421 lines
14 KiB
Swift
421 lines
14 KiB
Swift
// p4rse, Copyright 2026, Will Hawkins
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//
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// This file is part of p4rse.
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//
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// This file is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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import Common
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import SwiftTreeSitter
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import TreeSitterExtensions
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import TreeSitterP4
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extension AST.BlockStatement: Compilable {
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public typealias C = AST.BlockStatement
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public static func Compile(
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node: Node, withContext context: ASTCompilerContext
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) -> Result<AST.BlockStatement> {
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/*
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#RequireNodeType<Node, AST.BlockStatement>(
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node: node, type: "blockStatement", nice_type_name: "block statement")
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var walker = Walker(node: node)
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var current_node: Node? = .none
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#MustOr(
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result: current_node, thing: walker.getNext(),
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or: Result<AST.BlockStatement>.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(), withError: "Malformed block statement")))
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if current_node!.nodeType != "{" {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: current_node!.toSourceLocation(),
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withError: "Missing { on block statement"))
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}
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var statements: [AST.AnStatement] = Array()
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var parse_err: (any Errorable)? = .none
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walker.next()
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#MustOr(
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result: current_node, thing: walker.getNext(),
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or: Result<AST.BlockStatement>.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(), withError: "Malformed block statement")))
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if current_node!.nodeType == "statements" {
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switch SpecialCompilers.Statements.Compile(
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node: current_node!, withContext: context)
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{
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case .Ok(let parsed_statements):
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statements = parsed_statements
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case .Error(let error):
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parse_err = error
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}
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walker.next()
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}
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if let err = parse_err {
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return .Error(err)
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}
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#MustOr(
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result: current_node, thing: walker.getNext(),
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or: Result<AST.BlockStatement>.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(), withError: "Malformed block statement")))
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if current_node!.nodeType != "}" {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: current_node!.toSourceLocation(),
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withError: "Missing } on block statement"))
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}
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return .Ok(AST.BlockStatement(statements))
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*/
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return .Ok(AST.BlockStatement([]))
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}
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}
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@deriveCompilableStatement
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extension AST.BlockStatement: CompilableStatement {}
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extension AST.ConditionalStatement: Compilable {
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public typealias C = AST.ConditionalStatement
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public static func Compile(
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node: Node, withContext context: ASTCompilerContext
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) -> Result<AST.ConditionalStatement> {
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#RequireNodeType<Node, AST.ConditionalStatement>(
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node: node, type: "conditionalStatement", nice_type_name: "conditional statement")
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let maybe_condition_expression = node.child(at: 2)
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guard let condition_expression = maybe_condition_expression,
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condition_expression.nodeType == "expression"
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else {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(),
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withError: "Did not find condition for conditional statement"))
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}
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let maybe_thens = node.child(at: 4)
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guard let thens = maybe_thens,
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thens.nodeType == "statement"
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else {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(),
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withError: "Did not find then statement block for conditional statement"))
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}
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guard
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case .Ok(let condition) = AST.Expression.Compile(
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node: condition_expression, withContext: context)
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else {
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return Result.Error(
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Error(withMessage: "Could not parse a conditional expression in a conditional statement"))
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}
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guard
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case .Ok(let thenns) = AST.Statement.Compile(
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node: thens, withContext: context)
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else {
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return Result.Error(
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Error(
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withMessage:
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"Could not parse the then block in a conditional statement"))
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}
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let optional_elss: Result<AST.AnStatement>? =
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if let elss = node.child(at: 6) {
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.some(
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AST.Statement.Compile(
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node: elss, withContext: context))
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} else {
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.none
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}
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if let parsed_elss = optional_elss {
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guard
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case .Ok(let elss) = parsed_elss
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else {
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return Result.Error(
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Error(
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withMessage:
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"Could not parse the else block in a conditional statement"))
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}
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return .Ok(
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AST.ConditionalStatement(condition: condition, withThen: thenns, andElse: elss))
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}
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return .Ok(AST.ConditionalStatement(condition: condition, withThen: thenns))
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}
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}
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@deriveCompilableStatement
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extension AST.ConditionalStatement: CompilableStatement {}
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extension AST.VariableDeclarationStatement: Compilable {
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public typealias C = AST.VariableDeclarationStatement
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public static func Compile(
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node: Node, withContext context: ASTCompilerContext
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) -> Result<AST.VariableDeclarationStatement> {
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#RequireNodeType<Node, AST.VariableDeclarationStatement>(
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node: node, type: "variableDeclaration", nice_type_name: "variable declaration statement")
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let maybe_typeref = node.child(at: 0)
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guard let typeref = maybe_typeref,
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typeref.nodeType == "typeRef"
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else {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(),
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withError: "Did not find type name for variable declaration statement"))
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}
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let maybe_variablename = node.child(at: 1)
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guard let variablename = maybe_variablename,
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variablename.nodeType == "identifier"
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else {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(),
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withError: "Did not find identifier name for variable declaration statement"))
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}
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let maybe_rvalue = node.childCount > 3 ? node.child(at: 3) : .none
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guard
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case .Ok(let parsed_variablename) = AST.Identifier.CompileExpression(
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node: variablename, withContext: context)
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else {
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return Result.Error(
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Error(withMessage: "Could not parse variable name"))
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}
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guard
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case .Ok(let declaration_p4_type) = AST.Types.CompileType(type: typeref, withContext: context)
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else {
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return Result.Error(
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Error(withMessage: "Could not parse a P4 type from \(typeref.text!)"))
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}
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var initializer: AST.AnExpression? = .none
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// If there is an initializer, it must be an expression.
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if let initializer_expression = maybe_rvalue {
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guard initializer_expression.nodeType == "expression" else {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(),
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withError: "initial value for declaration statement is not an expression"))
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}
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let maybe_parsed_rvalue = AST.Expression.Compile(
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node: initializer_expression, withContext: context)
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guard
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case .Ok(let parsed_rvalue) = maybe_parsed_rvalue
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else {
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return .Error(maybe_parsed_rvalue.error()!)
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}
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initializer = parsed_rvalue
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}
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return Result.Ok(
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AST.VariableDeclarationStatement(
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identifier: parsed_variablename as! AST.Identifier, withType: declaration_p4_type,
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withInitializer: initializer),
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)
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}
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}
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@deriveCompilableStatement
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extension AST.VariableDeclarationStatement: CompilableStatement {}
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extension AST.ExpressionStatement: Compilable {
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public typealias C = AST.ExpressionStatement
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public static func Compile(
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node: Node, withContext context: ASTCompilerContext
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) -> Result<AST.ExpressionStatement> {
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#RequireNodeType<Node, (P4Statement)>(
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node: node, type: "expressionStatement", nice_type_name: "expression statement")
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let expression_node = node.child(at: 0)!
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return switch AST.Expression.Compile(node: expression_node, withContext: context) {
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case .Ok(let expression): .Ok(AST.ExpressionStatement(expression))
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case .Error(let e): .Error(e)
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}
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}
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}
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@deriveCompilableStatement
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extension AST.ExpressionStatement: CompilableStatement {}
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extension AST.ParserAssignmentStatement: Compilable {
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public typealias C = AST.ParserAssignmentStatement
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public static func Compile(
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node: Node, withContext context: ASTCompilerContext
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) -> Result<AST.ParserAssignmentStatement> {
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#RequireNodeType<Node, AST.ParserAssignmentStatement>(
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node: node, type: "assignmentStatement", nice_type_name: "assignment statement")
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guard let lvalue_node = node.child(at: 0),
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lvalue_node.nodeType == "expression"
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else {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(),
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withError: "Missing lvalue in assignment statement"))
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}
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guard let rvalue_node = node.child(at: 2),
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rvalue_node.nodeType == "expression"
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else {
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return Result.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(),
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withError: "Missing rvalue in assignment statement"))
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}
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let maybe_parsed_rvalue = AST.Expression.Compile(
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node: rvalue_node, withContext: context)
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guard case Result.Ok(let rvalue) = maybe_parsed_rvalue else {
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return Result.Error(maybe_parsed_rvalue.error()!)
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}
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let maybe_parsed_lvalue = AST.Expression.Compile(node: lvalue_node, withContext: context)
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guard case .Ok(let lvalue) = maybe_parsed_lvalue else {
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return Result.Error(maybe_parsed_lvalue.error()!)
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}
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return Result.Ok(
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AST.ParserAssignmentStatement(
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withLValue: lvalue,
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withValue: rvalue
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))
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}
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}
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@deriveCompilableStatement
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extension AST.ParserAssignmentStatement: CompilableStatement {}
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extension AST.ReturnStatement: Compilable {
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public typealias C = AST.ReturnStatement
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public static func Compile(
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node: SwiftTreeSitter.Node, withContext context: ASTCompilerContext
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) -> Result<AST.ReturnStatement> {
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#RequireNodeType<Node, AST.ReturnStatement>(
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node: node, type: "return_statement", nice_type_name: "return statement")
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let expression_node = node.child(at: 1)!
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return switch AST.Expression.Compile(node: expression_node, withContext: context) {
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case .Ok(let result): .Ok(AST.ReturnStatement(result))
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case .Error(let e): .Error(e)
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}
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}
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}
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@deriveCompilableStatement
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extension AST.ReturnStatement: CompilableStatement {}
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extension AST.ApplyStatement: Compilable {
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public typealias C = AST.ApplyStatement
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public static func Compile(
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node: SwiftTreeSitter.Node, withContext context: ASTCompilerContext
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) -> Result<AST.ApplyStatement> {
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#RequireNodeType<Node, AST.ApplyStatement>(
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node: node, type: "apply_statement", nice_type_name: "apply statement")
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let expression_node = node.child(at: 1)!
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return switch AST.BlockStatement.Compile(node: expression_node, withContext: context) {
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case .Ok(let statement):
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.Ok(AST.ApplyStatement(statement))
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case .Error(let e): .Error(e)
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}
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}
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}
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@deriveCompilableStatement
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extension AST.ApplyStatement: CompilableStatement {}
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extension AST.Instantiation: Compilable {
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public typealias C = AST.Instantiation
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public static func Compile(
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node: SwiftTreeSitter.Node, withContext context: ASTCompilerContext
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) -> Result<AST.Instantiation> {
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let expression = node
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#RequireNodeType<Node, AST.Instantiation>(
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node: expression, type: "instantiation", nice_type_name: "instantiation statement")
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var walker = Walker(node: expression)
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var current_node: Node? = .none
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#MustOr(
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result: current_node, thing: walker.getNext(),
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or: Result<AST.Instantiation>.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(), withError: "Missing function call component")))
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let maybe_instantiated_type_name = AST.Identifier.CompileExpression(
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node: current_node!, withContext: context)
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guard case .Ok(let instantiated_type_name) = maybe_instantiated_type_name else {
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return Result.Error(maybe_instantiated_type_name.error()!)
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}
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walker.next()
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#MustOr(
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result: current_node, thing: walker.getNext(),
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or: Result<AST.Instantiation>.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(), withError: "Missing instantiation component")))
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let maybe_argument_list = AST.ArgumentList.Compile(node: current_node!, withContext: context)
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guard case .Ok(let arguments) = maybe_argument_list else {
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return .Error(maybe_argument_list.error()!)
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}
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walker.next()
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#MustOr(
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result: current_node, thing: walker.getNext(),
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or: Result<AST.Instantiation>.Error(
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ErrorWithLocation(
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sourceLocation: node.toSourceLocation(), withError: "Missing instantiation name")))
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let name = AST.Identifier.CompileExpression(node: current_node!, withContext: context)
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guard case .Ok(let name) = name else {
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return .Error(name.error()!)
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}
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return .Ok(
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AST.Instantiation(
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named: name as! AST.Identifier, withType: instantiated_type_name as! AST.Identifier,
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withArguments: arguments))
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}
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}
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@deriveCompilableStatement
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extension AST.Instantiation: CompilableStatement {}
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