libnvpair.c revision 1.1.1.1 1 1.1 haad /*
2 1.1 haad * CDDL HEADER START
3 1.1 haad *
4 1.1 haad * The contents of this file are subject to the terms of the
5 1.1 haad * Common Development and Distribution License (the "License").
6 1.1 haad * You may not use this file except in compliance with the License.
7 1.1 haad *
8 1.1 haad * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 1.1 haad * or http://www.opensolaris.org/os/licensing.
10 1.1 haad * See the License for the specific language governing permissions
11 1.1 haad * and limitations under the License.
12 1.1 haad *
13 1.1 haad * When distributing Covered Code, include this CDDL HEADER in each
14 1.1 haad * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 1.1 haad * If applicable, add the following below this CDDL HEADER, with the
16 1.1 haad * fields enclosed by brackets "[]" replaced with your own identifying
17 1.1 haad * information: Portions Copyright [yyyy] [name of copyright owner]
18 1.1 haad *
19 1.1 haad * CDDL HEADER END
20 1.1 haad */
21 1.1 haad /*
22 1.1 haad * Copyright 2008 Sun Microsystems, Inc. All rights reserved.
23 1.1 haad * Use is subject to license terms.
24 1.1 haad */
25 1.1 haad
26 1.1 haad #pragma ident "%Z%%M% %I% %E% SMI"
27 1.1 haad
28 1.1 haad #include <unistd.h>
29 1.1 haad #include <strings.h>
30 1.1 haad #include <sys/types.h>
31 1.1 haad #include <sys/inttypes.h>
32 1.1 haad #include "libnvpair.h"
33 1.1 haad
34 1.1 haad /*
35 1.1 haad * libnvpair - A tools library for manipulating <name, value> pairs.
36 1.1 haad *
37 1.1 haad * This library provides routines packing an unpacking nv pairs
38 1.1 haad * for transporting data across process boundaries, transporting
39 1.1 haad * between kernel and userland, and possibly saving onto disk files.
40 1.1 haad */
41 1.1 haad
42 1.1 haad static void
43 1.1 haad indent(FILE *fp, int depth)
44 1.1 haad {
45 1.1 haad while (depth-- > 0)
46 1.1 haad (void) fprintf(fp, "\t");
47 1.1 haad }
48 1.1 haad
49 1.1 haad /*
50 1.1 haad * nvlist_print - Prints elements in an event buffer
51 1.1 haad */
52 1.1 haad static
53 1.1 haad void
54 1.1 haad nvlist_print_with_indent(FILE *fp, nvlist_t *nvl, int depth)
55 1.1 haad {
56 1.1 haad int i;
57 1.1 haad char *name;
58 1.1 haad uint_t nelem;
59 1.1 haad nvpair_t *nvp;
60 1.1 haad
61 1.1 haad if (nvl == NULL)
62 1.1 haad return;
63 1.1 haad
64 1.1 haad indent(fp, depth);
65 1.1 haad (void) fprintf(fp, "nvlist version: %d\n", NVL_VERSION(nvl));
66 1.1 haad
67 1.1 haad nvp = nvlist_next_nvpair(nvl, NULL);
68 1.1 haad
69 1.1 haad while (nvp) {
70 1.1 haad data_type_t type = nvpair_type(nvp);
71 1.1 haad
72 1.1 haad indent(fp, depth);
73 1.1 haad name = nvpair_name(nvp);
74 1.1 haad (void) fprintf(fp, "\t%s =", name);
75 1.1 haad nelem = 0;
76 1.1 haad switch (type) {
77 1.1 haad case DATA_TYPE_BOOLEAN: {
78 1.1 haad (void) fprintf(fp, " 1");
79 1.1 haad break;
80 1.1 haad }
81 1.1 haad case DATA_TYPE_BOOLEAN_VALUE: {
82 1.1 haad boolean_t val;
83 1.1 haad (void) nvpair_value_boolean_value(nvp, &val);
84 1.1 haad (void) fprintf(fp, " %d", val);
85 1.1 haad break;
86 1.1 haad }
87 1.1 haad case DATA_TYPE_BYTE: {
88 1.1 haad uchar_t val;
89 1.1 haad (void) nvpair_value_byte(nvp, &val);
90 1.1 haad (void) fprintf(fp, " 0x%2.2x", val);
91 1.1 haad break;
92 1.1 haad }
93 1.1 haad case DATA_TYPE_INT8: {
94 1.1 haad int8_t val;
95 1.1 haad (void) nvpair_value_int8(nvp, &val);
96 1.1 haad (void) fprintf(fp, " %d", val);
97 1.1 haad break;
98 1.1 haad }
99 1.1 haad case DATA_TYPE_UINT8: {
100 1.1 haad uint8_t val;
101 1.1 haad (void) nvpair_value_uint8(nvp, &val);
102 1.1 haad (void) fprintf(fp, " 0x%x", val);
103 1.1 haad break;
104 1.1 haad }
105 1.1 haad case DATA_TYPE_INT16: {
106 1.1 haad int16_t val;
107 1.1 haad (void) nvpair_value_int16(nvp, &val);
108 1.1 haad (void) fprintf(fp, " %d", val);
109 1.1 haad break;
110 1.1 haad }
111 1.1 haad case DATA_TYPE_UINT16: {
112 1.1 haad uint16_t val;
113 1.1 haad (void) nvpair_value_uint16(nvp, &val);
114 1.1 haad (void) fprintf(fp, " 0x%x", val);
115 1.1 haad break;
116 1.1 haad }
117 1.1 haad case DATA_TYPE_INT32: {
118 1.1 haad int32_t val;
119 1.1 haad (void) nvpair_value_int32(nvp, &val);
120 1.1 haad (void) fprintf(fp, " %d", val);
121 1.1 haad break;
122 1.1 haad }
123 1.1 haad case DATA_TYPE_UINT32: {
124 1.1 haad uint32_t val;
125 1.1 haad (void) nvpair_value_uint32(nvp, &val);
126 1.1 haad (void) fprintf(fp, " 0x%x", val);
127 1.1 haad break;
128 1.1 haad }
129 1.1 haad case DATA_TYPE_INT64: {
130 1.1 haad int64_t val;
131 1.1 haad (void) nvpair_value_int64(nvp, &val);
132 1.1 haad (void) fprintf(fp, " %lld", (longlong_t)val);
133 1.1 haad break;
134 1.1 haad }
135 1.1 haad case DATA_TYPE_UINT64: {
136 1.1 haad uint64_t val;
137 1.1 haad (void) nvpair_value_uint64(nvp, &val);
138 1.1 haad (void) fprintf(fp, " 0x%llx", (u_longlong_t)val);
139 1.1 haad break;
140 1.1 haad }
141 1.1 haad case DATA_TYPE_DOUBLE: {
142 1.1 haad double val;
143 1.1 haad (void) nvpair_value_double(nvp, &val);
144 1.1 haad (void) fprintf(fp, " 0x%llf", val);
145 1.1 haad break;
146 1.1 haad }
147 1.1 haad case DATA_TYPE_STRING: {
148 1.1 haad char *val;
149 1.1 haad (void) nvpair_value_string(nvp, &val);
150 1.1 haad (void) fprintf(fp, " %s", val);
151 1.1 haad break;
152 1.1 haad }
153 1.1 haad case DATA_TYPE_BOOLEAN_ARRAY: {
154 1.1 haad boolean_t *val;
155 1.1 haad (void) nvpair_value_boolean_array(nvp, &val, &nelem);
156 1.1 haad for (i = 0; i < nelem; i++)
157 1.1 haad (void) fprintf(fp, " %d", val[i]);
158 1.1 haad break;
159 1.1 haad }
160 1.1 haad case DATA_TYPE_BYTE_ARRAY: {
161 1.1 haad uchar_t *val;
162 1.1 haad (void) nvpair_value_byte_array(nvp, &val, &nelem);
163 1.1 haad for (i = 0; i < nelem; i++)
164 1.1 haad (void) fprintf(fp, " 0x%2.2x", val[i]);
165 1.1 haad break;
166 1.1 haad }
167 1.1 haad case DATA_TYPE_INT8_ARRAY: {
168 1.1 haad int8_t *val;
169 1.1 haad (void) nvpair_value_int8_array(nvp, &val, &nelem);
170 1.1 haad for (i = 0; i < nelem; i++)
171 1.1 haad (void) fprintf(fp, " %d", val[i]);
172 1.1 haad break;
173 1.1 haad }
174 1.1 haad case DATA_TYPE_UINT8_ARRAY: {
175 1.1 haad uint8_t *val;
176 1.1 haad (void) nvpair_value_uint8_array(nvp, &val, &nelem);
177 1.1 haad for (i = 0; i < nelem; i++)
178 1.1 haad (void) fprintf(fp, " 0x%x", val[i]);
179 1.1 haad break;
180 1.1 haad }
181 1.1 haad case DATA_TYPE_INT16_ARRAY: {
182 1.1 haad int16_t *val;
183 1.1 haad (void) nvpair_value_int16_array(nvp, &val, &nelem);
184 1.1 haad for (i = 0; i < nelem; i++)
185 1.1 haad (void) fprintf(fp, " %d", val[i]);
186 1.1 haad break;
187 1.1 haad }
188 1.1 haad case DATA_TYPE_UINT16_ARRAY: {
189 1.1 haad uint16_t *val;
190 1.1 haad (void) nvpair_value_uint16_array(nvp, &val, &nelem);
191 1.1 haad for (i = 0; i < nelem; i++)
192 1.1 haad (void) fprintf(fp, " 0x%x", val[i]);
193 1.1 haad break;
194 1.1 haad }
195 1.1 haad case DATA_TYPE_INT32_ARRAY: {
196 1.1 haad int32_t *val;
197 1.1 haad (void) nvpair_value_int32_array(nvp, &val, &nelem);
198 1.1 haad for (i = 0; i < nelem; i++)
199 1.1 haad (void) fprintf(fp, " %d", val[i]);
200 1.1 haad break;
201 1.1 haad }
202 1.1 haad case DATA_TYPE_UINT32_ARRAY: {
203 1.1 haad uint32_t *val;
204 1.1 haad (void) nvpair_value_uint32_array(nvp, &val, &nelem);
205 1.1 haad for (i = 0; i < nelem; i++)
206 1.1 haad (void) fprintf(fp, " 0x%x", val[i]);
207 1.1 haad break;
208 1.1 haad }
209 1.1 haad case DATA_TYPE_INT64_ARRAY: {
210 1.1 haad int64_t *val;
211 1.1 haad (void) nvpair_value_int64_array(nvp, &val, &nelem);
212 1.1 haad for (i = 0; i < nelem; i++)
213 1.1 haad (void) fprintf(fp, " %lld", (longlong_t)val[i]);
214 1.1 haad break;
215 1.1 haad }
216 1.1 haad case DATA_TYPE_UINT64_ARRAY: {
217 1.1 haad uint64_t *val;
218 1.1 haad (void) nvpair_value_uint64_array(nvp, &val, &nelem);
219 1.1 haad for (i = 0; i < nelem; i++)
220 1.1 haad (void) fprintf(fp, " 0x%llx",
221 1.1 haad (u_longlong_t)val[i]);
222 1.1 haad break;
223 1.1 haad }
224 1.1 haad case DATA_TYPE_STRING_ARRAY: {
225 1.1 haad char **val;
226 1.1 haad (void) nvpair_value_string_array(nvp, &val, &nelem);
227 1.1 haad for (i = 0; i < nelem; i++)
228 1.1 haad (void) fprintf(fp, " %s", val[i]);
229 1.1 haad break;
230 1.1 haad }
231 1.1 haad case DATA_TYPE_HRTIME: {
232 1.1 haad hrtime_t val;
233 1.1 haad (void) nvpair_value_hrtime(nvp, &val);
234 1.1 haad (void) fprintf(fp, " 0x%llx", val);
235 1.1 haad break;
236 1.1 haad }
237 1.1 haad case DATA_TYPE_NVLIST: {
238 1.1 haad nvlist_t *val;
239 1.1 haad (void) nvpair_value_nvlist(nvp, &val);
240 1.1 haad (void) fprintf(fp, " (embedded nvlist)\n");
241 1.1 haad nvlist_print_with_indent(fp, val, depth + 1);
242 1.1 haad indent(fp, depth + 1);
243 1.1 haad (void) fprintf(fp, "(end %s)\n", name);
244 1.1 haad break;
245 1.1 haad }
246 1.1 haad case DATA_TYPE_NVLIST_ARRAY: {
247 1.1 haad nvlist_t **val;
248 1.1 haad (void) nvpair_value_nvlist_array(nvp, &val, &nelem);
249 1.1 haad (void) fprintf(fp, " (array of embedded nvlists)\n");
250 1.1 haad for (i = 0; i < nelem; i++) {
251 1.1 haad indent(fp, depth + 1);
252 1.1 haad (void) fprintf(fp,
253 1.1 haad "(start %s[%d])\n", name, i);
254 1.1 haad nvlist_print_with_indent(fp, val[i], depth + 1);
255 1.1 haad indent(fp, depth + 1);
256 1.1 haad (void) fprintf(fp, "(end %s[%d])\n", name, i);
257 1.1 haad }
258 1.1 haad break;
259 1.1 haad }
260 1.1 haad default:
261 1.1 haad (void) fprintf(fp, " unknown data type (%d)", type);
262 1.1 haad break;
263 1.1 haad }
264 1.1 haad (void) fprintf(fp, "\n");
265 1.1 haad nvp = nvlist_next_nvpair(nvl, nvp);
266 1.1 haad }
267 1.1 haad }
268 1.1 haad
269 1.1 haad void
270 1.1 haad nvlist_print(FILE *fp, nvlist_t *nvl)
271 1.1 haad {
272 1.1 haad nvlist_print_with_indent(fp, nvl, 0);
273 1.1 haad }
274 1.1 haad
275 1.1 haad /*
276 1.1 haad * Determine if string 'value' matches 'nvp' value. The 'value' string is
277 1.1 haad * converted, depending on the type of 'nvp', prior to match. For numeric
278 1.1 haad * types, a radix independent sscanf conversion of 'value' is used. If 'nvp'
279 1.1 haad * is an array type, 'ai' is the index into the array against which we are
280 1.1 haad * checking for match. If nvp is of DATA_TYPE_STRING*, the caller can pass
281 1.1 haad * in a regex_t compilation of value in 'value_regex' to trigger regular
282 1.1 haad * expression string match instead of simple strcmp().
283 1.1 haad *
284 1.1 haad * Return 1 on match, 0 on no-match, and -1 on error. If the error is
285 1.1 haad * related to value syntax error and 'ep' is non-NULL, *ep will point into
286 1.1 haad * the 'value' string at the location where the error exists.
287 1.1 haad *
288 1.1 haad * NOTE: It may be possible to move the non-regex_t version of this into
289 1.1 haad * common code used by library/kernel/boot.
290 1.1 haad */
291 1.1 haad int
292 1.1 haad nvpair_value_match_regex(nvpair_t *nvp, int ai,
293 1.1 haad char *value, regex_t *value_regex, char **ep)
294 1.1 haad {
295 1.1 haad char *evalue;
296 1.1 haad uint_t a_len;
297 1.1 haad int sr;
298 1.1 haad
299 1.1 haad if (ep)
300 1.1 haad *ep = NULL;
301 1.1 haad
302 1.1 haad if ((nvp == NULL) || (value == NULL))
303 1.1 haad return (-1); /* error fail match - invalid args */
304 1.1 haad
305 1.1 haad /* make sure array and index combination make sense */
306 1.1 haad if ((nvpair_type_is_array(nvp) && (ai < 0)) ||
307 1.1 haad (!nvpair_type_is_array(nvp) && (ai >= 0)))
308 1.1 haad return (-1); /* error fail match - bad index */
309 1.1 haad
310 1.1 haad /* non-string values should be single 'chunk' */
311 1.1 haad if ((nvpair_type(nvp) != DATA_TYPE_STRING) &&
312 1.1 haad (nvpair_type(nvp) != DATA_TYPE_STRING_ARRAY)) {
313 1.1 haad value += strspn(value, " \t");
314 1.1 haad evalue = value + strcspn(value, " \t");
315 1.1 haad if (*evalue) {
316 1.1 haad if (ep)
317 1.1 haad *ep = evalue;
318 1.1 haad return (-1); /* error fail match - syntax */
319 1.1 haad }
320 1.1 haad }
321 1.1 haad
322 1.1 haad sr = EOF;
323 1.1 haad switch (nvpair_type(nvp)) {
324 1.1 haad case DATA_TYPE_STRING: {
325 1.1 haad char *val;
326 1.1 haad
327 1.1 haad /* check string value for match */
328 1.1 haad if (nvpair_value_string(nvp, &val) == 0) {
329 1.1 haad if (value_regex) {
330 1.1 haad if (regexec(value_regex, val,
331 1.1 haad (size_t)0, NULL, 0) == 0)
332 1.1 haad return (1); /* match */
333 1.1 haad } else {
334 1.1 haad if (strcmp(value, val) == 0)
335 1.1 haad return (1); /* match */
336 1.1 haad }
337 1.1 haad }
338 1.1 haad break;
339 1.1 haad }
340 1.1 haad case DATA_TYPE_STRING_ARRAY: {
341 1.1 haad char **val_array;
342 1.1 haad
343 1.1 haad /* check indexed string value of array for match */
344 1.1 haad if ((nvpair_value_string_array(nvp, &val_array, &a_len) == 0) &&
345 1.1 haad (ai < a_len)) {
346 1.1 haad if (value_regex) {
347 1.1 haad if (regexec(value_regex, val_array[ai],
348 1.1 haad (size_t)0, NULL, 0) == 0)
349 1.1 haad return (1);
350 1.1 haad } else {
351 1.1 haad if (strcmp(value, val_array[ai]) == 0)
352 1.1 haad return (1);
353 1.1 haad }
354 1.1 haad }
355 1.1 haad break;
356 1.1 haad }
357 1.1 haad case DATA_TYPE_BYTE: {
358 1.1 haad uchar_t val, val_arg;
359 1.1 haad
360 1.1 haad /* scanf uchar_t from value and check for match */
361 1.1 haad sr = sscanf(value, "%c", &val_arg);
362 1.1 haad if ((sr == 1) && (nvpair_value_byte(nvp, &val) == 0) &&
363 1.1 haad (val == val_arg))
364 1.1 haad return (1);
365 1.1 haad break;
366 1.1 haad }
367 1.1 haad case DATA_TYPE_BYTE_ARRAY: {
368 1.1 haad uchar_t *val_array, val_arg;
369 1.1 haad
370 1.1 haad
371 1.1 haad /* check indexed value of array for match */
372 1.1 haad sr = sscanf(value, "%c", &val_arg);
373 1.1 haad if ((sr == 1) &&
374 1.1 haad (nvpair_value_byte_array(nvp, &val_array, &a_len) == 0) &&
375 1.1 haad (ai < a_len) &&
376 1.1 haad (val_array[ai] == val_arg))
377 1.1 haad return (1);
378 1.1 haad break;
379 1.1 haad }
380 1.1 haad case DATA_TYPE_INT8: {
381 1.1 haad int8_t val, val_arg;
382 1.1 haad
383 1.1 haad /* scanf int8_t from value and check for match */
384 1.1 haad sr = sscanf(value, "%"SCNi8, &val_arg);
385 1.1 haad if ((sr == 1) &&
386 1.1 haad (nvpair_value_int8(nvp, &val) == 0) &&
387 1.1 haad (val == val_arg))
388 1.1 haad return (1);
389 1.1 haad break;
390 1.1 haad }
391 1.1 haad case DATA_TYPE_INT8_ARRAY: {
392 1.1 haad int8_t *val_array, val_arg;
393 1.1 haad
394 1.1 haad /* check indexed value of array for match */
395 1.1 haad sr = sscanf(value, "%"SCNi8, &val_arg);
396 1.1 haad if ((sr == 1) &&
397 1.1 haad (nvpair_value_int8_array(nvp, &val_array, &a_len) == 0) &&
398 1.1 haad (ai < a_len) &&
399 1.1 haad (val_array[ai] == val_arg))
400 1.1 haad return (1);
401 1.1 haad break;
402 1.1 haad }
403 1.1 haad case DATA_TYPE_UINT8: {
404 1.1 haad uint8_t val, val_arg;
405 1.1 haad
406 1.1 haad /* scanf uint8_t from value and check for match */
407 1.1 haad sr = sscanf(value, "%"SCNi8, (int8_t *)&val_arg);
408 1.1 haad if ((sr == 1) &&
409 1.1 haad (nvpair_value_uint8(nvp, &val) == 0) &&
410 1.1 haad (val == val_arg))
411 1.1 haad return (1);
412 1.1 haad break;
413 1.1 haad }
414 1.1 haad case DATA_TYPE_UINT8_ARRAY: {
415 1.1 haad uint8_t *val_array, val_arg;
416 1.1 haad
417 1.1 haad /* check indexed value of array for match */
418 1.1 haad sr = sscanf(value, "%"SCNi8, (int8_t *)&val_arg);
419 1.1 haad if ((sr == 1) &&
420 1.1 haad (nvpair_value_uint8_array(nvp, &val_array, &a_len) == 0) &&
421 1.1 haad (ai < a_len) &&
422 1.1 haad (val_array[ai] == val_arg))
423 1.1 haad return (1);
424 1.1 haad break;
425 1.1 haad }
426 1.1 haad case DATA_TYPE_INT16: {
427 1.1 haad int16_t val, val_arg;
428 1.1 haad
429 1.1 haad /* scanf int16_t from value and check for match */
430 1.1 haad sr = sscanf(value, "%"SCNi16, &val_arg);
431 1.1 haad if ((sr == 1) &&
432 1.1 haad (nvpair_value_int16(nvp, &val) == 0) &&
433 1.1 haad (val == val_arg))
434 1.1 haad return (1);
435 1.1 haad break;
436 1.1 haad }
437 1.1 haad case DATA_TYPE_INT16_ARRAY: {
438 1.1 haad int16_t *val_array, val_arg;
439 1.1 haad
440 1.1 haad /* check indexed value of array for match */
441 1.1 haad sr = sscanf(value, "%"SCNi16, &val_arg);
442 1.1 haad if ((sr == 1) &&
443 1.1 haad (nvpair_value_int16_array(nvp, &val_array, &a_len) == 0) &&
444 1.1 haad (ai < a_len) &&
445 1.1 haad (val_array[ai] == val_arg))
446 1.1 haad return (1);
447 1.1 haad break;
448 1.1 haad }
449 1.1 haad case DATA_TYPE_UINT16: {
450 1.1 haad uint16_t val, val_arg;
451 1.1 haad
452 1.1 haad /* scanf uint16_t from value and check for match */
453 1.1 haad sr = sscanf(value, "%"SCNi16, (int16_t *)&val_arg);
454 1.1 haad if ((sr == 1) &&
455 1.1 haad (nvpair_value_uint16(nvp, &val) == 0) &&
456 1.1 haad (val == val_arg))
457 1.1 haad return (1);
458 1.1 haad break;
459 1.1 haad }
460 1.1 haad case DATA_TYPE_UINT16_ARRAY: {
461 1.1 haad uint16_t *val_array, val_arg;
462 1.1 haad
463 1.1 haad /* check indexed value of array for match */
464 1.1 haad sr = sscanf(value, "%"SCNi16, (int16_t *)&val_arg);
465 1.1 haad if ((sr == 1) &&
466 1.1 haad (nvpair_value_uint16_array(nvp, &val_array, &a_len) == 0) &&
467 1.1 haad (ai < a_len) &&
468 1.1 haad (val_array[ai] == val_arg))
469 1.1 haad return (1);
470 1.1 haad break;
471 1.1 haad }
472 1.1 haad case DATA_TYPE_INT32: {
473 1.1 haad int32_t val, val_arg;
474 1.1 haad
475 1.1 haad /* scanf int32_t from value and check for match */
476 1.1 haad sr = sscanf(value, "%"SCNi32, &val_arg);
477 1.1 haad if ((sr == 1) &&
478 1.1 haad (nvpair_value_int32(nvp, &val) == 0) &&
479 1.1 haad (val == val_arg))
480 1.1 haad return (1);
481 1.1 haad break;
482 1.1 haad }
483 1.1 haad case DATA_TYPE_INT32_ARRAY: {
484 1.1 haad int32_t *val_array, val_arg;
485 1.1 haad
486 1.1 haad /* check indexed value of array for match */
487 1.1 haad sr = sscanf(value, "%"SCNi32, &val_arg);
488 1.1 haad if ((sr == 1) &&
489 1.1 haad (nvpair_value_int32_array(nvp, &val_array, &a_len) == 0) &&
490 1.1 haad (ai < a_len) &&
491 1.1 haad (val_array[ai] == val_arg))
492 1.1 haad return (1);
493 1.1 haad break;
494 1.1 haad }
495 1.1 haad case DATA_TYPE_UINT32: {
496 1.1 haad uint32_t val, val_arg;
497 1.1 haad
498 1.1 haad /* scanf uint32_t from value and check for match */
499 1.1 haad sr = sscanf(value, "%"SCNi32, (int32_t *)&val_arg);
500 1.1 haad if ((sr == 1) &&
501 1.1 haad (nvpair_value_uint32(nvp, &val) == 0) &&
502 1.1 haad (val == val_arg))
503 1.1 haad return (1);
504 1.1 haad break;
505 1.1 haad }
506 1.1 haad case DATA_TYPE_UINT32_ARRAY: {
507 1.1 haad uint32_t *val_array, val_arg;
508 1.1 haad
509 1.1 haad /* check indexed value of array for match */
510 1.1 haad sr = sscanf(value, "%"SCNi32, (int32_t *)&val_arg);
511 1.1 haad if ((sr == 1) &&
512 1.1 haad (nvpair_value_uint32_array(nvp, &val_array, &a_len) == 0) &&
513 1.1 haad (ai < a_len) &&
514 1.1 haad (val_array[ai] == val_arg))
515 1.1 haad return (1);
516 1.1 haad break;
517 1.1 haad }
518 1.1 haad case DATA_TYPE_INT64: {
519 1.1 haad int64_t val, val_arg;
520 1.1 haad
521 1.1 haad /* scanf int64_t from value and check for match */
522 1.1 haad sr = sscanf(value, "%"SCNi64, &val_arg);
523 1.1 haad if ((sr == 1) &&
524 1.1 haad (nvpair_value_int64(nvp, &val) == 0) &&
525 1.1 haad (val == val_arg))
526 1.1 haad return (1);
527 1.1 haad break;
528 1.1 haad }
529 1.1 haad case DATA_TYPE_INT64_ARRAY: {
530 1.1 haad int64_t *val_array, val_arg;
531 1.1 haad
532 1.1 haad /* check indexed value of array for match */
533 1.1 haad sr = sscanf(value, "%"SCNi64, &val_arg);
534 1.1 haad if ((sr == 1) &&
535 1.1 haad (nvpair_value_int64_array(nvp, &val_array, &a_len) == 0) &&
536 1.1 haad (ai < a_len) &&
537 1.1 haad (val_array[ai] == val_arg))
538 1.1 haad return (1);
539 1.1 haad break;
540 1.1 haad }
541 1.1 haad case DATA_TYPE_UINT64: {
542 1.1 haad uint64_t val_arg, val;
543 1.1 haad
544 1.1 haad /* scanf uint64_t from value and check for match */
545 1.1 haad sr = sscanf(value, "%"SCNi64, (int64_t *)&val_arg);
546 1.1 haad if ((sr == 1) &&
547 1.1 haad (nvpair_value_uint64(nvp, &val) == 0) &&
548 1.1 haad (val == val_arg))
549 1.1 haad return (1);
550 1.1 haad break;
551 1.1 haad }
552 1.1 haad case DATA_TYPE_UINT64_ARRAY: {
553 1.1 haad uint64_t *val_array, val_arg;
554 1.1 haad
555 1.1 haad /* check indexed value of array for match */
556 1.1 haad sr = sscanf(value, "%"SCNi64, (int64_t *)&val_arg);
557 1.1 haad if ((sr == 1) &&
558 1.1 haad (nvpair_value_uint64_array(nvp, &val_array, &a_len) == 0) &&
559 1.1 haad (ai < a_len) &&
560 1.1 haad (val_array[ai] == val_arg))
561 1.1 haad return (1);
562 1.1 haad break;
563 1.1 haad }
564 1.1 haad case DATA_TYPE_BOOLEAN_VALUE: {
565 1.1 haad boolean_t val, val_arg;
566 1.1 haad
567 1.1 haad /* scanf boolean_t from value and check for match */
568 1.1 haad sr = sscanf(value, "%"SCNi32, &val_arg);
569 1.1 haad if ((sr == 1) &&
570 1.1 haad (nvpair_value_boolean_value(nvp, &val) == 0) &&
571 1.1 haad (val == val_arg))
572 1.1 haad return (1);
573 1.1 haad break;
574 1.1 haad }
575 1.1 haad case DATA_TYPE_BOOLEAN_ARRAY: {
576 1.1 haad boolean_t *val_array, val_arg;
577 1.1 haad
578 1.1 haad /* check indexed value of array for match */
579 1.1 haad sr = sscanf(value, "%"SCNi32, &val_arg);
580 1.1 haad if ((sr == 1) &&
581 1.1 haad (nvpair_value_boolean_array(nvp,
582 1.1 haad &val_array, &a_len) == 0) &&
583 1.1 haad (ai < a_len) &&
584 1.1 haad (val_array[ai] == val_arg))
585 1.1 haad return (1);
586 1.1 haad break;
587 1.1 haad }
588 1.1 haad case DATA_TYPE_HRTIME:
589 1.1 haad case DATA_TYPE_NVLIST:
590 1.1 haad case DATA_TYPE_NVLIST_ARRAY:
591 1.1 haad case DATA_TYPE_BOOLEAN:
592 1.1 haad case DATA_TYPE_DOUBLE:
593 1.1 haad case DATA_TYPE_UNKNOWN:
594 1.1 haad default:
595 1.1 haad /*
596 1.1 haad * unknown/unsupported data type
597 1.1 haad */
598 1.1 haad return (-1); /* error fail match */
599 1.1 haad }
600 1.1 haad
601 1.1 haad /*
602 1.1 haad * check to see if sscanf failed conversion, return approximate
603 1.1 haad * pointer to problem
604 1.1 haad */
605 1.1 haad if (sr != 1) {
606 1.1 haad if (ep)
607 1.1 haad *ep = value;
608 1.1 haad return (-1); /* error fail match - syntax */
609 1.1 haad }
610 1.1 haad
611 1.1 haad return (0); /* fail match */
612 1.1 haad }
613 1.1 haad
614 1.1 haad int
615 1.1 haad nvpair_value_match(nvpair_t *nvp, int ai, char *value, char **ep)
616 1.1 haad {
617 1.1 haad return (nvpair_value_match_regex(nvp, ai, value, NULL, ep));
618 1.1 haad }
619