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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