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Daniel Dunbar3f6e3ff2009-07-11 19:39:44 +00001//===- AsmMatcherEmitter.cpp - Generate an assembly matcher ---------------===//
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 emits a target specifier matcher for converting parsed
11// assembly operands in the MCInst structures.
12//
Daniel Dunbarfe6759e2009-08-07 08:26:05 +000013// The input to the target specific matcher is a list of literal tokens and
14// operands. The target specific parser should generally eliminate any syntax
15// which is not relevant for matching; for example, comma tokens should have
16// already been consumed and eliminated by the parser. Most instructions will
17// end up with a single literal token (the instruction name) and some number of
18// operands.
19//
20// Some example inputs, for X86:
21// 'addl' (immediate ...) (register ...)
22// 'add' (immediate ...) (memory ...)
23// 'call' '*' %epc
24//
25// The assembly matcher is responsible for converting this input into a precise
26// machine instruction (i.e., an instruction with a well defined encoding). This
27// mapping has several properties which complicate matching:
28//
29// - It may be ambiguous; many architectures can legally encode particular
30// variants of an instruction in different ways (for example, using a smaller
31// encoding for small immediates). Such ambiguities should never be
32// arbitrarily resolved by the assembler, the assembler is always responsible
33// for choosing the "best" available instruction.
34//
35// - It may depend on the subtarget or the assembler context. Instructions
36// which are invalid for the current mode, but otherwise unambiguous (e.g.,
37// an SSE instruction in a file being assembled for i486) should be accepted
38// and rejected by the assembler front end. However, if the proper encoding
39// for an instruction is dependent on the assembler context then the matcher
40// is responsible for selecting the correct machine instruction for the
41// current mode.
42//
43// The core matching algorithm attempts to exploit the regularity in most
44// instruction sets to quickly determine the set of possibly matching
45// instructions, and the simplify the generated code. Additionally, this helps
46// to ensure that the ambiguities are intentionally resolved by the user.
47//
48// The matching is divided into two distinct phases:
49//
50// 1. Classification: Each operand is mapped to the unique set which (a)
51// contains it, and (b) is the largest such subset for which a single
52// instruction could match all members.
53//
54// For register classes, we can generate these subgroups automatically. For
55// arbitrary operands, we expect the user to define the classes and their
56// relations to one another (for example, 8-bit signed immediates as a
57// subset of 32-bit immediates).
58//
59// By partitioning the operands in this way, we guarantee that for any
60// tuple of classes, any single instruction must match either all or none
61// of the sets of operands which could classify to that tuple.
62//
63// In addition, the subset relation amongst classes induces a partial order
64// on such tuples, which we use to resolve ambiguities.
65//
66// FIXME: What do we do if a crazy case shows up where this is the wrong
67// resolution?
68//
69// 2. The input can now be treated as a tuple of classes (static tokens are
70// simple singleton sets). Each such tuple should generally map to a single
71// instruction (we currently ignore cases where this isn't true, whee!!!),
72// which we can emit a simple matcher for.
73//
Daniel Dunbar3f6e3ff2009-07-11 19:39:44 +000074//===----------------------------------------------------------------------===//
75
76#include "AsmMatcherEmitter.h"
77#include "CodeGenTarget.h"
78#include "Record.h"
Daniel Dunbarfe6759e2009-08-07 08:26:05 +000079#include "llvm/ADT/OwningPtr.h"
Daniel Dunbara54716c2009-07-31 02:32:59 +000080#include "llvm/ADT/SmallVector.h"
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +000081#include "llvm/ADT/STLExtras.h"
Daniel Dunbarfe6759e2009-08-07 08:26:05 +000082#include "llvm/ADT/StringExtras.h"
83#include "llvm/Support/CommandLine.h"
Daniel Dunbara54716c2009-07-31 02:32:59 +000084#include "llvm/Support/Debug.h"
Daniel Dunbara54716c2009-07-31 02:32:59 +000085#include <list>
Daniel Dunbarce82b992009-08-08 05:24:34 +000086#include <map>
87#include <set>
Daniel Dunbar3f6e3ff2009-07-11 19:39:44 +000088using namespace llvm;
89
Daniel Dunbar62beebc2009-08-07 20:33:39 +000090static cl::opt<std::string>
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +000091MatchPrefix("match-prefix", cl::init(""),
92 cl::desc("Only match instructions with the given prefix"));
Daniel Dunbarfe6759e2009-08-07 08:26:05 +000093
Daniel Dunbara54716c2009-07-31 02:32:59 +000094/// FlattenVariants - Flatten an .td file assembly string by selecting the
95/// variant at index \arg N.
96static std::string FlattenVariants(const std::string &AsmString,
97 unsigned N) {
98 StringRef Cur = AsmString;
99 std::string Res = "";
100
101 for (;;) {
Daniel Dunbar815c7ab2009-08-04 20:36:45 +0000102 // Find the start of the next variant string.
103 size_t VariantsStart = 0;
104 for (size_t e = Cur.size(); VariantsStart != e; ++VariantsStart)
105 if (Cur[VariantsStart] == '{' &&
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000106 (VariantsStart == 0 || (Cur[VariantsStart-1] != '$' &&
107 Cur[VariantsStart-1] != '\\')))
Daniel Dunbar815c7ab2009-08-04 20:36:45 +0000108 break;
Daniel Dunbara54716c2009-07-31 02:32:59 +0000109
Daniel Dunbar815c7ab2009-08-04 20:36:45 +0000110 // Add the prefix to the result.
111 Res += Cur.slice(0, VariantsStart);
112 if (VariantsStart == Cur.size())
Daniel Dunbara54716c2009-07-31 02:32:59 +0000113 break;
114
Daniel Dunbar815c7ab2009-08-04 20:36:45 +0000115 ++VariantsStart; // Skip the '{'.
116
117 // Scan to the end of the variants string.
118 size_t VariantsEnd = VariantsStart;
119 unsigned NestedBraces = 1;
120 for (size_t e = Cur.size(); VariantsEnd != e; ++VariantsEnd) {
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000121 if (Cur[VariantsEnd] == '}' && Cur[VariantsEnd-1] != '\\') {
Daniel Dunbar815c7ab2009-08-04 20:36:45 +0000122 if (--NestedBraces == 0)
123 break;
124 } else if (Cur[VariantsEnd] == '{')
125 ++NestedBraces;
126 }
Daniel Dunbara54716c2009-07-31 02:32:59 +0000127
128 // Select the Nth variant (or empty).
Daniel Dunbar815c7ab2009-08-04 20:36:45 +0000129 StringRef Selection = Cur.slice(VariantsStart, VariantsEnd);
Daniel Dunbara54716c2009-07-31 02:32:59 +0000130 for (unsigned i = 0; i != N; ++i)
131 Selection = Selection.split('|').second;
132 Res += Selection.split('|').first;
133
Daniel Dunbar815c7ab2009-08-04 20:36:45 +0000134 assert(VariantsEnd != Cur.size() &&
135 "Unterminated variants in assembly string!");
136 Cur = Cur.substr(VariantsEnd + 1);
Daniel Dunbara54716c2009-07-31 02:32:59 +0000137 }
138
139 return Res;
140}
141
142/// TokenizeAsmString - Tokenize a simplified assembly string.
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000143static void TokenizeAsmString(const StringRef &AsmString,
Daniel Dunbara54716c2009-07-31 02:32:59 +0000144 SmallVectorImpl<StringRef> &Tokens) {
145 unsigned Prev = 0;
146 bool InTok = true;
147 for (unsigned i = 0, e = AsmString.size(); i != e; ++i) {
148 switch (AsmString[i]) {
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000149 case '[':
150 case ']':
Daniel Dunbara54716c2009-07-31 02:32:59 +0000151 case '*':
152 case '!':
153 case ' ':
154 case '\t':
155 case ',':
156 if (InTok) {
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000157 Tokens.push_back(AsmString.slice(Prev, i));
Daniel Dunbara54716c2009-07-31 02:32:59 +0000158 InTok = false;
159 }
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000160 if (!isspace(AsmString[i]) && AsmString[i] != ',')
161 Tokens.push_back(AsmString.substr(i, 1));
Daniel Dunbara54716c2009-07-31 02:32:59 +0000162 Prev = i + 1;
163 break;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000164
165 case '\\':
166 if (InTok) {
167 Tokens.push_back(AsmString.slice(Prev, i));
168 InTok = false;
169 }
170 ++i;
171 assert(i != AsmString.size() && "Invalid quoted character");
172 Tokens.push_back(AsmString.substr(i, 1));
173 Prev = i + 1;
174 break;
175
176 case '$': {
177 // If this isn't "${", treat like a normal token.
178 if (i + 1 == AsmString.size() || AsmString[i + 1] != '{') {
179 if (InTok) {
180 Tokens.push_back(AsmString.slice(Prev, i));
181 InTok = false;
182 }
183 Prev = i;
184 break;
185 }
186
187 if (InTok) {
188 Tokens.push_back(AsmString.slice(Prev, i));
189 InTok = false;
190 }
191
192 StringRef::iterator End =
193 std::find(AsmString.begin() + i, AsmString.end(), '}');
194 assert(End != AsmString.end() && "Missing brace in operand reference!");
195 size_t EndPos = End - AsmString.begin();
196 Tokens.push_back(AsmString.slice(i, EndPos+1));
197 Prev = EndPos + 1;
198 i = EndPos;
199 break;
200 }
Daniel Dunbara54716c2009-07-31 02:32:59 +0000201
202 default:
203 InTok = true;
204 }
205 }
206 if (InTok && Prev != AsmString.size())
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000207 Tokens.push_back(AsmString.substr(Prev));
208}
209
210static bool IsAssemblerInstruction(const StringRef &Name,
211 const CodeGenInstruction &CGI,
212 const SmallVectorImpl<StringRef> &Tokens) {
Daniel Dunbara0e62002009-08-11 22:17:52 +0000213 // Ignore "codegen only" instructions.
214 if (CGI.TheDef->getValueAsBit("isCodeGenOnly"))
215 return false;
216
217 // Ignore pseudo ops.
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000218 //
Daniel Dunbara0e62002009-08-11 22:17:52 +0000219 // FIXME: This is a hack; can we convert these instructions to set the
220 // "codegen only" bit instead?
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000221 if (const RecordVal *Form = CGI.TheDef->getValue("Form"))
222 if (Form->getValue()->getAsString() == "Pseudo")
223 return false;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000224
Daniel Dunbar7fa469a2009-08-09 08:19:00 +0000225 // Ignore "Int_*" and "*_Int" instructions, which are internal aliases.
226 //
227 // FIXME: This is a total hack.
228 if (StringRef(Name).startswith("Int_") || StringRef(Name).endswith("_Int"))
229 return false;
230
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000231 // Ignore instructions with no .s string.
232 //
233 // FIXME: What are these?
234 if (CGI.AsmString.empty())
235 return false;
236
237 // FIXME: Hack; ignore any instructions with a newline in them.
238 if (std::find(CGI.AsmString.begin(),
239 CGI.AsmString.end(), '\n') != CGI.AsmString.end())
240 return false;
241
242 // Ignore instructions with attributes, these are always fake instructions for
243 // simplifying codegen.
244 //
245 // FIXME: Is this true?
246 //
Daniel Dunbara0e62002009-08-11 22:17:52 +0000247 // Also, check for instructions which reference the operand multiple times;
248 // this implies a constraint we would not honor.
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000249 std::set<std::string> OperandNames;
250 for (unsigned i = 1, e = Tokens.size(); i < e; ++i) {
251 if (Tokens[i][0] == '$' &&
252 std::find(Tokens[i].begin(),
253 Tokens[i].end(), ':') != Tokens[i].end()) {
254 DEBUG({
255 errs() << "warning: '" << Name << "': "
256 << "ignoring instruction; operand with attribute '"
Daniel Dunbara0e62002009-08-11 22:17:52 +0000257 << Tokens[i] << "'\n";
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000258 });
259 return false;
260 }
261
262 if (Tokens[i][0] == '$' && !OperandNames.insert(Tokens[i]).second) {
Daniel Dunbara0e62002009-08-11 22:17:52 +0000263 std::string Err = "'" + Name.str() + "': " +
264 "invalid assembler instruction; tied operand '" + Tokens[i].str() + "'";
265 throw TGError(CGI.TheDef->getLoc(), Err);
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000266 }
267 }
268
269 return true;
270}
271
272namespace {
273
Daniel Dunbar378bee92009-08-08 07:50:56 +0000274/// ClassInfo - Helper class for storing the information about a particular
275/// class of operands which can be matched.
276struct ClassInfo {
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000277 enum ClassInfoKind {
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000278 /// Invalid kind, for use as a sentinel value.
279 Invalid = 0,
280
281 /// The class for a particular token.
282 Token,
283
284 /// The (first) register class, subsequent register classes are
285 /// RegisterClass0+1, and so on.
286 RegisterClass0,
287
288 /// The (first) user defined class, subsequent user defined classes are
289 /// UserClass0+1, and so on.
290 UserClass0 = 1<<16
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000291 };
292
293 /// Kind - The class kind, which is either a predefined kind, or (UserClass0 +
294 /// N) for the Nth user defined class.
295 unsigned Kind;
Daniel Dunbar378bee92009-08-08 07:50:56 +0000296
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000297 /// SuperClasses - The super classes of this class. Note that for simplicities
298 /// sake user operands only record their immediate super class, while register
299 /// operands include all superclasses.
300 std::vector<ClassInfo*> SuperClasses;
Daniel Dunbar06d5cb62009-08-09 07:20:21 +0000301
Daniel Dunbar5502ca52009-08-09 05:18:30 +0000302 /// Name - The full class name, suitable for use in an enum.
Daniel Dunbar378bee92009-08-08 07:50:56 +0000303 std::string Name;
304
Daniel Dunbar5502ca52009-08-09 05:18:30 +0000305 /// ClassName - The unadorned generic name for this class (e.g., Token).
306 std::string ClassName;
307
Daniel Dunbar378bee92009-08-08 07:50:56 +0000308 /// ValueName - The name of the value this class represents; for a token this
309 /// is the literal token string, for an operand it is the TableGen class (or
310 /// empty if this is a derived class).
311 std::string ValueName;
312
313 /// PredicateMethod - The name of the operand method to test whether the
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000314 /// operand matches this class; this is not valid for Token or register kinds.
Daniel Dunbar378bee92009-08-08 07:50:56 +0000315 std::string PredicateMethod;
316
317 /// RenderMethod - The name of the operand method to add this operand to an
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000318 /// MCInst; this is not valid for Token or register kinds.
Daniel Dunbar378bee92009-08-08 07:50:56 +0000319 std::string RenderMethod;
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000320
Daniel Dunbar1d606f62009-08-11 20:10:07 +0000321 /// For register classes, the records for all the registers in this class.
322 std::set<Record*> Registers;
323
324public:
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000325 /// isRegisterClass() - Check if this is a register class.
326 bool isRegisterClass() const {
327 return Kind >= RegisterClass0 && Kind < UserClass0;
328 }
329
Daniel Dunbar06d5cb62009-08-09 07:20:21 +0000330 /// isUserClass() - Check if this is a user defined class.
331 bool isUserClass() const {
332 return Kind >= UserClass0;
333 }
334
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000335 /// isRelatedTo - Check whether this class is "related" to \arg RHS. Classes
336 /// are related if they are in the same class hierarchy.
337 bool isRelatedTo(const ClassInfo &RHS) const {
338 // Tokens are only related to tokens.
339 if (Kind == Token || RHS.Kind == Token)
340 return Kind == Token && RHS.Kind == Token;
341
Daniel Dunbar1d606f62009-08-11 20:10:07 +0000342 // Registers classes are only related to registers classes, and only if
343 // their intersection is non-empty.
344 if (isRegisterClass() || RHS.isRegisterClass()) {
345 if (!isRegisterClass() || !RHS.isRegisterClass())
346 return false;
347
348 std::set<Record*> Tmp;
349 std::insert_iterator< std::set<Record*> > II(Tmp, Tmp.begin());
350 std::set_intersection(Registers.begin(), Registers.end(),
351 RHS.Registers.begin(), RHS.Registers.end(),
352 II);
353
354 return !Tmp.empty();
355 }
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000356
357 // Otherwise we have two users operands; they are related if they are in the
358 // same class hierarchy.
Daniel Dunbar1d606f62009-08-11 20:10:07 +0000359 //
360 // FIXME: This is an oversimplification, they should only be related if they
361 // intersect, however we don't have that information.
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000362 assert(isUserClass() && RHS.isUserClass() && "Unexpected class!");
363 const ClassInfo *Root = this;
364 while (!Root->SuperClasses.empty())
365 Root = Root->SuperClasses.front();
366
Daniel Dunbar1d606f62009-08-11 20:10:07 +0000367 const ClassInfo *RHSRoot = &RHS;
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000368 while (!RHSRoot->SuperClasses.empty())
369 RHSRoot = RHSRoot->SuperClasses.front();
370
371 return Root == RHSRoot;
372 }
373
374 /// isSubsetOf - Test whether this class is a subset of \arg RHS;
375 bool isSubsetOf(const ClassInfo &RHS) const {
376 // This is a subset of RHS if it is the same class...
377 if (this == &RHS)
378 return true;
379
380 // ... or if any of its super classes are a subset of RHS.
381 for (std::vector<ClassInfo*>::const_iterator it = SuperClasses.begin(),
382 ie = SuperClasses.end(); it != ie; ++it)
383 if ((*it)->isSubsetOf(RHS))
384 return true;
385
386 return false;
Daniel Dunbar06d5cb62009-08-09 07:20:21 +0000387 }
388
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000389 /// operator< - Compare two classes.
390 bool operator<(const ClassInfo &RHS) const {
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000391 // Unrelated classes can be ordered by kind.
392 if (!isRelatedTo(RHS))
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000393 return Kind < RHS.Kind;
394
395 switch (Kind) {
Daniel Dunbar5502ca52009-08-09 05:18:30 +0000396 case Invalid:
397 assert(0 && "Invalid kind!");
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000398 case Token:
Daniel Dunbar06d5cb62009-08-09 07:20:21 +0000399 // Tokens are comparable by value.
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000400 //
401 // FIXME: Compare by enum value.
402 return ValueName < RHS.ValueName;
403
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000404 default:
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000405 // This class preceeds the RHS if it is a proper subset of the RHS.
406 return this != &RHS && isSubsetOf(RHS);
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000407 }
408 }
Daniel Dunbar378bee92009-08-08 07:50:56 +0000409};
410
Daniel Dunbarce82b992009-08-08 05:24:34 +0000411/// InstructionInfo - Helper class for storing the necessary information for an
412/// instruction which is capable of being matched.
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000413struct InstructionInfo {
414 struct Operand {
Daniel Dunbar378bee92009-08-08 07:50:56 +0000415 /// The unique class instance this operand should match.
416 ClassInfo *Class;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000417
Daniel Dunbar378bee92009-08-08 07:50:56 +0000418 /// The original operand this corresponds to, if any.
Benjamin Kramer19afc502009-08-08 10:06:30 +0000419 const CodeGenInstruction::OperandInfo *OperandInfo;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000420 };
421
422 /// InstrName - The target name for this instruction.
423 std::string InstrName;
424
425 /// Instr - The instruction this matches.
426 const CodeGenInstruction *Instr;
427
428 /// AsmString - The assembly string for this instruction (with variants
429 /// removed).
430 std::string AsmString;
431
432 /// Tokens - The tokenized assembly pattern that this instruction matches.
433 SmallVector<StringRef, 4> Tokens;
434
435 /// Operands - The operands that this instruction matches.
436 SmallVector<Operand, 4> Operands;
437
Daniel Dunbarce82b992009-08-08 05:24:34 +0000438 /// ConversionFnKind - The enum value which is passed to the generated
439 /// ConvertToMCInst to convert parsed operands into an MCInst for this
440 /// function.
441 std::string ConversionFnKind;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000442
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000443 /// operator< - Compare two instructions.
444 bool operator<(const InstructionInfo &RHS) const {
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000445 if (Operands.size() != RHS.Operands.size())
446 return Operands.size() < RHS.Operands.size();
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000447
Daniel Dunbarfcf8e642009-08-09 08:23:23 +0000448 // Compare lexicographically by operand. The matcher validates that other
449 // orderings wouldn't be ambiguous using \see CouldMatchAmiguouslyWith().
450 for (unsigned i = 0, e = Operands.size(); i != e; ++i) {
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000451 if (*Operands[i].Class < *RHS.Operands[i].Class)
452 return true;
Daniel Dunbarfcf8e642009-08-09 08:23:23 +0000453 if (*RHS.Operands[i].Class < *Operands[i].Class)
454 return false;
455 }
456
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000457 return false;
458 }
459
Daniel Dunbar33eec5d2009-08-09 06:05:33 +0000460 /// CouldMatchAmiguouslyWith - Check whether this instruction could
461 /// ambiguously match the same set of operands as \arg RHS (without being a
462 /// strictly superior match).
463 bool CouldMatchAmiguouslyWith(const InstructionInfo &RHS) {
464 // The number of operands is unambiguous.
465 if (Operands.size() != RHS.Operands.size())
466 return false;
467
Daniel Dunbar24a7ad02010-01-23 00:26:16 +0000468 // Otherwise, make sure the ordering of the two instructions is unambiguous
469 // by checking that either (a) a token or operand kind discriminates them,
470 // or (b) the ordering among equivalent kinds is consistent.
471
Daniel Dunbar33eec5d2009-08-09 06:05:33 +0000472 // Tokens and operand kinds are unambiguous (assuming a correct target
473 // specific parser).
474 for (unsigned i = 0, e = Operands.size(); i != e; ++i)
475 if (Operands[i].Class->Kind != RHS.Operands[i].Class->Kind ||
476 Operands[i].Class->Kind == ClassInfo::Token)
477 if (*Operands[i].Class < *RHS.Operands[i].Class ||
478 *RHS.Operands[i].Class < *Operands[i].Class)
479 return false;
480
481 // Otherwise, this operand could commute if all operands are equivalent, or
482 // there is a pair of operands that compare less than and a pair that
483 // compare greater than.
484 bool HasLT = false, HasGT = false;
485 for (unsigned i = 0, e = Operands.size(); i != e; ++i) {
486 if (*Operands[i].Class < *RHS.Operands[i].Class)
487 HasLT = true;
488 if (*RHS.Operands[i].Class < *Operands[i].Class)
489 HasGT = true;
490 }
491
492 return !(HasLT ^ HasGT);
493 }
494
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000495public:
496 void dump();
497};
498
Daniel Dunbar378bee92009-08-08 07:50:56 +0000499class AsmMatcherInfo {
500public:
Daniel Dunbara6d04732009-08-11 20:59:47 +0000501 /// The tablegen AsmParser record.
502 Record *AsmParser;
503
504 /// The AsmParser "CommentDelimiter" value.
505 std::string CommentDelimiter;
506
507 /// The AsmParser "RegisterPrefix" value.
508 std::string RegisterPrefix;
509
Daniel Dunbar378bee92009-08-08 07:50:56 +0000510 /// The classes which are needed for matching.
511 std::vector<ClassInfo*> Classes;
512
513 /// The information on the instruction to match.
514 std::vector<InstructionInfo*> Instructions;
515
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000516 /// Map of Register records to their class information.
517 std::map<Record*, ClassInfo*> RegisterClasses;
518
Daniel Dunbar378bee92009-08-08 07:50:56 +0000519private:
520 /// Map of token to class information which has already been constructed.
521 std::map<std::string, ClassInfo*> TokenClasses;
522
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000523 /// Map of RegisterClass records to their class information.
524 std::map<Record*, ClassInfo*> RegisterClassClasses;
Daniel Dunbar378bee92009-08-08 07:50:56 +0000525
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000526 /// Map of AsmOperandClass records to their class information.
527 std::map<Record*, ClassInfo*> AsmOperandClasses;
Daniel Dunbar5502ca52009-08-09 05:18:30 +0000528
Daniel Dunbar378bee92009-08-08 07:50:56 +0000529private:
530 /// getTokenClass - Lookup or create the class for the given token.
531 ClassInfo *getTokenClass(const StringRef &Token);
532
533 /// getOperandClass - Lookup or create the class for the given operand.
534 ClassInfo *getOperandClass(const StringRef &Token,
535 const CodeGenInstruction::OperandInfo &OI);
536
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000537 /// BuildRegisterClasses - Build the ClassInfo* instances for register
538 /// classes.
Daniel Dunbar35303e32009-08-11 23:23:44 +0000539 void BuildRegisterClasses(CodeGenTarget &Target,
540 std::set<std::string> &SingletonRegisterNames);
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000541
542 /// BuildOperandClasses - Build the ClassInfo* instances for user defined
543 /// operand classes.
544 void BuildOperandClasses(CodeGenTarget &Target);
545
Daniel Dunbar378bee92009-08-08 07:50:56 +0000546public:
Daniel Dunbara6d04732009-08-11 20:59:47 +0000547 AsmMatcherInfo(Record *_AsmParser);
548
Daniel Dunbar378bee92009-08-08 07:50:56 +0000549 /// BuildInfo - Construct the various tables used during matching.
550 void BuildInfo(CodeGenTarget &Target);
551};
552
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000553}
554
555void InstructionInfo::dump() {
556 errs() << InstrName << " -- " << "flattened:\"" << AsmString << '\"'
557 << ", tokens:[";
558 for (unsigned i = 0, e = Tokens.size(); i != e; ++i) {
559 errs() << Tokens[i];
560 if (i + 1 != e)
561 errs() << ", ";
562 }
563 errs() << "]\n";
564
565 for (unsigned i = 0, e = Operands.size(); i != e; ++i) {
566 Operand &Op = Operands[i];
Daniel Dunbar5502ca52009-08-09 05:18:30 +0000567 errs() << " op[" << i << "] = " << Op.Class->ClassName << " - ";
Daniel Dunbar378bee92009-08-08 07:50:56 +0000568 if (Op.Class->Kind == ClassInfo::Token) {
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000569 errs() << '\"' << Tokens[i] << "\"\n";
570 continue;
571 }
572
Daniel Dunbar35303e32009-08-11 23:23:44 +0000573 if (!Op.OperandInfo) {
574 errs() << "(singleton register)\n";
575 continue;
576 }
577
Benjamin Kramer19afc502009-08-08 10:06:30 +0000578 const CodeGenInstruction::OperandInfo &OI = *Op.OperandInfo;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000579 errs() << OI.Name << " " << OI.Rec->getName()
580 << " (" << OI.MIOperandNo << ", " << OI.MINumOperands << ")\n";
581 }
582}
583
Daniel Dunbar378bee92009-08-08 07:50:56 +0000584static std::string getEnumNameForToken(const StringRef &Str) {
585 std::string Res;
586
587 for (StringRef::iterator it = Str.begin(), ie = Str.end(); it != ie; ++it) {
588 switch (*it) {
589 case '*': Res += "_STAR_"; break;
590 case '%': Res += "_PCT_"; break;
591 case ':': Res += "_COLON_"; break;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000592
Daniel Dunbar378bee92009-08-08 07:50:56 +0000593 default:
594 if (isalnum(*it)) {
595 Res += *it;
596 } else {
597 Res += "_" + utostr((unsigned) *it) + "_";
598 }
599 }
600 }
601
602 return Res;
603}
604
Daniel Dunbar35303e32009-08-11 23:23:44 +0000605/// getRegisterRecord - Get the register record for \arg name, or 0.
606static Record *getRegisterRecord(CodeGenTarget &Target, const StringRef &Name) {
607 for (unsigned i = 0, e = Target.getRegisters().size(); i != e; ++i) {
608 const CodeGenRegister &Reg = Target.getRegisters()[i];
609 if (Name == Reg.TheDef->getValueAsString("AsmName"))
610 return Reg.TheDef;
611 }
612
613 return 0;
614}
615
Daniel Dunbar378bee92009-08-08 07:50:56 +0000616ClassInfo *AsmMatcherInfo::getTokenClass(const StringRef &Token) {
617 ClassInfo *&Entry = TokenClasses[Token];
618
619 if (!Entry) {
620 Entry = new ClassInfo();
621 Entry->Kind = ClassInfo::Token;
Daniel Dunbar5502ca52009-08-09 05:18:30 +0000622 Entry->ClassName = "Token";
Daniel Dunbar378bee92009-08-08 07:50:56 +0000623 Entry->Name = "MCK_" + getEnumNameForToken(Token);
624 Entry->ValueName = Token;
625 Entry->PredicateMethod = "<invalid>";
626 Entry->RenderMethod = "<invalid>";
627 Classes.push_back(Entry);
628 }
629
630 return Entry;
631}
632
633ClassInfo *
634AsmMatcherInfo::getOperandClass(const StringRef &Token,
635 const CodeGenInstruction::OperandInfo &OI) {
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000636 if (OI.Rec->isSubClassOf("RegisterClass")) {
637 ClassInfo *CI = RegisterClassClasses[OI.Rec];
638
639 if (!CI) {
640 PrintError(OI.Rec->getLoc(), "register class has no class info!");
641 throw std::string("ERROR: Missing register class!");
642 }
643
644 return CI;
645 }
Daniel Dunbar06d5cb62009-08-09 07:20:21 +0000646
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000647 assert(OI.Rec->isSubClassOf("Operand") && "Unexpected operand!");
648 Record *MatchClass = OI.Rec->getValueAsDef("ParserMatchClass");
649 ClassInfo *CI = AsmOperandClasses[MatchClass];
650
651 if (!CI) {
652 PrintError(OI.Rec->getLoc(), "operand has no match class!");
653 throw std::string("ERROR: Missing match class!");
Daniel Dunbar378bee92009-08-08 07:50:56 +0000654 }
655
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000656 return CI;
Daniel Dunbar378bee92009-08-08 07:50:56 +0000657}
658
Daniel Dunbar35303e32009-08-11 23:23:44 +0000659void AsmMatcherInfo::BuildRegisterClasses(CodeGenTarget &Target,
660 std::set<std::string>
661 &SingletonRegisterNames) {
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000662 std::vector<CodeGenRegisterClass> RegisterClasses;
663 std::vector<CodeGenRegister> Registers;
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000664
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000665 RegisterClasses = Target.getRegisterClasses();
666 Registers = Target.getRegisters();
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000667
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000668 // The register sets used for matching.
669 std::set< std::set<Record*> > RegisterSets;
670
671 // Gather the defined sets.
672 for (std::vector<CodeGenRegisterClass>::iterator it = RegisterClasses.begin(),
673 ie = RegisterClasses.end(); it != ie; ++it)
674 RegisterSets.insert(std::set<Record*>(it->Elements.begin(),
675 it->Elements.end()));
Daniel Dunbar35303e32009-08-11 23:23:44 +0000676
677 // Add any required singleton sets.
678 for (std::set<std::string>::iterator it = SingletonRegisterNames.begin(),
679 ie = SingletonRegisterNames.end(); it != ie; ++it)
680 if (Record *Rec = getRegisterRecord(Target, *it))
681 RegisterSets.insert(std::set<Record*>(&Rec, &Rec + 1));
682
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000683 // Introduce derived sets where necessary (when a register does not determine
684 // a unique register set class), and build the mapping of registers to the set
685 // they should classify to.
686 std::map<Record*, std::set<Record*> > RegisterMap;
687 for (std::vector<CodeGenRegister>::iterator it = Registers.begin(),
688 ie = Registers.end(); it != ie; ++it) {
689 CodeGenRegister &CGR = *it;
690 // Compute the intersection of all sets containing this register.
691 std::set<Record*> ContainingSet;
692
693 for (std::set< std::set<Record*> >::iterator it = RegisterSets.begin(),
694 ie = RegisterSets.end(); it != ie; ++it) {
695 if (!it->count(CGR.TheDef))
696 continue;
697
698 if (ContainingSet.empty()) {
699 ContainingSet = *it;
700 } else {
701 std::set<Record*> Tmp;
702 std::swap(Tmp, ContainingSet);
703 std::insert_iterator< std::set<Record*> > II(ContainingSet,
704 ContainingSet.begin());
705 std::set_intersection(Tmp.begin(), Tmp.end(), it->begin(), it->end(),
706 II);
707 }
708 }
709
710 if (!ContainingSet.empty()) {
711 RegisterSets.insert(ContainingSet);
712 RegisterMap.insert(std::make_pair(CGR.TheDef, ContainingSet));
713 }
714 }
715
716 // Construct the register classes.
717 std::map<std::set<Record*>, ClassInfo*> RegisterSetClasses;
718 unsigned Index = 0;
719 for (std::set< std::set<Record*> >::iterator it = RegisterSets.begin(),
720 ie = RegisterSets.end(); it != ie; ++it, ++Index) {
721 ClassInfo *CI = new ClassInfo();
722 CI->Kind = ClassInfo::RegisterClass0 + Index;
723 CI->ClassName = "Reg" + utostr(Index);
724 CI->Name = "MCK_Reg" + utostr(Index);
725 CI->ValueName = "";
726 CI->PredicateMethod = ""; // unused
727 CI->RenderMethod = "addRegOperands";
Daniel Dunbar1d606f62009-08-11 20:10:07 +0000728 CI->Registers = *it;
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000729 Classes.push_back(CI);
730 RegisterSetClasses.insert(std::make_pair(*it, CI));
731 }
732
733 // Find the superclasses; we could compute only the subgroup lattice edges,
734 // but there isn't really a point.
735 for (std::set< std::set<Record*> >::iterator it = RegisterSets.begin(),
736 ie = RegisterSets.end(); it != ie; ++it) {
737 ClassInfo *CI = RegisterSetClasses[*it];
738 for (std::set< std::set<Record*> >::iterator it2 = RegisterSets.begin(),
739 ie2 = RegisterSets.end(); it2 != ie2; ++it2)
740 if (*it != *it2 &&
741 std::includes(it2->begin(), it2->end(), it->begin(), it->end()))
742 CI->SuperClasses.push_back(RegisterSetClasses[*it2]);
743 }
744
745 // Name the register classes which correspond to a user defined RegisterClass.
746 for (std::vector<CodeGenRegisterClass>::iterator it = RegisterClasses.begin(),
747 ie = RegisterClasses.end(); it != ie; ++it) {
748 ClassInfo *CI = RegisterSetClasses[std::set<Record*>(it->Elements.begin(),
749 it->Elements.end())];
750 if (CI->ValueName.empty()) {
751 CI->ClassName = it->getName();
752 CI->Name = "MCK_" + it->getName();
753 CI->ValueName = it->getName();
754 } else
755 CI->ValueName = CI->ValueName + "," + it->getName();
756
757 RegisterClassClasses.insert(std::make_pair(it->TheDef, CI));
758 }
759
760 // Populate the map for individual registers.
761 for (std::map<Record*, std::set<Record*> >::iterator it = RegisterMap.begin(),
762 ie = RegisterMap.end(); it != ie; ++it)
763 this->RegisterClasses[it->first] = RegisterSetClasses[it->second];
Daniel Dunbar35303e32009-08-11 23:23:44 +0000764
765 // Name the register classes which correspond to singleton registers.
766 for (std::set<std::string>::iterator it = SingletonRegisterNames.begin(),
767 ie = SingletonRegisterNames.end(); it != ie; ++it) {
768 if (Record *Rec = getRegisterRecord(Target, *it)) {
769 ClassInfo *CI = this->RegisterClasses[Rec];
770 assert(CI && "Missing singleton register class info!");
771
772 if (CI->ValueName.empty()) {
773 CI->ClassName = Rec->getName();
774 CI->Name = "MCK_" + Rec->getName();
775 CI->ValueName = Rec->getName();
776 } else
777 CI->ValueName = CI->ValueName + "," + Rec->getName();
778 }
779 }
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000780}
781
782void AsmMatcherInfo::BuildOperandClasses(CodeGenTarget &Target) {
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000783 std::vector<Record*> AsmOperands;
784 AsmOperands = Records.getAllDerivedDefinitions("AsmOperandClass");
785 unsigned Index = 0;
786 for (std::vector<Record*>::iterator it = AsmOperands.begin(),
787 ie = AsmOperands.end(); it != ie; ++it, ++Index) {
788 ClassInfo *CI = new ClassInfo();
789 CI->Kind = ClassInfo::UserClass0 + Index;
790
791 Init *Super = (*it)->getValueInit("SuperClass");
792 if (DefInit *DI = dynamic_cast<DefInit*>(Super)) {
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000793 ClassInfo *SC = AsmOperandClasses[DI->getDef()];
794 if (!SC)
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000795 PrintError((*it)->getLoc(), "Invalid super class reference!");
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000796 else
797 CI->SuperClasses.push_back(SC);
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000798 } else {
799 assert(dynamic_cast<UnsetInit*>(Super) && "Unexpected SuperClass field!");
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000800 }
801 CI->ClassName = (*it)->getValueAsString("Name");
802 CI->Name = "MCK_" + CI->ClassName;
803 CI->ValueName = (*it)->getName();
Daniel Dunbarb3413d82009-08-10 21:00:45 +0000804
805 // Get or construct the predicate method name.
806 Init *PMName = (*it)->getValueInit("PredicateMethod");
807 if (StringInit *SI = dynamic_cast<StringInit*>(PMName)) {
808 CI->PredicateMethod = SI->getValue();
809 } else {
810 assert(dynamic_cast<UnsetInit*>(PMName) &&
811 "Unexpected PredicateMethod field!");
812 CI->PredicateMethod = "is" + CI->ClassName;
813 }
814
815 // Get or construct the render method name.
816 Init *RMName = (*it)->getValueInit("RenderMethod");
817 if (StringInit *SI = dynamic_cast<StringInit*>(RMName)) {
818 CI->RenderMethod = SI->getValue();
819 } else {
820 assert(dynamic_cast<UnsetInit*>(RMName) &&
821 "Unexpected RenderMethod field!");
822 CI->RenderMethod = "add" + CI->ClassName + "Operands";
823 }
824
Daniel Dunbar0f10cbf2009-08-10 18:41:10 +0000825 AsmOperandClasses[*it] = CI;
826 Classes.push_back(CI);
827 }
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000828}
829
Daniel Dunbara6d04732009-08-11 20:59:47 +0000830AsmMatcherInfo::AsmMatcherInfo(Record *_AsmParser)
831 : AsmParser(_AsmParser),
832 CommentDelimiter(AsmParser->getValueAsString("CommentDelimiter")),
833 RegisterPrefix(AsmParser->getValueAsString("RegisterPrefix"))
834{
835}
836
Daniel Dunbar171a05b2009-08-11 02:59:53 +0000837void AsmMatcherInfo::BuildInfo(CodeGenTarget &Target) {
Daniel Dunbar35303e32009-08-11 23:23:44 +0000838 // Parse the instructions; we need to do this first so that we can gather the
839 // singleton register classes.
840 std::set<std::string> SingletonRegisterNames;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000841 for (std::map<std::string, CodeGenInstruction>::const_iterator
Daniel Dunbar378bee92009-08-08 07:50:56 +0000842 it = Target.getInstructions().begin(),
843 ie = Target.getInstructions().end();
844 it != ie; ++it) {
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000845 const CodeGenInstruction &CGI = it->second;
846
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000847 if (!StringRef(it->first).startswith(MatchPrefix))
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000848 continue;
849
850 OwningPtr<InstructionInfo> II(new InstructionInfo);
851
852 II->InstrName = it->first;
853 II->Instr = &it->second;
854 II->AsmString = FlattenVariants(CGI.AsmString, 0);
855
Daniel Dunbara6d04732009-08-11 20:59:47 +0000856 // Remove comments from the asm string.
857 if (!CommentDelimiter.empty()) {
858 size_t Idx = StringRef(II->AsmString).find(CommentDelimiter);
859 if (Idx != StringRef::npos)
860 II->AsmString = II->AsmString.substr(0, Idx);
861 }
862
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000863 TokenizeAsmString(II->AsmString, II->Tokens);
864
865 // Ignore instructions which shouldn't be matched.
866 if (!IsAssemblerInstruction(it->first, CGI, II->Tokens))
867 continue;
868
Daniel Dunbar35303e32009-08-11 23:23:44 +0000869 // Collect singleton registers, if used.
870 if (!RegisterPrefix.empty()) {
871 for (unsigned i = 0, e = II->Tokens.size(); i != e; ++i) {
872 if (II->Tokens[i].startswith(RegisterPrefix)) {
873 StringRef RegName = II->Tokens[i].substr(RegisterPrefix.size());
874 Record *Rec = getRegisterRecord(Target, RegName);
875
876 if (!Rec) {
877 std::string Err = "unable to find register for '" + RegName.str() +
878 "' (which matches register prefix)";
879 throw TGError(CGI.TheDef->getLoc(), Err);
880 }
881
882 SingletonRegisterNames.insert(RegName);
883 }
884 }
885 }
886
887 Instructions.push_back(II.take());
888 }
889
890 // Build info for the register classes.
891 BuildRegisterClasses(Target, SingletonRegisterNames);
892
893 // Build info for the user defined assembly operand classes.
894 BuildOperandClasses(Target);
895
896 // Build the instruction information.
897 for (std::vector<InstructionInfo*>::iterator it = Instructions.begin(),
898 ie = Instructions.end(); it != ie; ++it) {
899 InstructionInfo *II = *it;
900
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000901 for (unsigned i = 0, e = II->Tokens.size(); i != e; ++i) {
902 StringRef Token = II->Tokens[i];
903
Daniel Dunbar35303e32009-08-11 23:23:44 +0000904 // Check for singleton registers.
905 if (!RegisterPrefix.empty() && Token.startswith(RegisterPrefix)) {
906 StringRef RegName = II->Tokens[i].substr(RegisterPrefix.size());
907 InstructionInfo::Operand Op;
908 Op.Class = RegisterClasses[getRegisterRecord(Target, RegName)];
909 Op.OperandInfo = 0;
910 assert(Op.Class && Op.Class->Registers.size() == 1 &&
911 "Unexpected class for singleton register");
912 II->Operands.push_back(Op);
913 continue;
914 }
915
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000916 // Check for simple tokens.
917 if (Token[0] != '$') {
918 InstructionInfo::Operand Op;
Daniel Dunbar378bee92009-08-08 07:50:56 +0000919 Op.Class = getTokenClass(Token);
Benjamin Kramer19afc502009-08-08 10:06:30 +0000920 Op.OperandInfo = 0;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000921 II->Operands.push_back(Op);
922 continue;
923 }
924
925 // Otherwise this is an operand reference.
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000926 StringRef OperandName;
927 if (Token[1] == '{')
928 OperandName = Token.substr(2, Token.size() - 3);
929 else
930 OperandName = Token.substr(1);
931
932 // Map this token to an operand. FIXME: Move elsewhere.
933 unsigned Idx;
934 try {
Daniel Dunbar35303e32009-08-11 23:23:44 +0000935 Idx = II->Instr->getOperandNamed(OperandName);
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000936 } catch(...) {
Daniel Dunbar35303e32009-08-11 23:23:44 +0000937 throw std::string("error: unable to find operand: '" +
938 OperandName.str() + "'");
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000939 }
940
Daniel Dunbar35303e32009-08-11 23:23:44 +0000941 const CodeGenInstruction::OperandInfo &OI = II->Instr->OperandList[Idx];
Daniel Dunbar378bee92009-08-08 07:50:56 +0000942 InstructionInfo::Operand Op;
943 Op.Class = getOperandClass(Token, OI);
Benjamin Kramer19afc502009-08-08 10:06:30 +0000944 Op.OperandInfo = &OI;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000945 II->Operands.push_back(Op);
946 }
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000947 }
Daniel Dunbar06d5cb62009-08-09 07:20:21 +0000948
Daniel Dunbar06d5cb62009-08-09 07:20:21 +0000949 // Reorder classes so that classes preceed super classes.
950 std::sort(Classes.begin(), Classes.end(), less_ptr<ClassInfo>());
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000951}
952
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +0000953static void EmitConvertToMCInst(CodeGenTarget &Target,
954 std::vector<InstructionInfo*> &Infos,
955 raw_ostream &OS) {
Daniel Dunbarce82b992009-08-08 05:24:34 +0000956 // Write the convert function to a separate stream, so we can drop it after
957 // the enum.
958 std::string ConvertFnBody;
959 raw_string_ostream CvtOS(ConvertFnBody);
960
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000961 // Function we have already generated.
962 std::set<std::string> GeneratedFns;
963
Daniel Dunbarce82b992009-08-08 05:24:34 +0000964 // Start the unified conversion function.
965
966 CvtOS << "static bool ConvertToMCInst(ConversionKind Kind, MCInst &Inst, "
967 << "unsigned Opcode,\n"
Chris Lattner22f480d2010-01-14 22:21:20 +0000968 << " const SmallVectorImpl<MCParsedAsmOperand*"
969 << "> &Operands) {\n";
Daniel Dunbarce82b992009-08-08 05:24:34 +0000970 CvtOS << " Inst.setOpcode(Opcode);\n";
971 CvtOS << " switch (Kind) {\n";
972 CvtOS << " default:\n";
973
974 // Start the enum, which we will generate inline.
975
976 OS << "// Unified function for converting operants to MCInst instances.\n\n";
Daniel Dunbarce82b992009-08-08 05:24:34 +0000977 OS << "enum ConversionKind {\n";
978
Chris Lattner22f480d2010-01-14 22:21:20 +0000979 // TargetOperandClass - This is the target's operand class, like X86Operand.
980 std::string TargetOperandClass = Target.getName() + "Operand";
981
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000982 for (std::vector<InstructionInfo*>::const_iterator it = Infos.begin(),
983 ie = Infos.end(); it != ie; ++it) {
984 InstructionInfo &II = **it;
985
986 // Order the (class) operands by the order to convert them into an MCInst.
987 SmallVector<std::pair<unsigned, unsigned>, 4> MIOperandList;
988 for (unsigned i = 0, e = II.Operands.size(); i != e; ++i) {
989 InstructionInfo::Operand &Op = II.Operands[i];
Benjamin Kramer19afc502009-08-08 10:06:30 +0000990 if (Op.OperandInfo)
991 MIOperandList.push_back(std::make_pair(Op.OperandInfo->MIOperandNo, i));
Daniel Dunbarfe6759e2009-08-07 08:26:05 +0000992 }
993 std::sort(MIOperandList.begin(), MIOperandList.end());
994
995 // Compute the total number of operands.
996 unsigned NumMIOperands = 0;
997 for (unsigned i = 0, e = II.Instr->OperandList.size(); i != e; ++i) {
998 const CodeGenInstruction::OperandInfo &OI = II.Instr->OperandList[i];
999 NumMIOperands = std::max(NumMIOperands,
1000 OI.MIOperandNo + OI.MINumOperands);
1001 }
1002
1003 // Build the conversion function signature.
1004 std::string Signature = "Convert";
1005 unsigned CurIndex = 0;
1006 for (unsigned i = 0, e = MIOperandList.size(); i != e; ++i) {
1007 InstructionInfo::Operand &Op = II.Operands[MIOperandList[i].second];
Benjamin Kramer19afc502009-08-08 10:06:30 +00001008 assert(CurIndex <= Op.OperandInfo->MIOperandNo &&
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001009 "Duplicate match for instruction operand!");
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001010
Daniel Dunbarce82b992009-08-08 05:24:34 +00001011 Signature += "_";
1012
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001013 // Skip operands which weren't matched by anything, this occurs when the
1014 // .td file encodes "implicit" operands as explicit ones.
1015 //
1016 // FIXME: This should be removed from the MCInst structure.
Benjamin Kramer19afc502009-08-08 10:06:30 +00001017 for (; CurIndex != Op.OperandInfo->MIOperandNo; ++CurIndex)
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001018 Signature += "Imp";
1019
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001020 // Registers are always converted the same, don't duplicate the conversion
1021 // function based on them.
1022 //
1023 // FIXME: We could generalize this based on the render method, if it
1024 // mattered.
1025 if (Op.Class->isRegisterClass())
1026 Signature += "Reg";
1027 else
1028 Signature += Op.Class->ClassName;
Benjamin Kramer19afc502009-08-08 10:06:30 +00001029 Signature += utostr(Op.OperandInfo->MINumOperands);
Daniel Dunbarce82b992009-08-08 05:24:34 +00001030 Signature += "_" + utostr(MIOperandList[i].second);
1031
Benjamin Kramer19afc502009-08-08 10:06:30 +00001032 CurIndex += Op.OperandInfo->MINumOperands;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001033 }
1034
1035 // Add any trailing implicit operands.
1036 for (; CurIndex != NumMIOperands; ++CurIndex)
1037 Signature += "Imp";
1038
Daniel Dunbarce82b992009-08-08 05:24:34 +00001039 II.ConversionFnKind = Signature;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001040
Daniel Dunbarce82b992009-08-08 05:24:34 +00001041 // Check if we have already generated this signature.
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001042 if (!GeneratedFns.insert(Signature).second)
1043 continue;
1044
1045 // If not, emit it now.
Daniel Dunbarce82b992009-08-08 05:24:34 +00001046
1047 // Add to the enum list.
1048 OS << " " << Signature << ",\n";
1049
1050 // And to the convert function.
1051 CvtOS << " case " << Signature << ":\n";
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001052 CurIndex = 0;
1053 for (unsigned i = 0, e = MIOperandList.size(); i != e; ++i) {
1054 InstructionInfo::Operand &Op = II.Operands[MIOperandList[i].second];
1055
1056 // Add the implicit operands.
Benjamin Kramer19afc502009-08-08 10:06:30 +00001057 for (; CurIndex != Op.OperandInfo->MIOperandNo; ++CurIndex)
Daniel Dunbarce82b992009-08-08 05:24:34 +00001058 CvtOS << " Inst.addOperand(MCOperand::CreateReg(0));\n";
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001059
Chris Lattner22f480d2010-01-14 22:21:20 +00001060 CvtOS << " ((" << TargetOperandClass << "*)Operands["
1061 << MIOperandList[i].second
1062 << "])->" << Op.Class->RenderMethod
Benjamin Kramer19afc502009-08-08 10:06:30 +00001063 << "(Inst, " << Op.OperandInfo->MINumOperands << ");\n";
1064 CurIndex += Op.OperandInfo->MINumOperands;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001065 }
1066
1067 // And add trailing implicit operands.
1068 for (; CurIndex != NumMIOperands; ++CurIndex)
Daniel Dunbarce82b992009-08-08 05:24:34 +00001069 CvtOS << " Inst.addOperand(MCOperand::CreateReg(0));\n";
1070 CvtOS << " break;\n";
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001071 }
Daniel Dunbarce82b992009-08-08 05:24:34 +00001072
1073 // Finish the convert function.
1074
1075 CvtOS << " }\n";
1076 CvtOS << " return false;\n";
1077 CvtOS << "}\n\n";
1078
1079 // Finish the enum, and drop the convert function after it.
1080
1081 OS << " NumConversionVariants\n";
1082 OS << "};\n\n";
1083
Daniel Dunbarce82b992009-08-08 05:24:34 +00001084 OS << CvtOS.str();
Daniel Dunbara54716c2009-07-31 02:32:59 +00001085}
1086
Daniel Dunbar378bee92009-08-08 07:50:56 +00001087/// EmitMatchClassEnumeration - Emit the enumeration for match class kinds.
1088static void EmitMatchClassEnumeration(CodeGenTarget &Target,
1089 std::vector<ClassInfo*> &Infos,
1090 raw_ostream &OS) {
1091 OS << "namespace {\n\n";
1092
1093 OS << "/// MatchClassKind - The kinds of classes which participate in\n"
1094 << "/// instruction matching.\n";
1095 OS << "enum MatchClassKind {\n";
1096 OS << " InvalidMatchClass = 0,\n";
1097 for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
1098 ie = Infos.end(); it != ie; ++it) {
1099 ClassInfo &CI = **it;
1100 OS << " " << CI.Name << ", // ";
1101 if (CI.Kind == ClassInfo::Token) {
1102 OS << "'" << CI.ValueName << "'\n";
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001103 } else if (CI.isRegisterClass()) {
Daniel Dunbar378bee92009-08-08 07:50:56 +00001104 if (!CI.ValueName.empty())
1105 OS << "register class '" << CI.ValueName << "'\n";
1106 else
1107 OS << "derived register class\n";
1108 } else {
1109 OS << "user defined class '" << CI.ValueName << "'\n";
1110 }
1111 }
1112 OS << " NumMatchClassKinds\n";
1113 OS << "};\n\n";
1114
1115 OS << "}\n\n";
1116}
1117
Daniel Dunbar378bee92009-08-08 07:50:56 +00001118/// EmitClassifyOperand - Emit the function to classify an operand.
1119static void EmitClassifyOperand(CodeGenTarget &Target,
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001120 AsmMatcherInfo &Info,
Daniel Dunbar378bee92009-08-08 07:50:56 +00001121 raw_ostream &OS) {
Chris Lattner22f480d2010-01-14 22:21:20 +00001122 OS << "static MatchClassKind ClassifyOperand(MCParsedAsmOperand *GOp) {\n"
1123 << " " << Target.getName() << "Operand &Operand = *("
1124 << Target.getName() << "Operand*)GOp;\n";
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001125
1126 // Classify tokens.
Daniel Dunbar378bee92009-08-08 07:50:56 +00001127 OS << " if (Operand.isToken())\n";
1128 OS << " return MatchTokenString(Operand.getToken());\n\n";
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001129
1130 // Classify registers.
1131 //
1132 // FIXME: Don't hardcode isReg, getReg.
1133 OS << " if (Operand.isReg()) {\n";
1134 OS << " switch (Operand.getReg()) {\n";
1135 OS << " default: return InvalidMatchClass;\n";
1136 for (std::map<Record*, ClassInfo*>::iterator
1137 it = Info.RegisterClasses.begin(), ie = Info.RegisterClasses.end();
1138 it != ie; ++it)
1139 OS << " case " << Target.getName() << "::"
1140 << it->first->getName() << ": return " << it->second->Name << ";\n";
1141 OS << " }\n";
1142 OS << " }\n\n";
1143
1144 // Classify user defined operands.
1145 for (std::vector<ClassInfo*>::iterator it = Info.Classes.begin(),
1146 ie = Info.Classes.end(); it != ie; ++it) {
Daniel Dunbar378bee92009-08-08 07:50:56 +00001147 ClassInfo &CI = **it;
1148
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001149 if (!CI.isUserClass())
1150 continue;
1151
1152 OS << " // '" << CI.ClassName << "' class";
1153 if (!CI.SuperClasses.empty()) {
1154 OS << ", subclass of ";
1155 for (unsigned i = 0, e = CI.SuperClasses.size(); i != e; ++i) {
1156 if (i) OS << ", ";
1157 OS << "'" << CI.SuperClasses[i]->ClassName << "'";
1158 assert(CI < *CI.SuperClasses[i] && "Invalid class relation!");
Daniel Dunbar06d5cb62009-08-09 07:20:21 +00001159 }
Daniel Dunbar378bee92009-08-08 07:50:56 +00001160 }
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001161 OS << "\n";
1162
1163 OS << " if (Operand." << CI.PredicateMethod << "()) {\n";
1164
1165 // Validate subclass relationships.
1166 if (!CI.SuperClasses.empty()) {
1167 for (unsigned i = 0, e = CI.SuperClasses.size(); i != e; ++i)
1168 OS << " assert(Operand." << CI.SuperClasses[i]->PredicateMethod
1169 << "() && \"Invalid class relationship!\");\n";
1170 }
1171
1172 OS << " return " << CI.Name << ";\n";
1173 OS << " }\n\n";
Daniel Dunbar378bee92009-08-08 07:50:56 +00001174 }
1175 OS << " return InvalidMatchClass;\n";
1176 OS << "}\n\n";
1177}
1178
Daniel Dunbar14a77d42009-08-10 16:05:47 +00001179/// EmitIsSubclass - Emit the subclass predicate function.
1180static void EmitIsSubclass(CodeGenTarget &Target,
1181 std::vector<ClassInfo*> &Infos,
1182 raw_ostream &OS) {
1183 OS << "/// IsSubclass - Compute whether \\arg A is a subclass of \\arg B.\n";
1184 OS << "static bool IsSubclass(MatchClassKind A, MatchClassKind B) {\n";
1185 OS << " if (A == B)\n";
1186 OS << " return true;\n\n";
1187
1188 OS << " switch (A) {\n";
1189 OS << " default:\n";
1190 OS << " return false;\n";
1191 for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
1192 ie = Infos.end(); it != ie; ++it) {
1193 ClassInfo &A = **it;
1194
1195 if (A.Kind != ClassInfo::Token) {
1196 std::vector<StringRef> SuperClasses;
1197 for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
1198 ie = Infos.end(); it != ie; ++it) {
1199 ClassInfo &B = **it;
1200
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001201 if (&A != &B && A.isSubsetOf(B))
Daniel Dunbar14a77d42009-08-10 16:05:47 +00001202 SuperClasses.push_back(B.Name);
1203 }
1204
1205 if (SuperClasses.empty())
1206 continue;
1207
1208 OS << "\n case " << A.Name << ":\n";
1209
1210 if (SuperClasses.size() == 1) {
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001211 OS << " return B == " << SuperClasses.back() << ";\n";
Daniel Dunbar14a77d42009-08-10 16:05:47 +00001212 continue;
1213 }
1214
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001215 OS << " switch (B) {\n";
1216 OS << " default: return false;\n";
Daniel Dunbar14a77d42009-08-10 16:05:47 +00001217 for (unsigned i = 0, e = SuperClasses.size(); i != e; ++i)
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001218 OS << " case " << SuperClasses[i] << ": return true;\n";
1219 OS << " }\n";
Daniel Dunbar14a77d42009-08-10 16:05:47 +00001220 }
1221 }
1222 OS << " }\n";
1223 OS << "}\n\n";
1224}
1225
Chris Lattner042926f2009-08-08 20:02:57 +00001226typedef std::pair<std::string, std::string> StringPair;
1227
1228/// FindFirstNonCommonLetter - Find the first character in the keys of the
1229/// string pairs that is not shared across the whole set of strings. All
1230/// strings are assumed to have the same length.
1231static unsigned
1232FindFirstNonCommonLetter(const std::vector<const StringPair*> &Matches) {
1233 assert(!Matches.empty());
1234 for (unsigned i = 0, e = Matches[0]->first.size(); i != e; ++i) {
1235 // Check to see if letter i is the same across the set.
1236 char Letter = Matches[0]->first[i];
1237
1238 for (unsigned str = 0, e = Matches.size(); str != e; ++str)
1239 if (Matches[str]->first[i] != Letter)
1240 return i;
1241 }
1242
1243 return Matches[0]->first.size();
1244}
1245
1246/// EmitStringMatcherForChar - Given a set of strings that are known to be the
1247/// same length and whose characters leading up to CharNo are the same, emit
1248/// code to verify that CharNo and later are the same.
Daniel Dunbar7906a642009-08-08 22:57:25 +00001249///
1250/// \return - True if control can leave the emitted code fragment.
1251static bool EmitStringMatcherForChar(const std::string &StrVariableName,
Chris Lattner042926f2009-08-08 20:02:57 +00001252 const std::vector<const StringPair*> &Matches,
1253 unsigned CharNo, unsigned IndentCount,
1254 raw_ostream &OS) {
1255 assert(!Matches.empty() && "Must have at least one string to match!");
1256 std::string Indent(IndentCount*2+4, ' ');
1257
1258 // If we have verified that the entire string matches, we're done: output the
1259 // matching code.
1260 if (CharNo == Matches[0]->first.size()) {
1261 assert(Matches.size() == 1 && "Had duplicate keys to match on");
1262
1263 // FIXME: If Matches[0].first has embeded \n, this will be bad.
1264 OS << Indent << Matches[0]->second << "\t // \"" << Matches[0]->first
1265 << "\"\n";
Daniel Dunbar7906a642009-08-08 22:57:25 +00001266 return false;
Chris Lattner042926f2009-08-08 20:02:57 +00001267 }
1268
1269 // Bucket the matches by the character we are comparing.
1270 std::map<char, std::vector<const StringPair*> > MatchesByLetter;
1271
1272 for (unsigned i = 0, e = Matches.size(); i != e; ++i)
1273 MatchesByLetter[Matches[i]->first[CharNo]].push_back(Matches[i]);
1274
1275
1276 // If we have exactly one bucket to match, see how many characters are common
1277 // across the whole set and match all of them at once.
Chris Lattner042926f2009-08-08 20:02:57 +00001278 if (MatchesByLetter.size() == 1) {
1279 unsigned FirstNonCommonLetter = FindFirstNonCommonLetter(Matches);
1280 unsigned NumChars = FirstNonCommonLetter-CharNo;
1281
Daniel Dunbar7906a642009-08-08 22:57:25 +00001282 // Emit code to break out if the prefix doesn't match.
Chris Lattner042926f2009-08-08 20:02:57 +00001283 if (NumChars == 1) {
Daniel Dunbar7906a642009-08-08 22:57:25 +00001284 // Do the comparison with if (Str[1] != 'f')
Chris Lattner042926f2009-08-08 20:02:57 +00001285 // FIXME: Need to escape general characters.
Daniel Dunbar7906a642009-08-08 22:57:25 +00001286 OS << Indent << "if (" << StrVariableName << "[" << CharNo << "] != '"
1287 << Matches[0]->first[CharNo] << "')\n";
1288 OS << Indent << " break;\n";
Chris Lattner042926f2009-08-08 20:02:57 +00001289 } else {
Daniel Dunbar7906a642009-08-08 22:57:25 +00001290 // Do the comparison with if (Str.substr(1,3) != "foo").
Chris Lattner042926f2009-08-08 20:02:57 +00001291 // FIXME: Need to escape general strings.
Daniel Dunbar7906a642009-08-08 22:57:25 +00001292 OS << Indent << "if (" << StrVariableName << ".substr(" << CharNo << ","
1293 << NumChars << ") != \"";
1294 OS << Matches[0]->first.substr(CharNo, NumChars) << "\")\n";
Daniel Dunbarda3a2292009-08-08 23:43:16 +00001295 OS << Indent << " break;\n";
Chris Lattner042926f2009-08-08 20:02:57 +00001296 }
1297
Daniel Dunbar7906a642009-08-08 22:57:25 +00001298 return EmitStringMatcherForChar(StrVariableName, Matches,
1299 FirstNonCommonLetter, IndentCount, OS);
Chris Lattner042926f2009-08-08 20:02:57 +00001300 }
1301
1302 // Otherwise, we have multiple possible things, emit a switch on the
1303 // character.
1304 OS << Indent << "switch (" << StrVariableName << "[" << CharNo << "]) {\n";
1305 OS << Indent << "default: break;\n";
1306
1307 for (std::map<char, std::vector<const StringPair*> >::iterator LI =
1308 MatchesByLetter.begin(), E = MatchesByLetter.end(); LI != E; ++LI) {
1309 // TODO: escape hard stuff (like \n) if we ever care about it.
1310 OS << Indent << "case '" << LI->first << "':\t // "
1311 << LI->second.size() << " strings to match.\n";
Daniel Dunbar7906a642009-08-08 22:57:25 +00001312 if (EmitStringMatcherForChar(StrVariableName, LI->second, CharNo+1,
1313 IndentCount+1, OS))
1314 OS << Indent << " break;\n";
Chris Lattner042926f2009-08-08 20:02:57 +00001315 }
1316
1317 OS << Indent << "}\n";
Daniel Dunbar7906a642009-08-08 22:57:25 +00001318 return true;
Chris Lattner042926f2009-08-08 20:02:57 +00001319}
1320
1321
1322/// EmitStringMatcher - Given a list of strings and code to execute when they
Daniel Dunbar7906a642009-08-08 22:57:25 +00001323/// match, output a simple switch tree to classify the input string.
1324///
1325/// If a match is found, the code in Vals[i].second is executed; control must
1326/// not exit this code fragment. If nothing matches, execution falls through.
1327///
1328/// \param StrVariableName - The name of the variable to test.
Chris Lattner042926f2009-08-08 20:02:57 +00001329static void EmitStringMatcher(const std::string &StrVariableName,
1330 const std::vector<StringPair> &Matches,
1331 raw_ostream &OS) {
1332 // First level categorization: group strings by length.
1333 std::map<unsigned, std::vector<const StringPair*> > MatchesByLength;
1334
1335 for (unsigned i = 0, e = Matches.size(); i != e; ++i)
1336 MatchesByLength[Matches[i].first.size()].push_back(&Matches[i]);
1337
1338 // Output a switch statement on length and categorize the elements within each
1339 // bin.
1340 OS << " switch (" << StrVariableName << ".size()) {\n";
1341 OS << " default: break;\n";
1342
Chris Lattner042926f2009-08-08 20:02:57 +00001343 for (std::map<unsigned, std::vector<const StringPair*> >::iterator LI =
1344 MatchesByLength.begin(), E = MatchesByLength.end(); LI != E; ++LI) {
1345 OS << " case " << LI->first << ":\t // " << LI->second.size()
1346 << " strings to match.\n";
Daniel Dunbar7906a642009-08-08 22:57:25 +00001347 if (EmitStringMatcherForChar(StrVariableName, LI->second, 0, 0, OS))
1348 OS << " break;\n";
Chris Lattner042926f2009-08-08 20:02:57 +00001349 }
1350
Chris Lattner042926f2009-08-08 20:02:57 +00001351 OS << " }\n";
1352}
1353
1354
Daniel Dunbarb0e6abe2009-08-08 21:22:41 +00001355/// EmitMatchTokenString - Emit the function to match a token string to the
1356/// appropriate match class value.
1357static void EmitMatchTokenString(CodeGenTarget &Target,
1358 std::vector<ClassInfo*> &Infos,
1359 raw_ostream &OS) {
1360 // Construct the match list.
1361 std::vector<StringPair> Matches;
1362 for (std::vector<ClassInfo*>::iterator it = Infos.begin(),
1363 ie = Infos.end(); it != ie; ++it) {
1364 ClassInfo &CI = **it;
1365
1366 if (CI.Kind == ClassInfo::Token)
1367 Matches.push_back(StringPair(CI.ValueName, "return " + CI.Name + ";"));
1368 }
1369
1370 OS << "static MatchClassKind MatchTokenString(const StringRef &Name) {\n";
1371
1372 EmitStringMatcher("Name", Matches, OS);
1373
1374 OS << " return InvalidMatchClass;\n";
1375 OS << "}\n\n";
1376}
Chris Lattner042926f2009-08-08 20:02:57 +00001377
Daniel Dunbar79f302e2009-08-07 21:01:44 +00001378/// EmitMatchRegisterName - Emit the function to match a string to the target
1379/// specific register enum.
1380static void EmitMatchRegisterName(CodeGenTarget &Target, Record *AsmParser,
1381 raw_ostream &OS) {
Daniel Dunbarb0e6abe2009-08-08 21:22:41 +00001382 // Construct the match list.
Chris Lattner042926f2009-08-08 20:02:57 +00001383 std::vector<StringPair> Matches;
Daniel Dunbarb0e6abe2009-08-08 21:22:41 +00001384 for (unsigned i = 0, e = Target.getRegisters().size(); i != e; ++i) {
1385 const CodeGenRegister &Reg = Target.getRegisters()[i];
Daniel Dunbar2f9876b2009-07-17 18:51:11 +00001386 if (Reg.TheDef->getValueAsString("AsmName").empty())
1387 continue;
1388
Chris Lattner042926f2009-08-08 20:02:57 +00001389 Matches.push_back(StringPair(Reg.TheDef->getValueAsString("AsmName"),
Daniel Dunbarb0e6abe2009-08-08 21:22:41 +00001390 "return " + utostr(i + 1) + ";"));
Daniel Dunbar2f9876b2009-07-17 18:51:11 +00001391 }
Chris Lattner042926f2009-08-08 20:02:57 +00001392
Sean Callananef372de2010-01-23 00:40:33 +00001393 OS << "static unsigned MatchRegisterName(const StringRef &Name) {\n";
Daniel Dunbarb0e6abe2009-08-08 21:22:41 +00001394
Chris Lattner042926f2009-08-08 20:02:57 +00001395 EmitStringMatcher("Name", Matches, OS);
1396
Daniel Dunbarb0e6abe2009-08-08 21:22:41 +00001397 OS << " return 0;\n";
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001398 OS << "}\n\n";
Daniel Dunbar79f302e2009-08-07 21:01:44 +00001399}
Daniel Dunbara54716c2009-07-31 02:32:59 +00001400
Daniel Dunbar79f302e2009-08-07 21:01:44 +00001401void AsmMatcherEmitter::run(raw_ostream &OS) {
1402 CodeGenTarget Target;
1403 Record *AsmParser = Target.getAsmParser();
1404 std::string ClassName = AsmParser->getValueAsString("AsmParserClassName");
1405
Daniel Dunbar378bee92009-08-08 07:50:56 +00001406 // Compute the information on the instructions to match.
Daniel Dunbara6d04732009-08-11 20:59:47 +00001407 AsmMatcherInfo Info(AsmParser);
Daniel Dunbar378bee92009-08-08 07:50:56 +00001408 Info.BuildInfo(Target);
Daniel Dunbara54716c2009-07-31 02:32:59 +00001409
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +00001410 // Sort the instruction table using the partial order on classes.
1411 std::sort(Info.Instructions.begin(), Info.Instructions.end(),
1412 less_ptr<InstructionInfo>());
1413
Daniel Dunbarce82b992009-08-08 05:24:34 +00001414 DEBUG_WITH_TYPE("instruction_info", {
Daniel Dunbar378bee92009-08-08 07:50:56 +00001415 for (std::vector<InstructionInfo*>::iterator
1416 it = Info.Instructions.begin(), ie = Info.Instructions.end();
1417 it != ie; ++it)
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001418 (*it)->dump();
1419 });
Daniel Dunbara54716c2009-07-31 02:32:59 +00001420
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +00001421 // Check for ambiguous instructions.
1422 unsigned NumAmbiguous = 0;
Daniel Dunbar33eec5d2009-08-09 06:05:33 +00001423 for (unsigned i = 0, e = Info.Instructions.size(); i != e; ++i) {
1424 for (unsigned j = i + 1; j != e; ++j) {
1425 InstructionInfo &A = *Info.Instructions[i];
1426 InstructionInfo &B = *Info.Instructions[j];
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +00001427
Daniel Dunbar33eec5d2009-08-09 06:05:33 +00001428 if (A.CouldMatchAmiguouslyWith(B)) {
1429 DEBUG_WITH_TYPE("ambiguous_instrs", {
1430 errs() << "warning: ambiguous instruction match:\n";
1431 A.dump();
1432 errs() << "\nis incomparable with:\n";
1433 B.dump();
1434 errs() << "\n\n";
1435 });
1436 ++NumAmbiguous;
1437 }
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +00001438 }
1439 }
1440 if (NumAmbiguous)
1441 DEBUG_WITH_TYPE("ambiguous_instrs", {
1442 errs() << "warning: " << NumAmbiguous
1443 << " ambiguous instructions!\n";
1444 });
1445
Daniel Dunbar35303e32009-08-11 23:23:44 +00001446 // Write the output.
1447
1448 EmitSourceFileHeader("Assembly Matcher Source Fragment", OS);
1449
1450 // Emit the function to match a register name to number.
1451 EmitMatchRegisterName(Target, AsmParser, OS);
Sean Callananef372de2010-01-23 00:40:33 +00001452
1453 OS << "#ifndef REGISTERS_ONLY\n\n";
Daniel Dunbar35303e32009-08-11 23:23:44 +00001454
Daniel Dunbar9c1feeb2009-08-09 04:00:06 +00001455 // Generate the unified function to convert operands into an MCInst.
1456 EmitConvertToMCInst(Target, Info.Instructions, OS);
Daniel Dunbara54716c2009-07-31 02:32:59 +00001457
Daniel Dunbar378bee92009-08-08 07:50:56 +00001458 // Emit the enumeration for classes which participate in matching.
1459 EmitMatchClassEnumeration(Target, Info.Classes, OS);
Daniel Dunbara54716c2009-07-31 02:32:59 +00001460
Daniel Dunbar378bee92009-08-08 07:50:56 +00001461 // Emit the routine to match token strings to their match class.
1462 EmitMatchTokenString(Target, Info.Classes, OS);
1463
1464 // Emit the routine to classify an operand.
Daniel Dunbar171a05b2009-08-11 02:59:53 +00001465 EmitClassifyOperand(Target, Info, OS);
Daniel Dunbar378bee92009-08-08 07:50:56 +00001466
Daniel Dunbar14a77d42009-08-10 16:05:47 +00001467 // Emit the subclass predicate routine.
1468 EmitIsSubclass(Target, Info.Classes, OS);
1469
Daniel Dunbar378bee92009-08-08 07:50:56 +00001470 // Finally, build the match function.
1471
1472 size_t MaxNumOperands = 0;
1473 for (std::vector<InstructionInfo*>::const_iterator it =
1474 Info.Instructions.begin(), ie = Info.Instructions.end();
1475 it != ie; ++it)
1476 MaxNumOperands = std::max(MaxNumOperands, (*it)->Operands.size());
1477
Daniel Dunbara54716c2009-07-31 02:32:59 +00001478 OS << "bool " << Target.getName() << ClassName
Chris Lattner22f480d2010-01-14 22:21:20 +00001479 << "::\nMatchInstruction(const SmallVectorImpl<MCParsedAsmOperand*> "
1480 "&Operands,\n MCInst &Inst) {\n";
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001481
Daniel Dunbar378bee92009-08-08 07:50:56 +00001482 // Emit the static match table; unused classes get initalized to 0 which is
1483 // guaranteed to be InvalidMatchClass.
1484 //
1485 // FIXME: We can reduce the size of this table very easily. First, we change
1486 // it so that store the kinds in separate bit-fields for each index, which
1487 // only needs to be the max width used for classes at that index (we also need
1488 // to reject based on this during classification). If we then make sure to
1489 // order the match kinds appropriately (putting mnemonics last), then we
1490 // should only end up using a few bits for each class, especially the ones
1491 // following the mnemonic.
Chris Lattnerde024f82009-08-08 19:15:25 +00001492 OS << " static const struct MatchEntry {\n";
Daniel Dunbar378bee92009-08-08 07:50:56 +00001493 OS << " unsigned Opcode;\n";
1494 OS << " ConversionKind ConvertFn;\n";
1495 OS << " MatchClassKind Classes[" << MaxNumOperands << "];\n";
1496 OS << " } MatchTable[" << Info.Instructions.size() << "] = {\n";
1497
1498 for (std::vector<InstructionInfo*>::const_iterator it =
1499 Info.Instructions.begin(), ie = Info.Instructions.end();
1500 it != ie; ++it) {
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001501 InstructionInfo &II = **it;
1502
Daniel Dunbar378bee92009-08-08 07:50:56 +00001503 OS << " { " << Target.getName() << "::" << II.InstrName
1504 << ", " << II.ConversionFnKind << ", { ";
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001505 for (unsigned i = 0, e = II.Operands.size(); i != e; ++i) {
1506 InstructionInfo::Operand &Op = II.Operands[i];
1507
Daniel Dunbar378bee92009-08-08 07:50:56 +00001508 if (i) OS << ", ";
1509 OS << Op.Class->Name;
Daniel Dunbarfe6759e2009-08-07 08:26:05 +00001510 }
Daniel Dunbar378bee92009-08-08 07:50:56 +00001511 OS << " } },\n";
Daniel Dunbara54716c2009-07-31 02:32:59 +00001512 }
1513
Daniel Dunbar378bee92009-08-08 07:50:56 +00001514 OS << " };\n\n";
1515
1516 // Emit code to compute the class list for this operand vector.
1517 OS << " // Eliminate obvious mismatches.\n";
1518 OS << " if (Operands.size() > " << MaxNumOperands << ")\n";
1519 OS << " return true;\n\n";
1520
1521 OS << " // Compute the class list for this operand vector.\n";
1522 OS << " MatchClassKind Classes[" << MaxNumOperands << "];\n";
1523 OS << " for (unsigned i = 0, e = Operands.size(); i != e; ++i) {\n";
1524 OS << " Classes[i] = ClassifyOperand(Operands[i]);\n\n";
1525
1526 OS << " // Check for invalid operands before matching.\n";
1527 OS << " if (Classes[i] == InvalidMatchClass)\n";
1528 OS << " return true;\n";
1529 OS << " }\n\n";
1530
1531 OS << " // Mark unused classes.\n";
1532 OS << " for (unsigned i = Operands.size(), e = " << MaxNumOperands << "; "
1533 << "i != e; ++i)\n";
1534 OS << " Classes[i] = InvalidMatchClass;\n\n";
1535
1536 // Emit code to search the table.
1537 OS << " // Search the table.\n";
Chris Lattnerac3daf92009-08-08 19:16:05 +00001538 OS << " for (const MatchEntry *it = MatchTable, "
Daniel Dunbar378bee92009-08-08 07:50:56 +00001539 << "*ie = MatchTable + " << Info.Instructions.size()
1540 << "; it != ie; ++it) {\n";
1541 for (unsigned i = 0; i != MaxNumOperands; ++i) {
Daniel Dunbar14a77d42009-08-10 16:05:47 +00001542 OS << " if (!IsSubclass(Classes["
1543 << i << "], it->Classes[" << i << "]))\n";
Daniel Dunbar378bee92009-08-08 07:50:56 +00001544 OS << " continue;\n";
1545 }
1546 OS << "\n";
1547 OS << " return ConvertToMCInst(it->ConvertFn, Inst, "
1548 << "it->Opcode, Operands);\n";
1549 OS << " }\n\n";
1550
Daniel Dunbara54716c2009-07-31 02:32:59 +00001551 OS << " return true;\n";
1552 OS << "}\n\n";
Sean Callananef372de2010-01-23 00:40:33 +00001553
1554 OS << "#endif // REGISTERS_ONLY\n";
Daniel Dunbar3f6e3ff2009-07-11 19:39:44 +00001555}