mirror of
https://github.com/c64scene-ar/llvm-6502.git
synced 2024-11-11 08:07:22 +00:00
70c7e48545
The main observation is that we never need both the filesize and the map size. When mapping a slice of a file, it doesn't make sense to request a null terminator and that would be the only case where the filesize would be used. There are other cleanups that should be done in this area: * A client should not have to pass the size (even an explicit -1) to say if it wants a null terminator or not, so we should probably swap the argument order. * The default should be to not require a null terminator. Very few clients require this, but many end up asking for it just because it is the default. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@186984 91177308-0d34-0410-b5e6-96231b3b80d8
465 lines
14 KiB
C++
465 lines
14 KiB
C++
//===-- gold-plugin.cpp - Plugin to gold for Link Time Optimization ------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This is a gold plugin for LLVM. It provides an LLVM implementation of the
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// interface described in http://gcc.gnu.org/wiki/whopr/driver .
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/Config/config.h" // plugin-api.h requires HAVE_STDINT_H
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#include "plugin-api.h"
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#include "llvm-c/lto.h"
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#include "llvm/ADT/OwningPtr.h"
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#include "llvm/Support/Errno.h"
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#include "llvm/Support/FileSystem.h"
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#include "llvm/Support/MemoryBuffer.h"
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#include "llvm/Support/Path.h"
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#include "llvm/Support/Program.h"
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#include "llvm/Support/ToolOutputFile.h"
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#include "llvm/Support/system_error.h"
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#include <cerrno>
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#include <cstdlib>
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#include <cstring>
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#include <fstream>
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#include <list>
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#include <vector>
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// Support Windows/MinGW crazyness.
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#ifdef _WIN32
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# include <io.h>
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# define lseek _lseek
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# define read _read
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#endif
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using namespace llvm;
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namespace {
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ld_plugin_status discard_message(int level, const char *format, ...) {
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// Die loudly. Recent versions of Gold pass ld_plugin_message as the first
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// callback in the transfer vector. This should never be called.
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abort();
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}
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ld_plugin_add_symbols add_symbols = NULL;
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ld_plugin_get_symbols get_symbols = NULL;
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ld_plugin_add_input_file add_input_file = NULL;
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ld_plugin_add_input_library add_input_library = NULL;
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ld_plugin_set_extra_library_path set_extra_library_path = NULL;
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ld_plugin_get_view get_view = NULL;
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ld_plugin_message message = discard_message;
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int api_version = 0;
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int gold_version = 0;
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struct claimed_file {
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void *handle;
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std::vector<ld_plugin_symbol> syms;
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};
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lto_codegen_model output_type = LTO_CODEGEN_PIC_MODEL_STATIC;
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std::string output_name = "";
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std::list<claimed_file> Modules;
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std::vector<std::string> Cleanup;
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lto_code_gen_t code_gen = NULL;
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}
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namespace options {
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enum generate_bc { BC_NO, BC_ALSO, BC_ONLY };
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static bool generate_api_file = false;
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static generate_bc generate_bc_file = BC_NO;
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static std::string bc_path;
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static std::string obj_path;
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static std::string extra_library_path;
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static std::string triple;
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static std::string mcpu;
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// Additional options to pass into the code generator.
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// Note: This array will contain all plugin options which are not claimed
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// as plugin exclusive to pass to the code generator.
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// For example, "generate-api-file" and "as"options are for the plugin
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// use only and will not be passed.
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static std::vector<std::string> extra;
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static void process_plugin_option(const char* opt_)
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{
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if (opt_ == NULL)
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return;
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llvm::StringRef opt = opt_;
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if (opt == "generate-api-file") {
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generate_api_file = true;
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} else if (opt.startswith("mcpu=")) {
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mcpu = opt.substr(strlen("mcpu="));
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} else if (opt.startswith("extra-library-path=")) {
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extra_library_path = opt.substr(strlen("extra_library_path="));
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} else if (opt.startswith("mtriple=")) {
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triple = opt.substr(strlen("mtriple="));
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} else if (opt.startswith("obj-path=")) {
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obj_path = opt.substr(strlen("obj-path="));
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} else if (opt == "emit-llvm") {
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generate_bc_file = BC_ONLY;
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} else if (opt == "also-emit-llvm") {
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generate_bc_file = BC_ALSO;
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} else if (opt.startswith("also-emit-llvm=")) {
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llvm::StringRef path = opt.substr(strlen("also-emit-llvm="));
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generate_bc_file = BC_ALSO;
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if (!bc_path.empty()) {
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(*message)(LDPL_WARNING, "Path to the output IL file specified twice. "
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"Discarding %s", opt_);
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} else {
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bc_path = path;
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}
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} else {
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// Save this option to pass to the code generator.
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extra.push_back(opt);
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}
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}
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}
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static ld_plugin_status claim_file_hook(const ld_plugin_input_file *file,
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int *claimed);
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static ld_plugin_status all_symbols_read_hook(void);
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static ld_plugin_status cleanup_hook(void);
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extern "C" ld_plugin_status onload(ld_plugin_tv *tv);
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ld_plugin_status onload(ld_plugin_tv *tv) {
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// We're given a pointer to the first transfer vector. We read through them
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// until we find one where tv_tag == LDPT_NULL. The REGISTER_* tagged values
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// contain pointers to functions that we need to call to register our own
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// hooks. The others are addresses of functions we can use to call into gold
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// for services.
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bool registeredClaimFile = false;
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for (; tv->tv_tag != LDPT_NULL; ++tv) {
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switch (tv->tv_tag) {
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case LDPT_API_VERSION:
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api_version = tv->tv_u.tv_val;
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break;
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case LDPT_GOLD_VERSION: // major * 100 + minor
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gold_version = tv->tv_u.tv_val;
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break;
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case LDPT_OUTPUT_NAME:
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output_name = tv->tv_u.tv_string;
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break;
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case LDPT_LINKER_OUTPUT:
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switch (tv->tv_u.tv_val) {
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case LDPO_REL: // .o
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case LDPO_DYN: // .so
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// FIXME: Replace 3 with LDPO_PIE once that is in a released binutils.
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case 3: // position independent executable
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output_type = LTO_CODEGEN_PIC_MODEL_DYNAMIC;
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break;
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case LDPO_EXEC: // .exe
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output_type = LTO_CODEGEN_PIC_MODEL_STATIC;
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break;
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default:
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(*message)(LDPL_ERROR, "Unknown output file type %d",
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tv->tv_u.tv_val);
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return LDPS_ERR;
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}
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// TODO: add an option to disable PIC.
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//output_type = LTO_CODEGEN_PIC_MODEL_DYNAMIC_NO_PIC;
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break;
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case LDPT_OPTION:
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options::process_plugin_option(tv->tv_u.tv_string);
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break;
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case LDPT_REGISTER_CLAIM_FILE_HOOK: {
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ld_plugin_register_claim_file callback;
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callback = tv->tv_u.tv_register_claim_file;
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if ((*callback)(claim_file_hook) != LDPS_OK)
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return LDPS_ERR;
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registeredClaimFile = true;
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} break;
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case LDPT_REGISTER_ALL_SYMBOLS_READ_HOOK: {
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ld_plugin_register_all_symbols_read callback;
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callback = tv->tv_u.tv_register_all_symbols_read;
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if ((*callback)(all_symbols_read_hook) != LDPS_OK)
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return LDPS_ERR;
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code_gen = lto_codegen_create();
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} break;
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case LDPT_REGISTER_CLEANUP_HOOK: {
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ld_plugin_register_cleanup callback;
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callback = tv->tv_u.tv_register_cleanup;
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if ((*callback)(cleanup_hook) != LDPS_OK)
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return LDPS_ERR;
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} break;
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case LDPT_ADD_SYMBOLS:
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add_symbols = tv->tv_u.tv_add_symbols;
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break;
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case LDPT_GET_SYMBOLS:
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get_symbols = tv->tv_u.tv_get_symbols;
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break;
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case LDPT_ADD_INPUT_FILE:
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add_input_file = tv->tv_u.tv_add_input_file;
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break;
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case LDPT_ADD_INPUT_LIBRARY:
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add_input_library = tv->tv_u.tv_add_input_file;
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break;
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case LDPT_SET_EXTRA_LIBRARY_PATH:
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set_extra_library_path = tv->tv_u.tv_set_extra_library_path;
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break;
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case LDPT_GET_VIEW:
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get_view = tv->tv_u.tv_get_view;
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break;
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case LDPT_MESSAGE:
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message = tv->tv_u.tv_message;
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break;
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default:
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break;
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}
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}
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if (!registeredClaimFile) {
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(*message)(LDPL_ERROR, "register_claim_file not passed to LLVMgold.");
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return LDPS_ERR;
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}
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if (!add_symbols) {
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(*message)(LDPL_ERROR, "add_symbols not passed to LLVMgold.");
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return LDPS_ERR;
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}
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return LDPS_OK;
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}
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/// claim_file_hook - called by gold to see whether this file is one that
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/// our plugin can handle. We'll try to open it and register all the symbols
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/// with add_symbol if possible.
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static ld_plugin_status claim_file_hook(const ld_plugin_input_file *file,
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int *claimed) {
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lto_module_t M;
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const void *view;
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OwningPtr<MemoryBuffer> buffer;
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if (get_view) {
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if (get_view(file->handle, &view) != LDPS_OK) {
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(*message)(LDPL_ERROR, "Failed to get a view of %s", file->name);
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return LDPS_ERR;
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}
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} else {
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int64_t offset = 0;
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// Gold has found what might be IR part-way inside of a file, such as
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// an .a archive.
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if (file->offset) {
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offset = file->offset;
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}
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if (error_code ec = MemoryBuffer::getOpenFileSlice(
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file->fd, file->name, buffer, file->filesize, offset)) {
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(*message)(LDPL_ERROR, ec.message().c_str());
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return LDPS_ERR;
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}
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view = buffer->getBufferStart();
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}
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if (!lto_module_is_object_file_in_memory(view, file->filesize))
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return LDPS_OK;
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M = lto_module_create_from_memory(view, file->filesize);
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if (!M) {
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if (const char* msg = lto_get_error_message()) {
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(*message)(LDPL_ERROR,
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"LLVM gold plugin has failed to create LTO module: %s",
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msg);
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return LDPS_ERR;
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}
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return LDPS_OK;
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}
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*claimed = 1;
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Modules.resize(Modules.size() + 1);
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claimed_file &cf = Modules.back();
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if (!options::triple.empty())
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lto_module_set_target_triple(M, options::triple.c_str());
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cf.handle = file->handle;
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unsigned sym_count = lto_module_get_num_symbols(M);
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cf.syms.reserve(sym_count);
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for (unsigned i = 0; i != sym_count; ++i) {
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lto_symbol_attributes attrs = lto_module_get_symbol_attribute(M, i);
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if ((attrs & LTO_SYMBOL_SCOPE_MASK) == LTO_SYMBOL_SCOPE_INTERNAL)
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continue;
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cf.syms.push_back(ld_plugin_symbol());
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ld_plugin_symbol &sym = cf.syms.back();
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sym.name = const_cast<char *>(lto_module_get_symbol_name(M, i));
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sym.name = strdup(sym.name);
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sym.version = NULL;
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int scope = attrs & LTO_SYMBOL_SCOPE_MASK;
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switch (scope) {
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case LTO_SYMBOL_SCOPE_HIDDEN:
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sym.visibility = LDPV_HIDDEN;
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break;
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case LTO_SYMBOL_SCOPE_PROTECTED:
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sym.visibility = LDPV_PROTECTED;
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break;
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case 0: // extern
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case LTO_SYMBOL_SCOPE_DEFAULT:
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sym.visibility = LDPV_DEFAULT;
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break;
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default:
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(*message)(LDPL_ERROR, "Unknown scope attribute: %d", scope);
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return LDPS_ERR;
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}
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int definition = attrs & LTO_SYMBOL_DEFINITION_MASK;
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sym.comdat_key = NULL;
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switch (definition) {
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case LTO_SYMBOL_DEFINITION_REGULAR:
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sym.def = LDPK_DEF;
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break;
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case LTO_SYMBOL_DEFINITION_UNDEFINED:
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sym.def = LDPK_UNDEF;
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break;
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case LTO_SYMBOL_DEFINITION_TENTATIVE:
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sym.def = LDPK_COMMON;
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break;
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case LTO_SYMBOL_DEFINITION_WEAK:
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sym.comdat_key = sym.name;
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sym.def = LDPK_WEAKDEF;
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break;
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case LTO_SYMBOL_DEFINITION_WEAKUNDEF:
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sym.def = LDPK_WEAKUNDEF;
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break;
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default:
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(*message)(LDPL_ERROR, "Unknown definition attribute: %d", definition);
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return LDPS_ERR;
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}
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sym.size = 0;
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sym.resolution = LDPR_UNKNOWN;
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}
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cf.syms.reserve(cf.syms.size());
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if (!cf.syms.empty()) {
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if ((*add_symbols)(cf.handle, cf.syms.size(), &cf.syms[0]) != LDPS_OK) {
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(*message)(LDPL_ERROR, "Unable to add symbols!");
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return LDPS_ERR;
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}
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}
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if (code_gen)
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lto_codegen_add_module(code_gen, M);
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lto_module_dispose(M);
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return LDPS_OK;
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}
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/// all_symbols_read_hook - gold informs us that all symbols have been read.
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/// At this point, we use get_symbols to see if any of our definitions have
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/// been overridden by a native object file. Then, perform optimization and
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/// codegen.
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static ld_plugin_status all_symbols_read_hook(void) {
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std::ofstream api_file;
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assert(code_gen);
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if (options::generate_api_file) {
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api_file.open("apifile.txt", std::ofstream::out | std::ofstream::trunc);
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if (!api_file.is_open()) {
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(*message)(LDPL_FATAL, "Unable to open apifile.txt for writing.");
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abort();
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}
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}
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for (std::list<claimed_file>::iterator I = Modules.begin(),
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E = Modules.end(); I != E; ++I) {
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if (I->syms.empty())
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continue;
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(*get_symbols)(I->handle, I->syms.size(), &I->syms[0]);
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for (unsigned i = 0, e = I->syms.size(); i != e; i++) {
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if (I->syms[i].resolution == LDPR_PREVAILING_DEF) {
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lto_codegen_add_must_preserve_symbol(code_gen, I->syms[i].name);
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if (options::generate_api_file)
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api_file << I->syms[i].name << "\n";
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}
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}
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}
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if (options::generate_api_file)
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api_file.close();
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lto_codegen_set_pic_model(code_gen, output_type);
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lto_codegen_set_debug_model(code_gen, LTO_DEBUG_MODEL_DWARF);
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if (!options::mcpu.empty())
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lto_codegen_set_cpu(code_gen, options::mcpu.c_str());
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// Pass through extra options to the code generator.
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if (!options::extra.empty()) {
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for (std::vector<std::string>::iterator it = options::extra.begin();
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it != options::extra.end(); ++it) {
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lto_codegen_debug_options(code_gen, (*it).c_str());
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}
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}
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if (options::generate_bc_file != options::BC_NO) {
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std::string path;
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if (options::generate_bc_file == options::BC_ONLY)
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path = output_name;
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else if (!options::bc_path.empty())
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path = options::bc_path;
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else
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path = output_name + ".bc";
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bool err = lto_codegen_write_merged_modules(code_gen, path.c_str());
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if (err)
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(*message)(LDPL_FATAL, "Failed to write the output file.");
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if (options::generate_bc_file == options::BC_ONLY)
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exit(0);
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}
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const char *objPath;
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if (lto_codegen_compile_to_file(code_gen, &objPath)) {
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(*message)(LDPL_ERROR, "Could not produce a combined object file\n");
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}
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lto_codegen_dispose(code_gen);
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for (std::list<claimed_file>::iterator I = Modules.begin(),
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E = Modules.end(); I != E; ++I) {
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for (unsigned i = 0; i != I->syms.size(); ++i) {
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ld_plugin_symbol &sym = I->syms[i];
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free(sym.name);
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}
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}
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if ((*add_input_file)(objPath) != LDPS_OK) {
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(*message)(LDPL_ERROR, "Unable to add .o file to the link.");
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(*message)(LDPL_ERROR, "File left behind in: %s", objPath);
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return LDPS_ERR;
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}
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if (!options::extra_library_path.empty() &&
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set_extra_library_path(options::extra_library_path.c_str()) != LDPS_OK) {
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(*message)(LDPL_ERROR, "Unable to set the extra library path.");
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return LDPS_ERR;
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}
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if (options::obj_path.empty())
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Cleanup.push_back(objPath);
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return LDPS_OK;
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}
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static ld_plugin_status cleanup_hook(void) {
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for (int i = 0, e = Cleanup.size(); i != e; ++i) {
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error_code EC = sys::fs::remove(Cleanup[i]);
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if (EC)
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(*message)(LDPL_ERROR, "Failed to delete '%s': %s", Cleanup[i].c_str(),
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EC.message().c_str());
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}
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return LDPS_OK;
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}
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