Initial Support For If Statements

Signed-off-by: Will Hawkins <hawkinsw@obs.cr>
This commit is contained in:
Will Hawkins
2026-02-24 04:38:05 -05:00
parent 3752dd01ab
commit a2335a01ed
9 changed files with 541 additions and 46 deletions
-9
View File
@@ -95,15 +95,6 @@ public struct ParserTransitionStatement {
} }
} }
public struct VariableDeclarationStatement {
public var initializer: EvaluatableExpression
public var identifier: Identifier
public init(identifier: Identifier, withInitializer initializer: EvaluatableExpression) {
self.identifier = identifier
self.initializer = initializer
}
}
public class ParserState: Equatable, CustomStringConvertible, Comparable { public class ParserState: Equatable, CustomStringConvertible, Comparable {
public private(set) var state_name: String public private(set) var state_name: String
+54
View File
@@ -0,0 +1,54 @@
// p4rse, Copyright 2026, Will Hawkins
//
// This file is part of p4rse.
//
// This file is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with this program. If not, see <https://www.gnu.org/licenses/>.
import Common
public struct VariableDeclarationStatement {
public var initializer: EvaluatableExpression
public var identifier: Identifier
public init(identifier: Identifier, withInitializer initializer: EvaluatableExpression) {
self.identifier = identifier
self.initializer = initializer
}
}
public struct ConditionalStatement {
public var condition: EvaluatableExpression
public var thenn: EvaluatableStatement
public var elss: EvaluatableStatement?
public init(condition: EvaluatableExpression, withThen thenn: EvaluatableStatement) {
self.condition = condition
self.thenn = thenn
self.elss = .none
}
public init(condition: EvaluatableExpression, withThen thenn: EvaluatableStatement, andElse elss: EvaluatableStatement) {
self.condition = condition
self.thenn = thenn
self.elss = elss
}
}
public struct BlockStatement {
public var statements: [EvaluatableStatement]
public init(_ statements: [EvaluatableStatement]) {
self.statements = statements
}
}
-28
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@@ -178,31 +178,3 @@ struct Expression {
return Result.Error(Error(withMessage: "Could not parse into expression.")) return Result.Error(Error(withMessage: "Could not parse into expression."))
} }
} }
extension ExpressionStatement: ParseableStatement {
public static func Parse(
node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes
) -> Result<(EvaluatableStatement?, LexicalScopes)> {
guard
let expression_statement_query = try? SwiftTreeSitter.Query(
language: p4lang,
data: String(
"(expressionStatement (expression) @expression)"
).data(using: String.Encoding.utf8)!)
else {
return Result.Ok((.none, scopes))
}
let qr = expression_statement_query.execute(node: node, in: tree)
guard let query_result = qr.next() else {
return Result.Ok((.none, scopes))
}
let expression_capture = query_result.captures(named: "expression")
if !expression_capture.isEmpty {
// TODO: Actually create an ExpressionStatement
return Result.Ok((ExpressionStatement(), scopes))
}
return Result.Ok((.none, scopes))
}
}
+13 -6
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@@ -28,12 +28,11 @@ extension ParserAssignmentStatement: ParseableStatement {
public static func Parse( public static func Parse(
node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes
) -> Result<(EvaluatableStatement?, LexicalScopes)> { ) -> Result<(EvaluatableStatement?, LexicalScopes)> {
guard guard
let parser_assignment_statement_query = try? SwiftTreeSitter.Query( let parser_assignment_statement_query = try? SwiftTreeSitter.Query(
language: p4lang, language: p4lang,
data: String( data: String(
"(assignmentStatement (expression) @lvalue (assignment) (expression) @value)" "(assignmentStatement (expression) @lvalue (assignment) (expression) @value) @assignment"
).data(using: String.Encoding.utf8)!) ).data(using: String.Encoding.utf8)!)
else { else {
return Result.Ok((.none, scopes)) return Result.Ok((.none, scopes))
@@ -44,6 +43,7 @@ extension ParserAssignmentStatement: ParseableStatement {
return Result.Ok((.none, scopes)) return Result.Ok((.none, scopes))
} }
let assignment_capture = parser_assignment_statement.captures(named: "assignment")
let lvalue_capture = parser_assignment_statement.captures(named: "lvalue") let lvalue_capture = parser_assignment_statement.captures(named: "lvalue")
let rvalue_capture = parser_assignment_statement.captures(named: "value") let rvalue_capture = parser_assignment_statement.captures(named: "value")
@@ -56,8 +56,15 @@ extension ParserAssignmentStatement: ParseableStatement {
Error(withMessage: "Could not parse a parser assignment statement")) Error(withMessage: "Could not parse a parser assignment statement"))
} }
let rvalue_raw = rvalue_capture[0].node let rvalue_node = rvalue_capture[0].node
let maybe_parsed_rvalue = Expression.Parse(node: rvalue_raw, inTree: tree, withScopes: scopes) let lvalue_node = lvalue_capture[0].node
let assignment_node = assignment_capture[0].node
if assignment_node.parent != node.parent {
return Result.Ok((.none, scopes))
}
let maybe_parsed_rvalue = Expression.Parse(node: rvalue_node, inTree: tree, withScopes: scopes)
guard case Result.Ok(let rvalue) = maybe_parsed_rvalue else { guard case Result.Ok(let rvalue) = maybe_parsed_rvalue else {
return Result.Error(maybe_parsed_rvalue.error()!) return Result.Error(maybe_parsed_rvalue.error()!)
} }
@@ -72,7 +79,7 @@ extension ParserAssignmentStatement: ParseableStatement {
return Result.Ok( return Result.Ok(
( (
ParserAssignmentStatement( ParserAssignmentStatement(
withLValue: TypedIdentifier(name: lvalue_expression_raw, withType: lvalue_type), withLValue: TypedIdentifier(name: lvalue_node.text!, withType: lvalue_type),
withValue: rvalue withValue: rvalue
), scopes ), scopes
)) ))
@@ -121,7 +128,7 @@ public struct Parser {
) -> Result<(EvaluatableStatement, LexicalScopes)> { ) -> Result<(EvaluatableStatement, LexicalScopes)> {
let statementParsers: [ParseableStatement.Type] = [ let statementParsers: [ParseableStatement.Type] = [
ParserAssignmentStatement.self, ExpressionStatement.self, ParserAssignmentStatement.self, ExpressionStatement.self,
VariableDeclarationStatement.self, VariableDeclarationStatement.self, ConditionalStatement.self, BlockStatement.self,
] ]
// Iterate through statement parsers and give each one a chance. // Iterate through statement parsers and give each one a chance.
+164
View File
@@ -22,6 +22,142 @@ import SwiftTreeSitter
import TreeSitterExtensions import TreeSitterExtensions
import TreeSitterP4 import TreeSitterP4
extension BlockStatement: ParseableStatement {
public static func Parse(
node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes
) -> Result<(EvaluatableStatement?, LexicalScopes)> {
// TODO: Make sure that this works.
// (And apply in other places!)
guard
let block_statement_query = try? SwiftTreeSitter.Query(
language: p4lang,
data: String(
"(statement . (blockStatement . (statements . ((statement) @astatement (semicolon))*) @statements) @block-statement) @statement"
).data(using: String.Encoding.utf8)!)
else {
return Result.Ok((.none, scopes))
}
let qr = block_statement_query.execute(node: node, in: tree)
guard let variable_declaration = qr.next() else {
return .Ok((.none, scopes))
}
let statement_capture = variable_declaration.captures(named: "statement")
let blockstatement_capture = variable_declaration.captures(named: "block-statement")
let astatement_capture = variable_declaration.captures(named: "astatement")
let statements_capture = variable_declaration.captures(named: "statements")
if statement_capture.isEmpty || blockstatement_capture.isEmpty {
return .Error(Error(withMessage: "Could not parse a block statement"))
}
let statement_node = statement_capture[0].node
let blockstatement_capture_node = blockstatement_capture[0].node
let statements_capture_node = statements_capture[0].node
/*
if statement_node.parent != node.parent
{
return .Ok((.none, scopes))
}
*/
var statements: [EvaluatableStatement] = Array()
var parse_err: Error? = .none
for statement in astatement_capture {
if let statement_node = statement.node.child(
at: 0) /*
let statement_node_parent = statement_node.parent,
statement_node_parent.parent == statements_capture_node
*/
{
switch P4Parser.Parser.Statements.Parse(
node: statement_node, inTree: tree, withScope: scopes.enter())
{
case .Ok((let parsed_statement, _)): statements.append(parsed_statement)
case .Error(let e):
parse_err = e
break
}
}
}
if let err = parse_err {
return .Error(err)
}
return .Ok((BlockStatement(statements), scopes))
}
}
extension ConditionalStatement: ParseableStatement {
public static func Parse(
node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes
) -> Result<(EvaluatableStatement?, LexicalScopes)> {
guard let node_type = node.nodeType,
node_type == "conditionalStatement"
else {
return Result.Ok((.none, scopes))
}
let maybe_condition_expression = node.child(at: 2)
guard let condition_expression = maybe_condition_expression,
condition_expression.nodeType == "expression"
else {
return Result.Ok((.none, scopes))
}
let maybe_thens = node.child(at: 4)
guard let thens = maybe_thens,
thens.nodeType == "statement"
else {
return Result.Ok((.none, scopes))
}
guard
case .Ok(let condition) = Expression.Parse(
node: condition_expression, inTree: tree, withScopes: scopes.enter())
else {
return Result.Error(
Error(withMessage: "Could not parse a conditional expression in a conditional statement"))
}
guard
case .Ok((let thenns, _)) = Parser.Statements.Parse(
node: thens, inTree: tree, withScope: scopes.enter())
else {
return Result.Error(
Error(
withMessage:
"Could not parse the then block in a conditional statement"))
}
let optional_elss: Result<(any EvaluatableStatement, LexicalScopes)>? =
if let elss = node.child(at: 6) {
.some(
Parser.Statements.Parse(
node: elss, inTree: tree, withScope: scopes.enter()))
} else {
.none
}
if let parsed_elss = optional_elss {
guard
case .Ok((let elss, _)) = parsed_elss
else {
return Result.Error(
Error(
withMessage:
"Could not parse the else block in a conditional statement"))
}
return .Ok(
(ConditionalStatement(condition: condition, withThen: thenns, andElse: elss), scopes))
}
return .Ok((ConditionalStatement(condition: condition, withThen: thenns), scopes))
}
}
extension VariableDeclarationStatement: ParseableStatement { extension VariableDeclarationStatement: ParseableStatement {
public static func Parse( public static func Parse(
node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes
@@ -86,3 +222,31 @@ extension VariableDeclarationStatement: ParseableStatement {
} }
} }
} }
extension ExpressionStatement: ParseableStatement {
public static func Parse(
node: Node, inTree tree: MutableTree, withScopes scopes: LexicalScopes
) -> Result<(EvaluatableStatement?, LexicalScopes)> {
guard
let expression_statement_query = try? SwiftTreeSitter.Query(
language: p4lang,
data: String(
"(expressionStatement (expression) @expression)"
).data(using: String.Encoding.utf8)!)
else {
return Result.Ok((.none, scopes))
}
let qr = expression_statement_query.execute(node: node, in: tree)
guard let query_result = qr.next() else {
return Result.Ok((.none, scopes))
}
let expression_capture = query_result.captures(named: "expression")
if !expression_capture.isEmpty {
// TODO: Actually create an ExpressionStatement
return Result.Ok((ExpressionStatement(), scopes))
}
return Result.Ok((.none, scopes))
}
}
+34
View File
@@ -18,6 +18,16 @@
import Common import Common
import P4Lang import P4Lang
extension BlockStatement: EvaluatableStatement {
public func evaluate(execution: ProgramExecution) -> ProgramExecution {
var execution = execution
for s in self.statements {
execution = s.evaluate(execution: execution)
}
return execution
}
}
extension VariableDeclarationStatement: EvaluatableStatement { extension VariableDeclarationStatement: EvaluatableStatement {
public func evaluate(execution: ProgramExecution) -> ProgramExecution { public func evaluate(execution: ProgramExecution) -> ProgramExecution {
guard case .Ok(let initial_value) = self.initializer.evaluate(execution: execution) else { guard case .Ok(let initial_value) = self.initializer.evaluate(execution: execution) else {
@@ -29,6 +39,30 @@ extension VariableDeclarationStatement: EvaluatableStatement {
} }
} }
extension ConditionalStatement: EvaluatableStatement {
public func evaluate(execution: ProgramExecution) -> ProgramExecution {
guard case .Ok(let initial_value) = self.condition.evaluate(execution: execution) else {
return execution.setError(error: Error(withMessage: "Could not evaluate \(self.condition)"))
}
if !initial_value.type().eq(rhs: P4Boolean.create()) {
return execution.setError(error: Error(withMessage: "Condition expression is not a Boolean"))
}
if initial_value.eq(rhs: P4BooleanValue.init(withValue: true)) {
let execution = execution.enter_scope()
var result = self.thenn.evaluate(execution: execution)
result = result.exit_scope()
return result
} else if let elss = self.elss {
let execution = execution.enter_scope()
var result = elss.evaluate(execution: execution)
result = result.exit_scope()
return result
}
return execution
}
}
extension ExpressionStatement: EvaluatableStatement { extension ExpressionStatement: EvaluatableStatement {
public func evaluate(execution: ProgramExecution) -> ProgramExecution { public func evaluate(execution: ProgramExecution) -> ProgramExecution {
return execution return execution
+68 -3
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@@ -17,8 +17,8 @@
import Common import Common
import Foundation import Foundation
import P4Lang
import Macros import Macros
import P4Lang
import P4Runtime import P4Runtime
import SwiftTreeSitter import SwiftTreeSitter
import Testing import Testing
@@ -62,7 +62,6 @@ import TreeSitterP4
#expect(state_result == P4Lang.reject) #expect(state_result == P4Lang.reject)
} }
@Test func test_simple_runtime_no_start_state() async throws { @Test func test_simple_runtime_no_start_state() async throws {
let simple_parser_declaration = """ let simple_parser_declaration = """
parser main_parser() { parser main_parser() {
@@ -93,7 +92,6 @@ import TreeSitterP4
}; };
""" """
let program = try #UseOkResult(Program.Parse(simple_parser_declaration)) let program = try #UseOkResult(Program.Parse(simple_parser_declaration))
let parser = try #UseOkResult(program.find_parser(withName: Identifier(name: "main_parser"))) let parser = try #UseOkResult(program.find_parser(withName: Identifier(name: "main_parser")))
let runtime = try #UseOkResult(P4Runtime.ParserRuntime.create(program: program)) let runtime = try #UseOkResult(P4Runtime.ParserRuntime.create(program: program))
@@ -124,3 +122,70 @@ import TreeSitterP4
#expect(parser.states.count() == 1) #expect(parser.states.count() == 1)
#expect(state_result == P4Lang.reject) #expect(state_result == P4Lang.reject)
} }
@Test func test_simple_parser_with_conditional_statement() async throws {
let simple_parser_declaration = """
parser main_parser() {
state start {
bool x = true;
string check = "Invalid";
if (x) {
x = false;
check = "valid";
};
transition select (x) {
false: reject;
true: accept;
};
}
};
"""
let program = try #UseOkResult(Program.Parse(simple_parser_declaration))
let parser = try #UseOkResult(program.find_parser(withName: Identifier(name: "main_parser")))
let runtime = try #UseOkResult(P4Runtime.ParserRuntime.create(program: program))
let (state_result, exec_result) = try! #UseOkResult(runtime.run())
#expect(parser.states.count() == 1)
#expect(state_result == P4Lang.reject)
let x = try #UseOkResult(exec_result.scopes.lookup(identifier: Identifier(name: "x")))
#expect(x.eq(rhs: P4BooleanValue(withValue: false)))
let check = try #UseOkResult(exec_result.scopes.lookup(identifier: Identifier(name: "check")))
#expect(check.eq(rhs: P4StringValue(withValue: "\"valid\"")))
}
@Test func test_simple_parser_with_conditional_statement_and_else() async throws {
let simple_parser_declaration = """
parser main_parser() {
state start {
bool x = false;
string check = "Invalid";
if (x) {
x = false;
check = "a";
} else {
x = true;
check = "b";
};
transition select (x) {
false: reject;
true: accept;
};
}
};
"""
let program = try #UseOkResult(Program.Parse(simple_parser_declaration))
let parser = try #UseOkResult(program.find_parser(withName: Identifier(name: "main_parser")))
let runtime = try #UseOkResult(P4Runtime.ParserRuntime.create(program: program))
let (state_result, exec_result) = try! #UseOkResult(runtime.run())
#expect(parser.states.count() == 1)
#expect(state_result == P4Lang.accept)
let x = try #UseOkResult(exec_result.scopes.lookup(identifier: Identifier(name: "x")))
#expect(x.eq(rhs: P4BooleanValue(withValue: true)))
let check = try #UseOkResult(exec_result.scopes.lookup(identifier: Identifier(name: "check")))
#expect(check.eq(rhs: P4StringValue(withValue: "\"b\"")))
}
@@ -39,6 +39,7 @@ import TreeSitterP4
let simple_parser_declaration = """ let simple_parser_declaration = """
parser main_parser() { parser main_parser() {
state start { state start {
string g = "Testing";
string where_to = "Testing"; string where_to = "Testing";
where_to = true; where_to = true;
transition reject; transition reject;
+207
View File
@@ -173,3 +173,210 @@ parser simple() {
(semicolon) (semicolon)
) )
=========================
Simple Conditional Statement
=========================
parser simple() {
state start {
bool x = true;
if (x) {
x = false;
};
transition accept;
}
};
---
(p4program
(declaration
(parserDeclaration
(parserType
(parser)
(identifier)
)
(parserStates
(parserState
(state)
(identifier)
(parserLocalElements
(parserLocalElement
(variableDeclaration
(typeRef
(baseType
(bool)
)
)
(identifier)
(assignment)
(expression
(true)
)
)
)
(semicolon)
)
(parserStatements
(parserStatement
(conditionalStatement
(if)
(expression
(identifier)
)
(statement
(blockStatement
(statements
(statement
(assignmentStatement
(expression
(identifier)
)
(assignment)
(expression
(false)
)
)
)
(semicolon)
)
)
)
)
)
(semicolon)
)
(parserTransitionStatement
(transition)
(transitionSelectionExpression
(identifier)
)
)
(semicolon)
)
)
)
)
(semicolon)
)
=========================
Simple Conditional Statement (with else)
=========================
parser simple() {
state start {
bool x = true;
int y = 0;
if (x) {
y = 1;
} else {
y = 2;
};
transition accept;
}
};
---
(p4program
(declaration
(parserDeclaration
(parserType
(parser)
(identifier)
)
(parserStates
(parserState
(state)
(identifier)
(parserLocalElements
(parserLocalElement
(variableDeclaration
(typeRef
(baseType
(bool)
)
)
(identifier)
(assignment)
(expression
(true)
)
)
)
(semicolon)
(parserLocalElement
(variableDeclaration
(typeRef
(baseType
(int)
)
)
(identifier)
(assignment)
(expression
(integer)
)
)
)
(semicolon)
)
(parserStatements
(parserStatement
(conditionalStatement
(if)
(expression
(identifier)
)
(statement
(blockStatement
(statements
(statement
(assignmentStatement
(expression
(identifier)
)
(assignment)
(expression
(integer)
)
)
)
(semicolon)
)
)
)
(else)
(statement
(blockStatement
(statements
(statement
(assignmentStatement
(expression
(identifier)
)
(assignment)
(expression
(integer)
)
)
)
(semicolon)
)
)
)
)
)
(semicolon)
)
(parserTransitionStatement
(transition)
(transitionSelectionExpression
(identifier)
)
)
(semicolon)
)
)
)
)
(semicolon)
)