monna/parser/parser_test.go

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package parser
import (
"monkey/ast"
"monkey/lexer"
"testing"
)
func check_parser_errors(l_test *testing.T, l_parser *Parser) {
errors := l_parser.Errors()
if len(errors) == 0 {
return
}
l_test.Errorf("parser has %d errors", len(errors))
for _, message := range errors {
l_test.Errorf("parser error: %q", message)
}
l_test.FailNow()
}
func TestLetStatement(l_test *testing.T) {
input := `
let x = 4;
let y = 19;
let foobar = 8948398493;
`
l_lexer := lexer.New(input)
l_parser := New(l_lexer)
program := l_parser.ParseProgram()
check_parser_errors(l_test, l_parser)
if program == nil {
l_test.Fatalf("ParseProgram() returned nil")
}
if len(program.Statements) != 3 {
l_test.Fatalf("program.Statements does not contain 3 statements, got=%d", len(program.Statements))
}
tests := []struct {
expected_identifier string
}{
{"x"},
{"y"},
{"foobar"},
}
for i, tt := range tests {
statement := program.Statements[i]
if !testLetStatement(l_test, statement, tt.expected_identifier) {
return
}
}
}
func testLetStatement(l_test *testing.T, statement ast.Statement, name string) bool {
if statement.TokenLiteral() != "let" {
l_test.Errorf("statement.TokenLiteral not let, got=%q", statement.TokenLiteral())
return false
}
let_statement, ok := statement.(*ast.LetStatement)
if !ok {
l_test.Errorf("statement not *ast.LetStatement, got=%T", statement)
return false
}
if let_statement.Name.Value != name {
l_test.Errorf("let_statement.name.Value not %s, got=%s", name, let_statement.Name.Value)
return false
}
if let_statement.Name.TokenLiteral() != name {
l_test.Errorf("let_statement.name.TokenLiteral() not %s, got=%s", name, let_statement.Name.TokenLiteral())
return false
}
return true
}
func TestReturnStatement(l_test *testing.T) {
input := `
return 6;
return 10;
return 8419849;
`
l_lexer := lexer.New(input)
l_parser := New(l_lexer)
program := l_parser.ParseProgram()
check_parser_errors(l_test, l_parser)
if len(program.Statements) != 3 {
l_test.Fatalf("program.Statements does not contain 3 statements, got=%d", len(program.Statements))
}
for _, statement := range program.Statements {
return_statement, ok := statement.(*ast.ReturnStatement)
if !ok {
l_test.Errorf("statment not *ast.ReturnStatement, got =%T", statement)
continue
}
if return_statement.TokenLiteral() != "return" {
l_test.Errorf("return_statement.TokenLiteral() not 'return', got %q", return_statement.TokenLiteral())
}
}
}
func TestIdentifierExpression(l_test *testing.T) {
input := "foobar;"
l_lexer := lexer.New(input)
l_parser := New(l_lexer)
program := l_parser.ParseProgram()
check_parser_errors(l_test, l_parser)
if len(program.Statements) != 1 {
l_test.Fatalf("program does not have enough staments, got=%d", len(program.Statements))
}
statement, ok := program.Statements[0].(*ast.ExpressionStatement)
if !ok {
l_test.Fatalf("program.Statements[0] is not ast.ExpressionStatement, got=%T", program.Statements[0])
}
identifier, ok := statement.Expression.(*ast.Identifier)
if !ok {
l_test.Fatalf("expression not *ast.Identifier, got=%T", statement.Expression)
}
if identifier.Value != "foobar" {
l_test.Errorf("identifier.Value not %s, got=%s", "foobar", identifier.Value)
}
if identifier.TokenLiteral() != "foobar" {
l_test.Errorf("identifier.TokenLiteral not %s, got=%s", "foobar", identifier.TokenLiteral())
}
}
func TestIntegerLiteralExpressions(l_test *testing.T) {
input := "5;"
l_lexer := lexer.New(input)
l_parser := New(l_lexer)
program := l_parser.ParseProgram()
check_parser_errors(l_test, l_parser)
if len(program.Statements) != 1 {
l_test.Fatalf("program does not have enough statements, got=%d", len(program.Statements))
}
statement, ok := program.Statements[0].(*ast.ExpressionStatement)
if !ok {
l_test.Fatalf("program.Statements[0] is not ast.ExpressionStatement, got=%T", program.Statements[0])
}
literal, ok := statement.Expression.(*ast.IntegerLiteral)
if !ok {
l_test.Fatalf("expression not *ast.IntegerLiteral, got=%T", statement.Expression)
}
if literal.Value != 5 {
l_test.Errorf("literal.Value not %d, got=%d", 5, literal.Value)
}
if literal.TokenLiteral() != "5" {
l_test.Errorf("literal.TokenLiteral not %s, got=%s", "5", literal.TokenLiteral())
}
}