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Chris Lattner4c95a502018-06-23 16:03:42 -07001//===- AsmPrinter.cpp - MLIR Assembly Printer Implementation --------------===//
2//
3// Copyright 2019 The MLIR Authors.
4//
5// Licensed under the Apache License, Version 2.0 (the "License");
6// you may not use this file except in compliance with the License.
7// You may obtain a copy of the License at
8//
9// http://www.apache.org/licenses/LICENSE-2.0
10//
11// Unless required by applicable law or agreed to in writing, software
12// distributed under the License is distributed on an "AS IS" BASIS,
13// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14// See the License for the specific language governing permissions and
15// limitations under the License.
16// =============================================================================
17//
18// This file implements the MLIR AsmPrinter class, which is used to implement
19// the various print() methods on the core IR objects.
20//
21//===----------------------------------------------------------------------===//
22
Uday Bondhugulafaf37dd2018-06-29 18:09:29 -070023#include "mlir/IR/AffineExpr.h"
24#include "mlir/IR/AffineMap.h"
Chris Lattner7121b802018-07-04 20:45:39 -070025#include "mlir/IR/Attributes.h"
Chris Lattner4c95a502018-06-23 16:03:42 -070026#include "mlir/IR/CFGFunction.h"
Tatiana Shpeismanc96b5872018-06-28 17:02:32 -070027#include "mlir/IR/MLFunction.h"
Chris Lattner4c95a502018-06-23 16:03:42 -070028#include "mlir/IR/Module.h"
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -070029#include "mlir/IR/OpImplementation.h"
Chris Lattnerff0d5902018-07-05 09:12:11 -070030#include "mlir/IR/OperationSet.h"
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -070031#include "mlir/IR/Statements.h"
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -070032#include "mlir/IR/StmtVisitor.h"
Chris Lattner4c95a502018-06-23 16:03:42 -070033#include "mlir/IR/Types.h"
34#include "mlir/Support/STLExtras.h"
Chris Lattner4c95a502018-06-23 16:03:42 -070035#include "llvm/ADT/DenseMap.h"
Uday Bondhugulafaf37dd2018-06-29 18:09:29 -070036#include "llvm/Support/raw_ostream.h"
Chris Lattner4c95a502018-06-23 16:03:42 -070037using namespace mlir;
38
MLIR Team54b55a22018-07-18 10:16:05 -070039void Identifier::print(raw_ostream &os) const { os << str(); }
Chris Lattner4c95a502018-06-23 16:03:42 -070040
MLIR Team54b55a22018-07-18 10:16:05 -070041void Identifier::dump() const { print(llvm::errs()); }
Chris Lattner7121b802018-07-04 20:45:39 -070042
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -070043OpAsmPrinter::~OpAsmPrinter() {}
44
Chris Lattner4c95a502018-06-23 16:03:42 -070045//===----------------------------------------------------------------------===//
Chris Lattner4fd59b02018-07-20 09:35:47 -070046// ModuleState
MLIR Team4718bc92018-07-17 16:56:54 -070047//===----------------------------------------------------------------------===//
48
49namespace {
MLIR Team54b55a22018-07-18 10:16:05 -070050class ModuleState {
51public:
Chris Lattner4fd59b02018-07-20 09:35:47 -070052 /// This is the operation set for the current context if it is knowable (a
53 /// context could be determined), otherwise this is null.
54 OperationSet *const operationSet;
MLIR Team4718bc92018-07-17 16:56:54 -070055
Chris Lattner4fd59b02018-07-20 09:35:47 -070056 explicit ModuleState(MLIRContext *context)
57 : operationSet(context ? &OperationSet::get(context) : nullptr) {}
58
59 // Initializes module state, populating affine map state.
MLIR Team4718bc92018-07-17 16:56:54 -070060 void initialize(const Module *module);
61
MLIR Team54b55a22018-07-18 10:16:05 -070062 int getAffineMapId(const AffineMap *affineMap) const {
MLIR Team4718bc92018-07-17 16:56:54 -070063 auto it = affineMapIds.find(affineMap);
64 if (it == affineMapIds.end()) {
65 return -1;
66 }
67 return it->second;
68 }
69
James Molloyc4666722018-07-24 09:48:31 -070070 ArrayRef<const AffineMap *> getAffineMapIds() const { return affineMapsById; }
Chris Lattner4fd59b02018-07-20 09:35:47 -070071
MLIR Team54b55a22018-07-18 10:16:05 -070072private:
Chris Lattner4fd59b02018-07-20 09:35:47 -070073 void recordAffineMapReference(const AffineMap *affineMap) {
74 if (affineMapIds.count(affineMap) == 0) {
James Molloyc4666722018-07-24 09:48:31 -070075 affineMapIds[affineMap] = affineMapsById.size();
76 affineMapsById.push_back(affineMap);
Chris Lattner4fd59b02018-07-20 09:35:47 -070077 }
78 }
79
MLIR Team4718bc92018-07-17 16:56:54 -070080 // Visit functions.
81 void visitFunction(const Function *fn);
82 void visitExtFunction(const ExtFunction *fn);
83 void visitCFGFunction(const CFGFunction *fn);
84 void visitMLFunction(const MLFunction *fn);
85 void visitType(const Type *type);
MLIR Teamb61885d2018-07-18 16:29:21 -070086 void visitAttribute(const Attribute *attr);
87 void visitOperation(const Operation *op);
88
MLIR Team54b55a22018-07-18 10:16:05 -070089 DenseMap<const AffineMap *, int> affineMapIds;
James Molloyc4666722018-07-24 09:48:31 -070090 std::vector<const AffineMap *> affineMapsById;
MLIR Team4718bc92018-07-17 16:56:54 -070091};
James Molloy87d81022018-07-23 11:44:40 -070092} // end anonymous namespace
MLIR Team4718bc92018-07-17 16:56:54 -070093
94// TODO Support visiting other types/instructions when implemented.
95void ModuleState::visitType(const Type *type) {
96 if (type->getKind() == Type::Kind::Function) {
97 // Visit input and result types for functions.
98 auto *funcType = cast<FunctionType>(type);
MLIR Team54b55a22018-07-18 10:16:05 -070099 for (auto *input : funcType->getInputs()) {
MLIR Team4718bc92018-07-17 16:56:54 -0700100 visitType(input);
101 }
MLIR Team54b55a22018-07-18 10:16:05 -0700102 for (auto *result : funcType->getResults()) {
MLIR Team4718bc92018-07-17 16:56:54 -0700103 visitType(result);
104 }
105 } else if (type->getKind() == Type::Kind::MemRef) {
106 // Visit affine maps in memref type.
107 auto *memref = cast<MemRefType>(type);
MLIR Team54b55a22018-07-18 10:16:05 -0700108 for (AffineMap *map : memref->getAffineMaps()) {
MLIR Team4718bc92018-07-17 16:56:54 -0700109 recordAffineMapReference(map);
110 }
111 }
112}
113
MLIR Teamb61885d2018-07-18 16:29:21 -0700114void ModuleState::visitAttribute(const Attribute *attr) {
115 if (isa<AffineMapAttr>(attr)) {
116 recordAffineMapReference(cast<AffineMapAttr>(attr)->getValue());
117 } else if (isa<ArrayAttr>(attr)) {
118 for (auto elt : cast<ArrayAttr>(attr)->getValue()) {
119 visitAttribute(elt);
120 }
121 }
122}
123
124void ModuleState::visitOperation(const Operation *op) {
125 for (auto elt : op->getAttrs()) {
126 visitAttribute(elt.second);
127 }
128}
129
MLIR Team4718bc92018-07-17 16:56:54 -0700130void ModuleState::visitExtFunction(const ExtFunction *fn) {
131 visitType(fn->getType());
132}
133
134void ModuleState::visitCFGFunction(const CFGFunction *fn) {
135 visitType(fn->getType());
MLIR Teamb61885d2018-07-18 16:29:21 -0700136 for (auto &block : *fn) {
137 for (auto &op : block.getOperations()) {
138 visitOperation(&op);
139 }
140 }
MLIR Team4718bc92018-07-17 16:56:54 -0700141}
142
143void ModuleState::visitMLFunction(const MLFunction *fn) {
144 visitType(fn->getType());
MLIR Teamb61885d2018-07-18 16:29:21 -0700145 // TODO Visit function body statements (and attributes if required).
MLIR Team4718bc92018-07-17 16:56:54 -0700146}
147
148void ModuleState::visitFunction(const Function *fn) {
149 switch (fn->getKind()) {
MLIR Team54b55a22018-07-18 10:16:05 -0700150 case Function::Kind::ExtFunc:
151 return visitExtFunction(cast<ExtFunction>(fn));
152 case Function::Kind::CFGFunc:
153 return visitCFGFunction(cast<CFGFunction>(fn));
154 case Function::Kind::MLFunc:
155 return visitMLFunction(cast<MLFunction>(fn));
MLIR Team4718bc92018-07-17 16:56:54 -0700156 }
157}
158
Chris Lattner4fd59b02018-07-20 09:35:47 -0700159// Initializes module state, populating affine map state.
160void ModuleState::initialize(const Module *module) {
Chris Lattnera8e47672018-07-25 14:08:16 -0700161 for (auto &fn : *module) {
162 visitFunction(&fn);
Chris Lattner4fd59b02018-07-20 09:35:47 -0700163 }
164}
165
166//===----------------------------------------------------------------------===//
167// ModulePrinter
168//===----------------------------------------------------------------------===//
169
170namespace {
171class ModulePrinter {
172public:
173 ModulePrinter(raw_ostream &os, ModuleState &state) : os(os), state(state) {}
174 explicit ModulePrinter(const ModulePrinter &printer)
175 : os(printer.os), state(printer.state) {}
176
177 template <typename Container, typename UnaryFunctor>
178 inline void interleaveComma(const Container &c, UnaryFunctor each_fn) const {
179 interleave(c.begin(), c.end(), each_fn, [&]() { os << ", "; });
180 }
181
182 void print(const Module *module);
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700183 void printAttribute(const Attribute *attr);
184 void printType(const Type *type);
Chris Lattner4fd59b02018-07-20 09:35:47 -0700185 void print(const Function *fn);
186 void print(const ExtFunction *fn);
187 void print(const CFGFunction *fn);
188 void print(const MLFunction *fn);
189
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700190 void printAffineMap(const AffineMap *map);
191 void printAffineExpr(const AffineExpr *expr);
Chris Lattner4fd59b02018-07-20 09:35:47 -0700192
193protected:
194 raw_ostream &os;
195 ModuleState &state;
196
197 void printFunctionSignature(const Function *fn);
198 void printAffineMapId(int affineMapId) const;
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700199 void printAffineMapReference(const AffineMap *affineMap);
Chris Lattner4fd59b02018-07-20 09:35:47 -0700200
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700201 void printAffineBinaryOpExpr(const AffineBinaryOpExpr *expr);
Chris Lattner4fd59b02018-07-20 09:35:47 -0700202};
203} // end anonymous namespace
204
MLIR Team4718bc92018-07-17 16:56:54 -0700205// Prints function with initialized module state.
Chris Lattner4fd59b02018-07-20 09:35:47 -0700206void ModulePrinter::print(const Function *fn) {
MLIR Team4718bc92018-07-17 16:56:54 -0700207 switch (fn->getKind()) {
MLIR Team54b55a22018-07-18 10:16:05 -0700208 case Function::Kind::ExtFunc:
209 return print(cast<ExtFunction>(fn));
210 case Function::Kind::CFGFunc:
211 return print(cast<CFGFunction>(fn));
212 case Function::Kind::MLFunc:
213 return print(cast<MLFunction>(fn));
MLIR Team4718bc92018-07-17 16:56:54 -0700214 }
215}
216
217// Prints affine map identifier.
Chris Lattner4fd59b02018-07-20 09:35:47 -0700218void ModulePrinter::printAffineMapId(int affineMapId) const {
MLIR Team4718bc92018-07-17 16:56:54 -0700219 os << "#map" << affineMapId;
220}
221
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700222void ModulePrinter::printAffineMapReference(const AffineMap *affineMap) {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700223 int mapId = state.getAffineMapId(affineMap);
MLIR Teamb61885d2018-07-18 16:29:21 -0700224 if (mapId >= 0) {
225 // Map will be printed at top of module so print reference to its id.
226 printAffineMapId(mapId);
227 } else {
228 // Map not in module state so print inline.
229 affineMap->print(os);
230 }
231}
232
Chris Lattner4fd59b02018-07-20 09:35:47 -0700233void ModulePrinter::print(const Module *module) {
James Molloyc4666722018-07-24 09:48:31 -0700234 for (const auto &map : state.getAffineMapIds()) {
235 printAffineMapId(state.getAffineMapId(map));
MLIR Team4718bc92018-07-17 16:56:54 -0700236 os << " = ";
James Molloyc4666722018-07-24 09:48:31 -0700237 map->print(os);
MLIR Team4718bc92018-07-17 16:56:54 -0700238 os << '\n';
239 }
Chris Lattnera8e47672018-07-25 14:08:16 -0700240 for (auto const &fn : *module)
241 print(&fn);
MLIR Team4718bc92018-07-17 16:56:54 -0700242}
243
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700244void ModulePrinter::printAttribute(const Attribute *attr) {
MLIR Teamb61885d2018-07-18 16:29:21 -0700245 switch (attr->getKind()) {
246 case Attribute::Kind::Bool:
247 os << (cast<BoolAttr>(attr)->getValue() ? "true" : "false");
248 break;
249 case Attribute::Kind::Integer:
250 os << cast<IntegerAttr>(attr)->getValue();
251 break;
252 case Attribute::Kind::Float:
253 // FIXME: this isn't precise, we should print with a hex format.
254 os << cast<FloatAttr>(attr)->getValue();
255 break;
256 case Attribute::Kind::String:
257 // FIXME: should escape the string.
258 os << '"' << cast<StringAttr>(attr)->getValue() << '"';
259 break;
260 case Attribute::Kind::Array: {
261 auto elts = cast<ArrayAttr>(attr)->getValue();
262 os << '[';
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700263 interleaveComma(elts, [&](Attribute *attr) { printAttribute(attr); });
MLIR Teamb61885d2018-07-18 16:29:21 -0700264 os << ']';
265 break;
266 }
267 case Attribute::Kind::AffineMap:
268 printAffineMapReference(cast<AffineMapAttr>(attr)->getValue());
269 break;
270 }
271}
272
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700273void ModulePrinter::printType(const Type *type) {
MLIR Team4718bc92018-07-17 16:56:54 -0700274 switch (type->getKind()) {
MLIR Team54b55a22018-07-18 10:16:05 -0700275 case Type::Kind::AffineInt:
276 os << "affineint";
277 return;
278 case Type::Kind::BF16:
279 os << "bf16";
280 return;
281 case Type::Kind::F16:
282 os << "f16";
283 return;
284 case Type::Kind::F32:
285 os << "f32";
286 return;
287 case Type::Kind::F64:
288 os << "f64";
289 return;
MLIR Team4718bc92018-07-17 16:56:54 -0700290
291 case Type::Kind::Integer: {
292 auto *integer = cast<IntegerType>(type);
293 os << 'i' << integer->getWidth();
294 return;
295 }
296 case Type::Kind::Function: {
297 auto *func = cast<FunctionType>(type);
298 os << '(';
Chris Lattner413db6a2018-07-25 12:55:50 -0700299 interleaveComma(func->getInputs(), [&](Type *type) { printType(type); });
MLIR Team4718bc92018-07-17 16:56:54 -0700300 os << ") -> ";
301 auto results = func->getResults();
302 if (results.size() == 1)
303 os << *results[0];
304 else {
305 os << '(';
Chris Lattner413db6a2018-07-25 12:55:50 -0700306 interleaveComma(results, [&](Type *type) { printType(type); });
MLIR Team4718bc92018-07-17 16:56:54 -0700307 os << ')';
308 }
309 return;
310 }
311 case Type::Kind::Vector: {
312 auto *v = cast<VectorType>(type);
313 os << "vector<";
James Molloy87d81022018-07-23 11:44:40 -0700314 for (auto dim : v->getShape())
315 os << dim << 'x';
MLIR Team4718bc92018-07-17 16:56:54 -0700316 os << *v->getElementType() << '>';
317 return;
318 }
319 case Type::Kind::RankedTensor: {
320 auto *v = cast<RankedTensorType>(type);
321 os << "tensor<";
322 for (auto dim : v->getShape()) {
323 if (dim < 0)
324 os << '?';
325 else
326 os << dim;
327 os << 'x';
328 }
329 os << *v->getElementType() << '>';
330 return;
331 }
332 case Type::Kind::UnrankedTensor: {
333 auto *v = cast<UnrankedTensorType>(type);
Chris Lattner413db6a2018-07-25 12:55:50 -0700334 os << "tensor<??";
335 printType(v->getElementType());
336 os << '>';
MLIR Team4718bc92018-07-17 16:56:54 -0700337 return;
338 }
339 case Type::Kind::MemRef: {
340 auto *v = cast<MemRefType>(type);
341 os << "memref<";
342 for (auto dim : v->getShape()) {
343 if (dim < 0)
344 os << '?';
345 else
346 os << dim;
347 os << 'x';
348 }
Chris Lattner413db6a2018-07-25 12:55:50 -0700349 printType(v->getElementType());
MLIR Team4718bc92018-07-17 16:56:54 -0700350 for (auto map : v->getAffineMaps()) {
351 os << ", ";
MLIR Teamb61885d2018-07-18 16:29:21 -0700352 printAffineMapReference(map);
MLIR Team4718bc92018-07-17 16:56:54 -0700353 }
Chris Lattner413db6a2018-07-25 12:55:50 -0700354 // Only print the memory space if it is the non-default one.
355 if (v->getMemorySpace())
356 os << ", " << v->getMemorySpace();
MLIR Team4718bc92018-07-17 16:56:54 -0700357 os << '>';
358 return;
359 }
360 }
361}
362
363//===----------------------------------------------------------------------===//
Chris Lattner4fd59b02018-07-20 09:35:47 -0700364// Affine expressions and maps
365//===----------------------------------------------------------------------===//
366
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700367void ModulePrinter::printAffineExpr(const AffineExpr *expr) {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700368 switch (expr->getKind()) {
369 case AffineExpr::Kind::SymbolId:
370 os << 's' << cast<AffineSymbolExpr>(expr)->getPosition();
371 return;
372 case AffineExpr::Kind::DimId:
373 os << 'd' << cast<AffineDimExpr>(expr)->getPosition();
374 return;
375 case AffineExpr::Kind::Constant:
376 os << cast<AffineConstantExpr>(expr)->getValue();
377 return;
378 case AffineExpr::Kind::Add:
379 case AffineExpr::Kind::Mul:
380 case AffineExpr::Kind::FloorDiv:
381 case AffineExpr::Kind::CeilDiv:
382 case AffineExpr::Kind::Mod:
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700383 return printAffineBinaryOpExpr(cast<AffineBinaryOpExpr>(expr));
Chris Lattner4fd59b02018-07-20 09:35:47 -0700384 }
385}
386
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700387void ModulePrinter::printAffineBinaryOpExpr(const AffineBinaryOpExpr *expr) {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700388 if (expr->getKind() != AffineExpr::Kind::Add) {
389 os << '(';
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700390 printAffineExpr(expr->getLHS());
Chris Lattner4fd59b02018-07-20 09:35:47 -0700391 switch (expr->getKind()) {
392 case AffineExpr::Kind::Mul:
393 os << " * ";
394 break;
395 case AffineExpr::Kind::FloorDiv:
396 os << " floordiv ";
397 break;
398 case AffineExpr::Kind::CeilDiv:
399 os << " ceildiv ";
400 break;
401 case AffineExpr::Kind::Mod:
402 os << " mod ";
403 break;
404 default:
405 llvm_unreachable("unexpected affine binary op expression");
406 }
407
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700408 printAffineExpr(expr->getRHS());
Chris Lattner4fd59b02018-07-20 09:35:47 -0700409 os << ')';
410 return;
411 }
412
413 // Print out special "pretty" forms for add.
414 os << '(';
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700415 printAffineExpr(expr->getLHS());
Chris Lattner4fd59b02018-07-20 09:35:47 -0700416
417 // Pretty print addition to a product that has a negative operand as a
418 // subtraction.
419 if (auto *rhs = dyn_cast<AffineBinaryOpExpr>(expr->getRHS())) {
420 if (rhs->getKind() == AffineExpr::Kind::Mul) {
421 if (auto *rrhs = dyn_cast<AffineConstantExpr>(rhs->getRHS())) {
422 if (rrhs->getValue() < 0) {
423 os << " - (";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700424 printAffineExpr(rhs->getLHS());
Chris Lattner4fd59b02018-07-20 09:35:47 -0700425 os << " * " << -rrhs->getValue() << "))";
426 return;
427 }
428 }
429 }
430 }
431
432 // Pretty print addition to a negative number as a subtraction.
433 if (auto *rhs = dyn_cast<AffineConstantExpr>(expr->getRHS())) {
434 if (rhs->getValue() < 0) {
435 os << " - " << -rhs->getValue() << ")";
436 return;
437 }
438 }
439
440 os << " + ";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700441 printAffineExpr(expr->getRHS());
Chris Lattner4fd59b02018-07-20 09:35:47 -0700442 os << ')';
443}
444
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700445void ModulePrinter::printAffineMap(const AffineMap *map) {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700446 // Dimension identifiers.
447 os << '(';
448 for (int i = 0; i < (int)map->getNumDims() - 1; i++)
449 os << "d" << i << ", ";
450 if (map->getNumDims() >= 1)
451 os << "d" << map->getNumDims() - 1;
452 os << ")";
453
454 // Symbolic identifiers.
455 if (map->getNumSymbols() >= 1) {
456 os << " [";
457 for (int i = 0; i < (int)map->getNumSymbols() - 1; i++)
458 os << "s" << i << ", ";
459 if (map->getNumSymbols() >= 1)
460 os << "s" << map->getNumSymbols() - 1;
461 os << "]";
462 }
463
464 // AffineMap should have at least one result.
465 assert(!map->getResults().empty());
466 // Result affine expressions.
467 os << " -> (";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700468 interleaveComma(map->getResults(),
469 [&](AffineExpr *expr) { printAffineExpr(expr); });
Chris Lattner4fd59b02018-07-20 09:35:47 -0700470 os << ")";
471
472 if (!map->isBounded()) {
473 return;
474 }
475
476 // Print range sizes for bounded affine maps.
477 os << " size (";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700478 interleaveComma(map->getRangeSizes(),
479 [&](AffineExpr *expr) { printAffineExpr(expr); });
Chris Lattner4fd59b02018-07-20 09:35:47 -0700480 os << ")";
481}
482
483//===----------------------------------------------------------------------===//
Chris Lattner4c95a502018-06-23 16:03:42 -0700484// Function printing
485//===----------------------------------------------------------------------===//
486
Chris Lattner4fd59b02018-07-20 09:35:47 -0700487void ModulePrinter::printFunctionSignature(const Function *fn) {
Chris Lattner4c95a502018-06-23 16:03:42 -0700488 auto type = fn->getType();
489
490 os << "@" << fn->getName() << '(';
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700491 interleaveComma(type->getInputs(),
492 [&](Type *eltType) { printType(eltType); });
Chris Lattner4c95a502018-06-23 16:03:42 -0700493 os << ')';
494
495 switch (type->getResults().size()) {
MLIR Team54b55a22018-07-18 10:16:05 -0700496 case 0:
497 break;
Chris Lattner4c95a502018-06-23 16:03:42 -0700498 case 1:
MLIR Team4718bc92018-07-17 16:56:54 -0700499 os << " -> ";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700500 printType(type->getResults()[0]);
Chris Lattner4c95a502018-06-23 16:03:42 -0700501 break;
502 default:
503 os << " -> (";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700504 interleaveComma(type->getResults(),
505 [&](Type *eltType) { printType(eltType); });
Chris Lattner4c95a502018-06-23 16:03:42 -0700506 os << ')';
507 break;
508 }
509}
510
Chris Lattner4fd59b02018-07-20 09:35:47 -0700511void ModulePrinter::print(const ExtFunction *fn) {
Chris Lattner4c95a502018-06-23 16:03:42 -0700512 os << "extfunc ";
Chris Lattner4fd59b02018-07-20 09:35:47 -0700513 printFunctionSignature(fn);
MLIR Team54b55a22018-07-18 10:16:05 -0700514 os << '\n';
Chris Lattner4c95a502018-06-23 16:03:42 -0700515}
516
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700517namespace {
518
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700519// FunctionPrinter contains common functionality for printing
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700520// CFG and ML functions.
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700521class FunctionPrinter : public ModulePrinter, private OpAsmPrinter {
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700522public:
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700523 FunctionPrinter(const ModulePrinter &other) : ModulePrinter(other) {}
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700524
525 void printOperation(const Operation *op);
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700526 void printDefaultOp(const Operation *op);
527
528 // Implement OpAsmPrinter.
529 raw_ostream &getStream() const { return os; }
530 void printType(const Type *type) { ModulePrinter::printType(type); }
531 void printAttribute(const Attribute *attr) {
532 ModulePrinter::printAttribute(attr);
533 }
534 void printAffineMap(const AffineMap *map) {
535 return ModulePrinter::printAffineMap(map);
536 }
537 void printAffineExpr(const AffineExpr *expr) {
538 return ModulePrinter::printAffineExpr(expr);
539 }
540
541 void printOperand(const SSAValue *value) { printValueID(value); }
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700542
543protected:
Chris Lattnerf8cce872018-07-20 09:28:54 -0700544 void numberValueID(const SSAValue *value) {
545 assert(!valueIDs.count(value) && "Value numbered multiple times");
546 valueIDs[value] = nextValueID++;
547 }
548
Chris Lattner6119d382018-07-20 18:41:34 -0700549 void printValueID(const SSAValue *value,
550 bool dontPrintResultNo = false) const {
551 int resultNo = -1;
552 auto lookupValue = value;
553
554 // If this is a reference to the result of a multi-result instruction, print
555 // out the # identifier and make sure to map our lookup to the first result
556 // of the instruction.
557 if (auto *result = dyn_cast<InstResult>(value)) {
558 if (result->getOwner()->getNumResults() != 1) {
559 resultNo = result->getResultNumber();
560 lookupValue = result->getOwner()->getResult(0);
561 }
562 }
563
564 auto it = valueIDs.find(lookupValue);
565 if (it == valueIDs.end()) {
Chris Lattnerf8cce872018-07-20 09:28:54 -0700566 os << "<<INVALID SSA VALUE>>";
Chris Lattner6119d382018-07-20 18:41:34 -0700567 return;
568 }
569
570 os << '%' << it->getSecond();
571 if (resultNo != -1 && !dontPrintResultNo)
572 os << '#' << resultNo;
Chris Lattnerf8cce872018-07-20 09:28:54 -0700573 }
574
575private:
576 /// This is the value ID for each SSA value in the current function.
577 DenseMap<const SSAValue *, unsigned> valueIDs;
578 unsigned nextValueID = 0;
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700579};
James Molloy87d81022018-07-23 11:44:40 -0700580} // end anonymous namespace
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700581
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700582void FunctionPrinter::printOperation(const Operation *op) {
Chris Lattnerac591f12018-07-22 21:02:26 -0700583 if (op->getNumResults()) {
584 printValueID(op->getResult(0), /*dontPrintResultNo*/ true);
585 os << " = ";
Chris Lattnerf8cce872018-07-20 09:28:54 -0700586 }
587
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700588 // Check to see if this is a known operation. If so, use the registered
589 // custom printer hook.
Chris Lattner4fd59b02018-07-20 09:35:47 -0700590 if (auto opInfo = state.operationSet->lookup(op->getName().str())) {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700591 opInfo->printAssembly(op, this);
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700592 return;
593 }
594
Chris Lattnerf8cce872018-07-20 09:28:54 -0700595 // Otherwise use the standard verbose printing approach.
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700596 printDefaultOp(op);
597}
Chris Lattnerf8cce872018-07-20 09:28:54 -0700598
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700599void FunctionPrinter::printDefaultOp(const Operation *op) {
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700600 // TODO: escape name if necessary.
Chris Lattnerf8cce872018-07-20 09:28:54 -0700601 os << "\"" << op->getName().str() << "\"(";
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700602
Chris Lattnerac591f12018-07-22 21:02:26 -0700603 interleaveComma(op->getOperands(),
604 [&](const SSAValue *value) { printValueID(value); });
Chris Lattner7f9cc272018-07-19 08:35:28 -0700605
Chris Lattnerf8cce872018-07-20 09:28:54 -0700606 os << ')';
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700607 auto attrs = op->getAttrs();
608 if (!attrs.empty()) {
609 os << '{';
Chris Lattner4fd59b02018-07-20 09:35:47 -0700610 interleaveComma(attrs, [&](NamedAttribute attr) {
Chris Lattnerf8cce872018-07-20 09:28:54 -0700611 os << attr.first << ": ";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700612 printAttribute(attr.second);
Chris Lattnerf8cce872018-07-20 09:28:54 -0700613 });
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700614 os << '}';
615 }
Chris Lattner3b2ef762018-07-18 15:31:25 -0700616
Chris Lattnerac591f12018-07-22 21:02:26 -0700617 // Print the type signature of the operation.
618 os << " : (";
619 interleaveComma(op->getOperands(),
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700620 [&](const SSAValue *value) { printType(value->getType()); });
Chris Lattnerac591f12018-07-22 21:02:26 -0700621 os << ") -> ";
Chris Lattnerf8cce872018-07-20 09:28:54 -0700622
Chris Lattnerac591f12018-07-22 21:02:26 -0700623 if (op->getNumResults() == 1) {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700624 printType(op->getResult(0)->getType());
Chris Lattnerac591f12018-07-22 21:02:26 -0700625 } else {
626 os << '(';
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700627 interleaveComma(op->getResults(), [&](const SSAValue *result) {
628 printType(result->getType());
629 });
Chris Lattnerac591f12018-07-22 21:02:26 -0700630 os << ')';
Chris Lattnerf8cce872018-07-20 09:28:54 -0700631 }
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700632}
633
Chris Lattner4c95a502018-06-23 16:03:42 -0700634//===----------------------------------------------------------------------===//
635// CFG Function printing
636//===----------------------------------------------------------------------===//
637
638namespace {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700639class CFGFunctionPrinter : public FunctionPrinter {
Chris Lattner4c95a502018-06-23 16:03:42 -0700640public:
Chris Lattner4fd59b02018-07-20 09:35:47 -0700641 CFGFunctionPrinter(const CFGFunction *function, const ModulePrinter &other);
Chris Lattner4c95a502018-06-23 16:03:42 -0700642
643 const CFGFunction *getFunction() const { return function; }
644
645 void print();
646 void print(const BasicBlock *block);
Chris Lattnered65a732018-06-28 20:45:33 -0700647
648 void print(const Instruction *inst);
649 void print(const OperationInst *inst);
650 void print(const ReturnInst *inst);
651 void print(const BranchInst *inst);
James Molloy4f788372018-07-24 15:01:27 -0700652 void print(const CondBranchInst *inst);
Chris Lattner4c95a502018-06-23 16:03:42 -0700653
654 unsigned getBBID(const BasicBlock *block) {
655 auto it = basicBlockIDs.find(block);
656 assert(it != basicBlockIDs.end() && "Block not in this function?");
657 return it->second;
658 }
659
660private:
661 const CFGFunction *function;
MLIR Team54b55a22018-07-18 10:16:05 -0700662 DenseMap<const BasicBlock *, unsigned> basicBlockIDs;
Chris Lattnerf8cce872018-07-20 09:28:54 -0700663
Chris Lattner4fd59b02018-07-20 09:35:47 -0700664 void numberValuesInBlock(const BasicBlock *block);
Chris Lattner4c95a502018-06-23 16:03:42 -0700665};
James Molloy87d81022018-07-23 11:44:40 -0700666} // end anonymous namespace
Chris Lattner4c95a502018-06-23 16:03:42 -0700667
Chris Lattner4fd59b02018-07-20 09:35:47 -0700668CFGFunctionPrinter::CFGFunctionPrinter(const CFGFunction *function,
669 const ModulePrinter &other)
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700670 : FunctionPrinter(other), function(function) {
Chris Lattner4c95a502018-06-23 16:03:42 -0700671 // Each basic block gets a unique ID per function.
672 unsigned blockID = 0;
Chris Lattnerf8cce872018-07-20 09:28:54 -0700673 for (auto &block : *function) {
674 basicBlockIDs[&block] = blockID++;
Chris Lattner4fd59b02018-07-20 09:35:47 -0700675 numberValuesInBlock(&block);
Chris Lattnerf8cce872018-07-20 09:28:54 -0700676 }
677}
678
679/// Number all of the SSA values in the specified basic block.
Chris Lattner4fd59b02018-07-20 09:35:47 -0700680void CFGFunctionPrinter::numberValuesInBlock(const BasicBlock *block) {
James Molloy61a656c2018-07-22 15:45:24 -0700681 for (auto *arg : block->getArguments()) {
682 numberValueID(arg);
683 }
Chris Lattnerf8cce872018-07-20 09:28:54 -0700684 for (auto &op : *block) {
685 // We number instruction that have results, and we only number the first
686 // result.
687 if (op.getNumResults() != 0)
688 numberValueID(op.getResult(0));
689 }
690
691 // Terminators do not define values.
Chris Lattner4c95a502018-06-23 16:03:42 -0700692}
693
Chris Lattner4fd59b02018-07-20 09:35:47 -0700694void CFGFunctionPrinter::print() {
Chris Lattner4c95a502018-06-23 16:03:42 -0700695 os << "cfgfunc ";
Chris Lattner4fd59b02018-07-20 09:35:47 -0700696 printFunctionSignature(getFunction());
Chris Lattner4c95a502018-06-23 16:03:42 -0700697 os << " {\n";
698
James Molloy87d81022018-07-23 11:44:40 -0700699 for (auto &block : *function)
700 print(&block);
Chris Lattner4c95a502018-06-23 16:03:42 -0700701 os << "}\n\n";
702}
703
Chris Lattner4fd59b02018-07-20 09:35:47 -0700704void CFGFunctionPrinter::print(const BasicBlock *block) {
James Molloy61a656c2018-07-22 15:45:24 -0700705 os << "bb" << getBBID(block);
Chris Lattner4c95a502018-06-23 16:03:42 -0700706
James Molloy61a656c2018-07-22 15:45:24 -0700707 if (!block->args_empty()) {
708 os << '(';
709 interleaveComma(block->getArguments(), [&](const BBArgument *arg) {
710 printValueID(arg);
711 os << ": ";
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700712 printType(arg->getType());
James Molloy61a656c2018-07-22 15:45:24 -0700713 });
714 os << ')';
715 }
716 os << ":\n";
717
Jacques Pienaarb020c542018-07-15 00:06:54 -0700718 for (auto &inst : block->getOperations()) {
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700719 os << " ";
Chris Lattner3a467cc2018-07-01 20:28:00 -0700720 print(&inst);
James Molloy61a656c2018-07-22 15:45:24 -0700721 os << '\n';
Jacques Pienaarb020c542018-07-15 00:06:54 -0700722 }
Chris Lattner4c95a502018-06-23 16:03:42 -0700723
724 print(block->getTerminator());
James Molloy61a656c2018-07-22 15:45:24 -0700725 os << '\n';
Chris Lattner4c95a502018-06-23 16:03:42 -0700726}
727
Chris Lattner4fd59b02018-07-20 09:35:47 -0700728void CFGFunctionPrinter::print(const Instruction *inst) {
Chris Lattner4c95a502018-06-23 16:03:42 -0700729 switch (inst->getKind()) {
Chris Lattnered65a732018-06-28 20:45:33 -0700730 case Instruction::Kind::Operation:
731 return print(cast<OperationInst>(inst));
Chris Lattnerf6d80a02018-06-24 11:18:29 -0700732 case TerminatorInst::Kind::Branch:
Chris Lattnered65a732018-06-28 20:45:33 -0700733 return print(cast<BranchInst>(inst));
James Molloy4f788372018-07-24 15:01:27 -0700734 case TerminatorInst::Kind::CondBranch:
735 return print(cast<CondBranchInst>(inst));
Chris Lattner4c95a502018-06-23 16:03:42 -0700736 case TerminatorInst::Kind::Return:
Chris Lattnered65a732018-06-28 20:45:33 -0700737 return print(cast<ReturnInst>(inst));
Chris Lattner4c95a502018-06-23 16:03:42 -0700738 }
739}
740
Chris Lattner4fd59b02018-07-20 09:35:47 -0700741void CFGFunctionPrinter::print(const OperationInst *inst) {
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700742 printOperation(inst);
Chris Lattner3b2ef762018-07-18 15:31:25 -0700743}
Chris Lattner1604e472018-07-23 08:42:19 -0700744
Chris Lattner4fd59b02018-07-20 09:35:47 -0700745void CFGFunctionPrinter::print(const BranchInst *inst) {
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700746 os << "br bb" << getBBID(inst->getDest());
Chris Lattner1604e472018-07-23 08:42:19 -0700747
748 if (inst->getNumOperands() != 0) {
749 os << '(';
750 // TODO: Use getOperands() when we have it.
751 interleaveComma(inst->getInstOperands(), [&](const InstOperand &operand) {
752 printValueID(operand.get());
753 });
754 os << ") : ";
755 interleaveComma(inst->getInstOperands(), [&](const InstOperand &operand) {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700756 printType(operand.get()->getType());
Chris Lattner1604e472018-07-23 08:42:19 -0700757 });
758 }
Chris Lattnered65a732018-06-28 20:45:33 -0700759}
Chris Lattner1604e472018-07-23 08:42:19 -0700760
James Molloy4f788372018-07-24 15:01:27 -0700761void CFGFunctionPrinter::print(const CondBranchInst *inst) {
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700762 os << "cond_br ";
James Molloy4f788372018-07-24 15:01:27 -0700763 printValueID(inst->getCondition());
764
765 os << ", bb" << getBBID(inst->getTrueDest());
766 if (inst->getNumTrueOperands() != 0) {
767 os << '(';
768 interleaveComma(inst->getTrueOperands(),
769 [&](const CFGValue *operand) { printValueID(operand); });
770 os << " : ";
771 interleaveComma(inst->getTrueOperands(), [&](const CFGValue *operand) {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700772 printType(operand->getType());
James Molloy4f788372018-07-24 15:01:27 -0700773 });
774 os << ")";
775 }
776
777 os << ", bb" << getBBID(inst->getFalseDest());
778 if (inst->getNumFalseOperands() != 0) {
779 os << '(';
780 interleaveComma(inst->getFalseOperands(),
781 [&](const CFGValue *operand) { printValueID(operand); });
782 os << " : ";
783 interleaveComma(inst->getFalseOperands(), [&](const CFGValue *operand) {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700784 printType(operand->getType());
James Molloy4f788372018-07-24 15:01:27 -0700785 });
786 os << ")";
787 }
788}
789
Chris Lattner40746442018-07-21 14:32:09 -0700790void CFGFunctionPrinter::print(const ReturnInst *inst) {
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700791 os << "return";
Chris Lattner40746442018-07-21 14:32:09 -0700792
793 if (inst->getNumOperands() != 0)
794 os << ' ';
795
James Molloy4f788372018-07-24 15:01:27 -0700796 interleaveComma(inst->getOperands(),
797 [&](const CFGValue *operand) { printValueID(operand); });
798 os << " : ";
Chris Lattnerac591f12018-07-22 21:02:26 -0700799 interleaveComma(inst->getOperands(), [&](const CFGValue *operand) {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700800 printType(operand->getType());
Chris Lattner40746442018-07-21 14:32:09 -0700801 });
802}
MLIR Team54b55a22018-07-18 10:16:05 -0700803
Chris Lattner4fd59b02018-07-20 09:35:47 -0700804void ModulePrinter::print(const CFGFunction *fn) {
805 CFGFunctionPrinter(fn, *this).print();
Chris Lattnered65a732018-06-28 20:45:33 -0700806}
807
Chris Lattner4c95a502018-06-23 16:03:42 -0700808//===----------------------------------------------------------------------===//
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700809// ML Function printing
Chris Lattner4c95a502018-06-23 16:03:42 -0700810//===----------------------------------------------------------------------===//
811
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700812namespace {
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700813class MLFunctionPrinter : public FunctionPrinter {
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700814public:
Chris Lattner4fd59b02018-07-20 09:35:47 -0700815 MLFunctionPrinter(const MLFunction *function, const ModulePrinter &other);
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700816
817 const MLFunction *getFunction() const { return function; }
818
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700819 // Prints ML function
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700820 void print();
821
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700822 // Methods to print ML function statements
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700823 void print(const Statement *stmt);
Tatiana Shpeismanfa412f72018-07-09 17:42:46 -0700824 void print(const OperationStmt *stmt);
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700825 void print(const ForStmt *stmt);
826 void print(const IfStmt *stmt);
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700827 void print(const StmtBlock *block);
828
829 // Number of spaces used for indenting nested statements
830 const static unsigned indentWidth = 2;
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700831
832private:
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700833 void numberValues();
834
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700835 const MLFunction *function;
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700836 int numSpaces;
837};
James Molloy87d81022018-07-23 11:44:40 -0700838} // end anonymous namespace
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700839
Chris Lattner4fd59b02018-07-20 09:35:47 -0700840MLFunctionPrinter::MLFunctionPrinter(const MLFunction *function,
841 const ModulePrinter &other)
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700842 : FunctionPrinter(other), function(function), numSpaces(0) {
843 numberValues();
844}
845
846/// Number all of the SSA values in this ML function.
847void MLFunctionPrinter::numberValues() {
848 // Visits all operation statements and numbers the first result.
849 struct NumberValuesPass : public StmtVisitor<NumberValuesPass> {
850 NumberValuesPass(MLFunctionPrinter *printer) : printer(printer) {}
851 void visitOperationStmt(OperationStmt *stmt) {
852 if (stmt->getNumResults() != 0)
853 printer->numberValueID(stmt->getResult(0));
854 }
855 MLFunctionPrinter *printer;
856 };
857
858 NumberValuesPass pass(this);
859 // TODO: it'd be cleaner to have constant visitor istead of using const_cast.
860 pass.visit(const_cast<MLFunction *>(function));
861}
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700862
Chris Lattner4fd59b02018-07-20 09:35:47 -0700863void MLFunctionPrinter::print() {
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700864 os << "mlfunc ";
865 // FIXME: should print argument names rather than just signature
Chris Lattner4fd59b02018-07-20 09:35:47 -0700866 printFunctionSignature(function);
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700867 os << " {\n";
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700868 print(function);
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700869 os << " return\n";
870 os << "}\n\n";
871}
872
Chris Lattner4fd59b02018-07-20 09:35:47 -0700873void MLFunctionPrinter::print(const StmtBlock *block) {
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700874 numSpaces += indentWidth;
Jacques Pienaarb020c542018-07-15 00:06:54 -0700875 for (auto &stmt : block->getStatements()) {
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700876 print(&stmt);
Jacques Pienaarb020c542018-07-15 00:06:54 -0700877 os << "\n";
878 }
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700879 numSpaces -= indentWidth;
880}
881
Chris Lattner4fd59b02018-07-20 09:35:47 -0700882void MLFunctionPrinter::print(const Statement *stmt) {
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700883 switch (stmt->getKind()) {
Tatiana Shpeisman565b9642018-07-16 11:47:09 -0700884 case Statement::Kind::Operation:
885 return print(cast<OperationStmt>(stmt));
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700886 case Statement::Kind::For:
887 return print(cast<ForStmt>(stmt));
888 case Statement::Kind::If:
889 return print(cast<IfStmt>(stmt));
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700890 }
891}
892
Chris Lattner4fd59b02018-07-20 09:35:47 -0700893void MLFunctionPrinter::print(const OperationStmt *stmt) {
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700894 os.indent(numSpaces);
Chris Lattner4fd59b02018-07-20 09:35:47 -0700895 printOperation(stmt);
896}
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700897
Chris Lattner4fd59b02018-07-20 09:35:47 -0700898void MLFunctionPrinter::print(const ForStmt *stmt) {
Tatiana Shpeisman1da50c42018-07-19 09:52:39 -0700899 os.indent(numSpaces) << "for x = " << *stmt->getLowerBound();
900 os << " to " << *stmt->getUpperBound();
901 if (stmt->getStep()->getValue() != 1)
902 os << " step " << *stmt->getStep();
903
904 os << " {\n";
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700905 print(static_cast<const StmtBlock *>(stmt));
Tatiana Shpeisman565b9642018-07-16 11:47:09 -0700906 os.indent(numSpaces) << "}";
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700907}
908
Chris Lattner4fd59b02018-07-20 09:35:47 -0700909void MLFunctionPrinter::print(const IfStmt *stmt) {
Tatiana Shpeisman1bcfe982018-07-13 13:03:13 -0700910 os.indent(numSpaces) << "if () {\n";
911 print(stmt->getThenClause());
912 os.indent(numSpaces) << "}";
913 if (stmt->hasElseClause()) {
914 os << " else {\n";
915 print(stmt->getElseClause());
916 os.indent(numSpaces) << "}";
917 }
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700918}
919
Chris Lattner4fd59b02018-07-20 09:35:47 -0700920void ModulePrinter::print(const MLFunction *fn) {
921 MLFunctionPrinter(fn, *this).print();
MLIR Team4718bc92018-07-17 16:56:54 -0700922}
923
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700924//===----------------------------------------------------------------------===//
925// print and dump methods
926//===----------------------------------------------------------------------===//
Chris Lattnered65a732018-06-28 20:45:33 -0700927
MLIR Teamb61885d2018-07-18 16:29:21 -0700928void Attribute::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700929 ModuleState state(/*no context is known*/ nullptr);
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700930 ModulePrinter(os, state).printAttribute(this);
MLIR Teamb61885d2018-07-18 16:29:21 -0700931}
932
James Molloy87d81022018-07-23 11:44:40 -0700933void Attribute::dump() const { print(llvm::errs()); }
MLIR Teamb61885d2018-07-18 16:29:21 -0700934
MLIR Team4718bc92018-07-17 16:56:54 -0700935void Type::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700936 ModuleState state(getContext());
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700937 ModulePrinter(os, state).printType(this);
MLIR Team4718bc92018-07-17 16:56:54 -0700938}
939
MLIR Team54b55a22018-07-18 10:16:05 -0700940void Type::dump() const { print(llvm::errs()); }
MLIR Team4718bc92018-07-17 16:56:54 -0700941
MLIR Team718c82f2018-07-16 09:45:22 -0700942void AffineMap::dump() const {
943 print(llvm::errs());
944 llvm::errs() << "\n";
945}
Uday Bondhugula3934d4d2018-07-09 09:00:25 -0700946
Uday Bondhugula015cbb12018-07-03 20:16:08 -0700947void AffineExpr::dump() const {
948 print(llvm::errs());
949 llvm::errs() << "\n";
950}
951
Uday Bondhugulafaf37dd2018-06-29 18:09:29 -0700952void AffineExpr::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700953 ModuleState state(/*no context is known*/ nullptr);
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700954 ModulePrinter(os, state).printAffineExpr(this);
Uday Bondhugulafaf37dd2018-06-29 18:09:29 -0700955}
956
957void AffineMap::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700958 ModuleState state(/*no context is known*/ nullptr);
Chris Lattnerdd0c2ca2018-07-24 16:07:22 -0700959 ModulePrinter(os, state).printAffineMap(this);
Chris Lattner4fd59b02018-07-20 09:35:47 -0700960}
Uday Bondhugula015cbb12018-07-03 20:16:08 -0700961
Chris Lattner4fd59b02018-07-20 09:35:47 -0700962void Instruction::print(raw_ostream &os) const {
963 ModuleState state(getFunction()->getContext());
964 ModulePrinter modulePrinter(os, state);
965 CFGFunctionPrinter(getFunction(), modulePrinter).print(this);
966}
Uday Bondhugula015cbb12018-07-03 20:16:08 -0700967
Chris Lattner4fd59b02018-07-20 09:35:47 -0700968void Instruction::dump() const {
969 print(llvm::errs());
970 llvm::errs() << "\n";
Uday Bondhugulafaf37dd2018-06-29 18:09:29 -0700971}
972
Chris Lattner4c95a502018-06-23 16:03:42 -0700973void BasicBlock::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700974 ModuleState state(getFunction()->getContext());
975 ModulePrinter modulePrinter(os, state);
976 CFGFunctionPrinter(getFunction(), modulePrinter).print(this);
Chris Lattner4c95a502018-06-23 16:03:42 -0700977}
978
MLIR Team54b55a22018-07-18 10:16:05 -0700979void BasicBlock::dump() const { print(llvm::errs()); }
Chris Lattner4c95a502018-06-23 16:03:42 -0700980
Tatiana Shpeismanbf079c92018-07-03 17:51:28 -0700981void Statement::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700982 ModuleState state(getFunction()->getContext());
983 ModulePrinter modulePrinter(os, state);
984 MLFunctionPrinter(getFunction(), modulePrinter).print(this);
Tatiana Shpeismanc96b5872018-06-28 17:02:32 -0700985}
986
MLIR Team54b55a22018-07-18 10:16:05 -0700987void Statement::dump() const { print(llvm::errs()); }
Jacques Pienaarb020c542018-07-15 00:06:54 -0700988
Chris Lattner4c95a502018-06-23 16:03:42 -0700989void Function::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700990 ModuleState state(getContext());
991 ModulePrinter(os, state).print(this);
Chris Lattner4c95a502018-06-23 16:03:42 -0700992}
993
MLIR Team54b55a22018-07-18 10:16:05 -0700994void Function::dump() const { print(llvm::errs()); }
995
Chris Lattner4c95a502018-06-23 16:03:42 -0700996void Module::print(raw_ostream &os) const {
Chris Lattner4fd59b02018-07-20 09:35:47 -0700997 ModuleState state(getContext());
998 state.initialize(this);
999 ModulePrinter(os, state).print(this);
Chris Lattner4c95a502018-06-23 16:03:42 -07001000}
1001
MLIR Team54b55a22018-07-18 10:16:05 -07001002void Module::dump() const { print(llvm::errs()); }