Files
Chloride/src/runtime/call/call.c
2025-09-12 01:21:08 +01:00

202 lines
6.9 KiB
C

/*
* SPDX-FileCopyrightText: 2025 William Bell
*
* SPDX-License-Identifier: GPL-3.0-or-later
*/
#include "call.h"
#include "../../hash_data/hash_data.h"
#include "../objects/string/string.h"
#include <inttypes.h>
#include <math.h>
#include <stdbool.h>
#include <stddef.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#if defined(_WIN32)
#ifndef _WIN32_WINNT
#define _WIN32_WINNT 0x0602
#endif
#include <psapi.h>
#include <windows.h>
double get_memory_usage_mb() {
PROCESS_MEMORY_COUNTERS pmc;
if (GetProcessMemoryInfo(GetCurrentProcess(), &pmc, sizeof(pmc))) {
return pmc.WorkingSetSize / (1024.0 * 1024.0); // in MB
}
return 0.0;
}
#elif defined(__APPLE__)
#include <mach/mach.h>
double get_memory_usage_mb() {
struct task_basic_info info;
mach_msg_type_number_t size = TASK_BASIC_INFO_COUNT;
if (task_info(mach_task_self(), TASK_BASIC_INFO, (task_info_t)&info, &size) ==
KERN_SUCCESS) {
return info.resident_size / (1024.0 * 1024.0); // in MB
}
return 0.0;
}
#elif defined(__linux__)
#include <stdlib.h>
#include <string.h>
double get_memory_usage_mb() {
FILE *fp = fopen("/proc/self/status", "r");
if (!fp)
return 0.0;
char line[256];
size_t memory_kb = 0;
while (fgets(line, sizeof(line), fp)) {
if (strncmp(line, "VmRSS:", 6) == 0) {
sscanf(line + 6, "%zu", &memory_kb);
break;
}
}
fclose(fp);
return memory_kb / 1024.0; // Convert KB to MB
}
#else
double get_memory_usage_mb() {
// Unsupported platform
return 0.0;
}
#endif
ArgonObject *argon_call(ArgonObject *original_object, size_t argc,
ArgonObject **argv, ArErr *err, RuntimeState *state) {
run_call(original_object, argc, argv, state, true, err);
return state->registers[0];
}
void run_call(ArgonObject *original_object, size_t argc, ArgonObject **argv,
RuntimeState *state, bool CStackFrame, ArErr *err) {
ArgonObject *object = original_object;
if (object->type != TYPE_FUNCTION && object->type != TYPE_NATIVE_FUNCTION &&
object->type != TYPE_METHOD) {
ArgonObject *call_method = get_builtin_field_for_class(
get_builtin_field(object, __class__), __call__, original_object);
if (call_method) {
object = call_method;
}
}
if (object->type == TYPE_METHOD) {
ArgonObject *binding_object = get_builtin_field(object, __binding__);
if (binding_object) {
ArgonObject **new_call_args =
ar_alloc(sizeof(ArgonObject *) * (argc + 1));
new_call_args[0] = binding_object;
if (argc > 0) {
memcpy(new_call_args + 1, argv, argc * sizeof(ArgonObject *));
}
argv = new_call_args;
argc++;
}
ArgonObject *function_object = get_builtin_field(object, __function__);
if (function_object)
object = function_object;
}
if (object->type == TYPE_FUNCTION) {
if (argc != object->value.argon_fn->number_of_parameters) {
ArgonObject *type_object_name = get_builtin_field_for_class(
get_builtin_field(object, __class__), __name__, original_object);
ArgonObject *object_name =
get_builtin_field_for_class(object, __name__, original_object);
*err = create_err(
state->source_location.line, state->source_location.column,
state->source_location.length, state->path, "Type Error",
"%.*s %.*s takes %" PRIu64 " argument(s) but %" PRIu64 " was given",
(int)type_object_name->value.as_str->length,
type_object_name->value.as_str->data,
(int)object_name->value.as_str->length,
object_name->value.as_str->data,
object->value.argon_fn->number_of_parameters, argc);
}
Stack *scope = create_scope(object->value.argon_fn->stack, true);
for (size_t i = 0; i < argc; i++) {
struct string_struct key = object->value.argon_fn->parameters[i];
ArgonObject *value = argv[i];
uint64_t hash = siphash64_bytes(key.data, key.length, siphash_key);
hashmap_insert_GC(scope->scope, hash,
new_string_object(key.data, key.length, 0, hash), value,
0);
}
StackFrame new_stackFrame = {
{object->value.argon_fn->translated.registerCount,
object->value.argon_fn->translated.registerAssignment,
NULL,
{object->value.argon_fn->bytecode, sizeof(uint8_t),
object->value.argon_fn->bytecode_length,
object->value.argon_fn->bytecode_length, false},
object->value.argon_fn->translated.constants,
object->value.argon_fn->translated.path},
{ar_alloc(object->value.argon_fn->translated.registerCount *
sizeof(ArgonObject *)),
0,
object->value.argon_fn->translated.path,
NULL,
state->currentStackFramePointer,
{},
{}},
scope,
*state->currentStackFramePointer,
(*state->currentStackFramePointer)->depth + 1};
for (size_t i = 0; i < new_stackFrame.translated.registerCount; i++) {
new_stackFrame.state.registers[i] = NULL;
}
if (CStackFrame) {
runtime(new_stackFrame.translated, new_stackFrame.state,
new_stackFrame.stack, err);
state->registers[0] = new_stackFrame.state.registers[0];
} else {
StackFrame *currentStackFrame = ar_alloc(sizeof(StackFrame));
*currentStackFrame = new_stackFrame;
*state->currentStackFramePointer = currentStackFrame;
if ((*state->currentStackFramePointer)->depth >= 10000) {
double logval =
log10((double)(*state->currentStackFramePointer)->depth);
if (floor(logval) == logval) {
double memoryUsage = get_memory_usage_mb();
fprintf(stderr,
"Warning: %s:%" PRIu64 ":%" PRIu64
" the call stack depth has exceeded %" PRIu64,
state->path, state->source_location.line,
state->source_location.column,
(*state->currentStackFramePointer)->depth);
if (memoryUsage) {
fprintf(stderr, ", memory usage at %f MB\n", memoryUsage);
} else {
fprintf(stderr, "\n");
}
}
};
return;
}
} else if (object->type == TYPE_NATIVE_FUNCTION) {
state->registers[0] = object->value.native_fn(argc, argv, err, state);
if (err->exists && strlen(err->path) == 0) {
err->line = state->source_location.line;
err->column = state->source_location.column;
err->length = state->source_location.length;
strcpy(err->path, state->path);
}
return;
}
ArgonObject *type_object_name = get_builtin_field_for_class(
get_builtin_field(original_object, __class__), __name__, original_object);
*err = create_err(state->source_location.line, state->source_location.column,
state->source_location.length, state->path, "Type Error",
"'%.*s' object is not callable",
(int)type_object_name->value.as_str->length,
type_object_name->value.as_str->data);
}