bemenu/lib/util.c

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#include "internal.h"
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#define _XOPEN_SOURCE
#include <wchar.h> /* wcswidth */
#undef _XOPEN_SOURCE
#include <stdlib.h>
#include <string.h>
#include <ctype.h>
#include <assert.h>
/**
* Portable strdup.
*
* @param string C "string" to copy.
* @return Copy of the given C "string".
*/
char* _bmStrdup(const char *string)
{
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assert(string);
size_t len = strlen(string);
if (len == 0)
return NULL;
void *copy = calloc(1, len + 1);
if (copy == NULL)
return NULL;
return (char *)memcpy(copy, string, len);
}
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/**
* Replaces next token in string with '\0' and returns position for the replaced token.
*
* @param string C "string" where token will be replaced.
* @param outNext Reference to position of next delimiter, or 0 if none.
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* @return Position of the replaced token.
*/
size_t _bmStripToken(char *string, const char *token, size_t *outNext)
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{
size_t len = strcspn(string, token);
if (outNext)
*outNext = len + (string[len] != 0);
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string[len] = 0;
return len;
}
/**
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* Portable case-insensitive strcmp.
*
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* @param hay C "string" to match against.
* @param needle C "string" to match.
* @return Less than, equal to or greater than zero if hay is lexicographically less than, equal to or greater than needle.
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*/
int _bmStrupcmp(const char *hay, const char *needle)
{
return _bmStrnupcmp(hay, needle, strlen(hay));
}
/**
* Portable case-insensitive strncmp.
*
* @param hay C "string" to match against.
* @param needle C "string" to match.
* @return Less than, equal to or greater than zero if hay is lexicographically less than, equal to or greater than needle.
*/
int _bmStrnupcmp(const char *hay, const char *needle, size_t len)
{
size_t i = 0;
unsigned char a = 0, b = 0;
const unsigned char *p1 = (const unsigned char*)hay;
const unsigned char *p2 = (const unsigned char*)needle;
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for (i = 0; len > 0; --len, ++i)
if ((a = toupper(*p1++)) != (b = toupper(*p2++)))
return a - b;
return a - b;
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}
/**
* Portable case-insensitive strstr.
*
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* @param hay C "string" to substring against.
* @param needle C "string" to substring.
*/
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char* _bmStrupstr(const char *hay, const char *needle)
{
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size_t i, r = 0, p = 0, len, len2;
if ((len = strlen(hay)) < (len2 = strlen(needle)))
return NULL;
if (!_bmStrnupcmp(hay, needle, len2))
return (char*)hay;
for (i = 0; i < len; ++i) {
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if (p == len2)
return (char*)hay + r;
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if (toupper(hay[i]) == toupper(needle[p++])) {
if (!r)
r = i;
} else {
if (r)
i = r;
r = p = 0;
}
}
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return (p == len2 ? (char*)hay + r : NULL);
}
/**
* Determite columns needed to display UTF8 string.
*
* @param string C "string" to determite.
* @return Number of columns, or -1 on failure.
*/
int _bmUtf8StringScreenWidth(const char *string)
{
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assert(string);
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char *mstr = _bmStrdup(string);
if (!mstr)
return strlen(string);
char *s;
for (s = mstr; *s; ++s) if (*s == '\t') *s = ' ';
int num_char = mbstowcs(NULL, mstr, 0) + 1;
wchar_t *wstring = malloc((num_char + 1) * sizeof (wstring[0]));
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if (mbstowcs(wstring, mstr, num_char) == (size_t)(-1)) {
free(wstring);
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int len = strlen(mstr);
free(mstr);
return len;
}
int length = wcswidth(wstring, num_char);
free(wstring);
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free(mstr);
return length;
}
/**
* Figure out how many bytes to shift to next UTF8 rune.
*
* @param string C "string" which contains the runes.
* @param start Offset where to figure out next rune. (cursor)
* @return Number of bytes to next UTF8 rune.
*/
size_t _bmUtf8RuneNext(const char *string, size_t start)
{
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assert(string);
size_t len = strlen(string), i = start;
if (len == 0 || len <= i || !*string)
return 0;
while (++i < len && (string[i] & 0xc0) == 0x80);
return i - start;
}
/**
* Figure out how many bytes to shift to previous UTF8 rune.
*
* @param string C "string" which contains the runes.
* @param start Offset where to figure out previous rune. (cursor)
* @return Number of bytes to previous UTF8 rune.
*/
size_t _bmUtf8RunePrev(const char *string, size_t start)
{
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assert(string);
size_t len = strlen(string), i = start;
if (i == 0 || len < start || !*string)
return 0;
while (--i > 0 && (string[i] & 0xc0) == 0x80);
return start - i;
}
/**
* Figure out how many columns are needed to display UTF8 rune.
*
* @param rune Buffer which contains the rune.
* @param u8len Byte length of the rune.
* @return Number of columns, or -1 on failure.
*/
size_t _bmUtf8RuneWidth(const char *rune, unsigned int u8len)
{
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assert(rune);
char mb[5] = { 0, 0, 0, 0, 0 };
memcpy(mb, rune, (u8len > 4 ? 4 : u8len));
return _bmUtf8StringScreenWidth(mb);
}
/**
* Remove previous UTF8 rune from buffer.
*
* @param string Null terminated C "string".
* @param start Start offset where to delete from. (cursor)
* @param outRuneWidth Reference to size_t, return number of columns for removed rune, or -1 on failure.
* @return Number of bytes removed from buffer.
*/
size_t _bmUtf8RuneRemove(char *string, size_t start, size_t *outRuneWidth)
{
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assert(string);
if (outRuneWidth)
*outRuneWidth = 0;
size_t len = strlen(string), oldStart = start;
if (len == 0 || len < start || !*string)
return 0;
start -= _bmUtf8RunePrev(string, start);
if (outRuneWidth)
*outRuneWidth = _bmUtf8RuneWidth(string + start, oldStart - start);
memmove(string + start, string + oldStart, len - oldStart);
string[len - (oldStart - start)] = 0;
return (oldStart - start);
}
/**
* Insert UTF8 rune to buffer.
*
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* @param inOutString Reference to buffer.
* @param inOutBufSize Reference to size of the buffer.
* @param start Start offset where to insert to. (cursor)
* @param rune Buffer to insert to string.
* @param u8len Byte length of the rune.
* @param outRuneWidth Reference to size_t, return number of columns for inserted rune, or -1 on failure.
* @return Number of bytes inserted to buffer.
*/
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size_t _bmUtf8RuneInsert(char **inOutString, size_t *inOutBufSize, size_t start, const char *rune, unsigned int u8len, size_t *outRuneWidth)
{
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assert(inOutString);
assert(inOutBufSize);
if (outRuneWidth)
*outRuneWidth = 0;
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if (u8len == 1 && !isprint(*rune))
return 0;
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size_t len = (*inOutString ? strlen(*inOutString) : 0);
if (!*inOutString && !(*inOutString = calloc(1, (*inOutBufSize = u8len + 1))))
return 0;
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if (len + u8len >= *inOutBufSize) {
void *tmp;
if (!(tmp = realloc(*inOutString, (*inOutBufSize * 2)))) {
if (!(tmp = malloc((*inOutBufSize * 2))))
return 0;
memcpy(tmp, *inOutString, *inOutBufSize);
free(*inOutString);
}
memset(tmp + *inOutBufSize, 0, *inOutBufSize);
*inOutString = tmp;
*inOutBufSize *= 2;
}
char *str = *inOutString + start;
memmove(str + u8len, str, len - start);
memcpy(str, rune, u8len);
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(*inOutString)[len + u8len] = 0;
if (outRuneWidth)
*outRuneWidth = _bmUtf8RuneWidth(rune, u8len);
return u8len;
}
/**
* Insert unicode character to UTF8 buffer.
*
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* @param inOutString Reference to buffer.
* @param inOutBufSize Reference to size of the buffer.
* @param start Start offset where to insert to. (cursor)
* @param unicode Unicode character to insert.
* @param outRuneWidth Reference to size_t, return number of columns for inserted rune, or -1 on failure.
* @return Number of bytes inserted to buffer.
*/
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size_t _bmUnicodeInsert(char **inOutString, size_t *inOutBufSize, size_t start, unsigned int unicode, size_t *outRuneWidth)
{
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assert(inOutString);
assert(inOutBufSize);
char u8len = ((unicode < 0x80) ? 1 : ((unicode < 0x800) ? 2 : ((unicode < 0x10000) ? 3 : 4)));
char mb[5] = { 0, 0, 0, 0 };
if (u8len == 1) {
mb[0] = unicode;
} else {
size_t i, j;
for (i = j = u8len; j > 1; --j) mb[j - 1] = 0x80 | (0x3F & (unicode >> ((i - j) * 6)));
mb[0] = (~0) << (8 - i);
mb[0] |= (unicode >> (i * 6 - 6));
}
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return _bmUtf8RuneInsert(inOutString, inOutBufSize, start, mb, u8len, outRuneWidth);
}
/* vim: set ts=8 sw=4 tw=0 :*/