llvm-project/llvm/tools/opt/opt.cpp

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//===----------------------------------------------------------------------===//
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// LLVM 'OPT' UTILITY
//
// Optimizations may be specified an arbitrary number of times on the command
// line, they are run in the order specified.
//
//===----------------------------------------------------------------------===//
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#include "llvm/Module.h"
#include "llvm/Bytecode/Reader.h"
#include "llvm/Bytecode/Writer.h"
#include "llvm/Support/CommandLine.h"
#include "llvm/Optimizations/AllOpts.h"
#include "llvm/Transforms/Instrumentation/TraceValues.h"
#include "llvm/Transforms/PrintModulePass.h"
#include <fstream>
using namespace opt;
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enum Opts {
// Basic optimizations
dce, constprop, inlining, strip, mstrip,
// Miscellaneous Transformations
trace, tracem, print,
// More powerful optimizations
indvars, sccp, adce, raise,
};
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struct {
enum Opts OptID;
Pass *ThePass;
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} OptTable[] = {
{ dce , new opt::DeadCodeElimination() },
{ constprop, new opt::ConstantPropogation() },
{ inlining , new opt::MethodInlining() },
{ strip , new opt::SymbolStripping() },
{ mstrip , new opt::FullSymbolStripping() },
{ indvars , new opt::InductionVariableCannonicalize() },
{ sccp , new opt::SCCPPass() },
{ adce , new opt::AgressiveDCE() },
{ raise , new opt::RaiseRepresentation() },
{ trace , new InsertTraceCode(true, true) },
{ tracem , new InsertTraceCode(false, true) },
{ print , new PrintModulePass("Current Method: \n",&cerr) },
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};
cl::String InputFilename ("", "Load <arg> file to optimize", cl::NoFlags, "-");
cl::String OutputFilename("o", "Override output filename", cl::NoFlags, "");
cl::Flag Force ("f", "Overwrite output files", cl::NoFlags, false);
cl::Flag Quiet ("q", "Don't print modifying pass names", 0, false);
cl::Alias QuietA ("quiet", "Alias for -q", cl::NoFlags, Quiet);
cl::EnumList<enum Opts> OptimizationList(cl::NoFlags,
clEnumVal(dce , "Dead Code Elimination"),
clEnumVal(constprop, "Simple Constant Propogation"),
clEnumValN(inlining , "inline", "Method Integration"),
clEnumVal(strip , "Strip Symbols"),
clEnumVal(mstrip , "Strip Module Symbols"),
clEnumVal(indvars , "Simplify Induction Variables"),
clEnumVal(sccp , "Sparse Conditional Constant Propogation"),
clEnumVal(adce , "Agressive DCE"),
clEnumVal(raise , "Raise to Higher Level"),
clEnumVal(trace , "Insert BB & Method trace code"),
clEnumVal(tracem , "Insert Method trace code only"),
clEnumVal(print , "Print working method to stderr"),
0);
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int main(int argc, char **argv) {
cl::ParseCommandLineOptions(argc, argv,
" llvm .bc -> .bc modular optimizer\n");
Module *C = ParseBytecodeFile(InputFilename);
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if (C == 0) {
cerr << "bytecode didn't read correctly.\n";
return 1;
}
for (unsigned i = 0; i < OptimizationList.size(); ++i) {
enum Opts Opt = OptimizationList[i];
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unsigned j;
for (j = 0; j < sizeof(OptTable)/sizeof(OptTable[0]); ++j) {
if (Opt == OptTable[j].OptID) {
if (OptTable[j].ThePass->run(C) && !Quiet)
cerr << OptimizationList.getArgName(Opt)
<< " pass made modifications!\n";
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break;
}
}
if (j == sizeof(OptTable)/sizeof(OptTable[0]))
cerr << "Optimization tables inconsistent!!\n";
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}
ostream *Out = &cout; // Default to printing to stdout...
if (OutputFilename != "") {
Out = new ofstream(OutputFilename.c_str(),
(Force ? 0 : ios::noreplace)|ios::out);
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if (!Out->good()) {
cerr << "Error opening " << OutputFilename << "!\n";
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delete C;
return 1;
}
}
// Okay, we're done now... write out result...
WriteBytecodeToFile(C, *Out);
delete C;
if (Out != &cout) delete Out;
return 0;
}