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Tom Stellard75aadc22012-12-11 21:25:42 +00001//===- R600MCCodeEmitter.cpp - Code Emitter for R600->Cayman GPU families -===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10/// \file
11///
12/// This code emitter outputs bytecode that is understood by the r600g driver
13/// in the Mesa [1] project. The bytecode is very similar to the hardware's ISA,
14/// but it still needs to be run through a finalizer in order to be executed
15/// by the GPU.
16///
17/// [1] http://www.mesa3d.org/
18//
19//===----------------------------------------------------------------------===//
20
21#include "R600Defines.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000022#include "MCTargetDesc/AMDGPUMCCodeEmitter.h"
Chandler Carruthbe810232013-01-02 10:22:59 +000023#include "MCTargetDesc/AMDGPUMCTargetDesc.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000024#include "llvm/MC/MCCodeEmitter.h"
25#include "llvm/MC/MCContext.h"
26#include "llvm/MC/MCInst.h"
27#include "llvm/MC/MCInstrInfo.h"
28#include "llvm/MC/MCRegisterInfo.h"
29#include "llvm/MC/MCSubtargetInfo.h"
30#include "llvm/Support/raw_ostream.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000031#include <stdio.h>
32
33#define SRC_BYTE_COUNT 11
34#define DST_BYTE_COUNT 5
35
36using namespace llvm;
37
38namespace {
39
40class R600MCCodeEmitter : public AMDGPUMCCodeEmitter {
David Blaikie772d4f72013-02-18 23:11:17 +000041 R600MCCodeEmitter(const R600MCCodeEmitter &) LLVM_DELETED_FUNCTION;
42 void operator=(const R600MCCodeEmitter &) LLVM_DELETED_FUNCTION;
Tom Stellard75aadc22012-12-11 21:25:42 +000043 const MCInstrInfo &MCII;
44 const MCRegisterInfo &MRI;
45 const MCSubtargetInfo &STI;
46 MCContext &Ctx;
47
48public:
49
50 R600MCCodeEmitter(const MCInstrInfo &mcii, const MCRegisterInfo &mri,
51 const MCSubtargetInfo &sti, MCContext &ctx)
52 : MCII(mcii), MRI(mri), STI(sti), Ctx(ctx) { }
53
54 /// \brief Encode the instruction and write it to the OS.
55 virtual void EncodeInstruction(const MCInst &MI, raw_ostream &OS,
56 SmallVectorImpl<MCFixup> &Fixups) const;
57
58 /// \returns the encoding for an MCOperand.
59 virtual uint64_t getMachineOpValue(const MCInst &MI, const MCOperand &MO,
60 SmallVectorImpl<MCFixup> &Fixups) const;
61private:
62
63 void EmitALUInstr(const MCInst &MI, SmallVectorImpl<MCFixup> &Fixups,
64 raw_ostream &OS) const;
65 void EmitSrc(const MCInst &MI, unsigned OpIdx, raw_ostream &OS) const;
Tom Stellard365366f2013-01-23 02:09:06 +000066 void EmitSrcISA(const MCInst &MI, unsigned RegOpIdx, unsigned SelOpIdx,
67 raw_ostream &OS) const;
Tom Stellard75aadc22012-12-11 21:25:42 +000068 void EmitDst(const MCInst &MI, raw_ostream &OS) const;
Tom Stellard75aadc22012-12-11 21:25:42 +000069 void EmitFCInstr(const MCInst &MI, raw_ostream &OS) const;
70
71 void EmitNullBytes(unsigned int byteCount, raw_ostream &OS) const;
72
73 void EmitByte(unsigned int byte, raw_ostream &OS) const;
74
75 void EmitTwoBytes(uint32_t bytes, raw_ostream &OS) const;
76
77 void Emit(uint32_t value, raw_ostream &OS) const;
78 void Emit(uint64_t value, raw_ostream &OS) const;
79
80 unsigned getHWRegChan(unsigned reg) const;
81 unsigned getHWReg(unsigned regNo) const;
82
83 bool isFCOp(unsigned opcode) const;
84 bool isTexOp(unsigned opcode) const;
85 bool isFlagSet(const MCInst &MI, unsigned Operand, unsigned Flag) const;
86
87};
88
89} // End anonymous namespace
90
91enum RegElement {
92 ELEMENT_X = 0,
93 ELEMENT_Y,
94 ELEMENT_Z,
95 ELEMENT_W
96};
97
98enum InstrTypes {
99 INSTR_ALU = 0,
100 INSTR_TEX,
101 INSTR_FC,
102 INSTR_NATIVE,
103 INSTR_VTX,
Vincent Lejeunef43bc572013-04-01 21:47:42 +0000104 INSTR_EXPORT,
105 INSTR_CFALU
Tom Stellard75aadc22012-12-11 21:25:42 +0000106};
107
108enum FCInstr {
109 FC_IF_PREDICATE = 0,
110 FC_ELSE,
111 FC_ENDIF,
112 FC_BGNLOOP,
113 FC_ENDLOOP,
114 FC_BREAK_PREDICATE,
115 FC_CONTINUE
116};
117
118enum TextureTypes {
119 TEXTURE_1D = 1,
120 TEXTURE_2D,
121 TEXTURE_3D,
122 TEXTURE_CUBE,
123 TEXTURE_RECT,
124 TEXTURE_SHADOW1D,
125 TEXTURE_SHADOW2D,
126 TEXTURE_SHADOWRECT,
127 TEXTURE_1D_ARRAY,
128 TEXTURE_2D_ARRAY,
129 TEXTURE_SHADOW1D_ARRAY,
130 TEXTURE_SHADOW2D_ARRAY
131};
132
133MCCodeEmitter *llvm::createR600MCCodeEmitter(const MCInstrInfo &MCII,
134 const MCRegisterInfo &MRI,
135 const MCSubtargetInfo &STI,
136 MCContext &Ctx) {
137 return new R600MCCodeEmitter(MCII, MRI, STI, Ctx);
138}
139
140void R600MCCodeEmitter::EncodeInstruction(const MCInst &MI, raw_ostream &OS,
141 SmallVectorImpl<MCFixup> &Fixups) const {
Vincent Lejeune53f35252013-03-31 19:33:04 +0000142 if (isFCOp(MI.getOpcode())){
Tom Stellard75aadc22012-12-11 21:25:42 +0000143 EmitFCInstr(MI, OS);
144 } else if (MI.getOpcode() == AMDGPU::RETURN ||
145 MI.getOpcode() == AMDGPU::BUNDLE ||
146 MI.getOpcode() == AMDGPU::KILL) {
147 return;
148 } else {
149 switch(MI.getOpcode()) {
Vincent Lejeunebfaa63a62013-04-01 21:48:05 +0000150 case AMDGPU::STACK_SIZE: {
151 EmitByte(MI.getOperand(0).getImm(), OS);
152 break;
153 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000154 case AMDGPU::RAT_WRITE_CACHELESS_32_eg:
155 case AMDGPU::RAT_WRITE_CACHELESS_128_eg: {
156 uint64_t inst = getBinaryCodeForInstr(MI, Fixups);
157 EmitByte(INSTR_NATIVE, OS);
158 Emit(inst, OS);
159 break;
160 }
161 case AMDGPU::CONSTANT_LOAD_eg:
162 case AMDGPU::VTX_READ_PARAM_8_eg:
163 case AMDGPU::VTX_READ_PARAM_16_eg:
164 case AMDGPU::VTX_READ_PARAM_32_eg:
Tom Stellard91da4e92013-02-13 22:05:20 +0000165 case AMDGPU::VTX_READ_PARAM_128_eg:
Tom Stellard75aadc22012-12-11 21:25:42 +0000166 case AMDGPU::VTX_READ_GLOBAL_8_eg:
167 case AMDGPU::VTX_READ_GLOBAL_32_eg:
Tom Stellard365366f2013-01-23 02:09:06 +0000168 case AMDGPU::VTX_READ_GLOBAL_128_eg:
Vincent Lejeune68501802013-02-18 14:11:19 +0000169 case AMDGPU::TEX_VTX_CONSTBUF:
170 case AMDGPU::TEX_VTX_TEXBUF : {
Tom Stellard75aadc22012-12-11 21:25:42 +0000171 uint64_t InstWord01 = getBinaryCodeForInstr(MI, Fixups);
172 uint32_t InstWord2 = MI.getOperand(2).getImm(); // Offset
173
174 EmitByte(INSTR_VTX, OS);
175 Emit(InstWord01, OS);
176 Emit(InstWord2, OS);
177 break;
178 }
Vincent Lejeune53f35252013-03-31 19:33:04 +0000179 case AMDGPU::TEX_LD:
180 case AMDGPU::TEX_GET_TEXTURE_RESINFO:
181 case AMDGPU::TEX_SAMPLE:
182 case AMDGPU::TEX_SAMPLE_C:
183 case AMDGPU::TEX_SAMPLE_L:
184 case AMDGPU::TEX_SAMPLE_C_L:
185 case AMDGPU::TEX_SAMPLE_LB:
186 case AMDGPU::TEX_SAMPLE_C_LB:
187 case AMDGPU::TEX_SAMPLE_G:
188 case AMDGPU::TEX_SAMPLE_C_G:
189 case AMDGPU::TEX_GET_GRADIENTS_H:
190 case AMDGPU::TEX_GET_GRADIENTS_V:
191 case AMDGPU::TEX_SET_GRADIENTS_H:
192 case AMDGPU::TEX_SET_GRADIENTS_V: {
193 unsigned Opcode = MI.getOpcode();
194 bool HasOffsets = (Opcode == AMDGPU::TEX_LD);
195 unsigned OpOffset = HasOffsets ? 3 : 0;
196 int64_t Sampler = MI.getOperand(OpOffset + 3).getImm();
197 int64_t TextureType = MI.getOperand(OpOffset + 4).getImm();
198
199 uint32_t SrcSelect[4] = {0, 1, 2, 3};
200 uint32_t Offsets[3] = {0, 0, 0};
201 uint64_t CoordType[4] = {1, 1, 1, 1};
202
203 if (HasOffsets)
204 for (unsigned i = 0; i < 3; i++)
205 Offsets[i] = MI.getOperand(i + 2).getImm();
206
207 if (TextureType == TEXTURE_RECT ||
208 TextureType == TEXTURE_SHADOWRECT) {
209 CoordType[ELEMENT_X] = 0;
210 CoordType[ELEMENT_Y] = 0;
211 }
212
213 if (TextureType == TEXTURE_1D_ARRAY ||
214 TextureType == TEXTURE_SHADOW1D_ARRAY) {
215 if (Opcode == AMDGPU::TEX_SAMPLE_C_L ||
216 Opcode == AMDGPU::TEX_SAMPLE_C_LB) {
217 CoordType[ELEMENT_Y] = 0;
218 } else {
219 CoordType[ELEMENT_Z] = 0;
220 SrcSelect[ELEMENT_Z] = ELEMENT_Y;
221 }
222 } else if (TextureType == TEXTURE_2D_ARRAY ||
223 TextureType == TEXTURE_SHADOW2D_ARRAY) {
224 CoordType[ELEMENT_Z] = 0;
225 }
226
227
228 if ((TextureType == TEXTURE_SHADOW1D ||
229 TextureType == TEXTURE_SHADOW2D ||
230 TextureType == TEXTURE_SHADOWRECT ||
231 TextureType == TEXTURE_SHADOW1D_ARRAY) &&
232 Opcode != AMDGPU::TEX_SAMPLE_C_L &&
233 Opcode != AMDGPU::TEX_SAMPLE_C_LB) {
234 SrcSelect[ELEMENT_W] = ELEMENT_Z;
235 }
236
237 uint64_t Word01 = getBinaryCodeForInstr(MI, Fixups) |
238 CoordType[ELEMENT_X] << 60 | CoordType[ELEMENT_Y] << 61 |
239 CoordType[ELEMENT_Z] << 62 | CoordType[ELEMENT_W] << 63;
240 uint32_t Word2 = Sampler << 15 | SrcSelect[ELEMENT_X] << 20 |
241 SrcSelect[ELEMENT_Y] << 23 | SrcSelect[ELEMENT_Z] << 26 |
242 SrcSelect[ELEMENT_W] << 29 | Offsets[0] << 0 | Offsets[1] << 5 |
243 Offsets[2] << 10;
244
245 EmitByte(INSTR_TEX, OS);
246 Emit(Word01, OS);
247 Emit(Word2, OS);
248 break;
249 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000250 case AMDGPU::EG_ExportSwz:
251 case AMDGPU::R600_ExportSwz:
252 case AMDGPU::EG_ExportBuf:
253 case AMDGPU::R600_ExportBuf: {
254 uint64_t Inst = getBinaryCodeForInstr(MI, Fixups);
255 EmitByte(INSTR_EXPORT, OS);
256 Emit(Inst, OS);
257 break;
258 }
Vincent Lejeunef43bc572013-04-01 21:47:42 +0000259 case AMDGPU::CF_ALU:
260 case AMDGPU::CF_ALU_PUSH_BEFORE: {
261 uint64_t Inst = getBinaryCodeForInstr(MI, Fixups);
262 EmitByte(INSTR_CFALU, OS);
263 Emit(Inst, OS);
264 break;
265 }
Vincent Lejeunebfaa63a62013-04-01 21:48:05 +0000266 case AMDGPU::CF_TC:
267 case AMDGPU::CF_VC:
268 case AMDGPU::CF_CALL_FS:
269 return;
270 case AMDGPU::WHILE_LOOP:
271 case AMDGPU::END_LOOP:
272 case AMDGPU::LOOP_BREAK:
273 case AMDGPU::CF_CONTINUE:
274 case AMDGPU::CF_JUMP:
275 case AMDGPU::CF_ELSE:
276 case AMDGPU::POP: {
277 uint64_t Inst = getBinaryCodeForInstr(MI, Fixups);
278 EmitByte(INSTR_NATIVE, OS);
279 Emit(Inst, OS);
280 break;
281 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000282 default:
283 EmitALUInstr(MI, Fixups, OS);
284 break;
285 }
286 }
287}
288
289void R600MCCodeEmitter::EmitALUInstr(const MCInst &MI,
290 SmallVectorImpl<MCFixup> &Fixups,
291 raw_ostream &OS) const {
292 const MCInstrDesc &MCDesc = MCII.get(MI.getOpcode());
Tom Stellard75aadc22012-12-11 21:25:42 +0000293
294 // Emit instruction type
295 EmitByte(INSTR_ALU, OS);
296
297 uint64_t InstWord01 = getBinaryCodeForInstr(MI, Fixups);
298
299 //older alu have different encoding for instructions with one or two src
300 //parameters.
301 if ((STI.getFeatureBits() & AMDGPU::FeatureR600ALUInst) &&
302 !(MCDesc.TSFlags & R600_InstFlag::OP3)) {
303 uint64_t ISAOpCode = InstWord01 & (0x3FFULL << 39);
304 InstWord01 &= ~(0x3FFULL << 39);
305 InstWord01 |= ISAOpCode << 1;
306 }
307
Tom Stellard365366f2013-01-23 02:09:06 +0000308 unsigned SrcNum = MCDesc.TSFlags & R600_InstFlag::OP3 ? 3 :
309 MCDesc.TSFlags & R600_InstFlag::OP2 ? 2 : 1;
Tom Stellard75aadc22012-12-11 21:25:42 +0000310
Tom Stellard365366f2013-01-23 02:09:06 +0000311 EmitByte(SrcNum, OS);
312
313 const unsigned SrcOps[3][2] = {
314 {R600Operands::SRC0, R600Operands::SRC0_SEL},
315 {R600Operands::SRC1, R600Operands::SRC1_SEL},
316 {R600Operands::SRC2, R600Operands::SRC2_SEL}
317 };
318
319 for (unsigned SrcIdx = 0; SrcIdx < SrcNum; ++SrcIdx) {
320 unsigned RegOpIdx = R600Operands::ALUOpTable[SrcNum-1][SrcOps[SrcIdx][0]];
321 unsigned SelOpIdx = R600Operands::ALUOpTable[SrcNum-1][SrcOps[SrcIdx][1]];
322 EmitSrcISA(MI, RegOpIdx, SelOpIdx, OS);
Tom Stellard75aadc22012-12-11 21:25:42 +0000323 }
324
325 Emit(InstWord01, OS);
326 return;
327}
328
329void R600MCCodeEmitter::EmitSrc(const MCInst &MI, unsigned OpIdx,
330 raw_ostream &OS) const {
331 const MCOperand &MO = MI.getOperand(OpIdx);
332 union {
333 float f;
334 uint32_t i;
335 } Value;
336 Value.i = 0;
337 // Emit the source select (2 bytes). For GPRs, this is the register index.
338 // For other potential instruction operands, (e.g. constant registers) the
339 // value of the source select is defined in the r600isa docs.
340 if (MO.isReg()) {
341 unsigned reg = MO.getReg();
342 EmitTwoBytes(getHWReg(reg), OS);
343 if (reg == AMDGPU::ALU_LITERAL_X) {
344 unsigned ImmOpIndex = MI.getNumOperands() - 1;
345 MCOperand ImmOp = MI.getOperand(ImmOpIndex);
346 if (ImmOp.isFPImm()) {
347 Value.f = ImmOp.getFPImm();
348 } else {
349 assert(ImmOp.isImm());
350 Value.i = ImmOp.getImm();
351 }
352 }
353 } else {
354 // XXX: Handle other operand types.
355 EmitTwoBytes(0, OS);
356 }
357
358 // Emit the source channel (1 byte)
359 if (MO.isReg()) {
360 EmitByte(getHWRegChan(MO.getReg()), OS);
361 } else {
362 EmitByte(0, OS);
363 }
364
365 // XXX: Emit isNegated (1 byte)
366 if ((!(isFlagSet(MI, OpIdx, MO_FLAG_ABS)))
367 && (isFlagSet(MI, OpIdx, MO_FLAG_NEG) ||
368 (MO.isReg() &&
369 (MO.getReg() == AMDGPU::NEG_ONE || MO.getReg() == AMDGPU::NEG_HALF)))){
370 EmitByte(1, OS);
371 } else {
372 EmitByte(0, OS);
373 }
374
375 // Emit isAbsolute (1 byte)
376 if (isFlagSet(MI, OpIdx, MO_FLAG_ABS)) {
377 EmitByte(1, OS);
378 } else {
379 EmitByte(0, OS);
380 }
381
382 // XXX: Emit relative addressing mode (1 byte)
383 EmitByte(0, OS);
384
385 // Emit kc_bank, This will be adjusted later by r600_asm
386 EmitByte(0, OS);
387
388 // Emit the literal value, if applicable (4 bytes).
389 Emit(Value.i, OS);
390
391}
392
Tom Stellard365366f2013-01-23 02:09:06 +0000393void R600MCCodeEmitter::EmitSrcISA(const MCInst &MI, unsigned RegOpIdx,
394 unsigned SelOpIdx, raw_ostream &OS) const {
395 const MCOperand &RegMO = MI.getOperand(RegOpIdx);
396 const MCOperand &SelMO = MI.getOperand(SelOpIdx);
397
Tom Stellard75aadc22012-12-11 21:25:42 +0000398 union {
399 float f;
400 uint32_t i;
401 } InlineConstant;
402 InlineConstant.i = 0;
Tom Stellard365366f2013-01-23 02:09:06 +0000403 // Emit source type (1 byte) and source select (4 bytes). For GPRs type is 0
404 // and select is 0 (GPR index is encoded in the instr encoding. For constants
405 // type is 1 and select is the original const select passed from the driver.
406 unsigned Reg = RegMO.getReg();
407 if (Reg == AMDGPU::ALU_CONST) {
408 EmitByte(1, OS);
409 uint32_t Sel = SelMO.getImm();
410 Emit(Sel, OS);
411 } else {
412 EmitByte(0, OS);
413 Emit((uint32_t)0, OS);
414 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000415
Tom Stellard365366f2013-01-23 02:09:06 +0000416 if (Reg == AMDGPU::ALU_LITERAL_X) {
417 unsigned ImmOpIndex = MI.getNumOperands() - 1;
418 MCOperand ImmOp = MI.getOperand(ImmOpIndex);
419 if (ImmOp.isFPImm()) {
420 InlineConstant.f = ImmOp.getFPImm();
421 } else {
422 assert(ImmOp.isImm());
423 InlineConstant.i = ImmOp.getImm();
Tom Stellard75aadc22012-12-11 21:25:42 +0000424 }
425 }
426
427 // Emit the literal value, if applicable (4 bytes).
428 Emit(InlineConstant.i, OS);
429}
430
Tom Stellard75aadc22012-12-11 21:25:42 +0000431void R600MCCodeEmitter::EmitFCInstr(const MCInst &MI, raw_ostream &OS) const {
432
433 // Emit instruction type
434 EmitByte(INSTR_FC, OS);
435
436 // Emit SRC
437 unsigned NumOperands = MI.getNumOperands();
438 if (NumOperands > 0) {
439 assert(NumOperands == 1);
440 EmitSrc(MI, 0, OS);
441 } else {
442 EmitNullBytes(SRC_BYTE_COUNT, OS);
443 }
444
445 // Emit FC Instruction
446 enum FCInstr instr;
447 switch (MI.getOpcode()) {
448 case AMDGPU::PREDICATED_BREAK:
449 instr = FC_BREAK_PREDICATE;
450 break;
451 case AMDGPU::CONTINUE:
452 instr = FC_CONTINUE;
453 break;
454 case AMDGPU::IF_PREDICATE_SET:
455 instr = FC_IF_PREDICATE;
456 break;
457 case AMDGPU::ELSE:
458 instr = FC_ELSE;
459 break;
460 case AMDGPU::ENDIF:
461 instr = FC_ENDIF;
462 break;
463 case AMDGPU::ENDLOOP:
464 instr = FC_ENDLOOP;
465 break;
466 case AMDGPU::WHILELOOP:
467 instr = FC_BGNLOOP;
468 break;
469 default:
470 abort();
471 break;
472 }
473 EmitByte(instr, OS);
474}
475
476void R600MCCodeEmitter::EmitNullBytes(unsigned int ByteCount,
477 raw_ostream &OS) const {
478
479 for (unsigned int i = 0; i < ByteCount; i++) {
480 EmitByte(0, OS);
481 }
482}
483
484void R600MCCodeEmitter::EmitByte(unsigned int Byte, raw_ostream &OS) const {
485 OS.write((uint8_t) Byte & 0xff);
486}
487
488void R600MCCodeEmitter::EmitTwoBytes(unsigned int Bytes,
489 raw_ostream &OS) const {
490 OS.write((uint8_t) (Bytes & 0xff));
491 OS.write((uint8_t) ((Bytes >> 8) & 0xff));
492}
493
494void R600MCCodeEmitter::Emit(uint32_t Value, raw_ostream &OS) const {
495 for (unsigned i = 0; i < 4; i++) {
496 OS.write((uint8_t) ((Value >> (8 * i)) & 0xff));
497 }
498}
499
500void R600MCCodeEmitter::Emit(uint64_t Value, raw_ostream &OS) const {
501 for (unsigned i = 0; i < 8; i++) {
502 EmitByte((Value >> (8 * i)) & 0xff, OS);
503 }
504}
505
506unsigned R600MCCodeEmitter::getHWRegChan(unsigned reg) const {
507 return MRI.getEncodingValue(reg) >> HW_CHAN_SHIFT;
508}
509
510unsigned R600MCCodeEmitter::getHWReg(unsigned RegNo) const {
511 return MRI.getEncodingValue(RegNo) & HW_REG_MASK;
512}
513
514uint64_t R600MCCodeEmitter::getMachineOpValue(const MCInst &MI,
515 const MCOperand &MO,
516 SmallVectorImpl<MCFixup> &Fixup) const {
517 if (MO.isReg()) {
518 if (HAS_NATIVE_OPERANDS(MCII.get(MI.getOpcode()).TSFlags)) {
519 return MRI.getEncodingValue(MO.getReg());
520 } else {
521 return getHWReg(MO.getReg());
522 }
523 } else if (MO.isImm()) {
524 return MO.getImm();
525 } else {
526 assert(0);
527 return 0;
528 }
529}
530
531//===----------------------------------------------------------------------===//
532// Encoding helper functions
533//===----------------------------------------------------------------------===//
534
535bool R600MCCodeEmitter::isFCOp(unsigned opcode) const {
536 switch(opcode) {
537 default: return false;
538 case AMDGPU::PREDICATED_BREAK:
539 case AMDGPU::CONTINUE:
540 case AMDGPU::IF_PREDICATE_SET:
541 case AMDGPU::ELSE:
542 case AMDGPU::ENDIF:
543 case AMDGPU::ENDLOOP:
544 case AMDGPU::WHILELOOP:
545 return true;
546 }
547}
548
549bool R600MCCodeEmitter::isTexOp(unsigned opcode) const {
550 switch(opcode) {
551 default: return false;
552 case AMDGPU::TEX_LD:
553 case AMDGPU::TEX_GET_TEXTURE_RESINFO:
554 case AMDGPU::TEX_SAMPLE:
555 case AMDGPU::TEX_SAMPLE_C:
556 case AMDGPU::TEX_SAMPLE_L:
557 case AMDGPU::TEX_SAMPLE_C_L:
558 case AMDGPU::TEX_SAMPLE_LB:
559 case AMDGPU::TEX_SAMPLE_C_LB:
560 case AMDGPU::TEX_SAMPLE_G:
561 case AMDGPU::TEX_SAMPLE_C_G:
562 case AMDGPU::TEX_GET_GRADIENTS_H:
563 case AMDGPU::TEX_GET_GRADIENTS_V:
564 case AMDGPU::TEX_SET_GRADIENTS_H:
565 case AMDGPU::TEX_SET_GRADIENTS_V:
566 return true;
567 }
568}
569
570bool R600MCCodeEmitter::isFlagSet(const MCInst &MI, unsigned Operand,
571 unsigned Flag) const {
572 const MCInstrDesc &MCDesc = MCII.get(MI.getOpcode());
573 unsigned FlagIndex = GET_FLAG_OPERAND_IDX(MCDesc.TSFlags);
574 if (FlagIndex == 0) {
575 return false;
576 }
577 assert(MI.getOperand(FlagIndex).isImm());
578 return !!((MI.getOperand(FlagIndex).getImm() >>
579 (NUM_MO_FLAGS * Operand)) & Flag);
580}
581
582#include "AMDGPUGenMCCodeEmitter.inc"