Files
carbon-lang/explorer/interpreter/exec_program.cpp
T
Prabhat SachdevaandRichard Smith aa8cdd526f Implemented RAII Type to set current program phase (#2886)
Within `explorer/common/trace_stream.h`, implemented RAII Type `SetProgramPhase`.
This RAII type simplifies the process by automatically setting the desired program phase upon construction and restoring the previous phase upon destruction.

Co-authored-by: Richard Smith <richard@metafoo.co.uk>
2023-06-13 16:19:13 -07:00

96 lines
3.4 KiB
C++

// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
// Exceptions. See /LICENSE for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
#include "explorer/interpreter/exec_program.h"
#include <variant>
#include "common/check.h"
#include "common/error.h"
#include "common/ostream.h"
#include "explorer/common/arena.h"
#include "explorer/common/trace_stream.h"
#include "explorer/interpreter/interpreter.h"
#include "explorer/interpreter/resolve_control_flow.h"
#include "explorer/interpreter/resolve_names.h"
#include "explorer/interpreter/resolve_unformed.h"
#include "explorer/interpreter/type_checker.h"
#include "llvm/Support/Error.h"
namespace Carbon {
auto AnalyzeProgram(Nonnull<Arena*> arena, AST ast,
Nonnull<TraceStream*> trace_stream,
Nonnull<llvm::raw_ostream*> print_stream) -> ErrorOr<AST> {
SetProgramPhase set_prog_phase(*trace_stream, ProgramPhase::SourceProgram);
if (trace_stream->is_enabled()) {
*trace_stream << "********** source program **********\n";
for (int i = ast.num_prelude_declarations;
i < static_cast<int>(ast.declarations.size()); ++i) {
*trace_stream << *ast.declarations[i];
}
}
SourceLocation source_loc("<Main()>", 0);
ast.main_call = arena->New<CallExpression>(
source_loc, arena->New<IdentifierExpression>(source_loc, "Main"),
arena->New<TupleLiteral>(source_loc));
// Although name resolution is currently done once, generic programming
// (particularly templates) may require more passes.
set_prog_phase.update_phase(ProgramPhase::NameResolution);
if (trace_stream->is_enabled()) {
*trace_stream << "********** resolving names **********\n";
}
CARBON_RETURN_IF_ERROR(ResolveNames(ast));
set_prog_phase.update_phase(ProgramPhase::ControlFlowResolution);
if (trace_stream->is_enabled()) {
*trace_stream << "********** resolving control flow **********\n";
}
CARBON_RETURN_IF_ERROR(ResolveControlFlow(ast));
set_prog_phase.update_phase(ProgramPhase::TypeChecking);
if (trace_stream->is_enabled()) {
*trace_stream << "********** type checking **********\n";
}
CARBON_RETURN_IF_ERROR(
TypeChecker(arena, trace_stream, print_stream).TypeCheck(ast));
set_prog_phase.update_phase(ProgramPhase::UnformedVariableResolution);
if (trace_stream->is_enabled()) {
*trace_stream << "********** resolving unformed variables **********\n";
}
CARBON_RETURN_IF_ERROR(ResolveUnformed(ast));
set_prog_phase.update_phase(ProgramPhase::Declarations);
if (trace_stream->is_enabled()) {
*trace_stream << "********** printing declarations **********\n";
for (int i = ast.num_prelude_declarations;
i < static_cast<int>(ast.declarations.size()); ++i) {
*trace_stream << *ast.declarations[i];
}
}
return ast;
}
auto ExecProgram(Nonnull<Arena*> arena, AST ast,
Nonnull<TraceStream*> trace_stream,
Nonnull<llvm::raw_ostream*> print_stream) -> ErrorOr<int> {
SetProgramPhase set_program_phase(*trace_stream, ProgramPhase::Execution);
if (trace_stream->is_enabled()) {
*trace_stream << "********** starting execution **********\n";
}
CARBON_ASSIGN_OR_RETURN(
auto interpreter_result,
InterpProgram(ast, arena, trace_stream, print_stream));
if (trace_stream->is_enabled()) {
*trace_stream << "interpreter result: " << interpreter_result << "\n";
}
return interpreter_result;
}
} // namespace Carbon