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/*
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS HEADER.
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*
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* Copyright 2016 Olaf Wintermann. All rights reserved.
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*
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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 are met:
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*
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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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*
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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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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*/
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/**
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* Bounded string implementation.
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*
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* The UCX strings (<code>sstr_t</code>) provide an alternative to C strings.
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* The main difference to C strings is, that <code>sstr_t</code> does <b>not
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* need to be <code>NULL</code>-terminated</b>. Instead the length is stored
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* within the structure.
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*
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* When using <code>sstr_t</code>, developers must be full aware of what type
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* of string (<code>NULL</code>-terminated) or not) they are using, when
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* accessing the <code>char* ptr</code> directly.
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*
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* The UCX string module provides some common string functions, known from
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* standard libc, working with <code>sstr_t</code>.
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*
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* @file string.h
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* @author Mike Becker
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* @author Olaf Wintermann
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*/
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#ifndef UCX_STRING_H
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#define UCX_STRING_H
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#include "ucx.h"
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#include "allocator.h"
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#include <stddef.h>
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/** Shortcut for a <code>sstr_t struct</code> literal. */
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#define ST(s) { (char*)s, sizeof(s)-1 }
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/** Shortcut for the conversion of a C string to a <code>sstr_t</code>. */
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#define S(s) sstrn((char*)s, sizeof(s)-1)
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#ifdef __cplusplus
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extern "C" {
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#endif
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/**
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* The UCX string structure.
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*/
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typedef struct {
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/** A reference to the string (<b>not necessarily <code>NULL</code>
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* -terminated</b>) */
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char *ptr;
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/** The length of the string */
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size_t length;
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} sstr_t;
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/**
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* Creates a new sstr_t based on a C string.
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*
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* The length is implicitly inferred by using a call to <code>strlen()</code>.
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*
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* <b>Note:</b> the sstr_t will hold a <i>reference</i> to the C string. If you
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* do want a copy, use sstrdup() on the return value of this function.
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*
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* @param cstring the C string to wrap
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* @return a new sstr_t containing the C string
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*
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* @see sstrn()
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*/
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sstr_t sstr(char *cstring);
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* Creates a new sstr_t of the specified length based on a C string.
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*
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* <b>Note:</b> the sstr_t will hold a <i>reference</i> to the C string. If you
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*
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* @param cstring the C string to wrap
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* @param length the length of the string
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* @return a new sstr_t containing the C string
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*
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* @see sstr()
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* @see S()
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*/
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sstr_t sstrn(char *cstring, size_t length);
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/**
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* Returns the cumulated length of all specified strings.
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*
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* At least one string must be specified.
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*
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* <b>Attention:</b> if the count argument does not match the count of the
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* specified strings, the behavior is undefined.
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*
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* @param count the total number of specified strings (so at least 1)
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* @param string the first string
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* @param ... all other strings
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* @return the cumulated length of all strings
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*/
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size_t sstrnlen(size_t count, sstr_t string, ...);
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/**
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* Concatenates two or more strings.
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*
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* The resulting string will be allocated by standard <code>malloc()</code>.
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* So developers <b>MUST</b> pass the sstr_t.ptr to <code>free()</code>.
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*
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* terminated.
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*/
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sstr_t sstrcat(size_t count, sstr_t s1, sstr_t s2, ...);
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/**
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* Concatenates two or more strings using a UcxAllocator.
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*
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* See sstrcat() for details.
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*
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* @param a the allocator to use
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* @param count the total number of strings to concatenate
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* @param s1 first string
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* @param s2 second string
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* @param ... all remaining strings
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* @return the concatenated string
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*/
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sstr_t sstrcat_a(UcxAllocator *a, size_t count, sstr_t s1, sstr_t s2, ...);
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/**
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* Returns a substring starting at the specified location.
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*
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* <b>Attention:</b> the new string references the same memory area as the
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* input string and will <b>NOT</b> be <code>NULL</code>-terminated.
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* Use sstrdup() to get a copy.
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*
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* @param string input string
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* @param start start location of the substring
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* @return a substring of <code>string</code> starting at <code>start</code>
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*
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* @see sstrsubsl()
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* @see sstrchr()
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*/
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sstr_t sstrsubs(sstr_t string, size_t start);
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/**
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* Returns a substring with a maximum length starting at the specified location.
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*
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* <b>Attention:</b> the new string references the same memory area as the
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* input string and will <b>NOT</b> be <code>NULL</code>-terminated.
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* Use sstrdup() to get a copy.
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*
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* @param string input string
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* @param start start location of the substring
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* @param length the maximum length of the substring
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* @return a substring of <code>string</code> starting at <code>start</code>
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* with a maximum length of <code>length</code>
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*
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* @see sstrsubs()
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* @see sstrchr()
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*/
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sstr_t sstrsubsl(sstr_t string, size_t start, size_t length);
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/**
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* Returns a substring starting at the location of the first occurrence of the
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* specified character.
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*
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* If the string does not contain the character, an empty string is returned.
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*
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* @param string the string where to locate the character
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* @param chr the character to locate
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|
* @return a substring starting at the first location of <code>chr</code>
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*
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* @see sstrsubs()
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|
*/
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sstr_t sstrchr(sstr_t string, int chr);
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/**
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* Returns a substring starting at the location of the last occurrence of the
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* specified character.
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*
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* If the string does not contain the character, an empty string is returned.
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*
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* @param string the string where to locate the character
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* @param chr the character to locate
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|
* @return a substring starting at the last location of <code>chr</code>
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|
*
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* @see sstrsubs()
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|
*/
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|
sstr_t sstrrchr(sstr_t string, int chr);
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|
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|
/**
|
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217
|
* Returns a substring starting at the location of the first occurrence of the
|
|
218
|
* specified string.
|
|
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|
*
|
|
220
|
* If the string does not contain the other string, an empty string is returned.
|
|
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|
*
|
|
222
|
* If <code>match</code> is an empty string, the complete <code>string</code> is
|
|
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|
* returned.
|
|
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|
*
|
|
225
|
* @param string the string to be scanned
|
|
226
|
* @param match string containing the sequence of characters to match
|
|
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|
* @return a substring starting at the first occurrence of
|
|
228
|
* <code>match</code>, or an empty string, if the sequence is not
|
|
229
|
* present in <code>string</code>
|
|
230
|
*/
|
|
231
|
sstr_t sstrstr(sstr_t string, sstr_t match);
|
|
232
|
|
|
233
|
/**
|
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234
|
* Splits a string into parts by using a delimiter string.
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|
*
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236
|
* This function will return <code>NULL</code>, if one of the following happens:
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|
* <ul>
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|
* <li>the string length is zero</li>
|
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|
* <li>the delimeter length is zero</li>
|
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|
* <li>the string equals the delimeter</li>
|
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|
* <li>memory allocation fails</li>
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|
* </ul>
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|
*
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|
* The integer referenced by <code>count</code> is used as input and determines
|
99
|
245
|
* the maximum size of the resulting array, i.e. the maximum count of splits to
|
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|
* perform + 1.
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247
|
*
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248
|
* The integer referenced by <code>count</code> is also used as output and is
|
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249
|
* set to
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250
|
* <ul>
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251
|
* <li>-2, on memory allocation errors</li>
|
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|
* <li>-1, if either the string or the delimiter is an empty string</li>
|
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253
|
* <li>0, if the string equals the delimiter</li>
|
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254
|
* <li>1, if the string does not contain the delimiter</li>
|
99
|
255
|
* <li>the count of array items, otherwise</li>
|
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256
|
* </ul>
|
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|
257
|
*
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258
|
* If the string starts with the delimiter, the first item of the resulting
|
99
|
259
|
* array will be an empty string.
|
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|
260
|
*
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261
|
* If the string ends with the delimiter and the maximum list size is not
|
99
|
262
|
* exceeded, the last array item will be an empty string.
|
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|
263
|
*
|
99
|
264
|
* <b>Attention:</b> The array pointer <b>AND</b> all sstr_t.ptr of the array
|
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|
265
|
* items must be manually passed to <code>free()</code>. Use sstrsplit_a() with
|
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|
266
|
* an allocator to managed memory, to avoid this.
|
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|
267
|
*
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268
|
* @param string the string to split
|
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269
|
* @param delim the delimiter string
|
99
|
270
|
* @param count IN: the maximum size of the resulting array (0 = no limit),
|
|
271
|
* OUT: the actual size of the array
|
|
272
|
* @return a sstr_t array containing the split strings or
|
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273
|
* <code>NULL</code> on error
|
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274
|
*
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275
|
* @see sstrsplit_a()
|
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|
276
|
*/
|
99
|
277
|
sstr_t* sstrsplit(sstr_t string, sstr_t delim, ssize_t *count);
|
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|
278
|
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279
|
/**
|
135
|
280
|
* Performing sstrsplit() using a UcxAllocator.
|
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|
281
|
*
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|
282
|
* <i>Read the description of sstrsplit() for details.</i>
|
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|
283
|
*
|
99
|
284
|
* The memory for the sstr_t.ptr pointers of the array items and the memory for
|
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|
285
|
* the sstr_t array itself are allocated by using the UcxAllocator.malloc()
|
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286
|
* function.
|
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|
287
|
*
|
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|
288
|
* <b>Note:</b> the allocator is not used for memory that is freed within the
|
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|
289
|
* same call of this function (locally scoped variables).
|
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|
290
|
*
|
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|
291
|
* @param allocator the UcxAllocator used for allocating memory
|
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|
292
|
* @param string the string to split
|
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|
293
|
* @param delim the delimiter string
|
99
|
294
|
* @param count IN: the maximum size of the resulting array (0 = no limit),
|
|
295
|
* OUT: the actual size of the array
|
|
296
|
* @return a sstr_t array containing the split strings or
|
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|
297
|
* <code>NULL</code> on error
|
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|
298
|
*
|
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|
299
|
* @see sstrsplit()
|
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|
300
|
*/
|
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|
301
|
sstr_t* sstrsplit_a(UcxAllocator *allocator, sstr_t string, sstr_t delim,
|
99
|
302
|
ssize_t *count);
|
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|
303
|
|
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changeset
|
304
|
/**
|
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|
305
|
* Compares two UCX strings with standard <code>memcmp()</code>.
|
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|
306
|
*
|
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|
307
|
* At first it compares the sstr_t.length attribute of the two strings. The
|
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|
308
|
* <code>memcmp()</code> function is called, if and only if the lengths match.
|
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|
309
|
*
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|
310
|
* @param s1 the first string
|
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|
311
|
* @param s2 the second string
|
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|
312
|
* @return -1, if the length of s1 is less than the length of s2 or 1, if the
|
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|
313
|
* length of s1 is greater than the length of s2 or the result of
|
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changeset
|
314
|
* <code>memcmp()</code> otherwise (i.e. 0 if the strings match)
|
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diff
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|
315
|
*/
|
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diff
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|
316
|
int sstrcmp(sstr_t s1, sstr_t s2);
|
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|
317
|
|
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changeset
|
318
|
/**
|
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diff
changeset
|
319
|
* Compares two UCX strings ignoring the case.
|
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diff
changeset
|
320
|
*
|
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changeset
|
321
|
* At first it compares the sstr_t.length attribute of the two strings. If and
|
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|
322
|
* only if the lengths match, both strings are compared char by char ignoring
|
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parents:
diff
changeset
|
323
|
* the case.
|
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diff
changeset
|
324
|
*
|
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|
325
|
* @param s1 the first string
|
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changeset
|
326
|
* @param s2 the second string
|
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|
327
|
* @return -1, if the length of s1 is less than the length of s2 or 1, if the
|
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diff
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|
328
|
* length of s1 is greater than the length of s2 or the difference between the
|
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diff
changeset
|
329
|
* first two differing characters otherwise (i.e. 0 if the strings match and
|
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diff
changeset
|
330
|
* no characters differ)
|
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parents:
diff
changeset
|
331
|
*/
|
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parents:
diff
changeset
|
332
|
int sstrcasecmp(sstr_t s1, sstr_t s2);
|
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parents:
diff
changeset
|
333
|
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
334
|
/**
|
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parents:
diff
changeset
|
335
|
* Creates a duplicate of the specified string.
|
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parents:
diff
changeset
|
336
|
*
|
Olaf Wintermann <olaf.wintermann@gmail.com>
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diff
changeset
|
337
|
* The new sstr_t will contain a copy allocated by standard
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
338
|
* <code>malloc()</code>. So developers <b>MUST</b> pass the sstr_t.ptr to
|
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parents:
diff
changeset
|
339
|
* <code>free()</code>.
|
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parents:
diff
changeset
|
340
|
*
|
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diff
changeset
|
341
|
* The sstr_t.ptr of the return value will <i>always</i> be <code>NULL</code>-
|
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parents:
diff
changeset
|
342
|
* terminated.
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
343
|
*
|
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diff
changeset
|
344
|
* @param string the string to duplicate
|
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345
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* @return a duplicate of the string
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346
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* @see sstrdup_a()
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347
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*/
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348
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sstr_t sstrdup(sstr_t string);
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349
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350
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/**
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135
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351
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* Creates a duplicate of the specified string using a UcxAllocator.
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352
|
*
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353
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* The new sstr_t will contain a copy allocated by the allocators
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354
|
* ucx_allocator_malloc function. So it is implementation depended, whether the
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355
|
* returned sstr_t.ptr pointer must be passed to the allocators
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356
|
* ucx_allocator_free function manually.
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357
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*
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358
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* The sstr_t.ptr of the return value will <i>always</i> be <code>NULL</code>-
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359
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* terminated.
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360
|
*
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135
|
361
|
* @param allocator a valid instance of a UcxAllocator
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362
|
* @param string the string to duplicate
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363
|
* @return a duplicate of the string
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364
|
* @see sstrdup()
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365
|
*/
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366
|
sstr_t sstrdup_a(UcxAllocator *allocator, sstr_t string);
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367
|
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368
|
/**
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369
|
* Omits leading and trailing spaces.
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|
370
|
*
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371
|
* This function returns a new sstr_t containing a trimmed version of the
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372
|
* specified string.
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373
|
*
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374
|
* <b>Note:</b> the new sstr_t references the same memory, thus you
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375
|
* <b>MUST NOT</b> pass the sstr_t.ptr of the return value to
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376
|
* <code>free()</code>. It is also highly recommended to avoid assignments like
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|
377
|
* <code>mystr = sstrtrim(mystr);</code> as you lose the reference to the
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|
378
|
* source string. Assignments of this type are only permitted, if the
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379
|
* sstr_t.ptr of the source string does not need to be freed or if another
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|
380
|
* reference to the source string exists.
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|
381
|
*
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|
382
|
* @param string the string that shall be trimmed
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|
383
|
* @return a new sstr_t containing the trimmed string
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|
384
|
*/
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|
385
|
sstr_t sstrtrim(sstr_t string);
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diff
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|
386
|
|
Olaf Wintermann <olaf.wintermann@gmail.com>
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changeset
|
387
|
/**
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|
388
|
* Checks, if a string has a specific prefix.
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diff
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|
389
|
* @param string the string to check
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Olaf Wintermann <olaf.wintermann@gmail.com>
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|
390
|
* @param prefix the prefix the string should have
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Olaf Wintermann <olaf.wintermann@gmail.com>
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diff
changeset
|
391
|
* @return 1, if and only if the string has the specified prefix, 0 otherwise
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Olaf Wintermann <olaf.wintermann@gmail.com>
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diff
changeset
|
392
|
*/
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Olaf Wintermann <olaf.wintermann@gmail.com>
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diff
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|
393
|
int sstrprefix(sstr_t string, sstr_t prefix);
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Olaf Wintermann <olaf.wintermann@gmail.com>
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diff
changeset
|
394
|
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
395
|
/**
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parents:
diff
changeset
|
396
|
* Checks, if a string has a specific suffix.
|
Olaf Wintermann <olaf.wintermann@gmail.com>
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diff
changeset
|
397
|
* @param string the string to check
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
398
|
* @param suffix the suffix the string should have
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
399
|
* @return 1, if and only if the string has the specified suffix, 0 otherwise
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
400
|
*/
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Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
401
|
int sstrsuffix(sstr_t string, sstr_t suffix);
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
402
|
|
99
|
403
|
/**
|
|
404
|
* Returns a lower case version of a string.
|
|
405
|
*
|
|
406
|
* This function creates a duplicate of the input string, first. See the
|
|
407
|
* documentation of sstrdup() for the implications.
|
|
408
|
*
|
|
409
|
* @param string the input string
|
|
410
|
* @return the resulting lower case string
|
|
411
|
* @see sstrdup()
|
|
412
|
*/
|
|
413
|
sstr_t sstrlower(sstr_t string);
|
|
414
|
|
|
415
|
/**
|
|
416
|
* Returns a lower case version of a string.
|
|
417
|
*
|
|
418
|
* This function creates a duplicate of the input string, first. See the
|
|
419
|
* documentation of sstrdup_a() for the implications.
|
|
420
|
*
|
|
421
|
* @param allocator the allocator used for duplicating the string
|
|
422
|
* @param string the input string
|
|
423
|
* @return the resulting lower case string
|
|
424
|
* @see sstrdup_a()
|
|
425
|
*/
|
|
426
|
sstr_t sstrlower_a(UcxAllocator *allocator, sstr_t string);
|
|
427
|
|
|
428
|
/**
|
|
429
|
* Returns a upper case version of a string.
|
|
430
|
*
|
|
431
|
* This function creates a duplicate of the input string, first. See the
|
|
432
|
* documentation of sstrdup() for the implications.
|
|
433
|
*
|
|
434
|
* @param string the input string
|
|
435
|
* @return the resulting upper case string
|
|
436
|
* @see sstrdup()
|
|
437
|
*/
|
|
438
|
sstr_t sstrupper(sstr_t string);
|
|
439
|
|
|
440
|
/**
|
|
441
|
* Returns a upper case version of a string.
|
|
442
|
*
|
|
443
|
* This function creates a duplicate of the input string, first. See the
|
|
444
|
* documentation of sstrdup_a() for the implications.
|
|
445
|
*
|
|
446
|
* @param allocator the allocator used for duplicating the string
|
|
447
|
* @param string the input string
|
|
448
|
* @return the resulting upper case string
|
|
449
|
* @see sstrdup_a()
|
|
450
|
*/
|
|
451
|
sstr_t sstrupper_a(UcxAllocator *allocator, sstr_t string);
|
|
452
|
|
91
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parents:
diff
changeset
|
453
|
#ifdef __cplusplus
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
454
|
}
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
455
|
#endif
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
456
|
|
Olaf Wintermann <olaf.wintermann@gmail.com>
parents:
diff
changeset
|
457
|
#endif /* UCX_STRING_H */
|