546 lines
12 KiB
C
546 lines
12 KiB
C
/*
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* $Id$
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*
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Copyright (c) 2006-2019 Chung, Hyung-Hwan. All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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1. Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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THIS SOFTWARE IS PROVIDED BY THE AUTHOR "AS IS" AND ANY EXPRESS OR
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IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <qse/cmn/str.h>
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#include "mem-prv.h"
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#include "fmt-prv.h"
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#include <stdarg.h>
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str_t* str_open (qse_mmgr_t* mmgr, qse_size_t xtnsize, qse_size_t capa)
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{
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str_t* str;
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str = (str_t*) QSE_MMGR_ALLOC (mmgr, QSE_SIZEOF(str_t) + xtnsize);
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if (str)
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{
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if (str_init (str, mmgr, capa) <= -1)
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{
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QSE_MMGR_FREE (mmgr, str);
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str = QSE_NULL;
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}
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else
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{
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QSE_MEMSET (QSE_XTN(str), 0, xtnsize);
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}
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}
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return str;
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}
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void str_close (str_t* str)
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{
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str_fini (str);
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QSE_MMGR_FREE (str->mmgr, str);
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}
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int str_init (str_t* str, qse_mmgr_t* mmgr, qse_size_t capa)
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{
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QSE_MEMSET (str, 0, QSE_SIZEOF(str_t));
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str->mmgr = mmgr;
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str->sizer = QSE_NULL;
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if (capa == 0) str->val.ptr = QSE_NULL;
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else
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{
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str->val.ptr = (char_t*) QSE_MMGR_ALLOC (
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mmgr, QSE_SIZEOF(char_t) * (capa + 1));
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if (str->val.ptr == QSE_NULL) return -1;
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str->val.ptr[0] = T('\0');
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}
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str->val.len = 0;
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str->capa = capa;
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return 0;
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}
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void str_fini (str_t* str)
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{
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if (str->val.ptr) QSE_MMGR_FREE (str->mmgr, str->val.ptr);
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}
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qse_mmgr_t* str_getmmgr (str_t* mbs)
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{
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return mbs->mmgr;
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}
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void* str_getxtn (str_t* mbs)
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{
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return QSE_XTN (mbs);
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}
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int str_yield (str_t* str, cstr_t* buf, qse_size_t newcapa)
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{
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char_t* tmp;
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if (newcapa == 0) tmp = QSE_NULL;
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else
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{
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tmp = (char_t*) QSE_MMGR_ALLOC (
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str->mmgr, QSE_SIZEOF(char_t) * (newcapa + 1));
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if (tmp == QSE_NULL) return -1;
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tmp[0] = T('\0');
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}
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if (buf) *buf = str->val;
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str->val.ptr = tmp;
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str->val.len = 0;
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str->capa = newcapa;
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return 0;
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}
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char_t* str_yieldptr (str_t* str, qse_size_t newcapa)
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{
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cstr_t mx;
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if (str_yield (str, &mx, newcapa) <= -1) return QSE_NULL;
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return mx.ptr;
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}
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str_sizer_t str_getsizer (str_t* str)
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{
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return str->sizer;
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}
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void str_setsizer (str_t* str, str_sizer_t sizer)
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{
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str->sizer = sizer;
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}
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qse_size_t str_getcapa (str_t* str)
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{
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return str->capa;
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}
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qse_size_t str_setcapa (str_t* str, qse_size_t capa)
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{
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char_t* tmp;
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if (capa == str->capa) return capa;
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if (str->mmgr->realloc != QSE_NULL && str->val.ptr != QSE_NULL)
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{
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tmp = (char_t*) QSE_MMGR_REALLOC (
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str->mmgr, str->val.ptr,
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QSE_SIZEOF(char_t)*(capa+1));
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if (tmp == QSE_NULL) return (qse_size_t)-1;
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}
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else
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{
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tmp = (char_t*) QSE_MMGR_ALLOC (
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str->mmgr, QSE_SIZEOF(char_t)*(capa+1));
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if (tmp == QSE_NULL) return (qse_size_t)-1;
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if (str->val.ptr)
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{
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qse_size_t ncopy = (str->val.len <= capa)? str->val.len: capa;
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QSE_MEMCPY (tmp, str->val.ptr,
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QSE_SIZEOF(char_t)*(ncopy+1));
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QSE_MMGR_FREE (str->mmgr, str->val.ptr);
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}
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}
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if (capa < str->val.len)
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{
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str->val.len = capa;
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tmp[capa] = T('\0');
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}
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str->capa = capa;
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str->val.ptr = tmp;
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return str->capa;
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}
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qse_size_t str_getlen (str_t* str)
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{
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return STR_LEN(str);
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}
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qse_size_t str_setlen (str_t* str, qse_size_t len)
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{
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if (len == str->val.len) return len;
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if (len < str->val.len)
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{
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str->val.len = len;
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str->val.ptr[len] = T('\0');
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return len;
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}
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if (len > str->capa)
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{
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if (str_setcapa(str, len) == (qse_size_t)-1) return (qse_size_t)-1;
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}
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while (str->val.len < len) str->val.ptr[str->val.len++] = T(' ');
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str->val.ptr[str->val.len] = T('\0');
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return str->val.len;
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}
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void str_clear (str_t* str)
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{
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str->val.len = 0;
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if (str->val.ptr)
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{
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QSE_ASSERT (str->capa >= 1);
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str->val.ptr[0] = T('\0');
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}
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}
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void str_swap (str_t* str, str_t* str1)
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{
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str_t tmp;
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tmp.val.ptr = str->val.ptr;
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tmp.val.len = str->val.len;
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tmp.capa = str->capa;
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tmp.mmgr = str->mmgr;
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str->val.ptr = str1->val.ptr;
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str->val.len = str1->val.len;
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str->capa = str1->capa;
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str->mmgr = str1->mmgr;
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str1->val.ptr = tmp.val.ptr;
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str1->val.len = tmp.val.len;
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str1->capa = tmp.capa;
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str1->mmgr = tmp.mmgr;
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}
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qse_size_t str_cpy (str_t* str, const char_t* s)
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{
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/* TODO: improve it */
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return str_ncpy (str, s, strlen(s));
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}
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qse_size_t str_ncpy (str_t* str, const char_t* s, qse_size_t len)
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{
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if (len > str->capa || str->capa <= 0)
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{
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qse_size_t tmp;
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/* if the current capacity is 0 and the string len to copy is 0
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* we can't simply pass 'len' as the new capapcity.
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* str_setcapa() won't do anything the current capacity of 0
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* is the same as new capacity required. note that when str->capa
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* is 0, str->val.ptr is QSE_NULL. However, this is copying operation.
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* Copying a zero-length string may indicate that str->val.ptr must
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* not be QSE_NULL. so I simply pass 1 as the new capacity */
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tmp = str_setcapa (
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str, ((str->capa <= 0 && len <= 0)? 1: len)
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);
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if (tmp == (qse_size_t)-1) return (qse_size_t)-1;
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}
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QSE_MEMCPY (&str->val.ptr[0], s, len*QSE_SIZEOF(*s));
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str->val.ptr[len] = T('\0');
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str->val.len = len;
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return len;
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#if 0
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str->val.len = strncpy (str->val.ptr, s, len);
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/*str->val.ptr[str->val.len] = T('\0'); -> mbsncpy does this*/
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return str->val.len;
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#endif
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}
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qse_size_t str_cat (str_t* str, const char_t* s)
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{
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/* TODO: improve it */
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return str_ncat (str, s, strlen(s));
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}
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static int resize_for_ncat (str_t* str, qse_size_t len)
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{
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if (len > str->capa - str->val.len)
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{
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qse_size_t ncapa, mincapa;
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/* let the minimum capacity be as large as
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* to fit in the new substring */
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mincapa = str->val.len + len;
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if (str->sizer == QSE_NULL)
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{
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/* increase the capacity by the length to add */
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ncapa = mincapa;
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/* if the new capacity is less than the double,
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* just double it */
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if (ncapa < str->capa * 2) ncapa = str->capa * 2;
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}
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else
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{
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/* let the user determine the new capacity.
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* pass the minimum capacity required as a hint */
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ncapa = str->sizer(str, mincapa);
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/* if no change in capacity, return current length */
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if (ncapa == str->capa) return 0;
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}
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/* change the capacity */
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do
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{
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if (str_setcapa(str, ncapa) != (qse_size_t)-1) break;
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if (ncapa <= mincapa) return -1;
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ncapa--;
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}
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while (1);
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}
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else if (str->capa <= 0 && len <= 0)
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{
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QSE_ASSERT (str->val.ptr == QSE_NULL);
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QSE_ASSERT (str->val.len <= 0);
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if (str_setcapa(str, 1) == (qse_size_t)-1) return -1;
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}
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return 1;
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}
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qse_size_t str_ncat (str_t* str, const char_t* s, qse_size_t len)
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{
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int n;
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qse_size_t i, j;
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n = resize_for_ncat(str, len);
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if (n <= -1) return (qse_size_t)-1;
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if (n == 0) return str->val.len;
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if (len > str->capa - str->val.len)
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{
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/* copy as many characters as the number of cells available.
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* if the capacity has been decreased, len is adjusted here */
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len = str->capa - str->val.len;
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}
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/*
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QSE_MEMCPY (&str->val.ptr[str->val.len], s, len*QSE_SIZEOF(*s));
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str->val.len += len;
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str->val.ptr[str->val.len] = T('\0');
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*/
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for (i = 0, j = str->val.len ; i < len; j++, i++) str->val.ptr[j] = s[i];
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str->val.ptr[j] = T('\0');
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str->val.len = j;
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return str->val.len;
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}
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qse_size_t str_nrcat (str_t* str, const char_t* s, qse_size_t len)
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{
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int n;
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qse_size_t i, j;
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n = resize_for_ncat(str, len);
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if (n <= -1) return (qse_size_t)-1;
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if (n == 0) return str->val.len;
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if (len > str->capa - str->val.len) len = str->capa - str->val.len;
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for (i = len, j = str->val.len ; i > 0; j++) str->val.ptr[j] = s[--i];
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str->val.ptr[j] = T('\0');
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str->val.len = j;
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return str->val.len;
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}
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qse_size_t str_ccat (str_t* str, char_t c)
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{
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return str_ncat (str, &c, 1);
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}
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qse_size_t str_nccat (str_t* str, char_t c, qse_size_t len)
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{
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while (len > 0)
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{
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if (str_ncat (str, &c, 1) == (qse_size_t)-1)
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{
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return (qse_size_t)-1;
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}
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len--;
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}
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return str->val.len;
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}
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qse_size_t str_del (str_t* str, qse_size_t index, qse_size_t size)
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{
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if (str->val.ptr && index < str->val.len && size > 0)
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{
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qse_size_t nidx = index + size;
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if (nidx >= str->val.len)
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{
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str->val.ptr[index] = T('\0');
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str->val.len = index;
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}
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else
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{
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strncpy (
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&str->val.ptr[index], &str->val.ptr[nidx],
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str->val.len - nidx);
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str->val.len -= size;
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}
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}
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return str->val.len;
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}
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qse_size_t str_amend (str_t* str, qse_size_t pos, qse_size_t len, const char_t* repl)
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{
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qse_size_t max_len;
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qse_size_t repl_len = strlen(repl);
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if (pos >= str->val.len) pos = str->val.len;
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max_len = str->val.len - pos;
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if (len > max_len) len = max_len;
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if (len > repl_len)
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{
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str_del (str, pos, len - repl_len);
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}
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else if (len < repl_len)
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{
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qse_size_t old_str_len = str->val.len;
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if (str_setlen (str, str->val.len + repl_len - len) == (qse_size_t)-1) return (qse_size_t)-1;
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QSE_MEMMOVE (&str->val.ptr[pos + repl_len], &str->val.ptr[pos + len], QSE_SIZEOF(*repl) * (old_str_len - (pos + len)));
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}
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if (repl_len > 0) QSE_MEMMOVE (&str->val.ptr[pos], repl, QSE_SIZEOF(*repl) * repl_len);
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return str->val.len;
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}
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qse_size_t str_trm (str_t* str)
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{
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if (str->val.ptr)
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{
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str->val.len = strxtrm (str->val.ptr, str->val.len);
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}
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return str->val.len;
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}
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qse_size_t str_pac (str_t* str)
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{
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if (str->val.ptr)
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{
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str->val.len = strxpac (str->val.ptr, str->val.len);
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}
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return str->val.len;
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}
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qse_size_t str_vfcat (str_t* str, const char_t* fmt, va_list ap)
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{
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va_list orgap;
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fmtout_t fo;
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int x;
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qse_size_t old_len;
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old_len = str->val.len;
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fo.limit = QSE_TYPE_MAX(qse_size_t) - 1;
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fo.ctx = str;
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fo.put = str->val.ptr? put_char_check: put_char_null;
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fo.conv = conv_char;
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va_copy (orgap, ap);
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x = fmtout (fmt, &fo, ap);
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if (x <= -1)
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{
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str->val.len = old_len;
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return (qse_size_t)-1;
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}
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if (str->val.ptr == QSE_NULL || str->val.len - old_len < fo.count)
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{
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str->val.len = old_len;
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/* resizing is required */
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x = resize_for_ncat(str, fo.count);
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if (x <= -1) return (qse_size_t)-1;
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if (x >= 1)
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{
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fo.put = put_char_nocheck;
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x = fmtout (fmt, &fo, orgap);
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}
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}
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str->val.ptr[str->val.len] = T('\0');
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return str->val.len;
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}
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qse_size_t str_fcat (str_t* str, const char_t* fmt, ...)
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{
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qse_size_t x;
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va_list ap;
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va_start (ap, fmt);
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x = str_vfcat (str, fmt, ap);
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va_end (ap);
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return x;
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}
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qse_size_t str_vfmt (str_t* str, const char_t* fmt, va_list ap)
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{
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int x;
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fmtout_t fo;
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va_list orgap;
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fo.limit = QSE_TYPE_MAX(qse_size_t) - 1;
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fo.ctx = str;
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fo.put = put_char_null;
|
|
fo.conv = conv_char;
|
|
|
|
va_copy (orgap, ap);
|
|
if (fmtout (fmt, &fo, ap) <= -1) return (qse_size_t)-1;
|
|
|
|
str_clear (str);
|
|
x = resize_for_ncat(str, fo.count);
|
|
|
|
if (x <= -1) return (qse_size_t)-1;
|
|
if (x >= 1)
|
|
{
|
|
fo.put = put_char_nocheck;
|
|
x = fmtout (fmt, &fo, orgap);
|
|
}
|
|
|
|
str->val.ptr[str->val.len] = T('\0');
|
|
return str->val.len;
|
|
}
|
|
|
|
qse_size_t str_fmt (str_t* str, const char_t* fmt, ...)
|
|
{
|
|
qse_size_t x;
|
|
va_list ap;
|
|
|
|
va_start (ap, fmt);
|
|
x = str_vfmt (str, fmt, ap);
|
|
va_end (ap);
|
|
|
|
return x;
|
|
}
|