fibonacci.cpp revision 1d0be15f89cb5056e20e2d24faa8d6afb1573bca
166e7cd0eea6f116f3ed79acb8948c6d8db50833cReid Spencer//===--- examples/Fibonacci/fibonacci.cpp - An example use of the JIT -----===//
2237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman//
3e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer//                     The LLVM Compiler Infrastructure
4e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer//
5fc001bbfc360ab828e5a4b0cbe4bb7db87361b85Chris Lattner// This file is distributed under the University of Illinois Open Source
6fc001bbfc360ab828e5a4b0cbe4bb7db87361b85Chris Lattner// License. See LICENSE.TXT for details.
7237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman//
8e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer//===----------------------------------------------------------------------===//
9e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer//
1038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner// This small program provides an example of how to build quickly a small module
1138f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner// with function Fibonacci and execute it with the JIT.
12e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer//
1338f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner// The goal of this snippet is to create in the memory the LLVM module
1438f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner// consisting of one function as follow:
15e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer//
1638f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner//   int fib(int x) {
1738f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner//     if(x<=2) return 1;
1838f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner//     return fib(x-1)+fib(x-2);
1938f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner//   }
20237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman//
2138f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner// Once we have this, we compile the module via JIT, then execute the `fib'
22e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer// function and return result to a driver, i.e. to a "host program".
23e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer//
2438f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner//===----------------------------------------------------------------------===//
25e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
268b477ed579794ba6d76915d56b3f448a7dd20120Owen Anderson#include "llvm/LLVMContext.h"
2738f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner#include "llvm/Module.h"
2838f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner#include "llvm/DerivedTypes.h"
2938f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner#include "llvm/Constants.h"
3038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner#include "llvm/Instructions.h"
3138f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner#include "llvm/ModuleProvider.h"
3238f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner#include "llvm/Analysis/Verifier.h"
33afebb449283ada1b44f423e698b30672606fdc54Jeff Cohen#include "llvm/ExecutionEngine/JIT.h"
34afebb449283ada1b44f423e698b30672606fdc54Jeff Cohen#include "llvm/ExecutionEngine/Interpreter.h"
35e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer#include "llvm/ExecutionEngine/GenericValue.h"
36944fac71e082cc2664cc71b4d3f6c72bab7143fbChris Lattner#include "llvm/Support/raw_ostream.h"
37e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencerusing namespace llvm;
38e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
399adc0abad3c3ed40a268ccbcee0c74cb9e1359feOwen Andersonstatic Function *CreateFibFunction(Module *M, LLVMContext &Context) {
4038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Create the fib function and insert it into module M.  This function is said
4138f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // to return an int and take an int parameter.
426a98754ebbc211958297b0d20a77e8c3261c3708Chris Lattner  Function *FibF =
431d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson    cast<Function>(M->getOrInsertFunction("fib", Type::getInt32Ty(Context),
441d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson                                          Type::getInt32Ty(Context),
456a98754ebbc211958297b0d20a77e8c3261c3708Chris Lattner                                          (Type *)0));
46237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman
4738f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Add a basic block to the function.
481d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson  BasicBlock *BB = BasicBlock::Create(Context, "EntryBlock", FibF);
49237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman
5038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Get pointers to the constants.
511d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson  Value *One = ConstantInt::get(Type::getInt32Ty(Context), 1);
521d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson  Value *Two = ConstantInt::get(Type::getInt32Ty(Context), 2);
53e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
5438f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Get pointer to the integer argument of the add1 function...
55dadf88123f7abce7afe0db12beccc24c87e004a5Alkis Evlogimenos  Argument *ArgX = FibF->arg_begin();   // Get the arg.
5638f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  ArgX->setName("AnArg");            // Give it a nice symbolic name for fun.
57e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
5838f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Create the true_block.
591d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson  BasicBlock *RetBB = BasicBlock::Create(Context, "return", FibF);
6038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Create an exit block.
611d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson  BasicBlock* RecurseBB = BasicBlock::Create(Context, "recurse", FibF);
62e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
637520fcd7a5e4c17011588aab105dea9afa2ba3ecChris Lattner  // Create the "if (arg <= 2) goto exitbb"
64333c40096561218bc3597cf153c0a3895274414cOwen Anderson  Value *CondInst = new ICmpInst(*BB, ICmpInst::ICMP_SLE, ArgX, Two, "cond");
65051a950000e21935165db56695e35bade668193bGabor Greif  BranchInst::Create(RetBB, RecurseBB, CondInst, BB);
66e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
6738f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Create: ret int 1
681d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson  ReturnInst::Create(Context, One, RetBB);
69237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman
7038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // create fib(x-1)
717cbd8a3e92221437048b484d5ef9c0a22d0f8c58Gabor Greif  Value *Sub = BinaryOperator::CreateSub(ArgX, One, "arg", RecurseBB);
72051a950000e21935165db56695e35bade668193bGabor Greif  CallInst *CallFibX1 = CallInst::Create(FibF, Sub, "fibx1", RecurseBB);
73f6b5c1abce89dbd7e8e12407aa8e4a04f805fdf2Chris Lattner  CallFibX1->setTailCall();
74237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman
7538f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // create fib(x-2)
767cbd8a3e92221437048b484d5ef9c0a22d0f8c58Gabor Greif  Sub = BinaryOperator::CreateSub(ArgX, Two, "arg", RecurseBB);
77051a950000e21935165db56695e35bade668193bGabor Greif  CallInst *CallFibX2 = CallInst::Create(FibF, Sub, "fibx2", RecurseBB);
78f6b5c1abce89dbd7e8e12407aa8e4a04f805fdf2Chris Lattner  CallFibX2->setTailCall();
7947968e4dfd849b83a7eb958611c994e6b500998cChris Lattner
8038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner
8138f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // fib(x-1)+fib(x-2)
827cbd8a3e92221437048b484d5ef9c0a22d0f8c58Gabor Greif  Value *Sum = BinaryOperator::CreateAdd(CallFibX1, CallFibX2,
8338f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner                                         "addresult", RecurseBB);
84237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman
8538f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Create the return instruction and add it to the basic block
861d0be15f89cb5056e20e2d24faa8d6afb1573bcaOwen Anderson  ReturnInst::Create(Context, Sum, RecurseBB);
87e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
8838f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  return FibF;
8938f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner}
90e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
91e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
9238f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattnerint main(int argc, char **argv) {
9338f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  int n = argc > 1 ? atol(argv[1]) : 24;
94e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
958b477ed579794ba6d76915d56b3f448a7dd20120Owen Anderson  LLVMContext Context;
968b477ed579794ba6d76915d56b3f448a7dd20120Owen Anderson
9738f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // Create some module to put our function into it.
9831895e73591d3c9ceae731a1274c8f56194b9616Owen Anderson  Module *M = new Module("test", Context);
9938f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner
10038f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // We are about to create the "fib" function:
1019adc0abad3c3ed40a268ccbcee0c74cb9e1359feOwen Anderson  Function *FibF = CreateFibFunction(M, Context);
102e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
103237cef4b0b94b17ca065efad484f386f42579b61Misha Brukman  // Now we going to create JIT
1044b1511b027ce0b648b3379f2891816c25b46f515Reid Kleckner  ExecutionEngine *EE = EngineBuilder(M).create();
105e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
106944fac71e082cc2664cc71b4d3f6c72bab7143fbChris Lattner  errs() << "verifying... ";
107e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer  if (verifyModule(*M)) {
108944fac71e082cc2664cc71b4d3f6c72bab7143fbChris Lattner    errs() << argv[0] << ": Error constructing function!\n";
109e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer    return 1;
110e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer  }
111e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
112944fac71e082cc2664cc71b4d3f6c72bab7143fbChris Lattner  errs() << "OK\n";
113944fac71e082cc2664cc71b4d3f6c72bab7143fbChris Lattner  errs() << "We just constructed this LLVM module:\n\n---------\n" << *M;
114944fac71e082cc2664cc71b4d3f6c72bab7143fbChris Lattner  errs() << "---------\nstarting fibonacci(" << n << ") with JIT...\n";
115e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
1167cf540bba0b262681a14058d01ad41a87ac870dfMisha Brukman  // Call the Fibonacci function with argument n:
11738f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  std::vector<GenericValue> Args(1);
11834bd70de3c344034b82dc9a964a6b6893efa3e82Reid Spencer  Args[0].IntVal = APInt(32, n);
11938f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  GenericValue GV = EE->runFunction(FibF, Args);
120e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer
12138f024daea1f27b6a8b610e3f8d21596f3e928d8Chris Lattner  // import result of execution
122944fac71e082cc2664cc71b4d3f6c72bab7143fbChris Lattner  outs() << "Result: " << GV.IntVal << "\n";
123e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer  return 0;
124e784fa40c5808bfb88480f0ab3746ed378a939dfReid Spencer}
125