docs: hectic C: macro for reduse boilerplane with code position

This commit is contained in:
2025-04-07 22:55:37 +00:00
parent cda65a56eb
commit 7c82a5a866

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@@ -61,6 +61,7 @@ void set_output_color_mode(ColorMode mode) {
color_mode = mode; color_mode = mode;
} }
#define POSITION_INFO_DECLARATION const char *file, const char *func, int line
#define POSITION_INFO file, func, line #define POSITION_INFO file, func, line
// ------------ // ------------
@@ -193,9 +194,9 @@ char* raise_message(
// -- arena -- // -- arena --
// ----------- // -----------
Arena arena_init__(const char *file, const char *func, int line, size_t size) { Arena arena_init__(POSITION_INFO_DECLARATION, size_t size) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"INIT: Creating arena (size: %zu bytes)", size); "INIT: Creating arena (size: %zu bytes)", size);
Arena arena; Arena arena;
@@ -203,7 +204,7 @@ Arena arena_init__(const char *file, const char *func, int line, size_t size) {
// Check for allocation failure // Check for allocation failure
if (!arena.begin) { if (!arena.begin) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"INIT: Failed to allocate memory for arena (requested: %zu bytes)", size); "INIT: Failed to allocate memory for arena (requested: %zu bytes)", size);
exit(1); exit(1);
} }
@@ -213,31 +214,31 @@ Arena arena_init__(const char *file, const char *func, int line, size_t size) {
arena.capacity = size; arena.capacity = size;
// Success logging at LOG level // Success logging at LOG level
raise_message(LOG_LEVEL_LOG, file, func, line, raise_message(LOG_LEVEL_LOG, POSITION_INFO,
"INIT: Arena initialized successfully (address: %p, capacity: %zu bytes)", arena.begin, size); "INIT: Arena initialized successfully (address: %p, capacity: %zu bytes)", arena.begin, size);
return arena; return arena;
} }
void* arena_alloc_or_null__(const char *file, const char *func, int line, Arena *arena, size_t size) { void* arena_alloc_or_null__(POSITION_INFO_DECLARATION, Arena *arena, size_t size) {
// Function entry at TRACE level // Function entry at TRACE level
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"ALLOC: Requesting memory from arena (arena: %p, size: %zu bytes)", arena, size); "ALLOC: Requesting memory from arena (arena: %p, size: %zu bytes)", arena, size);
void *mem = NULL; void *mem = NULL;
if (arena->begin == 0) { if (arena->begin == 0) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: Arena not initialized, creating new arena"); "ALLOC: Arena not initialized, creating new arena");
*arena = arena_init__(file, func, line, 1024); // ARENA_DEFAULT_SIZE assumed as 1024 *arena = arena_init__(POSITION_INFO, 1024); // ARENA_DEFAULT_SIZE assumed as 1024
} }
size_t current = (size_t)arena->current - (size_t)arena->begin; size_t current = (size_t)arena->current - (size_t)arena->begin;
if (arena->capacity <= current || arena->capacity - current < size) { if (arena->capacity <= current || arena->capacity - current < size) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"ALLOC: Insufficient memory in arena (address: %p, capacity: %zu bytes, used: %zu bytes, requested: %zu bytes)", "ALLOC: Insufficient memory in arena (address: %p, capacity: %zu bytes, used: %zu bytes, requested: %zu bytes)",
arena->begin, arena->capacity, current, size); arena->begin, arena->capacity, current, size);
return NULL; return NULL;
} else { } else {
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: Allocating from arena (address: %p, capacity: %zu bytes, used: %zu bytes, requested: %zu bytes)", "ALLOC: Allocating from arena (address: %p, capacity: %zu bytes, used: %zu bytes, requested: %zu bytes)",
arena->begin, arena->capacity, current, size); arena->begin, arena->capacity, current, size);
mem = arena->current; mem = arena->current;
@@ -245,39 +246,39 @@ void* arena_alloc_or_null__(const char *file, const char *func, int line, Arena
} }
// Success logging // Success logging
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: Memory allocated successfully (address: %p, size: %zu bytes)", mem, size); "ALLOC: Memory allocated successfully (address: %p, size: %zu bytes)", mem, size);
return mem; return mem;
} }
void* arena_alloc__(const char *file, const char *func, int line, Arena *arena, size_t size) { void* arena_alloc__(POSITION_INFO_DECLARATION, Arena *arena, size_t size) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: Allocating memory (arena: %p, size: %zu bytes)", arena, size); "ALLOC: Allocating memory (arena: %p, size: %zu bytes)", arena, size);
void *mem = arena_alloc_or_null__(file, func, line, arena, size); void *mem = arena_alloc_or_null__(POSITION_INFO, arena, size);
if (!mem) { if (!mem) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: Allocation failed (arena: %p, requested: %zu bytes)", arena, size); "ALLOC: Allocation failed (arena: %p, requested: %zu bytes)", arena, size);
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"ALLOC: Arena out of memory (requested: %zu bytes)", size); "ALLOC: Arena out of memory (requested: %zu bytes)", size);
exit(1); exit(1);
} }
// Success logging // Success logging
raise_message(LOG_LEVEL_LOG, file, func, line, raise_message(LOG_LEVEL_LOG, POSITION_INFO,
"ALLOC: Memory allocated successfully (address: %p, size: %zu bytes)", mem, size); "ALLOC: Memory allocated successfully (address: %p, size: %zu bytes)", mem, size);
return mem; return mem;
} }
void arena_reset__(const char *file, const char *func, int line, Arena *arena) { void arena_reset__(POSITION_INFO_DECLARATION, Arena *arena) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: Resetting arena (address: %p)", arena); "ALLOC: Resetting arena (address: %p)", arena);
// Check for NULL arena // Check for NULL arena
if (!arena) { if (!arena) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"ALLOC: Attempted to reset NULL arena"); "ALLOC: Attempted to reset NULL arena");
return; return;
} }
@@ -286,26 +287,26 @@ void arena_reset__(const char *file, const char *func, int line, Arena *arena) {
arena->current = arena->begin; arena->current = arena->begin;
// Operation success logging // Operation success logging
raise_message(LOG_LEVEL_LOG, file, func, line, raise_message(LOG_LEVEL_LOG, POSITION_INFO,
"ALLOC: Arena reset successfully (address: %p, capacity: %zu bytes)", "ALLOC: Arena reset successfully (address: %p, capacity: %zu bytes)",
arena->begin, arena->capacity); arena->begin, arena->capacity);
} }
void arena_free__(const char *file, const char *func, int line, Arena *arena) { void arena_free__(POSITION_INFO_DECLARATION, Arena *arena) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"FREE: Releasing arena memory (address: %p)", arena); "FREE: Releasing arena memory (address: %p)", arena);
// Check for NULL arena // Check for NULL arena
if (!arena) { if (!arena) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"FREE: Attempted to free NULL arena"); "FREE: Attempted to free NULL arena");
return; return;
} }
// Check for NULL begin pointer // Check for NULL begin pointer
if (!arena->begin) { if (!arena->begin) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"FREE: Attempted to free arena with NULL memory block"); "FREE: Attempted to free arena with NULL memory block");
return; return;
} }
@@ -317,7 +318,7 @@ void arena_free__(const char *file, const char *func, int line, Arena *arena) {
free(arena->begin); free(arena->begin);
// Success logging // Success logging
raise_message(LOG_LEVEL_LOG, file, func, line, raise_message(LOG_LEVEL_LOG, POSITION_INFO,
"FREE: Arena released successfully (address: %p, capacity: %zu bytes, used: %zu bytes)", "FREE: Arena released successfully (address: %p, capacity: %zu bytes, used: %zu bytes)",
arena->begin, arena->capacity, used); arena->begin, arena->capacity, used);
@@ -327,15 +328,15 @@ void arena_free__(const char *file, const char *func, int line, Arena *arena) {
arena->capacity = 0; arena->capacity = 0;
} }
char* arena_strdup__(const char *file, const char *func, int line, Arena *arena, const char *s) { char* arena_strdup__(POSITION_INFO_DECLARATION, Arena *arena, const char *s) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"ALLOC: Duplicating string (arena: %p, source: %p, preview: %.20s%s)", "ALLOC: Duplicating string (arena: %p, source: %p, preview: %.20s%s)",
arena, s, s ? s : "", s && strlen(s) > 20 ? "..." : ""); arena, s, s ? s : "", s && strlen(s) > 20 ? "..." : "");
// Check for NULL string // Check for NULL string
if (!s) { if (!s) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: Source string is NULL, returning NULL"); "ALLOC: Source string is NULL, returning NULL");
return NULL; return NULL;
} }
@@ -344,35 +345,35 @@ char* arena_strdup__(const char *file, const char *func, int line, Arena *arena,
size_t len = strlen(s) + 1; size_t len = strlen(s) + 1;
// Success case // Success case
char *result = (char*)arena_alloc__(file, func, line, arena, len); char *result = (char*)arena_alloc__(POSITION_INFO, arena, len);
// Copy the string // Copy the string
memcpy(result, s, len); memcpy(result, s, len);
// Success logging // Success logging
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ALLOC: String duplicated successfully (result: %p, length: %zu bytes)", "ALLOC: String duplicated successfully (result: %p, length: %zu bytes)",
result, len); result, len);
return result; return result;
} }
char* arena_repstr__(const char *file, const char *func, int line, Arena *arena, char* arena_repstr__(POSITION_INFO_DECLARATION, Arena *arena,
const char *src, size_t start, size_t len, const char *rep) { const char *src, size_t start, size_t len, const char *rep) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"STRING: Replacing substring (source: %p, start: %zu, length: %zu, replacement: %.20s%s)", "STRING: Replacing substring (source: %p, start: %zu, length: %zu, replacement: %.20s%s)",
src, start, len, rep, strlen(rep) > 20 ? "..." : ""); src, start, len, rep, strlen(rep) > 20 ? "..." : "");
// Check inputs // Check inputs
if (!src) { if (!src) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"STRING: Source string is NULL"); "STRING: Source string is NULL");
return NULL; return NULL;
} }
if (!rep) { if (!rep) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"STRING: Replacement string is NULL"); "STRING: Replacement string is NULL");
return NULL; return NULL;
} }
@@ -383,22 +384,22 @@ char* arena_repstr__(const char *file, const char *func, int line, Arena *arena,
// Validate start and length // Validate start and length
if (start > (size_t)src_len) { if (start > (size_t)src_len) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"STRING: Start position %zu exceeds source length %d", start, src_len); "STRING: Start position %zu exceeds source length %d", start, src_len);
// Return a copy of the source string // Return a copy of the source string
return arena_strdup__(file, func, line, arena, src); return arena_strdup__(POSITION_INFO, arena, src);
} }
if (start + len > (size_t)src_len) { if (start + len > (size_t)src_len) {
size_t old_len = len; size_t old_len = len;
len = src_len - start; len = src_len - start;
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"STRING: Adjusted length from %zu to %zu to fit source bounds", old_len, len); "STRING: Adjusted length from %zu to %zu to fit source bounds", old_len, len);
} }
// Calculate new length and allocate memory // Calculate new length and allocate memory
int new_len = src_len - (int)len + rep_len; int new_len = src_len - (int)len + rep_len;
char *new_str = (char*)arena_alloc__(file, func, line, arena, new_len + 1); char *new_str = (char*)arena_alloc__(POSITION_INFO, arena, new_len + 1);
// Perform the replacement operation // Perform the replacement operation
memcpy(new_str, src, start); memcpy(new_str, src, start);
@@ -406,21 +407,21 @@ char* arena_repstr__(const char *file, const char *func, int line, Arena *arena,
strcpy(new_str + start + rep_len, src + start + len); strcpy(new_str + start + rep_len, src + start + len);
// Success logging // Success logging
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"STRING: Replacement complete (result: %p, new length: %d)", new_str, new_len); "STRING: Replacement complete (result: %p, new length: %d)", new_str, new_len);
return new_str; return new_str;
} }
void* arena_realloc_copy__(const char *file, const char *func, int line, Arena *arena, void* arena_realloc_copy__(POSITION_INFO_DECLARATION, Arena *arena,
void *old_ptr, size_t old_size, size_t new_size) { void *old_ptr, size_t old_size, size_t new_size) {
void *new_ptr = NULL; void *new_ptr = NULL;
if (old_ptr == NULL) { if (old_ptr == NULL) {
new_ptr = arena_alloc__(file, func, line, arena, new_size); new_ptr = arena_alloc__(POSITION_INFO, arena, new_size);
} else if (new_size <= old_size) { } else if (new_size <= old_size) {
new_ptr = old_ptr; new_ptr = old_ptr;
} else { } else {
new_ptr = arena_alloc_or_null__(file, func, line, arena, new_size); new_ptr = arena_alloc_or_null__(POSITION_INFO, arena, new_size);
if (new_ptr) if (new_ptr)
memcpy(new_ptr, old_ptr, old_size); memcpy(new_ptr, old_ptr, old_size);
} }
@@ -431,14 +432,14 @@ void* arena_realloc_copy__(const char *file, const char *func, int line, Arena *
// -- misc -- // -- misc --
// ---------- // ----------
void substr_clone__(const char *file, const char *func, int line, const char * const src, char *dest, size_t from, size_t len) { void substr_clone__(POSITION_INFO_DECLARATION, const char * const src, char *dest, size_t from, size_t len) {
// Log function entry at TRACE level // Log function entry at TRACE level
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"Function called with src=%p, dest=%p, from=%zu, len=%zu", "Function called with src=%p, dest=%p, from=%zu, len=%zu",
src, dest, from, len); src, dest, from, len);
if (!src || !dest) { if (!src || !dest) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"Invalid NULL pointer: %s%s", "Invalid NULL pointer: %s%s",
(!src ? "src " : ""), (!src ? "src " : ""),
(!dest ? "dest" : "")); (!dest ? "dest" : ""));
@@ -449,7 +450,7 @@ void substr_clone__(const char *file, const char *func, int line, const char * c
size_t srclen = strlen(src); size_t srclen = strlen(src);
if (from >= srclen) { if (from >= srclen) {
// Log warning with context when 'from' is out of range // Log warning with context when 'from' is out of range
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"Out of range: 'from' index (%zu) exceeds source length (%zu)", "Out of range: 'from' index (%zu) exceeds source length (%zu)",
from, srclen); from, srclen);
dest[0] = '\0'; dest[0] = '\0';
@@ -460,7 +461,7 @@ void substr_clone__(const char *file, const char *func, int line, const char * c
if (from + len > srclen) { if (from + len > srclen) {
size_t old_len = len; size_t old_len = len;
len = srclen - from; len = srclen - from;
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"Adjusted length from %zu to %zu to fit source bounds", "Adjusted length from %zu to %zu to fit source bounds",
old_len, len); old_len, len);
} }
@@ -470,7 +471,7 @@ void substr_clone__(const char *file, const char *func, int line, const char * c
dest[len] = '\0'; dest[len] = '\0';
// Log success at TRACE level // Log success at TRACE level
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"Successfully copied %zu bytes: \"%.*s\"", "Successfully copied %zu bytes: \"%.*s\"",
len, (int)len, dest); len, (int)len, dest);
} }
@@ -499,14 +500,14 @@ static const char *skip_whitespace(const char *s) {
return s; return s;
} }
static Json *json_parse_value__(const char *file, const char *func, int line, const char **s, Arena *arena); static Json *json_parse_value__(POSITION_INFO_DECLARATION, const char **s, Arena *arena);
/* Parse a JSON string (does not handle full escaping) */ /* Parse a JSON string (does not handle full escaping) */
static char *json_parse_string__(const char *file, const char *func, int line, const char **s_ptr, Arena *arena) { static char *json_parse_string__(POSITION_INFO_DECLARATION, const char **s_ptr, Arena *arena) {
const char *s = *s_ptr; const char *s = *s_ptr;
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Entering json_parse_string__ at position: %p", s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Entering json_parse_string__ at position: %p", s);
if (*s != '"') { if (*s != '"') {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Expected '\"' at start of string, got: %c", *s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Expected '\"' at start of string, got: %c", *s);
return NULL; return NULL;
} }
s++; // skip opening quote s++; // skip opening quote
@@ -518,43 +519,43 @@ static char *json_parse_string__(const char *file, const char *func, int line, c
s++; s++;
} }
if (*s != '"') { if (*s != '"') {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Unterminated string starting at: %p", start); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Unterminated string starting at: %p", start);
return NULL; return NULL;
} }
size_t len = s - start; size_t len = s - start;
char *str = arena_alloc__(file, func, line, arena, len + 1); char *str = arena_alloc__(POSITION_INFO, arena, len + 1);
if (!str) { if (!str) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Memory allocation failed in json_parse_string__"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Memory allocation failed in json_parse_string__");
return NULL; return NULL;
} }
memcpy(str, start, len); memcpy(str, start, len);
str[len] = '\0'; str[len] = '\0';
*s_ptr = s + 1; // skip closing quote *s_ptr = s + 1; // skip closing quote
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Parsed string: \"%s\" (length: %zu)", str, len); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Parsed string: \"%s\" (length: %zu)", str, len);
return str; return str;
} }
/* Parse a number using strtod */ /* Parse a number using strtod */
static double json_parse_number__(const char *file, const char *func, int line, const char **s_ptr) { static double json_parse_number__(POSITION_INFO_DECLARATION, const char **s_ptr) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Parsing number at position: %p", *s_ptr); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Parsing number at position: %p", *s_ptr);
char *end; char *end;
double num = strtod(*s_ptr, &end); double num = strtod(*s_ptr, &end);
if (*s_ptr == end) if (*s_ptr == end)
raise_message(LOG_LEVEL_DEBUG, file, func, line, "No valid number found at: %p", *s_ptr); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "No valid number found at: %p", *s_ptr);
*s_ptr = end; *s_ptr = end;
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Parsed number: %g", num); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Parsed number: %g", num);
return num; return num;
} }
/* Parse a JSON array: [ value, value, ... ] */ /* Parse a JSON array: [ value, value, ... ] */
static Json *json_parse_array__(const char *file, const char *func, int line, const char **s, Arena *arena) { static Json *json_parse_array__(POSITION_INFO_DECLARATION, const char **s, Arena *arena) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Entering json_parse_array__ at position: %p", *s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Entering json_parse_array__ at position: %p", *s);
if (**s != '[') return NULL; if (**s != '[') return NULL;
(*s)++; // skip '[' (*s)++; // skip '['
*s = skip_whitespace(*s); *s = skip_whitespace(*s);
Json *array = arena_alloc__(file, func, line, arena, sizeof(Json)); Json *array = arena_alloc__(POSITION_INFO, arena, sizeof(Json));
if (!array) { if (!array) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Memory allocation failed in json_parse_array__"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Memory allocation failed in json_parse_array__");
return NULL; return NULL;
} }
memset(array, 0, sizeof(Json)); memset(array, 0, sizeof(Json));
@@ -562,13 +563,13 @@ static Json *json_parse_array__(const char *file, const char *func, int line, co
Json *last = NULL; Json *last = NULL;
if (**s == ']') { // empty array if (**s == ']') { // empty array
(*s)++; (*s)++;
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Parsed empty array"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Parsed empty array");
return array; return array;
} }
while (**s) { while (**s) {
Json *element = json_parse_value__(file, func, line, s, arena); Json *element = json_parse_value__(POSITION_INFO, s, arena);
if (!element) { if (!element) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Failed to parse array element"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Failed to parse array element");
return NULL; return NULL;
} }
if (!array->child) if (!array->child)
@@ -582,26 +583,26 @@ static Json *json_parse_array__(const char *file, const char *func, int line, co
*s = skip_whitespace(*s); *s = skip_whitespace(*s);
} else if (**s == ']') { } else if (**s == ']') {
(*s)++; (*s)++;
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Completed parsing array"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Completed parsing array");
break; break;
} else { } else {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Unexpected character '%c' in array", **s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Unexpected character '%c' in array", **s);
return NULL; return NULL;
} }
} }
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Completed parsing array"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Completed parsing array");
return array; return array;
} }
/* Parse a JSON object: { "key": value, ... } */ /* Parse a JSON object: { "key": value, ... } */
static Json *json_parse_object__(const char *file, const char *func, int line, const char **s, Arena *arena) { static Json *json_parse_object__(POSITION_INFO_DECLARATION, const char **s, Arena *arena) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Entering json_parse_object__ at position: %p", *s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Entering json_parse_object__ at position: %p", *s);
if (**s != '{') return NULL; if (**s != '{') return NULL;
(*s)++; // skip '{' (*s)++; // skip '{'
*s = skip_whitespace(*s); *s = skip_whitespace(*s);
Json *object = arena_alloc__(file, func, line, arena, sizeof(Json)); Json *object = arena_alloc__(POSITION_INFO, arena, sizeof(Json));
if (!object) { if (!object) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Memory allocation failed in json_parse_object__"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Memory allocation failed in json_parse_object__");
return NULL; return NULL;
} }
memset(object, 0, sizeof(Json)); memset(object, 0, sizeof(Json));
@@ -609,25 +610,25 @@ static Json *json_parse_object__(const char *file, const char *func, int line, c
Json *last = NULL; Json *last = NULL;
if (**s == '}') { if (**s == '}') {
(*s)++; (*s)++;
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Parsed empty object"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Parsed empty object");
return object; return object;
} }
while (**s) { while (**s) {
char *key = json_parse_string__(file, func, line, s, arena); char *key = json_parse_string__(POSITION_INFO, s, arena);
if (!key) { if (!key) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Failed to parse key in object"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Failed to parse key in object");
return NULL; return NULL;
} }
*s = skip_whitespace(*s); *s = skip_whitespace(*s);
if (**s != ':') { if (**s != ':') {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Expected ':' after key \"%s\", got: %c", key, **s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Expected ':' after key \"%s\", got: %c", key, **s);
return NULL; return NULL;
} }
(*s)++; // skip ':' (*s)++; // skip ':'
*s = skip_whitespace(*s); *s = skip_whitespace(*s);
Json *value = json_parse_value__(file, func, line, s, arena); Json *value = json_parse_value__(POSITION_INFO, s, arena);
if (!value) { if (!value) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Failed to parse value for key \"%s\"", key); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Failed to parse value for key \"%s\"", key);
return NULL; return NULL;
} }
value->key = key; // assign key to the value value->key = key; // assign key to the value
@@ -644,37 +645,37 @@ static Json *json_parse_object__(const char *file, const char *func, int line, c
(*s)++; (*s)++;
break; break;
} else { } else {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Unexpected character '%c' in object", **s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Unexpected character '%c' in object", **s);
return NULL; return NULL;
} }
} }
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Completed parsing object"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Completed parsing object");
return object; return object;
} }
/* Full JSON value parser */ /* Full JSON value parser */
static Json *json_parse_value__(const char *file, const char *func, int line, const char **s, Arena *arena) { static Json *json_parse_value__(POSITION_INFO_DECLARATION, const char **s, Arena *arena) {
*s = skip_whitespace(*s); *s = skip_whitespace(*s);
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Parsing JSON value at position: %p", *s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Parsing JSON value at position: %p", *s);
if (**s == '"') { if (**s == '"') {
Json *item = arena_alloc__(file, func, line, arena, sizeof(Json)); Json *item = arena_alloc__(POSITION_INFO, arena, sizeof(Json));
if (!item) { if (!item) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Memory allocation failed in json_parse_value for string"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Memory allocation failed in json_parse_value for string");
return NULL; return NULL;
} }
memset(item, 0, sizeof(Json)); memset(item, 0, sizeof(Json));
item->type = JSON_STRING; item->type = JSON_STRING;
item->JsonValue.string = json_parse_string__(file, func, line, s, arena); item->JsonValue.string = json_parse_string__(POSITION_INFO, s, arena);
return item; return item;
} else if (strncmp(*s, "null", 4) == 0) { } else if (strncmp(*s, "null", 4) == 0) {
Json *item = arena_alloc__(file, func, line, arena, sizeof(Json)); Json *item = arena_alloc__(POSITION_INFO, arena, sizeof(Json));
if (!item) return NULL; if (!item) return NULL;
memset(item, 0, sizeof(Json)); memset(item, 0, sizeof(Json));
item->type = JSON_NULL; item->type = JSON_NULL;
*s += 4; *s += 4;
return item; return item;
} else if (strncmp(*s, "true", 4) == 0) { } else if (strncmp(*s, "true", 4) == 0) {
Json *item = arena_alloc__(file, func, line, arena, sizeof(Json)); Json *item = arena_alloc__(POSITION_INFO, arena, sizeof(Json));
if (!item) return NULL; if (!item) return NULL;
memset(item, 0, sizeof(Json)); memset(item, 0, sizeof(Json));
item->type = JSON_BOOL; item->type = JSON_BOOL;
@@ -682,7 +683,7 @@ static Json *json_parse_value__(const char *file, const char *func, int line, co
*s += 4; *s += 4;
return item; return item;
} else if (strncmp(*s, "false", 5) == 0) { } else if (strncmp(*s, "false", 5) == 0) {
Json *item = arena_alloc__(file, func, line, arena, sizeof(Json)); Json *item = arena_alloc__(POSITION_INFO, arena, sizeof(Json));
if (!item) return NULL; if (!item) return NULL;
memset(item, 0, sizeof(Json)); memset(item, 0, sizeof(Json));
item->type = JSON_BOOL; item->type = JSON_BOOL;
@@ -690,92 +691,92 @@ static Json *json_parse_value__(const char *file, const char *func, int line, co
*s += 5; *s += 5;
return item; return item;
} else if ((**s == '-') || isdigit((unsigned char)**s)) { } else if ((**s == '-') || isdigit((unsigned char)**s)) {
Json *item = arena_alloc__(file, func, line, arena, sizeof(Json)); Json *item = arena_alloc__(POSITION_INFO, arena, sizeof(Json));
if (!item) { if (!item) {
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Memory allocation failed in json_parse_value for number"); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Memory allocation failed in json_parse_value for number");
return NULL; return NULL;
} }
memset(item, 0, sizeof(Json)); memset(item, 0, sizeof(Json));
item->type = JSON_NUMBER; item->type = JSON_NUMBER;
item->JsonValue.number = json_parse_number__(file, func, line, s); item->JsonValue.number = json_parse_number__(POSITION_INFO, s);
return item; return item;
} else if (**s == '[') { } else if (**s == '[') {
return json_parse_array__(file, func, line, s, arena); return json_parse_array__(POSITION_INFO, s, arena);
} else if (**s == '{') { } else if (**s == '{') {
return json_parse_object__(file, func, line, s, arena); return json_parse_object__(POSITION_INFO, s, arena);
} }
raise_message(LOG_LEVEL_DEBUG, file, func, line, "Unrecognized JSON value at position: %p", *s); raise_message(LOG_LEVEL_DEBUG, POSITION_INFO, "Unrecognized JSON value at position: %p", *s);
return NULL; return NULL;
} }
Json *json_parse__(const char* file, const char* func, int line, Arena *arena, const char **s) { Json *json_parse__(POSITION_INFO_DECLARATION, Arena *arena, const char **s) {
// Function entry logging with DEBUG level // Function entry logging with DEBUG level
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"PARSE: Starting JSON parsing (input: %p)", *s); "PARSE: Starting JSON parsing (input: %p)", *s);
// Check input parameters // Check input parameters
if (!s || !*s) { if (!s || !*s) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"PARSE: Invalid input parameters (NULL pointer provided for JSON parsing)"); "PARSE: Invalid input parameters (NULL pointer provided for JSON parsing)");
return NULL; return NULL;
} }
if (!arena) { if (!arena) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"PARSE: Invalid arena (NULL) provided for JSON parsing"); "PARSE: Invalid arena (NULL) provided for JSON parsing");
return NULL; return NULL;
} }
// Show input preview for debugging with TRACE level // Show input preview for debugging with TRACE level
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"PARSE: Input preview: '%.20s%s'", *s, strlen(*s) > 20 ? "..." : ""); "PARSE: Input preview: '%.20s%s'", *s, strlen(*s) > 20 ? "..." : "");
// Process JSON value // Process JSON value
Json *result = json_parse_value__(file, func, line, s, arena); Json *result = json_parse_value__(POSITION_INFO, s, arena);
// Log parsing result // Log parsing result
if (!result) { if (!result) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"PARSE: Failed to parse JSON at position %p (context: '%.10s')", "PARSE: Failed to parse JSON at position %p (context: '%.10s')",
*s, *s && strlen(*s) > 0 ? *s : "<empty>"); *s, *s && strlen(*s) > 0 ? *s : "<empty>");
} else { } else {
raise_message(LOG_LEVEL_LOG, file, func, line, raise_message(LOG_LEVEL_LOG, POSITION_INFO,
"PARSE: JSON parsing completed successfully (type: %s)", json_type_to_string(result->type)); "PARSE: JSON parsing completed successfully (type: %s)", json_type_to_string(result->type));
} }
return result; return result;
} }
char *json_to_string__(const char* file, const char* func, int line, Arena *arena, const Json * const item) { char *json_to_string__(POSITION_INFO_DECLARATION, Arena *arena, const Json * const item) {
return json_to_string_with_opts__(file, func, line, arena, item, JSON_NORAW); return json_to_string_with_opts__(POSITION_INFO, arena, item, JSON_NORAW);
} }
/* Minimal JSON printer with raw output option. /* Minimal JSON printer with raw output option.
When raw is non-zero and the item is a JSON_STRING, it is printed without quotes. When raw is non-zero and the item is a JSON_STRING, it is printed without quotes.
*/ */
char *json_to_string_with_opts__(const char* file, const char* func, int line, Arena *arena, const Json * const item, JsonRawOpt raw) { char *json_to_string_with_opts__(POSITION_INFO_DECLARATION, Arena *arena, const Json * const item, JsonRawOpt raw) {
// Function entry with DEBUG level // Function entry with DEBUG level
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"FORMAT: Starting JSON conversion to string (item: %p, raw_mode: %s)", "FORMAT: Starting JSON conversion to string (item: %p, raw_mode: %s)",
item, raw == JSON_RAW ? "enabled" : "disabled"); item, raw == JSON_RAW ? "enabled" : "disabled");
// Check input parameters // Check input parameters
if (!item) { if (!item) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"FORMAT: Invalid JSON object (NULL) provided for string conversion"); "FORMAT: Invalid JSON object (NULL) provided for string conversion");
return NULL; return NULL;
} }
if (!arena) { if (!arena) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"FORMAT: Invalid arena (NULL) provided for string conversion"); "FORMAT: Invalid arena (NULL) provided for string conversion");
return NULL; return NULL;
} }
// Allocate memory for the string // Allocate memory for the string
char *out = arena_alloc__(file, func, line, arena, 1024); char *out = arena_alloc__(POSITION_INFO, arena, 1024);
if (!out) { if (!out) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO,
"FORMAT: Memory allocation failed during JSON string conversion"); "FORMAT: Memory allocation failed during JSON string conversion");
return NULL; return NULL;
} }
@@ -791,16 +792,16 @@ char *json_to_string_with_opts__(const char* file, const char* func, int line, A
Json *child = item->child; Json *child = item->child;
int child_count = 0; int child_count = 0;
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"FORMAT: Processing JSON object children"); "FORMAT: Processing JSON object children");
while (child) { while (child) {
ptr += sprintf(ptr, "\"%s\":", child->key ? child->key : ""); ptr += sprintf(ptr, "\"%s\":", child->key ? child->key : "");
char *child_str = json_to_string_with_opts__(file, func, line, arena, child, raw); char *child_str = json_to_string_with_opts__(POSITION_INFO, arena, child, raw);
if (child_str) { if (child_str) {
ptr += sprintf(ptr, "%s", child_str); ptr += sprintf(ptr, "%s", child_str);
} else { } else {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"FORMAT: Failed to stringify child element (key=%s)", "FORMAT: Failed to stringify child element (key=%s)",
child->key ? child->key : "<null>"); child->key ? child->key : "<null>");
} }
@@ -813,7 +814,7 @@ char *json_to_string_with_opts__(const char* file, const char* func, int line, A
} }
sprintf(ptr, "}"); sprintf(ptr, "}");
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"FORMAT: Object conversion complete with %d child elements", child_count); "FORMAT: Object conversion complete with %d child elements", child_count);
} else if (item->type == JSON_ARRAY) { } else if (item->type == JSON_ARRAY) {
ptr += sprintf(ptr, "["); ptr += sprintf(ptr, "[");
@@ -822,7 +823,7 @@ char *json_to_string_with_opts__(const char* file, const char* func, int line, A
Json *child = item->child; Json *child = item->child;
int child_count = 0; int child_count = 0;
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"FORMAT: Processing JSON array elements"); "FORMAT: Processing JSON array elements");
while (child) { while (child) {
@@ -830,7 +831,7 @@ char *json_to_string_with_opts__(const char* file, const char* func, int line, A
if (child_str) { if (child_str) {
ptr += sprintf(ptr, "%s", child_str); ptr += sprintf(ptr, "%s", child_str);
} else { } else {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"FORMAT: Failed to stringify array element at index %d", child_count); "FORMAT: Failed to stringify array element at index %d", child_count);
} }
@@ -842,7 +843,7 @@ char *json_to_string_with_opts__(const char* file, const char* func, int line, A
} }
sprintf(ptr, "]"); sprintf(ptr, "]");
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"FORMAT: Array conversion complete with %d elements", child_count); "FORMAT: Array conversion complete with %d elements", child_count);
} else if (item->type == JSON_STRING) { } else if (item->type == JSON_STRING) {
type_name = "string"; type_name = "string";
@@ -862,7 +863,7 @@ char *json_to_string_with_opts__(const char* file, const char* func, int line, A
sprintf(ptr, "null"); sprintf(ptr, "null");
} }
raise_message(LOG_LEVEL_LOG, file, func, line, raise_message(LOG_LEVEL_LOG, POSITION_INFO,
"FORMAT: JSON %s converted to string (length=%zu)", "FORMAT: JSON %s converted to string (length=%zu)",
type_name, strlen(out)); type_name, strlen(out));
@@ -870,26 +871,26 @@ char *json_to_string_with_opts__(const char* file, const char* func, int line, A
} }
/* Retrieve an object item by key (case-sensitive) */ /* Retrieve an object item by key (case-sensitive) */
Json *json_get_object_item__(const char* file, const char* func, int line, const Json * const object, const char * const key) { Json *json_get_object_item__(POSITION_INFO_DECLARATION, const Json * const object, const char * const key) {
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"ACCESS: Searching for key \"%s\" in JSON object %p", "ACCESS: Searching for key \"%s\" in JSON object %p",
key ? key : "<null>", object); key ? key : "<null>", object);
// Check input parameters // Check input parameters
if (!object) { if (!object) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"ACCESS: Invalid object (NULL) passed to json_get_object_item"); "ACCESS: Invalid object (NULL) passed to json_get_object_item");
return NULL; return NULL;
} }
if (!key) { if (!key) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"ACCESS: Invalid key (NULL) passed to json_get_object_item"); "ACCESS: Invalid key (NULL) passed to json_get_object_item");
return NULL; return NULL;
} }
if (object->type != JSON_OBJECT) { if (object->type != JSON_OBJECT) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"ACCESS: JSON value is not an object (actual type: %d)", object->type); "ACCESS: JSON value is not an object (actual type: %d)", object->type);
return NULL; return NULL;
} }
@@ -902,7 +903,7 @@ Json *json_get_object_item__(const char* file, const char* func, int line, const
debug_scan = debug_scan->next; debug_scan = debug_scan->next;
} }
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"ACCESS: Object has %d key-value pairs", total_keys); "ACCESS: Object has %d key-value pairs", total_keys);
// Perform key search // Perform key search
@@ -911,18 +912,18 @@ Json *json_get_object_item__(const char* file, const char* func, int line, const
while (child) { while (child) {
if (child->key) { if (child->key) {
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"ACCESS: Comparing key \"%s\" with \"%s\" at position %d", "ACCESS: Comparing key \"%s\" with \"%s\" at position %d",
child->key, key, position); child->key, key, position);
if (strcmp(child->key, key) == 0) { if (strcmp(child->key, key) == 0) {
raise_message(LOG_LEVEL_LOG, file, func, line, raise_message(LOG_LEVEL_LOG, POSITION_INFO,
"ACCESS: Found value for key \"%s\" (type: %s)", "ACCESS: Found value for key \"%s\" (type: %s)",
key, json_type_to_string(child->type)); key, json_type_to_string(child->type));
return child; return child;
} }
} else { } else {
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"ACCESS: Skipping element at position %d with NULL key", position); "ACCESS: Skipping element at position %d with NULL key", position);
} }
@@ -930,7 +931,7 @@ Json *json_get_object_item__(const char* file, const char* func, int line, const
position++; position++;
} }
raise_message(LOG_LEVEL_DEBUG, file, func, line, raise_message(LOG_LEVEL_DEBUG, POSITION_INFO,
"ACCESS: Key \"%s\" not found in object (checked %d items)", "ACCESS: Key \"%s\" not found in object (checked %d items)",
key, position); key, position);
return NULL; return NULL;
@@ -941,15 +942,15 @@ Json *json_get_object_item__(const char* file, const char* func, int line, const
// ----------- // -----------
// Create a slice from an array with boundary check. // Create a slice from an array with boundary check.
Slice slice_create__(const char *file, const char *func, int line, size_t isize, void *array, size_t array_len, size_t start, size_t len) { Slice slice_create__(POSITION_INFO_DECLARATION, size_t isize, void *array, size_t array_len, size_t start, size_t len) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"SLICE: Creating slice (source: %p, array_length: %zu, start: %zu, length: %zu, item_size: %zu)", "SLICE: Creating slice (source: %p, array_length: %zu, start: %zu, length: %zu, item_size: %zu)",
array, array_len, start, len, isize); array, array_len, start, len, isize);
// Boundary check // Boundary check
if (start + len > array_len) { if (start + len > array_len) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"SLICE: Slice boundaries exceed array length (start: %zu, length: %zu, array_length: %zu)", "SLICE: Slice boundaries exceed array length (start: %zu, length: %zu, array_length: %zu)",
start, len, array_len); start, len, array_len);
return (Slice){NULL, 0, isize}; return (Slice){NULL, 0, isize};
@@ -959,7 +960,7 @@ Slice slice_create__(const char *file, const char *func, int line, size_t isize,
Slice result = (Slice){ (char *)array + start * isize, len, isize }; Slice result = (Slice){ (char *)array + start * isize, len, isize };
// Success logging // Success logging
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"SLICE: Slice created successfully (data: %p, length: %zu, item_size: %zu)", "SLICE: Slice created successfully (data: %p, length: %zu, item_size: %zu)",
result.data, result.len, result.isize); result.data, result.len, result.isize);
@@ -967,15 +968,15 @@ Slice slice_create__(const char *file, const char *func, int line, size_t isize,
} }
// Return a subslice from an existing slice. // Return a subslice from an existing slice.
Slice slice_subslice__(const char *file, const char *func, int line, Slice s, size_t start, size_t len) { Slice slice_subslice__(POSITION_INFO_DECLARATION, Slice s, size_t start, size_t len) {
// Function entry logging // Function entry logging
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"SLICE: Creating subslice (source: %p, source_length: %zu, start: %zu, length: %zu)", "SLICE: Creating subslice (source: %p, source_length: %zu, start: %zu, length: %zu)",
s.data, s.len, start, len); s.data, s.len, start, len);
// Boundary check // Boundary check
if (start + len > s.len) { if (start + len > s.len) {
raise_message(LOG_LEVEL_WARN, file, func, line, raise_message(LOG_LEVEL_WARN, POSITION_INFO,
"SLICE: Subslice boundaries exceed source slice length (start: %zu, length: %zu, source_length: %zu)", "SLICE: Subslice boundaries exceed source slice length (start: %zu, length: %zu, source_length: %zu)",
start, len, s.len); start, len, s.len);
return (Slice){NULL, 0, s.isize}; return (Slice){NULL, 0, s.isize};
@@ -985,16 +986,16 @@ Slice slice_subslice__(const char *file, const char *func, int line, Slice s, si
Slice result = (Slice){(char*)s.data + start * s.isize, len, s.isize}; Slice result = (Slice){(char*)s.data + start * s.isize, len, s.isize};
// Success logging // Success logging
raise_message(LOG_LEVEL_TRACE, file, func, line, raise_message(LOG_LEVEL_TRACE, POSITION_INFO,
"SLICE: Subslice created successfully (data: %p, length: %zu, item_size: %zu)", "SLICE: Subslice created successfully (data: %p, length: %zu, item_size: %zu)",
result.data, result.len, result.isize); result.data, result.len, result.isize);
return result; return result;
} }
int* arena_slice_copy__(const char *file, const char *func, int line, Arena *arena, Slice s) { int* arena_slice_copy__(POSITION_INFO_DECLARATION, Arena *arena, Slice s) {
raise_message(LOG_LEVEL_TRACE, file, func, line, "arena_slice_copy(<optimized>, <optimized>)"); raise_message(LOG_LEVEL_TRACE, POSITION_INFO, "arena_slice_copy(<optimized>, <optimized>)");
int *copy = (void*) arena_alloc__(file, func, line, arena, s.len * sizeof(int)); int *copy = (void*) arena_alloc__(POSITION_INFO, arena, s.len * sizeof(int));
if (copy) if (copy)
memcpy(copy, s.data, s.len * s.isize); memcpy(copy, s.data, s.len * s.isize);
return copy; return copy;
@@ -1428,8 +1429,8 @@ char* logger_rules_to_string(Arena *arena) {
// Look at package\c\hectic\docs\templater.md // Look at package\c\hectic\docs\templater.md
TemplateConfig *template_default_config__(const char *file, const char *func, int line, Arena *arena) { TemplateConfig *template_default_config__(POSITION_INFO_DECLARATION, Arena *arena) {
TemplateConfig *config = arena_alloc__(file, func, line, arena, sizeof(TemplateConfig)); TemplateConfig *config = arena_alloc__(POSITION_INFO, arena, sizeof(TemplateConfig));
if (!config) return NULL; if (!config) return NULL;
config->open_brace = "{%"; config->open_brace = "{%";
@@ -1446,10 +1447,10 @@ TemplateConfig *template_default_config__(const char *file, const char *func, in
return config; return config;
} }
static TemplateNode *template_node_create__(const char *file, const char *func, int line, Arena *arena, TemplateNodeType type, TemplateValue *value) { static TemplateNode *template_node_create__(POSITION_INFO_DECLARATION, Arena *arena, TemplateNodeType type, TemplateValue *value) {
TemplateNode *node = arena_alloc__(file, func, line, arena, sizeof(TemplateNode)); TemplateNode *node = arena_alloc__(POSITION_INFO, arena, sizeof(TemplateNode));
if (!node) { if (!node) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "Failed to allocate node"); raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "Failed to allocate node");
} }
node->type = type; node->type = type;
@@ -1463,18 +1464,18 @@ static TemplateNode *template_node_create__(const char *file, const char *func,
#define CHECK_CONFIG_STR(field, name) \ #define CHECK_CONFIG_STR(field, name) \
do { \ do { \
if (!(config->field)) { \ if (!(config->field)) { \
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "CONFIG: " name " is NULL"); \ raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "CONFIG: " name " is NULL"); \
return false; \ return false; \
} \ } \
if (strlen(config->field) > TEMPLATE_MAX_PREFIX_LEN) { \ if (strlen(config->field) > TEMPLATE_MAX_PREFIX_LEN) { \
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "CONFIG: " name " is too long"); \ raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "CONFIG: " name " is too long"); \
return false; \ return false; \
} \ } \
} while (0) } while (0)
bool template_validate_config__(const char *file, const char *func, int line, TemplateConfig *config) { bool template_validate_config__(POSITION_INFO_DECLARATION, TemplateConfig *config) {
if (!config) { if (!config) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "Config is NULL"); raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "Config is NULL");
return false; return false;
} }
@@ -1492,25 +1493,25 @@ bool template_validate_config__(const char *file, const char *func, int line, Te
return true; return true;
} }
TemplateNode *template_parse__(const char *file, const char *func, int line, Arena *arena, const char *template, TemplateConfig *config) { TemplateNode *template_parse__(POSITION_INFO_DECLARATION, Arena *arena, const char *template, TemplateConfig *config) {
if (!arena) { if (!arena) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "Arena is NULL"); raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "Arena is NULL");
} }
if (!config) { if (!config) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "Config is NULL"); raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "Config is NULL");
} }
if (!template) { if (!template) {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "Template is NULL"); raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "Template is NULL");
} }
// Find the first open brace // Find the first open brace
const char *open_brace = strstr(template, config->open_brace); const char *open_brace = strstr(template, config->open_brace);
if (!open_brace) { if (!open_brace) {
raise_message(LOG_LEVEL_LOG, file, func, line, "No open brace found"); raise_message(LOG_LEVEL_LOG, POSITION_INFO, "No open brace found");
TemplateValue val = {.text = {.content = (char *)template}}; TemplateValue val = {.text = {.content = (char *)template}};
return template_node_create__(file, func, line, arena, return template_node_create__(POSITION_INFO, arena,
TEMPLATE_NODE_TEXT, &val); TEMPLATE_NODE_TEXT, &val);
} }
@@ -1525,7 +1526,7 @@ TemplateNode *template_parse__(const char *file, const char *func, int line, Are
} else if (strncmp(tag_prefix, config->function_prefix, strlen(config->function_prefix)) == 0) { } else if (strncmp(tag_prefix, config->function_prefix, strlen(config->function_prefix)) == 0) {
// Function tag // Function tag
} else { } else {
raise_message(LOG_LEVEL_EXCEPTION, file, func, line, "Unknown tag prefix: %s", slice_create__(file, func, line, 1, (char *)tag_prefix, strlen(tag_prefix), 0, TEMPLATE_MAX_PREFIX_LEN)); raise_message(LOG_LEVEL_EXCEPTION, POSITION_INFO, "Unknown tag prefix: %s", slice_create__(POSITION_INFO, 1, (char *)tag_prefix, strlen(tag_prefix), 0, TEMPLATE_MAX_PREFIX_LEN));
return NULL; return NULL;
} }