libutf: utf8_to_chars
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@ -1,6 +1,23 @@
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#include <stdlib.h> /* size_t */
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#include <stddef.h> /* size_t */
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#include "libutf.h"
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#include "libutf.h"
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/* np is the pointer to the pointer to the next byte in a sequence. rp is the
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* location to which the read UTF-8 rune will be stored. If np doesn't point to
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* a valid UTF-8 rune, np and rp will be untouched and NULL will be returned.
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*/
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/* utf-8 bits |32 |24 |16 |8
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* U+001000 to U+10FFFF | 1111 0ZYY | 10YY XXXX | 10WW WWVV | 10VV UUUU *
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* U+000800 to U+00FFFF | 0000 0000 | 1110 XXXX | 10WW WWVV | 10VV UUUU *
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* U+000080 to U+0007FF | 0000 0000 | 0000 0000 | 110W WWVV | 10VV UUUU *
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* U+000000 to U+00007F | 0000 0000 | 0000 0000 | 0000 0000 | 0VVV UUUU */
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rune_t *
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chars_to_utf8(char **np, rune_t *rp){
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size_t b; /* expected byte size of the rune at *np */
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rune_t r;
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// for();
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return rp;
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}
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/* This is functionally equivalent to the UTF-32-specific conversion functions
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/* This is functionally equivalent to the UTF-32-specific conversion functions
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* but very slightly slower than each. */
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* but very slightly slower than each. */
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/* This operation is symmetrical; swab32(swab32(c)) will always return c. */
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/* This operation is symmetrical; swab32(swab32(c)) will always return c. */
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@ -32,6 +49,27 @@ utf8_size(rune_t c){ return
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+ ((c & 0x00000080) >> 7); /* 1B? */
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+ ((c & 0x00000080) >> 7); /* 1B? */
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}
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}
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/* s should point to a big enough memory span of chars in which to store c, a
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* (possibly invalid) UTF-8 rune. Returns a pointer to the memory location
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* after the last written byte. Returns NULL if n is not 0 and n is less than
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* the number of bytes that will be written. */
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char *
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utf8_to_chars(rune_t c, char *s, size_t n){
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size_t i;
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for(i = 0; (c & 0xFF000000) == 0 && i < 4; ++i)
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c <<= 8; /* remove leading zero bytes */
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i = 4 - i; /* bytes in this rune */
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if(n != 0 && i > n)
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return NULL;
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switch(4 - i){
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case 4: *s++ = ((c & 0xFF000000) >> 24); c <<= 8;
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case 3: *s++ = ((c & 0xFF000000) >> 24); c <<= 8;
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case 2: *s++ = ((c & 0xFF000000) >> 24); c <<= 8;
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case 1: *s++ = ((c & 0xFF000000) >> 24);
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}
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return s;
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}
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/* utf-8 bits |32 |27 |22 |14 |7
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/* utf-8 bits |32 |27 |22 |14 |7
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* U+001000 to U+10FFFF | 1111 0ZYY | 10YY XXXX | 10WW WWVV | 10VV UUUU *
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* U+001000 to U+10FFFF | 1111 0ZYY | 10YY XXXX | 10WW WWVV | 10VV UUUU *
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* U+000800 to U+00FFFF | 0000 0000 | 1110 XXXX | 10WW WWVV | 10VV UUUU *
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* U+000800 to U+00FFFF | 0000 0000 | 1110 XXXX | 10WW WWVV | 10VV UUUU *
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@ -48,7 +86,7 @@ utf8_to_utf32be(rune_t c){ return
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| (c & 0x0000007F); /* UTF-32 b 7- 1 */
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| (c & 0x0000007F); /* UTF-32 b 7- 1 */
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}
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}
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/* utf-32be bits |32 |21 |18 |12 |6
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/* utf-32be bits |32 |21 |18 |16 |12 |6
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* U+000000 to U+10FFFF | 0000 0000 | 000Z YYYY | XXXX WWWW | VVVV UUUU */
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* U+000000 to U+10FFFF | 0000 0000 | 000Z YYYY | XXXX WWWW | VVVV UUUU */
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/* utf-8 bits |32 |27 |22 |14 |7
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/* utf-8 bits |32 |27 |22 |14 |7
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* U+001000 to U+10FFFF | 1111 0ZYY | 10YY XXXX | 10WW WWVV | 10VV UUUU *
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* U+001000 to U+10FFFF | 1111 0ZYY | 10YY XXXX | 10WW WWVV | 10VV UUUU *
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@ -11,6 +11,7 @@ typedef unsigned long int rune_t;
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rune_t swab32(rune_t c);
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rune_t swab32(rune_t c);
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rune_t utf8_to_utf32be(rune_t c);
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rune_t utf8_to_utf32be(rune_t c);
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char *utf8_to_chars(rune_t c, char *s, size_t n);
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rune_t utf32be_to_utf8(rune_t c, size_t m);
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rune_t utf32be_to_utf8(rune_t c, size_t m);
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rune_t utf32be_to_utf32le(rune_t c);
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rune_t utf32be_to_utf32le(rune_t c);
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rune_t utf32le_to_utf32be(rune_t c);
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rune_t utf32le_to_utf32be(rune_t c);
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