mirror of
https://github.com/fastfetch-cli/fastfetch.git
synced 2026-09-13 10:52:08 +02:00
30a5dd52b1
Fix #430
500 lines
13 KiB
C
500 lines
13 KiB
C
#include "FFstrbuf.h"
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#include <ctype.h>
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#include <inttypes.h>
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char* CHAR_NULL_PTR = "";
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void ffStrbufInitA(FFstrbuf* strbuf, uint32_t allocate)
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{
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strbuf->allocated = allocate;
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if(strbuf->allocated > 0)
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strbuf->chars = (char*) malloc(sizeof(char) * strbuf->allocated);
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//This will set the length to zero and the null byte.
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ffStrbufClear(strbuf);
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}
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void ffStrbufInitVF(FFstrbuf* strbuf, const char* format, va_list arguments)
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{
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assert(format != NULL);
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int len = vasprintf(&strbuf->chars, format, arguments);
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assert(len >= 0);
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strbuf->allocated = (uint32_t)(len + 1);
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strbuf->length = (uint32_t)len;
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}
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void ffStrbufEnsureFree(FFstrbuf* strbuf, uint32_t free)
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{
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if(ffStrbufGetFree(strbuf) >= free && !(strbuf->allocated == 0 && strbuf->length > 0))
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return;
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uint32_t allocate = strbuf->allocated;
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if(allocate < 2)
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allocate = FASTFETCH_STRBUF_DEFAULT_ALLOC;
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while((strbuf->length + free + 1) > allocate) // + 1 for the null byte
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allocate *= 2;
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if(strbuf->allocated == 0)
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{
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char* newbuf = malloc(sizeof(*strbuf->chars) * allocate);
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if(strbuf->length == 0)
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*newbuf = '\0';
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else
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memcpy(newbuf, strbuf->chars, strbuf->length + 1);
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strbuf->chars = newbuf;
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}
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else
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strbuf->chars = realloc(strbuf->chars, sizeof(*strbuf->chars) * allocate);
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strbuf->allocated = allocate;
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}
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// for an empty buffer, free + 1 length memory will be allocated(+1 for the NUL)
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void ffStrbufEnsureFixedLengthFree(FFstrbuf* strbuf, uint32_t free)
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{
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uint32_t oldFree = ffStrbufGetFree(strbuf);
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if (oldFree >= free && !(strbuf->allocated == 0 && strbuf->length > 0))
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return;
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uint32_t newCap = strbuf->allocated + (free - oldFree);
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if(strbuf->allocated == 0)
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{
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newCap += strbuf->length + 1;
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char* newbuf = malloc(sizeof(*strbuf->chars) * newCap);
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if(strbuf->length == 0)
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*newbuf = '\0';
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else
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memcpy(newbuf, strbuf->chars, strbuf->length + 1);
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strbuf->chars = newbuf;
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}
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else
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strbuf->chars = realloc(strbuf->chars, sizeof(*strbuf->chars) * newCap);
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strbuf->allocated = newCap;
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}
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void ffStrbufClear(FFstrbuf* strbuf)
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{
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assert(strbuf != NULL);
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if(strbuf->allocated == 0)
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strbuf->chars = CHAR_NULL_PTR;
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else
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strbuf->chars[0] = '\0';
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strbuf->length = 0;
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}
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void ffStrbufAppendC(FFstrbuf* strbuf, char c)
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{
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ffStrbufEnsureFree(strbuf, 1);
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strbuf->chars[strbuf->length++] = c;
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufAppendNC(FFstrbuf* strbuf, uint32_t num, char c)
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{
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if (num == 0) return;
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ffStrbufEnsureFree(strbuf, num);
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memset(&strbuf->chars[strbuf->length], c, num);
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strbuf->length += num;
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufAppendNS(FFstrbuf* strbuf, uint32_t length, const char* value)
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{
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if(value == NULL || length == 0)
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return;
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ffStrbufEnsureFree(strbuf, length);
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memcpy(&strbuf->chars[strbuf->length], value, length);
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strbuf->length += length;
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufAppendTransformS(FFstrbuf* strbuf, const char* value, int(*transformFunc)(int))
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{
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if(value == NULL)
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return;
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//Ensure capacity > 0 or the modification below will fail
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uint32_t length = (uint32_t) strlen(value);
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if(length == 0)
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return;
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ffStrbufEnsureFree(strbuf, length);
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for(uint32_t i = 0; value[i] != '\0'; i++)
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{
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strbuf->chars[strbuf->length++] = (char) transformFunc(value[i]);
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}
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufAppendVF(FFstrbuf* strbuf, const char* format, va_list arguments)
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{
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assert(format != NULL);
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va_list copy;
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va_copy(copy, arguments);
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uint32_t free = ffStrbufGetFree(strbuf);
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int written = vsnprintf(strbuf->chars + strbuf->length, strbuf->allocated > 0 ? free + 1 : 0, format, arguments);
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if(written > 0 && strbuf->length + (uint32_t) written > free)
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{
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ffStrbufEnsureFree(strbuf, (uint32_t) written);
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written = vsnprintf(strbuf->chars + strbuf->length, (uint32_t) written + 1, format, copy);
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}
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va_end(copy);
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if(written > 0)
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strbuf->length += (uint32_t) written;
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}
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const char* ffStrbufAppendSUntilC(FFstrbuf* strbuf, const char* value, char until)
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{
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if(value == NULL)
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return NULL;
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char* end = strchr(value, until);
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if(end == NULL)
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ffStrbufAppendS(strbuf, value);
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else
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ffStrbufAppendNS(strbuf, (uint32_t) (end - value), value);
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return end;
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}
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void ffStrbufSetF(FFstrbuf* strbuf, const char* format, ...)
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{
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assert(format != NULL);
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va_list arguments;
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va_start(arguments, format);
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if(strbuf->allocated == 0) {
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ffStrbufInitVF(strbuf, format, arguments);
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va_end(arguments);
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return;
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}
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ffStrbufClear(strbuf);
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ffStrbufAppendVF(strbuf, format, arguments);
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va_end(arguments);
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}
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void ffStrbufAppendF(FFstrbuf* strbuf, const char* format, ...)
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{
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assert(format != NULL);
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va_list arguments;
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va_start(arguments, format);
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ffStrbufAppendVF(strbuf, format, arguments);
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va_end(arguments);
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}
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void ffStrbufPrependNS(FFstrbuf* strbuf, uint32_t length, const char* value)
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{
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if(value == NULL || length == 0)
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return;
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ffStrbufEnsureFree(strbuf, length);
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memmove(strbuf->chars + length, strbuf->chars, strbuf->length + 1); // + 1 for the null byte
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memcpy(strbuf->chars, value, length);
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strbuf->length += length;
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}
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void ffStrbufSetNS(FFstrbuf* strbuf, uint32_t length, const char* value)
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{
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ffStrbufClear(strbuf);
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ffStrbufAppendNS(strbuf, length, value);
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}
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void ffStrbufSet(FFstrbuf* strbuf, const FFstrbuf* value)
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{
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ffStrbufClear(strbuf);
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ffStrbufAppendNS(strbuf, value->length, value->chars);
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}
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void ffStrbufTrimLeft(FFstrbuf* strbuf, char c)
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{
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if(strbuf->length == 0)
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return;
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uint32_t index = 0;
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while(index < strbuf->length && strbuf->chars[index] == c)
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++index;
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if(index == 0)
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return;
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if(strbuf->allocated == 0)
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{
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//static string
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strbuf->length -= index;
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strbuf->chars += index;
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return;
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}
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memmove(strbuf->chars, strbuf->chars + index, strbuf->length - index);
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strbuf->length -= index;
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufTrimRight(FFstrbuf* strbuf, char c)
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{
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if (strbuf->length == 0)
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return;
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if (!ffStrbufEndsWithC(strbuf, c))
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return;
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do
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--strbuf->length;
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while (ffStrbufEndsWithC(strbuf, c));
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if (strbuf->allocated == 0)
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{
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//static string
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ffStrbufInitNS(strbuf, strbuf->length, strbuf->chars);
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return;
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}
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufTrimRightSpace(FFstrbuf* strbuf)
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{
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if (strbuf->length == 0)
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return;
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if (!ffStrbufEndsWithFn(strbuf, isspace))
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return;
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do
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--strbuf->length;
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while (ffStrbufEndsWithFn(strbuf, isspace));
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if (strbuf->allocated == 0)
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{
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//static string
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ffStrbufInitNS(strbuf, strbuf->length, strbuf->chars);
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return;
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}
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufRemoveSubstr(FFstrbuf* strbuf, uint32_t startIndex, uint32_t endIndex)
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{
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if(startIndex > strbuf->length || startIndex >= endIndex)
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return;
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if(endIndex > strbuf->length)
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{
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ffStrbufSubstrBefore(strbuf, startIndex);
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return;
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}
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ffStrbufEnsureFree(strbuf, 0);
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memmove(strbuf->chars + startIndex, strbuf->chars + endIndex, strbuf->length - endIndex);
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strbuf->length -= (endIndex - startIndex);
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufRemoveS(FFstrbuf* strbuf, const char* str)
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{
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uint32_t stringLength = (uint32_t) strlen(str);
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for(uint32_t i = ffStrbufNextIndexS(strbuf, 0, str); i < strbuf->length; i = ffStrbufNextIndexS(strbuf, i, str))
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ffStrbufRemoveSubstr(strbuf, i, i + stringLength);
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}
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void ffStrbufRemoveStrings(FFstrbuf* strbuf, uint32_t numStrings, const char* strings[])
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{
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for(uint32_t i = 0; i < numStrings; i++)
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ffStrbufRemoveS(strbuf, strings[i]);
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}
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uint32_t ffStrbufNextIndexC(const FFstrbuf* strbuf, uint32_t start, char c)
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{
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assert(start <= strbuf->length);
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const char* ptr = (const char*)memchr(strbuf->chars + start, c, strbuf->length - start);
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return ptr ? (uint32_t)(ptr - strbuf->chars) : strbuf->length;
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}
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uint32_t ffStrbufNextIndexS(const FFstrbuf* strbuf, uint32_t start, const char* str)
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{
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assert(start <= strbuf->length);
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const char* ptr = strstr(strbuf->chars + start, str);
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return ptr ? (uint32_t)(ptr - strbuf->chars) : strbuf->length;
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}
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uint32_t ffStrbufPreviousIndexC(const FFstrbuf* strbuf, uint32_t start, char c)
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{
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assert(start <= strbuf->length);
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//We need to loop one higher than the actual index, because uint32_t is guaranteed to be >= 0, so this statement would always be true
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for(uint32_t i = start + 1; i > 0; i--)
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{
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if(strbuf->chars[i - 1] == c)
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return i - 1;
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}
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return strbuf->length;
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}
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void ffStrbufReplaceAllC(FFstrbuf* strbuf, char find, char replace)
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{
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if (strbuf->length == 0)
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return;
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ffStrbufEnsureFree(strbuf, 0);
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for (char *current_pos = strchr(strbuf->chars, find); current_pos; current_pos = strchr(current_pos + 1, find))
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*current_pos = replace;
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}
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void ffStrbufSubstrBefore(FFstrbuf* strbuf, uint32_t index)
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{
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if(strbuf->length <= index)
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return;
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if(strbuf->allocated == 0)
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{
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//static string
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ffStrbufInitNS(strbuf, strbuf->length, strbuf->chars);
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return;
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}
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strbuf->length = index;
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufSubstrAfter(FFstrbuf* strbuf, uint32_t index)
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{
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if(index >= strbuf->length)
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{
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ffStrbufClear(strbuf);
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return;
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}
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if(strbuf->allocated == 0)
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{
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//static string
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strbuf->length -= index + 1;
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strbuf->chars += index + 1;
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return;
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}
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memmove(strbuf->chars, strbuf->chars + index + 1, strbuf->length - index - 1);
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strbuf->length -= (index + 1);
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strbuf->chars[strbuf->length] = '\0';
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}
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void ffStrbufSubstrAfterFirstC(FFstrbuf* strbuf, char c)
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{
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uint32_t index = ffStrbufFirstIndexC(strbuf, c);
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if(index < strbuf->length)
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ffStrbufSubstrAfter(strbuf, index);
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}
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void ffStrbufSubstrAfterFirstS(FFstrbuf* strbuf, const char* str)
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{
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if(*str == '\0')
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return;
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uint32_t index = ffStrbufFirstIndexS(strbuf, str) + (uint32_t) strlen(str) - 1; // -1, because firstIndexS is already pointing to str[0], we want to add only the remaining length
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if(index < strbuf->length)
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ffStrbufSubstrAfter(strbuf, index);
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}
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void ffStrbufSubstrAfterLastC(FFstrbuf* strbuf, char c)
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{
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uint32_t index = ffStrbufLastIndexC(strbuf, c);
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if(index < strbuf->length)
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ffStrbufSubstrAfter(strbuf, index);
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}
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uint32_t ffStrbufCountC(const FFstrbuf* strbuf, char c)
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{
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uint32_t result = 0;
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for(uint32_t i = 0; i < strbuf->length; i++)
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{
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if(strbuf->chars[i] == c)
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result++;
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}
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return result;
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}
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bool ffStrbufRemoveIgnCaseEndS(FFstrbuf* strbuf, const char* end)
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{
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uint32_t endLength = (uint32_t) strlen(end);
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if(ffStrbufEndsWithIgnCaseNS(strbuf, endLength, end))
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{
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ffStrbufSubstrBefore(strbuf, strbuf->length - endLength);
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return true;
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}
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return false;
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}
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void ffStrbufEnsureEndsWithC(FFstrbuf* strbuf, char c)
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{
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if(!ffStrbufEndsWithC(strbuf, c))
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ffStrbufAppendC(strbuf, c);
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}
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void ffStrbufWriteTo(const FFstrbuf* strbuf, FILE* file)
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{
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fwrite(strbuf->chars, sizeof(*strbuf->chars), strbuf->length, file);
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}
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void ffStrbufPutTo(const FFstrbuf* strbuf, FILE* file)
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{
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ffStrbufWriteTo(strbuf, file);
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fputc('\n', file);
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}
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double ffStrbufToDouble(const FFstrbuf* strbuf)
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{
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char* str_end;
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double result = strtod(strbuf->chars, &str_end);
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return str_end == strbuf->chars ? 0.0/0.0 : result;
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}
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uint64_t ffStrbufToUInt(const FFstrbuf* strbuf, uint64_t defaultValue)
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{
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char* str_end;
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unsigned long long result = strtoull(strbuf->chars, &str_end, 10);
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return str_end == strbuf->chars ? defaultValue : (uint64_t)result;
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}
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int64_t ffStrbufToSInt(const FFstrbuf* strbuf, int64_t defaultValue)
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{
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char* str_end;
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long long result = strtoll(strbuf->chars, &str_end, 10);
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return str_end == strbuf->chars ? defaultValue : (int64_t)result;
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}
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void ffStrbufUpperCase(FFstrbuf* strbuf)
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{
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for (uint32_t i = 0; i < strbuf->length; ++i)
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strbuf->chars[i] = (char) toupper(strbuf->chars[i]);
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}
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void ffStrbufLowerCase(FFstrbuf* strbuf)
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{
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for (uint32_t i = 0; i < strbuf->length; ++i)
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strbuf->chars[i] = (char) tolower(strbuf->chars[i]);
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}
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