ec94590a3f8e60ef05e2452c2010a8876d4e6d93
[mesa.git] / src / gallium / drivers / nouveau / codegen / nv50_ir_target_nv50.cpp
1 /*
2 * Copyright 2011 Christoph Bumiller
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice shall be included in
12 * all copies or substantial portions of the Software.
13 *
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 * OTHER DEALINGS IN THE SOFTWARE.
21 */
22
23 #include "codegen/nv50_ir_target_nv50.h"
24
25 namespace nv50_ir {
26
27 Target *getTargetNV50(unsigned int chipset)
28 {
29 return new TargetNV50(chipset);
30 }
31
32 TargetNV50::TargetNV50(unsigned int card) : Target(true, true, false)
33 {
34 chipset = card;
35
36 wposMask = 0;
37 for (unsigned int i = 0; i <= SV_LAST; ++i)
38 sysvalLocation[i] = ~0;
39
40 initOpInfo();
41 }
42
43 #if 0
44 // BULTINS / LIBRARY FUNCTIONS:
45
46 // TODO
47 static const uint32_t nvc0_builtin_code[] =
48 {
49 };
50
51 static const uint16_t nvc0_builtin_offsets[NV50_BUILTIN_COUNT] =
52 {
53 };
54 #endif
55
56 void
57 TargetNV50::getBuiltinCode(const uint32_t **code, uint32_t *size) const
58 {
59 *code = NULL;
60 *size = 0;
61 }
62
63 uint32_t
64 TargetNV50::getBuiltinOffset(int builtin) const
65 {
66 return 0;
67 }
68
69 struct opProperties
70 {
71 operation op;
72 unsigned int mNeg : 4;
73 unsigned int mAbs : 4;
74 unsigned int mNot : 4;
75 unsigned int mSat : 4;
76 unsigned int fConst : 3;
77 unsigned int fShared : 3;
78 unsigned int fAttrib : 3;
79 unsigned int fImm : 3;
80 };
81
82 static const struct opProperties _initProps[] =
83 {
84 // neg abs not sat c[] s[], a[], imm
85 { OP_ADD, 0x3, 0x0, 0x0, 0x8, 0x2, 0x1, 0x1, 0x2 },
86 { OP_SUB, 0x3, 0x0, 0x0, 0x8, 0x2, 0x1, 0x1, 0x2 },
87 { OP_MUL, 0x3, 0x0, 0x0, 0x0, 0x2, 0x1, 0x1, 0x2 },
88 { OP_MAX, 0x3, 0x3, 0x0, 0x0, 0x2, 0x1, 0x1, 0x0 },
89 { OP_MIN, 0x3, 0x3, 0x0, 0x0, 0x2, 0x1, 0x1, 0x0 },
90 { OP_MAD, 0x7, 0x0, 0x0, 0x8, 0x6, 0x1, 0x1, 0x0 }, // special constraint
91 { OP_ABS, 0x0, 0x0, 0x0, 0x0, 0x0, 0x1, 0x1, 0x0 },
92 { OP_NEG, 0x0, 0x1, 0x0, 0x0, 0x0, 0x1, 0x1, 0x0 },
93 { OP_CVT, 0x1, 0x1, 0x0, 0x8, 0x0, 0x1, 0x1, 0x0 },
94 { OP_AND, 0x0, 0x0, 0x3, 0x0, 0x0, 0x0, 0x0, 0x2 },
95 { OP_OR, 0x0, 0x0, 0x3, 0x0, 0x0, 0x0, 0x0, 0x2 },
96 { OP_XOR, 0x0, 0x0, 0x3, 0x0, 0x0, 0x0, 0x0, 0x2 },
97 { OP_SHL, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x2 },
98 { OP_SHR, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x2 },
99 { OP_SET, 0x3, 0x3, 0x0, 0x0, 0x2, 0x1, 0x1, 0x0 },
100 { OP_PREEX2, 0x1, 0x1, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 },
101 { OP_PRESIN, 0x1, 0x1, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 },
102 { OP_EX2, 0x0, 0x0, 0x0, 0x8, 0x0, 0x0, 0x0, 0x0 },
103 { OP_LG2, 0x1, 0x1, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 },
104 { OP_RCP, 0x1, 0x1, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 },
105 { OP_RSQ, 0x1, 0x1, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 },
106 { OP_DFDX, 0x1, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 },
107 { OP_DFDY, 0x1, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 },
108 };
109
110 void TargetNV50::initOpInfo()
111 {
112 unsigned int i, j;
113
114 static const operation commutativeList[] =
115 {
116 OP_ADD, OP_MUL, OP_MAD, OP_FMA, OP_AND, OP_OR, OP_XOR, OP_MAX, OP_MIN,
117 OP_SET_AND, OP_SET_OR, OP_SET_XOR, OP_SET, OP_SELP, OP_SLCT
118 };
119 static const operation shortFormList[] =
120 {
121 OP_MOV, OP_ADD, OP_SUB, OP_MUL, OP_MAD, OP_SAD, OP_RCP, OP_LINTERP,
122 OP_PINTERP, OP_TEX, OP_TXF
123 };
124 static const operation noDestList[] =
125 {
126 OP_STORE, OP_WRSV, OP_EXPORT, OP_BRA, OP_CALL, OP_RET, OP_EXIT,
127 OP_DISCARD, OP_CONT, OP_BREAK, OP_PRECONT, OP_PREBREAK, OP_PRERET,
128 OP_JOIN, OP_JOINAT, OP_BRKPT, OP_MEMBAR, OP_EMIT, OP_RESTART,
129 OP_QUADON, OP_QUADPOP, OP_TEXBAR, OP_SUSTB, OP_SUSTP, OP_SUREDP,
130 OP_SUREDB, OP_BAR
131 };
132 static const operation noPredList[] =
133 {
134 OP_CALL, OP_PREBREAK, OP_PRERET, OP_QUADON, OP_QUADPOP, OP_JOINAT,
135 OP_EMIT, OP_RESTART
136 };
137
138 for (i = 0; i < DATA_FILE_COUNT; ++i)
139 nativeFileMap[i] = (DataFile)i;
140 nativeFileMap[FILE_PREDICATE] = FILE_FLAGS;
141
142 for (i = 0; i < OP_LAST; ++i) {
143 opInfo[i].variants = NULL;
144 opInfo[i].op = (operation)i;
145 opInfo[i].srcTypes = 1 << (int)TYPE_F32;
146 opInfo[i].dstTypes = 1 << (int)TYPE_F32;
147 opInfo[i].immdBits = 0xffffffff;
148 opInfo[i].srcNr = operationSrcNr[i];
149
150 for (j = 0; j < opInfo[i].srcNr; ++j) {
151 opInfo[i].srcMods[j] = 0;
152 opInfo[i].srcFiles[j] = 1 << (int)FILE_GPR;
153 }
154 opInfo[i].dstMods = 0;
155 opInfo[i].dstFiles = 1 << (int)FILE_GPR;
156
157 opInfo[i].hasDest = 1;
158 opInfo[i].vector = (i >= OP_TEX && i <= OP_TEXCSAA);
159 opInfo[i].commutative = false; /* set below */
160 opInfo[i].pseudo = (i < OP_MOV);
161 opInfo[i].predicate = !opInfo[i].pseudo;
162 opInfo[i].flow = (i >= OP_BRA && i <= OP_JOIN);
163 opInfo[i].minEncSize = 8; /* set below */
164 }
165 for (i = 0; i < ARRAY_SIZE(commutativeList); ++i)
166 opInfo[commutativeList[i]].commutative = true;
167 for (i = 0; i < ARRAY_SIZE(shortFormList); ++i)
168 opInfo[shortFormList[i]].minEncSize = 4;
169 for (i = 0; i < ARRAY_SIZE(noDestList); ++i)
170 opInfo[noDestList[i]].hasDest = 0;
171 for (i = 0; i < ARRAY_SIZE(noPredList); ++i)
172 opInfo[noPredList[i]].predicate = 0;
173
174 for (i = 0; i < ARRAY_SIZE(_initProps); ++i) {
175 const struct opProperties *prop = &_initProps[i];
176
177 for (int s = 0; s < 3; ++s) {
178 if (prop->mNeg & (1 << s))
179 opInfo[prop->op].srcMods[s] |= NV50_IR_MOD_NEG;
180 if (prop->mAbs & (1 << s))
181 opInfo[prop->op].srcMods[s] |= NV50_IR_MOD_ABS;
182 if (prop->mNot & (1 << s))
183 opInfo[prop->op].srcMods[s] |= NV50_IR_MOD_NOT;
184 if (prop->fConst & (1 << s))
185 opInfo[prop->op].srcFiles[s] |= 1 << (int)FILE_MEMORY_CONST;
186 if (prop->fShared & (1 << s))
187 opInfo[prop->op].srcFiles[s] |= 1 << (int)FILE_MEMORY_SHARED;
188 if (prop->fAttrib & (1 << s))
189 opInfo[prop->op].srcFiles[s] |= 1 << (int)FILE_SHADER_INPUT;
190 if (prop->fImm & (1 << s))
191 opInfo[prop->op].srcFiles[s] |= 1 << (int)FILE_IMMEDIATE;
192 }
193 if (prop->mSat & 8)
194 opInfo[prop->op].dstMods = NV50_IR_MOD_SAT;
195 }
196
197 if (chipset >= 0xa0)
198 opInfo[OP_MUL].dstMods = NV50_IR_MOD_SAT;
199 }
200
201 unsigned int
202 TargetNV50::getFileSize(DataFile file) const
203 {
204 switch (file) {
205 case FILE_NULL: return 0;
206 case FILE_GPR: return 254; // in 16-bit units **
207 case FILE_PREDICATE: return 0;
208 case FILE_FLAGS: return 4;
209 case FILE_ADDRESS: return 4;
210 case FILE_IMMEDIATE: return 0;
211 case FILE_MEMORY_CONST: return 65536;
212 case FILE_SHADER_INPUT: return 0x200;
213 case FILE_SHADER_OUTPUT: return 0x200;
214 case FILE_MEMORY_BUFFER: return 0xffffffff;
215 case FILE_MEMORY_GLOBAL: return 0xffffffff;
216 case FILE_MEMORY_SHARED: return 16 << 10;
217 case FILE_MEMORY_LOCAL: return 48 << 10;
218 case FILE_SYSTEM_VALUE: return 16;
219 default:
220 assert(!"invalid file");
221 return 0;
222 }
223 // ** only first 128 units encodable for 16-bit regs
224 }
225
226 unsigned int
227 TargetNV50::getFileUnit(DataFile file) const
228 {
229 if (file == FILE_GPR || file == FILE_ADDRESS)
230 return 1;
231 if (file == FILE_SYSTEM_VALUE)
232 return 2;
233 return 0;
234 }
235
236 uint32_t
237 TargetNV50::getSVAddress(DataFile shaderFile, const Symbol *sym) const
238 {
239 switch (sym->reg.data.sv.sv) {
240 case SV_FACE:
241 return 0x3fc;
242 case SV_POSITION:
243 {
244 uint32_t addr = sysvalLocation[sym->reg.data.sv.sv];
245 for (int c = 0; c < sym->reg.data.sv.index; ++c)
246 if (wposMask & (1 << c))
247 addr += 4;
248 return addr;
249 }
250 case SV_PRIMITIVE_ID:
251 return shaderFile == FILE_SHADER_INPUT ? 0x18 :
252 sysvalLocation[sym->reg.data.sv.sv];
253 case SV_NCTAID:
254 return 0x8 + 2 * sym->reg.data.sv.index;
255 case SV_CTAID:
256 return 0xc + 2 * sym->reg.data.sv.index;
257 case SV_NTID:
258 return 0x2 + 2 * sym->reg.data.sv.index;
259 case SV_TID:
260 case SV_COMBINED_TID:
261 return 0;
262 case SV_SAMPLE_POS:
263 return 0; /* sample position is handled differently */
264 default:
265 return sysvalLocation[sym->reg.data.sv.sv];
266 }
267 }
268
269 // long: rrr, arr, rcr, acr, rrc, arc, gcr, grr
270 // short: rr, ar, rc, gr
271 // immd: ri, gi
272 bool
273 TargetNV50::insnCanLoad(const Instruction *i, int s,
274 const Instruction *ld) const
275 {
276 DataFile sf = ld->src(0).getFile();
277
278 // immediate 0 can be represented by GPR $r63/$r127
279 if (sf == FILE_IMMEDIATE && ld->getSrc(0)->reg.data.u64 == 0)
280 return (!i->isPseudo() &&
281 !i->asTex() &&
282 i->op != OP_EXPORT && i->op != OP_STORE);
283
284 if (sf == FILE_IMMEDIATE && (i->predSrc >= 0 || i->flagsDef >= 0))
285 return false;
286 if (s >= opInfo[i->op].srcNr)
287 return false;
288 if (!(opInfo[i->op].srcFiles[s] & (1 << (int)sf)))
289 return false;
290 if (s == 2 && i->src(1).getFile() != FILE_GPR)
291 return false;
292
293 // NOTE: don't rely on flagsDef
294 if (sf == FILE_IMMEDIATE)
295 for (int d = 0; i->defExists(d); ++d)
296 if (i->def(d).getFile() == FILE_FLAGS)
297 return false;
298
299 unsigned mode = 0;
300
301 for (int z = 0; z < Target::operationSrcNr[i->op]; ++z) {
302 DataFile zf = (z == s) ? sf : i->src(z).getFile();
303 switch (zf) {
304 case FILE_GPR:
305 break;
306 case FILE_MEMORY_SHARED:
307 case FILE_SHADER_INPUT:
308 mode |= 1 << (z * 2);
309 break;
310 case FILE_MEMORY_CONST:
311 mode |= 2 << (z * 2);
312 break;
313 case FILE_IMMEDIATE:
314 mode |= 3 << (z * 2);
315 default:
316 break;
317 }
318 }
319
320 switch (mode) {
321 case 0x00:
322 case 0x01:
323 case 0x03:
324 case 0x08:
325 case 0x0c:
326 case 0x20:
327 case 0x21:
328 break;
329 case 0x09:
330 // Shader inputs get transformed to p[] in geometry shaders, and those
331 // aren't allowed to be used at the same time as c[].
332 if (ld->bb->getProgram()->getType() == Program::TYPE_GEOMETRY)
333 return false;
334 break;
335 case 0x0d:
336 if (ld->bb->getProgram()->getType() != Program::TYPE_GEOMETRY)
337 return false;
338 break;
339 default:
340 return false;
341 }
342
343 uint8_t ldSize;
344
345 if ((i->op == OP_MUL || i->op == OP_MAD) && !isFloatType(i->dType)) {
346 // 32-bit MUL will be split into 16-bit MULs
347 if (ld->src(0).isIndirect(0))
348 return false;
349 if (sf == FILE_IMMEDIATE)
350 return false;
351 if (i->subOp == NV50_IR_SUBOP_MUL_HIGH && sf == FILE_MEMORY_CONST)
352 return false;
353 ldSize = 2;
354 } else {
355 ldSize = typeSizeof(ld->dType);
356 }
357
358 if (sf == FILE_IMMEDIATE)
359 return ldSize <= 4;
360
361
362 // Check if memory access is encodable:
363
364 if (ldSize < 4 && sf == FILE_SHADER_INPUT) // no < 4-byte aligned a[] access
365 return false;
366 if (ld->getSrc(0)->reg.data.offset > (int32_t)(127 * ldSize))
367 return false;
368
369 if (ld->src(0).isIndirect(0)) {
370 for (int z = 0; i->srcExists(z); ++z)
371 if (i->src(z).isIndirect(0))
372 return false;
373
374 // s[] access only possible in CP, $aX always applies
375 if (sf == FILE_MEMORY_SHARED)
376 return true;
377 if (!ld->bb) // can't check type ...
378 return false;
379 Program::Type pt = ld->bb->getProgram()->getType();
380
381 // $aX applies to c[] only in VP, FP, GP if p[] is not accessed
382 if (pt == Program::TYPE_COMPUTE)
383 return false;
384 if (pt == Program::TYPE_GEOMETRY) {
385 if (sf == FILE_MEMORY_CONST)
386 return i->src(s).getFile() != FILE_SHADER_INPUT;
387 return sf == FILE_SHADER_INPUT;
388 }
389 return sf == FILE_MEMORY_CONST;
390 }
391 return true;
392 }
393
394 bool
395 TargetNV50::insnCanLoadOffset(const Instruction *i, int s, int offset) const
396 {
397 if (!i->src(s).isIndirect(0))
398 return true;
399 offset += i->src(s).get()->reg.data.offset;
400 if (i->op == OP_LOAD || i->op == OP_STORE) {
401 // There are some restrictions in theory, but in practice they're never
402 // going to be hit. When we enable shared/global memory, this will
403 // become more important.
404 return true;
405 }
406 return offset >= 0 && offset <= (int32_t)(127 * i->src(s).get()->reg.size);
407 }
408
409 bool
410 TargetNV50::isAccessSupported(DataFile file, DataType ty) const
411 {
412 if (ty == TYPE_B96 || ty == TYPE_NONE)
413 return false;
414 if (typeSizeof(ty) > 4)
415 return (file == FILE_MEMORY_LOCAL) || (file == FILE_MEMORY_GLOBAL) ||
416 (file == FILE_MEMORY_BUFFER);
417 return true;
418 }
419
420 bool
421 TargetNV50::isOpSupported(operation op, DataType ty) const
422 {
423 if (ty == TYPE_F64 && chipset < 0xa0)
424 return false;
425
426 switch (op) {
427 case OP_PRERET:
428 return chipset >= 0xa0;
429 case OP_TXG:
430 return chipset >= 0xa3 && chipset != 0xaa && chipset != 0xac;
431 case OP_POW:
432 case OP_SQRT:
433 case OP_DIV:
434 case OP_MOD:
435 case OP_SET_AND:
436 case OP_SET_OR:
437 case OP_SET_XOR:
438 case OP_SLCT:
439 case OP_SELP:
440 case OP_POPCNT:
441 case OP_INSBF:
442 case OP_EXTBF:
443 case OP_EXIT: // want exit modifier instead (on NOP if required)
444 case OP_MEMBAR:
445 case OP_SHLADD:
446 case OP_XMAD:
447 return false;
448 case OP_SAD:
449 return ty == TYPE_S32;
450 case OP_SET:
451 return !isFloatType(ty);
452 default:
453 return true;
454 }
455 }
456
457 bool
458 TargetNV50::isModSupported(const Instruction *insn, int s, Modifier mod) const
459 {
460 if (!isFloatType(insn->dType)) {
461 switch (insn->op) {
462 case OP_ABS:
463 case OP_NEG:
464 case OP_CVT:
465 case OP_CEIL:
466 case OP_FLOOR:
467 case OP_TRUNC:
468 case OP_AND:
469 case OP_OR:
470 case OP_XOR:
471 break;
472 case OP_ADD:
473 if (insn->src(s ? 0 : 1).mod.neg())
474 return false;
475 break;
476 case OP_SUB:
477 if (s == 0)
478 return insn->src(1).mod.neg() ? false : true;
479 break;
480 case OP_SET:
481 if (insn->sType != TYPE_F32)
482 return false;
483 break;
484 default:
485 return false;
486 }
487 }
488 if (s >= opInfo[insn->op].srcNr || s >= 3)
489 return false;
490 return (mod & Modifier(opInfo[insn->op].srcMods[s])) == mod;
491 }
492
493 bool
494 TargetNV50::mayPredicate(const Instruction *insn, const Value *pred) const
495 {
496 if (insn->getPredicate() || insn->flagsSrc >= 0)
497 return false;
498 for (int s = 0; insn->srcExists(s); ++s)
499 if (insn->src(s).getFile() == FILE_IMMEDIATE)
500 return false;
501 return opInfo[insn->op].predicate;
502 }
503
504 bool
505 TargetNV50::isSatSupported(const Instruction *insn) const
506 {
507 if (insn->op == OP_CVT)
508 return true;
509 if (insn->dType != TYPE_F32)
510 return false;
511 return opInfo[insn->op].dstMods & NV50_IR_MOD_SAT;
512 }
513
514 int TargetNV50::getLatency(const Instruction *i) const
515 {
516 // TODO: tune these values
517 if (i->op == OP_LOAD) {
518 switch (i->src(0).getFile()) {
519 case FILE_MEMORY_LOCAL:
520 case FILE_MEMORY_GLOBAL:
521 case FILE_MEMORY_BUFFER:
522 return 100; // really 400 to 800
523 default:
524 return 22;
525 }
526 }
527 return 22;
528 }
529
530 // These are "inverse" throughput values, i.e. the number of cycles required
531 // to issue a specific instruction for a full warp (32 threads).
532 //
533 // Assuming we have more than 1 warp in flight, a higher issue latency results
534 // in a lower result latency since the MP will have spent more time with other
535 // warps.
536 // This also helps to determine the number of cycles between instructions in
537 // a single warp.
538 //
539 int TargetNV50::getThroughput(const Instruction *i) const
540 {
541 // TODO: tune these values
542 if (i->dType == TYPE_F32) {
543 switch (i->op) {
544 case OP_RCP:
545 case OP_RSQ:
546 case OP_LG2:
547 case OP_SIN:
548 case OP_COS:
549 case OP_PRESIN:
550 case OP_PREEX2:
551 return 16;
552 default:
553 return 4;
554 }
555 } else
556 if (i->dType == TYPE_U32 || i->dType == TYPE_S32) {
557 return 4;
558 } else
559 if (i->dType == TYPE_F64) {
560 return 32;
561 } else {
562 return 1;
563 }
564 }
565
566 static void
567 recordLocation(uint16_t *locs, uint8_t *masks,
568 const struct nv50_ir_varying *var)
569 {
570 uint16_t addr = var->slot[0] * 4;
571
572 switch (var->sn) {
573 case TGSI_SEMANTIC_POSITION: locs[SV_POSITION] = addr; break;
574 case TGSI_SEMANTIC_INSTANCEID: locs[SV_INSTANCE_ID] = addr; break;
575 case TGSI_SEMANTIC_VERTEXID: locs[SV_VERTEX_ID] = addr; break;
576 case TGSI_SEMANTIC_PRIMID: locs[SV_PRIMITIVE_ID] = addr; break;
577 case TGSI_SEMANTIC_LAYER: locs[SV_LAYER] = addr; break;
578 case TGSI_SEMANTIC_VIEWPORT_INDEX: locs[SV_VIEWPORT_INDEX] = addr; break;
579 default:
580 break;
581 }
582 if (var->sn == TGSI_SEMANTIC_POSITION && masks)
583 masks[0] = var->mask;
584 }
585
586 void
587 TargetNV50::parseDriverInfo(const struct nv50_ir_prog_info *info)
588 {
589 unsigned int i;
590 for (i = 0; i < info->numOutputs; ++i)
591 recordLocation(sysvalLocation, NULL, &info->out[i]);
592 for (i = 0; i < info->numInputs; ++i)
593 recordLocation(sysvalLocation, &wposMask, &info->in[i]);
594 for (i = 0; i < info->numSysVals; ++i)
595 recordLocation(sysvalLocation, NULL, &info->sv[i]);
596
597 if (sysvalLocation[SV_POSITION] >= 0x200) {
598 // not assigned by driver, but we need it internally
599 wposMask = 0x8;
600 sysvalLocation[SV_POSITION] = 0;
601 }
602
603 Target::parseDriverInfo(info);
604 }
605
606 } // namespace nv50_ir