Files
util.nix/package/c/libhectic/libhectic.h
2025-03-21 01:53:02 +00:00

174 lines
4.5 KiB
C

#ifndef EPRINTF_H
#define EPRINTF_H
#include <stdio.h>
#include <unistd.h>
#include <stdlib.h>
#include <stdarg.h>
#include <time.h>
#include <string.h>
// -------------
// -- Helpers --
// -------------
// Helper macros for argument counting
// NOTE(yukkop): this ugly macroses for avoid all posible warnings
#define PP_CAT(a, b) PP_CAT_I(a, b)
#define PP_CAT_I(a, b) a##b
#define PP_NARG(...) PP_NARG_(__VA_ARGS__, PP_RSEQ_N())
#define PP_NARG_(...) PP_ARG_N(__VA_ARGS__)
#define PP_ARG_N(_1,_2,_3,_4,_5,_6,_7,_8,_9,N,...) N
#define PP_RSEQ_N() 9,8,7,6,5,4,3,2,1,0
// ------------
// -- Colors --
// ------------
// Color mode enumeration
typedef enum {
COLOR_MODE_AUTO,
COLOR_MODE_FORCE,
COLOR_MODE_DISABLE
} ColorMode;
// Static color mode variable
static ColorMode color_mode = COLOR_MODE_AUTO;
// Function to set color mode
void set_output_color_mode(ColorMode mode);
// Macros for detecting terminal and color usage
#define IS_TERMINAL() (isatty(fileno(stderr)))
#define USE_COLOR() ((color_mode == COLOR_MODE_FORCE) || (color_mode == COLOR_MODE_AUTO && IS_TERMINAL()))
#define COLOR_RED (USE_COLOR() ? "\033[1;31m" : "")
#define COLOR_RESET (USE_COLOR() ? "\033[0m" : "")
// ------------
// -- Errors --
// ------------
// Define color macros based on output type
//#define ERROR_PREFIX PP_CAT_I(COLOR_RED, "Error: ")
//#define ERROR_SUFFIX PP_CAT_I(COLOR_RESET, "\n")
#define ERROR_PREFIX (USE_COLOR() ? "\033[1;31mError: " : "Error: ")
#define ERROR_SUFFIX (USE_COLOR() ? "\033[0m\n" : "\n")
// eprintf handling 1 or more arguments
#define eprintf_1(fmt) \
fprintf(stderr, "%s" fmt "%s", ERROR_PREFIX, ERROR_SUFFIX)
#define eprintf_2(fmt, ...) \
fprintf(stderr, "%s" fmt "%s", ERROR_PREFIX, __VA_ARGS__, ERROR_SUFFIX)
#define eprintf(...) \
PP_CAT(eprintf_, PP_NARG(__VA_ARGS__))(__VA_ARGS__)
#define todo fprintf(stderr, "%sNot implimented yet%s", COLOR_RED, COLOR_RESET);exit(1)
// ------------
// -- Logger --
// ------------
typedef enum {
LOG_LEVEL_DEBUG,
LOG_LEVEL_LOG,
LOG_LEVEL_INFO,
LOG_LEVEL_NOTICE,
LOG_LEVEL_WARN,
LOG_LEVEL_EXCEPTION
} LogLevel;
void logger_level_reset();
void logger_level(LogLevel level);
LogLevel log_level_from_string(const char *level_str);
char* log_message(LogLevel level, int line, const char *format, ...);
// DEBUG level
#define raise_debug_1(fmt) \
log_message(LOG_LEVEL_DEBUG, __LINE__, fmt)
#define raise_debug_2(fmt, ...) \
log_message(LOG_LEVEL_DEBUG, __LINE__, fmt, __VA_ARGS__)
#define raise_debug(...) \
PP_CAT(raise_debug_, PP_NARG(__VA_ARGS__))(__VA_ARGS__)
// LOG level
#define raise_log_1(fmt) \
log_message(LOG_LEVEL_LOG, __LINE__, fmt)
#define raise_log_2(fmt, ...) \
log_message(LOG_LEVEL_LOG, __LINE__, fmt, __VA_ARGS__)
#define raise_log(...) \
PP_CAT(raise_log_, PP_NARG(__VA_ARGS__))(__VA_ARGS__)
// INFO level
#define raise_info_1(fmt) \
log_message(LOG_LEVEL_INFO, __LINE__, fmt)
#define raise_info_2(fmt, ...) \
log_message(LOG_LEVEL_INFO, __LINE__, fmt, __VA_ARGS__)
#define raise_info(...) \
PP_CAT(raise_info_, PP_NARG(__VA_ARGS__))(__VA_ARGS__)
// NOTICE level
#define raise_notice_1(fmt) \
log_message(LOG_LEVEL_NOTICE, __LINE__, fmt)
#define raise_notice_2(fmt, ...) \
log_message(LOG_LEVEL_NOTICE, __LINE__, fmt, __VA_ARGS__)
#define raise_notice(...) \
PP_CAT(raise_notice_, PP_NARG(__VA_ARGS__))(__VA_ARGS__)
// WARN level
#define raise_warn_1(fmt) \
log_message(LOG_LEVEL_WARN, __LINE__, fmt)
#define raise_warn_2(fmt, ...) \
log_message(LOG_LEVEL_WARN, __LINE__, fmt, __VA_ARGS__)
#define raise_warn(...) \
PP_CAT(raise_warn_, PP_NARG(__VA_ARGS__))(__VA_ARGS__)
// EXCEPTION level
#define raise_exception_1(fmt) \
log_message(LOG_LEVEL_EXCEPTION, __LINE__, fmt)
#define raise_exception_2(fmt, ...) \
log_message(LOG_LEVEL_EXCEPTION, __LINE__, fmt, __VA_ARGS__)
#define raise_exception(...) \
PP_CAT(raise_exception_, PP_NARG(__VA_ARGS__))(__VA_ARGS__)
#endif // EPRINTF_H
// -----------
// -- arena --
// -----------
#define ARENA_DEFAULT_SIZE 1024
typedef struct {
void *begin;
void *current;
size_t capacity;
} Arena;
Arena arena_init(size_t size);
void *arena_alloc_or_null(Arena *arena, size_t size);
void arena_reset(Arena *arena);
void arena_free(Arena *arena);
void *arena_alloc(Arena *arena, size_t size);
// TODO: mmap
// TODO: dynamic array style
// void *arena_realloc(Arena *arena, size_t size) {
// void *mem = arena_alloc_or_null(arena, size);
// if (!mem) {
// raise_exception("Arena out of memory");
// exit(1);
// }
// return mem;
// }