Lex Strings
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@ -3,9 +3,14 @@
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#define PORYGONLANG_DIAGNOSTICCODE_HPP
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enum class DiagnosticCode{
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// Lex diagnostics
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UnexpectedCharacter,
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InvalidStringControlCharacter,
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// Parse diagnostics
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UnexpectedToken,
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// Bind diagnostics
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NoBinaryOperationFound,
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NoUnaryOperationFound,
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};
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@ -1,5 +1,7 @@
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#include <utility>
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#include <cmath>
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#include <unordered_map>
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#include <sstream>
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#include "Lexer.hpp"
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@ -60,11 +62,15 @@ IToken* Lexer::LexNext(char c){
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return new SimpleToken(TokenKind::AssignmentToken, this -> Position - 1, 1);
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case '0': case '1': case '2': case '3': case '4': case '5': case '6': case '7': case '8': case '9':
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return LexNumber(c);
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case '"':
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return LexString(c);
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case '\'':
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return LexString(c);
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case '_':
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return LexIdentifierOrKeyword(c);
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return LexIdentifierOrKeyword();
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default:
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if (isalpha(c)){
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return LexIdentifierOrKeyword(c);
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return LexIdentifierOrKeyword();
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}
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this -> ScriptData -> Diagnostics -> LogError(DiagnosticCode::UnexpectedCharacter, this -> Position - 1, 1);
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return new SimpleToken(TokenKind::BadToken, this -> Position - 1, 1);
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@ -143,7 +149,7 @@ unsigned constexpr const_hash(char const *input) {
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5381;
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}
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IToken* Lexer::LexIdentifierOrKeyword(char c){
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IToken * Lexer::LexIdentifierOrKeyword() {
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auto start = this -> Position - 1;
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auto end = start;
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while (true){
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@ -182,3 +188,56 @@ IToken* Lexer::LexIdentifierOrKeyword(char c){
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default: return new IdentifierToken(s, start, s.length());
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}
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}
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const unordered_map<char, char> ControlCharacters{
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{'0', '\0'},
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{'a', '\a'},
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{'b', '\b'},
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{'t', '\t'},
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{'n', '\n'},
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{'v', '\v'},
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{'f', '\f'},
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{'r', '\r'},
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{'"', '\"'},
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{'\'', '\''},
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{'\?', '\?'},
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{'\\', '\\'},
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};
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IToken* Lexer::LexString(char c){
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auto start = this -> Position - 1;
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auto end = start;
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char last = c;
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while (true){
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char next = this -> Peek();
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if (next == '\0') break;
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if (next == c && last != '\\') break;
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this -> Next();
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end++;
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last = next;
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}
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auto closeToken = this -> Next();
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if (closeToken != c){
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this -> ScriptData->Diagnostics->LogError(DiagnosticCode::UnexpectedCharacter, this->Position - 1, 1);
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return new SimpleToken(TokenKind::BadToken, start, end -start + 1);
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}
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string s = this -> ScriptString.substr(start + 1, end - start);
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stringstream stream;
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for (int i = 0; i < s.size(); i++){
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c = s[i];
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if (c == '\\'){
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i++;
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c = s[i];
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if (ControlCharacters.find(c) != ControlCharacters.end()) {
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stream << ControlCharacters.at(c);
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} else{
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this -> ScriptData->Diagnostics->LogError(DiagnosticCode::InvalidStringControlCharacter, start + 1 + i, 1);
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stream << c;
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}
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} else{
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stream << c;
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}
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}
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return new StringToken(stream.str(), start, end - start );
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}
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@ -17,12 +17,14 @@ public:
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char Next();
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IToken* LexNext(char c);
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IToken* LexNumber(char c);
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IToken *LexIdentifierOrKeyword(char c);
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IToken *LexIdentifierOrKeyword();
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IToken *LexString(char c);
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public:
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Script* ScriptData;
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vector<IToken*> Lex();
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explicit Lexer(string scriptString, class Script* script);
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};
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@ -1,3 +1,5 @@
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#include <utility>
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#ifndef PORYGONLANG_TOKEN_HPP
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#define PORYGONLANG_TOKEN_HPP
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@ -73,6 +75,19 @@ public:
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}
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};
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class StringToken : public IToken{
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public:
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string Value;
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explicit StringToken(string value, unsigned int position, unsigned int length) : IToken(position, length){
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Value = std::move(value);
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}
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TokenKind GetKind() override{
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return TokenKind::String;
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}
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};
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class IdentifierToken : public IToken{
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public:
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string Value;
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@ -19,6 +19,7 @@ enum class TokenKind{
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Integer,
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Float,
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String,
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AndKeyword,
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BreakKeyword,
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@ -276,4 +276,43 @@ TEST_CASE( "Lex End Position", "[lexer]" ) {
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CHECK(((IdentifierToken*)tokens[3]) -> GetEndPosition() == 11);
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CHECK(((IdentifierToken*)tokens[4]) -> GetEndPosition() == 12);
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}
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TEST_CASE("Lex Double Quote String", "[lexer]") {
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Lexer lexer = Lexer("\"foo bar\"", nullptr);
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auto tokens = lexer.Lex();
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REQUIRE(tokens.size() == 2);
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IToken* firstToken = tokens[0];
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REQUIRE(firstToken -> GetKind() == TokenKind::String);
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REQUIRE(((StringToken*)firstToken) -> Value == "foo bar");
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}
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TEST_CASE("Lex Single Quote String", "[lexer]") {
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Lexer lexer = Lexer("'foo bar'", nullptr);
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auto tokens = lexer.Lex();
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REQUIRE(tokens.size() == 2);
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IToken* firstToken = tokens[0];
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REQUIRE(firstToken -> GetKind() == TokenKind::String);
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REQUIRE(((StringToken*)firstToken) -> Value == "foo bar");
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}
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TEST_CASE("Lex Double Quote String, Escape Quote", "[lexer]") {
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Lexer lexer = Lexer("'foo\\\"bar'", nullptr);
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auto tokens = lexer.Lex();
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REQUIRE(tokens.size() == 2);
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IToken* firstToken = tokens[0];
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REQUIRE(firstToken -> GetKind() == TokenKind::String);
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REQUIRE(((StringToken*)firstToken) -> Value == "foo\"bar");
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}
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TEST_CASE("Lex String with newline", "[lexer]") {
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Lexer lexer = Lexer("'foo\\nbar'", nullptr);
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auto tokens = lexer.Lex();
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REQUIRE(tokens.size() == 2);
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IToken* firstToken = tokens[0];
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REQUIRE(firstToken -> GetKind() == TokenKind::String);
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REQUIRE(((StringToken*)firstToken) -> Value == "foo\nbar");
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}
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#endif
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