_mem.aot_store32(ctx.gpr[16] + static_cast(0), std::bit_cast(ctx.fpr[12])); { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088CB510; } goto L_088CB50C; } L_088CB50C: ctx.gpr[2] = (0u | 0u); goto L_088CB510; L_088CB510: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(116))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(120))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(124))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(140))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(144))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(148))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(152))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(160)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB540: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-64)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(32), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(36), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(40), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(44), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(48), ctx.gpr[31]); ctx.gpr[16] = (ctx.gpr[9] | 0u); ctx.gpr[17] = (ctx.gpr[6] | 0u); ctx.gpr[18] = (ctx.gpr[5] | 0u); ctx.gpr[31] = (0x088CB56Cu); // nop goto L_088CB3EC; L_088CB56C: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088CB5A0; } goto L_088CB574; } L_088CB574: { const bool branch_taken = ctx.gpr[16] == 0u; ctx.gpr[19] = (0u | 1u); if (branch_taken) { goto L_088CB598; } goto L_088CB57C; } L_088CB57C: ctx.gpr[7] = (ctx.gpr[16] + static_cast(16)); ctx.gpr[8] = (ctx.gpr[16] + static_cast(32)); ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (ctx.gpr[18] | 0u); ctx.gpr[31] = (0x088CB594u); ctx.gpr[6] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0134_entry, 134u, 312u, 0x08A1E040u>(ctx, &aot_mem) && ctx.pc == 0x088CB594u) goto L_088CB594; return; L_088CB594: aot_mem.aot_store8(ctx.gpr[16] + static_cast(48), static_cast(ctx.gpr[19])); goto L_088CB598; L_088CB598: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (ctx.gpr[19] | 0u); if (branch_taken) { goto L_088CB5A4; } goto L_088CB5A0; } L_088CB5A0: ctx.gpr[2] = (0u | 0u); goto L_088CB5A4; L_088CB5A4: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(32))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(36))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(40))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(44))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(64)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB5C0: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-128)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(100), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(104), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(108), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(112), ctx.gpr[31]); ctx.gpr[7] = (aot_mem.aot_load8(ctx.gpr[6] + static_cast(48))); ctx.gpr[18] = (ctx.gpr[4] | 0u); ctx.gpr[17] = (ctx.gpr[5] | 0u); { const bool branch_taken = ctx.gpr[7] == 0u; ctx.gpr[16] = (ctx.gpr[6] | 0u); if (branch_taken) { goto L_088CB658; } goto L_088CB5E8; } L_088CB5E8: { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[16] + static_cast(16)); ctx.gpr[7] = (ctx.gpr[16] + static_cast(32)); ctx.gpr[18] = (ctx.gpr[29] + static_cast(64)); ctx.gpr[9] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[10] = (ctx.gpr[29] + static_cast(96)); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088CB624u); ctx.gpr[8] = (ctx.gpr[18] | 0u); goto L_088CB680; L_088CB624: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088CB660; } goto L_088CB62C; } L_088CB62C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.gpr[5] = (std::bit_cast(ctx.fpr[13])); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.gpr[6] = (std::bit_cast(ctx.fpr[14])); aot_mem.aot_store32(ctx.gpr[17] + static_cast(0), ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[17] + static_cast(4), ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[17] + static_cast(8), ctx.gpr[6]); { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088CB668; } goto L_088CB658; } L_088CB658: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088CB668; } goto L_088CB660; } L_088CB660: aot_mem.aot_store8(ctx.gpr[16] + static_cast(48), static_cast(0u)); ctx.gpr[2] = (0u | 0u); goto L_088CB668; L_088CB668: ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(100))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(104))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(108))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(112))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(128)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB680: { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(16); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<2u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[5] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<4u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[6] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<5u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[7] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<6u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<9u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<10u, 3u>(vfpu_d); } ctx.execute_vfpu_cross_quat(17u, 10u, 9u, 3u); ctx.execute_vfpu_vdot_ct<110u, 17u, 17u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<110u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<110u, 1u>(vfpu_d); } ctx.execute_vfpu_vscl_ct<7u, 17u, 110u, 3u>(); ctx.execute_vfpu_vdot_ct<103u, 7u, 4u, 3u>(); ctx.execute_vfpu_vdot_ct<24u, 1u, 7u, 3u>(); ctx.execute_vfpu_vdot_ct<56u, 2u, 7u, 3u>(); ctx.execute_vfpu_vcmp_ct<24u, 103u, 1u, 7u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; ctx.execute_vfpu_vcmp_ct<56u, 103u, 1u, 7u>(); if (branch_taken) { goto L_088CB6D4; } goto L_088CB6C4; } L_088CB6C4: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) == 0u; // nop if (branch_taken) { goto L_088CB74C; } goto L_088CB6CC; } L_088CB6CC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CB6DC; } goto L_088CB6D4; } L_088CB6D4: { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 0u) & 1u) != 0u; // nop if (branch_taken) { goto L_088CB74C; } goto L_088CB6DC; } L_088CB6DC: { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<2u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<3u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<103u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<24u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 1u>(vfpu_d); } ctx.execute_vfpu_vdot_ct<56u, 3u, 7u, 3u>(); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<56u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / vfpu_s[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<56u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<24u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<56u, 1u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<24u, 1u>(vfpu_d); } ctx.execute_vfpu_vscl_ct<8u, 3u, 24u, 3u>(); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<8u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 3u>(vfpu_d); } { float vfpu_value[4]{}; ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<8u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<6u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<11u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<4u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<12u, 3u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<1u, 3u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<5u, 3u, 1u>(vfpu_t); for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] - vfpu_t[i]; ctx.write_vfpu_vector_with_destination_prefix_ct<13u, 3u>(vfpu_d); } ctx.execute_vfpu_cross_quat(19u, 9u, 10u, 3u); ctx.execute_vfpu_cross_quat(15u, 11u, 8u, 3u); ctx.execute_vfpu_cross_quat(18u, 9u, 12u, 3u); ctx.execute_vfpu_cross_quat(16u, 10u, 12u, 3u); ctx.execute_vfpu_cross_quat(14u, 11u, 13u, 3u); ctx.execute_vfpu_vdot_ct<102u, 18u, 19u, 3u>(); ctx.execute_vfpu_vdot_ct<101u, 16u, 17u, 3u>(); ctx.execute_vfpu_vdot_ct<100u, 14u, 15u, 3u>(); ctx.execute_vfpu_vcmp_ct<39u, 0u, 3u, 6u>(); { const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) == 0u; // nop if (branch_taken) { goto L_088CB74C; } goto L_088CB738; } L_088CB738: { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<1u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[8] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<7u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[9] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } aot_mem.aot_store32(ctx.gpr[10] + static_cast(0), ctx.vfpu_scalar_bits_ct<24u>()); jump_target = ctx.gpr[31]; ctx.gpr[2] = (0u + static_cast(1)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB74C: jump_target = ctx.gpr[31]; ctx.gpr[2] = (0u | 0u); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088CB75C: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-1024)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(976), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(980), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(984), std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(988), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(992), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(996), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1000), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1004), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1008), ctx.gpr[31]); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(0))); ctx.gpr[18] = (ctx.gpr[4] | 0u); ctx.gpr[17] = (ctx.gpr[5] | 0u); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); ctx.gpr[16] = (ctx.gpr[6] | 0u); if (branch_taken) { goto L_088CB7EC; } goto L_088CB7AC; } L_088CB7AC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB7EC; } goto L_088CB7CC; } L_088CB7CC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB7F4; } goto L_088CB7E4; } L_088CB7E4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CBBA4; } goto L_088CB7EC; } L_088CB7EC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CB7F4; } L_088CB7F4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB854; } goto L_088CB814; } L_088CB814: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB854; } goto L_088CB834; } L_088CB834: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB85C; } goto L_088CB84C; } L_088CB84C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CB96C; } goto L_088CB854; } L_088CB854: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CB85C; } L_088CB85C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB8BC; } goto L_088CB87C; } L_088CB87C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB8BC; } goto L_088CB89C; } L_088CB89C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB8C4; } goto L_088CB8B4; } L_088CB8B4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CB8F4; } goto L_088CB8BC; } L_088CB8BC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CB8C4; } L_088CB8C4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(68), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(64)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CB8F4; } L_088CB8F4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB93C; } goto L_088CB90C; } L_088CB90C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(80), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(84), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(88), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CB93C; } L_088CB93C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(96), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(100), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(104), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(96)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CB96C; } L_088CB96C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBA94; } goto L_088CB984; } L_088CB984: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB9E4; } goto L_088CB9A4; } L_088CB9A4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB9E4; } goto L_088CB9C4; } L_088CB9C4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CB9EC; } goto L_088CB9DC; } L_088CB9DC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CBA1C; } goto L_088CB9E4; } L_088CB9E4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CB9EC; } L_088CB9EC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(112), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(116), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(120), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(112)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBA1C; } L_088CBA1C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBA64; } goto L_088CBA34; } L_088CBA34: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(132), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(128)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBA64; } L_088CBA64: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(144), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(148), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(152), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(144)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBA94; } L_088CBA94: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBAF4; } goto L_088CBAB4; } L_088CBAB4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBAF4; } goto L_088CBAD4; } L_088CBAD4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBAFC; } goto L_088CBAEC; } L_088CBAEC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CBB2C; } goto L_088CBAF4; } L_088CBAF4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CBAFC; } L_088CBAFC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(160), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(164), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(168), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(160)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBB2C; } L_088CBB2C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBB74; } goto L_088CBB44; } L_088CBB44: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(176), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(180), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(184), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(176)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBB74; } L_088CBB74: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(192), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(196), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(200), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(192)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBBA4; } L_088CBBA4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(0))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBF6C; } goto L_088CBBBC; } L_088CBBBC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBC1C; } goto L_088CBBDC; } L_088CBBDC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBC1C; } goto L_088CBBFC; } L_088CBBFC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBC24; } goto L_088CBC14; } L_088CBC14: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CBD34; } goto L_088CBC1C; } L_088CBC1C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CBC24; } L_088CBC24: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBC84; } goto L_088CBC44; } L_088CBC44: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBC84; } goto L_088CBC64; } L_088CBC64: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBC8C; } goto L_088CBC7C; } L_088CBC7C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CBCBC; } goto L_088CBC84; } L_088CBC84: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CBC8C; } L_088CBC8C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(208), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(212), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(216), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(208)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBCBC; } L_088CBCBC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBD04; } goto L_088CBCD4; } L_088CBCD4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(224), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(228), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(232), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(224)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBD04; } L_088CBD04: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(240), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(244), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(248), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(240)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBD34; } L_088CBD34: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBE5C; } goto L_088CBD4C; } L_088CBD4C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBDAC; } goto L_088CBD6C; } L_088CBD6C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBDAC; } goto L_088CBD8C; } L_088CBD8C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBDB4; } goto L_088CBDA4; } L_088CBDA4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CBDE4; } goto L_088CBDAC; } L_088CBDAC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CBDB4; } L_088CBDB4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(256), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(260), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(264), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(256)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBDE4; } L_088CBDE4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBE2C; } goto L_088CBDFC; } L_088CBDFC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(272), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(276), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(280), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(272)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBE2C; } L_088CBE2C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(288), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(292), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(296), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(288)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBE5C; } L_088CBE5C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBEBC; } goto L_088CBE7C; } L_088CBE7C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBEBC; } goto L_088CBE9C; } L_088CBE9C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBEC4; } goto L_088CBEB4; } L_088CBEB4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088CBEF4; } goto L_088CBEBC; } L_088CBEBC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CBEC4; } L_088CBEC4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(304), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(308), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(312), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(304)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBEF4; } L_088CBEF4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBF3C; } goto L_088CBF0C; } L_088CBF0C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(320), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(324), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(328), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(320)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBF3C; } L_088CBF3C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(336), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(340), std::bit_cast(ctx.fpr[13])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(344), std::bit_cast(ctx.fpr[14])); ctx.gpr[4] = (ctx.gpr[29] + static_cast(336)); { const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); float vfpu_value[4]{ std::bit_cast(aot_mem.aot_load32(vfpu_address + 0u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 4u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 8u)), std::bit_cast(aot_mem.aot_load32(vfpu_address + 12u))}; ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(32)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast(0); aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast(vfpu_value[0])); aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast(vfpu_value[1])); aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast(vfpu_value[2])); aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast(vfpu_value[3])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 59u, 0x088CC970u>(ctx, &aot_mem); return; } goto L_088CBF6C; } L_088CBF6C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBFCC; } goto L_088CBF8C; } L_088CBF8C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBFCC; } goto L_088CBFAC; } L_088CBFAC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088CBFD4; } goto L_088CBFC4; } L_088CBFC4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 9u, 0x088CC0E4u>(ctx, &aot_mem); return; } goto L_088CBFCC; } L_088CBFCC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 62u, 0x088CCA8Cu>(ctx, &aot_mem); return; } goto L_088CBFD4; } L_088CBFD4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[14])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0050_entry, 50u, 4u, 0x088CC034u>(ctx, &aot_mem); return; } goto L_088CBFF4; } L_088CBFF4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[18] + static_cast(12))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; ctx.pc = 0x088CC000u; return; } void recomp_unit_0049(Runtime &rt, AllegrexContext &ctx) { auto aot_mem = rt.memory().aot_fast_view(); recomp_unit_0049_entry(rt, ctx, 0u, aot_mem); } void register_generated_unit_49(Runtime &runtime) { runtime.register_generated_unit(49u, 0x088C8000u, 16384u, &recomp_unit_0049, &recomp_unit_0049_entry); runtime.register_function(0x088C8004u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8020u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8038u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8040u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8048u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8060u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8080u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8088u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C80A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C80C0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C80D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C80E0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C80E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8100u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C812Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8134u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C813Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8150u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8180u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8198u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C81A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C81B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C81C8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C81D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C81E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C81ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C81F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8208u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8214u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8228u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8230u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8238u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C824Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8264u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C826Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8274u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8284u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C828Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8294u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C829Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82ACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82B4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82BCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82DCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82E4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82F0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C82F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8304u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C830Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8314u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C831Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8324u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8338u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8344u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C834Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8354u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C835Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8364u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C836Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C83A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C83C8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C83D0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C83E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C83F0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C83F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8410u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8418u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8430u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C84F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8524u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8550u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C857Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8590u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C85A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C85A8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C85B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C85C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C85ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8600u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C861Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8634u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8658u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8664u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8688u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8694u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C869Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C86A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C86B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C86D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C86E0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8704u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8710u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8718u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8720u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C872Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8750u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C875Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8780u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C878Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8794u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C879Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C87A8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C87CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C87D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C87FCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8808u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8810u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8818u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8824u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8848u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8854u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8878u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8884u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C888Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8894u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C88A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C88C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C88D0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C88D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C88FCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8920u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8924u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8958u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C89BCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C89D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C89E0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8A98u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8AA4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8AB0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8ACCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8ADCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8AE4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B00u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B14u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B24u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B3Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B44u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B4Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B54u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8B64u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8BCCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C10u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C1Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C38u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C44u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C54u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C6Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C70u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C78u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C88u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C94u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8C9Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8CA4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8CACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8CBCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8CC8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8CD0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8CD4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8D04u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8D68u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8D74u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8D8Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8D94u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8D98u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8DA0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8DA8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8DB0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8DB8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8DC0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E00u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E08u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E18u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E2Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E34u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E4Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E54u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E58u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8E64u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8EA8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8EB8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8EC8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8ED0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8ED8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8EE4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8EECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8EF0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F04u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F10u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F18u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F28u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F3Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F44u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F4Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F54u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F70u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F80u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F84u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8F9Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8FB8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8FCCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8FE0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8FE8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8FF0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C8FF8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9004u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C903Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C90ACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C90D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C90F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9104u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C910Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9128u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9140u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9158u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9170u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9180u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9190u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C91A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C91B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C91C0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C91C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9208u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C920Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C923Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9268u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C928Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C92B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C92D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C92D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C92ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C92F4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C930Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9324u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C932Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9344u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9348u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C935Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9374u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C937Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9394u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9398u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C93A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C93ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9468u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C947Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9484u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C94A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C94C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C94CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C94D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C94F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C94FCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9504u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9510u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9530u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9534u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9540u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9580u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9598u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C95A8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C95CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C95D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C95E0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C95E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C95ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9614u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C962Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9634u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9644u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9648u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9650u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C965Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9668u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C967Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9690u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9698u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C96B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C96C0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C96CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C96D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C96F0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C96FCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9718u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9720u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9728u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9730u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9748u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9750u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C975Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C976Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C977Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C978Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9794u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C97ACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C97BCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C97C8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C97D0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C97E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9800u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9808u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9820u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9838u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9840u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9860u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9868u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9870u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C987Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C989Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C98A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C98C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C98CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C98E4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C98F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9904u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9980u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9990u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C99A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C99B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C99C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C99CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C99D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C99F4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9A0Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9A14u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9A20u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9A24u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9A60u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9ACCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9B08u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9B5Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9B64u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9B80u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9B9Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9BA8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9BB8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9BC8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9BD0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9BD8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9BF4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C0Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C20u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C34u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C4Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C5Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C6Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C7Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C84u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9C90u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9CA0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9CA8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9CB0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9CC4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9CCCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9CE4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9CF8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D08u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D18u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D30u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D3Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D50u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D60u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D74u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9D90u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9DA4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9DB4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9DC4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9DCCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9DD4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9DE0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9DF0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E00u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E08u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E10u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E38u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E50u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E58u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E70u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E84u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E94u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9E9Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9EA4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9ECCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9EE8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F34u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F38u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F40u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F48u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F60u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F64u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F78u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9F90u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9FCCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088C9FF8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA028u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA044u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA058u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA074u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA080u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA084u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA0C0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA0CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA0D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA0ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA0F4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA110u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA118u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA120u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA134u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA144u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA168u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA178u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA198u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA1B4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA1D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA1DCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA1E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA21Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA228u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA22Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA25Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA26Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA280u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA288u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA2A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA2B4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA2CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA2D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA2ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA2F8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA300u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA31Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA334u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA338u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA340u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA354u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA39Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA450u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA45Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA470u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA47Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA4A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA4BCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA518u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA538u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA544u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA550u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA558u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA564u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA620u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA650u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA688u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA6B0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA6CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA6D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA6E0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA6E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA6F4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA72Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA734u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA740u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA748u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA750u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA76Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA774u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA790u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA798u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA79Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA7A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA7ACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA7D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA804u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA80Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA814u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA81Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA828u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA830u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA83Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA84Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA854u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA85Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA868u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA878u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA880u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA890u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA8A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA8B8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA8C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA8F4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA900u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA914u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA930u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA93Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA940u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA948u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA95Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA964u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA96Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA974u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA994u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA9C8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA9D0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CA9D8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAA04u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAA30u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAA38u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAA74u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAA80u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAAB0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAABCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAAD0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAAD8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAAE4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAB18u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAB48u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAB74u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAB80u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAB8Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAB94u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CABA8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CABD8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CABE0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC00u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC0Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC18u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC20u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC2Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC48u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC58u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC64u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC6Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC70u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC78u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC80u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAC94u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAD18u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAD1Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAD34u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAD48u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAE40u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAE44u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAE4Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAE6Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAE84u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAEA0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAEB8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAED4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAEDCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAEE4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAEECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAF00u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAF08u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAF0Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CAF14u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB02Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB058u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB060u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB068u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB07Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB084u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB088u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB090u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB0E0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB100u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB108u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB138u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB168u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB1ACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB1B4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB1B8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB1C0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB26Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB290u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB2A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB2B8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB2C0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB2C8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB2D0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB3E4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB3ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB448u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB470u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB478u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB490u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB50Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB510u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB540u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB56Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB574u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB57Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB594u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB598u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB5A0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB5A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB5C0u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB5E8u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB624u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB62Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB658u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB660u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB668u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB680u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB6C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB6CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB6D4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB6DCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB738u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB74Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB75Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB7ACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB7CCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB7E4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB7ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB7F4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB814u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB834u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB84Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB854u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB85Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB87Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB89Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB8B4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB8BCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB8C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB8F4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB90Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB93Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB96Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB984u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB9A4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB9C4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB9DCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB9E4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CB9ECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBA1Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBA34u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBA64u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBA94u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBAB4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBAD4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBAECu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBAF4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBAFCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBB2Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBB44u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBB74u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBBA4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBBBCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBBDCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBBFCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC14u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC1Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC24u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC44u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC64u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC7Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC84u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBC8Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBCBCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBCD4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBD04u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBD34u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBD4Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBD6Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBD8Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBDA4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBDACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBDB4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBDE4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBDFCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBE2Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBE5Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBE7Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBE9Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBEB4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBEBCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBEC4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBEF4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBF0Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBF3Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBF6Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBF8Cu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBFACu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBFC4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBFCCu, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBFD4u, &recomp_unit_0049, "recomp_unit_0049"); runtime.register_function(0x088CBFF4u, &recomp_unit_0049, "recomp_unit_0049"); } } // namespace psprecomp