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NAKAMURA Takumi85c9bac2015-03-02 01:04:34 +00001#include "llvm/ADT/STLExtras.h"
Chandler Carruth17e0bc32015-08-06 07:33:15 +00002#include "llvm/Analysis/BasicAliasAnalysis.h"
Chandler Carruth605e30e2012-12-04 10:16:57 +00003#include "llvm/Analysis/Passes.h"
Chandler Carruth005f27a2013-01-02 11:56:33 +00004#include "llvm/IR/IRBuilder.h"
5#include "llvm/IR/LLVMContext.h"
Chandler Carruth30d69c22015-02-13 10:01:29 +00006#include "llvm/IR/LegacyPassManager.h"
Chandler Carruth005f27a2013-01-02 11:56:33 +00007#include "llvm/IR/Module.h"
Chandler Carruth20d4e6b2014-01-13 09:58:03 +00008#include "llvm/IR/Verifier.h"
Evan Cheng2bb40352011-08-24 18:08:43 +00009#include "llvm/Support/TargetSelect.h"
Chandler Carruth605e30e2012-12-04 10:16:57 +000010#include "llvm/Transforms/Scalar.h"
Will Dietz981af002013-10-12 00:55:57 +000011#include <cctype>
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000012#include <cstdio>
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000013#include <map>
Chandler Carruth605e30e2012-12-04 10:16:57 +000014#include <string>
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000015#include <vector>
Lang Hames2d789c32015-08-26 03:07:41 +000016#include "../include/KaleidoscopeJIT.h"
17
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000018using namespace llvm;
Lang Hames2d789c32015-08-26 03:07:41 +000019using namespace llvm::orc;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000020
21//===----------------------------------------------------------------------===//
22// Lexer
23//===----------------------------------------------------------------------===//
24
25// The lexer returns tokens [0-255] if it is an unknown character, otherwise one
26// of these for known things.
27enum Token {
28 tok_eof = -1,
29
30 // commands
Eric Christopherc0239362014-12-08 18:12:28 +000031 tok_def = -2,
32 tok_extern = -3,
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000033
34 // primary
Eric Christopherc0239362014-12-08 18:12:28 +000035 tok_identifier = -4,
36 tok_number = -5,
37
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000038 // control
Eric Christopherc0239362014-12-08 18:12:28 +000039 tok_if = -6,
40 tok_then = -7,
41 tok_else = -8,
42 tok_for = -9,
43 tok_in = -10
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000044};
45
Eric Christopherc0239362014-12-08 18:12:28 +000046static std::string IdentifierStr; // Filled in if tok_identifier
47static double NumVal; // Filled in if tok_number
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000048
49/// gettok - Return the next token from standard input.
50static int gettok() {
51 static int LastChar = ' ';
52
53 // Skip any whitespace.
54 while (isspace(LastChar))
55 LastChar = getchar();
56
57 if (isalpha(LastChar)) { // identifier: [a-zA-Z][a-zA-Z0-9]*
58 IdentifierStr = LastChar;
59 while (isalnum((LastChar = getchar())))
60 IdentifierStr += LastChar;
61
Eric Christopherc0239362014-12-08 18:12:28 +000062 if (IdentifierStr == "def")
63 return tok_def;
64 if (IdentifierStr == "extern")
65 return tok_extern;
66 if (IdentifierStr == "if")
67 return tok_if;
68 if (IdentifierStr == "then")
69 return tok_then;
70 if (IdentifierStr == "else")
71 return tok_else;
72 if (IdentifierStr == "for")
73 return tok_for;
74 if (IdentifierStr == "in")
75 return tok_in;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000076 return tok_identifier;
77 }
78
Eric Christopherc0239362014-12-08 18:12:28 +000079 if (isdigit(LastChar) || LastChar == '.') { // Number: [0-9.]+
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000080 std::string NumStr;
81 do {
82 NumStr += LastChar;
83 LastChar = getchar();
84 } while (isdigit(LastChar) || LastChar == '.');
85
86 NumVal = strtod(NumStr.c_str(), 0);
87 return tok_number;
88 }
89
90 if (LastChar == '#') {
91 // Comment until end of line.
Eric Christopherc0239362014-12-08 18:12:28 +000092 do
93 LastChar = getchar();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000094 while (LastChar != EOF && LastChar != '\n' && LastChar != '\r');
Eric Christopherc0239362014-12-08 18:12:28 +000095
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +000096 if (LastChar != EOF)
97 return gettok();
98 }
Eric Christopherc0239362014-12-08 18:12:28 +000099
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000100 // Check for end of file. Don't eat the EOF.
101 if (LastChar == EOF)
102 return tok_eof;
103
104 // Otherwise, just return the character as its ascii value.
105 int ThisChar = LastChar;
106 LastChar = getchar();
107 return ThisChar;
108}
109
110//===----------------------------------------------------------------------===//
111// Abstract Syntax Tree (aka Parse Tree)
112//===----------------------------------------------------------------------===//
Juergen Ributzka05c5a932013-11-19 03:08:35 +0000113namespace {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000114/// ExprAST - Base class for all expression nodes.
115class ExprAST {
116public:
Juergen Ributzka05c5a932013-11-19 03:08:35 +0000117 virtual ~ExprAST() {}
Lang Hames2d789c32015-08-26 03:07:41 +0000118 virtual Value *codegen() = 0;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000119};
120
121/// NumberExprAST - Expression class for numeric literals like "1.0".
122class NumberExprAST : public ExprAST {
123 double Val;
Lang Hames59b0da82015-08-19 18:15:58 +0000124
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000125public:
Lang Hames09bf4c12015-08-18 18:11:06 +0000126 NumberExprAST(double Val) : Val(Val) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000127 Value *codegen() override;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000128};
129
130/// VariableExprAST - Expression class for referencing a variable, like "a".
131class VariableExprAST : public ExprAST {
132 std::string Name;
Lang Hames59b0da82015-08-19 18:15:58 +0000133
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000134public:
Lang Hames09bf4c12015-08-18 18:11:06 +0000135 VariableExprAST(const std::string &Name) : Name(Name) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000136 Value *codegen() override;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000137};
138
139/// BinaryExprAST - Expression class for a binary operator.
140class BinaryExprAST : public ExprAST {
141 char Op;
Lang Hames09bf4c12015-08-18 18:11:06 +0000142 std::unique_ptr<ExprAST> LHS, RHS;
Lang Hames59b0da82015-08-19 18:15:58 +0000143
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000144public:
Lang Hames09bf4c12015-08-18 18:11:06 +0000145 BinaryExprAST(char Op, std::unique_ptr<ExprAST> LHS,
146 std::unique_ptr<ExprAST> RHS)
147 : Op(Op), LHS(std::move(LHS)), RHS(std::move(RHS)) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000148 Value *codegen() override;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000149};
150
151/// CallExprAST - Expression class for function calls.
152class CallExprAST : public ExprAST {
153 std::string Callee;
Lang Hames09bf4c12015-08-18 18:11:06 +0000154 std::vector<std::unique_ptr<ExprAST>> Args;
Lang Hames59b0da82015-08-19 18:15:58 +0000155
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000156public:
Lang Hames09bf4c12015-08-18 18:11:06 +0000157 CallExprAST(const std::string &Callee,
158 std::vector<std::unique_ptr<ExprAST>> Args)
159 : Callee(Callee), Args(std::move(Args)) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000160 Value *codegen() override;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000161};
162
163/// IfExprAST - Expression class for if/then/else.
164class IfExprAST : public ExprAST {
Lang Hames09bf4c12015-08-18 18:11:06 +0000165 std::unique_ptr<ExprAST> Cond, Then, Else;
Lang Hames59b0da82015-08-19 18:15:58 +0000166
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000167public:
Lang Hames09bf4c12015-08-18 18:11:06 +0000168 IfExprAST(std::unique_ptr<ExprAST> Cond, std::unique_ptr<ExprAST> Then,
169 std::unique_ptr<ExprAST> Else)
170 : Cond(std::move(Cond)), Then(std::move(Then)), Else(std::move(Else)) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000171 Value *codegen() override;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000172};
173
174/// ForExprAST - Expression class for for/in.
175class ForExprAST : public ExprAST {
176 std::string VarName;
Lang Hames09bf4c12015-08-18 18:11:06 +0000177 std::unique_ptr<ExprAST> Start, End, Step, Body;
Lang Hames59b0da82015-08-19 18:15:58 +0000178
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000179public:
Lang Hames09bf4c12015-08-18 18:11:06 +0000180 ForExprAST(const std::string &VarName, std::unique_ptr<ExprAST> Start,
181 std::unique_ptr<ExprAST> End, std::unique_ptr<ExprAST> Step,
182 std::unique_ptr<ExprAST> Body)
183 : VarName(VarName), Start(std::move(Start)), End(std::move(End)),
184 Step(std::move(Step)), Body(std::move(Body)) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000185 Value *codegen() override;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000186};
187
188/// PrototypeAST - This class represents the "prototype" for a function,
189/// which captures its name, and its argument names (thus implicitly the number
190/// of arguments the function takes).
191class PrototypeAST {
192 std::string Name;
193 std::vector<std::string> Args;
Lang Hames59b0da82015-08-19 18:15:58 +0000194
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000195public:
Lang Hames59b0da82015-08-19 18:15:58 +0000196 PrototypeAST(const std::string &Name, std::vector<std::string> Args)
197 : Name(Name), Args(std::move(Args)) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000198 Function *codegen();
199 const std::string &getName() const { return Name; }
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000200};
201
202/// FunctionAST - This class represents a function definition itself.
203class FunctionAST {
Lang Hames09bf4c12015-08-18 18:11:06 +0000204 std::unique_ptr<PrototypeAST> Proto;
205 std::unique_ptr<ExprAST> Body;
Lang Hames59b0da82015-08-19 18:15:58 +0000206
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000207public:
Lang Hames09bf4c12015-08-18 18:11:06 +0000208 FunctionAST(std::unique_ptr<PrototypeAST> Proto,
209 std::unique_ptr<ExprAST> Body)
Lang Hames59b0da82015-08-19 18:15:58 +0000210 : Proto(std::move(Proto)), Body(std::move(Body)) {}
Lang Hames2d789c32015-08-26 03:07:41 +0000211 Function *codegen();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000212};
Juergen Ributzka05c5a932013-11-19 03:08:35 +0000213} // end anonymous namespace
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000214
215//===----------------------------------------------------------------------===//
216// Parser
217//===----------------------------------------------------------------------===//
218
219/// CurTok/getNextToken - Provide a simple token buffer. CurTok is the current
220/// token the parser is looking at. getNextToken reads another token from the
221/// lexer and updates CurTok with its results.
222static int CurTok;
Eric Christopherc0239362014-12-08 18:12:28 +0000223static int getNextToken() { return CurTok = gettok(); }
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000224
225/// BinopPrecedence - This holds the precedence for each binary operator that is
226/// defined.
227static std::map<char, int> BinopPrecedence;
228
229/// GetTokPrecedence - Get the precedence of the pending binary operator token.
230static int GetTokPrecedence() {
231 if (!isascii(CurTok))
232 return -1;
Eric Christopherc0239362014-12-08 18:12:28 +0000233
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000234 // Make sure it's a declared binop.
235 int TokPrec = BinopPrecedence[CurTok];
Eric Christopherc0239362014-12-08 18:12:28 +0000236 if (TokPrec <= 0)
237 return -1;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000238 return TokPrec;
239}
240
241/// Error* - These are little helper functions for error handling.
Lang Hames09bf4c12015-08-18 18:11:06 +0000242std::unique_ptr<ExprAST> Error(const char *Str) {
Eric Christopherc0239362014-12-08 18:12:28 +0000243 fprintf(stderr, "Error: %s\n", Str);
Lang Hames09bf4c12015-08-18 18:11:06 +0000244 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000245}
Lang Hames09bf4c12015-08-18 18:11:06 +0000246std::unique_ptr<PrototypeAST> ErrorP(const char *Str) {
Eric Christopherc0239362014-12-08 18:12:28 +0000247 Error(Str);
Lang Hames09bf4c12015-08-18 18:11:06 +0000248 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000249}
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000250
Lang Hames09bf4c12015-08-18 18:11:06 +0000251static std::unique_ptr<ExprAST> ParseExpression();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000252
Lang Hames59b0da82015-08-19 18:15:58 +0000253/// numberexpr ::= number
254static std::unique_ptr<ExprAST> ParseNumberExpr() {
255 auto Result = llvm::make_unique<NumberExprAST>(NumVal);
256 getNextToken(); // consume the number
257 return std::move(Result);
258}
259
260/// parenexpr ::= '(' expression ')'
261static std::unique_ptr<ExprAST> ParseParenExpr() {
262 getNextToken(); // eat (.
263 auto V = ParseExpression();
264 if (!V)
265 return nullptr;
266
267 if (CurTok != ')')
268 return Error("expected ')'");
269 getNextToken(); // eat ).
270 return V;
271}
272
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000273/// identifierexpr
274/// ::= identifier
275/// ::= identifier '(' expression* ')'
Lang Hames09bf4c12015-08-18 18:11:06 +0000276static std::unique_ptr<ExprAST> ParseIdentifierExpr() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000277 std::string IdName = IdentifierStr;
Eric Christopherc0239362014-12-08 18:12:28 +0000278
279 getNextToken(); // eat identifier.
280
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000281 if (CurTok != '(') // Simple variable ref.
Lang Hames09bf4c12015-08-18 18:11:06 +0000282 return llvm::make_unique<VariableExprAST>(IdName);
Eric Christopherc0239362014-12-08 18:12:28 +0000283
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000284 // Call.
Eric Christopherc0239362014-12-08 18:12:28 +0000285 getNextToken(); // eat (
Lang Hames09bf4c12015-08-18 18:11:06 +0000286 std::vector<std::unique_ptr<ExprAST>> Args;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000287 if (CurTok != ')') {
288 while (1) {
Lang Hames09bf4c12015-08-18 18:11:06 +0000289 if (auto Arg = ParseExpression())
290 Args.push_back(std::move(Arg));
291 else
292 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000293
Eric Christopherc0239362014-12-08 18:12:28 +0000294 if (CurTok == ')')
295 break;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000296
297 if (CurTok != ',')
298 return Error("Expected ')' or ',' in argument list");
299 getNextToken();
300 }
301 }
302
303 // Eat the ')'.
304 getNextToken();
Eric Christopherc0239362014-12-08 18:12:28 +0000305
Lang Hames09bf4c12015-08-18 18:11:06 +0000306 return llvm::make_unique<CallExprAST>(IdName, std::move(Args));
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000307}
308
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000309/// ifexpr ::= 'if' expression 'then' expression 'else' expression
Lang Hames09bf4c12015-08-18 18:11:06 +0000310static std::unique_ptr<ExprAST> ParseIfExpr() {
Eric Christopherc0239362014-12-08 18:12:28 +0000311 getNextToken(); // eat the if.
312
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000313 // condition.
Lang Hames09bf4c12015-08-18 18:11:06 +0000314 auto Cond = ParseExpression();
Eric Christopherc0239362014-12-08 18:12:28 +0000315 if (!Cond)
Lang Hames09bf4c12015-08-18 18:11:06 +0000316 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000317
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000318 if (CurTok != tok_then)
319 return Error("expected then");
Eric Christopherc0239362014-12-08 18:12:28 +0000320 getNextToken(); // eat the then
321
Lang Hames09bf4c12015-08-18 18:11:06 +0000322 auto Then = ParseExpression();
323 if (!Then)
324 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000325
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000326 if (CurTok != tok_else)
327 return Error("expected else");
Eric Christopherc0239362014-12-08 18:12:28 +0000328
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000329 getNextToken();
Eric Christopherc0239362014-12-08 18:12:28 +0000330
Lang Hames09bf4c12015-08-18 18:11:06 +0000331 auto Else = ParseExpression();
Eric Christopherc0239362014-12-08 18:12:28 +0000332 if (!Else)
Lang Hames09bf4c12015-08-18 18:11:06 +0000333 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000334
Lang Hames09bf4c12015-08-18 18:11:06 +0000335 return llvm::make_unique<IfExprAST>(std::move(Cond), std::move(Then),
336 std::move(Else));
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000337}
338
339/// forexpr ::= 'for' identifier '=' expr ',' expr (',' expr)? 'in' expression
Lang Hames09bf4c12015-08-18 18:11:06 +0000340static std::unique_ptr<ExprAST> ParseForExpr() {
Eric Christopherc0239362014-12-08 18:12:28 +0000341 getNextToken(); // eat the for.
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000342
343 if (CurTok != tok_identifier)
344 return Error("expected identifier after for");
Eric Christopherc0239362014-12-08 18:12:28 +0000345
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000346 std::string IdName = IdentifierStr;
Eric Christopherc0239362014-12-08 18:12:28 +0000347 getNextToken(); // eat identifier.
348
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000349 if (CurTok != '=')
350 return Error("expected '=' after for");
Eric Christopherc0239362014-12-08 18:12:28 +0000351 getNextToken(); // eat '='.
352
Lang Hames09bf4c12015-08-18 18:11:06 +0000353 auto Start = ParseExpression();
354 if (!Start)
355 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000356 if (CurTok != ',')
357 return Error("expected ',' after for start value");
358 getNextToken();
Eric Christopherc0239362014-12-08 18:12:28 +0000359
Lang Hames09bf4c12015-08-18 18:11:06 +0000360 auto End = ParseExpression();
361 if (!End)
362 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000363
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000364 // The step value is optional.
Lang Hames09bf4c12015-08-18 18:11:06 +0000365 std::unique_ptr<ExprAST> Step;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000366 if (CurTok == ',') {
367 getNextToken();
368 Step = ParseExpression();
Lang Hames09bf4c12015-08-18 18:11:06 +0000369 if (!Step)
370 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000371 }
Eric Christopherc0239362014-12-08 18:12:28 +0000372
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000373 if (CurTok != tok_in)
374 return Error("expected 'in' after for");
Eric Christopherc0239362014-12-08 18:12:28 +0000375 getNextToken(); // eat 'in'.
376
Lang Hames09bf4c12015-08-18 18:11:06 +0000377 auto Body = ParseExpression();
378 if (!Body)
379 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000380
Lang Hames09bf4c12015-08-18 18:11:06 +0000381 return llvm::make_unique<ForExprAST>(IdName, std::move(Start), std::move(End),
382 std::move(Step), std::move(Body));
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000383}
384
385/// primary
386/// ::= identifierexpr
387/// ::= numberexpr
388/// ::= parenexpr
389/// ::= ifexpr
390/// ::= forexpr
Lang Hames09bf4c12015-08-18 18:11:06 +0000391static std::unique_ptr<ExprAST> ParsePrimary() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000392 switch (CurTok) {
Eric Christopherc0239362014-12-08 18:12:28 +0000393 default:
394 return Error("unknown token when expecting an expression");
395 case tok_identifier:
396 return ParseIdentifierExpr();
397 case tok_number:
398 return ParseNumberExpr();
399 case '(':
400 return ParseParenExpr();
401 case tok_if:
402 return ParseIfExpr();
403 case tok_for:
404 return ParseForExpr();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000405 }
406}
407
408/// binoprhs
409/// ::= ('+' primary)*
Lang Hames09bf4c12015-08-18 18:11:06 +0000410static std::unique_ptr<ExprAST> ParseBinOpRHS(int ExprPrec,
411 std::unique_ptr<ExprAST> LHS) {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000412 // If this is a binop, find its precedence.
413 while (1) {
414 int TokPrec = GetTokPrecedence();
Eric Christopherc0239362014-12-08 18:12:28 +0000415
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000416 // If this is a binop that binds at least as tightly as the current binop,
417 // consume it, otherwise we are done.
418 if (TokPrec < ExprPrec)
419 return LHS;
Eric Christopherc0239362014-12-08 18:12:28 +0000420
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000421 // Okay, we know this is a binop.
422 int BinOp = CurTok;
Eric Christopherc0239362014-12-08 18:12:28 +0000423 getNextToken(); // eat binop
424
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000425 // Parse the primary expression after the binary operator.
Lang Hames09bf4c12015-08-18 18:11:06 +0000426 auto RHS = ParsePrimary();
Eric Christopherc0239362014-12-08 18:12:28 +0000427 if (!RHS)
Lang Hames09bf4c12015-08-18 18:11:06 +0000428 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000429
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000430 // If BinOp binds less tightly with RHS than the operator after RHS, let
431 // the pending operator take RHS as its LHS.
432 int NextPrec = GetTokPrecedence();
433 if (TokPrec < NextPrec) {
Lang Hames09bf4c12015-08-18 18:11:06 +0000434 RHS = ParseBinOpRHS(TokPrec + 1, std::move(RHS));
435 if (!RHS)
436 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000437 }
Eric Christopherc0239362014-12-08 18:12:28 +0000438
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000439 // Merge LHS/RHS.
Lang Hames59b0da82015-08-19 18:15:58 +0000440 LHS =
441 llvm::make_unique<BinaryExprAST>(BinOp, std::move(LHS), std::move(RHS));
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000442 }
443}
444
445/// expression
446/// ::= primary binoprhs
447///
Lang Hames09bf4c12015-08-18 18:11:06 +0000448static std::unique_ptr<ExprAST> ParseExpression() {
449 auto LHS = ParsePrimary();
Eric Christopherc0239362014-12-08 18:12:28 +0000450 if (!LHS)
Lang Hames09bf4c12015-08-18 18:11:06 +0000451 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000452
Lang Hames09bf4c12015-08-18 18:11:06 +0000453 return ParseBinOpRHS(0, std::move(LHS));
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000454}
455
456/// prototype
457/// ::= id '(' id* ')'
Lang Hames09bf4c12015-08-18 18:11:06 +0000458static std::unique_ptr<PrototypeAST> ParsePrototype() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000459 if (CurTok != tok_identifier)
460 return ErrorP("Expected function name in prototype");
461
462 std::string FnName = IdentifierStr;
463 getNextToken();
Eric Christopherc0239362014-12-08 18:12:28 +0000464
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000465 if (CurTok != '(')
466 return ErrorP("Expected '(' in prototype");
Eric Christopherc0239362014-12-08 18:12:28 +0000467
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000468 std::vector<std::string> ArgNames;
469 while (getNextToken() == tok_identifier)
470 ArgNames.push_back(IdentifierStr);
471 if (CurTok != ')')
472 return ErrorP("Expected ')' in prototype");
Eric Christopherc0239362014-12-08 18:12:28 +0000473
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000474 // success.
Eric Christopherc0239362014-12-08 18:12:28 +0000475 getNextToken(); // eat ')'.
476
Lang Hames09bf4c12015-08-18 18:11:06 +0000477 return llvm::make_unique<PrototypeAST>(FnName, std::move(ArgNames));
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000478}
479
480/// definition ::= 'def' prototype expression
Lang Hames09bf4c12015-08-18 18:11:06 +0000481static std::unique_ptr<FunctionAST> ParseDefinition() {
Eric Christopherc0239362014-12-08 18:12:28 +0000482 getNextToken(); // eat def.
Lang Hames09bf4c12015-08-18 18:11:06 +0000483 auto Proto = ParsePrototype();
484 if (!Proto)
485 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000486
Lang Hames09bf4c12015-08-18 18:11:06 +0000487 if (auto E = ParseExpression())
488 return llvm::make_unique<FunctionAST>(std::move(Proto), std::move(E));
489 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000490}
491
492/// toplevelexpr ::= expression
Lang Hames09bf4c12015-08-18 18:11:06 +0000493static std::unique_ptr<FunctionAST> ParseTopLevelExpr() {
494 if (auto E = ParseExpression()) {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000495 // Make an anonymous proto.
Lang Hames2d789c32015-08-26 03:07:41 +0000496 auto Proto = llvm::make_unique<PrototypeAST>("__anon_expr",
497 std::vector<std::string>());
Lang Hames09bf4c12015-08-18 18:11:06 +0000498 return llvm::make_unique<FunctionAST>(std::move(Proto), std::move(E));
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000499 }
Lang Hames09bf4c12015-08-18 18:11:06 +0000500 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000501}
502
503/// external ::= 'extern' prototype
Lang Hames09bf4c12015-08-18 18:11:06 +0000504static std::unique_ptr<PrototypeAST> ParseExtern() {
Eric Christopherc0239362014-12-08 18:12:28 +0000505 getNextToken(); // eat extern.
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000506 return ParsePrototype();
507}
508
509//===----------------------------------------------------------------------===//
510// Code Generation
511//===----------------------------------------------------------------------===//
512
Lang Hames2d789c32015-08-26 03:07:41 +0000513static std::unique_ptr<Module> TheModule;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000514static IRBuilder<> Builder(getGlobalContext());
Eric Christopherc0239362014-12-08 18:12:28 +0000515static std::map<std::string, Value *> NamedValues;
Lang Hames2d789c32015-08-26 03:07:41 +0000516static std::unique_ptr<legacy::FunctionPassManager> TheFPM;
517static std::unique_ptr<KaleidoscopeJIT> TheJIT;
518static std::map<std::string, std::unique_ptr<PrototypeAST>> FunctionProtos;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000519
Eric Christopherc0239362014-12-08 18:12:28 +0000520Value *ErrorV(const char *Str) {
521 Error(Str);
Lang Hames09bf4c12015-08-18 18:11:06 +0000522 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000523}
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000524
Lang Hames2d789c32015-08-26 03:07:41 +0000525Function *getFunction(std::string Name) {
526 // First, see if the function has already been added to the current module.
527 if (auto *F = TheModule->getFunction(Name))
528 return F;
529
530 // If not, check whether we can codegen the declaration from some existing
531 // prototype.
532 auto FI = FunctionProtos.find(Name);
533 if (FI != FunctionProtos.end())
534 return FI->second->codegen();
535
536 // If no existing prototype exists, return null.
537 return nullptr;
538}
539
540Value *NumberExprAST::codegen() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000541 return ConstantFP::get(getGlobalContext(), APFloat(Val));
542}
543
Lang Hames2d789c32015-08-26 03:07:41 +0000544Value *VariableExprAST::codegen() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000545 // Look this variable up in the function.
546 Value *V = NamedValues[Name];
Lang Hames596aec92015-08-19 18:32:58 +0000547 if (!V)
548 return ErrorV("Unknown variable name");
549 return V;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000550}
551
Lang Hames2d789c32015-08-26 03:07:41 +0000552Value *BinaryExprAST::codegen() {
553 Value *L = LHS->codegen();
554 Value *R = RHS->codegen();
Lang Hames09bf4c12015-08-18 18:11:06 +0000555 if (!L || !R)
556 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000557
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000558 switch (Op) {
Eric Christopherc0239362014-12-08 18:12:28 +0000559 case '+':
560 return Builder.CreateFAdd(L, R, "addtmp");
561 case '-':
562 return Builder.CreateFSub(L, R, "subtmp");
563 case '*':
564 return Builder.CreateFMul(L, R, "multmp");
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000565 case '<':
566 L = Builder.CreateFCmpULT(L, R, "cmptmp");
567 // Convert bool 0/1 to double 0.0 or 1.0
568 return Builder.CreateUIToFP(L, Type::getDoubleTy(getGlobalContext()),
569 "booltmp");
Eric Christopherc0239362014-12-08 18:12:28 +0000570 default:
571 return ErrorV("invalid binary operator");
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000572 }
573}
574
Lang Hames2d789c32015-08-26 03:07:41 +0000575Value *CallExprAST::codegen() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000576 // Look up the name in the global module table.
Lang Hames2d789c32015-08-26 03:07:41 +0000577 Function *CalleeF = getFunction(Callee);
Lang Hames09bf4c12015-08-18 18:11:06 +0000578 if (!CalleeF)
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000579 return ErrorV("Unknown function referenced");
Eric Christopherc0239362014-12-08 18:12:28 +0000580
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000581 // If argument mismatch error.
582 if (CalleeF->arg_size() != Args.size())
583 return ErrorV("Incorrect # arguments passed");
584
Eric Christopherc0239362014-12-08 18:12:28 +0000585 std::vector<Value *> ArgsV;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000586 for (unsigned i = 0, e = Args.size(); i != e; ++i) {
Lang Hames2d789c32015-08-26 03:07:41 +0000587 ArgsV.push_back(Args[i]->codegen());
Lang Hames09bf4c12015-08-18 18:11:06 +0000588 if (!ArgsV.back())
589 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000590 }
Eric Christopherc0239362014-12-08 18:12:28 +0000591
Francois Pichetc5d10502011-07-15 10:59:52 +0000592 return Builder.CreateCall(CalleeF, ArgsV, "calltmp");
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000593}
594
Lang Hames2d789c32015-08-26 03:07:41 +0000595Value *IfExprAST::codegen() {
596 Value *CondV = Cond->codegen();
Lang Hames09bf4c12015-08-18 18:11:06 +0000597 if (!CondV)
598 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000599
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000600 // Convert condition to a bool by comparing equal to 0.0.
Eric Christopherc0239362014-12-08 18:12:28 +0000601 CondV = Builder.CreateFCmpONE(
602 CondV, ConstantFP::get(getGlobalContext(), APFloat(0.0)), "ifcond");
603
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000604 Function *TheFunction = Builder.GetInsertBlock()->getParent();
Eric Christopherc0239362014-12-08 18:12:28 +0000605
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000606 // Create blocks for the then and else cases. Insert the 'then' block at the
607 // end of the function.
Eric Christopherc0239362014-12-08 18:12:28 +0000608 BasicBlock *ThenBB =
609 BasicBlock::Create(getGlobalContext(), "then", TheFunction);
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000610 BasicBlock *ElseBB = BasicBlock::Create(getGlobalContext(), "else");
611 BasicBlock *MergeBB = BasicBlock::Create(getGlobalContext(), "ifcont");
Eric Christopherc0239362014-12-08 18:12:28 +0000612
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000613 Builder.CreateCondBr(CondV, ThenBB, ElseBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000614
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000615 // Emit then value.
616 Builder.SetInsertPoint(ThenBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000617
Lang Hames2d789c32015-08-26 03:07:41 +0000618 Value *ThenV = Then->codegen();
Lang Hames09bf4c12015-08-18 18:11:06 +0000619 if (!ThenV)
620 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000621
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000622 Builder.CreateBr(MergeBB);
623 // Codegen of 'Then' can change the current block, update ThenBB for the PHI.
624 ThenBB = Builder.GetInsertBlock();
Eric Christopherc0239362014-12-08 18:12:28 +0000625
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000626 // Emit else block.
627 TheFunction->getBasicBlockList().push_back(ElseBB);
628 Builder.SetInsertPoint(ElseBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000629
Lang Hames2d789c32015-08-26 03:07:41 +0000630 Value *ElseV = Else->codegen();
Lang Hames09bf4c12015-08-18 18:11:06 +0000631 if (!ElseV)
632 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000633
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000634 Builder.CreateBr(MergeBB);
635 // Codegen of 'Else' can change the current block, update ElseBB for the PHI.
636 ElseBB = Builder.GetInsertBlock();
Eric Christopherc0239362014-12-08 18:12:28 +0000637
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000638 // Emit merge block.
639 TheFunction->getBasicBlockList().push_back(MergeBB);
640 Builder.SetInsertPoint(MergeBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000641 PHINode *PN =
642 Builder.CreatePHI(Type::getDoubleTy(getGlobalContext()), 2, "iftmp");
643
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000644 PN->addIncoming(ThenV, ThenBB);
645 PN->addIncoming(ElseV, ElseBB);
646 return PN;
647}
648
Lang Hames59b0da82015-08-19 18:15:58 +0000649// Output for-loop as:
650// ...
651// start = startexpr
652// goto loop
653// loop:
654// variable = phi [start, loopheader], [nextvariable, loopend]
655// ...
656// bodyexpr
657// ...
658// loopend:
659// step = stepexpr
660// nextvariable = variable + step
661// endcond = endexpr
662// br endcond, loop, endloop
663// outloop:
Lang Hames2d789c32015-08-26 03:07:41 +0000664Value *ForExprAST::codegen() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000665 // Emit the start code first, without 'variable' in scope.
Lang Hames2d789c32015-08-26 03:07:41 +0000666 Value *StartVal = Start->codegen();
Lang Hames09bf4c12015-08-18 18:11:06 +0000667 if (!StartVal)
668 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000669
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000670 // Make the new basic block for the loop header, inserting after current
671 // block.
672 Function *TheFunction = Builder.GetInsertBlock()->getParent();
673 BasicBlock *PreheaderBB = Builder.GetInsertBlock();
Eric Christopherc0239362014-12-08 18:12:28 +0000674 BasicBlock *LoopBB =
675 BasicBlock::Create(getGlobalContext(), "loop", TheFunction);
676
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000677 // Insert an explicit fall through from the current block to the LoopBB.
678 Builder.CreateBr(LoopBB);
679
680 // Start insertion in LoopBB.
681 Builder.SetInsertPoint(LoopBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000682
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000683 // Start the PHI node with an entry for Start.
Eric Christopherc0239362014-12-08 18:12:28 +0000684 PHINode *Variable = Builder.CreatePHI(Type::getDoubleTy(getGlobalContext()),
685 2, VarName.c_str());
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000686 Variable->addIncoming(StartVal, PreheaderBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000687
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000688 // Within the loop, the variable is defined equal to the PHI node. If it
689 // shadows an existing variable, we have to restore it, so save it now.
690 Value *OldVal = NamedValues[VarName];
691 NamedValues[VarName] = Variable;
Eric Christopherc0239362014-12-08 18:12:28 +0000692
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000693 // Emit the body of the loop. This, like any other expr, can change the
694 // current BB. Note that we ignore the value computed by the body, but don't
695 // allow an error.
Lang Hames2d789c32015-08-26 03:07:41 +0000696 if (!Body->codegen())
Lang Hames09bf4c12015-08-18 18:11:06 +0000697 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000698
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000699 // Emit the step value.
Lang Hames59b0da82015-08-19 18:15:58 +0000700 Value *StepVal = nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000701 if (Step) {
Lang Hames2d789c32015-08-26 03:07:41 +0000702 StepVal = Step->codegen();
Lang Hames09bf4c12015-08-18 18:11:06 +0000703 if (!StepVal)
704 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000705 } else {
706 // If not specified, use 1.0.
707 StepVal = ConstantFP::get(getGlobalContext(), APFloat(1.0));
708 }
Eric Christopherc0239362014-12-08 18:12:28 +0000709
Chris Lattner26d79502010-06-21 22:51:14 +0000710 Value *NextVar = Builder.CreateFAdd(Variable, StepVal, "nextvar");
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000711
712 // Compute the end condition.
Lang Hames2d789c32015-08-26 03:07:41 +0000713 Value *EndCond = End->codegen();
Lang Hames09bf4c12015-08-18 18:11:06 +0000714 if (!EndCond)
Lang Hames59b0da82015-08-19 18:15:58 +0000715 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000716
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000717 // Convert condition to a bool by comparing equal to 0.0.
Eric Christopherc0239362014-12-08 18:12:28 +0000718 EndCond = Builder.CreateFCmpONE(
719 EndCond, ConstantFP::get(getGlobalContext(), APFloat(0.0)), "loopcond");
720
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000721 // Create the "after loop" block and insert it.
722 BasicBlock *LoopEndBB = Builder.GetInsertBlock();
Eric Christopherc0239362014-12-08 18:12:28 +0000723 BasicBlock *AfterBB =
724 BasicBlock::Create(getGlobalContext(), "afterloop", TheFunction);
725
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000726 // Insert the conditional branch into the end of LoopEndBB.
727 Builder.CreateCondBr(EndCond, LoopBB, AfterBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000728
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000729 // Any new code will be inserted in AfterBB.
730 Builder.SetInsertPoint(AfterBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000731
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000732 // Add a new entry to the PHI node for the backedge.
733 Variable->addIncoming(NextVar, LoopEndBB);
Eric Christopherc0239362014-12-08 18:12:28 +0000734
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000735 // Restore the unshadowed variable.
736 if (OldVal)
737 NamedValues[VarName] = OldVal;
738 else
739 NamedValues.erase(VarName);
740
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000741 // for expr always returns 0.0.
742 return Constant::getNullValue(Type::getDoubleTy(getGlobalContext()));
743}
744
Lang Hames2d789c32015-08-26 03:07:41 +0000745Function *PrototypeAST::codegen() {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000746 // Make the function type: double(double,double) etc.
Eric Christopherc0239362014-12-08 18:12:28 +0000747 std::vector<Type *> Doubles(Args.size(),
748 Type::getDoubleTy(getGlobalContext()));
749 FunctionType *FT =
750 FunctionType::get(Type::getDoubleTy(getGlobalContext()), Doubles, false);
751
752 Function *F =
Lang Hames2d789c32015-08-26 03:07:41 +0000753 Function::Create(FT, Function::ExternalLinkage, Name, TheModule.get());
Eric Christopherc0239362014-12-08 18:12:28 +0000754
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000755 // Set names for all arguments.
756 unsigned Idx = 0;
Lang Hames2d789c32015-08-26 03:07:41 +0000757 for (auto &Arg : F->args())
758 Arg.setName(Args[Idx++]);
Eric Christopherc0239362014-12-08 18:12:28 +0000759
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000760 return F;
761}
762
Lang Hames2d789c32015-08-26 03:07:41 +0000763Function *FunctionAST::codegen() {
764 // Transfer ownership of the prototype to the FunctionProtos map, but keep a
765 // reference to it for use below.
766 auto &P = *Proto;
767 FunctionProtos[Proto->getName()] = std::move(Proto);
768 Function *TheFunction = getFunction(P.getName());
Lang Hames09bf4c12015-08-18 18:11:06 +0000769 if (!TheFunction)
770 return nullptr;
Eric Christopherc0239362014-12-08 18:12:28 +0000771
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000772 // Create a new basic block to start insertion into.
773 BasicBlock *BB = BasicBlock::Create(getGlobalContext(), "entry", TheFunction);
774 Builder.SetInsertPoint(BB);
Eric Christopherc0239362014-12-08 18:12:28 +0000775
Lang Hames2d789c32015-08-26 03:07:41 +0000776 // Record the function arguments in the NamedValues map.
777 NamedValues.clear();
778 for (auto &Arg : TheFunction->args())
779 NamedValues[Arg.getName()] = &Arg;
780
781 if (Value *RetVal = Body->codegen()) {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000782 // Finish off the function.
783 Builder.CreateRet(RetVal);
784
785 // Validate the generated code, checking for consistency.
786 verifyFunction(*TheFunction);
787
Lang Hames2d789c32015-08-26 03:07:41 +0000788 // Run the optimizer on the function.
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000789 TheFPM->run(*TheFunction);
Eric Christopherc0239362014-12-08 18:12:28 +0000790
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000791 return TheFunction;
792 }
Eric Christopherc0239362014-12-08 18:12:28 +0000793
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000794 // Error reading body, remove function.
795 TheFunction->eraseFromParent();
Lang Hames09bf4c12015-08-18 18:11:06 +0000796 return nullptr;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000797}
798
799//===----------------------------------------------------------------------===//
800// Top-Level parsing and JIT Driver
801//===----------------------------------------------------------------------===//
802
Lang Hames2d789c32015-08-26 03:07:41 +0000803static void InitializeModuleAndPassManager() {
804 // Open a new module.
805 TheModule = llvm::make_unique<Module>("my cool jit", getGlobalContext());
806 TheModule->setDataLayout(TheJIT->getTargetMachine().createDataLayout());
807
808 // Create a new pass manager attached to it.
809 TheFPM = llvm::make_unique<legacy::FunctionPassManager>(TheModule.get());
810
811 // Provide basic AliasAnalysis support for GVN.
812 TheFPM->add(createBasicAliasAnalysisPass());
813 // Do simple "peephole" optimizations and bit-twiddling optzns.
814 TheFPM->add(createInstructionCombiningPass());
815 // Reassociate expressions.
816 TheFPM->add(createReassociatePass());
817 // Eliminate Common SubExpressions.
818 TheFPM->add(createGVNPass());
819 // Simplify the control flow graph (deleting unreachable blocks, etc).
820 TheFPM->add(createCFGSimplificationPass());
821
822 TheFPM->doInitialization();
823}
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000824
825static void HandleDefinition() {
Lang Hames09bf4c12015-08-18 18:11:06 +0000826 if (auto FnAST = ParseDefinition()) {
Lang Hames2d789c32015-08-26 03:07:41 +0000827 if (auto *FnIR = FnAST->codegen()) {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000828 fprintf(stderr, "Read function definition:");
Lang Hames09bf4c12015-08-18 18:11:06 +0000829 FnIR->dump();
Lang Hames2d789c32015-08-26 03:07:41 +0000830 TheJIT->addModule(std::move(TheModule));
831 InitializeModuleAndPassManager();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000832 }
833 } else {
834 // Skip token for error recovery.
835 getNextToken();
836 }
837}
838
839static void HandleExtern() {
Lang Hames09bf4c12015-08-18 18:11:06 +0000840 if (auto ProtoAST = ParseExtern()) {
Lang Hames2d789c32015-08-26 03:07:41 +0000841 if (auto *FnIR = ProtoAST->codegen()) {
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000842 fprintf(stderr, "Read extern: ");
Lang Hames09bf4c12015-08-18 18:11:06 +0000843 FnIR->dump();
Lang Hames2d789c32015-08-26 03:07:41 +0000844 FunctionProtos[ProtoAST->getName()] = std::move(ProtoAST);
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000845 }
846 } else {
847 // Skip token for error recovery.
848 getNextToken();
849 }
850}
851
852static void HandleTopLevelExpression() {
853 // Evaluate a top-level expression into an anonymous function.
Lang Hames09bf4c12015-08-18 18:11:06 +0000854 if (auto FnAST = ParseTopLevelExpr()) {
Lang Hames2d789c32015-08-26 03:07:41 +0000855 if (FnAST->codegen()) {
Eric Christopherc0239362014-12-08 18:12:28 +0000856
Lang Hames2d789c32015-08-26 03:07:41 +0000857 // JIT the module containing the anonymous expression, keeping a handle so
858 // we can free it later.
859 auto H = TheJIT->addModule(std::move(TheModule));
860 InitializeModuleAndPassManager();
861
862 // Search the JIT for the __anon_expr symbol.
863 auto ExprSymbol = TheJIT->findSymbol("__anon_expr");
864 assert(ExprSymbol && "Function not found");
865
866 // Get the symbol's address and cast it to the right type (takes no
867 // arguments, returns a double) so we can call it as a native function.
868 double (*FP)() = (double (*)())(intptr_t)ExprSymbol.getAddress();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000869 fprintf(stderr, "Evaluated to %f\n", FP());
Lang Hames2d789c32015-08-26 03:07:41 +0000870
871 // Delete the anonymous expression module from the JIT.
872 TheJIT->removeModule(H);
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000873 }
874 } else {
875 // Skip token for error recovery.
876 getNextToken();
877 }
878}
879
880/// top ::= definition | external | expression | ';'
881static void MainLoop() {
882 while (1) {
883 fprintf(stderr, "ready> ");
884 switch (CurTok) {
Eric Christopherc0239362014-12-08 18:12:28 +0000885 case tok_eof:
886 return;
Lang Hames59b0da82015-08-19 18:15:58 +0000887 case ';': // ignore top-level semicolons.
Eric Christopherc0239362014-12-08 18:12:28 +0000888 getNextToken();
Lang Hames59b0da82015-08-19 18:15:58 +0000889 break;
Eric Christopherc0239362014-12-08 18:12:28 +0000890 case tok_def:
891 HandleDefinition();
892 break;
893 case tok_extern:
894 HandleExtern();
895 break;
896 default:
897 HandleTopLevelExpression();
898 break;
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000899 }
900 }
901}
902
903//===----------------------------------------------------------------------===//
904// "Library" functions that can be "extern'd" from user code.
905//===----------------------------------------------------------------------===//
906
907/// putchard - putchar that takes a double and returns 0.
Lang Hamesd76e0672015-08-27 20:31:44 +0000908__attribute__((used)) extern "C" double putchard(double X) {
909 fputc((char)X, stderr);
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000910 return 0;
911}
912
Lang Hames59b0da82015-08-19 18:15:58 +0000913/// printd - printf that takes a double prints it as "%f\n", returning 0.
Lang Hamesd76e0672015-08-27 20:31:44 +0000914__attribute__((used)) extern "C" double printd(double X) {
915 fprintf(stderr, "%f\n", X);
Lang Hames59b0da82015-08-19 18:15:58 +0000916 return 0;
917}
918
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000919//===----------------------------------------------------------------------===//
920// Main driver code.
921//===----------------------------------------------------------------------===//
922
923int main() {
924 InitializeNativeTarget();
Eric Christopher1b74b652014-12-08 18:00:38 +0000925 InitializeNativeTargetAsmPrinter();
926 InitializeNativeTargetAsmParser();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000927
928 // Install standard binary operators.
929 // 1 is lowest precedence.
930 BinopPrecedence['<'] = 10;
931 BinopPrecedence['+'] = 20;
932 BinopPrecedence['-'] = 20;
Eric Christopherc0239362014-12-08 18:12:28 +0000933 BinopPrecedence['*'] = 40; // highest.
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000934
935 // Prime the first token.
936 fprintf(stderr, "ready> ");
937 getNextToken();
938
Lang Hames2d789c32015-08-26 03:07:41 +0000939 TheJIT = llvm::make_unique<KaleidoscopeJIT>();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000940
Lang Hames2d789c32015-08-26 03:07:41 +0000941 InitializeModuleAndPassManager();
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000942
943 // Run the main "interpreter loop" now.
944 MainLoop();
945
Erick Tryzelaar21e83ea2009-09-22 21:15:19 +0000946 return 0;
947}