Files
PSPRecomp/profiles/vcs/generated/generated_unit_0130.cpp
T
Jessica_Natalia 37e5469cbd initial release
initial release
2026-08-12 13:56:12 -03:00

11857 lines
528 KiB
C++

#include "psprecomp/runtime.hpp"
#include "generated_units.hpp"
#include <bit>
#include <cmath>
#include <cstdint>
#include <limits>
namespace psprecomp {
static const std::uint16_t kEntryIds_recomp_unit_0130[4072] = {
1, 0, 2, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0, 0, 0, 4, 0, 0, 0, 0, 5, 0, 0, 0, 0, 6, 0, 0, 0,
0, 7, 0, 0, 0, 8, 0, 0, 0, 0, 0, 0, 0, 9, 0, 0, 0, 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, 13, 0, 0, 0, 14, 0, 0, 0, 0, 15, 0, 0, 0, 16, 0, 0, 0, 0, 0, 0, 0,
17, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 18, 0, 0, 0, 19, 0, 0, 0, 0, 20, 0, 0, 0, 21, 0, 22, 0, 23, 0,
24, 0, 25, 0, 0, 26, 0, 27, 0, 0, 28, 0, 29, 0, 0, 0, 30, 0, 0, 0, 31, 0, 0, 0, 32, 0, 0, 0, 0, 0, 33, 0,
0, 0, 34, 0, 0, 0, 0, 0, 0, 0, 0, 35, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 36, 0, 0, 37, 0, 0, 38, 0, 0, 39,
0, 0, 40, 0, 0, 41, 0, 0, 42, 0, 0, 43, 0, 0, 44, 0, 0, 45, 0, 0, 46, 0, 0, 47, 0, 0, 0, 0, 48, 0, 0, 0,
0, 0, 0, 0, 49, 0, 0, 50, 0, 51, 0, 0, 52, 0, 0, 53, 0, 0, 54, 0, 0, 55, 0, 0, 56, 0, 0, 57, 0, 0, 58, 0,
0, 59, 0, 0, 60, 0, 0, 0, 0, 61, 0, 0, 0, 62, 0, 0, 0, 0, 0, 0, 0, 0, 63, 0, 0, 0, 64, 0, 0, 0, 65, 0,
0, 0, 0, 0, 0, 66, 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, 67, 0, 0, 0, 0, 0, 68, 0, 0, 69, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 70, 0, 71, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 72, 0, 0, 73, 0, 0, 0, 0, 0, 74, 0, 0, 0, 0, 0, 0, 0,
75, 0, 0, 0, 0, 0, 76, 0, 0, 0, 0, 0, 0, 77, 0, 0, 0, 0, 0, 78, 0, 0, 0, 0, 0, 0, 0, 79, 0, 0, 0, 0,
80, 0, 81, 0, 0, 0, 0, 0, 0, 82, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 83, 0, 84, 85,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 86, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 87, 0, 88, 0, 0, 0, 0, 89, 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, 90, 0, 91, 0, 92, 93, 0, 0, 0, 0, 0, 94, 0, 0, 0, 0,
0, 0, 0, 0, 0, 95, 0, 0, 96, 0, 0, 0, 0, 97, 0, 0, 0, 0, 0, 0, 98, 0, 0, 0, 99, 0, 0, 0, 0, 0, 0, 100,
0, 0, 0, 101, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 102, 0, 103, 0, 104, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 105, 0, 106, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 107, 0, 108, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 109, 0,
0, 0, 110, 0, 0, 0, 111, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 112, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 113, 0, 114, 0, 0, 0, 0, 115, 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, 116, 0, 117, 0, 118, 119, 0, 0, 0, 0,
0, 120, 0, 0, 0, 0, 0, 0, 0, 0, 0, 121, 0, 0, 122, 0, 0, 0, 0, 123, 0, 0, 0, 0, 0, 0, 124, 0, 0, 0, 125, 0,
0, 0, 0, 0, 0, 126, 0, 0, 0, 127, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 128, 0, 129, 0, 130, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 131, 0, 132, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 133, 0, 134, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 135, 0, 0, 0, 136, 0, 0, 0, 137, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 138, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 139, 140, 0, 141, 0, 0, 0, 142, 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, 143, 0, 144, 0, 0, 0, 145, 0, 146, 0, 147,
0, 148, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 149, 0, 150, 0, 151, 0, 0, 0, 0, 0, 0, 0, 0, 0, 152, 0, 153,
0, 154, 0, 0, 155, 0, 0, 0, 0, 0, 156, 0, 0, 0, 0, 0, 0, 0, 0, 0, 157, 0, 158, 0, 159, 0, 0, 0, 0, 0, 0, 0,
0, 0, 160, 0, 161, 162, 0, 0, 0, 0, 163, 0, 0, 0, 0, 0, 164, 0, 0, 0, 0, 165, 166, 0, 167, 0, 168, 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, 169, 0, 170, 0, 171, 0, 0, 0, 0, 0,
0, 0, 0, 0, 172, 0, 173, 174, 175, 0, 0, 176, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 177, 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, 178, 0, 179, 0, 180, 0, 0, 0, 0,
0, 0, 0, 0, 0, 181, 0, 182, 0, 0, 183, 0, 0, 0, 184, 0, 185, 0, 186, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 187, 0, 188, 0, 189, 0, 0, 0, 0, 0, 0, 0, 0, 0, 190, 0, 191, 192, 0, 193, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 194, 0, 195, 0, 196, 0, 0, 0, 0, 0, 0, 0, 0, 0, 197, 0,
198, 199, 0, 200, 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, 201, 0, 202, 0, 203, 0, 0, 0, 0, 0, 0, 0, 0, 0, 204, 0, 205, 206, 0, 207, 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, 208, 0, 209, 0, 210, 0, 0, 0, 0, 0, 0, 0,
0, 0, 211, 0, 212, 213, 0, 214, 0, 0, 215, 0, 0, 0, 0, 216, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
217, 0, 218, 0, 219, 0, 0, 0, 0, 0, 0, 0, 0, 0, 220, 0, 221, 222, 0, 223, 0, 224, 0, 0, 0, 225, 0, 0, 0, 0, 0, 0,
0, 226, 0, 0, 0, 0, 0, 0, 0, 227, 0, 0, 0, 0, 0, 0, 0, 228, 0, 0, 0, 0, 0, 0, 229, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 230, 0, 231, 0, 232, 233, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 234, 0, 235, 0, 236, 0, 237, 0, 238, 239, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 240,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 241, 242, 0, 243, 0, 244, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 245, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 246, 247, 0, 0, 0, 248, 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, 249, 0, 250, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 251, 0, 252, 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, 253, 0, 0, 254, 0, 0, 0, 0, 0, 255, 0, 0, 0, 0, 0, 0, 0, 256, 0, 0, 0, 0, 0, 257, 0, 0, 0, 0, 0, 0, 0,
258, 0, 0, 0, 0, 0, 0, 259, 0, 0, 0, 0, 0, 0, 260, 261, 0, 0, 262, 0, 263, 0, 0, 0, 0, 0, 0, 264, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 265, 0, 266, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 267,
0, 0, 268, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 269, 0, 0, 0, 0, 270,
0, 0, 0, 0, 0, 0, 271, 0, 0, 0, 0, 272, 0, 273, 0, 274, 275, 0, 276, 0, 277, 278, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 279, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 280, 0, 0, 0, 0, 0, 281, 0, 0, 0, 0, 0, 0, 0, 0, 282, 0, 0,
0, 283, 0, 0, 0, 284, 0, 285, 0, 286, 0, 287, 0, 0, 0, 0, 0, 0, 0, 288, 0, 0, 0, 0, 0, 289, 0, 290, 0, 0, 0, 0,
291, 292, 0, 0, 0, 0, 0, 0, 293, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 294, 0, 0, 295, 0, 0, 296, 0, 0,
0, 0, 0, 0, 0, 0, 297, 0, 0, 0, 298, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 299,
0, 0, 0, 0, 0, 0, 300, 0, 0, 0, 0, 0, 0, 0, 0, 0, 301, 0, 0, 302, 0, 303, 0, 304, 305, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 306, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 307, 0, 0, 0, 308, 0, 0, 0, 0, 0, 309, 0,
0, 0, 0, 310, 0, 0, 311, 0, 312, 313, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 314, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 315, 0, 0, 0, 316, 0, 0, 0, 0, 317, 0, 0, 0, 0, 0, 0, 0, 0, 0, 318, 0, 0, 319, 0, 320, 0, 321, 0, 322, 0, 323,
0, 324, 0, 325, 0, 326, 327, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 328, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 329, 0, 0, 0, 330, 0, 0, 0, 0, 0, 331, 0, 0, 0, 0, 332, 0, 0, 0, 333, 0, 334, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 335, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 336, 0, 0, 0, 337, 0, 338, 0, 0, 0, 0, 339, 0, 0, 0, 0, 0,
0, 0, 0, 340, 0, 341, 0, 0, 0, 342, 0, 0, 0, 0, 343, 0, 0, 0, 0, 344, 0, 0, 0, 0, 0, 345, 0, 0, 0, 0, 0, 0,
346, 0, 347, 0, 0, 0, 0, 348, 0, 349, 0, 0, 0, 0, 350, 0, 351, 0, 0, 0, 0, 352, 0, 353, 0, 0, 0, 0, 354, 0, 355, 0,
0, 0, 0, 0, 0, 0, 0, 356, 0, 357, 0, 0, 0, 0, 0, 0, 358, 0, 359, 0, 0, 0, 0, 360, 0, 361, 0, 0, 0, 0, 0, 0,
362, 0, 363, 0, 0, 0, 0, 0, 0, 364, 0, 365, 0, 0, 0, 0, 0, 0, 366, 0, 367, 0, 0, 0, 0, 0, 0, 368, 0, 369, 0, 0,
0, 0, 0, 0, 0, 0, 370, 0, 371, 0, 0, 0, 0, 372, 0, 373, 0, 0, 0, 0, 374, 0, 375, 0, 0, 0, 0, 376, 0, 377, 0, 0,
0, 0, 0, 0, 378, 0, 379, 0, 0, 0, 0, 0, 0, 0, 0, 380, 0, 381, 0, 0, 0, 0, 0, 0, 0, 0, 382, 0, 383, 0, 0, 0,
0, 0, 0, 0, 0, 384, 0, 385, 0, 0, 0, 0, 386, 0, 387, 0, 0, 0, 0, 0, 0, 388, 0, 389, 0, 0, 0, 0, 390, 0, 391, 0,
0, 0, 0, 0, 0, 392, 0, 393, 0, 0, 0, 0, 0, 0, 394, 0, 395, 396, 0, 0, 397, 0, 0, 0, 398, 0, 0, 0, 399, 400, 0, 0,
0, 401, 402, 0, 403, 0, 404, 0, 0, 405, 0, 0, 0, 0, 0, 0, 406, 0, 0, 0, 407, 0, 0, 0, 0, 408, 0, 0, 409, 0, 0, 0,
0, 0, 0, 410, 0, 0, 0, 411, 0, 0, 0, 412, 0, 413, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
414, 0, 0, 415, 0, 0, 416, 0, 0, 0, 0, 0, 0, 417, 0, 0, 0, 0, 0, 418, 0, 0, 0, 0, 0, 0, 0, 419, 0, 0, 0, 0,
0, 0, 420, 0, 421, 0, 0, 0, 0, 0, 0, 422, 0, 0, 0, 0, 0, 423, 0, 0, 0, 0, 424, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 425, 0, 0, 0, 0, 0, 0, 0, 426, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 427, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 428, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 429, 0, 0, 0, 0, 0, 0, 0, 430, 0, 0, 0, 0,
431, 0, 0, 0, 0, 0, 432, 0, 0, 0, 0, 433, 0, 0, 0, 434, 0, 0, 0, 435, 0, 0, 0, 436, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 437, 0, 438, 0, 0, 0, 0, 439, 0, 0, 0, 0, 0, 440, 0, 441, 0, 0, 0, 442, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 443, 0, 0, 0, 0, 444, 0, 0, 0, 0, 445, 0, 0, 0, 0, 0, 446, 0, 0, 447, 0, 0, 0, 448, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 449, 0, 0, 0, 0, 450, 0, 0, 0, 451, 0, 0, 0, 452, 0, 0, 0, 0, 0, 453, 0, 0, 454, 0, 0, 0, 0, 0,
455, 0, 0, 0, 0, 0, 0, 0, 0, 456, 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, 457, 0, 458, 0, 0, 0, 0, 459, 0, 0,
0, 460, 0, 0, 0, 461, 0, 0, 462, 0, 463, 0, 0, 464, 0, 465, 0, 0, 0, 0, 0, 0, 466, 0, 0, 0, 0, 0, 0, 0, 467, 0,
0, 468, 0, 0, 0, 469, 470, 0, 0, 471, 0, 472, 0, 473, 0, 474, 475, 0, 476, 0, 477, 0, 0, 478, 0, 479, 0, 0, 0, 0, 0, 0,
480, 0, 0, 0, 481, 0, 0, 0, 0, 0, 0, 0, 0, 482, 0, 0, 0, 0, 0, 483, 0, 0, 0, 0, 0, 0, 0, 0, 484, 0, 0, 0,
0, 0, 0, 0, 485, 0, 0, 0, 0, 0, 0, 0, 0, 486, 0, 0, 0, 0, 0, 0, 0, 487, 0, 0, 0, 0, 0, 0, 488, 0, 0, 0,
0, 0, 0, 489, 0, 0, 0, 0, 0, 0, 0, 490, 0, 0, 0, 0, 0, 0, 491, 0, 492, 0, 0, 0, 0, 0, 0, 493, 0, 0, 0, 0,
0, 494, 0, 0, 0, 495, 0, 0, 0, 0, 0, 496, 0, 0, 497, 0, 0, 498, 0, 0, 499, 0, 0, 500, 0, 0, 501, 0, 0, 502, 0, 0,
503, 504, 0, 0, 0, 0, 505, 0, 0, 0, 506, 0, 0, 0, 0, 0, 0, 0, 0, 0, 507, 0, 508, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 509, 0, 0, 510, 0, 0, 0, 511, 0, 0, 512, 0, 0, 513, 0, 514, 0, 515, 0, 516, 0, 0, 517, 0, 0,
0, 0, 518, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 519, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 520, 0, 0, 0, 0, 0, 0, 0, 0, 0, 521, 0,
0, 0, 0, 0, 0, 0, 522, 0, 0, 523, 0, 0, 0, 0, 0, 524, 0, 0, 525, 0, 526, 0, 527, 0, 528, 0, 529, 530, 0, 531, 0, 0,
0, 0, 0, 0, 0, 532, 0, 0, 533, 0, 0, 0, 0, 0, 534, 0, 0, 535, 0, 0, 536, 0, 537, 0, 538, 0, 539, 0, 540, 0, 541, 542,
0, 543, 0, 0, 0, 0, 0, 0, 0, 0, 0, 544, 0, 0, 0, 545, 0, 546, 0, 547, 0, 548, 0, 0, 549, 0, 0, 0, 0, 0, 0, 0,
0, 0, 550, 0, 0, 0, 551, 0, 552, 0, 553, 0, 554, 0, 0, 555, 0, 0, 0, 0, 0, 556, 0, 0, 557, 0, 558, 0, 559, 560, 0, 561,
0, 562, 0, 0, 0, 0, 0, 563, 0, 0, 0, 0, 0, 564, 0, 0, 0, 0, 565, 0, 0, 0, 0, 0, 0, 0, 0, 566, 0, 0, 0, 0,
0, 567, 568, 0, 0, 0, 0, 569, 0, 0, 0, 0, 570, 0, 571, 572, 0, 0, 573, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 574, 0, 0, 0, 575, 0, 0, 0, 576, 0, 577, 0, 0, 0, 578, 0, 579, 0, 580, 0, 581,
0, 0, 582, 583, 0, 0, 0, 0, 0, 584, 0, 585, 0, 0, 586, 0, 0, 587, 0, 0, 0, 0, 0, 0, 0, 0, 0, 588, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 589, 0, 0, 0, 590, 0, 0, 0, 0, 591, 0, 592,
0, 0, 0, 593, 0, 0, 0, 0, 594, 0, 595, 0, 596, 0, 0, 0, 0, 0, 597, 0, 0, 0, 598, 0, 0, 0, 599, 0, 600, 0, 0, 0,
601, 0, 602, 0, 603, 0, 604, 0, 605, 606, 0, 0, 0, 0, 0, 0, 0, 607, 0, 608, 0, 609, 0, 0, 0, 0, 0, 610, 0, 0, 0, 0,
611, 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, 612, 0, 0, 0, 613,
0, 0, 0, 0, 614, 0, 615, 0, 0, 0, 616, 0, 0, 0, 0, 617, 0, 618, 0, 0, 0, 0, 619, 0, 0, 0, 0, 0, 0, 0, 620, 0,
0, 0, 621, 0, 0, 0, 622, 0, 623, 0, 0, 0, 624, 0, 625, 0, 626, 0, 627, 0, 628, 629, 0, 0, 0, 0, 0, 0, 0, 630, 0, 631,
0, 632, 0, 0, 0, 0, 0, 633, 0, 0, 0, 0, 634, 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, 635, 0, 0, 0, 636, 0, 0, 0, 0, 637, 0, 638, 0, 0, 0, 639, 0, 0, 0, 0, 640, 0, 641, 642, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 643, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
644, 0, 0, 0, 0, 645, 0, 646, 0, 0, 647, 0, 648, 0, 649, 0, 650, 0, 651, 0, 652, 653, 0, 0, 0, 0, 654, 0, 0, 0, 655, 0,
0, 0, 0, 656, 0, 0, 657, 0, 0, 0, 0, 658, 0, 0, 0, 659, 0, 0, 0, 0, 660, 0, 0, 0, 661, 0, 0, 0, 0, 662, 663, 0,
0, 0, 0, 664, 0, 0, 665, 0, 0, 0, 0, 0, 666, 0, 0, 0, 0, 667, 0, 0, 668, 0, 0, 0, 0, 0, 669, 0, 0, 0, 0, 670,
0, 0, 671, 0, 0, 0, 0, 0, 672, 0, 0, 0, 0, 673, 0, 0, 674, 0, 0, 0, 0, 0, 675, 0, 0, 0, 0, 676, 0, 0, 0, 677,
0, 678, 0, 679, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 680, 0, 0, 0, 0, 0, 0, 0, 0, 0, 681, 0, 0, 0, 0, 682,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 683, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 684,
0, 685, 0, 686, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 687, 0, 0, 0, 0, 0, 0, 0, 0, 0, 688, 0, 0, 0, 0, 689,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 690, 0, 0, 0, 0, 0, 0, 0, 0, 0, 691, 0, 0, 692, 0, 0,
0, 0, 0, 0, 693, 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, 694, 0,
0, 0, 0, 0, 0, 0, 695, 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, 696, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 697,
};
void recomp_unit_0130_entry(Runtime &rt, AllegrexContext &ctx, std::uint16_t direct_entry_id, GuestMemory::AotFastView &aot_mem, AotHotRegisterCache & PSPRECOMP_RESTRICT hot_regs) {
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 - 0x08A0C000u;
entry_id = (entry_delta < 16288u && (entry_delta & 3u) == 0u) ? kEntryIds_recomp_unit_0130[entry_delta >> 2u] : 0u;
}
switch (entry_id) {
case 1u: goto L_08A0C000;
case 2u: goto L_08A0C008;
case 3u: goto L_08A0C038;
case 4u: goto L_08A0C048;
case 5u: goto L_08A0C05C;
case 6u: goto L_08A0C070;
case 7u: goto L_08A0C084;
case 8u: goto L_08A0C094;
case 9u: goto L_08A0C0B4;
case 10u: goto L_08A0C0D4;
case 11u: goto L_08A0C0E8;
case 12u: goto L_08A0C0FC;
case 13u: goto L_08A0C12C;
case 14u: goto L_08A0C13C;
case 15u: goto L_08A0C150;
case 16u: goto L_08A0C160;
case 17u: goto L_08A0C180;
case 18u: goto L_08A0C1B4;
case 19u: goto L_08A0C1C4;
case 20u: goto L_08A0C1D8;
case 21u: goto L_08A0C1E8;
case 22u: goto L_08A0C1F0;
case 23u: goto L_08A0C1F8;
case 24u: goto L_08A0C200;
case 25u: goto L_08A0C208;
case 26u: goto L_08A0C214;
case 27u: goto L_08A0C21C;
case 28u: goto L_08A0C228;
case 29u: goto L_08A0C230;
case 30u: goto L_08A0C240;
case 31u: goto L_08A0C250;
case 32u: goto L_08A0C260;
case 33u: goto L_08A0C278;
case 34u: goto L_08A0C288;
case 35u: goto L_08A0C2AC;
case 36u: goto L_08A0C2D8;
case 37u: goto L_08A0C2E4;
case 38u: goto L_08A0C2F0;
case 39u: goto L_08A0C2FC;
case 40u: goto L_08A0C308;
case 41u: goto L_08A0C314;
case 42u: goto L_08A0C320;
case 43u: goto L_08A0C32C;
case 44u: goto L_08A0C338;
case 45u: goto L_08A0C344;
case 46u: goto L_08A0C350;
case 47u: goto L_08A0C35C;
case 48u: goto L_08A0C370;
case 49u: goto L_08A0C390;
case 50u: goto L_08A0C39C;
case 51u: goto L_08A0C3A4;
case 52u: goto L_08A0C3B0;
case 53u: goto L_08A0C3BC;
case 54u: goto L_08A0C3C8;
case 55u: goto L_08A0C3D4;
case 56u: goto L_08A0C3E0;
case 57u: goto L_08A0C3EC;
case 58u: goto L_08A0C3F8;
case 59u: goto L_08A0C404;
case 60u: goto L_08A0C410;
case 61u: goto L_08A0C424;
case 62u: goto L_08A0C434;
case 63u: goto L_08A0C458;
case 64u: goto L_08A0C468;
case 65u: goto L_08A0C478;
case 66u: goto L_08A0C494;
case 67u: goto L_08A0C554;
case 68u: goto L_08A0C56C;
case 69u: goto L_08A0C578;
case 70u: goto L_08A0C5D0;
case 71u: goto L_08A0C5D8;
case 72u: goto L_08A0C63C;
case 73u: goto L_08A0C648;
case 74u: goto L_08A0C660;
case 75u: goto L_08A0C680;
case 76u: goto L_08A0C698;
case 77u: goto L_08A0C6B4;
case 78u: goto L_08A0C6CC;
case 79u: goto L_08A0C6EC;
case 80u: goto L_08A0C700;
case 81u: goto L_08A0C708;
case 82u: goto L_08A0C724;
case 83u: goto L_08A0C770;
case 84u: goto L_08A0C778;
case 85u: goto L_08A0C77C;
case 86u: goto L_08A0C7BC;
case 87u: goto L_08A0C808;
case 88u: goto L_08A0C810;
case 89u: goto L_08A0C824;
case 90u: goto L_08A0C8C0;
case 91u: goto L_08A0C8C8;
case 92u: goto L_08A0C8D0;
case 93u: goto L_08A0C8D4;
case 94u: goto L_08A0C8EC;
case 95u: goto L_08A0C914;
case 96u: goto L_08A0C920;
case 97u: goto L_08A0C934;
case 98u: goto L_08A0C950;
case 99u: goto L_08A0C960;
case 100u: goto L_08A0C97C;
case 101u: goto L_08A0C98C;
case 102u: goto L_08A0C9C8;
case 103u: goto L_08A0C9D0;
case 104u: goto L_08A0C9D8;
case 105u: goto L_08A0CA04;
case 106u: goto L_08A0CA0C;
case 107u: goto L_08A0CA44;
case 108u: goto L_08A0CA4C;
case 109u: goto L_08A0CA78;
case 110u: goto L_08A0CA88;
case 111u: goto L_08A0CA98;
case 112u: goto L_08A0CAD4;
case 113u: goto L_08A0CB24;
case 114u: goto L_08A0CB2C;
case 115u: goto L_08A0CB40;
case 116u: goto L_08A0CBD8;
case 117u: goto L_08A0CBE0;
case 118u: goto L_08A0CBE8;
case 119u: goto L_08A0CBEC;
case 120u: goto L_08A0CC04;
case 121u: goto L_08A0CC2C;
case 122u: goto L_08A0CC38;
case 123u: goto L_08A0CC4C;
case 124u: goto L_08A0CC68;
case 125u: goto L_08A0CC78;
case 126u: goto L_08A0CC94;
case 127u: goto L_08A0CCA4;
case 128u: goto L_08A0CCE0;
case 129u: goto L_08A0CCE8;
case 130u: goto L_08A0CCF0;
case 131u: goto L_08A0CD1C;
case 132u: goto L_08A0CD24;
case 133u: goto L_08A0CD5C;
case 134u: goto L_08A0CD64;
case 135u: goto L_08A0CD90;
case 136u: goto L_08A0CDA0;
case 137u: goto L_08A0CDB0;
case 138u: goto L_08A0CDEC;
case 139u: goto L_08A0CE34;
case 140u: goto L_08A0CE38;
case 141u: goto L_08A0CE40;
case 142u: goto L_08A0CE50;
case 143u: goto L_08A0CED4;
case 144u: goto L_08A0CEDC;
case 145u: goto L_08A0CEEC;
case 146u: goto L_08A0CEF4;
case 147u: goto L_08A0CEFC;
case 148u: goto L_08A0CF04;
case 149u: goto L_08A0CF3C;
case 150u: goto L_08A0CF44;
case 151u: goto L_08A0CF4C;
case 152u: goto L_08A0CF74;
case 153u: goto L_08A0CF7C;
case 154u: goto L_08A0CF84;
case 155u: goto L_08A0CF90;
case 156u: goto L_08A0CFA8;
case 157u: goto L_08A0CFD0;
case 158u: goto L_08A0CFD8;
case 159u: goto L_08A0CFE0;
case 160u: goto L_08A0D008;
case 161u: goto L_08A0D010;
case 162u: goto L_08A0D014;
case 163u: goto L_08A0D028;
case 164u: goto L_08A0D040;
case 165u: goto L_08A0D054;
case 166u: goto L_08A0D058;
case 167u: goto L_08A0D060;
case 168u: goto L_08A0D068;
case 169u: goto L_08A0D0D8;
case 170u: goto L_08A0D0E0;
case 171u: goto L_08A0D0E8;
case 172u: goto L_08A0D110;
case 173u: goto L_08A0D118;
case 174u: goto L_08A0D11C;
case 175u: goto L_08A0D120;
case 176u: goto L_08A0D12C;
case 177u: goto L_08A0D164;
case 178u: goto L_08A0D1DC;
case 179u: goto L_08A0D1E4;
case 180u: goto L_08A0D1EC;
case 181u: goto L_08A0D214;
case 182u: goto L_08A0D21C;
case 183u: goto L_08A0D228;
case 184u: goto L_08A0D238;
case 185u: goto L_08A0D240;
case 186u: goto L_08A0D248;
case 187u: goto L_08A0D2A0;
case 188u: goto L_08A0D2A8;
case 189u: goto L_08A0D2B0;
case 190u: goto L_08A0D2D8;
case 191u: goto L_08A0D2E0;
case 192u: goto L_08A0D2E4;
case 193u: goto L_08A0D2EC;
case 194u: goto L_08A0D340;
case 195u: goto L_08A0D348;
case 196u: goto L_08A0D350;
case 197u: goto L_08A0D378;
case 198u: goto L_08A0D380;
case 199u: goto L_08A0D384;
case 200u: goto L_08A0D38C;
case 201u: goto L_08A0D408;
case 202u: goto L_08A0D410;
case 203u: goto L_08A0D418;
case 204u: goto L_08A0D440;
case 205u: goto L_08A0D448;
case 206u: goto L_08A0D44C;
case 207u: goto L_08A0D454;
case 208u: goto L_08A0D4D0;
case 209u: goto L_08A0D4D8;
case 210u: goto L_08A0D4E0;
case 211u: goto L_08A0D508;
case 212u: goto L_08A0D510;
case 213u: goto L_08A0D514;
case 214u: goto L_08A0D51C;
case 215u: goto L_08A0D528;
case 216u: goto L_08A0D53C;
case 217u: goto L_08A0D580;
case 218u: goto L_08A0D588;
case 219u: goto L_08A0D590;
case 220u: goto L_08A0D5B8;
case 221u: goto L_08A0D5C0;
case 222u: goto L_08A0D5C4;
case 223u: goto L_08A0D5CC;
case 224u: goto L_08A0D5D4;
case 225u: goto L_08A0D5E4;
case 226u: goto L_08A0D604;
case 227u: goto L_08A0D624;
case 228u: goto L_08A0D644;
case 229u: goto L_08A0D660;
case 230u: goto L_08A0D6C4;
case 231u: goto L_08A0D6CC;
case 232u: goto L_08A0D6D4;
case 233u: goto L_08A0D6D8;
case 234u: goto L_08A0D718;
case 235u: goto L_08A0D720;
case 236u: goto L_08A0D728;
case 237u: goto L_08A0D730;
case 238u: goto L_08A0D738;
case 239u: goto L_08A0D73C;
case 240u: goto L_08A0D77C;
case 241u: goto L_08A0D7E0;
case 242u: goto L_08A0D7E4;
case 243u: goto L_08A0D7EC;
case 244u: goto L_08A0D7F4;
case 245u: goto L_08A0D848;
case 246u: goto L_08A0D884;
case 247u: goto L_08A0D888;
case 248u: goto L_08A0D898;
case 249u: goto L_08A0D93C;
case 250u: goto L_08A0D944;
case 251u: goto L_08A0D988;
case 252u: goto L_08A0D990;
case 253u: goto L_08A0DA04;
case 254u: goto L_08A0DA10;
case 255u: goto L_08A0DA28;
case 256u: goto L_08A0DA48;
case 257u: goto L_08A0DA60;
case 258u: goto L_08A0DA80;
case 259u: goto L_08A0DA9C;
case 260u: goto L_08A0DAB8;
case 261u: goto L_08A0DABC;
case 262u: goto L_08A0DAC8;
case 263u: goto L_08A0DAD0;
case 264u: goto L_08A0DAEC;
case 265u: goto L_08A0DB38;
case 266u: goto L_08A0DB40;
case 267u: goto L_08A0DB7C;
case 268u: goto L_08A0DB88;
case 269u: goto L_08A0DBE8;
case 270u: goto L_08A0DBFC;
case 271u: goto L_08A0DC18;
case 272u: goto L_08A0DC2C;
case 273u: goto L_08A0DC34;
case 274u: goto L_08A0DC3C;
case 275u: goto L_08A0DC40;
case 276u: goto L_08A0DC48;
case 277u: goto L_08A0DC50;
case 278u: goto L_08A0DC54;
case 279u: goto L_08A0DC8C;
case 280u: goto L_08A0DCB8;
case 281u: goto L_08A0DCD0;
case 282u: goto L_08A0DCF4;
case 283u: goto L_08A0DD04;
case 284u: goto L_08A0DD14;
case 285u: goto L_08A0DD1C;
case 286u: goto L_08A0DD24;
case 287u: goto L_08A0DD2C;
case 288u: goto L_08A0DD4C;
case 289u: goto L_08A0DD64;
case 290u: goto L_08A0DD6C;
case 291u: goto L_08A0DD80;
case 292u: goto L_08A0DD84;
case 293u: goto L_08A0DDA0;
case 294u: goto L_08A0DDDC;
case 295u: goto L_08A0DDE8;
case 296u: goto L_08A0DDF4;
case 297u: goto L_08A0DE18;
case 298u: goto L_08A0DE28;
case 299u: goto L_08A0DE7C;
case 300u: goto L_08A0DE98;
case 301u: goto L_08A0DEC0;
case 302u: goto L_08A0DECC;
case 303u: goto L_08A0DED4;
case 304u: goto L_08A0DEDC;
case 305u: goto L_08A0DEE0;
case 306u: goto L_08A0DF0C;
case 307u: goto L_08A0DF50;
case 308u: goto L_08A0DF60;
case 309u: goto L_08A0DF78;
case 310u: goto L_08A0DF8C;
case 311u: goto L_08A0DF98;
case 312u: goto L_08A0DFA0;
case 313u: goto L_08A0DFA4;
case 314u: goto L_08A0DFD0;
case 315u: goto L_08A0E004;
case 316u: goto L_08A0E014;
case 317u: goto L_08A0E028;
case 318u: goto L_08A0E050;
case 319u: goto L_08A0E05C;
case 320u: goto L_08A0E064;
case 321u: goto L_08A0E06C;
case 322u: goto L_08A0E074;
case 323u: goto L_08A0E07C;
case 324u: goto L_08A0E084;
case 325u: goto L_08A0E08C;
case 326u: goto L_08A0E094;
case 327u: goto L_08A0E098;
case 328u: goto L_08A0E0C4;
case 329u: goto L_08A0E108;
case 330u: goto L_08A0E118;
case 331u: goto L_08A0E130;
case 332u: goto L_08A0E144;
case 333u: goto L_08A0E154;
case 334u: goto L_08A0E15C;
case 335u: goto L_08A0E188;
case 336u: goto L_08A0E1BC;
case 337u: goto L_08A0E1CC;
case 338u: goto L_08A0E1D4;
case 339u: goto L_08A0E1E8;
case 340u: goto L_08A0E20C;
case 341u: goto L_08A0E214;
case 342u: goto L_08A0E224;
case 343u: goto L_08A0E238;
case 344u: goto L_08A0E24C;
case 345u: goto L_08A0E264;
case 346u: goto L_08A0E280;
case 347u: goto L_08A0E288;
case 348u: goto L_08A0E29C;
case 349u: goto L_08A0E2A4;
case 350u: goto L_08A0E2B8;
case 351u: goto L_08A0E2C0;
case 352u: goto L_08A0E2D4;
case 353u: goto L_08A0E2DC;
case 354u: goto L_08A0E2F0;
case 355u: goto L_08A0E2F8;
case 356u: goto L_08A0E31C;
case 357u: goto L_08A0E324;
case 358u: goto L_08A0E340;
case 359u: goto L_08A0E348;
case 360u: goto L_08A0E35C;
case 361u: goto L_08A0E364;
case 362u: goto L_08A0E380;
case 363u: goto L_08A0E388;
case 364u: goto L_08A0E3A4;
case 365u: goto L_08A0E3AC;
case 366u: goto L_08A0E3C8;
case 367u: goto L_08A0E3D0;
case 368u: goto L_08A0E3EC;
case 369u: goto L_08A0E3F4;
case 370u: goto L_08A0E418;
case 371u: goto L_08A0E420;
case 372u: goto L_08A0E434;
case 373u: goto L_08A0E43C;
case 374u: goto L_08A0E450;
case 375u: goto L_08A0E458;
case 376u: goto L_08A0E46C;
case 377u: goto L_08A0E474;
case 378u: goto L_08A0E490;
case 379u: goto L_08A0E498;
case 380u: goto L_08A0E4BC;
case 381u: goto L_08A0E4C4;
case 382u: goto L_08A0E4E8;
case 383u: goto L_08A0E4F0;
case 384u: goto L_08A0E514;
case 385u: goto L_08A0E51C;
case 386u: goto L_08A0E530;
case 387u: goto L_08A0E538;
case 388u: goto L_08A0E554;
case 389u: goto L_08A0E55C;
case 390u: goto L_08A0E570;
case 391u: goto L_08A0E578;
case 392u: goto L_08A0E594;
case 393u: goto L_08A0E59C;
case 394u: goto L_08A0E5B8;
case 395u: goto L_08A0E5C0;
case 396u: goto L_08A0E5C4;
case 397u: goto L_08A0E5D0;
case 398u: goto L_08A0E5E0;
case 399u: goto L_08A0E5F0;
case 400u: goto L_08A0E5F4;
case 401u: goto L_08A0E604;
case 402u: goto L_08A0E608;
case 403u: goto L_08A0E610;
case 404u: goto L_08A0E618;
case 405u: goto L_08A0E624;
case 406u: goto L_08A0E640;
case 407u: goto L_08A0E650;
case 408u: goto L_08A0E664;
case 409u: goto L_08A0E670;
case 410u: goto L_08A0E68C;
case 411u: goto L_08A0E69C;
case 412u: goto L_08A0E6AC;
case 413u: goto L_08A0E6B4;
case 414u: goto L_08A0E700;
case 415u: goto L_08A0E70C;
case 416u: goto L_08A0E718;
case 417u: goto L_08A0E734;
case 418u: goto L_08A0E74C;
case 419u: goto L_08A0E76C;
case 420u: goto L_08A0E788;
case 421u: goto L_08A0E790;
case 422u: goto L_08A0E7AC;
case 423u: goto L_08A0E7C4;
case 424u: goto L_08A0E7D8;
case 425u: goto L_08A0E824;
case 426u: goto L_08A0E844;
case 427u: goto L_08A0E874;
case 428u: goto L_08A0E8A0;
case 429u: goto L_08A0E8CC;
case 430u: goto L_08A0E8EC;
case 431u: goto L_08A0E900;
case 432u: goto L_08A0E918;
case 433u: goto L_08A0E92C;
case 434u: goto L_08A0E93C;
case 435u: goto L_08A0E94C;
case 436u: goto L_08A0E95C;
case 437u: goto L_08A0E98C;
case 438u: goto L_08A0E994;
case 439u: goto L_08A0E9A8;
case 440u: goto L_08A0E9C0;
case 441u: goto L_08A0E9C8;
case 442u: goto L_08A0E9D8;
case 443u: goto L_08A0EA08;
case 444u: goto L_08A0EA1C;
case 445u: goto L_08A0EA30;
case 446u: goto L_08A0EA48;
case 447u: goto L_08A0EA54;
case 448u: goto L_08A0EA64;
case 449u: goto L_08A0EA90;
case 450u: goto L_08A0EAA4;
case 451u: goto L_08A0EAB4;
case 452u: goto L_08A0EAC4;
case 453u: goto L_08A0EADC;
case 454u: goto L_08A0EAE8;
case 455u: goto L_08A0EB00;
case 456u: goto L_08A0EB24;
case 457u: goto L_08A0EBD8;
case 458u: goto L_08A0EBE0;
case 459u: goto L_08A0EBF4;
case 460u: goto L_08A0EC04;
case 461u: goto L_08A0EC14;
case 462u: goto L_08A0EC20;
case 463u: goto L_08A0EC28;
case 464u: goto L_08A0EC34;
case 465u: goto L_08A0EC3C;
case 466u: goto L_08A0EC58;
case 467u: goto L_08A0EC78;
case 468u: goto L_08A0EC84;
case 469u: goto L_08A0EC94;
case 470u: goto L_08A0EC98;
case 471u: goto L_08A0ECA4;
case 472u: goto L_08A0ECAC;
case 473u: goto L_08A0ECB4;
case 474u: goto L_08A0ECBC;
case 475u: goto L_08A0ECC0;
case 476u: goto L_08A0ECC8;
case 477u: goto L_08A0ECD0;
case 478u: goto L_08A0ECDC;
case 479u: goto L_08A0ECE4;
case 480u: goto L_08A0ED00;
case 481u: goto L_08A0ED10;
case 482u: goto L_08A0ED34;
case 483u: goto L_08A0ED4C;
case 484u: goto L_08A0ED70;
case 485u: goto L_08A0ED90;
case 486u: goto L_08A0EDB4;
case 487u: goto L_08A0EDD4;
case 488u: goto L_08A0EDF0;
case 489u: goto L_08A0EE0C;
case 490u: goto L_08A0EE2C;
case 491u: goto L_08A0EE48;
case 492u: goto L_08A0EE50;
case 493u: goto L_08A0EE6C;
case 494u: goto L_08A0EE84;
case 495u: goto L_08A0EE94;
case 496u: goto L_08A0EEAC;
case 497u: goto L_08A0EEB8;
case 498u: goto L_08A0EEC4;
case 499u: goto L_08A0EED0;
case 500u: goto L_08A0EEDC;
case 501u: goto L_08A0EEE8;
case 502u: goto L_08A0EEF4;
case 503u: goto L_08A0EF00;
case 504u: goto L_08A0EF04;
case 505u: goto L_08A0EF18;
case 506u: goto L_08A0EF28;
case 507u: goto L_08A0EF50;
case 508u: goto L_08A0EF58;
case 509u: goto L_08A0EF9C;
case 510u: goto L_08A0EFA8;
case 511u: goto L_08A0EFB8;
case 512u: goto L_08A0EFC4;
case 513u: goto L_08A0EFD0;
case 514u: goto L_08A0EFD8;
case 515u: goto L_08A0EFE0;
case 516u: goto L_08A0EFE8;
case 517u: goto L_08A0EFF4;
case 518u: goto L_08A0F008;
case 519u: goto L_08A0F050;
case 520u: goto L_08A0F150;
case 521u: goto L_08A0F178;
case 522u: goto L_08A0F198;
case 523u: goto L_08A0F1A4;
case 524u: goto L_08A0F1BC;
case 525u: goto L_08A0F1C8;
case 526u: goto L_08A0F1D0;
case 527u: goto L_08A0F1D8;
case 528u: goto L_08A0F1E0;
case 529u: goto L_08A0F1E8;
case 530u: goto L_08A0F1EC;
case 531u: goto L_08A0F1F4;
case 532u: goto L_08A0F214;
case 533u: goto L_08A0F220;
case 534u: goto L_08A0F238;
case 535u: goto L_08A0F244;
case 536u: goto L_08A0F250;
case 537u: goto L_08A0F258;
case 538u: goto L_08A0F260;
case 539u: goto L_08A0F268;
case 540u: goto L_08A0F270;
case 541u: goto L_08A0F278;
case 542u: goto L_08A0F27C;
case 543u: goto L_08A0F284;
case 544u: goto L_08A0F2AC;
case 545u: goto L_08A0F2BC;
case 546u: goto L_08A0F2C4;
case 547u: goto L_08A0F2CC;
case 548u: goto L_08A0F2D4;
case 549u: goto L_08A0F2E0;
case 550u: goto L_08A0F308;
case 551u: goto L_08A0F318;
case 552u: goto L_08A0F320;
case 553u: goto L_08A0F328;
case 554u: goto L_08A0F330;
case 555u: goto L_08A0F33C;
case 556u: goto L_08A0F354;
case 557u: goto L_08A0F360;
case 558u: goto L_08A0F368;
case 559u: goto L_08A0F370;
case 560u: goto L_08A0F374;
case 561u: goto L_08A0F37C;
case 562u: goto L_08A0F384;
case 563u: goto L_08A0F39C;
case 564u: goto L_08A0F3B4;
case 565u: goto L_08A0F3C8;
case 566u: goto L_08A0F3EC;
case 567u: goto L_08A0F404;
case 568u: goto L_08A0F408;
case 569u: goto L_08A0F41C;
case 570u: goto L_08A0F430;
case 571u: goto L_08A0F438;
case 572u: goto L_08A0F43C;
case 573u: goto L_08A0F448;
case 574u: goto L_08A0F4AC;
case 575u: goto L_08A0F4BC;
case 576u: goto L_08A0F4CC;
case 577u: goto L_08A0F4D4;
case 578u: goto L_08A0F4E4;
case 579u: goto L_08A0F4EC;
case 580u: goto L_08A0F4F4;
case 581u: goto L_08A0F4FC;
case 582u: goto L_08A0F508;
case 583u: goto L_08A0F50C;
case 584u: goto L_08A0F524;
case 585u: goto L_08A0F52C;
case 586u: goto L_08A0F538;
case 587u: goto L_08A0F544;
case 588u: goto L_08A0F56C;
case 589u: goto L_08A0F5D0;
case 590u: goto L_08A0F5E0;
case 591u: goto L_08A0F5F4;
case 592u: goto L_08A0F5FC;
case 593u: goto L_08A0F60C;
case 594u: goto L_08A0F620;
case 595u: goto L_08A0F628;
case 596u: goto L_08A0F630;
case 597u: goto L_08A0F648;
case 598u: goto L_08A0F658;
case 599u: goto L_08A0F668;
case 600u: goto L_08A0F670;
case 601u: goto L_08A0F680;
case 602u: goto L_08A0F688;
case 603u: goto L_08A0F690;
case 604u: goto L_08A0F698;
case 605u: goto L_08A0F6A0;
case 606u: goto L_08A0F6A4;
case 607u: goto L_08A0F6C4;
case 608u: goto L_08A0F6CC;
case 609u: goto L_08A0F6D4;
case 610u: goto L_08A0F6EC;
case 611u: goto L_08A0F700;
case 612u: goto L_08A0F76C;
case 613u: goto L_08A0F77C;
case 614u: goto L_08A0F790;
case 615u: goto L_08A0F798;
case 616u: goto L_08A0F7A8;
case 617u: goto L_08A0F7BC;
case 618u: goto L_08A0F7C4;
case 619u: goto L_08A0F7D8;
case 620u: goto L_08A0F7F8;
case 621u: goto L_08A0F808;
case 622u: goto L_08A0F818;
case 623u: goto L_08A0F820;
case 624u: goto L_08A0F830;
case 625u: goto L_08A0F838;
case 626u: goto L_08A0F840;
case 627u: goto L_08A0F848;
case 628u: goto L_08A0F850;
case 629u: goto L_08A0F854;
case 630u: goto L_08A0F874;
case 631u: goto L_08A0F87C;
case 632u: goto L_08A0F884;
case 633u: goto L_08A0F89C;
case 634u: goto L_08A0F8B0;
case 635u: goto L_08A0F91C;
case 636u: goto L_08A0F92C;
case 637u: goto L_08A0F940;
case 638u: goto L_08A0F948;
case 639u: goto L_08A0F958;
case 640u: goto L_08A0F96C;
case 641u: goto L_08A0F974;
case 642u: goto L_08A0F978;
case 643u: goto L_08A0F9A4;
case 644u: goto L_08A0FA00;
case 645u: goto L_08A0FA14;
case 646u: goto L_08A0FA1C;
case 647u: goto L_08A0FA28;
case 648u: goto L_08A0FA30;
case 649u: goto L_08A0FA38;
case 650u: goto L_08A0FA40;
case 651u: goto L_08A0FA48;
case 652u: goto L_08A0FA50;
case 653u: goto L_08A0FA54;
case 654u: goto L_08A0FA68;
case 655u: goto L_08A0FA78;
case 656u: goto L_08A0FA8C;
case 657u: goto L_08A0FA98;
case 658u: goto L_08A0FAAC;
case 659u: goto L_08A0FABC;
case 660u: goto L_08A0FAD0;
case 661u: goto L_08A0FAE0;
case 662u: goto L_08A0FAF4;
case 663u: goto L_08A0FAF8;
case 664u: goto L_08A0FB0C;
case 665u: goto L_08A0FB18;
case 666u: goto L_08A0FB30;
case 667u: goto L_08A0FB44;
case 668u: goto L_08A0FB50;
case 669u: goto L_08A0FB68;
case 670u: goto L_08A0FB7C;
case 671u: goto L_08A0FB88;
case 672u: goto L_08A0FBA0;
case 673u: goto L_08A0FBB4;
case 674u: goto L_08A0FBC0;
case 675u: goto L_08A0FBD8;
case 676u: goto L_08A0FBEC;
case 677u: goto L_08A0FBFC;
case 678u: goto L_08A0FC04;
case 679u: goto L_08A0FC0C;
case 680u: goto L_08A0FC40;
case 681u: goto L_08A0FC68;
case 682u: goto L_08A0FC7C;
case 683u: goto L_08A0FCB0;
case 684u: goto L_08A0FCFC;
case 685u: goto L_08A0FD04;
case 686u: goto L_08A0FD0C;
case 687u: goto L_08A0FD40;
case 688u: goto L_08A0FD68;
case 689u: goto L_08A0FD7C;
case 690u: goto L_08A0FDC0;
case 691u: goto L_08A0FDE8;
case 692u: goto L_08A0FDF4;
case 693u: goto L_08A0FE10;
case 694u: goto L_08A0FE78;
case 695u: goto L_08A0FE98;
case 696u: goto L_08A0FF64;
case 697u: goto L_08A0FF9C;
default:
if (local_transfers == 0u) rt.unsupported(ctx.pc, 0u, "invalid internal function entry");
else ctx.pc = local_pc;
return;
}
}
L_08A0C000:
jump_target = hot_regs.g31;
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0C008:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), ctx.gpr[17]);
ctx.gpr[17] = (hot_regs.g4 | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(16), ctx.gpr[20]);
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(56)));
ctx.gpr[16] = (hot_regs.g5 | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(12), ctx.gpr[19]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(20), hot_regs.g31);
hot_regs.g31 = (0x08A0C038u);
hot_regs.g4 = (ctx.gpr[20] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C038u) goto L_08A0C038;
return;
L_08A0C038:
ctx.gpr[19] = (0u | 0u);
hot_regs.g4 = (static_cast<std::int32_t>(ctx.gpr[19]) < static_cast<std::int32_t>(ctx.gpr[20]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 == 0u;
ctx.gpr[18] = (0u | 0u);
if (branch_taken) {
goto L_08A0C094;
}
goto L_08A0C048;
}
L_08A0C048:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(24)));
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[18]);
hot_regs.g31 = (0x08A0C05Cu);
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(0)));
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 631u, 0x08A0BF48u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C05Cu) goto L_08A0C05C;
return;
L_08A0C05C:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(24)));
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[18]);
hot_regs.g31 = (0x08A0C070u);
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(4)));
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C070u) goto L_08A0C070;
return;
L_08A0C070:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(24)));
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[18]);
hot_regs.g31 = (0x08A0C084u);
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(8)));
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C084u) goto L_08A0C084;
return;
L_08A0C084:
{
std::uint32_t g19 = ctx.gpr[19];
g19 = (g19 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g19) < static_cast<std::int32_t>(ctx.gpr[20]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
ctx.gpr[18] = (ctx.gpr[18] + static_cast<std::uint32_t>(12));
ctx.gpr[19] = g19;
if (branch_taken) {
goto L_08A0C048;
}
goto L_08A0C094;
}
}
L_08A0C094:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(12)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(16)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(20)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(32));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C0B4:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), ctx.gpr[17]);
ctx.gpr[16] = (hot_regs.g4 | 0u);
ctx.gpr[17] = (hot_regs.g5 | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(8), hot_regs.g31);
hot_regs.g31 = (0x08A0C0D4u);
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(48)));
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C0D4u) goto L_08A0C0D4;
return;
L_08A0C0D4:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(20)));
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(48)));
hot_regs.g6 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0C0E8u);
hot_regs.g5 = (hot_regs.g5 << 2u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 621u, 0x08A0BE74u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C0E8u) goto L_08A0C0E8;
return;
L_08A0C0E8:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C0FC:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), ctx.gpr[17]);
ctx.gpr[17] = (hot_regs.g4 | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(16), ctx.gpr[20]);
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(36)));
ctx.gpr[16] = (hot_regs.g5 | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(12), ctx.gpr[19]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(20), hot_regs.g31);
hot_regs.g31 = (0x08A0C12Cu);
hot_regs.g4 = (ctx.gpr[20] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C12Cu) goto L_08A0C12C;
return;
L_08A0C12C:
ctx.gpr[19] = (0u | 0u);
hot_regs.g4 = (static_cast<std::int32_t>(ctx.gpr[19]) < static_cast<std::int32_t>(ctx.gpr[20]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 == 0u;
ctx.gpr[18] = (0u | 0u);
if (branch_taken) {
goto L_08A0C160;
}
goto L_08A0C13C;
}
L_08A0C13C:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(28)));
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[18]);
hot_regs.g31 = (0x08A0C150u);
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(0)));
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 631u, 0x08A0BF48u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C150u) goto L_08A0C150;
return;
L_08A0C150:
{
std::uint32_t g19 = ctx.gpr[19];
g19 = (g19 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g19) < static_cast<std::int32_t>(ctx.gpr[20]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
ctx.gpr[18] = (ctx.gpr[18] + static_cast<std::uint32_t>(4));
ctx.gpr[19] = g19;
if (branch_taken) {
goto L_08A0C13C;
}
goto L_08A0C160;
}
}
L_08A0C160:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(12)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(16)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(20)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(32));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C180:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), ctx.gpr[17]);
ctx.gpr[17] = (hot_regs.g4 | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(12), ctx.gpr[19]);
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(40)));
ctx.gpr[16] = (hot_regs.g5 | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(16), ctx.gpr[20]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(20), ctx.gpr[21]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(24), hot_regs.g31);
hot_regs.g31 = (0x08A0C1B4u);
hot_regs.g4 = (ctx.gpr[19] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C1B4u) goto L_08A0C1B4;
return;
L_08A0C1B4:
ctx.gpr[18] = (0u | 0u);
hot_regs.g4 = (static_cast<std::int32_t>(ctx.gpr[18]) < static_cast<std::int32_t>(ctx.gpr[19]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 == 0u;
ctx.gpr[21] = (0u | 0u);
if (branch_taken) {
goto L_08A0C240;
}
goto L_08A0C1C4;
}
L_08A0C1C4:
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(8)));
hot_regs.g5 = (ctx.gpr[16] | 0u);
ctx.gpr[20] = (ctx.gpr[20] + ctx.gpr[21]);
hot_regs.g31 = (0x08A0C1D8u);
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(0)));
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C1D8u) goto L_08A0C1D8;
return;
L_08A0C1D8:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
g4 = (aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(0)));
g5 = (static_cast<std::int32_t>(g4) < 3 ? 1u : 0u);
{ const bool branch_taken = g5 == 0u;
g5 = (static_cast<std::int32_t>(g4) < 4 ? 1u : 0u);
hot_regs.g4 = g4;
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0C1F8;
}
goto L_08A0C1E8;
}
}
L_08A0C1E8:
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
if (branch_taken) {
goto L_08A0C230;
}
goto L_08A0C1F0;
}
L_08A0C1F0:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0C230;
}
goto L_08A0C1F8;
}
L_08A0C1F8:
{ const bool branch_taken = hot_regs.g5 != 0u;
hot_regs.g4 = (static_cast<std::int32_t>(hot_regs.g4) < 5 ? 1u : 0u);
if (branch_taken) {
goto L_08A0C21C;
}
goto L_08A0C200;
}
L_08A0C200:
{ const bool branch_taken = hot_regs.g4 == 0u;
// nop
if (branch_taken) {
goto L_08A0C230;
}
goto L_08A0C208;
}
L_08A0C208:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (0x08A0C214u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 631u, 0x08A0BF48u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C214u) goto L_08A0C214;
return;
L_08A0C214:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0C230;
}
goto L_08A0C21C;
}
L_08A0C21C:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (0x08A0C228u);
hot_regs.g4 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 629u, 0x08A0BF20u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C228u) goto L_08A0C228;
return;
L_08A0C228:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0C230;
}
goto L_08A0C230;
}
L_08A0C230:
{
std::uint32_t g18 = ctx.gpr[18];
g18 = (g18 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g18) < static_cast<std::int32_t>(ctx.gpr[19]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
ctx.gpr[21] = (ctx.gpr[21] + static_cast<std::uint32_t>(8));
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0C1C4;
}
goto L_08A0C240;
}
}
L_08A0C240:
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0C250u);
hot_regs.g4 = (ctx.gpr[19] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C250u) goto L_08A0C250;
return;
L_08A0C250:
ctx.gpr[18] = (0u | 0u);
hot_regs.g4 = (static_cast<std::int32_t>(ctx.gpr[18]) < static_cast<std::int32_t>(ctx.gpr[19]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 == 0u;
ctx.gpr[20] = (0u | 0u);
if (branch_taken) {
goto L_08A0C288;
}
goto L_08A0C260;
}
L_08A0C260:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(16)));
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(32)));
g4 = (g4 + ctx.gpr[20]);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
hot_regs.g31 = (0x08A0C278u);
hot_regs.g6 = (ctx.gpr[16] | 0u);
hot_regs.g4 = g4;
goto L_08A0C2AC;
}
L_08A0C278:
{
std::uint32_t g18 = ctx.gpr[18];
g18 = (g18 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g18) < static_cast<std::int32_t>(ctx.gpr[19]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
ctx.gpr[20] = (ctx.gpr[20] + static_cast<std::uint32_t>(4));
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0C260;
}
goto L_08A0C288;
}
}
L_08A0C288:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(12)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(16)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(20)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(24)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(32));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C2AC:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g17 = ctx.gpr[17];
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(4), g17);
g17 = (g4 | 0u);
hot_regs.g7 = (g5 | 0u);
g4 = (aot_mem.aot_load32(g17 + static_cast<std::uint32_t>(32)));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
g5 = (0u | 0u);
ctx.gpr[16] = (hot_regs.g6 | 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(8), hot_regs.g31);
if (g4 != hot_regs.g7) {
g5 = (g4 | 0u);
hot_regs.g4 = g4;
hot_regs.g5 = g5;
ctx.gpr[17] = g17;
hot_regs.g29 = g29;
goto L_08A0C2D8;
}
goto L_08A0C2D8;
}
L_08A0C2D8:
hot_regs.g4 = (hot_regs.g5 | 0u);
hot_regs.g31 = (0x08A0C2E4u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 631u, 0x08A0BF48u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C2E4u) goto L_08A0C2E4;
return;
L_08A0C2E4:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(60)));
hot_regs.g31 = (0x08A0C2F0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 625u, 0x08A0BED0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C2F0u) goto L_08A0C2F0;
return;
L_08A0C2F0:
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(68)));
hot_regs.g31 = (0x08A0C2FCu);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C2FCu) goto L_08A0C2FC;
return;
L_08A0C2FC:
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(69)));
hot_regs.g31 = (0x08A0C308u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C308u) goto L_08A0C308;
return;
L_08A0C308:
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(70)));
hot_regs.g31 = (0x08A0C314u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C314u) goto L_08A0C314;
return;
L_08A0C314:
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(71)));
hot_regs.g31 = (0x08A0C320u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C320u) goto L_08A0C320;
return;
L_08A0C320:
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0C32Cu);
hot_regs.g5 = (ctx.gpr[16] | 0u);
goto L_08A0C0B4;
L_08A0C32C:
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0C338u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
goto L_08A0C008;
L_08A0C338:
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0C344u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
goto L_08A0C0FC;
L_08A0C344:
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0C350u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
goto L_08A0C180;
L_08A0C350:
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0C35Cu);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 638u, 0x08A0BFC0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C35Cu) goto L_08A0C35C;
return;
L_08A0C35C:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C370:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
ctx.gpr[16] = (hot_regs.g4 | 0u);
hot_regs.g4 = (ctx.gpr[28] + static_cast<std::uint32_t>(-8552));
hot_regs.g5 = (0u | 4u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), hot_regs.g31);
hot_regs.g31 = (0x08A0C390u);
hot_regs.g6 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 621u, 0x08A0BE74u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C390u) goto L_08A0C390;
return;
L_08A0C390:
hot_regs.g4 = (0u | 80u);
hot_regs.g31 = (0x08A0C39Cu);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C39Cu) goto L_08A0C39C;
return;
L_08A0C39C:
hot_regs.g31 = (0x08A0C3A4u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0120_entry, 120u, 521u, 0x089E6870u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3A4u) goto L_08A0C3A4;
return;
L_08A0C3A4:
hot_regs.g4 = (hot_regs.g2 | 0u);
hot_regs.g31 = (0x08A0C3B0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3B0u) goto L_08A0C3B0;
return;
L_08A0C3B0:
hot_regs.g4 = (0u | 4u);
hot_regs.g31 = (0x08A0C3BCu);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3BCu) goto L_08A0C3BC;
return;
L_08A0C3BC:
hot_regs.g4 = (0u | 4u);
hot_regs.g31 = (0x08A0C3C8u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3C8u) goto L_08A0C3C8;
return;
L_08A0C3C8:
hot_regs.g4 = (0u | 4u);
hot_regs.g31 = (0x08A0C3D4u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3D4u) goto L_08A0C3D4;
return;
L_08A0C3D4:
hot_regs.g4 = (0u | 6u);
hot_regs.g31 = (0x08A0C3E0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3E0u) goto L_08A0C3E0;
return;
L_08A0C3E0:
hot_regs.g4 = (0u | 8u);
hot_regs.g31 = (0x08A0C3ECu);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3ECu) goto L_08A0C3EC;
return;
L_08A0C3EC:
hot_regs.g4 = (0u | 9u);
hot_regs.g31 = (0x08A0C3F8u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C3F8u) goto L_08A0C3F8;
return;
L_08A0C3F8:
hot_regs.g4 = (0u | 9u);
hot_regs.g31 = (0x08A0C404u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C404u) goto L_08A0C404;
return;
L_08A0C404:
hot_regs.g4 = (0u | 4u);
hot_regs.g31 = (0x08A0C410u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 623u, 0x08A0BEA8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C410u) goto L_08A0C410;
return;
L_08A0C410:
hot_regs.g5 = (19439u << 16u);
hot_regs.g5 = (hot_regs.g5 | 44859u);
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0C424u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g5);
if (rt.invoke_chained_direct<&recomp_unit_0129_entry, 129u, 629u, 0x08A0BF20u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C424u) goto L_08A0C424;
return;
L_08A0C424:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C434:
{
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), hot_regs.g4);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(4), hot_regs.g6);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(12), ctx.gpr[16]);
ctx.gpr[16] = (hot_regs.g5 | 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(8), hot_regs.g7);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(16), hot_regs.g31);
hot_regs.g31 = (0x08A0C458u);
hot_regs.g4 = (g29 | 0u);
hot_regs.g29 = g29;
goto L_08A0C370;
}
L_08A0C458:
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g5 = (0u | 0u);
hot_regs.g31 = (0x08A0C468u);
hot_regs.g6 = (hot_regs.g29 | 0u);
goto L_08A0C2AC;
L_08A0C468:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(12)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(16)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(32));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C478:
hot_regs.g6 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g6);
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
jump_target = hot_regs.g31;
// nop
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0C494:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
float f20 = hot_regs.f20;
float f26 = ctx.fpr[26];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g22 = ctx.gpr[22];
std::uint32_t g29 = hot_regs.g29;
std::uint32_t g30 = ctx.gpr[30];
g29 = (g29 + static_cast<std::uint32_t>(-272));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(252), g30);
g30 = (g4 | 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(204), std::bit_cast<std::uint32_t>(f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(208), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(212), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(216), std::bit_cast<std::uint32_t>(f26));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(220), ctx.gpr[16]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(224), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(228), ctx.gpr[18]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(232), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(236), ctx.gpr[20]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(240), ctx.gpr[21]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(244), g22);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(248), ctx.gpr[23]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(256), hot_regs.g31);
g4 = (16128u << 16u);
f20 = std::bit_cast<float>(g4);
g4 = (0u | 0u);
g5 = (0u | 0u);
aot_mem.aot_store8(g29 + static_cast<std::uint32_t>(197), static_cast<std::uint8_t>(g4));
aot_mem.aot_store8(g29 + static_cast<std::uint32_t>(196), static_cast<std::uint8_t>(g5));
ctx.gpr[23] = (0u | 0u);
g22 = (0u | 999u);
ctx.gpr[21] = (g22 | 0u);
g4 = (g30 + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g5 = (g29 + static_cast<std::uint32_t>(32));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(192), g4);
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
f12 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
g5 = (16736u << 16u);
f26 = std::bit_cast<float>(g5);
{ const float fs = f20; const float ft = f26; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f26 = std::bit_cast<float>(0x7FC00000u); else f26 = fs * ft; }
{ const float fs = f26; const float ft = f20; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
f12 = f12 - f13;
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(20), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(8)));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(24), std::bit_cast<std::uint32_t>(f12));
g4 = (0u | 0u);
ctx.gpr[16] = (g29 + static_cast<std::uint32_t>(16));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(200), g4);
ctx.gpr[18] = (g29 + static_cast<std::uint32_t>(96));
g4 = (16153u << 16u);
g4 = (g4 | 39322u);
hot_regs.f22 = std::bit_cast<float>(g4);
ctx.gpr[17] = (g29 + static_cast<std::uint32_t>(128));
ctx.gpr[20] = (g29 + static_cast<std::uint32_t>(112));
hot_regs.g4 = g4;
hot_regs.g5 = g5;
ctx.gpr[22] = g22;
hot_regs.g29 = g29;
ctx.gpr[30] = g30;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
hot_regs.f20 = f20;
ctx.fpr[26] = f26;
goto L_08A0C554;
}
}
L_08A0C554:
{
float f12 = hot_regs.f12;
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(192)));
{ const float fs = ctx.fpr[26]; const float ft = hot_regs.f20; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
ctx.gpr[19] = (0u | 0u);
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(0)));
f12 = hot_regs.f13 - f12;
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(16), std::bit_cast<std::uint32_t>(f12));
hot_regs.f12 = f12;
goto L_08A0C56C;
}
L_08A0C56C:
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0C578u);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0198_entry, 198u, 719u, 0x08B1FB98u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C578u) goto L_08A0C578;
return;
L_08A0C578:
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(48));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[18] | 0u);
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f22));
hot_regs.g5 = (ctx.gpr[30] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0C5D0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C5D0u) goto L_08A0C5D0;
return;
L_08A0C5D0:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0C6B4;
}
goto L_08A0C5D8;
}
L_08A0C5D8:
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(192)));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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[17] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[20] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[24] = std::bit_cast<float>(hot_regs.g4);
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f22));
hot_regs.g5 = (ctx.gpr[30] | 0u);
hot_regs.g6 = (0u | 0u);
hot_regs.g7 = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 0u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0C63Cu);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C63Cu) goto L_08A0C63C;
return;
L_08A0C63C:
ctx.gpr[23] = (hot_regs.g2 | 0u);
{ const bool branch_taken = ctx.gpr[23] != 0u;
// nop
if (branch_taken) {
goto L_08A0C680;
}
goto L_08A0C648;
}
L_08A0C648:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(ctx.gpr[22]);
f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f12)));
ctx.set_fpu_condition((ctx.fpr[24] < f12));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0C6B4;
}
goto L_08A0C660;
}
}
L_08A0C660:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[24]));
ctx.gpr[22] = (std::bit_cast<std::uint32_t>(hot_regs.f12));
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (hot_regs.g29 + static_cast<std::uint32_t>(64));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
g4 = (0u | 1u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(197), static_cast<std::uint8_t>(g4));
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0C6B4;
}
goto L_08A0C680;
}
}
L_08A0C680:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(ctx.gpr[21]);
f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f12)));
ctx.set_fpu_condition((ctx.fpr[24] < f12));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0C6B4;
}
goto L_08A0C698;
}
}
L_08A0C698:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[24]));
ctx.gpr[21] = (std::bit_cast<std::uint32_t>(hot_regs.f12));
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (hot_regs.g29 + static_cast<std::uint32_t>(80));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
g4 = (0u | 1u);
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(196), static_cast<std::uint8_t>(g4));
hot_regs.g4 = g4;
goto L_08A0C6B4;
}
L_08A0C6B4:
{
float f12 = hot_regs.f12;
{
std::uint32_t g19 = ctx.gpr[19];
f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(16)));
g19 = (g19 + static_cast<std::uint32_t>(1));
f12 = f12 + hot_regs.f20;
hot_regs.g4 = (static_cast<std::int32_t>(g19) < 15 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(16), std::bit_cast<std::uint32_t>(f12));
ctx.gpr[19] = g19;
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0C56C;
}
goto L_08A0C6CC;
}
}
}
L_08A0C6CC:
{
float f12 = hot_regs.f12;
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(20)));
g4 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(200)));
f12 = f12 + hot_regs.f20;
g4 = (g4 + static_cast<std::uint32_t>(1));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(200), g4);
hot_regs.g5 = (static_cast<std::int32_t>(g4) < 15 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(20), std::bit_cast<std::uint32_t>(f12));
hot_regs.g4 = g4;
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0C554;
}
goto L_08A0C6EC;
}
}
}
L_08A0C6EC:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (aot_mem.aot_load8(hot_regs.g29 + static_cast<std::uint32_t>(196)));
hot_regs.g4 = (aot_mem.aot_load8(hot_regs.g29 + static_cast<std::uint32_t>(197)));
g5 = (hot_regs.g4 | g5);
{ const bool branch_taken = g5 == 0u;
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0C778;
}
goto L_08A0C700;
}
}
L_08A0C700:
{ const bool branch_taken = hot_regs.g4 == 0u;
// nop
if (branch_taken) {
goto L_08A0C724;
}
goto L_08A0C708;
}
L_08A0C708:
{
std::uint32_t g29 = hot_regs.g29;
std::uint32_t g30 = ctx.gpr[30];
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(64)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(68)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(72)));
aot_mem.aot_store32(g30 + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(g30 + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(hot_regs.f13));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g30 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(hot_regs.f14));
if (branch_taken) {
goto L_08A0C770;
}
goto L_08A0C724;
}
}
L_08A0C724:
{
float f12 = hot_regs.f12;
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
std::uint32_t g30 = ctx.gpr[30];
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[23] + static_cast<std::uint32_t>(86))))));
g4 = (g4 << 2u);
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
g4 = (hot_regs.g5 + g4);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(20)));
g4 = (g4 + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g29 + static_cast<std::uint32_t>(144));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(88)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(152)));
f12 = f12 + hot_regs.f13;
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(f12));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(80)));
hot_regs.f15 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(84)));
aot_mem.aot_store32(g30 + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(hot_regs.f14));
aot_mem.aot_store32(g30 + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(hot_regs.f15));
aot_mem.aot_store32(g30 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(f12));
hot_regs.g4 = g4;
hot_regs.f12 = f12;
goto L_08A0C770;
}
}
L_08A0C770:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0C77C;
}
goto L_08A0C778;
}
L_08A0C778:
hot_regs.g2 = (0u | 0u);
goto L_08A0C77C;
L_08A0C77C:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(204)));
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(208)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(212)));
ctx.fpr[26] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(216)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(220)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(224)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(228)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(232)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(236)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(240)));
ctx.gpr[22] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(244)));
ctx.gpr[23] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(248)));
ctx.gpr[30] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(252)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(256)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(272));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0C7BC:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-272));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(212), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(216), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(220), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(224), ctx.gpr[16]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(228), ctx.gpr[17]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(232), ctx.gpr[18]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(236), ctx.gpr[19]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(240), ctx.gpr[20]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(244), ctx.gpr[21]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(248), ctx.gpr[22]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(252), ctx.gpr[23]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(256), ctx.gpr[30]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(260), hot_regs.g31);
ctx.gpr[19] = (hot_regs.g4 | 0u);
hot_regs.g4 = (0u | 0u);
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(208), static_cast<std::uint8_t>(hot_regs.g4));
hot_regs.g31 = (0x08A0C808u);
hot_regs.g4 = (ctx.gpr[19] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0179_entry, 179u, 50u, 0x08AD0530u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C808u) goto L_08A0C808;
return;
L_08A0C808:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0C8C8;
}
goto L_08A0C810;
}
L_08A0C810:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(1728)));
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (hot_regs.g5 < g4 ? 1u : 0u);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0C8C8;
}
goto L_08A0C824;
}
}
L_08A0C824:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(676)));
hot_regs.g4 = (hot_regs.g4 + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
ctx.gpr[30] = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[19] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
ctx.gpr[18] = (hot_regs.g29 + static_cast<std::uint32_t>(48));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(64));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g6 = (ctx.vfpu_scalar_bits_ct<28u>());
hot_regs.f12 = std::bit_cast<float>(hot_regs.g6);
hot_regs.g6 = (16128u << 16u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g6);
{ const float fs = hot_regs.f12; const float ft = hot_regs.f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f12 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f12 = fs * ft; }
hot_regs.f14 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(hot_regs.f12));
ctx.gpr[23] = (std::bit_cast<std::uint32_t>(hot_regs.f14));
hot_regs.g6 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g6);
{ 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 / vfpu_s[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(80));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (static_cast<std::int32_t>(ctx.gpr[23]) < 11 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 == 0u;
ctx.gpr[16] = (hot_regs.g29 + static_cast<std::uint32_t>(96));
if (branch_taken) {
goto L_08A0C8D0;
}
goto L_08A0C8C0;
}
L_08A0C8C0:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0C8D4;
}
goto L_08A0C8C8;
}
L_08A0C8C8:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0CA98;
}
goto L_08A0C8D0;
}
L_08A0C8D0:
ctx.gpr[23] = (0u | 10u);
goto L_08A0C8D4;
L_08A0C8D4:
{
std::uint32_t g18 = ctx.gpr[18];
{ const std::uint32_t vfpu_address = g18 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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[16] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
g18 = (0u | 0u);
hot_regs.g4 = (static_cast<std::int32_t>(g18) < static_cast<std::int32_t>(ctx.gpr[23]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 == 0u;
ctx.gpr[22] = (hot_regs.g29 + static_cast<std::uint32_t>(112));
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0CA88;
}
goto L_08A0C8EC;
}
}
L_08A0C8EC:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g17 = ctx.gpr[17];
hot_regs.f20 = std::bit_cast<float>(0u);
g4 = (16448u << 16u);
hot_regs.f22 = std::bit_cast<float>(g4);
g17 = (2246u << 16u);
g17 = (g17 + static_cast<std::uint32_t>(1840));
g4 = (16153u << 16u);
g4 = (g4 | 39322u);
ctx.fpr[24] = std::bit_cast<float>(g4);
ctx.gpr[21] = (hot_regs.g29 + static_cast<std::uint32_t>(144));
ctx.gpr[20] = (hot_regs.g29 + static_cast<std::uint32_t>(160));
hot_regs.g4 = g4;
ctx.gpr[17] = g17;
goto L_08A0C914;
}
L_08A0C914:
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(80));
hot_regs.g31 = (0x08A0C920u);
hot_regs.g4 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C920u) goto L_08A0C920;
return;
L_08A0C920:
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[22] | 0u);
hot_regs.g31 = (0x08A0C934u);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0198_entry, 198u, 719u, 0x08B1FB98u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0C934u) goto L_08A0C934;
return;
L_08A0C934:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(120)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(40)));
f12 = f12 - hot_regs.f13;
ctx.set_fpu_condition((f12 < hot_regs.f20));
// nop
if (ctx.fpu_condition()) {
f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(f12) ^ 0x80000000u);
hot_regs.f12 = f12;
goto L_08A0C950;
}
goto L_08A0C950;
}
L_08A0C950:
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f22));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0C98C;
}
goto L_08A0C960;
}
L_08A0C960:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(120)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(104)));
f12 = f12 - hot_regs.f13;
ctx.set_fpu_condition((f12 < hot_regs.f20));
// nop
if (ctx.fpu_condition()) {
f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(f12) ^ 0x80000000u);
hot_regs.f12 = f12;
goto L_08A0C97C;
}
goto L_08A0C97C;
}
L_08A0C97C:
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f22));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0CA78;
}
goto L_08A0C98C;
}
L_08A0C98C:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(120)));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(104), std::bit_cast<std::uint32_t>(hot_regs.f12));
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<12u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<36u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(16);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<37u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(32);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<38u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(48);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<39u, 4u>(vfpu_value); }
hot_regs.g4 = (std::bit_cast<std::uint32_t>(ctx.fpr[24]));
ctx.set_vfpu_scalar_bits_ct<0u>(hot_regs.g4);
{ float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{};
ctx.read_vfpu_matrix(vfpu_matrix, 36u, 4u);
ctx.read_vfpu_vector_ct<12u, 4u>(vfpu_target_raw);
constexpr std::uint32_t vfpu_side = 4u;
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, 14u, vfpu_side); }
ctx.vfpu_ctrl[1u] = 0x00000000u;
ctx.execute_vfpu_vcmp_ct<14u, 0u, 4u, 3u>();
hot_regs.g4 = (0u + static_cast<std::uint32_t>(0));
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) == 0u;
// vflush: architectural no-op that retains VFPU prefixes
if (branch_taken) {
goto L_08A0C9D0;
}
goto L_08A0C9C8;
}
L_08A0C9C8:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (0u + static_cast<std::uint32_t>(1));
g4 = (g4 & 255u);
hot_regs.g4 = g4;
goto L_08A0C9D0;
}
L_08A0C9D0:
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
if (branch_taken) {
goto L_08A0CA78;
}
goto L_08A0C9D8;
}
L_08A0C9D8:
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g5 = (ctx.gpr[30] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0CA04u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CA04u) goto L_08A0CA04;
return;
L_08A0CA04:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0CA78;
}
goto L_08A0CA0C;
}
L_08A0CA0C:
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[21] | 0u);
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[24]));
hot_regs.g5 = (ctx.gpr[19] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0CA44u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CA44u) goto L_08A0CA44;
return;
L_08A0CA44:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0CA78;
}
goto L_08A0CA4C;
}
L_08A0CA4C:
hot_regs.g4 = (0u | 1u);
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(92)));
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(208), static_cast<std::uint8_t>(hot_regs.g4));
hot_regs.g5 = (hot_regs.g5 + static_cast<std::uint32_t>(112));
hot_regs.g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g5 + static_cast<std::uint32_t>(0))))));
hot_regs.g4 = (ctx.gpr[19] + hot_regs.g4);
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g6 = (aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(4)));
jump_target = hot_regs.g6;
hot_regs.g31 = (0x08A0CA78u);
hot_regs.g5 = (ctx.gpr[20] | 0u);
ctx.pc = jump_target;
if (rt.invoke_chained_call(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CA78u) goto L_08A0CA78;
return;
L_08A0CA78:
{
std::uint32_t g18 = ctx.gpr[18];
g18 = (g18 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g18) < static_cast<std::int32_t>(ctx.gpr[23]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0C914;
}
goto L_08A0CA88;
}
}
L_08A0CA88:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (g4 + static_cast<std::uint32_t>(3000));
aot_mem.aot_store32(ctx.gpr[19] + static_cast<std::uint32_t>(1728), g4);
hot_regs.g2 = (aot_mem.aot_load8(hot_regs.g29 + static_cast<std::uint32_t>(208)));
hot_regs.g4 = g4;
goto L_08A0CA98;
}
L_08A0CA98:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(212)));
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(216)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(220)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(224)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(228)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(232)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(236)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(240)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(244)));
ctx.gpr[22] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(248)));
ctx.gpr[23] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(252)));
ctx.gpr[30] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(256)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(260)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(272));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0CAD4:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-272));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(212), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(216), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(220), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(224), ctx.gpr[16]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(228), ctx.gpr[17]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(232), ctx.gpr[18]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(236), ctx.gpr[19]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(240), ctx.gpr[20]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(244), ctx.gpr[21]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(248), ctx.gpr[22]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(252), ctx.gpr[23]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(256), ctx.gpr[30]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(260), hot_regs.g31);
ctx.gpr[30] = (hot_regs.g5 | 0u);
ctx.gpr[19] = (hot_regs.g4 | 0u);
hot_regs.g4 = (0u | 0u);
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(208), static_cast<std::uint8_t>(hot_regs.g4));
hot_regs.g31 = (0x08A0CB24u);
hot_regs.g4 = (ctx.gpr[19] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0179_entry, 179u, 50u, 0x08AD0530u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CB24u) goto L_08A0CB24;
return;
L_08A0CB24:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0CBE0;
}
goto L_08A0CB2C;
}
L_08A0CB2C:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(1728)));
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (hot_regs.g5 < g4 ? 1u : 0u);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0CBE0;
}
goto L_08A0CB40;
}
}
L_08A0CB40:
hot_regs.g4 = (ctx.gpr[30] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
ctx.gpr[30] = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[19] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(48));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(64));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g7 = (ctx.vfpu_scalar_bits_ct<28u>());
hot_regs.f12 = std::bit_cast<float>(hot_regs.g7);
hot_regs.g7 = (16128u << 16u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g7);
{ const float fs = hot_regs.f12; const float ft = hot_regs.f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f12 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f12 = fs * ft; }
hot_regs.f14 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(hot_regs.f12));
ctx.gpr[23] = (std::bit_cast<std::uint32_t>(hot_regs.f14));
hot_regs.g7 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g7);
{ 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 / vfpu_s[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
{ const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(80));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g5 = (static_cast<std::int32_t>(ctx.gpr[23]) < 11 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 == 0u;
ctx.gpr[16] = (hot_regs.g29 + static_cast<std::uint32_t>(96));
if (branch_taken) {
goto L_08A0CBE8;
}
goto L_08A0CBD8;
}
L_08A0CBD8:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0CBEC;
}
goto L_08A0CBE0;
}
L_08A0CBE0:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0CDB0;
}
goto L_08A0CBE8;
}
L_08A0CBE8:
ctx.gpr[23] = (0u | 10u);
goto L_08A0CBEC;
L_08A0CBEC:
{
std::uint32_t g4 = hot_regs.g4;
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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[16] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
ctx.gpr[18] = (0u | 0u);
g4 = (static_cast<std::int32_t>(ctx.gpr[18]) < static_cast<std::int32_t>(ctx.gpr[23]) ? 1u : 0u);
{ const bool branch_taken = g4 == 0u;
ctx.gpr[22] = (hot_regs.g29 + static_cast<std::uint32_t>(112));
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0CDA0;
}
goto L_08A0CC04;
}
}
L_08A0CC04:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g17 = ctx.gpr[17];
hot_regs.f20 = std::bit_cast<float>(0u);
g4 = (16448u << 16u);
hot_regs.f22 = std::bit_cast<float>(g4);
g17 = (2246u << 16u);
g17 = (g17 + static_cast<std::uint32_t>(1840));
g4 = (16153u << 16u);
g4 = (g4 | 39322u);
ctx.fpr[24] = std::bit_cast<float>(g4);
ctx.gpr[21] = (hot_regs.g29 + static_cast<std::uint32_t>(144));
ctx.gpr[20] = (hot_regs.g29 + static_cast<std::uint32_t>(160));
hot_regs.g4 = g4;
ctx.gpr[17] = g17;
goto L_08A0CC2C;
}
L_08A0CC2C:
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(80));
hot_regs.g31 = (0x08A0CC38u);
hot_regs.g4 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CC38u) goto L_08A0CC38;
return;
L_08A0CC38:
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[22] | 0u);
hot_regs.g31 = (0x08A0CC4Cu);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0198_entry, 198u, 719u, 0x08B1FB98u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CC4Cu) goto L_08A0CC4C;
return;
L_08A0CC4C:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(120)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(40)));
f12 = f12 - hot_regs.f13;
ctx.set_fpu_condition((f12 < hot_regs.f20));
// nop
if (ctx.fpu_condition()) {
f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(f12) ^ 0x80000000u);
hot_regs.f12 = f12;
goto L_08A0CC68;
}
goto L_08A0CC68;
}
L_08A0CC68:
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f22));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0CCA4;
}
goto L_08A0CC78;
}
L_08A0CC78:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(120)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(104)));
f12 = f12 - hot_regs.f13;
ctx.set_fpu_condition((f12 < hot_regs.f20));
// nop
if (ctx.fpu_condition()) {
f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(f12) ^ 0x80000000u);
hot_regs.f12 = f12;
goto L_08A0CC94;
}
goto L_08A0CC94;
}
L_08A0CC94:
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f22));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0CD90;
}
goto L_08A0CCA4;
}
L_08A0CCA4:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(120)));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(104), std::bit_cast<std::uint32_t>(hot_regs.f12));
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<12u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<36u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(16);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<37u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(32);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<38u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(48);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<39u, 4u>(vfpu_value); }
hot_regs.g4 = (std::bit_cast<std::uint32_t>(ctx.fpr[24]));
ctx.set_vfpu_scalar_bits_ct<0u>(hot_regs.g4);
{ float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{};
ctx.read_vfpu_matrix(vfpu_matrix, 36u, 4u);
ctx.read_vfpu_vector_ct<12u, 4u>(vfpu_target_raw);
constexpr std::uint32_t vfpu_side = 4u;
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, 14u, vfpu_side); }
ctx.vfpu_ctrl[1u] = 0x00000000u;
ctx.execute_vfpu_vcmp_ct<14u, 0u, 4u, 3u>();
hot_regs.g4 = (0u + static_cast<std::uint32_t>(0));
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) == 0u;
// vflush: architectural no-op that retains VFPU prefixes
if (branch_taken) {
goto L_08A0CCE8;
}
goto L_08A0CCE0;
}
L_08A0CCE0:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (0u + static_cast<std::uint32_t>(1));
g4 = (g4 & 255u);
hot_regs.g4 = g4;
goto L_08A0CCE8;
}
L_08A0CCE8:
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
if (branch_taken) {
goto L_08A0CD90;
}
goto L_08A0CCF0;
}
L_08A0CCF0:
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g5 = (ctx.gpr[30] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0CD1Cu);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CD1Cu) goto L_08A0CD1C;
return;
L_08A0CD1C:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0CD90;
}
goto L_08A0CD24;
}
L_08A0CD24:
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[21] | 0u);
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[24]));
hot_regs.g5 = (ctx.gpr[19] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0CD5Cu);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CD5Cu) goto L_08A0CD5C;
return;
L_08A0CD5C:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0CD90;
}
goto L_08A0CD64;
}
L_08A0CD64:
hot_regs.g4 = (0u | 1u);
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(92)));
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(208), static_cast<std::uint8_t>(hot_regs.g4));
hot_regs.g5 = (hot_regs.g5 + static_cast<std::uint32_t>(112));
hot_regs.g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g5 + static_cast<std::uint32_t>(0))))));
hot_regs.g4 = (ctx.gpr[19] + hot_regs.g4);
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g6 = (aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(4)));
jump_target = hot_regs.g6;
hot_regs.g31 = (0x08A0CD90u);
hot_regs.g5 = (ctx.gpr[20] | 0u);
ctx.pc = jump_target;
if (rt.invoke_chained_call(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CD90u) goto L_08A0CD90;
return;
L_08A0CD90:
{
std::uint32_t g18 = ctx.gpr[18];
g18 = (g18 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g18) < static_cast<std::int32_t>(ctx.gpr[23]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0CC2C;
}
goto L_08A0CDA0;
}
}
L_08A0CDA0:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (g4 + static_cast<std::uint32_t>(3000));
aot_mem.aot_store32(ctx.gpr[19] + static_cast<std::uint32_t>(1728), g4);
hot_regs.g2 = (aot_mem.aot_load8(hot_regs.g29 + static_cast<std::uint32_t>(208)));
hot_regs.g4 = g4;
goto L_08A0CDB0;
}
L_08A0CDB0:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(212)));
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(216)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(220)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(224)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(228)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(232)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(236)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(240)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(244)));
ctx.gpr[22] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(248)));
ctx.gpr[23] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(252)));
ctx.gpr[30] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(256)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(260)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(272));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0CDEC:
{
std::uint32_t g18 = ctx.gpr[18];
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-896));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(828), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(832), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(836), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(840), std::bit_cast<std::uint32_t>(ctx.fpr[26]));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(844), ctx.gpr[16]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(848), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(852), g18);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(856), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(860), ctx.gpr[20]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(864), ctx.gpr[21]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(868), ctx.gpr[22]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(872), ctx.gpr[23]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(876), ctx.gpr[30]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(880), hot_regs.g31);
g18 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(1152)));
{ const bool branch_taken = g18 != 0u;
ctx.gpr[22] = (hot_regs.g4 | 0u);
ctx.gpr[18] = g18;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0CE38;
}
goto L_08A0CE34;
}
}
L_08A0CE34:
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[22] + static_cast<std::uint32_t>(1156)));
goto L_08A0CE38;
L_08A0CE38:
{ const bool branch_taken = ctx.gpr[18] == 0u;
// nop
if (branch_taken) {
goto L_08A0CEFC;
}
goto L_08A0CE40;
}
L_08A0CE40:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[22] + static_cast<std::uint32_t>(468)));
g4 = (g4 & 16384u);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0CEF4;
}
goto L_08A0CE50;
}
}
L_08A0CE50:
ctx.gpr[19] = (0u | 0u);
hot_regs.g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[18] + static_cast<std::uint32_t>(86))))));
hot_regs.g4 = (hot_regs.g4 << 2u);
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
hot_regs.g4 = (hot_regs.g5 + hot_regs.g4);
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(0)));
ctx.gpr[20] = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(20)));
hot_regs.g4 = (ctx.gpr[18] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
ctx.gpr[30] = (hot_regs.g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
ctx.gpr[16] = (ctx.gpr[22] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
ctx.gpr[17] = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
ctx.gpr[23] = (hot_regs.g29 + static_cast<std::uint32_t>(48));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(64), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(68), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(72), std::bit_cast<std::uint32_t>(hot_regs.f12));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(64));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), ctx.gpr[18]);
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[22] + static_cast<std::uint32_t>(72)));
hot_regs.g6 = (0u + static_cast<std::uint32_t>(-513));
hot_regs.g4 = (hot_regs.g4 & hot_regs.g6);
aot_mem.aot_store32(ctx.gpr[22] + static_cast<std::uint32_t>(72), hot_regs.g4);
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[22] + static_cast<std::uint32_t>(236)));
hot_regs.g4 = (hot_regs.g4 | 32768u);
aot_mem.aot_store32(ctx.gpr[22] + static_cast<std::uint32_t>(236), hot_regs.g4);
hot_regs.g31 = (0x08A0CED4u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 538u, 0x08A666C0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CED4u) goto L_08A0CED4;
return;
L_08A0CED4:
hot_regs.g31 = (0x08A0CEDCu);
hot_regs.g4 = (ctx.gpr[18] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0191_entry, 191u, 233u, 0x08B00DBCu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CEDCu) goto L_08A0CEDC;
return;
L_08A0CEDC:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (16053u << 16u);
g4 = (g4 | 49807u);
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.f20 = std::bit_cast<float>(g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0CF04;
}
goto L_08A0CEEC;
}
}
L_08A0CEEC:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0CF84;
}
goto L_08A0CEF4;
}
L_08A0CEF4:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0D73C;
}
goto L_08A0CEFC;
}
L_08A0CEFC:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0D73C;
}
goto L_08A0CF04;
}
L_08A0CF04:
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(32)));
hot_regs.g4 = (16261u << 16u);
hot_regs.g4 = (hot_regs.g4 | 7864u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
hot_regs.f14 = hot_regs.f12 + hot_regs.f13;
hot_regs.f15 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.f14 = hot_regs.f14 + hot_regs.f15;
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(hot_regs.f14));
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.g31 = (0x08A0CF3Cu);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CF3Cu) goto L_08A0CF3C;
return;
L_08A0CF3C:
hot_regs.g31 = (0x08A0CF44u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CF44u) goto L_08A0CF44;
return;
L_08A0CF44:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D028;
}
goto L_08A0CF4C;
}
L_08A0CF4C:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0CF74u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CF74u) goto L_08A0CF74;
return;
L_08A0CF74:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D028;
}
goto L_08A0CF7C;
}
L_08A0CF7C:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[19] = (0u | 1u);
if (branch_taken) {
goto L_08A0D028;
}
goto L_08A0CF84;
}
L_08A0CF84:
hot_regs.g4 = (aot_mem.aot_load16(ctx.gpr[22] + static_cast<std::uint32_t>(2274)));
{ const bool branch_taken = hot_regs.g4 == 0u;
// nop
if (branch_taken) {
goto L_08A0D028;
}
goto L_08A0CF90;
}
L_08A0CF90:
ctx.gpr[21] = (hot_regs.g29 + static_cast<std::uint32_t>(80));
hot_regs.g6 = (aot_mem.aot_load16(ctx.gpr[22] + static_cast<std::uint32_t>(2274)));
hot_regs.g4 = (ctx.gpr[21] | 0u);
hot_regs.g5 = (ctx.gpr[18] | 0u);
hot_regs.g31 = (0x08A0CFA8u);
hot_regs.g7 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0107_entry, 107u, 395u, 0x089B16E4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CFA8u) goto L_08A0CFA8;
return;
L_08A0CFA8:
{ const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(96));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0CFD0u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CFD0u) goto L_08A0CFD0;
return;
L_08A0CFD0:
hot_regs.g31 = (0x08A0CFD8u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0CFD8u) goto L_08A0CFD8;
return;
L_08A0CFD8:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D014;
}
goto L_08A0CFE0;
}
L_08A0CFE0:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D008u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D008u) goto L_08A0D008;
return;
L_08A0D008:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D014;
}
goto L_08A0D010;
}
L_08A0D010:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D014;
L_08A0D014:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(96)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(100)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(104)));
hot_regs.g31 = (0x08A0D028u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D028u) goto L_08A0D028;
return;
L_08A0D028:
{
float f22 = hot_regs.f22;
f22 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(16)));
f22 = f22 - hot_regs.f20;
hot_regs.g4 = (aot_mem.aot_load16(ctx.gpr[22] + static_cast<std::uint32_t>(2274)));
hot_regs.g5 = (0u | 8u);
if (hot_regs.g4 == hot_regs.g5) {
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(824), ctx.gpr[20]);
hot_regs.f22 = f22;
goto L_08A0D058;
}
goto L_08A0D040;
}
L_08A0D040:
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(824), ctx.gpr[20]);
hot_regs.g4 = (aot_mem.aot_load16(ctx.gpr[22] + static_cast<std::uint32_t>(2274)));
hot_regs.g5 = (0u | 9u);
{ const bool branch_taken = hot_regs.g4 != hot_regs.g5;
// nop
if (branch_taken) {
goto L_08A0D060;
}
goto L_08A0D054;
}
L_08A0D054:
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(824), ctx.gpr[20]);
goto L_08A0D058;
L_08A0D058:
{
float f22 = hot_regs.f22;
f22 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(32)));
f22 = f22 + hot_regs.f20;
hot_regs.f22 = f22;
goto L_08A0D060;
}
L_08A0D060:
if (ctx.gpr[19] != 0u) {
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(820), static_cast<std::uint8_t>(ctx.gpr[19]));
goto L_08A0D120;
}
goto L_08A0D068;
L_08A0D068:
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(112));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g5 = (ctx.vfpu_scalar_bits_ct<28u>());
hot_regs.f12 = std::bit_cast<float>(hot_regs.g5);
hot_regs.f12 = hot_regs.f22 - hot_regs.f12;
hot_regs.g5 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g5);
{ const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(128));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0D0D8u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D0D8u) goto L_08A0D0D8;
return;
L_08A0D0D8:
hot_regs.g31 = (0x08A0D0E0u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D0E0u) goto L_08A0D0E0;
return;
L_08A0D0E0:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D11C;
}
goto L_08A0D0E8;
}
L_08A0D0E8:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D110u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D110u) goto L_08A0D110;
return;
L_08A0D110:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D11C;
}
goto L_08A0D118;
}
L_08A0D118:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D11C;
L_08A0D11C:
aot_mem.aot_store8(hot_regs.g29 + static_cast<std::uint32_t>(820), static_cast<std::uint8_t>(ctx.gpr[19]));
goto L_08A0D120;
L_08A0D120:
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(816), ctx.gpr[18]);
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
if (branch_taken) {
goto L_08A0D240;
}
goto L_08A0D12C;
}
L_08A0D12C:
{
float f26 = ctx.fpr[26];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g21 = ctx.gpr[21];
std::uint32_t g29 = hot_regs.g29;
g4 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(824)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(20)));
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(36)));
f26 = hot_regs.f12 - ctx.fpr[24];
g4 = (16448u << 16u);
hot_regs.f13 = std::bit_cast<float>(g4);
f26 = f26 / hot_regs.f13;
ctx.gpr[16] = (0u | 0u);
g21 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(816)));
ctx.gpr[20] = (g29 + static_cast<std::uint32_t>(176));
ctx.gpr[19] = (g29 + static_cast<std::uint32_t>(160));
g21 = (g21 + static_cast<std::uint32_t>(16));
ctx.gpr[18] = (g29 + static_cast<std::uint32_t>(192));
ctx.gpr[17] = (g29 + static_cast<std::uint32_t>(144));
hot_regs.g4 = g4;
ctx.gpr[21] = g21;
ctx.fpr[26] = f26;
goto L_08A0D164;
}
}
L_08A0D164:
hot_regs.g4 = (std::bit_cast<std::uint32_t>(hot_regs.f22));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g4);
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(816)));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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[20] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(ctx.gpr[16]);
hot_regs.f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(hot_regs.f12)));
{ const float fs = hot_regs.f12; const float ft = ctx.fpr[26]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f12 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f12 = fs * ft; }
hot_regs.f12 = ctx.fpr[24] + hot_regs.f12;
hot_regs.g4 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g4);
{ const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[19] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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[17] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0D1DCu);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D1DCu) goto L_08A0D1DC;
return;
L_08A0D1DC:
hot_regs.g31 = (0x08A0D1E4u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D1E4u) goto L_08A0D1E4;
return;
L_08A0D1E4:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D228;
}
goto L_08A0D1EC;
}
L_08A0D1EC:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D214u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D214u) goto L_08A0D214;
return;
L_08A0D214:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D228;
}
goto L_08A0D21C;
}
L_08A0D21C:
ctx.gpr[19] = (0u | 1u);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[18] = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(816)));
if (branch_taken) {
goto L_08A0D240;
}
goto L_08A0D228;
}
L_08A0D228:
{
std::uint32_t g16 = ctx.gpr[16];
g16 = (g16 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g16) < 4 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
ctx.gpr[16] = g16;
if (branch_taken) {
goto L_08A0D164;
}
goto L_08A0D238;
}
}
L_08A0D238:
ctx.gpr[18] = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(816)));
ctx.gpr[19] = (aot_mem.aot_load8(hot_regs.g29 + static_cast<std::uint32_t>(820)));
goto L_08A0D240;
L_08A0D240:
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
if (branch_taken) {
goto L_08A0D2E4;
}
goto L_08A0D248;
}
L_08A0D248:
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(824)));
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(20)));
hot_regs.f12 = hot_regs.f12 - hot_regs.f20;
hot_regs.g4 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g4);
hot_regs.g4 = (ctx.gpr[18] + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(224));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(208));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0D2A0u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D2A0u) goto L_08A0D2A0;
return;
L_08A0D2A0:
hot_regs.g31 = (0x08A0D2A8u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D2A8u) goto L_08A0D2A8;
return;
L_08A0D2A8:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D2E4;
}
goto L_08A0D2B0;
}
L_08A0D2B0:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D2D8u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D2D8u) goto L_08A0D2D8;
return;
L_08A0D2D8:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D2E4;
}
goto L_08A0D2E0;
}
L_08A0D2E0:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D2E4;
L_08A0D2E4:
{ const bool branch_taken = ctx.gpr[19] != 0u;
ctx.gpr[16] = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(824)));
if (branch_taken) {
goto L_08A0D384;
}
goto L_08A0D2EC;
}
L_08A0D2EC:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(36)));
hot_regs.f12 = hot_regs.f12 + hot_regs.f20;
hot_regs.g4 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g4);
hot_regs.g4 = (ctx.gpr[18] + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(256));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(240));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0D340u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D340u) goto L_08A0D340;
return;
L_08A0D340:
hot_regs.g31 = (0x08A0D348u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D348u) goto L_08A0D348;
return;
L_08A0D348:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D384;
}
goto L_08A0D350;
}
L_08A0D350:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D378u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D378u) goto L_08A0D378;
return;
L_08A0D378:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D384;
}
goto L_08A0D380;
}
L_08A0D380:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D384;
L_08A0D384:
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
if (branch_taken) {
goto L_08A0D44C;
}
goto L_08A0D38C;
}
L_08A0D38C:
hot_regs.g4 = (std::bit_cast<std::uint32_t>(hot_regs.f22));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g4);
{ const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(304));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(288));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(20)));
hot_regs.g5 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g5);
hot_regs.g5 = (ctx.gpr[18] + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(320));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(272));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0D408u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D408u) goto L_08A0D408;
return;
L_08A0D408:
hot_regs.g31 = (0x08A0D410u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D410u) goto L_08A0D410;
return;
L_08A0D410:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D44C;
}
goto L_08A0D418;
}
L_08A0D418:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D440u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D440u) goto L_08A0D440;
return;
L_08A0D440:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D44C;
}
goto L_08A0D448;
}
L_08A0D448:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D44C;
L_08A0D44C:
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
if (branch_taken) {
goto L_08A0D514;
}
goto L_08A0D454;
}
L_08A0D454:
hot_regs.g4 = (std::bit_cast<std::uint32_t>(hot_regs.f22));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g4);
{ const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(368));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(352));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(36)));
hot_regs.g5 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g5);
hot_regs.g5 = (ctx.gpr[18] + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(384));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(336));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0D4D0u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D4D0u) goto L_08A0D4D0;
return;
L_08A0D4D0:
hot_regs.g31 = (0x08A0D4D8u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D4D8u) goto L_08A0D4D8;
return;
L_08A0D4D8:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D514;
}
goto L_08A0D4E0;
}
L_08A0D4E0:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D508u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D508u) goto L_08A0D508;
return;
L_08A0D508:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D514;
}
goto L_08A0D510;
}
L_08A0D510:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D514;
L_08A0D514:
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
if (branch_taken) {
goto L_08A0D5CC;
}
goto L_08A0D51C;
}
L_08A0D51C:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[18] + static_cast<std::uint32_t>(852)));
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
if (branch_taken) {
goto L_08A0D5CC;
}
goto L_08A0D528;
}
L_08A0D528:
ctx.gpr[17] = (hot_regs.g29 + static_cast<std::uint32_t>(416));
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(40)));
hot_regs.g5 = (ctx.gpr[18] + static_cast<std::uint32_t>(32));
hot_regs.g31 = (0x08A0D53Cu);
hot_regs.g4 = (ctx.gpr[17] | 0u);
goto L_08A0C478;
L_08A0D53C:
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(400));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g4 = (16261u << 16u);
hot_regs.g4 = (hot_regs.g4 | 7864u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
hot_regs.f14 = hot_regs.f14 + hot_regs.f12;
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(hot_regs.f14));
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.g31 = (0x08A0D580u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D580u) goto L_08A0D580;
return;
L_08A0D580:
hot_regs.g31 = (0x08A0D588u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D588u) goto L_08A0D588;
return;
L_08A0D588:
{ const bool branch_taken = hot_regs.g2 != 0u;
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (branch_taken) {
goto L_08A0D5C4;
}
goto L_08A0D590;
}
L_08A0D590:
hot_regs.g5 = (ctx.gpr[23] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D5B8u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D5B8u) goto L_08A0D5B8;
return;
L_08A0D5B8:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0D5C4;
}
goto L_08A0D5C0;
}
L_08A0D5C0:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D5C4;
L_08A0D5C4:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D5CC;
}
L_08A0D5CC:
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D5D4;
}
L_08A0D5D4:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[18] + static_cast<std::uint32_t>(852)));
hot_regs.g5 = (0u | 6u);
{ const bool branch_taken = hot_regs.g4 != hot_regs.g5;
// nop
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D5E4;
}
L_08A0D5E4:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(16)));
g4 = (50340u << 16u);
g4 = (g4 | 8192u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D604;
}
}
L_08A0D604:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(16)));
g4 = (50354u << 16u);
g4 = (g4 | 32768u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D624;
}
}
L_08A0D624:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(20)));
g4 = (50325u << 16u);
g4 = (g4 | 32768u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D644;
}
}
L_08A0D644:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(20)));
hot_regs.g4 = (50338u << 16u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D660;
}
L_08A0D660:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(40)));
hot_regs.g4 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g4);
hot_regs.g4 = (ctx.gpr[18] + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(448));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[30] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(432));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[23] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(56)));
hot_regs.g4 = (16261u << 16u);
hot_regs.g4 = (hot_regs.g4 | 7864u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
hot_regs.f14 = hot_regs.f14 + hot_regs.f12;
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(hot_regs.f14));
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(48)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(52)));
hot_regs.g31 = (0x08A0D6C4u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D6C4u) goto L_08A0D6C4;
return;
L_08A0D6C4:
hot_regs.g31 = (0x08A0D6CCu);
hot_regs.g4 = (ctx.gpr[22] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0152_entry, 152u, 727u, 0x08A67B3Cu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D6CCu) goto L_08A0D6CC;
return;
L_08A0D6CC:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0D6D8;
}
goto L_08A0D6D4;
}
L_08A0D6D4:
ctx.gpr[19] = (0u | 1u);
goto L_08A0D6D8;
L_08A0D6D8:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g22 = ctx.gpr[22];
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), 0u);
g4 = (0u + static_cast<std::uint32_t>(-513));
g5 = (aot_mem.aot_load32(g22 + static_cast<std::uint32_t>(72)));
g4 = (g5 & g4);
g4 = (g4 | 512u);
aot_mem.aot_store32(g22 + static_cast<std::uint32_t>(72), g4);
g4 = (aot_mem.aot_load32(g22 + static_cast<std::uint32_t>(236)));
g5 = (65535u << 16u);
g5 = (g5 + static_cast<std::uint32_t>(32767));
g4 = (g4 & g5);
aot_mem.aot_store32(g22 + static_cast<std::uint32_t>(236), g4);
g4 = (aot_mem.aot_load32(g22 + static_cast<std::uint32_t>(468)));
g4 = (g4 | 16384u);
aot_mem.aot_store32(g22 + static_cast<std::uint32_t>(468), g4);
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
hot_regs.g4 = g4;
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0D730;
}
goto L_08A0D718;
}
}
L_08A0D718:
{ const bool branch_taken = ctx.gpr[19] != 0u;
// nop
if (branch_taken) {
goto L_08A0D738;
}
goto L_08A0D720;
}
L_08A0D720:
hot_regs.g31 = (0x08A0D728u);
hot_regs.g4 = (ctx.gpr[22] | 0u);
goto L_08A0D77C;
L_08A0D728:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0D73C;
}
goto L_08A0D730;
}
L_08A0D730:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0D73C;
}
goto L_08A0D738;
}
L_08A0D738:
hot_regs.g2 = (0u | 0u);
goto L_08A0D73C;
L_08A0D73C:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(828)));
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(832)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(836)));
ctx.fpr[26] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(840)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(844)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(848)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(852)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(856)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(860)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(864)));
ctx.gpr[22] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(868)));
ctx.gpr[23] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(872)));
ctx.gpr[30] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(876)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(880)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(896));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0D77C:
{
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g20 = ctx.gpr[20];
std::uint32_t g29 = hot_regs.g29;
std::uint32_t g30 = ctx.gpr[30];
g29 = (g29 + static_cast<std::uint32_t>(-368));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(312), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(316), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(320), ctx.gpr[16]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(324), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(328), ctx.gpr[18]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(332), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(336), g20);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(340), ctx.gpr[21]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(344), ctx.gpr[22]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(348), ctx.gpr[23]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(352), g30);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(356), hot_regs.g31);
g5 = (16128u << 16u);
hot_regs.f20 = std::bit_cast<float>(g5);
ctx.gpr[21] = (0u | 0u);
g5 = (0u | 0u);
ctx.gpr[18] = (0u | 15u);
aot_mem.aot_store8(g29 + static_cast<std::uint32_t>(304), static_cast<std::uint8_t>(g5));
ctx.gpr[22] = (0u | 0u);
g30 = (0u | 999u);
ctx.gpr[23] = (g30 | 0u);
g20 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(1152)));
{ const bool branch_taken = g20 != 0u;
ctx.gpr[16] = (hot_regs.g4 | 0u);
hot_regs.g5 = g5;
ctx.gpr[20] = g20;
hot_regs.g29 = g29;
ctx.gpr[30] = g30;
if (branch_taken) {
goto L_08A0D7E4;
}
goto L_08A0D7E0;
}
}
L_08A0D7E0:
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(1156)));
goto L_08A0D7E4;
L_08A0D7E4:
{ const bool branch_taken = ctx.gpr[20] != 0u;
// nop
if (branch_taken) {
goto L_08A0D7F4;
}
goto L_08A0D7EC;
}
L_08A0D7EC:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0DC54;
}
goto L_08A0D7F4;
}
L_08A0D7F4:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g29 = hot_regs.g29;
g4 = (ctx.gpr[20] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g29 + static_cast<std::uint32_t>(48));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
f12 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
g5 = (ctx.gpr[18] + static_cast<std::uint32_t>(-1));
f13 = std::bit_cast<float>(g5);
f13 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f13)));
{ const float fs = hot_regs.f20; const float ft = f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
g5 = (16128u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
{ const float fs = f13; const float ft = hot_regs.f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
f12 = f12 - f13;
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(8)));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(40), std::bit_cast<std::uint32_t>(f12));
ctx.gpr[19] = (0u | 0u);
g4 = (static_cast<std::int32_t>(ctx.gpr[19]) < static_cast<std::int32_t>(ctx.gpr[18]) ? 1u : 0u);
if (g4 == 0u) {
g4 = (aot_mem.aot_load8(g29 + static_cast<std::uint32_t>(304)));
hot_regs.g4 = g4;
hot_regs.g5 = g5;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
goto L_08A0DABC;
}
goto L_08A0D848;
}
}
L_08A0D848:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
{
std::uint32_t g4 = hot_regs.g4;
g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
f12 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
g4 = (ctx.gpr[18] + static_cast<std::uint32_t>(-1));
f13 = std::bit_cast<float>(g4);
f13 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f13)));
{ const float fs = hot_regs.f20; const float ft = f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
g4 = (16128u << 16u);
hot_regs.f14 = std::bit_cast<float>(g4);
{ const float fs = f13; const float ft = hot_regs.f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
f12 = f12 - f13;
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(f12));
ctx.gpr[17] = (0u | 0u);
g4 = (static_cast<std::int32_t>(ctx.gpr[17]) < static_cast<std::int32_t>(ctx.gpr[18]) ? 1u : 0u);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
if (branch_taken) {
goto L_08A0DA9C;
}
goto L_08A0D884;
}
}
}
L_08A0D884:
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(308), ctx.gpr[17]);
goto L_08A0D888;
L_08A0D888:
ctx.gpr[17] = (hot_regs.g29 + static_cast<std::uint32_t>(32));
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0D898u);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0198_entry, 198u, 719u, 0x08B1FB98u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D898u) goto L_08A0D898;
return;
L_08A0D898:
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(128));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(64));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g7 = (ctx.vfpu_scalar_bits_ct<28u>());
hot_regs.f12 = std::bit_cast<float>(hot_regs.g7);
hot_regs.g7 = (16153u << 16u);
hot_regs.g7 = (hot_regs.g7 | 39322u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g7);
hot_regs.f13 = hot_regs.f12 + hot_regs.f13;
hot_regs.f12 = hot_regs.f13 / hot_regs.f12;
hot_regs.g7 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g7);
{ const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(144));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(80));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D93Cu);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D93Cu) goto L_08A0D93C;
return;
L_08A0D93C:
{ const bool branch_taken = hot_regs.g2 == 0u;
ctx.gpr[17] = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(308)));
if (branch_taken) {
goto L_08A0DA80;
}
goto L_08A0D944;
}
L_08A0D944:
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(144));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g5 = (16153u << 16u);
hot_regs.g5 = (hot_regs.g5 | 39322u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0D988u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0D988u) goto L_08A0D988;
return;
L_08A0D988:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0DA80;
}
goto L_08A0D990;
}
L_08A0D990:
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(176));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(160));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g6 = (ctx.vfpu_scalar_bits_ct<28u>());
hot_regs.f22 = std::bit_cast<float>(hot_regs.g6);
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g5 = (16153u << 16u);
hot_regs.g5 = (hot_regs.g5 | 39322u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g6 = (0u | 0u);
hot_regs.g7 = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 0u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.g31 = (0x08A0DA04u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DA04u) goto L_08A0DA04;
return;
L_08A0DA04:
ctx.gpr[22] = (hot_regs.g2 | 0u);
{ const bool branch_taken = ctx.gpr[22] != 0u;
// nop
if (branch_taken) {
goto L_08A0DA48;
}
goto L_08A0DA10;
}
L_08A0DA10:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(ctx.gpr[30]);
f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f12)));
ctx.set_fpu_condition((hot_regs.f22 < f12));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0DA80;
}
goto L_08A0DA28;
}
}
L_08A0DA28:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(hot_regs.f22));
ctx.gpr[30] = (std::bit_cast<std::uint32_t>(hot_regs.f12));
g4 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (hot_regs.g29 + static_cast<std::uint32_t>(96));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const bool branch_taken = 0u == 0u;
ctx.gpr[21] = (0u | 1u);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0DA80;
}
goto L_08A0DA48;
}
}
L_08A0DA48:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(ctx.gpr[23]);
f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f12)));
ctx.set_fpu_condition((hot_regs.f22 < f12));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0DA80;
}
goto L_08A0DA60;
}
}
L_08A0DA60:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
hot_regs.f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(hot_regs.f22));
ctx.gpr[23] = (std::bit_cast<std::uint32_t>(hot_regs.f12));
g4 = (g29 + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g29 + static_cast<std::uint32_t>(112));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
g4 = (0u | 1u);
aot_mem.aot_store8(g29 + static_cast<std::uint32_t>(304), static_cast<std::uint8_t>(g4));
hot_regs.g4 = g4;
goto L_08A0DA80;
}
L_08A0DA80:
{
float f12 = hot_regs.f12;
{
std::uint32_t g17 = ctx.gpr[17];
std::uint32_t g29 = hot_regs.g29;
f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(32)));
f12 = f12 + hot_regs.f20;
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(f12));
g17 = (g17 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g17) < static_cast<std::int32_t>(ctx.gpr[18]) ? 1u : 0u);
if (hot_regs.g4 != 0u) {
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(308), g17);
ctx.gpr[17] = g17;
hot_regs.f12 = f12;
goto L_08A0D888;
}
goto L_08A0DA9C;
}
}
L_08A0DA9C:
{
float f12 = hot_regs.f12;
{
std::uint32_t g19 = ctx.gpr[19];
f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(36)));
f12 = f12 + hot_regs.f20;
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(f12));
g19 = (g19 + static_cast<std::uint32_t>(1));
hot_regs.g4 = (static_cast<std::int32_t>(g19) < static_cast<std::int32_t>(ctx.gpr[18]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
ctx.gpr[19] = g19;
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0D848;
}
goto L_08A0DAB8;
}
}
}
L_08A0DAB8:
hot_regs.g4 = (aot_mem.aot_load8(hot_regs.g29 + static_cast<std::uint32_t>(304)));
goto L_08A0DABC;
L_08A0DABC:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (ctx.gpr[21] | g4);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0DB40;
}
goto L_08A0DAC8;
}
}
L_08A0DAC8:
{ const bool branch_taken = ctx.gpr[21] == 0u;
// nop
if (branch_taken) {
goto L_08A0DAEC;
}
goto L_08A0DAD0;
}
L_08A0DAD0:
{
std::uint32_t g16 = ctx.gpr[16];
std::uint32_t g29 = hot_regs.g29;
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(96)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(100)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(104)));
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(hot_regs.f13));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(hot_regs.f14));
if (branch_taken) {
goto L_08A0DB38;
}
goto L_08A0DAEC;
}
}
L_08A0DAEC:
{
float f12 = hot_regs.f12;
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
std::uint32_t g29 = hot_regs.g29;
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[22] + static_cast<std::uint32_t>(86))))));
g4 = (g4 << 2u);
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
g4 = (hot_regs.g5 + g4);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(20)));
g4 = (g4 + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g29 + static_cast<std::uint32_t>(192));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(120)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(200)));
f12 = f12 + hot_regs.f13;
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(120), std::bit_cast<std::uint32_t>(f12));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(112)));
hot_regs.f15 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(116)));
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(hot_regs.f14));
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(hot_regs.f15));
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(f12));
hot_regs.g4 = g4;
hot_regs.f12 = f12;
goto L_08A0DB38;
}
}
L_08A0DB38:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0DC54;
}
goto L_08A0DB40;
}
L_08A0DB40:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g6 = (18804u << 16u);
hot_regs.g6 = (hot_regs.g6 | 9214u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g6);
hot_regs.g6 = (0u | 1u);
hot_regs.g7 = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 0u);
ctx.gpr[10] = (0u | 0u);
hot_regs.g31 = (0x08A0DB7Cu);
ctx.gpr[11] = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0092_entry, 92u, 650u, 0x08976FBCu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DB7Cu) goto L_08A0DB7C;
return;
L_08A0DB7C:
hot_regs.g4 = (hot_regs.g2 | 0u);
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g4) < 0;
// nop
if (branch_taken) {
goto L_08A0DC50;
}
goto L_08A0DB88;
}
L_08A0DB88:
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
hot_regs.g5 = (aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(0)));
hot_regs.g6 = (hot_regs.g4 << 3u);
hot_regs.g6 = (hot_regs.g4 + hot_regs.g6);
hot_regs.g4 = (hot_regs.g4 + hot_regs.g6);
ctx.gpr[10] = (hot_regs.g5 + hot_regs.g4);
ctx.gpr[8] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[10] + static_cast<std::uint32_t>(0))))));
ctx.gpr[9] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[10] + static_cast<std::uint32_t>(2))))));
ctx.gpr[10] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(ctx.gpr[10] + static_cast<std::uint32_t>(4))))));
ctx.set_vfpu_scalar_bits_ct<1u>(ctx.gpr[8]);
ctx.set_vfpu_scalar_bits_ct<33u>(ctx.gpr[9]);
ctx.set_vfpu_scalar_bits_ct<32u>(ctx.gpr[10]);
{ float vfpu_value[4]{};
ctx.write_vfpu_vector_with_destination_prefix_ct<96u, 1u>(vfpu_value); }
{ const std::uint16_t vfpu_half = 22080u;
const std::uint32_t vfpu_sign = static_cast<std::uint32_t>(vfpu_half & 0x8000u) << 16u;
std::uint32_t vfpu_exponent = (vfpu_half >> 10u) & 0x1Fu;
std::uint32_t vfpu_mantissa = vfpu_half & 0x03FFu;
std::uint32_t vfpu_bits = 0u;
if (vfpu_exponent == 0u) {
if (vfpu_mantissa == 0u) vfpu_bits = vfpu_sign;
else {
std::uint32_t shift = 0u;
while ((vfpu_mantissa & 0x0400u) == 0u) { vfpu_mantissa <<= 1u; ++shift; }
vfpu_mantissa &= 0x03FFu;
vfpu_bits = vfpu_sign | ((113u - shift) << 23u) | (vfpu_mantissa << 13u);
}
} else if (vfpu_exponent == 31u) {
vfpu_bits = vfpu_sign | 0x7F800000u | (vfpu_mantissa << 13u);
} else {
vfpu_bits = vfpu_sign | ((vfpu_exponent + 112u) << 23u) | (vfpu_mantissa << 13u);
}
const float vfpu_value[1]{std::bit_cast<float>(vfpu_bits)};
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_ct<1u, 2u>(vfpu_s);
ctx.apply_vfpu_source_prefix_ct<2u, 0u>(vfpu_s);
const float vfpu_scale = std::ldexp(1.0f, -static_cast<int>(3u));
for (std::uint32_t vfpu_i = 0; vfpu_i < 2u; ++vfpu_i) {
const auto vfpu_integer = static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(vfpu_s[vfpu_i]));
vfpu_d[vfpu_i] = static_cast<float>(vfpu_integer) * vfpu_scale;
}
ctx.write_vfpu_vector_with_destination_prefix_ct<2u, 2u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_ct<32u, 1u>(vfpu_s);
ctx.apply_vfpu_source_prefix_ct<1u, 0u>(vfpu_s);
const float vfpu_scale = std::ldexp(1.0f, -static_cast<int>(0u));
for (std::uint32_t vfpu_i = 0; vfpu_i < 1u; ++vfpu_i) {
const auto vfpu_integer = static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(vfpu_s[vfpu_i]));
vfpu_d[vfpu_i] = static_cast<float>(vfpu_integer) * vfpu_scale;
}
ctx.write_vfpu_vector_with_destination_prefix_ct<66u, 1u>(vfpu_d); }
ctx.execute_vfpu_vcmp_ct<66u, 96u, 1u, 2u>();
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<66u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<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<98u, 1u>(vfpu_d); }
ctx.execute_vfpu_vcmov_ct<66u, 98u, 1u, 0u, false>();
{ float vfpu_value[4]{1.0f, 1.0f, 1.0f, 1.0f};
ctx.write_vfpu_vector_with_destination_prefix_ct<98u, 1u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(208));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<2u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g31 = (0x08A0DBE8u);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0198_entry, 198u, 719u, 0x08B1FB98u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DBE8u) goto L_08A0DBE8;
return;
L_08A0DBE8:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(208)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(212)));
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(216)));
hot_regs.g31 = (0x08A0DBFCu);
hot_regs.g4 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 943u, 0x0885FFE4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DBFCu) goto L_08A0DBFC;
return;
L_08A0DBFC:
{
float f12 = hot_regs.f12;
float f14 = hot_regs.f14;
f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(16)));
f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(f12) ^ 0x80000000u);
f14 = std::bit_cast<float>(0u);
ctx.set_fpu_condition((!(std::isnan(f12) || std::isnan(f14)) && f12 == f14));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[20] + static_cast<std::uint32_t>(20)));
hot_regs.f12 = f12;
hot_regs.f14 = f14;
if (branch_taken) {
goto L_08A0DC34;
}
goto L_08A0DC18;
}
}
L_08A0DC18:
{
float f14 = hot_regs.f14;
f14 = std::bit_cast<float>(0u);
ctx.set_fpu_condition((!(std::isnan(hot_regs.f13) || std::isnan(f14)) && hot_regs.f13 == f14));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.f14 = f14;
if (branch_taken) {
goto L_08A0DC34;
}
goto L_08A0DC2C;
}
}
L_08A0DC2C:
{ const bool branch_taken = 0u == 0u;
hot_regs.f12 = std::bit_cast<float>(0u);
if (branch_taken) {
goto L_08A0DC40;
}
goto L_08A0DC34;
}
L_08A0DC34:
hot_regs.g31 = (0x08A0DC3Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 28u, 0x08964540u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DC3Cu) goto L_08A0DC3C;
return;
L_08A0DC3C:
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
goto L_08A0DC40;
L_08A0DC40:
hot_regs.g31 = (0x08A0DC48u);
hot_regs.g4 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0170_entry, 170u, 785u, 0x08AAF8ACu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DC48u) goto L_08A0DC48;
return;
L_08A0DC48:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0DC54;
}
goto L_08A0DC50;
}
L_08A0DC50:
hot_regs.g2 = (0u | 0u);
goto L_08A0DC54;
L_08A0DC54:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(312)));
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(316)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(320)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(324)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(328)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(332)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(336)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(340)));
ctx.gpr[22] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(344)));
ctx.gpr[23] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(348)));
ctx.gpr[30] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(352)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(356)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(368));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0DC8C:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-32));
hot_regs.g5 = (aot_mem.aot_load8(g4 + static_cast<std::uint32_t>(1806)));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
ctx.gpr[16] = (g4 | 0u);
g4 = (static_cast<std::int32_t>(hot_regs.g5) < 14 ? 1u : 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(12), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(16), hot_regs.g31);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0DCD0;
}
goto L_08A0DCB8;
}
}
L_08A0DCB8:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g19 = ctx.gpr[19];
g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(1806));
g19 = (aot_mem.aot_load8(g4 + static_cast<std::uint32_t>(0)));
hot_regs.g5 = (g19 + static_cast<std::uint32_t>(1));
aot_mem.aot_store8(g4 + static_cast<std::uint32_t>(0), static_cast<std::uint8_t>(hot_regs.g5));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[18] = (g19 << 6u);
hot_regs.g4 = g4;
ctx.gpr[19] = g19;
if (branch_taken) {
goto L_08A0DCF4;
}
goto L_08A0DCD0;
}
}
L_08A0DCD0:
{
std::uint32_t g16 = ctx.gpr[16];
ctx.gpr[19] = (aot_mem.aot_load8(g16 + static_cast<std::uint32_t>(1805)));
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(1856)));
ctx.gpr[18] = (ctx.gpr[19] << 6u);
hot_regs.g4 = (g16 + ctx.gpr[18]);
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(48)));
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0DD1C;
}
goto L_08A0DCF4;
}
}
L_08A0DCF4:
hot_regs.g4 = (ctx.gpr[16] + ctx.gpr[18]);
hot_regs.g5 = (ctx.gpr[16] + static_cast<std::uint32_t>(1808));
hot_regs.g31 = (0x08A0DD04u);
hot_regs.g6 = (0u | 64u);
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 36u, 0x089645DCu>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DD04u) goto L_08A0DD04;
return;
L_08A0DD04:
hot_regs.g4 = (0u | 0u);
hot_regs.g5 = (static_cast<std::int32_t>(hot_regs.g4) < static_cast<std::int32_t>(ctx.gpr[19]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
ctx.gpr[17] = (ctx.gpr[16] | 0u);
if (branch_taken) {
goto L_08A0DD24;
}
goto L_08A0DD14;
}
L_08A0DD14:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0DD80;
}
goto L_08A0DD1C;
}
L_08A0DD1C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0DD84;
}
goto L_08A0DD24;
}
L_08A0DD24:
hot_regs.g5 = (ctx.gpr[16] + ctx.gpr[18]);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(48)));
goto L_08A0DD2C;
L_08A0DD2C:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(1792)));
g5 = (g5 << 6u);
g5 = (ctx.gpr[16] + g5);
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(g5 + static_cast<std::uint32_t>(48)));
ctx.set_fpu_condition((hot_regs.f13 <= hot_regs.f12));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0DD6C;
}
goto L_08A0DD4C;
}
}
L_08A0DD4C:
hot_regs.g6 = (0u | 13u);
hot_regs.g7 = (ctx.gpr[17] + static_cast<std::uint32_t>(1793));
hot_regs.g6 = (hot_regs.g6 - hot_regs.g4);
hot_regs.g5 = (ctx.gpr[17] + static_cast<std::uint32_t>(1792));
hot_regs.g31 = (0x08A0DD64u);
hot_regs.g4 = (hot_regs.g7 | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 164u, 0x08AF54A4u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DD64u) goto L_08A0DD64;
return;
L_08A0DD64:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0DD80;
}
goto L_08A0DD6C;
}
L_08A0DD6C:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 + static_cast<std::uint32_t>(1));
g4 = (g4 & 255u);
hot_regs.g5 = (static_cast<std::int32_t>(g4) < static_cast<std::int32_t>(ctx.gpr[19]) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
ctx.gpr[17] = (ctx.gpr[16] + g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0DD2C;
}
goto L_08A0DD80;
}
}
L_08A0DD80:
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(1792), static_cast<std::uint8_t>(ctx.gpr[19]));
goto L_08A0DD84;
L_08A0DD84:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(12)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(16)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(32));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0DDA0:
{
std::uint32_t g6 = hot_regs.g6;
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(12), ctx.gpr[18]);
ctx.gpr[18] = (g6 & 255u);
g6 = (15057u << 16u);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(16)));
g6 = (g6 | 46871u);
hot_regs.f13 = std::bit_cast<float>(g6);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(8), ctx.gpr[17]);
ctx.gpr[17] = (hot_regs.g4 | 0u);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(4), ctx.gpr[16]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(16), hot_regs.g31);
{ const bool branch_taken = ctx.fpu_condition();
ctx.gpr[16] = (hot_regs.g5 | 0u);
hot_regs.g6 = g6;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0DE7C;
}
goto L_08A0DDDC;
}
}
L_08A0DDDC:
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0DDE8u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
goto L_08A0DE98;
L_08A0DDE8:
hot_regs.g4 = (hot_regs.g2 | 0u);
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g4) <= 0;
// nop
if (branch_taken) {
goto L_08A0DE7C;
}
goto L_08A0DDF4;
}
L_08A0DDF4:
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(48)));
hot_regs.g5 = (hot_regs.g4 | 0u);
hot_regs.f13 = std::sqrt(hot_regs.f13);
hot_regs.g4 = (16968u << 16u);
hot_regs.f20 = std::bit_cast<float>(hot_regs.g4);
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(76), std::bit_cast<std::uint32_t>(hot_regs.f13));
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0DE18u);
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f20));
if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 21u, 0x089B8190u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DE18u) goto L_08A0DE18;
return;
L_08A0DE18:
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(72), static_cast<std::uint8_t>(hot_regs.g2));
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(72)));
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g4) <= 0;
// nop
if (branch_taken) {
goto L_08A0DE7C;
}
goto L_08A0DE28;
}
L_08A0DE28:
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(52), ctx.gpr[18]);
hot_regs.g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (ctx.gpr[17] + static_cast<std::uint32_t>(96));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(60), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(61), static_cast<std::uint8_t>(0u));
hot_regs.g4 = (0u | 7u);
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(64), hot_regs.g4);
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(80), 0u);
hot_regs.g4 = (16512u << 16u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(92), static_cast<std::uint8_t>(0u));
hot_regs.g4 = (0u | 5u);
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(116), hot_regs.g4);
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(113), static_cast<std::uint8_t>(0u));
hot_regs.g4 = (ctx.gpr[17] | 0u);
hot_regs.g31 = (0x08A0DE7Cu);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0108_entry, 108u, 703u, 0x089B7B80u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0DE7Cu) goto L_08A0DE7C;
return;
L_08A0DE7C:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(12)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(16)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(32));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0DE98:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g17 = ctx.gpr[17];
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(4), g17);
g17 = (g5 | 0u);
ctx.gpr[16] = (g4 | 0u);
g4 = (aot_mem.aot_load8(g17 + static_cast<std::uint32_t>(8)));
g5 = (0u | 2u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(8), hot_regs.g31);
{ const bool branch_taken = g4 == g5;
hot_regs.g6 = (g5 | 0u);
hot_regs.g4 = g4;
hot_regs.g5 = g5;
ctx.gpr[17] = g17;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0DEDC;
}
goto L_08A0DEC0;
}
}
L_08A0DEC0:
hot_regs.g5 = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(9)));
{ const bool branch_taken = hot_regs.g5 == hot_regs.g6;
hot_regs.g6 = (0u | 25u);
if (branch_taken) {
goto L_08A0DEDC;
}
goto L_08A0DECC;
}
L_08A0DECC:
if (hot_regs.g4 == hot_regs.g6) {
hot_regs.g5 = (14545u << 16u);
goto L_08A0DEE0;
}
goto L_08A0DED4;
L_08A0DED4:
{ const bool branch_taken = hot_regs.g5 != hot_regs.g6;
// nop
if (branch_taken) {
goto L_08A0DF8C;
}
goto L_08A0DEDC;
}
L_08A0DEDC:
hot_regs.g5 = (14545u << 16u);
goto L_08A0DEE0;
L_08A0DEE0:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (g5 | 46871u);
hot_regs.f13 = std::bit_cast<float>(g5);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(16)));
g5 = (15800u << 16u);
g5 = (g5 | 20972u);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g4 = (ctx.gpr[16] | 0u);
g5 = (15800u << 16u);
g5 = (g5 | 7550u);
hot_regs.g31 = (0x08A0DF0Cu);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0DF0C:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
float f14 = hot_regs.f14;
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.g5 = (16988u << 16u);
f13 = std::bit_cast<float>(hot_regs.g5);
g4 = (17995u << 16u);
{ const float fs = ctx.fpr[0]; const float ft = f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f14 = std::bit_cast<float>(0x7FC00000u); else f14 = fs * ft; }
g4 = (g4 | 8192u);
f12 = std::bit_cast<float>(g4);
hot_regs.g2 = (0u | 35000u);
g4 = (0u | 290u);
{ const float fs = ctx.fpr[0]; const float ft = f12; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(56), g4);
f14 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f14));
g4 = (20224u << 16u);
f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((f12 < f13));
g4 = (std::bit_cast<std::uint32_t>(f14));
{ const bool branch_taken = !ctx.fpu_condition();
g4 = (g4 & 255u);
hot_regs.g4 = g4;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
hot_regs.f14 = f14;
if (branch_taken) {
goto L_08A0DF60;
}
goto L_08A0DF50;
}
}
}
L_08A0DF50:
{
float f12 = hot_regs.f12;
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
hot_regs.g5 = (std::bit_cast<std::uint32_t>(f12));
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (hot_regs.g5 + hot_regs.g2);
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0DF78;
}
goto L_08A0DF60;
}
}
L_08A0DF60:
{
float f12 = hot_regs.f12;
{
std::uint32_t g5 = hot_regs.g5;
f12 = f12 - hot_regs.f13;
g5 = (32768u << 16u);
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
hot_regs.g6 = (std::bit_cast<std::uint32_t>(f12));
g5 = (hot_regs.g6 + g5);
hot_regs.g2 = (g5 + hot_regs.g2);
hot_regs.g5 = g5;
hot_regs.f12 = f12;
goto L_08A0DF78;
}
}
L_08A0DF78:
{
std::uint32_t g16 = ctx.gpr[16];
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(68), hot_regs.g2);
g16 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
hot_regs.g2 = (hot_regs.g4 | 0u);
{ const bool branch_taken = 0u == 0u;
hot_regs.g4 = (g16 < static_cast<std::uint32_t>(2) ? 1u : 0u);
ctx.gpr[16] = g16;
if (branch_taken) {
goto L_08A0E20C;
}
goto L_08A0DF8C;
}
}
L_08A0DF8C:
hot_regs.g6 = (0u | 19u);
if (hot_regs.g4 == hot_regs.g6) {
hot_regs.g5 = (14545u << 16u);
goto L_08A0DFA4;
}
goto L_08A0DF98;
L_08A0DF98:
{ const bool branch_taken = hot_regs.g5 != hot_regs.g6;
// nop
if (branch_taken) {
goto L_08A0E050;
}
goto L_08A0DFA0;
}
L_08A0DFA0:
hot_regs.g5 = (14545u << 16u);
goto L_08A0DFA4;
L_08A0DFA4:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (g5 | 46871u);
hot_regs.f13 = std::bit_cast<float>(g5);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(16)));
g5 = (15800u << 16u);
g5 = (g5 | 20972u);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g4 = (ctx.gpr[16] | 0u);
g5 = (15800u << 16u);
g5 = (g5 | 7550u);
hot_regs.g31 = (0x08A0DFD0u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0DFD0:
{
float f13 = hot_regs.f13;
float f14 = hot_regs.f14;
{
std::uint32_t g4 = hot_regs.g4;
g4 = (17853u << 16u);
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
g4 = (g4 | 4096u);
f13 = std::bit_cast<float>(g4);
g4 = (0u | 25u);
{ const float fs = hot_regs.f12; const float ft = f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(56), g4);
g4 = (20224u << 16u);
f14 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((f13 < f14));
// nop
if (!ctx.fpu_condition()) {
f13 = f13 - f14;
hot_regs.g4 = g4;
hot_regs.f13 = f13;
hot_regs.f14 = f14;
goto L_08A0E014;
}
goto L_08A0E004;
}
}
L_08A0E004:
{
float f13 = hot_regs.f13;
{
std::uint32_t g2 = hot_regs.g2;
f13 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f13));
g2 = (std::bit_cast<std::uint32_t>(f13));
{ const bool branch_taken = 0u == 0u;
g2 = (g2 + static_cast<std::uint32_t>(16000));
hot_regs.g2 = g2;
hot_regs.f13 = f13;
if (branch_taken) {
goto L_08A0E028;
}
goto L_08A0E014;
}
}
}
L_08A0E014:
{
float f13 = hot_regs.f13;
{
std::uint32_t g2 = hot_regs.g2;
hot_regs.g4 = (32768u << 16u);
f13 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f13));
hot_regs.g5 = (std::bit_cast<std::uint32_t>(f13));
g2 = (hot_regs.g5 + hot_regs.g4);
g2 = (g2 + static_cast<std::uint32_t>(16000));
hot_regs.g2 = g2;
hot_regs.f13 = f13;
goto L_08A0E028;
}
}
L_08A0E028:
{
float f12 = hot_regs.f12;
{
std::uint32_t g2 = hot_regs.g2;
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (16880u << 16u);
hot_regs.f13 = std::bit_cast<float>(g4);
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(68), g2);
{ const float fs = f12; const float ft = hot_regs.f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
g16 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
g4 = (g16 < static_cast<std::uint32_t>(2) ? 1u : 0u);
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
g2 = (std::bit_cast<std::uint32_t>(f12));
{ const bool branch_taken = 0u == 0u;
g2 = (g2 & 255u);
hot_regs.g2 = g2;
hot_regs.g4 = g4;
ctx.gpr[16] = g16;
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0E20C;
}
goto L_08A0E050;
}
}
}
L_08A0E050:
hot_regs.g6 = (0u | 3u);
if (hot_regs.g4 == hot_regs.g6) {
hot_regs.g5 = (14545u << 16u);
goto L_08A0E098;
}
goto L_08A0E05C;
L_08A0E05C:
{ const bool branch_taken = hot_regs.g5 == hot_regs.g6;
hot_regs.g6 = (0u | 4u);
if (branch_taken) {
goto L_08A0E094;
}
goto L_08A0E064;
}
L_08A0E064:
if (hot_regs.g4 == hot_regs.g6) {
hot_regs.g5 = (14545u << 16u);
goto L_08A0E098;
}
goto L_08A0E06C;
L_08A0E06C:
{ const bool branch_taken = hot_regs.g5 == hot_regs.g6;
hot_regs.g6 = (0u | 18u);
if (branch_taken) {
goto L_08A0E094;
}
goto L_08A0E074;
}
L_08A0E074:
if (hot_regs.g4 == hot_regs.g6) {
hot_regs.g5 = (14545u << 16u);
goto L_08A0E098;
}
goto L_08A0E07C;
L_08A0E07C:
{ const bool branch_taken = hot_regs.g5 == hot_regs.g6;
hot_regs.g6 = (0u | 33u);
if (branch_taken) {
goto L_08A0E094;
}
goto L_08A0E084;
}
L_08A0E084:
if (hot_regs.g4 == hot_regs.g6) {
hot_regs.g5 = (14545u << 16u);
goto L_08A0E098;
}
goto L_08A0E08C;
L_08A0E08C:
{ const bool branch_taken = hot_regs.g5 != hot_regs.g6;
// nop
if (branch_taken) {
goto L_08A0E144;
}
goto L_08A0E094;
}
L_08A0E094:
hot_regs.g5 = (14545u << 16u);
goto L_08A0E098;
L_08A0E098:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (g5 | 46871u);
hot_regs.f13 = std::bit_cast<float>(g5);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(16)));
g5 = (15800u << 16u);
g5 = (g5 | 20972u);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g4 = (ctx.gpr[16] | 0u);
g5 = (15800u << 16u);
g5 = (g5 | 7550u);
hot_regs.g31 = (0x08A0E0C4u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E0C4:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
{
std::uint32_t g4 = hot_regs.g4;
g4 = (16988u << 16u);
f12 = std::bit_cast<float>(g4);
{ const float fs = ctx.fpr[0]; const float ft = f12; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
g4 = (17723u << 16u);
g4 = (g4 | 32768u);
f12 = std::bit_cast<float>(g4);
hot_regs.f14 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f13));
g4 = (0u | 213u);
{ const float fs = ctx.fpr[0]; const float ft = f12; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(56), g4);
g4 = (20224u << 16u);
f13 = std::bit_cast<float>(g4);
g4 = (std::bit_cast<std::uint32_t>(hot_regs.f14));
ctx.set_fpu_condition((f12 < f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
g4 = (g4 & 255u);
hot_regs.g4 = g4;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
if (branch_taken) {
goto L_08A0E118;
}
goto L_08A0E108;
}
}
}
L_08A0E108:
{
float f12 = hot_regs.f12;
{
std::uint32_t g2 = hot_regs.g2;
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
g2 = (std::bit_cast<std::uint32_t>(f12));
{ const bool branch_taken = 0u == 0u;
g2 = (g2 + static_cast<std::uint32_t>(5000));
hot_regs.g2 = g2;
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0E130;
}
goto L_08A0E118;
}
}
}
L_08A0E118:
{
float f12 = hot_regs.f12;
{
std::uint32_t g2 = hot_regs.g2;
f12 = f12 - hot_regs.f13;
hot_regs.g5 = (32768u << 16u);
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
hot_regs.g6 = (std::bit_cast<std::uint32_t>(f12));
g2 = (hot_regs.g6 + hot_regs.g5);
g2 = (g2 + static_cast<std::uint32_t>(5000));
hot_regs.g2 = g2;
hot_regs.f12 = f12;
goto L_08A0E130;
}
}
L_08A0E130:
{
std::uint32_t g16 = ctx.gpr[16];
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(68), hot_regs.g2);
g16 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
hot_regs.g2 = (hot_regs.g4 | 0u);
{ const bool branch_taken = 0u == 0u;
hot_regs.g4 = (g16 < static_cast<std::uint32_t>(2) ? 1u : 0u);
ctx.gpr[16] = g16;
if (branch_taken) {
goto L_08A0E20C;
}
goto L_08A0E144;
}
}
L_08A0E144:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.g6 = (g4 | 0u);
g4 = (0u | 17u);
{ const bool branch_taken = hot_regs.g6 == g4;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0E1CC;
}
goto L_08A0E154;
}
}
L_08A0E154:
{ const bool branch_taken = hot_regs.g5 == hot_regs.g4;
hot_regs.g5 = (14545u << 16u);
if (branch_taken) {
goto L_08A0E1CC;
}
goto L_08A0E15C;
}
L_08A0E15C:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (g5 | 46871u);
hot_regs.f13 = std::bit_cast<float>(g5);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(16)));
g5 = (15800u << 16u);
g5 = (g5 | 20972u);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g4 = (ctx.gpr[16] | 0u);
g5 = (15800u << 16u);
g5 = (g5 | 7550u);
hot_regs.g31 = (0x08A0E188u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E188:
{
float f12 = hot_regs.f12;
float f14 = hot_regs.f14;
{
std::uint32_t g4 = hot_regs.g4;
g4 = (17948u << 16u);
hot_regs.f13 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
g4 = (g4 | 16384u);
f14 = std::bit_cast<float>(g4);
g4 = (0u | 304u);
{ const float fs = hot_regs.f13; const float ft = f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f14 = std::bit_cast<float>(0x7FC00000u); else f14 = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(56), g4);
g4 = (20224u << 16u);
f12 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((f14 < f12));
// nop
if (!ctx.fpu_condition()) {
f12 = f14 - f12;
hot_regs.g4 = g4;
hot_regs.f12 = f12;
hot_regs.f14 = f14;
goto L_08A0E1D4;
}
goto L_08A0E1BC;
}
}
L_08A0E1BC:
{
std::uint32_t g2 = hot_regs.g2;
hot_regs.f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(hot_regs.f14));
g2 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
{ const bool branch_taken = 0u == 0u;
g2 = (g2 + static_cast<std::uint32_t>(10000));
hot_regs.g2 = g2;
if (branch_taken) {
goto L_08A0E1E8;
}
goto L_08A0E1CC;
}
}
L_08A0E1CC:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0E224;
}
goto L_08A0E1D4;
}
L_08A0E1D4:
{
float f12 = hot_regs.f12;
{
std::uint32_t g2 = hot_regs.g2;
hot_regs.g4 = (32768u << 16u);
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
hot_regs.g5 = (std::bit_cast<std::uint32_t>(f12));
g2 = (hot_regs.g5 + hot_regs.g4);
g2 = (g2 + static_cast<std::uint32_t>(10000));
hot_regs.g2 = g2;
hot_regs.f12 = f12;
goto L_08A0E1E8;
}
}
L_08A0E1E8:
{
float f12 = hot_regs.f12;
{
std::uint32_t g2 = hot_regs.g2;
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (16928u << 16u);
f12 = std::bit_cast<float>(g4);
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(68), g2);
{ const float fs = hot_regs.f13; const float ft = f12; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
g16 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
g4 = (g16 < static_cast<std::uint32_t>(2) ? 1u : 0u);
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
g2 = (std::bit_cast<std::uint32_t>(f12));
g2 = (g2 & 255u);
hot_regs.g2 = g2;
hot_regs.g4 = g4;
ctx.gpr[16] = g16;
hot_regs.f12 = f12;
goto L_08A0E20C;
}
}
L_08A0E20C:
{ const bool branch_taken = hot_regs.g4 == 0u;
// nop
if (branch_taken) {
goto L_08A0E224;
}
goto L_08A0E214;
}
L_08A0E214:
{
std::uint32_t g2 = hot_regs.g2;
{ const std::int64_t product = static_cast<std::int64_t>(static_cast<std::int32_t>(g2)) * static_cast<std::int64_t>(static_cast<std::int32_t>(ctx.gpr[16])); ctx.lo = static_cast<std::uint32_t>(product); ctx.hi = static_cast<std::uint32_t>(static_cast<std::uint64_t>(product) >> 32u); }
hot_regs.g4 = (ctx.lo);
g2 = (hot_regs.g4 >> 1u);
g2 = (g2 & 255u);
hot_regs.g2 = g2;
goto L_08A0E224;
}
L_08A0E224:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(8)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0E238:
{
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-16));
hot_regs.g6 = (hot_regs.g5 < static_cast<std::uint32_t>(35) ? 1u : 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), hot_regs.g31);
{ const bool branch_taken = hot_regs.g6 == 0u;
// nop
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0E5C0;
}
goto L_08A0E24C;
}
}
L_08A0E24C:
{
std::uint32_t g1 = ctx.gpr[1];
std::uint32_t g5 = hot_regs.g5;
g5 = (g5 << 2u);
g1 = (2232u << 16u);
g1 = (g1 + g5);
g1 = (aot_mem.aot_load32(g1 + static_cast<std::uint32_t>(4776)));
jump_target = g1;
// nop
local_pc = jump_target;
ctx.gpr[1] = g1;
hot_regs.g5 = g5;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0E264:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16672u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (17008u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16968u << 16u);
hot_regs.g31 = (0x08A0E280u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E280:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E288;
}
L_08A0E288:
hot_regs.g5 = (16384u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E29Cu);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E29C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E2A4;
}
L_08A0E2A4:
hot_regs.g5 = (16384u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E2B8u);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E2B8:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E2C0;
}
L_08A0E2C0:
hot_regs.g5 = (16384u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E2D4u);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E2D4:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E2DC;
}
L_08A0E2DC:
hot_regs.g5 = (16672u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E2F0u);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E2F0:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E2F8;
}
L_08A0E2F8:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (15820u << 16u);
g5 = (g5 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16670u << 16u);
g5 = (g5 | 26214u);
hot_regs.f15 = std::bit_cast<float>(g5);
g5 = (16672u << 16u);
hot_regs.g31 = (0x08A0E31Cu);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E31C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E324;
}
L_08A0E324:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16800u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (17096u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (17056u << 16u);
hot_regs.g31 = (0x08A0E340u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E340:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E348;
}
L_08A0E348:
hot_regs.g5 = (16512u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E35Cu);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E35C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E364;
}
L_08A0E364:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16880u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (17154u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (17096u << 16u);
hot_regs.g31 = (0x08A0E380u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E380:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E388;
}
L_08A0E388:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16256u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16672u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16656u << 16u);
hot_regs.g31 = (0x08A0E3A4u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E3A4:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E3AC;
}
L_08A0E3AC:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16256u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16672u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16656u << 16u);
hot_regs.g31 = (0x08A0E3C8u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E3C8:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E3D0;
}
L_08A0E3D0:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16256u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16752u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16736u << 16u);
hot_regs.g31 = (0x08A0E3ECu);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E3EC:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E3F4;
}
L_08A0E3F4:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (15820u << 16u);
g5 = (g5 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16670u << 16u);
g5 = (g5 | 26214u);
hot_regs.f15 = std::bit_cast<float>(g5);
g5 = (16672u << 16u);
hot_regs.g31 = (0x08A0E418u);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E418:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E420;
}
L_08A0E420:
hot_regs.g5 = (16800u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E434u);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E434:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E43C;
}
L_08A0E43C:
hot_regs.g5 = (16672u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E450u);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E450:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E458;
}
L_08A0E458:
hot_regs.g5 = (16672u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E46Cu);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E46C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E474;
}
L_08A0E474:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16256u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16512u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16448u << 16u);
hot_regs.g31 = (0x08A0E490u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E490:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E498;
}
L_08A0E498:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (15820u << 16u);
g5 = (g5 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16540u << 16u);
g5 = (g5 | 52429u);
hot_regs.f15 = std::bit_cast<float>(g5);
g5 = (16544u << 16u);
hot_regs.g31 = (0x08A0E4BCu);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E4BC:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E4C4;
}
L_08A0E4C4:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (15820u << 16u);
g5 = (g5 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16927u << 16u);
g5 = (g5 | 39322u);
hot_regs.f15 = std::bit_cast<float>(g5);
g5 = (16928u << 16u);
hot_regs.g31 = (0x08A0E4E8u);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E4E8:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E4F0;
}
L_08A0E4F0:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (15820u << 16u);
g5 = (g5 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16505u << 16u);
g5 = (g5 | 39322u);
hot_regs.f15 = std::bit_cast<float>(g5);
g5 = (16512u << 16u);
hot_regs.g31 = (0x08A0E514u);
hot_regs.f14 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E514:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E51C;
}
L_08A0E51C:
hot_regs.g5 = (16128u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E530u);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E530:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E538;
}
L_08A0E538:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16512u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16928u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16912u << 16u);
hot_regs.g31 = (0x08A0E554u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E554:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E55C;
}
L_08A0E55C:
hot_regs.g5 = (16544u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
hot_regs.f14 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g31 = (0x08A0E570u);
hot_regs.f15 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5D0;
L_08A0E570:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E578;
}
L_08A0E578:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16576u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16968u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16944u << 16u);
hot_regs.g31 = (0x08A0E594u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E594:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E59C;
}
L_08A0E59C:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (16640u << 16u);
hot_regs.f13 = std::bit_cast<float>(g5);
g5 = (16968u << 16u);
hot_regs.f14 = std::bit_cast<float>(g5);
g5 = (16936u << 16u);
hot_regs.g31 = (0x08A0E5B8u);
hot_regs.f15 = std::bit_cast<float>(g5);
hot_regs.g5 = g5;
goto L_08A0E5D0;
}
L_08A0E5B8:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E5C4;
}
goto L_08A0E5C0;
}
L_08A0E5C0:
ctx.fpr[0] = std::bit_cast<float>(0u);
goto L_08A0E5C4;
L_08A0E5C4:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0E5D0:
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0E604;
}
goto L_08A0E5E0;
}
L_08A0E5E0:
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f14));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0E5F4;
}
goto L_08A0E5F0;
}
L_08A0E5F0:
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f14));
goto L_08A0E5F4;
L_08A0E5F4:
{
float f0 = ctx.fpr[0];
f0 = hot_regs.f12 - hot_regs.f13;
f0 = f0 / hot_regs.f15;
{ const bool branch_taken = 0u == 0u;
// nop
ctx.fpr[0] = f0;
if (branch_taken) {
goto L_08A0E608;
}
goto L_08A0E604;
}
}
L_08A0E604:
ctx.fpr[0] = std::bit_cast<float>(0u);
goto L_08A0E608;
L_08A0E608:
jump_target = hot_regs.g31;
// nop
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0E610:
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
if (branch_taken) {
goto L_08A0E664;
}
goto L_08A0E618;
}
L_08A0E618:
hot_regs.g5 = (aot_mem.aot_load32(hot_regs.g6 + static_cast<std::uint32_t>(0)));
{ const bool branch_taken = hot_regs.g5 == 0u;
// nop
if (branch_taken) {
goto L_08A0E6AC;
}
goto L_08A0E624;
}
L_08A0E624:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(72)));
g6 = (g6 & 14u);
g6 = (g6 ^ 4u);
g6 = (g6 < static_cast<std::uint32_t>(1) ? 1u : 0u);
g6 = (g6 & 255u);
{ const bool branch_taken = g6 == 0u;
// nop
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0E6AC;
}
goto L_08A0E640;
}
}
L_08A0E640:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (aot_mem.aot_load32(g5 + static_cast<std::uint32_t>(852)));
hot_regs.g6 = (0u | 8u);
{ const bool branch_taken = g5 != hot_regs.g6;
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0E6AC;
}
goto L_08A0E650;
}
}
L_08A0E650:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (0u | 20u);
aot_mem.aot_store32(hot_regs.g4 + static_cast<std::uint32_t>(56), g5);
g5 = (0u | 12000u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(hot_regs.g4 + static_cast<std::uint32_t>(68), g5);
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0E6AC;
}
goto L_08A0E664;
}
}
L_08A0E664:
hot_regs.g5 = (aot_mem.aot_load32(hot_regs.g6 + static_cast<std::uint32_t>(4)));
{ const bool branch_taken = hot_regs.g5 == 0u;
// nop
if (branch_taken) {
goto L_08A0E6AC;
}
goto L_08A0E670;
}
L_08A0E670:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(72)));
g6 = (g6 & 14u);
g6 = (g6 ^ 4u);
g6 = (g6 < static_cast<std::uint32_t>(1) ? 1u : 0u);
g6 = (g6 & 255u);
{ const bool branch_taken = g6 == 0u;
// nop
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0E6AC;
}
goto L_08A0E68C;
}
}
L_08A0E68C:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (aot_mem.aot_load32(g5 + static_cast<std::uint32_t>(852)));
hot_regs.g6 = (0u | 8u);
{ const bool branch_taken = g5 != hot_regs.g6;
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0E6AC;
}
goto L_08A0E69C;
}
}
L_08A0E69C:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (0u | 20u);
aot_mem.aot_store32(hot_regs.g4 + static_cast<std::uint32_t>(56), g5);
g5 = (0u | 12000u);
aot_mem.aot_store32(hot_regs.g4 + static_cast<std::uint32_t>(68), g5);
hot_regs.g5 = g5;
goto L_08A0E6AC;
}
L_08A0E6AC:
jump_target = hot_regs.g31;
// nop
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0E6B4:
{
std::uint32_t g7 = hot_regs.g7;
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-160));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(140), ctx.gpr[21]);
ctx.gpr[21] = (g7 & 255u);
g7 = (aot_mem.aot_load8(hot_regs.g4 + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(112), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(116), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(124), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(128), ctx.gpr[18]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(136), ctx.gpr[20]);
hot_regs.f22 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f12));
hot_regs.f20 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f13));
ctx.gpr[20] = (ctx.gpr[8] & 255u);
ctx.gpr[18] = (hot_regs.g4 | 0u);
ctx.gpr[17] = (hot_regs.g5 | 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(120), ctx.gpr[16]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(132), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(144), hot_regs.g31);
{ const bool branch_taken = g7 == 0u;
ctx.gpr[16] = (hot_regs.g6 | 0u);
hot_regs.g7 = g7;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0E874;
}
goto L_08A0E700;
}
}
L_08A0E700:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[18] + static_cast<std::uint32_t>(24260)));
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g4) < 0;
// nop
if (branch_taken) {
goto L_08A0E874;
}
goto L_08A0E70C;
}
L_08A0E70C:
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[18] + static_cast<std::uint32_t>(26341)));
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
if (branch_taken) {
goto L_08A0E874;
}
goto L_08A0E718;
}
L_08A0E718:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (15057u << 16u);
g4 = (g4 | 46871u);
hot_regs.f12 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f20 < hot_regs.f12));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
g4 = (15395u << 16u);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0E74C;
}
goto L_08A0E734;
}
}
L_08A0E734:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 | 55050u);
hot_regs.f12 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f22 < hot_regs.f12));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0E788;
}
goto L_08A0E74C;
}
}
L_08A0E74C:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(72)));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
g4 = (g4 & 14u);
g4 = (g4 ^ 2u);
g4 = (g4 < static_cast<std::uint32_t>(1) ? 1u : 0u);
g4 = (g4 & 255u);
{ const bool branch_taken = g4 == 0u;
ctx.gpr[19] = (hot_regs.g29 + static_cast<std::uint32_t>(32));
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0E790;
}
goto L_08A0E76C;
}
}
L_08A0E76C:
hot_regs.g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g29 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g29 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E7D8;
}
goto L_08A0E788;
}
L_08A0E788:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E874;
}
goto L_08A0E790;
}
L_08A0E790:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(72)));
g6 = (g6 & 14u);
g6 = (g6 ^ 2u);
g6 = (g6 < static_cast<std::uint32_t>(1) ? 1u : 0u);
g6 = (g6 & 255u);
{ const bool branch_taken = g6 == 0u;
hot_regs.g4 = (ctx.gpr[17] + static_cast<std::uint32_t>(48));
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0E7C4;
}
goto L_08A0E7AC;
}
}
L_08A0E7AC:
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g29 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E7D8;
}
goto L_08A0E7C4;
}
L_08A0E7C4:
{
std::uint32_t g4 = hot_regs.g4;
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g29 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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 = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = g4;
goto L_08A0E7D8;
}
L_08A0E7D8:
{ const std::uint32_t vfpu_address = hot_regs.g29 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(64));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g5 = (16384u << 16u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g5);
hot_regs.g5 = (std::bit_cast<std::uint32_t>(hot_regs.f12));
ctx.set_vfpu_scalar_bits_ct<28u>(hot_regs.g5);
{ 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 / vfpu_s[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(48));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.g4 = (ctx.gpr[18] | 0u);
hot_regs.g31 = (0x08A0E824u);
hot_regs.g5 = (ctx.gpr[19] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0049_entry, 49u, 494u, 0x088CA7B0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0E824u) goto L_08A0E824;
return;
L_08A0E824:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
g4 = (17692u << 16u);
g4 = (g4 | 16384u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0E874;
}
goto L_08A0E844;
}
}
L_08A0E844:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g18 = ctx.gpr[18];
aot_mem.aot_store32(g18 + static_cast<std::uint32_t>(26080), ctx.gpr[17]);
aot_mem.aot_store32(g18 + static_cast<std::uint32_t>(26084), ctx.gpr[16]);
aot_mem.aot_store8(g18 + static_cast<std::uint32_t>(26088), static_cast<std::uint8_t>(ctx.gpr[21]));
aot_mem.aot_store8(g18 + static_cast<std::uint32_t>(26089), static_cast<std::uint8_t>(ctx.gpr[20]));
aot_mem.aot_store32(g18 + static_cast<std::uint32_t>(26092), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g18 + static_cast<std::uint32_t>(26096), std::bit_cast<std::uint32_t>(hot_regs.f20));
{ const std::uint32_t vfpu_address = ctx.gpr[19] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g18 + static_cast<std::uint32_t>(26112));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
aot_mem.aot_store32(g18 + static_cast<std::uint32_t>(26128), std::bit_cast<std::uint32_t>(hot_regs.f12));
hot_regs.g31 = (0x08A0E874u);
g4 = (g18 + static_cast<std::uint32_t>(24272));
hot_regs.g4 = g4;
goto L_08A0DC8C;
}
L_08A0E874:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(112)));
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(116)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(120)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(124)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(128)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(132)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(136)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(140)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(144)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(160));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0E8A0:
{
std::uint32_t g16 = ctx.gpr[16];
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-64));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(32), g16);
g16 = (hot_regs.g4 | 0u);
hot_regs.g5 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(24260)));
hot_regs.g4 = (0u | 0u);
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(48), hot_regs.g5);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(36), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(40), ctx.gpr[18]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(44), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(48), ctx.gpr[20]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(52), hot_regs.g31);
ctx.gpr[16] = g16;
hot_regs.g29 = g29;
goto L_08A0E8CC;
}
L_08A0E8CC:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
g5 = (hot_regs.g29 + g4);
aot_mem.aot_store8(g5 + static_cast<std::uint32_t>(0), static_cast<std::uint8_t>(0u));
g4 = (g4 + static_cast<std::uint32_t>(1));
aot_mem.aot_store8(g5 + static_cast<std::uint32_t>(16), static_cast<std::uint8_t>(0u));
g4 = (g4 & 255u);
g5 = (static_cast<std::int32_t>(g4) < 14 ? 1u : 0u);
{ const bool branch_taken = g5 != 0u;
// nop
hot_regs.g4 = g4;
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0E8CC;
}
goto L_08A0E8EC;
}
}
L_08A0E8EC:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(26078)));
ctx.gpr[18] = (0u | 0u);
g4 = (static_cast<std::int32_t>(ctx.gpr[18]) < static_cast<std::int32_t>(g4) ? 1u : 0u);
{ const bool branch_taken = g4 == 0u;
ctx.gpr[17] = (0u | 1u);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0E9C0;
}
goto L_08A0E900;
}
}
L_08A0E900:
{
std::uint32_t g6 = hot_regs.g6;
std::uint32_t g8 = ctx.gpr[8];
g8 = (ctx.gpr[16] + ctx.gpr[18]);
g8 = (aot_mem.aot_load8(g8 + static_cast<std::uint32_t>(26064)));
hot_regs.g7 = (0u | 0u);
g6 = (g8 << 6u);
g6 = (ctx.gpr[16] + g6);
hot_regs.g4 = (aot_mem.aot_load32(g6 + static_cast<std::uint32_t>(24272)));
hot_regs.g6 = g6;
ctx.gpr[8] = g8;
goto L_08A0E918;
}
L_08A0E918:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (hot_regs.g7 << 6u);
g5 = (ctx.gpr[16] + g5);
ctx.gpr[9] = (aot_mem.aot_load32(g5 + static_cast<std::uint32_t>(25168)));
{ const bool branch_taken = hot_regs.g4 != ctx.gpr[9];
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0E994;
}
goto L_08A0E92C;
}
}
L_08A0E92C:
ctx.gpr[9] = (aot_mem.aot_load32(hot_regs.g6 + static_cast<std::uint32_t>(24276)));
ctx.gpr[10] = (aot_mem.aot_load32(hot_regs.g5 + static_cast<std::uint32_t>(25172)));
{ const bool branch_taken = ctx.gpr[9] != ctx.gpr[10];
// nop
if (branch_taken) {
goto L_08A0E994;
}
goto L_08A0E93C;
}
L_08A0E93C:
ctx.gpr[9] = (aot_mem.aot_load8(hot_regs.g6 + static_cast<std::uint32_t>(24280)));
ctx.gpr[10] = (aot_mem.aot_load8(hot_regs.g5 + static_cast<std::uint32_t>(25176)));
{ const bool branch_taken = ctx.gpr[9] != ctx.gpr[10];
// nop
if (branch_taken) {
goto L_08A0E994;
}
goto L_08A0E94C;
}
L_08A0E94C:
ctx.gpr[9] = (aot_mem.aot_load8(hot_regs.g6 + static_cast<std::uint32_t>(24281)));
ctx.gpr[10] = (aot_mem.aot_load8(hot_regs.g5 + static_cast<std::uint32_t>(25177)));
{ const bool branch_taken = ctx.gpr[9] != ctx.gpr[10];
// nop
if (branch_taken) {
goto L_08A0E994;
}
goto L_08A0E95C;
}
L_08A0E95C:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g6 = hot_regs.g6;
std::uint32_t g8 = ctx.gpr[8];
g4 = (hot_regs.g29 + g8);
aot_mem.aot_store8(g4 + static_cast<std::uint32_t>(0), static_cast<std::uint8_t>(ctx.gpr[17]));
g4 = (hot_regs.g29 + hot_regs.g7);
g8 = (aot_mem.aot_load32(g5 + static_cast<std::uint32_t>(25220)));
aot_mem.aot_store8(g4 + static_cast<std::uint32_t>(16), static_cast<std::uint8_t>(ctx.gpr[17]));
g4 = (g8 + static_cast<std::uint32_t>(1));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(25220), g4);
aot_mem.aot_store32(g6 + static_cast<std::uint32_t>(24324), g4);
g5 = (g6 + static_cast<std::uint32_t>(24272));
g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0E98Cu);
g6 = (hot_regs.g7 | 0u);
hot_regs.g4 = g4;
hot_regs.g5 = g5;
hot_regs.g6 = g6;
ctx.gpr[8] = g8;
goto L_08A0DDA0;
}
L_08A0E98C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0E9A8;
}
goto L_08A0E994;
}
L_08A0E994:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (g7 + static_cast<std::uint32_t>(1));
g7 = (g7 & 255u);
hot_regs.g5 = (static_cast<std::int32_t>(g7) < 14 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0E918;
}
goto L_08A0E9A8;
}
}
L_08A0E9A8:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g18 = ctx.gpr[18];
g18 = (g18 + static_cast<std::uint32_t>(1));
g4 = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(26078)));
g18 = (g18 & 255u);
g4 = (static_cast<std::int32_t>(g18) < static_cast<std::int32_t>(g4) ? 1u : 0u);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0E900;
}
goto L_08A0E9C0;
}
}
L_08A0E9C0:
hot_regs.g4 = (0u | 0u);
hot_regs.f12 = std::bit_cast<float>(0u);
goto L_08A0E9C8;
L_08A0E9C8:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (hot_regs.g29 + hot_regs.g4);
g5 = (aot_mem.aot_load8(g5 + static_cast<std::uint32_t>(16)));
{ const bool branch_taken = g5 != 0u;
g5 = (hot_regs.g4 << 6u);
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0EA08;
}
goto L_08A0E9D8;
}
}
L_08A0E9D8:
{
float f12 = hot_regs.f12;
{
std::uint32_t g5 = hot_regs.g5;
g5 = (ctx.gpr[16] + g5);
g5 = (g5 + static_cast<std::uint32_t>(25168));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(0), 0u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(4), 0u);
aot_mem.aot_store8(g5 + static_cast<std::uint32_t>(8), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(g5 + static_cast<std::uint32_t>(9), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(16), std::bit_cast<std::uint32_t>(f12));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(12), std::bit_cast<std::uint32_t>(f12));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(f12));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(f12));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(40), std::bit_cast<std::uint32_t>(f12));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(f12));
hot_regs.g5 = g5;
goto L_08A0EA08;
}
}
L_08A0EA08:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 + static_cast<std::uint32_t>(1));
g4 = (g4 & 255u);
hot_regs.g5 = (static_cast<std::int32_t>(g4) < 14 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0E9C8;
}
goto L_08A0EA1C;
}
}
L_08A0EA1C:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(26078)));
ctx.gpr[17] = (0u | 0u);
g4 = (static_cast<std::int32_t>(ctx.gpr[17]) < static_cast<std::int32_t>(g4) ? 1u : 0u);
{ const bool branch_taken = g4 == 0u;
ctx.gpr[19] = (0u | 1u);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EADC;
}
goto L_08A0EA30;
}
}
L_08A0EA30:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
g4 = (ctx.gpr[16] + ctx.gpr[17]);
g4 = (aot_mem.aot_load8(g4 + static_cast<std::uint32_t>(26064)));
g5 = (hot_regs.g29 + g4);
g5 = (aot_mem.aot_load8(g5 + static_cast<std::uint32_t>(0)));
{ const bool branch_taken = g5 != 0u;
// nop
hot_regs.g4 = g4;
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0EAC4;
}
goto L_08A0EA48;
}
}
L_08A0EA48:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 << 6u);
ctx.gpr[18] = (0u | 0u);
g4 = (ctx.gpr[16] + g4);
hot_regs.g4 = g4;
goto L_08A0EA54;
}
L_08A0EA54:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (hot_regs.g29 + ctx.gpr[18]);
g5 = (aot_mem.aot_load8(g5 + static_cast<std::uint32_t>(16)));
{ const bool branch_taken = g5 != 0u;
g5 = (ctx.gpr[18] << 6u);
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0EA90;
}
goto L_08A0EA64;
}
}
L_08A0EA64:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g6 = hot_regs.g6;
std::uint32_t g7 = hot_regs.g7;
g5 = (ctx.gpr[16] + g5);
g6 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(24272)));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(25220), ctx.gpr[19]);
g7 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(24276)));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(25168), g6);
g6 = (aot_mem.aot_load8(g4 + static_cast<std::uint32_t>(24280)));
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(25172), g7);
g7 = (aot_mem.aot_load8(g4 + static_cast<std::uint32_t>(24281)));
aot_mem.aot_store8(g5 + static_cast<std::uint32_t>(25176), static_cast<std::uint8_t>(g6));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store8(g5 + static_cast<std::uint32_t>(25177), static_cast<std::uint8_t>(g7));
hot_regs.g5 = g5;
hot_regs.g6 = g6;
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0EAA4;
}
goto L_08A0EA90;
}
}
L_08A0EA90:
{
std::uint32_t g18 = ctx.gpr[18];
g18 = (g18 + static_cast<std::uint32_t>(1));
g18 = (g18 & 255u);
hot_regs.g5 = (static_cast<std::int32_t>(g18) < 14 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0EA54;
}
goto L_08A0EAA4;
}
}
L_08A0EAA4:
ctx.gpr[20] = (hot_regs.g4 + static_cast<std::uint32_t>(24272));
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0EAB4u);
hot_regs.g5 = (ctx.gpr[20] | 0u);
goto L_08A0EB24;
L_08A0EAB4:
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g5 = (ctx.gpr[20] | 0u);
hot_regs.g31 = (0x08A0EAC4u);
hot_regs.g6 = (ctx.gpr[18] | 0u);
goto L_08A0DDA0;
L_08A0EAC4:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g17 = ctx.gpr[17];
g17 = (g17 + static_cast<std::uint32_t>(1));
g4 = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(26078)));
g17 = (g17 & 255u);
g4 = (static_cast<std::int32_t>(g17) < static_cast<std::int32_t>(g4) ? 1u : 0u);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
ctx.gpr[17] = g17;
if (branch_taken) {
goto L_08A0EA30;
}
goto L_08A0EADC;
}
}
L_08A0EADC:
hot_regs.g4 = (0u | 0u);
hot_regs.g5 = (0u | 14u);
hot_regs.g6 = (ctx.gpr[16] + hot_regs.g4);
goto L_08A0EAE8;
L_08A0EAE8:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g6 = hot_regs.g6;
g4 = (g4 + static_cast<std::uint32_t>(1));
aot_mem.aot_store8(g6 + static_cast<std::uint32_t>(26064), static_cast<std::uint8_t>(hot_regs.g5));
g4 = (g4 & 255u);
g6 = (static_cast<std::int32_t>(g4) < 14 ? 1u : 0u);
{ const bool branch_taken = g6 != 0u;
g6 = (ctx.gpr[16] + g4);
hot_regs.g4 = g4;
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0EAE8;
}
goto L_08A0EB00;
}
}
L_08A0EB00:
{
std::uint32_t g29 = hot_regs.g29;
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(26078), static_cast<std::uint8_t>(0u));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(32)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(36)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(40)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(44)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(48)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(52)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(64));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0EB24:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g6 = hot_regs.g6;
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-96));
g6 = (2232u << 16u);
g6 = (g6 + static_cast<std::uint32_t>(4632));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(16), g6);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(52), ctx.gpr[16]);
g6 = (g4 + static_cast<std::uint32_t>(96));
ctx.gpr[16] = (g4 | 0u);
g4 = (16204u << 16u);
g4 = (g4 | 52429u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(hot_regs.f22));
hot_regs.f22 = std::bit_cast<float>(g4);
g4 = (15948u << 16u);
g4 = (g4 | 52429u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(ctx.fpr[30]));
ctx.fpr[30] = std::bit_cast<float>(g4);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
g4 = (16256u << 16u);
ctx.fpr[24] = std::bit_cast<float>(g4);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(44), std::bit_cast<std::uint32_t>(ctx.fpr[28]));
g4 = (16928u << 16u);
ctx.fpr[28] = std::bit_cast<float>(g4);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(28), std::bit_cast<std::uint32_t>(hot_regs.f20));
g4 = (16968u << 16u);
hot_regs.g7 = (hot_regs.g5 + static_cast<std::uint32_t>(32));
hot_regs.f20 = std::bit_cast<float>(g4);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(12), hot_regs.g7);
g4 = (16512u << 16u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(40), std::bit_cast<std::uint32_t>(ctx.fpr[26]));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(60), ctx.gpr[18]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(64), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(72), ctx.gpr[21]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(76), ctx.gpr[22]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(80), ctx.gpr[23]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(84), ctx.gpr[30]);
ctx.fpr[26] = std::bit_cast<float>(g4);
ctx.gpr[18] = (0u | 0u);
ctx.gpr[21] = (0u | 17u);
ctx.gpr[22] = (0u | 5u);
ctx.gpr[30] = (ctx.gpr[28] + static_cast<std::uint32_t>(7696));
ctx.gpr[23] = (0u | 1u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(8), g6);
ctx.gpr[19] = (hot_regs.g5 | 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(56), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(68), ctx.gpr[20]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(88), hot_regs.g31);
hot_regs.g4 = g4;
hot_regs.g6 = g6;
hot_regs.g29 = g29;
goto L_08A0EBD8;
}
L_08A0EBD8:
{ const bool branch_taken = ctx.gpr[18] != 0u;
// nop
if (branch_taken) {
goto L_08A0EBF4;
}
goto L_08A0EBE0;
}
L_08A0EBE0:
{
std::uint32_t g17 = ctx.gpr[17];
std::uint32_t g20 = ctx.gpr[20];
g17 = (aot_mem.aot_load8(ctx.gpr[19] + static_cast<std::uint32_t>(8)));
g20 = (aot_mem.aot_load8(ctx.gpr[19] + static_cast<std::uint32_t>(9)));
g17 = (g17 & 255u);
{ const bool branch_taken = 0u == 0u;
g20 = (g20 & 255u);
ctx.gpr[17] = g17;
ctx.gpr[20] = g20;
if (branch_taken) {
goto L_08A0EC04;
}
goto L_08A0EBF4;
}
}
L_08A0EBF4:
{
std::uint32_t g17 = ctx.gpr[17];
std::uint32_t g20 = ctx.gpr[20];
g17 = (aot_mem.aot_load8(ctx.gpr[19] + static_cast<std::uint32_t>(9)));
g20 = (aot_mem.aot_load8(ctx.gpr[19] + static_cast<std::uint32_t>(8)));
g17 = (g17 & 255u);
g20 = (g20 & 255u);
ctx.gpr[17] = g17;
ctx.gpr[20] = g20;
goto L_08A0EC04;
}
L_08A0EC04:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(12)));
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0EC14u);
hot_regs.g5 = (ctx.gpr[17] | 0u);
goto L_08A0E238;
L_08A0EC14:
hot_regs.g4 = (0u | 6u);
{ const bool branch_taken = ctx.gpr[17] != hot_regs.g4;
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
if (branch_taken) {
goto L_08A0EC34;
}
goto L_08A0EC20;
}
L_08A0EC20:
{ const bool branch_taken = ctx.gpr[20] != ctx.gpr[21];
// nop
if (branch_taken) {
goto L_08A0EC34;
}
goto L_08A0EC28;
}
L_08A0EC28:
{
float f12 = hot_regs.f12;
hot_regs.g5 = (16000u << 16u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g5);
{ const float fs = f12; const float ft = hot_regs.f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
hot_regs.f12 = f12;
goto L_08A0EC34;
}
L_08A0EC34:
{ const bool branch_taken = ctx.gpr[17] != hot_regs.g4;
// nop
if (branch_taken) {
goto L_08A0EC78;
}
goto L_08A0EC3C;
}
L_08A0EC3C:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (16153u << 16u);
g4 = (g4 | 39322u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EC78;
}
goto L_08A0EC58;
}
}
L_08A0EC58:
{
float f12 = hot_regs.f12;
hot_regs.g4 = (16384u << 16u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.gpr[17] = (0u | 10u);
{ const float fs = f12; const float ft = hot_regs.f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
ctx.set_fpu_condition((ctx.fpr[24] < f12));
// nop
if (ctx.fpu_condition()) {
f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[24]));
hot_regs.f12 = f12;
goto L_08A0EC78;
}
goto L_08A0EC78;
}
L_08A0EC78:
hot_regs.g4 = (0u | 13u);
{ const bool branch_taken = ctx.gpr[17] != hot_regs.g4;
// nop
if (branch_taken) {
goto L_08A0EC98;
}
goto L_08A0EC84;
}
L_08A0EC84:
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f22));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0EC98;
}
goto L_08A0EC94;
}
L_08A0EC94:
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f22));
goto L_08A0EC98;
L_08A0EC98:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (0u | 14u);
{ const bool branch_taken = ctx.gpr[17] == g5;
g5 = (0u | 16u);
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0ECB4;
}
goto L_08A0ECA4;
}
}
L_08A0ECA4:
{ const bool branch_taken = ctx.gpr[17] == hot_regs.g5;
// nop
if (branch_taken) {
goto L_08A0ECB4;
}
goto L_08A0ECAC;
}
L_08A0ECAC:
{ const bool branch_taken = ctx.gpr[17] != hot_regs.g4;
// nop
if (branch_taken) {
goto L_08A0ECC0;
}
goto L_08A0ECB4;
}
L_08A0ECB4:
{ const bool branch_taken = ctx.gpr[20] != ctx.gpr[21];
// nop
if (branch_taken) {
goto L_08A0ECC0;
}
goto L_08A0ECBC;
}
L_08A0ECBC:
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[30]));
goto L_08A0ECC0;
L_08A0ECC0:
{
float f12 = hot_regs.f12;
if (ctx.gpr[17] != ctx.gpr[21]) {
{ const float fs = f12; const float ft = ctx.fpr[28]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
hot_regs.f12 = f12;
goto L_08A0ECD0;
}
goto L_08A0ECC8;
}
L_08A0ECC8:
{ const bool branch_taken = 0u == 0u;
hot_regs.g4 = (0u | 127u);
if (branch_taken) {
goto L_08A0ECDC;
}
goto L_08A0ECD0;
}
L_08A0ECD0:
{
float f12 = hot_regs.f12;
{
std::uint32_t g4 = hot_regs.g4;
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
g4 = (std::bit_cast<std::uint32_t>(f12));
g4 = (g4 & 255u);
hot_regs.g4 = g4;
hot_regs.f12 = f12;
goto L_08A0ECDC;
}
}
L_08A0ECDC:
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g4) <= 0;
// nop
if (branch_taken) {
goto L_08A0EFF4;
}
goto L_08A0ECE4;
}
L_08A0ECE4:
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(48)));
hot_regs.g5 = (hot_regs.g4 | 0u);
hot_regs.f13 = std::sqrt(hot_regs.f13);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(76), std::bit_cast<std::uint32_t>(hot_regs.f13));
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f20));
hot_regs.g31 = (0x08A0ED00u);
hot_regs.g4 = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 21u, 0x089B8190u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0ED00u) goto L_08A0ED00;
return;
L_08A0ED00:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(72), static_cast<std::uint8_t>(hot_regs.g2));
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(72)));
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g4) <= 0;
// nop
if (branch_taken) {
goto L_08A0EFF4;
}
goto L_08A0ED10;
}
L_08A0ED10:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(16)));
g5 = (ctx.gpr[17] << 2u);
g4 = (g5 + g4);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(56), g4);
g4 = (g4 + static_cast<std::uint32_t>(-112));
g5 = (g4 < static_cast<std::uint32_t>(48) ? 1u : 0u);
{ const bool branch_taken = g5 == 0u;
// nop
hot_regs.g4 = g4;
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0ED34;
}
}
L_08A0ED34:
{
std::uint32_t g1 = ctx.gpr[1];
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 << 2u);
g1 = (2232u << 16u);
g1 = (g1 + g4);
g1 = (aot_mem.aot_load32(g1 + static_cast<std::uint32_t>(4920)));
jump_target = g1;
// nop
local_pc = jump_target;
ctx.gpr[1] = g1;
hot_regs.g4 = g4;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0ED4C:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26320)));
g5 = (0u | 6u);
g4 = (g4 + ctx.gpr[18]);
{ const std::uint32_t dividend = g4; const std::uint32_t divisor = g5; if (divisor == 0u) { ctx.lo = 0xFFFFFFFFu; ctx.hi = dividend; } else { ctx.lo = dividend / divisor; ctx.hi = dividend % divisor; } }
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
g5 = (ctx.hi);
g4 = (g4 + g5);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0ED70;
}
}
L_08A0ED70:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26324)));
g4 = (g4 + ctx.gpr[18]);
{ const std::uint32_t dividend = g4; const std::uint32_t divisor = ctx.gpr[22]; if (divisor == 0u) { ctx.lo = 0xFFFFFFFFu; ctx.hi = dividend; } else { ctx.lo = dividend / divisor; ctx.hi = dividend % divisor; } }
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
hot_regs.g5 = (ctx.hi);
g4 = (g4 + hot_regs.g5);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0ED90;
}
}
L_08A0ED90:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26328)));
g5 = (0u | 3u);
g4 = (g4 + ctx.gpr[18]);
{ const std::uint32_t dividend = g4; const std::uint32_t divisor = g5; if (divisor == 0u) { ctx.lo = 0xFFFFFFFFu; ctx.hi = dividend; } else { ctx.lo = dividend / divisor; ctx.hi = dividend % divisor; } }
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
g5 = (ctx.hi);
g4 = (g4 + g5);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EDB4;
}
}
L_08A0EDB4:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26332)));
g4 = (g4 + ctx.gpr[18]);
{ const std::uint32_t dividend = g4; const std::uint32_t divisor = ctx.gpr[22]; if (divisor == 0u) { ctx.lo = 0xFFFFFFFFu; ctx.hi = dividend; } else { ctx.lo = dividend / divisor; ctx.hi = dividend % divisor; } }
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
hot_regs.g5 = (ctx.hi);
g4 = (g4 + hot_regs.g5);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EDD4;
}
}
L_08A0EDD4:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26336)));
hot_regs.g5 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
g4 = (g4 + ctx.gpr[18]);
g4 = (g4 & 1u);
g4 = (hot_regs.g5 + g4);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EDF0;
}
}
L_08A0EDF0:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26332)));
hot_regs.g5 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
g4 = (g4 + ctx.gpr[18]);
g4 = (g4 & 3u);
g4 = (hot_regs.g5 + g4);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EE0C;
}
}
L_08A0EE0C:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26328)));
g4 = (g4 + ctx.gpr[18]);
{ const std::uint32_t dividend = g4; const std::uint32_t divisor = ctx.gpr[22]; if (divisor == 0u) { ctx.lo = 0xFFFFFFFFu; ctx.hi = dividend; } else { ctx.lo = dividend / divisor; ctx.hi = dividend % divisor; } }
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
hot_regs.g5 = (ctx.hi);
g4 = (g4 + hot_regs.g5);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EE2C;
}
}
L_08A0EE2C:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26324)));
hot_regs.g5 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
g4 = (g4 + ctx.gpr[18]);
g4 = (g4 & 3u);
g4 = (hot_regs.g5 + g4);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EE48;
}
}
L_08A0EE48:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EE50;
}
L_08A0EE50:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26332)));
hot_regs.g5 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
g4 = (g4 + ctx.gpr[18]);
g4 = (g4 & 1u);
g4 = (hot_regs.g5 + g4);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EE84;
}
goto L_08A0EE6C;
}
}
L_08A0EE6C:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g16 = ctx.gpr[16];
g4 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(26336)));
hot_regs.g5 = (aot_mem.aot_load32(g16 + static_cast<std::uint32_t>(56)));
g4 = (g4 + ctx.gpr[18]);
g4 = (g4 & 3u);
g4 = (hot_regs.g5 + g4);
aot_mem.aot_store32(g16 + static_cast<std::uint32_t>(56), g4);
hot_regs.g4 = g4;
goto L_08A0EE84;
}
L_08A0EE84:
hot_regs.g4 = (ctx.gpr[17] + static_cast<std::uint32_t>(-7));
hot_regs.g5 = (hot_regs.g4 < static_cast<std::uint32_t>(18) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 == 0u;
// nop
if (branch_taken) {
goto L_08A0EEF4;
}
goto L_08A0EE94;
}
L_08A0EE94:
{
std::uint32_t g1 = ctx.gpr[1];
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 << 2u);
g1 = (2232u << 16u);
g1 = (g1 + g4);
g1 = (aot_mem.aot_load32(g1 + static_cast<std::uint32_t>(5112)));
jump_target = g1;
// nop
local_pc = jump_target;
ctx.gpr[1] = g1;
hot_regs.g4 = g4;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0EEAC:
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0EEB8u);
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0001_entry, 1u, 514u, 0x0880A400u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0EEB8u) goto L_08A0EEB8;
return;
L_08A0EEB8:
hot_regs.g4 = (hot_regs.g2 << 1u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(68), hot_regs.g4);
if (branch_taken) {
goto L_08A0EF04;
}
goto L_08A0EEC4;
}
L_08A0EEC4:
hot_regs.g4 = (0u | 8819u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(68), hot_regs.g4);
if (branch_taken) {
goto L_08A0EF04;
}
goto L_08A0EED0;
}
L_08A0EED0:
hot_regs.g4 = (0u | 13500u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(68), hot_regs.g4);
if (branch_taken) {
goto L_08A0EF04;
}
goto L_08A0EEDC;
}
L_08A0EEDC:
hot_regs.g4 = (0u | 8000u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(68), hot_regs.g4);
if (branch_taken) {
goto L_08A0EF04;
}
goto L_08A0EEE8;
}
L_08A0EEE8:
hot_regs.g4 = (0u | 6000u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(68), hot_regs.g4);
if (branch_taken) {
goto L_08A0EF04;
}
goto L_08A0EEF4;
}
L_08A0EEF4:
hot_regs.g5 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(56)));
hot_regs.g31 = (0x08A0EF00u);
hot_regs.g4 = (ctx.gpr[30] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0001_entry, 1u, 514u, 0x0880A400u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0EF00u) goto L_08A0EF00;
return;
L_08A0EF00:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(68), hot_regs.g2);
goto L_08A0EF04;
L_08A0EF04:
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(20), ctx.gpr[23]);
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g5 = (ctx.gpr[18] | 0u);
hot_regs.g31 = (0x08A0EF18u);
hot_regs.g6 = (ctx.gpr[19] | 0u);
goto L_08A0E610;
L_08A0EF18:
ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(68)));
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0EF28u);
hot_regs.g5 = (ctx.gpr[23] >> 4u);
if (rt.invoke_chained_direct<&recomp_unit_0108_entry, 108u, 690u, 0x089B7A84u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0EF28u) goto L_08A0EF28;
return;
L_08A0EF28:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g28 = ctx.gpr[28];
g4 = (ctx.gpr[23] + hot_regs.g2);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(68), g4);
g4 = (aot_mem.aot_load16(g28 + static_cast<std::uint32_t>(-8168)));
hot_regs.g5 = (g4 + static_cast<std::uint32_t>(1));
aot_mem.aot_store16(g28 + static_cast<std::uint32_t>(-8168), static_cast<std::uint16_t>(hot_regs.g5));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(52), g4);
g4 = (aot_mem.aot_load16(g28 + static_cast<std::uint32_t>(-8168)));
g4 = (static_cast<std::int32_t>(g4) < 255 ? 1u : 0u);
{ const bool branch_taken = g4 != 0u;
ctx.gpr[23] = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(20)));
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0EF58;
}
goto L_08A0EF50;
}
}
L_08A0EF50:
hot_regs.g4 = (0u | 28u);
aot_mem.aot_store16(ctx.gpr[28] + static_cast<std::uint32_t>(-8168), static_cast<std::uint16_t>(hot_regs.g4));
goto L_08A0EF58;
L_08A0EF58:
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(12)));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(8)));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(60), static_cast<std::uint8_t>(0u));
hot_regs.g4 = (0u | 3u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(61), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(64), hot_regs.g4);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(80), ctx.gpr[23]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(ctx.fpr[26]));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(92), static_cast<std::uint8_t>(ctx.gpr[23]));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(20), ctx.gpr[23]);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(113), static_cast<std::uint8_t>(0u));
ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(0)));
hot_regs.g31 = (0x08A0EF9Cu);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(24), ctx.gpr[23]);
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 47u, 0x08960424u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0EF9Cu) goto L_08A0EF9C;
return;
L_08A0EF9C:
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(24)));
{ const bool branch_taken = hot_regs.g4 == hot_regs.g2;
ctx.gpr[23] = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(20)));
if (branch_taken) {
goto L_08A0EFC4;
}
goto L_08A0EFA8;
}
L_08A0EFA8:
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(20), ctx.gpr[23]);
ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[19] + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (0x08A0EFB8u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(24), ctx.gpr[23]);
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 47u, 0x08960424u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0EFB8u) goto L_08A0EFB8;
return;
L_08A0EFB8:
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(24)));
{ const bool branch_taken = hot_regs.g4 != hot_regs.g2;
ctx.gpr[23] = (aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(20)));
if (branch_taken) {
goto L_08A0EFD8;
}
goto L_08A0EFC4;
}
L_08A0EFC4:
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0EFD0u);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0108_entry, 108u, 703u, 0x089B7B80u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0EFD0u) goto L_08A0EFD0;
return;
L_08A0EFD0:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0EFF4;
}
goto L_08A0EFD8;
}
L_08A0EFD8:
{ const bool branch_taken = ctx.gpr[17] == ctx.gpr[21];
// nop
if (branch_taken) {
goto L_08A0EFF4;
}
goto L_08A0EFE0;
}
L_08A0EFE0:
{ const bool branch_taken = ctx.gpr[20] == ctx.gpr[21];
// nop
if (branch_taken) {
goto L_08A0EFF4;
}
goto L_08A0EFE8;
}
L_08A0EFE8:
hot_regs.g4 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0EFF4u);
hot_regs.g5 = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0108_entry, 108u, 703u, 0x089B7B80u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0EFF4u) goto L_08A0EFF4;
return;
L_08A0EFF4:
{
std::uint32_t g18 = ctx.gpr[18];
g18 = (g18 + static_cast<std::uint32_t>(1));
g18 = (g18 & 255u);
hot_regs.g4 = (static_cast<std::int32_t>(g18) < 2 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
ctx.gpr[18] = g18;
if (branch_taken) {
goto L_08A0EBD8;
}
goto L_08A0F008;
}
}
L_08A0F008:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(28)));
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(32)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(36)));
ctx.fpr[26] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(40)));
ctx.fpr[28] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(44)));
ctx.fpr[30] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(48)));
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(52)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(56)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(60)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(64)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(68)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(72)));
ctx.gpr[22] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(76)));
ctx.gpr[23] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(80)));
ctx.gpr[30] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(84)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(88)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(96));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0F050:
{
float f12 = hot_regs.f12;
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g6 = hot_regs.g6;
g4 = (17571u << 16u);
g4 = (g4 | 57344u);
f12 = std::bit_cast<float>(g4);
g5 = (50257u << 16u);
g4 = (2234u << 16u);
aot_mem.aot_store32(g4 + static_cast<std::uint32_t>(7408), std::bit_cast<std::uint32_t>(f12));
g5 = (g5 | 49152u);
f12 = std::bit_cast<float>(g5);
g4 = (g4 + static_cast<std::uint32_t>(7408));
g5 = (16755u << 16u);
g5 = (g5 | 13107u);
aot_mem.aot_store32(g4 + static_cast<std::uint32_t>(4), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g5);
g6 = (17520u << 16u);
aot_mem.aot_store32(g4 + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(f12));
g6 = (g6 | 16384u);
f12 = std::bit_cast<float>(g6);
g5 = (g4 + static_cast<std::uint32_t>(16));
g6 = (50052u << 16u);
g6 = (g6 | 32768u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g6);
g6 = (16853u << 16u);
g6 = (g6 | 39322u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(4), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g6);
g6 = (17511u << 16u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(f12));
g6 = (g6 | 49152u);
g5 = (g4 + static_cast<std::uint32_t>(32));
f12 = std::bit_cast<float>(g6);
g6 = (50053u << 16u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g6);
g6 = (16547u << 16u);
g6 = (g6 | 13107u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(4), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g6);
g6 = (17538u << 16u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(f12));
g6 = (g6 | 8192u);
g5 = (g4 + static_cast<std::uint32_t>(48));
f12 = std::bit_cast<float>(g6);
g6 = (17172u << 16u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g6);
g4 = (g4 + static_cast<std::uint32_t>(64));
g6 = (16665u << 16u);
g6 = (g6 | 39322u);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(4), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g6);
aot_mem.aot_store32(g5 + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(f12));
g5 = (17567u << 16u);
g5 = (g5 | 57344u);
f12 = std::bit_cast<float>(g5);
g5 = (50250u << 16u);
aot_mem.aot_store32(g4 + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g5);
g5 = (16753u << 16u);
g5 = (g5 | 39322u);
aot_mem.aot_store32(g4 + static_cast<std::uint32_t>(4), std::bit_cast<std::uint32_t>(f12));
f12 = std::bit_cast<float>(g5);
jump_target = hot_regs.g31;
aot_mem.aot_store32(g4 + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(f12));
local_pc = jump_target;
hot_regs.g4 = g4;
hot_regs.g5 = g5;
hot_regs.g6 = g6;
hot_regs.f12 = f12;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
}
L_08A0F150:
{
std::uint32_t g5 = hot_regs.g5;
{ const std::uint32_t vfpu_address = hot_regs.g6 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = g5 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<4u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = g5 + static_cast<std::uint32_t>(16);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<5u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = g5 + static_cast<std::uint32_t>(32);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<6u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = g5 + static_cast<std::uint32_t>(48);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<7u, 4u>(vfpu_value); }
{ float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{};
ctx.read_vfpu_matrix(vfpu_matrix, 36u, 3u);
ctx.read_vfpu_vector_ct<1u, 3u>(vfpu_target_raw);
constexpr std::uint32_t vfpu_side = 3u;
constexpr std::uint32_t vfpu_input_length = 3u;
for (std::uint32_t i = 0; i < 4u; ++i) vfpu_target[i] = i < vfpu_input_length ? vfpu_target_raw[i] : 0.0f;
if (vfpu_side - 1u >= vfpu_input_length) vfpu_target[vfpu_side - 1u] = 1.0f;
for (std::uint32_t row = 0; row + 1u < vfpu_side; ++row) {
float sum = 0.0f;
for (std::uint32_t column = 0; column < vfpu_side; ++column) sum += vfpu_matrix[row * 4u + column] * vfpu_target[column];
vfpu_result[row] = sum;
}
float vfpu_final_row[4]{vfpu_matrix[(vfpu_side - 1u) * 4u + 0u], vfpu_matrix[(vfpu_side - 1u) * 4u + 1u],
vfpu_matrix[(vfpu_side - 1u) * 4u + 2u], vfpu_matrix[(vfpu_side - 1u) * 4u + 3u]};
ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_final_row);
ctx.apply_vfpu_source_prefix_ct<4u, 1u>(vfpu_target);
for (std::uint32_t column = 0; column < 4u; ++column) vfpu_result[vfpu_side - 1u] += vfpu_final_row[column] * vfpu_target[column];
const std::uint32_t vfpu_destination_prefix = ctx.vfpu_ctrl[2];
const std::uint32_t vfpu_last_lane = vfpu_side - 1u;
ctx.vfpu_ctrl[2] = ((vfpu_destination_prefix & (1u << 8u)) << vfpu_last_lane) |
((vfpu_destination_prefix & 3u) << (vfpu_last_lane * 2u));
ctx.write_vfpu_vector_with_destination_prefix(vfpu_result, 0u, vfpu_side); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<7u, 3u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
jump_target = hot_regs.g31;
// nop
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0F178:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (16268u << 16u);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8348)));
g4 = (g4 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F1E0;
}
goto L_08A0F198;
}
}
L_08A0F198:
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-8160)));
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
if (branch_taken) {
goto L_08A0F1D8;
}
goto L_08A0F1A4;
}
L_08A0F1A4:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (g4 & 32767u);
g4 = (g4 >> 1u);
hot_regs.g5 = (g4 < static_cast<std::uint32_t>(5000) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F1D0;
}
goto L_08A0F1BC;
}
}
L_08A0F1BC:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 < static_cast<std::uint32_t>(6000) ? 1u : 0u);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F1E8;
}
goto L_08A0F1C8;
}
}
L_08A0F1C8:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F1EC;
}
goto L_08A0F1D0;
}
L_08A0F1D0:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0F1EC;
}
goto L_08A0F1D8;
}
L_08A0F1D8:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0F1EC;
}
goto L_08A0F1E0;
}
L_08A0F1E0:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0F1EC;
}
goto L_08A0F1E8;
}
L_08A0F1E8:
hot_regs.g2 = (0u | 2u);
goto L_08A0F1EC;
L_08A0F1EC:
jump_target = hot_regs.g31;
// nop
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0F1F4:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (16268u << 16u);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8348)));
g4 = (g4 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F270;
}
goto L_08A0F214;
}
}
L_08A0F214:
hot_regs.g4 = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-8160)));
{ const bool branch_taken = hot_regs.g4 != 0u;
// nop
if (branch_taken) {
goto L_08A0F268;
}
goto L_08A0F220;
}
L_08A0F220:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (g4 & 32767u);
g4 = (g4 >> 1u);
hot_regs.g5 = (g4 < static_cast<std::uint32_t>(6000) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F260;
}
goto L_08A0F238;
}
}
L_08A0F238:
hot_regs.g5 = (hot_regs.g4 < static_cast<std::uint32_t>(11000) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
if (branch_taken) {
goto L_08A0F258;
}
goto L_08A0F244;
}
L_08A0F244:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 < static_cast<std::uint32_t>(12000) ? 1u : 0u);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F278;
}
goto L_08A0F250;
}
}
L_08A0F250:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F27C;
}
goto L_08A0F258;
}
L_08A0F258:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0F27C;
}
goto L_08A0F260;
}
L_08A0F260:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 2u);
if (branch_taken) {
goto L_08A0F27C;
}
goto L_08A0F268;
}
L_08A0F268:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0F27C;
}
goto L_08A0F270;
}
L_08A0F270:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0F27C;
}
goto L_08A0F278;
}
L_08A0F278:
hot_regs.g2 = (0u | 2u);
goto L_08A0F27C;
L_08A0F27C:
jump_target = hot_regs.g31;
// nop
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0F284:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-16));
g4 = (16268u << 16u);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8348)));
g4 = (g4 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g4);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), hot_regs.g31);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0F2CC;
}
goto L_08A0F2AC;
}
}
L_08A0F2AC:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (g4 & 1024u);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F2C4;
}
goto L_08A0F2BC;
}
}
L_08A0F2BC:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 3u);
if (branch_taken) {
goto L_08A0F2D4;
}
goto L_08A0F2C4;
}
L_08A0F2C4:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F2D4;
}
goto L_08A0F2CC;
}
L_08A0F2CC:
hot_regs.g31 = (0x08A0F2D4u);
// nop
goto L_08A0F178;
L_08A0F2D4:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0F2E0:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-16));
g4 = (16268u << 16u);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8348)));
g4 = (g4 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g4);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), hot_regs.g31);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0F328;
}
goto L_08A0F308;
}
}
L_08A0F308:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (g4 & 1024u);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F320;
}
goto L_08A0F318;
}
}
L_08A0F318:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 3u);
if (branch_taken) {
goto L_08A0F330;
}
goto L_08A0F320;
}
L_08A0F320:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F330;
}
goto L_08A0F328;
}
L_08A0F328:
hot_regs.g31 = (0x08A0F330u);
// nop
goto L_08A0F1F4;
L_08A0F330:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0F33C:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
g4 = (g4 & 32767u);
g4 = (g4 >> 1u);
hot_regs.g5 = (g4 < static_cast<std::uint32_t>(12000) ? 1u : 0u);
{ const bool branch_taken = hot_regs.g5 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F368;
}
goto L_08A0F354;
}
}
L_08A0F354:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 < static_cast<std::uint32_t>(15384) ? 1u : 0u);
{ const bool branch_taken = g4 == 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F370;
}
goto L_08A0F360;
}
}
L_08A0F360:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 0u);
if (branch_taken) {
goto L_08A0F374;
}
goto L_08A0F368;
}
L_08A0F368:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 2u);
if (branch_taken) {
goto L_08A0F374;
}
goto L_08A0F370;
}
L_08A0F370:
hot_regs.g2 = (0u | 1u);
goto L_08A0F374;
L_08A0F374:
jump_target = hot_regs.g31;
// nop
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0F37C:
jump_target = hot_regs.g31;
hot_regs.g2 = (0u | 0u);
local_pc = jump_target;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A0F384:
hot_regs.g29 = (hot_regs.g29 + static_cast<std::uint32_t>(-16));
hot_regs.g4 = (hot_regs.g4 + static_cast<std::uint32_t>(16));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), hot_regs.g31);
hot_regs.g31 = (0x08A0F39Cu);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(4)));
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 28u, 0x08964540u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0F39Cu) goto L_08A0F39C;
return;
L_08A0F39C:
hot_regs.f12 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
hot_regs.f13 = std::bit_cast<float>(0u);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
hot_regs.g4 = (16997u << 16u);
if (branch_taken) {
goto L_08A0F3C8;
}
goto L_08A0F3B4;
}
L_08A0F3B4:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (16585u << 16u);
g4 = (g4 | 4059u);
hot_regs.f13 = std::bit_cast<float>(g4);
hot_regs.f12 = hot_regs.f12 + hot_regs.f13;
g4 = (16997u << 16u);
hot_regs.g4 = g4;
goto L_08A0F3C8;
}
L_08A0F3C8:
{
float f12 = hot_regs.f12;
{
std::uint32_t g4 = hot_regs.g4;
g4 = (g4 | 12000u);
hot_regs.f13 = std::bit_cast<float>(g4);
{ const float fs = f12; const float ft = hot_regs.f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
g4 = (17008u << 16u);
hot_regs.f14 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((f12 <= hot_regs.f14));
// nop
{ const bool branch_taken = ctx.fpu_condition();
g4 = (17264u << 16u);
hot_regs.g4 = g4;
hot_regs.f12 = f12;
if (branch_taken) {
goto L_08A0F408;
}
goto L_08A0F3EC;
}
}
}
L_08A0F3EC:
hot_regs.g4 = (17174u << 16u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F430;
}
goto L_08A0F404;
}
L_08A0F404:
hot_regs.g4 = (17264u << 16u);
goto L_08A0F408;
L_08A0F408:
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
hot_regs.g4 = (17317u << 16u);
if (branch_taken) {
goto L_08A0F438;
}
goto L_08A0F41C;
}
L_08A0F41C:
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F438;
}
goto L_08A0F430;
}
L_08A0F430:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F43C;
}
goto L_08A0F438;
}
L_08A0F438:
hot_regs.g2 = (0u | 2u);
goto L_08A0F43C;
L_08A0F43C:
{
std::uint32_t g29 = hot_regs.g29;
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(0)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(16));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0F448:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g16 = ctx.gpr[16];
std::uint32_t g18 = ctx.gpr[18];
std::uint32_t g19 = ctx.gpr[19];
std::uint32_t g20 = ctx.gpr[20];
std::uint32_t g23 = ctx.gpr[23];
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-128));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(92), g16);
g16 = (g4 | 0u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(104), g19);
g19 = (g16 + static_cast<std::uint32_t>(416));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(108), g20);
g20 = (g19 + static_cast<std::uint32_t>(12));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(100), g18);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(120), g23);
g18 = (g19 + static_cast<std::uint32_t>(6));
g23 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g20 + static_cast<std::uint32_t>(2))))));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(112), ctx.gpr[21]);
ctx.gpr[21] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g18 + static_cast<std::uint32_t>(2))))));
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(96), ctx.gpr[17]);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
ctx.gpr[17] = (g5 & 255u);
g23 = (g23 << 2u);
g5 = (g4 + g23);
hot_regs.g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g5 + static_cast<std::uint32_t>(0))))));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(116), ctx.gpr[22]);
hot_regs.g7 = (hot_regs.g6 & 49152u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(124), hot_regs.g31);
{ const bool branch_taken = hot_regs.g7 == 0u;
ctx.gpr[22] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g19 + static_cast<std::uint32_t>(2))))));
hot_regs.g4 = g4;
hot_regs.g5 = g5;
ctx.gpr[16] = g16;
ctx.gpr[18] = g18;
ctx.gpr[19] = g19;
ctx.gpr[20] = g20;
ctx.gpr[23] = g23;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0F630;
}
goto L_08A0F4AC;
}
}
L_08A0F4AC:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g5 + static_cast<std::uint32_t>(2))))));
g5 = (g5 & 64u);
{ const bool branch_taken = g5 != 0u;
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0F4CC;
}
goto L_08A0F4BC;
}
}
L_08A0F4BC:
ctx.gpr[8] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[20] + static_cast<std::uint32_t>(0))))));
ctx.gpr[9] = (hot_regs.g6 & 16383u);
{ const bool branch_taken = ctx.gpr[9] != ctx.gpr[8];
// nop
if (branch_taken) {
goto L_08A0F630;
}
goto L_08A0F4CC;
}
L_08A0F4CC:
{ const bool branch_taken = hot_regs.g5 == 0u;
// nop
if (branch_taken) {
goto L_08A0F4E4;
}
goto L_08A0F4D4;
}
L_08A0F4D4:
{
std::uint32_t g6 = hot_regs.g6;
hot_regs.g5 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[20] + static_cast<std::uint32_t>(0))))));
g6 = (g6 & 16383u);
{ const bool branch_taken = g6 == hot_regs.g5;
// nop
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0F630;
}
goto L_08A0F4E4;
}
}
L_08A0F4E4:
{ const bool branch_taken = ctx.gpr[17] != 0u;
hot_regs.g5 = (0u | 16384u);
if (branch_taken) {
goto L_08A0F538;
}
goto L_08A0F4EC;
}
L_08A0F4EC:
{ const bool branch_taken = hot_regs.g7 != hot_regs.g5;
hot_regs.g5 = (hot_regs.g4 + ctx.gpr[23]);
if (branch_taken) {
goto L_08A0F50C;
}
goto L_08A0F4F4;
}
L_08A0F4F4:
hot_regs.g31 = (0x08A0F4FCu);
// nop
goto L_08A0F178;
L_08A0F4FC:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
{ const bool branch_taken = hot_regs.g2 != 0u;
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F538;
}
goto L_08A0F508;
}
}
L_08A0F508:
hot_regs.g5 = (hot_regs.g4 + ctx.gpr[23]);
goto L_08A0F50C;
L_08A0F50C:
{
std::uint32_t g5 = hot_regs.g5;
g5 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g5 + static_cast<std::uint32_t>(0))))));
hot_regs.g6 = (0u | 2u);
g5 = (g5 & 49152u);
g5 = (g5 >> 14u);
{ const bool branch_taken = g5 != hot_regs.g6;
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0F630;
}
goto L_08A0F524;
}
}
L_08A0F524:
hot_regs.g31 = (0x08A0F52Cu);
// nop
goto L_08A0F1F4;
L_08A0F52C:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
{ const bool branch_taken = hot_regs.g2 == 0u;
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F630;
}
goto L_08A0F538;
}
}
L_08A0F538:
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[23]);
hot_regs.g31 = (0x08A0F544u);
hot_regs.g5 = (hot_regs.g29 | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0092_entry, 92u, 603u, 0x08976BF0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0F544u) goto L_08A0F544;
return;
L_08A0F544:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(0)));
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g29 + static_cast<std::uint32_t>(4)));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(16), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(20), std::bit_cast<std::uint32_t>(hot_regs.f13));
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(24));
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(4)));
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(25));
hot_regs.g31 = (0x08A0F56Cu);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[23]);
if (rt.invoke_chained_direct<&recomp_unit_0092_entry, 92u, 588u, 0x08976A00u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0F56Cu) goto L_08A0F56C;
return;
L_08A0F56C:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
float f14 = hot_regs.f14;
float f15 = hot_regs.f15;
float f17 = ctx.fpr[17];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g6 = hot_regs.g6;
std::uint32_t g29 = hot_regs.g29;
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g29 + static_cast<std::uint32_t>(24))))));
g5 = (15395u << 16u);
f12 = std::bit_cast<float>(g4);
g6 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
g4 = (g5 | 55050u);
f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f12)));
g5 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g29 + static_cast<std::uint32_t>(25))))));
f13 = std::bit_cast<float>(g4);
f14 = std::bit_cast<float>(aot_mem.aot_load32(g6 + static_cast<std::uint32_t>(0)));
f15 = std::bit_cast<float>(g5);
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(16)));
f15 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f15)));
f17 = std::bit_cast<float>(aot_mem.aot_load32(g6 + static_cast<std::uint32_t>(4)));
ctx.fpr[18] = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(20)));
{ const float fs = f12; const float ft = f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
f14 = f14 - ctx.fpr[16];
f17 = f17 - ctx.fpr[18];
{ const float fs = f15; const float ft = f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f15 = std::bit_cast<float>(0x7FC00000u); else f15 = fs * ft; }
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(ctx.gpr[20] + static_cast<std::uint32_t>(4))))));
g5 = (0u + static_cast<std::uint32_t>(-1));
{ const float fs = f12; const float ft = f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
{ const float fs = f15; const float ft = f17; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f15 = std::bit_cast<float>(0x7FC00000u); else f15 = fs * ft; }
f13 = std::bit_cast<float>(0u);
{ const bool branch_taken = g4 != g5;
f12 = f12 + f15;
hot_regs.g4 = g4;
hot_regs.g5 = g5;
hot_regs.g6 = g6;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
hot_regs.f14 = f14;
hot_regs.f15 = f15;
ctx.fpr[17] = f17;
if (branch_taken) {
goto L_08A0F5FC;
}
goto L_08A0F5D0;
}
}
}
L_08A0F5D0:
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
hot_regs.g4 = (16640u << 16u);
if (branch_taken) {
goto L_08A0F628;
}
goto L_08A0F5E0;
}
L_08A0F5E0:
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F628;
}
goto L_08A0F5F4;
}
L_08A0F5F4:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F978;
}
goto L_08A0F5FC;
}
L_08A0F5FC:
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
hot_regs.g4 = (49408u << 16u);
if (branch_taken) {
goto L_08A0F628;
}
goto L_08A0F60C;
}
L_08A0F60C:
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F628;
}
goto L_08A0F620;
}
L_08A0F620:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F978;
}
goto L_08A0F628;
}
L_08A0F628:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
hot_regs.g4 = g4;
goto L_08A0F630;
}
L_08A0F630:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g21 = ctx.gpr[21];
g21 = (g21 << 2u);
g4 = (g4 + g21);
hot_regs.g5 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g4 + static_cast<std::uint32_t>(0))))));
hot_regs.g6 = (hot_regs.g5 & 49152u);
{ const bool branch_taken = hot_regs.g6 == 0u;
// nop
hot_regs.g4 = g4;
ctx.gpr[21] = g21;
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F648;
}
}
L_08A0F648:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g4 + static_cast<std::uint32_t>(2))))));
g4 = (g4 & 64u);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F668;
}
goto L_08A0F658;
}
}
L_08A0F658:
hot_regs.g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[18] + static_cast<std::uint32_t>(0))))));
ctx.gpr[8] = (hot_regs.g5 & 16383u);
{ const bool branch_taken = ctx.gpr[8] != hot_regs.g7;
// nop
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F668;
}
L_08A0F668:
{ const bool branch_taken = hot_regs.g4 == 0u;
// nop
if (branch_taken) {
goto L_08A0F680;
}
goto L_08A0F670;
}
L_08A0F670:
{
std::uint32_t g5 = hot_regs.g5;
hot_regs.g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[18] + static_cast<std::uint32_t>(0))))));
g5 = (g5 & 16383u);
{ const bool branch_taken = g5 == hot_regs.g4;
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F680;
}
}
L_08A0F680:
{ const bool branch_taken = ctx.gpr[17] != 0u;
hot_regs.g4 = (0u | 16384u);
if (branch_taken) {
goto L_08A0F6D4;
}
goto L_08A0F688;
}
L_08A0F688:
if (hot_regs.g6 != hot_regs.g4) {
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
goto L_08A0F6A4;
}
goto L_08A0F690;
L_08A0F690:
hot_regs.g31 = (0x08A0F698u);
// nop
goto L_08A0F178;
L_08A0F698:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0F6D4;
}
goto L_08A0F6A0;
}
L_08A0F6A0:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
goto L_08A0F6A4;
L_08A0F6A4:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.g5 = (0u | 2u);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
g4 = (g4 + ctx.gpr[21]);
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g4 + static_cast<std::uint32_t>(0))))));
g4 = (g4 & 49152u);
g4 = (g4 >> 14u);
{ const bool branch_taken = g4 != hot_regs.g5;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F6C4;
}
}
L_08A0F6C4:
hot_regs.g31 = (0x08A0F6CCu);
// nop
goto L_08A0F1F4;
L_08A0F6CC:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F6D4;
}
L_08A0F6D4:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(48));
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(4)));
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(49));
hot_regs.g31 = (0x08A0F6ECu);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[21]);
if (rt.invoke_chained_direct<&recomp_unit_0092_entry, 92u, 588u, 0x08976A00u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0F6ECu) goto L_08A0F6EC;
return;
L_08A0F6EC:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (0x08A0F700u);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[21]);
if (rt.invoke_chained_direct<&recomp_unit_0092_entry, 92u, 603u, 0x08976BF0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0F700u) goto L_08A0F700;
return;
L_08A0F700:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
float f14 = hot_regs.f14;
float f15 = hot_regs.f15;
float f16 = ctx.fpr[16];
float f18 = ctx.fpr[18];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g29 = hot_regs.g29;
f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(32)));
f13 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(36)));
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g29 + static_cast<std::uint32_t>(48))))));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(f12));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(f13));
f14 = std::bit_cast<float>(g4);
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g29 + static_cast<std::uint32_t>(49))))));
f14 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f14)));
g5 = (15395u << 16u);
f15 = std::bit_cast<float>(g4);
g5 = (g5 | 55050u);
g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
f15 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f15)));
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
f16 = std::bit_cast<float>(g5);
f18 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
{ const float fs = f14; const float ft = f16; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f14 = std::bit_cast<float>(0x7FC00000u); else f14 = fs * ft; }
f12 = ctx.fpr[17] - f12;
f18 = f18 - f13;
{ const float fs = f15; const float ft = f16; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f15 = std::bit_cast<float>(0x7FC00000u); else f15 = fs * ft; }
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(ctx.gpr[18] + static_cast<std::uint32_t>(4))))));
g5 = (0u + static_cast<std::uint32_t>(-1));
{ const float fs = f14; const float ft = f12; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
f13 = std::bit_cast<float>(0u);
{ const float fs = f15; const float ft = f18; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f15 = std::bit_cast<float>(0x7FC00000u); else f15 = fs * ft; }
{ const bool branch_taken = g4 != g5;
f12 = f12 + f15;
hot_regs.g4 = g4;
hot_regs.g5 = g5;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
hot_regs.f14 = f14;
hot_regs.f15 = f15;
ctx.fpr[16] = f16;
ctx.fpr[18] = f18;
if (branch_taken) {
goto L_08A0F798;
}
goto L_08A0F76C;
}
}
}
L_08A0F76C:
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
hot_regs.g4 = (16640u << 16u);
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F77C;
}
L_08A0F77C:
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F790;
}
L_08A0F790:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F978;
}
goto L_08A0F798;
}
L_08A0F798:
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
hot_regs.g4 = (49408u << 16u);
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F7A8;
}
L_08A0F7A8:
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F7C4;
}
goto L_08A0F7BC;
}
L_08A0F7BC:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F978;
}
goto L_08A0F7C4;
}
L_08A0F7C4:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(72)));
hot_regs.g5 = (0u | 48u);
g4 = (g4 & 496u);
{ const bool branch_taken = g4 != hot_regs.g5;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F7D8;
}
}
L_08A0F7D8:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g22 = ctx.gpr[22];
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
g22 = (g22 << 2u);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
g4 = (g4 + g22);
hot_regs.g5 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g4 + static_cast<std::uint32_t>(0))))));
hot_regs.g6 = (hot_regs.g5 & 49152u);
{ const bool branch_taken = hot_regs.g6 == 0u;
// nop
hot_regs.g4 = g4;
ctx.gpr[22] = g22;
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F7F8;
}
}
L_08A0F7F8:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g4 + static_cast<std::uint32_t>(2))))));
g4 = (g4 & 64u);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F818;
}
goto L_08A0F808;
}
}
L_08A0F808:
hot_regs.g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[19] + static_cast<std::uint32_t>(0))))));
ctx.gpr[8] = (hot_regs.g5 & 16383u);
{ const bool branch_taken = ctx.gpr[8] != hot_regs.g7;
// nop
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F818;
}
L_08A0F818:
{ const bool branch_taken = hot_regs.g4 == 0u;
// nop
if (branch_taken) {
goto L_08A0F830;
}
goto L_08A0F820;
}
L_08A0F820:
{
std::uint32_t g5 = hot_regs.g5;
hot_regs.g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[19] + static_cast<std::uint32_t>(0))))));
g5 = (g5 & 16383u);
{ const bool branch_taken = g5 == hot_regs.g4;
// nop
hot_regs.g5 = g5;
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F830;
}
}
L_08A0F830:
{ const bool branch_taken = ctx.gpr[17] != 0u;
hot_regs.g4 = (0u | 16384u);
if (branch_taken) {
goto L_08A0F884;
}
goto L_08A0F838;
}
L_08A0F838:
if (hot_regs.g6 != hot_regs.g4) {
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
goto L_08A0F854;
}
goto L_08A0F840;
L_08A0F840:
hot_regs.g31 = (0x08A0F848u);
// nop
goto L_08A0F178;
L_08A0F848:
{ const bool branch_taken = hot_regs.g2 != 0u;
// nop
if (branch_taken) {
goto L_08A0F884;
}
goto L_08A0F850;
}
L_08A0F850:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
goto L_08A0F854;
L_08A0F854:
{
std::uint32_t g4 = hot_regs.g4;
hot_regs.g5 = (0u | 2u);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
g4 = (g4 + ctx.gpr[22]);
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(g4 + static_cast<std::uint32_t>(0))))));
g4 = (g4 & 49152u);
g4 = (g4 >> 14u);
{ const bool branch_taken = g4 != hot_regs.g5;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F874;
}
}
L_08A0F874:
hot_regs.g31 = (0x08A0F87Cu);
// nop
goto L_08A0F1F4;
L_08A0F87C:
{ const bool branch_taken = hot_regs.g2 == 0u;
// nop
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F884;
}
L_08A0F884:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(80));
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(4)));
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(81));
hot_regs.g31 = (0x08A0F89Cu);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[22]);
if (rt.invoke_chained_direct<&recomp_unit_0092_entry, 92u, 588u, 0x08976A00u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0F89Cu) goto L_08A0F89C;
return;
L_08A0F89C:
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16928)));
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(64));
hot_regs.g4 = (aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(4)));
hot_regs.g31 = (0x08A0F8B0u);
hot_regs.g4 = (hot_regs.g4 + ctx.gpr[22]);
if (rt.invoke_chained_direct<&recomp_unit_0092_entry, 92u, 603u, 0x08976BF0u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0F8B0u) goto L_08A0F8B0;
return;
L_08A0F8B0:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
float f14 = hot_regs.f14;
float f15 = hot_regs.f15;
float f16 = ctx.fpr[16];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g29 = hot_regs.g29;
f12 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(64)));
f13 = std::bit_cast<float>(aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(68)));
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g29 + static_cast<std::uint32_t>(80))))));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(f12));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(f13));
f14 = std::bit_cast<float>(g4);
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(g29 + static_cast<std::uint32_t>(81))))));
f14 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f14)));
g5 = (15395u << 16u);
f15 = std::bit_cast<float>(g4);
g5 = (g5 | 55050u);
g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
f15 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f15)));
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
f16 = std::bit_cast<float>(g5);
ctx.fpr[18] = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(4)));
{ const float fs = f14; const float ft = f16; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f14 = std::bit_cast<float>(0x7FC00000u); else f14 = fs * ft; }
f12 = ctx.fpr[17] - f12;
f13 = ctx.fpr[18] - f13;
{ const float fs = f15; const float ft = f16; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f15 = std::bit_cast<float>(0x7FC00000u); else f15 = fs * ft; }
g4 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(ctx.gpr[19] + static_cast<std::uint32_t>(4))))));
g5 = (0u + static_cast<std::uint32_t>(-1));
{ const float fs = f14; const float ft = f12; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f14 = std::bit_cast<float>(0x7FC00000u); else f14 = fs * ft; }
{ const float fs = f15; const float ft = f13; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
f12 = std::bit_cast<float>(0u);
{ const bool branch_taken = g4 != g5;
f13 = f14 + f13;
hot_regs.g4 = g4;
hot_regs.g5 = g5;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
hot_regs.f14 = f14;
hot_regs.f15 = f15;
ctx.fpr[16] = f16;
if (branch_taken) {
goto L_08A0F948;
}
goto L_08A0F91C;
}
}
}
L_08A0F91C:
ctx.set_fpu_condition((hot_regs.f13 <= hot_regs.f12));
// nop
{ const bool branch_taken = ctx.fpu_condition();
hot_regs.g4 = (16576u << 16u);
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F92C;
}
L_08A0F92C:
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f13 < hot_regs.f12));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F940;
}
L_08A0F940:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F978;
}
goto L_08A0F948;
}
L_08A0F948:
ctx.set_fpu_condition((hot_regs.f13 < hot_regs.f12));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
hot_regs.g4 = (49344u << 16u);
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F958;
}
L_08A0F958:
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f13 <= hot_regs.f12));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0F974;
}
goto L_08A0F96C;
}
L_08A0F96C:
{ const bool branch_taken = 0u == 0u;
hot_regs.g2 = (0u | 1u);
if (branch_taken) {
goto L_08A0F978;
}
goto L_08A0F974;
}
L_08A0F974:
hot_regs.g2 = (0u | 0u);
goto L_08A0F978;
L_08A0F978:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[16] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(92)));
ctx.gpr[17] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(96)));
ctx.gpr[18] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(100)));
ctx.gpr[19] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(104)));
ctx.gpr[20] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(108)));
ctx.gpr[21] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(112)));
ctx.gpr[22] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(116)));
ctx.gpr[23] = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(120)));
hot_regs.g31 = (aot_mem.aot_load32(g29 + static_cast<std::uint32_t>(124)));
jump_target = hot_regs.g31;
g29 = (g29 + static_cast<std::uint32_t>(128));
local_pc = jump_target;
hot_regs.g29 = g29;
if (++local_transfers < 2048u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
}
L_08A0F9A4:
{
std::uint32_t g5 = hot_regs.g5;
std::uint32_t g29 = hot_regs.g29;
g29 = (g29 + static_cast<std::uint32_t>(-1024));
g5 = (16245u << 16u);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(40)));
g5 = (g5 | 49807u);
hot_regs.f13 = std::bit_cast<float>(g5);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(952), std::bit_cast<std::uint32_t>(hot_regs.f20));
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(956), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(960), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(964), std::bit_cast<std::uint32_t>(ctx.fpr[26]));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(968), std::bit_cast<std::uint32_t>(ctx.fpr[28]));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(972), ctx.gpr[16]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(976), ctx.gpr[17]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(980), ctx.gpr[18]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(984), ctx.gpr[19]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(988), ctx.gpr[20]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(992), ctx.gpr[21]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(996), ctx.gpr[22]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(1000), ctx.gpr[23]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(1004), ctx.gpr[30]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(1008), hot_regs.g31);
{ const bool branch_taken = ctx.fpu_condition();
ctx.gpr[16] = (hot_regs.g4 | 0u);
hot_regs.g5 = g5;
hot_regs.g29 = g29;
if (branch_taken) {
goto L_08A0FA40;
}
goto L_08A0FA00;
}
}
L_08A0FA00:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(72)));
hot_regs.g5 = (512u << 16u);
g4 = (g4 & hot_regs.g5);
{ const bool branch_taken = g4 != 0u;
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0FA38;
}
goto L_08A0FA14;
}
}
L_08A0FA14:
hot_regs.g31 = (0x08A0FA1Cu);
hot_regs.g4 = (ctx.gpr[16] | 0u);
goto L_08A0F384;
L_08A0FA1C:
hot_regs.g4 = (0u | 1u);
{ const bool branch_taken = hot_regs.g2 != hot_regs.g4;
// nop
if (branch_taken) {
goto L_08A0FA48;
}
goto L_08A0FA28;
}
L_08A0FA28:
hot_regs.g31 = (0x08A0FA30u);
// nop
goto L_08A0F284;
L_08A0FA30:
{ const bool branch_taken = 0u == 0u;
hot_regs.g5 = (hot_regs.g2 | 0u);
if (branch_taken) {
goto L_08A0FA54;
}
goto L_08A0FA38;
}
L_08A0FA38:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0131_entry, 131u, 111u, 0x08A110D4u>(ctx, &aot_mem, &hot_regs); return;
}
goto L_08A0FA40;
}
L_08A0FA40:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0131_entry, 131u, 111u, 0x08A110D4u>(ctx, &aot_mem, &hot_regs); return;
}
goto L_08A0FA48;
}
L_08A0FA48:
hot_regs.g31 = (0x08A0FA50u);
// nop
goto L_08A0F2E0;
L_08A0FA50:
hot_regs.g5 = (hot_regs.g2 | 0u);
goto L_08A0FA54;
L_08A0FA54:
{
std::uint32_t g7 = hot_regs.g7;
hot_regs.g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[16] + static_cast<std::uint32_t>(86))))));
g7 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7656)));
g7 = (static_cast<std::int32_t>(hot_regs.g6) < static_cast<std::int32_t>(g7) ? 1u : 0u);
{ const bool branch_taken = g7 == 0u;
hot_regs.g4 = (0u | 0u);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FA78;
}
goto L_08A0FA68;
}
}
L_08A0FA68:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g6 = hot_regs.g6;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
g6 = (g6 << 2u);
g4 = (g4 + g6);
g4 = (aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(0)));
hot_regs.g4 = g4;
hot_regs.g6 = g6;
goto L_08A0FA78;
}
L_08A0FA78:
hot_regs.g6 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(104)));
hot_regs.g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[16] + static_cast<std::uint32_t>(86))))));
hot_regs.g6 = (aot_mem.aot_load16(hot_regs.g6 + static_cast<std::uint32_t>(2)));
{ const bool branch_taken = hot_regs.g7 != hot_regs.g6;
// nop
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0131_entry, 131u, 7u, 0x08A101B8u>(ctx, &aot_mem, &hot_regs); return;
}
goto L_08A0FA8C;
}
L_08A0FA8C:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
{ const bool branch_taken = static_cast<std::int32_t>(g6) < 0;
g6 = (0u | 0u);
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FAAC;
}
goto L_08A0FA98;
}
}
L_08A0FA98:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
hot_regs.g7 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8672)));
g6 = (g6 << 6u);
{ const bool branch_taken = 0u == 0u;
g6 = (hot_regs.g7 + g6);
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FAAC;
}
goto L_08A0FAAC;
}
}
L_08A0FAAC:
{
std::uint32_t g6 = hot_regs.g6;
hot_regs.f20 = std::bit_cast<float>(aot_mem.aot_load32(g6 + static_cast<std::uint32_t>(0)));
g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
{ const bool branch_taken = static_cast<std::int32_t>(g6) < 0;
g6 = (0u | 0u);
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FAD0;
}
goto L_08A0FABC;
}
}
L_08A0FABC:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
hot_regs.g7 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8672)));
g6 = (g6 << 6u);
{ const bool branch_taken = 0u == 0u;
g6 = (hot_regs.g7 + g6);
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FAD0;
}
goto L_08A0FAD0;
}
}
L_08A0FAD0:
{
std::uint32_t g6 = hot_regs.g6;
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(g6 + static_cast<std::uint32_t>(4)));
g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
{ const bool branch_taken = static_cast<std::int32_t>(g6) < 0;
hot_regs.f22 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f12));
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FAF4;
}
goto L_08A0FAE0;
}
}
L_08A0FAE0:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
hot_regs.g7 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8672)));
g6 = (g6 << 6u);
{ const bool branch_taken = 0u == 0u;
g6 = (hot_regs.g7 + g6);
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FAF8;
}
goto L_08A0FAF4;
}
}
L_08A0FAF4:
hot_regs.g6 = (0u | 0u);
goto L_08A0FAF8;
L_08A0FAF8:
{
std::uint32_t g6 = hot_regs.g6;
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(g6 + static_cast<std::uint32_t>(8)));
g6 = (0u | 1u);
hot_regs.g7 = (static_cast<std::int32_t>(g6) < 6 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g7 == 0u;
ctx.fpr[26] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[24]));
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FBFC;
}
goto L_08A0FB0C;
}
}
L_08A0FB0C:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
{ const bool branch_taken = static_cast<std::int32_t>(g7) < 0;
g7 = (0u | 0u);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FB30;
}
goto L_08A0FB18;
}
}
L_08A0FB18:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8672)));
g7 = (g7 + hot_regs.g6);
g7 = (g7 << 6u);
{ const bool branch_taken = 0u == 0u;
g7 = (ctx.gpr[8] + g7);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FB30;
}
goto L_08A0FB30;
}
}
L_08A0FB30:
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(4)));
ctx.set_fpu_condition((hot_regs.f22 < hot_regs.f13));
// nop
if (!ctx.fpu_condition()) {
hot_regs.f22 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(4)));
goto L_08A0FB44;
}
goto L_08A0FB44;
L_08A0FB44:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
{ const bool branch_taken = static_cast<std::int32_t>(g7) < 0;
g7 = (0u | 0u);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FB68;
}
goto L_08A0FB50;
}
}
L_08A0FB50:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8672)));
g7 = (g7 + hot_regs.g6);
g7 = (g7 << 6u);
{ const bool branch_taken = 0u == 0u;
g7 = (ctx.gpr[8] + g7);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FB68;
}
goto L_08A0FB68;
}
}
L_08A0FB68:
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(4)));
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
if (ctx.fpu_condition()) {
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(4)));
goto L_08A0FB7C;
}
goto L_08A0FB7C;
L_08A0FB7C:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
{ const bool branch_taken = static_cast<std::int32_t>(g7) < 0;
g7 = (0u | 0u);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FBA0;
}
goto L_08A0FB88;
}
}
L_08A0FB88:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8672)));
g7 = (g7 + hot_regs.g6);
g7 = (g7 << 6u);
{ const bool branch_taken = 0u == 0u;
g7 = (ctx.gpr[8] + g7);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FBA0;
}
goto L_08A0FBA0;
}
}
L_08A0FBA0:
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(8)));
ctx.set_fpu_condition((ctx.fpr[26] < hot_regs.f13));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[26] = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(8)));
goto L_08A0FBB4;
}
goto L_08A0FBB4;
L_08A0FBB4:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
{ const bool branch_taken = static_cast<std::int32_t>(g7) < 0;
g7 = (0u | 0u);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FBD8;
}
goto L_08A0FBC0;
}
}
L_08A0FBC0:
{
std::uint32_t g7 = hot_regs.g7;
g7 = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(hot_regs.g4 + static_cast<std::uint32_t>(24))))));
ctx.gpr[8] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(8672)));
g7 = (g7 + hot_regs.g6);
g7 = (g7 << 6u);
{ const bool branch_taken = 0u == 0u;
g7 = (ctx.gpr[8] + g7);
hot_regs.g7 = g7;
if (branch_taken) {
goto L_08A0FBD8;
}
goto L_08A0FBD8;
}
}
L_08A0FBD8:
hot_regs.f13 = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(8)));
ctx.set_fpu_condition((ctx.fpr[24] <= hot_regs.f13));
// nop
if (ctx.fpu_condition()) {
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g7 + static_cast<std::uint32_t>(8)));
goto L_08A0FBEC;
}
goto L_08A0FBEC;
L_08A0FBEC:
{
std::uint32_t g6 = hot_regs.g6;
g6 = (g6 + static_cast<std::uint32_t>(1));
hot_regs.g7 = (static_cast<std::int32_t>(g6) < 6 ? 1u : 0u);
{ const bool branch_taken = hot_regs.g7 != 0u;
// nop
hot_regs.g6 = g6;
if (branch_taken) {
goto L_08A0FB0C;
}
goto L_08A0FBFC;
}
}
L_08A0FBFC:
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g5) > 0;
hot_regs.g4 = (static_cast<std::int32_t>(hot_regs.g5) < 2 ? 1u : 0u);
if (branch_taken) {
goto L_08A0FCFC;
}
goto L_08A0FC04;
}
L_08A0FC04:
{ const bool branch_taken = static_cast<std::int32_t>(hot_regs.g5) < 0;
// nop
if (branch_taken) {
goto L_08A0FC7C;
}
goto L_08A0FC0C;
}
L_08A0FC0C:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[20] = (0u | 0u);
ctx.gpr[19] = (0u | 255u);
ctx.gpr[18] = (0u | 0u);
ctx.gpr[17] = (0u | 0u);
ctx.gpr[21] = (g29 + static_cast<std::uint32_t>(144));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(160), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(164), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(168), std::bit_cast<std::uint32_t>(ctx.fpr[26]));
ctx.gpr[22] = (g29 + static_cast<std::uint32_t>(160));
hot_regs.g4 = (ctx.gpr[21] | 0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0FC40u);
hot_regs.g6 = (ctx.gpr[22] | 0u);
goto L_08A0F150;
}
L_08A0FC40:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
{ const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(152), std::bit_cast<std::uint32_t>(ctx.fpr[26]));
g4 = (ctx.gpr[22] | 0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0FC68u);
hot_regs.g6 = (ctx.gpr[21] | 0u);
hot_regs.g4 = g4;
goto L_08A0F150;
}
L_08A0FC68:
{ const std::uint32_t vfpu_address = ctx.gpr[22] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0FDF4;
}
goto L_08A0FC7C;
}
L_08A0FC7C:
{
float f28 = ctx.fpr[28];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[17] = (g29 + static_cast<std::uint32_t>(160));
hot_regs.f13 = ctx.fpr[24] + ctx.fpr[26];
g4 = (16128u << 16u);
hot_regs.f14 = std::bit_cast<float>(g4);
{ const float fs = hot_regs.f13; const float ft = hot_regs.f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f28 = std::bit_cast<float>(0x7FC00000u); else f28 = fs * ft; }
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(152), std::bit_cast<std::uint32_t>(f28));
ctx.gpr[18] = (g29 + static_cast<std::uint32_t>(144));
g4 = (ctx.gpr[17] | 0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0FCB0u);
hot_regs.g6 = (ctx.gpr[18] | 0u);
hot_regs.g4 = g4;
ctx.fpr[28] = f28;
goto L_08A0F150;
}
}
L_08A0FCB0:
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(152), std::bit_cast<std::uint32_t>(ctx.fpr[28]));
{ const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<1u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<4u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(16);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<5u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(32);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<6u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<std::uint32_t>(48);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<7u, 4u>(vfpu_value); }
{ float vfpu_matrix[16]{}, vfpu_target_raw[4]{}, vfpu_target[4]{}, vfpu_result[4]{};
ctx.read_vfpu_matrix(vfpu_matrix, 36u, 3u);
ctx.read_vfpu_vector_ct<1u, 3u>(vfpu_target_raw);
constexpr std::uint32_t vfpu_side = 3u;
constexpr std::uint32_t vfpu_input_length = 3u;
for (std::uint32_t i = 0; i < 4u; ++i) vfpu_target[i] = i < vfpu_input_length ? vfpu_target_raw[i] : 0.0f;
if (vfpu_side - 1u >= vfpu_input_length) vfpu_target[vfpu_side - 1u] = 1.0f;
for (std::uint32_t row = 0; row + 1u < vfpu_side; ++row) {
float sum = 0.0f;
for (std::uint32_t column = 0; column < vfpu_side; ++column) sum += vfpu_matrix[row * 4u + column] * vfpu_target[column];
vfpu_result[row] = sum;
}
float vfpu_final_row[4]{vfpu_matrix[(vfpu_side - 1u) * 4u + 0u], vfpu_matrix[(vfpu_side - 1u) * 4u + 1u],
vfpu_matrix[(vfpu_side - 1u) * 4u + 2u], vfpu_matrix[(vfpu_side - 1u) * 4u + 3u]};
ctx.apply_vfpu_source_prefix_ct<4u, 0u>(vfpu_final_row);
ctx.apply_vfpu_source_prefix_ct<4u, 1u>(vfpu_target);
for (std::uint32_t column = 0; column < 4u; ++column) vfpu_result[vfpu_side - 1u] += vfpu_final_row[column] * vfpu_target[column];
const std::uint32_t vfpu_destination_prefix = ctx.vfpu_ctrl[2];
const std::uint32_t vfpu_last_lane = vfpu_side - 1u;
ctx.vfpu_ctrl[2] = ((vfpu_destination_prefix & (1u << 8u)) << vfpu_last_lane) |
((vfpu_destination_prefix & 3u) << (vfpu_last_lane * 2u));
ctx.write_vfpu_vector_with_destination_prefix(vfpu_result, 0u, vfpu_side); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 3u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<7u, 3u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 3u; ++i) vfpu_d[i] = vfpu_s[i] + vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 3u>(vfpu_d); }
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const std::uint32_t vfpu_address = ctx.gpr[17] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0131_entry, 131u, 111u, 0x08A110D4u>(ctx, &aot_mem, &hot_regs); return;
}
goto L_08A0FCFC;
}
L_08A0FCFC:
{ const bool branch_taken = hot_regs.g4 != 0u;
hot_regs.g4 = (static_cast<std::int32_t>(hot_regs.g5) < 3 ? 1u : 0u);
if (branch_taken) {
goto L_08A0FD7C;
}
goto L_08A0FD04;
}
L_08A0FD04:
{ const bool branch_taken = hot_regs.g4 == 0u;
// nop
if (branch_taken) {
goto L_08A0FC7C;
}
goto L_08A0FD0C;
}
L_08A0FD0C:
{
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[20] = (0u | 255u);
ctx.gpr[19] = (0u | 0u);
ctx.gpr[18] = (0u | 0u);
ctx.gpr[17] = (0u | 2u);
ctx.gpr[21] = (g29 + static_cast<std::uint32_t>(160));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(152), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
ctx.gpr[22] = (g29 + static_cast<std::uint32_t>(144));
hot_regs.g4 = (ctx.gpr[21] | 0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0FD40u);
hot_regs.g6 = (ctx.gpr[22] | 0u);
goto L_08A0F150;
}
L_08A0FD40:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
{ const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(152), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
g4 = (ctx.gpr[21] | 0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0FD68u);
hot_regs.g6 = (ctx.gpr[22] | 0u);
hot_regs.g4 = g4;
goto L_08A0F150;
}
L_08A0FD68:
{ const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A0FDF4;
}
goto L_08A0FD7C;
}
L_08A0FD7C:
{
float f28 = ctx.fpr[28];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
ctx.gpr[20] = (0u | 255u);
ctx.gpr[19] = (0u | 128u);
ctx.gpr[18] = (0u | 0u);
ctx.gpr[17] = (0u | 1u);
ctx.gpr[21] = (g29 + static_cast<std::uint32_t>(160));
hot_regs.f13 = ctx.fpr[24] + ctx.fpr[26];
g4 = (16128u << 16u);
hot_regs.f14 = std::bit_cast<float>(g4);
{ const float fs = hot_regs.f13; const float ft = hot_regs.f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f28 = std::bit_cast<float>(0x7FC00000u); else f28 = fs * ft; }
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(152), std::bit_cast<std::uint32_t>(f28));
ctx.gpr[22] = (g29 + static_cast<std::uint32_t>(144));
g4 = (ctx.gpr[21] | 0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0FDC0u);
hot_regs.g6 = (ctx.gpr[22] | 0u);
hot_regs.g4 = g4;
ctx.fpr[28] = f28;
goto L_08A0F150;
}
}
L_08A0FDC0:
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
{ const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
g4 = (g29 + static_cast<std::uint32_t>(16));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(hot_regs.f20));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(hot_regs.f22));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(152), std::bit_cast<std::uint32_t>(ctx.fpr[28]));
g4 = (ctx.gpr[21] | 0u);
hot_regs.g5 = (ctx.gpr[16] | 0u);
hot_regs.g31 = (0x08A0FDE8u);
hot_regs.g6 = (ctx.gpr[22] | 0u);
hot_regs.g4 = g4;
goto L_08A0F150;
}
L_08A0FDE8:
{ const std::uint32_t vfpu_address = ctx.gpr[21] + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(32));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
goto L_08A0FDF4;
L_08A0FDF4:
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(9748)));
hot_regs.g4 = (16128u << 16u);
hot_regs.f13 = std::bit_cast<float>(hot_regs.g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A0FE78;
}
goto L_08A0FE10;
}
L_08A0FE10:
hot_regs.g4 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g5 = (hot_regs.g29 + static_cast<std::uint32_t>(176));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = hot_regs.g5 + static_cast<std::uint32_t>(0);
aot_mem.aot_store32(vfpu_address + 0u, std::bit_cast<std::uint32_t>(vfpu_value[0]));
aot_mem.aot_store32(vfpu_address + 4u, std::bit_cast<std::uint32_t>(vfpu_value[1]));
aot_mem.aot_store32(vfpu_address + 8u, std::bit_cast<std::uint32_t>(vfpu_value[2]));
aot_mem.aot_store32(vfpu_address + 12u, std::bit_cast<std::uint32_t>(vfpu_value[3])); }
hot_regs.f12 = std::bit_cast<float>(0u);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(192), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(196), std::bit_cast<std::uint32_t>(hot_regs.f12));
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(200), std::bit_cast<std::uint32_t>(hot_regs.f12));
hot_regs.g6 = (hot_regs.g29 + static_cast<std::uint32_t>(192));
hot_regs.g4 = (16640u << 16u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
hot_regs.f13 = std::bit_cast<float>(ctx.gpr[20]);
hot_regs.f13 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(hot_regs.f13)));
hot_regs.g4 = (15232u << 16u);
hot_regs.f15 = std::bit_cast<float>(hot_regs.g4);
{ const float fs = hot_regs.f13; const float ft = hot_regs.f15; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f13 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f13 = fs * ft; }
hot_regs.f14 = std::bit_cast<float>(ctx.gpr[19]);
hot_regs.f14 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(hot_regs.f14)));
{ const float fs = hot_regs.f14; const float ft = hot_regs.f15; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f14 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f14 = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(ctx.gpr[18]);
ctx.fpr[16] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[16])));
{ const float fs = ctx.fpr[16]; const float ft = hot_regs.f15; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f15 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f15 = fs * ft; }
hot_regs.g4 = (0u | 0u);
hot_regs.g7 = (0u | 1u);
hot_regs.g31 = (0x08A0FE78u);
ctx.gpr[8] = (0u | 1u);
if (rt.invoke_chained_direct<&recomp_unit_0200_entry, 200u, 403u, 0x08B25C64u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0FE78u) goto L_08A0FE78;
return;
L_08A0FE78:
{
std::uint32_t g4 = hot_regs.g4;
g4 = (15692u << 16u);
hot_regs.f12 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(9748)));
g4 = (g4 | 52429u);
hot_regs.f13 = std::bit_cast<float>(g4);
ctx.set_fpu_condition((hot_regs.f12 <= hot_regs.f13));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
hot_regs.g4 = g4;
if (branch_taken) {
goto L_08A0FF64;
}
goto L_08A0FE98;
}
}
L_08A0FE98:
hot_regs.f12 = std::bit_cast<float>(ctx.gpr[20]);
hot_regs.f14 = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(9748)));
hot_regs.f13 = std::bit_cast<float>(ctx.gpr[19]);
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-23440)));
hot_regs.f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(hot_regs.f12)));
hot_regs.f13 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(hot_regs.f13)));
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(hot_regs.g4 + static_cast<std::uint32_t>(11156)));
hot_regs.f15 = std::bit_cast<float>(ctx.gpr[18]);
hot_regs.f15 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(hot_regs.f15)));
{ const float fs = hot_regs.f12; const float ft = hot_regs.f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f12 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f12 = fs * ft; }
{ const float fs = hot_regs.f13; const float ft = hot_regs.f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[17] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[17] = fs * ft; }
hot_regs.g5 = (15872u << 16u);
ctx.fpr[19] = std::bit_cast<float>(hot_regs.g5);
{ const float fs = hot_regs.f12; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[18] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[18] = fs * ft; }
{ const float fs = ctx.fpr[17]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[17] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[17] = fs * ft; }
{ const float fs = hot_regs.f15; const float ft = hot_regs.f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) hot_regs.f14 = std::bit_cast<float>(0x7FC00000u); else hot_regs.f14 = fs * ft; }
hot_regs.g6 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-5048)));
ctx.gpr[11] = (16256u << 16u);
{ const float fs = ctx.fpr[18]; const float ft = ctx.fpr[19]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[18] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[18] = fs * ft; }
{ const float fs = ctx.fpr[17]; const float ft = ctx.fpr[19]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[17] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[17] = fs * ft; }
{ const float fs = hot_regs.f14; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[16] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[16] = fs * ft; }
hot_regs.g4 = (16640u << 16u);
ctx.gpr[8] = (49408u << 16u);
hot_regs.f13 = std::bit_cast<float>(0u);
ctx.fpr[18] = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[18]));
hot_regs.g5 = (16704u << 16u);
ctx.fpr[17] = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[17]));
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[19]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[16] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[16] = fs * ft; }
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(0), 0u);
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
hot_regs.g2 = (16928u << 16u);
hot_regs.f15 = std::bit_cast<float>(ctx.gpr[8]);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(4), 0u);
ctx.gpr[10] = (std::bit_cast<std::uint32_t>(ctx.fpr[17]));
hot_regs.g7 = (hot_regs.g29 + static_cast<std::uint32_t>(16));
ctx.fpr[0] = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[16]));
hot_regs.g4 = (ctx.gpr[16] | 0u);
ctx.fpr[17] = std::bit_cast<float>(ctx.gpr[11]);
ctx.gpr[10] = (ctx.gpr[10] & 255u);
ctx.gpr[9] = (std::bit_cast<std::uint32_t>(ctx.fpr[18]));
ctx.gpr[8] = (0u | 128u);
hot_regs.f14 = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f13));
ctx.gpr[9] = (ctx.gpr[9] & 255u);
ctx.fpr[16] = std::bit_cast<float>(hot_regs.g5);
aot_mem.aot_store32(hot_regs.g29 + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(hot_regs.f13));
ctx.gpr[11] = (std::bit_cast<std::uint32_t>(ctx.fpr[0]));
hot_regs.g5 = (0u | 2u);
ctx.fpr[19] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(hot_regs.f13));
ctx.gpr[11] = (ctx.gpr[11] & 255u);
hot_regs.g31 = (0x08A0FF64u);
ctx.fpr[18] = std::bit_cast<float>(hot_regs.g2);
if (rt.invoke_chained_direct<&recomp_unit_0164_entry, 164u, 490u, 0x08A97518u>(ctx, &aot_mem, &hot_regs) && ctx.pc == 0x08A0FF64u) goto L_08A0FF64;
return;
L_08A0FF64:
hot_regs.g4 = (2236u << 16u);
hot_regs.g4 = (hot_regs.g4 + static_cast<std::uint32_t>(32304));
hot_regs.g4 = (hot_regs.g4 + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 12u))};
ctx.write_vfpu_vector_ct<0u, 4u>(vfpu_value); }
hot_regs.g4 = (ctx.gpr[16] + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = hot_regs.g4 + static_cast<std::uint32_t>(0);
float vfpu_value[4]{
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 0u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 4u)),
std::bit_cast<float>(aot_mem.aot_load32(vfpu_address + 8u)),
std::bit_cast<float>(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>();
hot_regs.g4 = (ctx.vfpu_scalar_bits_ct<28u>());
hot_regs.f12 = std::bit_cast<float>(hot_regs.g4);
hot_regs.f13 = std::bit_cast<float>(0u);
ctx.set_fpu_condition((hot_regs.f12 < hot_regs.f13));
// nop
if (!ctx.fpu_condition()) {
hot_regs.g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-23440)));
(void)rt.invoke_chained_direct<&recomp_unit_0131_entry, 131u, 3u, 0x08A1004Cu>(ctx, &aot_mem, &hot_regs); return;
}
goto L_08A0FF9C;
L_08A0FF9C:
{
float f12 = hot_regs.f12;
float f13 = hot_regs.f13;
float f14 = hot_regs.f14;
float f15 = hot_regs.f15;
float f16 = ctx.fpr[16];
{
std::uint32_t g4 = hot_regs.g4;
std::uint32_t g29 = hot_regs.g29;
g4 = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-23440)));
f12 = std::bit_cast<float>(ctx.gpr[20]);
hot_regs.g5 = (16179u << 16u);
f14 = std::bit_cast<float>(ctx.gpr[19]);
f13 = std::bit_cast<float>(aot_mem.aot_load32(g4 + static_cast<std::uint32_t>(11136)));
f12 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f12)));
g4 = (hot_regs.g5 | 13107u);
f14 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f14)));
f15 = std::bit_cast<float>(g4);
{ const float fs = f13; const float ft = f15; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
f16 = std::bit_cast<float>(ctx.gpr[18]);
f16 = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(f16)));
hot_regs.g7 = (16352u << 16u);
{ const float fs = f13; const float ft = f12; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f12 = std::bit_cast<float>(0x7FC00000u); else f12 = fs * ft; }
{ const float fs = f13; const float ft = f14; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f14 = std::bit_cast<float>(0x7FC00000u); else f14 = fs * ft; }
hot_regs.g2 = (0u | 1u);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(0), hot_regs.g2);
ctx.gpr[8] = (16968u << 16u);
f12 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f12));
{ const float fs = f13; const float ft = f16; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) f13 = std::bit_cast<float>(0x7FC00000u); else f13 = fs * ft; }
ctx.gpr[10] = (16320u << 16u);
f14 = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(f14));
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(4), 0u);
f15 = std::bit_cast<float>(ctx.gpr[10]);
aot_mem.aot_store32(g29 + static_cast<std::uint32_t>(8), 0u);
hot_regs.g4 = g4;
hot_regs.f12 = f12;
hot_regs.f13 = f13;
hot_regs.f14 = f14;
hot_regs.f15 = f15;
ctx.fpr[16] = f16;
ctx.pc = 0x08A10000u; return;}
}
}
void recomp_unit_0130(Runtime &rt, AllegrexContext &ctx) {
auto aot_mem = rt.memory().aot_fast_view();
AotHotRegisterCache hot_regs(ctx);
recomp_unit_0130_entry(rt, ctx, 0u, aot_mem, hot_regs);
hot_regs.flush_to(ctx);
}
void register_generated_unit_130(Runtime &runtime) {
runtime.register_generated_unit(130u, 0x08A0C000u, 16384u, &recomp_unit_0130, &recomp_unit_0130_entry);
runtime.register_function(0x08A0C000u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C008u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C038u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C048u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C05Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C070u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C084u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C094u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C0B4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C0D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C0E8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C0FCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C12Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C13Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C150u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C160u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C180u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C1B4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C1C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C1D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C1E8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C1F0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C1F8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C200u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C208u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C214u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C21Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C228u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C230u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C240u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C250u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C260u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C278u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C288u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C2ACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C2D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C2E4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C2F0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C2FCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C308u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C314u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C320u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C32Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C338u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C344u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C350u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C35Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C370u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C390u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C39Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3A4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3B0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3C8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C3F8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C404u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C410u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C424u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C434u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C458u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C468u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C478u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C494u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C554u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C56Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C578u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C5D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C5D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C63Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C648u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C660u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C680u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C698u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C6B4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C6CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C6ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C700u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C708u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C724u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C770u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C778u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C77Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C7BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C808u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C810u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C824u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C8C0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C8C8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C8D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C8D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C8ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C914u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C920u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C934u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C950u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C960u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C97Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C98Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C9C8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C9D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0C9D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CA04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CA0Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CA44u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CA4Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CA78u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CA88u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CA98u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CAD4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CB24u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CB2Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CB40u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CBD8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CBE0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CBE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CBECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CC04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CC2Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CC38u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CC4Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CC68u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CC78u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CC94u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CCA4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CCE0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CCE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CCF0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CD1Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CD24u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CD5Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CD64u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CD90u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CDA0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CDB0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CDECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CE34u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CE38u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CE40u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CE50u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CED4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CEDCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CEECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CEF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CEFCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF3Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF44u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF4Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF74u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF7Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF84u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CF90u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CFA8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CFD0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CFD8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0CFE0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D008u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D010u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D014u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D028u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D040u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D054u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D058u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D060u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D068u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D0D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D0E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D0E8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D110u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D118u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D11Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D120u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D12Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D164u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D1DCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D1E4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D1ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D214u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D21Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D228u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D238u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D240u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D248u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D2A0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D2A8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D2B0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D2D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D2E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D2E4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D2ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D340u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D348u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D350u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D378u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D380u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D384u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D38Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D408u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D410u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D418u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D440u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D448u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D44Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D454u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D4D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D4D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D4E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D508u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D510u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D514u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D51Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D528u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D53Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D580u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D588u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D590u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D5B8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D5C0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D5C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D5CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D5D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D5E4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D604u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D624u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D644u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D660u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D6C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D6CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D6D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D6D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D718u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D720u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D728u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D730u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D738u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D73Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D77Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D7E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D7E4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D7ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D7F4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D848u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D884u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D888u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D898u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D93Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D944u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D988u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0D990u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DA04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DA10u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DA28u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DA48u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DA60u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DA80u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DA9Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DAB8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DABCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DAC8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DAD0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DAECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DB38u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DB40u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DB7Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DB88u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DBE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DBFCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC18u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC2Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC34u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC3Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC40u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC48u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC50u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC54u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DC8Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DCB8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DCD0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DCF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD14u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD1Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD24u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD2Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD4Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD64u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD6Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD80u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DD84u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DDA0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DDDCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DDE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DDF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DE18u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DE28u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DE7Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DE98u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DEC0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DECCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DED4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DEDCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DEE0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DF0Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DF50u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DF60u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DF78u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DF8Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DF98u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DFA0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DFA4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0DFD0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E004u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E014u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E028u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E050u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E05Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E064u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E06Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E074u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E07Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E084u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E08Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E094u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E098u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E0C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E108u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E118u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E130u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E144u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E154u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E15Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E188u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E1BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E1CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E1D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E1E8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E20Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E214u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E224u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E238u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E24Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E264u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E280u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E288u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E29Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E2A4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E2B8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E2C0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E2D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E2DCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E2F0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E2F8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E31Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E324u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E340u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E348u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E35Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E364u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E380u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E388u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E3A4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E3ACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E3C8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E3D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E3ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E3F4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E418u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E420u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E434u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E43Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E450u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E458u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E46Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E474u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E490u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E498u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E4BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E4C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E4E8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E4F0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E514u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E51Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E530u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E538u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E554u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E55Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E570u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E578u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E594u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E59Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E5B8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E5C0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E5C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E5D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E5E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E5F0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E5F4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E604u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E608u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E610u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E618u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E624u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E640u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E650u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E664u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E670u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E68Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E69Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E6ACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E6B4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E700u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E70Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E718u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E734u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E74Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E76Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E788u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E790u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E7ACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E7C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E7D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E824u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E844u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E874u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E8A0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E8CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E8ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E900u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E918u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E92Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E93Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E94Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E95Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E98Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E994u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E9A8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E9C0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E9C8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0E9D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EA08u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EA1Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EA30u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EA48u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EA54u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EA64u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EA90u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EAA4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EAB4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EAC4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EADCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EAE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EB00u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EB24u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EBD8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EBE0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EBF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC14u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC20u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC28u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC34u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC3Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC58u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC78u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC84u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC94u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EC98u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECA4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECB4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECBCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECC0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECC8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECD0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECDCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ECE4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ED00u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ED10u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ED34u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ED4Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ED70u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0ED90u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EDB4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EDD4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EDF0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EE0Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EE2Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EE48u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EE50u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EE6Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EE84u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EE94u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EEACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EEB8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EEC4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EED0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EEDCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EEE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EEF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EF00u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EF04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EF18u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EF28u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EF50u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EF58u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EF9Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFA8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFB8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFC4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFD0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFD8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFE0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0EFF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F008u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F050u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F150u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F178u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F198u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1A4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1C8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1E8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F1F4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F214u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F220u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F238u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F244u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F250u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F258u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F260u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F268u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F270u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F278u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F27Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F284u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F2ACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F2BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F2C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F2CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F2D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F2E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F308u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F318u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F320u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F328u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F330u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F33Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F354u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F360u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F368u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F370u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F374u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F37Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F384u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F39Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F3B4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F3C8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F3ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F404u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F408u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F41Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F430u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F438u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F43Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F448u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4ACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4E4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4F4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F4FCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F508u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F50Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F524u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F52Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F538u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F544u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F56Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F5D0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F5E0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F5F4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F5FCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F60Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F620u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F628u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F630u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F648u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F658u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F668u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F670u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F680u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F688u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F690u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F698u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F6A0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F6A4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F6C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F6CCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F6D4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F6ECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F700u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F76Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F77Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F790u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F798u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F7A8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F7BCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F7C4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F7D8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F7F8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F808u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F818u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F820u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F830u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F838u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F840u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F848u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F850u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F854u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F874u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F87Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F884u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F89Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F8B0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F91Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F92Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F940u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F948u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F958u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F96Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F974u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F978u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0F9A4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA00u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA14u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA1Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA28u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA30u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA38u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA40u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA48u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA50u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA54u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA68u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA78u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA8Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FA98u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FAACu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FABCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FAD0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FAE0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FAF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FAF8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB0Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB18u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB30u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB44u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB50u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB68u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB7Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FB88u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FBA0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FBB4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FBC0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FBD8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FBECu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FBFCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FC04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FC0Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FC40u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FC68u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FC7Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FCB0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FCFCu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FD04u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FD0Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FD40u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FD68u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FD7Cu, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FDC0u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FDE8u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FDF4u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FE10u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FE78u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FE98u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FF64u, &recomp_unit_0130, "recomp_unit_0130");
runtime.register_function(0x08A0FF9Cu, &recomp_unit_0130, "recomp_unit_0130");
}
} // namespace psprecomp