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This is continuing with #3070, starting dir renaming with lowering because it's at the tip. AFAICT git is catching all the file moves.
548 lines
17 KiB
C++
548 lines
17 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#include "toolchain/driver/driver.h"
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#include "common/command_line.h"
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#include "common/vlog.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/ADT/StringExtras.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/IR/LLVMContext.h"
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#include "llvm/Support/Path.h"
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#include "llvm/TargetParser/Host.h"
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#include "toolchain/codegen/codegen.h"
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#include "toolchain/diagnostics/diagnostic_emitter.h"
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#include "toolchain/diagnostics/sorting_diagnostic_consumer.h"
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#include "toolchain/lexer/tokenized_buffer.h"
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#include "toolchain/lower/lower.h"
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#include "toolchain/parser/parse_tree.h"
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#include "toolchain/semantics/semantics_ir.h"
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#include "toolchain/semantics/semantics_ir_formatter.h"
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#include "toolchain/source/source_buffer.h"
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namespace Carbon {
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struct Driver::CompileOptions {
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static constexpr CommandLine::CommandInfo Info = {
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.name = "compile",
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.help = R"""(
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Compile Carbon source code.
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This subcommand runs the Carbon compiler over input source code, checking it for
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errors and producing the requested output.
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Error messages are written to the standard error stream.
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Different phases of the compiler can be selected to run, and intermediate state
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can be written to standard output as these phases progress.
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)""",
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};
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enum class Phase : int8_t {
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Lex,
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Parse,
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Check,
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Lower,
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CodeGen,
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};
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friend auto operator<<(llvm::raw_ostream& out, Phase phase)
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-> llvm::raw_ostream& {
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switch (phase) {
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case Phase::Lex:
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out << "lex";
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break;
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case Phase::Parse:
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out << "parse";
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break;
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case Phase::Check:
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out << "check";
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break;
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case Phase::Lower:
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out << "lower";
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break;
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case Phase::CodeGen:
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out << "codegen";
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break;
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}
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return out;
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}
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void Build(CommandLine::CommandBuilder& b) {
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b.AddStringPositionalArg(
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{
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.name = "FILE",
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.help = R"""(
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The input Carbon source file to compile.
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)""",
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},
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[&](auto& arg_b) {
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arg_b.Required(true);
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arg_b.Set(&input_file_name);
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});
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b.AddOneOfOption(
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{
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.name = "phase",
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.help = R"""(
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Selects the compilation phase to run. These phases are always run in sequence,
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so every phase before the one selected will also be run. The default is to
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compile to machine code.
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)""",
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},
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[&](auto& arg_b) {
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arg_b.SetOneOf(
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{
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arg_b.OneOfValue("lex", Phase::Lex),
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arg_b.OneOfValue("parse", Phase::Parse),
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arg_b.OneOfValue("check", Phase::Check),
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arg_b.OneOfValue("lower", Phase::Lower),
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arg_b.OneOfValue("codegen", Phase::CodeGen).Default(true),
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},
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&phase);
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});
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// TODO: Rearrange the code setting this option and two related ones to
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// allow them to reference each other instead of hard-coding their names.
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b.AddStringOption(
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{
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.name = "output",
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.value_name = "FILE",
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.help = R"""(
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The output filename for codegen.
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When this is a file name, either textual assembly or a binary object will be
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written to it based on the flag `--asm-output`. The default is to write a binary
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object file.
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Passing `--output=-` will write the output to stdout. In that
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case, the flag `--asm-output` is ignored and the output defaults to textual
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assembly. Binary object output can be forced by enabling `--force-obj-output`.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&output_file_name); });
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b.AddStringOption(
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{
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.name = "target",
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.help = R"""(
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Select a target platform. Uses the LLVM target syntax. Also known as a "triple"
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for historical reasons.
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This corresponds to the `target` flag to Clang and accepts the same strings
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documented there:
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https://clang.llvm.org/docs/CrossCompilation.html#target-triple
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)""",
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},
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[&](auto& arg_b) {
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arg_b.Default(host);
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arg_b.Set(&target);
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});
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b.AddFlag(
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{
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.name = "asm-output",
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.help = R"""(
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Write textual assembly rather than a binary object file to the code generation
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output.
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This flag only applies when writing to a file. When writing to stdout, the
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default is textual assembly and this flag is ignored.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&asm_output); });
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b.AddFlag(
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{
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.name = "force-obj-output",
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.help = R"""(
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Force binary object output, even with `--output=-`.
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When `--output=-` is set, the default is textual assembly; this forces printing
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of a binary object file instead. Ignored for other `--output` values.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&force_obj_output); });
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b.AddFlag(
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{
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.name = "stream-errors",
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.help = R"""(
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Stream error messages to stderr as they are generated rather than sorting them
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and displaying them in source order.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&stream_errors); });
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b.AddFlag(
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{
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.name = "dump-tokens",
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.help = R"""(
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Dump the tokens to stdout when lexed.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&dump_tokens); });
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b.AddFlag(
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{
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.name = "dump-parse-tree",
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.help = R"""(
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Dump the parse tree to stdout when parsed.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&dump_parse_tree); });
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b.AddFlag(
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{
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.name = "preorder-parse-tree",
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.help = R"""(
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When dumping the parse tree, reorder it so that it is in preorder rather than
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postorder.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&preorder_parse_tree); });
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b.AddFlag(
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{
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.name = "dump-raw-semantics-ir",
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.help = R"""(
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Dump the raw JSON structure of semantics IR to stdout when built.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&dump_raw_semantics_ir); });
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b.AddFlag(
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{
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.name = "dump-semantics-ir",
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.help = R"""(
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Dump the semantics IR to stdout when built.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&dump_semantics_ir); });
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b.AddFlag(
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{
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.name = "builtin-semantics-ir",
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.help = R"""(
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Include the semantics IR for builtins when dumping it.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&builtin_semantics_ir); });
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b.AddFlag(
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{
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.name = "dump-llvm-ir",
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.help = R"""(
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Dump the LLVM IR to stdout after lowering.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&dump_llvm_ir); });
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b.AddFlag(
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{
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.name = "dump-asm",
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.help = R"""(
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Dump the generated assembly to stdout after codegen.
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)""",
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},
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[&](auto& arg_b) { arg_b.Set(&dump_asm); });
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}
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Phase phase;
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std::string host = llvm::sys::getDefaultTargetTriple();
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llvm::StringRef target;
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llvm::StringRef output_file_name;
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llvm::StringRef input_file_name;
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bool asm_output = false;
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bool force_obj_output = false;
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bool dump_tokens = false;
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bool dump_parse_tree = false;
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bool dump_raw_semantics_ir = false;
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bool dump_semantics_ir = false;
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bool dump_llvm_ir = false;
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bool dump_asm = false;
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bool stream_errors = false;
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bool preorder_parse_tree = false;
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bool builtin_semantics_ir = false;
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};
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struct Driver::Options {
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static constexpr CommandLine::CommandInfo Info = {
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.name = "carbon",
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// TODO: Setup more detailed version information and use that here.
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.version = R"""(
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Carbon Language toolchain -- version 0.0.0
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)""",
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.help = R"""(
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This is the unified Carbon Language toolchain driver. It's subcommands provide
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all of the core behavior of the toolchain, including compilation, linking, and
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developer tools. Each of these has its own subcommand, and you can pass a
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specific subcommand to the `help` subcommand to get details about is usage.
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)""",
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.help_epilogue = R"""(
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For questions, issues, or bug reports, please use our GitHub project:
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https://github.com/carbon-language/carbon-lang
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)""",
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};
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enum class Subcommand : int8_t {
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Compile,
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};
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void Build(CommandLine::CommandBuilder& b) {
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b.AddFlag(
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{
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.name = "verbose",
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.short_name = "v",
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.help = "Enable verbose logging to the stderr stream.",
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},
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[&](CommandLine::FlagBuilder& arg_b) { arg_b.Set(&verbose); });
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b.AddSubcommand(CompileOptions::Info,
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[&](CommandLine::CommandBuilder& sub_b) {
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compile_options.Build(sub_b);
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sub_b.Do([&] { subcommand = Subcommand::Compile; });
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});
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b.RequiresSubcommand();
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}
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bool verbose;
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Subcommand subcommand;
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CompileOptions compile_options;
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};
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auto Driver::ParseArgs(llvm::ArrayRef<llvm::StringRef> args, Options& options)
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-> CommandLine::ParseResult {
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return CommandLine::Parse(
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args, output_stream_, error_stream_, Options::Info,
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[&](CommandLine::CommandBuilder& b) { options.Build(b); });
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}
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auto Driver::RunCommand(llvm::ArrayRef<llvm::StringRef> args) -> bool {
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Options options;
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CommandLine::ParseResult result = ParseArgs(args, options);
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if (result == CommandLine::ParseResult::Error) {
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return false;
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} else if (result == CommandLine::ParseResult::MetaSuccess) {
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return true;
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}
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if (options.verbose) {
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// Note this implies streamed output in order to interleave.
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vlog_stream_ = &error_stream_;
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}
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switch (options.subcommand) {
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case Options::Subcommand::Compile:
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return Compile(options.compile_options);
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}
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llvm_unreachable("All subcommands handled!");
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}
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auto Driver::ValidateCompileOptions(const CompileOptions& options) const
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-> bool {
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using Phase = CompileOptions::Phase;
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switch (options.phase) {
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case Phase::Lex:
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if (options.dump_parse_tree) {
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error_stream_ << "ERROR: Requested dumping the parse tree but compile "
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"phase is limited to '"
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<< options.phase << "'\n";
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return false;
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}
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[[clang::fallthrough]];
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case Phase::Parse:
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if (options.dump_semantics_ir) {
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error_stream_ << "ERROR: Requested dumping the semantics IR but "
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"compile phase is limited to '"
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<< options.phase << "'\n";
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return false;
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}
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[[clang::fallthrough]];
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case Phase::Check:
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if (options.dump_llvm_ir) {
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error_stream_ << "ERROR: Requested dumping the LLVM IR but compile "
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"phase is limited to '"
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<< options.phase << "'\n";
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return false;
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}
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[[clang::fallthrough]];
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case Phase::Lower:
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case Phase::CodeGen:
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// Everything can be dumped in these phases.
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break;
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}
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return true;
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}
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auto Driver::Compile(const CompileOptions& options) -> bool {
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using Phase = CompileOptions::Phase;
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if (!ValidateCompileOptions(options)) {
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return false;
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}
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StreamDiagnosticConsumer stream_consumer(error_stream_);
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DiagnosticConsumer* consumer = &stream_consumer;
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// Note, the diagnostics consumer must be flushed before each `return` in this
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// function, as diagnostics can refer to state that lives on our stack.
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std::unique_ptr<SortingDiagnosticConsumer> sorting_consumer;
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if (vlog_stream_ == nullptr && !options.stream_errors) {
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sorting_consumer = std::make_unique<SortingDiagnosticConsumer>(*consumer);
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consumer = sorting_consumer.get();
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}
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CARBON_VLOG() << "*** SourceBuffer::CreateFromFile on '"
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<< options.input_file_name << "' ***\n";
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auto source = SourceBuffer::CreateFromFile(fs_, options.input_file_name);
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CARBON_VLOG() << "*** SourceBuffer::CreateFromFile done ***\n";
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if (!source.ok()) {
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error_stream_ << "ERROR: Unable to open input source file: "
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<< source.error();
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consumer->Flush();
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return false;
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}
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CARBON_VLOG() << "*** file:\n```\n" << source->text() << "\n```\n";
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CARBON_VLOG() << "*** TokenizedBuffer::Lex ***\n";
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auto tokenized_source = TokenizedBuffer::Lex(*source, *consumer);
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bool has_errors = tokenized_source.has_errors();
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CARBON_VLOG() << "*** TokenizedBuffer::Lex done ***\n";
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if (options.dump_tokens) {
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CARBON_VLOG() << "Finishing output.";
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consumer->Flush();
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output_stream_ << tokenized_source;
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}
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CARBON_VLOG() << "tokenized_buffer: " << tokenized_source;
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if (options.phase == Phase::Lex) {
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consumer->Flush();
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return !has_errors;
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}
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CARBON_VLOG() << "*** Parse::Tree::Parse ***\n";
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auto parse_tree =
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Parse::Tree::Parse(tokenized_source, *consumer, vlog_stream_);
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has_errors |= parse_tree.has_errors();
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CARBON_VLOG() << "*** Parse::Tree::Parse done ***\n";
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if (options.dump_parse_tree) {
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consumer->Flush();
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parse_tree.Print(output_stream_, options.preorder_parse_tree);
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}
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CARBON_VLOG() << "parse_tree: " << parse_tree;
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if (options.phase == Phase::Parse) {
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consumer->Flush();
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return !has_errors;
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}
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const SemIR::File builtin_ir = SemIR::File::MakeBuiltinIR();
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CARBON_VLOG() << "*** SemanticsIR::MakeFromParseTree ***\n";
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const SemIR::File semantics_ir = SemIR::File::MakeFromParseTree(
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builtin_ir, tokenized_source, parse_tree, *consumer, vlog_stream_);
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// We've finished all steps that can produce diagnostics. Emit the
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// diagnostics now, so that the developer sees them sooner and doesn't need
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// to wait for code generation.
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consumer->Flush();
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has_errors |= semantics_ir.has_errors();
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CARBON_VLOG() << "*** SemIR::File::MakeFromParseTree done ***\n";
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if (options.dump_raw_semantics_ir) {
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semantics_ir.Print(output_stream_, options.builtin_semantics_ir);
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if (options.dump_semantics_ir) {
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output_stream_ << "\n";
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}
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}
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if (options.dump_semantics_ir) {
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consumer->Flush();
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SemIR::FormatFile(tokenized_source, parse_tree, semantics_ir,
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output_stream_);
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}
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CARBON_VLOG() << "semantics_ir: " << semantics_ir;
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if (options.phase == Phase::Check) {
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return !has_errors;
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}
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// Unlike previous steps, errors block further progress.
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if (has_errors) {
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CARBON_VLOG() << "*** Stopping before lowering due to syntax errors ***";
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return false;
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}
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CARBON_VLOG() << "*** Lower::LowerToLLVM ***\n";
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llvm::LLVMContext llvm_context;
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const std::unique_ptr<llvm::Module> module = Lower::LowerToLLVM(
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llvm_context, options.input_file_name, semantics_ir, vlog_stream_);
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CARBON_VLOG() << "*** Lower::LowerToLLVM done ***\n";
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if (options.dump_llvm_ir) {
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module->print(output_stream_, /*AAW=*/nullptr,
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/*ShouldPreserveUseListOrder=*/true);
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}
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if (vlog_stream_) {
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CARBON_VLOG() << "module: ";
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module->print(*vlog_stream_, /*AAW=*/nullptr,
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/*ShouldPreserveUseListOrder=*/false,
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/*IsForDebug=*/true);
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}
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if (options.phase == Phase::Lower) {
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return true;
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}
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CARBON_VLOG() << "*** CodeGen ***\n";
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std::optional<CodeGen> codegen =
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CodeGen::Create(*module, options.target, error_stream_);
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if (!codegen) {
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return false;
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}
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if (vlog_stream_) {
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CARBON_VLOG() << "assembly:\n";
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codegen->EmitAssembly(*vlog_stream_);
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}
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if (options.output_file_name == "-") {
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// TODO: the output file name, forcing object output, and requesting textual
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// assembly output are all somewhat linked flags. We should add some
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// validation that they are used correctly.
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if (options.force_obj_output) {
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if (!codegen->EmitObject(output_stream_)) {
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return false;
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}
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} else {
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if (!codegen->EmitAssembly(output_stream_)) {
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return false;
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}
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}
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} else {
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llvm::SmallString<256> output_file_name = options.output_file_name;
|
|
if (output_file_name.empty()) {
|
|
output_file_name = options.input_file_name;
|
|
llvm::sys::path::replace_extension(output_file_name,
|
|
options.asm_output ? ".s" : ".o");
|
|
}
|
|
CARBON_VLOG() << "Writing output to: " << output_file_name << "\n";
|
|
|
|
std::error_code ec;
|
|
llvm::raw_fd_ostream output_file(output_file_name, ec,
|
|
llvm::sys::fs::OF_None);
|
|
if (ec) {
|
|
error_stream_ << "ERROR: Could not open output file '" << output_file_name
|
|
<< "': " << ec.message() << "\n";
|
|
return false;
|
|
}
|
|
if (options.asm_output) {
|
|
if (!codegen->EmitAssembly(output_file)) {
|
|
return false;
|
|
}
|
|
} else {
|
|
if (!codegen->EmitObject(output_file)) {
|
|
return false;
|
|
}
|
|
}
|
|
}
|
|
CARBON_VLOG() << "*** CodeGen done ***\n";
|
|
return true;
|
|
}
|
|
|
|
} // namespace Carbon
|