#include "psprecomp/runtime.hpp" #include "generated_units.hpp" #include #include #include #include namespace psprecomp { static const std::uint16_t kEntryIds_recomp_unit_0062[4080] = { 1, 0, 0, 0, 2, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0, 4, 0, 5, 0, 6, 0, 0, 0, 7, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 9, 0, 0, 0, 0, 10, 0, 0, 0, 0, 11, 0, 0, 0, 0, 12, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 13, 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, 14, 0, 0, 15, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 16, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 17, 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, 18, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 19, 0, 0, 0, 20, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 21, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 22, 0, 23, 0, 24, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 25, 0, 0, 26, 0, 27, 0, 28, 0, 0, 29, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 30, 0, 31, 0, 32, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 33, 0, 34, 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, 35, 36, 0, 37, 0, 0, 0, 0, 38, 0, 0, 0, 0, 39, 0, 0, 40, 0, 41, 0, 0, 0, 42, 0, 43, 0, 0, 0, 44, 0, 0, 0, 0, 0, 45, 0, 46, 47, 48, 0, 49, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 50, 0, 51, 0, 0, 0, 0, 0, 0, 52, 53, 0, 0, 54, 0, 55, 0, 0, 0, 0, 0, 0, 0, 0, 56, 0, 0, 0, 0, 0, 0, 57, 0, 0, 0, 0, 0, 0, 0, 0, 0, 58, 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, 59, 0, 0, 0, 0, 60, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 61, 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, 62, 0, 0, 0, 0, 63, 0, 0, 64, 0, 0, 0, 0, 65, 0, 0, 66, 0, 67, 0, 0, 68, 0, 0, 0, 0, 69, 0, 0, 70, 0, 0, 0, 71, 0, 0, 0, 0, 72, 0, 0, 73, 0, 0, 0, 0, 74, 0, 0, 75, 0, 76, 0, 0, 77, 0, 0, 78, 0, 0, 79, 0, 0, 80, 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, 81, 0, 82, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 83, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 84, 0, 85, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 86, 0, 0, 0, 87, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 88, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 89, 0, 0, 0, 90, 0, 91, 92, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 93, 0, 94, 0, 0, 0, 0, 95, 0, 0, 0, 96, 0, 0, 0, 0, 0, 0, 97, 0, 98, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 99, 0, 0, 0, 0, 0, 0, 100, 0, 0, 0, 0, 0, 101, 0, 0, 0, 102, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 103, 0, 0, 104, 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, 105, 0, 0, 0, 0, 0, 0, 106, 0, 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0, 0, 0, 0, 0, 532, 0, 0, 0, 0, 0, 0, 533, 0, 534, 0, 0, 535, 0, 536, 0, 537, 0, 0, 0, 538, 0, 539, 0, 540, 0, 0, 0, 0, 541, 0, 542, 0, 543, 0, 544, 0, 545, 0, 546, 0, 0, 0, 547, 0, 0, 0, 0, 548, 0, 0, 549, 0, 550, 0, 551, 0, 0, 0, 0, 0, 552, 0, 553, 0, 0, 0, 0, 0, 0, 0, 0, 554, 0, 555, 0, 0, 556, 0, 557, 0, 558, 0, 0, 0, 559, 0, 0, 560, 0, 0, 0, 0, 0, 561, 0, 0, 0, 0, 0, 562, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 563, 0, 564, 0, 0, 0, 565, 0, 0, 0, 0, 0, 0, 0, 0, 566, 0, 0, 567, 0, 0, 0, 0, 568, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 569, 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, 570, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 571, 0, 572, 0, 573, 0, 0, 0, 0, 0, 0, 574, 0, 575, 0, 0, 576, 0, 577, 0, 0, 578, 0, 0, 0, 0, 579, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 580, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 581, 0, 0, 582, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 583, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 584, 0, 0, 0, 0, 0, 0, 0, 585, 0, 0, 0, 586, 0, 0, 0, 0, 587, 0, 0, 0, 0, 0, 0, 0, 588, 0, 0, 0, 589, 0, 0, 0, 590, 0, 0, 0, 0, 0, 0, 0, 0, 0, 591, 0, 592, 0, 0, 0, 0, 0, 593, 0, 594, 0, 0, 595, 0, 0, 0, 0, 596, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 597, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 598, 0, 0, 599, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 600, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 601, 0, 602, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 603, 0, 604, 0, 605, 0, 0, 0, 0, 0, 0, 0, 0, 0, 606, 0, 607, 0, 0, 0, 0, 0, 608, 0, 609, 0, 0, 610, 0, 0, 0, 0, 611, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 612, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 613, 0, 0, 614, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 615, 0, 0, 0, 0, 0, 0, 0, 0, 0, 616, 0, 617, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 618, 0, 619, 0, 620, 0, 0, 0, 0, 0, 0, 0, 0, 0, 621, 0, 622, 0, 0, 0, 0, 0, 623, 0, 624, 0, 0, 625, 0, 0, 0, 0, 626, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 627, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 628, 0, 0, 629, 0, 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, 632, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 633, 0, 634, 0, 635, 0, 0, 0, 0, 0, 0, 0, 0, 0, 636, 0, 637, 0, 0, 0, 0, 0, 638, 0, 639, 0, 0, 640, 0, 0, 0, 0, 0, 641, 0, 642, 0, 643, 0, 0, 644, 0, 645, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 646, 0, 0, 647, 0, 648, 0, 0, 0, 0, 0, 0, 0, 649, 0, 0, 0, 0, 0, 0, 0, 0, 0, 650, 0, 651, 0, 652, 0, 0, 0, 0, 0, 0, 653, 0, 654, 0, 655, 0, 656, 0, 657, 0, 0, 658, 0, 0, 0, 0, 659, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 660, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 661, 0, 0, 662, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 663, 0, 664, 0, 0, 0, 0, 0, 0, 665, 0, 0, 0, 666, 0, 0, 0, 0, 667, 0, 0, 668, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 669, 0, 670, 0, 0, 671, 0, 0, 0, 0, 0, 0, 0, 0, 672, }; void recomp_unit_0062_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 - 0x088FC004u; entry_id = (entry_delta < 16320u && (entry_delta & 3u) == 0u) ? kEntryIds_recomp_unit_0062[entry_delta >> 2u] : 0u; } switch (entry_id) { case 1u: goto L_088FC004; case 2u: goto L_088FC014; case 3u: goto L_088FC038; case 4u: goto L_088FC040; case 5u: goto L_088FC048; case 6u: goto L_088FC050; case 7u: goto L_088FC060; case 8u: goto L_088FC090; case 9u: goto L_088FC0C0; case 10u: goto L_088FC0D4; case 11u: goto L_088FC0E8; case 12u: goto L_088FC0FC; case 13u: goto L_088FC130; case 14u: goto L_088FC1D8; case 15u: goto L_088FC1E4; case 16u: goto L_088FC214; case 17u: goto L_088FC250; case 18u: goto L_088FC310; case 19u: goto L_088FC360; case 20u: goto L_088FC370; case 21u: goto L_088FC3C0; case 22u: goto L_088FC3F8; case 23u: goto L_088FC400; case 24u: goto L_088FC408; case 25u: goto L_088FC468; case 26u: goto L_088FC474; case 27u: goto L_088FC47C; case 28u: goto L_088FC484; case 29u: goto L_088FC490; case 30u: goto L_088FC4C8; case 31u: goto L_088FC4D0; case 32u: goto L_088FC4D8; case 33u: goto L_088FC510; case 34u: goto L_088FC518; case 35u: goto L_088FC588; case 36u: goto L_088FC58C; case 37u: goto L_088FC594; case 38u: goto L_088FC5A8; case 39u: goto L_088FC5BC; case 40u: goto L_088FC5C8; case 41u: goto L_088FC5D0; case 42u: goto L_088FC5E0; case 43u: goto L_088FC5E8; case 44u: goto L_088FC5F8; case 45u: goto L_088FC610; case 46u: goto L_088FC618; case 47u: goto L_088FC61C; case 48u: goto L_088FC620; case 49u: goto L_088FC628; case 50u: goto L_088FC654; case 51u: goto L_088FC65C; case 52u: goto L_088FC678; case 53u: goto L_088FC67C; case 54u: goto L_088FC688; case 55u: goto L_088FC690; case 56u: goto L_088FC6B4; case 57u: goto L_088FC6D0; case 58u: goto L_088FC6F8; case 59u: goto L_088FC77C; case 60u: goto L_088FC790; case 61u: goto L_088FC7DC; case 62u: goto L_088FC8C0; case 63u: goto L_088FC8D4; case 64u: goto L_088FC8E0; case 65u: goto L_088FC8F4; case 66u: goto L_088FC900; case 67u: goto L_088FC908; case 68u: goto L_088FC914; case 69u: goto L_088FC928; case 70u: goto L_088FC934; case 71u: goto L_088FC944; case 72u: goto L_088FC958; case 73u: goto L_088FC964; case 74u: goto L_088FC978; case 75u: goto L_088FC984; case 76u: goto L_088FC98C; case 77u: goto L_088FC998; case 78u: goto L_088FC9A4; case 79u: goto L_088FC9B0; case 80u: goto L_088FC9BC; case 81u: goto L_088FCA64; case 82u: goto L_088FCA6C; case 83u: goto L_088FCAB0; case 84u: goto L_088FCAEC; case 85u: goto L_088FCAF4; case 86u: goto L_088FCB40; case 87u: goto L_088FCB50; case 88u: goto L_088FCB7C; case 89u: goto L_088FCBAC; case 90u: goto L_088FCBBC; case 91u: goto L_088FCBC4; case 92u: goto L_088FCBC8; case 93u: goto L_088FCC04; case 94u: goto L_088FCC0C; case 95u: goto L_088FCC20; case 96u: goto L_088FCC30; case 97u: goto L_088FCC4C; case 98u: goto L_088FCC54; case 99u: goto L_088FCCA8; case 100u: goto L_088FCCC4; case 101u: goto L_088FCCDC; case 102u: goto L_088FCCEC; case 103u: goto L_088FCD4C; case 104u: goto L_088FCD58; case 105u: goto L_088FCDFC; case 106u: goto L_088FCE18; case 107u: goto L_088FCE20; case 108u: goto L_088FCE30; case 109u: goto L_088FCE3C; case 110u: goto L_088FCE44; case 111u: goto L_088FCE58; case 112u: goto L_088FCE64; case 113u: goto L_088FCF18; case 114u: goto L_088FCF30; case 115u: goto L_088FCF88; case 116u: goto L_088FCFA8; case 117u: goto L_088FCFB0; case 118u: goto L_088FCFD0; case 119u: goto L_088FCFFC; case 120u: goto L_088FD010; case 121u: goto L_088FD014; case 122u: goto L_088FD028; case 123u: goto L_088FD054; case 124u: goto L_088FD068; case 125u: goto L_088FD06C; case 126u: goto L_088FD07C; case 127u: goto L_088FD088; case 128u: goto L_088FD090; case 129u: goto L_088FD0CC; case 130u: goto L_088FD0D8; case 131u: goto L_088FD0E0; case 132u: goto L_088FD0E4; case 133u: goto L_088FD158; case 134u: goto L_088FD1C8; case 135u: goto L_088FD1F4; case 136u: goto L_088FD200; case 137u: goto L_088FD218; case 138u: goto L_088FD220; case 139u: goto L_088FD228; case 140u: goto L_088FD234; case 141u: goto L_088FD244; case 142u: goto L_088FD258; case 143u: goto L_088FD268; case 144u: goto L_088FD270; case 145u: goto L_088FD2BC; case 146u: goto L_088FD2C4; case 147u: goto L_088FD2DC; case 148u: goto L_088FD2EC; case 149u: goto L_088FD2F4; case 150u: goto L_088FD2FC; case 151u: goto L_088FD304; case 152u: goto L_088FD30C; case 153u: goto L_088FD314; case 154u: goto L_088FD31C; case 155u: goto L_088FD324; case 156u: goto L_088FD32C; case 157u: goto L_088FD33C; case 158u: goto L_088FD350; case 159u: goto L_088FD35C; case 160u: goto L_088FD390; case 161u: goto L_088FD398; case 162u: goto L_088FD3A4; case 163u: goto L_088FD404; case 164u: goto L_088FD40C; case 165u: goto L_088FD414; case 166u: goto L_088FD41C; case 167u: goto L_088FD424; case 168u: goto L_088FD450; case 169u: goto L_088FD480; case 170u: goto L_088FD488; case 171u: goto L_088FD490; case 172u: goto L_088FD498; case 173u: goto L_088FD4A0; case 174u: goto L_088FD4A8; case 175u: goto L_088FD4B0; case 176u: goto L_088FD4C0; case 177u: goto L_088FD4D4; case 178u: goto L_088FD4E0; case 179u: goto L_088FD514; case 180u: goto L_088FD51C; case 181u: goto L_088FD528; case 182u: goto L_088FD588; case 183u: goto L_088FD590; case 184u: goto L_088FD598; case 185u: goto L_088FD5A0; case 186u: goto L_088FD5E0; case 187u: goto L_088FD5EC; case 188u: goto L_088FD5F8; case 189u: goto L_088FD628; case 190u: goto L_088FD630; case 191u: goto L_088FD65C; case 192u: goto L_088FD68C; case 193u: goto L_088FD694; case 194u: goto L_088FD69C; case 195u: goto L_088FD6A4; case 196u: goto L_088FD6B0; case 197u: goto L_088FD6E4; case 198u: goto L_088FD6EC; case 199u: goto L_088FD6FC; case 200u: goto L_088FD714; case 201u: goto L_088FD754; case 202u: goto L_088FD75C; case 203u: goto L_088FD764; case 204u: goto L_088FD76C; case 205u: goto L_088FD798; case 206u: goto L_088FD7A0; case 207u: goto L_088FD7B8; case 208u: goto L_088FD7C0; case 209u: goto L_088FD7C8; case 210u: goto L_088FD7D0; case 211u: goto L_088FD7D8; case 212u: goto L_088FD7E0; case 213u: goto L_088FD7F0; case 214u: goto L_088FD804; case 215u: goto L_088FD810; case 216u: goto L_088FD844; case 217u: goto L_088FD84C; case 218u: goto L_088FD858; case 219u: goto L_088FD8B8; case 220u: goto L_088FD8C0; case 221u: goto L_088FD8C8; case 222u: goto L_088FD8D0; case 223u: goto L_088FD8D8; case 224u: goto L_088FD904; case 225u: goto L_088FD90C; case 226u: goto L_088FD924; case 227u: goto L_088FD92C; case 228u: goto L_088FD934; case 229u: goto L_088FD94C; case 230u: goto L_088FD954; case 231u: goto L_088FD95C; case 232u: goto L_088FD964; case 233u: goto L_088FD96C; case 234u: goto L_088FD974; case 235u: goto L_088FD97C; case 236u: goto L_088FD984; case 237u: goto L_088FD98C; case 238u: goto L_088FD99C; case 239u: goto L_088FD9B0; case 240u: goto L_088FD9B8; case 241u: goto L_088FDA04; case 242u: goto L_088FDA0C; case 243u: goto L_088FDA24; case 244u: goto L_088FDA34; case 245u: goto L_088FDA3C; case 246u: goto L_088FDA44; case 247u: goto L_088FDA4C; case 248u: goto L_088FDA54; case 249u: goto L_088FDA60; case 250u: goto L_088FDA94; case 251u: goto L_088FDA9C; case 252u: goto L_088FDAA8; case 253u: goto L_088FDB08; case 254u: goto L_088FDB10; case 255u: goto L_088FDB18; case 256u: goto L_088FDB20; case 257u: goto L_088FDB4C; case 258u: goto L_088FDB54; case 259u: goto L_088FDB60; case 260u: goto L_088FDB94; case 261u: goto L_088FDB9C; case 262u: goto L_088FDBA8; case 263u: goto L_088FDC08; case 264u: goto L_088FDC10; case 265u: goto L_088FDC18; case 266u: goto L_088FDC20; case 267u: goto L_088FDC4C; case 268u: goto L_088FDC54; case 269u: goto L_088FDC60; case 270u: goto L_088FDC94; case 271u: goto L_088FDC9C; case 272u: goto L_088FDCA8; case 273u: goto L_088FDD08; case 274u: goto L_088FDD10; case 275u: goto L_088FDD18; case 276u: goto L_088FDD20; case 277u: goto L_088FDD4C; case 278u: goto L_088FDD54; case 279u: goto L_088FDD60; case 280u: goto L_088FDD94; case 281u: goto L_088FDD9C; case 282u: goto L_088FDDA8; case 283u: goto L_088FDE08; case 284u: goto L_088FDE10; case 285u: goto L_088FDE18; case 286u: goto L_088FDE20; case 287u: goto L_088FDE4C; case 288u: goto L_088FDE54; case 289u: goto L_088FDE6C; case 290u: goto L_088FDE74; case 291u: goto L_088FDE7C; case 292u: goto L_088FDE84; case 293u: goto L_088FDE8C; case 294u: goto L_088FDE94; case 295u: goto L_088FDEE0; case 296u: goto L_088FDEE8; case 297u: goto L_088FDF00; case 298u: goto L_088FDF10; case 299u: goto L_088FDF18; case 300u: goto L_088FDF20; case 301u: goto L_088FDF28; case 302u: goto L_088FDF30; case 303u: goto L_088FDF38; case 304u: goto L_088FDF44; case 305u: goto L_088FDF78; case 306u: goto L_088FDF80; case 307u: goto L_088FDF8C; case 308u: goto L_088FDFEC; case 309u: goto L_088FDFF4; case 310u: goto L_088FDFFC; case 311u: goto L_088FE004; case 312u: goto L_088FE030; case 313u: goto L_088FE060; case 314u: goto L_088FE068; case 315u: goto L_088FE070; case 316u: goto L_088FE078; case 317u: goto L_088FE080; case 318u: goto L_088FE088; case 319u: goto L_088FE094; case 320u: goto L_088FE0C8; case 321u: goto L_088FE0D0; case 322u: goto L_088FE0DC; case 323u: goto L_088FE13C; case 324u: goto L_088FE16C; case 325u: goto L_088FE174; case 326u: goto L_088FE17C; case 327u: goto L_088FE184; case 328u: goto L_088FE18C; case 329u: goto L_088FE194; case 330u: goto L_088FE19C; case 331u: goto L_088FE1A8; case 332u: goto L_088FE1DC; case 333u: goto L_088FE1E4; case 334u: goto L_088FE1F0; case 335u: goto L_088FE250; case 336u: goto L_088FE258; case 337u: goto L_088FE260; case 338u: goto L_088FE268; case 339u: goto L_088FE294; case 340u: goto L_088FE2C4; case 341u: goto L_088FE2CC; case 342u: goto L_088FE2D4; case 343u: goto L_088FE2DC; case 344u: goto L_088FE2E8; case 345u: goto L_088FE31C; case 346u: goto L_088FE324; case 347u: goto L_088FE330; case 348u: goto L_088FE388; case 349u: goto L_088FE3B8; case 350u: goto L_088FE3C0; case 351u: goto L_088FE3C8; case 352u: goto L_088FE3D0; case 353u: goto L_088FE3D8; case 354u: goto L_088FE3E4; case 355u: goto L_088FE418; case 356u: goto L_088FE420; case 357u: goto L_088FE42C; case 358u: goto L_088FE48C; case 359u: goto L_088FE4BC; case 360u: goto L_088FE4C4; case 361u: goto L_088FE4CC; case 362u: goto L_088FE4D4; case 363u: goto L_088FE4DC; case 364u: goto L_088FE4F4; case 365u: goto L_088FE4FC; case 366u: goto L_088FE500; case 367u: goto L_088FE518; case 368u: goto L_088FE550; case 369u: goto L_088FE568; case 370u: goto L_088FE570; case 371u: goto L_088FE57C; case 372u: goto L_088FE58C; case 373u: goto L_088FE5A0; case 374u: goto L_088FE5B0; case 375u: goto L_088FE5B8; case 376u: goto L_088FE61C; case 377u: goto L_088FE628; case 378u: goto L_088FE630; case 379u: goto L_088FE66C; case 380u: goto L_088FE674; case 381u: goto L_088FE67C; case 382u: goto L_088FE684; case 383u: goto L_088FE68C; case 384u: goto L_088FE6A8; case 385u: goto L_088FE6B0; case 386u: goto L_088FE6B8; case 387u: goto L_088FE6C4; case 388u: goto L_088FE6D8; case 389u: goto L_088FE70C; case 390u: goto L_088FE738; case 391u: goto L_088FE744; case 392u: goto L_088FE778; case 393u: goto L_088FE7B4; case 394u: goto L_088FE7BC; case 395u: goto L_088FE7C4; case 396u: goto L_088FE7CC; case 397u: goto L_088FE7DC; case 398u: goto L_088FE7F0; case 399u: goto L_088FE810; case 400u: goto L_088FE820; case 401u: goto L_088FE834; case 402u: goto L_088FE83C; case 403u: goto L_088FE85C; case 404u: goto L_088FE86C; case 405u: goto L_088FE87C; case 406u: goto L_088FE888; case 407u: goto L_088FE8B4; case 408u: goto L_088FE8BC; case 409u: goto L_088FE8C8; case 410u: goto L_088FE920; case 411u: goto L_088FE928; case 412u: goto L_088FE930; case 413u: goto L_088FE938; case 414u: goto L_088FE964; case 415u: goto L_088FE994; case 416u: goto L_088FE99C; case 417u: goto L_088FE9A4; case 418u: goto L_088FE9CC; case 419u: goto L_088FE9D4; case 420u: goto L_088FE9EC; case 421u: goto L_088FE9F4; case 422u: goto L_088FE9FC; case 423u: goto L_088FEA04; case 424u: goto L_088FEA0C; case 425u: goto L_088FEA1C; case 426u: goto L_088FEA30; case 427u: goto L_088FEA3C; case 428u: goto L_088FEA50; case 429u: goto L_088FEA84; case 430u: goto L_088FEAB0; case 431u: goto L_088FEAB8; case 432u: goto L_088FEAC4; case 433u: goto L_088FEAF8; case 434u: goto L_088FEB34; case 435u: goto L_088FEB54; case 436u: goto L_088FEB64; case 437u: goto L_088FEB78; case 438u: goto L_088FEB98; case 439u: goto L_088FEBA8; case 440u: goto L_088FEBB8; case 441u: goto L_088FEBC4; case 442u: goto L_088FEBF0; case 443u: goto L_088FEBF8; case 444u: goto L_088FEC04; case 445u: goto L_088FEC5C; case 446u: goto L_088FEC64; case 447u: goto L_088FEC6C; case 448u: goto L_088FEC74; case 449u: goto L_088FECA0; case 450u: goto L_088FECD0; case 451u: goto L_088FECD8; case 452u: goto L_088FECE0; case 453u: goto L_088FED08; case 454u: goto L_088FED10; case 455u: goto L_088FED28; case 456u: goto L_088FED30; case 457u: goto L_088FED3C; case 458u: goto L_088FED50; case 459u: goto L_088FED84; case 460u: goto L_088FEDB0; case 461u: goto L_088FEDBC; case 462u: goto L_088FEDF0; case 463u: goto L_088FEE2C; case 464u: goto L_088FEE48; case 465u: goto L_088FEE74; case 466u: goto L_088FEE7C; case 467u: goto L_088FEE84; case 468u: goto L_088FEEAC; case 469u: goto L_088FEEB4; case 470u: goto L_088FEECC; case 471u: goto L_088FEED4; case 472u: goto L_088FEEE0; case 473u: goto L_088FEEF8; case 474u: goto L_088FEF00; case 475u: goto L_088FEF0C; case 476u: goto L_088FEF20; case 477u: goto L_088FEF54; case 478u: goto L_088FEF80; case 479u: goto L_088FEF8C; case 480u: goto L_088FEFC0; case 481u: goto L_088FEFFC; case 482u: goto L_088FF01C; case 483u: goto L_088FF02C; case 484u: goto L_088FF040; case 485u: goto L_088FF060; case 486u: goto L_088FF070; case 487u: goto L_088FF080; case 488u: goto L_088FF08C; case 489u: goto L_088FF0B8; case 490u: goto L_088FF0C0; case 491u: goto L_088FF0C8; case 492u: goto L_088FF0F0; case 493u: goto L_088FF0F8; case 494u: goto L_088FF110; case 495u: goto L_088FF118; case 496u: goto L_088FF124; case 497u: goto L_088FF13C; case 498u: goto L_088FF144; case 499u: goto L_088FF14C; case 500u: goto L_088FF15C; case 501u: goto L_088FF164; case 502u: goto L_088FF16C; case 503u: goto L_088FF174; case 504u: goto L_088FF17C; case 505u: goto L_088FF184; case 506u: goto L_088FF18C; case 507u: goto L_088FF194; case 508u: goto L_088FF19C; case 509u: goto L_088FF1AC; case 510u: goto L_088FF1C0; case 511u: goto L_088FF1D4; case 512u: goto L_088FF1DC; case 513u: goto L_088FF1E4; case 514u: goto L_088FF1FC; case 515u: goto L_088FF204; case 516u: goto L_088FF228; case 517u: goto L_088FF230; case 518u: goto L_088FF23C; case 519u: goto L_088FF244; case 520u: goto L_088FF24C; case 521u: goto L_088FF25C; case 522u: goto L_088FF270; case 523u: goto L_088FF27C; case 524u: goto L_088FF294; case 525u: goto L_088FF2AC; case 526u: goto L_088FF2E8; case 527u: goto L_088FF2F0; case 528u: goto L_088FF300; case 529u: goto L_088FF324; case 530u: goto L_088FF330; case 531u: goto L_088FF344; case 532u: goto L_088FF370; case 533u: goto L_088FF38C; case 534u: goto L_088FF394; case 535u: goto L_088FF3A0; case 536u: goto L_088FF3A8; case 537u: goto L_088FF3B0; case 538u: goto L_088FF3C0; case 539u: goto L_088FF3C8; case 540u: goto L_088FF3D0; case 541u: goto L_088FF3E4; case 542u: goto L_088FF3EC; case 543u: goto L_088FF3F4; case 544u: goto L_088FF3FC; case 545u: goto L_088FF404; case 546u: goto L_088FF40C; case 547u: goto L_088FF41C; case 548u: goto L_088FF430; case 549u: goto L_088FF43C; case 550u: goto L_088FF444; case 551u: goto L_088FF44C; case 552u: goto L_088FF464; case 553u: goto L_088FF46C; case 554u: goto L_088FF490; case 555u: goto L_088FF498; case 556u: goto L_088FF4A4; case 557u: goto L_088FF4AC; case 558u: goto L_088FF4B4; case 559u: goto L_088FF4C4; case 560u: goto L_088FF4D0; case 561u: goto L_088FF4E8; case 562u: goto L_088FF500; case 563u: goto L_088FF53C; case 564u: goto L_088FF544; case 565u: goto L_088FF554; case 566u: goto L_088FF578; case 567u: goto L_088FF584; case 568u: goto L_088FF598; case 569u: goto L_088FF5C4; case 570u: goto L_088FF630; case 571u: goto L_088FF66C; case 572u: goto L_088FF674; case 573u: goto L_088FF67C; case 574u: goto L_088FF698; case 575u: goto L_088FF6A0; case 576u: goto L_088FF6AC; case 577u: goto L_088FF6B4; case 578u: goto L_088FF6C0; case 579u: goto L_088FF6D4; case 580u: goto L_088FF708; case 581u: goto L_088FF734; case 582u: goto L_088FF740; case 583u: goto L_088FF774; case 584u: goto L_088FF7A0; case 585u: goto L_088FF7C0; case 586u: goto L_088FF7D0; case 587u: goto L_088FF7E4; case 588u: goto L_088FF804; case 589u: goto L_088FF814; case 590u: goto L_088FF824; case 591u: goto L_088FF84C; case 592u: goto L_088FF854; case 593u: goto L_088FF86C; case 594u: goto L_088FF874; case 595u: goto L_088FF880; case 596u: goto L_088FF894; case 597u: goto L_088FF8C8; case 598u: goto L_088FF8F4; case 599u: goto L_088FF900; case 600u: goto L_088FF934; case 601u: goto L_088FF964; case 602u: goto L_088FF96C; case 603u: goto L_088FF998; case 604u: goto L_088FF9A0; case 605u: goto L_088FF9A8; case 606u: goto L_088FF9D0; case 607u: goto L_088FF9D8; case 608u: goto L_088FF9F0; case 609u: goto L_088FF9F8; case 610u: goto L_088FFA04; case 611u: goto L_088FFA18; case 612u: goto L_088FFA4C; case 613u: goto L_088FFA78; case 614u: goto L_088FFA84; case 615u: goto L_088FFAB8; case 616u: goto L_088FFAE0; case 617u: goto L_088FFAE8; case 618u: goto L_088FFB14; case 619u: goto L_088FFB1C; case 620u: goto L_088FFB24; case 621u: goto L_088FFB4C; case 622u: goto L_088FFB54; case 623u: goto L_088FFB6C; case 624u: goto L_088FFB74; case 625u: goto L_088FFB80; case 626u: goto L_088FFB94; case 627u: goto L_088FFBC8; case 628u: goto L_088FFBF4; case 629u: goto L_088FFC00; case 630u: goto L_088FFC34; case 631u: goto L_088FFC64; case 632u: goto L_088FFC6C; case 633u: goto L_088FFC98; case 634u: goto L_088FFCA0; case 635u: goto L_088FFCA8; case 636u: goto L_088FFCD0; case 637u: goto L_088FFCD8; case 638u: goto L_088FFCF0; case 639u: goto L_088FFCF8; case 640u: goto L_088FFD04; case 641u: goto L_088FFD1C; case 642u: goto L_088FFD24; case 643u: goto L_088FFD2C; case 644u: goto L_088FFD38; case 645u: goto L_088FFD40; case 646u: goto L_088FFDA4; case 647u: goto L_088FFDB0; case 648u: goto L_088FFDB8; case 649u: goto L_088FFDD8; case 650u: goto L_088FFE00; case 651u: goto L_088FFE08; case 652u: goto L_088FFE10; case 653u: goto L_088FFE2C; case 654u: goto L_088FFE34; case 655u: goto L_088FFE3C; case 656u: goto L_088FFE44; case 657u: goto L_088FFE4C; case 658u: goto L_088FFE58; case 659u: goto L_088FFE6C; case 660u: goto L_088FFEA0; case 661u: goto L_088FFECC; case 662u: goto L_088FFED8; case 663u: goto L_088FFF08; case 664u: goto L_088FFF10; case 665u: goto L_088FFF2C; case 666u: goto L_088FFF3C; case 667u: goto L_088FFF50; case 668u: goto L_088FFF5C; case 669u: goto L_088FFF88; case 670u: goto L_088FFF90; case 671u: goto L_088FFF9C; case 672u: goto L_088FFFC0; default: if (local_transfers == 0u) rt.unsupported(ctx.pc, 0u, "invalid internal function entry"); else ctx.pc = local_pc; return; } } L_088FC004: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(504))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FC0D4; } goto L_088FC014; } L_088FC014: ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(248), std::bit_cast(ctx.fpr[12])); ctx.gpr[18] = (ctx.gpr[29] + static_cast(240)); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(504))); ctx.gpr[31] = (0x088FC038u); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 247u, 0x089B90A4u>(ctx, &aot_mem) && ctx.pc == 0x088FC038u) goto L_088FC038; return; L_088FC038: ctx.gpr[31] = (0x088FC040u); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 513u, 0x08A065D0u>(ctx, &aot_mem) && ctx.pc == 0x088FC040u) goto L_088FC040; return; L_088FC040: ctx.gpr[31] = (0x088FC048u); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 755u, 0x08A2F898u>(ctx, &aot_mem) && ctx.pc == 0x088FC048u) goto L_088FC048; return; L_088FC048: ctx.gpr[31] = (0x088FC050u); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 762u, 0x08A2F8E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC050u) goto L_088FC050; return; L_088FC050: ctx.gpr[4] = (ctx.gpr[19] + static_cast(784)); ctx.gpr[5] = (ctx.gpr[18] | 0u); ctx.gpr[31] = (0x088FC060u); ctx.gpr[6] = (0u | 17u); if (rt.invoke_chained_direct<&recomp_unit_0169_entry, 169u, 42u, 0x08AA83C4u>(ctx, &aot_mem) && ctx.pc == 0x088FC060u) goto L_088FC060; return; L_088FC060: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[5] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(22328))); ctx.gpr[5] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[5]); { 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, 28u, 3u>(); ctx.gpr[19] = (ctx.gpr[29] + static_cast(224)); { 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.gpr[4] = (ctx.gpr[18] | 0u); ctx.gpr[31] = (0x088FC090u); ctx.gpr[5] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FC090u) goto L_088FC090; return; L_088FC090: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[5] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(22320))); ctx.gpr[5] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[5]); ctx.gpr[4] = (ctx.gpr[4] + static_cast(32)); { 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, 28u, 3u>(); { 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.gpr[4] = (ctx.gpr[18] | 0u); ctx.gpr[31] = (0x088FC0C0u); ctx.gpr[5] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FC0C0u) goto L_088FC0C0; return; L_088FC0C0: { 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[16] + static_cast(432)); { 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) { goto L_088FC0E8; } goto L_088FC0D4; } L_088FC0D4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(440))); ctx.gpr[4] = (16128u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[16] + static_cast(440), std::bit_cast(ctx.fpr[12])); goto L_088FC0E8; L_088FC0E8: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(836))); ctx.gpr[5] = (0u | 5u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088FC130; } goto L_088FC0FC; } L_088FC0FC: ctx.gpr[4] = (ctx.gpr[16] + static_cast(432)); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[6] = (16051u << 16u); ctx.gpr[6] = (ctx.gpr[6] | 13107u); ctx.fpr[12] = std::bit_cast(ctx.gpr[6]); ctx.gpr[6] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[6]); { 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_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[5] = (ctx.gpr[29] + static_cast(256)); { 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] = (0x088FC130u); // nop if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 566u, 0x08927554u>(ctx, &aot_mem) && ctx.pc == 0x088FC130u) goto L_088FC130; return; L_088FC130: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[4] = (ctx.gpr[4] + static_cast(32)); { 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[16] + static_cast(464)); { 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<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[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[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); ctx.gpr[5] = (ctx.gpr[5] + static_cast(16)); { 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); } { 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])); } { 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); } { 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[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])); } { 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); } { 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<2u, 4u>(vfpu_value); } ctx.execute_vfpu_cross_quat(0u, 1u, 2u, 3u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(208)); { 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); } { 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])); } { 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); } { 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[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[31] = (0x088FC1D8u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(596))); if (rt.invoke_chained_direct<&recomp_unit_0039_entry, 39u, 126u, 0x088A08E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC1D8u) goto L_088FC1D8; return; L_088FC1D8: ctx.gpr[4] = (0u | 2u); { const bool branch_taken = ctx.gpr[2] != ctx.gpr[4]; // nop if (branch_taken) { goto L_088FC214; } goto L_088FC1E4; } L_088FC1E4: ctx.gpr[4] = (ctx.gpr[16] + static_cast(432)); ctx.gpr[5] = (16313u << 16u); ctx.gpr[5] = (ctx.gpr[5] | 39322u); ctx.fpr[12] = std::bit_cast(ctx.gpr[5]); ctx.gpr[5] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[5]); { 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<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[5] = (ctx.gpr[29] + static_cast(272)); { 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] = (0x088FC214u); // nop if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 566u, 0x08927554u>(ctx, &aot_mem) && ctx.pc == 0x088FC214u) goto L_088FC214; return; L_088FC214: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(440))); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(444))); ctx.fpr[24] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(448))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(452))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(456))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(460))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(464))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(468))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(472))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(476))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(480))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(484))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(488))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(496)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088FC250: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-576)); 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(516), std::bit_cast(ctx.fpr[26])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(520), std::bit_cast(ctx.fpr[28])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(524), std::bit_cast(ctx.fpr[30])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(528), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(532), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(536), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(540), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(544), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(548), ctx.gpr[21]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(552), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(556), ctx.gpr[23]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(560), ctx.gpr[30]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(564), ctx.gpr[31]); ctx.gpr[30] = (ctx.gpr[4] | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(500), ctx.gpr[6]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(496), ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), 0u); ctx.gpr[4] = (0u | 0u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[30] + static_cast(196))); aot_mem.aot_store8(ctx.gpr[29] + static_cast(492), static_cast(ctx.gpr[4])); ctx.gpr[4] = (16457u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 4059u); 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.gpr[4] = (17204u << 16u); ctx.fpr[14] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[14]; ctx.gpr[4] = (16128u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[12]; const float ft = ctx.fpr[15]; 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[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]); { const float vfpu_constant = std::bit_cast(0x3F22F983u); const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant}; ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 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<64u, 1u>(vfpu_d); } ctx.execute_vfpu_vrot(1u, 64u, 2u, 4u); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<33u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 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<0u, 1u>(vfpu_d); } ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<0u>()); ctx.fpr[20] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (2230u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(-7960)); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(480), ctx.gpr[4]); ctx.gpr[31] = (0x088FC310u); ctx.gpr[4] = (ctx.gpr[5] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC310u) goto L_088FC310; return; L_088FC310: ctx.gpr[4] = (ctx.gpr[30] + static_cast(432)); { 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[5] = (ctx.gpr[29] + static_cast(160)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(484), ctx.gpr[4]); { 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[20] = (ctx.gpr[29] + static_cast(144)); ctx.gpr[18] = (ctx.gpr[29] + static_cast(224)); ctx.gpr[22] = (2269u << 16u); ctx.gpr[17] = (ctx.gpr[22] + static_cast(-4528)); ctx.gpr[19] = (ctx.gpr[29] + static_cast(240)); ctx.gpr[23] = (2227u << 16u); ctx.gpr[21] = (0u | 4u); ctx.gpr[4] = (ctx.gpr[30] + static_cast(416)); ctx.fpr[26] = std::bit_cast(0u); ctx.gpr[5] = (16192u << 16u); ctx.fpr[28] = std::bit_cast(ctx.gpr[5]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(488), ctx.gpr[4]); ctx.gpr[4] = (15897u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 39322u); ctx.fpr[30] = std::bit_cast(ctx.gpr[4]); goto L_088FC360; L_088FC360: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(480))); ctx.gpr[16] = (0u | 0u); ctx.gpr[31] = (0x088FC370u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC370u) goto L_088FC370; return; L_088FC370: ctx.fpr[22] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (2227u << 16u); { const float fs = ctx.fpr[22]; const float ft = ctx.fpr[20]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[24] = std::bit_cast(0x7FC00000u); else ctx.fpr[24] = fs * ft; } ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(23512))); { const float fs = ctx.fpr[24]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[24] = std::bit_cast(0x7FC00000u); else ctx.fpr[24] = fs * ft; } ctx.gpr[4] = (std::bit_cast(ctx.fpr[22])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(488))); { 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, 28u, 3u>(); ctx.gpr[4] = (ctx.gpr[29] + static_cast(208)); { 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[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(484))); { 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); } 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); } { 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])); } goto L_088FC3C0; L_088FC3C0: { 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); } { 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])); } ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[30] + static_cast(596))); ctx.gpr[4] = (ctx.gpr[18] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[24])); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FC3F8u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0049_entry, 49u, 72u, 0x088C8430u>(ctx, &aot_mem) && ctx.pc == 0x088FC3F8u) goto L_088FC3F8; return; L_088FC3F8: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FC408; } goto L_088FC400; } L_088FC400: { const bool branch_taken = 0u == 0u; ctx.gpr[4] = (ctx.gpr[16] | 0u); if (branch_taken) { goto L_088FC484; } goto L_088FC408; } L_088FC408: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[22] + static_cast(-4528))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(240), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(244), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(248), std::bit_cast(ctx.fpr[12])); { 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); } { 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.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(16))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(240), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(20))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(244), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(248), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[23] + static_cast(22068))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[24]; 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[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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); { 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])); } ctx.gpr[4] = (ctx.gpr[20] | 0u); ctx.gpr[31] = (0x088FC468u); ctx.gpr[5] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FC468u) goto L_088FC468; return; L_088FC468: ctx.gpr[16] = (ctx.gpr[16] + static_cast(1)); { const bool branch_taken = ctx.gpr[16] != ctx.gpr[21]; // nop if (branch_taken) { goto L_088FC47C; } goto L_088FC474; } L_088FC474: { const bool branch_taken = 0u == 0u; ctx.gpr[4] = (ctx.gpr[16] | 0u); if (branch_taken) { goto L_088FC484; } goto L_088FC47C; } L_088FC47C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FC3C0; } goto L_088FC484; } L_088FC484: ctx.gpr[16] = (0u | 0u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[21]; // nop if (branch_taken) { goto L_088FC4D8; } goto L_088FC490; } L_088FC490: { 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); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(208)); { 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[5] = (aot_mem.aot_load32(ctx.gpr[30] + static_cast(596))); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[24])); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FC4C8u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0049_entry, 49u, 72u, 0x088C8430u>(ctx, &aot_mem) && ctx.pc == 0x088FC4C8u) goto L_088FC4C8; return; L_088FC4C8: { const bool branch_taken = ctx.gpr[2] == 0u; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088FC4D8; } goto L_088FC4D0; } L_088FC4D0: { const bool branch_taken = 0u == 0u; ctx.gpr[16] = (ctx.gpr[4] | 0u); if (branch_taken) { goto L_088FC58C; } goto L_088FC4D8; } L_088FC4D8: ctx.gpr[4] = (ctx.gpr[20] | 0u); ctx.gpr[6] = (ctx.gpr[29] + static_cast(96)); ctx.gpr[7] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[5] = (ctx.gpr[30] | 0u); ctx.gpr[8] = (0u | 1u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(12), 0u); ctx.gpr[31] = (0x088FC510u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(16), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 489u, 0x088C697Cu>(ctx, &aot_mem) && ctx.pc == 0x088FC510u) goto L_088FC510; return; L_088FC510: { const bool branch_taken = ctx.gpr[2] == 0u; ctx.gpr[4] = (0u | 1u); if (branch_taken) { goto L_088FC58C; } goto L_088FC518; } L_088FC518: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(96))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(256), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(100))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(260), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(104))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(264), std::bit_cast(ctx.fpr[12])); ctx.gpr[5] = (ctx.gpr[29] + static_cast(256)); { 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[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<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[5] = (ctx.gpr[29] + static_cast(288)); { 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(aot_mem.aot_load32(ctx.gpr[29] + static_cast(112))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(272), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(116))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(276), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(120))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(280), std::bit_cast(ctx.fpr[12])); { 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.gpr[5] = (ctx.gpr[29] + static_cast(272)); { 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); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[5] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[12] = std::bit_cast(ctx.gpr[5]); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[26])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FC58C; } goto L_088FC588; } L_088FC588: ctx.gpr[16] = (ctx.gpr[4] | 0u); goto L_088FC58C; L_088FC58C: { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088FC5D0; } goto L_088FC594; } L_088FC594: { const float fs = ctx.fpr[22]; const float ft = ctx.fpr[28]; 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.set_fpu_condition((ctx.fpr[22] < ctx.fpr[30])); // nop if (!ctx.fpu_condition()) { ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(480))); goto L_088FC5BC; } goto L_088FC5A8; L_088FC5A8: ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(484))); aot_mem.aot_store8(ctx.gpr[29] + static_cast(492), static_cast(ctx.gpr[4])); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(488))); { const bool branch_taken = 0u == 0u; ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(496))); if (branch_taken) { goto L_088FC5E8; } goto L_088FC5BC; } L_088FC5BC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); ctx.gpr[31] = (0x088FC5C8u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[22])); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 597u, 0x08873550u>(ctx, &aot_mem) && ctx.pc == 0x088FC5C8u) goto L_088FC5C8; return; L_088FC5C8: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FC5E0; } goto L_088FC5D0; } L_088FC5D0: ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(484))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(488))); { const bool branch_taken = 0u == 0u; ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(496))); if (branch_taken) { goto L_088FC5E8; } goto L_088FC5E0; } L_088FC5E0: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FC360; } goto L_088FC5E8; } L_088FC5E8: ctx.gpr[16] = (0u | 0u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(492))); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[21] = (0u | 1u); if (branch_taken) { goto L_088FC61C; } goto L_088FC5F8; } L_088FC5F8: aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[26])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(68), std::bit_cast(ctx.fpr[26])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[26])); ctx.gpr[5] = (ctx.gpr[29] + static_cast(64)); ctx.gpr[31] = (0x088FC610u); ctx.gpr[4] = (ctx.gpr[30] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 563u, 0x0892751Cu>(ctx, &aot_mem) && ctx.pc == 0x088FC610u) goto L_088FC610; return; L_088FC610: { const bool branch_taken = ctx.gpr[2] == 0u; ctx.gpr[4] = (ctx.gpr[16] & 255u); if (branch_taken) { goto L_088FC620; } goto L_088FC618; } L_088FC618: ctx.gpr[16] = (ctx.gpr[21] | 0u); goto L_088FC61C; L_088FC61C: ctx.gpr[4] = (ctx.gpr[16] & 255u); goto L_088FC620; L_088FC620: { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[16] = (2231u << 16u); if (branch_taken) { goto L_088FC65C; } goto L_088FC628; } L_088FC628: ctx.gpr[4] = (0u | 1u); ctx.gpr[5] = (2227u << 16u); aot_mem.aot_store8(ctx.gpr[5] + static_cast(22897), static_cast(ctx.gpr[4])); { const std::uint32_t vfpu_address = ctx.gpr[30] + 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[4] = (2231u << 16u); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(-32456))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(480))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); ctx.gpr[31] = (0x088FC654u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[22])); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 597u, 0x08873550u>(ctx, &aot_mem) && ctx.pc == 0x088FC654u) goto L_088FC654; return; L_088FC654: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FC67C; } goto L_088FC65C; } L_088FC65C: { 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); } { 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] = (2231u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(480))); aot_mem.aot_store32(ctx.gpr[4] + static_cast(-32452), std::bit_cast(ctx.fpr[24])); ctx.gpr[31] = (0x088FC678u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC678u) goto L_088FC678; return; L_088FC678: aot_mem.aot_store32(ctx.gpr[16] + static_cast(-32456), std::bit_cast(ctx.fpr[0])); goto L_088FC67C; L_088FC67C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(500))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FC6F8; } goto L_088FC688; } L_088FC688: { const bool branch_taken = ctx.gpr[4] != ctx.gpr[21]; // nop if (branch_taken) { goto L_088FC6B4; } goto L_088FC690; } L_088FC690: { 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[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<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(304)); { 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); } { 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 bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FC6D0; } goto L_088FC6B4; } L_088FC6B4: { 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[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); } { 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(320)); { 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); } { 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])); } goto L_088FC6D0; L_088FC6D0: { 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<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[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])); } ctx.gpr[31] = (0x088FC6F8u); ctx.gpr[4] = (ctx.gpr[30] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 99u, 0x088ECE50u>(ctx, &aot_mem) && ctx.pc == 0x088FC6F8u) goto L_088FC6F8; return; L_088FC6F8: ctx.gpr[4] = (std::bit_cast(ctx.fpr[22])); 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(80)); { 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[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[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[5] = (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[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])); } { 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); } { 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); } { 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])); } { 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[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); } { 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])); } { 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(176)); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16640u << 16u); 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_088FC790; } goto L_088FC77C; } L_088FC77C: 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); } { 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])); } { 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<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])); } goto L_088FC790; L_088FC790: ctx.gpr[2] = (0u | 1u); 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.fpr[26] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(516))); ctx.fpr[28] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(520))); ctx.fpr[30] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(524))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(528))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(532))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(536))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(540))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(544))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(548))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(552))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(556))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(560))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(564))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(576)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088FC7DC: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-880)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(804), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(808), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(812), std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(816), std::bit_cast(ctx.fpr[26])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(820), std::bit_cast(ctx.fpr[28])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(824), std::bit_cast(ctx.fpr[30])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(828), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(832), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(836), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(840), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(844), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(848), ctx.gpr[21]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(852), ctx.gpr[22]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(856), ctx.gpr[23]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(860), ctx.gpr[30]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(864), ctx.gpr[31]); ctx.fpr[24] = std::bit_cast(0u); ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[24])); { 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[17] = (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[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])); } aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(68), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[20])); ctx.gpr[22] = (ctx.gpr[29] + static_cast(64)); { 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[5] = (ctx.gpr[4] + static_cast(2656)); { 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(796), ctx.gpr[5]); { 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<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[5] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[28] = std::bit_cast(ctx.gpr[5]); { 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<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 0u, 2u>(); { 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[5] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[26] = std::bit_cast(ctx.gpr[5]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(96))); ctx.gpr[16] = (ctx.gpr[29] + static_cast(112)); ctx.gpr[20] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[19] = (ctx.gpr[29] + static_cast(160)); ctx.gpr[23] = (2230u << 16u); ctx.gpr[23] = (ctx.gpr[23] + static_cast(-7960)); ctx.gpr[5] = (16128u << 16u); ctx.fpr[30] = std::bit_cast(ctx.gpr[5]); ctx.gpr[21] = (ctx.gpr[4] | 0u); ctx.gpr[18] = (ctx.gpr[6] | 0u); ctx.gpr[30] = (ctx.gpr[7] | 0u); ctx.set_fpu_condition((!(std::isnan(ctx.fpr[13]) || std::isnan(ctx.fpr[20])) && ctx.fpr[13] == ctx.fpr[20])); // nop { const bool branch_taken = !ctx.fpu_condition(); aot_mem.aot_store32(ctx.gpr[29] + static_cast(800), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088FC8D4; } goto L_088FC8C0; } L_088FC8C0: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(100))); ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[24])) && ctx.fpr[12] == ctx.fpr[24])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FC908; } goto L_088FC8D4; } L_088FC8D4: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(96))); ctx.gpr[31] = (0x088FC8E0u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(100))); if (rt.invoke_chained_direct<&recomp_unit_0117_entry, 117u, 288u, 0x089D96E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC8E0u) goto L_088FC8E0; return; L_088FC8E0: ctx.fpr[22] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); ctx.gpr[4] = (16585u << 16u); if (branch_taken) { goto L_088FC900; } goto L_088FC8F4; } L_088FC8F4: ctx.gpr[4] = (ctx.gpr[4] | 4059u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[22] = ctx.fpr[22] + ctx.fpr[12]; goto L_088FC900; L_088FC900: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FC934; } goto L_088FC908; } L_088FC908: ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[21] + static_cast(16))); ctx.gpr[31] = (0x088FC914u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[21] + static_cast(20))); if (rt.invoke_chained_direct<&recomp_unit_0117_entry, 117u, 288u, 0x089D96E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC914u) goto L_088FC914; return; L_088FC914: ctx.fpr[22] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); ctx.gpr[4] = (16585u << 16u); if (branch_taken) { goto L_088FC934; } goto L_088FC928; } L_088FC928: ctx.gpr[4] = (ctx.gpr[4] | 4059u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[22] = ctx.fpr[22] + ctx.fpr[12]; goto L_088FC934; L_088FC934: ctx.set_fpu_condition((!(std::isnan(ctx.fpr[26]) || std::isnan(ctx.fpr[24])) && ctx.fpr[26] == ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FC958; } goto L_088FC944; } L_088FC944: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(104))); ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[24])) && ctx.fpr[12] == ctx.fpr[24])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FC984; } goto L_088FC958; } L_088FC958: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(104))); ctx.gpr[31] = (0x088FC964u); ctx.fpr[13] = std::bit_cast(std::bit_cast(ctx.fpr[26])); if (rt.invoke_chained_direct<&recomp_unit_0117_entry, 117u, 288u, 0x089D96E8u>(ctx, &aot_mem) && ctx.pc == 0x088FC964u) goto L_088FC964; return; L_088FC964: ctx.fpr[20] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.set_fpu_condition((ctx.fpr[20] < ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); ctx.gpr[4] = (16585u << 16u); if (branch_taken) { goto L_088FC984; } goto L_088FC978; } L_088FC978: ctx.gpr[4] = (ctx.gpr[4] | 4059u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[20] = ctx.fpr[20] + ctx.fpr[12]; goto L_088FC984; L_088FC984: ctx.gpr[31] = (0x088FC98Cu); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[22])); if (rt.invoke_chained_direct<&recomp_unit_0189_entry, 189u, 384u, 0x08AF9AE8u>(ctx, &aot_mem) && ctx.pc == 0x088FC98Cu) goto L_088FC98C; return; L_088FC98C: ctx.fpr[26] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[31] = (0x088FC998u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0189_entry, 189u, 384u, 0x08AF9AE8u>(ctx, &aot_mem) && ctx.pc == 0x088FC998u) goto L_088FC998; return; L_088FC998: { const float fs = ctx.fpr[26]; const float ft = ctx.fpr[0]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[26] = std::bit_cast(0x7FC00000u); else ctx.fpr[26] = fs * ft; } ctx.gpr[31] = (0x088FC9A4u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[22])); if (rt.invoke_chained_direct<&recomp_unit_0189_entry, 189u, 383u, 0x08AF9AC4u>(ctx, &aot_mem) && ctx.pc == 0x088FC9A4u) goto L_088FC9A4; return; L_088FC9A4: ctx.fpr[22] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[31] = (0x088FC9B0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0189_entry, 189u, 384u, 0x08AF9AE8u>(ctx, &aot_mem) && ctx.pc == 0x088FC9B0u) goto L_088FC9B0; return; L_088FC9B0: { const float fs = ctx.fpr[22]; const float ft = ctx.fpr[0]; 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[31] = (0x088FC9BCu); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0189_entry, 189u, 383u, 0x08AF9AC4u>(ctx, &aot_mem) && ctx.pc == 0x088FC9BCu) goto L_088FC9BC; return; L_088FC9BC: aot_mem.aot_store32(ctx.gpr[29] + static_cast(112), std::bit_cast(ctx.fpr[26])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(116), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(120), std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (std::bit_cast(ctx.fpr[28])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); { 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[4] = (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[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); } { 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[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])); } { 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[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])); } { 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_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[16] + 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(160), 0u); ctx.gpr[4] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(2740))); aot_mem.aot_store32(ctx.gpr[4] + static_cast(-8004), ctx.gpr[5]); ctx.gpr[4] = (ctx.gpr[18] | 0u); ctx.gpr[5] = (ctx.gpr[30] | 0u); ctx.gpr[6] = (ctx.gpr[20] | 0u); ctx.gpr[7] = (ctx.gpr[19] | 0u); ctx.gpr[8] = (0u | 1u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 1u); ctx.gpr[2] = (0u | 1u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), ctx.gpr[2]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(12), 0u); ctx.gpr[31] = (0x088FCA64u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(16), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 489u, 0x088C697Cu>(ctx, &aot_mem) && ctx.pc == 0x088FCA64u) goto L_088FCA64; return; L_088FCA64: { const bool branch_taken = ctx.gpr[2] == 0u; ctx.gpr[4] = (2230u << 16u); if (branch_taken) { goto L_088FCBC8; } goto L_088FCA6C; } L_088FCA6C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(208), std::bit_cast(ctx.fpr[12])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(212), std::bit_cast(ctx.fpr[13])); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(216), std::bit_cast(ctx.fpr[14])); ctx.gpr[16] = (ctx.gpr[29] + static_cast(208)); 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); } { 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] = (2227u << 16u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(23368))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FCBC4; } goto L_088FCAB0; } L_088FCAB0: ctx.gpr[4] = (ctx.gpr[30] | 0u); ctx.gpr[5] = (ctx.gpr[18] | 0u); ctx.gpr[6] = (ctx.gpr[20] | 0u); ctx.gpr[7] = (ctx.gpr[19] | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 1u); ctx.gpr[10] = (0u | 1u); ctx.gpr[11] = (0u | 1u); ctx.gpr[2] = (0u | 1u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(8), ctx.gpr[2]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(12), 0u); ctx.gpr[31] = (0x088FCAECu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(16), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 489u, 0x088C697Cu>(ctx, &aot_mem) && ctx.pc == 0x088FCAECu) goto L_088FCAEC; return; L_088FCAEC: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FCBC4; } goto L_088FCAF4; } L_088FCAF4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(256), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(260), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(264), std::bit_cast(ctx.fpr[12])); { const std::uint32_t vfpu_address = ctx.gpr[30] + 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(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<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(240)); { 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[20] = std::bit_cast(ctx.gpr[4]); ctx.gpr[31] = (0x088FCB40u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FCB40u) goto L_088FCB40; return; L_088FCB40: ctx.set_fpu_condition((ctx.fpr[20] < ctx.fpr[0])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FCB7C; } goto L_088FCB50; } L_088FCB50: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(128))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(272), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(132))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(276), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(136))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(280), std::bit_cast(ctx.fpr[12])); 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); } { 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])); } { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FCBC4; } goto L_088FCB7C; } L_088FCB7C: { const std::uint32_t vfpu_address = ctx.gpr[30] + 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); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(288)); { 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[20] = std::bit_cast(ctx.gpr[4]); ctx.gpr[31] = (0x088FCBACu); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FCBACu) goto L_088FCBAC; return; L_088FCBAC: ctx.set_fpu_condition((ctx.fpr[20] < ctx.fpr[0])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FCBC4; } goto L_088FCBBC; } L_088FCBBC: { 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[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])); } goto L_088FCBC4; L_088FCBC4: ctx.gpr[4] = (2230u << 16u); goto L_088FCBC8; L_088FCBC8: aot_mem.aot_store32(ctx.gpr[4] + static_cast(-8004), 0u); { 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[30] + 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[16] = (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[16] + 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); } { 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])); } { 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<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[20] = std::bit_cast(ctx.gpr[4]); ctx.gpr[31] = (0x088FCC04u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 198u, 0x089D596Cu>(ctx, &aot_mem) && ctx.pc == 0x088FCC04u) goto L_088FCC04; return; L_088FCC04: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FCC54; } goto L_088FCC0C; } L_088FCC0C: ctx.gpr[4] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(22076))); ctx.fpr[20] = ctx.fpr[20] - ctx.fpr[12]; ctx.gpr[31] = (0x088FCC20u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FCC20u) goto L_088FCC20; return; L_088FCC20: ctx.set_fpu_condition((ctx.fpr[20] < ctx.fpr[0])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FCC54; } goto L_088FCC30; } L_088FCC30: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); ctx.gpr[5] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(22080))); ctx.set_fpu_condition((ctx.fpr[20] <= ctx.fpr[12])); // nop if (ctx.fpu_condition()) { ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(22080))); goto L_088FCC4C; } goto L_088FCC4C; L_088FCC4C: ctx.gpr[31] = (0x088FCC54u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 597u, 0x08873550u>(ctx, &aot_mem) && ctx.pc == 0x088FCC54u) goto L_088FCC54; return; L_088FCC54: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(800))); ctx.gpr[4] = (16457u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 4059u); 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.gpr[4] = (17204u << 16u); ctx.fpr[14] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[14]; { 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; } ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]); { const float vfpu_constant = std::bit_cast(0x3F22F983u); const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant}; ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 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<64u, 1u>(vfpu_d); } ctx.execute_vfpu_vrot(1u, 64u, 2u, 4u); { float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<33u, 1u, 0u>(vfpu_s); ctx.read_vfpu_vector_with_source_prefix_ct<1u, 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<0u, 1u>(vfpu_d); } ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<0u>()); ctx.fpr[20] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (2230u << 16u); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast(-25810))); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[17] = (2230u << 16u); if (branch_taken) { goto L_088FCCC4; } goto L_088FCCA8; } L_088FCCA8: ctx.gpr[4] = (2227u << 16u); ctx.gpr[5] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(3176))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(23364))); { 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; } { const bool branch_taken = 0u == 0u; { 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[20] = std::bit_cast(0x7FC00000u); else ctx.fpr[20] = fs * ft; } if (branch_taken) { goto L_088FCCDC; } goto L_088FCCC4; } L_088FCCC4: ctx.gpr[4] = (2227u << 16u); ctx.gpr[5] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(3176))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[5] + static_cast(23364))); { 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; } { 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[20] = std::bit_cast(0x7FC00000u); else ctx.fpr[20] = fs * ft; } goto L_088FCCDC; L_088FCCDC: ctx.gpr[18] = (ctx.gpr[29] + static_cast(192)); ctx.gpr[19] = (ctx.gpr[29] + static_cast(112)); ctx.gpr[31] = (0x088FCCECu); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FCCECu) goto L_088FCCEC; return; L_088FCCEC: { const float fs = ctx.fpr[0]; const float ft = ctx.fpr[20]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[20] = std::bit_cast(0x7FC00000u); else ctx.fpr[20] = fs * ft; } ctx.gpr[4] = (std::bit_cast(ctx.fpr[0])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); { 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[16] + 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[30] + 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[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); } { 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[4] = (ctx.gpr[22] | 0u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); ctx.gpr[5] = (0u | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 1u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 1u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FCD4Cu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0049_entry, 49u, 72u, 0x088C8430u>(ctx, &aot_mem) && ctx.pc == 0x088FCD4Cu) goto L_088FCD4C; return; L_088FCD4C: ctx.fpr[22] = std::bit_cast(std::bit_cast(ctx.fpr[24])); { const bool branch_taken = ctx.gpr[2] == 0u; ctx.gpr[16] = (0u | 1u); if (branch_taken) { goto L_088FD0E4; } goto L_088FCD58; } L_088FCD58: ctx.gpr[4] = (2269u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(-4528))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(320), std::bit_cast(ctx.fpr[12])); ctx.gpr[16] = (ctx.gpr[4] + static_cast(-4528)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(324), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(328), std::bit_cast(ctx.fpr[12])); ctx.gpr[5] = (ctx.gpr[29] + static_cast(320)); { 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.gpr[5] = (ctx.gpr[29] + static_cast(192)); { 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[17] = (ctx.gpr[29] + static_cast(384)); { 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.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(-4528))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(336), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(4))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(340), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(8))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(344), std::bit_cast(ctx.fpr[12])); 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); } { const std::uint32_t vfpu_address = ctx.gpr[30] + 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(400)); { 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(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<1u, 4u>(vfpu_value); } ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>(); ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>()); ctx.fpr[22] = std::bit_cast(ctx.gpr[4]); ctx.gpr[20] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(22080))); ctx.gpr[19] = (ctx.gpr[29] + static_cast(416)); ctx.gpr[22] = (ctx.gpr[29] + static_cast(432)); ctx.set_fpu_condition((ctx.fpr[22] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); ctx.gpr[18] = (ctx.gpr[29] + static_cast(352)); if (branch_taken) { goto L_088FCE44; } goto L_088FCDFC; } L_088FCDFC: ctx.gpr[4] = (16230u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 26214u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[12])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FCE44; } goto L_088FCE18; } L_088FCE18: ctx.gpr[31] = (0x088FCE20u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FCE20u) goto L_088FCE20; return; L_088FCE20: ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[0])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FCE64; } goto L_088FCE30; } L_088FCE30: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); ctx.gpr[31] = (0x088FCE3Cu); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[22])); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 597u, 0x08873550u>(ctx, &aot_mem) && ctx.pc == 0x088FCE3Cu) goto L_088FCE3C; return; L_088FCE3C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FCE64; } goto L_088FCE44; } L_088FCE44: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(22080))); ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[12])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FCE64; } goto L_088FCE58; } L_088FCE58: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); ctx.gpr[31] = (0x088FCE64u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(22080))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 597u, 0x08873550u>(ctx, &aot_mem) && ctx.pc == 0x088FCE64u) goto L_088FCE64; return; L_088FCE64: { 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<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[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[20] - ctx.fpr[12]; { 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); } { 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[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.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(16))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(416), std::bit_cast(ctx.fpr[13])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(20))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(420), std::bit_cast(ctx.fpr[13])); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[16] + static_cast(24))); aot_mem.aot_store32(ctx.gpr[29] + static_cast(424), std::bit_cast(ctx.fpr[13])); { 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_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[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.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[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<0u, 4u>(vfpu_value); } ctx.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); { 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])); } { 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<0u, 4u>(vfpu_value); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 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<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[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[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[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<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.set_fpu_condition((ctx.fpr[12] < ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FCF30; } goto L_088FCF18; } L_088FCF18: { 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); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 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<0u, 3u>(vfpu_d); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(448)); { 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); } { 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])); } goto L_088FCF30; L_088FCF30: { 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_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 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<0u, 3u>(vfpu_d); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(368)); { 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[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[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[12] = std::bit_cast(ctx.gpr[4]); 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[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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); { 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.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(796))); { 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] = (16256u << 16u); ctx.fpr[22] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(2740))); { const bool branch_taken = ctx.gpr[4] == 0u; ctx.gpr[17] = (2230u << 16u); if (branch_taken) { goto L_088FD0E0; } goto L_088FCF88; } L_088FCF88: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(2740))); 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_088FD0E0; } goto L_088FCFA8; } L_088FCFA8: ctx.gpr[31] = (0x088FCFB0u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[23] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0027_entry, 27u, 608u, 0x088735E8u>(ctx, &aot_mem) && ctx.pc == 0x088FCFB0u) goto L_088FCFB0; return; L_088FCFB0: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(22080))); 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.set_fpu_condition((ctx.fpr[0] < ctx.fpr[12])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FD0E0; } goto L_088FCFD0; } L_088FCFD0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(2740))); { 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[4] = (ctx.gpr[4] + 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<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.set_fpu_condition((ctx.fpr[12] < ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FD028; } goto L_088FCFFC; } L_088FCFFC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[21] + static_cast(360))); ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[24])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FD014; } goto L_088FD010; } L_088FD010: aot_mem.aot_store32(ctx.gpr[21] + static_cast(360), std::bit_cast(ctx.fpr[24])); goto L_088FD014; L_088FD014: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[21] + static_cast(360))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(-8144))); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[21] + static_cast(360), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088FD07C; } goto L_088FD028; } L_088FD028: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(2740))); { 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[4] = (ctx.gpr[4] + 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<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.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[30])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FD07C; } goto L_088FD054; } L_088FD054: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[21] + static_cast(360))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[24])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FD06C; } goto L_088FD068; } L_088FD068: aot_mem.aot_store32(ctx.gpr[21] + static_cast(360), std::bit_cast(ctx.fpr[24])); goto L_088FD06C; L_088FD06C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[21] + static_cast(360))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(-8144))); ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[21] + static_cast(360), std::bit_cast(ctx.fpr[12])); goto L_088FD07C; L_088FD07C: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[21] + static_cast(364)))))); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FD0E0; } goto L_088FD088; } L_088FD088: ctx.gpr[31] = (0x088FD090u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[21] + static_cast(2740))); if (rt.invoke_chained_direct<&recomp_unit_0057_entry, 57u, 410u, 0x088EA4E8u>(ctx, &aot_mem) && ctx.pc == 0x088FD090u) goto L_088FD090; return; L_088FD090: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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[30] + 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(480)); { 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<1u, 4u>(vfpu_value); } { 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<2u, 4u>(vfpu_value); } ctx.execute_vfpu_cross_quat(0u, 1u, 2u, 3u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(464)); { 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(472))); ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[24])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FD0D8; } goto L_088FD0CC; } L_088FD0CC: ctx.gpr[4] = (0u + static_cast(-1)); { const bool branch_taken = 0u == 0u; aot_mem.aot_store16(ctx.gpr[21] + static_cast(364), static_cast(ctx.gpr[4])); if (branch_taken) { goto L_088FD0E0; } goto L_088FD0D8; } L_088FD0D8: ctx.gpr[4] = (0u | 1u); aot_mem.aot_store16(ctx.gpr[21] + static_cast(364), static_cast(ctx.gpr[4])); goto L_088FD0E0; L_088FD0E0: ctx.gpr[16] = (0u | 1u); goto L_088FD0E4; L_088FD0E4: ctx.gpr[18] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[4] = (2227u << 16u); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(23360))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(-8144))); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.gpr[5] = (std::bit_cast(ctx.fpr[13])); ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]); ctx.set_vfpu_scalar_bits_ct<32u>(ctx.gpr[5]); { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::log2(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 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<64u, 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<0u, 1u>(vfpu_d); } { float vfpu_s[4]{}, vfpu_d[4]{}; ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s); for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::exp2(vfpu_s[i]); ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_d); } ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<32u>()); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[21] + static_cast(360))); { 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; } aot_mem.aot_store32(ctx.gpr[21] + static_cast(360), std::bit_cast(ctx.fpr[12])); ctx.gpr[17] = (2227u << 16u); ctx.gpr[4] = (ctx.gpr[17] + static_cast(22312)); ctx.gpr[5] = (2227u << 16u); ctx.gpr[5] = (ctx.gpr[5] + static_cast(22316)); ctx.gpr[6] = (15948u << 16u); ctx.gpr[6] = (ctx.gpr[6] | 52429u); ctx.fpr[13] = std::bit_cast(ctx.gpr[6]); ctx.gpr[6] = (15692u << 16u); ctx.gpr[6] = (ctx.gpr[6] | 52429u); ctx.fpr[14] = std::bit_cast(ctx.gpr[6]); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[22])); ctx.gpr[31] = (0x088FD158u); ctx.gpr[6] = (0u | 0u); if (rt.invoke_chained_direct<&recomp_unit_0057_entry, 57u, 458u, 0x088EA858u>(ctx, &aot_mem) && ctx.pc == 0x088FD158u) goto L_088FD158; return; L_088FD158: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[17] + static_cast(22312))); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(796))); { 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, 28u, 3u>(); { 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); } { 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])); } aot_mem.aot_store8(ctx.gpr[21] + static_cast(101), static_cast(ctx.gpr[16])); ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(804))); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(808))); ctx.fpr[24] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(812))); ctx.fpr[26] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(816))); ctx.fpr[28] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(820))); ctx.fpr[30] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(824))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(828))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(832))); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(836))); ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(840))); ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(844))); ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(848))); ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(852))); ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(856))); ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(860))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(864))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(880)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088FD1C8: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-736)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(712), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(716), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(720), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(724), ctx.gpr[31]); ctx.gpr[7] = (16153u << 16u); ctx.gpr[7] = (ctx.gpr[7] | 39322u); ctx.fpr[20] = std::bit_cast(ctx.gpr[7]); ctx.gpr[17] = (ctx.gpr[4] | 0u); { const bool branch_taken = static_cast(ctx.gpr[5]) < 0; ctx.gpr[16] = (ctx.gpr[6] | 0u); if (branch_taken) { goto L_088FD218; } goto L_088FD1F4; } L_088FD1F4: ctx.gpr[4] = (ctx.gpr[5] < static_cast(21) ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD200; } L_088FD200: ctx.gpr[5] = (ctx.gpr[5] << 2u); ctx.gpr[1] = (2225u << 16u); ctx.gpr[1] = (ctx.gpr[1] + ctx.gpr[5]); ctx.gpr[1] = (aot_mem.aot_load32(ctx.gpr[1] + static_cast(16152))); 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_088FD218: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD220; } L_088FD220: ctx.gpr[31] = (0x088FD228u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD228u) goto L_088FD228; return; L_088FD228: ctx.gpr[4] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FD2C4; } goto L_088FD234; } L_088FD234: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(836))); ctx.gpr[6] = (0u | 1u); { const bool branch_taken = ctx.gpr[5] != ctx.gpr[6]; // nop if (branch_taken) { goto L_088FD258; } goto L_088FD244; } L_088FD244: ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); ctx.gpr[5] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[5] + static_cast(88)))))); ctx.gpr[6] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[5] != ctx.gpr[6]; // nop if (branch_taken) { goto L_088FD30C; } goto L_088FD258; } L_088FD258: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u | 162u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD304; } goto L_088FD268; } L_088FD268: ctx.gpr[31] = (0x088FD270u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); if (rt.invoke_chained_direct<&recomp_unit_0057_entry, 57u, 410u, 0x088EA4E8u>(ctx, &aot_mem) && ctx.pc == 0x088FD270u) goto L_088FD270; return; L_088FD270: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast(127))); ctx.gpr[4] = (ctx.gpr[4] << 4u); ctx.gpr[5] = (0u + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 3u); ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[17] + ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[5] + static_cast(832)); ctx.gpr[4] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FD2BCu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FD2BCu) goto L_088FD2BC; return; L_088FD2BC: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD2FC; } goto L_088FD2C4; } L_088FD2C4: ctx.gpr[4] = (ctx.gpr[16] + static_cast(5000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FD2F4; } goto L_088FD2DC; } L_088FD2DC: ctx.gpr[4] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[31] = (0x088FD2ECu); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 196u, 0x088ED874u>(ctx, &aot_mem) && ctx.pc == 0x088FD2ECu) goto L_088FD2EC; return; L_088FD2EC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { goto L_088FE500; } goto L_088FD2F4; } L_088FD2F4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD2FC; } L_088FD2FC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD304; } L_088FD304: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD30C; } L_088FD30C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD314; } L_088FD314: ctx.gpr[31] = (0x088FD31Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD31Cu) goto L_088FD31C; return; L_088FD31C: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD350; } goto L_088FD324; } L_088FD324: ctx.gpr[31] = (0x088FD32Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD32Cu) goto L_088FD32C; return; L_088FD32C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD350; } goto L_088FD33C; } L_088FD33C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD414; } goto L_088FD350; } L_088FD350: ctx.gpr[16] = (ctx.gpr[29] + static_cast(64)); ctx.gpr[31] = (0x088FD35Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD35Cu) goto L_088FD35C; return; L_088FD35C: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FD390u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FD390u) goto L_088FD390; return; L_088FD390: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD40C; } goto L_088FD398; } L_088FD398: ctx.gpr[16] = (ctx.gpr[29] + static_cast(80)); ctx.gpr[31] = (0x088FD3A4u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD3A4u) goto L_088FD3A4; return; L_088FD3A4: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(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.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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16928u << 16u); 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_088FD41C; } goto L_088FD404; } L_088FD404: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD450; } goto L_088FD40C; } L_088FD40C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD414; } L_088FD414: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD41C; } L_088FD41C: ctx.gpr[31] = (0x088FD424u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FD424u) goto L_088FD424; return; L_088FD424: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FD490; } goto L_088FD450; } L_088FD450: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16416u << 16u); 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_088FD488; } goto L_088FD480; } L_088FD480: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD488; } L_088FD488: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD490; } L_088FD490: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD498; } L_088FD498: ctx.gpr[31] = (0x088FD4A0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD4A0u) goto L_088FD4A0; return; L_088FD4A0: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD4D4; } goto L_088FD4A8; } L_088FD4A8: ctx.gpr[31] = (0x088FD4B0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD4B0u) goto L_088FD4B0; return; L_088FD4B0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD4D4; } goto L_088FD4C0; } L_088FD4C0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD598; } goto L_088FD4D4; } L_088FD4D4: ctx.gpr[16] = (ctx.gpr[29] + static_cast(96)); ctx.gpr[31] = (0x088FD4E0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD4E0u) goto L_088FD4E0; return; L_088FD4E0: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FD514u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FD514u) goto L_088FD514; return; L_088FD514: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD590; } goto L_088FD51C; } L_088FD51C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(112)); ctx.gpr[31] = (0x088FD528u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD528u) goto L_088FD528; return; L_088FD528: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(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])); } { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16384u << 16u); 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_088FD5A0; } goto L_088FD588; } L_088FD588: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD5F8; } goto L_088FD590; } L_088FD590: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD598; } L_088FD598: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD5A0; } L_088FD5A0: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16128u << 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.gpr[4] = (15692u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 52429u); ctx.fpr[14] = std::bit_cast(ctx.gpr[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_088FD5EC; } goto L_088FD5E0; } L_088FD5E0: ctx.gpr[4] = (15692u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 52429u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); goto L_088FD5EC; L_088FD5EC: ctx.gpr[4] = (2232u << 16u); ctx.gpr[31] = (0x088FD5F8u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 196u, 0x088ED874u>(ctx, &aot_mem) && ctx.pc == 0x088FD5F8u) goto L_088FD5F8; return; L_088FD5F8: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16872u << 16u); 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_088FD65C; } goto L_088FD628; } L_088FD628: ctx.gpr[31] = (0x088FD630u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FD630u) goto L_088FD630; return; L_088FD630: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FD69C; } goto L_088FD65C; } L_088FD65C: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16384u << 16u); 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_088FD694; } goto L_088FD68C; } L_088FD68C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD694; } L_088FD694: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD69C; } L_088FD69C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD6A4; } L_088FD6A4: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FD6B0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD6B0u) goto L_088FD6B0; return; L_088FD6B0: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FD6E4u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FD6E4u) goto L_088FD6E4; return; L_088FD6E4: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD75C; } goto L_088FD6EC; } L_088FD6EC: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[17] = (ctx.gpr[29] + static_cast(144)); ctx.gpr[31] = (0x088FD6FCu); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD6FCu) goto L_088FD6FC; return; L_088FD6FC: ctx.gpr[4] = (2232u << 16u); ctx.gpr[6] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[6] = (ctx.gpr[6] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FD714u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0057_entry, 57u, 407u, 0x088EA498u>(ctx, &aot_mem) && ctx.pc == 0x088FD714u) goto L_088FD714; return; L_088FD714: { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16960u << 16u); 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_088FD764; } goto L_088FD754; } L_088FD754: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD75C; } L_088FD75C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD764; } L_088FD764: ctx.gpr[31] = (0x088FD76Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FD76Cu) goto L_088FD76C; return; L_088FD76C: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FD754; } goto L_088FD798; } L_088FD798: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD7A0; } L_088FD7A0: ctx.gpr[4] = (ctx.gpr[16] + static_cast(3000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FD7C0; } goto L_088FD7B8; } L_088FD7B8: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD7C0; } L_088FD7C0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD7C8; } L_088FD7C8: ctx.gpr[31] = (0x088FD7D0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD7D0u) goto L_088FD7D0; return; L_088FD7D0: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD804; } goto L_088FD7D8; } L_088FD7D8: ctx.gpr[31] = (0x088FD7E0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD7E0u) goto L_088FD7E0; return; L_088FD7E0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD804; } goto L_088FD7F0; } L_088FD7F0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD8C8; } goto L_088FD804; } L_088FD804: ctx.gpr[16] = (ctx.gpr[29] + static_cast(160)); ctx.gpr[31] = (0x088FD810u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD810u) goto L_088FD810; return; L_088FD810: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FD844u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FD844u) goto L_088FD844; return; L_088FD844: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD8C0; } goto L_088FD84C; } L_088FD84C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(176)); ctx.gpr[31] = (0x088FD858u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FD858u) goto L_088FD858; return; L_088FD858: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(160)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16920u << 16u); 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_088FD8D0; } goto L_088FD8B8; } L_088FD8B8: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD8C0; } L_088FD8C0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD8C8; } L_088FD8C8: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD8D0; } L_088FD8D0: ctx.gpr[31] = (0x088FD8D8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FD8D8u) goto L_088FD8D8; return; L_088FD8D8: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FD8B8; } goto L_088FD904; } L_088FD904: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD90C; } L_088FD90C: ctx.gpr[4] = (ctx.gpr[16] + static_cast(3000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FD92C; } goto L_088FD924; } L_088FD924: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD92C; } L_088FD92C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD934; } L_088FD934: ctx.gpr[4] = (ctx.gpr[16] + static_cast(2000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FD964; } goto L_088FD94C; } L_088FD94C: ctx.gpr[31] = (0x088FD954u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD954u) goto L_088FD954; return; L_088FD954: ctx.gpr[31] = (0x088FD95Cu); ctx.gpr[4] = (ctx.gpr[2] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0138_entry, 138u, 745u, 0x08A2F7ACu>(ctx, &aot_mem) && ctx.pc == 0x088FD95Cu) goto L_088FD95C; return; L_088FD95C: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD96C; } goto L_088FD964; } L_088FD964: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FD96C; } L_088FD96C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FD974; } L_088FD974: ctx.gpr[31] = (0x088FD97Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD97Cu) goto L_088FD97C; return; L_088FD97C: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FD9B0; } goto L_088FD984; } L_088FD984: ctx.gpr[31] = (0x088FD98Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FD98Cu) goto L_088FD98C; return; L_088FD98C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FD9B0; } goto L_088FD99C; } L_088FD99C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FDA4C; } goto L_088FD9B0; } L_088FD9B0: ctx.gpr[31] = (0x088FD9B8u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); if (rt.invoke_chained_direct<&recomp_unit_0057_entry, 57u, 410u, 0x088EA4E8u>(ctx, &aot_mem) && ctx.pc == 0x088FD9B8u) goto L_088FD9B8; return; L_088FD9B8: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast(127))); ctx.gpr[4] = (ctx.gpr[4] << 4u); ctx.gpr[5] = (0u + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 3u); ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[17] + ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[5] + static_cast(832)); ctx.gpr[4] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FDA04u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FDA04u) goto L_088FDA04; return; L_088FDA04: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDA44; } goto L_088FDA0C; } L_088FDA0C: ctx.gpr[4] = (ctx.gpr[16] + static_cast(1000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FDA3C; } goto L_088FDA24; } L_088FDA24: ctx.gpr[4] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[31] = (0x088FDA34u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 196u, 0x088ED874u>(ctx, &aot_mem) && ctx.pc == 0x088FDA34u) goto L_088FDA34; return; L_088FDA34: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FDA3C; } L_088FDA3C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDA44; } L_088FDA44: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDA4C; } L_088FDA4C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDA54; } L_088FDA54: ctx.gpr[16] = (ctx.gpr[29] + static_cast(192)); ctx.gpr[31] = (0x088FDA60u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDA60u) goto L_088FDA60; return; L_088FDA60: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FDA94u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FDA94u) goto L_088FDA94; return; L_088FDA94: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDB10; } goto L_088FDA9C; } L_088FDA9C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(208)); ctx.gpr[31] = (0x088FDAA8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDAA8u) goto L_088FDAA8; return; L_088FDAA8: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16800u << 16u); 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_088FDB18; } goto L_088FDB08; } L_088FDB08: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FDB10; } L_088FDB10: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDB18; } L_088FDB18: ctx.gpr[31] = (0x088FDB20u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FDB20u) goto L_088FDB20; return; L_088FDB20: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FDB08; } goto L_088FDB4C; } L_088FDB4C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDB54; } L_088FDB54: ctx.gpr[16] = (ctx.gpr[29] + static_cast(224)); ctx.gpr[31] = (0x088FDB60u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDB60u) goto L_088FDB60; return; L_088FDB60: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FDB94u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FDB94u) goto L_088FDB94; return; L_088FDB94: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDC10; } goto L_088FDB9C; } L_088FDB9C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(240)); ctx.gpr[31] = (0x088FDBA8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDBA8u) goto L_088FDBA8; return; L_088FDBA8: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(224)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16640u << 16u); 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_088FDC18; } goto L_088FDC08; } L_088FDC08: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FDC10; } L_088FDC10: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDC18; } L_088FDC18: ctx.gpr[31] = (0x088FDC20u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FDC20u) goto L_088FDC20; return; L_088FDC20: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FDC08; } goto L_088FDC4C; } L_088FDC4C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDC54; } L_088FDC54: ctx.gpr[16] = (ctx.gpr[29] + static_cast(256)); ctx.gpr[31] = (0x088FDC60u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDC60u) goto L_088FDC60; return; L_088FDC60: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FDC94u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FDC94u) goto L_088FDC94; return; L_088FDC94: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDD10; } goto L_088FDC9C; } L_088FDC9C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(272)); ctx.gpr[31] = (0x088FDCA8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDCA8u) goto L_088FDCA8; return; L_088FDCA8: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(256)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16840u << 16u); 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_088FDD18; } goto L_088FDD08; } L_088FDD08: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FDD10; } L_088FDD10: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDD18; } L_088FDD18: ctx.gpr[31] = (0x088FDD20u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FDD20u) goto L_088FDD20; return; L_088FDD20: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FDD08; } goto L_088FDD4C; } L_088FDD4C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDD54; } L_088FDD54: ctx.gpr[16] = (ctx.gpr[29] + static_cast(288)); ctx.gpr[31] = (0x088FDD60u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDD60u) goto L_088FDD60; return; L_088FDD60: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FDD94u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FDD94u) goto L_088FDD94; return; L_088FDD94: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDE10; } goto L_088FDD9C; } L_088FDD9C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(304)); ctx.gpr[31] = (0x088FDDA8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDDA8u) goto L_088FDDA8; return; L_088FDDA8: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(288)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16640u << 16u); 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_088FDE18; } goto L_088FDE08; } L_088FDE08: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FDE10; } L_088FDE10: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDE18; } L_088FDE18: ctx.gpr[31] = (0x088FDE20u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FDE20u) goto L_088FDE20; return; L_088FDE20: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FDE08; } goto L_088FDE4C; } L_088FDE4C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDE54; } L_088FDE54: ctx.gpr[4] = (ctx.gpr[16] + static_cast(5000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FDE74; } goto L_088FDE6C; } L_088FDE6C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FDE74; } L_088FDE74: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDE7C; } L_088FDE7C: ctx.gpr[31] = (0x088FDE84u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FDE84u) goto L_088FDE84; return; L_088FDE84: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDEE8; } goto L_088FDE8C; } L_088FDE8C: ctx.gpr[31] = (0x088FDE94u); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(2740))); if (rt.invoke_chained_direct<&recomp_unit_0057_entry, 57u, 410u, 0x088EA4E8u>(ctx, &aot_mem) && ctx.pc == 0x088FDE94u) goto L_088FDE94; return; L_088FDE94: ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast(127))); ctx.gpr[4] = (ctx.gpr[4] << 4u); ctx.gpr[5] = (0u + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 3u); ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[17] + ctx.gpr[4]); ctx.gpr[5] = (ctx.gpr[5] + static_cast(832)); ctx.gpr[4] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FDEE0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FDEE0u) goto L_088FDEE0; return; L_088FDEE0: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDF20; } goto L_088FDEE8; } L_088FDEE8: ctx.gpr[4] = (ctx.gpr[16] + static_cast(8000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FDF18; } goto L_088FDF00; } L_088FDF00: ctx.gpr[4] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[31] = (0x088FDF10u); ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[20])); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 196u, 0x088ED874u>(ctx, &aot_mem) && ctx.pc == 0x088FDF10u) goto L_088FDF10; return; L_088FDF10: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FDF18; } L_088FDF18: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDF20; } L_088FDF20: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDF28; } L_088FDF28: ctx.gpr[31] = (0x088FDF30u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FDF30u) goto L_088FDF30; return; L_088FDF30: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE070; } goto L_088FDF38; } L_088FDF38: ctx.gpr[16] = (ctx.gpr[29] + static_cast(320)); ctx.gpr[31] = (0x088FDF44u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDF44u) goto L_088FDF44; return; L_088FDF44: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FDF78u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FDF78u) goto L_088FDF78; return; L_088FDF78: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FDFF4; } goto L_088FDF80; } L_088FDF80: ctx.gpr[16] = (ctx.gpr[29] + static_cast(336)); ctx.gpr[31] = (0x088FDF8Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FDF8Cu) goto L_088FDF8C; return; L_088FDF8C: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(320)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16944u << 16u); 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_088FDFFC; } goto L_088FDFEC; } L_088FDFEC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FE030; } goto L_088FDFF4; } L_088FDFF4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FDFFC; } L_088FDFFC: ctx.gpr[31] = (0x088FE004u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FE004u) goto L_088FE004; return; L_088FE004: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FE068; } goto L_088FE030; } L_088FE030: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16448u << 16u); 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_088FE070; } goto L_088FE060; } L_088FE060: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE068; } L_088FE068: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE070; } L_088FE070: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FE078; } L_088FE078: ctx.gpr[31] = (0x088FE080u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE080u) goto L_088FE080; return; L_088FE080: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE184; } goto L_088FE088; } L_088FE088: ctx.gpr[16] = (ctx.gpr[29] + static_cast(352)); ctx.gpr[31] = (0x088FE094u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE094u) goto L_088FE094; return; L_088FE094: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FE0C8u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE0C8u) goto L_088FE0C8; return; L_088FE0C8: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE17C; } goto L_088FE0D0; } L_088FE0D0: ctx.gpr[16] = (ctx.gpr[29] + static_cast(368)); ctx.gpr[31] = (0x088FE0DCu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE0DCu) goto L_088FE0DC; return; L_088FE0DC: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(352)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16968u << 16u); 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_088FE174; } goto L_088FE13C; } L_088FE13C: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16448u << 16u); 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_088FE184; } goto L_088FE16C; } L_088FE16C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE174; } L_088FE174: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE17C; } L_088FE17C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE184; } L_088FE184: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FE18C; } L_088FE18C: ctx.gpr[31] = (0x088FE194u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE194u) goto L_088FE194; return; L_088FE194: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE2D4; } goto L_088FE19C; } L_088FE19C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(384)); ctx.gpr[31] = (0x088FE1A8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE1A8u) goto L_088FE1A8; return; L_088FE1A8: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FE1DCu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE1DCu) goto L_088FE1DC; return; L_088FE1DC: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE258; } goto L_088FE1E4; } L_088FE1E4: ctx.gpr[16] = (ctx.gpr[29] + static_cast(400)); ctx.gpr[31] = (0x088FE1F0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE1F0u) goto L_088FE1F0; return; L_088FE1F0: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(384)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16968u << 16u); 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_088FE260; } goto L_088FE250; } L_088FE250: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FE294; } goto L_088FE258; } L_088FE258: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE260; } L_088FE260: ctx.gpr[31] = (0x088FE268u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FE268u) goto L_088FE268; return; L_088FE268: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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); } 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(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_088FE2CC; } goto L_088FE294; } L_088FE294: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16384u << 16u); 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_088FE2D4; } goto L_088FE2C4; } L_088FE2C4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE2CC; } L_088FE2CC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE2D4; } L_088FE2D4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FE2DC; } L_088FE2DC: ctx.gpr[16] = (ctx.gpr[29] + static_cast(416)); ctx.gpr[31] = (0x088FE2E8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE2E8u) goto L_088FE2E8; return; L_088FE2E8: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FE31Cu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE31Cu) goto L_088FE31C; return; L_088FE31C: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE3D0; } goto L_088FE324; } L_088FE324: ctx.gpr[16] = (ctx.gpr[29] + static_cast(432)); ctx.gpr[31] = (0x088FE330u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE330u) goto L_088FE330; return; L_088FE330: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(416)); { 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(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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16996u << 16u); 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_088FE3C8; } goto L_088FE388; } L_088FE388: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16256u << 16u); 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_088FE3C0; } goto L_088FE3B8; } L_088FE3B8: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FE3C0; } L_088FE3C0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE3C8; } L_088FE3C8: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE3D0; } L_088FE3D0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE3D8; } L_088FE3D8: ctx.gpr[16] = (ctx.gpr[29] + static_cast(448)); ctx.gpr[31] = (0x088FE3E4u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE3E4u) goto L_088FE3E4; return; L_088FE3E4: ctx.gpr[4] = (2232u << 16u); ctx.gpr[5] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[5] + static_cast(2464)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FE418u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE418u) goto L_088FE418; return; L_088FE418: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE4D4; } goto L_088FE420; } L_088FE420: ctx.gpr[16] = (ctx.gpr[29] + static_cast(464)); ctx.gpr[31] = (0x088FE42Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE42Cu) goto L_088FE42C; return; L_088FE42C: { 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] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[4] = (ctx.gpr[4] + static_cast(2464)); { 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(448)); { 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(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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16912u << 16u); 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_088FE4CC; } goto L_088FE48C; } L_088FE48C: ctx.gpr[4] = (ctx.gpr[29] + 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16384u << 16u); 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_088FE4C4; } goto L_088FE4BC; } L_088FE4BC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FE4C4; } L_088FE4C4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE4CC; } L_088FE4CC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE4D4; } L_088FE4D4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { goto L_088FE500; } goto L_088FE4DC; } L_088FE4DC: ctx.gpr[4] = (ctx.gpr[16] + static_cast(5000)); ctx.gpr[5] = (2230u << 16u); ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast(-8148))); ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FE4FC; } goto L_088FE4F4; } L_088FE4F4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FD2EC; } goto L_088FE4FC; } L_088FE4FC: ctx.gpr[2] = (0u | 1u); goto L_088FE500; L_088FE500: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(712))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(716))); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(720))); ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast(724))); jump_target = ctx.gpr[31]; ctx.gpr[29] = (ctx.gpr[29] + static_cast(736)); local_pc = jump_target; if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; } ctx.pc = jump_target; return; L_088FE518: ctx.gpr[29] = (ctx.gpr[29] + static_cast(-1040)); aot_mem.aot_store32(ctx.gpr[29] + static_cast(996), std::bit_cast(ctx.fpr[20])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1000), std::bit_cast(ctx.fpr[22])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1004), std::bit_cast(ctx.fpr[24])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1008), ctx.gpr[16]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1012), ctx.gpr[17]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1016), ctx.gpr[18]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1020), ctx.gpr[19]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1024), ctx.gpr[20]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1028), ctx.gpr[21]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(1032), ctx.gpr[31]); ctx.gpr[6] = (ctx.gpr[5] < static_cast(21) ? 1u : 0u); { const bool branch_taken = ctx.gpr[6] == 0u; ctx.gpr[18] = (ctx.gpr[4] | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 13u, 0x089000E8u>(ctx, &aot_mem); return; } goto L_088FE550; } L_088FE550: ctx.gpr[5] = (ctx.gpr[5] << 2u); ctx.gpr[1] = (2225u << 16u); ctx.gpr[1] = (ctx.gpr[1] + ctx.gpr[5]); ctx.gpr[1] = (aot_mem.aot_load32(ctx.gpr[1] + static_cast(16240))); 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_088FE568: ctx.gpr[31] = (0x088FE570u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE570u) goto L_088FE570; return; L_088FE570: ctx.gpr[16] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088FE6B0; } goto L_088FE57C; } L_088FE57C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FE5A0; } goto L_088FE58C; } L_088FE58C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FE684; } goto L_088FE5A0; } L_088FE5A0: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[16] + static_cast(88)))))); ctx.gpr[5] = (0u | 162u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; // nop if (branch_taken) { goto L_088FE67C; } goto L_088FE5B0; } L_088FE5B0: ctx.gpr[31] = (0x088FE5B8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE5B8u) goto L_088FE5B8; return; L_088FE5B8: ctx.gpr[4] = (49075u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 13107u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(160), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (49171u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 13107u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(164), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16025u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 39322u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(168), std::bit_cast(ctx.fpr[12])); { const std::uint32_t vfpu_address = ctx.gpr[2] + 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[2] + 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[2] + 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); } 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<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<7u, 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); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(144)); { 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[17] = (ctx.gpr[29] + static_cast(176)); { 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[31] = (0x088FE61Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE61Cu) goto L_088FE61C; return; L_088FE61C: ctx.gpr[5] = (ctx.gpr[2] + static_cast(48)); ctx.gpr[31] = (0x088FE628u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE628u) goto L_088FE628; return; L_088FE628: ctx.gpr[31] = (0x088FE630u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE630u) goto L_088FE630; return; L_088FE630: ctx.gpr[4] = (ctx.gpr[2] + 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.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])); } ctx.gpr[4] = (ctx.gpr[16] + static_cast(48)); ctx.gpr[5] = (ctx.gpr[17] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FE66Cu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE66Cu) goto L_088FE66C; return; L_088FE66C: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FE68C; } goto L_088FE674; } L_088FE674: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE67C; } L_088FE67C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE684; } L_088FE684: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE68C; } L_088FE68C: ctx.gpr[4] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 14u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FE6A8u); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FE6A8u) goto L_088FE6A8; return; L_088FE6A8: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE6B0; } L_088FE6B0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE6B8; } L_088FE6B8: ctx.gpr[16] = (ctx.gpr[29] + static_cast(112)); ctx.gpr[31] = (0x088FE6C4u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE6C4u) goto L_088FE6C4; return; L_088FE6C4: { 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(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])); } ctx.gpr[31] = (0x088FE6D8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FE6D8u) goto L_088FE6D8; return; L_088FE6D8: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FE738; } goto L_088FE70C; } L_088FE70C: 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<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[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) { goto L_088FE744; } goto L_088FE738; } L_088FE738: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FE744; L_088FE744: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16800u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FE778u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE778u) goto L_088FE778; return; L_088FE778: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(68))); ctx.gpr[4] = (16448u << 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[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(64))); ctx.gpr[4] = (49216u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[14]; const float ft = ctx.fpr[15]; 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; } 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[14])); ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(120), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FE7B4u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE7B4u) goto L_088FE7B4; return; L_088FE7B4: ctx.gpr[31] = (0x088FE7BCu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE7BCu) goto L_088FE7BC; return; L_088FE7BC: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE7F0; } goto L_088FE7C4; } L_088FE7C4: ctx.gpr[31] = (0x088FE7CCu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE7CCu) goto L_088FE7CC; return; L_088FE7CC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FE7F0; } goto L_088FE7DC; } L_088FE7DC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FE834; } goto L_088FE7F0; } L_088FE7F0: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[15]; ctx.gpr[31] = (0x088FE810u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 453u, 0x088C2F78u>(ctx, &aot_mem) && ctx.pc == 0x088FE810u) goto L_088FE810; return; L_088FE810: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FE83C; } goto L_088FE820; } L_088FE820: ctx.gpr[4] = (16320u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088FE87C; } goto L_088FE834; } L_088FE834: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE83C; } L_088FE83C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[15]; ctx.gpr[31] = (0x088FE85Cu); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 462u, 0x088C300Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE85Cu) goto L_088FE85C; return; L_088FE85C: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FE87C; } goto L_088FE86C; } L_088FE86C: ctx.gpr[4] = (16320u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); goto L_088FE87C; L_088FE87C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(112)); ctx.gpr[31] = (0x088FE888u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE888u) goto L_088FE888; return; L_088FE888: ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FE8B4u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE8B4u) goto L_088FE8B4; return; L_088FE8B4: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FE928; } goto L_088FE8BC; } L_088FE8BC: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FE8C8u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FE8C8u) goto L_088FE8C8; return; L_088FE8C8: { 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(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); } ctx.gpr[4] = (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[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(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[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(104), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16928u << 16u); 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_088FE930; } goto L_088FE920; } L_088FE920: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FE964; } goto L_088FE928; } L_088FE928: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE930; } L_088FE930: ctx.gpr[31] = (0x088FE938u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FE938u) goto L_088FE938; return; L_088FE938: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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<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(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_088FE99C; } goto L_088FE964; } L_088FE964: 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16416u << 16u); 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_088FE9A4; } goto L_088FE994; } L_088FE994: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE99C; } L_088FE99C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE9A4; } L_088FE9A4: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FE9CCu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FE9CCu) goto L_088FE9CC; return; L_088FE9CC: ctx.gpr[31] = (0x088FE9D4u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FE9D4u) goto L_088FE9D4; return; L_088FE9D4: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FE9ECu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FE9ECu) goto L_088FE9EC; return; L_088FE9EC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FE9F4; } L_088FE9F4: ctx.gpr[31] = (0x088FE9FCu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FE9FCu) goto L_088FE9FC; return; L_088FE9FC: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FEA30; } goto L_088FEA04; } L_088FEA04: ctx.gpr[31] = (0x088FEA0Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FEA0Cu) goto L_088FEA0C; return; L_088FEA0C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FEA30; } goto L_088FEA1C; } L_088FEA1C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FEAB0; } goto L_088FEA30; } L_088FEA30: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FEA3Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FEA3Cu) goto L_088FEA3C; return; L_088FEA3C: { 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(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])); } ctx.gpr[31] = (0x088FEA50u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FEA50u) goto L_088FEA50; return; L_088FEA50: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FEAB8; } goto L_088FEA84; } L_088FEA84: 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<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[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) { goto L_088FEAC4; } goto L_088FEAB0; } L_088FEAB0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FEAB8; } L_088FEAB8: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FEAC4; L_088FEAC4: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16768u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FEAF8u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEAF8u) goto L_088FEAF8; return; L_088FEAF8: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(68))); ctx.gpr[4] = (16416u << 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[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(64))); ctx.gpr[4] = (49184u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[14]; const float ft = ctx.fpr[15]; 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; } 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[14])); ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FEB34u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEB34u) goto L_088FEB34; return; L_088FEB34: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[15]; ctx.gpr[31] = (0x088FEB54u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 453u, 0x088C2F78u>(ctx, &aot_mem) && ctx.pc == 0x088FEB54u) goto L_088FEB54; return; L_088FEB54: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FEB78; } goto L_088FEB64; } L_088FEB64: ctx.gpr[4] = (16128u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088FEBB8; } goto L_088FEB78; } L_088FEB78: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[15]; ctx.gpr[31] = (0x088FEB98u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 462u, 0x088C300Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEB98u) goto L_088FEB98; return; L_088FEB98: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FEBB8; } goto L_088FEBA8; } L_088FEBA8: ctx.gpr[4] = (16128u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); goto L_088FEBB8; L_088FEBB8: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FEBC4u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FEBC4u) goto L_088FEBC4; return; L_088FEBC4: ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FEBF0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEBF0u) goto L_088FEBF0; return; L_088FEBF0: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FEC64; } goto L_088FEBF8; } L_088FEBF8: ctx.gpr[16] = (ctx.gpr[29] + static_cast(112)); ctx.gpr[31] = (0x088FEC04u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FEC04u) goto L_088FEC04; return; L_088FEC04: { 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(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); } 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])); } { 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(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[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(104), std::bit_cast(ctx.fpr[12])); { 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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16872u << 16u); 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_088FEC6C; } goto L_088FEC5C; } L_088FEC5C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FECA0; } goto L_088FEC64; } L_088FEC64: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FEC6C; } L_088FEC6C: ctx.gpr[31] = (0x088FEC74u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FEC74u) goto L_088FEC74; return; L_088FEC74: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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(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<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(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_088FECD8; } goto L_088FECA0; } L_088FECA0: 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16384u << 16u); 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_088FECE0; } goto L_088FECD0; } L_088FECD0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FECD8; } L_088FECD8: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FECE0; } L_088FECE0: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FED08u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FED08u) goto L_088FED08; return; L_088FED08: ctx.gpr[31] = (0x088FED10u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FED10u) goto L_088FED10; return; L_088FED10: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FED28u); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FED28u) goto L_088FED28; return; L_088FED28: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FED30; } L_088FED30: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FED3Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FED3Cu) goto L_088FED3C; return; L_088FED3C: { 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(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])); } ctx.gpr[31] = (0x088FED50u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FED50u) goto L_088FED50; return; L_088FED50: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FEDB0; } goto L_088FED84; } L_088FED84: 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<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[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) { goto L_088FEDBC; } goto L_088FEDB0; } L_088FEDB0: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FEDBC; L_088FEDBC: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16880u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FEDF0u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEDF0u) goto L_088FEDF0; return; L_088FEDF0: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(68))); ctx.gpr[4] = (16640u << 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[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(64))); ctx.gpr[4] = (49408u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[14]; const float ft = ctx.fpr[15]; 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; } 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[14])); ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FEE2Cu); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEE2Cu) goto L_088FEE2C; return; L_088FEE2C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16768u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); ctx.gpr[31] = (0x088FEE48u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FEE48u) goto L_088FEE48; return; L_088FEE48: ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FEE74u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEE74u) goto L_088FEE74; return; L_088FEE74: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FEE84; } goto L_088FEE7C; } L_088FEE7C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FEE84; } L_088FEE84: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FEEACu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEEACu) goto L_088FEEAC; return; L_088FEEAC: ctx.gpr[31] = (0x088FEEB4u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FEEB4u) goto L_088FEEB4; return; L_088FEEB4: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FEECCu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FEECCu) goto L_088FEECC; return; L_088FEECC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FEED4; } L_088FEED4: ctx.gpr[4] = (2232u << 16u); ctx.gpr[31] = (0x088FEEE0u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FEEE0u) goto L_088FEEE0; return; L_088FEEE0: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 16u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FEEF8u); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FEEF8u) goto L_088FEEF8; return; L_088FEEF8: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FEF00; } L_088FEF00: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FEF0Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FEF0Cu) goto L_088FEF0C; return; L_088FEF0C: { 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(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])); } ctx.gpr[31] = (0x088FEF20u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FEF20u) goto L_088FEF20; return; L_088FEF20: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FEF80; } goto L_088FEF54; } L_088FEF54: 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<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[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) { goto L_088FEF8C; } goto L_088FEF80; } L_088FEF80: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FEF8C; L_088FEF8C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16880u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FEFC0u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEFC0u) goto L_088FEFC0; return; L_088FEFC0: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(68))); ctx.gpr[4] = (49344u << 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[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(64))); ctx.gpr[4] = (16576u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); { const float fs = ctx.fpr[14]; const float ft = ctx.fpr[15]; 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; } 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[14])); ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FEFFCu); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FEFFCu) goto L_088FEFFC; return; L_088FEFFC: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[15]; ctx.gpr[31] = (0x088FF01Cu); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 453u, 0x088C2F78u>(ctx, &aot_mem) && ctx.pc == 0x088FF01Cu) goto L_088FF01C; return; L_088FF01C: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FF040; } goto L_088FF02C; } L_088FF02C: ctx.gpr[4] = (16480u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088FF080; } goto L_088FF040; } L_088FF040: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[15]; ctx.gpr[31] = (0x088FF060u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 462u, 0x088C300Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF060u) goto L_088FF060; return; L_088FF060: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FF080; } goto L_088FF070; } L_088FF070: ctx.gpr[4] = (16480u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); goto L_088FF080; L_088FF080: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FF08Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF08Cu) goto L_088FF08C; return; L_088FF08C: ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FF0B8u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF0B8u) goto L_088FF0B8; return; L_088FF0B8: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FF0C8; } goto L_088FF0C0; } L_088FF0C0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF0C8; } L_088FF0C8: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FF0F0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF0F0u) goto L_088FF0F0; return; L_088FF0F0: ctx.gpr[31] = (0x088FF0F8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FF0F8u) goto L_088FF0F8; return; L_088FF0F8: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FF110u); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FF110u) goto L_088FF110; return; L_088FF110: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF118; } L_088FF118: ctx.gpr[4] = (2232u << 16u); ctx.gpr[31] = (0x088FF124u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FF124u) goto L_088FF124; return; L_088FF124: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 18u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FF13Cu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FF13Cu) goto L_088FF13C; return; L_088FF13C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF144; } L_088FF144: ctx.gpr[31] = (0x088FF14Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 198u, 0x089D596Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF14Cu) goto L_088FF14C; return; L_088FF14C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(2096))); ctx.gpr[4] = (static_cast(ctx.gpr[4]) < 1 ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FF18C; } goto L_088FF15C; } L_088FF15C: ctx.gpr[31] = (0x088FF164u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF164u) goto L_088FF164; return; L_088FF164: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FF184; } goto L_088FF16C; } L_088FF16C: ctx.gpr[31] = (0x088FF174u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF174u) goto L_088FF174; return; L_088FF174: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FF194; } goto L_088FF17C; } L_088FF17C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FF1C0; } goto L_088FF184; } L_088FF184: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF18C; } L_088FF18C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF194; } L_088FF194: ctx.gpr[31] = (0x088FF19Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF19Cu) goto L_088FF19C; return; L_088FF19C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FF1C0; } goto L_088FF1AC; } L_088FF1AC: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FF1DC; } goto L_088FF1C0; } L_088FF1C0: ctx.gpr[4] = (2229u << 16u); ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(-15312))); ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(8))); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[17] = (ctx.gpr[4] + static_cast(-1)); if (branch_taken) { goto L_088FF1E4; } goto L_088FF1D4; } L_088FF1D4: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FF3A0; } goto L_088FF1DC; } L_088FF1DC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF1E4; } L_088FF1E4: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(4))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]); 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[18] + static_cast(0))); goto L_088FF204; } goto L_088FF1FC; L_088FF1FC: { const bool branch_taken = 0u == 0u; ctx.gpr[16] = (0u | 0u); if (branch_taken) { goto L_088FF228; } goto L_088FF204; } L_088FF204: ctx.gpr[4] = (ctx.gpr[17] << 5u); ctx.gpr[5] = (0u - ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 3u); ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 1u); ctx.gpr[5] = (ctx.gpr[5] - ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[16] = (ctx.gpr[16] + ctx.gpr[4]); goto L_088FF228; L_088FF228: { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088FF394; } goto L_088FF230; } L_088FF230: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(836))); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FF394; } goto L_088FF23C; } L_088FF23C: ctx.gpr[31] = (0x088FF244u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF244u) goto L_088FF244; return; L_088FF244: { const bool branch_taken = ctx.gpr[16] == ctx.gpr[2]; // nop if (branch_taken) { goto L_088FF394; } goto L_088FF24C; } L_088FF24C: ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load8(ctx.gpr[16] + static_cast(597)))))); ctx.gpr[4] = (ctx.gpr[4] & 1u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FF394; } goto L_088FF25C; } L_088FF25C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast(68))); ctx.gpr[4] = (ctx.gpr[4] & 496u); ctx.gpr[5] = (0u | 48u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FF394; } goto L_088FF270; } L_088FF270: ctx.gpr[19] = (ctx.gpr[29] + static_cast(208)); ctx.gpr[31] = (0x088FF27Cu); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF27Cu) goto L_088FF27C; return; L_088FF27C: ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(208))); ctx.gpr[20] = (ctx.gpr[16] + static_cast(48)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(0))); ctx.fpr[22] = ctx.fpr[12] - ctx.fpr[22]; ctx.gpr[31] = (0x088FF294u); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF294u) goto L_088FF294; return; L_088FF294: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(212))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(4))); ctx.fpr[20] = ctx.fpr[13] - ctx.fpr[20]; ctx.gpr[21] = (ctx.gpr[29] + static_cast(224)); ctx.gpr[31] = (0x088FF2ACu); ctx.gpr[4] = (ctx.gpr[21] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF2ACu) goto L_088FF2AC; return; L_088FF2AC: { 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); } { 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<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[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])); } { 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16880u << 16u); 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_088FF394; } goto L_088FF2E8; } L_088FF2E8: ctx.gpr[31] = (0x088FF2F0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF2F0u) goto L_088FF2F0; return; L_088FF2F0: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[31] = (0x088FF300u); { const float fs = ctx.fpr[22]; const float ft = ctx.fpr[12]; 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; } if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF300u) goto L_088FF300; return; L_088FF300: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); { 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.fpr[13] = ctx.fpr[22] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FF394; } goto L_088FF324; } L_088FF324: ctx.gpr[19] = (ctx.gpr[16] + static_cast(16)); ctx.gpr[31] = (0x088FF330u); ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(0))); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF330u) goto L_088FF330; return; L_088FF330: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); { 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[20] = std::bit_cast(0x7FC00000u); else ctx.fpr[20] = fs * ft; } ctx.gpr[31] = (0x088FF344u); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF344u) goto L_088FF344; return; L_088FF344: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); { const float fs = ctx.fpr[22]; 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[20] + ctx.fpr[13]; ctx.gpr[4] = (16204u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 52429u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FF394; } goto L_088FF370; } L_088FF370: ctx.gpr[4] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 18u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FF38Cu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FF38Cu) goto L_088FF38C; return; L_088FF38C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF394; } L_088FF394: ctx.gpr[4] = (ctx.gpr[17] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[17] = (ctx.gpr[17] + static_cast(-1)); if (branch_taken) { goto L_088FF1E4; } goto L_088FF3A0; } L_088FF3A0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF3A8; } L_088FF3A8: ctx.gpr[31] = (0x088FF3B0u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 198u, 0x089D596Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF3B0u) goto L_088FF3B0; return; L_088FF3B0: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(2096))); ctx.gpr[4] = (static_cast(ctx.gpr[4]) < 1 ? 1u : 0u); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FF3FC; } goto L_088FF3C0; } L_088FF3C0: ctx.gpr[31] = (0x088FF3C8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF3C8u) goto L_088FF3C8; return; L_088FF3C8: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { goto L_088FF3F4; } goto L_088FF3D0; } L_088FF3D0: ctx.gpr[4] = (2229u << 16u); ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast(-15312))); ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(8))); ctx.gpr[31] = (0x088FF3E4u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF3E4u) goto L_088FF3E4; return; L_088FF3E4: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FF404; } goto L_088FF3EC; } L_088FF3EC: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FF430; } goto L_088FF3F4; } L_088FF3F4: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF3FC; } L_088FF3FC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF404; } L_088FF404: ctx.gpr[31] = (0x088FF40Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF40Cu) goto L_088FF40C; return; L_088FF40C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FF430; } goto L_088FF41C; } L_088FF41C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(2740))); ctx.gpr[4] = (static_cast(static_cast(static_cast(aot_mem.aot_load16(ctx.gpr[4] + static_cast(88)))))); ctx.gpr[5] = (0u + static_cast(-1000)); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FF444; } goto L_088FF430; } L_088FF430: ctx.gpr[4] = (ctx.gpr[16] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[16] = (ctx.gpr[16] + static_cast(-1)); if (branch_taken) { goto L_088FF44C; } goto L_088FF43C; } L_088FF43C: { const bool branch_taken = 0u == 0u; // nop if (branch_taken) { goto L_088FF6AC; } goto L_088FF444; } L_088FF444: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF44C; } L_088FF44C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(4))); ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[16]); 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[18] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast(0))); goto L_088FF46C; } goto L_088FF464; L_088FF464: { const bool branch_taken = 0u == 0u; ctx.gpr[18] = (0u | 0u); if (branch_taken) { goto L_088FF490; } goto L_088FF46C; } L_088FF46C: ctx.gpr[4] = (ctx.gpr[16] << 5u); ctx.gpr[5] = (0u - ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 3u); ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 1u); ctx.gpr[5] = (ctx.gpr[5] - ctx.gpr[4]); ctx.gpr[4] = (ctx.gpr[4] << 2u); ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]); ctx.gpr[18] = (ctx.gpr[18] + ctx.gpr[4]); goto L_088FF490; L_088FF490: { const bool branch_taken = ctx.gpr[18] == 0u; // nop if (branch_taken) { goto L_088FF6A0; } goto L_088FF498; } L_088FF498: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[18] + static_cast(836))); { const bool branch_taken = ctx.gpr[4] != 0u; // nop if (branch_taken) { goto L_088FF6A0; } goto L_088FF4A4; } L_088FF4A4: ctx.gpr[31] = (0x088FF4ACu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF4ACu) goto L_088FF4AC; return; L_088FF4AC: { const bool branch_taken = ctx.gpr[18] == ctx.gpr[2]; // nop if (branch_taken) { goto L_088FF6A0; } goto L_088FF4B4; } L_088FF4B4: 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] & 1u); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FF6A0; } goto L_088FF4C4; } L_088FF4C4: ctx.gpr[19] = (ctx.gpr[29] + static_cast(240)); ctx.gpr[31] = (0x088FF4D0u); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF4D0u) goto L_088FF4D0; return; L_088FF4D0: ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(240))); ctx.gpr[20] = (ctx.gpr[18] + static_cast(48)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(0))); ctx.fpr[22] = ctx.fpr[12] - ctx.fpr[22]; ctx.gpr[31] = (0x088FF4E8u); ctx.gpr[4] = (ctx.gpr[19] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF4E8u) goto L_088FF4E8; return; L_088FF4E8: ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(244))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[20] + static_cast(4))); ctx.fpr[20] = ctx.fpr[13] - ctx.fpr[20]; ctx.gpr[21] = (ctx.gpr[29] + static_cast(256)); ctx.gpr[31] = (0x088FF500u); ctx.gpr[4] = (ctx.gpr[21] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF500u) goto L_088FF500; return; L_088FF500: { 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); } { 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<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[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])); } { 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.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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16880u << 16u); 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_088FF6A0; } goto L_088FF53C; } L_088FF53C: ctx.gpr[31] = (0x088FF544u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF544u) goto L_088FF544; return; L_088FF544: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); ctx.gpr[31] = (0x088FF554u); { const float fs = ctx.fpr[22]; const float ft = ctx.fpr[12]; 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; } if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF554u) goto L_088FF554; return; L_088FF554: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); { 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.fpr[13] = ctx.fpr[22] + ctx.fpr[13]; ctx.fpr[14] = std::bit_cast(0u); ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[14])); // nop { const bool branch_taken = !ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FF6A0; } goto L_088FF578; } L_088FF578: ctx.gpr[19] = (ctx.gpr[18] + static_cast(16)); ctx.gpr[31] = (0x088FF584u); ctx.fpr[20] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(0))); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF584u) goto L_088FF584; return; L_088FF584: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(0))); { 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[20] = std::bit_cast(0x7FC00000u); else ctx.fpr[20] = fs * ft; } ctx.gpr[31] = (0x088FF598u); ctx.fpr[22] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[19] + static_cast(4))); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FF598u) goto L_088FF598; return; L_088FF598: ctx.gpr[4] = (ctx.gpr[2] + static_cast(16)); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[4] + static_cast(4))); { const float fs = ctx.fpr[22]; 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[20] + ctx.fpr[13]; ctx.gpr[4] = (16204u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 52429u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FF6A0; } goto L_088FF5C4; } L_088FF5C4: ctx.gpr[4] = (49075u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 13107u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(288), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (49171u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 13107u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(292), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16025u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 39322u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(296), std::bit_cast(ctx.fpr[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<4u, 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<5u, 4u>(vfpu_value); } { const std::uint32_t vfpu_address = ctx.gpr[18] + 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); } 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<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<7u, 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); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(272)); { 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[16] = (ctx.gpr[29] + static_cast(304)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[16] + 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[17] = (ctx.gpr[18] + static_cast(48)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FF630u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF630u) goto L_088FF630; return; L_088FF630: ctx.gpr[4] = (ctx.gpr[18] + 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.gpr[4] = (ctx.gpr[29] + static_cast(320)); { 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] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FF66Cu); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF66Cu) goto L_088FF66C; return; L_088FF66C: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FF67C; } goto L_088FF674; } L_088FF674: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF67C; } L_088FF67C: ctx.gpr[4] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[18] | 0u); ctx.gpr[6] = (0u | 14u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FF698u); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FF698u) goto L_088FF698; return; L_088FF698: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF6A0; } L_088FF6A0: ctx.gpr[4] = (ctx.gpr[16] | 0u); { const bool branch_taken = ctx.gpr[4] != 0u; ctx.gpr[16] = (ctx.gpr[16] + static_cast(-1)); if (branch_taken) { goto L_088FF44C; } goto L_088FF6AC; } L_088FF6AC: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF6B4; } L_088FF6B4: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FF6C0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF6C0u) goto L_088FF6C0; return; L_088FF6C0: { 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(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])); } ctx.gpr[31] = (0x088FF6D4u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FF6D4u) goto L_088FF6D4; return; L_088FF6D4: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FF734; } goto L_088FF708; } L_088FF708: 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<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[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) { goto L_088FF740; } goto L_088FF734; } L_088FF734: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FF740; L_088FF740: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16752u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FF774u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF774u) goto L_088FF774; return; L_088FF774: ctx.gpr[4] = (16384u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(132), std::bit_cast(ctx.fpr[12])); ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FF7A0u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF7A0u) goto L_088FF7A0; return; L_088FF7A0: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[15]; ctx.gpr[31] = (0x088FF7C0u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 453u, 0x088C2F78u>(ctx, &aot_mem) && ctx.pc == 0x088FF7C0u) goto L_088FF7C0; return; L_088FF7C0: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FF7E4; } goto L_088FF7D0; } L_088FF7D0: ctx.gpr[4] = (16128u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; { const bool branch_taken = 0u == 0u; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); if (branch_taken) { goto L_088FF824; } goto L_088FF7E4; } L_088FF7E4: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(48))); ctx.fpr[13] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(52))); ctx.fpr[14] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16544u << 16u); ctx.fpr[15] = std::bit_cast(ctx.gpr[4]); ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[15]; ctx.gpr[31] = (0x088FF804u); ctx.gpr[4] = (ctx.gpr[29] + static_cast(80)); if (rt.invoke_chained_direct<&recomp_unit_0047_entry, 47u, 462u, 0x088C300Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF804u) goto L_088FF804; return; L_088FF804: ctx.fpr[12] = std::bit_cast(std::bit_cast(ctx.fpr[0])); ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[29] + static_cast(80))); { const bool branch_taken = ctx.gpr[4] == 0u; // nop if (branch_taken) { goto L_088FF824; } goto L_088FF814; } L_088FF814: ctx.gpr[4] = (16128u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); goto L_088FF824; L_088FF824: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FF84Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF84Cu) goto L_088FF84C; return; L_088FF84C: ctx.gpr[31] = (0x088FF854u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FF854u) goto L_088FF854; return; L_088FF854: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FF86Cu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FF86Cu) goto L_088FF86C; return; L_088FF86C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF874; } L_088FF874: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FF880u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF880u) goto L_088FF880; return; L_088FF880: { 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(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])); } ctx.gpr[31] = (0x088FF894u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FF894u) goto L_088FF894; return; L_088FF894: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FF8F4; } goto L_088FF8C8; } L_088FF8C8: 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<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[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) { goto L_088FF900; } goto L_088FF8F4; } L_088FF8F4: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FF900; L_088FF900: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16544u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FF934u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF934u) goto L_088FF934; return; L_088FF934: ctx.gpr[4] = (16384u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(132), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16128u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FF964u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF964u) goto L_088FF964; return; L_088FF964: ctx.gpr[31] = (0x088FF96Cu); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FF96Cu) goto L_088FF96C; return; L_088FF96C: ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FF998u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF998u) goto L_088FF998; return; L_088FF998: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FF9A8; } goto L_088FF9A0; } L_088FF9A0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF9A8; } L_088FF9A8: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FF9D0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FF9D0u) goto L_088FF9D0; return; L_088FF9D0: ctx.gpr[31] = (0x088FF9D8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FF9D8u) goto L_088FF9D8; return; L_088FF9D8: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FF9F0u); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FF9F0u) goto L_088FF9F0; return; L_088FF9F0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FF9F8; } L_088FF9F8: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FFA04u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFA04u) goto L_088FFA04; return; L_088FFA04: { 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(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])); } ctx.gpr[31] = (0x088FFA18u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FFA18u) goto L_088FFA18; return; L_088FFA18: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FFA78; } goto L_088FFA4C; } L_088FFA4C: 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<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[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) { goto L_088FFA84; } goto L_088FFA78; } L_088FFA78: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FFA84; L_088FFA84: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16800u << 16u); ctx.fpr[20] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[20])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FFAB8u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFAB8u) goto L_088FFAB8; return; L_088FFAB8: ctx.gpr[4] = (16384u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(132), std::bit_cast(ctx.fpr[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[20])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FFAE0u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFAE0u) goto L_088FFAE0; return; L_088FFAE0: ctx.gpr[31] = (0x088FFAE8u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFAE8u) goto L_088FFAE8; return; L_088FFAE8: ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FFB14u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFB14u) goto L_088FFB14; return; L_088FFB14: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FFB24; } goto L_088FFB1C; } L_088FFB1C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFB24; } L_088FFB24: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FFB4Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFB4Cu) goto L_088FFB4C; return; L_088FFB4C: ctx.gpr[31] = (0x088FFB54u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FFB54u) goto L_088FFB54; return; L_088FFB54: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FFB6Cu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FFB6Cu) goto L_088FFB6C; return; L_088FFB6C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFB74; } L_088FFB74: ctx.gpr[16] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FFB80u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFB80u) goto L_088FFB80; return; L_088FFB80: { 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(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])); } ctx.gpr[31] = (0x088FFB94u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FFB94u) goto L_088FFB94; return; L_088FFB94: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FFBF4; } goto L_088FFBC8; } L_088FFBC8: 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<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[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) { goto L_088FFC00; } goto L_088FFBF4; } L_088FFBF4: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FFC00; L_088FFC00: ctx.gpr[16] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (16544u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]); 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.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[17] = (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[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[16] | 0u); ctx.gpr[31] = (0x088FFC34u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFC34u) goto L_088FFC34; return; L_088FFC34: ctx.gpr[4] = (16384u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(128), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(132), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16680u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[31] = (0x088FFC64u); ctx.gpr[5] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFC64u) goto L_088FFC64; return; L_088FFC64: ctx.gpr[31] = (0x088FFC6Cu); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFC6Cu) goto L_088FFC6C; return; L_088FFC6C: ctx.gpr[4] = (ctx.gpr[17] | 0u); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FFC98u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFC98u) goto L_088FFC98; return; L_088FFC98: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FFCA8; } goto L_088FFCA0; } L_088FFCA0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFCA8; } L_088FFCA8: ctx.gpr[4] = (2232u << 16u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.fpr[12] = std::bit_cast(0u); 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[12])); aot_mem.aot_store32(ctx.gpr[29] + static_cast(136), std::bit_cast(ctx.fpr[12])); ctx.gpr[6] = (ctx.gpr[29] + static_cast(128)); ctx.gpr[31] = (0x088FFCD0u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 347u, 0x088EE45Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFCD0u) goto L_088FFCD0; return; L_088FFCD0: ctx.gpr[31] = (0x088FFCD8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FFCD8u) goto L_088FFCD8; return; L_088FFCD8: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 15u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FFCF0u); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FFCF0u) goto L_088FFCF0; return; L_088FFCF0: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFCF8; } L_088FFCF8: ctx.gpr[4] = (2232u << 16u); ctx.gpr[31] = (0x088FFD04u); ctx.gpr[16] = (ctx.gpr[4] + static_cast(12960)); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 185u, 0x089D58C4u>(ctx, &aot_mem) && ctx.pc == 0x088FFD04u) goto L_088FFD04; return; L_088FFD04: ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[5] = (ctx.gpr[2] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FFD1Cu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FFD1Cu) goto L_088FFD1C; return; L_088FFD1C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFD24; } L_088FFD24: ctx.gpr[31] = (0x088FFD2Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FFD2Cu) goto L_088FFD2C; return; L_088FFD2C: ctx.gpr[16] = (ctx.gpr[2] | 0u); { const bool branch_taken = ctx.gpr[16] == 0u; // nop if (branch_taken) { goto L_088FFE34; } goto L_088FFD38; } L_088FFD38: ctx.gpr[31] = (0x088FFD40u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FFD40u) goto L_088FFD40; return; L_088FFD40: ctx.gpr[4] = (49075u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 13107u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(352), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (49171u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 13107u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(356), std::bit_cast(ctx.fpr[12])); ctx.gpr[4] = (16025u << 16u); ctx.gpr[4] = (ctx.gpr[4] | 39322u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(360), std::bit_cast(ctx.fpr[12])); { const std::uint32_t vfpu_address = ctx.gpr[2] + 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[2] + 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[2] + 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); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(352)); { 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<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<7u, 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); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(336)); { 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[17] = (ctx.gpr[29] + static_cast(368)); { 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[31] = (0x088FFDA4u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FFDA4u) goto L_088FFDA4; return; L_088FFDA4: ctx.gpr[5] = (ctx.gpr[2] + static_cast(48)); ctx.gpr[31] = (0x088FFDB0u); ctx.gpr[4] = (ctx.gpr[17] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFDB0u) goto L_088FFDB0; return; L_088FFDB0: ctx.gpr[31] = (0x088FFDB8u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FFDB8u) goto L_088FFDB8; return; L_088FFDB8: ctx.gpr[4] = (ctx.gpr[2] + 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.gpr[4] = (ctx.gpr[29] + static_cast(384)); { 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(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] == ctx.gpr[5]; ctx.gpr[4] = (ctx.gpr[16] + static_cast(48)); if (branch_taken) { goto L_088FFE10; } goto L_088FFDD8; } L_088FFDD8: ctx.gpr[5] = (ctx.gpr[29] + static_cast(368)); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FFE00u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFE00u) goto L_088FFE00; return; L_088FFE00: { const bool branch_taken = ctx.gpr[2] != 0u; // nop if (branch_taken) { goto L_088FFE10; } goto L_088FFE08; } L_088FFE08: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFE10; } L_088FFE10: ctx.gpr[4] = (2232u << 16u); ctx.gpr[4] = (ctx.gpr[4] + static_cast(12960)); ctx.gpr[5] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 14u); ctx.gpr[7] = (0u | 2u); ctx.gpr[31] = (0x088FFE2Cu); ctx.gpr[8] = (0u | 2u); if (rt.invoke_chained_direct<&recomp_unit_0058_entry, 58u, 349u, 0x088EE490u>(ctx, &aot_mem) && ctx.pc == 0x088FFE2Cu) goto L_088FFE2C; return; L_088FFE2C: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 1u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFE34; } L_088FFE34: { const bool branch_taken = 0u == 0u; ctx.gpr[2] = (0u | 0u); if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 214u, 0x08900CE4u>(ctx, &aot_mem); return; } goto L_088FFE3C; } L_088FFE3C: ctx.gpr[31] = (0x088FFE44u); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FFE44u) goto L_088FFE44; return; L_088FFE44: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 13u, 0x089000E8u>(ctx, &aot_mem); return; } goto L_088FFE4C; } L_088FFE4C: ctx.gpr[16] = (ctx.gpr[29] + static_cast(400)); ctx.gpr[31] = (0x088FFE58u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFE58u) goto L_088FFE58; return; L_088FFE58: { 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(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])); } ctx.gpr[31] = (0x088FFE6Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 175u, 0x089D5818u>(ctx, &aot_mem) && ctx.pc == 0x088FFE6Cu) goto L_088FFE6C; return; L_088FFE6C: { const std::uint32_t vfpu_address = ctx.gpr[2] + 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])); } ctx.fpr[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(72), std::bit_cast(ctx.fpr[12])); { 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]); ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12])); // nop { const bool branch_taken = ctx.fpu_condition(); // nop if (branch_taken) { goto L_088FFECC; } goto L_088FFEA0; } L_088FFEA0: 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<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[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) { goto L_088FFED8; } goto L_088FFECC; } L_088FFECC: ctx.gpr[4] = (16256u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[4]); aot_mem.aot_store32(ctx.gpr[29] + static_cast(64), std::bit_cast(ctx.fpr[12])); goto L_088FFED8; L_088FFED8: ctx.gpr[4] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[5] = (16904u << 16u); ctx.fpr[12] = std::bit_cast(ctx.gpr[5]); ctx.gpr[5] = (std::bit_cast(ctx.fpr[12])); ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[5]); ctx.gpr[5] = (ctx.gpr[29] + static_cast(64)); { 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_vscl_ct<0u, 0u, 28u, 3u>(); ctx.gpr[16] = (ctx.gpr[29] + static_cast(400)); { float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value); const std::uint32_t vfpu_address = ctx.gpr[16] + 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] = (0x088FFF08u); ctx.gpr[5] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0072_entry, 72u, 565u, 0x0892753Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFF08u) goto L_088FFF08; return; L_088FFF08: ctx.gpr[31] = (0x088FFF10u); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFF10u) goto L_088FFF10; return; L_088FFF10: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(408))); ctx.gpr[4] = (16128u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); ctx.gpr[31] = (0x088FFF2Cu); // nop if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 180u, 0x089D5870u>(ctx, &aot_mem) && ctx.pc == 0x088FFF2Cu) goto L_088FFF2C; return; L_088FFF2C: ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast(836))); ctx.gpr[5] = (0u | 1u); { const bool branch_taken = ctx.gpr[4] != ctx.gpr[5]; // nop if (branch_taken) { goto L_088FFF50; } goto L_088FFF3C; } L_088FFF3C: ctx.fpr[12] = std::bit_cast(aot_mem.aot_load32(ctx.gpr[29] + static_cast(56))); ctx.gpr[4] = (16256u << 16u); ctx.fpr[13] = std::bit_cast(ctx.gpr[4]); ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13]; aot_mem.aot_store32(ctx.gpr[29] + static_cast(56), std::bit_cast(ctx.fpr[12])); goto L_088FFF50; L_088FFF50: ctx.gpr[16] = (ctx.gpr[29] + static_cast(400)); ctx.gpr[31] = (0x088FFF5Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFF5Cu) goto L_088FFF5C; return; L_088FFF5C: ctx.gpr[5] = (ctx.gpr[29] + static_cast(48)); ctx.gpr[4] = (ctx.gpr[16] | 0u); ctx.gpr[6] = (0u | 1u); ctx.gpr[7] = (0u | 0u); ctx.gpr[8] = (0u | 0u); ctx.gpr[9] = (0u | 0u); ctx.gpr[10] = (0u | 0u); ctx.gpr[11] = (0u | 0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(0), 0u); ctx.gpr[31] = (0x088FFF88u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(4), 0u); if (rt.invoke_chained_direct<&recomp_unit_0048_entry, 48u, 339u, 0x088C5B2Cu>(ctx, &aot_mem) && ctx.pc == 0x088FFF88u) goto L_088FFF88; return; L_088FFF88: { const bool branch_taken = ctx.gpr[2] == 0u; // nop if (branch_taken) { (void)rt.invoke_chained_direct<&recomp_unit_0063_entry, 63u, 3u, 0x0890001Cu>(ctx, &aot_mem); return; } goto L_088FFF90; } L_088FFF90: ctx.gpr[16] = (ctx.gpr[29] + static_cast(400)); ctx.gpr[31] = (0x088FFF9Cu); ctx.gpr[4] = (ctx.gpr[16] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFF9Cu) goto L_088FFF9C; return; L_088FFF9C: { 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[16] = (ctx.gpr[29] + 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<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[17] = (ctx.gpr[29] + static_cast(448)); { 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[18] = (ctx.gpr[29] + static_cast(432)); ctx.gpr[31] = (0x088FFFC0u); ctx.gpr[4] = (ctx.gpr[18] | 0u); if (rt.invoke_chained_direct<&recomp_unit_0116_entry, 116u, 170u, 0x089D5748u>(ctx, &aot_mem) && ctx.pc == 0x088FFFC0u) goto L_088FFFC0; return; L_088FFFC0: { 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[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); } ctx.gpr[4] = (ctx.gpr[29] + static_cast(416)); { 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(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[12] = std::bit_cast(0u); aot_mem.aot_store32(ctx.gpr[29] + static_cast(104), std::bit_cast(ctx.fpr[12])); { 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<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[12] = std::bit_cast(ctx.gpr[4]); ctx.gpr[4] = (16944u << 16u); ctx.pc = 0x08900000u; return; } void recomp_unit_0062(Runtime &rt, AllegrexContext &ctx) { auto aot_mem = rt.memory().aot_fast_view(); recomp_unit_0062_entry(rt, ctx, 0u, aot_mem); } void register_generated_unit_62(Runtime &runtime) { runtime.register_generated_unit(62u, 0x088FC000u, 16384u, &recomp_unit_0062, &recomp_unit_0062_entry); runtime.register_function(0x088FC004u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC014u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC038u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC040u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC048u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC050u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC060u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC090u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC0C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC0D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC0E8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC0FCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC130u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC1D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC1E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC214u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC250u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC310u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC360u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC370u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC3C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC3F8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC400u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC408u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC468u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC474u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC47Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC484u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC490u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC4C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC4D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC4D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC510u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC518u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC588u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC58Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC594u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC5A8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC5BCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC5C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC5D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC5E0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC5E8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC5F8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC610u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC618u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC61Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC620u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC628u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC654u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC65Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC678u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC67Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC688u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC690u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC6B4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC6D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC6F8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC77Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC790u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC7DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC8C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC8D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC8E0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC8F4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC900u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC908u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC914u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC928u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC934u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC944u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC958u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC964u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC978u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC984u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC98Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC998u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC9A4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC9B0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FC9BCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCA64u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCA6Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCAB0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCAECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCAF4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCB40u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCB50u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCB7Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCBACu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCBBCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCBC4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCBC8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCC04u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCC0Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCC20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCC30u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCC4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCC54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCCA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCCC4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCCDCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCCECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCD4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCD58u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCDFCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCE18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCE20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCE30u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCE3Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCE44u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCE58u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCE64u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCF18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCF30u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCF88u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCFA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCFB0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCFD0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FCFFCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD010u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD014u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD028u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD054u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD068u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD06Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD07Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD088u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD090u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD0CCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD0D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD0E0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD0E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD158u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD1C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD1F4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD200u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD218u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD220u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD228u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD234u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD244u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD258u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD268u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD270u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD2BCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD2C4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD2DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD2ECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD2F4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD2FCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD304u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD30Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD314u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD31Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD324u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD32Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD33Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD350u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD35Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD390u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD398u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD3A4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD404u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD40Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD414u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD41Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD424u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD450u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD480u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD488u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD490u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD498u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD4A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD4A8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD4B0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD4C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD4D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD4E0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD514u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD51Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD528u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD588u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD590u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD598u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD5A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD5E0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD5ECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD5F8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD628u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD630u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD65Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD68Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD694u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD69Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD6A4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD6B0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD6E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD6ECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD6FCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD714u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD754u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD75Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD764u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD76Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD798u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7B8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7E0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD7F0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD804u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD810u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD844u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD84Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD858u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD8B8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD8C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD8C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD8D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD8D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD904u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD90Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD924u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD92Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD934u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD94Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD954u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD95Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD964u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD96Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD974u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD97Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD984u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD98Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD99Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD9B0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FD9B8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA04u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA0Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA24u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA34u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA3Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA44u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA60u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA94u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDA9Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDAA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB08u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB60u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB94u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDB9Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDBA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC08u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC60u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC94u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDC9Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDCA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD08u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD60u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD94u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDD9Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDDA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE08u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE6Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE74u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE7Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE84u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE8Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDE94u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDEE0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDEE8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF00u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF28u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF30u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF38u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF44u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF78u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF80u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDF8Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDFECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDFF4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FDFFCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE004u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE030u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE060u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE068u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE070u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE078u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE080u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE088u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE094u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE0C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE0D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE0DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE13Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE16Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE174u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE17Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE184u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE18Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE194u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE19Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE1A8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE1DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE1E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE1F0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE250u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE258u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE260u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE268u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE294u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE2C4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE2CCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE2D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE2DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE2E8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE31Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE324u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE330u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE388u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE3B8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE3C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE3C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE3D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE3D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE3E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE418u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE420u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE42Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE48Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE4BCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE4C4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE4CCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE4D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE4DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE4F4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE4FCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE500u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE518u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE550u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE568u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE570u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE57Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE58Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE5A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE5B0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE5B8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE61Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE628u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE630u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE66Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE674u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE67Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE684u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE68Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE6A8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE6B0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE6B8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE6C4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE6D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE70Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE738u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE744u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE778u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE7B4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE7BCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE7C4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE7CCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE7DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE7F0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE810u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE820u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE834u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE83Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE85Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE86Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE87Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE888u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE8B4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE8BCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE8C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE920u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE928u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE930u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE938u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE964u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE994u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE99Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE9A4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE9CCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE9D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE9ECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE9F4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FE9FCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEA04u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEA0Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEA1Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEA30u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEA3Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEA50u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEA84u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEAB0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEAB8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEAC4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEAF8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEB34u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEB54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEB64u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEB78u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEB98u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEBA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEBB8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEBC4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEBF0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEBF8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEC04u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEC5Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEC64u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEC6Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEC74u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FECA0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FECD0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FECD8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FECE0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FED08u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FED10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FED28u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FED30u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FED3Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FED50u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FED84u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEDB0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEDBCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEDF0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEE2Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEE48u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEE74u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEE7Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEE84u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEEACu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEEB4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEECCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEED4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEEE0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEEF8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEF00u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEF0Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEF20u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEF54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEF80u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEF8Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEFC0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FEFFCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF01Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF02Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF040u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF060u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF070u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF080u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF08Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF0B8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF0C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF0C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF0F0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF0F8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF110u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF118u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF124u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF13Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF144u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF14Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF15Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF164u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF16Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF174u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF17Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF184u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF18Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF194u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF19Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF1ACu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF1C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF1D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF1DCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF1E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF1FCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF204u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF228u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF230u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF23Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF244u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF24Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF25Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF270u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF27Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF294u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF2ACu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF2E8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF2F0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF300u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF324u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF330u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF344u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF370u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF38Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF394u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3A8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3B0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3ECu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3F4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF3FCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF404u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF40Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF41Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF430u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF43Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF444u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF44Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF464u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF46Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF490u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF498u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF4A4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF4ACu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF4B4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF4C4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF4D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF4E8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF500u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF53Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF544u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF554u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF578u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF584u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF598u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF5C4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF630u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF66Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF674u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF67Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF698u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF6A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF6ACu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF6B4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF6C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF6D4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF708u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF734u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF740u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF774u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF7A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF7C0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF7D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF7E4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF804u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF814u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF824u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF84Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF854u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF86Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF874u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF880u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF894u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF8C8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF8F4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF900u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF934u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF964u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF96Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF998u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF9A0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF9A8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF9D0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF9D8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF9F0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FF9F8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFA04u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFA18u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFA4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFA78u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFA84u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFAB8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFAE0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFAE8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB14u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB1Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB24u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB54u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB6Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB74u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB80u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFB94u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFBC8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFBF4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFC00u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFC34u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFC64u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFC6Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFC98u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFCA0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFCA8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFCD0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFCD8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFCF0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFCF8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFD04u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFD1Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFD24u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFD2Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFD38u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFD40u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFDA4u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFDB0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFDB8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFDD8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE00u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE08u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE2Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE34u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE3Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE44u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE4Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE58u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFE6Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFEA0u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFECCu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFED8u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF08u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF10u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF2Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF3Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF50u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF5Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF88u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF90u, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFF9Cu, &recomp_unit_0062, "recomp_unit_0062"); runtime.register_function(0x088FFFC0u, &recomp_unit_0062, "recomp_unit_0062"); } } // namespace psprecomp