//===--- Action.cpp - The LLVM Compiler Driver ------------------*- C++ -*-===// // // The LLVM Compiler Infrastructure // // This file is distributed under the University of Illinois Open // Source License. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // // Action class - implementation and auxiliary functions. // //===----------------------------------------------------------------------===// #include "llvm/CompilerDriver/Action.h" #include "llvm/CompilerDriver/BuiltinOptions.h" #include "llvm/Support/raw_ostream.h" #include "llvm/Support/SystemUtils.h" #include "llvm/System/Program.h" #include "llvm/System/TimeValue.h" #include #include using namespace llvm; using namespace llvmc; namespace llvmc { extern int Main(int argc, char** argv); extern const char* ProgramName; } namespace { int ExecuteProgram(const std::string& name, const StrVector& args) { sys::Path prog = sys::Program::FindProgramByName(name); if (prog.isEmpty()) { prog = FindExecutable(name, ProgramName, (void *)(intptr_t)&Main); if (prog.isEmpty()) throw std::runtime_error("Can't find program '" + name + "'"); } if (!prog.canExecute()) throw std::runtime_error("Program '" + name + "' is not executable."); // Build the command line vector and the redirects array. const sys::Path* redirects[3] = {0,0,0}; sys::Path stdout_redirect; std::vector argv; argv.reserve((args.size()+2)); argv.push_back(name.c_str()); for (StrVector::const_iterator B = args.begin(), E = args.end(); B!=E; ++B) { if (*B == ">") { ++B; stdout_redirect.set(*B); redirects[1] = &stdout_redirect; } else { argv.push_back((*B).c_str()); } } argv.push_back(0); // null terminate list. // Invoke the program. return sys::Program::ExecuteAndWait(prog, &argv[0], 0, &redirects[0]); } void print_string (const std::string& str) { errs() << str << ' '; } } namespace llvmc { void AppendToGlobalTimeLog(const std::string& cmd, double time); } int llvmc::Action::Execute() const { if (DryRun || VerboseMode) { errs() << Command_ << " "; std::for_each(Args_.begin(), Args_.end(), print_string); errs() << '\n'; } if (!DryRun) { if (Time) { sys::TimeValue now = sys::TimeValue::now(); int ret = ExecuteProgram(Command_, Args_); sys::TimeValue now2 = sys::TimeValue::now(); now2 -= now; double elapsed = now2.seconds() + now2.microseconds() / 1000000.0; AppendToGlobalTimeLog(Command_, elapsed); return ret; } else { return ExecuteProgram(Command_, Args_); } } return 0; }