mirror of
https://github.com/ldc-developers/ldc.git
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797 lines
26 KiB
C++
797 lines
26 KiB
C++
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// Copyright (c) 1999-2004 by Digital Mars
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// All Rights Reserved
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// written by Walter Bright
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// www.digitalmars.com
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// License for redistribution is by either the Artistic License
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// in artistic.txt, or the GNU General Public License in gnu.txt.
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// See the included readme.txt for details.
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#include <cstddef>
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#include <fstream>
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#include "gen/llvm.h"
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#include "llvm/Analysis/Verifier.h"
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#include "llvm/Bitcode/ReaderWriter.h"
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#include "llvm/Module.h"
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#include "llvm/ModuleProvider.h"
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#include "llvm/PassManager.h"
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#include "llvm/LinkAllPasses.h"
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#include "llvm/System/Program.h"
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#include "llvm/System/Path.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/Support/CommandLine.h"
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#include "llvm/Target/TargetMachine.h"
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#include "mars.h"
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#include "module.h"
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#include "mtype.h"
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#include "declaration.h"
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#include "statement.h"
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#include "enum.h"
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#include "aggregate.h"
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#include "init.h"
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#include "attrib.h"
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#include "id.h"
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#include "import.h"
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#include "template.h"
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#include "scope.h"
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#include "gen/irstate.h"
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#include "gen/logger.h"
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#include "gen/tollvm.h"
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#include "gen/llvmhelpers.h"
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#include "gen/arrays.h"
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#include "gen/structs.h"
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#include "gen/classes.h"
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#include "gen/functions.h"
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#include "gen/todebug.h"
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#include "gen/runtime.h"
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#include "gen/abi.h"
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#include "gen/cl_options.h"
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#include "ir/irvar.h"
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#include "ir/irmodule.h"
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//////////////////////////////////////////////////////////////////////////////////////////
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static llvm::cl::opt<bool> noVerify("noverify",
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llvm::cl::desc("Do not run the validation pass before writing bitcode"),
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llvm::cl::ZeroOrMore);
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//////////////////////////////////////////////////////////////////////////////////////////
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// in gen/optimize.cpp
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void ldc_optimize_module(llvm::Module* m, char lvl, bool doinline);
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// fwd decl
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void write_asm_to_file(llvm::TargetMachine &Target, llvm::Module& m, llvm::raw_fd_ostream& Out);
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void assemble(const llvm::sys::Path& asmpath, const llvm::sys::Path& objpath);
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//////////////////////////////////////////////////////////////////////////////////////////
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llvm::Module* Module::genLLVMModule(Ir* sir)
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{
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bool logenabled = Logger::enabled();
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if (llvmForceLogging && !logenabled)
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{
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Logger::enable();
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}
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Logger::println("Generating module: %s\n", (md ? md->toChars() : toChars()));
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LOG_SCOPE;
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//printf("codegen: %s\n", srcfile->toChars());
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assert(!global.errors);
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// name the module
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std::string mname(toChars());
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if (md != 0)
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mname = md->toChars();
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// create a new ir state
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// TODO look at making the instance static and moving most functionality into IrModule where it belongs
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IRState ir(new llvm::Module(mname));
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gIR = &ir;
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ir.dmodule = this;
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// reset all IR data stored in Dsymbols and Types
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IrDsymbol::resetAll();
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IrType::resetAll();
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sir->setState(&ir);
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// module ir state
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// might already exist via import, just overwrite since
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// the global created for the filename must belong to the right llvm module
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// FIXME: but shouldn't this always get reset between modules? like other IrSymbols
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this->ir.irModule = new IrModule(this, srcfile->toChars());
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// set target triple
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ir.module->setTargetTriple(global.params.targetTriple);
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// set final data layout
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ir.module->setDataLayout(global.params.dataLayout);
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if (Logger::enabled())
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Logger::cout() << "Final data layout: " << global.params.dataLayout << '\n';
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// allocate the target abi
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gABI = TargetABI::getTarget();
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// debug info
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if (global.params.symdebug) {
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RegisterDwarfSymbols(ir.module);
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DtoDwarfCompileUnit(this);
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}
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// handle invalid 'objectø module
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if (!ClassDeclaration::object) {
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error("is missing 'class Object'");
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fatal();
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}
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if (!ClassDeclaration::classinfo) {
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error("is missing 'class ClassInfo'");
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fatal();
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}
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// process module members
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for (int k=0; k < members->dim; k++) {
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Dsymbol* dsym = (Dsymbol*)(members->data[k]);
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assert(dsym);
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dsym->codegen(sir);
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}
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// generate ModuleInfo
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genmoduleinfo();
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// emit function bodies
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sir->emitFunctionBodies();
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// emit usedArray
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if (!ir.usedArray.empty())
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{
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const LLArrayType* usedTy = LLArrayType::get(getVoidPtrType(), ir.usedArray.size());
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LLConstant* usedInit = LLConstantArray::get(usedTy, ir.usedArray);
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LLGlobalVariable* usedArray = new LLGlobalVariable(usedTy, true, LLGlobalValue::AppendingLinkage, usedInit, "llvm.used", ir.module);
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usedArray->setSection("llvm.metadata");
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}
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// verify the llvm
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if (!noVerify) {
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std::string verifyErr;
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Logger::println("Verifying module...");
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LOG_SCOPE;
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if (llvm::verifyModule(*ir.module,llvm::ReturnStatusAction,&verifyErr))
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{
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error("%s", verifyErr.c_str());
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fatal();
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}
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else {
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Logger::println("Verification passed!");
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}
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}
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gIR = NULL;
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if (llvmForceLogging && !logenabled)
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{
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Logger::disable();
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}
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sir->setState(NULL);
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return ir.module;
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}
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void writeModule(llvm::Module* m, std::string filename)
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{
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// run optimizer
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ldc_optimize_module(m, global.params.optimizeLevel, global.params.llvmInline);
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// verify the llvm
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if (!noVerify && (global.params.optimizeLevel >= 0 || global.params.llvmInline)) {
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std::string verifyErr;
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Logger::println("Verifying module... again...");
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LOG_SCOPE;
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if (llvm::verifyModule(*m,llvm::ReturnStatusAction,&verifyErr))
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{
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//error("%s", verifyErr.c_str());
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fatal();
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}
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else {
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Logger::println("Verification passed!");
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}
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}
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// eventually do our own path stuff, dmd's is a bit strange.
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typedef llvm::sys::Path LLPath;
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// write LLVM bitcode
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if (global.params.output_bc) {
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LLPath bcpath = LLPath(filename);
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bcpath.eraseSuffix();
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bcpath.appendSuffix(std::string(global.bc_ext));
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Logger::println("Writing LLVM bitcode to: %s\n", bcpath.c_str());
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std::ofstream bos(bcpath.c_str(), std::ios::binary);
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llvm::WriteBitcodeToFile(m, bos);
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}
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// write LLVM IR
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if (global.params.output_ll) {
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LLPath llpath = LLPath(filename);
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llpath.eraseSuffix();
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llpath.appendSuffix(std::string(global.ll_ext));
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Logger::println("Writing LLVM asm to: %s\n", llpath.c_str());
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std::ofstream aos(llpath.c_str());
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m->print(aos, NULL);
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}
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// write native assembly
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if (global.params.output_s || global.params.output_o) {
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LLPath spath = LLPath(filename);
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spath.eraseSuffix();
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spath.appendSuffix(std::string(global.s_ext));
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if (!global.params.output_s) {
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spath.createTemporaryFileOnDisk();
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}
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Logger::println("Writing native asm to: %s\n", spath.c_str());
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std::string err;
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{
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llvm::raw_fd_ostream out(spath.c_str(), false, err);
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write_asm_to_file(*gTargetMachine, *m, out);
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}
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// call gcc to convert assembly to object file
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if (global.params.output_o) {
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LLPath objpath = LLPath(filename);
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assemble(spath, objpath);
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}
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if (!global.params.output_s) {
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spath.eraseFromDisk();
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}
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}
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}
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/* ================================================================== */
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// based on llc code, University of Illinois Open Source License
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void write_asm_to_file(llvm::TargetMachine &Target, llvm::Module& m, llvm::raw_fd_ostream& out)
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{
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using namespace llvm;
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// Build up all of the passes that we want to do to the module.
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ExistingModuleProvider Provider(&m);
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FunctionPassManager Passes(&Provider);
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Passes.add(new TargetData(*Target.getTargetData()));
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// Ask the target to add backend passes as necessary.
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MachineCodeEmitter *MCE = 0;
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//TODO: May want to switch it on for -O0?
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bool Fast = false;
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FileModel::Model mod = Target.addPassesToEmitFile(Passes, out, TargetMachine::AssemblyFile, Fast);
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assert(mod == FileModel::AsmFile);
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bool err = Target.addPassesToEmitFileFinish(Passes, MCE, Fast);
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assert(!err);
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Passes.doInitialization();
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// Run our queue of passes all at once now, efficiently.
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for (llvm::Module::iterator I = m.begin(), E = m.end(); I != E; ++I)
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if (!I->isDeclaration())
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Passes.run(*I);
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Passes.doFinalization();
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// release module from module provider so we can delete it ourselves
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std::string Err;
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llvm::Module* rmod = Provider.releaseModule(&Err);
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assert(rmod);
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}
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/* ================================================================== */
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// uses gcc to make an obj out of an assembly file
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// based on llvm-ld code, University of Illinois Open Source License
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void assemble(const llvm::sys::Path& asmpath, const llvm::sys::Path& objpath)
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{
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using namespace llvm;
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const char *cc;
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#if !_WIN32
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cc = getenv("CC");
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if (!cc)
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#endif
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cc = "gcc";
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sys::Path gcc = llvm::sys::Program::FindProgramByName(cc);
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if (gcc.empty())
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{
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error("failed to locate gcc");
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fatal();
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}
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// Run GCC to assemble and link the program into native code.
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//
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// Note:
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// We can't just assemble and link the file with the system assembler
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// and linker because we don't know where to put the _start symbol.
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// GCC mysteriously knows how to do it.
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std::vector<std::string> args;
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args.push_back(gcc.toString());
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args.push_back("-fno-strict-aliasing");
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args.push_back("-O3");
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args.push_back("-c");
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args.push_back("-xassembler");
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args.push_back(asmpath.toString());
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args.push_back("-o");
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args.push_back(objpath.toString());
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//FIXME: only use this if needed?
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args.push_back("-fpic");
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//FIXME: enforce 64 bit
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if (global.params.is64bit)
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args.push_back("-m64");
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else
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// Assume 32-bit?
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args.push_back("-m32");
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// Now that "args" owns all the std::strings for the arguments, call the c_str
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// method to get the underlying string array. We do this game so that the
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// std::string array is guaranteed to outlive the const char* array.
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std::vector<const char *> Args;
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for (unsigned i = 0, e = args.size(); i != e; ++i)
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Args.push_back(args[i].c_str());
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Args.push_back(0);
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if (Logger::enabled()) {
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Logger::println("Assembling with: ");
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std::vector<const char*>::const_iterator I = Args.begin(), E = Args.end();
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std::ostream& logstr = *Logger::cout().stream();
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for (; I != E; ++I)
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if (*I)
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logstr << "'" << *I << "'" << " ";
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logstr << "\n" << std::flush;
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}
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// Run the compiler to assembly the program.
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std::string ErrMsg;
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int R = sys::Program::ExecuteAndWait(
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gcc, &Args[0], 0, 0, 0, 0, &ErrMsg);
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if (R)
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{
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error("Failed to invoke gcc. %s", ErrMsg.c_str());
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fatal();
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}
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}
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/* ================================================================== */
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// the following code generates functions and needs to output
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// debug info. these macros are useful for that
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#define DBG_TYPE ( getPtrToType(llvm::StructType::get(NULL,NULL)) )
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#define DBG_CAST(X) ( llvm::ConstantExpr::getBitCast(X, DBG_TYPE) )
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// build module ctor
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llvm::Function* build_module_ctor()
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{
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if (gIR->ctors.empty())
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return NULL;
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size_t n = gIR->ctors.size();
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if (n == 1)
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return gIR->ctors[0]->ir.irFunc->func;
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std::string name("_D");
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name.append(gIR->dmodule->mangle());
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name.append("6__ctorZ");
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std::vector<const LLType*> argsTy;
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const llvm::FunctionType* fnTy = llvm::FunctionType::get(LLType::VoidTy,argsTy,false);
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assert(gIR->module->getFunction(name) == NULL);
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llvm::Function* fn = llvm::Function::Create(fnTy, llvm::GlobalValue::InternalLinkage, name, gIR->module);
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fn->setCallingConv(DtoCallingConv(0, LINKd));
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llvm::BasicBlock* bb = llvm::BasicBlock::Create("entry", fn);
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IRBuilder<> builder(bb);
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// debug info
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LLGlobalVariable* subprog;
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if(global.params.symdebug) {
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subprog = DtoDwarfSubProgramInternal(name.c_str(), name.c_str()).getGV();
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builder.CreateCall(gIR->module->getFunction("llvm.dbg.func.start"), DBG_CAST(subprog));
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}
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for (size_t i=0; i<n; i++) {
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llvm::Function* f = gIR->ctors[i]->ir.irFunc->func;
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llvm::CallInst* call = builder.CreateCall(f,"");
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call->setCallingConv(DtoCallingConv(0, LINKd));
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}
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// debug info end
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if(global.params.symdebug)
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builder.CreateCall(gIR->module->getFunction("llvm.dbg.region.end"), DBG_CAST(subprog));
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builder.CreateRetVoid();
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return fn;
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}
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// build module dtor
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static llvm::Function* build_module_dtor()
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{
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if (gIR->dtors.empty())
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return NULL;
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size_t n = gIR->dtors.size();
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if (n == 1)
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return gIR->dtors[0]->ir.irFunc->func;
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std::string name("_D");
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name.append(gIR->dmodule->mangle());
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name.append("6__dtorZ");
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std::vector<const LLType*> argsTy;
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const llvm::FunctionType* fnTy = llvm::FunctionType::get(LLType::VoidTy,argsTy,false);
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assert(gIR->module->getFunction(name) == NULL);
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llvm::Function* fn = llvm::Function::Create(fnTy, llvm::GlobalValue::InternalLinkage, name, gIR->module);
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fn->setCallingConv(DtoCallingConv(0, LINKd));
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llvm::BasicBlock* bb = llvm::BasicBlock::Create("entry", fn);
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IRBuilder<> builder(bb);
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// debug info
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LLGlobalVariable* subprog;
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if(global.params.symdebug) {
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subprog = DtoDwarfSubProgramInternal(name.c_str(), name.c_str()).getGV();
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builder.CreateCall(gIR->module->getFunction("llvm.dbg.func.start"), DBG_CAST(subprog));
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}
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for (size_t i=0; i<n; i++) {
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llvm::Function* f = gIR->dtors[i]->ir.irFunc->func;
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llvm::CallInst* call = builder.CreateCall(f,"");
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call->setCallingConv(DtoCallingConv(0, LINKd));
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}
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// debug info end
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if(global.params.symdebug)
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builder.CreateCall(gIR->module->getFunction("llvm.dbg.region.end"), DBG_CAST(subprog));
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builder.CreateRetVoid();
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return fn;
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}
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// build module unittest
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static llvm::Function* build_module_unittest()
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{
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if (gIR->unitTests.empty())
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return NULL;
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size_t n = gIR->unitTests.size();
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if (n == 1)
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return gIR->unitTests[0]->ir.irFunc->func;
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std::string name("_D");
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name.append(gIR->dmodule->mangle());
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name.append("10__unittestZ");
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std::vector<const LLType*> argsTy;
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const llvm::FunctionType* fnTy = llvm::FunctionType::get(LLType::VoidTy,argsTy,false);
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assert(gIR->module->getFunction(name) == NULL);
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llvm::Function* fn = llvm::Function::Create(fnTy, llvm::GlobalValue::InternalLinkage, name, gIR->module);
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fn->setCallingConv(DtoCallingConv(0, LINKd));
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llvm::BasicBlock* bb = llvm::BasicBlock::Create("entry", fn);
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IRBuilder<> builder(bb);
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// debug info
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LLGlobalVariable* subprog;
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if(global.params.symdebug) {
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subprog = DtoDwarfSubProgramInternal(name.c_str(), name.c_str()).getGV();
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builder.CreateCall(gIR->module->getFunction("llvm.dbg.func.start"), DBG_CAST(subprog));
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}
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for (size_t i=0; i<n; i++) {
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llvm::Function* f = gIR->unitTests[i]->ir.irFunc->func;
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llvm::CallInst* call = builder.CreateCall(f,"");
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call->setCallingConv(DtoCallingConv(0, LINKd));
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}
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// debug info end
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if(global.params.symdebug)
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builder.CreateCall(gIR->module->getFunction("llvm.dbg.region.end"), DBG_CAST(subprog));
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builder.CreateRetVoid();
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return fn;
|
|
}
|
|
|
|
// build ModuleReference and register function, to register the module info in the global linked list
|
|
static LLFunction* build_module_reference_and_ctor(LLConstant* moduleinfo)
|
|
{
|
|
// build ctor type
|
|
const LLFunctionType* fty = LLFunctionType::get(LLType::VoidTy, std::vector<const LLType*>(), false);
|
|
|
|
// build ctor name
|
|
std::string fname = "_D";
|
|
fname += gIR->dmodule->mangle();
|
|
fname += "16__moduleinfoCtorZ";
|
|
|
|
// build a function that registers the moduleinfo in the global moduleinfo linked list
|
|
LLFunction* ctor = LLFunction::Create(fty, LLGlobalValue::InternalLinkage, fname, gIR->module);
|
|
|
|
// provide the default initializer
|
|
const LLStructType* modulerefTy = DtoModuleReferenceType();
|
|
std::vector<LLConstant*> mrefvalues;
|
|
mrefvalues.push_back(LLConstant::getNullValue(modulerefTy->getContainedType(0)));
|
|
mrefvalues.push_back(llvm::ConstantExpr::getBitCast(moduleinfo, modulerefTy->getContainedType(1)));
|
|
LLConstant* thismrefinit = LLConstantStruct::get(modulerefTy, mrefvalues);
|
|
|
|
// create the ModuleReference node for this module
|
|
std::string thismrefname = "_D";
|
|
thismrefname += gIR->dmodule->mangle();
|
|
thismrefname += "11__moduleRefZ";
|
|
LLGlobalVariable* thismref = new LLGlobalVariable(modulerefTy, false, LLGlobalValue::InternalLinkage, thismrefinit, thismrefname, gIR->module);
|
|
|
|
// make sure _Dmodule_ref is declared
|
|
LLGlobalVariable* mref = gIR->module->getNamedGlobal("_Dmodule_ref");
|
|
if (!mref)
|
|
mref = new LLGlobalVariable(getPtrToType(modulerefTy), false, LLGlobalValue::ExternalLinkage, NULL, "_Dmodule_ref", gIR->module);
|
|
|
|
// make the function insert this moduleinfo as the beginning of the _Dmodule_ref linked list
|
|
llvm::BasicBlock* bb = llvm::BasicBlock::Create("moduleinfoCtorEntry", ctor);
|
|
IRBuilder<> builder(bb);
|
|
|
|
// debug info
|
|
LLGlobalVariable* subprog;
|
|
if(global.params.symdebug) {
|
|
subprog = DtoDwarfSubProgramInternal(fname.c_str(), fname.c_str()).getGV();
|
|
builder.CreateCall(gIR->module->getFunction("llvm.dbg.func.start"), DBG_CAST(subprog));
|
|
}
|
|
|
|
// get current beginning
|
|
LLValue* curbeg = builder.CreateLoad(mref, "current");
|
|
|
|
// put current beginning as the next of this one
|
|
LLValue* gep = builder.CreateStructGEP(thismref, 0, "next");
|
|
builder.CreateStore(curbeg, gep);
|
|
|
|
// replace beginning
|
|
builder.CreateStore(thismref, mref);
|
|
|
|
// debug info end
|
|
if(global.params.symdebug)
|
|
builder.CreateCall(gIR->module->getFunction("llvm.dbg.region.end"), DBG_CAST(subprog));
|
|
|
|
// return
|
|
builder.CreateRetVoid();
|
|
|
|
return ctor;
|
|
}
|
|
|
|
// Put out instance of ModuleInfo for this Module
|
|
|
|
void Module::genmoduleinfo()
|
|
{
|
|
// The layout is:
|
|
// {
|
|
// char[] name;
|
|
// ModuleInfo[] importedModules;
|
|
// ClassInfo[] localClasses;
|
|
// uint flags;
|
|
//
|
|
// void function() ctor;
|
|
// void function() dtor;
|
|
// void function() unitTest;
|
|
//
|
|
// void* xgetMembers;
|
|
// void function() ictor;
|
|
// }
|
|
|
|
// resolve ModuleInfo
|
|
if (!moduleinfo)
|
|
{
|
|
error("object.d is missing the ModuleInfo class");
|
|
fatal();
|
|
}
|
|
|
|
moduleinfo->codegen(Type::sir);
|
|
|
|
// check for patch
|
|
if (moduleinfo->fields.dim != 9)
|
|
{
|
|
error("object.d ModuleInfo class is incorrect");
|
|
fatal();
|
|
}
|
|
|
|
// moduleinfo llvm struct type
|
|
const llvm::StructType* moduleinfoTy = isaStruct(moduleinfo->type->ir.type->get());
|
|
// classinfo llvm struct type
|
|
const llvm::StructType* classinfoTy = isaStruct(ClassDeclaration::classinfo->type->ir.type->get());
|
|
|
|
// initializer vector
|
|
std::vector<LLConstant*> initVec;
|
|
LLConstant* c = 0;
|
|
|
|
// vtable
|
|
c = moduleinfo->ir.irStruct->vtbl;
|
|
initVec.push_back(c);
|
|
|
|
// monitor
|
|
c = getNullPtr(getPtrToType(LLType::Int8Ty));
|
|
initVec.push_back(c);
|
|
|
|
// name
|
|
char *name = toPrettyChars();
|
|
c = DtoConstString(name);
|
|
initVec.push_back(c);
|
|
|
|
// importedModules[]
|
|
int aimports_dim = aimports.dim;
|
|
std::vector<LLConstant*> importInits;
|
|
for (size_t i = 0; i < aimports.dim; i++)
|
|
{
|
|
Module *m = (Module *)aimports.data[i];
|
|
if (!m->needModuleInfo() || m == this)
|
|
continue;
|
|
|
|
// declare the imported module info
|
|
std::string m_name("_D");
|
|
m_name.append(m->mangle());
|
|
m_name.append("8__ModuleZ");
|
|
llvm::GlobalVariable* m_gvar = gIR->module->getGlobalVariable(m_name);
|
|
if (!m_gvar) m_gvar = new llvm::GlobalVariable(moduleinfoTy, false, llvm::GlobalValue::ExternalLinkage, NULL, m_name, gIR->module);
|
|
importInits.push_back(m_gvar);
|
|
}
|
|
// has import array?
|
|
if (!importInits.empty())
|
|
{
|
|
const llvm::ArrayType* importArrTy = llvm::ArrayType::get(getPtrToType(moduleinfoTy), importInits.size());
|
|
c = llvm::ConstantArray::get(importArrTy, importInits);
|
|
std::string m_name("_D");
|
|
m_name.append(mangle());
|
|
m_name.append("9__importsZ");
|
|
llvm::GlobalVariable* m_gvar = gIR->module->getGlobalVariable(m_name);
|
|
if (!m_gvar) m_gvar = new llvm::GlobalVariable(importArrTy, true, llvm::GlobalValue::InternalLinkage, c, m_name, gIR->module);
|
|
c = llvm::ConstantExpr::getBitCast(m_gvar, getPtrToType(importArrTy->getElementType()));
|
|
c = DtoConstSlice(DtoConstSize_t(importInits.size()), c);
|
|
}
|
|
else
|
|
c = DtoConstSlice( DtoConstSize_t(0), getNullValue(getPtrToType(moduleinfoTy)) );
|
|
initVec.push_back(c);
|
|
|
|
// localClasses[]
|
|
ClassDeclarations aclasses;
|
|
//printf("members->dim = %d\n", members->dim);
|
|
for (size_t i = 0; i < members->dim; i++)
|
|
{
|
|
Dsymbol *member;
|
|
|
|
member = (Dsymbol *)members->data[i];
|
|
//printf("\tmember '%s'\n", member->toChars());
|
|
member->addLocalClass(&aclasses);
|
|
}
|
|
// fill inits
|
|
std::vector<LLConstant*> classInits;
|
|
for (size_t i = 0; i < aclasses.dim; i++)
|
|
{
|
|
ClassDeclaration* cd = (ClassDeclaration*)aclasses.data[i];
|
|
cd->codegen(Type::sir);
|
|
|
|
if (cd->isInterfaceDeclaration())
|
|
{
|
|
Logger::println("skipping interface '%s' in moduleinfo", cd->toPrettyChars());
|
|
continue;
|
|
}
|
|
else if (cd->sizeok != 1)
|
|
{
|
|
Logger::println("skipping opaque class declaration '%s' in moduleinfo", cd->toPrettyChars());
|
|
continue;
|
|
}
|
|
Logger::println("class: %s", cd->toPrettyChars());
|
|
assert(cd->ir.irStruct->classInfo);
|
|
c = DtoBitCast(cd->ir.irStruct->classInfo, getPtrToType(classinfoTy));
|
|
classInits.push_back(c);
|
|
}
|
|
// has class array?
|
|
if (!classInits.empty())
|
|
{
|
|
const llvm::ArrayType* classArrTy = llvm::ArrayType::get(getPtrToType(classinfoTy), classInits.size());
|
|
c = llvm::ConstantArray::get(classArrTy, classInits);
|
|
std::string m_name("_D");
|
|
m_name.append(mangle());
|
|
m_name.append("9__classesZ");
|
|
assert(gIR->module->getGlobalVariable(m_name) == NULL);
|
|
llvm::GlobalVariable* m_gvar = new llvm::GlobalVariable(classArrTy, true, llvm::GlobalValue::InternalLinkage, c, m_name, gIR->module);
|
|
c = DtoBitCast(m_gvar, getPtrToType(classinfoTy));
|
|
c = DtoConstSlice(DtoConstSize_t(classInits.size()), c);
|
|
}
|
|
else
|
|
c = DtoConstSlice( DtoConstSize_t(0), getNullValue(getPtrToType(classinfoTy)) );
|
|
initVec.push_back(c);
|
|
|
|
// flags
|
|
c = DtoConstUint(0);
|
|
if (!needmoduleinfo)
|
|
c = DtoConstUint(4); // flags (4 means MIstandalone)
|
|
initVec.push_back(c);
|
|
|
|
// function pointer type for next three fields
|
|
const LLType* fnptrTy = getPtrToType(LLFunctionType::get(LLType::VoidTy, std::vector<const LLType*>(), false));
|
|
|
|
// ctor
|
|
llvm::Function* fctor = build_module_ctor();
|
|
c = fctor ? fctor : getNullValue(fnptrTy);
|
|
initVec.push_back(c);
|
|
|
|
// dtor
|
|
llvm::Function* fdtor = build_module_dtor();
|
|
c = fdtor ? fdtor : getNullValue(fnptrTy);
|
|
initVec.push_back(c);
|
|
|
|
// unitTest
|
|
llvm::Function* unittest = build_module_unittest();
|
|
c = unittest ? unittest : getNullValue(fnptrTy);
|
|
initVec.push_back(c);
|
|
|
|
// xgetMembers
|
|
c = getNullValue(getVoidPtrType());
|
|
initVec.push_back(c);
|
|
|
|
// ictor
|
|
c = getNullValue(fnptrTy);
|
|
initVec.push_back(c);
|
|
|
|
/*Logger::println("MODULE INFO INITIALIZERS");
|
|
for (size_t i=0; i<initVec.size(); ++i)
|
|
{
|
|
Logger::cout() << *initVec[i] << '\n';
|
|
if (initVec[i]->getType() != moduleinfoTy->getElementType(i))
|
|
assert(0);
|
|
}*/
|
|
|
|
// create initializer
|
|
LLConstant* constMI = llvm::ConstantStruct::get(initVec);
|
|
|
|
// create name
|
|
std::string MIname("_D");
|
|
MIname.append(mangle());
|
|
MIname.append("8__ModuleZ");
|
|
|
|
// declare global
|
|
// flags will be modified at runtime so can't make it constant
|
|
|
|
// it makes no sense that the our own module info already exists!
|
|
assert(!gIR->module->getGlobalVariable(MIname));
|
|
llvm::GlobalVariable* gvar = new llvm::GlobalVariable(constMI->getType(), false, llvm::GlobalValue::ExternalLinkage, constMI, MIname, gIR->module);
|
|
|
|
// build the modulereference and ctor for registering it
|
|
LLFunction* mictor = build_module_reference_and_ctor(gvar);
|
|
|
|
// register this ctor in the magic llvm.global_ctors appending array
|
|
const LLFunctionType* magicfty = LLFunctionType::get(LLType::VoidTy, std::vector<const LLType*>(), false);
|
|
std::vector<const LLType*> magictypes;
|
|
magictypes.push_back(LLType::Int32Ty);
|
|
magictypes.push_back(getPtrToType(magicfty));
|
|
const LLStructType* magicsty = LLStructType::get(magictypes);
|
|
|
|
// make the constant element
|
|
std::vector<LLConstant*> magicconstants;
|
|
magicconstants.push_back(DtoConstUint(65535));
|
|
magicconstants.push_back(mictor);
|
|
LLConstant* magicinit = LLConstantStruct::get(magicsty, magicconstants);
|
|
|
|
// declare the appending array
|
|
const llvm::ArrayType* appendArrTy = llvm::ArrayType::get(magicsty, 1);
|
|
std::vector<LLConstant*> appendInits(1, magicinit);
|
|
LLConstant* appendInit = llvm::ConstantArray::get(appendArrTy, appendInits);
|
|
std::string appendName("llvm.global_ctors");
|
|
llvm::GlobalVariable* appendVar = new llvm::GlobalVariable(appendArrTy, true, llvm::GlobalValue::AppendingLinkage, appendInit, appendName, gIR->module);
|
|
}
|