1#ifndef STRBUF_H 2#define STRBUF_H 3 4/* 5 * Strbuf's can be use in many ways: as a byte array, or to store arbitrary 6 * long, overflow safe strings. 7 * 8 * Strbufs has some invariants that are very important to keep in mind: 9 * 10 * 1. the ->buf member is always malloc-ed, hence strbuf's can be used to 11 * build complex strings/buffers whose final size isn't easily known. 12 * 13 * It is legal to copy the ->buf pointer away. Though if you want to reuse 14 * the strbuf after that, setting ->buf to NULL isn't legal. 15 * `strbuf_detach' is the operation that detachs a buffer from its shell 16 * while keeping the shell valid wrt its invariants. 17 * 18 * 2. the ->buf member is a byte array that has at least ->len + 1 bytes 19 * allocated. The extra byte is used to store a '\0', allowing the ->buf 20 * member to be a valid C-string. Every strbuf function ensure this 21 * invariant is preserved. 22 * 23 * Note that it is OK to "play" with the buffer directly if you work it 24 * that way: 25 * 26 * strbuf_grow(sb, SOME_SIZE); 27 * // ... here the memory areay starting at sb->buf, and of length 28 * // sb_avail(sb) is all yours, and you are sure that sb_avail(sb) is at 29 * // least SOME_SIZE 30 * strbuf_setlen(sb, sb->len + SOME_OTHER_SIZE); 31 * 32 * Of course, SOME_OTHER_SIZE must be smaller or equal to sb_avail(sb). 33 * 34 * Doing so is safe, though if it has to be done in many places, adding the 35 * missing API to the strbuf module is the way to go. 36 * 37 * XXX: do _not_ assume that the area that is yours is of size ->alloc - 1 38 * even if it's true in the current implementation. Alloc is somehow a 39 * "private" member that should not be messed with. 40 */ 41 42#include <assert.h> 43 44struct strbuf { 45size_t alloc; 46size_t len; 47char*buf; 48}; 49 50#define STRBUF_INIT { 0, 0, NULL } 51 52/*----- strbuf life cycle -----*/ 53externvoidstrbuf_init(struct strbuf *,size_t); 54externvoidstrbuf_release(struct strbuf *); 55externvoidstrbuf_reset(struct strbuf *); 56externchar*strbuf_detach(struct strbuf *); 57externvoidstrbuf_attach(struct strbuf *,void*,size_t,size_t); 58staticinlinevoidstrbuf_swap(struct strbuf *a,struct strbuf *b) { 59struct strbuf tmp = *a; 60*a = *b; 61*b = tmp; 62} 63 64/*----- strbuf size related -----*/ 65staticinlinesize_tstrbuf_avail(struct strbuf *sb) { 66return sb->alloc ? sb->alloc - sb->len -1:0; 67} 68 69externvoidstrbuf_grow(struct strbuf *,size_t); 70 71staticinlinevoidstrbuf_setlen(struct strbuf *sb,size_t len) { 72if(!sb->alloc) 73strbuf_grow(sb,0); 74assert(len < sb->alloc); 75 sb->len = len; 76 sb->buf[len] ='\0'; 77} 78 79/*----- content related -----*/ 80externvoidstrbuf_rtrim(struct strbuf *); 81 82/*----- add data in your buffer -----*/ 83staticinlinevoidstrbuf_addch(struct strbuf *sb,int c) { 84strbuf_grow(sb,1); 85 sb->buf[sb->len++] = c; 86 sb->buf[sb->len] ='\0'; 87} 88 89externvoidstrbuf_insert(struct strbuf *,size_t pos,const void*,size_t); 90externvoidstrbuf_remove(struct strbuf *,size_t pos,size_t len); 91 92/* splice pos..pos+len with given data */ 93externvoidstrbuf_splice(struct strbuf *,size_t pos,size_t len, 94const void*,size_t); 95 96externvoidstrbuf_add(struct strbuf *,const void*,size_t); 97staticinlinevoidstrbuf_addstr(struct strbuf *sb,const char*s) { 98strbuf_add(sb, s,strlen(s)); 99} 100staticinlinevoidstrbuf_addbuf(struct strbuf *sb,struct strbuf *sb2) { 101strbuf_add(sb, sb2->buf, sb2->len); 102} 103 104__attribute__((format(printf,2,3))) 105externvoidstrbuf_addf(struct strbuf *sb,const char*fmt, ...); 106 107externsize_tstrbuf_fread(struct strbuf *,size_t,FILE*); 108/* XXX: if read fails, any partial read is undone */ 109extern ssize_t strbuf_read(struct strbuf *,int fd,size_t hint); 110 111externintstrbuf_getline(struct strbuf *,FILE*,int); 112 113#endif/* STRBUF_H */