blob: b84da8324055892303d9885bb8ed32906723adb6 [file] [log] [blame]
Chris Lattner158e0a3e2018-07-08 20:51:38 -07001//===- Builders.h - Helpers for constructing MLIR Classes -------*- C++ -*-===//
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#ifndef MLIR_IR_BUILDERS_H
19#define MLIR_IR_BUILDERS_H
20
21#include "mlir/IR/CFGFunction.h"
Tatiana Shpeisman565b9642018-07-16 11:47:09 -070022#include "mlir/IR/MLFunction.h"
23#include "mlir/IR/Statements.h"
Chris Lattner158e0a3e2018-07-08 20:51:38 -070024
25namespace mlir {
26class MLIRContext;
27class Module;
28class Type;
29class PrimitiveType;
30class IntegerType;
31class FunctionType;
32class VectorType;
33class RankedTensorType;
34class UnrankedTensorType;
Chris Lattner1ac20cb2018-07-10 10:59:53 -070035class BoolAttr;
36class IntegerAttr;
37class FloatAttr;
38class StringAttr;
39class ArrayAttr;
MLIR Teamb61885d2018-07-18 16:29:21 -070040class AffineMapAttr;
Chris Lattner1ac20cb2018-07-10 10:59:53 -070041class AffineMap;
42class AffineExpr;
43class AffineConstantExpr;
44class AffineDimExpr;
45class AffineSymbolExpr;
Chris Lattner158e0a3e2018-07-08 20:51:38 -070046
47/// This class is a general helper class for creating context-global objects
48/// like types, attributes, and affine expressions.
49class Builder {
50public:
51 explicit Builder(MLIRContext *context) : context(context) {}
52 explicit Builder(Module *module);
53
54 MLIRContext *getContext() const { return context; }
55
Chris Lattner1ac20cb2018-07-10 10:59:53 -070056 Identifier getIdentifier(StringRef str);
57 Module *createModule();
58
Chris Lattner158e0a3e2018-07-08 20:51:38 -070059 // Types.
Chris Lattnerc3251192018-07-27 13:09:58 -070060 FloatType *getBF16Type();
61 FloatType *getF16Type();
62 FloatType *getF32Type();
63 FloatType *getF64Type();
64
65 OtherType *getAffineIntType();
66 OtherType *getTFControlType();
Chris Lattner158e0a3e2018-07-08 20:51:38 -070067 IntegerType *getIntegerType(unsigned width);
68 FunctionType *getFunctionType(ArrayRef<Type *> inputs,
69 ArrayRef<Type *> results);
70 VectorType *getVectorType(ArrayRef<unsigned> shape, Type *elementType);
71 RankedTensorType *getTensorType(ArrayRef<int> shape, Type *elementType);
72 UnrankedTensorType *getTensorType(Type *elementType);
73
Chris Lattner1ac20cb2018-07-10 10:59:53 -070074 // Attributes.
75 BoolAttr *getBoolAttr(bool value);
76 IntegerAttr *getIntegerAttr(int64_t value);
77 FloatAttr *getFloatAttr(double value);
78 StringAttr *getStringAttr(StringRef bytes);
79 ArrayAttr *getArrayAttr(ArrayRef<Attribute *> value);
MLIR Teamb61885d2018-07-18 16:29:21 -070080 AffineMapAttr *getAffineMapAttr(AffineMap *value);
Chris Lattner1ac20cb2018-07-10 10:59:53 -070081
82 // Affine Expressions and Affine Map.
83 AffineMap *getAffineMap(unsigned dimCount, unsigned symbolCount,
Uday Bondhugula0115dbb2018-07-11 21:31:07 -070084 ArrayRef<AffineExpr *> results,
85 ArrayRef<AffineExpr *> rangeSizes);
Chris Lattner1ac20cb2018-07-10 10:59:53 -070086 AffineDimExpr *getDimExpr(unsigned position);
87 AffineSymbolExpr *getSymbolExpr(unsigned position);
88 AffineConstantExpr *getConstantExpr(int64_t constant);
89 AffineExpr *getAddExpr(AffineExpr *lhs, AffineExpr *rhs);
90 AffineExpr *getSubExpr(AffineExpr *lhs, AffineExpr *rhs);
91 AffineExpr *getMulExpr(AffineExpr *lhs, AffineExpr *rhs);
92 AffineExpr *getModExpr(AffineExpr *lhs, AffineExpr *rhs);
93 AffineExpr *getFloorDivExpr(AffineExpr *lhs, AffineExpr *rhs);
94 AffineExpr *getCeilDivExpr(AffineExpr *lhs, AffineExpr *rhs);
95
Chris Lattner158e0a3e2018-07-08 20:51:38 -070096 // TODO: Helpers for affine map/exprs, etc.
Chris Lattner158e0a3e2018-07-08 20:51:38 -070097protected:
98 MLIRContext *context;
99};
100
101/// This class helps build a CFGFunction. Instructions that are created are
102/// automatically inserted at an insertion point or added to the current basic
103/// block.
104class CFGFuncBuilder : public Builder {
105public:
Chris Lattner8174f3a2018-07-29 16:45:23 -0700106 CFGFuncBuilder(BasicBlock *block, BasicBlock::iterator insertPoint)
107 : Builder(block->getFunction()->getContext()),
108 function(block->getFunction()) {
109 setInsertionPoint(block, insertPoint);
110 }
111
112 CFGFuncBuilder(OperationInst *insertBefore)
113 : CFGFuncBuilder(insertBefore->getBlock(),
114 BasicBlock::iterator(insertBefore)) {}
115
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700116 CFGFuncBuilder(BasicBlock *block)
117 : Builder(block->getFunction()->getContext()),
118 function(block->getFunction()) {
119 setInsertionPoint(block);
120 }
Chris Lattner8174f3a2018-07-29 16:45:23 -0700121
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700122 CFGFuncBuilder(CFGFunction *function)
123 : Builder(function->getContext()), function(function) {}
124
125 /// Reset the insertion point to no location. Creating an operation without a
126 /// set insertion point is an error, but this can still be useful when the
127 /// current insertion point a builder refers to is being removed.
128 void clearInsertionPoint() {
129 this->block = nullptr;
130 insertPoint = BasicBlock::iterator();
131 }
132
Chris Lattner8174f3a2018-07-29 16:45:23 -0700133 /// Set the insertion point to the specified location.
134 void setInsertionPoint(BasicBlock *block, BasicBlock::iterator insertPoint) {
135 assert(block->getFunction() == function &&
136 "can't move to a different function");
137 this->block = block;
138 this->insertPoint = insertPoint;
139 }
140
141 /// Set the insertion point to the specified operation.
142 void setInsertionPoint(OperationInst *inst) {
143 setInsertionPoint(inst->getBlock(), BasicBlock::iterator(inst));
144 }
145
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700146 /// Set the insertion point to the end of the specified block.
147 void setInsertionPoint(BasicBlock *block) {
Chris Lattner8174f3a2018-07-29 16:45:23 -0700148 setInsertionPoint(block, block->end());
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700149 }
150
Tatiana Shpeisman6708b452018-07-24 10:15:13 -0700151 // Add new basic block and set the insertion point to the end of it.
152 BasicBlock *createBlock();
153
Chris Lattner8174f3a2018-07-29 16:45:23 -0700154 // Create an operation at the current insertion point.
Chris Lattner3b2ef762018-07-18 15:31:25 -0700155 OperationInst *createOperation(Identifier name, ArrayRef<CFGValue *> operands,
156 ArrayRef<Type *> resultTypes,
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700157 ArrayRef<NamedAttribute> attributes) {
Chris Lattner3b2ef762018-07-18 15:31:25 -0700158 auto op =
159 OperationInst::create(name, operands, resultTypes, attributes, context);
Chris Lattner8174f3a2018-07-29 16:45:23 -0700160 block->getOperations().insert(insertPoint, op);
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700161 return op;
162 }
163
164 // Terminators.
165
Chris Lattner40746442018-07-21 14:32:09 -0700166 ReturnInst *createReturnInst(ArrayRef<CFGValue *> operands) {
167 return insertTerminator(ReturnInst::create(operands));
168 }
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700169
170 BranchInst *createBranchInst(BasicBlock *dest) {
Chris Lattner40746442018-07-21 14:32:09 -0700171 return insertTerminator(BranchInst::create(dest));
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700172 }
173
James Molloy4f788372018-07-24 15:01:27 -0700174 CondBranchInst *createCondBranchInst(CFGValue *condition,
175 BasicBlock *trueDest,
176 BasicBlock *falseDest) {
177 return insertTerminator(
178 CondBranchInst::create(condition, trueDest, falseDest));
179 }
180
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700181private:
182 template <typename T>
183 T *insertTerminator(T *term) {
184 block->setTerminator(term);
185 return term;
186 }
187
188 CFGFunction *function;
189 BasicBlock *block = nullptr;
190 BasicBlock::iterator insertPoint;
191};
192
Tatiana Shpeisman565b9642018-07-16 11:47:09 -0700193/// This class helps build an MLFunction. Statements that are created are
194/// automatically inserted at an insertion point or added to the current
195/// statement block.
196class MLFuncBuilder : public Builder {
197public:
198 MLFuncBuilder(MLFunction *function) : Builder(function->getContext()) {}
199
200 MLFuncBuilder(StmtBlock *block) : MLFuncBuilder(block->getFunction()) {
201 setInsertionPoint(block);
202 }
203
204 /// Reset the insertion point to no location. Creating an operation without a
205 /// set insertion point is an error, but this can still be useful when the
206 /// current insertion point a builder refers to is being removed.
207 void clearInsertionPoint() {
208 this->block = nullptr;
209 insertPoint = StmtBlock::iterator();
210 }
211
212 /// Set the insertion point to the end of the specified block.
213 void setInsertionPoint(StmtBlock *block) {
214 this->block = block;
215 insertPoint = block->end();
216 }
217
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700218 OperationStmt *createOperation(Identifier name, ArrayRef<MLValue *> operands,
219 ArrayRef<Type *> resultTypes,
Tatiana Shpeisman565b9642018-07-16 11:47:09 -0700220 ArrayRef<NamedAttribute> attributes) {
Uday Bondhugula9f7754e2018-07-31 14:26:07 -0700221 auto *op =
Tatiana Shpeisman60bf7be2018-07-26 18:09:20 -0700222 OperationStmt::create(name, operands, resultTypes, attributes, context);
Uday Bondhugula9f7754e2018-07-31 14:26:07 -0700223 block->getStatements().insert(insertPoint, op);
Tatiana Shpeisman565b9642018-07-16 11:47:09 -0700224 return op;
225 }
226
Chris Lattner1604e472018-07-23 08:42:19 -0700227 // Creates for statement. When step is not specified, it is set to 1.
Tatiana Shpeisman1da50c42018-07-19 09:52:39 -0700228 ForStmt *createFor(AffineConstantExpr *lowerBound,
229 AffineConstantExpr *upperBound,
230 AffineConstantExpr *step = nullptr);
Tatiana Shpeisman565b9642018-07-16 11:47:09 -0700231
232 IfStmt *createIf() {
233 auto stmt = new IfStmt();
234 block->getStatements().push_back(stmt);
235 return stmt;
236 }
237
238private:
239 StmtBlock *block = nullptr;
240 StmtBlock::iterator insertPoint;
241};
Chris Lattner158e0a3e2018-07-08 20:51:38 -0700242
243} // namespace mlir
244
245#endif