Files
fastfetch/src/util/FFstrbuf.c
T
2021-05-15 18:17:34 +02:00

521 lines
12 KiB
C

#include "FFstrbuf.h"
#include <malloc.h>
#include <ctype.h>
#include <string.h>
void ffStrbufInit(FFstrbuf* strbuf)
{
ffStrbufInitA(strbuf, FASTFETCH_STRBUF_DEFAULT_ALLOC);
}
void ffStrbufInitCopy(FFstrbuf* strbuf, const FFstrbuf* src)
{
ffStrbufInitA(strbuf, src->allocated);
ffStrbufAppend(strbuf, src);
}
void ffStrbufInitS(FFstrbuf* strbuf, const char* value)
{
ffStrbufInitAS(strbuf, FASTFETCH_STRBUF_DEFAULT_ALLOC, value);
}
void ffStrbufInitNS(FFstrbuf* strbuf, uint32_t length, const char* value)
{
ffStrbufInitANS(strbuf, FASTFETCH_STRBUF_DEFAULT_ALLOC, length, value);
}
void ffStrbufInitC(FFstrbuf* strbuf, const char c)
{
ffStrbufInitAC(strbuf, FASTFETCH_STRBUF_DEFAULT_ALLOC, c);
}
void ffStrbufInitA(FFstrbuf* strbuf, uint32_t allocate)
{
if(allocate == 0)
{
fprintf(stderr, "ffStrbufInitA(): allocation size == 0, changing to 1");
allocate = 1;
}
strbuf->allocated = allocate;
strbuf->chars = (char*) malloc(sizeof(char) * strbuf->allocated);
ffStrbufClear(strbuf);
}
void ffStrbufInitAS(FFstrbuf* strbuf, uint32_t allocate, const char* value)
{
ffStrbufInitA(strbuf, allocate);
ffStrbufAppendS(strbuf, value);
}
void ffStrbufInitANS(FFstrbuf* strbuf, uint32_t allocate, uint32_t length, const char* value)
{
ffStrbufInitA(strbuf, allocate);
ffStrbufAppendNS(strbuf, length, value);
}
void ffStrbufInitAC(FFstrbuf* strbuf, uint32_t allocate, const char c)
{
ffStrbufInitA(strbuf, allocate);
ffStrbufAppendC(strbuf, c);
}
void ffStrbufInitF(FFstrbuf* strbuf, const char* format, ...)
{
ffStrbufInitA(strbuf, FASTFETCH_STRBUF_DEFAULT_ALLOC);
va_list arguments;
va_start(arguments, format);
ffStrbufAppendVF(strbuf, format, arguments);
va_end(arguments);
}
void ffStrbufInitVF(FFstrbuf* strbuf, const char* format, va_list arguments)
{
ffStrbufInitA(strbuf, FASTFETCH_STRBUF_DEFAULT_ALLOC);
ffStrbufAppendVF(strbuf, format, arguments);
}
void ffStrbufEnsureCapacity(FFstrbuf* strbuf, uint32_t allocate)
{
if(strbuf->allocated >= allocate)
return;
strbuf->allocated = allocate;
strbuf->chars = realloc(strbuf->chars, sizeof(char) * strbuf->allocated);
}
void ffStrbufEnsureFree(FFstrbuf* strbuf, uint32_t free)
{
uint32_t allocate = strbuf->allocated;
if(allocate < 2)
allocate = 2;
while((strbuf->length + free) > allocate)
allocate *= 2;
ffStrbufEnsureCapacity(strbuf, allocate);
}
void ffStrbufClear(FFstrbuf* strbuf)
{
strbuf->chars[0] = '\0';
strbuf->length = 0;
}
void ffStrbufSet(FFstrbuf* strbuf, const FFstrbuf* value)
{
ffStrbufClear(strbuf);
ffStrbufAppendNS(strbuf, value->length, value->chars);
}
void ffStrbufSetS(FFstrbuf* strbuf, const char* value)
{
ffStrbufClear(strbuf);
ffStrbufAppendS(strbuf, value);
}
void ffStrbufSetNS(FFstrbuf* strbuf, uint32_t length, const char* value)
{
ffStrbufClear(strbuf);
ffStrbufAppendNS(strbuf, length, value);
}
void ffStrbufSetC(FFstrbuf* strbuf, const char c)
{
ffStrbufClear(strbuf);
ffStrbufAppendC(strbuf, c);
}
void ffStrbufSetF(FFstrbuf* strbuf, const char* format, ...)
{
ffStrbufClear(strbuf);
va_list arguments;
va_start(arguments, format);
ffStrbufAppendVF(strbuf, format, arguments);
va_end(arguments);
}
void ffStrbufSetVF(FFstrbuf* strbuf, const char* format, va_list arguments)
{
ffStrbufClear(strbuf);
ffStrbufAppendVF(strbuf, format, arguments);
}
void ffStrbufAppend(FFstrbuf* strbuf, const FFstrbuf* value)
{
if(value == NULL)
return;
ffStrbufAppendNS(strbuf, value->length, value->chars);
}
void ffStrbufAppendTransformS(FFstrbuf* strbuf, const char* value, int(*transformFunc)(int))
{
if(value == NULL)
return;
for(uint32_t i = 0; value[i] != '\0'; i++)
{
if(i % 16 == 0)
ffStrbufEnsureFree(strbuf, 16);
strbuf->chars[strbuf->length++] = transformFunc(value[i]);
}
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufAppendS(FFstrbuf* strbuf, const char* value)
{
if(value == NULL)
return;
for(uint32_t i = 0; value[i] != '\0'; i++)
{
if(i % 16 == 0)
ffStrbufEnsureFree(strbuf, 16);
strbuf->chars[strbuf->length++] = value[i];
}
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufAppendNS(FFstrbuf* strbuf, uint32_t length, const char* value)
{
if(value == NULL)
return;
ffStrbufEnsureFree(strbuf, length);
for(uint32_t i = 0; i < length; i++)
{
if(value[i] == '\0')
break;
strbuf->chars[strbuf->length++] = value[i];
}
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufAppendC(FFstrbuf* strbuf, const char c)
{
ffStrbufEnsureFree(strbuf, 1);
strbuf->chars[strbuf->length++] = c;
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufAppendF(FFstrbuf* strbuf, const char* format, ...)
{
if(format == NULL)
return;
va_list arguments;
va_start(arguments, format);
ffStrbufAppendVF(strbuf, format, arguments);
va_end(arguments);
}
void ffStrbufAppendVF(FFstrbuf* strbuf, const char* format, va_list arguments)
{
if(format == NULL)
return;
va_list localArguments;
va_copy(localArguments, arguments);
uint32_t written = (uint32_t) vsnprintf(strbuf->chars + strbuf->length, strbuf->allocated - strbuf->length, format, localArguments);
va_end(localArguments);
if(strbuf->length + written >= strbuf->allocated)
{
ffStrbufEnsureCapacity(strbuf, strbuf->allocated * 2);
ffStrbufAppendVF(strbuf, format, arguments); //Try again with larger buffer
}
else
{
strbuf->length += written;
strbuf->chars[strbuf->length] = '\0';
}
}
char ffStrbufGetC(FFstrbuf* strbuf, uint32_t index)
{
if(index >= strbuf->length)
return '\0';
return strbuf->chars[index];
}
void ffStrbufWriteTo(const FFstrbuf* strbuf, FILE* file)
{
fwrite(strbuf->chars, sizeof(char), strbuf->length, file);
}
void ffStrbufPutTo(const FFstrbuf* strbuf, FILE* file)
{
fwrite(strbuf->chars, sizeof(char), strbuf->length, file);
fputc('\n', file);
}
int ffStrbufComp(const FFstrbuf* strbuf, const FFstrbuf* comp)
{
return ffStrbufCompS(strbuf, comp->chars);
}
int ffStrbufCompS(const FFstrbuf* strbuf, const char* comp)
{
return strcmp(strbuf->chars, comp);
}
int ffStrbufIgnCaseComp(const FFstrbuf* strbuf, const FFstrbuf* comp)
{
return ffStrbufIgnCaseCompS(strbuf, comp->chars);
}
int ffStrbufIgnCaseCompS(const FFstrbuf* strbuf, const char* comp)
{
return strcasecmp(strbuf->chars, comp);
}
void ffStrbufTrimLeft(FFstrbuf* strbuf, char c)
{
uint32_t index = 0;
while(index < strbuf->length && strbuf->chars[index] == c)
++index;
if(index == 0)
return;
memmove(strbuf->chars, strbuf->chars + index, strbuf->length - index);
strbuf->length -= index;
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufTrimRight(FFstrbuf* strbuf, char c)
{
while(strbuf->length > 0 && strbuf->chars[strbuf->length - 1] == c)
--strbuf->length;
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufTrim(FFstrbuf* strbuf, char c)
{
ffStrbufTrimRight(strbuf, c);
ffStrbufTrimLeft(strbuf, c);
}
static bool strbufRemoveTest(FFstrbuf* strbuf, uint32_t i, const char* substr)
{
uint32_t k;
for(k = 0; substr[k] != '\0'; k++)
{
if(i + k > strbuf->length)
return false;
if(strbuf->chars[i + k] != substr[k])
return false;
}
memmove(&strbuf->chars[i], &strbuf->chars[i + k], strbuf->length - i - k);
strbuf->length -= k;
strbuf->chars[strbuf->length] = '\0';
return true;
}
void ffStrbufRemoveStringsA(FFstrbuf* strbuf, uint32_t numStrings, const char* strings[])
{
for(uint32_t i = 0; i < strbuf->length; i++)
{
for(uint32_t k = 0; k < numStrings; k++)
while(strbufRemoveTest(strbuf, i, strings[k]));
}
}
void ffStrbufRemoveStringsV(FFstrbuf* strbuf, uint32_t numStrings, va_list arguments)
{
const char** strings = calloc(numStrings, sizeof(const char*));
for(uint32_t i = 0; i < numStrings; i++)
strings[i] = va_arg(arguments, const char*);
ffStrbufRemoveStringsA(strbuf, numStrings, strings);
free(strings);
}
void ffStrbufRemoveStrings(FFstrbuf* strbuf, uint32_t numStrings, ...)
{
va_list argp;
va_start(argp, numStrings);
ffStrbufRemoveStringsV(strbuf, numStrings, argp);
va_end(argp);
}
uint32_t ffStrbufFirstIndexAfterC(const FFstrbuf* strbuf, uint32_t start, const char c)
{
for(uint32_t i = start; i < strbuf->length; i++)
{
if(strbuf->chars[i] == c)
return i;
}
return strbuf->length;
}
uint32_t ffStrbufFirstIndexC(const FFstrbuf* strbuf, const char c)
{
return ffStrbufFirstIndexAfterC(strbuf, 0, c);
}
uint32_t ffStrbufFirstIndexAfterS(const FFstrbuf* strbuf, uint32_t start, const char* str)
{
for(uint32_t i = start + 1; i < strbuf->length; i++)
{
bool found = true;
for(uint32_t k = 0; str[k] != '\0'; k++)
{
if(i + k == strbuf->length)
return strbuf->length;
if(strbuf->chars[i + k] != str[k])
{
found = false;
break;
}
}
if(found)
return i;
}
return strbuf->length;
}
uint32_t ffStrbufFirstIndexS(const FFstrbuf* strbuf, const char* str)
{
return ffStrbufFirstIndexAfterS(strbuf, 0, str);
}
uint32_t ffStrbufLastIndexC(const FFstrbuf* strbuf, const char c)
{
//We need to loop one higher than the actual index, because uint32_t is guranteed to be >= 0, so this statement would always be true
for(uint32_t i = strbuf->length; i > 0; i--)
{
if(strbuf->chars[i - 1] == c)
return i - 1;
}
return strbuf->length;
}
void ffStrbufSubstrBefore(FFstrbuf* strbuf, uint32_t index)
{
if(strbuf->length <= index)
return;
strbuf->length = index;
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufSubstrBeforeFirstC(FFstrbuf* strbuf, const char c)
{
ffStrbufSubstrBefore(strbuf, ffStrbufFirstIndexC(strbuf, c));
}
void ffStrbufSubstrBeforeLastC(FFstrbuf* strbuf, const char c)
{
ffStrbufSubstrBefore(strbuf, ffStrbufLastIndexC(strbuf, c));
}
void ffStrbufSubstrAfter(FFstrbuf* strbuf, uint32_t index)
{
if(index >= strbuf->length)
{
ffStrbufClear(strbuf);
return;
}
memmove(strbuf->chars, strbuf->chars + index + 1, strbuf->length - index - 1);
strbuf->length -= (index + 1);
strbuf->chars[strbuf->length] = '\0';
}
void ffStrbufSubstrAfterFirstC(FFstrbuf* strbuf, const char c)
{
uint32_t index = ffStrbufFirstIndexC(strbuf, c);
if(index < strbuf->length)
ffStrbufSubstrAfter(strbuf, index);
}
void ffStrbufSubstrAfterLastC(FFstrbuf* strbuf, const char c)
{
uint32_t index = ffStrbufLastIndexC(strbuf, c);
if(index < strbuf->length)
ffStrbufSubstrAfter(strbuf, index);
}
bool ffStrbufStartsWith(const FFstrbuf* strbuf, const FFstrbuf* start)
{
return ffStrbufStartsWithNS(strbuf, start->length, start->chars);
}
bool ffStrbufStartsWithS(const FFstrbuf* strbuf, const char* start)
{
for(uint32_t i = 0; start[i] != '\0'; i++)
{
if(i >= strbuf->length)
return false;
if(strbuf->chars[i] != start[i])
return false;
}
return true;
}
bool ffStrbufStartsWithNS(const FFstrbuf* strbuf, uint32_t length, const char* start)
{
for(uint32_t i = 0; i < length; i++)
{
if(i >= strbuf->length)
return false;
if(strbuf->chars[i] != start[i])
return false;
}
return true;
}
bool ffStrbufStartsWithIgnCase(const FFstrbuf* strbuf, const FFstrbuf* start)
{
return ffStrbufStartsWithNS(strbuf, start->length, start->chars);
}
bool ffStrbufStartsWithIgnCaseS(const FFstrbuf* strbuf, const char* start)
{
for(uint32_t i = 0; start[i] != '\0'; i++)
{
if(i >= strbuf->length)
return false;
if(tolower(strbuf->chars[i]) != tolower(start[i]))
return false;
}
return true;
}
bool ffStrbufStartsWithIgnCaseNS(const FFstrbuf* strbuf, uint32_t length, const char* start)
{
for(uint32_t i = 0; i < length; i++)
{
if(i >= strbuf->length)
return false;
if(tolower(strbuf->chars[i]) != tolower(start[i]))
return false;
}
return true;
}
void ffStrbufRecalculateLength(FFstrbuf* strbuf)
{
for(strbuf->length = 0; strbuf->chars[strbuf->length] != '\0'; ++strbuf->length);
}
void ffStrbufDestroy(FFstrbuf* strbuf)
{
free(strbuf->chars);
}