412 lines
12 KiB
C
412 lines
12 KiB
C
#include "alang.h"
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#include <stdbool.h>
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#include <stddef.h>
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typedef union value {
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float f;
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int i;
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bool b;
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} value;
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typedef struct variable_storage {
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value val;
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type_id type;
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} variable_storage;
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typedef struct interpreter_state {
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variable_storage vars[1024];
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size_t pos;
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} interpreter_state;
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static value get_variable_value(interpreter_state *state, variable var) {
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return state->vars[var.index].val;
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}
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static void set_variable_value(interpreter_state *state, variable var, value v) {
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state->vars[var.index].val = v;
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state->vars[var.index].type = var.type.type;
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}
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static void eval() {
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interpreter_state state = {0};
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function *main_func = NULL;
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for (function_id i = 0; get_function(i) != NULL; ++i) {
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function *f = get_function(i);
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if (strcmp(get_name(f->name), "main") == 0) {
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main_func = f;
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break;
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}
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}
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for (size_t i = 0; i < allocated_globals_size; ++i) {
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global *g = allocated_globals[i].g;
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uint64_t var_index = allocated_globals[i].variable_id;
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if (g->value.kind == GLOBAL_VALUE_FLOAT) {
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state.vars[var_index].val.f = g->value.value.floats[0];
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state.vars[var_index].type = g->type;
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}
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else if (g->value.kind == GLOBAL_VALUE_INT) {
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state.vars[var_index].val.i = g->value.value.ints[0];
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state.vars[var_index].type = g->type;
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}
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else if (g->value.kind == GLOBAL_VALUE_BOOL) {
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state.vars[var_index].val.b = g->value.value.b;
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state.vars[var_index].type = g->type;
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}
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}
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state.pos = 0;
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opcodes *code = &main_func->code;
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while (state.pos < code->size) {
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opcode *op = (opcode *)&code->o[state.pos];
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state.pos += op->size;
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switch (op->type) {
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case OPCODE_VAR: {
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break;
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}
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case OPCODE_LOAD_FLOAT_CONSTANT: {
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value v;
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v.f = op->op_load_float_constant.number;
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set_variable_value(&state, op->op_load_float_constant.to, v);
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break;
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}
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case OPCODE_LOAD_INT_CONSTANT: {
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value v;
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v.i = op->op_load_int_constant.number;
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set_variable_value(&state, op->op_load_int_constant.to, v);
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break;
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}
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case OPCODE_LOAD_BOOL_CONSTANT: {
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value v;
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v.b = op->op_load_bool_constant.boolean;
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set_variable_value(&state, op->op_load_bool_constant.to, v);
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break;
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}
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case OPCODE_STORE_VARIABLE: {
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value v = get_variable_value(&state, op->op_store_var.from);
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set_variable_value(&state, op->op_store_var.to, v);
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break;
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}
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case OPCODE_ADD: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id result_type = op->op_binary.result.type.type;
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if (result_type == float_id) {
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float l = (op->op_binary.left.type.type == float_id) ? left.f : (float)left.i;
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float r = (op->op_binary.right.type.type == float_id) ? right.f : (float)right.i;
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result.f = l + r;
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}
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else {
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result.i = left.i + right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_SUB: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id result_type = op->op_binary.result.type.type;
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if (result_type == float_id) {
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float l = (op->op_binary.left.type.type == float_id) ? left.f : (float)left.i;
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float r = (op->op_binary.right.type.type == float_id) ? right.f : (float)right.i;
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result.f = l - r;
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}
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else {
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result.i = left.i - right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_MULTIPLY: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id result_type = op->op_binary.result.type.type;
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if (result_type == float_id) {
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float l = (op->op_binary.left.type.type == float_id) ? left.f : (float)left.i;
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float r = (op->op_binary.right.type.type == float_id) ? right.f : (float)right.i;
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result.f = l * r;
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}
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else {
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result.i = left.i * right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_DIVIDE: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id result_type = op->op_binary.result.type.type;
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if (result_type == float_id) {
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float l = (op->op_binary.left.type.type == float_id) ? left.f : (float)left.i;
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float r = (op->op_binary.right.type.type == float_id) ? right.f : (float)right.i;
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result.f = l / r;
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}
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else {
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result.i = left.i / right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_MOD: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.i = left.i % right.i;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_EQUALS: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id left_type = op->op_binary.left.type.type;
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type_id right_type = op->op_binary.right.type.type;
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if (left_type == float_id || right_type == float_id) {
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float l = (left_type == float_id) ? left.f : (float)left.i;
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float r = (right_type == float_id) ? right.f : (float)right.i;
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result.b = l == r;
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}
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else if (left_type == bool_id && right_type == bool_id) {
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result.b = left.b == right.b;
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}
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else {
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result.b = left.i == right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_NOT_EQUALS: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id left_type = op->op_binary.left.type.type;
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type_id right_type = op->op_binary.right.type.type;
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if (left_type == float_id || right_type == float_id) {
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float l = (left_type == float_id) ? left.f : (float)left.i;
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float r = (right_type == float_id) ? right.f : (float)right.i;
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result.b = l != r;
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}
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else if (left_type == bool_id && right_type == bool_id) {
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result.b = left.b != right.b;
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}
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else {
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result.b = left.i != right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_GREATER: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id left_type = op->op_binary.left.type.type;
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type_id right_type = op->op_binary.right.type.type;
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if (left_type == float_id || right_type == float_id) {
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float l = (left_type == float_id) ? left.f : (float)left.i;
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float r = (right_type == float_id) ? right.f : (float)right.i;
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result.b = l > r;
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}
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else {
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result.b = left.i > right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_GREATER_EQUAL: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id left_type = op->op_binary.left.type.type;
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type_id right_type = op->op_binary.right.type.type;
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if (left_type == float_id || right_type == float_id) {
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float l = (left_type == float_id) ? left.f : (float)left.i;
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float r = (right_type == float_id) ? right.f : (float)right.i;
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result.b = l >= r;
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}
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else {
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result.b = left.i >= right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_LESS: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id left_type = op->op_binary.left.type.type;
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type_id right_type = op->op_binary.right.type.type;
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if (left_type == float_id || right_type == float_id) {
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float l = (left_type == float_id) ? left.f : (float)left.i;
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float r = (right_type == float_id) ? right.f : (float)right.i;
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result.b = l < r;
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}
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else {
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result.b = left.i < right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_LESS_EQUAL: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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type_id left_type = op->op_binary.left.type.type;
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type_id right_type = op->op_binary.right.type.type;
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if (left_type == float_id || right_type == float_id) {
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float l = (left_type == float_id) ? left.f : (float)left.i;
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float r = (right_type == float_id) ? right.f : (float)right.i;
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result.b = l <= r;
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}
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else {
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result.b = left.i <= right.i;
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}
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_AND: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.b = left.b && right.b;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_OR: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.b = left.b || right.b;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_BITWISE_XOR: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.i = left.i ^ right.i;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_BITWISE_AND: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.i = left.i & right.i;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_BITWISE_OR: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.i = left.i | right.i;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_LEFT_SHIFT: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.i = left.i << right.i;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_RIGHT_SHIFT: {
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value left = get_variable_value(&state, op->op_binary.left);
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value right = get_variable_value(&state, op->op_binary.right);
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value result;
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result.i = left.i >> right.i;
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set_variable_value(&state, op->op_binary.result, result);
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break;
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}
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case OPCODE_NOT: {
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value from = get_variable_value(&state, op->op_not.from);
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value result;
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result.b = !from.b;
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set_variable_value(&state, op->op_not.to, result);
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break;
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}
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case OPCODE_NEGATE: {
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value from = get_variable_value(&state, op->op_negate.from);
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value result;
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if (op->op_negate.from.type.type == float_id) {
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result.f = -from.f;
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}
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else {
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result.i = -from.i;
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}
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set_variable_value(&state, op->op_negate.to, result);
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break;
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}
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case OPCODE_IF: {
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value condition = get_variable_value(&state, op->op_if.condition);
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if (!condition.b) {
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state.pos = op->op_if.end_id;
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}
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break;
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}
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case OPCODE_WHILE_START: {
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break;
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}
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case OPCODE_WHILE_CONDITION: {
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value condition = get_variable_value(&state, op->op_while.condition);
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if (!condition.b) {
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state.pos = op->op_while.end_id;
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}
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break;
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}
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case OPCODE_WHILE_END: {
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state.pos = op->op_while_end.start_id;
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break;
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}
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case OPCODE_BLOCK_START:
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case OPCODE_BLOCK_END: {
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break;
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}
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case OPCODE_RETURN: {
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if (op->op_return.var.index != 0) {
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value return_val = get_variable_value(&state, op->op_return.var);
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}
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return;
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}
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case OPCODE_CALL: {
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if (strcmp(get_name(op->op_call.func), "print") == 0) {
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value param = get_variable_value(&state, op->op_call.parameters[0]);
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value result;
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printf("%f\n", param.f);
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set_variable_value(&state, op->op_call.var, result);
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}
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break;
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}
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default: {
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break;
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}
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}
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}
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}
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void alang_eval(char *data) {
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names_init();
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types_init();
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functions_init();
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globals_init();
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char *filename = "main.kong";
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tokens tokens = tokenize(filename, data);
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parse(filename, &tokens);
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resolve_types();
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// allocate_globals();
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for (function_id i = 0; get_function(i) != NULL; ++i) {
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compile_function_block(&get_function(i)->code, get_function(i)->block);
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}
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eval();
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}
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