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gp4/Tests/p4rseTests/BinaryOperatorTests/Integer.swift
T
Will Hawkins 294f76acd4
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compiler: Refactor Compiler To Remove Ambiguities
There were significant overlaps in the names of data structures
between the compiler and the language that made it necessary
to litter the code with P4Lang.xxxx. This refactor removes that
requirement in most places (Parser is ambiguous wherever TreeSitter
is used -- cannot avoid that!)

Signed-off-by: Will Hawkins <hawkinsw@obs.cr>
2026-05-27 12:59:29 -04:00

550 lines
16 KiB
Swift

// 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
import Foundation
import Macros
import P4Lang
import P4Runtime
import SwiftTreeSitter
import Testing
import TreeSitter
import TreeSitterP4
@testable import P4Compiler
// Integer binary operator tests ...
@Test func test_simple_parser_binary_operator_equal_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 == 5) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_equal_not_equal_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 == 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.reject)
}
@Test func test_simple_parser_binary_operator_less_than_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 < 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_less_than_equal_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 <= 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_less_than_equal_integer2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (6 <= 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_greater_than_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (7 > 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_greater_than_equal_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (6 >= 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_greater_than_equal_integer2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (7 >= 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_less_than_integer_not() async throws {
let simple = """
parser main_parser() {
state start {
transition select (6 < 5) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.reject)
}
@Test func test_simple_parser_binary_operator_less_than_integer_not2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 < 5) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.reject)
}
@Test func test_simple_parser_binary_operator_less_than_equal_integer_not() async throws {
let simple = """
parser main_parser() {
state start {
transition select (6 <= 5) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.reject)
}
@Test func test_simple_parser_binary_operator_greater_than_integer_not() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 > 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.reject)
}
@Test func test_simple_parser_binary_operator_greater_than_integer_not2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 > 5) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.reject)
}
@Test func test_simple_parser_binary_operator_greater_than_equal_integer_not() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 >= 6) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.reject)
}
// Add Integers
@Test func test_simple_parser_binary_operator_add_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (10 == (5 + 5)) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_add_non_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (true + false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 12}: Could not parse transition select expression selector expression: Mathematical operation on operands with non-int type is not allowed"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}
@Test func test_simple_parser_binary_operator_add_non_integer2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 + false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 9}: Could not parse transition select expression selector expression: Types of values used with binary expression are not the same"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}
// Subtract Integers
@Test func test_simple_parser_binary_operator_subtract_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (0 == (5 - 5)) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_subtract_non_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (true - false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 12}: Could not parse transition select expression selector expression: Mathematical operation on operands with non-int type is not allowed"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}
@Test func test_simple_parser_binary_operator_subtract_non_integer2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 - false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 9}: Could not parse transition select expression selector expression: Types of values used with binary expression are not the same"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}
// Multiply Integers
@Test func test_simple_parser_binary_operator_multiply_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (25 == (5 * 5)) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_multiply_non_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (true * false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 12}: Could not parse transition select expression selector expression: Mathematical operation on operands with non-int type is not allowed"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}
@Test func test_simple_parser_binary_operator_multiply_non_integer2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 * false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 9}: Could not parse transition select expression selector expression: Types of values used with binary expression are not the same"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}
// Divide Integers
@Test func test_simple_parser_binary_operator_divide_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (1 == (5 / 5)) {
true: accept;
false: reject;
};
}
};
"""
let program = try #UseOkResult(SpecialCompilers.ProgramCompiler.Compile(simple))
let runtime = try #UseOkResult(P4Runtime.Runtime<InstantiatedParserState, P4Lang.ParserValue>.create(program: program))
let (state_result, _) = try! #UseOkResult(runtime.run())
#expect(state_result == P4Lang.accept)
}
@Test func test_simple_parser_binary_operator_divide_non_integer() async throws {
let simple = """
parser main_parser() {
state start {
transition select (true / false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 12}: Could not parse transition select expression selector expression: Mathematical operation on operands with non-int type is not allowed"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}
@Test func test_simple_parser_binary_operator_divide_non_integer2() async throws {
let simple = """
parser main_parser() {
state start {
transition select (5 / false) {
true: accept;
false: reject;
};
}
};
"""
#expect(
#RequireErrorResult(
Error(
withMessage:
"{72, 9}: Could not parse transition select expression selector expression: Types of values used with binary expression are not the same"
),
SpecialCompilers.ProgramCompiler.Compile(simple)))
}