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Sean Callanan95fcebd2010-01-29 00:21:04 +00001//===- EDEmitter.cpp - Generate instruction descriptions for ED -*- C++ -*-===//
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// This tablegen backend is responsible for emitting a description of each
11// instruction in a format that the enhanced disassembler can use to tokenize
12// and parse instructions.
13//
14//===----------------------------------------------------------------------===//
15
16#include "EDEmitter.h"
17
18#include "CodeGenTarget.h"
19#include "Record.h"
20
21#include "llvm/Support/ErrorHandling.h"
22#include "llvm/Support/Format.h"
23#include "llvm/Support/raw_ostream.h"
24
25#include <vector>
26#include <string>
27
28#define MAX_OPERANDS 5
29#define MAX_SYNTAXES 2
30
31using namespace llvm;
32
33///////////////////////////////////////////////////////////
34// Support classes for emitting nested C data structures //
35///////////////////////////////////////////////////////////
36
37namespace {
38
39 class EnumEmitter {
40 private:
41 std::string Name;
42 std::vector<std::string> Entries;
43 public:
44 EnumEmitter(const char *N) : Name(N) {
45 }
46 int addEntry(const char *e) {
47 Entries.push_back(std::string(e));
48 return Entries.size() - 1;
49 }
50 void emit(raw_ostream &o, unsigned int &i) {
51 o.indent(i) << "enum " << Name.c_str() << " {" << "\n";
52 i += 2;
53
54 unsigned int index = 0;
55 unsigned int numEntries = Entries.size();
56 for(index = 0; index < numEntries; ++index) {
57 o.indent(i) << Entries[index];
58 if(index < (numEntries - 1))
59 o << ",";
60 o << "\n";
61 }
62
63 i -= 2;
64 o.indent(i) << "};" << "\n";
65 }
66
67 void emitAsFlags(raw_ostream &o, unsigned int &i) {
68 o.indent(i) << "enum " << Name.c_str() << " {" << "\n";
69 i += 2;
70
71 unsigned int index = 0;
72 unsigned int numEntries = Entries.size();
73 unsigned int flag = 1;
74 for (index = 0; index < numEntries; ++index) {
75 o.indent(i) << Entries[index] << " = " << format("0x%x", flag);
76 if (index < (numEntries - 1))
77 o << ",";
78 o << "\n";
79 flag <<= 1;
80 }
81
82 i -= 2;
83 o.indent(i) << "};" << "\n";
84 }
85 };
86
87 class StructEmitter {
88 private:
89 std::string Name;
90 std::vector<std::string> MemberTypes;
91 std::vector<std::string> MemberNames;
92 public:
93 StructEmitter(const char *N) : Name(N) {
94 }
95 void addMember(const char *t, const char *n) {
96 MemberTypes.push_back(std::string(t));
97 MemberNames.push_back(std::string(n));
98 }
99 void emit(raw_ostream &o, unsigned int &i) {
100 o.indent(i) << "struct " << Name.c_str() << " {" << "\n";
101 i += 2;
102
103 unsigned int index = 0;
104 unsigned int numMembers = MemberTypes.size();
105 for (index = 0; index < numMembers; ++index) {
106 o.indent(i) << MemberTypes[index] << " " << MemberNames[index] << ";";
107 o << "\n";
108 }
109
110 i -= 2;
111 o.indent(i) << "};" << "\n";
112 }
113 };
114
115 class ConstantEmitter {
116 public:
117 virtual ~ConstantEmitter() { }
118 virtual void emit(raw_ostream &o, unsigned int &i) = 0;
119 };
120
121 class LiteralConstantEmitter : public ConstantEmitter {
122 private:
123 std::string Literal;
124 public:
125 LiteralConstantEmitter(const char *literal) : Literal(literal) {
126 }
127 LiteralConstantEmitter(int literal) {
128 char buf[256];
129 snprintf(buf, 256, "%d", literal);
130 Literal = buf;
131 }
132 void emit(raw_ostream &o, unsigned int &i) {
133 o << Literal;
134 }
135 };
136
137 class CompoundConstantEmitter : public ConstantEmitter {
138 private:
139 std::vector<ConstantEmitter*> Entries;
140 public:
141 CompoundConstantEmitter() {
142 }
143 ~CompoundConstantEmitter() {
144 unsigned int index;
145 unsigned int numEntries = Entries.size();
146 for (index = 0; index < numEntries; ++index) {
147 delete Entries[index];
148 }
149 }
150 CompoundConstantEmitter &addEntry(ConstantEmitter *e) {
151 Entries.push_back(e);
152 return *this;
153 }
154 void emit(raw_ostream &o, unsigned int &i) {
155 o << "{" << "\n";
156 i += 2;
157
158 unsigned int index;
159 unsigned int numEntries = Entries.size();
160 for (index = 0; index < numEntries; ++index) {
161 o.indent(i);
162 Entries[index]->emit(o, i);
163 if (index < (numEntries - 1))
164 o << ",";
165 o << "\n";
166 }
167
168 i -= 2;
169 o.indent(i) << "}";
170 }
171 };
172
173 class FlagsConstantEmitter : public ConstantEmitter {
174 private:
175 std::vector<std::string> Flags;
176 public:
177 FlagsConstantEmitter() {
178 }
179 FlagsConstantEmitter &addEntry(const char *f) {
180 Flags.push_back(std::string(f));
181 return *this;
182 }
183 void emit(raw_ostream &o, unsigned int &i) {
184 unsigned int index;
185 unsigned int numFlags = Flags.size();
186 if (numFlags == 0)
187 o << "0";
188
189 for (index = 0; index < numFlags; ++index) {
190 o << Flags[index].c_str();
191 if (index < (numFlags - 1))
192 o << " | ";
193 }
194 }
195 };
196}
197
198EDEmitter::EDEmitter(RecordKeeper &R) : Records(R) {
199}
200
201//////////////////////////////////////////////
202// Support functions for parsing AsmStrings //
203//////////////////////////////////////////////
204
205/// parseError - A better error reporter for use in AsmString parsers
206///
207/// @arg asmString - The original assembly string, for use in the error report
208/// @arg index - The character where the error occurred
209/// @arg err - The text of the error itself
210static void parseError(const std::string& asmString,
211 unsigned int index,
212 const char* err) {
213 errs() << "In: " << asmString.c_str() << "\n";
214 errs() << "Error at " << format("%d", index) << ": " << err << "\n";
215 llvm_unreachable("Parse error");
216}
217
218/// resolveBraces - Interprets the brace syntax in an AsmString in favor of just
219/// one syntax, and returns the result. "{A}" is resolved to "A" for syntax 0
220/// and "" for all others; "{A|B}" is resolved to "A" for syntax 0, "B" for
221/// syntax 1, and "" for all others; and so on.
222///
223/// @arg asmString - The original string, as loaded from the .td file
224/// @arg syntaxIndex - The index to use
225static std::string resolveBraces(const std::string &asmString,
226 unsigned int syntaxIndex) {
227 std::string ret;
228
229 unsigned int index;
230 unsigned int numChars = asmString.length();
231
232 // Brace parsing countable-state transducer
233 //
234 // STATES - -1, 0, 1, ..., error
235 // SYMBOLS - '{', '|', '}', ?, EOF
236 // START STATE - -1
237 //
238 // state input -> state output
239 // -1 '{' -> 0
240 // -1 '|' -> error
241 // -1 '}' -> error
242 // -1 ? -> -1 ?
243 // -1 EOF -> -1
244 // n '{' -> error
245 // n '|' -> n+1
246 // n '}' -> -1
247 // n ? -> n ? if n == syntaxIndex
248 // if not
249 // n EOF -> error
250
251 int state = -1;
252
253 for (index = 0; index < numChars; ++index) {
254 char input = asmString[index];
255
256 switch (state) {
257 default:
258 switch (input) {
259 default:
260 if (state == (int)syntaxIndex)
261 ret.push_back(input);
262 break;
263 case '{':
264 parseError(asmString, index, "Nested { in AsmString");
265 break;
266 case '|':
267 state++;
268 break;
269 case '}':
270 state = -1;
271 break;
272 }
273 break;
274 case -1:
275 switch (input) {
276 default:
277 ret.push_back(input);
278 break;
279 case '{':
280 state = 0;
281 break;
282 case '|':
283 parseError(asmString, index, "| outside braces in AsmString");
284 break;
285 case '}':
286 parseError(asmString, index, "Unmatched } in AsmString");
287 break;
288 }
289 break;
290 }
291 }
292
293 if (state != -1)
294 parseError(asmString, index, "Unmatched { in AsmString");
295
296 return ret;
297}
298
299/// getOperandIndex - looks up a named operand in an instruction and determines
300/// its index in the operand descriptor array, returning the index or -1 if it
301/// is not present.
302///
303/// @arg asmString - The assembly string for the instruction, for errors only
304/// @arg operand - The operand's name
305/// @arg inst - The instruction to use when looking up the operand
306static int8_t getOperandIndex(const std::string &asmString,
307 const std::string &operand,
308 const CodeGenInstruction &inst) {
309 int8_t operandIndex;
310
311 if(operand.length() == 0) {
312 errs() << "In: " << asmString << "\n";
313 errs() << "Operand: " << operand << "\n";
314 llvm_unreachable("Empty operand");
315 }
316
317 try {
318 operandIndex = inst.getOperandNamed(operand);
319 }
320 catch (...) {
321 return -1;
322 }
323
324 return operandIndex;
325}
326
327/// isAlphanumeric - returns true if a character is a valid alphanumeric
328/// character, and false otherwise
329///
330/// input - The character to query
331static inline bool isAlphanumeric(char input) {
332 if((input >= 'a' && input <= 'z') ||
333 (input >= 'A' && input <= 'Z') ||
334 (input >= '0' && input <= '9') ||
335 (input == '_'))
336 return true;
337 else
338 return false;
339}
340
341/// populateOperandOrder - reads a resolved AsmString (see resolveBraces) and
342/// records the index into the operand descriptor array for each operand in
343/// that string, in the order of appearance.
344///
345/// @arg operandOrder - The array that will be populated with the operand
346/// mapping. Each entry will contain -1 (invalid index
347/// into the operands present in the AsmString) or a number
348/// representing an index in the operand descriptor array.
349/// @arg asmString - The operand's name
350/// @arg inst - The instruction to use when looking up the operand
351void populateOperandOrder(CompoundConstantEmitter *operandOrder,
352 const std::string &asmString,
353 const CodeGenInstruction &inst) {
354 std::string aux;
355
356 unsigned int index;
357 unsigned int numChars = asmString.length();
358 unsigned int numArgs = 0;
359
360 // Argument processing finite-state transducer
361 //
362 // STATES - 0, 1, error
363 // SYMBOLS - A(lphanumeric), '$', ?, EOF
364 // START STATE - 0
365 //
366 // state input -> state aux
367 // 0 A -> 0
368 // 0 '$' -> 1
369 // 0 ? -> 0
370 // 0 EOF -> 0
371 // 1 A -> 1 A
372 // 1 '$' -> error
373 // 1 ? -> 0 clear
374 // 1 EOF -> 0 clear
375
376 unsigned int state = 0;
377
378 for (index = 0; index < numChars; ++index) {
379 char input = asmString[index];
380
381 switch (state) {
382 default:
383 parseError(asmString, index, "Parser in unreachable state");
384 case 0:
385 if (input == '$') {
386 state = 1;
387 }
388 break;
389 case 1:
390 if (isAlphanumeric(input)) {
391 aux.push_back(input);
392 }
393 else if (input == '$') {
394 parseError(asmString, index, "$ found in argument name");
395 }
396 else {
397 int8_t operandIndex = getOperandIndex(asmString, aux, inst);
398 char buf[3];
399 snprintf(buf, sizeof(buf), "%d", operandIndex);
400 operandOrder->addEntry(new LiteralConstantEmitter(buf));
401 aux.clear();
402 state = 0;
403 numArgs++;
404 }
405 break;
406 }
407 }
408
409 if (state == 1) {
410 int8_t operandIndex = getOperandIndex(asmString, aux, inst);
411 char buf[2];
412 snprintf(buf, 2, "%d", operandIndex);
413 operandOrder->addEntry(new LiteralConstantEmitter(buf));
414 aux.clear();
415 numArgs++;
416 }
417
418 for(; numArgs < MAX_OPERANDS; numArgs++) {
419 operandOrder->addEntry(new LiteralConstantEmitter("-1"));
420 }
421}
422
423/////////////////////////////////////////////////////
424// Support functions for handling X86 instructions //
425/////////////////////////////////////////////////////
426
427#define ADDFLAG(flag) flags->addEntry(flag)
428
429#define REG(str) if (name == str) { ADDFLAG("kOperandFlagRegister"); return 0; }
430#define MEM(str) if (name == str) { ADDFLAG("kOperandFlagMemory"); return 0; }
431#define LEA(str) if (name == str) { ADDFLAG("kOperandFlagEffectiveAddress"); \
432 return 0; }
433#define IMM(str) if (name == str) { ADDFLAG("kOperandFlagImmediate"); \
434 return 0; }
435#define PCR(str) if (name == str) { ADDFLAG("kOperandFlagMemory"); \
436 ADDFLAG("kOperandFlagPCRelative"); \
437 return 0; }
438
439/// X86FlagFromOpName - Processes the name of a single X86 operand (which is
440/// actually its type) and translates it into an operand flag
441///
442/// @arg flags - The flags object to add the flag to
443/// @arg name - The name of the operand
444static int X86FlagFromOpName(FlagsConstantEmitter *flags,
445 const std::string &name) {
446 REG("GR8");
447 REG("GR8_NOREX");
448 REG("GR16");
449 REG("GR32");
450 REG("GR32_NOREX");
451 REG("FR32");
452 REG("RFP32");
453 REG("GR64");
454 REG("FR64");
455 REG("VR64");
456 REG("RFP64");
457 REG("RFP80");
458 REG("VR128");
459 REG("RST");
460 REG("SEGMENT_REG");
461 REG("DEBUG_REG");
462 REG("CONTROL_REG_32");
463 REG("CONTROL_REG_64");
464
465 MEM("i8mem");
466 MEM("i8mem_NOREX");
467 MEM("i16mem");
468 MEM("i32mem");
469 MEM("f32mem");
470 MEM("ssmem");
471 MEM("opaque32mem");
472 MEM("opaque48mem");
473 MEM("i64mem");
474 MEM("f64mem");
475 MEM("sdmem");
476 MEM("f80mem");
477 MEM("opaque80mem");
478 MEM("i128mem");
479 MEM("f128mem");
480 MEM("opaque512mem");
481
482 LEA("lea32mem");
483 LEA("lea64_32mem");
484 LEA("lea64mem");
485
486 IMM("i8imm");
487 IMM("i16imm");
488 IMM("i16i8imm");
489 IMM("i32imm");
490 IMM("i32imm_pcrel");
491 IMM("i32i8imm");
492 IMM("i64imm");
493 IMM("i64i8imm");
494 IMM("i64i32imm");
495 IMM("i64i32imm_pcrel");
496 IMM("SSECC");
497
498 PCR("brtarget8");
499 PCR("offset8");
500 PCR("offset16");
501 PCR("offset32");
502 PCR("offset64");
503 PCR("brtarget");
504
505 return 1;
506}
507
508#undef REG
509#undef MEM
510#undef LEA
511#undef IMM
512#undef PCR
513#undef ADDFLAG
514
515/// X86PopulateOperands - Handles all the operands in an X86 instruction, adding
516/// the appropriate flags to their descriptors
517///
518/// @operandFlags - A reference the array of operand flag objects
519/// @inst - The instruction to use as a source of information
520static void X86PopulateOperands(
521 FlagsConstantEmitter *(&operandFlags)[MAX_OPERANDS],
522 const CodeGenInstruction &inst) {
523 if (!inst.TheDef->isSubClassOf("X86Inst"))
524 return;
525
526 unsigned int index;
527 unsigned int numOperands = inst.OperandList.size();
528
529 for (index = 0; index < numOperands; ++index) {
530 const CodeGenInstruction::OperandInfo &operandInfo =
531 inst.OperandList[index];
532 Record &rec = *operandInfo.Rec;
533
534 if (X86FlagFromOpName(operandFlags[index], rec.getName())) {
535 errs() << "Operand type: " << rec.getName().c_str() << "\n";
536 errs() << "Operand name: " << operandInfo.Name.c_str() << "\n";
537 errs() << "Instruction mame: " << inst.TheDef->getName().c_str() << "\n";
538 llvm_unreachable("Unhandled type");
539 }
540 }
541}
542
543/// decorate1 - Decorates a named operand with a new flag
544///
545/// @operandFlags - The array of operand flag objects, which don't have names
546/// @inst - The CodeGenInstruction, which provides a way to translate
547/// between names and operand indices
548/// @opName - The name of the operand
549/// @flag - The name of the flag to add
550static inline void decorate1(FlagsConstantEmitter *(&operandFlags)[MAX_OPERANDS],
551 const CodeGenInstruction &inst,
552 const char *opName,
553 const char *opFlag) {
554 unsigned opIndex;
555
556 try {
557 opIndex = inst.getOperandNamed(std::string(opName));
558 }
559 catch (...) {
560 errs() << "Instruction: " << inst.TheDef->getName().c_str() << "\n";
561 errs() << "Operand name: " << opName << "\n";
562 llvm_unreachable("Couldn't find operand");
563 }
564
565 operandFlags[opIndex]->addEntry(opFlag);
566}
567
568#define DECORATE1(opName, opFlag) decorate1(operandFlags, inst, opName, opFlag)
569
570#define MOV(source, target) { \
571 instFlags.addEntry("kInstructionFlagMove"); \
572 DECORATE1(source, "kOperandFlagSource"); \
573 DECORATE1(target, "kOperandFlagTarget"); \
574}
575
576#define BRANCH(target) { \
577 instFlags.addEntry("kInstructionFlagBranch"); \
578 DECORATE1(target, "kOperandFlagTarget"); \
579}
580
581#define PUSH(source) { \
582 instFlags.addEntry("kInstructionFlagPush"); \
583 DECORATE1(source, "kOperandFlagSource"); \
584}
585
586#define POP(target) { \
587 instFlags.addEntry("kInstructionFlagPop"); \
588 DECORATE1(target, "kOperandFlagTarget"); \
589}
590
591#define CALL(target) { \
592 instFlags.addEntry("kInstructionFlagCall"); \
593 DECORATE1(target, "kOperandFlagTarget"); \
594}
595
596#define RETURN() { \
597 instFlags.addEntry("kInstructionFlagReturn"); \
598}
599
600/// X86ExtractSemantics - Performs various checks on the name of an X86
601/// instruction to determine what sort of an instruction it is and then adds
602/// the appropriate flags to the instruction and its operands
603///
604/// @arg instFlags - A reference to the flags for the instruction as a whole
605/// @arg operandFlags - A reference to the array of operand flag object pointers
606/// @arg inst - A reference to the original instruction
607static void X86ExtractSemantics(FlagsConstantEmitter &instFlags,
608 FlagsConstantEmitter *(&operandFlags)[MAX_OPERANDS],
609 const CodeGenInstruction &inst) {
610 const std::string &name = inst.TheDef->getName();
611
612 if (name.find("MOV") != name.npos) {
613 if (name.find("MOV_V") != name.npos) {
614 // ignore (this is a pseudoinstruction)
615 }
616 else if (name.find("MASK") != name.npos) {
617 // ignore (this is a masking move)
618 }
619 else if (name.find("r0") != name.npos) {
620 // ignore (this is a pseudoinstruction)
621 }
622 else if (name.find("PS") != name.npos ||
623 name.find("PD") != name.npos) {
624 // ignore (this is a shuffling move)
625 }
626 else if (name.find("MOVS") != name.npos) {
627 // ignore (this is a string move)
628 }
629 else if (name.find("_F") != name.npos) {
630 // TODO handle _F moves to ST(0)
631 }
632 else if (name.find("a") != name.npos) {
633 // TODO handle moves to/from %ax
634 }
635 else if (name.find("CMOV") != name.npos) {
636 MOV("src2", "dst");
637 }
638 else if (name.find("PC") != name.npos) {
639 MOV("label", "reg")
640 }
641 else {
642 MOV("src", "dst");
643 }
644 }
645
646 if (name.find("JMP") != name.npos ||
647 name.find("J") == 0) {
648 if (name.find("FAR") != name.npos && name.find("i") != name.npos) {
649 BRANCH("off");
650 }
651 else {
652 BRANCH("dst");
653 }
654 }
655
656 if (name.find("PUSH") != name.npos) {
657 if (name.find("FS") != name.npos ||
658 name.find("GS") != name.npos) {
659 instFlags.addEntry("kInstructionFlagPush");
660 // TODO add support for fixed operands
661 }
662 else if (name.find("F") != name.npos) {
663 // ignore (this pushes onto the FP stack)
664 }
665 else if (name[name.length() - 1] == 'm') {
666 PUSH("src");
667 }
668 else if (name.find("i") != name.npos) {
669 PUSH("imm");
670 }
671 else {
672 PUSH("reg");
673 }
674 }
675
676 if (name.find("POP") != name.npos) {
677 if (name.find("POPCNT") != name.npos) {
678 // ignore (not a real pop)
679 }
680 else if (name.find("FS") != name.npos ||
681 name.find("GS") != name.npos) {
682 instFlags.addEntry("kInstructionFlagPop");
683 // TODO add support for fixed operands
684 }
685 else if (name.find("F") != name.npos) {
686 // ignore (this pops from the FP stack)
687 }
688 else if (name[name.length() - 1] == 'm') {
689 POP("dst");
690 }
691 else {
692 POP("reg");
693 }
694 }
695
696 if (name.find("CALL") != name.npos) {
697 if (name.find("ADJ") != name.npos) {
698 // ignore (not a call)
699 }
700 else if (name.find("SYSCALL") != name.npos) {
701 // ignore (doesn't go anywhere we know about)
702 }
703 else if (name.find("VMCALL") != name.npos) {
704 // ignore (rather different semantics than a regular call)
705 }
706 else if (name.find("FAR") != name.npos && name.find("i") != name.npos) {
707 CALL("off");
708 }
709 else {
710 CALL("dst");
711 }
712 }
713
714 if (name.find("RET") != name.npos) {
715 RETURN();
716 }
717}
718
719#undef MOV
720#undef BRANCH
721#undef PUSH
722#undef POP
723#undef CALL
724#undef RETURN
725
726#undef COND_DECORATE_2
727#undef COND_DECORATE_1
728#undef DECORATE1
729
730/// populateInstInfo - Fills an array of InstInfos with information about each
731/// instruction in a target
732///
733/// @arg infoArray - The array of InstInfo objects to populate
734/// @arg target - The CodeGenTarget to use as a source of instructions
735static void populateInstInfo(CompoundConstantEmitter &infoArray,
736 CodeGenTarget &target) {
737 std::vector<const CodeGenInstruction*> numberedInstructions;
738 target.getInstructionsByEnumValue(numberedInstructions);
739
740 unsigned int index;
741 unsigned int numInstructions = numberedInstructions.size();
742
743 for (index = 0; index < numInstructions; ++index) {
744 const CodeGenInstruction& inst = *numberedInstructions[index];
745
746 CompoundConstantEmitter *infoStruct = new CompoundConstantEmitter;
747 infoArray.addEntry(infoStruct);
748
749 FlagsConstantEmitter *instFlags = new FlagsConstantEmitter;
750 infoStruct->addEntry(instFlags);
751
752 LiteralConstantEmitter *numOperandsEmitter =
753 new LiteralConstantEmitter(inst.OperandList.size());
754 infoStruct->addEntry(numOperandsEmitter);
755
756 CompoundConstantEmitter *operandFlagArray = new CompoundConstantEmitter;
757 infoStruct->addEntry(operandFlagArray);
758
759 FlagsConstantEmitter *operandFlags[MAX_OPERANDS];
760
761 for (unsigned operandIndex = 0; operandIndex < MAX_OPERANDS; ++operandIndex) {
762 operandFlags[operandIndex] = new FlagsConstantEmitter;
763 operandFlagArray->addEntry(operandFlags[operandIndex]);
764 }
765
766 unsigned numSyntaxes = 0;
767
768 if (target.getName() == "X86") {
769 X86PopulateOperands(operandFlags, inst);
770 X86ExtractSemantics(*instFlags, operandFlags, inst);
771 numSyntaxes = 2;
772 }
773
774 CompoundConstantEmitter *operandOrderArray = new CompoundConstantEmitter;
775 infoStruct->addEntry(operandOrderArray);
776
777 for (unsigned syntaxIndex = 0; syntaxIndex < MAX_SYNTAXES; ++syntaxIndex) {
778 CompoundConstantEmitter *operandOrder = new CompoundConstantEmitter;
779 operandOrderArray->addEntry(operandOrder);
780
781 if (syntaxIndex < numSyntaxes) {
782 std::string asmString = inst.AsmString;
783 asmString = resolveBraces(asmString, syntaxIndex);
784 populateOperandOrder(operandOrder, asmString, inst);
785 }
786 else {
787 for (unsigned operandIndex = 0;
788 operandIndex < MAX_OPERANDS;
789 ++operandIndex) {
790 operandOrder->addEntry(new LiteralConstantEmitter("-1"));
791 }
792 }
793 }
794 }
795}
796
797void EDEmitter::run(raw_ostream &o) {
798 unsigned int i = 0;
799
800 CompoundConstantEmitter infoArray;
801 CodeGenTarget target;
802
803 populateInstInfo(infoArray, target);
804
805 o << "InstInfo instInfo" << target.getName().c_str() << "[] = ";
806 infoArray.emit(o, i);
807 o << ";" << "\n";
808}
809
810void EDEmitter::runHeader(raw_ostream &o) {
Sean Callanan9988ab02010-01-29 01:34:29 +0000811 EmitSourceFileHeader("Enhanced Disassembly Info Header", o);
Sean Callanan95fcebd2010-01-29 00:21:04 +0000812
Sean Callanan9988ab02010-01-29 01:34:29 +0000813 o << "#ifndef EDInfo_" << "\n";
814 o << "#define EDInfo_" << "\n";
Sean Callanan95fcebd2010-01-29 00:21:04 +0000815 o << "\n";
816 o << "#include <inttypes.h>" << "\n";
817 o << "\n";
818 o << "#define MAX_OPERANDS " << format("%d", MAX_OPERANDS) << "\n";
819 o << "#define MAX_SYNTAXES " << format("%d", MAX_SYNTAXES) << "\n";
820 o << "\n";
821
822 unsigned int i = 0;
823
824 EnumEmitter operandFlags("OperandFlags");
825 operandFlags.addEntry("kOperandFlagImmediate");
826 operandFlags.addEntry("kOperandFlagRegister");
827 operandFlags.addEntry("kOperandFlagMemory");
828 operandFlags.addEntry("kOperandFlagEffectiveAddress");
829 operandFlags.addEntry("kOperandFlagPCRelative");
830 operandFlags.addEntry("kOperandFlagSource");
831 operandFlags.addEntry("kOperandFlagTarget");
832 operandFlags.emitAsFlags(o, i);
833
834 o << "\n";
835
836 EnumEmitter instructionFlags("InstructionFlags");
837 instructionFlags.addEntry("kInstructionFlagMove");
838 instructionFlags.addEntry("kInstructionFlagBranch");
839 instructionFlags.addEntry("kInstructionFlagPush");
840 instructionFlags.addEntry("kInstructionFlagPop");
841 instructionFlags.addEntry("kInstructionFlagCall");
842 instructionFlags.addEntry("kInstructionFlagReturn");
843 instructionFlags.emitAsFlags(o, i);
844
845 o << "\n";
846
847 StructEmitter instInfo("InstInfo");
848 instInfo.addMember("uint32_t", "instructionFlags");
849 instInfo.addMember("uint8_t", "numOperands");
850 instInfo.addMember("uint8_t", "operandFlags[MAX_OPERANDS]");
851 instInfo.addMember("const char", "operandOrders[MAX_SYNTAXES][MAX_OPERANDS]");
852 instInfo.emit(o, i);
853
854 o << "\n";
855 o << "#endif" << "\n";
856}