pmqtt f957d4d87d Feature generic choice (#2042) 3 anos atrás
..
BUILD 9ea405788e Combine most ast/ build targets into one. (#1334) 3 anos atrás
README.md 856a5c4536 Fix broken link in doc (#1716) 3 anos atrás
ast.h 20728dbd3a CARBON_ header guards (#1261) 4 anos atrás
ast_node.cpp 309ec35f95 Rename executable_semantics to explorer (#1188) 4 anos atrás
ast_node.h 9007b3952d Initial support for `where` expressions. (#1310) 3 anos atrás
ast_rtti.txt f754373786 For loop for arrays (#1753) 3 anos atrás
ast_test_matchers.h 59ae6e31b6 Rename PrimitiveOperatorExpression to OperatorExpression. (#1530) 3 anos atrás
ast_test_matchers_internal.cpp 59ae6e31b6 Rename PrimitiveOperatorExpression to OperatorExpression. (#1530) 3 anos atrás
ast_test_matchers_internal.h 59ae6e31b6 Rename PrimitiveOperatorExpression to OperatorExpression. (#1530) 3 anos atrás
ast_test_matchers_test.cpp 59ae6e31b6 Rename PrimitiveOperatorExpression to OperatorExpression. (#1530) 3 anos atrás
bindings.cpp a1be2a8a38 Track the arguments and witnesses on values indirectly. (#1335) 3 anos atrás
bindings.h a1be2a8a38 Track the arguments and witnesses on values indirectly. (#1335) 3 anos atrás
declaration.cpp 663ed32b1b Initial support for associated constants (#1376) 3 anos atrás
declaration.h f957d4d87d Feature generic choice (#2042) 3 anos atrás
expression.cpp 63da070671 add operator to comparsion (#1883) 3 anos atrás
expression.h 63da070671 add operator to comparsion (#1883) 3 anos atrás
expression_test.cpp 309ec35f95 Rename executable_semantics to explorer (#1188) 4 anos atrás
impl_binding.h 066b103881 Spelling (#1580) 3 anos atrás
library_name.h 20728dbd3a CARBON_ header guards (#1261) 4 anos atrás
member.cpp 17ee3ed9b7 Track a resolved `Member` on each member access expression. (#1333) 3 anos atrás
member.h 17ee3ed9b7 Track a resolved `Member` on each member access expression. (#1333) 3 anos atrás
paren_contents.h 20728dbd3a CARBON_ header guards (#1261) 4 anos atrás
pattern.cpp e4a2d0f047 Addr Keyword Implementation (#1255) 3 anos atrás
pattern.h 01530a58ed Fix some typos. (#1598) 3 anos atrás
pattern_test.cpp 309ec35f95 Rename executable_semantics to explorer (#1188) 4 anos atrás
return_term.h 20728dbd3a CARBON_ header guards (#1261) 4 anos atrás
statement.cpp f754373786 For loop for arrays (#1753) 3 anos atrás
statement.h f754373786 For loop for arrays (#1753) 3 anos atrás
static_scope.cpp 3603db0a08 Give a different diagnostic if a name is used before it's declared. (#1364) 3 anos atrás
static_scope.h 3603db0a08 Give a different diagnostic if a name is used before it's declared. (#1364) 3 anos atrás
value_category.h 20728dbd3a CARBON_ header guards (#1261) 4 anos atrás

README.md

The code in this directory defines the AST that represents Carbon code in the rest of explorer.

The AST is not quite immutable, because some node properties are set during some phase of static analysis, rather than during parsing. However, AST mutations are monotonic: once set, a node property cannot be changed. Furthermore, if a property is set after parsing, its documentation specifies what phase is responsible for setting it. Certain properties have has_foo() members for querying whether they are set, but those are for internal use within the phase that sets them. As a result, you can think of the AST as if it were immutable, but with certain parts that you can't yet observe, depending on what phase of compilation you're in.

All node types in the AST are derived from AstNode, and use LLVM-style RTTI to support safe down-casting and similar operations. Each abstract class Foo in the hierarchy has a kind method which returns a enum FooKind that identifies the concrete type of the object, and a FooKind value can be safely static_casted to BarKind if that value represents a type that's derived from both Foo and Bar.

We rely on code generation to help enforce those invariants, so every node type must be described in ast_rtti.txt. See the documentation in gen_rtti.py, the code generation script, for details about the file format and generated code.

The AST class hierarchy is structured in a fairly unsurprising way, with abstract classes such as Statement and Expression, and concrete classes representing individual syntactic constructs, such as If for if-statements.

Sometimes it is useful to work with a subset of node types that "cuts across" the primary class hierarchy. Rather than deal with the pitfalls of multiple inheritance, we handle these cases using a form of type erasure: we specify a notional interface that those types conform to, and then define a "view" class that behaves like a pointer to an instance of that interface. Types declare that they model an interface Foo by defining a public static member named ImplementsCarbonFoo. See ValueNodeView for an example of this pattern.