#pragma once #include #include #include #include #include "common/wcwidth.h" #ifdef _WIN32 // #include __stdcall char* StrStrIA(const char* lpFirst, const char* lpSrch); #define strcasestr StrStrIA #endif static inline bool ffStrSet(const char* str) { if (str == NULL) { return false; } while (isspace(*str)) { str++; } return *str != '\0'; } static inline bool ffStrStartsWithIgnCase(const char* str, const char* compareTo) { return strncasecmp(str, compareTo, strlen(compareTo)) == 0; } static inline bool ffStrEqualsIgnCase(const char* str, const char* compareTo) { return strcasecmp(str, compareTo) == 0; } static inline bool ffStrStartsWith(const char* str, const char* compareTo) { return strncmp(str, compareTo, strlen(compareTo)) == 0; } static inline bool ffStrEndsWith(const char* str, const char* compareTo) { size_t strLength = strlen(str); size_t compareToLength = strlen(compareTo); if (strLength < compareToLength) { return false; } return memcmp(str + strLength - compareToLength, compareTo, compareToLength) == 0; } static inline bool ffStrEndsWithIgnCase(const char* str, const char* compareTo) { size_t strLength = strlen(str); size_t compareToLength = strlen(compareTo); if (strLength < compareToLength) { return false; } return strncasecmp(str + strLength - compareToLength, compareTo, compareToLength) == 0; } static inline bool ffStrEquals(const char* str, const char* compareTo) { return strcmp(str, compareTo) == 0; } static inline bool ffStrContains(const char* str, const char* compareTo) { return strstr(str, compareTo) != NULL; } static inline bool ffStrContainsIgnCase(const char* str, const char* compareTo) { return strcasestr(str, compareTo) != NULL; } static inline bool ffStrContainsC(const char* str, char compareTo) { return strchr(str, compareTo) != NULL; } static inline bool ffCharIsEnglishAlphabet(char c) { return ('a' <= c && c <= 'z') || ('A' <= c && c <= 'Z'); } static inline bool ffCharIsDigit(char c) { return '0' <= c && c <= '9'; } // Parse one UTF-8 character, returning consumed byte count and display width. // Invalid / incomplete sequence falls back to one-byte width=1. // If the Unicode codepoint is non-printable, width becomes 0. uint8_t ffUtf8CharLenWidth(const char* str, uint32_t length, uint8_t* width); uint32_t ffUtf8StrWidth(const char* str, uint32_t length); static inline bool ffCharIsHexDigit(char c) { return ffCharIsDigit(c) || ('a' <= c && c <= 'f') || ('A' <= c && c <= 'F'); } static inline int8_t ffHexCharToInt(char c) { if (ffCharIsDigit(c)) { return (int8_t) (c - '0'); } else if ('a' <= c && c <= 'f') { return (int8_t) (c - 'a' + 10); } else if ('A' <= c && c <= 'F') { return (int8_t) (c - 'A' + 10); } else { return -1; } } // Copies at most (dstBufSiz - 1) bytes from src to dst; dst is always null-terminated static inline char* ffStrCopy(char* __restrict__ dst, const char* __restrict__ src, size_t dstBufSiz) { if (__builtin_expect(dst == NULL, false) || dstBufSiz == 0) { return dst; } size_t len = strnlen(src, dstBufSiz - 1); memcpy(dst, src, len); dst[len] = '\0'; return dst + len; }