Files
PSPRecomp/profiles/vcs/generated/generated_unit_0134.cpp
T

9711 lines
497 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_0134[4094] = {
1, 0, 0, 2, 0, 0, 0, 3, 0, 0, 0, 0, 0, 0, 0, 0, 0, 4, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 6,
0, 7, 0, 8, 0, 9, 0, 10, 0, 11, 0, 12, 0, 13, 0, 0, 14, 0, 15, 0, 0, 0, 16, 0, 17, 18, 0, 0, 19, 0, 20, 0,
21, 22, 0, 0, 0, 0, 0, 0, 23, 0, 0, 24, 0, 0, 0, 0, 0, 0, 25, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 26, 0, 27, 0, 28, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 29, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 30, 0, 0, 0,
0, 0, 0, 0, 0, 31, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 32, 0, 0, 0, 0, 0, 0, 0, 33, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 34, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 35, 0, 0, 0, 0, 0, 0, 0, 0, 0, 36, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 37, 0, 0, 0, 38, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 39, 0, 0, 0, 0, 0, 0, 40, 0, 0, 0, 0, 0, 0, 0, 0, 41, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 42, 0, 0,
43, 0, 0, 0, 0, 0, 0, 0, 0, 0, 44, 0, 45, 0, 0, 0, 0, 0, 0, 0, 46, 0, 47, 0, 0, 48, 0, 0, 0, 0, 0, 0,
0, 0, 0, 49, 0, 0, 0, 0, 0, 0, 0, 50, 0, 51, 52, 0, 53, 0, 54, 0, 55, 0, 56, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 57, 0, 0, 58, 0, 59, 0, 60, 0, 0, 61, 0, 62, 0, 63, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 64, 0, 0, 0,
65, 0, 66, 67, 0, 68, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 69, 0, 0, 0, 70, 0, 71, 72, 0, 73, 0, 74, 0, 0, 0,
0, 0, 75, 0, 0, 0, 0, 0, 76, 0, 77, 0, 78, 79, 0, 80, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 81, 0, 0, 0, 82, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 83, 0, 0, 84, 0, 0, 85, 0, 0, 86, 0, 0, 87,
0, 88, 0, 0, 0, 0, 0, 0, 0, 89, 0, 0, 0, 0, 0, 90, 0, 0, 0, 0, 91, 0, 0, 92, 0, 0, 0, 93, 0, 0, 0, 0,
0, 94, 0, 0, 95, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 96, 0, 0, 0, 97, 0, 0, 98, 0, 99, 0, 0, 0, 0, 0, 0, 100,
0, 0, 101, 0, 0, 0, 0, 0, 0, 0, 0, 102, 0, 0, 0, 103, 0, 104, 0, 0, 0, 0, 105, 106, 0, 107, 0, 0, 0, 0, 108, 0,
0, 109, 0, 110, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 111, 0, 0, 112, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 113, 0, 0, 0, 114, 0, 0, 0, 0, 0, 0, 0, 0, 115, 0, 0,
0, 0, 116, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 117, 0, 0, 0, 0, 0, 0, 0, 0, 118, 0, 0, 0, 0, 119, 0, 0, 0, 120,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 121, 0, 0, 0, 0, 0, 0, 0, 0, 122, 0, 0, 0, 0, 123, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 124, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 125, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 126, 0, 0, 127, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
128, 0, 0, 0, 129, 0, 0, 0, 0, 0, 0, 0, 0, 130, 0, 0, 0, 0, 131, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 132, 0, 0,
0, 0, 0, 0, 0, 0, 133, 0, 0, 0, 0, 134, 0, 0, 0, 135, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 136, 0, 0, 0, 0, 0,
0, 0, 0, 137, 0, 0, 0, 0, 138, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 139, 0, 0, 0, 0, 0, 0, 140, 0, 0, 0, 0, 141,
0, 0, 0, 0, 0, 0, 0, 142, 0, 0, 143, 0, 0, 144, 0, 0, 0, 0, 0, 145, 0, 0, 146, 147, 0, 0, 0, 148, 0, 0, 0, 0,
0, 0, 0, 149, 0, 0, 150, 0, 0, 151, 0, 0, 0, 0, 0, 152, 0, 0, 153, 154, 0, 0, 0, 155, 0, 0, 0, 0, 0, 0, 0, 156,
0, 0, 0, 0, 0, 0, 157, 0, 0, 0, 0, 0, 0, 0, 0, 158, 0, 0, 0, 159, 0, 160, 0, 161, 0, 162, 0, 163, 0, 164, 0, 0,
165, 0, 166, 0, 0, 0, 167, 0, 0, 0, 0, 0, 0, 0, 0, 0, 168, 0, 0, 0, 169, 0, 0, 170, 0, 171, 0, 172, 0, 173, 0, 174,
175, 0, 176, 0, 177, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 178, 0, 179, 0, 180, 0, 181, 0, 182, 0, 183, 0, 0, 184, 0, 185,
0, 186, 0, 187, 0, 0, 0, 188, 0, 0, 189, 0, 190, 0, 191, 192, 0, 0, 0, 0, 193, 0, 0, 0, 0, 0, 0, 0, 0, 0, 194, 0,
0, 0, 0, 0, 0, 0, 195, 0, 0, 0, 196, 0, 0, 197, 0, 198, 199, 200, 0, 0, 0, 0, 201, 0, 0, 202, 0, 0, 0, 0, 203, 0,
0, 0, 0, 0, 0, 204, 0, 0, 0, 205, 0, 206, 0, 207, 0, 208, 0, 209, 0, 210, 0, 0, 211, 0, 212, 0, 213, 0, 214, 0, 215, 0,
216, 0, 0, 217, 0, 0, 0, 218, 0, 0, 0, 0, 0, 0, 219, 0, 220, 221, 0, 222, 0, 0, 223, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 224, 0, 225, 0, 0, 0, 0, 226, 0, 227, 0, 0, 0, 0, 0, 0, 0, 228, 0, 0, 229, 0, 230, 0, 0, 231, 0,
0, 0, 0, 0, 0, 0, 232, 0, 0, 233, 0, 0, 0, 0, 0, 0, 234, 0, 235, 0, 0, 0, 0, 236, 0, 0, 0, 237, 0, 0, 238, 0,
0, 239, 0, 0, 0, 240, 0, 0, 241, 0, 0, 0, 242, 0, 0, 243, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 244, 0,
245, 0, 0, 0, 246, 247, 0, 248, 0, 0, 249, 0, 250, 0, 251, 0, 252, 0, 253, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 254, 0, 255,
0, 0, 0, 0, 0, 0, 0, 256, 0, 257, 0, 0, 0, 0, 0, 0, 258, 259, 0, 0, 0, 0, 0, 0, 0, 0, 260, 0, 0, 0, 0, 0,
261, 0, 0, 0, 0, 0, 262, 0, 263, 0, 0, 0, 264, 265, 0, 266, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 267, 0, 268, 0, 0, 0,
0, 0, 0, 0, 0, 269, 0, 0, 0, 0, 270, 0, 0, 0, 0, 0, 0, 271, 0, 0, 272, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 273, 0, 0, 0, 0, 274, 0, 0, 0, 275, 0, 276, 0, 277, 0, 278, 0, 279, 0, 280,
0, 281, 282, 0, 283, 0, 0, 0, 284, 0, 0, 0, 285, 0, 286, 0, 287, 0, 288, 0, 0, 289, 0, 0, 0, 290, 0, 0, 0, 291, 0, 0,
0, 292, 0, 0, 0, 293, 294, 0, 295, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 296, 0, 0, 0, 0, 0, 0, 297, 0, 0, 298, 0,
0, 299, 0, 0, 300, 0, 0, 0, 0, 0, 0, 0, 0, 0, 301, 0, 0, 0, 0, 0, 0, 0, 302, 0, 303, 0, 0, 0, 0, 304, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 305, 0, 0, 0, 0, 0, 0, 0, 0, 0, 306, 0, 307, 0, 0, 0, 308, 0, 309, 0, 0, 0, 0,
0, 0, 0, 0, 310, 0, 0, 0, 0, 0, 0, 311, 0, 312, 0, 313, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 314, 0, 0, 0, 0, 0, 315, 0, 0, 316, 0, 0, 0, 317, 0, 0, 0, 0, 318, 0, 0, 319,
0, 0, 0, 0, 0, 0, 320, 0, 0, 321, 0, 322, 0, 0, 323, 0, 324, 0, 0, 0, 0, 0, 0, 0, 0, 0, 325, 0, 0, 326, 0, 0,
0, 327, 0, 0, 328, 0, 329, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 330, 0, 0, 0, 0, 331, 0, 0, 0, 0, 332, 0,
0, 0, 0, 333, 0, 0, 0, 334, 0, 335, 336, 0, 0, 337, 338, 339, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 340, 0, 0,
0, 341, 0, 0, 0, 0, 0, 342, 0, 0, 0, 0, 0, 343, 0, 0, 0, 0, 0, 0, 344, 0, 0, 0, 0, 345, 0, 0, 0, 0, 0, 346,
0, 0, 347, 0, 0, 0, 0, 0, 0, 0, 0, 348, 0, 0, 0, 349, 0, 0, 350, 0, 0, 351, 0, 0, 0, 0, 0, 352, 0, 0, 353, 0,
0, 0, 0, 0, 0, 0, 0, 354, 0, 0, 0, 355, 0, 356, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 357, 0, 0, 358, 0, 359,
0, 0, 0, 0, 360, 0, 0, 0, 0, 0, 0, 0, 361, 0, 0, 362, 0, 0, 0, 0, 363, 0, 0, 0, 0, 0, 0, 0, 0, 0, 364, 0,
365, 0, 366, 0, 0, 0, 0, 0, 0, 367, 0, 368, 0, 0, 0, 0, 0, 0, 0, 0, 369, 0, 0, 370, 0, 371, 0, 0, 0, 0, 0, 0,
0, 0, 372, 0, 373, 0, 0, 0, 0, 0, 0, 0, 374, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 375, 0, 0, 376, 0, 377,
0, 0, 0, 0, 0, 0, 378, 0, 379, 0, 0, 0, 0, 0, 0, 0, 0, 380, 0, 0, 381, 0, 382, 0, 383, 0, 0, 0, 0, 0, 0, 0,
0, 0, 384, 385, 0, 0, 0, 386, 0, 0, 0, 0, 387, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 388, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 389, 0, 0, 390, 0, 391, 0, 0, 0, 0, 0, 0, 392, 0, 393, 0, 0, 0, 0, 0, 394, 0, 395, 0, 0, 396, 0, 0,
397, 0, 398, 0, 399, 0, 0, 0, 0, 0, 400, 0, 401, 0, 0, 0, 0, 402, 0, 0, 403, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 404, 0, 0, 405, 0, 0, 406, 0, 407, 0, 0, 0, 0, 0, 0, 0, 0, 0, 408, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 409, 0, 0, 410, 0, 411, 0, 0, 0, 0, 0, 0, 412, 0, 413, 0, 0, 0, 0, 0, 0, 0, 0, 414, 0, 0, 415, 0, 416, 0,
417, 0, 0, 0, 0, 0, 0, 0, 0, 0, 418, 419, 0, 0, 0, 420, 0, 0, 0, 0, 421, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 422,
0, 423, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 424, 0, 0, 0, 0, 0, 425, 0, 0, 0, 0, 0, 0, 0, 0, 0, 426, 0, 0, 0,
0, 0, 0, 0, 427, 0, 0, 0, 0, 0, 0, 0, 428, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 429, 0, 430, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
431, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 432, 0, 0, 433, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 434, 0, 0, 0, 435, 436, 0, 0, 437, 0, 0, 438, 0, 0, 439, 0, 440, 0, 441, 442, 0, 0, 0, 0, 443, 0, 0, 0,
0, 0, 444, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 445, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 446, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 447, 0, 448, 0, 449, 0, 450, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 451, 0, 452, 0, 0, 0,
453, 0, 454, 0, 0, 455, 0, 456, 0, 0, 0, 457, 0, 458, 0, 0, 0, 459, 0, 460, 0, 0, 0, 461, 0, 0, 0, 0, 0, 0, 462, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 463, 464, 0, 0, 0, 0, 0, 0, 0, 0, 465, 0, 0, 0, 466, 0, 0, 0, 0, 0, 0, 0,
0, 0, 467, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 468, 0, 469,
0, 0, 0, 0, 0, 0, 470, 0, 471, 0, 0, 0, 0, 0, 0, 472, 0, 0, 0, 0, 0, 0, 0, 473, 0, 0, 474, 0, 475, 0, 476, 0,
477, 0, 478, 0, 479, 0, 480, 0, 481, 0, 482, 0, 483, 0, 0, 0, 0, 0, 484, 0, 0, 0, 0, 485, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 486, 0, 0, 487, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
488, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 489, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 490, 0, 0, 0, 0, 0, 0, 0,
491, 0, 0, 0, 0, 0, 0, 0, 492, 0, 0, 0, 0, 0, 0, 0, 0, 493, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 494, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 495, 0, 0, 496, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
497, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 498, 0, 0, 0, 0, 0, 0, 0, 499, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 500, 0, 0, 0, 0, 501, 0, 502, 0, 503, 0, 0, 0, 0, 504, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 505, 0, 506, 0, 507, 0, 0, 508, 0, 0, 0, 0, 509, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 510, 0,
0, 0, 0, 511, 0, 0, 0, 0, 0, 0, 512, 0, 513, 0, 514, 0, 0, 0, 0, 515, 0, 0, 0, 0, 0, 0, 516, 0, 517, 0, 0, 0,
0, 518, 0, 519, 0, 520, 0, 0, 521, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 522,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 523, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 524, 0, 525, 0, 526,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 527, 0, 0, 0, 528, 0, 529, 0, 0, 530, 0, 0, 0, 0, 531, 0, 532,
0, 533, 0, 0, 0, 0, 534, 0, 0, 0, 0, 0, 0, 535, 0, 536, 0, 537, 0, 0, 0, 0, 538, 0, 0, 539, 0, 0, 0, 0, 540, 0,
0, 0, 0, 0, 0, 541, 0, 542, 543, 0, 0, 0, 544, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 545, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 546, 0, 547, 0, 548, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 549, 0, 0, 0, 0, 0, 550, 0, 0, 551, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 552, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 553, 0, 0, 0, 0, 0, 0, 0, 0, 0, 554, 0, 555, 0, 0, 0, 0, 0, 0, 0, 0, 0, 556, 0, 557, 0, 0, 0, 0, 558,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 559, 0, 0, 0, 0, 0, 560,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 561, 0, 562, 0, 0, 563, 0, 0, 0, 0, 0, 0, 0, 564, 0, 0, 0, 565,
0, 0, 0, 0, 0, 0, 0, 0, 566, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 567, 0, 0,
568, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 569, 0, 0, 0, 570, 0, 0, 0, 0, 571, 0, 0, 0, 0, 0, 0,
0, 0, 572, 0, 0, 0, 0, 0, 0, 573, 0, 0, 0, 0, 574, 0, 0, 0, 0, 0, 0, 575, 0, 0, 0, 0, 0, 0, 576, 0, 577, 0,
578, 0, 0, 0, 0, 0, 0, 0, 0, 579, 0, 0, 580, 0, 581, 0, 0, 0, 0, 582, 0, 0, 0, 583, 0, 0, 0, 0, 0, 0, 584, 0,
0, 585, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 586, 0, 587, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 588, 0, 589, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 590, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 591, 0, 0, 0, 0, 0, 0, 592, 0, 593, 0, 0, 0, 0, 594, 0, 0, 0,
0, 0, 0, 0, 0, 595, 596, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 597, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 598, 0, 0, 0, 0, 0, 0, 0, 599, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 600, 0, 0, 0, 0, 0, 601, 0, 602, 0, 603, 0, 0, 0, 604, 0, 0, 605, 0, 0,
0, 0, 0, 0, 0, 606, 607, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 608, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 609, 0, 0, 0, 0, 0, 0, 0, 610, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 611, 0, 0, 0, 0, 0, 0, 0, 612, 0, 0, 613, 0, 614, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 615, 0,
0, 0, 0, 616, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 617, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 618, 0, 0, 0, 0, 0,
619, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 620, 0, 621, 0, 0, 0, 0, 0, 0, 622, 0, 0, 0, 0, 0, 0, 623, 0, 0, 624,
0, 0, 0, 625, 626, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 627, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 628, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 629, 0, 630, 0, 0, 0, 0, 631, 0, 632, 633, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 634, 0, 0, 0, 0, 0, 635, 0, 636, 0, 0, 0, 0, 637, 0, 638, 639, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 640, 0, 0, 0, 0, 0, 0, 641, 0, 642, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 643, 0, 0, 0, 644, 0, 645, 0, 0, 646, 0, 0, 0, 647, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 648, 0, 649,
};
void recomp_unit_0134_entry(Runtime &rt, AllegrexContext &ctx, std::uint16_t direct_entry_id, GuestMemory::AotFastView &aot_mem) {
std::uint32_t jump_target = 0u;
std::uint32_t local_transfers = 0u;
std::uint32_t local_pc = ctx.pc;
std::uint32_t entry_id = direct_entry_id;
LOCAL_DISPATCH:
{
if (entry_id == 0u) {
const std::uint32_t entry_delta = local_pc - 0x08A1C000u;
entry_id = (entry_delta < 16376u && (entry_delta & 3u) == 0u) ? kEntryIds_recomp_unit_0134[entry_delta >> 2u] : 0u;
}
switch (entry_id) {
case 1u: goto L_08A1C000;
case 2u: goto L_08A1C00C;
case 3u: goto L_08A1C01C;
case 4u: goto L_08A1C044;
case 5u: goto L_08A1C070;
case 6u: goto L_08A1C07C;
case 7u: goto L_08A1C084;
case 8u: goto L_08A1C08C;
case 9u: goto L_08A1C094;
case 10u: goto L_08A1C09C;
case 11u: goto L_08A1C0A4;
case 12u: goto L_08A1C0AC;
case 13u: goto L_08A1C0B4;
case 14u: goto L_08A1C0C0;
case 15u: goto L_08A1C0C8;
case 16u: goto L_08A1C0D8;
case 17u: goto L_08A1C0E0;
case 18u: goto L_08A1C0E4;
case 19u: goto L_08A1C0F0;
case 20u: goto L_08A1C0F8;
case 21u: goto L_08A1C100;
case 22u: goto L_08A1C104;
case 23u: goto L_08A1C120;
case 24u: goto L_08A1C12C;
case 25u: goto L_08A1C148;
case 26u: goto L_08A1C188;
case 27u: goto L_08A1C190;
case 28u: goto L_08A1C198;
case 29u: goto L_08A1C204;
case 30u: goto L_08A1C2F0;
case 31u: goto L_08A1C314;
case 32u: goto L_08A1C358;
case 33u: goto L_08A1C378;
case 34u: goto L_08A1C3DC;
case 35u: goto L_08A1C410;
case 36u: goto L_08A1C438;
case 37u: goto L_08A1C4C8;
case 38u: goto L_08A1C4D8;
case 39u: goto L_08A1C504;
case 40u: goto L_08A1C520;
case 41u: goto L_08A1C544;
case 42u: goto L_08A1C574;
case 43u: goto L_08A1C580;
case 44u: goto L_08A1C5A8;
case 45u: goto L_08A1C5B0;
case 46u: goto L_08A1C5D0;
case 47u: goto L_08A1C5D8;
case 48u: goto L_08A1C5E4;
case 49u: goto L_08A1C60C;
case 50u: goto L_08A1C62C;
case 51u: goto L_08A1C634;
case 52u: goto L_08A1C638;
case 53u: goto L_08A1C640;
case 54u: goto L_08A1C648;
case 55u: goto L_08A1C650;
case 56u: goto L_08A1C658;
case 57u: goto L_08A1C688;
case 58u: goto L_08A1C694;
case 59u: goto L_08A1C69C;
case 60u: goto L_08A1C6A4;
case 61u: goto L_08A1C6B0;
case 62u: goto L_08A1C6B8;
case 63u: goto L_08A1C6C0;
case 64u: goto L_08A1C6F0;
case 65u: goto L_08A1C700;
case 66u: goto L_08A1C708;
case 67u: goto L_08A1C70C;
case 68u: goto L_08A1C714;
case 69u: goto L_08A1C744;
case 70u: goto L_08A1C754;
case 71u: goto L_08A1C75C;
case 72u: goto L_08A1C760;
case 73u: goto L_08A1C768;
case 74u: goto L_08A1C770;
case 75u: goto L_08A1C788;
case 76u: goto L_08A1C7A0;
case 77u: goto L_08A1C7A8;
case 78u: goto L_08A1C7B0;
case 79u: goto L_08A1C7B4;
case 80u: goto L_08A1C7BC;
case 81u: goto L_08A1C80C;
case 82u: goto L_08A1C81C;
case 83u: goto L_08A1C84C;
case 84u: goto L_08A1C858;
case 85u: goto L_08A1C864;
case 86u: goto L_08A1C870;
case 87u: goto L_08A1C87C;
case 88u: goto L_08A1C884;
case 89u: goto L_08A1C8A4;
case 90u: goto L_08A1C8BC;
case 91u: goto L_08A1C8D0;
case 92u: goto L_08A1C8DC;
case 93u: goto L_08A1C8EC;
case 94u: goto L_08A1C904;
case 95u: goto L_08A1C910;
case 96u: goto L_08A1C93C;
case 97u: goto L_08A1C94C;
case 98u: goto L_08A1C958;
case 99u: goto L_08A1C960;
case 100u: goto L_08A1C97C;
case 101u: goto L_08A1C988;
case 102u: goto L_08A1C9AC;
case 103u: goto L_08A1C9BC;
case 104u: goto L_08A1C9C4;
case 105u: goto L_08A1C9D8;
case 106u: goto L_08A1C9DC;
case 107u: goto L_08A1C9E4;
case 108u: goto L_08A1C9F8;
case 109u: goto L_08A1CA04;
case 110u: goto L_08A1CA0C;
case 111u: goto L_08A1CA64;
case 112u: goto L_08A1CA70;
case 113u: goto L_08A1CAC0;
case 114u: goto L_08A1CAD0;
case 115u: goto L_08A1CAF4;
case 116u: goto L_08A1CB08;
case 117u: goto L_08A1CB34;
case 118u: goto L_08A1CB58;
case 119u: goto L_08A1CB6C;
case 120u: goto L_08A1CB7C;
case 121u: goto L_08A1CBA8;
case 122u: goto L_08A1CBCC;
case 123u: goto L_08A1CBE0;
case 124u: goto L_08A1CC0C;
case 125u: goto L_08A1CC44;
case 126u: goto L_08A1CCA4;
case 127u: goto L_08A1CCB0;
case 128u: goto L_08A1CD00;
case 129u: goto L_08A1CD10;
case 130u: goto L_08A1CD34;
case 131u: goto L_08A1CD48;
case 132u: goto L_08A1CD74;
case 133u: goto L_08A1CD98;
case 134u: goto L_08A1CDAC;
case 135u: goto L_08A1CDBC;
case 136u: goto L_08A1CDE8;
case 137u: goto L_08A1CE0C;
case 138u: goto L_08A1CE20;
case 139u: goto L_08A1CE4C;
case 140u: goto L_08A1CE68;
case 141u: goto L_08A1CE7C;
case 142u: goto L_08A1CE9C;
case 143u: goto L_08A1CEA8;
case 144u: goto L_08A1CEB4;
case 145u: goto L_08A1CECC;
case 146u: goto L_08A1CED8;
case 147u: goto L_08A1CEDC;
case 148u: goto L_08A1CEEC;
case 149u: goto L_08A1CF0C;
case 150u: goto L_08A1CF18;
case 151u: goto L_08A1CF24;
case 152u: goto L_08A1CF3C;
case 153u: goto L_08A1CF48;
case 154u: goto L_08A1CF4C;
case 155u: goto L_08A1CF5C;
case 156u: goto L_08A1CF7C;
case 157u: goto L_08A1CF98;
case 158u: goto L_08A1CFBC;
case 159u: goto L_08A1CFCC;
case 160u: goto L_08A1CFD4;
case 161u: goto L_08A1CFDC;
case 162u: goto L_08A1CFE4;
case 163u: goto L_08A1CFEC;
case 164u: goto L_08A1CFF4;
case 165u: goto L_08A1D000;
case 166u: goto L_08A1D008;
case 167u: goto L_08A1D018;
case 168u: goto L_08A1D040;
case 169u: goto L_08A1D050;
case 170u: goto L_08A1D05C;
case 171u: goto L_08A1D064;
case 172u: goto L_08A1D06C;
case 173u: goto L_08A1D074;
case 174u: goto L_08A1D07C;
case 175u: goto L_08A1D080;
case 176u: goto L_08A1D088;
case 177u: goto L_08A1D090;
case 178u: goto L_08A1D0C0;
case 179u: goto L_08A1D0C8;
case 180u: goto L_08A1D0D0;
case 181u: goto L_08A1D0D8;
case 182u: goto L_08A1D0E0;
case 183u: goto L_08A1D0E8;
case 184u: goto L_08A1D0F4;
case 185u: goto L_08A1D0FC;
case 186u: goto L_08A1D104;
case 187u: goto L_08A1D10C;
case 188u: goto L_08A1D11C;
case 189u: goto L_08A1D128;
case 190u: goto L_08A1D130;
case 191u: goto L_08A1D138;
case 192u: goto L_08A1D13C;
case 193u: goto L_08A1D150;
case 194u: goto L_08A1D178;
case 195u: goto L_08A1D198;
case 196u: goto L_08A1D1A8;
case 197u: goto L_08A1D1B4;
case 198u: goto L_08A1D1BC;
case 199u: goto L_08A1D1C0;
case 200u: goto L_08A1D1C4;
case 201u: goto L_08A1D1D8;
case 202u: goto L_08A1D1E4;
case 203u: goto L_08A1D1F8;
case 204u: goto L_08A1D214;
case 205u: goto L_08A1D224;
case 206u: goto L_08A1D22C;
case 207u: goto L_08A1D234;
case 208u: goto L_08A1D23C;
case 209u: goto L_08A1D244;
case 210u: goto L_08A1D24C;
case 211u: goto L_08A1D258;
case 212u: goto L_08A1D260;
case 213u: goto L_08A1D268;
case 214u: goto L_08A1D270;
case 215u: goto L_08A1D278;
case 216u: goto L_08A1D280;
case 217u: goto L_08A1D28C;
case 218u: goto L_08A1D29C;
case 219u: goto L_08A1D2B8;
case 220u: goto L_08A1D2C0;
case 221u: goto L_08A1D2C4;
case 222u: goto L_08A1D2CC;
case 223u: goto L_08A1D2D8;
case 224u: goto L_08A1D314;
case 225u: goto L_08A1D31C;
case 226u: goto L_08A1D330;
case 227u: goto L_08A1D338;
case 228u: goto L_08A1D358;
case 229u: goto L_08A1D364;
case 230u: goto L_08A1D36C;
case 231u: goto L_08A1D378;
case 232u: goto L_08A1D398;
case 233u: goto L_08A1D3A4;
case 234u: goto L_08A1D3C0;
case 235u: goto L_08A1D3C8;
case 236u: goto L_08A1D3DC;
case 237u: goto L_08A1D3EC;
case 238u: goto L_08A1D3F8;
case 239u: goto L_08A1D404;
case 240u: goto L_08A1D414;
case 241u: goto L_08A1D420;
case 242u: goto L_08A1D430;
case 243u: goto L_08A1D43C;
case 244u: goto L_08A1D478;
case 245u: goto L_08A1D480;
case 246u: goto L_08A1D490;
case 247u: goto L_08A1D494;
case 248u: goto L_08A1D49C;
case 249u: goto L_08A1D4A8;
case 250u: goto L_08A1D4B0;
case 251u: goto L_08A1D4B8;
case 252u: goto L_08A1D4C0;
case 253u: goto L_08A1D4C8;
case 254u: goto L_08A1D4F4;
case 255u: goto L_08A1D4FC;
case 256u: goto L_08A1D51C;
case 257u: goto L_08A1D524;
case 258u: goto L_08A1D540;
case 259u: goto L_08A1D544;
case 260u: goto L_08A1D568;
case 261u: goto L_08A1D580;
case 262u: goto L_08A1D598;
case 263u: goto L_08A1D5A0;
case 264u: goto L_08A1D5B0;
case 265u: goto L_08A1D5B4;
case 266u: goto L_08A1D5BC;
case 267u: goto L_08A1D5E8;
case 268u: goto L_08A1D5F0;
case 269u: goto L_08A1D614;
case 270u: goto L_08A1D628;
case 271u: goto L_08A1D644;
case 272u: goto L_08A1D650;
case 273u: goto L_08A1D7B0;
case 274u: goto L_08A1D7C4;
case 275u: goto L_08A1D7D4;
case 276u: goto L_08A1D7DC;
case 277u: goto L_08A1D7E4;
case 278u: goto L_08A1D7EC;
case 279u: goto L_08A1D7F4;
case 280u: goto L_08A1D7FC;
case 281u: goto L_08A1D804;
case 282u: goto L_08A1D808;
case 283u: goto L_08A1D810;
case 284u: goto L_08A1D820;
case 285u: goto L_08A1D830;
case 286u: goto L_08A1D838;
case 287u: goto L_08A1D840;
case 288u: goto L_08A1D848;
case 289u: goto L_08A1D854;
case 290u: goto L_08A1D864;
case 291u: goto L_08A1D874;
case 292u: goto L_08A1D884;
case 293u: goto L_08A1D894;
case 294u: goto L_08A1D898;
case 295u: goto L_08A1D8A0;
case 296u: goto L_08A1D8D0;
case 297u: goto L_08A1D8EC;
case 298u: goto L_08A1D8F8;
case 299u: goto L_08A1D904;
case 300u: goto L_08A1D910;
case 301u: goto L_08A1D938;
case 302u: goto L_08A1D958;
case 303u: goto L_08A1D960;
case 304u: goto L_08A1D974;
case 305u: goto L_08A1D9A4;
case 306u: goto L_08A1D9CC;
case 307u: goto L_08A1D9D4;
case 308u: goto L_08A1D9E4;
case 309u: goto L_08A1D9EC;
case 310u: goto L_08A1DA10;
case 311u: goto L_08A1DA2C;
case 312u: goto L_08A1DA34;
case 313u: goto L_08A1DA3C;
case 314u: goto L_08A1DAA8;
case 315u: goto L_08A1DAC0;
case 316u: goto L_08A1DACC;
case 317u: goto L_08A1DADC;
case 318u: goto L_08A1DAF0;
case 319u: goto L_08A1DAFC;
case 320u: goto L_08A1DB18;
case 321u: goto L_08A1DB24;
case 322u: goto L_08A1DB2C;
case 323u: goto L_08A1DB38;
case 324u: goto L_08A1DB40;
case 325u: goto L_08A1DB68;
case 326u: goto L_08A1DB74;
case 327u: goto L_08A1DB84;
case 328u: goto L_08A1DB90;
case 329u: goto L_08A1DB98;
case 330u: goto L_08A1DCD0;
case 331u: goto L_08A1DCE4;
case 332u: goto L_08A1DCF8;
case 333u: goto L_08A1DD0C;
case 334u: goto L_08A1DD1C;
case 335u: goto L_08A1DD24;
case 336u: goto L_08A1DD28;
case 337u: goto L_08A1DD34;
case 338u: goto L_08A1DD38;
case 339u: goto L_08A1DD3C;
case 340u: goto L_08A1DD74;
case 341u: goto L_08A1DD84;
case 342u: goto L_08A1DD9C;
case 343u: goto L_08A1DDB4;
case 344u: goto L_08A1DDD0;
case 345u: goto L_08A1DDE4;
case 346u: goto L_08A1DDFC;
case 347u: goto L_08A1DE08;
case 348u: goto L_08A1DE2C;
case 349u: goto L_08A1DE3C;
case 350u: goto L_08A1DE48;
case 351u: goto L_08A1DE54;
case 352u: goto L_08A1DE6C;
case 353u: goto L_08A1DE78;
case 354u: goto L_08A1DE9C;
case 355u: goto L_08A1DEAC;
case 356u: goto L_08A1DEB4;
case 357u: goto L_08A1DEE8;
case 358u: goto L_08A1DEF4;
case 359u: goto L_08A1DEFC;
case 360u: goto L_08A1DF10;
case 361u: goto L_08A1DF30;
case 362u: goto L_08A1DF3C;
case 363u: goto L_08A1DF50;
case 364u: goto L_08A1DF78;
case 365u: goto L_08A1DF80;
case 366u: goto L_08A1DF88;
case 367u: goto L_08A1DFA4;
case 368u: goto L_08A1DFAC;
case 369u: goto L_08A1DFD0;
case 370u: goto L_08A1DFDC;
case 371u: goto L_08A1DFE4;
case 372u: goto L_08A1E008;
case 373u: goto L_08A1E010;
case 374u: goto L_08A1E030;
case 375u: goto L_08A1E068;
case 376u: goto L_08A1E074;
case 377u: goto L_08A1E07C;
case 378u: goto L_08A1E098;
case 379u: goto L_08A1E0A0;
case 380u: goto L_08A1E0C4;
case 381u: goto L_08A1E0D0;
case 382u: goto L_08A1E0D8;
case 383u: goto L_08A1E0E0;
case 384u: goto L_08A1E108;
case 385u: goto L_08A1E10C;
case 386u: goto L_08A1E11C;
case 387u: goto L_08A1E130;
case 388u: goto L_08A1E15C;
case 389u: goto L_08A1E190;
case 390u: goto L_08A1E19C;
case 391u: goto L_08A1E1A4;
case 392u: goto L_08A1E1C0;
case 393u: goto L_08A1E1C8;
case 394u: goto L_08A1E1E0;
case 395u: goto L_08A1E1E8;
case 396u: goto L_08A1E1F4;
case 397u: goto L_08A1E200;
case 398u: goto L_08A1E208;
case 399u: goto L_08A1E210;
case 400u: goto L_08A1E228;
case 401u: goto L_08A1E230;
case 402u: goto L_08A1E244;
case 403u: goto L_08A1E250;
case 404u: goto L_08A1E288;
case 405u: goto L_08A1E294;
case 406u: goto L_08A1E2A0;
case 407u: goto L_08A1E2A8;
case 408u: goto L_08A1E2D0;
case 409u: goto L_08A1E308;
case 410u: goto L_08A1E314;
case 411u: goto L_08A1E31C;
case 412u: goto L_08A1E338;
case 413u: goto L_08A1E340;
case 414u: goto L_08A1E364;
case 415u: goto L_08A1E370;
case 416u: goto L_08A1E378;
case 417u: goto L_08A1E380;
case 418u: goto L_08A1E3A8;
case 419u: goto L_08A1E3AC;
case 420u: goto L_08A1E3BC;
case 421u: goto L_08A1E3D0;
case 422u: goto L_08A1E3FC;
case 423u: goto L_08A1E404;
case 424u: goto L_08A1E430;
case 425u: goto L_08A1E448;
case 426u: goto L_08A1E470;
case 427u: goto L_08A1E490;
case 428u: goto L_08A1E4B0;
case 429u: goto L_08A1E4F0;
case 430u: goto L_08A1E4F8;
case 431u: goto L_08A1E580;
case 432u: goto L_08A1E5D0;
case 433u: goto L_08A1E5DC;
case 434u: goto L_08A1E610;
case 435u: goto L_08A1E620;
case 436u: goto L_08A1E624;
case 437u: goto L_08A1E630;
case 438u: goto L_08A1E63C;
case 439u: goto L_08A1E648;
case 440u: goto L_08A1E650;
case 441u: goto L_08A1E658;
case 442u: goto L_08A1E65C;
case 443u: goto L_08A1E670;
case 444u: goto L_08A1E688;
case 445u: goto L_08A1E6C0;
case 446u: goto L_08A1E6EC;
case 447u: goto L_08A1E724;
case 448u: goto L_08A1E72C;
case 449u: goto L_08A1E734;
case 450u: goto L_08A1E73C;
case 451u: goto L_08A1E768;
case 452u: goto L_08A1E770;
case 453u: goto L_08A1E780;
case 454u: goto L_08A1E788;
case 455u: goto L_08A1E794;
case 456u: goto L_08A1E79C;
case 457u: goto L_08A1E7AC;
case 458u: goto L_08A1E7B4;
case 459u: goto L_08A1E7C4;
case 460u: goto L_08A1E7CC;
case 461u: goto L_08A1E7DC;
case 462u: goto L_08A1E7F8;
case 463u: goto L_08A1E828;
case 464u: goto L_08A1E82C;
case 465u: goto L_08A1E850;
case 466u: goto L_08A1E860;
case 467u: goto L_08A1E888;
case 468u: goto L_08A1E8F4;
case 469u: goto L_08A1E8FC;
case 470u: goto L_08A1E918;
case 471u: goto L_08A1E920;
case 472u: goto L_08A1E93C;
case 473u: goto L_08A1E95C;
case 474u: goto L_08A1E968;
case 475u: goto L_08A1E970;
case 476u: goto L_08A1E978;
case 477u: goto L_08A1E980;
case 478u: goto L_08A1E988;
case 479u: goto L_08A1E990;
case 480u: goto L_08A1E998;
case 481u: goto L_08A1E9A0;
case 482u: goto L_08A1E9A8;
case 483u: goto L_08A1E9B0;
case 484u: goto L_08A1E9C8;
case 485u: goto L_08A1E9DC;
case 486u: goto L_08A1EABC;
case 487u: goto L_08A1EAC8;
case 488u: goto L_08A1EB00;
case 489u: goto L_08A1EB34;
case 490u: goto L_08A1EB60;
case 491u: goto L_08A1EB80;
case 492u: goto L_08A1EBA0;
case 493u: goto L_08A1EBC4;
case 494u: goto L_08A1EBF8;
case 495u: goto L_08A1EC24;
case 496u: goto L_08A1EC30;
case 497u: goto L_08A1EC80;
case 498u: goto L_08A1ECC0;
case 499u: goto L_08A1ECE0;
case 500u: goto L_08A1ED30;
case 501u: goto L_08A1ED44;
case 502u: goto L_08A1ED4C;
case 503u: goto L_08A1ED54;
case 504u: goto L_08A1ED68;
case 505u: goto L_08A1EDA4;
case 506u: goto L_08A1EDAC;
case 507u: goto L_08A1EDB4;
case 508u: goto L_08A1EDC0;
case 509u: goto L_08A1EDD4;
case 510u: goto L_08A1EE78;
case 511u: goto L_08A1EE8C;
case 512u: goto L_08A1EEA8;
case 513u: goto L_08A1EEB0;
case 514u: goto L_08A1EEB8;
case 515u: goto L_08A1EECC;
case 516u: goto L_08A1EEE8;
case 517u: goto L_08A1EEF0;
case 518u: goto L_08A1EF04;
case 519u: goto L_08A1EF0C;
case 520u: goto L_08A1EF14;
case 521u: goto L_08A1EF20;
case 522u: goto L_08A1EF7C;
case 523u: goto L_08A1EFB4;
case 524u: goto L_08A1EFEC;
case 525u: goto L_08A1EFF4;
case 526u: goto L_08A1EFFC;
case 527u: goto L_08A1F03C;
case 528u: goto L_08A1F04C;
case 529u: goto L_08A1F054;
case 530u: goto L_08A1F060;
case 531u: goto L_08A1F074;
case 532u: goto L_08A1F07C;
case 533u: goto L_08A1F084;
case 534u: goto L_08A1F098;
case 535u: goto L_08A1F0B4;
case 536u: goto L_08A1F0BC;
case 537u: goto L_08A1F0C4;
case 538u: goto L_08A1F0D8;
case 539u: goto L_08A1F0E4;
case 540u: goto L_08A1F0F8;
case 541u: goto L_08A1F114;
case 542u: goto L_08A1F11C;
case 543u: goto L_08A1F120;
case 544u: goto L_08A1F130;
case 545u: goto L_08A1F204;
case 546u: goto L_08A1F258;
case 547u: goto L_08A1F260;
case 548u: goto L_08A1F268;
case 549u: goto L_08A1F298;
case 550u: goto L_08A1F2B0;
case 551u: goto L_08A1F2BC;
case 552u: goto L_08A1F340;
case 553u: goto L_08A1F388;
case 554u: goto L_08A1F3B0;
case 555u: goto L_08A1F3B8;
case 556u: goto L_08A1F3E0;
case 557u: goto L_08A1F3E8;
case 558u: goto L_08A1F3FC;
case 559u: goto L_08A1F464;
case 560u: goto L_08A1F47C;
case 561u: goto L_08A1F4B8;
case 562u: goto L_08A1F4C0;
case 563u: goto L_08A1F4CC;
case 564u: goto L_08A1F4EC;
case 565u: goto L_08A1F4FC;
case 566u: goto L_08A1F520;
case 567u: goto L_08A1F574;
case 568u: goto L_08A1F580;
case 569u: goto L_08A1F5C0;
case 570u: goto L_08A1F5D0;
case 571u: goto L_08A1F5E4;
case 572u: goto L_08A1F608;
case 573u: goto L_08A1F624;
case 574u: goto L_08A1F638;
case 575u: goto L_08A1F654;
case 576u: goto L_08A1F670;
case 577u: goto L_08A1F678;
case 578u: goto L_08A1F680;
case 579u: goto L_08A1F6A4;
case 580u: goto L_08A1F6B0;
case 581u: goto L_08A1F6B8;
case 582u: goto L_08A1F6CC;
case 583u: goto L_08A1F6DC;
case 584u: goto L_08A1F6F8;
case 585u: goto L_08A1F704;
case 586u: goto L_08A1F744;
case 587u: goto L_08A1F74C;
case 588u: goto L_08A1F78C;
case 589u: goto L_08A1F794;
case 590u: goto L_08A1F7C0;
case 591u: goto L_08A1F838;
case 592u: goto L_08A1F854;
case 593u: goto L_08A1F85C;
case 594u: goto L_08A1F870;
case 595u: goto L_08A1F894;
case 596u: goto L_08A1F898;
case 597u: goto L_08A1F8D4;
case 598u: goto L_08A1F930;
case 599u: goto L_08A1F950;
case 600u: goto L_08A1F9B0;
case 601u: goto L_08A1F9C8;
case 602u: goto L_08A1F9D0;
case 603u: goto L_08A1F9D8;
case 604u: goto L_08A1F9E8;
case 605u: goto L_08A1F9F4;
case 606u: goto L_08A1FA14;
case 607u: goto L_08A1FA18;
case 608u: goto L_08A1FA58;
case 609u: goto L_08A1FABC;
case 610u: goto L_08A1FADC;
case 611u: goto L_08A1FB08;
case 612u: goto L_08A1FB28;
case 613u: goto L_08A1FB34;
case 614u: goto L_08A1FB3C;
case 615u: goto L_08A1FB78;
case 616u: goto L_08A1FB8C;
case 617u: goto L_08A1FBC4;
case 618u: goto L_08A1FC68;
case 619u: goto L_08A1FC80;
case 620u: goto L_08A1FCB0;
case 621u: goto L_08A1FCB8;
case 622u: goto L_08A1FCD4;
case 623u: goto L_08A1FCF0;
case 624u: goto L_08A1FCFC;
case 625u: goto L_08A1FD0C;
case 626u: goto L_08A1FD10;
case 627u: goto L_08A1FD60;
case 628u: goto L_08A1FDC4;
case 629u: goto L_08A1FE04;
case 630u: goto L_08A1FE0C;
case 631u: goto L_08A1FE20;
case 632u: goto L_08A1FE28;
case 633u: goto L_08A1FE2C;
case 634u: goto L_08A1FE98;
case 635u: goto L_08A1FEB0;
case 636u: goto L_08A1FEB8;
case 637u: goto L_08A1FECC;
case 638u: goto L_08A1FED4;
case 639u: goto L_08A1FED8;
case 640u: goto L_08A1FF20;
case 641u: goto L_08A1FF3C;
case 642u: goto L_08A1FF44;
case 643u: goto L_08A1FF84;
case 644u: goto L_08A1FF94;
case 645u: goto L_08A1FF9C;
case 646u: goto L_08A1FFA8;
case 647u: goto L_08A1FFB8;
case 648u: goto L_08A1FFEC;
case 649u: goto L_08A1FFF4;
default:
if (local_transfers == 0u) rt.unsupported(ctx.pc, 0u, "invalid internal function entry");
else ctx.pc = local_pc;
return;
}
}
L_08A1C000:
ctx.gpr[7] = (0u | 0u);
ctx.gpr[31] = (0x08A1C00Cu);
ctx.gpr[8] = (0u | 255u);
if (rt.invoke_chained_direct<&recomp_unit_0140_entry, 140u, 317u, 0x08A3550Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1C00Cu) goto L_08A1C00C;
return;
L_08A1C00C:
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[5] = (ctx.gpr[2] | 0u);
ctx.gpr[31] = (0x08A1C01Cu);
ctx.gpr[6] = (0u | 1u);
if (rt.invoke_chained_direct<&recomp_unit_0188_entry, 188u, 107u, 0x08AF5130u>(ctx, &aot_mem) && ctx.pc == 0x08A1C01Cu) goto L_08A1C01C;
return;
L_08A1C01C:
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(20)));
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(24)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(28)));
ctx.fpr[26] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(32)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(36)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(40)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(44)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(48)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(64));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C044:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[18]);
ctx.fpr[20] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[18] = (ctx.gpr[5] << 16u);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[31]);
ctx.gpr[31] = (0x08A1C070u);
ctx.gpr[18] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[18]) >> 16u));
goto L_08A1C770;
L_08A1C070:
ctx.gpr[4] = (0u | 2u);
{ const bool branch_taken = ctx.gpr[2] != ctx.gpr[4];
ctx.gpr[17] = (0u | 1u);
if (branch_taken) {
goto L_08A1C104;
}
goto L_08A1C07C;
}
L_08A1C07C:
{ const bool branch_taken = ctx.gpr[18] == 0u;
// nop
if (branch_taken) {
goto L_08A1C104;
}
goto L_08A1C084;
}
L_08A1C084:
ctx.gpr[31] = (0x08A1C08Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0131_entry, 131u, 163u, 0x08A114E4u>(ctx, &aot_mem) && ctx.pc == 0x08A1C08Cu) goto L_08A1C08C;
return;
L_08A1C08C:
ctx.gpr[31] = (0x08A1C094u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 316u, 0x08A225A4u>(ctx, &aot_mem) && ctx.pc == 0x08A1C094u) goto L_08A1C094;
return;
L_08A1C094:
ctx.gpr[31] = (0x08A1C09Cu);
ctx.gpr[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(48));
if (rt.invoke_chained_direct<&recomp_unit_0179_entry, 179u, 585u, 0x08AD3558u>(ctx, &aot_mem) && ctx.pc == 0x08A1C09Cu) goto L_08A1C09C;
return;
L_08A1C09C:
ctx.gpr[31] = (0x08A1C0A4u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7652)));
if (rt.invoke_chained_direct<&recomp_unit_0076_entry, 76u, 339u, 0x08935474u>(ctx, &aot_mem) && ctx.pc == 0x08A1C0A4u) goto L_08A1C0A4;
return;
L_08A1C0A4:
ctx.gpr[31] = (0x08A1C0ACu);
ctx.gpr[4] = (ctx.gpr[2] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0076_entry, 76u, 269u, 0x0893509Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1C0ACu) goto L_08A1C0AC;
return;
L_08A1C0AC:
ctx.gpr[31] = (0x08A1C0B4u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0076_entry, 76u, 60u, 0x08934444u>(ctx, &aot_mem) && ctx.pc == 0x08A1C0B4u) goto L_08A1C0B4;
return;
L_08A1C0B4:
ctx.gpr[4] = (2236u << 16u);
ctx.gpr[31] = (0x08A1C0C0u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(31984));
if (rt.invoke_chained_direct<&recomp_unit_0174_entry, 174u, 620u, 0x08ABEE2Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1C0C0u) goto L_08A1C0C0;
return;
L_08A1C0C0:
ctx.gpr[31] = (0x08A1C0C8u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0030_entry, 30u, 746u, 0x0887F804u>(ctx, &aot_mem) && ctx.pc == 0x08A1C0C8u) goto L_08A1C0C8;
return;
L_08A1C0C8:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-23440)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(11236)));
{ const bool branch_taken = ctx.gpr[5] == 0u;
ctx.gpr[5] = (16256u << 16u);
if (branch_taken) {
goto L_08A1C0E0;
}
goto L_08A1C0D8;
}
L_08A1C0D8:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
if (branch_taken) {
goto L_08A1C0E4;
}
goto L_08A1C0E0;
}
L_08A1C0E0:
ctx.fpr[12] = std::bit_cast<float>(0u);
goto L_08A1C0E4;
L_08A1C0E4:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(11240), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[31] = (0x08A1C0F0u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-23440)));
if (rt.invoke_chained_direct<&recomp_unit_0054_entry, 54u, 355u, 0x088DE338u>(ctx, &aot_mem) && ctx.pc == 0x08A1C0F0u) goto L_08A1C0F0;
return;
L_08A1C0F0:
ctx.gpr[31] = (0x08A1C0F8u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 841u, 0x08A0787Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1C0F8u) goto L_08A1C0F8;
return;
L_08A1C0F8:
ctx.gpr[31] = (0x08A1C100u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0131_entry, 131u, 165u, 0x08A11504u>(ctx, &aot_mem) && ctx.pc == 0x08A1C100u) goto L_08A1C100;
return;
L_08A1C100:
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-19681), static_cast<std::uint8_t>(0u));
goto L_08A1C104;
L_08A1C104:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2640), static_cast<std::uint8_t>(ctx.gpr[17]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2641), static_cast<std::uint8_t>(ctx.gpr[17]));
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2840), static_cast<std::uint16_t>(ctx.gpr[18]));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2804), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(2063)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1C12C;
}
goto L_08A1C120;
}
L_08A1C120:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2651), static_cast<std::uint8_t>(ctx.gpr[17]));
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2850), static_cast<std::uint16_t>(ctx.gpr[18]));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2808), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
goto L_08A1C12C;
L_08A1C12C:
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C148:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-288));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(244), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(252), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(256), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(260), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(264), ctx.gpr[19]);
ctx.fpr[20] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[18] = (ctx.gpr[4] | 0u);
ctx.gpr[16] = (ctx.gpr[7] | 0u);
ctx.gpr[17] = (ctx.gpr[6] | 0u);
ctx.gpr[19] = (ctx.gpr[5] | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(248), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(268), ctx.gpr[20]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(272), ctx.gpr[31]);
ctx.gpr[31] = (0x08A1C188u);
ctx.gpr[4] = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0097_entry, 97u, 828u, 0x0898B428u>(ctx, &aot_mem) && ctx.pc == 0x08A1C188u) goto L_08A1C188;
return;
L_08A1C188:
ctx.gpr[31] = (0x08A1C190u);
ctx.gpr[4] = (ctx.gpr[2] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0098_entry, 98u, 309u, 0x0898CE14u>(ctx, &aot_mem) && ctx.pc == 0x08A1C190u) goto L_08A1C190;
return;
L_08A1C190:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1C204;
}
goto L_08A1C198;
}
L_08A1C198:
{ 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); }
{ 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])); }
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[18] + ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(224)));
ctx.gpr[5] = (std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[5]);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(16));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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>();
ctx.gpr[4] = (ctx.gpr[29] + 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[4] + 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 = ctx.gpr[4] + 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); }
ctx.gpr[4] = (ctx.gpr[29] + 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[4] + 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[4] + 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])); }
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1C410;
}
goto L_08A1C204;
}
L_08A1C204:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16972)));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[18] + static_cast<std::uint32_t>(2220)));
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[14];
ctx.gpr[4] = (16358u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 26214u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[18] + ctx.gpr[4]);
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(408)));
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[18] + static_cast<std::uint32_t>(2224)));
ctx.fpr[16] = ctx.fpr[14] - ctx.fpr[16];
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.gpr[5] = (16457u << 16u);
ctx.gpr[5] = (ctx.gpr[5] | 4059u);
ctx.fpr[17] = std::bit_cast<float>(ctx.gpr[5]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[17]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[5] = (17204u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[22] = ctx.fpr[12] / ctx.fpr[15];
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[17]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[15];
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(144));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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])); }
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[18] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(128));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[18] + ctx.gpr[4]);
ctx.gpr[31] = (0x08A1C2F0u);
ctx.gpr[20] = (ctx.gpr[4] + static_cast<std::uint32_t>(208));
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 420u, 0x08A1AB4Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1C2F0u) goto L_08A1C2F0;
return;
L_08A1C2F0:
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[0]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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_vscl_ct<0u, 0u, 28u, 3u>();
ctx.gpr[20] = (ctx.gpr[29] + 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[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])); }
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1C314u);
ctx.gpr[5] = (ctx.gpr[20] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1C314u) goto L_08A1C314;
return;
L_08A1C314:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[18] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[18] + ctx.gpr[4]);
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(128));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(208));
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[4] + 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<2u, 4u>(vfpu_value); }
ctx.execute_vfpu_cross_quat(0u, 1u, 2u, 3u);
ctx.gpr[18] = (ctx.gpr[29] + 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 = 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])); }
ctx.gpr[31] = (0x08A1C358u);
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[22]));
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 420u, 0x08A1AB4Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1C358u) goto L_08A1C358;
return;
L_08A1C358:
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[0]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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>();
{ 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])); }
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1C378u);
ctx.gpr[5] = (ctx.gpr[20] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1C378u) goto L_08A1C378;
return;
L_08A1C378:
{ 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<1u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; vfpu_value[0u] = 1.0f;
ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 4u>(vfpu_value); }
ctx.execute_vfpu_vdot_ct<28u, 1u, 1u, 3u>();
ctx.execute_vfpu_vcmp_ct<28u, 32u, 1u, 3u>();
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]);
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
ctx.execute_vfpu_vscl_ct<1u, 1u, 28u, 3u>();
ctx.execute_vfpu_vcmov_ct<1u, 0u, 3u, 0u, false>();
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<1u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[16] + static_cast<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[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); }
{ 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); }
{ 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<1u, 4u>(vfpu_value); }
ctx.execute_vfpu_vdot_ct<28u, 0u, 1u, 3u>();
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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.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])); }
ctx.gpr[4] = (ctx.gpr[17] | 0u);
ctx.gpr[31] = (0x08A1C3DCu);
ctx.gpr[5] = (ctx.gpr[18] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1C3DCu) goto L_08A1C3DC;
return;
L_08A1C3DC:
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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.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[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[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[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); }
{ 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])); }
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 1u);
if (branch_taken) {
goto L_08A1C410;
}
goto L_08A1C410;
}
L_08A1C410:
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(244)));
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(248)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(252)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(256)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(260)));
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(264)));
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(268)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(272)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(288));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C438:
ctx.gpr[5] = (16128u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2224)));
ctx.gpr[5] = (16358u << 16u);
ctx.gpr[5] = (ctx.gpr[5] | 26214u);
ctx.fpr[12] = ctx.fpr[13] - ctx.fpr[12];
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[5]);
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
ctx.gpr[5] = (ctx.gpr[5] << 5u);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(408)));
ctx.gpr[5] = (16457u << 16u);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.gpr[5] = (ctx.gpr[5] | 4059u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
ctx.gpr[5] = (17204u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[5]);
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.fpr[14] = ctx.fpr[14] / ctx.fpr[15];
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(136));
ctx.gpr[5] = (16256u << 16u);
ctx.gpr[6] = (49024u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[6]);
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[15]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[15]));
goto L_08A1C4C8;
}
goto L_08A1C4C8;
L_08A1C4C8:
ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]));
goto L_08A1C4D8;
}
goto L_08A1C4D8;
L_08A1C4D8:
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3FC90FDBu);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] < -1.0f ? -1.0f : (vfpu_s[i] > 1.0f ? 1.0f : vfpu_s[i]);
ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::asin(vfpu_s[i]) * 0.63661977236758134308f;
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<0u>());
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[0] = ctx.fpr[14] + ctx.fpr[12];
jump_target = ctx.gpr[31];
ctx.fpr[0] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]) ^ 0x80000000u);
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C504:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
ctx.gpr[5] = (17096u << 16u);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[31]);
ctx.gpr[31] = (0x08A1C520u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
goto L_08A1D8A0;
L_08A1C520:
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2196), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2058), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C544:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
ctx.gpr[6] = (ctx.gpr[5] << 5u);
ctx.gpr[7] = (0u - ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[7] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[7] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[7] = (ctx.gpr[4] + ctx.gpr[7]);
ctx.gpr[8] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[7] + static_cast<std::uint32_t>(112))))));
ctx.gpr[6] = (0u | 17u);
{ const bool branch_taken = ctx.gpr[8] == ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1C5A8;
}
goto L_08A1C574;
}
L_08A1C574:
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(1));
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[5]) >= 0;
ctx.gpr[7] = (ctx.gpr[5] & 1u);
if (branch_taken) {
goto L_08A1C5B0;
}
goto L_08A1C580;
}
L_08A1C580:
ctx.gpr[7] = (0u - ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 5u);
ctx.gpr[8] = (0u - ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[8] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[7] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[4] + ctx.gpr[7]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[7] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[7] + static_cast<std::uint32_t>(112))))));
if (branch_taken) {
goto L_08A1C5D0;
}
goto L_08A1C5A8;
}
L_08A1C5A8:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[7] + static_cast<std::uint32_t>(280)));
if (branch_taken) {
goto L_08A1C638;
}
goto L_08A1C5B0;
}
L_08A1C5B0:
ctx.gpr[7] = (ctx.gpr[7] << 5u);
ctx.gpr[8] = (0u - ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[8] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[7] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[4] + ctx.gpr[7]);
ctx.gpr[7] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[7] + static_cast<std::uint32_t>(112))))));
goto L_08A1C5D0;
L_08A1C5D0:
{ const bool branch_taken = ctx.gpr[7] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1C634;
}
goto L_08A1C5D8;
}
L_08A1C5D8:
ctx.gpr[6] = (ctx.gpr[5] | 0u);
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[6]) >= 0;
ctx.gpr[5] = (ctx.gpr[6] & 1u);
if (branch_taken) {
goto L_08A1C60C;
}
goto L_08A1C5E4;
}
L_08A1C5E4:
ctx.gpr[5] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[2] = (ctx.gpr[4] + ctx.gpr[5]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(280)));
if (branch_taken) {
goto L_08A1C62C;
}
goto L_08A1C60C;
}
L_08A1C60C:
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[2] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(280)));
goto L_08A1C62C;
L_08A1C62C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1C638;
}
goto L_08A1C634;
}
L_08A1C634:
ctx.gpr[2] = (0u | 0u);
goto L_08A1C638;
L_08A1C638:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C640:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2641)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C648:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (ctx.gpr[4] + static_cast<std::uint32_t>(2480));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C650:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2068)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C658:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(112))))));
ctx.gpr[6] = (0u | 18u);
{ const bool branch_taken = ctx.gpr[5] == ctx.gpr[6];
ctx.gpr[2] = (0u | 3u);
if (branch_taken) {
goto L_08A1C6A4;
}
goto L_08A1C688;
}
L_08A1C688:
ctx.gpr[6] = (0u | 16u);
{ const bool branch_taken = ctx.gpr[5] == ctx.gpr[6];
ctx.gpr[6] = (0u | 22u);
if (branch_taken) {
goto L_08A1C6A4;
}
goto L_08A1C694;
}
L_08A1C694:
{ const bool branch_taken = ctx.gpr[5] == ctx.gpr[6];
ctx.gpr[6] = (0u | 4u);
if (branch_taken) {
goto L_08A1C6A4;
}
goto L_08A1C69C;
}
L_08A1C69C:
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1C6B8;
}
goto L_08A1C6A4;
}
L_08A1C6A4:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(228)));
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[2];
// nop
if (branch_taken) {
goto L_08A1C6B8;
}
goto L_08A1C6B0;
}
L_08A1C6B0:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (ctx.gpr[4] | 0u);
if (branch_taken) {
goto L_08A1C6B8;
}
goto L_08A1C6B8;
}
L_08A1C6B8:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C6C0:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(112))))));
ctx.gpr[6] = (0u | 16u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1C708;
}
goto L_08A1C6F0;
}
L_08A1C6F0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(228)));
ctx.gpr[5] = (0u | 3u);
{ const bool branch_taken = ctx.gpr[4] != ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1C708;
}
goto L_08A1C700;
}
L_08A1C700:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 1u);
if (branch_taken) {
goto L_08A1C70C;
}
goto L_08A1C708;
}
L_08A1C708:
ctx.gpr[2] = (0u | 0u);
goto L_08A1C70C;
L_08A1C70C:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C714:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(112))))));
ctx.gpr[6] = (0u | 16u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1C75C;
}
goto L_08A1C744;
}
L_08A1C744:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(228)));
ctx.gpr[5] = (0u | 3u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1C75C;
}
goto L_08A1C754;
}
L_08A1C754:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 1u);
if (branch_taken) {
goto L_08A1C760;
}
goto L_08A1C75C;
}
L_08A1C75C:
ctx.gpr[2] = (0u | 0u);
goto L_08A1C760;
L_08A1C760:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C768:
jump_target = ctx.gpr[31];
ctx.fpr[0] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2196)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C770:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2644)));
ctx.fpr[13] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[13])) && ctx.fpr[12] == ctx.fpr[13]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1C7A8;
}
goto L_08A1C788;
}
L_08A1C788:
ctx.gpr[4] = (17279u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[13])) && ctx.fpr[12] == ctx.fpr[13]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1C7B0;
}
goto L_08A1C7A0;
}
L_08A1C7A0:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 2u);
if (branch_taken) {
goto L_08A1C7B4;
}
goto L_08A1C7A8;
}
L_08A1C7A8:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1C7B4;
}
goto L_08A1C7B0;
}
L_08A1C7B0:
ctx.gpr[2] = (0u | 1u);
goto L_08A1C7B4;
L_08A1C7B4:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C7BC:
ctx.gpr[7] = (0u | 0u);
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[6] + 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<8u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[6] + 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<9u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[6] + 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<10u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[6] + 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<11u, 4u>(vfpu_value); }
{ float vfpu_value[4]{1.0f, 1.0f, 1.0f, 1.0f};
ctx.write_vfpu_vector_with_destination_prefix_ct<100u, 1u>(vfpu_value); }
ctx.gpr[5] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<12u>(ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[28] + static_cast<std::uint32_t>(7792));
ctx.set_vfpu_scalar_bits_ct<44u>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[5] = (ctx.gpr[28] + static_cast<std::uint32_t>(7796));
ctx.set_vfpu_scalar_bits_ct<76u>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.execute_vfpu_vdot_ct<32u, 41u, 4u, 4u>();
ctx.execute_vfpu_vdot_ct<0u, 40u, 4u, 4u>();
ctx.execute_vfpu_vdot_ct<64u, 42u, 4u, 4u>();
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<12u, 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<4u, 1u>(vfpu_d); }
ctx.execute_vfpu_vcmp_ct<4u, 44u, 1u, 2u>();
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) != 0u;
// nop
if (branch_taken) {
goto L_08A1C87C;
}
goto L_08A1C80C;
}
L_08A1C80C:
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<12u, 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<4u, 1u>(vfpu_d); }
ctx.execute_vfpu_vcmp_ct<4u, 76u, 1u, 7u>();
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) != 0u;
// nop
if (branch_taken) {
goto L_08A1C87C;
}
goto L_08A1C81C;
}
L_08A1C81C:
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(2736));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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<8u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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<9u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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<10u, 4u>(vfpu_value); }
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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<11u, 4u>(vfpu_value); }
ctx.execute_vfpu_vdot_ct<4u, 0u, 8u, 3u>();
ctx.execute_vfpu_vdot_ct<36u, 0u, 9u, 3u>();
ctx.execute_vfpu_vdot_ct<68u, 0u, 10u, 3u>();
ctx.execute_vfpu_vdot_ct<100u, 0u, 11u, 3u>();
ctx.execute_vfpu_vcmp_ct<4u, 12u, 1u, 7u>();
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) != 0u;
// nop
if (branch_taken) {
goto L_08A1C87C;
}
goto L_08A1C84C;
}
L_08A1C84C:
ctx.execute_vfpu_vcmp_ct<36u, 12u, 1u, 7u>();
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) != 0u;
// nop
if (branch_taken) {
goto L_08A1C87C;
}
goto L_08A1C858;
}
L_08A1C858:
ctx.execute_vfpu_vcmp_ct<68u, 12u, 1u, 7u>();
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) != 0u;
// nop
if (branch_taken) {
goto L_08A1C87C;
}
goto L_08A1C864;
}
L_08A1C864:
ctx.execute_vfpu_vcmp_ct<100u, 12u, 1u, 7u>();
{ const bool branch_taken = ((ctx.vfpu_ctrl[3] >> 5u) & 1u) != 0u;
// nop
if (branch_taken) {
goto L_08A1C87C;
}
goto L_08A1C870;
}
L_08A1C870:
// nop
ctx.gpr[2] = (ctx.gpr[7] + static_cast<std::uint32_t>(1));
ctx.gpr[2] = (ctx.gpr[2] & 255u);
goto L_08A1C87C;
L_08A1C87C:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C884:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[5] | 0u);
ctx.gpr[17] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1C8A4u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 611u, 0x08A1BEE8u>(ctx, &aot_mem) && ctx.pc == 0x08A1C8A4u) goto L_08A1C8A4;
return;
L_08A1C8A4:
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(2074), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(2544), ctx.gpr[16]);
ctx.gpr[4] = (ctx.gpr[17] + static_cast<std::uint32_t>(2544));
ctx.gpr[5] = (0u | 0u);
ctx.gpr[31] = (0x08A1C8BCu);
ctx.gpr[6] = (0u | 1u);
if (rt.invoke_chained_direct<&recomp_unit_0030_entry, 30u, 728u, 0x0887F5E4u>(ctx, &aot_mem) && ctx.pc == 0x08A1C8BCu) goto L_08A1C8BC;
return;
L_08A1C8BC:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C8D0:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2640)));
{ const bool branch_taken = ctx.gpr[5] == 0u;
// nop
if (branch_taken) {
goto L_08A1C9D8;
}
goto L_08A1C8DC;
}
L_08A1C8DC:
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(2840))))));
ctx.gpr[6] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1C958;
}
goto L_08A1C8EC;
}
L_08A1C8EC:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2804)));
ctx.fpr[13] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[13])) && ctx.fpr[12] == ctx.fpr[13]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1C910;
}
goto L_08A1C904;
}
L_08A1C904:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2644), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
{ const bool branch_taken = 0u == 0u;
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]));
if (branch_taken) {
goto L_08A1C93C;
}
goto L_08A1C910;
}
L_08A1C910:
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2644)));
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7676)));
ctx.gpr[5] = (16968u << 16u);
ctx.fpr[16] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[15] = ctx.fpr[15] / ctx.fpr[16];
ctx.gpr[5] = (17279u << 16u);
ctx.fpr[17] = std::bit_cast<float>(ctx.gpr[5]);
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[17]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[12] = ctx.fpr[15] / ctx.fpr[12];
ctx.fpr[12] = ctx.fpr[14] - ctx.fpr[12];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2644), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1C93C;
L_08A1C93C:
ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1C9C4;
}
goto L_08A1C94C;
}
L_08A1C94C:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2640), static_cast<std::uint8_t>(0u));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2644), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
if (branch_taken) {
goto L_08A1C9C4;
}
goto L_08A1C958;
}
L_08A1C958:
{ const bool branch_taken = ctx.gpr[5] != 0u;
// nop
if (branch_taken) {
goto L_08A1C9C4;
}
goto L_08A1C960;
}
L_08A1C960:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2804)));
ctx.fpr[14] = std::bit_cast<float>(0u);
ctx.gpr[5] = (17279u << 16u);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[14])) && ctx.fpr[12] == ctx.fpr[14]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
if (branch_taken) {
goto L_08A1C988;
}
goto L_08A1C97C;
}
L_08A1C97C:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2644), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
{ const bool branch_taken = 0u == 0u;
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]));
if (branch_taken) {
goto L_08A1C9AC;
}
goto L_08A1C988;
}
L_08A1C988:
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2644)));
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7676)));
ctx.gpr[5] = (16968u << 16u);
ctx.fpr[16] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[15] = ctx.fpr[15] / ctx.fpr[16];
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[12] = ctx.fpr[15] / ctx.fpr[12];
ctx.fpr[12] = ctx.fpr[14] + ctx.fpr[12];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2644), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1C9AC;
L_08A1C9AC:
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1C9C4;
}
goto L_08A1C9BC;
}
L_08A1C9BC:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2640), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2644), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
goto L_08A1C9C4;
L_08A1C9C4:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2644)));
ctx.fpr[12] = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[12]));
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-16965), static_cast<std::uint8_t>(ctx.gpr[4]));
if (branch_taken) {
goto L_08A1C9DC;
}
goto L_08A1C9D8;
}
L_08A1C9D8:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2641), static_cast<std::uint8_t>(0u));
goto L_08A1C9DC;
L_08A1C9DC:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1C9E4:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[31]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(1980)));
ctx.gpr[31] = (0x08A1C9F8u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(2856));
if (rt.invoke_chained_direct<&recomp_unit_0045_entry, 45u, 505u, 0x088BA678u>(ctx, &aot_mem) && ctx.pc == 0x08A1C9F8u) goto L_08A1C9F8;
return;
L_08A1C9F8:
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CA04:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CA0C:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[18] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2069), static_cast<std::uint8_t>(ctx.gpr[18]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2070), static_cast<std::uint8_t>(0u));
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2852), static_cast<std::uint16_t>(ctx.gpr[4]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2072), static_cast<std::uint8_t>(0u));
ctx.gpr[4] = (0u | 30u);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2844), ctx.gpr[4]);
ctx.fpr[20] = std::bit_cast<float>(0u);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2196), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2074), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2650), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2048), 0u);
ctx.gpr[31] = (0x08A1CA64u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1CA64u) goto L_08A1CA64;
return;
L_08A1CA64:
ctx.gpr[17] = (2238u << 16u);
{ const bool branch_taken = ctx.gpr[2] != 0u;
ctx.gpr[17] = (ctx.gpr[17] + static_cast<std::uint32_t>(-6992));
if (branch_taken) {
goto L_08A1CAC0;
}
goto L_08A1CA70;
}
L_08A1CA70:
ctx.gpr[4] = (0u | 4u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (branch_taken) {
goto L_08A1CAF4;
}
goto L_08A1CAC0;
}
L_08A1CAC0:
ctx.gpr[4] = (0u | 18u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[31] = (0x08A1CAD0u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1CAD0u) goto L_08A1CAD0;
return;
L_08A1CAD0:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[2]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1CAF4;
L_08A1CAF4:
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (0u | 61u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1CB58;
}
goto L_08A1CB08;
}
L_08A1CB08:
ctx.gpr[4] = (0u | 18u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[31] = (0x08A1CB34u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (rt.invoke_chained_direct<&recomp_unit_0067_entry, 67u, 3u, 0x08910020u>(ctx, &aot_mem) && ctx.pc == 0x08A1CB34u) goto L_08A1CB34;
return;
L_08A1CB34:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[2]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1CB58;
L_08A1CB58:
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (0u | 59u);
{ const bool branch_taken = ctx.gpr[5] == ctx.gpr[6];
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
if (branch_taken) {
goto L_08A1CB7C;
}
goto L_08A1CB6C;
}
L_08A1CB6C:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (0u | 56u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1CBCC;
}
goto L_08A1CB7C;
}
L_08A1CB7C:
ctx.gpr[4] = (0u | 18u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[31] = (0x08A1CBA8u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (rt.invoke_chained_direct<&recomp_unit_0067_entry, 67u, 3u, 0x08910020u>(ctx, &aot_mem) && ctx.pc == 0x08A1CBA8u) goto L_08A1CBA8;
return;
L_08A1CBA8:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[2]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1CBCC;
L_08A1CBCC:
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[5] = (0u | 63u);
{ const bool branch_taken = ctx.gpr[4] != ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1CC0C;
}
goto L_08A1CBE0;
}
L_08A1CBE0:
ctx.gpr[4] = (0u | 4u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[4]);
goto L_08A1CC0C;
L_08A1CC0C:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2083), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2084), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2079), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2080), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2073), static_cast<std::uint8_t>(ctx.gpr[18]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(90), static_cast<std::uint8_t>(ctx.gpr[18]));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CC44:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2016), static_cast<std::uint8_t>(ctx.gpr[4]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2069), static_cast<std::uint8_t>(ctx.gpr[4]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2070), static_cast<std::uint8_t>(0u));
ctx.gpr[5] = (0u | 2u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2852), static_cast<std::uint16_t>(ctx.gpr[5]));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2048), 0u);
ctx.fpr[12] = std::bit_cast<float>(0u);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2196), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2074), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2072), static_cast<std::uint8_t>(0u));
ctx.gpr[5] = (0u | 30u);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2844), ctx.gpr[5]);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2650), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(90), static_cast<std::uint8_t>(ctx.gpr[4]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2083), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2084), static_cast<std::uint8_t>(0u));
ctx.gpr[31] = (0x08A1CCA4u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1CCA4u) goto L_08A1CCA4;
return;
L_08A1CCA4:
ctx.gpr[17] = (2238u << 16u);
{ const bool branch_taken = ctx.gpr[2] != 0u;
ctx.gpr[17] = (ctx.gpr[17] + static_cast<std::uint32_t>(-6992));
if (branch_taken) {
goto L_08A1CD00;
}
goto L_08A1CCB0;
}
L_08A1CCB0:
ctx.gpr[4] = (0u | 4u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (branch_taken) {
goto L_08A1CD34;
}
goto L_08A1CD00;
}
L_08A1CD00:
ctx.gpr[4] = (0u | 18u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[31] = (0x08A1CD10u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1CD10u) goto L_08A1CD10;
return;
L_08A1CD10:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[2]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1CD34;
L_08A1CD34:
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (0u | 61u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1CD98;
}
goto L_08A1CD48;
}
L_08A1CD48:
ctx.gpr[4] = (0u | 18u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[31] = (0x08A1CD74u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (rt.invoke_chained_direct<&recomp_unit_0067_entry, 67u, 3u, 0x08910020u>(ctx, &aot_mem) && ctx.pc == 0x08A1CD74u) goto L_08A1CD74;
return;
L_08A1CD74:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[2]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1CD98;
L_08A1CD98:
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (0u | 59u);
{ const bool branch_taken = ctx.gpr[5] == ctx.gpr[6];
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
if (branch_taken) {
goto L_08A1CDBC;
}
goto L_08A1CDAC;
}
L_08A1CDAC:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (0u | 56u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1CE0C;
}
goto L_08A1CDBC;
}
L_08A1CDBC:
ctx.gpr[4] = (0u | 18u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[31] = (0x08A1CDE8u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (rt.invoke_chained_direct<&recomp_unit_0067_entry, 67u, 3u, 0x08910020u>(ctx, &aot_mem) && ctx.pc == 0x08A1CDE8u) goto L_08A1CDE8;
return;
L_08A1CDE8:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[2]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1CE0C;
L_08A1CE0C:
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(2228));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[5] = (0u | 63u);
{ const bool branch_taken = ctx.gpr[4] != ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1CE4C;
}
goto L_08A1CE20;
}
L_08A1CE20:
ctx.gpr[4] = (0u | 4u);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[4]);
goto L_08A1CE4C;
L_08A1CE4C:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2079), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2080), static_cast<std::uint8_t>(0u));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CE68:
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(2032));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + 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 = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CE7C:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(88), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[31] = (0x08A1CE9Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 47u, 0x08960424u>(ctx, &aot_mem) && ctx.pc == 0x08A1CE9Cu) goto L_08A1CE9C;
return;
L_08A1CE9C:
ctx.gpr[4] = (ctx.gpr[2] | 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1CEDC;
}
goto L_08A1CEA8;
}
L_08A1CEA8:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(16)));
ctx.gpr[31] = (0x08A1CEB4u);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 28u, 0x08964540u>(ctx, &aot_mem) && ctx.pc == 0x08A1CEB4u) goto L_08A1CEB4;
return;
L_08A1CEB4:
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
ctx.fpr[13] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
ctx.gpr[4] = (16585u << 16u);
if (branch_taken) {
goto L_08A1CED8;
}
goto L_08A1CECC;
}
L_08A1CECC:
ctx.gpr[4] = (ctx.gpr[4] | 4059u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
goto L_08A1CED8;
L_08A1CED8:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2164), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1CEDC;
L_08A1CEDC:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CEEC:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2057), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[31] = (0x08A1CF0Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 47u, 0x08960424u>(ctx, &aot_mem) && ctx.pc == 0x08A1CF0Cu) goto L_08A1CF0C;
return;
L_08A1CF0C:
ctx.gpr[4] = (ctx.gpr[2] | 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1CF4C;
}
goto L_08A1CF18;
}
L_08A1CF18:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(16)));
ctx.gpr[31] = (0x08A1CF24u);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 28u, 0x08964540u>(ctx, &aot_mem) && ctx.pc == 0x08A1CF24u) goto L_08A1CF24;
return;
L_08A1CF24:
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
ctx.fpr[13] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
ctx.gpr[4] = (16585u << 16u);
if (branch_taken) {
goto L_08A1CF48;
}
goto L_08A1CF3C;
}
L_08A1CF3C:
ctx.gpr[4] = (ctx.gpr[4] | 4059u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
goto L_08A1CF48;
L_08A1CF48:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2164), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1CF4C;
L_08A1CF4C:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CF5C:
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2288));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[5] + 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[6] + 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[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2304));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[5] + 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 = ctx.gpr[31];
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2648), static_cast<std::uint8_t>(0u));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1CF7C:
ctx.gpr[8] = (ctx.gpr[7] | 0u);
ctx.gpr[7] = (ctx.gpr[5] & 255u);
ctx.gpr[6] = (ctx.gpr[6] & 255u);
ctx.gpr[5] = (ctx.gpr[8] & 255u);
ctx.gpr[8] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2640)));
{ const bool branch_taken = ctx.gpr[8] != 0u;
// nop
if (branch_taken) {
goto L_08A1CFD4;
}
goto L_08A1CF98;
}
L_08A1CF98:
ctx.gpr[8] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-16965)));
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[8]);
ctx.fpr[12] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[12])));
ctx.gpr[8] = (17279u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[8]);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[13])) && ctx.fpr[12] == ctx.fpr[13]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1CFD4;
}
goto L_08A1CFBC;
}
L_08A1CFBC:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(1948), static_cast<std::uint8_t>(0u));
ctx.gpr[8] = (0u | 2u);
{ const bool branch_taken = ctx.gpr[7] == ctx.gpr[8];
// nop
if (branch_taken) {
goto L_08A1CFDC;
}
goto L_08A1CFCC;
}
L_08A1CFCC:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1CFF4;
}
goto L_08A1CFD4;
}
L_08A1CFD4:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D000;
}
goto L_08A1CFDC;
}
L_08A1CFDC:
{ const bool branch_taken = ctx.gpr[6] != ctx.gpr[8];
// nop
if (branch_taken) {
goto L_08A1CFF4;
}
goto L_08A1CFE4;
}
L_08A1CFE4:
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[8];
// nop
if (branch_taken) {
goto L_08A1CFF4;
}
goto L_08A1CFEC;
}
L_08A1CFEC:
ctx.gpr[8] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(1948), static_cast<std::uint8_t>(ctx.gpr[8]));
goto L_08A1CFF4;
L_08A1CFF4:
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-16968), static_cast<std::uint8_t>(ctx.gpr[7]));
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-16967), static_cast<std::uint8_t>(ctx.gpr[6]));
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-16966), static_cast<std::uint8_t>(ctx.gpr[5]));
goto L_08A1D000;
L_08A1D000:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D008:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2180), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (0u | 1u);
jump_target = ctx.gpr[31];
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2072), static_cast<std::uint8_t>(ctx.gpr[5]));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D018:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[31]);
ctx.gpr[17] = (ctx.gpr[5] << 16u);
ctx.gpr[17] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[17]) >> 16u));
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-24896)));
ctx.gpr[6] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[5] == ctx.gpr[6];
ctx.gpr[16] = (ctx.gpr[4] | 0u);
if (branch_taken) {
goto L_08A1D06C;
}
goto L_08A1D040;
}
L_08A1D040:
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(1976), static_cast<std::uint16_t>(ctx.gpr[17]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(2064)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1D064;
}
goto L_08A1D050;
}
L_08A1D050:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1D074;
}
goto L_08A1D05C;
}
L_08A1D05C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D080;
}
goto L_08A1D064;
}
L_08A1D064:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D13C;
}
goto L_08A1D06C;
}
L_08A1D06C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D13C;
}
goto L_08A1D074;
}
L_08A1D074:
ctx.gpr[31] = (0x08A1D07Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0216_entry, 216u, 351u, 0x08B657E8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D07Cu) goto L_08A1D07C;
return;
L_08A1D07C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
goto L_08A1D080;
L_08A1D080:
ctx.gpr[31] = (0x08A1D088u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 557u, 0x089BAA80u>(ctx, &aot_mem) && ctx.pc == 0x08A1D088u) goto L_08A1D088;
return;
L_08A1D088:
{ const bool branch_taken = ctx.gpr[2] != 0u;
// nop
if (branch_taken) {
goto L_08A1D13C;
}
goto L_08A1D090;
}
L_08A1D090:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[4]);
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(112))))));
ctx.gpr[5] = (0u | 15u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
ctx.gpr[4] = (0u | 7u);
if (branch_taken) {
goto L_08A1D13C;
}
goto L_08A1D0C0;
}
L_08A1D0C0:
{ const bool branch_taken = ctx.gpr[17] == ctx.gpr[4];
ctx.gpr[4] = (0u | 8u);
if (branch_taken) {
goto L_08A1D0E8;
}
goto L_08A1D0C8;
}
L_08A1D0C8:
{ const bool branch_taken = ctx.gpr[17] == ctx.gpr[4];
ctx.gpr[4] = (0u | 46u);
if (branch_taken) {
goto L_08A1D0E8;
}
goto L_08A1D0D0;
}
L_08A1D0D0:
{ const bool branch_taken = ctx.gpr[17] == ctx.gpr[4];
ctx.gpr[4] = (0u | 47u);
if (branch_taken) {
goto L_08A1D0E8;
}
goto L_08A1D0D8;
}
L_08A1D0D8:
{ const bool branch_taken = ctx.gpr[17] == ctx.gpr[4];
ctx.gpr[4] = (0u | 34u);
if (branch_taken) {
goto L_08A1D0E8;
}
goto L_08A1D0E0;
}
L_08A1D0E0:
{ const bool branch_taken = ctx.gpr[17] != ctx.gpr[4];
// nop
if (branch_taken) {
goto L_08A1D13C;
}
goto L_08A1D0E8;
}
L_08A1D0E8:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-7080)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1D13C;
}
goto L_08A1D0F4;
}
L_08A1D0F4:
ctx.gpr[31] = (0x08A1D0FCu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 47u, 0x08960424u>(ctx, &aot_mem) && ctx.pc == 0x08A1D0FCu) goto L_08A1D0FC;
return;
L_08A1D0FC:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1D11C;
}
goto L_08A1D104;
}
L_08A1D104:
ctx.gpr[31] = (0x08A1D10Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 47u, 0x08960424u>(ctx, &aot_mem) && ctx.pc == 0x08A1D10Cu) goto L_08A1D10C;
return;
L_08A1D10C:
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int8_t>(aot_mem.aot_load8(ctx.gpr[2] + static_cast<std::uint32_t>(3262))))));
ctx.gpr[4] = (ctx.gpr[4] & 32u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1D13C;
}
goto L_08A1D11C;
}
L_08A1D11C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[5] = (0u | 2u);
if (branch_taken) {
goto L_08A1D138;
}
goto L_08A1D128;
}
L_08A1D128:
ctx.gpr[31] = (0x08A1D130u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0216_entry, 216u, 351u, 0x08B657E8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D130u) goto L_08A1D130;
return;
L_08A1D130:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
ctx.gpr[5] = (0u | 2u);
goto L_08A1D138;
L_08A1D138:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(11240), ctx.gpr[5]);
goto L_08A1D13C;
L_08A1D13C:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D150:
ctx.gpr[6] = (17096u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[6]);
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[14];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2828), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = ctx.fpr[13] / ctx.fpr[14];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2832), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2836), ctx.gpr[5]);
ctx.gpr[5] = (0u | 1u);
jump_target = ctx.gpr[31];
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2650), static_cast<std::uint8_t>(ctx.gpr[5]));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D178:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1980), ctx.gpr[5]);
ctx.gpr[31] = (0x08A1D198u);
ctx.gpr[4] = (ctx.gpr[5] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0035_entry, 35u, 115u, 0x088907D8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D198u) goto L_08A1D198;
return;
L_08A1D198:
ctx.gpr[17] = (ctx.gpr[2] | 0u);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2720)));
{ const bool branch_taken = ctx.gpr[5] == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2728)));
if (branch_taken) {
goto L_08A1D1C0;
}
goto L_08A1D1A8;
}
L_08A1D1A8:
ctx.gpr[6] = (ctx.gpr[4] & 1u);
if (ctx.gpr[6] == 0u) {
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2720), ctx.gpr[17]);
goto L_08A1D1C4;
}
goto L_08A1D1B4;
L_08A1D1B4:
ctx.gpr[31] = (0x08A1D1BCu);
ctx.gpr[4] = (ctx.gpr[5] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0117_entry, 117u, 129u, 0x089D89E0u>(ctx, &aot_mem) && ctx.pc == 0x08A1D1BCu) goto L_08A1D1BC;
return;
L_08A1D1BC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2728)));
goto L_08A1D1C0;
L_08A1D1C0:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2720), ctx.gpr[17]);
goto L_08A1D1C4;
L_08A1D1C4:
ctx.gpr[5] = (0u + static_cast<std::uint32_t>(-2));
ctx.gpr[4] = (ctx.gpr[4] & ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2728), ctx.gpr[4]);
ctx.gpr[31] = (0x08A1D1D8u);
ctx.gpr[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(2656));
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 939u, 0x0885FF48u>(ctx, &aot_mem) && ctx.pc == 0x08A1D1D8u) goto L_08A1D1D8;
return;
L_08A1D1D8:
ctx.gpr[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(2856));
ctx.gpr[31] = (0x08A1D1E4u);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(1980)));
if (rt.invoke_chained_direct<&recomp_unit_0045_entry, 45u, 508u, 0x088BA6A4u>(ctx, &aot_mem) && ctx.pc == 0x08A1D1E4u) goto L_08A1D1E4;
return;
L_08A1D1E4:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D1F8:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[31]);
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2052)));
ctx.gpr[6] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1D224;
}
goto L_08A1D214;
}
L_08A1D214:
ctx.gpr[5] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2082), static_cast<std::uint8_t>(ctx.gpr[5]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
if (branch_taken) {
goto L_08A1D22C;
}
goto L_08A1D224;
}
L_08A1D224:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2082), static_cast<std::uint8_t>(0u));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
goto L_08A1D22C;
L_08A1D22C:
{ const bool branch_taken = ctx.gpr[16] != 0u;
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (branch_taken) {
goto L_08A1D244;
}
goto L_08A1D234;
}
L_08A1D234:
ctx.gpr[31] = (0x08A1D23Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0216_entry, 216u, 351u, 0x08B657E8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D23Cu) goto L_08A1D23C;
return;
L_08A1D23C:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
ctx.gpr[4] = (ctx.gpr[16] | 0u);
goto L_08A1D244;
L_08A1D244:
ctx.gpr[31] = (0x08A1D24Cu);
ctx.gpr[5] = (0u | 1u);
if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 684u, 0x089BB270u>(ctx, &aot_mem) && ctx.pc == 0x08A1D24Cu) goto L_08A1D24C;
return;
L_08A1D24C:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
if (ctx.gpr[16] != 0u) {
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
goto L_08A1D268;
}
goto L_08A1D258;
L_08A1D258:
ctx.gpr[31] = (0x08A1D260u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0216_entry, 216u, 351u, 0x08B657E8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D260u) goto L_08A1D260;
return;
L_08A1D260:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
goto L_08A1D268;
L_08A1D268:
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1D278;
}
goto L_08A1D270;
}
L_08A1D270:
ctx.gpr[31] = (0x08A1D278u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0216_entry, 216u, 351u, 0x08B657E8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D278u) goto L_08A1D278;
return;
L_08A1D278:
ctx.gpr[31] = (0x08A1D280u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 581u, 0x089BABB4u>(ctx, &aot_mem) && ctx.pc == 0x08A1D280u) goto L_08A1D280;
return;
L_08A1D280:
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1D28Cu);
ctx.gpr[5] = (ctx.gpr[2] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 687u, 0x089BB288u>(ctx, &aot_mem) && ctx.pc == 0x08A1D28Cu) goto L_08A1D28C;
return;
L_08A1D28C:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D29C:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[31]);
ctx.gpr[5] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2052), static_cast<std::uint8_t>(ctx.gpr[5]));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
if (ctx.gpr[4] != 0u) {
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
goto L_08A1D2C4;
}
goto L_08A1D2B8;
L_08A1D2B8:
ctx.gpr[31] = (0x08A1D2C0u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0216_entry, 216u, 351u, 0x08B657E8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D2C0u) goto L_08A1D2C0;
return;
L_08A1D2C0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(5848)));
goto L_08A1D2C4;
L_08A1D2C4:
ctx.gpr[31] = (0x08A1D2CCu);
ctx.gpr[5] = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0109_entry, 109u, 684u, 0x089BB270u>(ctx, &aot_mem) && ctx.pc == 0x08A1D2CCu) goto L_08A1D2CC;
return;
L_08A1D2CC:
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D2D8:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[17] = (ctx.gpr[5] << 16u);
ctx.gpr[17] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[17]) >> 16u));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(224)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(72)));
ctx.gpr[5] = (ctx.gpr[5] & 14u);
ctx.gpr[5] = (ctx.gpr[5] ^ 4u);
ctx.gpr[5] = (ctx.gpr[5] < static_cast<std::uint32_t>(1) ? 1u : 0u);
ctx.gpr[5] = (ctx.gpr[5] & 255u);
{ const bool branch_taken = ctx.gpr[5] == 0u;
// nop
if (branch_taken) {
goto L_08A1D358;
}
goto L_08A1D314;
}
L_08A1D314:
ctx.gpr[31] = (0x08A1D31Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0191_entry, 191u, 504u, 0x08B01E00u>(ctx, &aot_mem) && ctx.pc == 0x08A1D31Cu) goto L_08A1D31C;
return;
L_08A1D31C:
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), 0u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[5] = (ctx.gpr[2] | 0u);
ctx.gpr[31] = (0x08A1D330u);
ctx.gpr[6] = (ctx.gpr[29] | 0u);
goto L_08A1D810;
L_08A1D330:
{ const bool branch_taken = ctx.gpr[17] != 0u;
// nop
if (branch_taken) {
goto L_08A1D36C;
}
goto L_08A1D338;
}
L_08A1D338:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (2232u << 16u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(5296));
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2176), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1D3C0;
}
goto L_08A1D358;
}
L_08A1D358:
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1D364u);
ctx.gpr[5] = (ctx.gpr[17] | 0u);
goto L_08A1D3DC;
L_08A1D364:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D3C8;
}
goto L_08A1D36C;
}
L_08A1D36C:
ctx.gpr[4] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[17] != ctx.gpr[4];
// nop
if (branch_taken) {
goto L_08A1D398;
}
goto L_08A1D378;
}
L_08A1D378:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (2232u << 16u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(5316));
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2176), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1D3C0;
}
goto L_08A1D398;
}
L_08A1D398:
ctx.gpr[4] = (0u | 2u);
{ const bool branch_taken = ctx.gpr[17] != ctx.gpr[4];
// nop
if (branch_taken) {
goto L_08A1D3C0;
}
goto L_08A1D3A4;
}
L_08A1D3A4:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (2232u << 16u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(5336));
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2176), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1D3C0;
L_08A1D3C0:
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2080), static_cast<std::uint8_t>(ctx.gpr[4]));
goto L_08A1D3C8;
L_08A1D3C8:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D3DC:
ctx.gpr[5] = (ctx.gpr[5] << 16u);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[5]) >> 16u));
{ const bool branch_taken = ctx.gpr[5] != 0u;
// nop
if (branch_taken) {
goto L_08A1D3F8;
}
goto L_08A1D3EC;
}
L_08A1D3EC:
ctx.fpr[12] = std::bit_cast<float>(0u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2188), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1D430;
}
goto L_08A1D3F8;
}
L_08A1D3F8:
ctx.gpr[6] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1D414;
}
goto L_08A1D404;
}
L_08A1D404:
ctx.gpr[5] = (16416u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2188), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1D430;
}
goto L_08A1D414;
}
L_08A1D414:
ctx.gpr[6] = (0u | 2u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1D430;
}
goto L_08A1D420;
}
L_08A1D420:
ctx.gpr[5] = (16480u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2188), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1D430;
}
goto L_08A1D430;
}
L_08A1D430:
ctx.gpr[5] = (0u | 1u);
jump_target = ctx.gpr[31];
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2079), static_cast<std::uint8_t>(ctx.gpr[5]));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D43C:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (ctx.gpr[5] | 0u);
ctx.gpr[18] = (ctx.gpr[6] << 16u);
ctx.gpr[18] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[18]) >> 16u));
ctx.gpr[17] = (ctx.gpr[7] << 16u);
ctx.gpr[17] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[17]) >> 16u));
ctx.gpr[5] = (0u | 1u);
ctx.gpr[6] = (0u | 3u);
{ const bool branch_taken = ctx.gpr[8] == ctx.gpr[6];
ctx.gpr[6] = (0u | 2u);
if (branch_taken) {
goto L_08A1D480;
}
goto L_08A1D478;
}
L_08A1D478:
{ const bool branch_taken = ctx.gpr[8] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1D494;
}
goto L_08A1D480;
}
L_08A1D480:
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2048)));
ctx.gpr[7] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[6] != ctx.gpr[7];
// nop
if (branch_taken) {
goto L_08A1D494;
}
goto L_08A1D490;
}
L_08A1D490:
ctx.gpr[5] = (0u | 0u);
goto L_08A1D494;
L_08A1D494:
{ const bool branch_taken = ctx.gpr[5] == 0u;
// nop
if (branch_taken) {
goto L_08A1D568;
}
goto L_08A1D49C;
}
L_08A1D49C:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2048), ctx.gpr[8]);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1D4F4;
}
goto L_08A1D4A8;
}
L_08A1D4A8:
ctx.gpr[31] = (0x08A1D4B0u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D4B0u) goto L_08A1D4B0;
return;
L_08A1D4B0:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1D4C8;
}
goto L_08A1D4B8;
}
L_08A1D4B8:
ctx.gpr[31] = (0x08A1D4C0u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1D4C0u) goto L_08A1D4C0;
return;
L_08A1D4C0:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (ctx.gpr[2] | 0u);
if (branch_taken) {
goto L_08A1D544;
}
goto L_08A1D4C8;
}
L_08A1D4C8:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(7800)));
ctx.gpr[5] = (ctx.gpr[4] << 8u);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[5] = (2238u << 16u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(-6992));
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (branch_taken) {
goto L_08A1D544;
}
goto L_08A1D4F4;
}
L_08A1D4F4:
{ const bool branch_taken = ctx.gpr[18] != 0u;
// nop
if (branch_taken) {
goto L_08A1D544;
}
goto L_08A1D4FC;
}
L_08A1D4FC:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(1984)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(72)));
ctx.gpr[6] = (ctx.gpr[6] & 14u);
ctx.gpr[6] = (ctx.gpr[6] ^ 6u);
ctx.gpr[6] = (ctx.gpr[6] < static_cast<std::uint32_t>(1) ? 1u : 0u);
ctx.gpr[6] = (ctx.gpr[6] & 255u);
{ const bool branch_taken = ctx.gpr[6] == 0u;
// nop
if (branch_taken) {
goto L_08A1D524;
}
goto L_08A1D51C;
}
L_08A1D51C:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[18] = (0u | 4u);
if (branch_taken) {
goto L_08A1D544;
}
goto L_08A1D524;
}
L_08A1D524:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(72)));
ctx.gpr[5] = (ctx.gpr[5] & 14u);
ctx.gpr[5] = (ctx.gpr[5] ^ 4u);
ctx.gpr[5] = (ctx.gpr[5] < static_cast<std::uint32_t>(1) ? 1u : 0u);
ctx.gpr[5] = (ctx.gpr[5] & 255u);
{ const bool branch_taken = ctx.gpr[5] == 0u;
// nop
if (branch_taken) {
goto L_08A1D544;
}
goto L_08A1D540;
}
L_08A1D540:
ctx.gpr[18] = (0u | 18u);
goto L_08A1D544;
L_08A1D544:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2070), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1984), ctx.gpr[4]);
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[18]));
aot_mem.aot_store16(ctx.gpr[16] + static_cast<std::uint32_t>(2852), static_cast<std::uint16_t>(ctx.gpr[17]));
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2069), static_cast<std::uint8_t>(0u));
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(2073), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[31] = (0x08A1D568u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 47u, 0x08960424u>(ctx, &aot_mem) && ctx.pc == 0x08A1D568u) goto L_08A1D568;
return;
L_08A1D568:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D580:
ctx.gpr[8] = (ctx.gpr[6] << 16u);
ctx.gpr[8] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[8]) >> 16u));
ctx.gpr[6] = (0u | 1u);
ctx.gpr[9] = (0u | 3u);
{ const bool branch_taken = ctx.gpr[7] == ctx.gpr[9];
ctx.gpr[9] = (0u | 2u);
if (branch_taken) {
goto L_08A1D5A0;
}
goto L_08A1D598;
}
L_08A1D598:
{ const bool branch_taken = ctx.gpr[7] != ctx.gpr[9];
// nop
if (branch_taken) {
goto L_08A1D5B4;
}
goto L_08A1D5A0;
}
L_08A1D5A0:
ctx.gpr[9] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2048)));
ctx.gpr[10] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[9] != ctx.gpr[10];
// nop
if (branch_taken) {
goto L_08A1D5B4;
}
goto L_08A1D5B0;
}
L_08A1D5B0:
ctx.gpr[6] = (0u | 0u);
goto L_08A1D5B4;
L_08A1D5B4:
{ const bool branch_taken = ctx.gpr[6] == 0u;
// nop
if (branch_taken) {
goto L_08A1D5E8;
}
goto L_08A1D5BC;
}
L_08A1D5BC:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2048), ctx.gpr[7]);
ctx.gpr[6] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2070), static_cast<std::uint8_t>(ctx.gpr[6]));
ctx.gpr[7] = (0u | 15u);
aot_mem.aot_store16(ctx.gpr[4] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[7]));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2069), static_cast<std::uint8_t>(0u));
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(2272));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[5] + 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_store16(ctx.gpr[4] + static_cast<std::uint32_t>(2852), static_cast<std::uint16_t>(ctx.gpr[8]));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2073), static_cast<std::uint8_t>(ctx.gpr[6]));
goto L_08A1D5E8;
L_08A1D5E8:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D5F0:
ctx.gpr[6] = (0u | 17u);
aot_mem.aot_store16(ctx.gpr[4] + static_cast<std::uint32_t>(2848), static_cast<std::uint16_t>(ctx.gpr[6]));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2069), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2070), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2058), static_cast<std::uint8_t>(0u));
aot_mem.aot_store16(ctx.gpr[4] + static_cast<std::uint32_t>(2852), static_cast<std::uint16_t>(ctx.gpr[5]));
ctx.gpr[5] = (0u | 1u);
jump_target = ctx.gpr[31];
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2073), static_cast<std::uint8_t>(ctx.gpr[5]));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D614:
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(2256));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + 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 = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D628:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(20), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1D644u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(1980)));
if (rt.invoke_chained_direct<&recomp_unit_0035_entry, 35u, 121u, 0x08890828u>(ctx, &aot_mem) && ctx.pc == 0x08A1D644u) goto L_08A1D644;
return;
L_08A1D644:
ctx.gpr[17] = (ctx.gpr[2] | 0u);
ctx.gpr[31] = (0x08A1D650u);
ctx.gpr[4] = (ctx.gpr[17] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0091_entry, 91u, 725u, 0x08973704u>(ctx, &aot_mem) && ctx.pc == 0x08A1D650u) goto L_08A1D650;
return;
L_08A1D650:
ctx.gpr[4] = (ctx.gpr[17] + static_cast<std::uint32_t>(80));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(1980)));
ctx.gpr[6] = (ctx.gpr[5] + static_cast<std::uint32_t>(32));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(104)));
ctx.gpr[5] = (48896u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(4)));
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(8)));
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(32)));
ctx.gpr[5] = (16128u << 16u);
ctx.fpr[18] = std::bit_cast<float>(ctx.gpr[5]);
{ const float fs = ctx.fpr[17]; const float ft = ctx.fpr[18]; 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; }
ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[17];
ctx.fpr[19] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(36)));
{ const float fs = ctx.fpr[19]; const float ft = ctx.fpr[18]; 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; }
ctx.fpr[15] = ctx.fpr[15] + ctx.fpr[16];
ctx.fpr[0] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(40)));
{ const float fs = ctx.fpr[0]; const float ft = ctx.fpr[18]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[0] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[0] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[0];
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(ctx.fpr[14]));
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(16), std::bit_cast<std::uint32_t>(ctx.fpr[15]));
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(48)));
{ const float fs = ctx.fpr[17]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.fpr[19] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(52)));
{ const float fs = ctx.fpr[19]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[15];
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(56)));
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[14] + ctx.fpr[12];
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]) ^ 0x80000000u);
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(1980)));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(108)));
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(16)));
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(24)));
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(32)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[18]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[13] = ctx.fpr[15] + ctx.fpr[13];
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(36)));
{ const float fs = ctx.fpr[17]; const float ft = ctx.fpr[18]; 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; }
ctx.fpr[14] = ctx.fpr[14] + ctx.fpr[17];
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(40)));
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[18]; 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; }
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[16];
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(4), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(20), std::bit_cast<std::uint32_t>(ctx.fpr[14]));
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(48)));
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[19] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(52)));
{ const float fs = ctx.fpr[19]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.fpr[13] = ctx.fpr[13] + ctx.fpr[14];
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(56)));
{ const float fs = ctx.fpr[17]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[13] + ctx.fpr[12];
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]) ^ 0x80000000u);
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(32)));
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(36)));
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(24), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(40)));
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(40), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(48)));
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(32)));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(52)));
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(36)));
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[17]; 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; }
ctx.fpr[13] = ctx.fpr[13] + ctx.fpr[16];
ctx.fpr[18] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(56)));
{ const float fs = ctx.fpr[18]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[13] + ctx.fpr[12];
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]) ^ 0x80000000u);
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[31] = (0x08A1D7B0u);
ctx.gpr[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(2656));
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 939u, 0x0885FF48u>(ctx, &aot_mem) && ctx.pc == 0x08A1D7B0u) goto L_08A1D7B0;
return;
L_08A1D7B0:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(20)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D7C4:
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(1976))))));
ctx.gpr[5] = (0u | 7u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
ctx.gpr[5] = (0u | 34u);
if (branch_taken) {
goto L_08A1D7FC;
}
goto L_08A1D7D4;
}
L_08A1D7D4:
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
ctx.gpr[5] = (0u | 8u);
if (branch_taken) {
goto L_08A1D7FC;
}
goto L_08A1D7DC;
}
L_08A1D7DC:
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
ctx.gpr[5] = (0u | 45u);
if (branch_taken) {
goto L_08A1D7FC;
}
goto L_08A1D7E4;
}
L_08A1D7E4:
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
ctx.gpr[5] = (0u | 47u);
if (branch_taken) {
goto L_08A1D7FC;
}
goto L_08A1D7EC;
}
L_08A1D7EC:
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
ctx.gpr[5] = (0u | 46u);
if (branch_taken) {
goto L_08A1D7FC;
}
goto L_08A1D7F4;
}
L_08A1D7F4:
{ const bool branch_taken = ctx.gpr[4] != ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1D804;
}
goto L_08A1D7FC;
}
L_08A1D7FC:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 1u);
if (branch_taken) {
goto L_08A1D808;
}
goto L_08A1D804;
}
L_08A1D804:
ctx.gpr[2] = (0u | 0u);
goto L_08A1D808;
L_08A1D808:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D810:
ctx.gpr[4] = (ctx.gpr[5] + static_cast<std::uint32_t>(-1));
ctx.gpr[5] = (ctx.gpr[4] < static_cast<std::uint32_t>(5) ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[5] == 0u;
// nop
if (branch_taken) {
goto L_08A1D894;
}
goto L_08A1D820;
}
L_08A1D820:
ctx.gpr[2] = (0u | 1u);
ctx.gpr[1] = (0u + static_cast<std::uint32_t>(1));
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[1];
ctx.gpr[1] = (0u + static_cast<std::uint32_t>(2));
if (branch_taken) {
goto L_08A1D854;
}
goto L_08A1D830;
}
L_08A1D830:
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[1];
ctx.gpr[1] = (0u + static_cast<std::uint32_t>(3));
if (branch_taken) {
goto L_08A1D864;
}
goto L_08A1D838;
}
L_08A1D838:
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[1];
ctx.gpr[1] = (0u + static_cast<std::uint32_t>(4));
if (branch_taken) {
goto L_08A1D884;
}
goto L_08A1D840;
}
L_08A1D840:
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[1];
// nop
if (branch_taken) {
goto L_08A1D874;
}
goto L_08A1D848;
}
L_08A1D848:
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(0), 0u);
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D898;
}
goto L_08A1D854;
}
L_08A1D854:
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(0), ctx.gpr[4]);
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D898;
}
goto L_08A1D864;
}
L_08A1D864:
ctx.gpr[4] = (0u | 2u);
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(0), ctx.gpr[4]);
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D898;
}
goto L_08A1D874;
}
L_08A1D874:
ctx.gpr[4] = (0u | 3u);
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(0), ctx.gpr[4]);
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D898;
}
goto L_08A1D884;
}
L_08A1D884:
ctx.gpr[4] = (0u | 4u);
aot_mem.aot_store32(ctx.gpr[6] + static_cast<std::uint32_t>(0), ctx.gpr[4]);
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1D898;
}
goto L_08A1D894;
}
L_08A1D894:
ctx.gpr[2] = (0u | 0u);
goto L_08A1D898;
L_08A1D898:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1D8A0:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
ctx.gpr[6] = (ctx.gpr[5] << 5u);
ctx.gpr[7] = (0u - ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[7] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[7] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[7] = (ctx.gpr[4] + ctx.gpr[7]);
ctx.gpr[8] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[7] + static_cast<std::uint32_t>(112))))));
ctx.gpr[6] = (0u | 17u);
{ const bool branch_taken = ctx.gpr[8] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1D904;
}
goto L_08A1D8D0;
}
L_08A1D8D0:
ctx.gpr[4] = (17096u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[13];
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[7] + static_cast<std::uint32_t>(280)));
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[4]) >= 0;
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
if (branch_taken) {
goto L_08A1D8F8;
}
goto L_08A1D8EC;
}
L_08A1D8EC:
ctx.gpr[4] = (20352u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = ctx.fpr[13] + ctx.fpr[14];
goto L_08A1D8F8;
L_08A1D8F8:
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[7] + static_cast<std::uint32_t>(376), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1DA34;
}
goto L_08A1D904;
}
L_08A1D904:
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(1));
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[5]) >= 0;
ctx.gpr[7] = (ctx.gpr[5] & 1u);
if (branch_taken) {
goto L_08A1D938;
}
goto L_08A1D910;
}
L_08A1D910:
ctx.gpr[7] = (0u - ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 5u);
ctx.gpr[8] = (0u - ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[8] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[7] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[4] + ctx.gpr[7]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[7] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[7] + static_cast<std::uint32_t>(112))))));
if (branch_taken) {
goto L_08A1D958;
}
goto L_08A1D938;
}
L_08A1D938:
ctx.gpr[7] = (ctx.gpr[7] << 5u);
ctx.gpr[8] = (0u - ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[8] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[7] << 2u);
ctx.gpr[7] = (ctx.gpr[8] + ctx.gpr[7]);
ctx.gpr[7] = (ctx.gpr[4] + ctx.gpr[7]);
ctx.gpr[7] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[7] + static_cast<std::uint32_t>(112))))));
goto L_08A1D958;
L_08A1D958:
{ const bool branch_taken = ctx.gpr[7] != ctx.gpr[6];
// nop
if (branch_taken) {
goto L_08A1DA34;
}
goto L_08A1D960;
}
L_08A1D960:
ctx.gpr[6] = (17096u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[6]);
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[13];
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[5]) >= 0;
ctx.gpr[6] = (ctx.gpr[5] & 1u);
if (branch_taken) {
goto L_08A1D9A4;
}
goto L_08A1D974;
}
L_08A1D974:
ctx.gpr[6] = (0u - ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 5u);
ctx.gpr[7] = (0u - ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[7] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[6] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[6] + static_cast<std::uint32_t>(280)));
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[6]);
{ const bool branch_taken = 0u == 0u;
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
if (branch_taken) {
goto L_08A1D9CC;
}
goto L_08A1D9A4;
}
L_08A1D9A4:
ctx.gpr[6] = (ctx.gpr[6] << 5u);
ctx.gpr[7] = (0u - ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[7] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[6] << 2u);
ctx.gpr[6] = (ctx.gpr[7] + ctx.gpr[6]);
ctx.gpr[6] = (ctx.gpr[4] + ctx.gpr[6]);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[6] + static_cast<std::uint32_t>(280)));
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[6]);
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
goto L_08A1D9CC;
L_08A1D9CC:
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[6]) >= 0;
ctx.gpr[6] = (ctx.gpr[5] | 0u);
if (branch_taken) {
goto L_08A1D9E4;
}
goto L_08A1D9D4;
}
L_08A1D9D4:
ctx.gpr[6] = (20352u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[6]);
ctx.fpr[13] = ctx.fpr[13] + ctx.fpr[14];
ctx.gpr[6] = (ctx.gpr[5] | 0u);
goto L_08A1D9E4;
L_08A1D9E4:
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[6]) >= 0;
ctx.gpr[5] = (ctx.gpr[6] & 1u);
if (branch_taken) {
goto L_08A1DA10;
}
goto L_08A1D9EC;
}
L_08A1D9EC:
ctx.gpr[5] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[5] = (ctx.gpr[4] + ctx.gpr[5]);
if (branch_taken) {
goto L_08A1DA2C;
}
goto L_08A1DA10;
}
L_08A1DA10:
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[4] + ctx.gpr[5]);
goto L_08A1DA2C;
L_08A1DA2C:
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
aot_mem.aot_store32(ctx.gpr[5] + static_cast<std::uint32_t>(376), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1DA34;
L_08A1DA34:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1DA3C:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-48));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(40), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(44), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(2496));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + 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[6] + 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[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(2512));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + 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[7] + 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[6] = (ctx.gpr[16] + static_cast<std::uint32_t>(2528));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[6] + 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[5] + 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[4] + 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[29] + 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.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[22] = ctx.fpr[12] + ctx.fpr[15];
ctx.fpr[22] = std::sqrt(ctx.fpr[22]);
ctx.gpr[31] = (0x08A1DAA8u);
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[14]));
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 28u, 0x08964540u>(ctx, &aot_mem) && ctx.pc == 0x08A1DAA8u) goto L_08A1DAA8;
return;
L_08A1DAA8:
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
ctx.fpr[20] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[20]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
ctx.gpr[4] = (16585u << 16u);
if (branch_taken) {
goto L_08A1DACC;
}
goto L_08A1DAC0;
}
L_08A1DAC0:
ctx.gpr[4] = (ctx.gpr[4] | 4059u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
goto L_08A1DACC;
L_08A1DACC:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2144), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[31] = (0x08A1DADCu);
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[22]));
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 28u, 0x08964540u>(ctx, &aot_mem) && ctx.pc == 0x08A1DADCu) goto L_08A1DADC;
return;
L_08A1DADC:
ctx.fpr[22] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
ctx.set_fpu_condition((ctx.fpr[22] < ctx.fpr[20]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
ctx.gpr[4] = (16585u << 16u);
if (branch_taken) {
goto L_08A1DAFC;
}
goto L_08A1DAF0;
}
L_08A1DAF0:
ctx.gpr[4] = (ctx.gpr[4] | 4059u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[22] = ctx.fpr[22] + ctx.fpr[12];
goto L_08A1DAFC;
L_08A1DAFC:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2140), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(32)));
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(36)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(40)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(44)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(48));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1DB18:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2082)));
{ const bool branch_taken = ctx.gpr[5] != 0u;
ctx.fpr[12] = std::bit_cast<float>(0u);
if (branch_taken) {
goto L_08A1DB2C;
}
goto L_08A1DB24;
}
L_08A1DB24:
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2020), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1DB38;
}
goto L_08A1DB2C;
}
L_08A1DB2C:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2082), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2052), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2020), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1DB38;
L_08A1DB38:
jump_target = ctx.gpr[31];
// nop
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1DB40:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-112));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(96), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(100), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(104), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(108), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[17] = (ctx.gpr[16] + static_cast<std::uint32_t>(2560));
ctx.gpr[4] = (ctx.gpr[29] | 0u);
ctx.gpr[31] = (0x08A1DB68u);
ctx.gpr[5] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0022_entry, 22u, 933u, 0x0885FE50u>(ctx, &aot_mem) && ctx.pc == 0x08A1DB68u) goto L_08A1DB68;
return;
L_08A1DB68:
ctx.gpr[4] = (ctx.gpr[17] | 0u);
ctx.gpr[31] = (0x08A1DB74u);
ctx.gpr[5] = (ctx.gpr[29] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0023_entry, 23u, 7u, 0x08860358u>(ctx, &aot_mem) && ctx.pc == 0x08A1DB74u) goto L_08A1DB74;
return;
L_08A1DB74:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(72)));
ctx.gpr[4] = (ctx.gpr[4] & 1u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
ctx.fpr[20] = std::bit_cast<float>(0u);
if (branch_taken) {
goto L_08A1DB98;
}
goto L_08A1DB84;
}
L_08A1DB84:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(64)));
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1DB98;
}
goto L_08A1DB90;
}
L_08A1DB90:
ctx.gpr[31] = (0x08A1DB98u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(64)));
if (rt.invoke_chained_direct<&recomp_unit_0117_entry, 117u, 129u, 0x089D89E0u>(ctx, &aot_mem) && ctx.pc == 0x08A1DB98u) goto L_08A1DB98;
return;
L_08A1DB98:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-16976)));
ctx.gpr[4] = (15502u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 63777u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::cos(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::sin(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[14]) ^ 0x80000000u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(80), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(ctx.fpr[14]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(80));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[5] = (ctx.gpr[16] + static_cast<std::uint32_t>(2736));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[5] + 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.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]) ^ 0x80000000u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(80), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(ctx.fpr[14]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[5] = (ctx.gpr[16] + static_cast<std::uint32_t>(2752));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[5] + 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[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-8740)));
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-8744)));
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[14])));
ctx.fpr[13] = ctx.fpr[13] / ctx.fpr[14];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[5] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[5]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::cos(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[5] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
ctx.gpr[5] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[5]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::sin(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[5] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[14]) ^ 0x80000000u);
ctx.fpr[15] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]) ^ 0x80000000u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(80), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(ctx.fpr[15]));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[5] = (ctx.gpr[16] + static_cast<std::uint32_t>(2768));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[5] + 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(ctx.gpr[29] + static_cast<std::uint32_t>(80), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(84), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(88), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(2784));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + 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.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(16)));
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[20])) && ctx.fpr[12] == ctx.fpr[20]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1DCF8;
}
goto L_08A1DCD0;
}
L_08A1DCD0:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(20)));
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[20])) && ctx.fpr[12] == ctx.fpr[20]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1DCF8;
}
goto L_08A1DCE4;
}
L_08A1DCE4:
ctx.gpr[4] = (14545u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 46871u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(16), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1DD3C;
}
goto L_08A1DCF8;
}
L_08A1DCF8:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(16)));
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[13]) || std::isnan(ctx.fpr[20])) && ctx.fpr[13] == ctx.fpr[20]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(20)));
if (branch_taken) {
goto L_08A1DD24;
}
goto L_08A1DD0C;
}
L_08A1DD0C:
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[20])) && ctx.fpr[12] == ctx.fpr[20]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[14] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1DD28;
}
goto L_08A1DD1C;
L_08A1DD1C:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[20]));
if (branch_taken) {
goto L_08A1DD38;
}
goto L_08A1DD24;
}
L_08A1DD24:
ctx.fpr[14] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1DD28;
L_08A1DD28:
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.gpr[31] = (0x08A1DD34u);
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[14]));
if (rt.invoke_chained_direct<&recomp_unit_0088_entry, 88u, 28u, 0x08964540u>(ctx, &aot_mem) && ctx.pc == 0x08A1DD34u) goto L_08A1DD34;
return;
L_08A1DD34:
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[0]));
goto L_08A1DD38;
L_08A1DD38:
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(1968), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1DD3C;
L_08A1DD3C:
ctx.gpr[4] = (ctx.gpr[16] + static_cast<std::uint32_t>(16));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(92), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(4)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(96), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(92)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[13] + ctx.fpr[12];
ctx.fpr[12] = std::sqrt(ctx.fpr[12]);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[12]) || std::isnan(ctx.fpr[20])) && ctx.fpr[12] == ctx.fpr[20]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1DD84;
}
goto L_08A1DD74;
}
L_08A1DD74:
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(92), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1DD9C;
}
goto L_08A1DD84;
}
L_08A1DD84:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(92)));
ctx.fpr[13] = ctx.fpr[13] / ctx.fpr[12];
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(92), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(96)));
ctx.fpr[12] = ctx.fpr[13] / ctx.fpr[12];
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(96), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1DD9C;
L_08A1DD9C:
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(96)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(100)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(104)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(108)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1DDB4:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[31]);
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2651)));
{ const bool branch_taken = ctx.gpr[5] == 0u;
// nop
if (branch_taken) {
goto L_08A1DEFC;
}
goto L_08A1DDD0;
}
L_08A1DDD0:
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(2850))))));
ctx.gpr[6] = (0u | 1u);
ctx.gpr[7] = (17279u << 16u);
{ const bool branch_taken = ctx.gpr[5] != ctx.gpr[6];
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[7]);
if (branch_taken) {
goto L_08A1DE48;
}
goto L_08A1DDE4;
}
L_08A1DDE4:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2808)));
ctx.fpr[14] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[13]) || std::isnan(ctx.fpr[14])) && ctx.fpr[13] == ctx.fpr[14]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1DE08;
}
goto L_08A1DDFC;
}
L_08A1DDFC:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2800), std::bit_cast<std::uint32_t>(ctx.fpr[14]));
{ const bool branch_taken = 0u == 0u;
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[14]));
if (branch_taken) {
goto L_08A1DE2C;
}
goto L_08A1DE08;
}
L_08A1DE08:
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2800)));
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7676)));
ctx.gpr[5] = (16968u << 16u);
ctx.fpr[17] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[16] = ctx.fpr[16] / ctx.fpr[17];
{ const float fs = ctx.fpr[16]; const float ft = ctx.fpr[12]; 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; }
ctx.fpr[13] = ctx.fpr[16] / ctx.fpr[13];
ctx.fpr[13] = ctx.fpr[15] - ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2800), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
goto L_08A1DE2C;
L_08A1DE2C:
ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[14]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1DEB4;
}
goto L_08A1DE3C;
}
L_08A1DE3C:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2651), static_cast<std::uint8_t>(0u));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2800), std::bit_cast<std::uint32_t>(ctx.fpr[14]));
if (branch_taken) {
goto L_08A1DEB4;
}
goto L_08A1DE48;
}
L_08A1DE48:
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(2840))))));
{ const bool branch_taken = ctx.gpr[5] != 0u;
// nop
if (branch_taken) {
goto L_08A1DEB4;
}
goto L_08A1DE54;
}
L_08A1DE54:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2808)));
ctx.fpr[14] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((!(std::isnan(ctx.fpr[13]) || std::isnan(ctx.fpr[14])) && ctx.fpr[13] == ctx.fpr[14]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1DE78;
}
goto L_08A1DE6C;
}
L_08A1DE6C:
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2800), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
{ const bool branch_taken = 0u == 0u;
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]));
if (branch_taken) {
goto L_08A1DE9C;
}
goto L_08A1DE78;
}
L_08A1DE78:
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2800)));
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7676)));
ctx.gpr[5] = (16968u << 16u);
ctx.fpr[16] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[15] = ctx.fpr[15] / ctx.fpr[16];
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[13] = ctx.fpr[15] / ctx.fpr[13];
ctx.fpr[13] = ctx.fpr[14] + ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2800), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
goto L_08A1DE9C;
L_08A1DE9C:
ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[12]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1DEB4;
}
goto L_08A1DEAC;
}
L_08A1DEAC:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2651), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2800), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1DEB4;
L_08A1DEB4:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2800)));
ctx.fpr[12] = ctx.fpr[13] / ctx.fpr[12];
ctx.gpr[4] = (17150u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[14] - ctx.fpr[12];
ctx.fpr[12] = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[12]));
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[17] = (ctx.gpr[4] & 255u);
ctx.gpr[16] = (ctx.gpr[28] + static_cast<std::uint32_t>(7768));
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1DEE8u);
ctx.gpr[5] = (ctx.gpr[17] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 528u, 0x08A0611Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1DEE8u) goto L_08A1DEE8;
return;
L_08A1DEE8:
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1DEF4u);
ctx.gpr[5] = (ctx.gpr[17] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 532u, 0x08A06154u>(ctx, &aot_mem) && ctx.pc == 0x08A1DEF4u) goto L_08A1DEF4;
return;
L_08A1DEF4:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1DF3C;
}
goto L_08A1DEFC;
}
L_08A1DEFC:
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(2652)));
ctx.gpr[5] = (0u < ctx.gpr[5] ? 1u : 0u);
ctx.gpr[5] = (ctx.gpr[5] & 255u);
{ const bool branch_taken = ctx.gpr[5] == 0u;
// nop
if (branch_taken) {
goto L_08A1DF3C;
}
goto L_08A1DF10;
}
L_08A1DF10:
ctx.gpr[5] = (0u | 0u);
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2652), static_cast<std::uint8_t>(ctx.gpr[5]));
ctx.gpr[5] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2063), static_cast<std::uint8_t>(ctx.gpr[5]));
ctx.gpr[16] = (ctx.gpr[28] + static_cast<std::uint32_t>(7768));
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1DF30u);
ctx.gpr[5] = (0u | 127u);
if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 528u, 0x08A0611Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1DF30u) goto L_08A1DF30;
return;
L_08A1DF30:
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1DF3Cu);
ctx.gpr[5] = (0u | 127u);
if (rt.invoke_chained_direct<&recomp_unit_0128_entry, 128u, 532u, 0x08A06154u>(ctx, &aot_mem) && ctx.pc == 0x08A1DF3Cu) goto L_08A1DF3C;
return;
L_08A1DF3C:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1DF50:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618)));
ctx.gpr[17] = (2234u << 16u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[17] = (ctx.gpr[17] + static_cast<std::uint32_t>(7684));
if (branch_taken) {
goto L_08A1DF80;
}
goto L_08A1DF78;
}
L_08A1DF78:
ctx.gpr[5] = (0u + static_cast<std::uint32_t>(-1));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7536), ctx.gpr[5]);
goto L_08A1DF80;
L_08A1DF80:
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1DFAC;
}
goto L_08A1DF88;
}
L_08A1DF88:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7536)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7532)));
ctx.gpr[31] = (0x08A1DFA4u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 133u, 0x08A24D78u>(ctx, &aot_mem) && ctx.pc == 0x08A1DFA4u) goto L_08A1DFA4;
return;
L_08A1DFA4:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1E010;
}
goto L_08A1DFAC;
}
L_08A1DFAC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7536)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
ctx.gpr[18] = (0u | 5u);
{ const std::int32_t dividend = static_cast<std::int32_t>(ctx.gpr[4]); const std::int32_t divisor = static_cast<std::int32_t>(ctx.gpr[18]); if (divisor == 0) { ctx.lo = dividend >= 0 ? 0xFFFFFFFFu : 1u; ctx.hi = static_cast<std::uint32_t>(dividend); } else if (dividend == static_cast<std::int32_t>(0x80000000u) && divisor == -1) { ctx.lo = 0x80000000u; ctx.hi = 0u; } else { ctx.lo = static_cast<std::uint32_t>(dividend / divisor); ctx.hi = static_cast<std::uint32_t>(dividend % divisor); } }
ctx.gpr[4] = (ctx.hi);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7536), ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1DFD0;
L_08A1DFD0:
ctx.gpr[5] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1DFDCu);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 390u, 0x08A26174u>(ctx, &aot_mem) && ctx.pc == 0x08A1DFDCu) goto L_08A1DFDC;
return;
L_08A1DFDC:
{ const bool branch_taken = ctx.gpr[2] != 0u;
// nop
if (branch_taken) {
goto L_08A1E008;
}
goto L_08A1DFE4;
}
L_08A1DFE4:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7536)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
{ const std::int32_t dividend = static_cast<std::int32_t>(ctx.gpr[4]); const std::int32_t divisor = static_cast<std::int32_t>(ctx.gpr[18]); if (divisor == 0) { ctx.lo = dividend >= 0 ? 0xFFFFFFFFu : 1u; ctx.hi = static_cast<std::uint32_t>(dividend); } else if (dividend == static_cast<std::int32_t>(0x80000000u) && divisor == -1) { ctx.lo = 0x80000000u; ctx.hi = 0u; } else { ctx.lo = static_cast<std::uint32_t>(dividend / divisor); ctx.hi = static_cast<std::uint32_t>(dividend % divisor); } }
ctx.gpr[4] = (ctx.hi);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7536), ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (branch_taken) {
goto L_08A1DFD0;
}
goto L_08A1E008;
}
L_08A1E008:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7532), ctx.gpr[4]);
goto L_08A1E010;
L_08A1E010:
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E030:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[19]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[20]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(20), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[19] = (0u | 0u);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618)));
ctx.gpr[18] = (0u | 1u);
ctx.gpr[17] = (2234u << 16u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[17] = (ctx.gpr[17] + static_cast<std::uint32_t>(7552));
if (branch_taken) {
goto L_08A1E074;
}
goto L_08A1E068;
}
L_08A1E068:
ctx.gpr[5] = (0u + static_cast<std::uint32_t>(-1));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528), ctx.gpr[5]);
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7620), static_cast<std::uint8_t>(ctx.gpr[18]));
goto L_08A1E074;
L_08A1E074:
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1E0A0;
}
goto L_08A1E07C;
}
L_08A1E07C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7524)));
ctx.gpr[31] = (0x08A1E098u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 133u, 0x08A24D78u>(ctx, &aot_mem) && ctx.pc == 0x08A1E098u) goto L_08A1E098;
return;
L_08A1E098:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1E130;
}
goto L_08A1E0A0;
}
L_08A1E0A0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
ctx.gpr[20] = (0u | 14u);
{ const std::int32_t dividend = static_cast<std::int32_t>(ctx.gpr[4]); const std::int32_t divisor = static_cast<std::int32_t>(ctx.gpr[20]); if (divisor == 0) { ctx.lo = dividend >= 0 ? 0xFFFFFFFFu : 1u; ctx.hi = static_cast<std::uint32_t>(dividend); } else if (dividend == static_cast<std::int32_t>(0x80000000u) && divisor == -1) { ctx.lo = 0x80000000u; ctx.hi = 0u; } else { ctx.lo = static_cast<std::uint32_t>(dividend / divisor); ctx.hi = static_cast<std::uint32_t>(dividend % divisor); } }
ctx.gpr[4] = (ctx.hi);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528), ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1E0C4;
L_08A1E0C4:
ctx.gpr[5] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1E0D0u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 390u, 0x08A26174u>(ctx, &aot_mem) && ctx.pc == 0x08A1E0D0u) goto L_08A1E0D0;
return;
L_08A1E0D0:
{ const bool branch_taken = ctx.gpr[2] != 0u;
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[19]) < 15 ? 1u : 0u);
if (branch_taken) {
goto L_08A1E108;
}
goto L_08A1E0D8;
}
L_08A1E0D8:
if (ctx.gpr[4] == 0u) {
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
goto L_08A1E10C;
}
goto L_08A1E0E0;
L_08A1E0E0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
{ const std::int32_t dividend = static_cast<std::int32_t>(ctx.gpr[4]); const std::int32_t divisor = static_cast<std::int32_t>(ctx.gpr[20]); if (divisor == 0) { ctx.lo = dividend >= 0 ? 0xFFFFFFFFu : 1u; ctx.hi = static_cast<std::uint32_t>(dividend); } else if (dividend == static_cast<std::int32_t>(0x80000000u) && divisor == -1) { ctx.lo = 0x80000000u; ctx.hi = 0u; } else { ctx.lo = static_cast<std::uint32_t>(dividend / divisor); ctx.hi = static_cast<std::uint32_t>(dividend % divisor); } }
ctx.gpr[4] = (ctx.hi);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528), ctx.gpr[4]);
ctx.gpr[19] = (ctx.gpr[19] + static_cast<std::uint32_t>(1));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (branch_taken) {
goto L_08A1E0C4;
}
goto L_08A1E108;
}
L_08A1E108:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
goto L_08A1E10C;
L_08A1E10C:
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7524), ctx.gpr[4]);
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[19]) < 14 ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1E130;
}
goto L_08A1E11C;
}
L_08A1E11C:
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528), ctx.gpr[20]);
ctx.gpr[4] = (ctx.gpr[17] + static_cast<std::uint32_t>(56));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (0x08A1E130u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 390u, 0x08A26174u>(ctx, &aot_mem) && ctx.pc == 0x08A1E130u) goto L_08A1E130;
return;
L_08A1E130:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7528)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2844), ctx.gpr[4]);
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618), static_cast<std::uint8_t>(ctx.gpr[18]));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(20)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E15C:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[19]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[19] = (0u | 0u);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618)));
ctx.gpr[18] = (0u | 1u);
ctx.gpr[17] = (2234u << 16u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[17] = (ctx.gpr[17] + static_cast<std::uint32_t>(7656));
if (branch_taken) {
goto L_08A1E19C;
}
goto L_08A1E190;
}
L_08A1E190:
ctx.gpr[5] = (0u + static_cast<std::uint32_t>(-1));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520), ctx.gpr[5]);
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7620), static_cast<std::uint8_t>(ctx.gpr[18]));
goto L_08A1E19C;
L_08A1E19C:
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1E1C8;
}
goto L_08A1E1A4;
}
L_08A1E1A4:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7516)));
ctx.gpr[31] = (0x08A1E1C0u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 133u, 0x08A24D78u>(ctx, &aot_mem) && ctx.pc == 0x08A1E1C0u) goto L_08A1E1C0;
return;
L_08A1E1C0:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1E2A8;
}
goto L_08A1E1C8;
}
L_08A1E1C8:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520), ctx.gpr[4]);
ctx.gpr[5] = (static_cast<std::int32_t>(ctx.gpr[4]) < 7 ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[5] != 0u;
// nop
if (branch_taken) {
goto L_08A1E1E8;
}
goto L_08A1E1E0;
}
L_08A1E1E0:
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520), 0u);
ctx.gpr[4] = (0u | 0u);
goto L_08A1E1E8;
L_08A1E1E8:
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1E1F4;
L_08A1E1F4:
ctx.gpr[5] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1E200u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 390u, 0x08A26174u>(ctx, &aot_mem) && ctx.pc == 0x08A1E200u) goto L_08A1E200;
return;
L_08A1E200:
{ const bool branch_taken = ctx.gpr[2] != 0u;
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[19]) < 8 ? 1u : 0u);
if (branch_taken) {
goto L_08A1E244;
}
goto L_08A1E208;
}
L_08A1E208:
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1E244;
}
goto L_08A1E210;
}
L_08A1E210:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520), ctx.gpr[4]);
ctx.gpr[5] = (static_cast<std::int32_t>(ctx.gpr[4]) < 7 ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[5] != 0u;
// nop
if (branch_taken) {
goto L_08A1E230;
}
goto L_08A1E228;
}
L_08A1E228:
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520), 0u);
ctx.gpr[4] = (0u | 0u);
goto L_08A1E230;
L_08A1E230:
ctx.gpr[19] = (ctx.gpr[19] + static_cast<std::uint32_t>(1));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (branch_taken) {
goto L_08A1E1F4;
}
goto L_08A1E244;
}
L_08A1E244:
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[19]) < 7 ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1E2A0;
}
goto L_08A1E250;
}
L_08A1E250:
ctx.gpr[4] = (0u | 7u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520), ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[4]);
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(112))))));
ctx.gpr[5] = (0u | 18u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1E2A8;
}
goto L_08A1E288;
}
L_08A1E288:
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[31] = (0x08A1E294u);
ctx.gpr[5] = (0u | 29u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 390u, 0x08A26174u>(ctx, &aot_mem) && ctx.pc == 0x08A1E294u) goto L_08A1E294;
return;
L_08A1E294:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7516), ctx.gpr[4]);
if (branch_taken) {
goto L_08A1E2A8;
}
goto L_08A1E2A0;
}
L_08A1E2A0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7516), ctx.gpr[4]);
goto L_08A1E2A8;
L_08A1E2A8:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7520)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2844), ctx.gpr[4]);
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618), static_cast<std::uint8_t>(ctx.gpr[18]));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E2D0:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[19]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[20]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(20), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[19] = (0u | 0u);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618)));
ctx.gpr[18] = (0u | 1u);
ctx.gpr[17] = (2234u << 16u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[17] = (ctx.gpr[17] + static_cast<std::uint32_t>(7612));
if (branch_taken) {
goto L_08A1E314;
}
goto L_08A1E308;
}
L_08A1E308:
ctx.gpr[5] = (0u + static_cast<std::uint32_t>(-1));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512), ctx.gpr[5]);
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7620), static_cast<std::uint8_t>(ctx.gpr[18]));
goto L_08A1E314;
L_08A1E314:
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1E340;
}
goto L_08A1E31C;
}
L_08A1E31C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7508)));
ctx.gpr[31] = (0x08A1E338u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 133u, 0x08A24D78u>(ctx, &aot_mem) && ctx.pc == 0x08A1E338u) goto L_08A1E338;
return;
L_08A1E338:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1E3D0;
}
goto L_08A1E340;
}
L_08A1E340:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
ctx.gpr[20] = (0u | 10u);
{ const std::int32_t dividend = static_cast<std::int32_t>(ctx.gpr[4]); const std::int32_t divisor = static_cast<std::int32_t>(ctx.gpr[20]); if (divisor == 0) { ctx.lo = dividend >= 0 ? 0xFFFFFFFFu : 1u; ctx.hi = static_cast<std::uint32_t>(dividend); } else if (dividend == static_cast<std::int32_t>(0x80000000u) && divisor == -1) { ctx.lo = 0x80000000u; ctx.hi = 0u; } else { ctx.lo = static_cast<std::uint32_t>(dividend / divisor); ctx.hi = static_cast<std::uint32_t>(dividend % divisor); } }
ctx.gpr[4] = (ctx.hi);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512), ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
goto L_08A1E364;
L_08A1E364:
ctx.gpr[5] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1E370u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 390u, 0x08A26174u>(ctx, &aot_mem) && ctx.pc == 0x08A1E370u) goto L_08A1E370;
return;
L_08A1E370:
{ const bool branch_taken = ctx.gpr[2] != 0u;
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[19]) < 11 ? 1u : 0u);
if (branch_taken) {
goto L_08A1E3A8;
}
goto L_08A1E378;
}
L_08A1E378:
if (ctx.gpr[4] == 0u) {
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
goto L_08A1E3AC;
}
goto L_08A1E380;
L_08A1E380:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
{ const std::int32_t dividend = static_cast<std::int32_t>(ctx.gpr[4]); const std::int32_t divisor = static_cast<std::int32_t>(ctx.gpr[20]); if (divisor == 0) { ctx.lo = dividend >= 0 ? 0xFFFFFFFFu : 1u; ctx.hi = static_cast<std::uint32_t>(dividend); } else if (dividend == static_cast<std::int32_t>(0x80000000u) && divisor == -1) { ctx.lo = 0x80000000u; ctx.hi = 0u; } else { ctx.lo = static_cast<std::uint32_t>(dividend / divisor); ctx.hi = static_cast<std::uint32_t>(dividend % divisor); } }
ctx.gpr[4] = (ctx.hi);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512), ctx.gpr[4]);
ctx.gpr[19] = (ctx.gpr[19] + static_cast<std::uint32_t>(1));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[17]);
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
if (branch_taken) {
goto L_08A1E364;
}
goto L_08A1E3A8;
}
L_08A1E3A8:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
goto L_08A1E3AC;
L_08A1E3AC:
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7508), ctx.gpr[4]);
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[19]) < 10 ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1E3D0;
}
goto L_08A1E3BC;
}
L_08A1E3BC:
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512), ctx.gpr[20]);
ctx.gpr[4] = (ctx.gpr[17] + static_cast<std::uint32_t>(40));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (0x08A1E3D0u);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0136_entry, 136u, 390u, 0x08A26174u>(ctx, &aot_mem) && ctx.pc == 0x08A1E3D0u) goto L_08A1E3D0;
return;
L_08A1E3D0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7512)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2844), ctx.gpr[4]);
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618), static_cast<std::uint8_t>(ctx.gpr[18]));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(20)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E3FC:
jump_target = ctx.gpr[31];
aot_mem.aot_store8(ctx.gpr[28] + static_cast<std::uint32_t>(-7618), static_cast<std::uint8_t>(0u));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E404:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-80));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(68), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(72), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(76), ctx.gpr[31]);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(6952)));
ctx.gpr[17] = (ctx.gpr[4] + static_cast<std::uint32_t>(48));
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
ctx.gpr[7] = (16800u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[7]);
{ const bool branch_taken = ctx.gpr[6] != 0u;
ctx.gpr[16] = (ctx.gpr[5] | 0u);
if (branch_taken) {
goto L_08A1E448;
}
goto L_08A1E430;
}
L_08A1E430:
ctx.gpr[5] = (0u | 1u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(6952), ctx.gpr[5]);
ctx.fpr[13] = std::bit_cast<float>(0u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(6960), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(6964), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(6968), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
goto L_08A1E448;
L_08A1E448:
{ 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[4] + 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.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(6960)));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[14];
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]) & 0x7FFFFFFFu);
ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1E4B0;
}
goto L_08A1E470;
}
L_08A1E470:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(6964)));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(20)));
ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[14];
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]) & 0x7FFFFFFFu);
ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1E4B0;
}
goto L_08A1E490;
}
L_08A1E490:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(6968)));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(24)));
ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[14];
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[13]) & 0x7FFFFFFFu);
ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[12]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1E630;
}
goto L_08A1E4B0;
}
L_08A1E4B0:
ctx.gpr[5] = (17530u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(24), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (50298u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(64));
ctx.gpr[7] = (0u | 1u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 0u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 1u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), 0u);
ctx.gpr[31] = (0x08A1E4F0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0035_entry, 35u, 287u, 0x08891DD4u>(ctx, &aot_mem) && ctx.pc == 0x08A1E4F0u) goto L_08A1E4F0;
return;
L_08A1E4F0:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1E624;
}
goto L_08A1E4F8;
}
L_08A1E4F8:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(40)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7504), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(64)));
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(48));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(8)));
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(86))))));
ctx.gpr[5] = (ctx.gpr[4] << 2u);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(20)));
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(32));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(8)));
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7496), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(20)));
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(32));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[6] + ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(16));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.fpr[14] = ctx.fpr[12] - ctx.fpr[13];
ctx.gpr[4] = (17136u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.set_fpu_condition((ctx.fpr[14] <= ctx.fpr[13]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
ctx.fpr[12] = std::bit_cast<float>(0u);
if (branch_taken) {
goto L_08A1E5D0;
}
goto L_08A1E580;
}
L_08A1E580:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(64)));
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(86))))));
ctx.gpr[5] = (ctx.gpr[4] << 2u);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(20)));
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(32));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(4)));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[6] + ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(16));
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(4)));
ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[15];
ctx.set_fpu_condition((ctx.fpr[14] <= ctx.fpr[13]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1E5DC;
}
goto L_08A1E5D0;
}
L_08A1E5D0:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(40)));
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7500), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
if (branch_taken) {
goto L_08A1E610;
}
goto L_08A1E5DC;
}
L_08A1E5DC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(64)));
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(48));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(8)));
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(86))))));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(16));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(8)));
ctx.fpr[13] = ctx.fpr[13] + ctx.fpr[14];
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7500), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
goto L_08A1E610;
L_08A1E610:
ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[12]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1E624;
}
goto L_08A1E620;
}
L_08A1E620:
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7500), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1E624;
L_08A1E624:
{ 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[4] = (ctx.gpr[28] + static_cast<std::uint32_t>(6960));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + 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_08A1E630;
L_08A1E630:
ctx.gpr[4] = (0u | 2u);
{ const bool branch_taken = ctx.gpr[16] == ctx.gpr[4];
// nop
if (branch_taken) {
goto L_08A1E650;
}
goto L_08A1E63C;
}
L_08A1E63C:
ctx.gpr[4] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[16] != ctx.gpr[4];
// nop
if (branch_taken) {
goto L_08A1E658;
}
goto L_08A1E648;
}
L_08A1E648:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[0] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7504)));
if (branch_taken) {
goto L_08A1E65C;
}
goto L_08A1E650;
}
L_08A1E650:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[0] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7496)));
if (branch_taken) {
goto L_08A1E65C;
}
goto L_08A1E658;
}
L_08A1E658:
ctx.fpr[0] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7500)));
goto L_08A1E65C;
L_08A1E65C:
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(68)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(72)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(76)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(80));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E670:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1E688u);
ctx.gpr[5] = (0u | 0u);
goto L_08A1E404;
L_08A1E688:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(80)));
ctx.gpr[4] = (ctx.gpr[4] << 5u);
ctx.gpr[5] = (0u - ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[16] + ctx.gpr[4]);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(152)));
ctx.fpr[0] = ctx.fpr[12] - ctx.fpr[0];
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E6C0:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-48));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(20), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(24), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(28), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(32), ctx.gpr[31]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2048)));
ctx.gpr[17] = (0u | 3u);
{ const bool branch_taken = ctx.gpr[5] == ctx.gpr[17];
ctx.gpr[16] = (ctx.gpr[4] | 0u);
if (branch_taken) {
goto L_08A1E920;
}
goto L_08A1E6EC;
}
L_08A1E6EC:
ctx.gpr[4] = (2236u << 16u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(32304));
ctx.gpr[5] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
ctx.gpr[5] = (ctx.gpr[5] << 5u);
ctx.gpr[6] = (0u - ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(112))))));
ctx.gpr[5] = (0u | 16u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1E920;
}
goto L_08A1E724;
}
L_08A1E724:
ctx.gpr[31] = (0x08A1E72Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E72Cu) goto L_08A1E72C;
return;
L_08A1E72C:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1E920;
}
goto L_08A1E734;
}
L_08A1E734:
ctx.gpr[31] = (0x08A1E73Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E73Cu) goto L_08A1E73C;
return;
L_08A1E73C:
ctx.gpr[4] = (ctx.gpr[2] + static_cast<std::uint32_t>(320));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[22] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7652)));
ctx.set_fpu_condition((ctx.fpr[22] <= ctx.fpr[12]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1E8FC;
}
goto L_08A1E768;
}
L_08A1E768:
ctx.gpr[31] = (0x08A1E770u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E770u) goto L_08A1E770;
return;
L_08A1E770:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(852)));
ctx.gpr[5] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1E8FC;
}
goto L_08A1E780;
}
L_08A1E780:
ctx.gpr[31] = (0x08A1E788u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E788u) goto L_08A1E788;
return;
L_08A1E788:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(852)));
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[17];
// nop
if (branch_taken) {
goto L_08A1E8FC;
}
goto L_08A1E794;
}
L_08A1E794:
ctx.gpr[31] = (0x08A1E79Cu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E79Cu) goto L_08A1E79C;
return;
L_08A1E79C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(852)));
ctx.gpr[5] = (0u | 4u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1E8FC;
}
goto L_08A1E7AC;
}
L_08A1E7AC:
ctx.gpr[31] = (0x08A1E7B4u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E7B4u) goto L_08A1E7B4;
return;
L_08A1E7B4:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(852)));
ctx.gpr[5] = (0u | 5u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1E8FC;
}
goto L_08A1E7C4;
}
L_08A1E7C4:
ctx.gpr[31] = (0x08A1E7CCu);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E7CCu) goto L_08A1E7CC;
return;
L_08A1E7CC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(852)));
ctx.gpr[5] = (0u | 7u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1E8FC;
}
goto L_08A1E7DC;
}
L_08A1E7DC:
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[20] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[22]));
// nop
if (ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[22]));
goto L_08A1E7F8;
}
goto L_08A1E7F8;
L_08A1E7F8:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7652)));
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13];
ctx.fpr[13] = ctx.fpr[20] - ctx.fpr[13];
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[13];
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7648)));
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[14])));
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = std::bit_cast<float>(ctx.fpu_float_to_word_ct<1u>(ctx.fpr[12]));
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[4]) >= 0;
// nop
if (branch_taken) {
goto L_08A1E82C;
}
goto L_08A1E828;
}
L_08A1E828:
ctx.gpr[4] = (0u | 0u);
goto L_08A1E82C;
L_08A1E82C:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2856)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2860)));
ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2864)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2856), ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2864), ctx.gpr[7]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2860), ctx.gpr[6]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2896), ctx.gpr[4]);
ctx.gpr[31] = (0x08A1E850u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0087_entry, 87u, 28u, 0x089602C8u>(ctx, &aot_mem) && ctx.pc == 0x08A1E850u) goto L_08A1E850;
return;
L_08A1E850:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[2] + static_cast<std::uint32_t>(852)));
ctx.gpr[5] = (0u | 6u);
{ const bool branch_taken = ctx.gpr[4] == ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1E8F4;
}
goto L_08A1E860;
}
L_08A1E860:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7652)));
ctx.fpr[13] = ctx.fpr[22] - ctx.fpr[12];
ctx.fpr[12] = ctx.fpr[20] - ctx.fpr[12];
ctx.fpr[12] = ctx.fpr[13] / ctx.fpr[12];
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7644)));
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[14])));
ctx.fpr[24] = ctx.fpr[12] / ctx.fpr[14];
ctx.gpr[31] = (0x08A1E888u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 110u, 0x08B20934u>(ctx, &aot_mem) && ctx.pc == 0x08A1E888u) goto L_08A1E888;
return;
L_08A1E888:
ctx.gpr[4] = (ctx.gpr[2] & 65535u);
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(48)));
ctx.gpr[5] = (ctx.gpr[4] & 15u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(-7));
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[12] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[15])));
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[24]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[13] + ctx.fpr[12];
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(52)));
ctx.gpr[5] = (ctx.gpr[4] & 240u);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[5]) >> 4u));
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(-7));
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[14])));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[24]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(56)));
ctx.gpr[4] = (ctx.gpr[4] & 3840u);
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[4]) >> 8u));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(-7));
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[15])));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[24]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1E8F4;
L_08A1E8F4:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1E918;
}
goto L_08A1E8FC;
}
L_08A1E8FC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2856)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2860)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2864)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2856), ctx.gpr[4]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2864), ctx.gpr[6]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2860), ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2896), 0u);
goto L_08A1E918;
L_08A1E918:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1E93C;
}
goto L_08A1E920;
}
L_08A1E920:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2856)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2860)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(2864)));
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2856), ctx.gpr[4]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2864), ctx.gpr[6]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2860), ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(2896), 0u);
goto L_08A1E93C;
L_08A1E93C:
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(20)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(24)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(28)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(32)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(48));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E95C:
ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2076)));
jump_target = ctx.gpr[31];
ctx.gpr[2] = (0u < ctx.gpr[2] ? 1u : 0u);
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E968:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2076)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E970:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(1152)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E978:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(2120)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E980:
jump_target = ctx.gpr[31];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2256), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E988:
jump_target = ctx.gpr[31];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(2260), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E990:
jump_target = ctx.gpr[31];
ctx.fpr[0] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-5504)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E998:
jump_target = ctx.gpr[31];
ctx.fpr[0] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-24932)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E9A0:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(18)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E9A8:
jump_target = ctx.gpr[31];
ctx.gpr[2] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E9B0:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[31] = (0x08A1E9C8u);
// nop
goto L_08A1E9DC;
L_08A1E9C8:
ctx.gpr[2] = (ctx.gpr[16] | 0u);
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1E9DC:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[31]);
ctx.gpr[5] = (16968u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (16880u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.gpr[5] = (16988u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(40), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(44), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (15692u << 16u);
ctx.gpr[5] = (ctx.gpr[5] | 52429u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (17036u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(52), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (16816u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(56), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (16256u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(60), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(0u);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(64), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (16672u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(68), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (0u | 30u);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(80), ctx.gpr[5]);
ctx.gpr[5] = (0u | 8u);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(112), ctx.gpr[5]);
ctx.gpr[5] = (0u | 10u);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(120), ctx.gpr[5]);
ctx.gpr[5] = (17008u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(128), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.gpr[5] = (17116u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(132), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(136), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (16544u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(140), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (16704u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(144), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (16192u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(172), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (0u | 4000u);
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(176), ctx.gpr[5]);
ctx.gpr[31] = (0x08A1EABCu);
// nop
goto L_08A1EAC8;
L_08A1EABC:
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1EAC8:
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(72), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(116), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(152), static_cast<std::uint8_t>(0u));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(153), static_cast<std::uint8_t>(0u));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(52)));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(56)));
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(148), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(120)));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(124), ctx.gpr[5]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(80)));
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(76), ctx.gpr[5]);
jump_target = ctx.gpr[31];
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(160), static_cast<std::uint8_t>(0u));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1EB00:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-32));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (15820u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 52429u);
ctx.fpr[20] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (16320u << 16u);
ctx.gpr[31] = (0x08A1EB34u);
ctx.fpr[22] = std::bit_cast<float>(ctx.gpr[4]);
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 113u, 0x08B20998u>(ctx, &aot_mem) && ctx.pc == 0x08A1EB34u) goto L_08A1EB34;
return;
L_08A1EB34:
ctx.fpr[12] = ctx.fpr[22] - ctx.fpr[20];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[0]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[20] + ctx.fpr[12];
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(32)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[24] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (16256u << 16u);
ctx.gpr[31] = (0x08A1EB60u);
ctx.fpr[22] = std::bit_cast<float>(ctx.gpr[4]);
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 113u, 0x08B20998u>(ctx, &aot_mem) && ctx.pc == 0x08A1EB60u) goto L_08A1EB60;
return;
L_08A1EB60:
ctx.fpr[12] = ctx.fpr[22] - ctx.fpr[24];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[0]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[24] + ctx.fpr[12];
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(36)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[31] = (0x08A1EB80u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 113u, 0x08B20998u>(ctx, &aot_mem) && ctx.pc == 0x08A1EB80u) goto L_08A1EB80;
return;
L_08A1EB80:
ctx.fpr[12] = ctx.fpr[22] - ctx.fpr[24];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[0]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[24] + ctx.fpr[12];
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(40)));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(40), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[31] = (0x08A1EBA0u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 113u, 0x08B20998u>(ctx, &aot_mem) && ctx.pc == 0x08A1EBA0u) goto L_08A1EBA0;
return;
L_08A1EBA0:
ctx.fpr[12] = ctx.fpr[22] - ctx.fpr[24];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[0]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[24] + ctx.fpr[12];
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(44)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(44), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[4] = (16384u << 16u);
ctx.gpr[31] = (0x08A1EBC4u);
ctx.fpr[20] = std::bit_cast<float>(ctx.gpr[4]);
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 113u, 0x08B20998u>(ctx, &aot_mem) && ctx.pc == 0x08A1EBC4u) goto L_08A1EBC4;
return;
L_08A1EBC4:
ctx.fpr[12] = ctx.fpr[20] - ctx.fpr[24];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[0]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[24] + ctx.fpr[12];
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(48)));
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
aot_mem.aot_store32(ctx.gpr[16] + static_cast<std::uint32_t>(48), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(4)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(8)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(12)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(16)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1EBF8:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-16));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[31]);
ctx.gpr[4] = (2279u << 16u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(25248));
ctx.gpr[7] = (2210u << 16u);
ctx.gpr[7] = (ctx.gpr[7] + static_cast<std::uint32_t>(-18056));
ctx.gpr[5] = (0u | 6u);
ctx.gpr[6] = (0u | 176u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[31] = (0x08A1EC24u);
ctx.gpr[9] = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0215_entry, 215u, 173u, 0x08B60E20u>(ctx, &aot_mem) && ctx.pc == 0x08A1EC24u) goto L_08A1EC24;
return;
L_08A1EC24:
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(0)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(16));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1EC30:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-800));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(740), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(744), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(748), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(752), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(756), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(760), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(764), ctx.gpr[19]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(768), ctx.gpr[20]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(772), ctx.gpr[21]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(776), ctx.gpr[22]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(780), ctx.gpr[23]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(784), ctx.gpr[30]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(788), ctx.gpr[31]);
ctx.gpr[16] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (2236u << 16u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(32304));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(2072), static_cast<std::uint8_t>(0u));
ctx.gpr[31] = (0x08A1EC80u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 110u, 0x08B20934u>(ctx, &aot_mem) && ctx.pc == 0x08A1EC80u) goto L_08A1EC80;
return;
L_08A1EC80:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7452)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7456)));
ctx.gpr[1] = (ctx.gpr[5] << 1u);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[5]) >> 31u));
ctx.gpr[4] = (ctx.gpr[4] >> 31u);
ctx.gpr[4] = (ctx.gpr[1] | ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] | 0u);
ctx.gpr[4] = (ctx.gpr[4] << 6u);
ctx.gpr[5] = (ctx.gpr[4] + ctx.gpr[4]);
ctx.gpr[17] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.gpr[4] = (2279u << 16u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(26304));
ctx.gpr[17] = (ctx.gpr[17] + ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(112)));
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1ED4C;
}
goto L_08A1ECC0;
}
L_08A1ECC0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(112)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(72)));
ctx.gpr[4] = (ctx.gpr[4] & 14u);
ctx.gpr[4] = (ctx.gpr[4] ^ 4u);
ctx.gpr[4] = (ctx.gpr[4] < static_cast<std::uint32_t>(1) ? 1u : 0u);
ctx.gpr[4] = (ctx.gpr[4] & 255u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1ED4C;
}
goto L_08A1ECE0;
}
L_08A1ECE0:
ctx.gpr[18] = (0u | 0u);
ctx.gpr[5] = (ctx.gpr[29] + static_cast<std::uint32_t>(80));
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(84));
ctx.gpr[7] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
ctx.gpr[8] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
ctx.gpr[9] = (ctx.gpr[29] + static_cast<std::uint32_t>(128));
ctx.gpr[10] = (ctx.gpr[29] + static_cast<std::uint32_t>(144));
ctx.gpr[11] = (ctx.gpr[29] + static_cast<std::uint32_t>(160));
ctx.gpr[2] = (ctx.gpr[29] + static_cast<std::uint32_t>(176));
ctx.gpr[3] = (ctx.gpr[29] + static_cast<std::uint32_t>(208));
ctx.gpr[12] = (ctx.gpr[29] + static_cast<std::uint32_t>(192));
ctx.gpr[13] = (ctx.gpr[29] + static_cast<std::uint32_t>(212));
ctx.gpr[14] = (ctx.gpr[29] + static_cast<std::uint32_t>(224));
ctx.gpr[4] = (ctx.gpr[16] | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[2]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[3]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[12]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[13]);
ctx.gpr[31] = (0x08A1ED30u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[14]);
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 515u, 0x08A1B674u>(ctx, &aot_mem) && ctx.pc == 0x08A1ED30u) goto L_08A1ED30;
return;
L_08A1ED30:
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7584)));
ctx.gpr[5] = (0u | 48u);
{ const bool branch_taken = ctx.gpr[4] != ctx.gpr[5];
// nop
if (branch_taken) {
goto L_08A1ED68;
}
goto L_08A1ED44;
}
L_08A1ED44:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7608)));
if (branch_taken) {
goto L_08A1ED54;
}
goto L_08A1ED4C;
}
L_08A1ED4C:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1F898;
}
goto L_08A1ED54;
}
L_08A1ED54:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7764)));
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(-1));
ctx.gpr[4] = (ctx.gpr[4] < ctx.gpr[5] ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1F120;
}
goto L_08A1ED68;
}
L_08A1ED68:
ctx.gpr[20] = (0u | 0u);
ctx.gpr[4] = (ctx.gpr[28] + ctx.gpr[18]);
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(0u));
ctx.gpr[4] = (0u | 48u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7584), ctx.gpr[4]);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7604), ctx.gpr[19]);
ctx.gpr[4] = (ctx.gpr[18] << 2u);
ctx.gpr[5] = (2234u << 16u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(7704));
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (ctx.gpr[19] + ctx.gpr[4]);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7600), ctx.gpr[4]);
ctx.gpr[31] = (0x08A1EDA4u);
ctx.gpr[4] = (ctx.gpr[17] | 0u);
goto L_08A1E9DC;
L_08A1EDA4:
ctx.gpr[31] = (0x08A1EDACu);
ctx.gpr[4] = (ctx.gpr[17] | 0u);
goto L_08A1EAC8;
L_08A1EDAC:
ctx.gpr[31] = (0x08A1EDB4u);
ctx.gpr[4] = (ctx.gpr[17] | 0u);
goto L_08A1EB00;
L_08A1EDB4:
ctx.gpr[4] = (2279u << 16u);
ctx.gpr[31] = (0x08A1EDC0u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(25248));
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 546u, 0x08A1B9ECu>(ctx, &aot_mem) && ctx.pc == 0x08A1EDC0u) goto L_08A1EDC0;
return;
L_08A1EDC0:
ctx.gpr[21] = (0u | 0u);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(112)));
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[21]) < static_cast<std::int32_t>(ctx.gpr[4]) ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1F074;
}
goto L_08A1EDD4;
}
L_08A1EDD4:
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(160));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(36)));
ctx.gpr[5] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[5]);
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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>();
ctx.gpr[5] = (ctx.gpr[29] + 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 = ctx.gpr[5] + 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[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
{ const std::uint32_t vfpu_address = ctx.gpr[6] + 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[5] + 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); }
ctx.gpr[7] = (ctx.gpr[29] + 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 = ctx.gpr[7] + 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[7] + 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[8] = (ctx.gpr[17] + 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[8] + 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.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(32)));
ctx.gpr[8] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[8]);
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[7] + 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[6] + 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[7] + 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[5] + 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[5] + 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])); }
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(24)));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(40)));
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(24), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(8)));
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(8), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[31] = (0x08A1EE78u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 110u, 0x08B20934u>(ctx, &aot_mem) && ctx.pc == 0x08A1EE78u) goto L_08A1EE78;
return;
L_08A1EE78:
ctx.gpr[4] = (ctx.gpr[2] | 0u);
ctx.gpr[5] = (0u | 0u);
ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7572)));
ctx.gpr[31] = (0x08A1EE8Cu);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7576)));
if (rt.invoke_chained_direct<&recomp_unit_0215_entry, 215u, 177u, 0x08B60E5Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1EE8Cu) goto L_08A1EE8C;
return;
L_08A1EE8C:
ctx.gpr[1] = (ctx.gpr[3] << 1u);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[3]) >> 31u));
ctx.gpr[4] = (ctx.gpr[2] >> 31u);
ctx.gpr[4] = (ctx.gpr[1] | ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] | 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[22] = (0u | 0u);
if (branch_taken) {
goto L_08A1EEB0;
}
goto L_08A1EEA8;
}
L_08A1EEA8:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[22] = (0u | 1u);
if (branch_taken) {
goto L_08A1EEB0;
}
goto L_08A1EEB0;
}
L_08A1EEB0:
ctx.gpr[31] = (0x08A1EEB8u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 110u, 0x08B20934u>(ctx, &aot_mem) && ctx.pc == 0x08A1EEB8u) goto L_08A1EEB8;
return;
L_08A1EEB8:
ctx.gpr[4] = (ctx.gpr[2] | 0u);
ctx.gpr[5] = (0u | 0u);
ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7572)));
ctx.gpr[31] = (0x08A1EECCu);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7576)));
if (rt.invoke_chained_direct<&recomp_unit_0215_entry, 215u, 177u, 0x08B60E5Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1EECCu) goto L_08A1EECC;
return;
L_08A1EECC:
ctx.gpr[1] = (ctx.gpr[3] << 1u);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[3]) >> 31u));
ctx.gpr[4] = (ctx.gpr[2] >> 31u);
ctx.gpr[4] = (ctx.gpr[1] | ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] | 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[4] = (0u | 0u);
if (branch_taken) {
goto L_08A1EEF0;
}
goto L_08A1EEE8;
}
L_08A1EEE8:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (0u | 1u);
if (branch_taken) {
goto L_08A1EEF0;
}
goto L_08A1EEF0;
}
L_08A1EEF0:
ctx.gpr[5] = (16256u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[20] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[12]));
{ const bool branch_taken = ctx.gpr[22] == 0u;
// nop
if (branch_taken) {
goto L_08A1EF0C;
}
goto L_08A1EF04;
}
L_08A1EF04:
ctx.gpr[5] = (49024u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
goto L_08A1EF0C;
L_08A1EF0C:
if (ctx.gpr[4] == 0u) {
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(736), ctx.gpr[21]);
goto L_08A1EF20;
}
goto L_08A1EF14;
L_08A1EF14:
ctx.gpr[4] = (49024u << 16u);
ctx.fpr[20] = std::bit_cast<float>(ctx.gpr[4]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(736), ctx.gpr[21]);
goto L_08A1EF20;
L_08A1EF20:
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(144));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[22] = (ctx.gpr[29] + 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 = 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])); }
ctx.fpr[13] = std::bit_cast<float>(0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(328), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.gpr[23] = (ctx.gpr[17] + static_cast<std::uint32_t>(16));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(44)));
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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); }
ctx.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>();
ctx.gpr[30] = (ctx.gpr[29] + 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 = 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[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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); }
ctx.execute_vfpu_vscl_ct<0u, 0u, 28u, 3u>();
ctx.gpr[21] = (ctx.gpr[29] + 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 = 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])); }
ctx.gpr[4] = (ctx.gpr[23] | 0u);
ctx.gpr[31] = (0x08A1EF7Cu);
ctx.gpr[5] = (ctx.gpr[21] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1EF7Cu) goto L_08A1EF7C;
return;
L_08A1EF7C:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(44)));
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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); }
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[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[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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); }
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[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])); }
ctx.gpr[4] = (ctx.gpr[17] | 0u);
ctx.gpr[31] = (0x08A1EFB4u);
ctx.gpr[5] = (ctx.gpr[21] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1EFB4u) goto L_08A1EFB4;
return;
L_08A1EFB4:
{ const std::uint32_t vfpu_address = ctx.gpr[23] + 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])); }
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(144)));
ctx.gpr[4] = (ctx.gpr[21] | 0u);
ctx.gpr[5] = (0u | 0u);
ctx.gpr[6] = (0u | 1u);
ctx.gpr[7] = (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(ctx.gpr[29] + static_cast<std::uint32_t>(0), 0u);
ctx.gpr[31] = (0x08A1EFECu);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem) && ctx.pc == 0x08A1EFECu) goto L_08A1EFEC;
return;
L_08A1EFEC:
{ const bool branch_taken = ctx.gpr[2] == 0u;
ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(736)));
if (branch_taken) {
goto L_08A1EFFC;
}
goto L_08A1EFF4;
}
L_08A1EFF4:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1F060;
}
goto L_08A1EFFC;
}
L_08A1EFFC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(80)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
ctx.gpr[5] = (ctx.gpr[17] + static_cast<std::uint32_t>(16));
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(336));
ctx.gpr[7] = (ctx.gpr[29] + static_cast<std::uint32_t>(368));
ctx.gpr[8] = (0u | 1u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), 0u);
ctx.gpr[31] = (0x08A1F03Cu);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 698u, 0x0889786Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1F03Cu) goto L_08A1F03C;
return;
L_08A1F03C:
ctx.gpr[4] = (ctx.gpr[2] < static_cast<std::uint32_t>(1) ? 1u : 0u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F054;
}
goto L_08A1F04C;
}
L_08A1F04C:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1F060;
}
goto L_08A1F054;
}
L_08A1F054:
ctx.gpr[20] = (0u | 1u);
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1F074;
}
goto L_08A1F060;
}
L_08A1F060:
ctx.gpr[21] = (ctx.gpr[21] + static_cast<std::uint32_t>(1));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(112)));
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[21]) < static_cast<std::int32_t>(ctx.gpr[4]) ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1EDD4;
}
goto L_08A1F074;
}
L_08A1F074:
{ const bool branch_taken = ctx.gpr[20] == 0u;
// nop
if (branch_taken) {
goto L_08A1F0BC;
}
goto L_08A1F07C;
}
L_08A1F07C:
ctx.gpr[31] = (0x08A1F084u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 110u, 0x08B20934u>(ctx, &aot_mem) && ctx.pc == 0x08A1F084u) goto L_08A1F084;
return;
L_08A1F084:
ctx.gpr[4] = (ctx.gpr[2] | 0u);
ctx.gpr[5] = (0u | 0u);
ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7572)));
ctx.gpr[31] = (0x08A1F098u);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7576)));
if (rt.invoke_chained_direct<&recomp_unit_0215_entry, 215u, 177u, 0x08B60E5Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1F098u) goto L_08A1F098;
return;
L_08A1F098:
ctx.gpr[1] = (ctx.gpr[3] << 1u);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[3]) >> 31u));
ctx.gpr[4] = (ctx.gpr[2] >> 31u);
ctx.gpr[4] = (ctx.gpr[1] | ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] | 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[4] = (0u | 0u);
if (branch_taken) {
goto L_08A1F0D8;
}
goto L_08A1F0B4;
}
L_08A1F0B4:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (0u | 1u);
if (branch_taken) {
goto L_08A1F0D8;
}
goto L_08A1F0BC;
}
L_08A1F0BC:
ctx.gpr[31] = (0x08A1F0C4u);
ctx.gpr[4] = (ctx.gpr[17] | 0u);
goto L_08A1EAC8;
L_08A1F0C4:
ctx.gpr[4] = (0u | 1u);
ctx.gpr[5] = (ctx.gpr[28] + ctx.gpr[18]);
aot_mem.aot_store8(ctx.gpr[5] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(ctx.gpr[4]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1F898;
}
goto L_08A1F0D8;
}
L_08A1F0D8:
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(153), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[31] = (0x08A1F0E4u);
// nop
if (rt.invoke_chained_direct<&recomp_unit_0199_entry, 199u, 110u, 0x08B20934u>(ctx, &aot_mem) && ctx.pc == 0x08A1F0E4u) goto L_08A1F0E4;
return;
L_08A1F0E4:
ctx.gpr[4] = (ctx.gpr[2] | 0u);
ctx.gpr[5] = (0u | 0u);
ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7572)));
ctx.gpr[31] = (0x08A1F0F8u);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7576)));
if (rt.invoke_chained_direct<&recomp_unit_0215_entry, 215u, 177u, 0x08B60E5Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1F0F8u) goto L_08A1F0F8;
return;
L_08A1F0F8:
ctx.gpr[1] = (ctx.gpr[3] << 1u);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[3]) >> 31u));
ctx.gpr[4] = (ctx.gpr[2] >> 31u);
ctx.gpr[4] = (ctx.gpr[1] | ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[4] | 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.gpr[4] = (0u | 0u);
if (branch_taken) {
goto L_08A1F11C;
}
goto L_08A1F114;
}
L_08A1F114:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[4] = (0u | 1u);
if (branch_taken) {
goto L_08A1F11C;
}
goto L_08A1F11C;
}
L_08A1F11C:
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(160), static_cast<std::uint8_t>(ctx.gpr[4]));
goto L_08A1F120;
L_08A1F120:
ctx.gpr[4] = (ctx.gpr[28] + ctx.gpr[18]);
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[4] + static_cast<std::uint32_t>(-7596)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F260;
}
goto L_08A1F130;
}
L_08A1F130:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7604)));
ctx.gpr[5] = (ctx.gpr[19] - ctx.gpr[4]);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
ctx.fpr[20] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[12])));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7600)));
ctx.gpr[4] = (ctx.gpr[5] - ctx.gpr[4]);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
ctx.fpr[20] = ctx.fpr[20] / ctx.fpr[13];
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(16)));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(0)));
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[14];
{ const float fs = ctx.fpr[20]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[14] + ctx.fpr[12];
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(20)));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(4)));
ctx.fpr[13] = ctx.fpr[13] - ctx.fpr[15];
{ const float fs = ctx.fpr[20]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[13] = ctx.fpr[15] + ctx.fpr[13];
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(24)));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(8)));
ctx.fpr[14] = ctx.fpr[14] - ctx.fpr[16];
{ const float fs = ctx.fpr[20]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.fpr[14] = ctx.fpr[16] + ctx.fpr[14];
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(32), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(36), std::bit_cast<std::uint32_t>(ctx.fpr[13]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(40), std::bit_cast<std::uint32_t>(ctx.fpr[14]));
ctx.gpr[5] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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[20] = (ctx.gpr[29] + 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 = 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])); }
ctx.gpr[21] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(208)));
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(160));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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>();
ctx.gpr[6] = (ctx.gpr[29] + 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 = ctx.gpr[6] + 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.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(60)));
ctx.gpr[7] = (std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[7]);
{ const std::uint32_t vfpu_address = ctx.gpr[6] + 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>();
ctx.gpr[6] = (ctx.gpr[29] + 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[6] + 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[4] + 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[6] + 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[5] + 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[31] = (0x08A1F204u);
ctx.gpr[4] = (ctx.gpr[21] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1F204u) goto L_08A1F204;
return;
L_08A1F204:
{ 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); }
{ 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); }
ctx.gpr[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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[4] + 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, 2u>();
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i]));
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
ctx.gpr[5] = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[5]);
ctx.gpr[5] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<1u>(ctx.gpr[5]);
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<1u, 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<1u, 1u>(vfpu_d); }
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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, 1u, 3u>();
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast<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.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(140)));
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1F268;
}
goto L_08A1F258;
}
L_08A1F258:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1F298;
}
goto L_08A1F260;
}
L_08A1F260:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1F898;
}
goto L_08A1F268;
}
L_08A1F268:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(96)));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(256)));
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(140)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(112), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(100)));
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(260)));
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(140)));
{ const float fs = ctx.fpr[15]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[15] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[15] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[15];
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(116), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
goto L_08A1F298;
L_08A1F298:
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(56)));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(48)));
ctx.set_fpu_condition((ctx.fpr[20] < ctx.fpr[12]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1F340;
}
goto L_08A1F2B0;
}
L_08A1F2B0:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(153)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F340;
}
goto L_08A1F2BC;
}
L_08A1F2BC:
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(48)));
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[13] / ctx.fpr[12];
{ const float fs = ctx.fpr[20]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[4] = (17204u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.gpr[4] = (17287u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[15] - ctx.fpr[12];
ctx.gpr[4] = (16457u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 4059u);
ctx.fpr[16] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[14];
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::sin(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[14] + ctx.fpr[13];
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(56)));
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
ctx.fpr[14] = ctx.fpr[16] - ctx.fpr[17];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[22] = ctx.fpr[22] + ctx.fpr[12];
goto L_08A1F340;
L_08A1F340:
ctx.fpr[24] = std::bit_cast<float>(0u);
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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); }
ctx.gpr[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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[4] + 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); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(128)));
ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[13]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1F464;
}
goto L_08A1F388;
}
L_08A1F388:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(128)));
ctx.fpr[14] = ctx.fpr[12] - ctx.fpr[13];
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(132)));
ctx.fpr[13] = ctx.fpr[15] - ctx.fpr[13];
ctx.fpr[13] = ctx.fpr[14] / ctx.fpr[13];
ctx.fpr[16] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((ctx.fpr[13] < ctx.fpr[16]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(128)));
goto L_08A1F3B8;
}
goto L_08A1F3B0;
L_08A1F3B0:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[24] = std::bit_cast<float>(0u);
if (branch_taken) {
goto L_08A1F3FC;
}
goto L_08A1F3B8;
}
L_08A1F3B8:
ctx.fpr[14] = ctx.fpr[12] - ctx.fpr[13];
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(132)));
ctx.fpr[13] = ctx.fpr[15] - ctx.fpr[13];
ctx.fpr[13] = ctx.fpr[14] / ctx.fpr[13];
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[16] = std::bit_cast<float>(ctx.gpr[4]);
ctx.set_fpu_condition((ctx.fpr[13] <= ctx.fpr[16]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
ctx.gpr[4] = (16256u << 16u);
if (branch_taken) {
goto L_08A1F3E8;
}
goto L_08A1F3E0;
}
L_08A1F3E0:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[24] = std::bit_cast<float>(ctx.gpr[4]);
if (branch_taken) {
goto L_08A1F3FC;
}
goto L_08A1F3E8;
}
L_08A1F3E8:
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(128)));
ctx.fpr[24] = ctx.fpr[12] - ctx.fpr[13];
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(132)));
ctx.fpr[13] = ctx.fpr[14] - ctx.fpr[13];
ctx.fpr[24] = ctx.fpr[24] / ctx.fpr[13];
goto L_08A1F3FC;
L_08A1F3FC:
ctx.gpr[4] = (17204u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[24]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.gpr[4] = (17287u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = ctx.fpr[14] - ctx.fpr[13];
ctx.gpr[4] = (16457u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 4059u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[12] = ctx.fpr[13] / ctx.fpr[12];
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::sin(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[13] + ctx.fpr[12];
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[24] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[24] = fs * ft; }
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(136)));
{ const float fs = ctx.fpr[24]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[24] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[24] = fs * ft; }
goto L_08A1F464;
L_08A1F464:
ctx.fpr[22] = ctx.fpr[22] - ctx.fpr[24];
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(64)));
{ const float fs = ctx.fpr[20]; const float ft = ctx.fpr[24]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[24] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[24] = fs * ft; }
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(116)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F4C0;
}
goto L_08A1F47C;
}
L_08A1F47C:
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7476)));
ctx.gpr[5] = (0u | 0u);
ctx.gpr[6] = (0u | 1u);
ctx.gpr[7] = (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(ctx.gpr[29] + static_cast<std::uint32_t>(0), 0u);
ctx.gpr[31] = (0x08A1F4B8u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 487u, 0x0889ACD0u>(ctx, &aot_mem) && ctx.pc == 0x08A1F4B8u) goto L_08A1F4B8;
return;
L_08A1F4B8:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1F574;
}
goto L_08A1F4C0;
}
L_08A1F4C0:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(116)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F4EC;
}
goto L_08A1F4CC;
}
L_08A1F4CC:
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(116), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[4] = (0u | 100u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7468), ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (ctx.gpr[28] + static_cast<std::uint32_t>(6976));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + 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_08A1F4EC;
L_08A1F4EC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7468)));
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(-1));
{ const bool branch_taken = static_cast<std::int32_t>(ctx.gpr[4]) >= 0;
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7468), ctx.gpr[5]);
if (branch_taken) {
goto L_08A1F520;
}
goto L_08A1F4FC;
}
L_08A1F4FC:
ctx.gpr[4] = (ctx.gpr[28] + static_cast<std::uint32_t>(9808));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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[4] = (0u | 1u);
ctx.gpr[5] = (ctx.gpr[28] + ctx.gpr[18]);
aot_mem.aot_store8(ctx.gpr[5] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(ctx.gpr[4]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1F898;
}
goto L_08A1F520;
}
L_08A1F520:
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[5] = (ctx.gpr[28] + static_cast<std::uint32_t>(6976));
{ const std::uint32_t vfpu_address = ctx.gpr[5] + 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); }
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(416));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[6] + 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.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7472)));
ctx.gpr[7] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[7]);
{ const std::uint32_t vfpu_address = ctx.gpr[6] + 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>();
ctx.gpr[6] = (ctx.gpr[29] + 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 = ctx.gpr[6] + 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[5] + 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[6] + 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); }
ctx.gpr[5] = (ctx.gpr[29] + 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 = ctx.gpr[5] + 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[5] + 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[4] + 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_08A1F574;
L_08A1F574:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(72)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F680;
}
goto L_08A1F580;
}
L_08A1F580:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(80)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
ctx.gpr[5] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(432));
ctx.gpr[7] = (ctx.gpr[29] + static_cast<std::uint32_t>(464));
ctx.gpr[8] = (0u | 1u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), 0u);
ctx.gpr[31] = (0x08A1F5C0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 698u, 0x0889786Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1F5C0u) goto L_08A1F5C0;
return;
L_08A1F5C0:
ctx.gpr[4] = (ctx.gpr[2] < static_cast<std::uint32_t>(1) ? 1u : 0u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F654;
}
goto L_08A1F5D0;
}
L_08A1F5D0:
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(152), static_cast<std::uint8_t>(ctx.gpr[4]));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(160)));
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1F624;
}
goto L_08A1F5E4;
}
L_08A1F5E4:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(124)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(120)));
ctx.gpr[6] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[5]) >> 2u));
ctx.gpr[6] = (ctx.gpr[6] >> 30u);
ctx.gpr[5] = (ctx.gpr[5] + ctx.gpr[6]);
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[5]) >> 2u));
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[4]) < static_cast<std::int32_t>(ctx.gpr[5]) ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1F624;
}
goto L_08A1F608;
}
L_08A1F608:
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(156), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(160), static_cast<std::uint8_t>(ctx.gpr[4]));
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(164), ctx.gpr[19]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(176)));
ctx.gpr[4] = (ctx.gpr[19] + ctx.gpr[4]);
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(168), ctx.gpr[4]);
goto L_08A1F624;
L_08A1F624:
ctx.gpr[4] = (ctx.gpr[17] + static_cast<std::uint32_t>(124));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (ctx.gpr[5] + static_cast<std::uint32_t>(-1));
{ const bool branch_taken = ctx.gpr[5] != 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(0), ctx.gpr[6]);
if (branch_taken) {
goto L_08A1F678;
}
goto L_08A1F638;
}
L_08A1F638:
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (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 = ctx.gpr[4] + 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[4] = (0u | 1u);
{ const bool branch_taken = 0u == 0u;
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(72), static_cast<std::uint8_t>(ctx.gpr[4]));
if (branch_taken) {
goto L_08A1F678;
}
goto L_08A1F654;
}
L_08A1F654:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(124)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(1));
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(124), ctx.gpr[4]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(120)));
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[5]) < static_cast<std::int32_t>(ctx.gpr[4]) ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1F678;
}
goto L_08A1F670;
}
L_08A1F670:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(120)));
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(124), ctx.gpr[4]);
goto L_08A1F678;
L_08A1F678:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1F6A4;
}
goto L_08A1F680;
}
L_08A1F680:
ctx.gpr[4] = (ctx.gpr[17] + static_cast<std::uint32_t>(96));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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[4] = (ctx.gpr[17] + static_cast<std::uint32_t>(76));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[6] = (ctx.gpr[5] + static_cast<std::uint32_t>(-1));
{ const bool branch_taken = ctx.gpr[5] == 0u;
aot_mem.aot_store32(ctx.gpr[4] + static_cast<std::uint32_t>(0), ctx.gpr[6]);
if (branch_taken) {
goto L_08A1F6B8;
}
goto L_08A1F6A4;
}
L_08A1F6A4:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(160)));
if (ctx.gpr[4] == 0u) {
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(172)));
goto L_08A1F6CC;
}
goto L_08A1F6B0;
L_08A1F6B0:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1F6F8;
}
goto L_08A1F6B8;
}
L_08A1F6B8:
ctx.gpr[4] = (0u | 1u);
ctx.gpr[5] = (ctx.gpr[28] + ctx.gpr[18]);
aot_mem.aot_store8(ctx.gpr[5] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(ctx.gpr[4]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1F898;
}
goto L_08A1F6CC;
}
L_08A1F6CC:
ctx.set_fpu_condition((ctx.fpr[20] < ctx.fpr[12]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1F6F8;
}
goto L_08A1F6DC;
}
L_08A1F6DC:
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(156), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
ctx.gpr[4] = (0u | 1u);
aot_mem.aot_store8(ctx.gpr[17] + static_cast<std::uint32_t>(160), static_cast<std::uint8_t>(ctx.gpr[4]));
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(164), ctx.gpr[19]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(176)));
ctx.gpr[4] = (ctx.gpr[19] + ctx.gpr[4]);
aot_mem.aot_store32(ctx.gpr[17] + static_cast<std::uint32_t>(168), ctx.gpr[4]);
goto L_08A1F6F8;
L_08A1F6F8:
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[17] + static_cast<std::uint32_t>(160)));
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1F838;
}
goto L_08A1F704;
}
L_08A1F704:
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[19]);
ctx.fpr[12] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[12])));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(164)));
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13];
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(168)));
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[14])));
ctx.fpr[13] = ctx.fpr[14] - ctx.fpr[13];
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[13];
ctx.fpr[15] = std::bit_cast<float>(0u);
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[15]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[19]);
goto L_08A1F74C;
}
goto L_08A1F744;
L_08A1F744:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[22] = std::bit_cast<float>(0u);
if (branch_taken) {
goto L_08A1F7C0;
}
goto L_08A1F74C;
}
L_08A1F74C:
ctx.fpr[12] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[12])));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(164)));
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13];
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(168)));
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[14])));
ctx.fpr[13] = ctx.fpr[14] - ctx.fpr[13];
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[13];
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[15]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
ctx.gpr[4] = (16256u << 16u);
if (branch_taken) {
goto L_08A1F794;
}
goto L_08A1F78C;
}
L_08A1F78C:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[22] = std::bit_cast<float>(ctx.gpr[4]);
if (branch_taken) {
goto L_08A1F7C0;
}
goto L_08A1F794;
}
L_08A1F794:
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[19]);
ctx.fpr[12] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[12])));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(164)));
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
ctx.fpr[22] = ctx.fpr[12] - ctx.fpr[13];
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(168)));
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[14])));
ctx.fpr[13] = ctx.fpr[14] - ctx.fpr[13];
ctx.fpr[22] = ctx.fpr[22] / ctx.fpr[13];
goto L_08A1F7C0;
L_08A1F7C0:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(156)));
ctx.gpr[4] = (17204u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[22]; const float ft = ctx.fpr[13]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.gpr[4] = (17287u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[14] = ctx.fpr[15] - ctx.fpr[14];
ctx.gpr[4] = (16457u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 4059u);
ctx.fpr[16] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[14]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[14] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[14] = fs * ft; }
ctx.fpr[13] = ctx.fpr[14] / ctx.fpr[13];
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[13]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::sin(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = ctx.fpr[14] + ctx.fpr[13];
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[15]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(52)));
ctx.fpr[17] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(156)));
ctx.fpr[16] = ctx.fpr[16] - ctx.fpr[17];
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[22] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[22] = fs * ft; }
ctx.fpr[22] = ctx.fpr[12] + ctx.fpr[22];
goto L_08A1F838;
L_08A1F838:
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
ctx.gpr[7] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.gpr[5] = (0u | 20u);
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.gpr[31] = (0x08A1F854u);
ctx.gpr[8] = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 517u, 0x08A1B7BCu>(ctx, &aot_mem) && ctx.pc == 0x08A1F854u) goto L_08A1F854;
return;
L_08A1F854:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1F870;
}
goto L_08A1F85C;
}
L_08A1F85C:
ctx.gpr[4] = (0u | 1u);
ctx.gpr[5] = (ctx.gpr[28] + ctx.gpr[18]);
aot_mem.aot_store8(ctx.gpr[5] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(ctx.gpr[4]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
goto L_08A1F898;
}
goto L_08A1F870;
}
L_08A1F870:
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[17] + static_cast<std::uint32_t>(68)));
ctx.gpr[5] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
ctx.gpr[4] = (16256u << 16u);
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (ctx.gpr[16] | 0u);
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[24]));
ctx.gpr[31] = (0x08A1F894u);
ctx.fpr[13] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[22]));
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 471u, 0x08A1AF14u>(ctx, &aot_mem) && ctx.pc == 0x08A1F894u) goto L_08A1F894;
return;
L_08A1F894:
ctx.gpr[2] = (0u | 1u);
goto L_08A1F898;
L_08A1F898:
ctx.fpr[20] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(740)));
ctx.fpr[22] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(744)));
ctx.fpr[24] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(748)));
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(752)));
ctx.gpr[17] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(756)));
ctx.gpr[18] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(760)));
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(764)));
ctx.gpr[20] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(768)));
ctx.gpr[21] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(772)));
ctx.gpr[22] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(776)));
ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(780)));
ctx.gpr[30] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(784)));
ctx.gpr[31] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(788)));
jump_target = ctx.gpr[31];
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(800));
local_pc = jump_target;
if (++local_transfers < 256u) { entry_id = 0u; goto LOCAL_DISPATCH; }
ctx.pc = jump_target;
return;
L_08A1F8D4:
ctx.gpr[29] = (ctx.gpr[29] + static_cast<std::uint32_t>(-688));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(612), std::bit_cast<std::uint32_t>(ctx.fpr[20]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(616), std::bit_cast<std::uint32_t>(ctx.fpr[22]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(620), std::bit_cast<std::uint32_t>(ctx.fpr[24]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(624), std::bit_cast<std::uint32_t>(ctx.fpr[26]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(628), std::bit_cast<std::uint32_t>(ctx.fpr[28]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(632), std::bit_cast<std::uint32_t>(ctx.fpr[30]));
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(636), ctx.gpr[16]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(640), ctx.gpr[17]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(644), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(648), ctx.gpr[19]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(652), ctx.gpr[20]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(656), ctx.gpr[21]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(660), ctx.gpr[22]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(664), ctx.gpr[23]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(668), ctx.gpr[30]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(672), ctx.gpr[31]);
ctx.gpr[5] = (2236u << 16u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(32304));
aot_mem.aot_store8(ctx.gpr[5] + static_cast<std::uint32_t>(2072), static_cast<std::uint8_t>(0u));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(112)));
{ const bool branch_taken = ctx.gpr[5] == 0u;
ctx.gpr[6] = (ctx.gpr[4] | 0u);
if (branch_taken) {
goto L_08A1F9D0;
}
goto L_08A1F930;
}
L_08A1F930:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[6] + static_cast<std::uint32_t>(112)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(72)));
ctx.gpr[4] = (ctx.gpr[4] & 14u);
ctx.gpr[4] = (ctx.gpr[4] ^ 4u);
ctx.gpr[4] = (ctx.gpr[4] < static_cast<std::uint32_t>(1) ? 1u : 0u);
ctx.gpr[4] = (ctx.gpr[4] & 255u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1F9D0;
}
goto L_08A1F950;
}
L_08A1F950:
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(608), ctx.gpr[6]);
ctx.gpr[5] = (ctx.gpr[29] + static_cast<std::uint32_t>(32));
ctx.gpr[7] = (ctx.gpr[29] + static_cast<std::uint32_t>(36));
ctx.gpr[30] = (ctx.gpr[29] + static_cast<std::uint32_t>(48));
ctx.gpr[17] = (ctx.gpr[29] + static_cast<std::uint32_t>(64));
ctx.gpr[9] = (ctx.gpr[29] + static_cast<std::uint32_t>(80));
ctx.gpr[10] = (ctx.gpr[29] + static_cast<std::uint32_t>(96));
ctx.gpr[20] = (ctx.gpr[29] + static_cast<std::uint32_t>(112));
ctx.gpr[2] = (ctx.gpr[29] + static_cast<std::uint32_t>(128));
ctx.gpr[3] = (ctx.gpr[29] + static_cast<std::uint32_t>(160));
ctx.gpr[12] = (ctx.gpr[29] + static_cast<std::uint32_t>(144));
ctx.gpr[13] = (ctx.gpr[29] + static_cast<std::uint32_t>(164));
ctx.gpr[14] = (ctx.gpr[29] + static_cast<std::uint32_t>(176));
ctx.gpr[4] = (ctx.gpr[6] | 0u);
ctx.gpr[6] = (ctx.gpr[7] | 0u);
ctx.gpr[7] = (ctx.gpr[30] | 0u);
ctx.gpr[8] = (ctx.gpr[17] | 0u);
ctx.gpr[11] = (ctx.gpr[20] | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[2]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[3]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), ctx.gpr[12]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), ctx.gpr[13]);
ctx.gpr[31] = (0x08A1F9B0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), ctx.gpr[14]);
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 515u, 0x08A1B674u>(ctx, &aot_mem) && ctx.pc == 0x08A1F9B0u) goto L_08A1F9B0;
return;
L_08A1F9B0:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7660)));
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(6992)));
ctx.gpr[23] = (0u | 49u);
ctx.gpr[18] = (0u | 1u);
{ const bool branch_taken = ctx.gpr[6] == 0u;
ctx.gpr[5] = (ctx.gpr[28] + static_cast<std::uint32_t>(1));
if (branch_taken) {
goto L_08A1F9D8;
}
goto L_08A1F9C8;
}
L_08A1F9C8:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
goto L_08A1F9E8;
}
goto L_08A1F9D0;
}
L_08A1F9D0:
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 11u, 0x08A200D0u>(ctx, &aot_mem); return;
}
goto L_08A1F9D8;
}
L_08A1F9D8:
ctx.gpr[6] = (0u | 1u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(6992), ctx.gpr[6]);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7448)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(7024), ctx.gpr[6]);
goto L_08A1F9E8;
L_08A1F9E8:
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7584)));
if (ctx.gpr[6] != ctx.gpr[23]) {
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(604), ctx.gpr[5]);
goto L_08A1FA18;
}
goto L_08A1F9F4;
L_08A1F9F4:
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(604), ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(600), ctx.gpr[4]);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7608)));
ctx.gpr[7] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7764)));
ctx.gpr[7] = (ctx.gpr[7] + static_cast<std::uint32_t>(-1));
ctx.gpr[6] = (ctx.gpr[6] < ctx.gpr[7] ? 1u : 0u);
if (ctx.gpr[6] == 0u) {
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(600)));
goto L_08A1FD10;
}
goto L_08A1FA14;
L_08A1FA14:
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(604), ctx.gpr[5]);
goto L_08A1FA18;
L_08A1FA18:
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(600), ctx.gpr[4]);
ctx.gpr[16] = (ctx.gpr[5] | 0u);
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(0u));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7584), ctx.gpr[23]);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7604), ctx.gpr[4]);
ctx.gpr[5] = (2234u << 16u);
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(7704));
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(4));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (ctx.gpr[4] + ctx.gpr[5]);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(-7600), ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7448)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(7024), ctx.gpr[4]);
ctx.gpr[4] = (2279u << 16u);
ctx.gpr[31] = (0x08A1FA58u);
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(25248));
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 546u, 0x08A1B9ECu>(ctx, &aot_mem) && ctx.pc == 0x08A1FA58u) goto L_08A1FA58;
return;
L_08A1FA58:
ctx.gpr[23] = (0u | 0u);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7420)));
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[4]);
{ 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_vscl_ct<0u, 0u, 28u, 3u>();
ctx.gpr[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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[4] + 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); }
ctx.gpr[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7420)));
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(352));
ctx.gpr[8] = (ctx.gpr[29] + static_cast<std::uint32_t>(288));
ctx.gpr[5] = (0u | 1u);
ctx.gpr[7] = (0u | 15u);
ctx.gpr[9] = (0u | 0u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[18]);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), ctx.gpr[18]);
ctx.gpr[31] = (0x08A1FABCu);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0037_entry, 37u, 287u, 0x08899758u>(ctx, &aot_mem) && ctx.pc == 0x08A1FABCu) goto L_08A1FABC;
return;
L_08A1FABC:
ctx.gpr[4] = (17948u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 16384u);
ctx.fpr[20] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[20] = (0u | 0u);
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[29] + static_cast<std::uint32_t>(352))))));
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[20]) < static_cast<std::int32_t>(ctx.gpr[4]) ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(596), ctx.gpr[16]);
if (branch_taken) {
goto L_08A1FCF0;
}
goto L_08A1FADC;
}
L_08A1FADC:
ctx.gpr[4] = (16230u << 16u);
ctx.gpr[4] = (ctx.gpr[4] | 26214u);
ctx.fpr[22] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[21] = (ctx.gpr[29] + static_cast<std::uint32_t>(416));
ctx.gpr[17] = (ctx.gpr[29] + static_cast<std::uint32_t>(384));
ctx.gpr[19] = (ctx.gpr[29] + static_cast<std::uint32_t>(432));
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[28] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[18] = (ctx.gpr[29] + static_cast<std::uint32_t>(368));
ctx.fpr[26] = std::bit_cast<float>(0u);
ctx.gpr[22] = (ctx.gpr[28] + static_cast<std::uint32_t>(7008));
goto L_08A1FB08;
L_08A1FB08:
ctx.gpr[16] = (ctx.gpr[20] << 2u);
ctx.gpr[16] = (ctx.gpr[29] + ctx.gpr[16]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(288)));
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(40)));
ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[22]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1FCD4;
}
goto L_08A1FB28;
}
L_08A1FB28:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(288)));
ctx.gpr[31] = (0x08A1FB34u);
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(86))))));
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 405u, 0x08A1AA20u>(ctx, &aot_mem) && ctx.pc == 0x08A1FB34u) goto L_08A1FB34;
return;
L_08A1FB34:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1FCD4;
}
goto L_08A1FB3C;
}
L_08A1FB3C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(288)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(48));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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); }
{ 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])); }
{ 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_vdot_ct<28u, 0u, 0u, 2u>();
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::fabs(std::sqrt(vfpu_s[i]));
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[24] = std::bit_cast<float>(ctx.gpr[4]);
ctx.set_fpu_condition((ctx.fpr[20] <= ctx.fpr[24]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1FCD4;
}
goto L_08A1FB78;
}
L_08A1FB78:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7416)));
ctx.set_fpu_condition((ctx.fpr[24] <= ctx.fpr[12]));
// nop
{ const bool branch_taken = ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1FCD4;
}
goto L_08A1FB8C;
}
L_08A1FB8C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(288)));
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(86))))));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
ctx.gpr[4] = (ctx.gpr[5] + ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(32));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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])); }
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(288)));
ctx.gpr[4] = (ctx.gpr[19] | 0u);
ctx.gpr[31] = (0x08A1FBC4u);
ctx.gpr[6] = (ctx.gpr[17] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 350u, 0x08A1A5F4u>(ctx, &aot_mem) && ctx.pc == 0x08A1FBC4u) goto L_08A1FBC4;
return;
L_08A1FBC4:
{ 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); }
{ 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])); }
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(392)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(288)));
ctx.gpr[5] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(86))))));
ctx.gpr[5] = (ctx.gpr[5] << 2u);
ctx.gpr[6] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(24)));
ctx.gpr[5] = (ctx.gpr[6] + ctx.gpr[5]);
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(0)));
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(20)));
ctx.gpr[5] = (ctx.gpr[5] + static_cast<std::uint32_t>(32));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[5] + static_cast<std::uint32_t>(8)));
ctx.fpr[12] = ctx.fpr[12] - ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(392), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[4] + static_cast<std::uint32_t>(86))))));
ctx.gpr[4] = (ctx.gpr[4] << 2u);
ctx.gpr[4] = (ctx.gpr[6] + ctx.gpr[4]);
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(0)));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(20)));
ctx.gpr[4] = (ctx.gpr[4] + static_cast<std::uint32_t>(16));
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[4] + static_cast<std::uint32_t>(8)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[28]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] + ctx.fpr[13];
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(392), std::bit_cast<std::uint32_t>(ctx.fpr[12]));
{ 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); }
{ 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])); }
{ 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); }
{ 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<1u, 4u>(vfpu_value); }
{ float vfpu_value[4]{}; vfpu_value[0u] = 1.0f;
ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 4u>(vfpu_value); }
ctx.execute_vfpu_vdot_ct<28u, 1u, 1u, 3u>();
ctx.execute_vfpu_vcmp_ct<28u, 32u, 1u, 3u>();
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]);
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
ctx.execute_vfpu_vscl_ct<1u, 1u, 28u, 3u>();
ctx.execute_vfpu_vcmov_ct<1u, 0u, 3u, 0u, false>();
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<1u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[18] + static_cast<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[4] = (ctx.gpr[18] | 0u);
ctx.gpr[31] = (0x08A1FC68u);
ctx.gpr[5] = (ctx.gpr[30] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1FC68u) goto L_08A1FC68;
return;
L_08A1FC68:
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[26]) & 0x7FFFFFFFu);
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7412)));
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[13]));
// nop
{ const bool branch_taken = !ctx.fpu_condition();
// nop
if (branch_taken) {
goto L_08A1FCD4;
}
goto L_08A1FC80;
}
L_08A1FC80:
ctx.gpr[4] = (ctx.gpr[17] | 0u);
ctx.gpr[5] = (ctx.gpr[18] | 0u);
ctx.gpr[6] = (0u | 1u);
ctx.gpr[7] = (0u | 0u);
ctx.gpr[8] = (0u | 0u);
ctx.gpr[9] = (0u | 0u);
ctx.gpr[2] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 1u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), ctx.gpr[2]);
ctx.gpr[31] = (0x08A1FCB0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 527u, 0x088967ACu>(ctx, &aot_mem) && ctx.pc == 0x08A1FCB0u) goto L_08A1FCB0;
return;
L_08A1FCB0:
{ const bool branch_taken = ctx.gpr[2] == 0u;
// nop
if (branch_taken) {
goto L_08A1FCD4;
}
goto L_08A1FCB8;
}
L_08A1FCB8:
ctx.fpr[20] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[24]));
ctx.gpr[23] = (aot_mem.aot_load32(ctx.gpr[16] + static_cast<std::uint32_t>(288)));
{ 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[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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[4] + 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])); }
goto L_08A1FCD4;
L_08A1FCD4:
ctx.gpr[4] = (ctx.gpr[20] + static_cast<std::uint32_t>(1));
ctx.gpr[20] = (ctx.gpr[4] << 16u);
ctx.gpr[20] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(ctx.gpr[20]) >> 16u));
ctx.gpr[4] = (static_cast<std::uint32_t>(static_cast<std::int32_t>(static_cast<std::int16_t>(aot_mem.aot_load16(ctx.gpr[29] + static_cast<std::uint32_t>(352))))));
ctx.gpr[4] = (static_cast<std::int32_t>(ctx.gpr[20]) < static_cast<std::int32_t>(ctx.gpr[4]) ? 1u : 0u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
// nop
if (branch_taken) {
goto L_08A1FB08;
}
goto L_08A1FCF0;
}
L_08A1FCF0:
ctx.gpr[17] = (ctx.gpr[29] + static_cast<std::uint32_t>(64));
{ const bool branch_taken = ctx.gpr[23] != 0u;
ctx.gpr[18] = (0u | 1u);
if (branch_taken) {
goto L_08A1FD0C;
}
goto L_08A1FCFC;
}
L_08A1FCFC:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(596)));
aot_mem.aot_store8(ctx.gpr[4] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(ctx.gpr[18]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 11u, 0x08A200D0u>(ctx, &aot_mem); return;
}
goto L_08A1FD0C;
}
L_08A1FD0C:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(600)));
goto L_08A1FD10;
L_08A1FD10:
ctx.gpr[5] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7604)));
ctx.gpr[4] = (ctx.gpr[4] - ctx.gpr[5]);
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[20] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[12])));
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7600)));
ctx.gpr[4] = (ctx.gpr[4] - ctx.gpr[5]);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = static_cast<float>(static_cast<std::int32_t>(std::bit_cast<std::uint32_t>(ctx.fpr[13])));
ctx.fpr[20] = ctx.fpr[20] / ctx.fpr[13];
ctx.gpr[16] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(604)));
ctx.gpr[4] = (aot_mem.aot_load8(ctx.gpr[16] + static_cast<std::uint32_t>(-7596)));
ctx.fpr[26] = std::bit_cast<float>(0u);
ctx.gpr[5] = (16256u << 16u);
ctx.fpr[22] = std::bit_cast<float>(ctx.gpr[5]);
ctx.gpr[5] = (17204u << 16u);
ctx.fpr[24] = std::bit_cast<float>(ctx.gpr[5]);
ctx.gpr[5] = (16457u << 16u);
ctx.gpr[5] = (ctx.gpr[5] | 4059u);
{ const bool branch_taken = ctx.gpr[4] != 0u;
ctx.fpr[30] = std::bit_cast<float>(ctx.gpr[5]);
if (branch_taken) {
goto L_08A1FDC4;
}
goto L_08A1FD60;
}
L_08A1FD60:
ctx.gpr[4] = (ctx.gpr[28] + static_cast<std::uint32_t>(7008));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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])); }
{ 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); }
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(464));
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<0u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast<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[4] + 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_value[4]{}; vfpu_value[0u] = 1.0f;
ctx.write_vfpu_vector_with_destination_prefix_ct<0u, 4u>(vfpu_value); }
ctx.execute_vfpu_vdot_ct<28u, 1u, 1u, 3u>();
ctx.execute_vfpu_vcmp_ct<28u, 32u, 1u, 3u>();
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<28u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = 1.0f / std::sqrt(vfpu_s[i]);
ctx.write_vfpu_vector_with_destination_prefix_ct<28u, 1u>(vfpu_d); }
ctx.execute_vfpu_vscl_ct<1u, 1u, 28u, 3u>();
ctx.execute_vfpu_vcmov_ct<1u, 0u, 3u, 0u, false>();
{ float vfpu_value[4]{}; ctx.read_vfpu_vector_ct<1u, 4u>(vfpu_value);
const std::uint32_t vfpu_address = ctx.gpr[4] + static_cast<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.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7408)));
ctx.gpr[5] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<28u>(ctx.gpr[5]);
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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>();
ctx.gpr[5] = (ctx.gpr[29] + 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 = ctx.gpr[5] + 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[31] = (0x08A1FDC4u);
ctx.gpr[4] = (ctx.gpr[17] | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0163_entry, 163u, 463u, 0x08A931B8u>(ctx, &aot_mem) && ctx.pc == 0x08A1FDC4u) goto L_08A1FDC4;
return;
L_08A1FDC4:
{ 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); }
ctx.gpr[4] = (ctx.gpr[29] + 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 = ctx.gpr[4] + 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[4] + 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); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[28] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7444)));
ctx.fpr[12] = ctx.fpr[28] / ctx.fpr[12];
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[26]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7444)));
goto L_08A1FE0C;
}
goto L_08A1FE04;
L_08A1FE04:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[28] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[26]));
if (branch_taken) {
goto L_08A1FE2C;
}
goto L_08A1FE0C;
}
L_08A1FE0C:
ctx.fpr[12] = ctx.fpr[28] / ctx.fpr[12];
ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[22]));
// nop
if (ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7444)));
goto L_08A1FE28;
}
goto L_08A1FE20;
L_08A1FE20:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[28] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[22]));
if (branch_taken) {
goto L_08A1FE2C;
}
goto L_08A1FE28;
}
L_08A1FE28:
ctx.fpr[28] = ctx.fpr[28] / ctx.fpr[12];
goto L_08A1FE2C;
L_08A1FE2C:
ctx.gpr[4] = (17287u << 16u);
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
{ const float fs = ctx.fpr[28]; const float ft = ctx.fpr[24]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[13] - ctx.fpr[12];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[30]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[24];
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::sin(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[15] = std::bit_cast<float>(ctx.gpr[4]);
ctx.gpr[4] = (16128u << 16u);
ctx.fpr[14] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[15] + ctx.fpr[22];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[16] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7436)));
ctx.fpr[28] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7440)));
ctx.fpr[16] = ctx.fpr[16] - ctx.fpr[28];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[28] = ctx.fpr[28] + ctx.fpr[12];
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7432)));
ctx.set_fpu_condition((ctx.fpr[15] <= ctx.fpr[20]));
// nop
if (ctx.fpu_condition()) {
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(608)));
goto L_08A1FF20;
}
goto L_08A1FE98;
L_08A1FE98:
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7432)));
ctx.fpr[12] = ctx.fpr[20] / ctx.fpr[12];
ctx.set_fpu_condition((ctx.fpr[12] < ctx.fpr[26]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7432)));
goto L_08A1FEB8;
}
goto L_08A1FEB0;
L_08A1FEB0:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[26]));
if (branch_taken) {
goto L_08A1FED8;
}
goto L_08A1FEB8;
}
L_08A1FEB8:
ctx.fpr[12] = ctx.fpr[20] / ctx.fpr[12];
ctx.set_fpu_condition((ctx.fpr[12] <= ctx.fpr[22]));
// nop
if (ctx.fpu_condition()) {
ctx.fpr[12] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7432)));
goto L_08A1FED4;
}
goto L_08A1FECC;
L_08A1FECC:
{ const bool branch_taken = 0u == 0u;
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[22]));
if (branch_taken) {
goto L_08A1FED8;
}
goto L_08A1FED4;
}
L_08A1FED4:
ctx.fpr[12] = ctx.fpr[20] / ctx.fpr[12];
goto L_08A1FED8;
L_08A1FED8:
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[24]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[13] - ctx.fpr[12];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[30]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[12] = ctx.fpr[12] / ctx.fpr[24];
ctx.gpr[4] = (std::bit_cast<std::uint32_t>(ctx.fpr[12]));
ctx.set_vfpu_scalar_bits_ct<0u>(ctx.gpr[4]);
{ const float vfpu_constant = std::bit_cast<float>(0x3F22F983u);
const float vfpu_value[4]{vfpu_constant, vfpu_constant, vfpu_constant, vfpu_constant};
ctx.write_vfpu_vector_with_destination_prefix_ct<32u, 1u>(vfpu_value); }
{ float vfpu_s[4]{}, vfpu_t[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<0u, 1u, 0u>(vfpu_s);
ctx.read_vfpu_vector_with_source_prefix_ct<32u, 1u, 1u>(vfpu_t);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = vfpu_s[i] * vfpu_t[i];
ctx.write_vfpu_vector_with_destination_prefix_ct<64u, 1u>(vfpu_d); }
{ float vfpu_s[4]{}, vfpu_d[4]{};
ctx.read_vfpu_vector_with_source_prefix_ct<64u, 1u, 0u>(vfpu_s);
for (std::uint32_t i = 0; i < 1u; ++i) vfpu_d[i] = std::sin(vfpu_s[i] * 1.57079632679489661923f);
ctx.write_vfpu_vector_with_destination_prefix_ct<1u, 1u>(vfpu_d); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<1u>());
ctx.fpr[13] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[12] = ctx.fpr[13] + ctx.fpr[22];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[14]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[12] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[12] = fs * ft; }
ctx.fpr[15] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7404)));
ctx.fpr[16] = ctx.fpr[28] - ctx.fpr[15];
{ const float fs = ctx.fpr[12]; const float ft = ctx.fpr[16]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[28] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[28] = fs * ft; }
ctx.fpr[28] = ctx.fpr[15] + ctx.fpr[28];
ctx.gpr[19] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(608)));
goto L_08A1FF20;
L_08A1FF20:
ctx.gpr[4] = (ctx.gpr[19] | 0u);
ctx.gpr[5] = (0u | 21u);
ctx.gpr[6] = (ctx.gpr[17] | 0u);
ctx.gpr[7] = (ctx.gpr[30] | 0u);
ctx.fpr[12] = std::bit_cast<float>(std::bit_cast<std::uint32_t>(ctx.fpr[20]));
ctx.gpr[31] = (0x08A1FF3Cu);
ctx.gpr[8] = (0u | 0u);
if (rt.invoke_chained_direct<&recomp_unit_0133_entry, 133u, 517u, 0x08A1B7BCu>(ctx, &aot_mem) && ctx.pc == 0x08A1FF3Cu) goto L_08A1FF3C;
return;
L_08A1FF3C:
{ const bool branch_taken = ctx.gpr[2] != 0u;
// nop
if (branch_taken) {
goto L_08A1FF9C;
}
goto L_08A1FF44;
}
L_08A1FF44:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[29] + static_cast<std::uint32_t>(32)));
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), ctx.gpr[4]);
ctx.gpr[6] = (ctx.gpr[29] + static_cast<std::uint32_t>(224));
ctx.gpr[7] = (ctx.gpr[29] + static_cast<std::uint32_t>(256));
ctx.gpr[4] = (ctx.gpr[30] | 0u);
ctx.gpr[5] = (ctx.gpr[17] | 0u);
ctx.gpr[8] = (0u | 1u);
ctx.gpr[9] = (0u | 1u);
ctx.gpr[10] = (0u | 0u);
ctx.gpr[11] = (0u | 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(0), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(4), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(8), 0u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(12), 0u);
ctx.gpr[31] = (0x08A1FF84u);
aot_mem.aot_store32(ctx.gpr[29] + static_cast<std::uint32_t>(16), 0u);
if (rt.invoke_chained_direct<&recomp_unit_0036_entry, 36u, 698u, 0x0889786Cu>(ctx, &aot_mem) && ctx.pc == 0x08A1FF84u) goto L_08A1FF84;
return;
L_08A1FF84:
ctx.gpr[4] = (ctx.gpr[2] < static_cast<std::uint32_t>(1) ? 1u : 0u);
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(8068), 0u);
{ const bool branch_taken = ctx.gpr[4] == 0u;
// nop
if (branch_taken) {
goto L_08A1FFA8;
}
goto L_08A1FF94;
}
L_08A1FF94:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 1u, 0x08A20000u>(ctx, &aot_mem); return;
}
goto L_08A1FF9C;
}
L_08A1FF9C:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(ctx.gpr[18]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 11u, 0x08A200D0u>(ctx, &aot_mem); return;
}
goto L_08A1FFA8;
}
L_08A1FFA8:
ctx.gpr[4] = (aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(7024)));
ctx.gpr[5] = (ctx.gpr[4] + static_cast<std::uint32_t>(-1));
{ const bool branch_taken = ctx.gpr[4] == 0u;
aot_mem.aot_store32(ctx.gpr[28] + static_cast<std::uint32_t>(7024), ctx.gpr[5]);
if (branch_taken) {
goto L_08A1FFF4;
}
goto L_08A1FFB8;
}
L_08A1FFB8:
ctx.gpr[4] = (ctx.gpr[29] + static_cast<std::uint32_t>(128));
{ const std::uint32_t vfpu_address = ctx.gpr[4] + 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); }
ctx.gpr[4] = (ctx.vfpu_scalar_bits_ct<28u>());
ctx.fpr[12] = std::bit_cast<float>(ctx.gpr[4]);
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7428)));
{ const float fs = ctx.fpr[13]; const float ft = ctx.fpr[12]; if ((std::isinf(fs) && ft == 0.0f) || (std::isinf(ft) && fs == 0.0f)) ctx.fpr[13] = std::bit_cast<float>(0x7FC00000u); else ctx.fpr[13] = fs * ft; }
ctx.fpr[14] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7424)));
ctx.set_fpu_condition((ctx.fpr[14] < ctx.fpr[13]));
// nop
if (!ctx.fpu_condition()) {
ctx.fpr[13] = std::bit_cast<float>(aot_mem.aot_load32(ctx.gpr[28] + static_cast<std::uint32_t>(-7424)));
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 3u, 0x08A20028u>(ctx, &aot_mem); return;
}
goto L_08A1FFEC;
L_08A1FFEC:
{ const bool branch_taken = 0u == 0u;
// nop
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 3u, 0x08A20028u>(ctx, &aot_mem); return;
}
goto L_08A1FFF4;
}
L_08A1FFF4:
aot_mem.aot_store8(ctx.gpr[16] + static_cast<std::uint32_t>(-7596), static_cast<std::uint8_t>(ctx.gpr[18]));
{ const bool branch_taken = 0u == 0u;
ctx.gpr[2] = (0u | 0u);
if (branch_taken) {
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 11u, 0x08A200D0u>(ctx, &aot_mem); return;
}
(void)rt.invoke_chained_direct<&recomp_unit_0135_entry, 135u, 1u, 0x08A20000u>(ctx, &aot_mem); return;
}
}
void recomp_unit_0134(Runtime &rt, AllegrexContext &ctx) {
auto aot_mem = rt.memory().aot_fast_view();
recomp_unit_0134_entry(rt, ctx, 0u, aot_mem);
}
void register_generated_unit_134(Runtime &runtime) {
runtime.register_generated_unit(134u, 0x08A1C000u, 16384u, &recomp_unit_0134, &recomp_unit_0134_entry);
runtime.register_function(0x08A1C000u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C00Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C01Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C044u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C070u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C07Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C084u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C08Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C094u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C09Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0A4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0ACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0B4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0E0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0F0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C0F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C100u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C104u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C120u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C12Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C148u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C188u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C190u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C198u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C204u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C2F0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C314u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C358u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C378u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C3DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C410u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C438u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C4C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C4D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C504u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C520u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C544u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C574u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C580u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C5A8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C5B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C5D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C5D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C5E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C60Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C62Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C634u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C638u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C640u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C648u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C650u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C658u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C688u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C694u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C69Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C6A4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C6B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C6B8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C6C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C6F0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C700u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C708u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C70Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C714u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C744u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C754u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C75Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C760u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C768u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C770u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C788u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C7A0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C7A8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C7B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C7B4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C7BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C80Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C81Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C84Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C858u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C864u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C870u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C87Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C884u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C8A4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C8BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C8D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C8DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C8ECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C904u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C910u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C93Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C94Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C958u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C960u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C97Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C988u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C9ACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C9BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C9C4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C9D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C9DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C9E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1C9F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CA04u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CA0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CA64u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CA70u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CAC0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CAD0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CAF4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CB08u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CB34u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CB58u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CB6Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CB7Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CBA8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CBCCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CBE0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CC0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CC44u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CCA4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CCB0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CD00u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CD10u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CD34u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CD48u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CD74u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CD98u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CDACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CDBCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CDE8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CE0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CE20u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CE4Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CE68u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CE7Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CE9Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CEA8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CEB4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CECCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CED8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CEDCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CEECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF18u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF24u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF3Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF48u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF4Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF5Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF7Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CF98u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CFBCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CFCCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CFD4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CFDCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CFE4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CFECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1CFF4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D000u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D008u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D018u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D040u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D050u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D05Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D064u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D06Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D074u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D07Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D080u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D088u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D090u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0E0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0E8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0F4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D0FCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D104u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D10Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D11Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D128u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D130u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D138u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D13Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D150u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D178u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D198u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1A8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1B4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1C4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D1F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D214u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D224u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D22Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D234u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D23Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D244u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D24Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D258u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D260u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D268u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D270u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D278u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D280u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D28Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D29Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D2B8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D2C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D2C4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D2CCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D2D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D314u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D31Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D330u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D338u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D358u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D364u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D36Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D378u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D398u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D3A4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D3C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D3C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D3DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D3ECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D3F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D404u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D414u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D420u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D430u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D43Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D478u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D480u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D490u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D494u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D49Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D4A8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D4B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D4B8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D4C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D4C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D4F4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D4FCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D51Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D524u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D540u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D544u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D568u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D580u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D598u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D5A0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D5B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D5B4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D5BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D5E8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D5F0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D614u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D628u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D644u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D650u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7C4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7D4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7ECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7F4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D7FCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D804u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D808u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D810u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D820u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D830u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D838u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D840u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D848u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D854u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D864u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D874u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D884u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D894u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D898u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D8A0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D8D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D8ECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D8F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D904u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D910u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D938u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D958u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D960u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D974u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D9A4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D9CCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D9D4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D9E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1D9ECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DA10u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DA2Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DA34u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DA3Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DAA8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DAC0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DACCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DADCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DAF0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DAFCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB18u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB24u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB2Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB38u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB40u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB68u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB74u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB84u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB90u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DB98u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DCD0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DCE4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DCF8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD1Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD24u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD28u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD34u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD38u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD3Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD74u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD84u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DD9Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DDB4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DDD0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DDE4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DDFCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE08u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE2Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE3Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE48u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE54u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE6Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE78u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DE9Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DEACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DEB4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DEE8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DEF4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DEFCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DF10u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DF30u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DF3Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DF50u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DF78u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DF80u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DF88u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DFA4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DFACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DFD0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DFDCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1DFE4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E008u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E010u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E030u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E068u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E074u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E07Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E098u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E0A0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E0C4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E0D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E0D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E0E0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E108u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E10Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E11Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E130u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E15Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E190u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E19Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E1A4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E1C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E1C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E1E0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E1E8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E1F4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E200u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E208u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E210u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E228u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E230u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E244u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E250u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E288u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E294u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E2A0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E2A8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E2D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E308u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E314u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E31Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E338u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E340u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E364u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E370u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E378u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E380u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E3A8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E3ACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E3BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E3D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E3FCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E404u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E430u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E448u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E470u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E490u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E4B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E4F0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E4F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E580u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E5D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E5DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E610u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E620u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E624u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E630u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E63Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E648u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E650u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E658u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E65Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E670u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E688u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E6C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E6ECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E724u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E72Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E734u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E73Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E768u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E770u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E780u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E788u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E794u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E79Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E7ACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E7B4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E7C4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E7CCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E7DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E7F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E828u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E82Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E850u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E860u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E888u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E8F4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E8FCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E918u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E920u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E93Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E95Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E968u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E970u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E978u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E980u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E988u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E990u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E998u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E9A0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E9A8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E9B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E9C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1E9DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EABCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EAC8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EB00u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EB34u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EB60u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EB80u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EBA0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EBC4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EBF8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EC24u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EC30u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EC80u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1ECC0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1ECE0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1ED30u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1ED44u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1ED4Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1ED54u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1ED68u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EDA4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EDACu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EDB4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EDC0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EDD4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EE78u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EE8Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EEA8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EEB0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EEB8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EECCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EEE8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EEF0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EF04u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EF0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EF14u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EF20u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EF7Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EFB4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EFECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EFF4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1EFFCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F03Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F04Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F054u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F060u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F074u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F07Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F084u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F098u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F0B4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F0BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F0C4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F0D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F0E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F0F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F114u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F11Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F120u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F130u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F204u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F258u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F260u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F268u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F298u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F2B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F2BCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F340u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F388u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F3B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F3B8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F3E0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F3E8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F3FCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F464u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F47Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F4B8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F4C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F4CCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F4ECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F4FCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F520u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F574u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F580u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F5C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F5D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F5E4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F608u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F624u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F638u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F654u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F670u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F678u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F680u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F6A4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F6B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F6B8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F6CCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F6DCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F6F8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F704u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F744u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F74Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F78Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F794u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F7C0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F838u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F854u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F85Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F870u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F894u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F898u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F8D4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F930u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F950u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F9B0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F9C8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F9D0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F9D8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F9E8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1F9F4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FA14u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FA18u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FA58u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FABCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FADCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FB08u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FB28u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FB34u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FB3Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FB78u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FB8Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FBC4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FC68u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FC80u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FCB0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FCB8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FCD4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FCF0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FCFCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FD0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FD10u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FD60u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FDC4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FE04u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FE0Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FE20u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FE28u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FE2Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FE98u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FEB0u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FEB8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FECCu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FED4u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FED8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FF20u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FF3Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FF44u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FF84u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FF94u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FF9Cu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FFA8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FFB8u, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FFECu, &recomp_unit_0134, "recomp_unit_0134");
runtime.register_function(0x08A1FFF4u, &recomp_unit_0134, "recomp_unit_0134");
}
} // namespace psprecomp