Add evaluator with environment and file-based execution

Implements recursive AST evaluator with variable environment,
reads .j files from command line args, and executes programs
end-to-end (lexer -> parser -> eval).
This commit is contained in:
Jose Luis Montañes Ojados
2026-02-16 02:08:54 +01:00
parent e2896fac5b
commit 01740d4892
4 changed files with 116 additions and 24 deletions

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@@ -1 +1 @@
x = 1 x = 1

4
projects/sum.j Normal file
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@@ -0,0 +1,4 @@
x = 10
y = 5
z = x + y
print z

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@@ -1,38 +1,40 @@
#include "frontend/parser.h" #include "vm/eval.h"
#include "objects/object.h"
int main() { int main(int argc, char **argv) {
if (argc != 2) {
printf("usage: %s <path to .j file>\n", argv[0]);
exit(1);
}
// Creamos un allocator // Creamos un allocator
JLANG_memory_allocator *allocPtr = JLANG_CreateAllocator(); JLANG_memory_allocator *allocPtr = JLANG_CreateAllocator();
size_t stringVar1 = obj_new_string(allocPtr, "Hello world!"); // Read file from argv
size_t floatVar1 = obj_new_float(allocPtr, 3.14); FILE *fptr = fopen(argv[1], "r");
size_t listVar1 = obj_new_list(allocPtr, 3); if (fptr == NULL) {
Object *list = (Object *)JLANG_RESOLVE(allocPtr, listVar1); printf("error leyendo: %s\n", argv[1]);
exit(1);
}
size_t *items = (size_t *)JLANG_RESOLVE(allocPtr, list->data.list_val.items); fseek(fptr, 0, SEEK_END); // ir al final
items[0] = floatVar1; long length = ftell(fptr); // cuántos bytes tiene
items[1] = stringVar1; fseek(fptr, 0, SEEK_SET); // volver al inicio
items[2] = listVar1; char *buff = malloc(length + 1);
size_t bytesRead = fread(buff, 1, length, fptr);
buff[bytesRead] = '\0';
obj_print(allocPtr, listVar1, ""); fclose(fptr);
obj_free(allocPtr, stringVar1); printf("%s\n", buff);
stringVar1 = obj_new_string(allocPtr, "Hola Mundo!");
items[1] = stringVar1;
items[2] = stringVar1;
obj_print(allocPtr, listVar1, "");
JLANG_visualize(allocPtr);
// Lexer test // Lexer test
int totalTokens = 0; int totalTokens = 0;
Token *tokens = tokenize("x = 10\ny = 5\nz = x + y\nprint z", &totalTokens); Token *tokens = tokenize(buff, &totalTokens);
printf("totalTokens=%d\n", totalTokens); printf("totalTokens=%d\n", totalTokens);
ASTNode* block = parse(tokens, totalTokens); ASTNode *block = parse(tokens, totalTokens);
ast_debug(block); ast_debug(block);
Environment env = {0};
eval(block, &env, allocPtr);
return 0; return 0;
} }

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src/vm/eval.h Normal file
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#include "../objects/object.h"
#include "../frontend/parser.h"
typedef struct
{
char *name;
size_t value; // offset al Object en el allocator
} Variable;
typedef struct
{
Variable vars[256];
int count;
} Environment;
size_t env_get(Environment *env, const char *name)
{
for (int i = 0; i < env->count; i++)
{
if (strcmp(env->vars[i].name, name) == 0)
{
return env->vars[i].value;
}
}
printf("ERROR: variable '%s' no definida\n", name);
exit(1);
}
void env_set(Environment *env, const char *name, size_t value)
{
for (int i = 0; i < env->count; i++)
{
if (strcmp(env->vars[i].name, name) == 0)
{
env->vars[i].value = value;
return;
}
}
// No existe, añadir
env->vars[env->count].name = (char *)name;
env->vars[env->count].value = value;
env->count++;
}
size_t eval(ASTNode *node, Environment *env, void *allocator) {
switch (node->type) {
case NODE_INT_LIT:
return obj_new_int(allocator, node->data.int_val);
case NODE_VAR:
return env_get(env, node->data.string_val);
case NODE_ASSIGN: {
size_t val = eval(node->data.assign.value, env, allocator);
env_set(env, node->data.assign.name, val);
return val;
}
case NODE_BINOP: {
size_t left = eval(node->data.binop.left, env, allocator);
size_t right = eval(node->data.binop.right, env, allocator);
// Resolver objects
Object* l = (Object *) JLANG_RESOLVE(allocator, left);
Object* r = (Object *) JLANG_RESOLVE(allocator, right);
// Operar (ints por ahora)
if (node->data.binop.op == '+'){
return obj_new_int(allocator, l->data.int_val + r->data.int_val);
} else if (node->data.binop.op == '-') {
return obj_new_int(allocator, l->data.int_val - r->data.int_val);
}
}
case NODE_PRINT: {
size_t val = eval(node->data.print.expr, env, allocator);
obj_print(allocator, val, "");
printf("\n");
return val;
}
case NODE_BLOCK:
for (int i=0; i< node->data.block.count; i++)
eval(node->data.block.stmts[i], env, allocator);
return 0;
default:
break;
}
}