tgsi_ureg.c revision ff56a12051a91c5c69db9afb85e4a3ebdb17ef96
1/************************************************************************** 2 * 3 * Copyright 2009 VMware, Inc. 4 * All Rights Reserved. 5 * 6 * Permission is hereby granted, free of charge, to any person obtaining a 7 * copy of this software and associated documentation files (the 8 * "Software"), to deal in the Software without restriction, including 9 * without limitation the rights to use, copy, modify, merge, publish, 10 * distribute, sub license, and/or sell copies of the Software, and to 11 * permit persons to whom the Software is furnished to do so, subject to 12 * the following conditions: 13 * 14 * The above copyright notice and this permission notice (including the 15 * next paragraph) shall be included in all copies or substantial portions 16 * of the Software. 17 * 18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS 19 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 20 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. 21 * IN NO EVENT SHALL VMWARE, INC AND/OR ITS SUPPLIERS BE LIABLE FOR 22 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, 23 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE 24 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. 25 * 26 **************************************************************************/ 27 28 29#include "pipe/p_context.h" 30#include "pipe/p_state.h" 31#include "tgsi/tgsi_ureg.h" 32#include "tgsi/tgsi_build.h" 33#include "tgsi/tgsi_info.h" 34#include "tgsi/tgsi_dump.h" 35#include "tgsi/tgsi_sanity.h" 36#include "util/u_memory.h" 37#include "util/u_math.h" 38 39union tgsi_any_token { 40 struct tgsi_header header; 41 struct tgsi_processor processor; 42 struct tgsi_token token; 43 struct tgsi_declaration decl; 44 struct tgsi_declaration_range decl_range; 45 struct tgsi_declaration_semantic decl_semantic; 46 struct tgsi_immediate imm; 47 union tgsi_immediate_data imm_data; 48 struct tgsi_instruction insn; 49 struct tgsi_instruction_predicate insn_predicate; 50 struct tgsi_instruction_label insn_label; 51 struct tgsi_instruction_texture insn_texture; 52 struct tgsi_src_register src; 53 struct tgsi_dimension dim; 54 struct tgsi_dst_register dst; 55 unsigned value; 56}; 57 58 59struct ureg_tokens { 60 union tgsi_any_token *tokens; 61 unsigned size; 62 unsigned order; 63 unsigned count; 64}; 65 66#define UREG_MAX_INPUT PIPE_MAX_ATTRIBS 67#define UREG_MAX_OUTPUT PIPE_MAX_ATTRIBS 68#define UREG_MAX_CONSTANT_RANGE 32 69#define UREG_MAX_IMMEDIATE 32 70#define UREG_MAX_TEMP 256 71#define UREG_MAX_ADDR 2 72#define UREG_MAX_LOOP 1 73#define UREG_MAX_PRED 1 74 75#define DOMAIN_DECL 0 76#define DOMAIN_INSN 1 77 78struct ureg_program 79{ 80 unsigned processor; 81 struct pipe_context *pipe; 82 83 struct { 84 unsigned semantic_name; 85 unsigned semantic_index; 86 unsigned interp; 87 } fs_input[UREG_MAX_INPUT]; 88 unsigned nr_fs_inputs; 89 90 unsigned vs_inputs[UREG_MAX_INPUT/32]; 91 92 struct { 93 unsigned index; 94 } gs_input[UREG_MAX_INPUT]; 95 unsigned nr_gs_inputs; 96 97 struct { 98 unsigned semantic_name; 99 unsigned semantic_index; 100 } output[UREG_MAX_OUTPUT]; 101 unsigned nr_outputs; 102 103 struct { 104 union { 105 float f[4]; 106 unsigned u[4]; 107 int i[4]; 108 } value; 109 unsigned nr; 110 unsigned type; 111 } immediate[UREG_MAX_IMMEDIATE]; 112 unsigned nr_immediates; 113 114 struct ureg_src sampler[PIPE_MAX_SAMPLERS]; 115 unsigned nr_samplers; 116 117 unsigned temps_active[UREG_MAX_TEMP / 32]; 118 unsigned nr_temps; 119 120 struct { 121 unsigned first; 122 unsigned last; 123 } constant_range[UREG_MAX_CONSTANT_RANGE]; 124 unsigned nr_constant_ranges; 125 126 unsigned nr_addrs; 127 unsigned nr_preds; 128 unsigned nr_loops; 129 unsigned nr_instructions; 130 131 struct ureg_tokens domain[2]; 132}; 133 134static union tgsi_any_token error_tokens[32]; 135 136static void tokens_error( struct ureg_tokens *tokens ) 137{ 138 if (tokens->tokens && tokens->tokens != error_tokens) 139 FREE(tokens->tokens); 140 141 tokens->tokens = error_tokens; 142 tokens->size = Elements(error_tokens); 143 tokens->count = 0; 144} 145 146 147static void tokens_expand( struct ureg_tokens *tokens, 148 unsigned count ) 149{ 150 unsigned old_size = tokens->size * sizeof(unsigned); 151 152 if (tokens->tokens == error_tokens) { 153 return; 154 } 155 156 while (tokens->count + count > tokens->size) { 157 tokens->size = (1 << ++tokens->order); 158 } 159 160 tokens->tokens = REALLOC(tokens->tokens, 161 old_size, 162 tokens->size * sizeof(unsigned)); 163 if (tokens->tokens == NULL) { 164 tokens_error(tokens); 165 } 166} 167 168static void set_bad( struct ureg_program *ureg ) 169{ 170 tokens_error(&ureg->domain[0]); 171} 172 173 174 175static union tgsi_any_token *get_tokens( struct ureg_program *ureg, 176 unsigned domain, 177 unsigned count ) 178{ 179 struct ureg_tokens *tokens = &ureg->domain[domain]; 180 union tgsi_any_token *result; 181 182 if (tokens->count + count > tokens->size) 183 tokens_expand(tokens, count); 184 185 result = &tokens->tokens[tokens->count]; 186 tokens->count += count; 187 return result; 188} 189 190 191static union tgsi_any_token *retrieve_token( struct ureg_program *ureg, 192 unsigned domain, 193 unsigned nr ) 194{ 195 if (ureg->domain[domain].tokens == error_tokens) 196 return &error_tokens[0]; 197 198 return &ureg->domain[domain].tokens[nr]; 199} 200 201 202 203static INLINE struct ureg_dst 204ureg_dst_register( unsigned file, 205 unsigned index ) 206{ 207 struct ureg_dst dst; 208 209 dst.File = file; 210 dst.WriteMask = TGSI_WRITEMASK_XYZW; 211 dst.Indirect = 0; 212 dst.IndirectIndex = 0; 213 dst.IndirectSwizzle = 0; 214 dst.Saturate = 0; 215 dst.Predicate = 0; 216 dst.PredNegate = 0; 217 dst.PredSwizzleX = TGSI_SWIZZLE_X; 218 dst.PredSwizzleY = TGSI_SWIZZLE_Y; 219 dst.PredSwizzleZ = TGSI_SWIZZLE_Z; 220 dst.PredSwizzleW = TGSI_SWIZZLE_W; 221 dst.Index = index; 222 223 return dst; 224} 225 226static INLINE struct ureg_src 227ureg_src_register( unsigned file, 228 unsigned index ) 229{ 230 struct ureg_src src; 231 232 src.File = file; 233 src.SwizzleX = TGSI_SWIZZLE_X; 234 src.SwizzleY = TGSI_SWIZZLE_Y; 235 src.SwizzleZ = TGSI_SWIZZLE_Z; 236 src.SwizzleW = TGSI_SWIZZLE_W; 237 src.Pad = 0; 238 src.Indirect = 0; 239 src.IndirectIndex = 0; 240 src.IndirectSwizzle = 0; 241 src.Absolute = 0; 242 src.Index = index; 243 src.Negate = 0; 244 245 return src; 246} 247 248 249 250 251struct ureg_src 252ureg_DECL_fs_input( struct ureg_program *ureg, 253 unsigned name, 254 unsigned index, 255 unsigned interp_mode ) 256{ 257 unsigned i; 258 259 for (i = 0; i < ureg->nr_fs_inputs; i++) { 260 if (ureg->fs_input[i].semantic_name == name && 261 ureg->fs_input[i].semantic_index == index) 262 goto out; 263 } 264 265 if (ureg->nr_fs_inputs < UREG_MAX_INPUT) { 266 ureg->fs_input[i].semantic_name = name; 267 ureg->fs_input[i].semantic_index = index; 268 ureg->fs_input[i].interp = interp_mode; 269 ureg->nr_fs_inputs++; 270 } 271 else { 272 set_bad( ureg ); 273 } 274 275out: 276 return ureg_src_register( TGSI_FILE_INPUT, i ); 277} 278 279 280struct ureg_src 281ureg_DECL_vs_input( struct ureg_program *ureg, 282 unsigned index ) 283{ 284 assert(ureg->processor == TGSI_PROCESSOR_VERTEX); 285 286 ureg->vs_inputs[index/32] |= 1 << (index % 32); 287 return ureg_src_register( TGSI_FILE_INPUT, index ); 288} 289 290 291struct ureg_src 292ureg_DECL_gs_input(struct ureg_program *ureg, 293 unsigned index) 294{ 295 if (ureg->nr_gs_inputs < UREG_MAX_INPUT) { 296 ureg->gs_input[ureg->nr_gs_inputs].index = index; 297 ureg->nr_gs_inputs++; 298 } else { 299 set_bad(ureg); 300 } 301 302 /* XXX: Add suport for true 2D input registers. */ 303 return ureg_src_register(TGSI_FILE_INPUT, index); 304} 305 306 307struct ureg_dst 308ureg_DECL_output( struct ureg_program *ureg, 309 unsigned name, 310 unsigned index ) 311{ 312 unsigned i; 313 314 for (i = 0; i < ureg->nr_outputs; i++) { 315 if (ureg->output[i].semantic_name == name && 316 ureg->output[i].semantic_index == index) 317 goto out; 318 } 319 320 if (ureg->nr_outputs < UREG_MAX_OUTPUT) { 321 ureg->output[i].semantic_name = name; 322 ureg->output[i].semantic_index = index; 323 ureg->nr_outputs++; 324 } 325 else { 326 set_bad( ureg ); 327 } 328 329out: 330 return ureg_dst_register( TGSI_FILE_OUTPUT, i ); 331} 332 333 334/* Returns a new constant register. Keep track of which have been 335 * referred to so that we can emit decls later. 336 * 337 * There is nothing in this code to bind this constant to any tracked 338 * value or manage any constant_buffer contents -- that's the 339 * resposibility of the calling code. 340 */ 341struct ureg_src ureg_DECL_constant(struct ureg_program *ureg, 342 unsigned index ) 343{ 344 unsigned minconst = index, maxconst = index; 345 unsigned i; 346 347 /* Inside existing range? 348 */ 349 for (i = 0; i < ureg->nr_constant_ranges; i++) { 350 if (ureg->constant_range[i].first <= index && 351 ureg->constant_range[i].last >= index) 352 goto out; 353 } 354 355 /* Extend existing range? 356 */ 357 for (i = 0; i < ureg->nr_constant_ranges; i++) { 358 if (ureg->constant_range[i].last == index - 1) { 359 ureg->constant_range[i].last = index; 360 goto out; 361 } 362 363 if (ureg->constant_range[i].first == index + 1) { 364 ureg->constant_range[i].first = index; 365 goto out; 366 } 367 368 minconst = MIN2(minconst, ureg->constant_range[i].first); 369 maxconst = MAX2(maxconst, ureg->constant_range[i].last); 370 } 371 372 /* Create new range? 373 */ 374 if (ureg->nr_constant_ranges < UREG_MAX_CONSTANT_RANGE) { 375 i = ureg->nr_constant_ranges++; 376 ureg->constant_range[i].first = index; 377 ureg->constant_range[i].last = index; 378 goto out; 379 } 380 381 /* Collapse all ranges down to one: 382 */ 383 i = 0; 384 ureg->constant_range[0].first = minconst; 385 ureg->constant_range[0].last = maxconst; 386 ureg->nr_constant_ranges = 1; 387 388out: 389 assert(i < ureg->nr_constant_ranges); 390 assert(ureg->constant_range[i].first <= index); 391 assert(ureg->constant_range[i].last >= index); 392 return ureg_src_register( TGSI_FILE_CONSTANT, index ); 393} 394 395 396/* Allocate a new temporary. Temporaries greater than UREG_MAX_TEMP 397 * are legal, but will not be released. 398 */ 399struct ureg_dst ureg_DECL_temporary( struct ureg_program *ureg ) 400{ 401 unsigned i; 402 403 for (i = 0; i < UREG_MAX_TEMP; i += 32) { 404 int bit = ffs(~ureg->temps_active[i/32]); 405 if (bit != 0) { 406 i += bit - 1; 407 goto out; 408 } 409 } 410 411 /* No reusable temps, so allocate a new one: 412 */ 413 i = ureg->nr_temps++; 414 415out: 416 if (i < UREG_MAX_TEMP) 417 ureg->temps_active[i/32] |= 1 << (i % 32); 418 419 if (i >= ureg->nr_temps) 420 ureg->nr_temps = i + 1; 421 422 return ureg_dst_register( TGSI_FILE_TEMPORARY, i ); 423} 424 425 426void ureg_release_temporary( struct ureg_program *ureg, 427 struct ureg_dst tmp ) 428{ 429 if(tmp.File == TGSI_FILE_TEMPORARY) 430 if (tmp.Index < UREG_MAX_TEMP) 431 ureg->temps_active[tmp.Index/32] &= ~(1 << (tmp.Index % 32)); 432} 433 434 435/* Allocate a new address register. 436 */ 437struct ureg_dst ureg_DECL_address( struct ureg_program *ureg ) 438{ 439 if (ureg->nr_addrs < UREG_MAX_ADDR) 440 return ureg_dst_register( TGSI_FILE_ADDRESS, ureg->nr_addrs++ ); 441 442 assert( 0 ); 443 return ureg_dst_register( TGSI_FILE_ADDRESS, 0 ); 444} 445 446/* Allocate a new loop register. 447 */ 448struct ureg_dst 449ureg_DECL_loop(struct ureg_program *ureg) 450{ 451 if (ureg->nr_loops < UREG_MAX_LOOP) { 452 return ureg_dst_register(TGSI_FILE_LOOP, ureg->nr_loops++); 453 } 454 455 assert(0); 456 return ureg_dst_register(TGSI_FILE_LOOP, 0); 457} 458 459/* Allocate a new predicate register. 460 */ 461struct ureg_dst 462ureg_DECL_predicate(struct ureg_program *ureg) 463{ 464 if (ureg->nr_preds < UREG_MAX_PRED) { 465 return ureg_dst_register(TGSI_FILE_PREDICATE, ureg->nr_preds++); 466 } 467 468 assert(0); 469 return ureg_dst_register(TGSI_FILE_PREDICATE, 0); 470} 471 472/* Allocate a new sampler. 473 */ 474struct ureg_src ureg_DECL_sampler( struct ureg_program *ureg, 475 unsigned nr ) 476{ 477 unsigned i; 478 479 for (i = 0; i < ureg->nr_samplers; i++) 480 if (ureg->sampler[i].Index == nr) 481 return ureg->sampler[i]; 482 483 if (i < PIPE_MAX_SAMPLERS) { 484 ureg->sampler[i] = ureg_src_register( TGSI_FILE_SAMPLER, nr ); 485 ureg->nr_samplers++; 486 return ureg->sampler[i]; 487 } 488 489 assert( 0 ); 490 return ureg->sampler[0]; 491} 492 493 494static int 495match_or_expand_immediate( const unsigned *v, 496 unsigned nr, 497 unsigned *v2, 498 unsigned *nr2, 499 unsigned *swizzle ) 500{ 501 unsigned i, j; 502 503 *swizzle = 0; 504 505 for (i = 0; i < nr; i++) { 506 boolean found = FALSE; 507 508 for (j = 0; j < *nr2 && !found; j++) { 509 if (v[i] == v2[j]) { 510 *swizzle |= j << (i * 2); 511 found = TRUE; 512 } 513 } 514 515 if (!found) { 516 if (*nr2 >= 4) { 517 return FALSE; 518 } 519 520 v2[*nr2] = v[i]; 521 *swizzle |= *nr2 << (i * 2); 522 (*nr2)++; 523 } 524 } 525 526 return TRUE; 527} 528 529 530static struct ureg_src 531decl_immediate( struct ureg_program *ureg, 532 const unsigned *v, 533 unsigned nr, 534 unsigned type ) 535{ 536 unsigned i, j; 537 unsigned swizzle; 538 539 /* Could do a first pass where we examine all existing immediates 540 * without expanding. 541 */ 542 543 for (i = 0; i < ureg->nr_immediates; i++) { 544 if (ureg->immediate[i].type != type) { 545 continue; 546 } 547 if (match_or_expand_immediate(v, 548 nr, 549 ureg->immediate[i].value.u, 550 &ureg->immediate[i].nr, 551 &swizzle)) { 552 goto out; 553 } 554 } 555 556 if (ureg->nr_immediates < UREG_MAX_IMMEDIATE) { 557 i = ureg->nr_immediates++; 558 ureg->immediate[i].type = type; 559 if (match_or_expand_immediate(v, 560 nr, 561 ureg->immediate[i].value.u, 562 &ureg->immediate[i].nr, 563 &swizzle)) { 564 goto out; 565 } 566 } 567 568 set_bad(ureg); 569 570out: 571 /* Make sure that all referenced elements are from this immediate. 572 * Has the effect of making size-one immediates into scalars. 573 */ 574 for (j = nr; j < 4; j++) { 575 swizzle |= (swizzle & 0x3) << (j * 2); 576 } 577 578 return ureg_swizzle(ureg_src_register(TGSI_FILE_IMMEDIATE, i), 579 (swizzle >> 0) & 0x3, 580 (swizzle >> 2) & 0x3, 581 (swizzle >> 4) & 0x3, 582 (swizzle >> 6) & 0x3); 583} 584 585 586struct ureg_src 587ureg_DECL_immediate( struct ureg_program *ureg, 588 const float *v, 589 unsigned nr ) 590{ 591 union { 592 float f[4]; 593 unsigned u[4]; 594 } fu; 595 unsigned int i; 596 597 for (i = 0; i < nr; i++) { 598 fu.f[i] = v[i]; 599 } 600 601 return decl_immediate(ureg, fu.u, nr, TGSI_IMM_FLOAT32); 602} 603 604 605struct ureg_src 606ureg_DECL_immediate_uint( struct ureg_program *ureg, 607 const unsigned *v, 608 unsigned nr ) 609{ 610 return decl_immediate(ureg, v, nr, TGSI_IMM_UINT32); 611} 612 613 614struct ureg_src 615ureg_DECL_immediate_int( struct ureg_program *ureg, 616 const int *v, 617 unsigned nr ) 618{ 619 return decl_immediate(ureg, (const unsigned *)v, nr, TGSI_IMM_INT32); 620} 621 622 623void 624ureg_emit_src( struct ureg_program *ureg, 625 struct ureg_src src ) 626{ 627 unsigned size = 1 + (src.Indirect ? 1 : 0); 628 629 union tgsi_any_token *out = get_tokens( ureg, DOMAIN_INSN, size ); 630 unsigned n = 0; 631 632 assert(src.File != TGSI_FILE_NULL); 633 assert(src.File != TGSI_FILE_OUTPUT); 634 assert(src.File < TGSI_FILE_COUNT); 635 636 out[n].value = 0; 637 out[n].src.File = src.File; 638 out[n].src.SwizzleX = src.SwizzleX; 639 out[n].src.SwizzleY = src.SwizzleY; 640 out[n].src.SwizzleZ = src.SwizzleZ; 641 out[n].src.SwizzleW = src.SwizzleW; 642 out[n].src.Index = src.Index; 643 out[n].src.Negate = src.Negate; 644 out[0].src.Absolute = src.Absolute; 645 n++; 646 647 if (src.Indirect) { 648 out[0].src.Indirect = 1; 649 out[n].value = 0; 650 out[n].src.File = TGSI_FILE_ADDRESS; 651 out[n].src.SwizzleX = src.IndirectSwizzle; 652 out[n].src.SwizzleY = src.IndirectSwizzle; 653 out[n].src.SwizzleZ = src.IndirectSwizzle; 654 out[n].src.SwizzleW = src.IndirectSwizzle; 655 out[n].src.Index = src.IndirectIndex; 656 n++; 657 } 658 659 assert(n == size); 660} 661 662 663void 664ureg_emit_dst( struct ureg_program *ureg, 665 struct ureg_dst dst ) 666{ 667 unsigned size = (1 + 668 (dst.Indirect ? 1 : 0)); 669 670 union tgsi_any_token *out = get_tokens( ureg, DOMAIN_INSN, size ); 671 unsigned n = 0; 672 673 assert(dst.File != TGSI_FILE_NULL); 674 assert(dst.File != TGSI_FILE_CONSTANT); 675 assert(dst.File != TGSI_FILE_INPUT); 676 assert(dst.File != TGSI_FILE_SAMPLER); 677 assert(dst.File != TGSI_FILE_IMMEDIATE); 678 assert(dst.File < TGSI_FILE_COUNT); 679 680 out[n].value = 0; 681 out[n].dst.File = dst.File; 682 out[n].dst.WriteMask = dst.WriteMask; 683 out[n].dst.Indirect = dst.Indirect; 684 out[n].dst.Index = dst.Index; 685 n++; 686 687 if (dst.Indirect) { 688 out[n].value = 0; 689 out[n].src.File = TGSI_FILE_ADDRESS; 690 out[n].src.SwizzleX = dst.IndirectSwizzle; 691 out[n].src.SwizzleY = dst.IndirectSwizzle; 692 out[n].src.SwizzleZ = dst.IndirectSwizzle; 693 out[n].src.SwizzleW = dst.IndirectSwizzle; 694 out[n].src.Index = dst.IndirectIndex; 695 n++; 696 } 697 698 assert(n == size); 699} 700 701 702static void validate( unsigned opcode, 703 unsigned nr_dst, 704 unsigned nr_src ) 705{ 706#ifdef DEBUG 707 const struct tgsi_opcode_info *info = tgsi_get_opcode_info( opcode ); 708 assert(info); 709 if(info) { 710 assert(nr_dst == info->num_dst); 711 assert(nr_src == info->num_src); 712 } 713#endif 714} 715 716struct ureg_emit_insn_result 717ureg_emit_insn(struct ureg_program *ureg, 718 unsigned opcode, 719 boolean saturate, 720 boolean predicate, 721 boolean pred_negate, 722 unsigned pred_swizzle_x, 723 unsigned pred_swizzle_y, 724 unsigned pred_swizzle_z, 725 unsigned pred_swizzle_w, 726 unsigned num_dst, 727 unsigned num_src ) 728{ 729 union tgsi_any_token *out; 730 uint count = predicate ? 2 : 1; 731 struct ureg_emit_insn_result result; 732 733 validate( opcode, num_dst, num_src ); 734 735 out = get_tokens( ureg, DOMAIN_INSN, count ); 736 out[0].insn = tgsi_default_instruction(); 737 out[0].insn.Opcode = opcode; 738 out[0].insn.Saturate = saturate; 739 out[0].insn.NumDstRegs = num_dst; 740 out[0].insn.NumSrcRegs = num_src; 741 742 result.insn_token = ureg->domain[DOMAIN_INSN].count - count; 743 result.extended_token = result.insn_token; 744 745 if (predicate) { 746 out[0].insn.Predicate = 1; 747 out[1].insn_predicate = tgsi_default_instruction_predicate(); 748 out[1].insn_predicate.Negate = pred_negate; 749 out[1].insn_predicate.SwizzleX = pred_swizzle_x; 750 out[1].insn_predicate.SwizzleY = pred_swizzle_y; 751 out[1].insn_predicate.SwizzleZ = pred_swizzle_z; 752 out[1].insn_predicate.SwizzleW = pred_swizzle_w; 753 } 754 755 ureg->nr_instructions++; 756 757 return result; 758} 759 760 761void 762ureg_emit_label(struct ureg_program *ureg, 763 unsigned extended_token, 764 unsigned *label_token ) 765{ 766 union tgsi_any_token *out, *insn; 767 768 if(!label_token) 769 return; 770 771 out = get_tokens( ureg, DOMAIN_INSN, 1 ); 772 out[0].value = 0; 773 774 insn = retrieve_token( ureg, DOMAIN_INSN, extended_token ); 775 insn->insn.Label = 1; 776 777 *label_token = ureg->domain[DOMAIN_INSN].count - 1; 778} 779 780/* Will return a number which can be used in a label to point to the 781 * next instruction to be emitted. 782 */ 783unsigned 784ureg_get_instruction_number( struct ureg_program *ureg ) 785{ 786 return ureg->nr_instructions; 787} 788 789/* Patch a given label (expressed as a token number) to point to a 790 * given instruction (expressed as an instruction number). 791 */ 792void 793ureg_fixup_label(struct ureg_program *ureg, 794 unsigned label_token, 795 unsigned instruction_number ) 796{ 797 union tgsi_any_token *out = retrieve_token( ureg, DOMAIN_INSN, label_token ); 798 799 out->insn_label.Label = instruction_number; 800} 801 802 803void 804ureg_emit_texture(struct ureg_program *ureg, 805 unsigned extended_token, 806 unsigned target ) 807{ 808 union tgsi_any_token *out, *insn; 809 810 out = get_tokens( ureg, DOMAIN_INSN, 1 ); 811 insn = retrieve_token( ureg, DOMAIN_INSN, extended_token ); 812 813 insn->insn.Texture = 1; 814 815 out[0].value = 0; 816 out[0].insn_texture.Texture = target; 817} 818 819 820void 821ureg_fixup_insn_size(struct ureg_program *ureg, 822 unsigned insn ) 823{ 824 union tgsi_any_token *out = retrieve_token( ureg, DOMAIN_INSN, insn ); 825 826 assert(out->insn.Type == TGSI_TOKEN_TYPE_INSTRUCTION); 827 out->insn.NrTokens = ureg->domain[DOMAIN_INSN].count - insn - 1; 828} 829 830 831void 832ureg_insn(struct ureg_program *ureg, 833 unsigned opcode, 834 const struct ureg_dst *dst, 835 unsigned nr_dst, 836 const struct ureg_src *src, 837 unsigned nr_src ) 838{ 839 struct ureg_emit_insn_result insn; 840 unsigned i; 841 boolean saturate; 842 boolean predicate; 843 boolean negate = FALSE; 844 unsigned swizzle[4] = { 0 }; 845 846 saturate = nr_dst ? dst[0].Saturate : FALSE; 847 predicate = nr_dst ? dst[0].Predicate : FALSE; 848 if (predicate) { 849 negate = dst[0].PredNegate; 850 swizzle[0] = dst[0].PredSwizzleX; 851 swizzle[1] = dst[0].PredSwizzleY; 852 swizzle[2] = dst[0].PredSwizzleZ; 853 swizzle[3] = dst[0].PredSwizzleW; 854 } 855 856 insn = ureg_emit_insn(ureg, 857 opcode, 858 saturate, 859 predicate, 860 negate, 861 swizzle[0], 862 swizzle[1], 863 swizzle[2], 864 swizzle[3], 865 nr_dst, 866 nr_src); 867 868 for (i = 0; i < nr_dst; i++) 869 ureg_emit_dst( ureg, dst[i] ); 870 871 for (i = 0; i < nr_src; i++) 872 ureg_emit_src( ureg, src[i] ); 873 874 ureg_fixup_insn_size( ureg, insn.insn_token ); 875} 876 877void 878ureg_tex_insn(struct ureg_program *ureg, 879 unsigned opcode, 880 const struct ureg_dst *dst, 881 unsigned nr_dst, 882 unsigned target, 883 const struct ureg_src *src, 884 unsigned nr_src ) 885{ 886 struct ureg_emit_insn_result insn; 887 unsigned i; 888 boolean saturate; 889 boolean predicate; 890 boolean negate = FALSE; 891 unsigned swizzle[4] = { 0 }; 892 893 saturate = nr_dst ? dst[0].Saturate : FALSE; 894 predicate = nr_dst ? dst[0].Predicate : FALSE; 895 if (predicate) { 896 negate = dst[0].PredNegate; 897 swizzle[0] = dst[0].PredSwizzleX; 898 swizzle[1] = dst[0].PredSwizzleY; 899 swizzle[2] = dst[0].PredSwizzleZ; 900 swizzle[3] = dst[0].PredSwizzleW; 901 } 902 903 insn = ureg_emit_insn(ureg, 904 opcode, 905 saturate, 906 predicate, 907 negate, 908 swizzle[0], 909 swizzle[1], 910 swizzle[2], 911 swizzle[3], 912 nr_dst, 913 nr_src); 914 915 ureg_emit_texture( ureg, insn.extended_token, target ); 916 917 for (i = 0; i < nr_dst; i++) 918 ureg_emit_dst( ureg, dst[i] ); 919 920 for (i = 0; i < nr_src; i++) 921 ureg_emit_src( ureg, src[i] ); 922 923 ureg_fixup_insn_size( ureg, insn.insn_token ); 924} 925 926 927void 928ureg_label_insn(struct ureg_program *ureg, 929 unsigned opcode, 930 const struct ureg_src *src, 931 unsigned nr_src, 932 unsigned *label_token ) 933{ 934 struct ureg_emit_insn_result insn; 935 unsigned i; 936 937 insn = ureg_emit_insn(ureg, 938 opcode, 939 FALSE, 940 FALSE, 941 FALSE, 942 TGSI_SWIZZLE_X, 943 TGSI_SWIZZLE_Y, 944 TGSI_SWIZZLE_Z, 945 TGSI_SWIZZLE_W, 946 0, 947 nr_src); 948 949 ureg_emit_label( ureg, insn.extended_token, label_token ); 950 951 for (i = 0; i < nr_src; i++) 952 ureg_emit_src( ureg, src[i] ); 953 954 ureg_fixup_insn_size( ureg, insn.insn_token ); 955} 956 957 958 959static void emit_decl( struct ureg_program *ureg, 960 unsigned file, 961 unsigned index, 962 unsigned semantic_name, 963 unsigned semantic_index, 964 unsigned interp ) 965{ 966 union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL, 3 ); 967 968 out[0].value = 0; 969 out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION; 970 out[0].decl.NrTokens = 3; 971 out[0].decl.File = file; 972 out[0].decl.UsageMask = TGSI_WRITEMASK_XYZW; /* FIXME! */ 973 out[0].decl.Interpolate = interp; 974 out[0].decl.Semantic = 1; 975 976 out[1].value = 0; 977 out[1].decl_range.First = 978 out[1].decl_range.Last = index; 979 980 out[2].value = 0; 981 out[2].decl_semantic.Name = semantic_name; 982 out[2].decl_semantic.Index = semantic_index; 983 984} 985 986 987static void emit_decl_range( struct ureg_program *ureg, 988 unsigned file, 989 unsigned first, 990 unsigned count ) 991{ 992 union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL, 2 ); 993 994 out[0].value = 0; 995 out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION; 996 out[0].decl.NrTokens = 2; 997 out[0].decl.File = file; 998 out[0].decl.UsageMask = 0xf; 999 out[0].decl.Interpolate = TGSI_INTERPOLATE_CONSTANT; 1000 out[0].decl.Semantic = 0; 1001 1002 out[1].value = 0; 1003 out[1].decl_range.First = first; 1004 out[1].decl_range.Last = first + count - 1; 1005} 1006 1007static void 1008emit_immediate( struct ureg_program *ureg, 1009 const unsigned *v, 1010 unsigned type ) 1011{ 1012 union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL, 5 ); 1013 1014 out[0].value = 0; 1015 out[0].imm.Type = TGSI_TOKEN_TYPE_IMMEDIATE; 1016 out[0].imm.NrTokens = 5; 1017 out[0].imm.DataType = type; 1018 out[0].imm.Padding = 0; 1019 1020 out[1].imm_data.Uint = v[0]; 1021 out[2].imm_data.Uint = v[1]; 1022 out[3].imm_data.Uint = v[2]; 1023 out[4].imm_data.Uint = v[3]; 1024} 1025 1026 1027 1028 1029static void emit_decls( struct ureg_program *ureg ) 1030{ 1031 unsigned i; 1032 1033 if (ureg->processor == TGSI_PROCESSOR_VERTEX) { 1034 for (i = 0; i < UREG_MAX_INPUT; i++) { 1035 if (ureg->vs_inputs[i/32] & (1 << (i%32))) { 1036 emit_decl_range( ureg, TGSI_FILE_INPUT, i, 1 ); 1037 } 1038 } 1039 } else if (ureg->processor == TGSI_PROCESSOR_FRAGMENT) { 1040 for (i = 0; i < ureg->nr_fs_inputs; i++) { 1041 emit_decl( ureg, 1042 TGSI_FILE_INPUT, 1043 i, 1044 ureg->fs_input[i].semantic_name, 1045 ureg->fs_input[i].semantic_index, 1046 ureg->fs_input[i].interp ); 1047 } 1048 } else { 1049 for (i = 0; i < ureg->nr_gs_inputs; i++) { 1050 emit_decl_range(ureg, 1051 TGSI_FILE_INPUT, 1052 ureg->gs_input[i].index, 1053 1); 1054 } 1055 } 1056 1057 for (i = 0; i < ureg->nr_outputs; i++) { 1058 emit_decl( ureg, 1059 TGSI_FILE_OUTPUT, 1060 i, 1061 ureg->output[i].semantic_name, 1062 ureg->output[i].semantic_index, 1063 TGSI_INTERPOLATE_CONSTANT ); 1064 } 1065 1066 for (i = 0; i < ureg->nr_samplers; i++) { 1067 emit_decl_range( ureg, 1068 TGSI_FILE_SAMPLER, 1069 ureg->sampler[i].Index, 1 ); 1070 } 1071 1072 if (ureg->nr_constant_ranges) { 1073 for (i = 0; i < ureg->nr_constant_ranges; i++) 1074 emit_decl_range( ureg, 1075 TGSI_FILE_CONSTANT, 1076 ureg->constant_range[i].first, 1077 (ureg->constant_range[i].last + 1 - 1078 ureg->constant_range[i].first) ); 1079 } 1080 1081 if (ureg->nr_temps) { 1082 emit_decl_range( ureg, 1083 TGSI_FILE_TEMPORARY, 1084 0, ureg->nr_temps ); 1085 } 1086 1087 if (ureg->nr_addrs) { 1088 emit_decl_range( ureg, 1089 TGSI_FILE_ADDRESS, 1090 0, ureg->nr_addrs ); 1091 } 1092 1093 if (ureg->nr_loops) { 1094 emit_decl_range(ureg, 1095 TGSI_FILE_LOOP, 1096 0, 1097 ureg->nr_loops); 1098 } 1099 1100 if (ureg->nr_preds) { 1101 emit_decl_range(ureg, 1102 TGSI_FILE_PREDICATE, 1103 0, 1104 ureg->nr_preds); 1105 } 1106 1107 for (i = 0; i < ureg->nr_immediates; i++) { 1108 emit_immediate( ureg, 1109 ureg->immediate[i].value.u, 1110 ureg->immediate[i].type ); 1111 } 1112} 1113 1114/* Append the instruction tokens onto the declarations to build a 1115 * contiguous stream suitable to send to the driver. 1116 */ 1117static void copy_instructions( struct ureg_program *ureg ) 1118{ 1119 unsigned nr_tokens = ureg->domain[DOMAIN_INSN].count; 1120 union tgsi_any_token *out = get_tokens( ureg, 1121 DOMAIN_DECL, 1122 nr_tokens ); 1123 1124 memcpy(out, 1125 ureg->domain[DOMAIN_INSN].tokens, 1126 nr_tokens * sizeof out[0] ); 1127} 1128 1129 1130static void 1131fixup_header_size(struct ureg_program *ureg) 1132{ 1133 union tgsi_any_token *out = retrieve_token( ureg, DOMAIN_DECL, 0 ); 1134 1135 out->header.BodySize = ureg->domain[DOMAIN_DECL].count - 2; 1136} 1137 1138 1139static void 1140emit_header( struct ureg_program *ureg ) 1141{ 1142 union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL, 2 ); 1143 1144 out[0].header.HeaderSize = 2; 1145 out[0].header.BodySize = 0; 1146 1147 out[1].processor.Processor = ureg->processor; 1148 out[1].processor.Padding = 0; 1149} 1150 1151 1152const struct tgsi_token *ureg_finalize( struct ureg_program *ureg ) 1153{ 1154 const struct tgsi_token *tokens; 1155 1156 emit_header( ureg ); 1157 emit_decls( ureg ); 1158 copy_instructions( ureg ); 1159 fixup_header_size( ureg ); 1160 1161 if (ureg->domain[0].tokens == error_tokens || 1162 ureg->domain[1].tokens == error_tokens) { 1163 debug_printf("%s: error in generated shader\n", __FUNCTION__); 1164 assert(0); 1165 return NULL; 1166 } 1167 1168 tokens = &ureg->domain[DOMAIN_DECL].tokens[0].token; 1169 1170 if (0) { 1171 debug_printf("%s: emitted shader %d tokens:\n", __FUNCTION__, 1172 ureg->domain[DOMAIN_DECL].count); 1173 tgsi_dump( tokens, 0 ); 1174 } 1175 1176#if DEBUG 1177 if (tokens && !tgsi_sanity_check(tokens)) { 1178 debug_printf("tgsi_ureg.c, sanity check failed on generated tokens:\n"); 1179 tgsi_dump(tokens, 0); 1180 assert(0); 1181 } 1182#endif 1183 1184 1185 return tokens; 1186} 1187 1188 1189void *ureg_create_shader( struct ureg_program *ureg, 1190 struct pipe_context *pipe ) 1191{ 1192 struct pipe_shader_state state; 1193 1194 state.tokens = ureg_finalize(ureg); 1195 if(!state.tokens) 1196 return NULL; 1197 1198 if (ureg->processor == TGSI_PROCESSOR_VERTEX) 1199 return pipe->create_vs_state( pipe, &state ); 1200 else 1201 return pipe->create_fs_state( pipe, &state ); 1202} 1203 1204 1205const struct tgsi_token *ureg_get_tokens( struct ureg_program *ureg, 1206 unsigned *nr_tokens ) 1207{ 1208 const struct tgsi_token *tokens; 1209 1210 ureg_finalize(ureg); 1211 1212 tokens = &ureg->domain[DOMAIN_DECL].tokens[0].token; 1213 1214 if (nr_tokens) 1215 *nr_tokens = ureg->domain[DOMAIN_DECL].size; 1216 1217 ureg->domain[DOMAIN_DECL].tokens = 0; 1218 ureg->domain[DOMAIN_DECL].size = 0; 1219 ureg->domain[DOMAIN_DECL].order = 0; 1220 ureg->domain[DOMAIN_DECL].count = 0; 1221 1222 return tokens; 1223} 1224 1225 1226struct ureg_program *ureg_create( unsigned processor ) 1227{ 1228 struct ureg_program *ureg = CALLOC_STRUCT( ureg_program ); 1229 if (ureg == NULL) 1230 return NULL; 1231 1232 ureg->processor = processor; 1233 return ureg; 1234} 1235 1236 1237void ureg_destroy( struct ureg_program *ureg ) 1238{ 1239 unsigned i; 1240 1241 for (i = 0; i < Elements(ureg->domain); i++) { 1242 if (ureg->domain[i].tokens && 1243 ureg->domain[i].tokens != error_tokens) 1244 FREE(ureg->domain[i].tokens); 1245 } 1246 1247 FREE(ureg); 1248} 1249