1 1.1 darran /* 2 1.1 darran * CDDL HEADER START 3 1.1 darran * 4 1.1 darran * The contents of this file are subject to the terms of the 5 1.1 darran * Common Development and Distribution License (the "License"). 6 1.1 darran * You may not use this file except in compliance with the License. 7 1.1 darran * 8 1.1 darran * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9 1.1 darran * or http://www.opensolaris.org/os/licensing. 10 1.1 darran * See the License for the specific language governing permissions 11 1.1 darran * and limitations under the License. 12 1.1 darran * 13 1.1 darran * When distributing Covered Code, include this CDDL HEADER in each 14 1.1 darran * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15 1.1 darran * If applicable, add the following below this CDDL HEADER, with the 16 1.1 darran * fields enclosed by brackets "[]" replaced with your own identifying 17 1.1 darran * information: Portions Copyright [yyyy] [name of copyright owner] 18 1.1 darran * 19 1.1 darran * CDDL HEADER END 20 1.1 darran */ 21 1.1 darran 22 1.1 darran /* 23 1.1 darran * Copyright 2006 Sun Microsystems, Inc. All rights reserved. 24 1.1 darran * Use is subject to license terms. 25 1.1 darran */ 26 1.1 darran 27 1.1.1.2 chs /* 28 1.1.1.2 chs * Portions Copyright 2016 Pedro Giffuni. All rights reserved. 29 1.1.1.2 chs */ 30 1.1.1.2 chs 31 1.1 darran #pragma ident "%Z%%M% %I% %E% SMI" 32 1.1 darran 33 1.1 darran #include <sys/types.h> 34 1.1 darran #include <sys/sysmacros.h> 35 1.1 darran #include <strings.h> 36 1.1 darran #include <stdlib.h> 37 1.1 darran #include <assert.h> 38 1.1 darran 39 1.1 darran #include <dt_strtab.h> 40 1.1 darran #include <dt_impl.h> 41 1.1 darran 42 1.1 darran static int 43 1.1 darran dt_strtab_grow(dt_strtab_t *sp) 44 1.1 darran { 45 1.1 darran char *ptr, **bufs; 46 1.1 darran 47 1.1 darran if ((ptr = malloc(sp->str_bufsz)) == NULL) 48 1.1 darran return (-1); 49 1.1 darran 50 1.1 darran bufs = realloc(sp->str_bufs, (sp->str_nbufs + 1) * sizeof (char *)); 51 1.1 darran 52 1.1 darran if (bufs == NULL) { 53 1.1 darran free(ptr); 54 1.1 darran return (-1); 55 1.1 darran } 56 1.1 darran 57 1.1 darran sp->str_nbufs++; 58 1.1 darran sp->str_bufs = bufs; 59 1.1 darran sp->str_ptr = ptr; 60 1.1 darran sp->str_bufs[sp->str_nbufs - 1] = sp->str_ptr; 61 1.1 darran 62 1.1 darran return (0); 63 1.1 darran } 64 1.1 darran 65 1.1 darran dt_strtab_t * 66 1.1 darran dt_strtab_create(size_t bufsz) 67 1.1 darran { 68 1.1 darran dt_strtab_t *sp = malloc(sizeof (dt_strtab_t)); 69 1.1 darran uint_t nbuckets = _dtrace_strbuckets; 70 1.1 darran 71 1.1 darran assert(bufsz != 0); 72 1.1 darran 73 1.1 darran if (sp == NULL) 74 1.1 darran return (NULL); 75 1.1 darran 76 1.1 darran bzero(sp, sizeof (dt_strtab_t)); 77 1.1.1.2 chs sp->str_hash = calloc(nbuckets, sizeof (dt_strhash_t *)); 78 1.1 darran 79 1.1 darran if (sp->str_hash == NULL) 80 1.1 darran goto err; 81 1.1 darran 82 1.1 darran sp->str_hashsz = nbuckets; 83 1.1 darran sp->str_bufs = NULL; 84 1.1 darran sp->str_ptr = NULL; 85 1.1 darran sp->str_nbufs = 0; 86 1.1 darran sp->str_bufsz = bufsz; 87 1.1 darran sp->str_nstrs = 1; 88 1.1 darran sp->str_size = 1; 89 1.1 darran 90 1.1 darran if (dt_strtab_grow(sp) == -1) 91 1.1 darran goto err; 92 1.1 darran 93 1.1 darran *sp->str_ptr++ = '\0'; 94 1.1 darran return (sp); 95 1.1 darran 96 1.1 darran err: 97 1.1 darran dt_strtab_destroy(sp); 98 1.1 darran return (NULL); 99 1.1 darran } 100 1.1 darran 101 1.1 darran void 102 1.1 darran dt_strtab_destroy(dt_strtab_t *sp) 103 1.1 darran { 104 1.1 darran dt_strhash_t *hp, *hq; 105 1.1 darran ulong_t i; 106 1.1 darran 107 1.1 darran for (i = 0; i < sp->str_hashsz; i++) { 108 1.1 darran for (hp = sp->str_hash[i]; hp != NULL; hp = hq) { 109 1.1 darran hq = hp->str_next; 110 1.1 darran free(hp); 111 1.1 darran } 112 1.1 darran } 113 1.1 darran 114 1.1 darran for (i = 0; i < sp->str_nbufs; i++) 115 1.1 darran free(sp->str_bufs[i]); 116 1.1 darran 117 1.1 darran if (sp->str_hash != NULL) 118 1.1 darran free(sp->str_hash); 119 1.1 darran if (sp->str_bufs != NULL) 120 1.1 darran free(sp->str_bufs); 121 1.1 darran 122 1.1 darran free(sp); 123 1.1 darran } 124 1.1 darran 125 1.1 darran ulong_t 126 1.1 darran dt_strtab_hash(const char *key, size_t *len) 127 1.1 darran { 128 1.1 darran ulong_t g, h = 0; 129 1.1 darran const char *p; 130 1.1 darran size_t n = 0; 131 1.1 darran 132 1.1 darran for (p = key; *p != '\0'; p++, n++) { 133 1.1 darran h = (h << 4) + *p; 134 1.1 darran 135 1.1 darran if ((g = (h & 0xf0000000)) != 0) { 136 1.1 darran h ^= (g >> 24); 137 1.1 darran h ^= g; 138 1.1 darran } 139 1.1 darran } 140 1.1 darran 141 1.1 darran if (len != NULL) 142 1.1 darran *len = n; 143 1.1 darran 144 1.1 darran return (h); 145 1.1 darran } 146 1.1 darran 147 1.1 darran static int 148 1.1 darran dt_strtab_compare(dt_strtab_t *sp, dt_strhash_t *hp, 149 1.1 darran const char *str, size_t len) 150 1.1 darran { 151 1.1 darran ulong_t b = hp->str_buf; 152 1.1 darran const char *buf = hp->str_data; 153 1.1 darran size_t resid, n; 154 1.1 darran int rv; 155 1.1 darran 156 1.1 darran while (len != 0) { 157 1.1 darran if (buf == sp->str_bufs[b] + sp->str_bufsz) 158 1.1 darran buf = sp->str_bufs[++b]; 159 1.1 darran 160 1.1 darran resid = sp->str_bufs[b] + sp->str_bufsz - buf; 161 1.1 darran n = MIN(resid, len); 162 1.1 darran 163 1.1 darran if ((rv = strncmp(buf, str, n)) != 0) 164 1.1 darran return (rv); 165 1.1 darran 166 1.1 darran buf += n; 167 1.1 darran str += n; 168 1.1 darran len -= n; 169 1.1 darran } 170 1.1 darran 171 1.1 darran return (0); 172 1.1 darran } 173 1.1 darran 174 1.1 darran static int 175 1.1 darran dt_strtab_copyin(dt_strtab_t *sp, const char *str, size_t len) 176 1.1 darran { 177 1.1 darran char *old_p = sp->str_ptr; 178 1.1 darran ulong_t old_n = sp->str_nbufs; 179 1.1 darran 180 1.1 darran ulong_t b = sp->str_nbufs - 1; 181 1.1 darran size_t resid, n; 182 1.1 darran 183 1.1 darran while (len != 0) { 184 1.1 darran if (sp->str_ptr == sp->str_bufs[b] + sp->str_bufsz) { 185 1.1 darran if (dt_strtab_grow(sp) == -1) 186 1.1 darran goto err; 187 1.1 darran b++; 188 1.1 darran } 189 1.1 darran 190 1.1 darran resid = sp->str_bufs[b] + sp->str_bufsz - sp->str_ptr; 191 1.1 darran n = MIN(resid, len); 192 1.1 darran bcopy(str, sp->str_ptr, n); 193 1.1 darran 194 1.1 darran sp->str_ptr += n; 195 1.1 darran str += n; 196 1.1 darran len -= n; 197 1.1 darran } 198 1.1 darran 199 1.1 darran return (0); 200 1.1 darran 201 1.1 darran err: 202 1.1 darran while (sp->str_nbufs != old_n) 203 1.1 darran free(sp->str_bufs[--sp->str_nbufs]); 204 1.1 darran 205 1.1 darran sp->str_ptr = old_p; 206 1.1 darran return (-1); 207 1.1 darran } 208 1.1 darran 209 1.1 darran ssize_t 210 1.1 darran dt_strtab_index(dt_strtab_t *sp, const char *str) 211 1.1 darran { 212 1.1 darran dt_strhash_t *hp; 213 1.1 darran size_t len; 214 1.1 darran ulong_t h; 215 1.1 darran 216 1.1 darran if (str == NULL || str[0] == '\0') 217 1.1 darran return (0); /* we keep a \0 at offset 0 to simplify things */ 218 1.1 darran 219 1.1 darran h = dt_strtab_hash(str, &len) % sp->str_hashsz; 220 1.1 darran 221 1.1 darran for (hp = sp->str_hash[h]; hp != NULL; hp = hp->str_next) { 222 1.1 darran if (dt_strtab_compare(sp, hp, str, len + 1) == 0) 223 1.1 darran return (hp->str_off); 224 1.1 darran } 225 1.1 darran 226 1.1 darran return (-1); 227 1.1 darran } 228 1.1 darran 229 1.1 darran ssize_t 230 1.1 darran dt_strtab_insert(dt_strtab_t *sp, const char *str) 231 1.1 darran { 232 1.1 darran dt_strhash_t *hp; 233 1.1 darran size_t len; 234 1.1 darran ssize_t off; 235 1.1 darran ulong_t h; 236 1.1 darran 237 1.1 darran if ((off = dt_strtab_index(sp, str)) != -1) 238 1.1 darran return (off); 239 1.1 darran 240 1.1 darran h = dt_strtab_hash(str, &len) % sp->str_hashsz; 241 1.1 darran 242 1.1 darran /* 243 1.1 darran * Create a new hash bucket, initialize it, and insert it at the front 244 1.1 darran * of the hash chain for the appropriate bucket. 245 1.1 darran */ 246 1.1 darran if ((hp = malloc(sizeof (dt_strhash_t))) == NULL) 247 1.1 darran return (-1L); 248 1.1 darran 249 1.1 darran hp->str_data = sp->str_ptr; 250 1.1 darran hp->str_buf = sp->str_nbufs - 1; 251 1.1 darran hp->str_off = sp->str_size; 252 1.1 darran hp->str_len = len; 253 1.1 darran hp->str_next = sp->str_hash[h]; 254 1.1 darran 255 1.1 darran /* 256 1.1 darran * Now copy the string data into our buffer list, and then update 257 1.1 darran * the global counts of strings and bytes. Return str's byte offset. 258 1.1 darran */ 259 1.1.1.2 chs if (dt_strtab_copyin(sp, str, len + 1) == -1) { 260 1.1.1.2 chs free(hp); 261 1.1 darran return (-1L); 262 1.1.1.2 chs } 263 1.1 darran 264 1.1 darran sp->str_nstrs++; 265 1.1 darran sp->str_size += len + 1; 266 1.1 darran sp->str_hash[h] = hp; 267 1.1 darran 268 1.1 darran return (hp->str_off); 269 1.1 darran } 270 1.1 darran 271 1.1 darran size_t 272 1.1 darran dt_strtab_size(const dt_strtab_t *sp) 273 1.1 darran { 274 1.1 darran return (sp->str_size); 275 1.1 darran } 276 1.1 darran 277 1.1 darran ssize_t 278 1.1 darran dt_strtab_write(const dt_strtab_t *sp, dt_strtab_write_f *func, void *private) 279 1.1 darran { 280 1.1 darran ssize_t res, total = 0; 281 1.1 darran ulong_t i; 282 1.1 darran size_t n; 283 1.1 darran 284 1.1 darran for (i = 0; i < sp->str_nbufs; i++, total += res) { 285 1.1 darran if (i == sp->str_nbufs - 1) 286 1.1 darran n = sp->str_ptr - sp->str_bufs[i]; 287 1.1 darran else 288 1.1 darran n = sp->str_bufsz; 289 1.1 darran 290 1.1 darran if ((res = func(sp->str_bufs[i], n, total, private)) <= 0) 291 1.1 darran break; 292 1.1 darran } 293 1.1 darran 294 1.1 darran if (total == 0 && sp->str_size != 0) 295 1.1 darran return (-1); 296 1.1 darran 297 1.1 darran return (total); 298 1.1 darran } 299