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https://github.com/krgamestudios/Toy.git
synced 2026-04-15 23:04:08 +10:00
Added the opaque data type
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6
scripts/test/opaque-data-type.toy
Normal file
6
scripts/test/opaque-data-type.toy
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@@ -0,0 +1,6 @@
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//test the opaque data type works
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var o = produce();
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consume(o);
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@@ -165,6 +165,10 @@ Literal copyLiteral(Literal original) {
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return lit;
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}
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case LITERAL_OPAQUE: {
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return original; //literally a shallow copy
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}
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case LITERAL_DICTIONARY_INTERMEDIATE: {
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LiteralArray* array = ALLOCATE(LiteralArray, 1);
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initLiteralArray(array);
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@@ -327,6 +331,9 @@ bool literalsAreEqual(Literal lhs, Literal rhs) {
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}
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return true;
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case LITERAL_OPAQUE:
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return false; //IDK what this is!
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case LITERAL_ANY:
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return true;
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@@ -389,6 +396,7 @@ int hashLiteral(Literal lit) {
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case LITERAL_TYPE:
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return AS_TYPE(lit).typeOf; //nothing else I can do
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case LITERAL_OPAQUE:
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case LITERAL_ANY:
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return -1;
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@@ -639,6 +647,10 @@ void printLiteralCustom(Literal literal, void (printFn)(const char*)) {
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printToBuffer("type");
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break;
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case LITERAL_OPAQUE:
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printToBuffer("opaque");
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break;
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case LITERAL_ANY:
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printToBuffer("any");
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break;
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@@ -676,6 +688,10 @@ void printLiteralCustom(Literal literal, void (printFn)(const char*)) {
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printFn("Unprintable literal found");
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break;
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case LITERAL_OPAQUE:
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printFn("(opaque)");
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break;
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case LITERAL_ANY:
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printFn("(any)");
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break;
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@@ -15,6 +15,7 @@ typedef enum {
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LITERAL_FUNCTION,
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LITERAL_IDENTIFIER,
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LITERAL_TYPE,
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LITERAL_OPAQUE,
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LITERAL_ANY,
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//these are meta-level types - not for general use
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@@ -58,6 +59,8 @@ typedef struct {
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int capacity;
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int count;
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} type;
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void* opaque;
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} as;
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} Literal;
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@@ -72,6 +75,7 @@ typedef struct {
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#define IS_FUNCTION_NATIVE(value) ((value).type == LITERAL_FUNCTION_NATIVE)
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#define IS_IDENTIFIER(value) ((value).type == LITERAL_IDENTIFIER)
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#define IS_TYPE(value) ((value).type == LITERAL_TYPE)
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#define IS_OPAQUE(value) ((value).type == LITERAL_OPAQUE)
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#define AS_BOOLEAN(value) ((value).as.boolean)
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#define AS_INTEGER(value) ((value).as.integer)
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@@ -82,6 +86,7 @@ typedef struct {
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#define AS_FUNCTION(value) ((value).as.function)
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#define AS_IDENTIFIER(value) ((value).as.identifier.ptr)
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#define AS_TYPE(value) ((value).as.type)
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#define AS_OPAQUE(value) ((value).as.opaque)
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#define TO_NULL_LITERAL ((Literal){LITERAL_NULL, { .integer = 0 }})
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#define TO_BOOLEAN_LITERAL(value) ((Literal){LITERAL_BOOLEAN, { .boolean = value }})
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@@ -93,6 +98,7 @@ typedef struct {
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#define TO_FUNCTION_LITERAL(value, l) ((Literal){LITERAL_FUNCTION, { .function.bytecode = value, .function.scope = NULL, .function.length = l }})
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#define TO_IDENTIFIER_LITERAL(value, l) _toIdentifierLiteral(value, l)
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#define TO_TYPE_LITERAL(value, c) ((Literal){ LITERAL_TYPE, { .type.typeOf = value, .type.constant = c, .type.subtypes = NULL, .type.capacity = 0, .type.count = 0 }})
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#define TO_OPAQUE_LITERAL(value) ((Literal){ LITERAL_OPAQUE, { .opaque = value }})
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TOY_API void freeLiteral(Literal literal);
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@@ -136,13 +136,18 @@ void freeLiteralDictionary(LiteralDictionary* dictionary) {
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void setLiteralDictionary(LiteralDictionary* dictionary, Literal key, Literal value) {
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if (IS_NULL(key)) {
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fprintf(stderr, ERROR "Dictionaries can't have null keys (get)\n" RESET);
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fprintf(stderr, ERROR "Dictionaries can't have null keys (set)\n" RESET);
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return;
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}
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//BUGFIX: Can't hash a function
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if (IS_FUNCTION(key) || IS_FUNCTION_NATIVE(key)) {
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fprintf(stderr, ERROR "Dictionaries can't have function keys (get)\n" RESET);
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fprintf(stderr, ERROR "Dictionaries can't have function keys (set)\n" RESET);
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return;
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}
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if (IS_OPAQUE(key)) {
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fprintf(stderr, ERROR "Dictionaries can't have opaque keys (set)\n" RESET);
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return;
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}
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@@ -156,13 +161,18 @@ void setLiteralDictionary(LiteralDictionary* dictionary, Literal key, Literal va
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Literal getLiteralDictionary(LiteralDictionary* dictionary, Literal key) {
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if (IS_NULL(key)) {
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fprintf(stderr, ERROR "Dictionaries can't have null keys (set)\n" RESET);
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fprintf(stderr, ERROR "Dictionaries can't have null keys (get)\n" RESET);
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return TO_NULL_LITERAL;
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}
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//BUGFIX: Can't hash a function
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if (IS_FUNCTION(key) || IS_FUNCTION_NATIVE(key)) {
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fprintf(stderr, ERROR "Dictionaries can't have function keys (set)\n" RESET);
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fprintf(stderr, ERROR "Dictionaries can't have function keys (get)\n" RESET);
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return TO_NULL_LITERAL;
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}
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if (IS_OPAQUE(key)) {
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fprintf(stderr, ERROR "Dictionaries can't have opaque keys (get)\n" RESET);
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return TO_NULL_LITERAL;
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}
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@@ -188,6 +198,11 @@ void removeLiteralDictionary(LiteralDictionary* dictionary, Literal key) {
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return;
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}
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if (IS_OPAQUE(key)) {
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fprintf(stderr, ERROR "Dictionaries can't have opaque keys (remove)\n" RESET);
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return;
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}
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_entry* entry = getEntryArray(dictionary->entries, dictionary->capacity, key, hashLiteral(key), true);
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if (entry != NULL) {
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165
test/test_opaque_data_type.c
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165
test/test_opaque_data_type.c
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@@ -0,0 +1,165 @@
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#include "lexer.h"
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#include "parser.h"
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#include "compiler.h"
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#include "interpreter.h"
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#include "console_colors.h"
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#include "memory.h"
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#include <stdio.h>
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#include <stdlib.h>
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//supress the print output
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static void noPrintFn(const char* output) {
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//NO OP
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}
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//compilation functions
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char* readFile(char* path, size_t* fileSize) {
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FILE* file = fopen(path, "rb");
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if (file == NULL) {
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fprintf(stderr, ERROR "Could not open file \"%s\"\n" RESET, path);
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exit(-1);
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}
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fseek(file, 0L, SEEK_END);
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*fileSize = ftell(file);
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rewind(file);
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char* buffer = (char*)malloc(*fileSize + 1);
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if (buffer == NULL) {
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fprintf(stderr, ERROR "Not enough memory to read \"%s\"\n" RESET, path);
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exit(-1);
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}
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size_t bytesRead = fread(buffer, sizeof(char), *fileSize, file);
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buffer[*fileSize] = '\0'; //NOTE: fread doesn't append this
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if (bytesRead < *fileSize) {
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fprintf(stderr, ERROR "Could not read file \"%s\"\n" RESET, path);
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exit(-1);
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}
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fclose(file);
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return buffer;
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}
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unsigned char* compileString(char* source, size_t* size) {
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Lexer lexer;
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Parser parser;
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Compiler compiler;
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initLexer(&lexer, source);
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initParser(&parser, &lexer);
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initCompiler(&compiler);
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//run the parser until the end of the source
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ASTNode* node = scanParser(&parser);
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while(node != NULL) {
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//pack up and leave
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if (node->type == AST_NODEERROR) {
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printf(ERROR "error node detected\n" RESET);
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freeNode(node);
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freeCompiler(&compiler);
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freeParser(&parser);
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return NULL;
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}
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writeCompiler(&compiler, node);
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freeNode(node);
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node = scanParser(&parser);
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}
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//get the bytecode dump
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unsigned char* tb = collateCompiler(&compiler, (int*)(size));
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//cleanup
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freeCompiler(&compiler);
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freeParser(&parser);
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//no lexer to clean up
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//finally
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return tb;
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}
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void error(char* msg) {
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printf(msg);
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exit(-1);
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}
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//utilities
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typedef struct ArbitraryData {
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int value;
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} ArbitraryData;
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static int produce(Interpreter* interpreter, LiteralArray* arguments) {
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ArbitraryData* data = ALLOCATE(ArbitraryData, 1);
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data->value = 42;
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Literal o = TO_OPAQUE_LITERAL(data);
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pushLiteralArray(&interpreter->stack, o);
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freeLiteral(o);
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return 1;
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}
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static int consume(Interpreter* interpreter, LiteralArray* arguments) {
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Literal o = popLiteralArray(arguments);
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Literal idn = o;
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if (parseIdentifierToValue(interpreter, &o)) {
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freeLiteral(o);
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}
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if (IS_OPAQUE(o) && ((ArbitraryData*)(AS_OPAQUE(o)))->value == 42) {
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ArbitraryData* data = (ArbitraryData*)AS_OPAQUE(o);
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FREE(ArbitraryData, data);
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//all went well
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freeLiteral(o);
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return 0;
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}
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printf(ERROR "opaque failed: %d\n" RESET, IS_OPAQUE(o));
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exit(-1);
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return -1;
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}
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int main() {
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{
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size_t size = 0;
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char* source = readFile("../scripts/test/opaque-data-type.toy", &size);
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unsigned char* tb = compileString(source, &size);
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free((void*)source);
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if (!tb) {
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return -1;
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}
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Interpreter interpreter;
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initInterpreter(&interpreter);
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injectNativeFn(&interpreter, "produce", produce);
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injectNativeFn(&interpreter, "consume", consume);
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//run teh script
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runInterpreter(&interpreter, tb, size);
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//clean up
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freeInterpreter(&interpreter);
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}
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printf(NOTICE "All good\n" RESET);
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return 0;
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}
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