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This does a mass rename of:
- `SourceLoc()` -> `source_loc()` for property naming
- `loc` -> `source_loc_` for underscore+consistency
- Generally changing function args to `source_loc` for consistency
- `Tag()` -> `kind()` for property naming and `Kind` parity
- `tag` -> `kind_` for underscore
Also renames `Pos` and `Results` on `Action`. These are a bit of an exception in that most base classes only have `Tag` and maybe `SourceLoc`, whereas `Action` has a little more. I felt okay having `source_loc()` and `kind()` on the base class where children do `Exp()` and the like, but it felt weird to me to mix it on the same class.
The reason for doing this cross-class in one PR is so that I can do it efficiently with a global replace in the codebase, rather than e.g. changing `Expression` but having to read through compiler errors to determine where it's calling `Expression`'s `Tag` versus a different `Tag`. The end result should be equivalent.
74 lines
3.0 KiB
C++
74 lines
3.0 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 "executable_semantics/interpreter/exec_program.h"
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#include "common/check.h"
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#include "common/ostream.h"
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#include "executable_semantics/common/arena.h"
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#include "executable_semantics/common/tracing_flag.h"
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#include "executable_semantics/interpreter/interpreter.h"
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#include "executable_semantics/interpreter/type_checker.h"
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namespace Carbon {
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// Adds builtins, currently only Print(). Note Print() is experimental, not
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// standardized, but is made available for printing state in tests.
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static void AddIntrinsics(Nonnull<Arena*> arena,
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std::vector<Nonnull<Declaration*>>* declarations) {
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SourceLocation source_loc("<intrinsic>", 0);
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std::vector<TuplePattern::Field> print_fields = {TuplePattern::Field(
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"0", arena->New<BindingPattern>(
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source_loc, "format_str",
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arena->New<ExpressionPattern>(
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arena->New<StringTypeLiteral>(source_loc))))};
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auto print_return =
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arena->New<Return>(source_loc,
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arena->New<IntrinsicExpression>(
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IntrinsicExpression::IntrinsicKind::Print),
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false);
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auto print = arena->New<FunctionDeclaration>(arena->New<FunctionDefinition>(
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source_loc, "Print", std::vector<GenericBinding>(),
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arena->New<TuplePattern>(source_loc, print_fields),
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arena->New<ExpressionPattern>(arena->New<TupleLiteral>(source_loc)),
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/*is_omitted_return_type=*/false, print_return));
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declarations->insert(declarations->begin(), print);
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}
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void ExecProgram(Nonnull<Arena*> arena, AST ast) {
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AddIntrinsics(arena, &ast.declarations);
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if (tracing_output) {
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llvm::outs() << "********** source program **********\n";
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for (const auto decl : ast.declarations) {
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llvm::outs() << *decl;
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}
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llvm::outs() << "********** type checking **********\n";
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}
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TypeChecker type_checker(arena);
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TypeChecker::TypeCheckContext p = type_checker.TopLevel(&ast.declarations);
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TypeEnv top = p.types;
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Env ct_top = p.values;
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std::vector<Nonnull<const Declaration*>> new_decls;
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for (const auto decl : ast.declarations) {
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new_decls.push_back(type_checker.MakeTypeChecked(decl, top, ct_top));
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}
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if (tracing_output) {
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llvm::outs() << "\n";
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llvm::outs() << "********** type checking complete **********\n";
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for (const auto decl : new_decls) {
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llvm::outs() << *decl;
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}
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llvm::outs() << "********** starting execution **********\n";
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}
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SourceLocation source_loc("<main()>", 0);
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Nonnull<Expression*> call_main = arena->New<CallExpression>(
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source_loc, arena->New<IdentifierExpression>(source_loc, "main"),
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arena->New<TupleLiteral>(source_loc));
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int result = Interpreter(arena).InterpProgram(new_decls, call_main);
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llvm::outs() << "result: " << result << "\n";
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}
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} // namespace Carbon
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