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audiotest.c revision 1.25
      1  1.25    isaki /*	$NetBSD: audiotest.c,v 1.25 2022/08/13 07:14:40 isaki Exp $	*/
      2   1.1    isaki 
      3   1.1    isaki /*
      4   1.1    isaki  * Copyright (C) 2019 Tetsuya Isaki. All rights reserved.
      5   1.1    isaki  *
      6   1.1    isaki  * Redistribution and use in source and binary forms, with or without
      7   1.1    isaki  * modification, are permitted provided that the following conditions
      8   1.1    isaki  * are met:
      9   1.1    isaki  * 1. Redistributions of source code must retain the above copyright
     10   1.1    isaki  *    notice, this list of conditions and the following disclaimer.
     11   1.1    isaki  * 2. Redistributions in binary form must reproduce the above copyright
     12   1.1    isaki  *    notice, this list of conditions and the following disclaimer in the
     13   1.1    isaki  *    documentation and/or other materials provided with the distribution.
     14   1.1    isaki  *
     15   1.1    isaki  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     16   1.1    isaki  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     17   1.1    isaki  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     18   1.1    isaki  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     19   1.1    isaki  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     20   1.1    isaki  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     21   1.1    isaki  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     22   1.1    isaki  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     23   1.1    isaki  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     24   1.1    isaki  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     25   1.1    isaki  * SUCH DAMAGE.
     26   1.1    isaki  */
     27   1.1    isaki 
     28   1.1    isaki #include <sys/cdefs.h>
     29  1.25    isaki __RCSID("$NetBSD: audiotest.c,v 1.25 2022/08/13 07:14:40 isaki Exp $");
     30   1.1    isaki 
     31   1.1    isaki #include <errno.h>
     32   1.1    isaki #include <fcntl.h>
     33   1.1    isaki #define __STDC_FORMAT_MACROS	/* for PRIx64 */
     34   1.1    isaki #include <inttypes.h>
     35   1.1    isaki #include <pthread.h>
     36   1.1    isaki #include <stdarg.h>
     37   1.1    isaki #include <stdbool.h>
     38   1.1    isaki #include <stdio.h>
     39   1.1    isaki #include <stdlib.h>
     40   1.1    isaki #include <string.h>
     41   1.1    isaki #include <unistd.h>
     42   1.1    isaki #include <util.h>
     43   1.1    isaki #include <sys/audioio.h>
     44   1.1    isaki #include <sys/event.h>
     45   1.1    isaki #include <sys/ioctl.h>
     46   1.1    isaki #include <sys/mman.h>
     47   1.1    isaki #include <sys/poll.h>
     48   1.1    isaki #include <sys/sysctl.h>
     49   1.1    isaki #include <sys/time.h>
     50   1.1    isaki #include <sys/wait.h>
     51   1.1    isaki #if !defined(NO_RUMP)
     52   1.1    isaki #include <rump/rump.h>
     53   1.1    isaki #include <rump/rump_syscalls.h>
     54   1.1    isaki #endif
     55   1.1    isaki 
     56   1.1    isaki #if !defined(AUDIO_ENCODING_SLINEAR_NE)
     57   1.1    isaki #if BYTE_ORDER == LITTLE_ENDIAN
     58   1.1    isaki #define AUDIO_ENCODING_SLINEAR_NE AUDIO_ENCODING_SLINEAR_LE
     59   1.1    isaki #define AUDIO_ENCODING_ULINEAR_NE AUDIO_ENCODING_ULINEAR_LE
     60   1.1    isaki #define AUDIO_ENCODING_SLINEAR_OE AUDIO_ENCODING_SLINEAR_BE
     61   1.1    isaki #define AUDIO_ENCODING_ULINEAR_OE AUDIO_ENCODING_ULINEAR_BE
     62   1.1    isaki #else
     63   1.1    isaki #define AUDIO_ENCODING_SLINEAR_NE AUDIO_ENCODING_SLINEAR_BE
     64   1.1    isaki #define AUDIO_ENCODING_ULINEAR_NE AUDIO_ENCODING_ULINEAR_BE
     65   1.1    isaki #define AUDIO_ENCODING_SLINEAR_OE AUDIO_ENCODING_SLINEAR_LE
     66   1.1    isaki #define AUDIO_ENCODING_ULINEAR_OE AUDIO_ENCODING_ULINEAR_LE
     67   1.1    isaki #endif
     68   1.1    isaki #endif
     69   1.1    isaki 
     70   1.1    isaki struct testentry {
     71   1.1    isaki 	const char *name;
     72   1.1    isaki 	void (*func)(void);
     73   1.1    isaki };
     74   1.1    isaki 
     75   1.1    isaki void usage(void) __dead;
     76   1.1    isaki void xp_err(int, int, const char *, ...) __printflike(3, 4) __dead;
     77   1.1    isaki void xp_errx(int, int, const char *, ...) __printflike(3, 4) __dead;
     78   1.8    isaki bool match(const char *, const char *);
     79   1.1    isaki void xxx_close_wait(void);
     80   1.1    isaki int mixer_get_outputs_master(int);
     81   1.1    isaki void do_test(int);
     82   1.1    isaki int rump_or_open(const char *, int);
     83   1.1    isaki int rump_or_write(int, const void *, size_t);
     84   1.1    isaki int rump_or_read(int, void *, size_t);
     85   1.1    isaki int rump_or_ioctl(int, u_long, void *);
     86   1.1    isaki int rump_or_close(int);
     87   1.1    isaki int rump_or_fcntl(int, int, ...);
     88   1.1    isaki int rump_or_poll(struct pollfd *, nfds_t, int);
     89   1.1    isaki int rump_or_kqueue(void);
     90   1.1    isaki int rump_or_kevent(int, const struct kevent *, size_t,
     91   1.1    isaki 	struct kevent *, size_t, const struct timespec *);
     92   1.1    isaki int hw_canplay(void);
     93   1.1    isaki int hw_canrec(void);
     94   1.1    isaki int hw_bidir(void);
     95   1.1    isaki int hw_fulldup(void);
     96   1.1    isaki void init(int);
     97   1.1    isaki void *consumer_thread(void *);
     98   1.1    isaki void cleanup_audiofd(void);
     99   1.1    isaki void TEST(const char *, ...) __printflike(1, 2);
    100   1.1    isaki bool xp_fail(int, const char *, ...) __printflike(2, 3);
    101   1.1    isaki void xp_skip(int, const char *, ...) __printflike(2, 3);
    102   1.1    isaki bool xp_eq(int, int, int, const char *);
    103   1.1    isaki bool xp_eq_str(int, const char *, const char *, const char *);
    104   1.1    isaki bool xp_ne(int, int, int, const char *);
    105   1.1    isaki bool xp_if(int, bool, const char *);
    106   1.1    isaki bool xp_sys_eq(int, int, int, const char *);
    107   1.1    isaki bool xp_sys_ok(int, int, const char *);
    108   1.1    isaki bool xp_sys_ng(int, int, int, const char *);
    109   1.1    isaki bool xp_sys_ptr(int, int, void *, const char *);
    110   1.1    isaki int debug_open(int, const char *, int);
    111   1.1    isaki int debug_write(int, int, const void *, size_t);
    112   1.1    isaki int debug_read(int, int, void *, size_t);
    113   1.1    isaki int debug_ioctl(int, int, u_long, const char *, void *, const char *, ...)
    114   1.1    isaki 	__printflike(6, 7);
    115   1.1    isaki int debug_fcntl(int, int, int, const char *, ...) __printflike(4, 5);
    116   1.1    isaki int debug_close(int, int);
    117   1.1    isaki void *debug_mmap(int, void *, size_t, int, int, int, off_t);
    118   1.1    isaki int debug_munmap(int, void *, int);
    119   1.1    isaki const char *event_tostr(int);
    120   1.1    isaki int debug_poll(int, struct pollfd *, int, int);
    121   1.1    isaki int debug_kqueue(int);
    122   1.1    isaki int debug_kevent_set(int, int, const struct kevent *, size_t);
    123   1.1    isaki int debug_kevent_poll(int, int, struct kevent *, size_t,
    124   1.1    isaki 	const struct timespec *);
    125   1.1    isaki void debug_kev(int, const char *, const struct kevent *);
    126   1.1    isaki uid_t debug_getuid(int);
    127   1.1    isaki int debug_seteuid(int, uid_t);
    128   1.1    isaki int debug_sysctlbyname(int, const char *, void *, size_t *, const void *,
    129   1.1    isaki 	size_t);
    130   1.1    isaki 
    131   1.1    isaki int openable_mode(void);
    132   1.1    isaki int mode2aumode(int);
    133   1.1    isaki int mode2play(int);
    134   1.1    isaki int mode2rec(int);
    135   1.1    isaki void reset_after_mmap(void);
    136   1.1    isaki 
    137   1.1    isaki /* from audio.c */
    138   1.1    isaki static const char *encoding_names[] __unused = {
    139   1.1    isaki 	"none",
    140   1.1    isaki 	AudioEmulaw,
    141   1.1    isaki 	AudioEalaw,
    142   1.1    isaki 	"pcm16",
    143   1.1    isaki 	"pcm8",
    144   1.1    isaki 	AudioEadpcm,
    145   1.1    isaki 	AudioEslinear_le,
    146   1.1    isaki 	AudioEslinear_be,
    147   1.1    isaki 	AudioEulinear_le,
    148   1.1    isaki 	AudioEulinear_be,
    149   1.1    isaki 	AudioEslinear,
    150   1.1    isaki 	AudioEulinear,
    151   1.1    isaki 	AudioEmpeg_l1_stream,
    152   1.1    isaki 	AudioEmpeg_l1_packets,
    153   1.1    isaki 	AudioEmpeg_l1_system,
    154   1.1    isaki 	AudioEmpeg_l2_stream,
    155   1.1    isaki 	AudioEmpeg_l2_packets,
    156   1.1    isaki 	AudioEmpeg_l2_system,
    157   1.1    isaki 	AudioEac3,
    158   1.1    isaki };
    159   1.1    isaki 
    160   1.1    isaki int debug;
    161   1.1    isaki int props;
    162   1.1    isaki int hwfull;
    163   1.1    isaki int netbsd;
    164   1.1    isaki bool opt_atf;
    165   1.1    isaki char testname[64];
    166   1.1    isaki int testcount;
    167   1.1    isaki int failcount;
    168   1.1    isaki int skipcount;
    169   1.1    isaki int unit;
    170   1.1    isaki bool use_rump;
    171   1.1    isaki bool use_pad;
    172   1.8    isaki bool exact_match;
    173   1.1    isaki int padfd;
    174   1.1    isaki int maxfd;
    175   1.1    isaki pthread_t th;
    176   1.1    isaki char devicename[16];	/* "audioN" */
    177   1.1    isaki char devaudio[16];	/* "/dev/audioN" */
    178   1.1    isaki char devsound[16];	/* "/dev/soundN" */
    179   1.1    isaki char devaudioctl[16];	/* "/dev/audioctlN" */
    180   1.1    isaki char devmixer[16];	/* "/dev/mixerN" */
    181   1.1    isaki extern struct testentry testtable[];
    182   1.1    isaki 
    183   1.1    isaki void
    184   1.1    isaki usage(void)
    185   1.1    isaki {
    186   1.1    isaki 	fprintf(stderr, "usage:\t%s [<options>] [<testname>...]\n",
    187   1.1    isaki 	    getprogname());
    188   1.1    isaki 	fprintf(stderr, "\t-A        : make output suitable for ATF\n");
    189   1.1    isaki 	fprintf(stderr, "\t-a        : Test all\n");
    190   1.1    isaki 	fprintf(stderr, "\t-d        : Increase debug level\n");
    191   1.8    isaki 	fprintf(stderr, "\t-e        : Use exact match for testnames "
    192   1.8    isaki 	    "(default is forward match)\n");
    193   1.1    isaki 	fprintf(stderr, "\t-l        : List all tests\n");
    194   1.1    isaki 	fprintf(stderr, "\t-p        : Open pad\n");
    195   1.1    isaki #if !defined(NO_RUMP)
    196   1.1    isaki 	fprintf(stderr, "\t-R        : Use rump (implies -p)\n");
    197   1.1    isaki #endif
    198   1.1    isaki 	fprintf(stderr, "\t-u <unit> : Use audio<unit> (default:0)\n");
    199   1.1    isaki 	exit(1);
    200   1.1    isaki }
    201   1.1    isaki 
    202   1.1    isaki /* Customized err(3) */
    203   1.1    isaki void
    204   1.1    isaki xp_err(int code, int line, const char *fmt, ...)
    205   1.1    isaki {
    206   1.1    isaki 	va_list ap;
    207   1.1    isaki 	int backup_errno;
    208   1.1    isaki 
    209   1.1    isaki 	backup_errno = errno;
    210   1.1    isaki 	printf("%s %d: ", (opt_atf ? "Line" : " ERROR:"), line);
    211   1.1    isaki 	va_start(ap, fmt);
    212   1.1    isaki 	vprintf(fmt, ap);
    213   1.1    isaki 	va_end(ap);
    214   1.1    isaki 	printf(": %s\n", strerror(backup_errno));
    215   1.1    isaki 
    216   1.1    isaki 	exit(code);
    217   1.1    isaki }
    218   1.1    isaki 
    219   1.1    isaki /* Customized errx(3) */
    220   1.1    isaki void
    221   1.1    isaki xp_errx(int code, int line, const char *fmt, ...)
    222   1.1    isaki {
    223   1.1    isaki 	va_list ap;
    224   1.1    isaki 
    225   1.1    isaki 	printf("%s %d: ", (opt_atf ? "Line" : " ERROR:"), line);
    226   1.1    isaki 	va_start(ap, fmt);
    227   1.1    isaki 	vprintf(fmt, ap);
    228   1.1    isaki 	va_end(ap);
    229   1.1    isaki 	printf("\n");
    230   1.1    isaki 
    231   1.1    isaki 	exit(code);
    232   1.1    isaki }
    233   1.1    isaki 
    234   1.1    isaki int
    235   1.1    isaki main(int argc, char *argv[])
    236   1.1    isaki {
    237   1.1    isaki 	int i;
    238   1.1    isaki 	int j;
    239   1.1    isaki 	int c;
    240   1.1    isaki 	enum {
    241   1.1    isaki 		CMD_TEST,
    242   1.1    isaki 		CMD_ALL,
    243   1.1    isaki 		CMD_LIST,
    244   1.1    isaki 	} cmd;
    245   1.1    isaki 	bool found;
    246   1.1    isaki 
    247   1.1    isaki 	props = -1;
    248   1.1    isaki 	hwfull = 0;
    249   1.1    isaki 	unit = 0;
    250   1.1    isaki 	cmd = CMD_TEST;
    251   1.1    isaki 	use_pad = false;
    252   1.1    isaki 	padfd = -1;
    253   1.8    isaki 	exact_match = false;
    254   1.1    isaki 
    255   1.8    isaki 	while ((c = getopt(argc, argv, "AadelpRu:")) != -1) {
    256   1.1    isaki 		switch (c) {
    257   1.1    isaki 		case 'A':
    258   1.1    isaki 			opt_atf = true;
    259   1.1    isaki 			break;
    260   1.1    isaki 		case 'a':
    261   1.1    isaki 			cmd = CMD_ALL;
    262   1.1    isaki 			break;
    263   1.1    isaki 		case 'd':
    264   1.1    isaki 			debug++;
    265   1.1    isaki 			break;
    266   1.8    isaki 		case 'e':
    267   1.8    isaki 			exact_match = true;
    268   1.8    isaki 			break;
    269   1.1    isaki 		case 'l':
    270   1.1    isaki 			cmd = CMD_LIST;
    271   1.1    isaki 			break;
    272   1.1    isaki 		case 'p':
    273   1.1    isaki 			use_pad = true;
    274   1.1    isaki 			break;
    275   1.1    isaki 		case 'R':
    276   1.1    isaki #if !defined(NO_RUMP)
    277   1.1    isaki 			use_rump = true;
    278   1.1    isaki 			use_pad = true;
    279   1.1    isaki #else
    280   1.1    isaki 			usage();
    281   1.1    isaki #endif
    282   1.1    isaki 			break;
    283   1.1    isaki 		case 'u':
    284   1.1    isaki 			unit = atoi(optarg);
    285   1.1    isaki 			break;
    286   1.1    isaki 		default:
    287   1.1    isaki 			usage();
    288   1.1    isaki 		}
    289   1.1    isaki 	}
    290   1.1    isaki 	argc -= optind;
    291   1.1    isaki 	argv += optind;
    292   1.1    isaki 
    293   1.1    isaki 	if (cmd == CMD_LIST) {
    294   1.1    isaki 		/* List all */
    295   1.1    isaki 		for (i = 0; testtable[i].name != NULL; i++)
    296   1.1    isaki 			printf("%s\n", testtable[i].name);
    297   1.1    isaki 		return 0;
    298   1.1    isaki 	}
    299   1.1    isaki 
    300   1.1    isaki 	init(unit);
    301   1.1    isaki 
    302   1.1    isaki 	if (cmd == CMD_ALL) {
    303   1.1    isaki 		/* Test all */
    304   1.1    isaki 		if (argc > 0)
    305   1.1    isaki 			usage();
    306   1.1    isaki 		for (i = 0; testtable[i].name != NULL; i++)
    307   1.1    isaki 			do_test(i);
    308   1.1    isaki 	} else {
    309   1.1    isaki 		/* Test only matched */
    310   1.1    isaki 		if (argc == 0)
    311   1.1    isaki 			usage();
    312   1.1    isaki 
    313   1.1    isaki 		found = false;
    314   1.1    isaki 		for (j = 0; j < argc; j++) {
    315   1.1    isaki 			for (i = 0; testtable[i].name != NULL; i++) {
    316   1.8    isaki 				if (match(argv[j], testtable[i].name)) {
    317   1.1    isaki 					do_test(i);
    318   1.1    isaki 					found = true;
    319   1.1    isaki 				}
    320   1.1    isaki 			}
    321   1.1    isaki 		}
    322   1.1    isaki 		if (!found) {
    323   1.1    isaki 			printf("test not found\n");
    324   1.1    isaki 			exit(1);
    325   1.1    isaki 		}
    326   1.1    isaki 	}
    327   1.1    isaki 
    328   1.1    isaki 	if (opt_atf == false) {
    329   1.1    isaki 		printf("Result: %d tests, %d success",
    330   1.1    isaki 		    testcount,
    331   1.1    isaki 		    testcount - failcount - skipcount);
    332   1.1    isaki 		if (failcount > 0)
    333   1.1    isaki 			printf(", %d failed", failcount);
    334   1.1    isaki 		if (skipcount > 0)
    335   1.1    isaki 			printf(", %d skipped", skipcount);
    336   1.1    isaki 		printf("\n");
    337   1.1    isaki 	}
    338   1.1    isaki 
    339   1.1    isaki 	if (skipcount > 0)
    340   1.1    isaki 		return 2;
    341   1.1    isaki 	if (failcount > 0)
    342   1.1    isaki 		return 1;
    343   1.1    isaki 
    344   1.1    isaki 	return 0;
    345   1.1    isaki }
    346   1.1    isaki 
    347   1.8    isaki bool
    348   1.8    isaki match(const char *arg, const char *name)
    349   1.8    isaki {
    350   1.8    isaki 	if (exact_match) {
    351   1.8    isaki 		/* Exact match */
    352   1.8    isaki 		if (strcmp(arg, name) == 0)
    353   1.8    isaki 			return true;
    354   1.8    isaki 	} else {
    355   1.8    isaki 		/* Forward match */
    356   1.8    isaki 		if (strncmp(arg, name, strlen(arg)) == 0)
    357   1.8    isaki 			return true;
    358   1.8    isaki 	}
    359   1.8    isaki 	return false;
    360   1.8    isaki }
    361   1.8    isaki 
    362   1.1    isaki /*
    363   1.1    isaki  * XXX
    364   1.1    isaki  * Some hardware drivers (e.g. hdafg(4)) require a little "rest" between
    365   1.1    isaki  * close(2) and re-open(2).
    366   1.1    isaki  * audio(4) uses hw_if->close() to tell the hardware to close.  However,
    367   1.1    isaki  * there is no agreement to wait for completion between MI and MD layer.
    368   1.1    isaki  * audio(4) immediately shifts the "closed" state, and that is, the next
    369   1.1    isaki  * open() will be acceptable immediately in audio layer.  But the real
    370   1.1    isaki  * hardware may not have been closed actually at that point.
    371   1.1    isaki  * It's troublesome issue but should be fixed...
    372   1.1    isaki  *
    373   1.1    isaki  * However, the most frequently used pad(4) (for ATF tests) doesn't have
    374   1.1    isaki  * such problem, so avoids it to reduce time.
    375   1.1    isaki  */
    376   1.1    isaki void
    377   1.1    isaki xxx_close_wait(void)
    378   1.1    isaki {
    379   1.1    isaki 
    380   1.1    isaki 	if (!use_pad)
    381   1.1    isaki 		usleep(500 * 1000);
    382   1.1    isaki }
    383   1.1    isaki 
    384   1.1    isaki void
    385   1.1    isaki do_test(int testnumber)
    386   1.1    isaki {
    387   1.1    isaki 	/* Sentinel */
    388   1.1    isaki 	strlcpy(testname, "<NoName>", sizeof(testname));
    389   1.1    isaki 	/* Do test */
    390   1.1    isaki 	testtable[testnumber].func();
    391   1.1    isaki 
    392   1.1    isaki 	cleanup_audiofd();
    393   1.1    isaki 	xxx_close_wait();
    394   1.1    isaki }
    395   1.1    isaki 
    396   1.1    isaki /*
    397   1.1    isaki  * system call wrappers for rump.
    398   1.1    isaki  */
    399   1.1    isaki 
    400   1.1    isaki /* open(2) or rump_sys_open(3) */
    401   1.1    isaki int
    402   1.1    isaki rump_or_open(const char *filename, int flag)
    403   1.1    isaki {
    404   1.1    isaki 	int r;
    405   1.1    isaki 
    406   1.1    isaki #if !defined(NO_RUMP)
    407   1.1    isaki 	if (use_rump)
    408   1.1    isaki 		r = rump_sys_open(filename, flag);
    409   1.1    isaki 	else
    410   1.1    isaki #endif
    411   1.1    isaki 		r = open(filename, flag);
    412   1.1    isaki 
    413   1.1    isaki 	if (r > maxfd)
    414   1.1    isaki 		maxfd = r;
    415   1.1    isaki 	return r;
    416   1.1    isaki }
    417   1.1    isaki 
    418   1.1    isaki /* write(2) or rump_sys_write(3) */
    419   1.1    isaki int
    420   1.1    isaki rump_or_write(int fd, const void *buf, size_t len)
    421   1.1    isaki {
    422   1.1    isaki 	int r;
    423   1.1    isaki 
    424   1.1    isaki #if !defined(NO_RUMP)
    425   1.1    isaki 	if (use_rump)
    426   1.1    isaki 		r = rump_sys_write(fd, buf, len);
    427   1.1    isaki 	else
    428   1.1    isaki #endif
    429   1.1    isaki 		r = write(fd, buf, len);
    430   1.1    isaki 	return r;
    431   1.1    isaki }
    432   1.1    isaki 
    433   1.1    isaki /* read(2) or rump_sys_read(3) */
    434   1.1    isaki int
    435   1.1    isaki rump_or_read(int fd, void *buf, size_t len)
    436   1.1    isaki {
    437   1.1    isaki 	int r;
    438   1.1    isaki 
    439   1.1    isaki #if !defined(NO_RUMP)
    440   1.1    isaki 	if (use_rump)
    441   1.1    isaki 		r = rump_sys_read(fd, buf, len);
    442   1.1    isaki 	else
    443   1.1    isaki #endif
    444   1.1    isaki 		r = read(fd, buf, len);
    445   1.1    isaki 	return r;
    446   1.1    isaki }
    447   1.1    isaki 
    448   1.1    isaki /* ioctl(2) or rump_sys_ioctl(3) */
    449   1.1    isaki int
    450   1.1    isaki rump_or_ioctl(int fd, u_long cmd, void *arg)
    451   1.1    isaki {
    452   1.1    isaki 	int r;
    453   1.1    isaki 
    454   1.1    isaki #if !defined(NO_RUMP)
    455   1.1    isaki 	if (use_rump)
    456   1.1    isaki 		r = rump_sys_ioctl(fd, cmd, arg);
    457   1.1    isaki 	else
    458   1.1    isaki #endif
    459   1.1    isaki 		r = ioctl(fd, cmd, arg);
    460   1.1    isaki 	return r;
    461   1.1    isaki }
    462   1.1    isaki 
    463   1.1    isaki /* close(2) or rump_sys_close(3) */
    464   1.1    isaki int
    465   1.1    isaki rump_or_close(int fd)
    466   1.1    isaki {
    467   1.1    isaki 	int r;
    468   1.1    isaki 
    469   1.1    isaki #if !defined(NO_RUMP)
    470   1.1    isaki 	if (use_rump)
    471   1.1    isaki 		r = rump_sys_close(fd);
    472   1.1    isaki 	else
    473   1.1    isaki #endif
    474   1.1    isaki 		r = close(fd);
    475   1.1    isaki 
    476   1.1    isaki 	/* maxfd-1 may not valid fd but no matter */
    477   1.1    isaki 	if (fd == maxfd)
    478   1.1    isaki 		maxfd--;
    479   1.1    isaki 	return r;
    480   1.1    isaki }
    481   1.1    isaki 
    482   1.1    isaki /* fcntl(2) or rump_sys_fcntl(3) */
    483   1.1    isaki /* XXX Supported only with no arguments for now */
    484   1.1    isaki int
    485   1.1    isaki rump_or_fcntl(int fd, int cmd, ...)
    486   1.1    isaki {
    487   1.1    isaki 	int r;
    488   1.1    isaki 
    489   1.1    isaki #if !defined(NO_RUMP)
    490   1.1    isaki 	if (use_rump)
    491   1.1    isaki 		r = rump_sys_fcntl(fd, cmd);
    492   1.1    isaki 	else
    493   1.1    isaki #endif
    494   1.1    isaki 		r = fcntl(fd, cmd);
    495   1.1    isaki 	return r;
    496   1.1    isaki }
    497   1.1    isaki 
    498   1.1    isaki /* poll(2) or rump_sys_poll(3) */
    499   1.1    isaki int
    500   1.1    isaki rump_or_poll(struct pollfd *fds, nfds_t nfds, int timeout)
    501   1.1    isaki {
    502   1.1    isaki 	int r;
    503   1.1    isaki 
    504   1.1    isaki #if !defined(NO_RUMP)
    505   1.1    isaki 	if (use_rump)
    506   1.1    isaki 		r = rump_sys_poll(fds, nfds, timeout);
    507   1.1    isaki 	else
    508   1.1    isaki #endif
    509   1.1    isaki 		r = poll(fds, nfds, timeout);
    510   1.1    isaki 	return r;
    511   1.1    isaki }
    512   1.1    isaki 
    513   1.1    isaki /* kqueue(2) or rump_sys_kqueue(3) */
    514   1.1    isaki int
    515   1.1    isaki rump_or_kqueue(void)
    516   1.1    isaki {
    517   1.1    isaki 	int r;
    518   1.1    isaki 
    519   1.1    isaki #if !defined(NO_RUMP)
    520   1.1    isaki 	if (use_rump)
    521   1.1    isaki 		r = rump_sys_kqueue();
    522   1.1    isaki 	else
    523   1.1    isaki #endif
    524   1.1    isaki 		r = kqueue();
    525   1.1    isaki 	return r;
    526   1.1    isaki }
    527   1.1    isaki 
    528   1.1    isaki /* kevent(2) or rump_sys_kevent(3) */
    529   1.1    isaki int
    530   1.1    isaki rump_or_kevent(int kq, const struct kevent *chlist, size_t nch,
    531   1.1    isaki 	struct kevent *evlist, size_t nev,
    532   1.1    isaki 	const struct timespec *timeout)
    533   1.1    isaki {
    534   1.1    isaki 	int r;
    535   1.1    isaki 
    536   1.1    isaki #if !defined(NO_RUMP)
    537   1.1    isaki 	if (use_rump)
    538   1.1    isaki 		r = rump_sys_kevent(kq, chlist, nch, evlist, nev, timeout);
    539   1.1    isaki 	else
    540   1.1    isaki #endif
    541   1.1    isaki 		r = kevent(kq, chlist, nch, evlist, nev, timeout);
    542   1.1    isaki 	return r;
    543   1.1    isaki }
    544   1.1    isaki 
    545   1.1    isaki int
    546   1.1    isaki hw_canplay(void)
    547   1.1    isaki {
    548   1.1    isaki 	return (props & AUDIO_PROP_PLAYBACK) ? 1 : 0;
    549   1.1    isaki }
    550   1.1    isaki 
    551   1.1    isaki int
    552   1.1    isaki hw_canrec(void)
    553   1.1    isaki {
    554   1.1    isaki 	return (props & AUDIO_PROP_CAPTURE) ? 1 : 0;
    555   1.1    isaki }
    556   1.1    isaki 
    557   1.1    isaki int
    558   1.1    isaki hw_bidir(void)
    559   1.1    isaki {
    560   1.1    isaki 	return hw_canplay() & hw_canrec();
    561   1.1    isaki }
    562   1.1    isaki 
    563   1.1    isaki int
    564   1.1    isaki hw_fulldup(void)
    565   1.1    isaki {
    566   1.1    isaki 	return (props & AUDIO_PROP_FULLDUPLEX) ? 1 : 0;
    567   1.1    isaki }
    568   1.1    isaki 
    569   1.1    isaki #define DPRINTF(fmt...) do {	\
    570   1.1    isaki 	if (debug)		\
    571   1.1    isaki 		printf(fmt);	\
    572   1.1    isaki } while (0)
    573   1.1    isaki 
    574   1.1    isaki #define DPRINTFF(line, fmt...) do {		\
    575   1.1    isaki 	if (debug) {				\
    576   1.1    isaki 		printf("  > %d: ", line);	\
    577   1.1    isaki 		DPRINTF(fmt);			\
    578   1.1    isaki 		fflush(stdout);			\
    579   1.1    isaki 	}					\
    580   1.1    isaki } while (0)
    581   1.1    isaki 
    582   1.1    isaki #define DRESULT(r) do {				\
    583   1.1    isaki 	int backup_errno = errno;		\
    584   1.1    isaki 	if (r == -1) {				\
    585   1.1    isaki 		DPRINTF(" = %d, err#%d %s\n",	\
    586   1.1    isaki 		    r, backup_errno,		\
    587   1.1    isaki 		    strerror(backup_errno));	\
    588   1.1    isaki 	} else {				\
    589   1.1    isaki 		DPRINTF(" = %d\n", r);		\
    590   1.1    isaki 	}					\
    591   1.1    isaki 	errno = backup_errno;			\
    592   1.1    isaki 	return r;				\
    593   1.1    isaki } while (0)
    594   1.1    isaki 
    595   1.1    isaki /* pointer variants for mmap */
    596   1.1    isaki #define DRESULT_PTR(r) do {			\
    597   1.1    isaki 	int backup_errno = errno;		\
    598   1.1    isaki 	if (r == (void *)-1) {			\
    599   1.1    isaki 		DPRINTF(" = -1, err#%d %s\n",	\
    600   1.1    isaki 		    backup_errno,		\
    601   1.1    isaki 		    strerror(backup_errno));	\
    602   1.1    isaki 	} else {				\
    603   1.1    isaki 		DPRINTF(" = %p\n", r);		\
    604   1.1    isaki 	}					\
    605   1.1    isaki 	errno = backup_errno;			\
    606   1.1    isaki 	return r;				\
    607   1.1    isaki } while (0)
    608   1.1    isaki 
    609   1.1    isaki 
    610   1.1    isaki /*
    611   1.1    isaki  * requnit <  0: Use auto by pad (not implemented).
    612   1.1    isaki  * requnit >= 0: Use audio<requnit>.
    613   1.1    isaki  */
    614   1.1    isaki void
    615   1.1    isaki init(int requnit)
    616   1.1    isaki {
    617   1.1    isaki 	struct audio_device devinfo;
    618   1.1    isaki 	size_t len;
    619   1.1    isaki 	int rel;
    620   1.1    isaki 	int fd;
    621   1.1    isaki 	int r;
    622   1.1    isaki 
    623   1.1    isaki 	/* XXX */
    624   1.1    isaki 	atexit(cleanup_audiofd);
    625   1.1    isaki 
    626   1.1    isaki 	if (requnit < 0) {
    627   1.1    isaki 		xp_errx(1, __LINE__, "requnit < 0 not implemented.");
    628   1.1    isaki 	} else {
    629   1.1    isaki 		unit = requnit;
    630   1.1    isaki 	}
    631   1.1    isaki 
    632   1.1    isaki 	/* Set device name */
    633   1.1    isaki 	snprintf(devicename, sizeof(devicename), "audio%d", unit);
    634   1.1    isaki 	snprintf(devaudio, sizeof(devaudio), "/dev/audio%d", unit);
    635   1.1    isaki 	snprintf(devsound, sizeof(devsound), "/dev/sound%d", unit);
    636   1.1    isaki 	snprintf(devaudioctl, sizeof(devaudioctl), "/dev/audioctl%d", unit);
    637   1.1    isaki 	snprintf(devmixer, sizeof(devmixer), "/dev/mixer%d", unit);
    638   1.1    isaki 
    639   1.1    isaki 	/*
    640   1.1    isaki 	 * version
    641   1.1    isaki 	 * audio2 is merged in 8.99.39.
    642   1.1    isaki 	 */
    643   1.1    isaki 	len = sizeof(rel);
    644   1.1    isaki 	r = sysctlbyname("kern.osrevision", &rel, &len, NULL, 0);
    645   1.1    isaki 	if (r == -1)
    646   1.1    isaki 		xp_err(1, __LINE__, "sysctl kern.osrevision");
    647   1.1    isaki 	netbsd = rel / 100000000;
    648   1.1    isaki 	if (rel >=  899003900)
    649   1.1    isaki 		netbsd = 9;
    650   1.1    isaki 
    651   1.1    isaki #if !defined(NO_RUMP)
    652   1.1    isaki 	if (use_rump) {
    653   1.1    isaki 		DPRINTF("  use rump\n");
    654   1.1    isaki 		rump_init();
    655   1.1    isaki 	}
    656   1.1    isaki #endif
    657   1.1    isaki 
    658   1.1    isaki 	/*
    659   1.1    isaki 	 * Open pad device before all accesses (including /dev/audioctl).
    660   1.1    isaki 	 */
    661   1.1    isaki 	if (use_pad) {
    662   1.1    isaki 		padfd = rump_or_open("/dev/pad0", O_RDONLY);
    663   1.1    isaki 		if (padfd == -1)
    664   1.1    isaki 			xp_err(1, __LINE__, "rump_or_open");
    665   1.1    isaki 
    666   1.1    isaki 		/* Create consumer thread */
    667   1.1    isaki 		pthread_create(&th, NULL, consumer_thread, NULL);
    668   1.1    isaki 		/* Set this thread's name */
    669   1.1    isaki 		pthread_setname_np(pthread_self(), "main", NULL);
    670   1.1    isaki 	}
    671   1.1    isaki 
    672   1.1    isaki 	/*
    673   1.1    isaki 	 * Get device properties, etc.
    674   1.1    isaki 	 */
    675   1.1    isaki 	fd = rump_or_open(devaudioctl, O_RDONLY);
    676   1.1    isaki 	if (fd == -1)
    677   1.1    isaki 		xp_err(1, __LINE__, "open %s", devaudioctl);
    678   1.1    isaki 	r = rump_or_ioctl(fd, AUDIO_GETPROPS, &props);
    679   1.1    isaki 	if (r == -1)
    680   1.1    isaki 		xp_err(1, __LINE__, "AUDIO_GETPROPS");
    681   1.1    isaki 	r = rump_or_ioctl(fd, AUDIO_GETDEV, &devinfo);
    682   1.1    isaki 	if (r == -1)
    683   1.1    isaki 		xp_err(1, __LINE__, "AUDIO_GETDEV");
    684   1.1    isaki 	rump_or_close(fd);
    685   1.1    isaki 
    686   1.1    isaki 	if (debug) {
    687   1.1    isaki 		printf("  device = %s, %s, %s\n",
    688   1.1    isaki 		    devinfo.name, devinfo.version, devinfo.config);
    689   1.1    isaki 		printf("  hw props =");
    690   1.1    isaki 		if (hw_canplay())
    691   1.1    isaki 			printf(" playback");
    692   1.1    isaki 		if (hw_canrec())
    693   1.1    isaki 			printf(" capture");
    694   1.1    isaki 		if (hw_fulldup())
    695   1.1    isaki 			printf(" fullduplex");
    696   1.1    isaki 		printf("\n");
    697   1.1    isaki 	}
    698   1.1    isaki 
    699   1.1    isaki }
    700   1.1    isaki 
    701   1.1    isaki /* Consumer thread used by pad */
    702   1.1    isaki void *
    703   1.1    isaki consumer_thread(void *arg)
    704   1.1    isaki {
    705   1.1    isaki 	char buf[1024];
    706   1.1    isaki 	int r;
    707   1.1    isaki 
    708   1.1    isaki 	pthread_setname_np(pthread_self(), "consumer", NULL);
    709   1.1    isaki 	pthread_detach(pthread_self());
    710   1.1    isaki 
    711   1.1    isaki 	/* throw away data anyway */
    712   1.1    isaki 	for (;;) {
    713   1.1    isaki 		r = read(padfd, buf, sizeof(buf));
    714   1.1    isaki 		if (r < 1)
    715   1.1    isaki 			break;
    716   1.1    isaki 	}
    717   1.1    isaki 
    718   1.1    isaki 	pthread_exit(NULL);
    719   1.1    isaki }
    720   1.1    isaki 
    721   1.1    isaki /*
    722   1.1    isaki  * XXX
    723  1.12   jruoho  * Closing pad descriptor before audio descriptor causes panic (PR kern/54427).
    724   1.1    isaki  * To avoid this, close non-pad descriptor first using atexit(3) for now.
    725   1.1    isaki  * This is just a workaround and this function should be removed.
    726   1.1    isaki  */
    727   1.1    isaki void cleanup_audiofd()
    728   1.1    isaki {
    729   1.1    isaki 	int fd;
    730   1.1    isaki 
    731   1.1    isaki 	for (fd = 3; fd <= maxfd; fd++) {
    732   1.1    isaki 		if (fd != padfd)
    733   1.1    isaki 			close(fd);
    734   1.1    isaki 	}
    735   1.1    isaki 	maxfd = 3;
    736   1.1    isaki }
    737   1.1    isaki 
    738   1.1    isaki /*
    739   1.1    isaki  * Support functions
    740   1.1    isaki  */
    741   1.1    isaki 
    742   1.1    isaki /* Set testname */
    743   1.1    isaki void
    744   1.1    isaki TEST(const char *name, ...)
    745   1.1    isaki {
    746   1.1    isaki 	va_list ap;
    747   1.1    isaki 
    748   1.1    isaki 	va_start(ap, name);
    749   1.1    isaki 	vsnprintf(testname, sizeof(testname), name, ap);
    750   1.1    isaki 	va_end(ap);
    751   1.1    isaki 	if (opt_atf == false) {
    752   1.1    isaki 		printf("%s\n", testname);
    753   1.1    isaki 		fflush(stdout);
    754   1.1    isaki 	}
    755   1.1    isaki }
    756   1.1    isaki 
    757   1.1    isaki /*
    758   1.1    isaki  * XP_FAIL() should be called when this test fails.
    759   1.1    isaki  * If caller already count up testcount, call xp_fail() instead.
    760   1.1    isaki  */
    761   1.1    isaki #define XP_FAIL(fmt...)	do {	\
    762   1.1    isaki 	testcount++;	\
    763   1.1    isaki 	xp_fail(__LINE__, fmt);	\
    764   1.1    isaki } while (0)
    765   1.1    isaki bool xp_fail(int line, const char *fmt, ...)
    766   1.1    isaki {
    767   1.1    isaki 	va_list ap;
    768   1.1    isaki 
    769   1.1    isaki 	printf("%s %d: ", (opt_atf ? "Line" : " FAIL:"), line);
    770   1.1    isaki 	va_start(ap, fmt);
    771   1.1    isaki 	vprintf(fmt, ap);
    772   1.1    isaki 	va_end(ap);
    773   1.1    isaki 	printf("\n");
    774   1.1    isaki 	fflush(stdout);
    775   1.1    isaki 	failcount++;
    776   1.1    isaki 
    777   1.1    isaki 	return false;
    778   1.1    isaki }
    779   1.1    isaki 
    780   1.1    isaki /*
    781   1.1    isaki  * XP_SKIP() should be called when you want to skip this test.
    782   1.1    isaki  * If caller already count up testcount, call xp_skip() instead.
    783   1.1    isaki  */
    784   1.1    isaki #define XP_SKIP(fmt...)	do { \
    785   1.1    isaki 	testcount++;	\
    786   1.1    isaki 	xp_skip(__LINE__, fmt);	\
    787   1.1    isaki } while (0)
    788   1.1    isaki void xp_skip(int line, const char *fmt, ...)
    789   1.1    isaki {
    790   1.1    isaki 	va_list ap;
    791   1.1    isaki 
    792   1.1    isaki 	printf("%s %d: ", (opt_atf ? "Line" : " SKIP:"), line);
    793   1.1    isaki 	va_start(ap, fmt);
    794   1.1    isaki 	vprintf(fmt, ap);
    795   1.1    isaki 	va_end(ap);
    796   1.1    isaki 	printf("\n");
    797   1.1    isaki 	fflush(stdout);
    798   1.1    isaki 	skipcount++;
    799   1.1    isaki }
    800   1.1    isaki 
    801   1.1    isaki #define XP_EQ(exp, act)	xp_eq(__LINE__, exp, act, #act)
    802   1.1    isaki bool xp_eq(int line, int exp, int act, const char *varname)
    803   1.1    isaki {
    804   1.1    isaki 	bool r = true;
    805   1.1    isaki 
    806   1.1    isaki 	testcount++;
    807   1.1    isaki 	if (exp != act) {
    808   1.1    isaki 		r = xp_fail(line, "%s expects %d but %d", varname, exp, act);
    809   1.1    isaki 	}
    810   1.1    isaki 	return r;
    811   1.1    isaki }
    812   1.1    isaki #define XP_EQ_STR(exp, act) xp_eq_str(__LINE__, exp, act, #act)
    813   1.1    isaki bool xp_eq_str(int line, const char *exp, const char *act, const char *varname)
    814   1.1    isaki {
    815   1.1    isaki 	bool r = true;
    816   1.1    isaki 
    817   1.1    isaki 	testcount++;
    818   1.1    isaki 	if (strcmp(exp, act) != 0) {
    819   1.1    isaki 		r = xp_fail(line, "%s expects \"%s\" but \"%s\"",
    820   1.1    isaki 		    varname, exp, act);
    821   1.1    isaki 	}
    822   1.1    isaki 	return r;
    823   1.1    isaki }
    824   1.1    isaki 
    825   1.1    isaki #define XP_NE(exp, act)	xp_ne(__LINE__, exp, act, #act)
    826   1.1    isaki bool xp_ne(int line, int exp, int act, const char *varname)
    827   1.1    isaki {
    828   1.1    isaki 	bool r = true;
    829   1.1    isaki 
    830   1.1    isaki 	testcount++;
    831   1.1    isaki 	if (exp == act) {
    832   1.1    isaki 		r = xp_fail(line, "%s expects != %d but %d", varname, exp, act);
    833   1.1    isaki 	}
    834   1.1    isaki 	return r;
    835   1.1    isaki }
    836   1.1    isaki 
    837   1.1    isaki /* This expects that result is expressed in expr. */
    838   1.1    isaki /* GCC extension */
    839   1.1    isaki #define XP_IF(expr) xp_if(__LINE__, (expr), #expr)
    840   1.1    isaki bool xp_if(int line, bool expr, const char *exprname)
    841   1.1    isaki {
    842   1.1    isaki 	bool r = true;
    843   1.1    isaki 	testcount++;
    844   1.1    isaki 	if (!expr) {
    845   1.1    isaki 		r = xp_fail(__LINE__, "(%s) is expected but not met", exprname);
    846   1.1    isaki 	}
    847   1.1    isaki 	return r;
    848   1.1    isaki }
    849   1.1    isaki 
    850   1.1    isaki /* This expects that the system call returns 'exp'. */
    851   1.1    isaki #define XP_SYS_EQ(exp, act)	xp_sys_eq(__LINE__, exp, act, #act)
    852   1.1    isaki bool xp_sys_eq(int line, int exp, int act, const char *varname)
    853   1.1    isaki {
    854   1.1    isaki 	bool r = true;
    855   1.1    isaki 
    856   1.1    isaki 	testcount++;
    857   1.1    isaki 	if (act == -1) {
    858   1.1    isaki 		r = xp_fail(line, "%s expects %d but -1,err#%d(%s)",
    859   1.1    isaki 		    varname, exp, errno, strerror(errno));
    860   1.1    isaki 	} else {
    861   1.1    isaki 		r = xp_eq(line, exp, act, varname);
    862   1.1    isaki 	}
    863   1.1    isaki 	return r;
    864   1.1    isaki }
    865   1.1    isaki 
    866   1.1    isaki /*
    867   1.1    isaki  * This expects that system call succeeds.
    868   1.1    isaki  * This is useful when you expect the system call succeeds but don't know
    869   1.1    isaki  * the expected return value, such as open(2).
    870   1.1    isaki  */
    871   1.1    isaki #define XP_SYS_OK(act)	xp_sys_ok(__LINE__, act, #act)
    872   1.1    isaki bool xp_sys_ok(int line, int act, const char *varname)
    873   1.1    isaki {
    874   1.1    isaki 	bool r = true;
    875   1.1    isaki 
    876   1.1    isaki 	testcount++;
    877   1.1    isaki 	if (act == -1) {
    878   1.1    isaki 		r = xp_fail(line, "%s expects success but -1,err#%d(%s)",
    879   1.1    isaki 		    varname, errno, strerror(errno));
    880   1.1    isaki 	}
    881   1.1    isaki 	return r;
    882   1.1    isaki }
    883   1.1    isaki 
    884   1.1    isaki /* This expects that the system call fails with 'experrno'. */
    885   1.1    isaki #define XP_SYS_NG(experrno, act) xp_sys_ng(__LINE__, experrno, act, #act)
    886   1.1    isaki bool xp_sys_ng(int line, int experrno, int act, const char *varname)
    887   1.1    isaki {
    888   1.1    isaki 	bool r = true;
    889   1.1    isaki 
    890   1.1    isaki 	testcount++;
    891   1.1    isaki 	if (act != -1) {
    892   1.1    isaki 		r = xp_fail(line, "%s expects -1,err#%d but %d",
    893   1.1    isaki 		    varname, experrno, act);
    894   1.1    isaki 	} else if (experrno != errno) {
    895   1.1    isaki 		char acterrbuf[100];
    896   1.1    isaki 		int acterrno = errno;
    897   1.1    isaki 		strlcpy(acterrbuf, strerror(acterrno), sizeof(acterrbuf));
    898   1.1    isaki 		r = xp_fail(line, "%s expects -1,err#%d(%s) but -1,err#%d(%s)",
    899   1.1    isaki 		    varname, experrno, strerror(experrno),
    900   1.1    isaki 		    acterrno, acterrbuf);
    901   1.1    isaki 	}
    902   1.1    isaki 	return r;
    903   1.1    isaki }
    904   1.1    isaki 
    905   1.1    isaki /*
    906   1.1    isaki  * When exp == 0, this expects that the system call succeeds with returned
    907   1.1    isaki  * pointer is not -1.
    908   1.1    isaki  * When exp != 0, this expects that the system call fails with returned
    909   1.1    isaki  * pointer is -1 and its errno is exp.
    910   1.1    isaki  * It's only for mmap().
    911   1.1    isaki  */
    912   1.1    isaki #define XP_SYS_PTR(exp, act) xp_sys_ptr(__LINE__, exp, act, #act)
    913   1.1    isaki bool xp_sys_ptr(int line, int exp, void *act, const char *varname)
    914   1.1    isaki {
    915   1.1    isaki 	char errbuf[256];
    916   1.1    isaki 	int actual_errno;
    917   1.1    isaki 	bool r = true;
    918   1.1    isaki 
    919   1.1    isaki 	testcount++;
    920   1.1    isaki 	if (exp == 0) {
    921   1.1    isaki 		/* expects to succeed */
    922   1.1    isaki 		if (act == (void *)-1) {
    923   1.1    isaki 			r = xp_fail(line,
    924   1.1    isaki 			    "%s expects success but -1,err#%d(%s)",
    925   1.1    isaki 			    varname, errno, strerror(errno));
    926   1.1    isaki 		}
    927   1.1    isaki 	} else {
    928   1.1    isaki 		/* expects to fail */
    929   1.1    isaki 		if (act != (void *)-1) {
    930   1.1    isaki 			r = xp_fail(line,
    931   1.1    isaki 			    "%s expects -1,err#%d(%s) but success",
    932   1.1    isaki 			    varname, exp, strerror(exp));
    933   1.1    isaki 		} else if (exp != errno) {
    934   1.1    isaki 			actual_errno = errno;
    935   1.1    isaki 			strerror_r(actual_errno, errbuf, sizeof(errbuf));
    936   1.1    isaki 			r = xp_fail(line,
    937   1.1    isaki 			    "%s expects -1,err#%d(%s) but -1,err#%d(%s)",
    938   1.1    isaki 			    varname, exp, strerror(exp), actual_errno, errbuf);
    939   1.1    isaki 		}
    940   1.1    isaki 	}
    941   1.1    isaki 	return r;
    942   1.1    isaki }
    943   1.1    isaki 
    944   1.1    isaki 
    945   1.1    isaki /*
    946   1.1    isaki  * REQUIRED_* return immediately if condition does not meet.
    947   1.1    isaki  */
    948   1.1    isaki #define REQUIRED_EQ(e, a) do { if (!XP_EQ(e, a)) return; } while (0)
    949   1.1    isaki #define REQUIRED_NE(e, a) do { if (!XP_NE(e, a)) return; } while (0)
    950   1.1    isaki #define REQUIRED_IF(expr) do { if (!XP_IF(expr)) return; } while (0)
    951   1.1    isaki #define REQUIRED_SYS_EQ(e, a) do { if (!XP_SYS_EQ(e, a)) return; } while (0)
    952   1.1    isaki #define REQUIRED_SYS_OK(a)    do { if (!XP_SYS_OK(a))    return; } while (0)
    953   1.1    isaki 
    954   1.1    isaki 
    955   1.1    isaki static const char *openmode_str[] = {
    956   1.1    isaki 	"O_RDONLY",
    957   1.1    isaki 	"O_WRONLY",
    958   1.1    isaki 	"O_RDWR",
    959   1.1    isaki };
    960   1.1    isaki 
    961   1.1    isaki 
    962   1.1    isaki /*
    963   1.1    isaki  * All system calls in following tests should be called with these macros.
    964   1.1    isaki  */
    965   1.1    isaki 
    966   1.1    isaki #define OPEN(name, mode)	\
    967   1.1    isaki 	debug_open(__LINE__, name, mode)
    968   1.1    isaki int debug_open(int line, const char *name, int mode)
    969   1.1    isaki {
    970   1.1    isaki 	char modestr[32];
    971   1.1    isaki 	int n;
    972   1.1    isaki 
    973   1.1    isaki 	if ((mode & 3) != 3) {
    974   1.1    isaki 		n = snprintf(modestr, sizeof(modestr), "%s",
    975   1.1    isaki 		    openmode_str[mode & 3]);
    976   1.1    isaki 	} else {
    977   1.1    isaki 		n = snprintf(modestr, sizeof(modestr), "%d", mode & 3);
    978   1.1    isaki 	}
    979   1.1    isaki 	if ((mode & O_NONBLOCK))
    980   1.1    isaki 		n += snprintf(modestr + n, sizeof(modestr) - n, "|O_NONBLOCK");
    981   1.1    isaki 
    982   1.1    isaki 	DPRINTFF(line, "open(\"%s\", %s)", name, modestr);
    983   1.1    isaki 	int r = rump_or_open(name, mode);
    984   1.1    isaki 	DRESULT(r);
    985   1.1    isaki }
    986   1.1    isaki 
    987   1.1    isaki #define WRITE(fd, addr, len)	\
    988   1.1    isaki 	debug_write(__LINE__, fd, addr, len)
    989   1.1    isaki int debug_write(int line, int fd, const void *addr, size_t len)
    990   1.1    isaki {
    991   1.1    isaki 	DPRINTFF(line, "write(%d, %p, %zd)", fd, addr, len);
    992   1.1    isaki 	int r = rump_or_write(fd, addr, len);
    993   1.1    isaki 	DRESULT(r);
    994   1.1    isaki }
    995   1.1    isaki 
    996   1.1    isaki #define READ(fd, addr, len)	\
    997   1.1    isaki 	debug_read(__LINE__, fd, addr, len)
    998   1.1    isaki int debug_read(int line, int fd, void *addr, size_t len)
    999   1.1    isaki {
   1000   1.1    isaki 	DPRINTFF(line, "read(%d, %p, %zd)", fd, addr, len);
   1001   1.1    isaki 	int r = rump_or_read(fd, addr, len);
   1002   1.1    isaki 	DRESULT(r);
   1003   1.1    isaki }
   1004   1.1    isaki 
   1005   1.1    isaki /*
   1006   1.1    isaki  * addrstr is the comment for debug message.
   1007   1.1    isaki  *   int onoff = 0;
   1008   1.1    isaki  *   ioctl(fd, SWITCH, onoff); -> IOCTL(fd, SWITCH, onoff, "off");
   1009   1.1    isaki  */
   1010   1.1    isaki #define IOCTL(fd, name, addr, addrfmt...)	\
   1011   1.1    isaki 	debug_ioctl(__LINE__, fd, name, #name, addr, addrfmt)
   1012   1.1    isaki int debug_ioctl(int line, int fd, u_long name, const char *namestr,
   1013   1.1    isaki 	void *addr, const char *addrfmt, ...)
   1014   1.1    isaki {
   1015   1.1    isaki 	char addrbuf[100];
   1016   1.1    isaki 	va_list ap;
   1017   1.1    isaki 
   1018   1.1    isaki 	va_start(ap, addrfmt);
   1019   1.1    isaki 	vsnprintf(addrbuf, sizeof(addrbuf), addrfmt, ap);
   1020   1.1    isaki 	va_end(ap);
   1021   1.1    isaki 	DPRINTFF(line, "ioctl(%d, %s, %s)", fd, namestr, addrbuf);
   1022   1.1    isaki 	int r = rump_or_ioctl(fd, name, addr);
   1023   1.1    isaki 	DRESULT(r);
   1024   1.1    isaki }
   1025   1.1    isaki 
   1026   1.1    isaki #define FCNTL(fd, name...)	\
   1027   1.1    isaki 	debug_fcntl(__LINE__, fd, name, #name)
   1028   1.1    isaki int debug_fcntl(int line, int fd, int name, const char *namestr, ...)
   1029   1.1    isaki {
   1030   1.1    isaki 	int r;
   1031   1.1    isaki 
   1032   1.1    isaki 	switch (name) {
   1033   1.1    isaki 	 case F_GETFL:	/* no arguments */
   1034   1.1    isaki 		DPRINTFF(line, "fcntl(%d, %s)", fd, namestr);
   1035   1.1    isaki 		r = rump_or_fcntl(fd, name);
   1036   1.1    isaki 		break;
   1037   1.1    isaki 	 default:
   1038   1.1    isaki 		__unreachable();
   1039   1.1    isaki 	}
   1040   1.1    isaki 	DRESULT(r);
   1041   1.1    isaki 	return r;
   1042   1.1    isaki }
   1043   1.1    isaki 
   1044   1.1    isaki #define CLOSE(fd)	\
   1045   1.1    isaki 	debug_close(__LINE__, fd)
   1046   1.1    isaki int debug_close(int line, int fd)
   1047   1.1    isaki {
   1048   1.1    isaki 	DPRINTFF(line, "close(%d)", fd);
   1049   1.1    isaki 	int r = rump_or_close(fd);
   1050   1.1    isaki 	DRESULT(r);
   1051   1.1    isaki }
   1052   1.1    isaki 
   1053   1.1    isaki #define MMAP(ptr, len, prot, flags, fd, offset)	\
   1054   1.1    isaki 	debug_mmap(__LINE__, ptr, len, prot, flags, fd, offset)
   1055   1.1    isaki void *debug_mmap(int line, void *ptr, size_t len, int prot, int flags, int fd,
   1056   1.1    isaki 	off_t offset)
   1057   1.1    isaki {
   1058   1.1    isaki 	char protbuf[256];
   1059   1.1    isaki 	char flagbuf[256];
   1060   1.1    isaki 	int n;
   1061   1.1    isaki 
   1062   1.1    isaki #define ADDFLAG(buf, var, name)	do {				\
   1063   1.1    isaki 	if (((var) & (name)))					\
   1064   1.1    isaki 		n = strlcat(buf, "|" #name, sizeof(buf));	\
   1065   1.1    isaki 		var &= ~(name);					\
   1066   1.1    isaki } while (0)
   1067   1.1    isaki 
   1068   1.1    isaki 	n = 0;
   1069   1.1    isaki 	protbuf[n] = '\0';
   1070   1.1    isaki 	if (prot == 0) {
   1071   1.1    isaki 		strlcpy(protbuf, "|PROT_NONE", sizeof(protbuf));
   1072   1.1    isaki 	} else {
   1073   1.1    isaki 		ADDFLAG(protbuf, prot, PROT_EXEC);
   1074   1.1    isaki 		ADDFLAG(protbuf, prot, PROT_WRITE);
   1075   1.1    isaki 		ADDFLAG(protbuf, prot, PROT_READ);
   1076   1.1    isaki 		if (prot != 0) {
   1077   1.1    isaki 			snprintf(protbuf + n, sizeof(protbuf) - n,
   1078   1.1    isaki 			    "|prot=0x%x", prot);
   1079   1.1    isaki 		}
   1080   1.1    isaki 	}
   1081   1.1    isaki 
   1082   1.1    isaki 	n = 0;
   1083   1.1    isaki 	flagbuf[n] = '\0';
   1084   1.1    isaki 	if (flags == 0) {
   1085   1.1    isaki 		strlcpy(flagbuf, "|MAP_FILE", sizeof(flagbuf));
   1086   1.1    isaki 	} else {
   1087   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_SHARED);
   1088   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_PRIVATE);
   1089   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_FIXED);
   1090   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_INHERIT);
   1091   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_HASSEMAPHORE);
   1092   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_TRYFIXED);
   1093   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_WIRED);
   1094   1.1    isaki 		ADDFLAG(flagbuf, flags, MAP_ANON);
   1095   1.1    isaki 		if (flags != 0) {
   1096   1.1    isaki 			n += snprintf(flagbuf + n, sizeof(flagbuf) - n,
   1097   1.1    isaki 			    "|flag=0x%x", flags);
   1098   1.1    isaki 		}
   1099   1.1    isaki 	}
   1100   1.1    isaki 
   1101   1.1    isaki 	DPRINTFF(line, "mmap(%p, %zd, %s, %s, %d, %jd)",
   1102   1.1    isaki 	    ptr, len, protbuf + 1, flagbuf + 1, fd, offset);
   1103   1.1    isaki 	void *r = mmap(ptr, len, prot, flags, fd, offset);
   1104   1.1    isaki 	DRESULT_PTR(r);
   1105   1.1    isaki }
   1106   1.1    isaki 
   1107   1.1    isaki #define MUNMAP(ptr, len)	\
   1108   1.1    isaki 	debug_munmap(__LINE__, ptr, len)
   1109   1.1    isaki int debug_munmap(int line, void *ptr, int len)
   1110   1.1    isaki {
   1111   1.1    isaki #if !defined(NO_RUMP)
   1112   1.1    isaki 	if (use_rump)
   1113   1.1    isaki 		xp_errx(1, __LINE__, "rump doesn't support munmap");
   1114   1.1    isaki #endif
   1115   1.1    isaki 	DPRINTFF(line, "munmap(%p, %d)", ptr, len);
   1116   1.1    isaki 	int r = munmap(ptr, len);
   1117   1.1    isaki 	DRESULT(r);
   1118   1.1    isaki }
   1119   1.1    isaki 
   1120   1.1    isaki const char *
   1121   1.1    isaki event_tostr(int events)
   1122   1.1    isaki {
   1123   1.1    isaki 	static char buf[64];
   1124   1.1    isaki 
   1125   1.1    isaki 	snprintb(buf, sizeof(buf),
   1126   1.1    isaki 	    "\177\020" \
   1127   1.1    isaki 	    "b\10WRBAND\0" \
   1128   1.1    isaki 	    "b\7RDBAND\0" "b\6RDNORM\0" "b\5NVAL\0" "b\4HUP\0" \
   1129   1.1    isaki 	    "b\3ERR\0" "b\2OUT\0" "b\1PRI\0" "b\0IN\0",
   1130   1.1    isaki 	    events);
   1131   1.1    isaki 	return buf;
   1132   1.1    isaki }
   1133   1.1    isaki 
   1134   1.1    isaki #define POLL(pfd, nfd, timeout)	\
   1135   1.1    isaki 	debug_poll(__LINE__, pfd, nfd, timeout)
   1136   1.1    isaki int debug_poll(int line, struct pollfd *pfd, int nfd, int timeout)
   1137   1.1    isaki {
   1138   1.1    isaki 	char buf[256];
   1139   1.1    isaki 	int n = 0;
   1140   1.1    isaki 	buf[n] = '\0';
   1141   1.1    isaki 	for (int i = 0; i < nfd; i++) {
   1142   1.1    isaki 		n += snprintf(buf + n, sizeof(buf) - n, "{fd=%d,events=%s}",
   1143   1.1    isaki 		    pfd[i].fd, event_tostr(pfd[i].events));
   1144   1.1    isaki 	}
   1145   1.1    isaki 	DPRINTFF(line, "poll(%s, %d, %d)", buf, nfd, timeout);
   1146   1.1    isaki 	int r = rump_or_poll(pfd, nfd, timeout);
   1147   1.1    isaki 	DRESULT(r);
   1148   1.1    isaki }
   1149   1.1    isaki 
   1150   1.1    isaki #define KQUEUE()	\
   1151   1.1    isaki 	debug_kqueue(__LINE__)
   1152   1.1    isaki int debug_kqueue(int line)
   1153   1.1    isaki {
   1154   1.1    isaki 	DPRINTFF(line, "kqueue()");
   1155   1.1    isaki 	int r = rump_or_kqueue();
   1156   1.1    isaki 	DRESULT(r);
   1157   1.1    isaki }
   1158   1.1    isaki 
   1159   1.1    isaki #define KEVENT_SET(kq, kev, nev)	\
   1160   1.1    isaki 	debug_kevent_set(__LINE__, kq, kev, nev)
   1161   1.1    isaki int debug_kevent_set(int line, int kq, const struct kevent *kev, size_t nev)
   1162   1.1    isaki {
   1163   1.1    isaki 	DPRINTFF(line, "kevent_set(%d, %p, %zd)", kq, kev, nev);
   1164   1.1    isaki 	int r = rump_or_kevent(kq, kev, nev, NULL, 0, NULL);
   1165   1.1    isaki 	DRESULT(r);
   1166   1.1    isaki }
   1167   1.1    isaki 
   1168   1.1    isaki #define KEVENT_POLL(kq, kev, nev, ts) \
   1169   1.1    isaki 	debug_kevent_poll(__LINE__, kq, kev, nev, ts)
   1170   1.1    isaki int debug_kevent_poll(int line, int kq, struct kevent *kev, size_t nev,
   1171   1.1    isaki 	const struct timespec *ts)
   1172   1.1    isaki {
   1173   1.1    isaki 	char tsbuf[32];
   1174   1.1    isaki 
   1175   1.1    isaki 	if (ts == NULL) {
   1176   1.1    isaki 		snprintf(tsbuf, sizeof(tsbuf), "NULL");
   1177   1.1    isaki 	} else if (ts->tv_sec == 0 && ts->tv_nsec == 0) {
   1178   1.1    isaki 		snprintf(tsbuf, sizeof(tsbuf), "0.0");
   1179   1.1    isaki 	} else {
   1180   1.1    isaki 		snprintf(tsbuf, sizeof(tsbuf), "%d.%09ld",
   1181   1.1    isaki 			(int)ts->tv_sec, ts->tv_nsec);
   1182   1.1    isaki 	}
   1183   1.1    isaki 	DPRINTFF(line, "kevent_poll(%d, %p, %zd, %s)", kq, kev, nev, tsbuf);
   1184   1.1    isaki 	int r = rump_or_kevent(kq, NULL, 0, kev, nev, ts);
   1185   1.1    isaki 	DRESULT(r);
   1186   1.1    isaki }
   1187   1.1    isaki 
   1188   1.1    isaki #define DEBUG_KEV(name, kev)	\
   1189   1.1    isaki 	debug_kev(__LINE__, name, kev)
   1190   1.1    isaki void debug_kev(int line, const char *name, const struct kevent *kev)
   1191   1.1    isaki {
   1192   1.1    isaki 	char flagbuf[256];
   1193   1.1    isaki 	const char *filterbuf;
   1194   1.1    isaki 	uint32_t v;
   1195   1.1    isaki 	int n;
   1196   1.1    isaki 
   1197   1.1    isaki 	n = 0;
   1198   1.1    isaki 	flagbuf[n] = '\0';
   1199   1.1    isaki 	if (kev->flags == 0) {
   1200   1.1    isaki 		strcpy(flagbuf, "|0?");
   1201   1.1    isaki 	} else {
   1202   1.1    isaki 		v = kev->flags;
   1203   1.1    isaki 		ADDFLAG(flagbuf, v, EV_ADD);
   1204   1.1    isaki 		if (v != 0)
   1205   1.1    isaki 			snprintf(flagbuf + n, sizeof(flagbuf)-n, "|0x%x", v);
   1206   1.1    isaki 	}
   1207   1.1    isaki 
   1208   1.1    isaki 	switch (kev->filter) {
   1209   1.1    isaki 	 case EVFILT_READ:	filterbuf = "EVFILT_READ";	break;
   1210   1.1    isaki 	 case EVFILT_WRITE:	filterbuf = "EVFILT_WRITE";	break;
   1211   1.1    isaki 	 default:		filterbuf = "EVFILT_?";		break;
   1212   1.1    isaki 	}
   1213   1.1    isaki 
   1214   1.1    isaki 	DPRINTFF(line,
   1215   1.1    isaki 	    "%s={id:%d,%s,%s,fflags:0x%x,data:0x%" PRIx64 ",udata:0x%x}\n",
   1216   1.1    isaki 	    name,
   1217   1.1    isaki 	    (int)kev->ident,
   1218   1.1    isaki 	    flagbuf + 1,
   1219   1.1    isaki 	    filterbuf,
   1220   1.1    isaki 	    kev->fflags,
   1221   1.1    isaki 	    kev->data,
   1222   1.1    isaki 	    (int)(intptr_t)kev->udata);
   1223   1.1    isaki }
   1224   1.1    isaki 
   1225   1.1    isaki /* XXX rump? */
   1226   1.1    isaki #define GETUID()	\
   1227   1.1    isaki 	debug_getuid(__LINE__)
   1228   1.1    isaki uid_t debug_getuid(int line)
   1229   1.1    isaki {
   1230   1.1    isaki 	DPRINTFF(line, "getuid");
   1231   1.1    isaki 	uid_t r = getuid();
   1232   1.1    isaki 	/* getuid() never fails */
   1233   1.1    isaki 	DPRINTF(" = %u\n", r);
   1234   1.1    isaki 	return r;
   1235   1.1    isaki }
   1236   1.1    isaki 
   1237   1.1    isaki /* XXX rump? */
   1238   1.1    isaki #define SETEUID(id)	\
   1239   1.1    isaki 	debug_seteuid(__LINE__, id)
   1240   1.1    isaki int debug_seteuid(int line, uid_t id)
   1241   1.1    isaki {
   1242   1.1    isaki 	DPRINTFF(line, "seteuid(%d)", (int)id);
   1243   1.1    isaki 	int r = seteuid(id);
   1244   1.1    isaki 	DRESULT(r);
   1245   1.1    isaki }
   1246   1.1    isaki 
   1247   1.1    isaki #define SYSCTLBYNAME(name, oldp, oldlenp, newp, newlen)	\
   1248   1.1    isaki 	debug_sysctlbyname(__LINE__, name, oldp, oldlenp, newp, newlen)
   1249   1.1    isaki int debug_sysctlbyname(int line, const char *name, void *oldp, size_t *oldlenp,
   1250   1.1    isaki 	const void *newp, size_t newlen)
   1251   1.1    isaki {
   1252   1.1    isaki 	DPRINTFF(line, "sysctlbyname(\"%s\")", name);
   1253   1.1    isaki 	int r = sysctlbyname(name, oldp, oldlenp, newp, newlen);
   1254   1.1    isaki 	DRESULT(r);
   1255   1.1    isaki }
   1256   1.1    isaki 
   1257   1.1    isaki 
   1258   1.1    isaki /* Return openable mode on this hardware property */
   1259   1.1    isaki int
   1260   1.1    isaki openable_mode(void)
   1261   1.1    isaki {
   1262   1.1    isaki 	if (hw_bidir())
   1263   1.1    isaki 		return O_RDWR;
   1264   1.1    isaki 	if (hw_canplay())
   1265   1.1    isaki 		return O_WRONLY;
   1266   1.1    isaki 	else
   1267   1.1    isaki 		return O_RDONLY;
   1268   1.1    isaki }
   1269   1.1    isaki 
   1270   1.1    isaki int mode2aumode_full[] = {
   1271   1.1    isaki 	                                AUMODE_RECORD,	/* O_RDONLY */
   1272   1.1    isaki 	AUMODE_PLAY | AUMODE_PLAY_ALL,			/* O_WRONLY */
   1273   1.1    isaki 	AUMODE_PLAY | AUMODE_PLAY_ALL | AUMODE_RECORD,	/* O_RDWR   */
   1274   1.1    isaki };
   1275   1.1    isaki 
   1276   1.1    isaki /* Convert openmode(O_*) to AUMODE_*, with hardware property */
   1277   1.1    isaki int
   1278   1.1    isaki mode2aumode(int mode)
   1279   1.1    isaki {
   1280   1.1    isaki 	int aumode;
   1281   1.1    isaki 
   1282   1.1    isaki 	aumode = mode2aumode_full[mode];
   1283   1.1    isaki 	if (hw_canplay() == 0)
   1284   1.1    isaki 		aumode &= ~(AUMODE_PLAY | AUMODE_PLAY_ALL);
   1285   1.1    isaki 	if (hw_canrec() == 0)
   1286   1.1    isaki 		aumode &= ~AUMODE_RECORD;
   1287   1.1    isaki 
   1288   1.1    isaki 	if (netbsd >= 9) {
   1289   1.1    isaki 		/* half-duplex treats O_RDWR as O_WRONLY */
   1290   1.1    isaki 		if (mode == O_RDWR && hw_bidir() && hw_fulldup() == 0)
   1291   1.1    isaki 			aumode &= ~AUMODE_RECORD;
   1292   1.1    isaki 	}
   1293   1.1    isaki 
   1294   1.1    isaki 	return aumode;
   1295   1.1    isaki }
   1296   1.1    isaki 
   1297   1.1    isaki /* Is this mode + hardware playable? */
   1298   1.1    isaki int
   1299   1.1    isaki mode2play(int mode)
   1300   1.1    isaki {
   1301   1.1    isaki 	int aumode;
   1302   1.1    isaki 
   1303   1.1    isaki 	aumode = mode2aumode(mode);
   1304   1.1    isaki 	return ((aumode & AUMODE_PLAY)) ? 1 : 0;
   1305   1.1    isaki }
   1306   1.1    isaki 
   1307   1.1    isaki /* Is this mode + hardware recordable? */
   1308   1.1    isaki int
   1309   1.1    isaki mode2rec(int mode)
   1310   1.1    isaki {
   1311   1.1    isaki 	int aumode;
   1312   1.1    isaki 
   1313   1.1    isaki 	aumode = mode2aumode(mode);
   1314   1.1    isaki 	return ((aumode & AUMODE_RECORD)) ? 1 : 0;
   1315   1.1    isaki }
   1316   1.1    isaki 
   1317   1.1    isaki /*
   1318   1.1    isaki  * On NetBSD7, open() after-closing-mmap fails due to a bug.
   1319   1.1    isaki  * It happens once every two times like flip-flop, so the workaround is
   1320   1.1    isaki  * to open it again.
   1321   1.1    isaki  */
   1322   1.1    isaki void
   1323   1.1    isaki reset_after_mmap(void)
   1324   1.1    isaki {
   1325   1.1    isaki 	int fd;
   1326   1.1    isaki 
   1327   1.1    isaki 	if (netbsd < 8) {
   1328   1.1    isaki 		fd = OPEN(devaudio, O_WRONLY);
   1329   1.1    isaki 		if (fd != -1)
   1330   1.1    isaki 			CLOSE(fd);
   1331   1.1    isaki 	}
   1332   1.1    isaki }
   1333   1.1    isaki 
   1334   1.1    isaki /*
   1335   1.1    isaki  * Lookup "outputs.master" and return its mixer device index.
   1336   1.1    isaki  * It may not be strict but I'm not sure.
   1337   1.1    isaki  */
   1338   1.1    isaki int
   1339   1.1    isaki mixer_get_outputs_master(int mixerfd)
   1340   1.1    isaki {
   1341   1.1    isaki 	const char * const typename[] = { "CLASS", "ENUM", "SET", "VALUE" };
   1342   1.1    isaki 	mixer_devinfo_t di;
   1343   1.1    isaki 	int class_outputs;
   1344   1.1    isaki 	int i;
   1345   1.1    isaki 	int r;
   1346   1.1    isaki 
   1347   1.1    isaki 	class_outputs = -1;
   1348   1.1    isaki 	for (i = 0; ; i++) {
   1349   1.1    isaki 		memset(&di, 0, sizeof(di));
   1350   1.1    isaki 		di.index = i;
   1351   1.1    isaki 		r = IOCTL(mixerfd, AUDIO_MIXER_DEVINFO, &di, "index=%d", i);
   1352   1.1    isaki 		if (r < 0)
   1353   1.1    isaki 			break;
   1354   1.1    isaki 		DPRINTF("  > type=%s(%d) mixer_class=%d name=%s\n",
   1355   1.1    isaki 		    (0 <= di.type && di.type <= 3) ? typename[di.type] : "",
   1356   1.1    isaki 		    di.type, di.mixer_class, di.label.name);
   1357   1.1    isaki 		if (di.type == AUDIO_MIXER_CLASS &&
   1358   1.1    isaki 		    strcmp(di.label.name, "outputs") == 0) {
   1359   1.1    isaki 			class_outputs = di.mixer_class;
   1360   1.1    isaki 			DPRINTF("  > class_output=%d\n", class_outputs);
   1361   1.1    isaki 			continue;
   1362   1.1    isaki 		}
   1363   1.1    isaki 		if (di.type == AUDIO_MIXER_VALUE &&
   1364   1.1    isaki 		    di.mixer_class == class_outputs &&
   1365   1.1    isaki 		    strcmp(di.label.name, "master") == 0) {
   1366   1.1    isaki 			return i;
   1367   1.1    isaki 		}
   1368   1.1    isaki 	}
   1369   1.1    isaki 	/* Not found */
   1370   1.1    isaki 	return -1;
   1371   1.1    isaki }
   1372   1.1    isaki 
   1373   1.1    isaki /*
   1374   1.1    isaki  * Tests
   1375   1.1    isaki  */
   1376   1.1    isaki 
   1377   1.1    isaki void test_open_mode(int);
   1378   1.7    isaki void test_open(const char *, int);
   1379   1.1    isaki void test_open_simul(int, int);
   1380   1.4    isaki void try_open_multiuser(bool);
   1381   1.4    isaki void test_open_multiuser(bool);
   1382   1.1    isaki void test_rdwr_fallback(int, bool, bool);
   1383   1.1    isaki void test_rdwr_two(int, int);
   1384   1.1    isaki void test_mmap_mode(int, int);
   1385  1.25    isaki void test_mmap_len(size_t, off_t, int);
   1386   1.1    isaki void test_poll_mode(int, int, int);
   1387  1.10    isaki void test_poll_in_open(const char *);
   1388   1.1    isaki void test_kqueue_mode(int, int, int);
   1389   1.1    isaki volatile int sigio_caught;
   1390   1.1    isaki void signal_FIOASYNC(int);
   1391   1.1    isaki void test_AUDIO_SETFD_xxONLY(int);
   1392   1.1    isaki void test_AUDIO_SETINFO_mode(int, int, int, int);
   1393   1.1    isaki void test_AUDIO_SETINFO_params_set(int, int, int);
   1394   1.1    isaki void test_AUDIO_SETINFO_pause(int, int, int);
   1395   1.1    isaki int getenc_make_table(int, int[][5]);
   1396   1.1    isaki void xp_getenc(int[][5], int, int, int, struct audio_prinfo *);
   1397   1.1    isaki void getenc_check_encodings(int, int[][5]);
   1398   1.1    isaki void test_AUDIO_ERROR(int);
   1399  1.19    isaki void test_AUDIO_GETIOFFS_one(int);
   1400  1.19    isaki void test_AUDIO_GETOOFFS_one(int);
   1401  1.19    isaki void test_AUDIO_GETOOFFS_wrap(int);
   1402  1.19    isaki void test_AUDIO_GETOOFFS_flush(int);
   1403  1.19    isaki void test_AUDIO_GETOOFFS_set(int);
   1404   1.1    isaki void test_audioctl_open_1(int, int);
   1405   1.1    isaki void test_audioctl_open_2(int, int);
   1406   1.4    isaki void try_audioctl_open_multiuser(const char *, const char *);
   1407   1.4    isaki void test_audioctl_open_multiuser(bool, const char *, const char *);
   1408   1.1    isaki void test_audioctl_rw(int);
   1409   1.1    isaki 
   1410   1.1    isaki #define DEF(name) \
   1411   1.1    isaki 	void test__ ## name (void); \
   1412   1.1    isaki 	void test__ ## name (void)
   1413   1.1    isaki 
   1414   1.1    isaki /*
   1415   1.1    isaki  * Whether it can be open()ed with specified mode.
   1416   1.1    isaki  */
   1417   1.1    isaki void
   1418   1.1    isaki test_open_mode(int mode)
   1419   1.1    isaki {
   1420   1.1    isaki 	int fd;
   1421   1.1    isaki 	int r;
   1422   1.1    isaki 
   1423   1.1    isaki 	TEST("open_mode_%s", openmode_str[mode] + 2);
   1424   1.1    isaki 
   1425   1.1    isaki 	fd = OPEN(devaudio, mode);
   1426   1.1    isaki 	if (mode2aumode(mode) != 0) {
   1427   1.1    isaki 		XP_SYS_OK(fd);
   1428   1.1    isaki 	} else {
   1429   1.1    isaki 		XP_SYS_NG(ENXIO, fd);
   1430   1.1    isaki 	}
   1431   1.1    isaki 
   1432   1.1    isaki 	if (fd >= 0) {
   1433   1.1    isaki 		r = CLOSE(fd);
   1434   1.1    isaki 		XP_SYS_EQ(0, r);
   1435   1.1    isaki 	}
   1436   1.1    isaki }
   1437   1.1    isaki DEF(open_mode_RDONLY)	{ test_open_mode(O_RDONLY); }
   1438   1.1    isaki DEF(open_mode_WRONLY)	{ test_open_mode(O_WRONLY); }
   1439   1.1    isaki DEF(open_mode_RDWR)	{ test_open_mode(O_RDWR);   }
   1440   1.1    isaki 
   1441   1.1    isaki /*
   1442   1.7    isaki  * Check the initial parameters and stickiness.
   1443   1.7    isaki  * /dev/audio
   1444   1.7    isaki  *	The initial parameters are always the same whenever you open.
   1445   1.7    isaki  * /dev/sound and /dev/audioctl
   1446   1.7    isaki  *	The initial parameters are inherited from the last /dev/sound or
   1447   1.7    isaki  *	/dev/audio.
   1448   1.1    isaki  */
   1449   1.1    isaki void
   1450   1.7    isaki test_open(const char *devname, int mode)
   1451   1.1    isaki {
   1452   1.1    isaki 	struct audio_info ai;
   1453   1.1    isaki 	struct audio_info ai0;
   1454   1.7    isaki 	char devfile[16];
   1455   1.1    isaki 	int fd;
   1456   1.1    isaki 	int r;
   1457   1.1    isaki 	int can_play;
   1458   1.1    isaki 	int can_rec;
   1459   1.7    isaki 	int exp_mode;
   1460   1.7    isaki 	int exp_encoding;
   1461   1.7    isaki 	int exp_precision;
   1462   1.7    isaki 	int exp_channels;
   1463   1.7    isaki 	int exp_sample_rate;
   1464   1.7    isaki 	int exp_pause;
   1465   1.7    isaki 	int exp_popen;
   1466   1.7    isaki 	int exp_ropen;
   1467   1.1    isaki 
   1468   1.7    isaki 	TEST("open_%s_%s", devname, openmode_str[mode] + 2);
   1469   1.1    isaki 
   1470   1.7    isaki 	snprintf(devfile, sizeof(devfile), "/dev/%s%d", devname, unit);
   1471   1.1    isaki 	can_play = mode2play(mode);
   1472   1.1    isaki 	can_rec  = mode2rec(mode);
   1473   1.7    isaki 	if (strcmp(devname, "audioctl") != 0) {
   1474   1.7    isaki 		if (can_play + can_rec == 0) {
   1475   1.7    isaki 			/* Check whether it cannot be opened */
   1476   1.7    isaki 			fd = OPEN(devaudio, mode);
   1477   1.7    isaki 			XP_SYS_NG(ENXIO, fd);
   1478   1.7    isaki 			return;
   1479   1.7    isaki 		}
   1480   1.1    isaki 	}
   1481   1.1    isaki 
   1482   1.7    isaki 	/* /dev/audio is always initialized */
   1483   1.7    isaki 	if (strcmp(devname, "audio") == 0) {
   1484   1.7    isaki 		exp_encoding = AUDIO_ENCODING_ULAW;
   1485   1.7    isaki 		exp_precision = 8;
   1486   1.7    isaki 		exp_channels = 1;
   1487   1.7    isaki 		exp_sample_rate = 8000;
   1488   1.7    isaki 		exp_pause = 0;
   1489   1.1    isaki 	} else {
   1490   1.7    isaki 		exp_encoding = AUDIO_ENCODING_SLINEAR_LE;
   1491   1.7    isaki 		exp_precision = 16;
   1492   1.7    isaki 		exp_channels = 2;
   1493   1.7    isaki 		exp_sample_rate = 11025;
   1494   1.7    isaki 		exp_pause = 1;
   1495   1.1    isaki 	}
   1496   1.1    isaki 
   1497   1.7    isaki 	/* /dev/audioctl is always "not opened" */
   1498   1.7    isaki 	if (strcmp(devname, "audioctl") == 0) {
   1499   1.7    isaki 		exp_mode = 0;
   1500   1.7    isaki 		exp_popen = 0;
   1501   1.7    isaki 		exp_ropen = 0;
   1502   1.1    isaki 	} else {
   1503   1.7    isaki 		exp_mode = mode2aumode(mode);
   1504   1.7    isaki 		exp_popen = can_play;
   1505   1.7    isaki 		exp_ropen = can_rec;
   1506   1.1    isaki 	}
   1507   1.1    isaki 
   1508   1.1    isaki 
   1509   1.1    isaki 	/*
   1510   1.7    isaki 	 * At first, initialize the sticky parameters both of play and rec.
   1511   1.7    isaki 	 * This uses /dev/audio to verify /dev/audio.  It's not good way but
   1512   1.7    isaki 	 * I don't have better one...
   1513   1.1    isaki 	 */
   1514   1.7    isaki 	fd = OPEN(devaudio, openable_mode());
   1515   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1516   1.1    isaki 	r = CLOSE(fd);
   1517   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1518   1.1    isaki 
   1519   1.1    isaki 	/*
   1520   1.7    isaki 	 * Open target device and check the initial parameters
   1521   1.7    isaki 	 * At this moment, all devices are initialized by default.
   1522   1.1    isaki 	 */
   1523   1.7    isaki 	fd = OPEN(devfile, mode);
   1524   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1525   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   1526   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   1527   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1528   1.1    isaki 
   1529   1.1    isaki 	XP_NE(0, ai.blocksize);
   1530   1.1    isaki 		/* hiwat/lowat */
   1531   1.7    isaki 	XP_EQ(exp_mode, ai.mode);
   1532   1.1    isaki 	/* ai.play */
   1533   1.1    isaki 	XP_EQ(8000, ai.play.sample_rate);
   1534   1.1    isaki 	XP_EQ(1, ai.play.channels);
   1535   1.1    isaki 	XP_EQ(8, ai.play.precision);
   1536   1.1    isaki 	XP_EQ(AUDIO_ENCODING_ULAW, ai.play.encoding);
   1537   1.1    isaki 		/* gain */
   1538   1.1    isaki 		/* port */
   1539   1.1    isaki 	XP_EQ(0, ai.play.seek);
   1540   1.1    isaki 		/* avail_ports */
   1541   1.7    isaki 	XP_NE(0, ai.play.buffer_size);
   1542   1.1    isaki 	XP_EQ(0, ai.play.samples);
   1543   1.1    isaki 	XP_EQ(0, ai.play.eof);
   1544   1.1    isaki 	XP_EQ(0, ai.play.pause);
   1545   1.1    isaki 	XP_EQ(0, ai.play.error);
   1546   1.1    isaki 	XP_EQ(0, ai.play.waiting);
   1547   1.1    isaki 		/* balance */
   1548   1.7    isaki 	XP_EQ(exp_popen, ai.play.open);
   1549   1.1    isaki 	XP_EQ(0, ai.play.active);
   1550   1.1    isaki 	/* ai.record */
   1551   1.1    isaki 	XP_EQ(8000, ai.record.sample_rate);
   1552   1.1    isaki 	XP_EQ(1, ai.record.channels);
   1553   1.1    isaki 	XP_EQ(8, ai.record.precision);
   1554   1.1    isaki 	XP_EQ(AUDIO_ENCODING_ULAW, ai.record.encoding);
   1555   1.1    isaki 		/* gain */
   1556   1.1    isaki 		/* port */
   1557   1.1    isaki 	XP_EQ(0, ai.record.seek);
   1558   1.1    isaki 		/* avail_ports */
   1559   1.7    isaki 	XP_NE(0, ai.record.buffer_size);
   1560   1.1    isaki 	XP_EQ(0, ai.record.samples);
   1561   1.1    isaki 	XP_EQ(0, ai.record.eof);
   1562   1.1    isaki 	XP_EQ(0, ai.record.pause);
   1563   1.1    isaki 	XP_EQ(0, ai.record.error);
   1564   1.1    isaki 	XP_EQ(0, ai.record.waiting);
   1565   1.1    isaki 		/* balance */
   1566   1.7    isaki 	XP_EQ(exp_ropen, ai.record.open);
   1567   1.9    isaki 	if (netbsd < 9 && strcmp(devname, "sound") == 0) {
   1568   1.9    isaki 		/*
   1569   1.9    isaki 		 * On NetBSD7/8, it doesn't seem to start recording on open
   1570   1.9    isaki 		 * for /dev/sound.  It should be a bug.
   1571   1.9    isaki 		 */
   1572   1.9    isaki 		XP_EQ(0, ai.record.active);
   1573   1.1    isaki 	} else {
   1574   1.9    isaki 		XP_EQ(exp_ropen, ai.record.active);
   1575   1.1    isaki 	}
   1576   1.1    isaki 	/* Save it */
   1577   1.1    isaki 	ai0 = ai;
   1578   1.1    isaki 
   1579   1.1    isaki 	/*
   1580   1.1    isaki 	 * Change much as possible
   1581   1.1    isaki 	 */
   1582   1.1    isaki 	AUDIO_INITINFO(&ai);
   1583   1.7    isaki 	ai.mode = ai0.mode ^ AUMODE_PLAY_ALL;
   1584   1.1    isaki 	ai.play.sample_rate = 11025;
   1585   1.1    isaki 	ai.play.channels = 2;
   1586   1.1    isaki 	ai.play.precision = 16;
   1587   1.1    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_LE;
   1588   1.1    isaki 	ai.play.pause = 1;
   1589   1.1    isaki 	ai.record.sample_rate = 11025;
   1590   1.1    isaki 	ai.record.channels = 2;
   1591   1.1    isaki 	ai.record.precision = 16;
   1592   1.1    isaki 	ai.record.encoding = AUDIO_ENCODING_SLINEAR_LE;
   1593   1.1    isaki 	ai.record.pause = 1;
   1594   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "ai");
   1595   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1596   1.1    isaki 	r = CLOSE(fd);
   1597   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1598   1.1    isaki 
   1599   1.1    isaki 	/*
   1600   1.7    isaki 	 * Open the same target device again and check
   1601   1.1    isaki 	 */
   1602   1.7    isaki 	fd = OPEN(devfile, mode);
   1603   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1604   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   1605   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   1606   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1607   1.1    isaki 
   1608   1.7    isaki 	XP_NE(0, ai.blocksize);
   1609   1.1    isaki 		/* hiwat/lowat */
   1610   1.1    isaki 	if (netbsd < 8) {
   1611   1.1    isaki 		/*
   1612   1.7    isaki 		 * On NetBSD7, the behavior when changing ai.mode on
   1613   1.1    isaki 		 * /dev/audioctl can not be explained yet but I won't
   1614   1.1    isaki 		 * verify it more over.
   1615   1.1    isaki 		 */
   1616   1.1    isaki 	} else {
   1617   1.7    isaki 		/* On NetBSD9, changing mode never affects other fds */
   1618   1.7    isaki 		XP_EQ(exp_mode, ai.mode);
   1619   1.1    isaki 	}
   1620   1.1    isaki 	/* ai.play */
   1621   1.7    isaki 	XP_EQ(exp_sample_rate, ai.play.sample_rate);
   1622   1.7    isaki 	XP_EQ(exp_channels, ai.play.channels);
   1623   1.7    isaki 	XP_EQ(exp_precision, ai.play.precision);
   1624   1.7    isaki 	XP_EQ(exp_encoding, ai.play.encoding);
   1625   1.1    isaki 		/* gain */
   1626   1.1    isaki 		/* port */
   1627   1.1    isaki 	XP_EQ(0, ai.play.seek);
   1628   1.1    isaki 		/* avail_ports */
   1629   1.7    isaki 	XP_NE(0, ai.play.buffer_size);
   1630   1.1    isaki 	XP_EQ(0, ai.play.samples);
   1631   1.1    isaki 	XP_EQ(0, ai.play.eof);
   1632   1.7    isaki 	XP_EQ(exp_pause, ai.play.pause);
   1633   1.1    isaki 	XP_EQ(0, ai.play.error);
   1634   1.1    isaki 	XP_EQ(0, ai.play.waiting);
   1635   1.1    isaki 		/* balance */
   1636   1.7    isaki 	XP_EQ(exp_popen, ai.play.open);
   1637   1.1    isaki 	XP_EQ(0, ai.play.active);
   1638   1.1    isaki 	/* ai.record */
   1639   1.7    isaki 	XP_EQ(exp_sample_rate, ai.record.sample_rate);
   1640   1.7    isaki 	XP_EQ(exp_channels, ai.record.channels);
   1641   1.7    isaki 	XP_EQ(exp_precision, ai.record.precision);
   1642   1.7    isaki 	XP_EQ(exp_encoding, ai.record.encoding);
   1643   1.1    isaki 		/* gain */
   1644   1.1    isaki 		/* port */
   1645   1.1    isaki 	XP_EQ(0, ai.record.seek);
   1646   1.1    isaki 		/* avail_ports */
   1647   1.7    isaki 	XP_NE(0, ai.record.buffer_size);
   1648   1.1    isaki 	XP_EQ(0, ai.record.samples);
   1649   1.1    isaki 	XP_EQ(0, ai.record.eof);
   1650   1.7    isaki 	XP_EQ(exp_pause, ai.record.pause);
   1651   1.1    isaki 	XP_EQ(0, ai.record.error);
   1652   1.1    isaki 	XP_EQ(0, ai.record.waiting);
   1653   1.1    isaki 		/* balance */
   1654   1.7    isaki 	XP_EQ(exp_ropen, ai.record.open);
   1655   1.9    isaki 	if (netbsd < 9 && strcmp(devname, "sound") == 0) {
   1656   1.9    isaki 		/*
   1657   1.9    isaki 		 * On NetBSD7/8, it doesn't seem to start recording on open
   1658   1.9    isaki 		 * for /dev/sound.  It should be a bug.
   1659   1.9    isaki 		 */
   1660   1.9    isaki 		XP_EQ(0, ai.record.active);
   1661   1.1    isaki 	} else {
   1662   1.9    isaki 		XP_EQ(exp_ropen, ai.record.active);
   1663   1.1    isaki 	}
   1664   1.1    isaki 
   1665   1.1    isaki 	r = CLOSE(fd);
   1666   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1667   1.1    isaki }
   1668   1.7    isaki DEF(open_audio_RDONLY)		{ test_open("audio", O_RDONLY); }
   1669   1.7    isaki DEF(open_audio_WRONLY)		{ test_open("audio", O_WRONLY); }
   1670   1.7    isaki DEF(open_audio_RDWR)		{ test_open("audio", O_RDWR);   }
   1671   1.7    isaki DEF(open_sound_RDONLY)		{ test_open("sound", O_RDONLY); }
   1672   1.7    isaki DEF(open_sound_WRONLY)		{ test_open("sound", O_WRONLY); }
   1673   1.7    isaki DEF(open_sound_RDWR)		{ test_open("sound", O_RDWR);   }
   1674   1.7    isaki DEF(open_audioctl_RDONLY)	{ test_open("audioctl", O_RDONLY); }
   1675   1.7    isaki DEF(open_audioctl_WRONLY)	{ test_open("audioctl", O_WRONLY); }
   1676   1.7    isaki DEF(open_audioctl_RDWR)		{ test_open("audioctl", O_RDWR);   }
   1677   1.1    isaki 
   1678   1.1    isaki /*
   1679   1.1    isaki  * Open (1) /dev/sound -> (2) /dev/audio -> (3) /dev/sound,
   1680   1.1    isaki  * Both of /dev/audio and /dev/sound share the sticky parameters,
   1681   1.1    isaki  * /dev/sound inherits and use it but /dev/audio initialize and use it.
   1682   1.1    isaki  * So 2nd audio descriptor affects 3rd sound descriptor.
   1683   1.1    isaki  */
   1684   1.1    isaki DEF(open_sound_sticky)
   1685   1.1    isaki {
   1686   1.1    isaki 	struct audio_info ai;
   1687   1.1    isaki 	int fd;
   1688   1.1    isaki 	int r;
   1689   1.1    isaki 	int openmode;
   1690   1.1    isaki 
   1691   1.1    isaki 	TEST("open_sound_sticky");
   1692   1.1    isaki 
   1693   1.1    isaki 	openmode = openable_mode();
   1694   1.1    isaki 
   1695   1.1    isaki 	/* First, open /dev/sound and change encoding as a delegate */
   1696   1.1    isaki 	fd = OPEN(devsound, openmode);
   1697   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1698   1.1    isaki 	AUDIO_INITINFO(&ai);
   1699   1.1    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_LE;
   1700   1.1    isaki 	ai.record.encoding = AUDIO_ENCODING_SLINEAR_LE;
   1701   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   1702   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1703   1.1    isaki 	r = CLOSE(fd);
   1704   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1705   1.1    isaki 
   1706   1.1    isaki 	/* Next, open /dev/audio.  It makes the encoding mulaw */
   1707   1.1    isaki 	fd = OPEN(devaudio, openmode);
   1708   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1709   1.1    isaki 	r = CLOSE(fd);
   1710   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1711   1.1    isaki 
   1712   1.1    isaki 	/* And then, open /dev/sound again */
   1713   1.1    isaki 	fd = OPEN(devsound, openmode);
   1714   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1715   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   1716   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   1717   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1718   1.1    isaki 	XP_EQ(AUDIO_ENCODING_ULAW, ai.play.encoding);
   1719   1.1    isaki 	XP_EQ(AUDIO_ENCODING_ULAW, ai.record.encoding);
   1720   1.1    isaki 	r = CLOSE(fd);
   1721   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1722   1.1    isaki }
   1723   1.1    isaki 
   1724   1.1    isaki /*
   1725   1.7    isaki  * /dev/audioctl has stickiness like /dev/sound.
   1726   1.1    isaki  */
   1727   1.1    isaki DEF(open_audioctl_sticky)
   1728   1.1    isaki {
   1729   1.1    isaki 	struct audio_info ai;
   1730   1.1    isaki 	int fd;
   1731   1.1    isaki 	int r;
   1732   1.1    isaki 	int openmode;
   1733   1.1    isaki 
   1734   1.1    isaki 	TEST("open_audioctl_sticky");
   1735   1.1    isaki 
   1736   1.1    isaki 	openmode = openable_mode();
   1737   1.1    isaki 
   1738   1.7    isaki 	/* First, open /dev/audio and change encoding */
   1739   1.7    isaki 	fd = OPEN(devaudio, openmode);
   1740   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1741   1.1    isaki 	AUDIO_INITINFO(&ai);
   1742   1.1    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_LE;
   1743   1.7    isaki 	ai.play.precision = 16;
   1744   1.1    isaki 	ai.record.encoding = AUDIO_ENCODING_SLINEAR_LE;
   1745   1.7    isaki 	ai.record.precision = 16;
   1746   1.7    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "SLINEAR_LE");
   1747   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1748   1.1    isaki 	r = CLOSE(fd);
   1749   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1750   1.1    isaki 
   1751   1.7    isaki 	/* Next, open /dev/audioctl.  It should be affected */
   1752   1.1    isaki 	fd = OPEN(devaudioctl, openmode);
   1753   1.1    isaki 	REQUIRED_SYS_OK(fd);
   1754   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   1755   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   1756   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1757   1.1    isaki 	XP_EQ(AUDIO_ENCODING_SLINEAR_LE, ai.play.encoding);
   1758   1.7    isaki 	XP_EQ(16, ai.play.precision);
   1759   1.1    isaki 	XP_EQ(AUDIO_ENCODING_SLINEAR_LE, ai.record.encoding);
   1760   1.7    isaki 	XP_EQ(16, ai.record.precision);
   1761   1.7    isaki 
   1762   1.7    isaki 	/* Then, change /dev/audioctl */
   1763   1.7    isaki 	AUDIO_INITINFO(&ai);
   1764   1.7    isaki 	ai.play.encoding = AUDIO_ENCODING_ULAW;
   1765   1.7    isaki 	ai.play.precision = 8;
   1766   1.7    isaki 	ai.record.encoding = AUDIO_ENCODING_ULAW;
   1767   1.7    isaki 	ai.record.precision = 8;
   1768   1.7    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "ULAW");
   1769   1.7    isaki 	REQUIRED_SYS_EQ(0, r);
   1770   1.7    isaki 	r = CLOSE(fd);
   1771   1.7    isaki 	REQUIRED_SYS_EQ(0, r);
   1772   1.7    isaki 
   1773   1.7    isaki 	/* Finally, open /dev/sound.  It also should be affected  */
   1774   1.7    isaki 	fd = OPEN(devsound, openmode);
   1775   1.7    isaki 	REQUIRED_SYS_OK(fd);
   1776   1.7    isaki 	memset(&ai, 0, sizeof(ai));
   1777   1.7    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   1778   1.7    isaki 	REQUIRED_SYS_EQ(0, r);
   1779   1.7    isaki 	XP_EQ(AUDIO_ENCODING_ULAW, ai.play.encoding);
   1780   1.7    isaki 	XP_EQ(8, ai.play.precision);
   1781   1.7    isaki 	XP_EQ(AUDIO_ENCODING_ULAW, ai.record.encoding);
   1782   1.7    isaki 	XP_EQ(8, ai.record.precision);
   1783   1.1    isaki 	r = CLOSE(fd);
   1784   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1785   1.1    isaki }
   1786   1.1    isaki 
   1787   1.1    isaki /*
   1788   1.1    isaki  * Open two descriptors simultaneously.
   1789   1.1    isaki  */
   1790   1.1    isaki void
   1791   1.1    isaki test_open_simul(int mode0, int mode1)
   1792   1.1    isaki {
   1793   1.1    isaki 	struct audio_info ai;
   1794   1.1    isaki 	int fd0, fd1;
   1795   1.1    isaki 	int i;
   1796   1.1    isaki 	int r;
   1797   1.1    isaki 	int actmode;
   1798   1.1    isaki #define AUMODE_BOTH (AUMODE_PLAY | AUMODE_RECORD)
   1799   1.1    isaki 	struct {
   1800   1.1    isaki 		int mode0;
   1801   1.1    isaki 		int mode1;
   1802   1.1    isaki 	} expfulltable[] = {
   1803   1.1    isaki 		/* expected fd0		expected fd1 (-errno expects error) */
   1804   1.1    isaki 		{ AUMODE_RECORD,	AUMODE_RECORD },	// REC, REC
   1805   1.1    isaki 		{ AUMODE_RECORD,	AUMODE_PLAY },		// REC, PLAY
   1806   1.1    isaki 		{ AUMODE_RECORD,	AUMODE_BOTH },		// REC, BOTH
   1807   1.1    isaki 		{ AUMODE_PLAY,		AUMODE_RECORD },	// PLAY, REC
   1808   1.1    isaki 		{ AUMODE_PLAY,		AUMODE_PLAY },		// PLAY, PLAY
   1809   1.1    isaki 		{ AUMODE_PLAY,		AUMODE_BOTH },		// PLAY, BOTH
   1810   1.1    isaki 		{ AUMODE_BOTH,		AUMODE_RECORD },	// BOTH, REC
   1811   1.1    isaki 		{ AUMODE_BOTH,		AUMODE_PLAY },		// BOTH, PLAY
   1812   1.1    isaki 		{ AUMODE_BOTH,		AUMODE_BOTH },		// BOTH, BOTH
   1813   1.1    isaki 	},
   1814   1.1    isaki 	exphalftable[] = {
   1815   1.1    isaki 		/* expected fd0		expected fd1 (-errno expects error) */
   1816   1.1    isaki 		{ AUMODE_RECORD,	AUMODE_RECORD },	// REC, REC
   1817   1.1    isaki 		{ AUMODE_RECORD,	-ENODEV },		// REC, PLAY
   1818   1.1    isaki 		{ AUMODE_RECORD,	-ENODEV },		// REC, BOTH
   1819   1.1    isaki 		{ AUMODE_PLAY,		-ENODEV },		// PLAY, REC
   1820   1.1    isaki 		{ AUMODE_PLAY,		AUMODE_PLAY },		// PLAY, PLAY
   1821   1.1    isaki 		{ AUMODE_PLAY,		AUMODE_PLAY },		// PLAY, BOTH
   1822   1.1    isaki 		{ AUMODE_PLAY,		-ENODEV },		// BOTH, REC
   1823   1.1    isaki 		{ AUMODE_PLAY,		AUMODE_PLAY },		// BOTH, PLAY
   1824   1.1    isaki 		{ AUMODE_PLAY,		AUMODE_PLAY },		// BOTH, BOTH
   1825   1.1    isaki 	}, *exptable;
   1826   1.1    isaki 
   1827   1.1    isaki 	/* The expected values are different in half-duplex or full-duplex */
   1828   1.1    isaki 	if (hw_fulldup()) {
   1829   1.1    isaki 		exptable = expfulltable;
   1830   1.1    isaki 	} else {
   1831   1.1    isaki 		exptable = exphalftable;
   1832   1.1    isaki 	}
   1833   1.1    isaki 
   1834   1.1    isaki 	TEST("open_simul_%s_%s",
   1835   1.1    isaki 	    openmode_str[mode0] + 2,
   1836   1.1    isaki 	    openmode_str[mode1] + 2);
   1837   1.1    isaki 
   1838   1.1    isaki 	if (netbsd < 8) {
   1839   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   1840   1.1    isaki 		return;
   1841   1.1    isaki 	}
   1842   1.1    isaki 
   1843   1.1    isaki 	if (mode2aumode(mode0) == 0 || mode2aumode(mode1) == 0) {
   1844   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   1845   1.1    isaki 		return;
   1846   1.1    isaki 	}
   1847   1.1    isaki 
   1848   1.1    isaki 	i = mode0 * 3 + mode1;
   1849   1.1    isaki 
   1850   1.1    isaki 	/* Open first one */
   1851   1.1    isaki 	fd0 = OPEN(devaudio, mode0);
   1852   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   1853   1.1    isaki 	r = IOCTL(fd0, AUDIO_GETBUFINFO, &ai, "");
   1854   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1855   1.1    isaki 	actmode = ai.mode & AUMODE_BOTH;
   1856   1.1    isaki 	XP_EQ(exptable[i].mode0, actmode);
   1857   1.1    isaki 
   1858   1.1    isaki 	/* Open second one */
   1859   1.1    isaki 	fd1 = OPEN(devaudio, mode1);
   1860   1.1    isaki 	if (exptable[i].mode1 >= 0) {
   1861   1.1    isaki 		/* Case to expect to be able to open */
   1862   1.1    isaki 		REQUIRED_SYS_OK(fd1);
   1863   1.1    isaki 		r = IOCTL(fd1, AUDIO_GETBUFINFO, &ai, "");
   1864   1.1    isaki 		XP_SYS_EQ(0, r);
   1865   1.1    isaki 		if (r == 0) {
   1866   1.1    isaki 			actmode = ai.mode & AUMODE_BOTH;
   1867   1.1    isaki 			XP_EQ(exptable[i].mode1, actmode);
   1868   1.1    isaki 		}
   1869   1.1    isaki 	} else {
   1870   1.1    isaki 		/* Case to expect not to be able to open */
   1871   1.1    isaki 		XP_SYS_NG(ENODEV, fd1);
   1872   1.1    isaki 		if (fd1 == -1) {
   1873   1.1    isaki 			XP_EQ(-exptable[i].mode1, errno);
   1874   1.1    isaki 		} else {
   1875   1.1    isaki 			r = IOCTL(fd1, AUDIO_GETBUFINFO, &ai, "");
   1876   1.1    isaki 			XP_SYS_EQ(0, r);
   1877   1.1    isaki 			if (r == 0) {
   1878   1.1    isaki 				actmode = ai.mode & AUMODE_BOTH;
   1879   1.1    isaki 				XP_FAIL("expects error but %d", actmode);
   1880   1.1    isaki 			}
   1881   1.1    isaki 		}
   1882   1.1    isaki 	}
   1883   1.1    isaki 
   1884   1.1    isaki 	if (fd1 >= 0) {
   1885   1.1    isaki 		r = CLOSE(fd1);
   1886   1.1    isaki 		XP_SYS_EQ(0, r);
   1887   1.1    isaki 	}
   1888   1.1    isaki 
   1889   1.1    isaki 	r = CLOSE(fd0);
   1890   1.1    isaki 	XP_SYS_EQ(0, r);
   1891   1.1    isaki }
   1892   1.1    isaki DEF(open_simul_RDONLY_RDONLY)	{ test_open_simul(O_RDONLY, O_RDONLY);	}
   1893   1.1    isaki DEF(open_simul_RDONLY_WRONLY)	{ test_open_simul(O_RDONLY, O_WRONLY);	}
   1894   1.1    isaki DEF(open_simul_RDONLY_RDWR)	{ test_open_simul(O_RDONLY, O_RDWR);	}
   1895   1.1    isaki DEF(open_simul_WRONLY_RDONLY)	{ test_open_simul(O_WRONLY, O_RDONLY);	}
   1896   1.1    isaki DEF(open_simul_WRONLY_WRONLY)	{ test_open_simul(O_WRONLY, O_WRONLY);	}
   1897   1.1    isaki DEF(open_simul_WRONLY_RDWR)	{ test_open_simul(O_WRONLY, O_RDWR);	}
   1898   1.1    isaki DEF(open_simul_RDWR_RDONLY)	{ test_open_simul(O_RDWR, O_RDONLY);	}
   1899   1.1    isaki DEF(open_simul_RDWR_WRONLY)	{ test_open_simul(O_RDWR, O_WRONLY);	}
   1900   1.1    isaki DEF(open_simul_RDWR_RDWR)	{ test_open_simul(O_RDWR, O_RDWR);	}
   1901   1.1    isaki 
   1902   1.1    isaki /*
   1903   1.1    isaki  * /dev/audio can be opened by other user who opens /dev/audio.
   1904   1.1    isaki  */
   1905   1.1    isaki void
   1906   1.4    isaki try_open_multiuser(bool multiuser)
   1907   1.1    isaki {
   1908   1.1    isaki 	int fd0;
   1909   1.1    isaki 	int fd1;
   1910   1.1    isaki 	int r;
   1911   1.1    isaki 	uid_t ouid;
   1912   1.1    isaki 
   1913   1.1    isaki 	/*
   1914   1.1    isaki 	 * Test1: Open as root first and then unprivileged user.
   1915   1.1    isaki 	 */
   1916   1.1    isaki 
   1917   1.1    isaki 	/* At first, open as root */
   1918   1.1    isaki 	fd0 = OPEN(devaudio, openable_mode());
   1919   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   1920   1.1    isaki 
   1921   1.1    isaki 	ouid = GETUID();
   1922   1.1    isaki 	r = SETEUID(1);
   1923   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1924   1.1    isaki 
   1925   1.1    isaki 	/* Then, open as unprivileged user */
   1926   1.1    isaki 	fd1 = OPEN(devaudio, openable_mode());
   1927   1.1    isaki 	if (multiuser) {
   1928   1.1    isaki 		/* If multiuser, another user also can open */
   1929   1.1    isaki 		XP_SYS_OK(fd1);
   1930   1.1    isaki 	} else {
   1931   1.1    isaki 		/* If not multiuser, another user cannot open */
   1932   1.1    isaki 		XP_SYS_NG(EPERM, fd1);
   1933   1.1    isaki 	}
   1934   1.1    isaki 	if (fd1 != -1) {
   1935   1.1    isaki 		r = CLOSE(fd1);
   1936   1.1    isaki 		XP_SYS_EQ(0, r);
   1937   1.1    isaki 	}
   1938   1.1    isaki 
   1939   1.1    isaki 	r = SETEUID(ouid);
   1940   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1941   1.1    isaki 
   1942   1.1    isaki 	r = CLOSE(fd0);
   1943   1.1    isaki 	XP_SYS_EQ(0, r);
   1944   1.1    isaki 
   1945   1.1    isaki 	/*
   1946   1.1    isaki 	 * Test2: Open as unprivileged user first and then root.
   1947   1.1    isaki 	 */
   1948   1.1    isaki 
   1949   1.1    isaki 	/* At first, open as unprivileged user */
   1950   1.1    isaki 	ouid = GETUID();
   1951   1.1    isaki 	r = SETEUID(1);
   1952   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1953   1.1    isaki 
   1954   1.1    isaki 	fd0 = OPEN(devaudio, openable_mode());
   1955   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   1956   1.1    isaki 
   1957   1.1    isaki 	/* Then open as root */
   1958   1.1    isaki 	r = SETEUID(ouid);
   1959   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1960   1.1    isaki 
   1961   1.1    isaki 	/* root always can open */
   1962   1.1    isaki 	fd1 = OPEN(devaudio, openable_mode());
   1963   1.1    isaki 	XP_SYS_OK(fd1);
   1964   1.1    isaki 	if (fd1 != -1) {
   1965   1.1    isaki 		r = CLOSE(fd1);
   1966   1.1    isaki 		XP_SYS_EQ(0, r);
   1967   1.1    isaki 	}
   1968   1.1    isaki 
   1969   1.1    isaki 	/* Close first one as unprivileged user */
   1970   1.1    isaki 	r = SETEUID(1);
   1971   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1972   1.1    isaki 	r = CLOSE(fd0);
   1973   1.1    isaki 	XP_SYS_EQ(0, r);
   1974   1.1    isaki 	r = SETEUID(ouid);
   1975   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   1976   1.1    isaki }
   1977   1.1    isaki /*
   1978   1.1    isaki  * This is a wrapper for open_multiuser.
   1979   1.1    isaki  * XXX XP_* macros are not compatible with on-error-goto, we need try-catch...
   1980   1.1    isaki  */
   1981   1.1    isaki void
   1982   1.4    isaki test_open_multiuser(bool multiuser)
   1983   1.1    isaki {
   1984   1.1    isaki 	char mibname[32];
   1985   1.1    isaki 	bool oldval;
   1986   1.1    isaki 	size_t oldlen;
   1987   1.1    isaki 	int r;
   1988   1.1    isaki 
   1989   1.1    isaki 	TEST("open_multiuser_%d", multiuser);
   1990   1.1    isaki 	if (netbsd < 8) {
   1991   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   1992   1.1    isaki 		return;
   1993   1.1    isaki 	}
   1994   1.1    isaki 	if (netbsd < 9) {
   1995   1.1    isaki 		/* NetBSD8 has no way (difficult) to determine device name */
   1996   1.1    isaki 		XP_SKIP("NetBSD8 cannot determine device name");
   1997   1.1    isaki 		return;
   1998   1.1    isaki 	}
   1999   1.1    isaki 	if (geteuid() != 0) {
   2000   1.1    isaki 		XP_SKIP("Must be run as a privileged user");
   2001   1.1    isaki 		return;
   2002   1.1    isaki 	}
   2003   1.1    isaki 
   2004   1.1    isaki 	/* Get current multiuser mode (and save it) */
   2005   1.1    isaki 	snprintf(mibname, sizeof(mibname), "hw.%s.multiuser", devicename);
   2006   1.1    isaki 	oldlen = sizeof(oldval);
   2007   1.1    isaki 	r = SYSCTLBYNAME(mibname, &oldval, &oldlen, NULL, 0);
   2008   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2009   1.1    isaki 	DPRINTF("  > multiuser=%d\n", oldval);
   2010   1.1    isaki 
   2011   1.1    isaki 	/* Change if necessary */
   2012   1.1    isaki 	if (oldval != multiuser) {
   2013   1.4    isaki 		r = SYSCTLBYNAME(mibname, NULL, NULL, &multiuser,
   2014   1.4    isaki 		    sizeof(multiuser));
   2015   1.1    isaki 		REQUIRED_SYS_EQ(0, r);
   2016   1.1    isaki 		DPRINTF("  > new multiuser=%d\n", multiuser);
   2017   1.1    isaki 	}
   2018   1.1    isaki 
   2019   1.1    isaki 	/* Do test */
   2020   1.1    isaki 	try_open_multiuser(multiuser);
   2021   1.1    isaki 
   2022   1.1    isaki 	/* Restore multiuser mode */
   2023   1.4    isaki 	if (oldval != multiuser) {
   2024   1.1    isaki 		DPRINTF("  > restore multiuser to %d\n", oldval);
   2025   1.1    isaki 		r = SYSCTLBYNAME(mibname, NULL, NULL, &oldval, sizeof(oldval));
   2026   1.1    isaki 		REQUIRED_SYS_EQ(0, r);
   2027   1.1    isaki 	}
   2028   1.1    isaki }
   2029   1.4    isaki DEF(open_multiuser_0)	{ test_open_multiuser(false); }
   2030   1.4    isaki DEF(open_multiuser_1)	{ test_open_multiuser(true); }
   2031   1.1    isaki 
   2032   1.1    isaki /*
   2033   1.1    isaki  * Normal playback (with PLAY_ALL).
   2034   1.1    isaki  * It does not verify real playback data.
   2035   1.1    isaki  */
   2036   1.1    isaki DEF(write_PLAY_ALL)
   2037   1.1    isaki {
   2038   1.1    isaki 	char buf[8000];
   2039   1.1    isaki 	int fd;
   2040   1.1    isaki 	int r;
   2041   1.1    isaki 
   2042   1.1    isaki 	TEST("write_PLAY_ALL");
   2043   1.1    isaki 
   2044   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   2045   1.1    isaki 	if (hw_canplay()) {
   2046   1.1    isaki 		REQUIRED_SYS_OK(fd);
   2047   1.1    isaki 	} else {
   2048   1.1    isaki 		XP_SYS_NG(ENXIO, fd);
   2049   1.1    isaki 		return;
   2050   1.1    isaki 	}
   2051   1.1    isaki 
   2052   1.1    isaki 	/* mulaw 1sec silence */
   2053   1.1    isaki 	memset(buf, 0xff, sizeof(buf));
   2054   1.1    isaki 	r = WRITE(fd, buf, sizeof(buf));
   2055   1.1    isaki 	XP_SYS_EQ(sizeof(buf), r);
   2056   1.1    isaki 
   2057   1.1    isaki 	r = CLOSE(fd);
   2058   1.1    isaki 	XP_SYS_EQ(0, r);
   2059   1.1    isaki }
   2060   1.1    isaki 
   2061   1.1    isaki /*
   2062   1.1    isaki  * Normal playback (without PLAY_ALL).
   2063   1.1    isaki  * It does not verify real playback data.
   2064   1.1    isaki  */
   2065   1.1    isaki DEF(write_PLAY)
   2066   1.1    isaki {
   2067   1.1    isaki 	struct audio_info ai;
   2068   1.1    isaki 	char *wav;
   2069   1.1    isaki 	int wavsize;
   2070   1.1    isaki 	int totalsize;
   2071   1.1    isaki 	int fd;
   2072   1.1    isaki 	int r;
   2073   1.1    isaki 
   2074   1.1    isaki 	TEST("write_PLAY");
   2075   1.1    isaki 
   2076   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   2077   1.1    isaki 	if (hw_canplay()) {
   2078   1.1    isaki 		REQUIRED_SYS_OK(fd);
   2079   1.1    isaki 	} else {
   2080   1.1    isaki 		XP_SYS_NG(ENXIO, fd);
   2081   1.1    isaki 		return;
   2082   1.1    isaki 	}
   2083   1.1    isaki 
   2084   1.1    isaki 	/* Drop PLAY_ALL */
   2085   1.1    isaki 	AUDIO_INITINFO(&ai);
   2086   1.1    isaki 	ai.mode = AUMODE_PLAY;
   2087   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "mode");
   2088   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2089   1.1    isaki 
   2090   1.1    isaki 	/* Check mode and get blocksize */
   2091   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   2092   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2093   1.1    isaki 	XP_EQ(AUMODE_PLAY, ai.mode);
   2094   1.1    isaki 
   2095   1.1    isaki 	wavsize = ai.blocksize;
   2096   1.1    isaki 	wav = (char *)malloc(wavsize);
   2097   1.1    isaki 	REQUIRED_IF(wav != NULL);
   2098   1.1    isaki 	memset(wav, 0xff, wavsize);
   2099   1.1    isaki 
   2100   1.1    isaki 	/* Write blocks until 1sec */
   2101   1.1    isaki 	for (totalsize = 0; totalsize < 8000; ) {
   2102   1.1    isaki 		r = WRITE(fd, wav, wavsize);
   2103   1.1    isaki 		XP_SYS_EQ(wavsize, r);
   2104   1.1    isaki 		if (r == -1)
   2105   1.1    isaki 			break;	/* XXX */
   2106   1.1    isaki 		totalsize += r;
   2107   1.1    isaki 	}
   2108   1.1    isaki 
   2109   1.1    isaki 	/* XXX What should I test it? */
   2110   1.1    isaki 	/* Check ai.play.error */
   2111   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   2112   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2113   1.1    isaki 	XP_EQ(0, ai.play.error);
   2114   1.1    isaki 
   2115   1.1    isaki 	/* Playback data is no longer necessary */
   2116   1.1    isaki 	r = IOCTL(fd, AUDIO_FLUSH, NULL, "");
   2117   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2118   1.1    isaki 
   2119   1.1    isaki 	r = CLOSE(fd);
   2120   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2121   1.1    isaki 
   2122   1.1    isaki 	free(wav);
   2123   1.1    isaki }
   2124   1.1    isaki 
   2125   1.1    isaki /*
   2126   1.1    isaki  * Normal recording.
   2127   1.1    isaki  * It does not verify real recorded data.
   2128   1.1    isaki  */
   2129   1.1    isaki DEF(read)
   2130   1.1    isaki {
   2131   1.1    isaki 	char buf[8000];
   2132   1.1    isaki 	int fd;
   2133   1.1    isaki 	int r;
   2134   1.1    isaki 
   2135   1.1    isaki 	TEST("read");
   2136   1.1    isaki 
   2137   1.1    isaki 	fd = OPEN(devaudio, O_RDONLY);
   2138   1.1    isaki 	if (hw_canrec()) {
   2139   1.1    isaki 		REQUIRED_SYS_OK(fd);
   2140   1.1    isaki 	} else {
   2141   1.1    isaki 		XP_SYS_NG(ENXIO, fd);
   2142   1.1    isaki 		return;
   2143   1.1    isaki 	}
   2144   1.1    isaki 
   2145   1.1    isaki 	/* mulaw 1sec */
   2146   1.1    isaki 	r = READ(fd, buf, sizeof(buf));
   2147   1.1    isaki 	XP_SYS_EQ(sizeof(buf), r);
   2148   1.1    isaki 
   2149   1.1    isaki 	r = CLOSE(fd);
   2150   1.1    isaki 	XP_SYS_EQ(0, r);
   2151   1.1    isaki }
   2152   1.1    isaki 
   2153   1.1    isaki /*
   2154   1.1    isaki  * Repeat open-write-close cycle.
   2155   1.1    isaki  */
   2156   1.1    isaki DEF(rept_write)
   2157   1.1    isaki {
   2158   1.1    isaki 	struct timeval start, end, result;
   2159   1.1    isaki 	double res;
   2160   1.1    isaki 	char buf[8000];	/* 1sec in 8bit-mulaw,1ch,8000Hz */
   2161   1.1    isaki 	int fd;
   2162   1.1    isaki 	int r;
   2163   1.1    isaki 	int n;
   2164   1.1    isaki 
   2165   1.1    isaki 	TEST("rept_write");
   2166   1.1    isaki 
   2167   1.1    isaki 	if (hw_canplay() == 0) {
   2168   1.1    isaki 		XP_SKIP("This test is only for playable device");
   2169   1.1    isaki 		return;
   2170   1.1    isaki 	}
   2171   1.1    isaki 
   2172   1.1    isaki 	/* XXX It may timeout on some hardware driver. */
   2173   1.1    isaki 	XP_SKIP("not yet");
   2174   1.1    isaki 	return;
   2175   1.1    isaki 
   2176   1.1    isaki 	memset(buf, 0xff, sizeof(buf));
   2177   1.1    isaki 	n = 3;
   2178   1.1    isaki 	gettimeofday(&start, NULL);
   2179   1.1    isaki 	for (int i = 0; i < n; i++) {
   2180   1.1    isaki 		fd = OPEN(devaudio, O_WRONLY);
   2181   1.1    isaki 		REQUIRED_SYS_OK(fd);
   2182   1.1    isaki 
   2183   1.1    isaki 		r = WRITE(fd, buf, sizeof(buf));
   2184   1.1    isaki 		XP_SYS_EQ(sizeof(buf), r);
   2185   1.1    isaki 
   2186   1.1    isaki 		r = CLOSE(fd);
   2187   1.1    isaki 		XP_SYS_EQ(0, r);
   2188   1.1    isaki 	}
   2189   1.1    isaki 	gettimeofday(&end, NULL);
   2190   1.1    isaki 	timersub(&end, &start, &result);
   2191   1.1    isaki 	res = (double)result.tv_sec + (double)result.tv_usec / 1000000;
   2192   1.1    isaki 	/* Make judgement but not too strict */
   2193   1.1    isaki 	if (res >= n * 1.5) {
   2194   1.1    isaki 		XP_FAIL("expects %d sec but %4.1f sec", n, res);
   2195   1.1    isaki 		return;
   2196   1.1    isaki 	}
   2197   1.1    isaki }
   2198   1.1    isaki 
   2199   1.1    isaki /*
   2200   1.1    isaki  * Repeat open-read-close cycle.
   2201   1.1    isaki  */
   2202   1.1    isaki DEF(rept_read)
   2203   1.1    isaki {
   2204   1.1    isaki 	struct timeval start, end, result;
   2205   1.1    isaki 	double res;
   2206   1.1    isaki 	char buf[8000];	/* 1sec in 8bit-mulaw,1ch,8000Hz */
   2207   1.1    isaki 	int fd;
   2208   1.1    isaki 	int r;
   2209   1.1    isaki 	int n;
   2210   1.1    isaki 
   2211   1.1    isaki 	TEST("rept_read");
   2212   1.1    isaki 
   2213   1.1    isaki 	if (hw_canrec() == 0) {
   2214   1.1    isaki 		XP_SKIP("This test is only for recordable device");
   2215   1.1    isaki 		return;
   2216   1.1    isaki 	}
   2217   1.1    isaki 
   2218   1.1    isaki 	/* XXX It may timeout on some hardware driver. */
   2219   1.1    isaki 	XP_SKIP("not yet");
   2220   1.1    isaki 	return;
   2221   1.1    isaki 
   2222   1.1    isaki 	n = 3;
   2223   1.1    isaki 	gettimeofday(&start, NULL);
   2224   1.1    isaki 	for (int i = 0; i < n; i++) {
   2225   1.1    isaki 		fd = OPEN(devaudio, O_RDONLY);
   2226   1.1    isaki 		REQUIRED_SYS_OK(fd);
   2227   1.1    isaki 
   2228   1.1    isaki 		r = READ(fd, buf, sizeof(buf));
   2229   1.1    isaki 		XP_SYS_EQ(sizeof(buf), r);
   2230   1.1    isaki 
   2231   1.1    isaki 		r = CLOSE(fd);
   2232   1.1    isaki 		XP_SYS_EQ(0, r);
   2233   1.1    isaki 	}
   2234   1.1    isaki 	gettimeofday(&end, NULL);
   2235   1.1    isaki 	timersub(&end, &start, &result);
   2236   1.1    isaki 	res = (double)result.tv_sec + (double)result.tv_usec / 1000000;
   2237   1.1    isaki 	/* Make judgement but not too strict */
   2238   1.1    isaki 	if (res >= n * 1.5) {
   2239   1.1    isaki 		XP_FAIL("expects %d sec but %4.1f sec", n, res);
   2240   1.1    isaki 		return;
   2241   1.1    isaki 	}
   2242   1.1    isaki }
   2243   1.1    isaki 
   2244   1.1    isaki /*
   2245   1.1    isaki  * Opening with O_RDWR on half-duplex hardware falls back to O_WRONLY.
   2246   1.1    isaki  * expwrite: expected to be able to play.
   2247  1.16  msaitoh  * expread : expected to be able to record.
   2248   1.1    isaki  */
   2249   1.1    isaki void
   2250   1.1    isaki test_rdwr_fallback(int openmode, bool expwrite, bool expread)
   2251   1.1    isaki {
   2252   1.1    isaki 	struct audio_info ai;
   2253   1.1    isaki 	char buf[10];
   2254   1.1    isaki 	int fd;
   2255   1.1    isaki 	int r;
   2256   1.1    isaki 
   2257   1.1    isaki 	TEST("rdwr_fallback_%s", openmode_str[openmode] + 2);
   2258   1.1    isaki 
   2259   1.1    isaki 	if (hw_bidir() == 0) {
   2260   1.1    isaki 		XP_SKIP("This test is only for bi-directional device");
   2261   1.1    isaki 		return;
   2262   1.1    isaki 	}
   2263   1.1    isaki 
   2264   1.1    isaki 	AUDIO_INITINFO(&ai);
   2265   1.1    isaki 	ai.play.pause = 1;
   2266   1.1    isaki 	ai.record.pause = 1;
   2267   1.1    isaki 
   2268   1.1    isaki 	fd = OPEN(devaudio, openmode);
   2269   1.1    isaki 	REQUIRED_SYS_OK(fd);
   2270   1.1    isaki 
   2271   1.1    isaki 	/* Set pause not to play noise */
   2272   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause");
   2273   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2274   1.1    isaki 
   2275   1.1    isaki 	memset(buf, 0xff, sizeof(buf));
   2276   1.1    isaki 	r = WRITE(fd, buf, sizeof(buf));
   2277   1.1    isaki 	if (expwrite) {
   2278   1.1    isaki 		XP_SYS_EQ(sizeof(buf), r);
   2279   1.1    isaki 	} else {
   2280   1.1    isaki 		XP_SYS_NG(EBADF, r);
   2281   1.1    isaki 	}
   2282   1.1    isaki 
   2283   1.1    isaki 	r = READ(fd, buf, 0);
   2284   1.1    isaki 	if (expread) {
   2285   1.1    isaki 		XP_SYS_EQ(0, r);
   2286   1.1    isaki 	} else {
   2287   1.1    isaki 		XP_SYS_NG(EBADF, r);
   2288   1.1    isaki 	}
   2289   1.1    isaki 
   2290   1.1    isaki 	r = CLOSE(fd);
   2291   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2292   1.1    isaki }
   2293   1.1    isaki DEF(rdwr_fallback_RDONLY) { test_rdwr_fallback(O_RDONLY, false, true); }
   2294   1.1    isaki DEF(rdwr_fallback_WRONLY) { test_rdwr_fallback(O_WRONLY, true, false); }
   2295   1.1    isaki DEF(rdwr_fallback_RDWR) {
   2296   1.1    isaki 	bool expread;
   2297   1.1    isaki 	/*
   2298   1.1    isaki 	 * On NetBSD7, O_RDWR on half-duplex is accepted. It's possible to
   2299   1.1    isaki 	 * read and write if they don't occur at the same time.
   2300   1.1    isaki 	 * On NetBSD9, O_RDWR on half-duplex falls back O_WRONLY.
   2301   1.1    isaki 	 */
   2302   1.1    isaki 	if (netbsd < 8) {
   2303   1.1    isaki 		expread = true;
   2304   1.1    isaki 	} else {
   2305   1.1    isaki 		expread = hw_fulldup() ? true : false;
   2306   1.1    isaki 	}
   2307   1.1    isaki 	test_rdwr_fallback(O_RDWR, true, expread);
   2308   1.1    isaki }
   2309   1.1    isaki 
   2310   1.1    isaki /*
   2311  1.23   andvar  * On full-duplex hardware, the second descriptor's readability/writability
   2312  1.24   andvar  * does not depend on the first descriptor's open mode.
   2313   1.1    isaki  * On half-duplex hardware, it depends on the first descriptor's open mode.
   2314   1.1    isaki  */
   2315   1.1    isaki void
   2316   1.1    isaki test_rdwr_two(int mode0, int mode1)
   2317   1.1    isaki {
   2318   1.1    isaki 	struct audio_info ai;
   2319   1.1    isaki 	char wbuf[100];	/* 1/80sec in 8bit-mulaw,1ch,8000Hz */
   2320   1.1    isaki 	char rbuf[100];	/* 1/80sec in 8bit-mulaw,1ch,8000Hz */
   2321   1.1    isaki 	bool canopen;
   2322   1.1    isaki 	bool canwrite;
   2323   1.1    isaki 	bool canread;
   2324   1.1    isaki 	int fd0;
   2325   1.1    isaki 	int fd1;
   2326   1.1    isaki 	int r;
   2327   1.1    isaki 	struct {
   2328   1.1    isaki 		bool canopen;
   2329   1.1    isaki 		bool canwrite;
   2330   1.1    isaki 		bool canread;
   2331   1.1    isaki 	} exptable_full[] = {
   2332   1.1    isaki 	/*	open write read	   1st, 2nd mode */
   2333   1.1    isaki 		{ 1, 0, 1 },	/* REC, REC */
   2334   1.1    isaki 		{ 1, 1, 0 },	/* REC, PLAY */
   2335   1.1    isaki 		{ 1, 1, 1 },	/* REC, BOTH */
   2336   1.1    isaki 		{ 1, 0, 1 },	/* PLAY, REC */
   2337   1.1    isaki 		{ 1, 1, 0 },	/* PLAY, PLAY */
   2338   1.1    isaki 		{ 1, 1, 1 },	/* PLAY, BOTH */
   2339   1.1    isaki 		{ 1, 0, 1 },	/* BOTH, REC */
   2340   1.1    isaki 		{ 1, 1, 0 },	/* BOTH, PLAY */
   2341   1.1    isaki 		{ 1, 1, 1 },	/* BOTH, BOTH */
   2342   1.1    isaki 	},
   2343   1.1    isaki 	exptable_half[] = {
   2344   1.1    isaki 		{ 1, 0, 1 },	/* REC, REC */
   2345   1.1    isaki 		{ 0, 0, 0 },	/* REC, PLAY */
   2346   1.1    isaki 		{ 0, 0, 0 },	/* REC, BOTH */
   2347   1.1    isaki 		{ 0, 0, 0 },	/* PLAY, REC */
   2348   1.1    isaki 		{ 1, 1, 0 },	/* PLAY, PLAY */
   2349   1.1    isaki 		{ 1, 1, 0 },	/* PLAY, BOTH */
   2350   1.1    isaki 		{ 0, 0, 0 },	/* BOTH, REC */
   2351   1.1    isaki 		{ 1, 1, 0 },	/* BOTH, PLAY */
   2352   1.1    isaki 		{ 0, 0, 0 },	/* BOTH, BOTH */
   2353   1.1    isaki 	}, *exptable;
   2354   1.1    isaki 
   2355   1.1    isaki 	TEST("rdwr_two_%s_%s",
   2356   1.1    isaki 	    openmode_str[mode0] + 2,
   2357   1.1    isaki 	    openmode_str[mode1] + 2);
   2358   1.1    isaki 
   2359   1.1    isaki 	if (netbsd < 8) {
   2360   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   2361   1.1    isaki 		return;
   2362   1.1    isaki 	}
   2363   1.1    isaki 	if (hw_bidir() == 0) {
   2364   1.1    isaki 		XP_SKIP("This test is only for bi-directional device");
   2365   1.1    isaki 		return;
   2366   1.1    isaki 	}
   2367   1.1    isaki 
   2368   1.1    isaki 	exptable = hw_fulldup() ? exptable_full : exptable_half;
   2369   1.1    isaki 
   2370   1.1    isaki 	canopen  = exptable[mode0 * 3 + mode1].canopen;
   2371   1.1    isaki 	canwrite = exptable[mode0 * 3 + mode1].canwrite;
   2372   1.1    isaki 	canread  = exptable[mode0 * 3 + mode1].canread;
   2373   1.1    isaki 
   2374   1.1    isaki 	if (!canopen) {
   2375   1.1    isaki 		XP_SKIP("This combination is not openable on half-duplex");
   2376   1.1    isaki 		return;
   2377   1.1    isaki 	}
   2378   1.1    isaki 
   2379   1.1    isaki 	fd0 = OPEN(devaudio, mode0);
   2380   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   2381   1.1    isaki 
   2382   1.1    isaki 	fd1 = OPEN(devaudio, mode1);
   2383   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   2384   1.1    isaki 
   2385   1.1    isaki 	/* Silent data to make no sound */
   2386   1.1    isaki 	memset(&wbuf, 0xff, sizeof(wbuf));
   2387   1.1    isaki 	/* Pause to make no sound */
   2388   1.1    isaki 	AUDIO_INITINFO(&ai);
   2389   1.1    isaki 	ai.play.pause = 1;
   2390   1.1    isaki 	r = IOCTL(fd0, AUDIO_SETINFO, &ai, "pause");
   2391   1.1    isaki 	XP_SYS_EQ(0, r);
   2392   1.1    isaki 
   2393   1.1    isaki 	/* write(fd1) */
   2394   1.1    isaki 	r = WRITE(fd1, wbuf, sizeof(wbuf));
   2395   1.1    isaki 	if (canwrite) {
   2396   1.1    isaki 		XP_SYS_EQ(100, r);
   2397   1.1    isaki 	} else {
   2398   1.1    isaki 		XP_SYS_NG(EBADF, r);
   2399   1.1    isaki 	}
   2400   1.1    isaki 
   2401   1.1    isaki 	/* read(fd1) */
   2402   1.1    isaki 	r = READ(fd1, rbuf, sizeof(rbuf));
   2403   1.1    isaki 	if (canread) {
   2404   1.1    isaki 		XP_SYS_EQ(100, r);
   2405   1.1    isaki 	} else {
   2406   1.1    isaki 		XP_SYS_NG(EBADF, r);
   2407   1.1    isaki 	}
   2408   1.1    isaki 
   2409   1.1    isaki 	r = CLOSE(fd0);
   2410   1.1    isaki 	XP_SYS_EQ(0, r);
   2411   1.1    isaki 	r = CLOSE(fd1);
   2412   1.1    isaki 	XP_SYS_EQ(0, r);
   2413   1.1    isaki }
   2414   1.1    isaki DEF(rdwr_two_RDONLY_RDONLY)	{ test_rdwr_two(O_RDONLY, O_RDONLY);	}
   2415   1.1    isaki DEF(rdwr_two_RDONLY_WRONLY)	{ test_rdwr_two(O_RDONLY, O_WRONLY);	}
   2416   1.1    isaki DEF(rdwr_two_RDONLY_RDWR)	{ test_rdwr_two(O_RDONLY, O_RDWR);	}
   2417   1.1    isaki DEF(rdwr_two_WRONLY_RDONLY)	{ test_rdwr_two(O_WRONLY, O_RDONLY);	}
   2418   1.1    isaki DEF(rdwr_two_WRONLY_WRONLY)	{ test_rdwr_two(O_WRONLY, O_WRONLY);	}
   2419   1.1    isaki DEF(rdwr_two_WRONLY_RDWR)	{ test_rdwr_two(O_WRONLY, O_RDWR);	}
   2420   1.1    isaki DEF(rdwr_two_RDWR_RDONLY)	{ test_rdwr_two(O_RDWR, O_RDONLY);	}
   2421   1.1    isaki DEF(rdwr_two_RDWR_WRONLY)	{ test_rdwr_two(O_RDWR, O_WRONLY);	}
   2422   1.1    isaki DEF(rdwr_two_RDWR_RDWR)		{ test_rdwr_two(O_RDWR, O_RDWR);	}
   2423   1.1    isaki 
   2424   1.1    isaki /*
   2425   1.1    isaki  * Read and write different descriptors simultaneously.
   2426   1.1    isaki  * Only on full-duplex.
   2427   1.1    isaki  */
   2428   1.1    isaki DEF(rdwr_simul)
   2429   1.1    isaki {
   2430   1.1    isaki 	char wbuf[1000];	/* 1/8sec in mulaw,1ch,8kHz */
   2431   1.1    isaki 	char rbuf[1000];
   2432   1.1    isaki 	int fd0;
   2433   1.1    isaki 	int fd1;
   2434   1.1    isaki 	int r;
   2435   1.1    isaki 	int status;
   2436   1.1    isaki 	pid_t pid;
   2437   1.1    isaki 
   2438   1.1    isaki 	TEST("rdwr_simul");
   2439   1.1    isaki 	if (netbsd < 8) {
   2440   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   2441   1.1    isaki 		return;
   2442   1.1    isaki 	}
   2443   1.1    isaki 	if (!hw_fulldup()) {
   2444   1.1    isaki 		XP_SKIP("This test is only for full-duplex device");
   2445   1.1    isaki 		return;
   2446   1.1    isaki 	}
   2447   1.1    isaki 
   2448   1.1    isaki 	/* Silence data to make no sound */
   2449   1.1    isaki 	memset(wbuf, 0xff, sizeof(wbuf));
   2450   1.1    isaki 
   2451   1.1    isaki 	fd0 = OPEN(devaudio, O_WRONLY);
   2452   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   2453   1.1    isaki 	fd1 = OPEN(devaudio, O_RDONLY);
   2454   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   2455   1.1    isaki 
   2456   1.1    isaki 	fflush(stdout);
   2457   1.1    isaki 	fflush(stderr);
   2458   1.1    isaki 	pid = fork();
   2459   1.1    isaki 	if (pid == -1)
   2460   1.1    isaki 		xp_err(1, __LINE__, "fork");
   2461   1.1    isaki 
   2462   1.1    isaki 	if (pid == 0) {
   2463   1.1    isaki 		/* child (read) */
   2464   1.1    isaki 		for (int i = 0; i < 10; i++) {
   2465   1.1    isaki 			r = READ(fd1, rbuf, sizeof(rbuf));
   2466   1.1    isaki 			if (r == -1)
   2467   1.1    isaki 				xp_err(1, __LINE__, "read(i=%d)", i);
   2468   1.1    isaki 		}
   2469   1.1    isaki 		exit(0);
   2470   1.1    isaki 	} else {
   2471   1.1    isaki 		/* parent (write) */
   2472   1.1    isaki 		for (int i = 0; i < 10; i++) {
   2473   1.1    isaki 			r = WRITE(fd0, wbuf, sizeof(wbuf));
   2474   1.1    isaki 			if (r == -1)
   2475   1.1    isaki 				xp_err(1, __LINE__, "write(i=%d)", i);
   2476   1.1    isaki 		}
   2477   1.1    isaki 		waitpid(pid, &status, 0);
   2478   1.1    isaki 	}
   2479   1.1    isaki 
   2480   1.1    isaki 	CLOSE(fd0);
   2481   1.1    isaki 	CLOSE(fd1);
   2482   1.1    isaki 	/* If you reach here, consider as success */
   2483   1.1    isaki 	XP_EQ(0, 0);
   2484   1.1    isaki }
   2485   1.1    isaki 
   2486   1.1    isaki /*
   2487   1.1    isaki  * DRAIN should work even on incomplete data left.
   2488   1.1    isaki  */
   2489   1.1    isaki DEF(drain_incomplete)
   2490   1.1    isaki {
   2491   1.1    isaki 	struct audio_info ai;
   2492   1.1    isaki 	int r;
   2493   1.1    isaki 	int fd;
   2494   1.1    isaki 
   2495   1.1    isaki 	TEST("drain_incomplete");
   2496   1.1    isaki 
   2497   1.1    isaki 	if (hw_canplay() == 0) {
   2498   1.1    isaki 		XP_SKIP("This test is only for playable device");
   2499   1.1    isaki 		return;
   2500   1.1    isaki 	}
   2501   1.1    isaki 
   2502   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   2503   1.1    isaki 	REQUIRED_SYS_OK(fd);
   2504   1.1    isaki 
   2505   1.1    isaki 	AUDIO_INITINFO(&ai);
   2506   1.1    isaki 	/* let precision > 8 */
   2507   1.1    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_LE;
   2508   1.1    isaki 	ai.play.precision = 16;
   2509   1.1    isaki 	ai.mode = AUMODE_PLAY;
   2510   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   2511   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2512   1.1    isaki 	/* Write one byte and then close */
   2513   1.1    isaki 	r = WRITE(fd, &r, 1);
   2514   1.1    isaki 	XP_SYS_EQ(1, r);
   2515   1.1    isaki 	r = CLOSE(fd);
   2516   1.1    isaki 	XP_SYS_EQ(0, r);
   2517   1.1    isaki }
   2518   1.1    isaki 
   2519   1.1    isaki /*
   2520   1.1    isaki  * DRAIN should work even in pause.
   2521   1.1    isaki  */
   2522   1.1    isaki DEF(drain_pause)
   2523   1.1    isaki {
   2524   1.1    isaki 	struct audio_info ai;
   2525   1.1    isaki 	int r;
   2526   1.1    isaki 	int fd;
   2527   1.1    isaki 
   2528   1.1    isaki 	TEST("drain_pause");
   2529   1.1    isaki 
   2530   1.1    isaki 	if (hw_canplay() == 0) {
   2531   1.1    isaki 		XP_SKIP("This test is only for playable device");
   2532   1.1    isaki 		return;
   2533   1.1    isaki 	}
   2534   1.1    isaki 
   2535   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   2536   1.1    isaki 	REQUIRED_SYS_OK(fd);
   2537   1.1    isaki 
   2538   1.1    isaki 	/* Set pause */
   2539   1.1    isaki 	AUDIO_INITINFO(&ai);
   2540   1.1    isaki 	ai.play.pause = 1;
   2541   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   2542   1.1    isaki 	XP_SYS_EQ(0, r);
   2543   1.1    isaki 	/* Write some data and then close */
   2544   1.1    isaki 	r = WRITE(fd, &r, 4);
   2545   1.1    isaki 	XP_SYS_EQ(4, r);
   2546   1.1    isaki 	r = CLOSE(fd);
   2547   1.1    isaki 	XP_SYS_EQ(0, r);
   2548   1.1    isaki }
   2549   1.1    isaki 
   2550   1.1    isaki /*
   2551   1.1    isaki  * DRAIN does not affect for record-only descriptor.
   2552   1.1    isaki  */
   2553   1.1    isaki DEF(drain_onrec)
   2554   1.1    isaki {
   2555   1.1    isaki 	int fd;
   2556   1.1    isaki 	int r;
   2557   1.1    isaki 
   2558   1.1    isaki 	TEST("drain_onrec");
   2559   1.1    isaki 
   2560   1.1    isaki 	if (hw_canrec() == 0) {
   2561   1.1    isaki 		XP_SKIP("This test is only for recordable device");
   2562   1.1    isaki 		return;
   2563   1.1    isaki 	}
   2564   1.1    isaki 
   2565   1.1    isaki 	fd = OPEN(devaudio, O_RDONLY);
   2566   1.1    isaki 	REQUIRED_SYS_OK(fd);
   2567   1.1    isaki 
   2568   1.1    isaki 	r = IOCTL(fd, AUDIO_DRAIN, NULL, "");
   2569   1.1    isaki 	XP_SYS_EQ(0, r);
   2570   1.1    isaki 
   2571   1.1    isaki 	r = CLOSE(fd);
   2572   1.1    isaki 	XP_SYS_EQ(0, r);
   2573   1.1    isaki }
   2574   1.1    isaki 
   2575   1.1    isaki /*
   2576   1.1    isaki  * Whether mmap() succeeds with specified parameter.
   2577   1.1    isaki  */
   2578   1.1    isaki void
   2579   1.1    isaki test_mmap_mode(int mode, int prot)
   2580   1.1    isaki {
   2581   1.1    isaki 	char buf[10];
   2582   1.1    isaki 	struct audio_info ai;
   2583   1.1    isaki 	const char *protstr;
   2584   1.1    isaki 	int expected;
   2585   1.1    isaki 	int fd;
   2586   1.1    isaki 	int r;
   2587   1.1    isaki 	int len;
   2588   1.1    isaki 	void *ptr;
   2589   1.1    isaki 
   2590   1.1    isaki 	if (prot == PROT_NONE) {
   2591   1.1    isaki 		protstr = "NONE";
   2592   1.1    isaki 	} else if (prot == PROT_READ) {
   2593   1.1    isaki 		protstr = "READ";
   2594   1.1    isaki 	} else if (prot == PROT_WRITE) {
   2595   1.1    isaki 		protstr = "WRITE";
   2596   1.1    isaki 	} else if (prot == (PROT_READ | PROT_WRITE)) {
   2597   1.1    isaki 		protstr = "READWRITE";
   2598   1.1    isaki 	} else {
   2599   1.1    isaki 		xp_errx(1, __LINE__, "unknown prot %x\n", prot);
   2600   1.1    isaki 	}
   2601   1.1    isaki 	TEST("mmap_%s_%s", openmode_str[mode] + 2, protstr);
   2602   1.1    isaki 	if ((props & AUDIO_PROP_MMAP) == 0) {
   2603   1.1    isaki 		XP_SKIP("This test is only for mmap-able device");
   2604   1.1    isaki 		return;
   2605   1.1    isaki 	}
   2606   1.1    isaki 	if (mode2aumode(mode) == 0) {
   2607   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   2608   1.1    isaki 		return;
   2609   1.1    isaki 	}
   2610   1.1    isaki #if !defined(NO_RUMP)
   2611   1.1    isaki 	if (use_rump) {
   2612   1.1    isaki 		XP_SKIP("rump doesn't support mmap");
   2613   1.1    isaki 		return;
   2614   1.1    isaki 	}
   2615   1.1    isaki #endif
   2616   1.1    isaki 
   2617   1.1    isaki 	/*
   2618   1.1    isaki 	 * On NetBSD7 and 8, mmap() always succeeds regardless of open mode.
   2619   1.1    isaki 	 * On NetBSD9, mmap() succeeds only for writable descriptor.
   2620   1.1    isaki 	 */
   2621   1.1    isaki 	expected = mode2play(mode);
   2622   1.1    isaki 	if (netbsd < 9) {
   2623   1.1    isaki 		expected = true;
   2624   1.1    isaki 	}
   2625   1.1    isaki 
   2626   1.1    isaki 	fd = OPEN(devaudio, mode);
   2627   1.1    isaki 	REQUIRED_SYS_OK(fd);
   2628   1.1    isaki 
   2629   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "get");
   2630   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2631   1.1    isaki 
   2632   1.1    isaki 	len = ai.play.buffer_size;
   2633   1.1    isaki 
   2634   1.1    isaki 	/* Make it pause */
   2635   1.1    isaki 	AUDIO_INITINFO(&ai);
   2636   1.1    isaki 	ai.play.pause = 1;
   2637   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause");
   2638   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2639   1.1    isaki 
   2640   1.1    isaki 	ptr = MMAP(NULL, len, prot, MAP_FILE, fd, 0);
   2641   1.1    isaki 	XP_SYS_PTR(expected ? 0 : EACCES, ptr);
   2642   1.1    isaki 	if (expected) {
   2643   1.1    isaki 		/* XXX Doing mmap(2) doesn't inhibit read(2) */
   2644   1.1    isaki 		if (mode2rec(mode)) {
   2645   1.1    isaki 			r = READ(fd, buf, 0);
   2646   1.1    isaki 			XP_SYS_EQ(0, r);
   2647   1.1    isaki 		}
   2648   1.1    isaki 		/* Doing mmap(2) inhibits write(2) */
   2649   1.1    isaki 		if (mode2play(mode)) {
   2650   1.1    isaki 			/* NetBSD9 changes errno */
   2651   1.1    isaki 			r = WRITE(fd, buf, 0);
   2652   1.1    isaki 			if (netbsd < 9) {
   2653   1.1    isaki 				XP_SYS_NG(EINVAL, r);
   2654   1.1    isaki 			} else {
   2655   1.1    isaki 				XP_SYS_NG(EPERM, r);
   2656   1.1    isaki 			}
   2657   1.1    isaki 		}
   2658   1.1    isaki 	}
   2659   1.1    isaki 	if (ptr != MAP_FAILED) {
   2660   1.1    isaki 		r = MUNMAP(ptr, len);
   2661   1.1    isaki 		XP_SYS_EQ(0, r);
   2662   1.1    isaki 	}
   2663   1.1    isaki 
   2664   1.1    isaki 	/* Whether the pause is still valid */
   2665   1.1    isaki 	if (mode2play(mode)) {
   2666   1.1    isaki 		r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   2667   1.1    isaki 		XP_SYS_EQ(0, r);
   2668   1.1    isaki 		XP_EQ(1, ai.play.pause);
   2669   1.1    isaki 	}
   2670   1.1    isaki 
   2671   1.1    isaki 	r = CLOSE(fd);
   2672   1.1    isaki 	XP_SYS_EQ(0, r);
   2673   1.1    isaki 
   2674   1.1    isaki 	reset_after_mmap();
   2675   1.1    isaki }
   2676   1.1    isaki #define PROT_READWRITE	(PROT_READ | PROT_WRITE)
   2677   1.1    isaki DEF(mmap_mode_RDONLY_NONE)	{ test_mmap_mode(O_RDONLY, PROT_NONE); }
   2678   1.1    isaki DEF(mmap_mode_RDONLY_READ)	{ test_mmap_mode(O_RDONLY, PROT_READ); }
   2679   1.1    isaki DEF(mmap_mode_RDONLY_WRITE)	{ test_mmap_mode(O_RDONLY, PROT_WRITE); }
   2680   1.1    isaki DEF(mmap_mode_RDONLY_READWRITE)	{ test_mmap_mode(O_RDONLY, PROT_READWRITE); }
   2681   1.1    isaki DEF(mmap_mode_WRONLY_NONE)	{ test_mmap_mode(O_WRONLY, PROT_NONE); }
   2682   1.1    isaki DEF(mmap_mode_WRONLY_READ)	{ test_mmap_mode(O_WRONLY, PROT_READ); }
   2683   1.1    isaki DEF(mmap_mode_WRONLY_WRITE)	{ test_mmap_mode(O_WRONLY, PROT_WRITE); }
   2684   1.1    isaki DEF(mmap_mode_WRONLY_READWRITE)	{ test_mmap_mode(O_WRONLY, PROT_READWRITE); }
   2685   1.1    isaki DEF(mmap_mode_RDWR_NONE)	{ test_mmap_mode(O_RDWR, PROT_NONE); }
   2686   1.1    isaki DEF(mmap_mode_RDWR_READ)	{ test_mmap_mode(O_RDWR, PROT_READ); }
   2687   1.1    isaki DEF(mmap_mode_RDWR_WRITE)	{ test_mmap_mode(O_RDWR, PROT_WRITE); }
   2688   1.1    isaki DEF(mmap_mode_RDWR_READWRITE)	{ test_mmap_mode(O_RDWR, PROT_READWRITE); }
   2689   1.1    isaki 
   2690   1.1    isaki /*
   2691   1.1    isaki  * Check mmap()'s length and offset.
   2692  1.25    isaki  *
   2693  1.25    isaki  * Actual len and offset cannot be determined before open.  So that,
   2694  1.25    isaki  * pass pre-defined constant as argument, and convert it after open.
   2695   1.1    isaki  */
   2696  1.25    isaki #define LS	(100)	/* lsize     */
   2697  1.25    isaki #define LS1	(101)	/* lsize + 1 */
   2698  1.25    isaki void
   2699  1.25    isaki test_mmap_len(size_t len, off_t offset, int exp)
   2700   1.1    isaki {
   2701   1.1    isaki 	struct audio_info ai;
   2702   1.1    isaki 	int fd;
   2703   1.1    isaki 	int r;
   2704  1.25    isaki 	size_t plen;
   2705   1.1    isaki 	void *ptr;
   2706   1.1    isaki 	int bufsize;
   2707   1.1    isaki 	int pagesize;
   2708   1.1    isaki 	int lsize;
   2709   1.1    isaki 
   2710  1.25    isaki 	TEST("mmap_len(%zd, %jd, %d)", len, offset, exp);
   2711   1.1    isaki 	if ((props & AUDIO_PROP_MMAP) == 0) {
   2712   1.1    isaki 		XP_SKIP("This test is only for mmap-able device");
   2713   1.1    isaki 		return;
   2714   1.1    isaki 	}
   2715   1.1    isaki #if !defined(NO_RUMP)
   2716   1.1    isaki 	if (use_rump) {
   2717   1.1    isaki 		XP_SKIP("rump doesn't support mmap");
   2718   1.1    isaki 		return;
   2719   1.1    isaki 	}
   2720   1.1    isaki #endif
   2721   1.1    isaki 
   2722  1.25    isaki 	plen = sizeof(pagesize);
   2723  1.25    isaki 	r = SYSCTLBYNAME("hw.pagesize", &pagesize, &plen, NULL, 0);
   2724   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2725   1.1    isaki 
   2726   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   2727   1.1    isaki 	REQUIRED_SYS_OK(r);
   2728   1.1    isaki 
   2729   1.1    isaki 	/* Get buffer_size */
   2730   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   2731   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2732   1.1    isaki 	bufsize = ai.play.buffer_size;
   2733   1.1    isaki 
   2734   1.1    isaki 	/*
   2735   1.1    isaki 	 * XXX someone refers bufsize and another one does pagesize.
   2736   1.1    isaki 	 * I'm not sure.
   2737   1.1    isaki 	 */
   2738   1.1    isaki 	lsize = roundup2(bufsize, pagesize);
   2739   1.1    isaki 
   2740  1.25    isaki 	/* Here, lsize can be assigned */
   2741  1.25    isaki 	if (len == LS) {
   2742  1.25    isaki 		len = lsize;
   2743  1.25    isaki 	} else if (len == LS1) {
   2744  1.25    isaki 		len = lsize + 1;
   2745  1.25    isaki 	}
   2746  1.25    isaki 	if (offset == LS) {
   2747  1.25    isaki 		offset = lsize;
   2748  1.25    isaki 	} else if (offset == LS1) {
   2749  1.25    isaki 		offset = lsize + 1;
   2750  1.25    isaki 	}
   2751   1.1    isaki 
   2752  1.25    isaki 	ptr = MMAP(NULL, len, PROT_WRITE, MAP_FILE, fd, offset);
   2753  1.25    isaki 	if (exp == 0) {
   2754  1.25    isaki 		XP_SYS_PTR(0, ptr);
   2755  1.25    isaki 	} else {
   2756  1.25    isaki 		/* NetBSD8 introduces EOVERFLOW */
   2757  1.25    isaki 		if (netbsd < 8 && exp == EOVERFLOW)
   2758  1.25    isaki 			exp = EINVAL;
   2759  1.25    isaki 		XP_SYS_PTR(exp, ptr);
   2760  1.25    isaki 	}
   2761   1.1    isaki 
   2762  1.25    isaki 	if (ptr != MAP_FAILED) {
   2763  1.25    isaki 		r = MUNMAP(ptr, len);
   2764  1.25    isaki 		XP_SYS_EQ(0, r);
   2765   1.1    isaki 	}
   2766   1.1    isaki 
   2767   1.1    isaki 	r = CLOSE(fd);
   2768   1.1    isaki 	XP_SYS_EQ(0, r);
   2769   1.1    isaki 
   2770   1.1    isaki 	reset_after_mmap();
   2771   1.1    isaki }
   2772  1.25    isaki #define f(l, o, e)	test_mmap_len(l, o, e)
   2773  1.25    isaki DEF(mmap_len_0)	{ f(0,   0,   0); }		/* len is 0 */
   2774  1.25    isaki DEF(mmap_len_1)	{ f(1,   0,   0); }		/* len is smaller than lsize */
   2775  1.25    isaki DEF(mmap_len_2)	{ f(LS,  0,   0); }		/* len is the same as lsize */
   2776  1.25    isaki DEF(mmap_len_3)	{ f(LS1, 0,   EOVERFLOW); }	/* len is larger */
   2777  1.25    isaki DEF(mmap_len_4)	{ f(0,   -1,  EINVAL); }	/* offset is negative */
   2778  1.25    isaki DEF(mmap_len_5)	{ f(0,   LS,  0); }		/* pointless param but ok */
   2779  1.25    isaki DEF(mmap_len_6)	{ f(0,   LS1, EOVERFLOW); }	/* exceed */
   2780  1.25    isaki DEF(mmap_len_7)	{ f(1,   LS,  EOVERFLOW); }	/* exceed */
   2781  1.25    isaki /*
   2782  1.25    isaki  * When you treat the offset as 32bit, offset will be 0 and thus it
   2783  1.25    isaki  * incorrectly succeeds.
   2784  1.25    isaki  */
   2785  1.25    isaki DEF(mmap_len_8)	{ f(LS, 1ULL << 32, EOVERFLOW); }
   2786  1.25    isaki #undef f
   2787   1.1    isaki 
   2788   1.1    isaki /*
   2789   1.1    isaki  * mmap() the same descriptor twice.
   2790   1.1    isaki  */
   2791   1.1    isaki DEF(mmap_twice)
   2792   1.1    isaki {
   2793   1.1    isaki 	struct audio_info ai;
   2794   1.1    isaki 	int fd;
   2795   1.1    isaki 	int r;
   2796   1.1    isaki 	int len;
   2797   1.1    isaki 	void *ptr1;
   2798   1.1    isaki 	void *ptr2;
   2799   1.1    isaki 
   2800   1.1    isaki 	TEST("mmap_twice");
   2801   1.1    isaki 	if ((props & AUDIO_PROP_MMAP) == 0) {
   2802   1.1    isaki 		XP_SKIP("This test is only for mmap-able device");
   2803   1.1    isaki 		return;
   2804   1.1    isaki 	}
   2805   1.1    isaki #if !defined(NO_RUMP)
   2806   1.1    isaki 	if (use_rump) {
   2807   1.1    isaki 		XP_SKIP("rump doesn't support mmap");
   2808   1.1    isaki 		return;
   2809   1.1    isaki 	}
   2810   1.1    isaki #endif
   2811   1.1    isaki 
   2812   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   2813   1.1    isaki 	REQUIRED_SYS_OK(fd);
   2814   1.1    isaki 
   2815   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "get");
   2816   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2817   1.1    isaki 	len = ai.play.buffer_size;
   2818   1.1    isaki 
   2819   1.1    isaki 	ptr1 = MMAP(NULL, len, PROT_WRITE, MAP_FILE, fd, 0);
   2820   1.1    isaki 	XP_SYS_PTR(0, ptr1);
   2821   1.1    isaki 
   2822   1.1    isaki 	/* XXX I'm not sure this sucess is intended.  Anyway I follow it */
   2823   1.1    isaki 	ptr2 = MMAP(NULL, len, PROT_WRITE, MAP_FILE, fd, 0);
   2824   1.1    isaki 	XP_SYS_PTR(0, ptr2);
   2825   1.1    isaki 
   2826   1.1    isaki 	if (ptr2 != MAP_FAILED) {
   2827   1.1    isaki 		r = MUNMAP(ptr2, len);
   2828   1.1    isaki 		XP_SYS_EQ(0, r);
   2829   1.1    isaki 	}
   2830   1.1    isaki 	if (ptr1 != MAP_FAILED) {
   2831   1.1    isaki 		r = MUNMAP(ptr1, len);
   2832   1.1    isaki 		XP_SYS_EQ(0, r);
   2833   1.1    isaki 	}
   2834   1.1    isaki 
   2835   1.1    isaki 	r = CLOSE(fd);
   2836   1.1    isaki 	XP_SYS_EQ(0, r);
   2837   1.1    isaki 
   2838   1.1    isaki 	reset_after_mmap();
   2839   1.1    isaki }
   2840   1.1    isaki 
   2841   1.1    isaki /*
   2842   1.1    isaki  * mmap() different descriptors.
   2843   1.1    isaki  */
   2844   1.1    isaki DEF(mmap_multi)
   2845   1.1    isaki {
   2846   1.1    isaki 	struct audio_info ai;
   2847   1.1    isaki 	int fd0;
   2848   1.1    isaki 	int fd1;
   2849   1.1    isaki 	int r;
   2850   1.1    isaki 	int len;
   2851   1.1    isaki 	void *ptr0;
   2852   1.1    isaki 	void *ptr1;
   2853   1.1    isaki 
   2854   1.1    isaki 	TEST("mmap_multi");
   2855   1.1    isaki 	if (netbsd < 8) {
   2856   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   2857   1.1    isaki 		return;
   2858   1.1    isaki 	}
   2859   1.1    isaki 	if ((props & AUDIO_PROP_MMAP) == 0) {
   2860   1.1    isaki 		XP_SKIP("This test is only for mmap-able device");
   2861   1.1    isaki 		return;
   2862   1.1    isaki 	}
   2863   1.1    isaki #if !defined(NO_RUMP)
   2864   1.1    isaki 	if (use_rump) {
   2865   1.1    isaki 		XP_SKIP("rump doesn't support mmap");
   2866   1.1    isaki 		return;
   2867   1.1    isaki 	}
   2868   1.1    isaki #endif
   2869   1.1    isaki 
   2870   1.1    isaki 	fd0 = OPEN(devaudio, O_WRONLY);
   2871   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   2872   1.1    isaki 
   2873   1.1    isaki 	r = IOCTL(fd0, AUDIO_GETBUFINFO, &ai, "get");
   2874   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   2875   1.1    isaki 	len = ai.play.buffer_size;
   2876   1.1    isaki 
   2877   1.1    isaki 	fd1 = OPEN(devaudio, O_WRONLY);
   2878   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   2879   1.1    isaki 
   2880   1.1    isaki 	ptr0 = MMAP(NULL, len, PROT_WRITE, MAP_FILE, fd0, 0);
   2881   1.1    isaki 	XP_SYS_PTR(0, ptr0);
   2882   1.1    isaki 
   2883   1.1    isaki 	ptr1 = MMAP(NULL, len,  PROT_WRITE, MAP_FILE, fd1, 0);
   2884   1.1    isaki 	XP_SYS_PTR(0, ptr1);
   2885   1.1    isaki 
   2886   1.1    isaki 	if (ptr0 != MAP_FAILED) {
   2887   1.1    isaki 		r = MUNMAP(ptr1, len);
   2888   1.1    isaki 		XP_SYS_EQ(0, r);
   2889   1.1    isaki 	}
   2890   1.1    isaki 
   2891   1.1    isaki 	r = CLOSE(fd1);
   2892   1.1    isaki 	XP_SYS_EQ(0, r);
   2893   1.1    isaki 
   2894   1.1    isaki 	if (ptr1 != MAP_FAILED) {
   2895   1.1    isaki 		r = MUNMAP(ptr0, len);
   2896   1.1    isaki 		XP_SYS_EQ(0, r);
   2897   1.1    isaki 	}
   2898   1.1    isaki 
   2899   1.1    isaki 	r = CLOSE(fd0);
   2900   1.1    isaki 	XP_SYS_EQ(0, r);
   2901   1.1    isaki 
   2902   1.1    isaki 	reset_after_mmap();
   2903   1.1    isaki }
   2904   1.1    isaki 
   2905   1.1    isaki #define IN	POLLIN
   2906   1.1    isaki #define OUT	POLLOUT
   2907   1.1    isaki /*
   2908   1.1    isaki  * Whether poll() succeeds with specified mode.
   2909   1.1    isaki  */
   2910   1.1    isaki void
   2911   1.1    isaki test_poll_mode(int mode, int events, int expected_revents)
   2912   1.1    isaki {
   2913   1.1    isaki 	struct pollfd pfd;
   2914   1.1    isaki 	const char *events_str;
   2915   1.1    isaki 	int fd;
   2916   1.1    isaki 	int r;
   2917   1.1    isaki 	int expected_r;
   2918   1.1    isaki 
   2919   1.1    isaki 	if (events == IN) {
   2920   1.1    isaki 		events_str = "IN";
   2921   1.1    isaki 	} else if (events == OUT) {
   2922   1.1    isaki 		events_str = "OUT";
   2923   1.1    isaki 	} else if (events == (IN | OUT)) {
   2924   1.1    isaki 		events_str = "INOUT";
   2925   1.1    isaki 	} else {
   2926   1.1    isaki 		events_str = "?";
   2927   1.1    isaki 	}
   2928   1.1    isaki 	TEST("poll_mode_%s_%s", openmode_str[mode] + 2, events_str);
   2929   1.1    isaki 	if (mode2aumode(mode) == 0) {
   2930   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   2931   1.1    isaki 		return;
   2932   1.1    isaki 	}
   2933   1.1    isaki 
   2934   1.1    isaki 	expected_r = (expected_revents != 0) ? 1 : 0;
   2935   1.1    isaki 
   2936   1.1    isaki 	fd = OPEN(devaudio, mode);
   2937   1.1    isaki 	REQUIRED_SYS_OK(fd);
   2938   1.1    isaki 
   2939   1.9    isaki 	/* Wait a bit to be recorded. */
   2940   1.9    isaki 	usleep(100 * 1000);
   2941   1.9    isaki 
   2942   1.1    isaki 	memset(&pfd, 0, sizeof(pfd));
   2943   1.1    isaki 	pfd.fd = fd;
   2944   1.1    isaki 	pfd.events = events;
   2945   1.1    isaki 
   2946   1.1    isaki 	r = POLL(&pfd, 1, 100);
   2947   1.1    isaki 	/* It's a bit complicated..  */
   2948   1.1    isaki 	if (r < 0 || r > 1) {
   2949   1.1    isaki 		/*
   2950   1.1    isaki 		 * Check these two cases first:
   2951   1.1    isaki 		 * - system call fails.
   2952   1.1    isaki 		 * - poll() with one nfds returns >1.  It's strange.
   2953   1.1    isaki 		 */
   2954   1.1    isaki 		XP_SYS_EQ(expected_r, r);
   2955   1.1    isaki 	} else {
   2956   1.1    isaki 		/*
   2957   1.1    isaki 		 * Otherwise, poll() returned 0 or 1.
   2958   1.1    isaki 		 */
   2959   1.1    isaki 		DPRINTF("  > pfd.revents=%s\n", event_tostr(pfd.revents));
   2960   1.1    isaki 
   2961   1.1    isaki 		/* NetBSD7,8 have several strange behavior.  It must be bug. */
   2962   1.1    isaki 
   2963   1.1    isaki 		XP_SYS_EQ(expected_r, r);
   2964   1.1    isaki 		XP_EQ(expected_revents, pfd.revents);
   2965   1.1    isaki 	}
   2966   1.1    isaki 	r = CLOSE(fd);
   2967   1.1    isaki 	XP_SYS_EQ(0, r);
   2968   1.1    isaki }
   2969   1.9    isaki DEF(poll_mode_RDONLY_IN)	{ test_poll_mode(O_RDONLY, IN,     IN); }
   2970   1.1    isaki DEF(poll_mode_RDONLY_OUT)	{ test_poll_mode(O_RDONLY, OUT,    0); }
   2971   1.9    isaki DEF(poll_mode_RDONLY_INOUT)	{ test_poll_mode(O_RDONLY, IN|OUT, IN); }
   2972   1.1    isaki DEF(poll_mode_WRONLY_IN)	{ test_poll_mode(O_WRONLY, IN,     0); }
   2973   1.1    isaki DEF(poll_mode_WRONLY_OUT)	{ test_poll_mode(O_WRONLY, OUT,	   OUT); }
   2974   1.1    isaki DEF(poll_mode_WRONLY_INOUT)	{ test_poll_mode(O_WRONLY, IN|OUT, OUT); }
   2975   1.9    isaki DEF(poll_mode_RDWR_IN)		{
   2976   1.9    isaki 	/* On half-duplex, O_RDWR is the same as O_WRONLY. */
   2977   1.9    isaki 	if (hw_fulldup()) test_poll_mode(O_RDWR,   IN,     IN);
   2978   1.9    isaki 	else		  test_poll_mode(O_RDWR,   IN,     0);
   2979   1.9    isaki }
   2980   1.1    isaki DEF(poll_mode_RDWR_OUT)		{ test_poll_mode(O_RDWR,   OUT,	   OUT); }
   2981   1.9    isaki DEF(poll_mode_RDWR_INOUT)	{
   2982   1.9    isaki 	/* On half-duplex, O_RDWR is the same as O_WRONLY. */
   2983   1.9    isaki 	if (hw_fulldup()) test_poll_mode(O_RDWR,   IN|OUT, IN|OUT);
   2984   1.9    isaki 	else		  test_poll_mode(O_RDWR,   IN|OUT,    OUT);
   2985   1.9    isaki }
   2986   1.1    isaki 
   2987   1.1    isaki /*
   2988   1.1    isaki  * Poll(OUT) when buffer is empty.
   2989   1.1    isaki  */
   2990   1.1    isaki DEF(poll_out_empty)
   2991   1.1    isaki {
   2992   1.1    isaki 	struct pollfd pfd;
   2993   1.1    isaki 	int fd;
   2994   1.1    isaki 	int r;
   2995   1.1    isaki 
   2996   1.1    isaki 	TEST("poll_out_empty");
   2997   1.1    isaki 
   2998   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   2999   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3000   1.1    isaki 
   3001   1.1    isaki 	memset(&pfd, 0, sizeof(pfd));
   3002   1.1    isaki 	pfd.fd = fd;
   3003   1.1    isaki 	pfd.events = POLLOUT;
   3004   1.1    isaki 
   3005   1.1    isaki 	/* Check when empty.  It should succeed even if timeout == 0 */
   3006   1.1    isaki 	r = POLL(&pfd, 1, 0);
   3007   1.1    isaki 	XP_SYS_EQ(1, r);
   3008   1.1    isaki 	XP_EQ(POLLOUT, pfd.revents);
   3009   1.1    isaki 
   3010   1.1    isaki 	r = CLOSE(fd);
   3011   1.1    isaki 	XP_SYS_EQ(0, r);
   3012   1.1    isaki }
   3013   1.1    isaki 
   3014   1.1    isaki /*
   3015   1.1    isaki  * Poll(OUT) when buffer is full.
   3016   1.1    isaki  */
   3017   1.1    isaki DEF(poll_out_full)
   3018   1.1    isaki {
   3019   1.1    isaki 	struct audio_info ai;
   3020   1.1    isaki 	struct pollfd pfd;
   3021   1.1    isaki 	int fd;
   3022   1.1    isaki 	int r;
   3023   1.1    isaki 	char *buf;
   3024   1.1    isaki 	int buflen;
   3025   1.1    isaki 
   3026   1.1    isaki 	TEST("poll_out_full");
   3027   1.1    isaki 
   3028   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3029   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3030   1.1    isaki 
   3031   1.1    isaki 	/* Pause */
   3032   1.1    isaki 	AUDIO_INITINFO(&ai);
   3033   1.1    isaki 	ai.play.pause = 1;
   3034   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   3035   1.1    isaki 	XP_SYS_EQ(0, r);
   3036   1.1    isaki 
   3037   1.1    isaki 	/* Get buffer size */
   3038   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3039   1.1    isaki 	XP_SYS_EQ(0, r);
   3040   1.1    isaki 
   3041   1.1    isaki 	/* Write until full */
   3042   1.1    isaki 	buflen = ai.play.buffer_size;
   3043   1.1    isaki 	buf = (char *)malloc(buflen);
   3044   1.1    isaki 	REQUIRED_IF(buf != NULL);
   3045   1.1    isaki 	memset(buf, 0xff, buflen);
   3046   1.1    isaki 	do {
   3047   1.1    isaki 		r = WRITE(fd, buf, buflen);
   3048   1.1    isaki 	} while (r == buflen);
   3049   1.1    isaki 	if (r == -1) {
   3050   1.1    isaki 		XP_SYS_NG(EAGAIN, r);
   3051   1.1    isaki 	}
   3052   1.1    isaki 
   3053   1.1    isaki 	/* Do poll */
   3054   1.1    isaki 	memset(&pfd, 0, sizeof(pfd));
   3055   1.1    isaki 	pfd.fd = fd;
   3056   1.1    isaki 	pfd.events = POLLOUT;
   3057   1.1    isaki 	r = POLL(&pfd, 1, 0);
   3058   1.1    isaki 	XP_SYS_EQ(0, r);
   3059   1.1    isaki 	XP_EQ(0, pfd.revents);
   3060   1.1    isaki 
   3061   1.1    isaki 	r = CLOSE(fd);
   3062   1.1    isaki 	XP_SYS_EQ(0, r);
   3063   1.1    isaki 	free(buf);
   3064   1.1    isaki }
   3065   1.1    isaki 
   3066   1.1    isaki /*
   3067   1.1    isaki  * Poll(OUT) when buffer is full but hiwat sets lower than full.
   3068   1.1    isaki  */
   3069   1.1    isaki DEF(poll_out_hiwat)
   3070   1.1    isaki {
   3071   1.1    isaki 	struct audio_info ai;
   3072   1.1    isaki 	struct pollfd pfd;
   3073   1.1    isaki 	int fd;
   3074   1.1    isaki 	int r;
   3075   1.1    isaki 	char *buf;
   3076   1.1    isaki 	int buflen;
   3077   1.1    isaki 	int newhiwat;
   3078   1.1    isaki 
   3079   1.1    isaki 	TEST("poll_out_hiwat");
   3080   1.1    isaki 
   3081   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3082   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3083   1.1    isaki 
   3084   1.1    isaki 	/* Get buffer size and hiwat */
   3085   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3086   1.1    isaki 	XP_SYS_EQ(0, r);
   3087   1.1    isaki 	/* Change hiwat some different value */
   3088   1.1    isaki 	newhiwat = ai.lowat;
   3089   1.1    isaki 
   3090   1.1    isaki 	/* Set pause and hiwat */
   3091   1.1    isaki 	AUDIO_INITINFO(&ai);
   3092   1.1    isaki 	ai.play.pause = 1;
   3093   1.1    isaki 	ai.hiwat = newhiwat;
   3094   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause=1;hiwat");
   3095   1.1    isaki 	XP_SYS_EQ(0, r);
   3096   1.1    isaki 
   3097   1.1    isaki 	/* Get the set hiwat again */
   3098   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3099   1.1    isaki 	XP_SYS_EQ(0, r);
   3100   1.1    isaki 
   3101   1.1    isaki 	/* Write until full */
   3102   1.1    isaki 	buflen = ai.blocksize * ai.hiwat;
   3103   1.1    isaki 	buf = (char *)malloc(buflen);
   3104   1.1    isaki 	REQUIRED_IF(buf != NULL);
   3105   1.1    isaki 	memset(buf, 0xff, buflen);
   3106   1.1    isaki 	do {
   3107   1.1    isaki 		r = WRITE(fd, buf, buflen);
   3108   1.1    isaki 	} while (r == buflen);
   3109   1.1    isaki 	if (r == -1) {
   3110   1.1    isaki 		XP_SYS_NG(EAGAIN, r);
   3111   1.1    isaki 	}
   3112   1.1    isaki 
   3113   1.1    isaki 	/* Do poll */
   3114   1.1    isaki 	memset(&pfd, 0, sizeof(pfd));
   3115   1.1    isaki 	pfd.fd = fd;
   3116   1.1    isaki 	pfd.events = POLLOUT;
   3117   1.1    isaki 	r = POLL(&pfd, 1, 0);
   3118   1.1    isaki 	XP_SYS_EQ(0, r);
   3119   1.1    isaki 	XP_EQ(0, pfd.revents);
   3120   1.1    isaki 
   3121   1.1    isaki 	r = CLOSE(fd);
   3122   1.1    isaki 	XP_SYS_EQ(0, r);
   3123   1.1    isaki 	free(buf);
   3124   1.1    isaki }
   3125   1.1    isaki 
   3126   1.1    isaki /*
   3127   1.1    isaki  * Unpause from buffer full, POLLOUT should raise.
   3128  1.20   andvar  * XXX poll(2) on NetBSD7 is really incomplete and weird.  I don't test it.
   3129   1.1    isaki  */
   3130   1.1    isaki DEF(poll_out_unpause)
   3131   1.1    isaki {
   3132   1.1    isaki 	struct audio_info ai;
   3133   1.1    isaki 	struct pollfd pfd;
   3134   1.1    isaki 	int fd;
   3135   1.1    isaki 	int r;
   3136   1.1    isaki 	char *buf;
   3137   1.1    isaki 	int buflen;
   3138   1.1    isaki 	u_int blocksize;
   3139   1.1    isaki 	int hiwat;
   3140   1.1    isaki 	int lowat;
   3141   1.1    isaki 
   3142   1.1    isaki 	TEST("poll_out_unpause");
   3143   1.1    isaki 	if (netbsd < 8) {
   3144   1.1    isaki 		XP_SKIP("NetBSD7's poll() is too incomplete to test.");
   3145   1.1    isaki 		return;
   3146   1.1    isaki 	}
   3147   1.1    isaki 
   3148   1.1    isaki 	/* Non-blocking open */
   3149   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3150   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3151   1.1    isaki 
   3152   1.1    isaki 	/* Adjust block size and hiwat/lowat to make the test time 1sec */
   3153   1.1    isaki 	blocksize = 1000;	/* 1/8 sec in mulaw,1ch,8000Hz */
   3154   1.1    isaki 	hiwat = 12;		/* 1.5sec */
   3155   1.1    isaki 	lowat = 4;		/* 0.5sec */
   3156   1.1    isaki 	AUDIO_INITINFO(&ai);
   3157   1.1    isaki 	ai.blocksize = blocksize;
   3158   1.1    isaki 	ai.hiwat = hiwat;
   3159   1.1    isaki 	ai.lowat = lowat;
   3160   1.1    isaki 	/* and also set encoding */
   3161   1.1    isaki 	/*
   3162   1.1    isaki 	 * XXX NetBSD7 has different results depending on whether the input
   3163   1.1    isaki 	 * encoding is emulated (AUDIO_ENCODINGFLAG_EMULATED) or not.  It's
   3164   1.1    isaki 	 * not easy to ensure this situation on all hardware environment.
   3165   1.1    isaki 	 * On NetBSD9, the result is the same regardless of input encoding.
   3166   1.1    isaki 	 */
   3167   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "blocksize=%d", blocksize);
   3168   1.1    isaki 	XP_SYS_EQ(0, r);
   3169   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3170   1.1    isaki 	if (ai.blocksize != blocksize) {
   3171   1.1    isaki 		/*
   3172   1.1    isaki 		 * NetBSD9 can not change the blocksize.  Then,
   3173   1.1    isaki 		 * adjust using hiwat/lowat.
   3174   1.1    isaki 		 */
   3175   1.1    isaki 		blocksize = ai.blocksize;
   3176   1.1    isaki 		hiwat = howmany(8000 * 1.5, blocksize);
   3177   1.1    isaki 		lowat = howmany(8000 * 0.5, blocksize);
   3178   1.1    isaki 	}
   3179   1.1    isaki 	/* Anyway, set the parameters */
   3180   1.1    isaki 	AUDIO_INITINFO(&ai);
   3181   1.1    isaki 	ai.blocksize = blocksize;
   3182   1.1    isaki 	ai.hiwat = hiwat;
   3183   1.1    isaki 	ai.lowat = lowat;
   3184   1.1    isaki 	ai.play.pause = 1;
   3185   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause=1");
   3186   1.1    isaki 	XP_SYS_EQ(0, r);
   3187   1.1    isaki 
   3188   1.1    isaki 	/* Get the set parameters again */
   3189   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3190   1.1    isaki 	XP_SYS_EQ(0, r);
   3191   1.1    isaki 
   3192   1.1    isaki 	/* Write until full */
   3193   1.1    isaki 	buflen = ai.blocksize * ai.hiwat;
   3194   1.1    isaki 	buf = (char *)malloc(buflen);
   3195   1.1    isaki 	REQUIRED_IF(buf != NULL);
   3196   1.1    isaki 	memset(buf, 0xff, buflen);
   3197   1.1    isaki 	do {
   3198   1.1    isaki 		r = WRITE(fd, buf, buflen);
   3199   1.1    isaki 	} while (r == buflen);
   3200   1.1    isaki 	if (r == -1) {
   3201   1.1    isaki 		XP_SYS_NG(EAGAIN, r);
   3202   1.1    isaki 	}
   3203   1.1    isaki 
   3204   1.1    isaki 	/* At this time, POLLOUT should not be set because buffer is full */
   3205   1.1    isaki 	memset(&pfd, 0, sizeof(pfd));
   3206   1.1    isaki 	pfd.fd = fd;
   3207   1.1    isaki 	pfd.events = POLLOUT;
   3208   1.1    isaki 	r = POLL(&pfd, 1, 0);
   3209   1.1    isaki 	XP_SYS_EQ(0, r);
   3210   1.1    isaki 	XP_EQ(0, pfd.revents);
   3211   1.1    isaki 
   3212   1.1    isaki 	/* Unpause */
   3213   1.1    isaki 	AUDIO_INITINFO(&ai);
   3214   1.1    isaki 	ai.play.pause = 0;
   3215   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause=0");
   3216   1.1    isaki 	XP_SYS_EQ(0, r);
   3217   1.1    isaki 
   3218   1.1    isaki 	/*
   3219   1.1    isaki 	 * When unpause occurs:
   3220   1.1    isaki 	 * - NetBSD7 (emul=0) -> the buffer remains.
   3221   1.1    isaki 	 * - NetBSD7 (emul=1) -> the buffer is cleared.
   3222   1.1    isaki 	 * - NetBSD8          -> the buffer remains.
   3223   1.1    isaki 	 * - NetBSD9          -> the buffer remains.
   3224   1.1    isaki 	 */
   3225   1.1    isaki 
   3226   1.1    isaki 	/* Check poll() up to 2sec */
   3227   1.1    isaki 	pfd.revents = 0;
   3228   1.1    isaki 	r = POLL(&pfd, 1, 2000);
   3229   1.1    isaki 	XP_SYS_EQ(1, r);
   3230   1.1    isaki 	XP_EQ(POLLOUT, pfd.revents);
   3231   1.1    isaki 
   3232   1.1    isaki 	/*
   3233   1.1    isaki 	 * Since POLLOUT is set, it should be writable.
   3234   1.1    isaki 	 * But at this time, no all buffer may be writable.
   3235   1.1    isaki 	 */
   3236   1.1    isaki 	r = WRITE(fd, buf, buflen);
   3237   1.1    isaki 	XP_SYS_OK(r);
   3238   1.1    isaki 
   3239   1.1    isaki 	/* Flush it because there is no need to play it */
   3240   1.1    isaki 	r = IOCTL(fd, AUDIO_FLUSH, NULL, "");
   3241   1.1    isaki 	XP_SYS_EQ(0, r);
   3242   1.1    isaki 
   3243   1.1    isaki 	r = CLOSE(fd);
   3244   1.1    isaki 	XP_SYS_EQ(0, r);
   3245   1.1    isaki 	free(buf);
   3246   1.1    isaki }
   3247   1.1    isaki 
   3248   1.1    isaki /*
   3249   1.1    isaki  * poll(2) must not be affected by playback of other descriptors.
   3250   1.1    isaki  */
   3251   1.1    isaki DEF(poll_out_simul)
   3252   1.1    isaki {
   3253   1.1    isaki 	struct audio_info ai;
   3254   1.1    isaki 	struct pollfd pfd[2];
   3255   1.1    isaki 	int fd[2];
   3256   1.1    isaki 	int r;
   3257   1.1    isaki 	char *buf;
   3258   1.1    isaki 	u_int blocksize;
   3259   1.1    isaki 	int hiwat;
   3260   1.1    isaki 	int lowat;
   3261   1.1    isaki 	int buflen;
   3262   1.1    isaki 	int time;
   3263   1.1    isaki 
   3264   1.1    isaki 	TEST("poll_out_simul");
   3265   1.1    isaki 	if (netbsd < 8) {
   3266   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   3267   1.1    isaki 		return;
   3268   1.1    isaki 	}
   3269   1.1    isaki 
   3270   1.1    isaki 	/* Make sure that it's not affected by descriptor order */
   3271   1.1    isaki 	for (int i = 0; i < 2; i++) {
   3272   1.1    isaki 		int a = i;
   3273   1.1    isaki 		int b = 1 - i;
   3274   1.1    isaki 
   3275   1.1    isaki 		fd[0] = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3276   1.1    isaki 		REQUIRED_SYS_OK(fd[0]);
   3277   1.1    isaki 		fd[1] = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3278   1.1    isaki 		REQUIRED_SYS_OK(fd[1]);
   3279   1.1    isaki 
   3280   1.1    isaki 		/*
   3281   1.1    isaki 		 * Adjust block size and hiwat/lowat.
   3282   1.1    isaki 		 * I want to choice suitable blocksize (if possible).
   3283   1.1    isaki 		 */
   3284   1.1    isaki 		blocksize = 1000;	/* 1/8 sec in mulaw,1ch,8000Hz */
   3285   1.1    isaki 		hiwat = 12;		/* 1.5sec */
   3286   1.1    isaki 		lowat = 4;		/* 0.5sec */
   3287   1.1    isaki 		AUDIO_INITINFO(&ai);
   3288   1.1    isaki 		ai.blocksize = blocksize;
   3289   1.1    isaki 		ai.hiwat = hiwat;
   3290   1.1    isaki 		ai.lowat = lowat;
   3291   1.1    isaki 		r = IOCTL(fd[0], AUDIO_SETINFO, &ai, "blocksize=1000");
   3292   1.1    isaki 		XP_SYS_EQ(0, r);
   3293   1.1    isaki 		r = IOCTL(fd[0], AUDIO_GETBUFINFO, &ai, "read back blocksize");
   3294   1.1    isaki 		if (ai.blocksize != blocksize) {
   3295   1.1    isaki 			/*
   3296   1.1    isaki 			 * NetBSD9 can not change the blocksize.  Then,
   3297   1.1    isaki 			 * adjust using hiwat/lowat.
   3298   1.1    isaki 			 */
   3299   1.1    isaki 			blocksize = ai.blocksize;
   3300   1.1    isaki 			hiwat = howmany(8000 * 1.5, blocksize);
   3301   1.1    isaki 			lowat = howmany(8000 * 0.5, blocksize);
   3302   1.1    isaki 		}
   3303   1.1    isaki 		/* Anyway, set the parameters */
   3304   1.1    isaki 		AUDIO_INITINFO(&ai);
   3305   1.1    isaki 		ai.blocksize = blocksize;
   3306   1.1    isaki 		ai.hiwat = hiwat;
   3307   1.1    isaki 		ai.lowat = lowat;
   3308   1.1    isaki 		/* Pause fdA */
   3309   1.1    isaki 		ai.play.pause = 1;
   3310   1.1    isaki 		r = IOCTL(fd[a], AUDIO_SETINFO, &ai, "pause=1");
   3311   1.1    isaki 		XP_SYS_EQ(0, r);
   3312   1.1    isaki 		/* Unpause fdB */
   3313   1.1    isaki 		ai.play.pause = 0;
   3314   1.1    isaki 		r = IOCTL(fd[b], AUDIO_SETINFO, &ai, "pause=0");
   3315   1.1    isaki 		XP_SYS_EQ(0, r);
   3316   1.1    isaki 
   3317   1.1    isaki 		/* Get again. XXX two individual ioctls are correct */
   3318   1.1    isaki 		r = IOCTL(fd[0], AUDIO_GETBUFINFO, &ai, "");
   3319   1.1    isaki 		XP_SYS_EQ(0, r);
   3320   1.1    isaki 		DPRINTF("  > blocksize=%d lowat=%d hiwat=%d\n",
   3321   1.1    isaki 			ai.blocksize, ai.lowat, ai.hiwat);
   3322   1.1    isaki 
   3323   1.1    isaki 		/* Enough long time than the playback time */
   3324   1.1    isaki 		time = (ai.hiwat - ai.lowat) * blocksize / 8;  /*[msec]*/
   3325   1.1    isaki 		time *= 2;
   3326   1.1    isaki 
   3327   1.1    isaki 		/* Write fdA full */
   3328   1.1    isaki 		buflen = blocksize * ai.lowat;
   3329   1.1    isaki 		buf = (char *)malloc(buflen);
   3330   1.1    isaki 		REQUIRED_IF(buf != NULL);
   3331   1.1    isaki 		memset(buf, 0xff, buflen);
   3332   1.1    isaki 		do {
   3333   1.1    isaki 			r = WRITE(fd[a], buf, buflen);
   3334   1.1    isaki 		} while (r == buflen);
   3335   1.1    isaki 		if (r == -1) {
   3336   1.1    isaki 			XP_SYS_NG(EAGAIN, r);
   3337   1.1    isaki 		}
   3338   1.1    isaki 
   3339   1.1    isaki 		/* POLLOUT should not be set, because fdA is buffer full */
   3340   1.1    isaki 		memset(pfd, 0, sizeof(pfd));
   3341   1.1    isaki 		pfd[0].fd = fd[a];
   3342   1.1    isaki 		pfd[0].events = POLLOUT;
   3343   1.1    isaki 		r = POLL(pfd, 1, 0);
   3344   1.1    isaki 		XP_SYS_EQ(0, r);
   3345   1.1    isaki 		XP_EQ(0, pfd[0].revents);
   3346   1.1    isaki 
   3347   1.1    isaki 		/* Write fdB at least lowat */
   3348   1.1    isaki 		r = WRITE(fd[b], buf, buflen);
   3349   1.1    isaki 		XP_SYS_EQ(buflen, r);
   3350   1.1    isaki 		r = WRITE(fd[b], buf, buflen);
   3351   1.1    isaki 		if (r == -1) {
   3352   1.1    isaki 			XP_SYS_NG(EAGAIN, r);
   3353   1.1    isaki 		}
   3354   1.1    isaki 
   3355   1.1    isaki 		/* Only fdB should become POLLOUT */
   3356   1.1    isaki 		memset(pfd, 0, sizeof(pfd));
   3357   1.1    isaki 		pfd[0].fd = fd[0];
   3358   1.1    isaki 		pfd[0].events = POLLOUT;
   3359   1.1    isaki 		pfd[1].fd = fd[1];
   3360   1.1    isaki 		pfd[1].events = POLLOUT;
   3361   1.1    isaki 		r = POLL(pfd, 2, time);
   3362   1.1    isaki 		XP_SYS_EQ(1, r);
   3363   1.1    isaki 		if (r != -1) {
   3364   1.1    isaki 			XP_EQ(0, pfd[a].revents);
   3365   1.1    isaki 			XP_EQ(POLLOUT, pfd[b].revents);
   3366   1.1    isaki 		}
   3367   1.1    isaki 
   3368   1.1    isaki 		/* Drop the rest */
   3369   1.1    isaki 		r = IOCTL(fd[0], AUDIO_FLUSH, NULL, "");
   3370   1.1    isaki 		XP_SYS_EQ(0, r);
   3371   1.1    isaki 		r = IOCTL(fd[1], AUDIO_FLUSH, NULL, "");
   3372   1.1    isaki 		XP_SYS_EQ(0, r);
   3373   1.1    isaki 
   3374   1.1    isaki 		r = CLOSE(fd[0]);
   3375   1.1    isaki 		XP_SYS_EQ(0, r);
   3376   1.1    isaki 		r = CLOSE(fd[1]);
   3377   1.1    isaki 		XP_SYS_EQ(0, r);
   3378   1.1    isaki 		free(buf);
   3379   1.1    isaki 
   3380   1.1    isaki 		xxx_close_wait();
   3381   1.1    isaki 	}
   3382   1.1    isaki }
   3383   1.1    isaki 
   3384   1.1    isaki /*
   3385  1.10    isaki  * Open with READ mode starts recording immediately.
   3386  1.10    isaki  * Of course, audioctl doesn't start.
   3387  1.10    isaki  */
   3388  1.10    isaki void
   3389  1.10    isaki test_poll_in_open(const char *devname)
   3390  1.10    isaki {
   3391  1.10    isaki 	struct audio_info ai;
   3392  1.10    isaki 	struct pollfd pfd;
   3393  1.10    isaki 	char buf[4096];
   3394  1.10    isaki 	char devfile[16];
   3395  1.10    isaki 	int fd;
   3396  1.10    isaki 	int r;
   3397  1.10    isaki 	bool is_audioctl;
   3398  1.10    isaki 
   3399  1.10    isaki 	TEST("poll_in_open_%s", devname);
   3400  1.10    isaki 	if (hw_canrec() == 0) {
   3401  1.10    isaki 		XP_SKIP("This test is only for recordable device");
   3402  1.10    isaki 		return;
   3403  1.10    isaki 	}
   3404  1.10    isaki 
   3405  1.10    isaki 	snprintf(devfile, sizeof(devfile), "/dev/%s%d", devname, unit);
   3406  1.10    isaki 	is_audioctl = (strcmp(devname, "audioctl") == 0);
   3407  1.10    isaki 
   3408  1.10    isaki 	fd = OPEN(devfile, O_RDONLY);
   3409  1.10    isaki 	REQUIRED_SYS_OK(fd);
   3410  1.10    isaki 
   3411  1.10    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3412  1.10    isaki 	REQUIRED_SYS_EQ(0, r);
   3413  1.10    isaki 	if (is_audioctl) {
   3414  1.10    isaki 		/* opening /dev/audioctl doesn't start recording. */
   3415  1.10    isaki 		XP_EQ(0, ai.record.active);
   3416  1.10    isaki 	} else {
   3417  1.10    isaki 		/* opening /dev/{audio,sound} starts recording. */
   3418  1.10    isaki 		/*
   3419  1.10    isaki 		 * On NetBSD7/8, opening /dev/sound doesn't start recording.
   3420  1.10    isaki 		 * It must be a bug.
   3421  1.10    isaki 		 */
   3422  1.10    isaki 		XP_EQ(1, ai.record.active);
   3423  1.10    isaki 	}
   3424  1.10    isaki 
   3425  1.10    isaki 	memset(&pfd, 0, sizeof(pfd));
   3426  1.10    isaki 	pfd.fd = fd;
   3427  1.10    isaki 	pfd.events = POLLIN;
   3428  1.10    isaki 	r = POLL(&pfd, 1, 1000);
   3429  1.10    isaki 	if (is_audioctl) {
   3430  1.10    isaki 		/*
   3431  1.10    isaki 		 * poll-ing /dev/audioctl always fails.
   3432  1.10    isaki 		 * XXX Returning error instead of timeout should be better(?).
   3433  1.10    isaki 		 */
   3434  1.10    isaki 		REQUIRED_SYS_EQ(0, r);
   3435  1.10    isaki 	} else {
   3436  1.10    isaki 		/*
   3437  1.10    isaki 		 * poll-ing /dev/{audio,sound} will succeed when recorded
   3438  1.10    isaki 		 * data is arrived.
   3439  1.10    isaki 		 */
   3440  1.10    isaki 		/*
   3441  1.10    isaki 		 * On NetBSD7/8, opening /dev/sound doesn't start recording.
   3442  1.10    isaki 		 * It must be a bug.
   3443  1.10    isaki 		 */
   3444  1.10    isaki 		REQUIRED_SYS_EQ(1, r);
   3445  1.10    isaki 
   3446  1.10    isaki 		/* In this case, read() should succeed. */
   3447  1.10    isaki 		r = READ(fd, buf, sizeof(buf));
   3448  1.10    isaki 		XP_SYS_OK(r);
   3449  1.10    isaki 		XP_NE(0, r);
   3450  1.10    isaki 	}
   3451  1.10    isaki 
   3452  1.10    isaki 	r = CLOSE(fd);
   3453  1.10    isaki 	XP_SYS_EQ(0, r);
   3454  1.10    isaki }
   3455  1.10    isaki DEF(poll_in_open_audio)		{ test_poll_in_open("audio"); }
   3456  1.10    isaki DEF(poll_in_open_sound)		{ test_poll_in_open("sound"); }
   3457  1.10    isaki DEF(poll_in_open_audioctl)	{ test_poll_in_open("audioctl"); }
   3458  1.10    isaki 
   3459  1.10    isaki /*
   3460   1.1    isaki  * poll(2) must not be affected by other recording descriptors even if
   3461   1.1    isaki  * playback descriptor waits with POLLIN (though it's not normal usage).
   3462   1.1    isaki  * In other words, two POLLIN must not interfere.
   3463   1.1    isaki  */
   3464   1.1    isaki DEF(poll_in_simul)
   3465   1.1    isaki {
   3466   1.1    isaki 	struct audio_info ai;
   3467   1.1    isaki 	struct pollfd pfd;
   3468   1.1    isaki 	int fd[2];
   3469   1.1    isaki 	int r;
   3470   1.1    isaki 	char *buf;
   3471   1.1    isaki 	int blocksize;
   3472   1.1    isaki 
   3473   1.1    isaki 	TEST("poll_in_simul");
   3474   1.1    isaki 	if (netbsd < 8) {
   3475   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   3476   1.1    isaki 		return;
   3477   1.1    isaki 	}
   3478   1.1    isaki 	if (hw_fulldup() == 0) {
   3479   1.1    isaki 		XP_SKIP("This test is only for full-duplex device");
   3480   1.1    isaki 		return;
   3481   1.1    isaki 	}
   3482   1.1    isaki 
   3483   1.1    isaki 	int play = 0;
   3484   1.1    isaki 	int rec = 1;
   3485   1.1    isaki 
   3486   1.1    isaki 	fd[play] = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3487   1.1    isaki 	REQUIRED_SYS_OK(fd[play]);
   3488   1.1    isaki 	fd[rec] = OPEN(devaudio, O_RDONLY);
   3489   1.1    isaki 	REQUIRED_SYS_OK(fd[rec]);
   3490   1.1    isaki 
   3491   1.1    isaki 	/* Get block size */
   3492   1.1    isaki 	r = IOCTL(fd[rec], AUDIO_GETBUFINFO, &ai, "");
   3493   1.1    isaki 	XP_SYS_EQ(0, r);
   3494   1.1    isaki 	blocksize = ai.blocksize;
   3495   1.1    isaki 
   3496   1.1    isaki 	buf = (char *)malloc(blocksize);
   3497   1.1    isaki 	REQUIRED_IF(buf != NULL);
   3498   1.1    isaki 
   3499   1.1    isaki 	/*
   3500   1.1    isaki 	 * At first, make sure the playback one doesn't return POLLIN.
   3501   1.1    isaki 	 */
   3502   1.1    isaki 	memset(&pfd, 0, sizeof(pfd));
   3503   1.1    isaki 	pfd.fd = fd[play];
   3504   1.1    isaki 	pfd.events = POLLIN;
   3505   1.1    isaki 	r = POLL(&pfd, 1, 0);
   3506   1.1    isaki 	if (r == 0 && pfd.revents == 0) {
   3507   1.1    isaki 		XP_SYS_EQ(0, r);
   3508   1.1    isaki 		XP_EQ(0, pfd.revents);
   3509   1.1    isaki 	} else {
   3510   1.1    isaki 		XP_FAIL("play fd returns POLLIN");
   3511   1.1    isaki 		goto abort;
   3512   1.1    isaki 	}
   3513   1.1    isaki 
   3514   1.1    isaki 	/* Start recording */
   3515   1.1    isaki 	r = READ(fd[rec], buf, blocksize);
   3516   1.1    isaki 	XP_SYS_EQ(blocksize, r);
   3517   1.1    isaki 
   3518   1.1    isaki 	/* Poll()ing playback descriptor with POLLIN should not raise */
   3519   1.1    isaki 	r = POLL(&pfd, 1, 1000);
   3520   1.1    isaki 	XP_SYS_EQ(0, r);
   3521   1.1    isaki 	XP_EQ(0, pfd.revents);
   3522   1.1    isaki 
   3523   1.1    isaki 	/* Poll()ing recording descriptor with POLLIN should raise */
   3524   1.1    isaki 	pfd.fd = fd[rec];
   3525   1.1    isaki 	r = POLL(&pfd, 1, 0);
   3526   1.1    isaki 	XP_SYS_EQ(1, r);
   3527   1.1    isaki 	XP_EQ(POLLIN, pfd.revents);
   3528   1.1    isaki 
   3529   1.1    isaki abort:
   3530   1.1    isaki 	r = CLOSE(fd[play]);
   3531   1.1    isaki 	XP_SYS_EQ(0, r);
   3532   1.1    isaki 	r = CLOSE(fd[rec]);
   3533   1.1    isaki 	XP_SYS_EQ(0, r);
   3534   1.1    isaki 	free(buf);
   3535   1.1    isaki }
   3536   1.1    isaki 
   3537   1.1    isaki /*
   3538   1.1    isaki  * Whether kqueue() succeeds with specified mode.
   3539   1.1    isaki  */
   3540   1.1    isaki void
   3541   1.1    isaki test_kqueue_mode(int openmode, int filt, int expected)
   3542   1.1    isaki {
   3543   1.1    isaki 	struct kevent kev;
   3544   1.1    isaki 	struct timespec ts;
   3545   1.1    isaki 	int fd;
   3546   1.1    isaki 	int kq;
   3547   1.1    isaki 	int r;
   3548   1.1    isaki 
   3549   1.1    isaki 	TEST("kqueue_mode_%s_%s",
   3550   1.1    isaki 	    openmode_str[openmode] + 2,
   3551   1.1    isaki 	    (filt == EVFILT_READ) ? "READ" : "WRITE");
   3552   1.1    isaki 	if (mode2aumode(openmode) == 0) {
   3553   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   3554   1.1    isaki 		return;
   3555   1.1    isaki 	}
   3556   1.1    isaki 
   3557   1.1    isaki 	ts.tv_sec = 0;
   3558   1.1    isaki 	ts.tv_nsec = 100 * 1000 * 1000;	// 100msec
   3559   1.1    isaki 
   3560   1.1    isaki 	kq = KQUEUE();
   3561   1.1    isaki 	XP_SYS_OK(kq);
   3562   1.1    isaki 
   3563   1.1    isaki 	fd = OPEN(devaudio, openmode);
   3564   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3565   1.1    isaki 
   3566   1.1    isaki 	/*
   3567   1.1    isaki 	 * Check whether the specified filter can be set.
   3568   1.1    isaki 	 * Any filters can always be set, even if pointless combination.
   3569   1.1    isaki 	 * For example, EVFILT_READ can be set on O_WRONLY descriptor
   3570   1.1    isaki 	 * though it will never raise.
   3571   1.1    isaki 	 * I will not mention about good or bad of this behavior here.
   3572   1.1    isaki 	 */
   3573   1.1    isaki 	EV_SET(&kev, fd, filt, EV_ADD, 0, 0, 0);
   3574   1.1    isaki 	r = KEVENT_SET(kq, &kev, 1);
   3575   1.1    isaki 	XP_SYS_EQ(0, r);
   3576   1.1    isaki 
   3577   1.1    isaki 	if (r == 0) {
   3578   1.1    isaki 		/* If the filter can be set, try kevent(poll) */
   3579   1.1    isaki 		r = KEVENT_POLL(kq, &kev, 1, &ts);
   3580   1.1    isaki 		XP_SYS_EQ(expected, r);
   3581   1.1    isaki 
   3582   1.1    isaki 		/* Delete it */
   3583   1.1    isaki 		EV_SET(&kev, fd, filt, EV_DELETE, 0, 0, 0);
   3584   1.1    isaki 		r = KEVENT_SET(kq, &kev, 1);
   3585   1.1    isaki 		XP_SYS_EQ(0, r);
   3586   1.1    isaki 	}
   3587   1.1    isaki 
   3588   1.1    isaki 	r = CLOSE(fd);
   3589   1.1    isaki 	XP_SYS_EQ(0, r);
   3590   1.1    isaki 	r = CLOSE(kq);
   3591   1.1    isaki 	XP_SYS_EQ(0, r);
   3592   1.1    isaki }
   3593   1.1    isaki DEF(kqueue_mode_RDONLY_READ) {
   3594  1.11    isaki 	/* Should raise */
   3595  1.11    isaki 	test_kqueue_mode(O_RDONLY, EVFILT_READ, 1);
   3596   1.1    isaki }
   3597   1.1    isaki DEF(kqueue_mode_RDONLY_WRITE) {
   3598   1.1    isaki 	/* Should never raise (NetBSD7 has bugs) */
   3599   1.1    isaki 	int expected = (netbsd < 8) ? 1 : 0;
   3600   1.1    isaki 	test_kqueue_mode(O_RDONLY, EVFILT_WRITE, expected);
   3601   1.1    isaki }
   3602   1.1    isaki DEF(kqueue_mode_WRONLY_READ) {
   3603   1.1    isaki 	/* Should never raise */
   3604   1.1    isaki 	test_kqueue_mode(O_WRONLY, EVFILT_READ, 0);
   3605   1.1    isaki }
   3606   1.1    isaki DEF(kqueue_mode_WRONLY_WRITE) {
   3607   1.1    isaki 	/* Should raise */
   3608   1.1    isaki 	test_kqueue_mode(O_WRONLY, EVFILT_WRITE, 1);
   3609   1.1    isaki }
   3610   1.1    isaki DEF(kqueue_mode_RDWR_READ) {
   3611  1.11    isaki 	/* Should raise on fulldup but not on halfdup, on NetBSD9 */
   3612  1.11    isaki 	int expected = hw_fulldup() ? 1 : 0;
   3613   1.1    isaki 	test_kqueue_mode(O_RDWR, EVFILT_READ, expected);
   3614   1.1    isaki }
   3615   1.1    isaki DEF(kqueue_mode_RDWR_WRITE) {
   3616   1.1    isaki 	/* Should raise */
   3617   1.1    isaki 	test_kqueue_mode(O_RDWR, EVFILT_WRITE, 1);
   3618   1.1    isaki }
   3619   1.1    isaki 
   3620   1.1    isaki /*
   3621   1.1    isaki  * kqueue(2) when buffer is empty.
   3622   1.1    isaki  */
   3623   1.1    isaki DEF(kqueue_empty)
   3624   1.1    isaki {
   3625   1.1    isaki 	struct audio_info ai;
   3626   1.1    isaki 	struct kevent kev;
   3627   1.1    isaki 	struct timespec ts;
   3628   1.1    isaki 	int kq;
   3629   1.1    isaki 	int fd;
   3630   1.1    isaki 	int r;
   3631   1.1    isaki 
   3632   1.1    isaki 	TEST("kqueue_empty");
   3633   1.1    isaki 
   3634   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   3635   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3636   1.1    isaki 
   3637   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3638   1.1    isaki 	XP_SYS_EQ(0, r);
   3639   1.1    isaki 
   3640   1.1    isaki 	kq = KQUEUE();
   3641   1.1    isaki 	XP_SYS_OK(kq);
   3642   1.1    isaki 
   3643   1.1    isaki 	EV_SET(&kev, fd, EV_ADD, EVFILT_WRITE, 0, 0, 0);
   3644   1.1    isaki 	r = KEVENT_SET(kq, &kev, 1);
   3645   1.1    isaki 	XP_SYS_EQ(0, r);
   3646   1.1    isaki 
   3647   1.1    isaki 	/* When the buffer is empty, it should succeed even if timeout == 0 */
   3648   1.1    isaki 	memset(&ts, 0, sizeof(ts));
   3649   1.1    isaki 	r = KEVENT_POLL(kq, &kev, 1, &ts);
   3650   1.1    isaki 	XP_SYS_EQ(1, r);
   3651   1.1    isaki 	XP_EQ(fd, kev.ident);
   3652   1.1    isaki 	/*
   3653   1.1    isaki 	 * XXX According to kqueue(2) manpage, returned kev.data contains
   3654   1.1    isaki 	 * "the amount of space remaining in the write buffer".
   3655   1.1    isaki 	 * NetBSD7 returns buffer_size.  Shouldn't it be blocksize * hiwat?
   3656   1.1    isaki 	 */
   3657   1.1    isaki 	/* XP_EQ(ai.blocksize * ai.hiwat, kev.data); */
   3658   1.1    isaki 	XP_EQ(ai.play.buffer_size, kev.data);
   3659   1.1    isaki 
   3660   1.1    isaki 	r = CLOSE(fd);
   3661   1.1    isaki 	XP_SYS_EQ(0, r);
   3662   1.1    isaki 	r = CLOSE(kq);
   3663   1.1    isaki 	XP_SYS_EQ(0, r);
   3664   1.1    isaki }
   3665   1.1    isaki 
   3666   1.1    isaki /*
   3667   1.1    isaki  * kqueue(2) when buffer is full.
   3668   1.1    isaki  */
   3669   1.1    isaki DEF(kqueue_full)
   3670   1.1    isaki {
   3671   1.1    isaki 	struct audio_info ai;
   3672   1.1    isaki 	struct kevent kev;
   3673   1.1    isaki 	struct timespec ts;
   3674   1.1    isaki 	int kq;
   3675   1.1    isaki 	int fd;
   3676   1.1    isaki 	int r;
   3677   1.1    isaki 	char *buf;
   3678   1.1    isaki 	int buflen;
   3679   1.1    isaki 
   3680   1.1    isaki 	TEST("kqueue_full");
   3681   1.1    isaki 
   3682   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3683   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3684   1.1    isaki 
   3685   1.1    isaki 	/* Pause */
   3686   1.1    isaki 	AUDIO_INITINFO(&ai);
   3687   1.1    isaki 	ai.play.pause = 1;
   3688   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   3689   1.1    isaki 	XP_SYS_EQ(0, r);
   3690   1.1    isaki 
   3691   1.1    isaki 	/* Get buffer size */
   3692   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3693   1.1    isaki 	XP_SYS_EQ(0, r);
   3694   1.1    isaki 
   3695   1.1    isaki 	/* Write until full */
   3696   1.1    isaki 	buflen = ai.play.buffer_size;
   3697   1.1    isaki 	buf = (char *)malloc(buflen);
   3698   1.1    isaki 	REQUIRED_IF(buf != NULL);
   3699   1.1    isaki 	memset(buf, 0xff, buflen);
   3700   1.1    isaki 	do {
   3701   1.1    isaki 		r = WRITE(fd, buf, buflen);
   3702   1.1    isaki 	} while (r == buflen);
   3703   1.1    isaki 	if (r == -1) {
   3704   1.1    isaki 		XP_SYS_NG(EAGAIN, r);
   3705   1.1    isaki 	}
   3706   1.1    isaki 
   3707   1.1    isaki 	kq = KQUEUE();
   3708   1.1    isaki 	XP_SYS_OK(kq);
   3709   1.1    isaki 
   3710   1.1    isaki 	EV_SET(&kev, fd, EV_ADD, EVFILT_WRITE, 0, 0, 0);
   3711   1.1    isaki 	r = KEVENT_SET(kq, &kev, 1);
   3712   1.1    isaki 	XP_SYS_EQ(0, r);
   3713   1.1    isaki 
   3714   1.1    isaki 	/* kevent() should not raise */
   3715   1.1    isaki 	ts.tv_sec = 0;
   3716   1.1    isaki 	ts.tv_nsec = 100L * 1000 * 1000;	/* 100msec */
   3717   1.1    isaki 	r = KEVENT_POLL(kq, &kev, 1, &ts);
   3718   1.1    isaki 	XP_SYS_EQ(0, r);
   3719   1.1    isaki 	if (r > 0) {
   3720   1.1    isaki 		XP_EQ(fd, kev.ident);
   3721   1.1    isaki 		XP_EQ(0, kev.data);
   3722   1.1    isaki 	}
   3723   1.1    isaki 
   3724   1.1    isaki 	r = CLOSE(fd);
   3725   1.1    isaki 	XP_SYS_EQ(0, r);
   3726   1.1    isaki 	r = CLOSE(kq);
   3727   1.1    isaki 	XP_SYS_EQ(0, r);
   3728   1.1    isaki 	free(buf);
   3729   1.1    isaki }
   3730   1.1    isaki 
   3731   1.1    isaki /*
   3732   1.1    isaki  * kqueue(2) when buffer is full but hiwat sets lower than full.
   3733   1.1    isaki  */
   3734   1.1    isaki DEF(kqueue_hiwat)
   3735   1.1    isaki {
   3736   1.1    isaki 	struct audio_info ai;
   3737   1.1    isaki 	struct kevent kev;
   3738   1.1    isaki 	struct timespec ts;
   3739   1.1    isaki 	int kq;
   3740   1.1    isaki 	int fd;
   3741   1.1    isaki 	int r;
   3742   1.1    isaki 	char *buf;
   3743   1.1    isaki 	int buflen;
   3744   1.1    isaki 	int newhiwat;
   3745   1.1    isaki 
   3746   1.1    isaki 	TEST("kqueue_hiwat");
   3747   1.1    isaki 
   3748   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3749   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3750   1.1    isaki 
   3751   1.1    isaki 	/* Get buffer size and hiwat */
   3752   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "hiwat");
   3753   1.1    isaki 	XP_SYS_EQ(0, r);
   3754   1.1    isaki 	/* Change hiwat some different value */
   3755   1.1    isaki 	newhiwat = ai.hiwat - 1;
   3756   1.1    isaki 
   3757   1.1    isaki 	/* Set pause and hiwat */
   3758   1.1    isaki 	AUDIO_INITINFO(&ai);
   3759   1.1    isaki 	ai.play.pause = 1;
   3760   1.1    isaki 	ai.hiwat = newhiwat;
   3761   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause=1;hiwat");
   3762   1.1    isaki 	XP_SYS_EQ(0, r);
   3763   1.1    isaki 
   3764   1.1    isaki 	/* Get the set parameters again */
   3765   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3766   1.1    isaki 	XP_SYS_EQ(0, r);
   3767   1.1    isaki 	XP_EQ(1, ai.play.pause);
   3768   1.1    isaki 	XP_EQ(newhiwat, ai.hiwat);
   3769   1.1    isaki 
   3770   1.1    isaki 	/* Write until full */
   3771   1.1    isaki 	buflen = ai.blocksize * ai.hiwat;
   3772   1.1    isaki 	buf = (char *)malloc(buflen);
   3773   1.1    isaki 	REQUIRED_IF(buf != NULL);
   3774   1.1    isaki 	memset(buf, 0xff, buflen);
   3775   1.1    isaki 	do {
   3776   1.1    isaki 		r = WRITE(fd, buf, buflen);
   3777   1.1    isaki 	} while (r == buflen);
   3778   1.1    isaki 	if (r == -1) {
   3779   1.1    isaki 		XP_SYS_NG(EAGAIN, r);
   3780   1.1    isaki 	}
   3781   1.1    isaki 
   3782   1.1    isaki 	kq = KQUEUE();
   3783   1.1    isaki 	XP_SYS_OK(kq);
   3784   1.1    isaki 
   3785   1.1    isaki 	EV_SET(&kev, fd, EV_ADD, EVFILT_WRITE, 0, 0, 0);
   3786   1.1    isaki 	r = KEVENT_SET(kq, &kev, 1);
   3787   1.1    isaki 	XP_SYS_EQ(0, r);
   3788   1.1    isaki 
   3789   1.1    isaki 	/* Should not raise because it's not possible to write */
   3790   1.1    isaki 	ts.tv_sec = 0;
   3791   1.1    isaki 	ts.tv_nsec = 100L * 1000 * 1000;	/* 100msec */
   3792   1.1    isaki 	r = KEVENT_POLL(kq, &kev, 1, &ts);
   3793   1.1    isaki 	if (r > 0)
   3794   1.1    isaki 		DEBUG_KEV("kev", &kev);
   3795   1.1    isaki 	XP_SYS_EQ(0, r);
   3796   1.1    isaki 
   3797   1.1    isaki 	r = CLOSE(fd);
   3798   1.1    isaki 	XP_SYS_EQ(0, r);
   3799   1.1    isaki 	r = CLOSE(kq);
   3800   1.1    isaki 	XP_SYS_EQ(0, r);
   3801   1.1    isaki 	free(buf);
   3802   1.1    isaki }
   3803   1.1    isaki 
   3804   1.1    isaki /*
   3805   1.1    isaki  * Unpause from buffer full, kevent() should raise.
   3806   1.1    isaki  */
   3807   1.1    isaki DEF(kqueue_unpause)
   3808   1.1    isaki {
   3809   1.1    isaki 	struct audio_info ai;
   3810   1.1    isaki 	struct kevent kev;
   3811   1.1    isaki 	struct timespec ts;
   3812   1.1    isaki 	int fd;
   3813   1.1    isaki 	int r;
   3814   1.1    isaki 	int kq;
   3815   1.1    isaki 	char *buf;
   3816   1.1    isaki 	int buflen;
   3817   1.1    isaki 	u_int blocksize;
   3818   1.1    isaki 	int hiwat;
   3819   1.1    isaki 	int lowat;
   3820   1.1    isaki 
   3821   1.1    isaki 	TEST("kqueue_unpause");
   3822   1.1    isaki 
   3823   1.1    isaki 	/* Non-blocking open */
   3824   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3825   1.1    isaki 	REQUIRED_SYS_OK(fd);
   3826   1.1    isaki 
   3827   1.1    isaki 	/* Adjust block size and hiwat/lowat to make the test time 1sec */
   3828   1.1    isaki 	blocksize = 1000;	/* 1/8 sec in mulaw,1ch,8000Hz */
   3829   1.1    isaki 	hiwat = 12;		/* 1.5sec */
   3830   1.1    isaki 	lowat = 4;		/* 0.5sec */
   3831   1.1    isaki 	AUDIO_INITINFO(&ai);
   3832   1.1    isaki 	ai.blocksize = blocksize;
   3833   1.1    isaki 	ai.hiwat = hiwat;
   3834   1.1    isaki 	ai.lowat = lowat;
   3835   1.1    isaki 	/* and also set encoding */
   3836   1.1    isaki 	/*
   3837   1.1    isaki 	 * XXX NetBSD7 has different results depending on whether the input
   3838   1.1    isaki 	 * encoding is emulated (AUDIO_ENCODINGFLAG_EMULATED) or not.  It's
   3839   1.1    isaki 	 * not easy to ensure this situation on all hardware environment.
   3840   1.1    isaki 	 * On NetBSD9, the result is the same regardless of input encoding.
   3841   1.1    isaki 	 */
   3842   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "blocksize=%d", blocksize);
   3843   1.1    isaki 	XP_SYS_EQ(0, r);
   3844   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3845   1.1    isaki 	if (ai.blocksize != blocksize) {
   3846   1.1    isaki 		/*
   3847   1.1    isaki 		 * NetBSD9 can not change the blocksize.  Then,
   3848   1.1    isaki 		 * adjust using hiwat/lowat.
   3849   1.1    isaki 		 */
   3850   1.1    isaki 		blocksize = ai.blocksize;
   3851   1.1    isaki 		hiwat = howmany(8000 * 1.5, blocksize);
   3852   1.1    isaki 		lowat = howmany(8000 * 0.5, blocksize);
   3853   1.1    isaki 	}
   3854   1.1    isaki 	/* Anyway, set the parameters */
   3855   1.1    isaki 	AUDIO_INITINFO(&ai);
   3856   1.1    isaki 	ai.blocksize = blocksize;
   3857   1.1    isaki 	ai.hiwat = hiwat;
   3858   1.1    isaki 	ai.lowat = lowat;
   3859   1.1    isaki 	ai.play.pause = 1;
   3860   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause=1");
   3861   1.1    isaki 	XP_SYS_EQ(0, r);
   3862   1.1    isaki 
   3863   1.1    isaki 	/* Get the set parameters again */
   3864   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   3865   1.1    isaki 	XP_SYS_EQ(0, r);
   3866   1.1    isaki 	DPRINTF("  > blocksize=%d hiwat=%d lowat=%d buffer_size=%d\n",
   3867   1.1    isaki 	    ai.blocksize, ai.hiwat, ai.lowat, ai.play.buffer_size);
   3868   1.1    isaki 
   3869   1.1    isaki 	/* Write until full */
   3870   1.1    isaki 	buflen = ai.blocksize * ai.hiwat;
   3871   1.1    isaki 	buf = (char *)malloc(buflen);
   3872   1.1    isaki 	REQUIRED_IF(buf != NULL);
   3873   1.1    isaki 	memset(buf, 0xff, buflen);
   3874   1.1    isaki 	do {
   3875   1.1    isaki 		r = WRITE(fd, buf, buflen);
   3876   1.1    isaki 	} while (r == buflen);
   3877   1.1    isaki 	if (r == -1) {
   3878   1.1    isaki 		XP_SYS_NG(EAGAIN, r);
   3879   1.1    isaki 	}
   3880   1.1    isaki 
   3881   1.1    isaki 	kq = KQUEUE();
   3882   1.1    isaki 	XP_SYS_OK(kq);
   3883   1.1    isaki 
   3884   1.1    isaki 	EV_SET(&kev, fd, EV_ADD, EVFILT_WRITE, 0, 0, 0);
   3885   1.1    isaki 	r = KEVENT_SET(kq, &kev, 1);
   3886   1.1    isaki 	XP_SYS_EQ(0, r);
   3887   1.1    isaki 
   3888   1.1    isaki 	/* Unpause */
   3889   1.1    isaki 	AUDIO_INITINFO(&ai);
   3890   1.1    isaki 	ai.play.pause = 0;
   3891   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause=0");
   3892   1.1    isaki 	XP_SYS_EQ(0, r);
   3893   1.1    isaki 
   3894   1.1    isaki 	/* Check kevent() up to 2sec */
   3895   1.1    isaki 	ts.tv_sec = 2;
   3896   1.1    isaki 	ts.tv_nsec = 0;
   3897   1.1    isaki 	r = KEVENT_POLL(kq, &kev, 1, &ts);
   3898   1.1    isaki 	if (r >= 1)
   3899   1.1    isaki 		DEBUG_KEV("kev", &kev);
   3900   1.1    isaki 	if (netbsd < 8) {
   3901   1.1    isaki 		/*
   3902   1.1    isaki 		 * NetBSD7 with EMULATED_FLAG unset has bugs.  Unpausing
   3903   1.1    isaki 		 * unintentionally clears buffer (and therefore it becomes
   3904   1.1    isaki 		 * writable) but it doesn't raise EVFILT_WRITE.
   3905   1.1    isaki 		 */
   3906   1.1    isaki 	} else {
   3907   1.1    isaki 		XP_SYS_EQ(1, r);
   3908   1.1    isaki 	}
   3909   1.1    isaki 
   3910   1.1    isaki 	/* Flush it because there is no need to play it */
   3911   1.1    isaki 	r = IOCTL(fd, AUDIO_FLUSH, NULL, "");
   3912   1.1    isaki 	XP_SYS_EQ(0, r);
   3913   1.1    isaki 
   3914   1.1    isaki 	r = CLOSE(fd);
   3915   1.1    isaki 	XP_SYS_EQ(0, r);
   3916   1.1    isaki 	r = CLOSE(kq);
   3917   1.1    isaki 	XP_SYS_EQ(0, r);
   3918   1.1    isaki 	free(buf);
   3919   1.1    isaki }
   3920   1.1    isaki 
   3921   1.1    isaki /*
   3922   1.1    isaki  * kevent(2) must not be affected by other audio descriptors.
   3923   1.1    isaki  */
   3924   1.1    isaki DEF(kqueue_simul)
   3925   1.1    isaki {
   3926   1.1    isaki 	struct audio_info ai;
   3927   1.1    isaki 	struct audio_info ai2;
   3928   1.1    isaki 	struct kevent kev[2];
   3929   1.1    isaki 	struct timespec ts;
   3930   1.1    isaki 	int fd[2];
   3931   1.1    isaki 	int r;
   3932   1.1    isaki 	int kq;
   3933   1.1    isaki 	u_int blocksize;
   3934   1.1    isaki 	int hiwat;
   3935   1.1    isaki 	int lowat;
   3936   1.1    isaki 	char *buf;
   3937   1.1    isaki 	int buflen;
   3938   1.1    isaki 
   3939   1.1    isaki 	TEST("kqueue_simul");
   3940   1.1    isaki 	if (netbsd < 8) {
   3941   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   3942   1.1    isaki 		return;
   3943   1.1    isaki 	}
   3944   1.1    isaki 
   3945   1.1    isaki 	memset(&ts, 0, sizeof(ts));
   3946   1.1    isaki 
   3947   1.1    isaki 	/* Make sure that it's not affected by descriptor order */
   3948   1.1    isaki 	for (int i = 0; i < 2; i++) {
   3949   1.1    isaki 		int a = i;
   3950   1.1    isaki 		int b = 1 - i;
   3951   1.1    isaki 
   3952   1.1    isaki 		fd[0] = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3953   1.1    isaki 		REQUIRED_SYS_OK(fd[0]);
   3954   1.1    isaki 		fd[1] = OPEN(devaudio, O_WRONLY | O_NONBLOCK);
   3955   1.1    isaki 		REQUIRED_SYS_OK(fd[1]);
   3956   1.1    isaki 
   3957   1.1    isaki 		/*
   3958   1.1    isaki 		 * Adjust block size and hiwat/lowat.
   3959   1.1    isaki 		 * I want to choice suitable blocksize (if possible).
   3960   1.1    isaki 		 */
   3961   1.1    isaki 		blocksize = 1000;	/* 1/8 sec in mulaw,1ch,8000Hz */
   3962   1.1    isaki 		hiwat = 12;		/* 1.5sec */
   3963   1.1    isaki 		lowat = 4;		/* 0.5sec */
   3964   1.1    isaki 		AUDIO_INITINFO(&ai);
   3965   1.1    isaki 		ai.blocksize = blocksize;
   3966   1.1    isaki 		ai.hiwat = hiwat;
   3967   1.1    isaki 		ai.lowat = lowat;
   3968   1.1    isaki 		r = IOCTL(fd[0], AUDIO_SETINFO, &ai, "blocksize=1000");
   3969   1.1    isaki 		XP_SYS_EQ(0, r);
   3970   1.1    isaki 		r = IOCTL(fd[0], AUDIO_GETBUFINFO, &ai, "read back blocksize");
   3971   1.1    isaki 		if (ai.blocksize != blocksize) {
   3972   1.1    isaki 			/*
   3973   1.1    isaki 			 * NetBSD9 can not change the blocksize.  Then,
   3974   1.1    isaki 			 * adjust using hiwat/lowat.
   3975   1.1    isaki 			 */
   3976   1.1    isaki 			blocksize = ai.blocksize;
   3977   1.1    isaki 			hiwat = howmany(8000 * 1.5, blocksize);
   3978   1.1    isaki 			lowat = howmany(8000 * 0.5, blocksize);
   3979   1.1    isaki 		}
   3980   1.1    isaki 		/* Anyway, set the parameters to both */
   3981   1.1    isaki 		AUDIO_INITINFO(&ai);
   3982   1.1    isaki 		ai.blocksize = blocksize;
   3983   1.1    isaki 		ai.hiwat = hiwat;
   3984   1.1    isaki 		ai.lowat = lowat;
   3985   1.1    isaki 		ai.play.pause = 1;
   3986   1.1    isaki 		r = IOCTL(fd[a], AUDIO_SETINFO, &ai, "pause=1");
   3987   1.1    isaki 		XP_SYS_EQ(0, r);
   3988   1.1    isaki 		r = IOCTL(fd[b], AUDIO_SETINFO, &ai, "pause=1");
   3989   1.1    isaki 		XP_SYS_EQ(0, r);
   3990   1.1    isaki 
   3991   1.1    isaki 		/* Write both until full */
   3992   1.1    isaki 		buflen = ai.blocksize * ai.hiwat;
   3993   1.1    isaki 		buf = (char *)malloc(buflen);
   3994   1.1    isaki 		REQUIRED_IF(buf != NULL);
   3995   1.1    isaki 		memset(buf, 0xff, buflen);
   3996   1.1    isaki 		/* Write fdA */
   3997   1.1    isaki 		do {
   3998   1.1    isaki 			r = WRITE(fd[a], buf, buflen);
   3999   1.1    isaki 		} while (r == buflen);
   4000   1.1    isaki 		if (r == -1) {
   4001   1.1    isaki 			XP_SYS_NG(EAGAIN, r);
   4002   1.1    isaki 		}
   4003   1.1    isaki 		/* Write fdB */
   4004   1.1    isaki 		do {
   4005   1.1    isaki 			r = WRITE(fd[b], buf, buflen);
   4006   1.1    isaki 		} while (r == buflen);
   4007   1.1    isaki 		if (r == -1) {
   4008   1.1    isaki 			XP_SYS_NG(EAGAIN, r);
   4009   1.1    isaki 		}
   4010   1.1    isaki 
   4011   1.1    isaki 		/* Get fdB's initial seek for later */
   4012   1.1    isaki 		r = IOCTL(fd[b], AUDIO_GETBUFINFO, &ai2, "");
   4013   1.1    isaki 		XP_SYS_EQ(0, r);
   4014   1.1    isaki 
   4015   1.1    isaki 		kq = KQUEUE();
   4016   1.1    isaki 		XP_SYS_OK(kq);
   4017   1.1    isaki 
   4018   1.1    isaki 		/* Both aren't raised at this point */
   4019   1.1    isaki 		EV_SET(&kev[0], fd[a], EV_ADD, EVFILT_WRITE, 0, 0, 0);
   4020   1.1    isaki 		EV_SET(&kev[1], fd[b], EV_ADD, EVFILT_WRITE, 0, 0, 0);
   4021   1.1    isaki 		r = KEVENT_SET(kq, kev, 2);
   4022   1.1    isaki 		XP_SYS_EQ(0, r);
   4023   1.1    isaki 
   4024   1.1    isaki 		/* Unpause only fdA */
   4025   1.1    isaki 		AUDIO_INITINFO(&ai);
   4026   1.1    isaki 		ai.play.pause = 0;
   4027   1.1    isaki 		r = IOCTL(fd[a], AUDIO_SETINFO, &ai, "pause=0");
   4028   1.1    isaki 		XP_SYS_EQ(0, r);
   4029   1.1    isaki 
   4030   1.1    isaki 		/* kevent() up to 2sec */
   4031   1.1    isaki 		ts.tv_sec = 2;
   4032   1.1    isaki 		ts.tv_nsec = 0;
   4033   1.1    isaki 		r = KEVENT_POLL(kq, &kev[0], 1, &ts);
   4034   1.1    isaki 		if (r >= 1)
   4035   1.1    isaki 			DEBUG_KEV("kev", &kev[0]);
   4036   1.1    isaki 		/* fdA should raise */
   4037   1.1    isaki 		XP_SYS_EQ(1, r);
   4038   1.1    isaki 		XP_EQ(fd[a], kev[0].ident);
   4039   1.1    isaki 
   4040   1.1    isaki 		/* Make sure that fdB keeps whole data */
   4041   1.1    isaki 		r = IOCTL(fd[b], AUDIO_GETBUFINFO, &ai, "");
   4042   1.1    isaki 		XP_EQ(ai2.play.seek, ai.play.seek);
   4043   1.1    isaki 
   4044   1.1    isaki 		/* Flush it because there is no need to play it */
   4045   1.1    isaki 		r = IOCTL(fd[0], AUDIO_FLUSH, NULL, "");
   4046   1.1    isaki 		XP_SYS_EQ(0, r);
   4047   1.1    isaki 		r = IOCTL(fd[1], AUDIO_FLUSH, NULL, "");
   4048   1.1    isaki 		XP_SYS_EQ(0, r);
   4049   1.1    isaki 
   4050   1.1    isaki 		r = CLOSE(fd[0]);
   4051   1.1    isaki 		XP_SYS_EQ(0, r);
   4052   1.1    isaki 		r = CLOSE(fd[1]);
   4053   1.1    isaki 		XP_SYS_EQ(0, r);
   4054   1.1    isaki 		r = CLOSE(kq);
   4055   1.1    isaki 		XP_SYS_EQ(0, r);
   4056   1.1    isaki 		free(buf);
   4057   1.1    isaki 
   4058   1.1    isaki 		xxx_close_wait();
   4059   1.1    isaki 	}
   4060   1.1    isaki }
   4061   1.1    isaki 
   4062   1.1    isaki /* Shared data between threads for ioctl_while_write */
   4063   1.1    isaki struct ioctl_while_write_data {
   4064   1.1    isaki 	int fd;
   4065   1.1    isaki 	struct timeval start;
   4066   1.1    isaki 	int terminated;
   4067   1.1    isaki };
   4068   1.1    isaki 
   4069   1.1    isaki /* Test thread for ioctl_while_write */
   4070   1.1    isaki void *thread_ioctl_while_write(void *);
   4071   1.1    isaki void *
   4072   1.1    isaki thread_ioctl_while_write(void *arg)
   4073   1.1    isaki {
   4074   1.1    isaki 	struct ioctl_while_write_data *data = arg;
   4075   1.1    isaki 	struct timeval now, res;
   4076   1.1    isaki 	struct audio_info ai;
   4077   1.1    isaki 	int r;
   4078   1.1    isaki 
   4079   1.1    isaki 	/* If 0.5 seconds have elapsed since writing, assume it's blocked */
   4080   1.1    isaki 	do {
   4081   1.1    isaki 		usleep(100);
   4082   1.1    isaki 		gettimeofday(&now, NULL);
   4083   1.1    isaki 		timersub(&now, &data->start, &res);
   4084   1.1    isaki 	} while (res.tv_usec < 500000);
   4085   1.1    isaki 
   4086   1.1    isaki 	/* Then, do ioctl() */
   4087   1.1    isaki 	r = IOCTL(data->fd, AUDIO_GETBUFINFO, &ai, "");
   4088   1.1    isaki 	XP_SYS_EQ(0, r);
   4089   1.1    isaki 
   4090   1.1    isaki 	/* Terminate */
   4091   1.1    isaki 	data->terminated = 1;
   4092   1.1    isaki 
   4093   1.1    isaki 	/* Resume write() by unpause */
   4094   1.1    isaki 	AUDIO_INITINFO(&ai);
   4095   1.1    isaki 	if (netbsd < 8) {
   4096   1.1    isaki 		/*
   4097   1.1    isaki 		 * XXX NetBSD7 has bugs and it cannot be unpaused.
   4098   1.1    isaki 		 * However, it also has another bug and it clears buffer
   4099   1.1    isaki 		 * when encoding is changed.  I use it. :-P
   4100   1.1    isaki 		 */
   4101   1.1    isaki 		ai.play.encoding = AUDIO_ENCODING_SLINEAR_LE;
   4102   1.1    isaki 	}
   4103   1.1    isaki 	ai.play.pause = 0;
   4104   1.1    isaki 	r = IOCTL(data->fd, AUDIO_SETINFO, &ai, "pause=0");
   4105   1.1    isaki 	XP_SYS_EQ(0, r);
   4106   1.1    isaki 
   4107   1.1    isaki 	return NULL;
   4108   1.1    isaki }
   4109   1.1    isaki 
   4110   1.1    isaki /*
   4111   1.1    isaki  * ioctl(2) can be issued while write(2)-ing.
   4112   1.1    isaki  */
   4113   1.1    isaki DEF(ioctl_while_write)
   4114   1.1    isaki {
   4115   1.1    isaki 	struct audio_info ai;
   4116   1.1    isaki 	struct ioctl_while_write_data data0, *data;
   4117   1.1    isaki 	char buf[8000];	/* 1sec in mulaw,1ch,8000Hz */
   4118   1.1    isaki 	pthread_t tid;
   4119   1.1    isaki 	int r;
   4120   1.1    isaki 
   4121   1.1    isaki 	TEST("ioctl_while_write");
   4122   1.1    isaki 
   4123   1.1    isaki 	data = &data0;
   4124   1.1    isaki 	memset(data, 0, sizeof(*data));
   4125   1.1    isaki 	memset(buf, 0xff, sizeof(buf));
   4126   1.1    isaki 
   4127   1.1    isaki 	data->fd = OPEN(devaudio, O_WRONLY);
   4128   1.1    isaki 	REQUIRED_SYS_OK(data->fd);
   4129   1.1    isaki 
   4130   1.1    isaki 	/* Pause to block write(2)ing */
   4131   1.1    isaki 	AUDIO_INITINFO(&ai);
   4132   1.1    isaki 	ai.play.pause = 1;
   4133   1.1    isaki 	r = IOCTL(data->fd, AUDIO_SETINFO, &ai, "pause=1");
   4134   1.1    isaki 	XP_SYS_EQ(0, r);
   4135   1.1    isaki 
   4136   1.1    isaki 	gettimeofday(&data->start, NULL);
   4137   1.1    isaki 
   4138   1.1    isaki 	pthread_create(&tid, NULL, thread_ioctl_while_write, data);
   4139   1.1    isaki 
   4140   1.1    isaki 	/* Write until blocking */
   4141   1.1    isaki 	for (;;) {
   4142   1.1    isaki 		r = WRITE(data->fd, buf, sizeof(buf));
   4143   1.1    isaki 		if (data->terminated)
   4144   1.1    isaki 			break;
   4145   1.1    isaki 		XP_SYS_EQ(sizeof(buf), r);
   4146   1.1    isaki 
   4147   1.1    isaki 		/* Update written time */
   4148   1.1    isaki 		gettimeofday(&data->start, NULL);
   4149   1.1    isaki 	}
   4150   1.1    isaki 
   4151   1.1    isaki 	pthread_join(tid, NULL);
   4152   1.1    isaki 
   4153   1.1    isaki 	/* Flush */
   4154   1.1    isaki 	r = IOCTL(data->fd, AUDIO_FLUSH, NULL, "");
   4155   1.1    isaki 	XP_SYS_EQ(0, r);
   4156   1.1    isaki 	r = CLOSE(data->fd);
   4157   1.1    isaki 	XP_SYS_EQ(0, r);
   4158   1.1    isaki }
   4159   1.1    isaki 
   4160   1.1    isaki volatile int sigio_caught;
   4161   1.1    isaki void
   4162   1.1    isaki signal_FIOASYNC(int signo)
   4163   1.1    isaki {
   4164   1.1    isaki 	if (signo == SIGIO) {
   4165   1.1    isaki 		sigio_caught = 1;
   4166   1.1    isaki 		DPRINTF("  > %d: pid %d got SIGIO\n", __LINE__, (int)getpid());
   4167   1.1    isaki 	}
   4168   1.1    isaki }
   4169   1.1    isaki 
   4170   1.1    isaki /*
   4171  1.15   andvar  * FIOASYNC between two descriptors should be split.
   4172   1.1    isaki  */
   4173   1.1    isaki DEF(FIOASYNC_reset)
   4174   1.1    isaki {
   4175   1.1    isaki 	int fd0, fd1;
   4176   1.1    isaki 	int r;
   4177   1.1    isaki 	int val;
   4178   1.1    isaki 
   4179   1.1    isaki 	TEST("FIOASYNC_reset");
   4180   1.1    isaki 	if (netbsd < 8) {
   4181   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   4182   1.1    isaki 		return;
   4183   1.1    isaki 	}
   4184   1.1    isaki 
   4185   1.1    isaki 	/* The first one opens */
   4186   1.1    isaki 	fd0 = OPEN(devaudio, O_WRONLY);
   4187   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   4188   1.1    isaki 
   4189   1.1    isaki 	/* The second one opens, enables ASYNC, and closes */
   4190   1.1    isaki 	fd1 = OPEN(devaudio, O_WRONLY);
   4191   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   4192   1.1    isaki 	val = 1;
   4193   1.1    isaki 	r = IOCTL(fd1, FIOASYNC, &val, "on");
   4194   1.1    isaki 	XP_SYS_EQ(0, r);
   4195   1.1    isaki 	r = CLOSE(fd1);
   4196   1.1    isaki 	XP_SYS_EQ(0, r);
   4197   1.1    isaki 
   4198   1.1    isaki 	/* Again, the second one opens and enables ASYNC */
   4199   1.1    isaki 	fd1 = OPEN(devaudio, O_WRONLY);
   4200   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   4201   1.1    isaki 	val = 1;
   4202   1.1    isaki 	r = IOCTL(fd1, FIOASYNC, &val, "on");
   4203   1.1    isaki 	XP_SYS_EQ(0, r);	/* NetBSD8 fails */
   4204   1.1    isaki 	r = CLOSE(fd1);
   4205   1.1    isaki 	XP_SYS_EQ(0, r);
   4206   1.1    isaki 	r = CLOSE(fd0);
   4207   1.1    isaki 	XP_SYS_EQ(0, r);
   4208   1.1    isaki }
   4209   1.1    isaki 
   4210   1.1    isaki /*
   4211   1.1    isaki  * Whether SIGIO is emitted on plyaback.
   4212   1.1    isaki  * XXX I don't understand conditions that NetBSD7 emits signal.
   4213   1.1    isaki  */
   4214   1.1    isaki DEF(FIOASYNC_play_signal)
   4215   1.1    isaki {
   4216   1.1    isaki 	struct audio_info ai;
   4217   1.1    isaki 	int r;
   4218   1.1    isaki 	int fd;
   4219   1.1    isaki 	int val;
   4220   1.1    isaki 	char *data;
   4221   1.1    isaki 	int i;
   4222   1.1    isaki 
   4223   1.1    isaki 	TEST("FIOASYNC_play_signal");
   4224   1.1    isaki 	if (hw_canplay() == 0) {
   4225   1.1    isaki 		XP_SKIP("This test is only for playable device");
   4226   1.1    isaki 		return;
   4227   1.1    isaki 	}
   4228   1.1    isaki 
   4229   1.1    isaki 	signal(SIGIO, signal_FIOASYNC);
   4230   1.1    isaki 	sigio_caught = 0;
   4231   1.1    isaki 
   4232   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   4233   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4234   1.1    isaki 
   4235   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4236   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   4237   1.1    isaki 	REQUIRED_IF(ai.blocksize != 0);
   4238   1.1    isaki 	data = (char *)malloc(ai.blocksize);
   4239   1.1    isaki 	REQUIRED_IF(data != NULL);
   4240   1.1    isaki 	memset(data, 0xff, ai.blocksize);
   4241   1.1    isaki 
   4242   1.1    isaki 	val = 1;
   4243   1.1    isaki 	r = IOCTL(fd, FIOASYNC, &val, "on");
   4244   1.1    isaki 	XP_SYS_EQ(0, r);
   4245   1.1    isaki 
   4246   1.1    isaki 	r = WRITE(fd, data, ai.blocksize);
   4247   1.1    isaki 	XP_SYS_EQ(ai.blocksize, r);
   4248   1.1    isaki 
   4249   1.1    isaki 	/* Waits signal until 1sec */
   4250   1.1    isaki 	for (i = 0; i < 100 && sigio_caught == 0; i++) {
   4251   1.1    isaki 		usleep(10000);
   4252   1.1    isaki 	}
   4253   1.1    isaki 	signal(SIGIO, SIG_IGN);
   4254   1.1    isaki 	XP_EQ(1, sigio_caught);
   4255   1.1    isaki 
   4256   1.1    isaki 	r = CLOSE(fd);
   4257   1.1    isaki 	XP_SYS_EQ(0, r);
   4258   1.1    isaki 
   4259   1.1    isaki 	free(data);
   4260   1.1    isaki 	signal(SIGIO, SIG_IGN);
   4261   1.1    isaki 	sigio_caught = 0;
   4262   1.1    isaki }
   4263   1.1    isaki 
   4264   1.1    isaki /*
   4265   1.1    isaki  * Whether SIGIO is emitted on recording.
   4266   1.1    isaki  */
   4267   1.1    isaki DEF(FIOASYNC_rec_signal)
   4268   1.1    isaki {
   4269   1.1    isaki 	char buf[10];
   4270   1.1    isaki 	int r;
   4271   1.1    isaki 	int fd;
   4272   1.1    isaki 	int val;
   4273   1.1    isaki 	int i;
   4274   1.1    isaki 
   4275   1.1    isaki 	TEST("FIOASYNC_rec_signal");
   4276   1.1    isaki 	if (hw_canrec() == 0) {
   4277   1.1    isaki 		XP_SKIP("This test is only for recordable device");
   4278   1.1    isaki 		return;
   4279   1.1    isaki 	}
   4280   1.1    isaki 
   4281   1.1    isaki 	signal(SIGIO, signal_FIOASYNC);
   4282   1.1    isaki 	sigio_caught = 0;
   4283   1.1    isaki 
   4284   1.1    isaki 	fd = OPEN(devaudio, O_RDONLY);
   4285   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4286   1.1    isaki 
   4287   1.1    isaki 	val = 1;
   4288   1.1    isaki 	r = IOCTL(fd, FIOASYNC, &val, "on");
   4289   1.1    isaki 	XP_SYS_EQ(0, r);
   4290   1.1    isaki 
   4291   1.1    isaki 	r = READ(fd, buf, sizeof(buf));
   4292   1.1    isaki 	XP_SYS_EQ(sizeof(buf), r);
   4293   1.1    isaki 
   4294   1.1    isaki 	/* Wait signal until 1sec */
   4295   1.1    isaki 	for (i = 0; i < 100 && sigio_caught == 0; i++) {
   4296   1.1    isaki 		usleep(10000);
   4297   1.1    isaki 	}
   4298   1.1    isaki 	signal(SIGIO, SIG_IGN);
   4299   1.1    isaki 	XP_EQ(1, sigio_caught);
   4300   1.1    isaki 
   4301   1.1    isaki 	r = CLOSE(fd);
   4302   1.1    isaki 	XP_SYS_EQ(0, r);
   4303   1.1    isaki 
   4304   1.1    isaki 	signal(SIGIO, SIG_IGN);
   4305   1.1    isaki 	sigio_caught = 0;
   4306   1.1    isaki }
   4307   1.1    isaki 
   4308   1.1    isaki /*
   4309   1.1    isaki  * FIOASYNC doesn't affect other descriptor.
   4310   1.1    isaki  * For simplify, test only for playback...
   4311   1.1    isaki  */
   4312   1.1    isaki DEF(FIOASYNC_multi)
   4313   1.1    isaki {
   4314   1.1    isaki 	struct audio_info ai;
   4315   1.1    isaki 	char *buf;
   4316   1.1    isaki 	char pipebuf[1];
   4317   1.1    isaki 	int r;
   4318   1.1    isaki 	int i;
   4319   1.1    isaki 	int fd1;
   4320   1.1    isaki 	int fd2;
   4321   1.1    isaki 	int pd[2];
   4322   1.1    isaki 	int val;
   4323   1.1    isaki 	pid_t pid;
   4324   1.1    isaki 	int status;
   4325   1.1    isaki 
   4326   1.1    isaki 	TEST("FIOASYNC_multi");
   4327   1.1    isaki 	if (netbsd < 8) {
   4328   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   4329   1.1    isaki 		return;
   4330   1.1    isaki 	}
   4331   1.1    isaki 	if (hw_canplay() == 0) {
   4332   1.1    isaki 		XP_SKIP("This test is only for playable device");
   4333   1.1    isaki 		return;
   4334   1.1    isaki 	}
   4335   1.1    isaki 
   4336   1.1    isaki 	/* Pipe used between parent and child */
   4337   1.1    isaki 	r = pipe(pd);
   4338   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   4339   1.1    isaki 
   4340   1.1    isaki 	fd1 = OPEN(devaudio, O_WRONLY);
   4341   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   4342   1.1    isaki 	fd2 = OPEN(devaudio, O_WRONLY);
   4343   1.1    isaki 	REQUIRED_SYS_OK(fd2);
   4344   1.1    isaki 
   4345   1.1    isaki 	/* Pause fd2 */
   4346   1.1    isaki 	AUDIO_INITINFO(&ai);
   4347   1.1    isaki 	ai.play.pause = 1;
   4348   1.1    isaki 	r = IOCTL(fd2, AUDIO_SETINFO, &ai, "pause");
   4349   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   4350   1.1    isaki 
   4351   1.1    isaki 	/* Fill both */
   4352   1.1    isaki 	r = IOCTL(fd1, AUDIO_GETBUFINFO, &ai, "");
   4353   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   4354   1.1    isaki 	REQUIRED_IF(ai.blocksize != 0);
   4355   1.1    isaki 	buf = (char *)malloc(ai.blocksize);
   4356   1.1    isaki 	REQUIRED_IF(buf != NULL);
   4357   1.1    isaki 	memset(buf, 0xff, ai.blocksize);
   4358   1.1    isaki 	r = WRITE(fd1, buf, ai.blocksize);
   4359   1.1    isaki 	XP_SYS_EQ(ai.blocksize, r);
   4360   1.1    isaki 
   4361   1.1    isaki 	sigio_caught = 0;
   4362   1.1    isaki 	val = 1;
   4363   1.1    isaki 
   4364   1.1    isaki 	fflush(stdout);
   4365   1.1    isaki 	fflush(stderr);
   4366   1.1    isaki 	pid = fork();
   4367   1.1    isaki 	if (pid == -1) {
   4368   1.1    isaki 		REQUIRED_SYS_OK(pid);
   4369   1.1    isaki 	}
   4370   1.1    isaki 	if (pid == 0) {
   4371   1.1    isaki 		/* Child */
   4372   1.1    isaki 		close(fd1);
   4373   1.1    isaki 
   4374   1.1    isaki 		/* Child enables ASYNC on fd2 */
   4375   1.1    isaki 		signal(SIGIO, signal_FIOASYNC);
   4376   1.1    isaki 		r = IOCTL(fd2, FIOASYNC, &val, "on");
   4377   1.1    isaki 		/* It cannot count errors because here is a child process */
   4378   1.1    isaki 		/* XP_SYS_EQ(0, r); */
   4379   1.1    isaki 
   4380   1.1    isaki 		/*
   4381   1.1    isaki 		 * Waits signal until 1sec.
   4382   1.1    isaki 		 * But fd2 is paused so it should never raise.
   4383   1.1    isaki 		 */
   4384   1.1    isaki 		for (i = 0; i < 100 && sigio_caught == 0; i++) {
   4385   1.1    isaki 			usleep(10000);
   4386   1.1    isaki 		}
   4387   1.1    isaki 		signal(SIGIO, SIG_IGN);
   4388   1.1    isaki 		pipebuf[0] = sigio_caught;
   4389   1.1    isaki 		/* This is not WRITE() macro here */
   4390   1.1    isaki 		write(pd[1], pipebuf, sizeof(pipebuf));
   4391   1.1    isaki 
   4392   1.1    isaki 		/* XXX? */
   4393   1.1    isaki 		close(fd2);
   4394   1.1    isaki 		sleep(1);
   4395   1.1    isaki 		exit(0);
   4396   1.1    isaki 	} else {
   4397   1.1    isaki 		/* Parent */
   4398   1.1    isaki 		DPRINTF("  > fork() = %d\n", (int)pid);
   4399   1.1    isaki 
   4400   1.1    isaki 		/* Parent enables ASYNC on fd1 */
   4401   1.1    isaki 		signal(SIGIO, signal_FIOASYNC);
   4402   1.1    isaki 		r = IOCTL(fd1, FIOASYNC, &val, "on");
   4403   1.1    isaki 		XP_SYS_EQ(0, r);
   4404   1.1    isaki 
   4405   1.1    isaki 		/* Waits signal until 1sec */
   4406   1.1    isaki 		for (i = 0; i < 100 && sigio_caught == 0; i++) {
   4407   1.1    isaki 			usleep(10000);
   4408   1.1    isaki 		}
   4409   1.1    isaki 		signal(SIGIO, SIG_IGN);
   4410   1.1    isaki 		XP_EQ(1, sigio_caught);
   4411   1.1    isaki 
   4412   1.1    isaki 		/* Then read child's result from pipe */
   4413   1.1    isaki 		r = read(pd[0], pipebuf, sizeof(pipebuf));
   4414   1.1    isaki 		if (r != 1) {
   4415   1.1    isaki 			XP_FAIL("reading from child failed");
   4416   1.1    isaki 		}
   4417   1.1    isaki 		DPRINTF("  > child's sigio_cauht = %d\n", pipebuf[0]);
   4418   1.1    isaki 		XP_EQ(0, pipebuf[0]);
   4419   1.1    isaki 
   4420   1.1    isaki 		waitpid(pid, &status, 0);
   4421   1.1    isaki 	}
   4422   1.1    isaki 
   4423   1.1    isaki 	r = CLOSE(fd1);
   4424   1.1    isaki 	XP_SYS_EQ(0, r);
   4425   1.1    isaki 	r = CLOSE(fd2);
   4426   1.1    isaki 	XP_SYS_EQ(0, r);
   4427   1.1    isaki 
   4428   1.1    isaki 	signal(SIGIO, SIG_IGN);
   4429   1.1    isaki 	sigio_caught = 0;
   4430   1.1    isaki 	free(buf);
   4431   1.1    isaki }
   4432   1.1    isaki 
   4433   1.1    isaki /*
   4434   1.1    isaki  * Check AUDIO_WSEEK behavior.
   4435   1.1    isaki  */
   4436   1.1    isaki DEF(AUDIO_WSEEK)
   4437   1.1    isaki {
   4438   1.1    isaki 	char buf[4];
   4439   1.1    isaki 	struct audio_info ai;
   4440   1.1    isaki 	int r;
   4441   1.1    isaki 	int fd;
   4442  1.13      rin 	u_long n;
   4443   1.1    isaki 
   4444   1.1    isaki 	TEST("AUDIO_WSEEK");
   4445   1.1    isaki 
   4446   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   4447   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4448   1.1    isaki 
   4449   1.1    isaki 	/* Pause to count sample data */
   4450   1.1    isaki 	AUDIO_INITINFO(&ai);
   4451   1.1    isaki 	ai.play.pause = 1;
   4452   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause=1");
   4453   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   4454   1.1    isaki 
   4455   1.1    isaki 	/* On the initial state, it should be 0 bytes */
   4456   1.1    isaki 	n = 0;
   4457   1.1    isaki 	r = IOCTL(fd, AUDIO_WSEEK, &n, "");
   4458   1.1    isaki 	XP_SYS_EQ(0, r);
   4459   1.1    isaki 	XP_EQ(0, n);
   4460   1.1    isaki 
   4461   1.1    isaki 	/* When writing 4 bytes, it should be 4 bytes */
   4462   1.1    isaki 	memset(buf, 0xff, sizeof(buf));
   4463   1.1    isaki 	r = WRITE(fd, buf, sizeof(buf));
   4464   1.1    isaki 	REQUIRED_EQ(sizeof(buf), r);
   4465   1.1    isaki 	r = IOCTL(fd, AUDIO_WSEEK, &n, "");
   4466   1.1    isaki 	XP_SYS_EQ(0, r);
   4467   1.1    isaki 	if (netbsd < 9) {
   4468   1.1    isaki 		/*
   4469   1.1    isaki 		 * On NetBSD7, it will return 0.
   4470   1.1    isaki 		 * Perhaps, WSEEK returns the number of pustream bytes but
   4471   1.1    isaki 		 * data has already advanced...
   4472   1.1    isaki 		 */
   4473   1.1    isaki 		XP_EQ(0, n);
   4474   1.1    isaki 	} else {
   4475   1.1    isaki 		/* Data less than one block remains here */
   4476   1.1    isaki 		XP_EQ(4, n);
   4477   1.1    isaki 	}
   4478   1.1    isaki 
   4479   1.1    isaki 	r = CLOSE(fd);
   4480   1.1    isaki 	XP_SYS_EQ(0, r);
   4481   1.1    isaki }
   4482   1.1    isaki 
   4483   1.1    isaki /*
   4484   1.1    isaki  * Check AUDIO_SETFD behavior for O_*ONLY descriptor.
   4485   1.1    isaki  * On NetBSD7, SETFD modify audio layer's state (and MD driver's state)
   4486   1.1    isaki  * regardless of open mode.  GETFD obtains audio layer's duplex.
   4487   1.1    isaki  * On NetBSD9, SETFD is obsoleted.  GETFD obtains hardware's duplex.
   4488   1.1    isaki  */
   4489   1.1    isaki void
   4490   1.1    isaki test_AUDIO_SETFD_xxONLY(int openmode)
   4491   1.1    isaki {
   4492   1.1    isaki 	struct audio_info ai;
   4493   1.1    isaki 	int r;
   4494   1.1    isaki 	int fd;
   4495   1.1    isaki 	int n;
   4496   1.1    isaki 
   4497   1.1    isaki 	TEST("AUDIO_SETFD_%s", openmode_str[openmode] + 2);
   4498   1.1    isaki 	if (openmode == O_RDONLY && hw_canrec() == 0) {
   4499   1.1    isaki 		XP_SKIP("This test is for recordable device");
   4500   1.1    isaki 		return;
   4501   1.1    isaki 	}
   4502   1.1    isaki 	if (openmode == O_WRONLY && hw_canplay() == 0) {
   4503   1.1    isaki 		XP_SKIP("This test is for playable device");
   4504   1.1    isaki 		return;
   4505   1.1    isaki 	}
   4506   1.1    isaki 
   4507   1.1    isaki 	fd = OPEN(devaudio, openmode);
   4508   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4509   1.1    isaki 
   4510   1.1    isaki 	/*
   4511   1.1    isaki 	 * Just after open(2),
   4512   1.1    isaki 	 * - On NetBSD7, it's always half-duplex.
   4513   1.1    isaki 	 * - On NetBSD9, it's the same as hardware one regardless of openmode.
   4514   1.1    isaki 	 */
   4515   1.1    isaki 	n = 0;
   4516   1.1    isaki 	r = IOCTL(fd, AUDIO_GETFD, &n, "");
   4517   1.1    isaki 	XP_SYS_EQ(0, r);
   4518   1.1    isaki 	if (netbsd < 9) {
   4519   1.1    isaki 		XP_EQ(0, n);
   4520   1.1    isaki 	} else {
   4521   1.1    isaki 		XP_EQ(hw_fulldup(), n);
   4522   1.1    isaki 	}
   4523   1.1    isaki 
   4524   1.1    isaki 	/*
   4525   1.1    isaki 	 * When trying to set to full-duplex,
   4526   1.1    isaki 	 * - On NetBSD7, it will succeed if the hardware is full-duplex, or
   4527   1.1    isaki 	 *   will fail if the hardware is half-duplex.
   4528   1.1    isaki 	 * - On NetBSD9, it will always succeed but will not be modified.
   4529   1.1    isaki 	 */
   4530   1.1    isaki 	n = 1;
   4531   1.1    isaki 	r = IOCTL(fd, AUDIO_SETFD, &n, "on");
   4532   1.1    isaki 	if (netbsd < 8) {
   4533   1.1    isaki 		if (hw_fulldup()) {
   4534   1.1    isaki 			XP_SYS_EQ(0, r);
   4535   1.1    isaki 		} else {
   4536   1.1    isaki 			XP_SYS_NG(ENOTTY, r);
   4537   1.1    isaki 		}
   4538   1.1    isaki 	} else if (netbsd == 8) {
   4539   1.1    isaki 		XP_FAIL("expected result is unknown");
   4540   1.1    isaki 	} else {
   4541   1.1    isaki 		XP_SYS_EQ(0, r);
   4542   1.1    isaki 	}
   4543   1.1    isaki 
   4544   1.1    isaki 	/*
   4545   1.1    isaki 	 * When obtain it,
   4546   1.1    isaki 	 * - On NetBSD7, it will be 1 if the hardware is full-duplex or
   4547   1.1    isaki 	 *   0 if half-duplex.
   4548   1.1    isaki 	 * - On NetBSD9, it will never be changed because it's the hardware
   4549   1.1    isaki 	 *   property.
   4550   1.1    isaki 	 */
   4551   1.1    isaki 	n = 0;
   4552   1.1    isaki 	r = IOCTL(fd, AUDIO_GETFD, &n, "");
   4553   1.1    isaki 	XP_SYS_EQ(0, r);
   4554   1.1    isaki 	if (netbsd < 8) {
   4555   1.1    isaki 		XP_EQ(hw_fulldup(), n);
   4556   1.1    isaki 	} else if (netbsd == 8) {
   4557   1.1    isaki 		XP_FAIL("expected result is unknown");
   4558   1.1    isaki 	} else {
   4559   1.1    isaki 		XP_EQ(hw_fulldup(), n);
   4560   1.1    isaki 	}
   4561   1.1    isaki 
   4562   1.1    isaki 	/* Some track parameters like ai.*.open should not change */
   4563   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4564   1.1    isaki 	XP_SYS_EQ(0, r);
   4565   1.1    isaki 	XP_EQ(mode2play(openmode), ai.play.open);
   4566   1.1    isaki 	XP_EQ(mode2rec(openmode), ai.record.open);
   4567   1.1    isaki 
   4568   1.1    isaki 	/*
   4569   1.1    isaki 	 * When trying to set to half-duplex,
   4570   1.1    isaki 	 * - On NetBSD7, it will succeed if the hardware is full-duplex, or
   4571   1.1    isaki 	 *   it will succeed with nothing happens.
   4572   1.1    isaki 	 * - On NetBSD9, it will always succeed but nothing happens.
   4573   1.1    isaki 	 */
   4574   1.1    isaki 	n = 0;
   4575   1.1    isaki 	r = IOCTL(fd, AUDIO_SETFD, &n, "off");
   4576   1.1    isaki 	XP_SYS_EQ(0, r);
   4577   1.1    isaki 
   4578   1.1    isaki 	/*
   4579   1.1    isaki 	 * When obtain it again,
   4580   1.1    isaki 	 * - On NetBSD7, it will be 0 if the hardware is full-duplex, or
   4581   1.1    isaki 	 *   still 0 if half-duplex.
   4582   1.1    isaki 	 * - On NetBSD9, it should not change.
   4583   1.1    isaki 	 */
   4584   1.1    isaki 	n = 0;
   4585   1.1    isaki 	r = IOCTL(fd, AUDIO_GETFD, &n, "");
   4586   1.1    isaki 	XP_SYS_EQ(0, r);
   4587   1.1    isaki 	if (netbsd < 9) {
   4588   1.1    isaki 		XP_EQ(0, n);
   4589   1.1    isaki 	} else {
   4590   1.1    isaki 		XP_EQ(hw_fulldup(), n);
   4591   1.1    isaki 	}
   4592   1.1    isaki 
   4593   1.1    isaki 	/* Some track parameters like ai.*.open should not change */
   4594   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4595   1.1    isaki 	XP_SYS_EQ(0, r);
   4596   1.1    isaki 	XP_EQ(mode2play(openmode), ai.play.open);
   4597   1.1    isaki 	XP_EQ(mode2rec(openmode), ai.record.open);
   4598   1.1    isaki 
   4599   1.1    isaki 	r = CLOSE(fd);
   4600   1.1    isaki 	XP_SYS_EQ(0, r);
   4601   1.1    isaki }
   4602   1.1    isaki DEF(AUDIO_SETFD_RDONLY)	{ test_AUDIO_SETFD_xxONLY(O_RDONLY); }
   4603   1.1    isaki DEF(AUDIO_SETFD_WRONLY)	{ test_AUDIO_SETFD_xxONLY(O_WRONLY); }
   4604   1.1    isaki 
   4605   1.1    isaki /*
   4606   1.1    isaki  * Check AUDIO_SETFD behavior for O_RDWR descriptor.
   4607   1.1    isaki  */
   4608   1.1    isaki DEF(AUDIO_SETFD_RDWR)
   4609   1.1    isaki {
   4610   1.1    isaki 	struct audio_info ai;
   4611   1.1    isaki 	int r;
   4612   1.1    isaki 	int fd;
   4613   1.1    isaki 	int n;
   4614   1.1    isaki 
   4615   1.1    isaki 	TEST("AUDIO_SETFD_RDWR");
   4616   1.1    isaki 	if (!hw_fulldup()) {
   4617   1.1    isaki 		XP_SKIP("This test is only for full-duplex device");
   4618   1.1    isaki 		return;
   4619   1.1    isaki 	}
   4620   1.1    isaki 
   4621   1.1    isaki 	fd = OPEN(devaudio, O_RDWR);
   4622   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4623   1.1    isaki 
   4624   1.1    isaki 	/*
   4625   1.1    isaki 	 * - audio(4) manpage until NetBSD7 said "If a full-duplex capable
   4626   1.1    isaki 	 *   audio device is opened for both reading and writing it will
   4627   1.1    isaki 	 *   start in half-duplex play mode", but implementation doesn't
   4628   1.1    isaki 	 *   seem to follow it.  It returns full-duplex.
   4629   1.1    isaki 	 * - On NetBSD9, it should return full-duplex on full-duplex, or
   4630   1.1    isaki 	 *   half-duplex on half-duplex.
   4631   1.1    isaki 	 */
   4632   1.1    isaki 	n = 0;
   4633   1.1    isaki 	r = IOCTL(fd, AUDIO_GETFD, &n, "");
   4634   1.1    isaki 	XP_SYS_EQ(0, r);
   4635   1.1    isaki 	XP_EQ(hw_fulldup(), n);
   4636   1.1    isaki 
   4637   1.1    isaki 	/*
   4638   1.1    isaki 	 * When trying to set to full-duplex,
   4639   1.1    isaki 	 * - On NetBSD7, it will succeed with nothing happens if full-duplex,
   4640   1.1    isaki 	 *   or will fail if half-duplex.
   4641   1.1    isaki 	 * - On NetBSD9, it will always succeed with nothing happens.
   4642   1.1    isaki 	 */
   4643   1.1    isaki 	n = 1;
   4644   1.1    isaki 	r = IOCTL(fd, AUDIO_SETFD, &n, "on");
   4645   1.1    isaki 	if (netbsd < 9) {
   4646   1.1    isaki 		if (hw_fulldup()) {
   4647   1.1    isaki 			XP_SYS_EQ(0, r);
   4648   1.1    isaki 		} else {
   4649   1.1    isaki 			XP_SYS_NG(ENOTTY, r);
   4650   1.1    isaki 		}
   4651   1.1    isaki 	} else {
   4652   1.1    isaki 		XP_SYS_EQ(0, r);
   4653   1.1    isaki 	}
   4654   1.1    isaki 
   4655   1.1    isaki 	/* When obtains it, it retuns half/full-duplex as is */
   4656   1.1    isaki 	n = 0;
   4657   1.1    isaki 	r = IOCTL(fd, AUDIO_GETFD, &n, "");
   4658   1.1    isaki 	XP_SYS_EQ(0, r);
   4659   1.1    isaki 	XP_EQ(hw_fulldup(), n);
   4660   1.1    isaki 
   4661   1.1    isaki 	/* Some track parameters like ai.*.open should not change */
   4662   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4663   1.1    isaki 	XP_SYS_EQ(0, r);
   4664   1.1    isaki 	XP_EQ(1, ai.play.open);
   4665   1.1    isaki 	XP_EQ(mode2rec(O_RDWR), ai.record.open);
   4666   1.1    isaki 
   4667   1.1    isaki 	/*
   4668   1.1    isaki 	 * When trying to set to half-duplex,
   4669   1.1    isaki 	 * - On NetBSD7, it will succeed if the hardware is full-duplex, or
   4670   1.1    isaki 	 *   it will succeed with nothing happens.
   4671   1.1    isaki 	 * - On NetBSD9, it will always succeed but nothing happens.
   4672   1.1    isaki 	 */
   4673   1.1    isaki 	n = 0;
   4674   1.1    isaki 	r = IOCTL(fd, AUDIO_SETFD, &n, "off");
   4675   1.1    isaki 	if (netbsd < 8) {
   4676   1.1    isaki 		XP_SYS_EQ(0, r);
   4677   1.1    isaki 	} else if (netbsd == 8) {
   4678   1.1    isaki 		XP_FAIL("expected result is unknown");
   4679   1.1    isaki 	} else {
   4680   1.1    isaki 		XP_SYS_EQ(0, r);
   4681   1.1    isaki 	}
   4682   1.1    isaki 
   4683   1.1    isaki 	/*
   4684   1.1    isaki 	 * When obtain it again,
   4685   1.1    isaki 	 * - On NetBSD7, it will be 0 if the hardware is full-duplex, or
   4686   1.1    isaki 	 *   still 0 if half-duplex.
   4687   1.1    isaki 	 * - On NetBSD9, it should be 1 if the hardware is full-duplex, or
   4688   1.1    isaki 	 *   0 if half-duplex.
   4689   1.1    isaki 	 */
   4690   1.1    isaki 	n = 0;
   4691   1.1    isaki 	r = IOCTL(fd, AUDIO_GETFD, &n, "");
   4692   1.1    isaki 	XP_SYS_EQ(0, r);
   4693   1.1    isaki 	if (netbsd < 8) {
   4694   1.1    isaki 		XP_EQ(0, n);
   4695   1.1    isaki 	} else if (netbsd == 8) {
   4696   1.1    isaki 		XP_FAIL("expected result is unknown");
   4697   1.1    isaki 	} else {
   4698   1.1    isaki 		XP_EQ(hw_fulldup(), n);
   4699   1.1    isaki 	}
   4700   1.1    isaki 
   4701   1.1    isaki 	/* Some track parameters like ai.*.open should not change */
   4702   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4703   1.1    isaki 	XP_SYS_EQ(0, r);
   4704   1.1    isaki 	XP_EQ(1, ai.play.open);
   4705   1.1    isaki 	XP_EQ(mode2rec(O_RDWR), ai.record.open);
   4706   1.1    isaki 
   4707   1.1    isaki 	r = CLOSE(fd);
   4708   1.1    isaki 	XP_SYS_EQ(0, r);
   4709   1.1    isaki }
   4710   1.1    isaki 
   4711   1.1    isaki /*
   4712   1.1    isaki  * Check AUDIO_GETINFO.eof behavior.
   4713   1.1    isaki  */
   4714   1.1    isaki DEF(AUDIO_GETINFO_eof)
   4715   1.1    isaki {
   4716   1.1    isaki 	struct audio_info ai;
   4717   1.1    isaki 	char buf[4];
   4718   1.1    isaki 	int r;
   4719   1.1    isaki 	int fd, fd1;
   4720   1.1    isaki 
   4721   1.1    isaki 	TEST("AUDIO_GETINFO_eof");
   4722   1.1    isaki 	if (hw_canplay() == 0) {
   4723   1.1    isaki 		XP_SKIP("This test is for playable device");
   4724   1.1    isaki 		return;
   4725   1.1    isaki 	}
   4726   1.1    isaki 
   4727   1.1    isaki 	fd = OPEN(devaudio, O_RDWR);
   4728   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4729   1.1    isaki 
   4730   1.1    isaki 	/* Pause to make no sound */
   4731   1.1    isaki 	AUDIO_INITINFO(&ai);
   4732   1.1    isaki 	ai.play.pause = 1;
   4733   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "pause");
   4734   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   4735   1.1    isaki 
   4736   1.1    isaki 	/* It should be 0 initially */
   4737   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4738   1.1    isaki 	XP_SYS_EQ(0, r);
   4739   1.1    isaki 	XP_EQ(0, ai.play.eof);
   4740   1.1    isaki 	XP_EQ(0, ai.record.eof);
   4741   1.1    isaki 
   4742   1.1    isaki 	/* Writing zero bytes should increment it */
   4743   1.1    isaki 	r = WRITE(fd, &r, 0);
   4744   1.1    isaki 	REQUIRED_SYS_OK(r);
   4745   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4746   1.1    isaki 	XP_SYS_EQ(0, r);
   4747   1.1    isaki 	XP_EQ(1, ai.play.eof);
   4748   1.1    isaki 	XP_EQ(0, ai.record.eof);
   4749   1.1    isaki 
   4750   1.1    isaki 	/* Writing one ore more bytes should noto increment it */
   4751   1.1    isaki 	memset(buf, 0xff, sizeof(buf));
   4752   1.1    isaki 	r = WRITE(fd, buf, sizeof(buf));
   4753   1.1    isaki 	REQUIRED_SYS_OK(r);
   4754   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   4755   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4756   1.1    isaki 	XP_SYS_EQ(0, r);
   4757   1.1    isaki 	XP_EQ(1, ai.play.eof);
   4758   1.1    isaki 	XP_EQ(0, ai.record.eof);
   4759   1.1    isaki 
   4760   1.1    isaki 	/* Writing zero bytes again should increment it */
   4761   1.1    isaki 	r = WRITE(fd, buf, 0);
   4762   1.1    isaki 	REQUIRED_SYS_OK(r);
   4763   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   4764   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4765   1.1    isaki 	XP_SYS_EQ(0, r);
   4766   1.1    isaki 	XP_EQ(2, ai.play.eof);
   4767   1.1    isaki 	XP_EQ(0, ai.record.eof);
   4768   1.1    isaki 
   4769   1.1    isaki 	/* Reading zero bytes should not increment it */
   4770   1.1    isaki 	if (hw_fulldup()) {
   4771   1.1    isaki 		r = READ(fd, buf, 0);
   4772   1.1    isaki 		REQUIRED_SYS_OK(r);
   4773   1.1    isaki 		memset(&ai, 0, sizeof(ai));
   4774   1.1    isaki 		r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4775   1.1    isaki 		XP_SYS_EQ(0, r);
   4776   1.1    isaki 		XP_EQ(2, ai.play.eof);
   4777   1.1    isaki 		XP_EQ(0, ai.record.eof);
   4778   1.1    isaki 	}
   4779   1.1    isaki 
   4780   1.1    isaki 	/* should not interfere with other descriptor */
   4781   1.1    isaki 	if (netbsd >= 8) {
   4782   1.1    isaki 		fd1 = OPEN(devaudio, O_RDWR);
   4783   1.1    isaki 		REQUIRED_SYS_OK(fd1);
   4784   1.1    isaki 		memset(&ai, 0, sizeof(ai));
   4785   1.1    isaki 		r = IOCTL(fd1, AUDIO_GETBUFINFO, &ai, "");
   4786   1.1    isaki 		XP_SYS_EQ(0, r);
   4787   1.1    isaki 		XP_EQ(0, ai.play.eof);
   4788   1.1    isaki 		XP_EQ(0, ai.record.eof);
   4789   1.1    isaki 		r = CLOSE(fd1);
   4790   1.1    isaki 		XP_SYS_EQ(0, r);
   4791   1.1    isaki 	}
   4792   1.1    isaki 
   4793   1.1    isaki 	r = CLOSE(fd);
   4794   1.1    isaki 	XP_SYS_EQ(0, r);
   4795   1.1    isaki 
   4796   1.1    isaki 	xxx_close_wait();
   4797   1.1    isaki 
   4798   1.1    isaki 	/* When reopen, it should reset the counter */
   4799   1.1    isaki 	fd = OPEN(devaudio, O_RDWR);
   4800   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4801   1.1    isaki 
   4802   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   4803   1.1    isaki 	XP_SYS_EQ(0, r);
   4804   1.1    isaki 	XP_EQ(0, ai.play.eof);
   4805   1.1    isaki 	XP_EQ(0, ai.record.eof);
   4806   1.1    isaki 
   4807   1.1    isaki 	r = CLOSE(fd);
   4808   1.1    isaki 	XP_SYS_EQ(0, r);
   4809   1.1    isaki }
   4810   1.1    isaki 
   4811   1.1    isaki /*
   4812   1.1    isaki  * Check relationship between openmode and mode set by AUDIO_SETINFO.
   4813   1.1    isaki  */
   4814   1.1    isaki void
   4815   1.1    isaki test_AUDIO_SETINFO_mode(int openmode, int index, int setmode, int expected)
   4816   1.1    isaki {
   4817   1.1    isaki 	struct audio_info ai;
   4818   1.1    isaki 	char buf[10];
   4819   1.1    isaki 	int inimode;
   4820   1.1    isaki 	int r;
   4821   1.1    isaki 	int fd;
   4822   1.1    isaki 	bool canwrite;
   4823   1.1    isaki 	bool canread;
   4824   1.1    isaki 
   4825   1.1    isaki 	/* index was passed only for displaying here */
   4826   1.1    isaki 	TEST("AUDIO_SETINFO_mode_%s_%d", openmode_str[openmode] + 2, index);
   4827   1.1    isaki 	if (mode2aumode(openmode) == 0) {
   4828   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   4829   1.1    isaki 		return;
   4830   1.1    isaki 	}
   4831   1.1    isaki 
   4832   1.1    isaki 	inimode = mode2aumode(openmode);
   4833   1.1    isaki 
   4834   1.1    isaki 	fd = OPEN(devaudio, openmode);
   4835   1.1    isaki 	REQUIRED_SYS_OK(fd);
   4836   1.1    isaki 
   4837   1.1    isaki 	/* When just after opening */
   4838   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   4839   1.1    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &ai, "");
   4840   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   4841   1.1    isaki 	XP_EQ(inimode, ai.mode);
   4842   1.1    isaki 	XP_EQ(mode2play(openmode), ai.play.open);
   4843   1.1    isaki 	XP_EQ(mode2rec(openmode),  ai.record.open);
   4844   1.7    isaki 	XP_NE(0, ai.play.buffer_size);
   4845   1.7    isaki 	XP_NE(0, ai.record.buffer_size);
   4846   1.1    isaki 
   4847   1.1    isaki 	/* Change mode (and pause here) */
   4848   1.1    isaki 	ai.mode = setmode;
   4849   1.1    isaki 	ai.play.pause = 1;
   4850   1.1    isaki 	ai.record.pause = 1;
   4851   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "mode");
   4852   1.1    isaki 	XP_SYS_EQ(0, r);
   4853   1.1    isaki 	if (r == 0) {
   4854   1.1    isaki 		r = IOCTL(fd, AUDIO_GETINFO, &ai, "");
   4855   1.1    isaki 		XP_SYS_EQ(0, r);
   4856   1.1    isaki 		XP_EQ(expected, ai.mode);
   4857   1.1    isaki 
   4858   1.1    isaki 		/* It seems to keep the initial openmode regardless of mode */
   4859   1.1    isaki 		XP_EQ(mode2play(openmode), ai.play.open);
   4860   1.1    isaki 		XP_EQ(mode2rec(openmode), ai.record.open);
   4861   1.7    isaki 		XP_NE(0, ai.play.buffer_size);
   4862   1.7    isaki 		XP_NE(0, ai.record.buffer_size);
   4863   1.1    isaki 	}
   4864   1.1    isaki 
   4865   1.1    isaki 	/*
   4866   1.1    isaki 	 * On NetBSD7, whether writable depends openmode when open.
   4867   1.1    isaki 	 * On NetBSD9, whether writable should depend inimode when open.
   4868   1.1    isaki 	 * Modifying after open should not affect this mode.
   4869   1.1    isaki 	 */
   4870   1.1    isaki 	if (netbsd < 9) {
   4871   1.1    isaki 		canwrite = (openmode != O_RDONLY);
   4872   1.1    isaki 	} else {
   4873   1.1    isaki 		canwrite = ((inimode & AUMODE_PLAY) != 0);
   4874   1.1    isaki 	}
   4875   1.1    isaki 	r = WRITE(fd, buf, 0);
   4876   1.1    isaki 	if (canwrite) {
   4877   1.1    isaki 		XP_SYS_EQ(0, r);
   4878   1.1    isaki 	} else {
   4879   1.1    isaki 		XP_SYS_NG(EBADF, r);
   4880   1.1    isaki 	}
   4881   1.1    isaki 
   4882   1.1    isaki 	/*
   4883   1.1    isaki 	 * On NetBSD7, whether readable depends openmode when open.
   4884   1.1    isaki 	 * On NetBSD9, whether readable should depend inimode when open.
   4885   1.1    isaki 	 * Modifying after open should not affect this mode.
   4886   1.1    isaki 	 */
   4887   1.1    isaki 	if (netbsd < 9) {
   4888   1.1    isaki 		canread = (openmode != O_WRONLY);
   4889   1.1    isaki 	} else {
   4890   1.1    isaki 		canread = ((inimode & AUMODE_RECORD) != 0);
   4891   1.1    isaki 	}
   4892   1.1    isaki 	r = READ(fd, buf, 0);
   4893   1.1    isaki 	if (canread) {
   4894   1.1    isaki 		XP_SYS_EQ(0, r);
   4895   1.1    isaki 	} else {
   4896   1.1    isaki 		XP_SYS_NG(EBADF, r);
   4897   1.1    isaki 	}
   4898   1.1    isaki 
   4899   1.1    isaki 	r = CLOSE(fd);
   4900   1.1    isaki 	XP_SYS_EQ(0, r);
   4901   1.1    isaki }
   4902   1.1    isaki /*
   4903   1.1    isaki  * XXX hmm... it's too complex
   4904   1.1    isaki  */
   4905   1.1    isaki /* shortcut for table form */
   4906   1.1    isaki #define P	AUMODE_PLAY
   4907   1.1    isaki #define A	AUMODE_PLAY_ALL
   4908   1.1    isaki #define R	AUMODE_RECORD
   4909   1.1    isaki struct setinfo_mode_t {
   4910   1.1    isaki 	int setmode;	/* mode used in SETINFO */
   4911   1.1    isaki 	int expmode7;	/* expected mode on NetBSD7 */
   4912   1.1    isaki 	int expmode9;	/* expected mode on NetBSD9 */
   4913   1.1    isaki };
   4914   1.1    isaki /*
   4915   1.1    isaki  * The following tables show this operation on NetBSD7 is almost 'undefined'.
   4916   1.1    isaki  * In contrast, NetBSD9 never changes mode by AUDIO_SETINFO except
   4917   1.1    isaki  * AUMODE_PLAY_ALL.
   4918   1.1    isaki  *
   4919   1.1    isaki  * setmode == 0 and 8 are out of range and invalid input samples.
   4920   1.1    isaki  * But NetBSD7 seems to accept it as is.
   4921   1.1    isaki  */
   4922   1.1    isaki struct setinfo_mode_t table_SETINFO_mode_O_RDONLY[] = {
   4923   1.1    isaki 	/* setmode	expmode7	expmode9 */
   4924   1.1    isaki 	{     0,	     0,		 R    },
   4925   1.1    isaki 	{     P,	     P,		 R    },
   4926   1.1    isaki 	{   A  ,	   A|P,		 R    },
   4927   1.1    isaki 	{   A|P,	   A|P,		 R    },
   4928   1.1    isaki 	{ R    ,	 R    ,		 R    },
   4929   1.1    isaki 	{ R|  P,	     P,		 R    },
   4930   1.1    isaki 	{ R|A  ,	   A|P,		 R    },
   4931   1.1    isaki 	{ R|A|P,	   A|P,		 R    },
   4932   1.1    isaki 	{     8,	     8,		 R    },
   4933   1.1    isaki };
   4934   1.1    isaki struct setinfo_mode_t table_SETINFO_mode_O_WRONLY[] = {
   4935   1.1    isaki 	/* setmode	expmode7	expmode9 */
   4936   1.1    isaki 	{     0,	     0,		     P },
   4937   1.1    isaki 	{     P,	     P,		     P },
   4938   1.1    isaki 	{   A  ,	   A|P,		   A|P },
   4939   1.1    isaki 	{   A|P,	   A|P,		   A|P },
   4940   1.1    isaki 	{ R    ,	 R    ,		     P },
   4941   1.1    isaki 	{ R|  P,	     P,		     P },
   4942   1.1    isaki 	{ R|A  ,	   A|P,		   A|P },
   4943   1.1    isaki 	{ R|A|P,	   A|P,		   A|P },
   4944   1.1    isaki 	{     8,	     8,		     P },
   4945   1.1    isaki };
   4946   1.1    isaki #define f(openmode, index)	do {					\
   4947   1.1    isaki 	struct setinfo_mode_t *table = table_SETINFO_mode_##openmode;	\
   4948   1.1    isaki 	int setmode = table[index].setmode;				\
   4949   1.1    isaki 	int expected = (netbsd < 9)					\
   4950   1.1    isaki 	    ? table[index].expmode7					\
   4951   1.1    isaki 	    : table[index].expmode9;					\
   4952   1.1    isaki 	test_AUDIO_SETINFO_mode(openmode, index, setmode, expected);	\
   4953   1.1    isaki } while (0)
   4954   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_0) { f(O_RDONLY, 0); }
   4955   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_1) { f(O_RDONLY, 1); }
   4956   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_2) { f(O_RDONLY, 2); }
   4957   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_3) { f(O_RDONLY, 3); }
   4958   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_4) { f(O_RDONLY, 4); }
   4959   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_5) { f(O_RDONLY, 5); }
   4960   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_6) { f(O_RDONLY, 6); }
   4961   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_7) { f(O_RDONLY, 7); }
   4962   1.1    isaki DEF(AUDIO_SETINFO_mode_RDONLY_8) { f(O_RDONLY, 8); }
   4963   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_0) { f(O_WRONLY, 0); }
   4964   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_1) { f(O_WRONLY, 1); }
   4965   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_2) { f(O_WRONLY, 2); }
   4966   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_3) { f(O_WRONLY, 3); }
   4967   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_4) { f(O_WRONLY, 4); }
   4968   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_5) { f(O_WRONLY, 5); }
   4969   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_6) { f(O_WRONLY, 6); }
   4970   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_7) { f(O_WRONLY, 7); }
   4971   1.1    isaki DEF(AUDIO_SETINFO_mode_WRONLY_8) { f(O_WRONLY, 8); }
   4972   1.1    isaki #undef f
   4973   1.1    isaki /*
   4974   1.1    isaki  * The following tables also show that NetBSD7's behavior is almost
   4975   1.1    isaki  * 'undefined'.
   4976   1.1    isaki  */
   4977   1.1    isaki struct setinfo_mode_t table_SETINFO_mode_O_RDWR_full[] = {
   4978   1.1    isaki 	/* setmode	expmode7	expmode9 */
   4979   1.1    isaki 	{     0,	    0,		R|  P },
   4980   1.1    isaki 	{     P,	    P,		R|  P },
   4981   1.1    isaki 	{   A  ,	  A|P,		R|A|P },
   4982   1.1    isaki 	{   A|P,	  A|P,		R|A|P },
   4983   1.1    isaki 	{ R    ,	R    ,		R|  P },
   4984   1.1    isaki 	{ R|  P,	R|  P,		R|  P },
   4985   1.1    isaki 	{ R|A  ,	R|A|P,		R|A|P },
   4986   1.1    isaki 	{ R|A|P,	R|A|P,		R|A|P },
   4987   1.1    isaki 	{     8,	    8,		R|  P },
   4988   1.1    isaki };
   4989   1.1    isaki struct setinfo_mode_t table_SETINFO_mode_O_RDWR_half[] = {
   4990   1.1    isaki 	/* setmode	expmode7	expmode9 */
   4991   1.1    isaki 	{     0,	    0,		    P },
   4992   1.1    isaki 	{     P,	    P,		    P },
   4993   1.1    isaki 	{   A  ,	  A|P,		  A|P },
   4994   1.1    isaki 	{   A|P,	  A|P,		  A|P },
   4995   1.1    isaki 	{ R    ,	R    ,		    P },
   4996   1.1    isaki 	{ R|  P,	    P,		    P },
   4997   1.1    isaki 	{ R|A  ,	  A|P,		  A|P },
   4998   1.1    isaki 	{ R|A|P,	  A|P,		  A|P },
   4999   1.1    isaki 	{     8,	    8,		    P },
   5000   1.1    isaki };
   5001   1.1    isaki #define f(index)	do {						\
   5002   1.1    isaki 	struct setinfo_mode_t *table = (hw_fulldup())			\
   5003   1.1    isaki 	    ? table_SETINFO_mode_O_RDWR_full				\
   5004   1.1    isaki 	    : table_SETINFO_mode_O_RDWR_half;				\
   5005   1.1    isaki 	int setmode = table[index].setmode;				\
   5006   1.1    isaki 	int expected = (netbsd < 9)					\
   5007   1.1    isaki 	    ? table[index].expmode7					\
   5008   1.1    isaki 	    : table[index].expmode9;					\
   5009   1.1    isaki 	test_AUDIO_SETINFO_mode(O_RDWR, index, setmode, expected);	\
   5010   1.1    isaki } while (0)
   5011   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_0) { f(0); }
   5012   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_1) { f(1); }
   5013   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_2) { f(2); }
   5014   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_3) { f(3); }
   5015   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_4) { f(4); }
   5016   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_5) { f(5); }
   5017   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_6) { f(6); }
   5018   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_7) { f(7); }
   5019   1.1    isaki DEF(AUDIO_SETINFO_mode_RDWR_8) { f(8); }
   5020   1.1    isaki #undef f
   5021   1.1    isaki #undef P
   5022   1.1    isaki #undef A
   5023   1.1    isaki #undef R
   5024   1.1    isaki 
   5025   1.1    isaki /*
   5026   1.1    isaki  * Check whether encoding params can be set.
   5027   1.1    isaki  */
   5028   1.1    isaki void
   5029   1.1    isaki test_AUDIO_SETINFO_params_set(int openmode, int aimode, int pause)
   5030   1.1    isaki {
   5031   1.1    isaki 	struct audio_info ai;
   5032   1.1    isaki 	int r;
   5033   1.1    isaki 	int fd;
   5034   1.1    isaki 
   5035   1.1    isaki 	/*
   5036   1.1    isaki 	 * aimode is bool value that indicates whether to change ai.mode.
   5037   1.1    isaki 	 * pause is bool value that indicates whether to change ai.*.pause.
   5038   1.1    isaki 	 */
   5039   1.1    isaki 
   5040   1.1    isaki 	TEST("AUDIO_SETINFO_params_%s_%d_%d",
   5041   1.1    isaki 	    openmode_str[openmode] + 2, aimode, pause);
   5042   1.1    isaki 	if (mode2aumode(openmode) == 0) {
   5043   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   5044   1.1    isaki 		return;
   5045   1.1    isaki 	}
   5046   1.1    isaki 
   5047   1.1    isaki 	/* On half-duplex, O_RDWR is the same as O_WRONLY, so skip it */
   5048   1.1    isaki 	if (!hw_fulldup() && openmode == O_RDWR) {
   5049   1.1    isaki 		XP_SKIP("This is the same with O_WRONLY on half-duplex");
   5050   1.1    isaki 		return;
   5051   1.1    isaki 	}
   5052   1.1    isaki 
   5053   1.1    isaki 	fd = OPEN(devaudio, openmode);
   5054   1.1    isaki 	REQUIRED_SYS_OK(fd);
   5055   1.1    isaki 
   5056   1.1    isaki 	AUDIO_INITINFO(&ai);
   5057   1.1    isaki 	/*
   5058   1.1    isaki 	 * It takes time and effort to check all parameters independently,
   5059   1.1    isaki 	 * so that use sample_rate as a representative.
   5060   1.1    isaki 	 */
   5061   1.1    isaki 	ai.play.sample_rate = 11025;
   5062   1.1    isaki 	ai.record.sample_rate = 11025;
   5063   1.1    isaki 	if (aimode)
   5064   1.1    isaki 		ai.mode = mode2aumode(openmode) & ~AUMODE_PLAY_ALL;
   5065   1.1    isaki 	if (pause) {
   5066   1.1    isaki 		ai.play.pause = 1;
   5067   1.1    isaki 		ai.record.pause = 1;
   5068   1.1    isaki 	}
   5069   1.1    isaki 
   5070   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   5071   1.1    isaki 	XP_SYS_EQ(0, r);
   5072   1.1    isaki 
   5073   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   5074   1.1    isaki 	XP_SYS_EQ(0, r);
   5075   1.1    isaki 	int expmode = (aimode)
   5076   1.1    isaki 	    ? (mode2aumode(openmode) & ~AUMODE_PLAY_ALL)
   5077   1.1    isaki 	    : mode2aumode(openmode);
   5078   1.1    isaki 	XP_EQ(expmode, ai.mode);
   5079   1.7    isaki 	XP_EQ(11025, ai.play.sample_rate);
   5080   1.7    isaki 	XP_EQ(pause, ai.play.pause);
   5081   1.7    isaki 	XP_EQ(11025, ai.record.sample_rate);
   5082   1.7    isaki 	XP_EQ(pause, ai.record.pause);
   5083   1.1    isaki 
   5084   1.1    isaki 	r = CLOSE(fd);
   5085   1.1    isaki 	XP_SYS_EQ(0, r);
   5086   1.1    isaki }
   5087   1.1    isaki #define f(a,b,c) test_AUDIO_SETINFO_params_set(a, b, c)
   5088   1.1    isaki DEF(AUDIO_SETINFO_params_set_RDONLY_0)	{ f(O_RDONLY, 0, 0); }
   5089   1.1    isaki DEF(AUDIO_SETINFO_params_set_RDONLY_1)	{ f(O_RDONLY, 0, 1); }
   5090  1.21   andvar /* On RDONLY, ai.mode is not changeable
   5091   1.1    isaki  *  AUDIO_SETINFO_params_set_RDONLY_2)	{ f(O_RDONLY, 1, 0); }
   5092   1.1    isaki  *  AUDIO_SETINFO_params_set_RDONLY_3)	{ f(O_RDONLY, 1, 1); }
   5093   1.1    isaki  */
   5094   1.1    isaki DEF(AUDIO_SETINFO_params_set_WRONLY_0)	{ f(O_WRONLY, 0, 0); }
   5095   1.1    isaki DEF(AUDIO_SETINFO_params_set_WRONLY_1)	{ f(O_WRONLY, 0, 1); }
   5096   1.1    isaki DEF(AUDIO_SETINFO_params_set_WRONLY_2)	{ f(O_WRONLY, 1, 0); }
   5097   1.1    isaki DEF(AUDIO_SETINFO_params_set_WRONLY_3)	{ f(O_WRONLY, 1, 1); }
   5098   1.1    isaki DEF(AUDIO_SETINFO_params_set_RDWR_0)	{ f(O_RDWR, 0, 0); }
   5099   1.1    isaki DEF(AUDIO_SETINFO_params_set_RDWR_1)	{ f(O_RDWR, 0, 1); }
   5100   1.1    isaki DEF(AUDIO_SETINFO_params_set_RDWR_2)	{ f(O_RDWR, 1, 0); }
   5101   1.1    isaki DEF(AUDIO_SETINFO_params_set_RDWR_3)	{ f(O_RDWR, 1, 1); }
   5102   1.1    isaki #undef f
   5103   1.1    isaki 
   5104   1.1    isaki /*
   5105   1.7    isaki  * AUDIO_SETINFO for existing track should not be interfered by other
   5106   1.7    isaki  * descriptor.
   5107   1.7    isaki  * AUDIO_SETINFO for non-existing track affects/is affected sticky parameters
   5108   1.7    isaki  * for backward compatibility.
   5109   1.1    isaki  */
   5110   1.1    isaki DEF(AUDIO_SETINFO_params_simul)
   5111   1.1    isaki {
   5112   1.1    isaki 	struct audio_info ai;
   5113   1.1    isaki 	int fd0;
   5114   1.1    isaki 	int fd1;
   5115   1.1    isaki 	int r;
   5116   1.1    isaki 
   5117   1.1    isaki 	TEST("AUDIO_SETINFO_params_simul");
   5118   1.1    isaki 	if (netbsd < 8) {
   5119   1.1    isaki 		XP_SKIP("Multiple open is not supported");
   5120   1.1    isaki 		return;
   5121   1.1    isaki 	}
   5122   1.7    isaki 	if (hw_canplay() == 0) {
   5123   1.7    isaki 		XP_SKIP("This test is for playable device");
   5124   1.7    isaki 		return;
   5125   1.7    isaki 	}
   5126   1.1    isaki 
   5127   1.1    isaki 	/* Open the 1st one as playback only */
   5128   1.1    isaki 	fd0 = OPEN(devaudio, O_WRONLY);
   5129   1.1    isaki 	REQUIRED_SYS_OK(fd0);
   5130   1.1    isaki 
   5131   1.1    isaki 	/* Open the 2nd one as both of playback and recording */
   5132   1.1    isaki 	fd1 = OPEN(devaudio, O_RDWR);
   5133   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   5134   1.1    isaki 
   5135   1.1    isaki 	/* Change some parameters of both track on the 2nd one */
   5136   1.1    isaki 	AUDIO_INITINFO(&ai);
   5137   1.1    isaki 	ai.play.sample_rate = 11025;
   5138   1.1    isaki 	ai.record.sample_rate = 11025;
   5139   1.1    isaki 	r = IOCTL(fd1, AUDIO_SETINFO, &ai, "");
   5140   1.1    isaki 	XP_SYS_EQ(0, r);
   5141   1.1    isaki 
   5142   1.7    isaki 	/*
   5143   1.7    isaki 	 * The 1st one doesn't have recording track so that only recording
   5144   1.7    isaki 	 * parameter is affected by sticky parameter.
   5145   1.7    isaki 	 */
   5146   1.1    isaki 	memset(&ai, 0, sizeof(ai));
   5147   1.7    isaki 	r = IOCTL(fd0, AUDIO_GETBUFINFO, &ai, "");
   5148   1.1    isaki 	XP_SYS_EQ(0, r);
   5149   1.1    isaki 	XP_EQ(8000, ai.play.sample_rate);
   5150   1.7    isaki 	XP_EQ(11025, ai.record.sample_rate);
   5151   1.7    isaki 
   5152   1.7    isaki 	/* Next, change some parameters of both track on the 1st one */
   5153   1.7    isaki 	AUDIO_INITINFO(&ai);
   5154   1.7    isaki 	ai.play.sample_rate = 16000;
   5155   1.7    isaki 	ai.record.sample_rate = 16000;
   5156   1.7    isaki 	r = IOCTL(fd0, AUDIO_SETINFO, &ai, "");
   5157   1.7    isaki 	XP_SYS_EQ(0, r);
   5158   1.7    isaki 
   5159   1.7    isaki 	/*
   5160  1.11    isaki 	 * On full-duplex device, the 2nd one has both track so that
   5161   1.7    isaki 	 * both track are not affected by sticky parameter.
   5162  1.11    isaki 	 * Otherwise, the 2nd one has only playback track so that
   5163  1.11    isaki 	 * playback track is not affected by sticky parameter.
   5164   1.7    isaki 	 */
   5165   1.7    isaki 	memset(&ai, 0, sizeof(ai));
   5166   1.7    isaki 	r = IOCTL(fd1, AUDIO_GETBUFINFO, &ai, "");
   5167   1.7    isaki 	XP_SYS_EQ(0, r);
   5168   1.7    isaki 	XP_EQ(11025, ai.play.sample_rate);
   5169  1.11    isaki 	if (hw_fulldup()) {
   5170   1.7    isaki 		XP_EQ(11025, ai.record.sample_rate);
   5171   1.7    isaki 	} else {
   5172   1.7    isaki 		XP_EQ(16000, ai.record.sample_rate);
   5173   1.7    isaki 	}
   5174   1.1    isaki 
   5175   1.1    isaki 	r = CLOSE(fd0);
   5176   1.1    isaki 	XP_SYS_EQ(0, r);
   5177   1.1    isaki 	r = CLOSE(fd1);
   5178   1.1    isaki 	XP_SYS_EQ(0, r);
   5179   1.1    isaki }
   5180   1.1    isaki 
   5181   1.1    isaki /*
   5182   1.5    isaki  * AUDIO_SETINFO(encoding/precision) is tested in AUDIO_GETENC_range below.
   5183   1.5    isaki  */
   5184   1.5    isaki 
   5185   1.5    isaki /*
   5186   1.5    isaki  * Check whether the number of channels can be set.
   5187   1.5    isaki  */
   5188   1.5    isaki DEF(AUDIO_SETINFO_channels)
   5189   1.5    isaki {
   5190   1.6    isaki 	struct audio_info hwinfo;
   5191   1.5    isaki 	struct audio_info ai;
   5192   1.5    isaki 	int mode;
   5193   1.5    isaki 	int r;
   5194   1.5    isaki 	int fd;
   5195   1.5    isaki 	int i;
   5196   1.6    isaki 	unsigned int ch;
   5197   1.5    isaki 	struct {
   5198   1.5    isaki 		int ch;
   5199   1.5    isaki 		bool expected;
   5200   1.5    isaki 	} table[] = {
   5201   1.5    isaki 		{  0,	false },
   5202   1.5    isaki 		{  1,	true },	/* monaural */
   5203   1.5    isaki 		{  2,	true },	/* stereo */
   5204   1.5    isaki 	};
   5205   1.5    isaki 
   5206   1.5    isaki 	TEST("AUDIO_SETINFO_channels");
   5207   1.5    isaki 	if (netbsd < 8) {
   5208   1.5    isaki 		/*
   5209   1.5    isaki 		 * On NetBSD7, the result depends the hardware and there is
   5210   1.5    isaki 		 * no way to know it.
   5211   1.5    isaki 		 */
   5212   1.5    isaki 		XP_SKIP("The test doesn't make sense on NetBSD7");
   5213   1.5    isaki 		return;
   5214   1.5    isaki 	}
   5215   1.5    isaki 
   5216   1.5    isaki 	mode = openable_mode();
   5217   1.5    isaki 	fd = OPEN(devaudio, mode);
   5218   1.5    isaki 	REQUIRED_SYS_OK(fd);
   5219   1.5    isaki 
   5220   1.6    isaki 	/*
   5221   1.6    isaki 	 * The audio layer always supports monaural and stereo regardless of
   5222   1.6    isaki 	 * the hardware capability.
   5223   1.6    isaki 	 */
   5224   1.5    isaki 	for (i = 0; i < (int)__arraycount(table); i++) {
   5225   1.6    isaki 		ch = table[i].ch;
   5226   1.5    isaki 		bool expected = table[i].expected;
   5227   1.5    isaki 
   5228   1.5    isaki 		AUDIO_INITINFO(&ai);
   5229   1.5    isaki 		if (mode != O_RDONLY)
   5230   1.5    isaki 			ai.play.channels = ch;
   5231   1.5    isaki 		if (mode != O_WRONLY)
   5232   1.5    isaki 			ai.record.channels = ch;
   5233   1.5    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "channels=%d", ch);
   5234   1.5    isaki 		if (expected) {
   5235   1.5    isaki 			/* Expects to succeed */
   5236   1.5    isaki 			XP_SYS_EQ(0, r);
   5237   1.5    isaki 
   5238   1.5    isaki 			r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   5239   1.5    isaki 			XP_SYS_EQ(0, r);
   5240   1.5    isaki 			if (mode != O_RDONLY)
   5241   1.5    isaki 				XP_EQ(ch, ai.play.channels);
   5242   1.5    isaki 			if (mode != O_WRONLY)
   5243   1.5    isaki 				XP_EQ(ch, ai.record.channels);
   5244   1.5    isaki 		} else {
   5245   1.5    isaki 			/* Expects to fail */
   5246   1.5    isaki 			XP_SYS_NG(EINVAL, r);
   5247   1.5    isaki 		}
   5248   1.5    isaki 	}
   5249   1.5    isaki 
   5250   1.6    isaki 	/*
   5251   1.6    isaki 	 * The maximum number of supported channels depends the hardware.
   5252   1.6    isaki 	 */
   5253   1.6    isaki 	/* Get the number of channels that the hardware supports */
   5254   1.6    isaki 	r = IOCTL(fd, AUDIO_GETFORMAT, &hwinfo, "");
   5255   1.6    isaki 	REQUIRED_SYS_EQ(0, r);
   5256   1.6    isaki 
   5257   1.6    isaki 	if ((hwinfo.mode & AUMODE_PLAY)) {
   5258   1.6    isaki 		DPRINTF("  > hwinfo.play.channels = %d\n",
   5259   1.6    isaki 		    hwinfo.play.channels);
   5260   1.6    isaki 		for (ch = 3; ch <= hwinfo.play.channels; ch++) {
   5261   1.6    isaki 			AUDIO_INITINFO(&ai);
   5262   1.6    isaki 			ai.play.channels = ch;
   5263   1.6    isaki 			r = IOCTL(fd, AUDIO_SETINFO, &ai, "channels=%d", ch);
   5264   1.6    isaki 			XP_SYS_EQ(0, r);
   5265   1.6    isaki 
   5266   1.6    isaki 			r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   5267   1.6    isaki 			XP_SYS_EQ(0, r);
   5268   1.6    isaki 			XP_EQ(ch, ai.play.channels);
   5269   1.6    isaki 		}
   5270   1.6    isaki 
   5271   1.6    isaki 		AUDIO_INITINFO(&ai);
   5272   1.6    isaki 		ai.play.channels = ch;
   5273   1.6    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "channels=%d", ch);
   5274   1.6    isaki 		XP_SYS_NG(EINVAL, r);
   5275   1.6    isaki 	}
   5276   1.6    isaki 	if ((hwinfo.mode & AUMODE_RECORD)) {
   5277   1.6    isaki 		DPRINTF("  > hwinfo.record.channels = %d\n",
   5278   1.6    isaki 		    hwinfo.record.channels);
   5279   1.6    isaki 		for (ch = 3; ch <= hwinfo.record.channels; ch++) {
   5280   1.6    isaki 			AUDIO_INITINFO(&ai);
   5281   1.6    isaki 			ai.record.channels = ch;
   5282   1.6    isaki 			r = IOCTL(fd, AUDIO_SETINFO, &ai, "channels=%d", ch);
   5283   1.6    isaki 			XP_SYS_EQ(0, r);
   5284   1.6    isaki 
   5285   1.6    isaki 			r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   5286   1.6    isaki 			XP_SYS_EQ(0, r);
   5287   1.6    isaki 			XP_EQ(ch, ai.record.channels);
   5288   1.6    isaki 		}
   5289   1.6    isaki 
   5290   1.6    isaki 		AUDIO_INITINFO(&ai);
   5291   1.6    isaki 		ai.record.channels = ch;
   5292   1.6    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "channels=%d", ch);
   5293   1.6    isaki 		XP_SYS_NG(EINVAL, r);
   5294   1.6    isaki 	}
   5295   1.6    isaki 
   5296   1.5    isaki 	r = CLOSE(fd);
   5297   1.5    isaki 	XP_SYS_EQ(0, r);
   5298   1.5    isaki }
   5299   1.5    isaki 
   5300   1.5    isaki /*
   5301   1.5    isaki  * Check whether the sample rate can be set.
   5302   1.5    isaki  */
   5303   1.5    isaki DEF(AUDIO_SETINFO_sample_rate)
   5304   1.5    isaki {
   5305   1.5    isaki 	struct audio_info ai;
   5306   1.5    isaki 	int mode;
   5307   1.5    isaki 	int r;
   5308   1.5    isaki 	int fd;
   5309   1.5    isaki 	int i;
   5310   1.5    isaki 	struct {
   5311   1.5    isaki 		int freq;
   5312   1.5    isaki 		bool expected;
   5313   1.5    isaki 	} table[] = {
   5314   1.5    isaki 		{    999,	false },
   5315   1.5    isaki 		{   1000,	true },	/* lower limit */
   5316   1.5    isaki 		{  48000,	true },
   5317   1.5    isaki 		{ 192000,	true },	/* upper limit */
   5318   1.5    isaki 		{ 192001,	false },
   5319   1.5    isaki 	};
   5320   1.5    isaki 
   5321   1.5    isaki 	TEST("AUDIO_SETINFO_sample_rate");
   5322   1.5    isaki 	if (netbsd < 8) {
   5323   1.5    isaki 		/*
   5324   1.5    isaki 		 * On NetBSD7, the result depends the hardware and there is
   5325   1.5    isaki 		 * no way to know it.
   5326   1.5    isaki 		 */
   5327   1.5    isaki 		XP_SKIP("The test doesn't make sense on NetBSD7");
   5328   1.5    isaki 		return;
   5329   1.5    isaki 	}
   5330   1.5    isaki 
   5331   1.5    isaki 	mode = openable_mode();
   5332   1.5    isaki 	fd = OPEN(devaudio, mode);
   5333   1.5    isaki 	REQUIRED_SYS_OK(fd);
   5334   1.5    isaki 
   5335   1.5    isaki 	for (i = 0; i < (int)__arraycount(table); i++) {
   5336   1.5    isaki 		int freq = table[i].freq;
   5337   1.5    isaki 		bool expected = table[i].expected;
   5338   1.5    isaki 
   5339   1.5    isaki 		AUDIO_INITINFO(&ai);
   5340   1.5    isaki 		if (mode != O_RDONLY)
   5341   1.5    isaki 			ai.play.sample_rate = freq;
   5342   1.5    isaki 		if (mode != O_WRONLY)
   5343   1.5    isaki 			ai.record.sample_rate = freq;
   5344   1.5    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "sample_rate=%d", freq);
   5345   1.5    isaki 		if (expected) {
   5346   1.5    isaki 			/* Expects to succeed */
   5347   1.5    isaki 			XP_SYS_EQ(0, r);
   5348   1.5    isaki 
   5349   1.5    isaki 			r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   5350   1.5    isaki 			XP_SYS_EQ(0, r);
   5351   1.5    isaki 			if (mode != O_RDONLY)
   5352   1.5    isaki 				XP_EQ(freq, ai.play.sample_rate);
   5353   1.5    isaki 			if (mode != O_WRONLY)
   5354   1.5    isaki 				XP_EQ(freq, ai.record.sample_rate);
   5355   1.5    isaki 		} else {
   5356   1.5    isaki 			/* Expects to fail */
   5357   1.5    isaki 			XP_SYS_NG(EINVAL, r);
   5358   1.5    isaki 		}
   5359   1.5    isaki 	}
   5360   1.5    isaki 
   5361   1.5    isaki 	r = CLOSE(fd);
   5362   1.5    isaki 	XP_SYS_EQ(0, r);
   5363   1.5    isaki }
   5364   1.5    isaki 
   5365   1.5    isaki /*
   5366   1.5    isaki  * SETINFO(sample_rate = 0) should fail correctly.
   5367   1.5    isaki  */
   5368   1.5    isaki DEF(AUDIO_SETINFO_sample_rate_0)
   5369   1.5    isaki {
   5370   1.5    isaki 	struct audio_info ai;
   5371   1.5    isaki 	int mode;
   5372   1.5    isaki 	int r;
   5373   1.5    isaki 	int fd;
   5374   1.5    isaki 
   5375   1.5    isaki 	TEST("AUDIO_SETINFO_sample_rate_0");
   5376   1.5    isaki 	if (netbsd < 9) {
   5377   1.5    isaki 		/*
   5378   1.5    isaki 		 * On NetBSD7,8 this will block system call and you will not
   5379   1.5    isaki 		 * even be able to shutdown...
   5380   1.5    isaki 		 */
   5381  1.22   andvar 		XP_SKIP("This will cause an infinite loop in the kernel");
   5382   1.5    isaki 		return;
   5383   1.5    isaki 	}
   5384   1.5    isaki 
   5385   1.5    isaki 	mode = openable_mode();
   5386   1.5    isaki 	fd = OPEN(devaudio, mode);
   5387   1.5    isaki 	REQUIRED_SYS_OK(fd);
   5388   1.5    isaki 
   5389   1.5    isaki 	AUDIO_INITINFO(&ai);
   5390   1.5    isaki 	ai.play.sample_rate = 0;
   5391   1.5    isaki 	ai.record.sample_rate = 0;
   5392   1.5    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "sample_rate=0");
   5393   1.5    isaki 	/* Expects to fail */
   5394   1.5    isaki 	XP_SYS_NG(EINVAL, r);
   5395   1.5    isaki 
   5396   1.5    isaki 	r = CLOSE(fd);
   5397   1.5    isaki 	XP_SYS_EQ(0, r);
   5398   1.5    isaki }
   5399   1.5    isaki 
   5400   1.5    isaki /*
   5401   1.1    isaki  * Check whether the pause/unpause works.
   5402   1.1    isaki  */
   5403   1.1    isaki void
   5404   1.1    isaki test_AUDIO_SETINFO_pause(int openmode, int aimode, int param)
   5405   1.1    isaki {
   5406   1.1    isaki 	struct audio_info ai;
   5407   1.1    isaki 	int r;
   5408   1.1    isaki 	int fd;
   5409   1.1    isaki 
   5410   1.1    isaki 	/*
   5411   1.1    isaki 	 * aimode is bool value that indicates whether to change ai.mode.
   5412   1.1    isaki 	 * param is bool value that indicates whether to change encoding
   5413   1.1    isaki 	 * parameters of ai.{play,record}.*.
   5414   1.1    isaki 	 */
   5415   1.1    isaki 
   5416   1.1    isaki 	TEST("AUDIO_SETINFO_pause_%s_%d_%d",
   5417   1.1    isaki 	    openmode_str[openmode] + 2, aimode, param);
   5418   1.1    isaki 	if (mode2aumode(openmode) == 0) {
   5419   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   5420   1.1    isaki 		return;
   5421   1.1    isaki 	}
   5422   1.1    isaki 
   5423   1.1    isaki 	/* On half-duplex, O_RDWR is the same as O_WRONLY, so skip it */
   5424   1.1    isaki 	if (!hw_fulldup() && openmode == O_RDWR) {
   5425   1.1    isaki 		XP_SKIP("This is the same with O_WRONLY on half-duplex");
   5426   1.1    isaki 		return;
   5427   1.1    isaki 	}
   5428   1.1    isaki 
   5429   1.1    isaki 	fd = OPEN(devaudio, openmode);
   5430   1.1    isaki 	REQUIRED_SYS_OK(fd);
   5431   1.1    isaki 
   5432   1.1    isaki 	/* Set pause */
   5433   1.1    isaki 	AUDIO_INITINFO(&ai);
   5434   1.1    isaki 	ai.play.pause = 1;
   5435   1.1    isaki 	ai.record.pause = 1;
   5436   1.1    isaki 	if (aimode)
   5437   1.1    isaki 		ai.mode = mode2aumode(openmode) & ~AUMODE_PLAY_ALL;
   5438   1.1    isaki 	if (param) {
   5439   1.1    isaki 		ai.play.sample_rate = 11025;
   5440   1.1    isaki 		ai.record.sample_rate = 11025;
   5441   1.1    isaki 	}
   5442   1.1    isaki 
   5443   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   5444   1.1    isaki 	XP_SYS_EQ(0, r);
   5445   1.1    isaki 
   5446   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   5447   1.1    isaki 	XP_SYS_EQ(0, r);
   5448   1.1    isaki 	int expmode = (aimode)
   5449   1.1    isaki 	    ? (mode2aumode(openmode) & ~AUMODE_PLAY_ALL)
   5450   1.1    isaki 	    : mode2aumode(openmode);
   5451   1.1    isaki 	XP_EQ(expmode, ai.mode);
   5452   1.7    isaki 	XP_EQ(1, ai.play.pause);
   5453   1.7    isaki 	XP_EQ(param ? 11025 : 8000, ai.play.sample_rate);
   5454   1.7    isaki 	XP_EQ(1, ai.record.pause);
   5455   1.7    isaki 	XP_EQ(param ? 11025 : 8000, ai.record.sample_rate);
   5456   1.1    isaki 
   5457   1.1    isaki 	/* Set unpause (?) */
   5458   1.1    isaki 	AUDIO_INITINFO(&ai);
   5459   1.1    isaki 	ai.play.pause = 0;
   5460   1.1    isaki 	ai.record.pause = 0;
   5461   1.1    isaki 	if (aimode)
   5462   1.1    isaki 		ai.mode = mode2aumode(openmode);
   5463   1.1    isaki 	if (param) {
   5464   1.1    isaki 		ai.play.sample_rate = 16000;
   5465   1.1    isaki 		ai.record.sample_rate = 16000;
   5466   1.1    isaki 	}
   5467   1.1    isaki 
   5468   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   5469   1.1    isaki 	XP_SYS_EQ(0, r);
   5470   1.1    isaki 
   5471   1.1    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   5472   1.1    isaki 	XP_SYS_EQ(0, r);
   5473   1.1    isaki 	XP_EQ(mode2aumode(openmode), ai.mode);
   5474   1.1    isaki 	XP_EQ(0, ai.play.pause);
   5475   1.1    isaki 	XP_EQ(0, ai.record.pause);
   5476   1.1    isaki 	if (openmode != O_RDONLY)
   5477   1.1    isaki 		XP_EQ(param ? 16000 : 8000, ai.play.sample_rate);
   5478   1.1    isaki 	if (openmode != O_WRONLY)
   5479   1.1    isaki 		XP_EQ(param ? 16000 : 8000, ai.record.sample_rate);
   5480   1.1    isaki 
   5481   1.1    isaki 	r = CLOSE(fd);
   5482   1.1    isaki 	XP_SYS_EQ(0, r);
   5483   1.1    isaki }
   5484   1.1    isaki DEF(AUDIO_SETINFO_pause_RDONLY_0) { test_AUDIO_SETINFO_pause(O_RDONLY, 0, 0); }
   5485   1.1    isaki DEF(AUDIO_SETINFO_pause_RDONLY_1) { test_AUDIO_SETINFO_pause(O_RDONLY, 0, 1); }
   5486  1.21   andvar /* On RDONLY, ai.mode is not changeable
   5487   1.1    isaki  *  AUDIO_SETINFO_pause_RDONLY_2) { test_AUDIO_SETINFO_pause(O_RDONLY, 1, 0); }
   5488   1.1    isaki  *  AUDIO_SETINFO_pause_RDONLY_3) { test_AUDIO_SETINFO_pause(O_RDONLY, 1, 1); }
   5489   1.1    isaki  */
   5490   1.1    isaki DEF(AUDIO_SETINFO_pause_WRONLY_0) { test_AUDIO_SETINFO_pause(O_WRONLY, 0, 0); }
   5491   1.1    isaki DEF(AUDIO_SETINFO_pause_WRONLY_1) { test_AUDIO_SETINFO_pause(O_WRONLY, 0, 1); }
   5492   1.1    isaki DEF(AUDIO_SETINFO_pause_WRONLY_2) { test_AUDIO_SETINFO_pause(O_WRONLY, 1, 0); }
   5493   1.1    isaki DEF(AUDIO_SETINFO_pause_WRONLY_3) { test_AUDIO_SETINFO_pause(O_WRONLY, 1, 1); }
   5494   1.1    isaki DEF(AUDIO_SETINFO_pause_RDWR_0)   { test_AUDIO_SETINFO_pause(O_RDWR, 0, 0); }
   5495   1.1    isaki DEF(AUDIO_SETINFO_pause_RDWR_1)   { test_AUDIO_SETINFO_pause(O_RDWR, 0, 1); }
   5496   1.1    isaki DEF(AUDIO_SETINFO_pause_RDWR_2)   { test_AUDIO_SETINFO_pause(O_RDWR, 1, 0); }
   5497   1.1    isaki DEF(AUDIO_SETINFO_pause_RDWR_3)   { test_AUDIO_SETINFO_pause(O_RDWR, 1, 1); }
   5498   1.1    isaki 
   5499   1.1    isaki /*
   5500   1.1    isaki  * Check whether gain can be obtained/set.
   5501   1.1    isaki  * And the gain should work with rich mixer.
   5502   1.1    isaki  * PR kern/52781
   5503   1.1    isaki  */
   5504   1.1    isaki DEF(AUDIO_SETINFO_gain)
   5505   1.1    isaki {
   5506   1.1    isaki 	struct audio_info ai;
   5507   1.1    isaki 	mixer_ctrl_t m;
   5508   1.1    isaki 	int index;
   5509   1.1    isaki 	int master;
   5510   1.1    isaki 	int master_backup;
   5511   1.1    isaki 	int gain;
   5512   1.1    isaki 	int fd;
   5513   1.1    isaki 	int mixerfd;
   5514   1.1    isaki 	int r;
   5515   1.1    isaki 
   5516   1.1    isaki 	TEST("AUDIO_SETINFO_gain");
   5517   1.1    isaki 
   5518   1.1    isaki 	/* Open /dev/mixer */
   5519   1.1    isaki 	mixerfd = OPEN(devmixer, O_RDWR);
   5520   1.1    isaki 	REQUIRED_SYS_OK(mixerfd);
   5521   1.1    isaki 	index = mixer_get_outputs_master(mixerfd);
   5522   1.1    isaki 	if (index == -1) {
   5523   1.1    isaki 		XP_SKIP("Hardware has no outputs.master");
   5524   1.1    isaki 		CLOSE(mixerfd);
   5525   1.1    isaki 		return;
   5526   1.1    isaki 	}
   5527   1.1    isaki 
   5528   1.1    isaki 	/*
   5529   1.1    isaki 	 * Get current outputs.master.
   5530   1.1    isaki 	 * auich(4) requires class type (m.type) and number of channels
   5531   1.1    isaki 	 * (un.value.num_channels) in addition to the index (m.dev)...
   5532   1.1    isaki 	 * What is the index...?
   5533   1.1    isaki 	 */
   5534   1.1    isaki 	memset(&m, 0, sizeof(m));
   5535   1.1    isaki 	m.dev = index;
   5536   1.1    isaki 	m.type = AUDIO_MIXER_VALUE;
   5537   1.1    isaki 	m.un.value.num_channels = 1; /* dummy */
   5538   1.1    isaki 	r = IOCTL(mixerfd, AUDIO_MIXER_READ, &m, "m.dev=%d", m.dev);
   5539   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   5540   1.1    isaki 	master = m.un.value.level[0];
   5541   1.1    isaki 	DPRINTF("  > outputs.master = %d\n", master);
   5542   1.1    isaki 	master_backup = master;
   5543   1.1    isaki 
   5544   1.1    isaki 	/* Open /dev/audio */
   5545   1.1    isaki 	fd = OPEN(devaudio, O_WRONLY);
   5546   1.1    isaki 	REQUIRED_SYS_OK(fd);
   5547   1.1    isaki 
   5548   1.1    isaki 	/* Check ai.play.gain */
   5549   1.1    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &ai, "");
   5550   1.1    isaki 	XP_SYS_EQ(0, r);
   5551   1.1    isaki 	XP_EQ(master, ai.play.gain);
   5552   1.1    isaki 
   5553   1.1    isaki 	/* Change it some different value */
   5554   1.1    isaki 	AUDIO_INITINFO(&ai);
   5555   1.1    isaki 	if (master == 0)
   5556   1.1    isaki 		gain = 255;
   5557   1.1    isaki 	else
   5558   1.1    isaki 		gain = 0;
   5559   1.1    isaki 	ai.play.gain = gain;
   5560   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "play.gain=%d", ai.play.gain);
   5561   1.1    isaki 	XP_SYS_EQ(0, r);
   5562   1.1    isaki 
   5563   1.1    isaki 	/* Check gain has changed */
   5564   1.1    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &ai, "play.gain");
   5565   1.1    isaki 	XP_SYS_EQ(0, r);
   5566   1.1    isaki 	XP_NE(master, ai.play.gain);
   5567   1.1    isaki 
   5568   1.1    isaki 	/* Check whether outputs.master work with gain */
   5569   1.1    isaki 	r = IOCTL(mixerfd, AUDIO_MIXER_READ, &m, "");
   5570   1.1    isaki 	XP_SYS_EQ(0, r);
   5571   1.1    isaki 	XP_EQ(ai.play.gain, m.un.value.level[0]);
   5572   1.1    isaki 
   5573   1.1    isaki 	/* Restore outputs.master */
   5574   1.1    isaki 	AUDIO_INITINFO(&ai);
   5575   1.1    isaki 	ai.play.gain = master_backup;
   5576   1.1    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "play.gain=%d", ai.play.gain);
   5577   1.1    isaki 	XP_SYS_EQ(0, r);
   5578   1.1    isaki 
   5579   1.1    isaki 	r = CLOSE(fd);
   5580   1.1    isaki 	XP_SYS_EQ(0, r);
   5581   1.1    isaki 	r = CLOSE(mixerfd);
   5582   1.1    isaki 	XP_SYS_EQ(0, r);
   5583   1.1    isaki }
   5584   1.1    isaki 
   5585  1.14    isaki /*
   5586  1.14    isaki  * Look if there are any (non-zero) gain values that can be changed.
   5587  1.14    isaki  * If any gain can be set, it is set to gain[0].
   5588  1.14    isaki  * If another gain can be set, it is set to gain[1], otherwise gain[1] = -1.
   5589  1.14    isaki  * This is for AUDIO_SETINFO_gain_balance.
   5590  1.14    isaki  */
   5591  1.14    isaki static void
   5592  1.14    isaki get_changeable_gain(int fd, int *gain, const char *dir, int offset)
   5593  1.14    isaki {
   5594  1.14    isaki 	struct audio_info ai;
   5595  1.14    isaki 	int *ai_gain;
   5596  1.14    isaki 	int hi;
   5597  1.14    isaki 	int lo;
   5598  1.14    isaki 	int r;
   5599  1.14    isaki 
   5600  1.14    isaki 	/* A hack to handle ai.{play,record}.gain in the same code.. */
   5601  1.14    isaki 	ai_gain = (int *)(((char *)&ai) + offset);
   5602  1.14    isaki 
   5603  1.14    isaki 	/* Try to set the maximum gain */
   5604  1.14    isaki 	AUDIO_INITINFO(&ai);
   5605  1.14    isaki 	*ai_gain = AUDIO_MAX_GAIN;
   5606  1.14    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "%s.gain=%d", dir, *ai_gain);
   5607  1.14    isaki 	XP_SYS_EQ(0, r);
   5608  1.14    isaki 	/* Get again.  The value you set is not always used as is. */
   5609  1.14    isaki 	AUDIO_INITINFO(&ai);
   5610  1.14    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &ai, "&ai");
   5611  1.14    isaki 	XP_SYS_EQ(0, r);
   5612  1.14    isaki 	hi = *ai_gain;
   5613  1.14    isaki 
   5614  1.14    isaki 	/* Look for next configurable value. */
   5615  1.14    isaki 	for (lo = hi - 1; lo >= 0; lo--) {
   5616  1.14    isaki 		AUDIO_INITINFO(&ai);
   5617  1.14    isaki 		*ai_gain = lo;
   5618  1.14    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "%s.gain=%d", dir, *ai_gain);
   5619  1.14    isaki 		XP_SYS_EQ(0, r);
   5620  1.14    isaki 		/* Get again */
   5621  1.14    isaki 		r = IOCTL(fd, AUDIO_GETINFO, &ai, "&ai");
   5622  1.14    isaki 		XP_SYS_EQ(0, r);
   5623  1.14    isaki 		if (*ai_gain != hi) {
   5624  1.14    isaki 			lo = *ai_gain;
   5625  1.14    isaki 			break;
   5626  1.14    isaki 		}
   5627  1.14    isaki 	}
   5628  1.14    isaki 
   5629  1.14    isaki 	/* Now gain is lo(=gain[0]). */
   5630  1.14    isaki 
   5631  1.14    isaki 	/*
   5632  1.14    isaki 	 * hi  lo
   5633  1.14    isaki 	 * --- ---
   5634  1.14    isaki 	 *  <0  <0          : not available.
   5635  1.14    isaki 	 * >=0  <0          : available but not changeable.
   5636  1.14    isaki 	 * >=0 >=0 (hi!=lo) : available and changeable.
   5637  1.14    isaki 	 */
   5638  1.14    isaki 	if (hi < 0) {
   5639  1.14    isaki 		gain[0] = -1;
   5640  1.14    isaki 		gain[1] = -1;
   5641  1.14    isaki 		DPRINTF("  > %s.gain cannot be set\n", dir);
   5642  1.14    isaki 	} else if (lo < 0) {
   5643  1.14    isaki 		gain[0] = hi;
   5644  1.14    isaki 		gain[1] = -1;
   5645  1.14    isaki 		DPRINTF("  > %s.gain can only be set %d\n", dir, gain[0]);
   5646  1.14    isaki 	} else {
   5647  1.14    isaki 		gain[0] = lo;
   5648  1.14    isaki 		gain[1] = hi;
   5649  1.14    isaki 		DPRINTF("  > %s.gain can be set %d, %d\n",
   5650  1.14    isaki 		    dir, gain[0], gain[1]);
   5651  1.14    isaki 	}
   5652  1.14    isaki }
   5653  1.14    isaki 
   5654  1.14    isaki /*
   5655  1.14    isaki  * Look if there are any balance values that can be changed.
   5656  1.14    isaki  * If any balance value can be set, it is set to balance[0].
   5657  1.14    isaki  * If another balance value can be set, it is set to balance[1],
   5658  1.14    isaki  * otherwise balance[1] = -1.
   5659  1.14    isaki  * This is for AUDIO_SETINFO_gain_balance.
   5660  1.14    isaki  */
   5661  1.14    isaki static void
   5662  1.14    isaki get_changeable_balance(int fd, int *balance, const char *dir, int offset)
   5663  1.14    isaki {
   5664  1.14    isaki 	struct audio_info ai;
   5665  1.14    isaki 	u_char *ai_balance;
   5666  1.14    isaki 	u_char left;
   5667  1.14    isaki 	u_char right;
   5668  1.14    isaki 	int r;
   5669  1.14    isaki 
   5670  1.14    isaki 	/* A hack to handle ai.{play,record}.balance in the same code.. */
   5671  1.14    isaki 	ai_balance = ((u_char *)&ai) + offset;
   5672  1.14    isaki 
   5673  1.14    isaki 	/* Look for the right side configurable value. */
   5674  1.14    isaki 	AUDIO_INITINFO(&ai);
   5675  1.14    isaki 	*ai_balance = AUDIO_RIGHT_BALANCE;
   5676  1.14    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "%s.balance=%d", dir, *ai_balance);
   5677  1.14    isaki 	XP_SYS_EQ(0, r);
   5678  1.14    isaki 	/* Get again.  The value you set is not always used as is. */
   5679  1.14    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &ai, "&ai");
   5680  1.14    isaki 	XP_SYS_EQ(0, r);
   5681  1.14    isaki 	right = *ai_balance;
   5682  1.14    isaki 
   5683  1.14    isaki 	/* Look for the left side configurable value. */
   5684  1.14    isaki 	AUDIO_INITINFO(&ai);
   5685  1.14    isaki 	*ai_balance = AUDIO_LEFT_BALANCE;
   5686  1.14    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "%s.balance=%d", dir, *ai_balance);
   5687  1.14    isaki 	XP_SYS_EQ(0, r);
   5688  1.14    isaki 	/* Get again */
   5689  1.14    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &ai, "&ai");
   5690  1.14    isaki 	XP_SYS_EQ(0, r);
   5691  1.14    isaki 	left = *ai_balance;
   5692  1.14    isaki 
   5693  1.14    isaki 	/* Now balance is the left(=balance[0]). */
   5694  1.14    isaki 
   5695  1.14    isaki 	if (left == right) {
   5696  1.14    isaki 		/* The driver has no balance feature. */
   5697  1.14    isaki 		balance[0] = left;
   5698  1.14    isaki 		balance[1] = -1;
   5699  1.14    isaki 		DPRINTF("  > %s.balance can only be set %d\n",
   5700  1.14    isaki 		    dir, balance[0]);
   5701  1.14    isaki 	} else {
   5702  1.14    isaki 		balance[0] = left;
   5703  1.14    isaki 		balance[1] = right;
   5704  1.14    isaki 		DPRINTF("  > %s.balance can be set %d, %d\n",
   5705  1.14    isaki 		    dir, balance[0], balance[1]);
   5706  1.14    isaki 	}
   5707  1.14    isaki }
   5708  1.14    isaki 
   5709  1.14    isaki /*
   5710  1.14    isaki  * Check whether gain and balance can be set at the same time.
   5711  1.14    isaki  * PR kern/56308
   5712  1.14    isaki  */
   5713  1.14    isaki DEF(AUDIO_SETINFO_gain_balance)
   5714  1.14    isaki {
   5715  1.14    isaki 	struct audio_info oai;
   5716  1.14    isaki 	struct audio_info ai;
   5717  1.14    isaki 	int i;
   5718  1.14    isaki 	int mode;
   5719  1.14    isaki 	int fd;
   5720  1.14    isaki 	int r;
   5721  1.14    isaki 	int pgain[2];
   5722  1.14    isaki 	int pbalance[2];
   5723  1.14    isaki 	int rgain[2];
   5724  1.14    isaki 	int rbalance[2];
   5725  1.14    isaki 	bool ptest;
   5726  1.14    isaki 	bool rtest;
   5727  1.14    isaki 
   5728  1.14    isaki 	TEST("AUDIO_SETINFO_gain_balance");
   5729  1.14    isaki 
   5730  1.14    isaki 	mode = openable_mode();
   5731  1.14    isaki 	fd = OPEN(devaudio, mode);
   5732  1.14    isaki 	REQUIRED_SYS_OK(fd);
   5733  1.14    isaki 
   5734  1.14    isaki 	/* Backup current gain and balance */
   5735  1.14    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &oai, "&oai");
   5736  1.14    isaki 	XP_SYS_EQ(0, r);
   5737  1.14    isaki 
   5738  1.14    isaki 	if (debug) {
   5739  1.14    isaki 		printf("  > old play.gain      = %d\n", oai.play.gain);
   5740  1.14    isaki 		printf("  > old play.balance   = %d\n", oai.play.balance);
   5741  1.14    isaki 		printf("  > old record.gain    = %d\n", oai.record.gain);
   5742  1.14    isaki 		printf("  > old record.balance = %d\n", oai.record.balance);
   5743  1.14    isaki 	}
   5744  1.14    isaki 
   5745  1.14    isaki 	for (i = 0; i < 2; i++) {
   5746  1.14    isaki 		pgain[i]    = -1;
   5747  1.14    isaki 		pbalance[i] = -1;
   5748  1.14    isaki 		rgain[i]    = -1;
   5749  1.14    isaki 		rbalance[i] = -1;
   5750  1.14    isaki 	}
   5751  1.14    isaki 
   5752  1.14    isaki 	/*
   5753  1.14    isaki 	 * First, check each one separately can be changed.
   5754  1.14    isaki 	 *
   5755  1.14    isaki 	 * The simplest two different gain values are zero and non-zero.
   5756  1.14    isaki 	 * But some device drivers seem to process balance differently
   5757  1.14    isaki 	 * when the gain is high enough and when the gain is zero or near.
   5758  1.14    isaki 	 * So I needed to select two different "non-zero (and high if
   5759  1.14    isaki 	 * possible)" gains.
   5760  1.14    isaki 	 */
   5761  1.14    isaki 	if (hw_canplay()) {
   5762  1.14    isaki 		get_changeable_gain(fd, pgain, "play",
   5763  1.14    isaki 		    offsetof(struct audio_info, play.gain));
   5764  1.14    isaki 		get_changeable_balance(fd, pbalance, "play",
   5765  1.14    isaki 		    offsetof(struct audio_info, play.balance));
   5766  1.14    isaki 	}
   5767  1.14    isaki 	if (hw_canrec()) {
   5768  1.14    isaki 		get_changeable_gain(fd, rgain, "record",
   5769  1.14    isaki 		    offsetof(struct audio_info, record.gain));
   5770  1.14    isaki 		get_changeable_balance(fd, rbalance, "record",
   5771  1.14    isaki 		    offsetof(struct audio_info, record.balance));
   5772  1.14    isaki 	}
   5773  1.14    isaki 
   5774  1.14    isaki 	/*
   5775  1.14    isaki 	 * [0] [1]
   5776  1.14    isaki 	 * --- ---
   5777  1.14    isaki 	 *  -1  *  : not available.
   5778  1.14    isaki 	 * >=0  -1 : available but not changeable.
   5779  1.14    isaki 	 * >=0 >=0 : available and changeable.  It can be tested.
   5780  1.14    isaki 	 */
   5781  1.14    isaki 	ptest = (pgain[0]    >= 0 && pgain[1]    >= 0 &&
   5782  1.14    isaki 	         pbalance[0] >= 0 && pbalance[1] >= 0);
   5783  1.14    isaki 	rtest = (rgain[0]    >= 0 && rgain[1]    >= 0 &&
   5784  1.14    isaki 	         rbalance[0] >= 0 && rbalance[1] >= 0);
   5785  1.14    isaki 
   5786  1.14    isaki 	if (ptest == false && rtest == false) {
   5787  1.14    isaki 		XP_SKIP(
   5788  1.14    isaki 		    "The test requires changeable gain and changeable balance");
   5789  1.14    isaki 
   5790  1.14    isaki 		/* Restore as possible */
   5791  1.14    isaki 		AUDIO_INITINFO(&ai);
   5792  1.14    isaki 		ai.play.gain      = oai.play.gain;
   5793  1.14    isaki 		ai.play.balance   = oai.play.balance;
   5794  1.14    isaki 		ai.record.gain    = oai.record.gain;
   5795  1.14    isaki 		ai.record.balance = oai.record.balance;
   5796  1.14    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "restore all");
   5797  1.14    isaki 		XP_SYS_EQ(0, r);
   5798  1.14    isaki 
   5799  1.14    isaki 		r = CLOSE(fd);
   5800  1.14    isaki 		XP_SYS_EQ(0, r);
   5801  1.14    isaki 		return;
   5802  1.14    isaki 	}
   5803  1.14    isaki 
   5804  1.14    isaki 	/*
   5805  1.14    isaki 	 * If both play.gain and play.balance are changeable,
   5806  1.14    isaki 	 * it should be able to set both at the same time.
   5807  1.14    isaki 	 */
   5808  1.14    isaki 	if (ptest) {
   5809  1.14    isaki 		AUDIO_INITINFO(&ai);
   5810  1.14    isaki 		ai.play.gain    = pgain[1];
   5811  1.14    isaki 		ai.play.balance = pbalance[1];
   5812  1.14    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "play.gain=%d/balance=%d",
   5813  1.14    isaki 		    ai.play.gain, ai.play.balance);
   5814  1.14    isaki 		XP_SYS_EQ(0, r);
   5815  1.14    isaki 
   5816  1.14    isaki 		AUDIO_INITINFO(&ai);
   5817  1.14    isaki 		r = IOCTL(fd, AUDIO_GETINFO, &ai, "&ai");
   5818  1.14    isaki 		XP_SYS_EQ(0, r);
   5819  1.14    isaki 
   5820  1.14    isaki 		DPRINTF("  > setting play.gain=%d/balance=%d: "
   5821  1.14    isaki 		    "result gain=%d/balance=%d\n",
   5822  1.14    isaki 		    pgain[1], pbalance[1], ai.play.gain, ai.play.balance);
   5823  1.14    isaki 		XP_EQ(ai.play.gain,    pgain[1]);
   5824  1.14    isaki 		XP_EQ(ai.play.balance, pbalance[1]);
   5825  1.14    isaki 	}
   5826  1.14    isaki 	/*
   5827  1.14    isaki 	 * If both record.gain and record.balance are changeable,
   5828  1.14    isaki 	 * it should be able to set both at the same time.
   5829  1.14    isaki 	 */
   5830  1.14    isaki 	if (rtest) {
   5831  1.14    isaki 		AUDIO_INITINFO(&ai);
   5832  1.14    isaki 		ai.record.gain    = rgain[1];
   5833  1.14    isaki 		ai.record.balance = rbalance[1];
   5834  1.14    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "record.gain=%d/balance=%d",
   5835  1.14    isaki 		    ai.record.gain, ai.record.balance);
   5836  1.14    isaki 		XP_SYS_EQ(0, r);
   5837  1.14    isaki 
   5838  1.14    isaki 		AUDIO_INITINFO(&ai);
   5839  1.14    isaki 		r = IOCTL(fd, AUDIO_GETINFO, &ai, "&ai");
   5840  1.14    isaki 		XP_SYS_EQ(0, r);
   5841  1.14    isaki 
   5842  1.14    isaki 		DPRINTF("  > setting record.gain=%d/balance=%d: "
   5843  1.14    isaki 		    "result gain=%d/balance=%d\n",
   5844  1.14    isaki 		    rgain[1], rbalance[1], ai.record.gain, ai.record.balance);
   5845  1.14    isaki 		XP_EQ(ai.record.gain,    rgain[1]);
   5846  1.14    isaki 		XP_EQ(ai.record.balance, rbalance[1]);
   5847  1.14    isaki 	}
   5848  1.14    isaki 
   5849  1.14    isaki 	/*
   5850  1.14    isaki 	 * Restore all values as possible at the same time.
   5851  1.14    isaki 	 * This restore is also a test.
   5852  1.14    isaki 	 */
   5853  1.14    isaki 	AUDIO_INITINFO(&ai);
   5854  1.14    isaki 	ai.play.gain      = oai.play.gain;
   5855  1.14    isaki 	ai.play.balance   = oai.play.balance;
   5856  1.14    isaki 	ai.record.gain    = oai.record.gain;
   5857  1.14    isaki 	ai.record.balance = oai.record.balance;
   5858  1.14    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "restore all");
   5859  1.14    isaki 	XP_SYS_EQ(0, r);
   5860  1.14    isaki 
   5861  1.14    isaki 	AUDIO_INITINFO(&ai);
   5862  1.14    isaki 	r = IOCTL(fd, AUDIO_GETINFO, &ai, "&ai");
   5863  1.14    isaki 	XP_SYS_EQ(0, r);
   5864  1.14    isaki 	XP_EQ(oai.play.gain,      ai.play.gain);
   5865  1.14    isaki 	XP_EQ(oai.play.balance,   ai.play.balance);
   5866  1.14    isaki 	XP_EQ(oai.record.gain,    ai.record.gain);
   5867  1.14    isaki 	XP_EQ(oai.record.balance, ai.record.balance);
   5868  1.14    isaki 
   5869  1.14    isaki 	r = CLOSE(fd);
   5870  1.14    isaki 	XP_SYS_EQ(0, r);
   5871  1.14    isaki }
   5872  1.14    isaki 
   5873   1.1    isaki #define NENC	(AUDIO_ENCODING_AC3 + 1)
   5874   1.1    isaki #define NPREC	(5)
   5875   1.1    isaki /*
   5876   1.1    isaki  * Make table of encoding+precision supported by this device.
   5877   1.1    isaki  * Return last used index .
   5878   1.1    isaki  * This function is called from test_AUDIO_GETENC_*()
   5879   1.1    isaki  */
   5880   1.1    isaki int
   5881   1.1    isaki getenc_make_table(int fd, int expected[][5])
   5882   1.1    isaki {
   5883   1.1    isaki 	audio_encoding_t ae;
   5884   1.1    isaki 	int idx;
   5885   1.1    isaki 	int p;
   5886   1.1    isaki 	int r;
   5887   1.1    isaki 
   5888   1.1    isaki 	/*
   5889   1.1    isaki 	 * expected[][] is two dimensional table.
   5890   1.1    isaki 	 * encoding \ precision| 4  8  16  24  32
   5891   1.1    isaki 	 * --------------------+-----------------
   5892   1.1    isaki 	 * AUDIO_ENCODING_NONE |
   5893   1.1    isaki 	 * AUDIO_ENCODING_ULAW |
   5894   1.1    isaki 	 *  :
   5895   1.1    isaki 	 *
   5896   1.1    isaki 	 * Each cell has expected behavior.
   5897   1.1    isaki 	 *  0: the hardware doesn't support this encoding/precision.
   5898   1.1    isaki 	 *  1: the hardware supports this encoding/precision.
   5899   1.1    isaki 	 *  2: the hardware doesn't support this encoding/precision but
   5900   1.1    isaki 	 *     audio layer will respond as supported for compatibility.
   5901   1.1    isaki 	 */
   5902   1.1    isaki 	for (idx = 0; ; idx++) {
   5903   1.1    isaki 		memset(&ae, 0, sizeof(ae));
   5904   1.1    isaki 		ae.index = idx;
   5905   1.1    isaki 		r = IOCTL(fd, AUDIO_GETENC, &ae, "index=%d", idx);
   5906   1.1    isaki 		if (r != 0) {
   5907   1.1    isaki 			XP_SYS_NG(EINVAL, r);
   5908   1.1    isaki 			break;
   5909   1.1    isaki 		}
   5910   1.1    isaki 
   5911   1.1    isaki 		XP_EQ(idx, ae.index);
   5912   1.1    isaki 		if (0 <= ae.encoding && ae.encoding <= AUDIO_ENCODING_AC3) {
   5913   1.1    isaki 			XP_EQ_STR(encoding_names[ae.encoding], ae.name);
   5914   1.1    isaki 		} else {
   5915   1.1    isaki 			XP_FAIL("ae.encoding %d", ae.encoding);
   5916   1.1    isaki 		}
   5917   1.1    isaki 
   5918   1.1    isaki 		if (ae.precision != 4 &&
   5919   1.1    isaki 		    ae.precision != 8 &&
   5920   1.1    isaki 		    ae.precision != 16 &&
   5921   1.1    isaki 		    ae.precision != 24 &&
   5922   1.1    isaki 		    ae.precision != 32)
   5923   1.1    isaki 		{
   5924   1.1    isaki 			XP_FAIL("ae.precision %d", ae.precision);
   5925   1.1    isaki 		}
   5926   1.1    isaki 		/* Other bits should not be set */
   5927   1.1    isaki 		XP_EQ(0, (ae.flags & ~AUDIO_ENCODINGFLAG_EMULATED));
   5928   1.1    isaki 
   5929   1.1    isaki 		expected[ae.encoding][ae.precision / 8] = 1;
   5930   1.1    isaki 		DPRINTF("  > encoding=%s precision=%d\n",
   5931   1.1    isaki 		    encoding_names[ae.encoding], ae.precision);
   5932   1.1    isaki 	}
   5933   1.1    isaki 
   5934   1.1    isaki 	/*
   5935   1.1    isaki 	 * Backward compatibility bandaid.
   5936   1.1    isaki 	 *
   5937   1.1    isaki 	 * - Some encoding/precision pairs are obviously inconsistent
   5938   1.1    isaki 	 *   (e.g., encoding=AUDIO_ENCODING_PCM8, precision=16) but
   5939   1.1    isaki 	 *   it's due to historical reasons.
   5940   1.1    isaki 	 * - It's incomplete for NetBSD7 and NetBSD8.  I don't really
   5941  1.17   andvar 	 *   understand their rule...  This is just memo, not specification.
   5942   1.1    isaki 	 */
   5943   1.1    isaki #define SET(x) do {	\
   5944   1.1    isaki 	if ((x) == 0)	\
   5945   1.1    isaki 		x = 2;	\
   5946   1.1    isaki  } while (0)
   5947   1.1    isaki #define p4 (0)
   5948   1.1    isaki #define p8 (1)
   5949   1.1    isaki #define p16 (2)
   5950   1.1    isaki #define p24 (3)
   5951   1.1    isaki #define p32 (4)
   5952   1.1    isaki 
   5953   1.1    isaki 	if (expected[AUDIO_ENCODING_SLINEAR][p8]) {
   5954   1.1    isaki 		SET(expected[AUDIO_ENCODING_SLINEAR_LE][p8]);
   5955   1.1    isaki 		SET(expected[AUDIO_ENCODING_SLINEAR_BE][p8]);
   5956   1.1    isaki 	}
   5957   1.1    isaki 	if (expected[AUDIO_ENCODING_ULINEAR][p8]) {
   5958   1.1    isaki 		SET(expected[AUDIO_ENCODING_ULINEAR_LE][p8]);
   5959   1.1    isaki 		SET(expected[AUDIO_ENCODING_ULINEAR_BE][p8]);
   5960   1.1    isaki 		SET(expected[AUDIO_ENCODING_PCM8][p8]);
   5961   1.1    isaki 		SET(expected[AUDIO_ENCODING_PCM16][p8]);
   5962   1.1    isaki 	}
   5963   1.1    isaki 	for (p = p16; p <= p32; p++) {
   5964   1.1    isaki #if !defined(AUDIO_SUPPORT_LINEAR24)
   5965   1.1    isaki 		if (p == p24)
   5966   1.1    isaki 			continue;
   5967   1.1    isaki #endif
   5968   1.1    isaki 		if (expected[AUDIO_ENCODING_SLINEAR_NE][p]) {
   5969   1.1    isaki 			SET(expected[AUDIO_ENCODING_SLINEAR][p]);
   5970   1.1    isaki 			SET(expected[AUDIO_ENCODING_PCM16][p]);
   5971   1.1    isaki 		}
   5972   1.1    isaki 		if (expected[AUDIO_ENCODING_ULINEAR_NE][p]) {
   5973   1.1    isaki 			SET(expected[AUDIO_ENCODING_ULINEAR][p]);
   5974   1.1    isaki 		}
   5975   1.1    isaki 	}
   5976   1.1    isaki 
   5977   1.1    isaki 	if (netbsd < 9) {
   5978   1.1    isaki 		if (expected[AUDIO_ENCODING_SLINEAR_LE][p16] ||
   5979   1.1    isaki 		    expected[AUDIO_ENCODING_SLINEAR_BE][p16] ||
   5980   1.1    isaki 		    expected[AUDIO_ENCODING_ULINEAR_LE][p16] ||
   5981   1.1    isaki 		    expected[AUDIO_ENCODING_ULINEAR_BE][p16])
   5982   1.1    isaki 		{
   5983   1.1    isaki 			SET(expected[AUDIO_ENCODING_PCM8][p8]);
   5984   1.1    isaki 			SET(expected[AUDIO_ENCODING_PCM16][p8]);
   5985   1.1    isaki 			SET(expected[AUDIO_ENCODING_SLINEAR_LE][p8]);
   5986   1.1    isaki 			SET(expected[AUDIO_ENCODING_SLINEAR_BE][p8]);
   5987   1.1    isaki 			SET(expected[AUDIO_ENCODING_ULINEAR_LE][p8]);
   5988   1.1    isaki 			SET(expected[AUDIO_ENCODING_ULINEAR_BE][p8]);
   5989   1.1    isaki 			SET(expected[AUDIO_ENCODING_SLINEAR][p8]);
   5990   1.1    isaki 			SET(expected[AUDIO_ENCODING_ULINEAR][p8]);
   5991   1.1    isaki 		}
   5992   1.1    isaki 	}
   5993   1.1    isaki 
   5994   1.1    isaki 	/* Return last used index */
   5995   1.1    isaki 	return idx;
   5996   1.1    isaki #undef SET
   5997   1.1    isaki #undef p4
   5998   1.1    isaki #undef p8
   5999   1.1    isaki #undef p16
   6000   1.1    isaki #undef p24
   6001   1.1    isaki #undef p32
   6002   1.1    isaki }
   6003   1.1    isaki 
   6004   1.1    isaki /*
   6005   1.1    isaki  * This function is called from test_AUDIO_GETENC below.
   6006   1.1    isaki  */
   6007   1.1    isaki void
   6008   1.1    isaki xp_getenc(int expected[][5], int enc, int j, int r, struct audio_prinfo *pr)
   6009   1.1    isaki {
   6010   1.1    isaki 	int prec = (j == 0) ? 4 : j * 8;
   6011   1.1    isaki 
   6012   1.1    isaki 	if (expected[enc][j]) {
   6013   1.1    isaki 		/* expect to succeed */
   6014   1.1    isaki 		XP_SYS_EQ(0, r);
   6015   1.1    isaki 
   6016   1.1    isaki 		XP_EQ(enc, pr->encoding);
   6017   1.1    isaki 		XP_EQ(prec, pr->precision);
   6018   1.1    isaki 	} else {
   6019   1.1    isaki 		/* expect to fail */
   6020   1.1    isaki 		XP_SYS_NG(EINVAL, r);
   6021   1.1    isaki 	}
   6022   1.1    isaki }
   6023   1.1    isaki 
   6024   1.1    isaki /*
   6025   1.1    isaki  * This function is called from test_AUDIO_GETENC below.
   6026   1.1    isaki  */
   6027   1.1    isaki void
   6028   1.1    isaki getenc_check_encodings(int openmode, int expected[][5])
   6029   1.1    isaki {
   6030   1.1    isaki 	struct audio_info ai;
   6031   1.1    isaki 	int fd;
   6032   1.1    isaki 	int i, j;
   6033   1.1    isaki 	int r;
   6034   1.1    isaki 
   6035   1.1    isaki 	fd = OPEN(devaudio, openmode);
   6036   1.1    isaki 	REQUIRED_SYS_OK(fd);
   6037   1.1    isaki 
   6038   1.1    isaki 	for (i = 0; i < NENC; i++) {
   6039   1.1    isaki 		for (j = 0; j < NPREC; j++) {
   6040   1.1    isaki 			/* precisions are 4 and 8, 16, 24, 32 */
   6041   1.1    isaki 			int prec = (j == 0) ? 4 : j * 8;
   6042   1.1    isaki 
   6043   1.1    isaki 			/*
   6044   1.1    isaki 			 * AUDIO_GETENC has no way to know range of
   6045   1.1    isaki 			 * supported channels and sample_rate.
   6046   1.1    isaki 			 */
   6047   1.1    isaki 			AUDIO_INITINFO(&ai);
   6048   1.1    isaki 			ai.play.encoding = i;
   6049   1.1    isaki 			ai.play.precision = prec;
   6050   1.1    isaki 			ai.record.encoding = i;
   6051   1.1    isaki 			ai.record.precision = prec;
   6052   1.1    isaki 
   6053   1.1    isaki 			r = IOCTL(fd, AUDIO_SETINFO, &ai, "%s:%d",
   6054   1.1    isaki 			    encoding_names[i], prec);
   6055   1.1    isaki 			if (mode2play(openmode))
   6056   1.1    isaki 				xp_getenc(expected, i, j, r, &ai.play);
   6057   1.1    isaki 			if (mode2rec(openmode))
   6058   1.1    isaki 				xp_getenc(expected, i, j, r, &ai.record);
   6059   1.1    isaki 		}
   6060   1.1    isaki 	}
   6061   1.1    isaki 	r = CLOSE(fd);
   6062   1.1    isaki 	XP_SYS_EQ(0, r);
   6063   1.1    isaki }
   6064   1.1    isaki 
   6065   1.1    isaki /*
   6066   1.1    isaki  * Check whether encoding+precision obtained by AUDIO_GETENC can be set.
   6067   1.1    isaki  */
   6068   1.1    isaki DEF(AUDIO_GETENC_range)
   6069   1.1    isaki {
   6070   1.1    isaki 	audio_encoding_t ae;
   6071   1.1    isaki 	int fd;
   6072   1.1    isaki 	int r;
   6073   1.1    isaki 	int expected[NENC][NPREC];
   6074   1.1    isaki 	int i, j;
   6075   1.1    isaki 
   6076   1.1    isaki 	TEST("AUDIO_GETENC_range");
   6077   1.1    isaki 
   6078   1.1    isaki 	fd = OPEN(devaudio, openable_mode());
   6079   1.1    isaki 	REQUIRED_SYS_OK(fd);
   6080   1.1    isaki 
   6081   1.1    isaki 	memset(&expected, 0, sizeof(expected));
   6082   1.1    isaki 	i = getenc_make_table(fd, expected);
   6083   1.1    isaki 
   6084  1.18   andvar 	/* When error has occurred, the next index should also occur error */
   6085   1.1    isaki 	ae.index = i + 1;
   6086   1.1    isaki 	r = IOCTL(fd, AUDIO_GETENC, &ae, "index=%d", ae.index);
   6087   1.1    isaki 	XP_SYS_NG(EINVAL, r);
   6088   1.1    isaki 
   6089   1.1    isaki 	r = CLOSE(fd);
   6090   1.1    isaki 	XP_SYS_EQ(0, r);
   6091   1.1    isaki 
   6092   1.1    isaki 	/* For debug */
   6093   1.1    isaki 	if (debug) {
   6094   1.1    isaki 		for (i = 0; i < NENC; i++) {
   6095   1.1    isaki 			printf("expected[%2d] %15s", i, encoding_names[i]);
   6096   1.1    isaki 			for (j = 0; j < NPREC; j++) {
   6097   1.1    isaki 				printf(" %d", expected[i][j]);
   6098   1.1    isaki 			}
   6099   1.1    isaki 			printf("\n");
   6100   1.1    isaki 		}
   6101   1.1    isaki 	}
   6102   1.1    isaki 
   6103   1.1    isaki 	/* Whether obtained encodings can be actually set */
   6104   1.1    isaki 	if (hw_fulldup()) {
   6105   1.1    isaki 		/* Test both R/W at once using single descriptor */
   6106   1.1    isaki 		getenc_check_encodings(O_RDWR, expected);
   6107   1.1    isaki 	} else {
   6108   1.1    isaki 		/* Test playback and recording if available */
   6109   1.1    isaki 		if (hw_canplay()) {
   6110   1.1    isaki 			getenc_check_encodings(O_WRONLY, expected);
   6111   1.1    isaki 		}
   6112   1.1    isaki 		if (hw_canplay() && hw_canrec()) {
   6113   1.1    isaki 			xxx_close_wait();
   6114   1.1    isaki 		}
   6115   1.1    isaki 		if (hw_canrec()) {
   6116   1.1    isaki 			getenc_check_encodings(O_RDONLY, expected);
   6117   1.1    isaki 		}
   6118   1.1    isaki 	}
   6119   1.1    isaki }
   6120   1.1    isaki #undef NENC
   6121   1.1    isaki #undef NPREC
   6122   1.1    isaki 
   6123   1.1    isaki /*
   6124   1.1    isaki  * Check AUDIO_GETENC out of range.
   6125   1.1    isaki  */
   6126   1.1    isaki DEF(AUDIO_GETENC_error)
   6127   1.1    isaki {
   6128   1.1    isaki 	audio_encoding_t e;
   6129   1.1    isaki 	int fd;
   6130   1.1    isaki 	int r;
   6131   1.1    isaki 
   6132   1.1    isaki 	TEST("AUDIO_GETENC_error");
   6133   1.1    isaki 
   6134   1.1    isaki 	fd = OPEN(devaudio, openable_mode());
   6135   1.1    isaki 	REQUIRED_SYS_OK(fd);
   6136   1.1    isaki 
   6137   1.1    isaki 	memset(&e, 0, sizeof(e));
   6138   1.1    isaki 	e.index = -1;
   6139   1.1    isaki 	r = IOCTL(fd, AUDIO_GETENC, &e, "index=-1");
   6140   1.1    isaki 	/* NetBSD7 may not fail depending on hardware driver */
   6141   1.1    isaki 	XP_SYS_NG(EINVAL, r);
   6142   1.1    isaki 
   6143   1.1    isaki 	r = CLOSE(fd);
   6144   1.1    isaki 	XP_SYS_EQ(0, r);
   6145   1.1    isaki }
   6146   1.1    isaki 
   6147   1.1    isaki /*
   6148   1.1    isaki  * AUDIO_[PR]ERROR should be zero on the initial state even on non-existent
   6149   1.1    isaki  * track.
   6150   1.1    isaki  */
   6151   1.1    isaki void
   6152   1.1    isaki test_AUDIO_ERROR(int openmode)
   6153   1.1    isaki {
   6154   1.1    isaki 	int fd;
   6155   1.1    isaki 	int r;
   6156   1.1    isaki 	int errors;
   6157   1.1    isaki 
   6158   1.1    isaki 	TEST("AUDIO_ERROR_%s", openmode_str[openmode] + 2);
   6159   1.1    isaki 	if (mode2aumode(openmode) == 0) {
   6160   1.1    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   6161   1.1    isaki 		return;
   6162   1.1    isaki 	}
   6163   1.1    isaki 
   6164   1.1    isaki 	fd = OPEN(devaudio, openmode);
   6165   1.1    isaki 	REQUIRED_SYS_OK(fd);
   6166   1.1    isaki 
   6167   1.1    isaki 	/* Check PERROR */
   6168   1.1    isaki 	errors = 0xdeadbeef;
   6169   1.1    isaki 	r = IOCTL(fd, AUDIO_PERROR, &errors, "");
   6170   1.1    isaki 	XP_SYS_EQ(0, r);
   6171   1.1    isaki 	XP_EQ(0, errors);
   6172   1.1    isaki 
   6173   1.1    isaki 	/* Check RERROR */
   6174   1.1    isaki 	errors = 0xdeadbeef;
   6175   1.1    isaki 	r = IOCTL(fd, AUDIO_RERROR, &errors, "");
   6176   1.1    isaki 	XP_SYS_EQ(0, r);
   6177   1.1    isaki 	XP_EQ(0, errors);
   6178   1.1    isaki 
   6179   1.1    isaki 	r = CLOSE(fd);
   6180   1.1    isaki 	XP_SYS_EQ(0, r);
   6181   1.1    isaki }
   6182   1.1    isaki DEF(AUDIO_ERROR_RDONLY)	{ test_AUDIO_ERROR(O_RDONLY); }
   6183   1.1    isaki DEF(AUDIO_ERROR_WRONLY)	{ test_AUDIO_ERROR(O_WRONLY); }
   6184   1.1    isaki DEF(AUDIO_ERROR_RDWR)	{ test_AUDIO_ERROR(O_RDWR); }
   6185   1.1    isaki 
   6186   1.1    isaki /*
   6187  1.19    isaki  * AUDIO_GETIOFFS at least one block.
   6188  1.19    isaki  */
   6189  1.19    isaki void
   6190  1.19    isaki test_AUDIO_GETIOFFS_one(int openmode)
   6191  1.19    isaki {
   6192  1.19    isaki 	struct audio_info ai;
   6193  1.19    isaki 	audio_offset_t o;
   6194  1.19    isaki 	int fd;
   6195  1.19    isaki 	int r;
   6196  1.19    isaki 	u_int blocksize;
   6197  1.19    isaki 	u_int blk_ms;
   6198  1.19    isaki 
   6199  1.19    isaki 	TEST("AUDIO_GETIOFFS_one_%s", openmode_str[openmode] + 2);
   6200  1.19    isaki 	if (mode2aumode(openmode) == 0) {
   6201  1.19    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   6202  1.19    isaki 		return;
   6203  1.19    isaki 	}
   6204  1.19    isaki 
   6205  1.19    isaki 	fd = OPEN(devaudio, openmode);
   6206  1.19    isaki 	REQUIRED_SYS_OK(fd);
   6207  1.19    isaki 
   6208  1.19    isaki #if 0
   6209  1.19    isaki 	/*
   6210  1.19    isaki 	 * On NetBSD7/8, native encodings and emulated encodings behave
   6211  1.19    isaki 	 * differently.  But it's hard to identify which encoding is native.
   6212  1.19    isaki 	 * If you try other encodings, edit these parameters manually.
   6213  1.19    isaki 	 */
   6214  1.19    isaki 	AUDIO_INITINFO(&ai);
   6215  1.19    isaki 	ai.record.encoding = AUDIO_ENCODING_SLINEAR_NE;
   6216  1.19    isaki 	ai.record.precision = 16;
   6217  1.19    isaki 	ai.record.channels = 2;
   6218  1.19    isaki 	ai.record.sample_rate = 48000;
   6219  1.19    isaki 	/* ai.blocksize is shared by play and record, so set both the same. */
   6220  1.19    isaki 	*ai.play = *ai.record;
   6221  1.19    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   6222  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6223  1.19    isaki #endif
   6224  1.19    isaki 
   6225  1.19    isaki 	/* Get blocksize to calc blk_ms. */
   6226  1.19    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   6227  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6228  1.19    isaki 	blocksize = ai.blocksize;
   6229  1.19    isaki 	if (netbsd < 9) {
   6230  1.19    isaki 		blk_ms = 0;
   6231  1.19    isaki 	} else {
   6232  1.19    isaki 		/* On NetBSD9, blocktime can always be calculated. */
   6233  1.19    isaki 		blk_ms = blocksize * 1000 /
   6234  1.19    isaki 		    (ai.play.precision / 8 * ai.play.channels *
   6235  1.19    isaki 		     ai.play.sample_rate);
   6236  1.19    isaki 	}
   6237  1.19    isaki 	if (blk_ms == 0)
   6238  1.19    isaki 		blk_ms = 50;
   6239  1.19    isaki 	DPRINTF("  > blocksize=%u, estimated blk_ms=%u\n", blocksize, blk_ms);
   6240  1.19    isaki 
   6241  1.19    isaki 	/*
   6242  1.19    isaki 	 * Even when just opened, recording counters will start.
   6243  1.19    isaki 	 * Wait a moment, about one block time.
   6244  1.19    isaki 	 */
   6245  1.19    isaki 	usleep(blk_ms * 1000);
   6246  1.19    isaki 
   6247  1.19    isaki 	r = IOCTL(fd, AUDIO_GETIOFFS, &o, "");
   6248  1.19    isaki 	XP_SYS_EQ(0, r);
   6249  1.19    isaki 	if (mode2rec(openmode)) {
   6250  1.19    isaki 		/*
   6251  1.19    isaki 		 * It's difficult to know exact values.
   6252  1.19    isaki 		 * But at least these should not be zero.
   6253  1.19    isaki 		 */
   6254  1.19    isaki 		DPRINTF("  > %d: samples=%u deltablks=%u offset=%u\n",
   6255  1.19    isaki 		    __LINE__, o.samples, o.deltablks, o.offset);
   6256  1.19    isaki 		XP_NE(0, o.samples);
   6257  1.19    isaki 		XP_NE(0, o.deltablks);
   6258  1.19    isaki 		XP_NE(0, o.offset);
   6259  1.19    isaki 	} else {
   6260  1.19    isaki 		/* All are zero on playback track. */
   6261  1.19    isaki 		XP_EQ(0, o.samples);
   6262  1.19    isaki 		XP_EQ(0, o.deltablks);
   6263  1.19    isaki 		XP_EQ(0, o.offset);
   6264  1.19    isaki 	}
   6265  1.19    isaki 
   6266  1.19    isaki 	r = CLOSE(fd);
   6267  1.19    isaki 	XP_SYS_EQ(0, r);
   6268  1.19    isaki }
   6269  1.19    isaki DEF(AUDIO_GETIOFFS_one_RDONLY) { test_AUDIO_GETIOFFS_one(O_RDONLY); }
   6270  1.19    isaki DEF(AUDIO_GETIOFFS_one_WRONLY) { test_AUDIO_GETIOFFS_one(O_WRONLY); }
   6271  1.19    isaki DEF(AUDIO_GETIOFFS_one_RDWR)   { test_AUDIO_GETIOFFS_one(O_RDWR); }
   6272  1.19    isaki 
   6273  1.19    isaki /*
   6274  1.19    isaki  * AUDIO_GETOOFFS for one block.
   6275  1.19    isaki  */
   6276  1.19    isaki void
   6277  1.19    isaki test_AUDIO_GETOOFFS_one(int openmode)
   6278  1.19    isaki {
   6279  1.19    isaki 	struct audio_info ai;
   6280  1.19    isaki 	audio_offset_t o;
   6281  1.19    isaki 	char *buf;
   6282  1.19    isaki 	int fd;
   6283  1.19    isaki 	int r;
   6284  1.19    isaki 	u_int blocksize;
   6285  1.19    isaki 	u_int initial_offset;
   6286  1.19    isaki 	u_int blk_ms;
   6287  1.19    isaki 
   6288  1.19    isaki 	TEST("AUDIO_GETOOFFS_one_%s", openmode_str[openmode] + 2);
   6289  1.19    isaki 	if (mode2aumode(openmode) == 0) {
   6290  1.19    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   6291  1.19    isaki 		return;
   6292  1.19    isaki 	}
   6293  1.19    isaki 
   6294  1.19    isaki 	fd = OPEN(devaudio, openmode);
   6295  1.19    isaki 	REQUIRED_SYS_OK(fd);
   6296  1.19    isaki 
   6297  1.19    isaki #if 0
   6298  1.19    isaki 	/*
   6299  1.19    isaki 	 * On NetBSD7/8, native encodings and emulated encodings behave
   6300  1.19    isaki 	 * differently.  But it's hard to identify which encoding is native.
   6301  1.19    isaki 	 * If you try other encodings, edit these parameters manually.
   6302  1.19    isaki 	 */
   6303  1.19    isaki 	AUDIO_INITINFO(&ai);
   6304  1.19    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_NE;
   6305  1.19    isaki 	ai.play.precision = 16;
   6306  1.19    isaki 	ai.play.channels = 2;
   6307  1.19    isaki 	ai.play.sample_rate = 48000;
   6308  1.19    isaki 	/* ai.blocksize is shared by play and record, so set both the same. */
   6309  1.19    isaki 	*ai.record = *ai.play;
   6310  1.19    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "slinear16/2ch/48000");
   6311  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6312  1.19    isaki #endif
   6313  1.19    isaki 
   6314  1.19    isaki 	/* Get blocksize to calc blk_ms. */
   6315  1.19    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   6316  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6317  1.19    isaki 	blocksize = ai.blocksize;
   6318  1.19    isaki 	if (netbsd < 9) {
   6319  1.19    isaki 		blk_ms = 0;
   6320  1.19    isaki 	} else {
   6321  1.19    isaki 		/* On NetBSD9, blocktime can always be calculated. */
   6322  1.19    isaki 		blk_ms = blocksize * 1000 /
   6323  1.19    isaki 		    (ai.play.precision / 8 * ai.play.channels *
   6324  1.19    isaki 		     ai.play.sample_rate);
   6325  1.19    isaki 	}
   6326  1.19    isaki 	if (blk_ms == 0)
   6327  1.19    isaki 		blk_ms = 50;
   6328  1.19    isaki 	DPRINTF("  > blocksize=%u, estimated blk_ms=%u\n", blocksize, blk_ms);
   6329  1.19    isaki 
   6330  1.19    isaki 	buf = (char *)malloc(blocksize);
   6331  1.19    isaki 	REQUIRED_IF(buf != NULL);
   6332  1.19    isaki 	memset(buf, 0xff, blocksize);
   6333  1.19    isaki 
   6334  1.19    isaki 	/*
   6335  1.19    isaki 	 * On NetBSD7, .offset starts from one block.  What is the block??
   6336  1.19    isaki 	 * On NetBSD9, .offset starts from zero.
   6337  1.19    isaki 	 */
   6338  1.19    isaki 	if (netbsd < 9) {
   6339  1.19    isaki 		initial_offset = blocksize;
   6340  1.19    isaki 	} else {
   6341  1.19    isaki 		initial_offset = 0;
   6342  1.19    isaki 	}
   6343  1.19    isaki 
   6344  1.19    isaki 	/* When just opened, all are zero. */
   6345  1.19    isaki 	r = IOCTL(fd, AUDIO_GETOOFFS, &o, "");
   6346  1.19    isaki 	XP_SYS_EQ(0, r);
   6347  1.19    isaki 	XP_EQ(0, o.samples);
   6348  1.19    isaki 	XP_EQ(0, o.deltablks);
   6349  1.19    isaki 	XP_EQ(initial_offset, o.offset);
   6350  1.19    isaki 
   6351  1.19    isaki 	/* Even if wait (at least) one block, these remain unchanged. */
   6352  1.19    isaki 	usleep(blk_ms * 1000);
   6353  1.19    isaki 	r = IOCTL(fd, AUDIO_GETOOFFS, &o, "");
   6354  1.19    isaki 	XP_SYS_EQ(0, r);
   6355  1.19    isaki 	XP_EQ(0, o.samples);
   6356  1.19    isaki 	XP_EQ(0, o.deltablks);
   6357  1.19    isaki 	XP_EQ(initial_offset, o.offset);
   6358  1.19    isaki 
   6359  1.19    isaki 	/* Write one block. */
   6360  1.19    isaki 	r = WRITE(fd, buf, blocksize);
   6361  1.19    isaki 	if (mode2play(openmode)) {
   6362  1.19    isaki 		XP_SYS_EQ(blocksize, r);
   6363  1.19    isaki 	} else {
   6364  1.19    isaki 		XP_SYS_NG(EBADF, r);
   6365  1.19    isaki 	}
   6366  1.19    isaki 	r = IOCTL(fd, AUDIO_DRAIN, NULL, "");
   6367  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6368  1.19    isaki 
   6369  1.19    isaki 	r = IOCTL(fd, AUDIO_GETOOFFS, &o, "");
   6370  1.19    isaki 	XP_SYS_EQ(0, r);
   6371  1.19    isaki 	if (mode2play(openmode)) {
   6372  1.19    isaki 		/* All advance one block. */
   6373  1.19    isaki 		XP_EQ(blocksize, o.samples);
   6374  1.19    isaki 		XP_EQ(1, o.deltablks);
   6375  1.19    isaki 		XP_EQ(initial_offset + blocksize, o.offset);
   6376  1.19    isaki 	} else {
   6377  1.19    isaki 		/*
   6378  1.19    isaki 		 * All are zero on non-play track.
   6379  1.19    isaki 		 * On NetBSD7, the rec track has play buffer, too.
   6380  1.19    isaki 		 */
   6381  1.19    isaki 		XP_EQ(0, o.samples);
   6382  1.19    isaki 		XP_EQ(0, o.deltablks);
   6383  1.19    isaki 		XP_EQ(initial_offset, o.offset);
   6384  1.19    isaki 	}
   6385  1.19    isaki 
   6386  1.19    isaki 	r = CLOSE(fd);
   6387  1.19    isaki 	XP_SYS_EQ(0, r);
   6388  1.19    isaki 
   6389  1.19    isaki 	free(buf);
   6390  1.19    isaki }
   6391  1.19    isaki DEF(AUDIO_GETOOFFS_one_RDONLY) { test_AUDIO_GETOOFFS_one(O_RDONLY); }
   6392  1.19    isaki DEF(AUDIO_GETOOFFS_one_WRONLY) { test_AUDIO_GETOOFFS_one(O_WRONLY); }
   6393  1.19    isaki DEF(AUDIO_GETOOFFS_one_RDWR)   { test_AUDIO_GETOOFFS_one(O_RDWR); }
   6394  1.19    isaki 
   6395  1.19    isaki /*
   6396  1.19    isaki  * AUDIO_GETOOFFS when wrap around buffer.
   6397  1.19    isaki  */
   6398  1.19    isaki void
   6399  1.19    isaki test_AUDIO_GETOOFFS_wrap(int openmode)
   6400  1.19    isaki {
   6401  1.19    isaki 	struct audio_info ai;
   6402  1.19    isaki 	audio_offset_t o;
   6403  1.19    isaki 	char *buf;
   6404  1.19    isaki 	int fd;
   6405  1.19    isaki 	int r;
   6406  1.19    isaki 	u_int blocksize;
   6407  1.19    isaki 	u_int buffer_size;
   6408  1.19    isaki 	u_int initial_offset;
   6409  1.19    isaki 	u_int nblks;
   6410  1.19    isaki 
   6411  1.19    isaki 	TEST("AUDIO_GETOOFFS_wrap_%s", openmode_str[openmode] + 2);
   6412  1.19    isaki 	if (mode2aumode(openmode) == 0) {
   6413  1.19    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   6414  1.19    isaki 		return;
   6415  1.19    isaki 	}
   6416  1.19    isaki 
   6417  1.19    isaki 	fd = OPEN(devaudio, openmode);
   6418  1.19    isaki 	REQUIRED_SYS_OK(fd);
   6419  1.19    isaki 
   6420  1.19    isaki #if 1
   6421  1.19    isaki 	/* To save test time, use larger format if possible. */
   6422  1.19    isaki 	AUDIO_INITINFO(&ai);
   6423  1.19    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_NE;
   6424  1.19    isaki 	ai.play.precision = 16;
   6425  1.19    isaki 	ai.play.channels = 2;
   6426  1.19    isaki 	ai.play.sample_rate = 48000;
   6427  1.19    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "slinear16/2/48000");
   6428  1.19    isaki 	if (r != 0)
   6429  1.19    isaki #endif
   6430  1.19    isaki 	{
   6431  1.19    isaki 		/*
   6432  1.19    isaki 		 * If it cannot be set, use common format instead.
   6433  1.19    isaki 		 * May be happened on NetBSD7/8.
   6434  1.19    isaki 		 */
   6435  1.19    isaki 		AUDIO_INITINFO(&ai);
   6436  1.19    isaki 		ai.play.encoding = AUDIO_ENCODING_ULAW;
   6437  1.19    isaki 		ai.play.precision = 8;
   6438  1.19    isaki 		ai.play.channels = 1;
   6439  1.19    isaki 		ai.play.sample_rate = 8000;
   6440  1.19    isaki 		r = IOCTL(fd, AUDIO_SETINFO, &ai, "ulaw/1/8000");
   6441  1.19    isaki 	}
   6442  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6443  1.19    isaki 
   6444  1.19    isaki 	/* Get buffer_size and blocksize. */
   6445  1.19    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   6446  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6447  1.19    isaki 	buffer_size = ai.play.buffer_size;
   6448  1.19    isaki 	blocksize = ai.blocksize;
   6449  1.19    isaki 	nblks = buffer_size / blocksize;
   6450  1.19    isaki 	DPRINTF("  > buffer_size=%u blocksize=%u nblks=%u\n",
   6451  1.19    isaki 	    buffer_size, blocksize, nblks);
   6452  1.19    isaki 
   6453  1.19    isaki 	buf = (char *)malloc(buffer_size);
   6454  1.19    isaki 	REQUIRED_IF(buf != NULL);
   6455  1.19    isaki 	memset(buf, 0xff, buffer_size);
   6456  1.19    isaki 
   6457  1.19    isaki 	/*
   6458  1.19    isaki 	 * On NetBSD7, .offset starts from one block.  What is the block??
   6459  1.19    isaki 	 * On NetBSD9, .offset starts from zero.
   6460  1.19    isaki 	 */
   6461  1.19    isaki 	if (netbsd < 9) {
   6462  1.19    isaki 		initial_offset = blocksize;
   6463  1.19    isaki 	} else {
   6464  1.19    isaki 		initial_offset = 0;
   6465  1.19    isaki 	}
   6466  1.19    isaki 
   6467  1.19    isaki 	/* Write full buffer. */
   6468  1.19    isaki 	r = WRITE(fd, buf, buffer_size);
   6469  1.19    isaki 	if (mode2play(openmode)) {
   6470  1.19    isaki 		XP_SYS_EQ(buffer_size, r);
   6471  1.19    isaki 
   6472  1.19    isaki 		/* Then, wait. */
   6473  1.19    isaki 		r = IOCTL(fd, AUDIO_DRAIN, NULL, "");
   6474  1.19    isaki 		REQUIRED_SYS_EQ(0, r);
   6475  1.19    isaki 	} else {
   6476  1.19    isaki 		XP_SYS_NG(EBADF, r);
   6477  1.19    isaki 	}
   6478  1.19    isaki 
   6479  1.19    isaki 	/*
   6480  1.19    isaki 	 * .deltablks is number of blocks since last checked.
   6481  1.19    isaki 	 * .offset is wrapped around to zero.
   6482  1.19    isaki 	 */
   6483  1.19    isaki 	r = IOCTL(fd, AUDIO_GETOOFFS, &o, "");
   6484  1.19    isaki 	XP_SYS_EQ(0, r);
   6485  1.19    isaki 	if (mode2play(openmode)) {
   6486  1.19    isaki 		/*
   6487  1.19    isaki 		 * On NetBSD7, samples may be blocksize * nblks or buffer_size
   6488  1.19    isaki 		 * depending on native/emulated encoding.
   6489  1.19    isaki 		 * On NetBSD9, samples is always equal to buffer_size.
   6490  1.19    isaki 		 */
   6491  1.19    isaki 		if (buffer_size != blocksize * nblks &&
   6492  1.19    isaki 		    o.samples == blocksize * nblks) {
   6493  1.19    isaki 			DPRINTF("  > %d: samples(%u) == blocksize * nblks\n",
   6494  1.19    isaki 			    __LINE__, o.samples);
   6495  1.19    isaki 		} else {
   6496  1.19    isaki 			XP_EQ(buffer_size, o.samples);
   6497  1.19    isaki 		}
   6498  1.19    isaki 		XP_EQ(nblks, o.deltablks);
   6499  1.19    isaki 		XP_EQ(initial_offset, o.offset);
   6500  1.19    isaki 	} else {
   6501  1.19    isaki 		/*
   6502  1.19    isaki 		 * On non-play track, it silently succeeds with zero.
   6503  1.19    isaki 		 * But on NetBSD7, RDONLY descriptor also has play buffer.
   6504  1.19    isaki 		 */
   6505  1.19    isaki 		XP_EQ(0, o.samples);
   6506  1.19    isaki 		XP_EQ(0, o.deltablks);
   6507  1.19    isaki 		XP_EQ(initial_offset, o.offset);
   6508  1.19    isaki 	}
   6509  1.19    isaki 
   6510  1.19    isaki 	r = CLOSE(fd);
   6511  1.19    isaki 	XP_SYS_EQ(0, r);
   6512  1.19    isaki 
   6513  1.19    isaki 	free(buf);
   6514  1.19    isaki }
   6515  1.19    isaki DEF(AUDIO_GETOOFFS_wrap_RDONLY) { test_AUDIO_GETOOFFS_wrap(O_RDONLY); }
   6516  1.19    isaki DEF(AUDIO_GETOOFFS_wrap_WRONLY) { test_AUDIO_GETOOFFS_wrap(O_WRONLY); }
   6517  1.19    isaki DEF(AUDIO_GETOOFFS_wrap_RDWR)   { test_AUDIO_GETOOFFS_wrap(O_RDWR); }
   6518  1.19    isaki 
   6519  1.19    isaki /*
   6520  1.19    isaki  * Check whether AUDIO_FLUSH clears AUDIO_GETOOFFS.
   6521  1.19    isaki  */
   6522  1.19    isaki void
   6523  1.19    isaki test_AUDIO_GETOOFFS_flush(int openmode)
   6524  1.19    isaki {
   6525  1.19    isaki 	struct audio_info ai;
   6526  1.19    isaki 	audio_offset_t o;
   6527  1.19    isaki 	char *buf;
   6528  1.19    isaki 	int fd;
   6529  1.19    isaki 	int r;
   6530  1.19    isaki 	u_int initial_offset;
   6531  1.19    isaki 	u_int last_offset;
   6532  1.19    isaki 
   6533  1.19    isaki 	TEST("AUDIO_GETOOFFS_flush_%s", openmode_str[openmode] + 2);
   6534  1.19    isaki 	if (mode2aumode(openmode) == 0) {
   6535  1.19    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   6536  1.19    isaki 		return;
   6537  1.19    isaki 	}
   6538  1.19    isaki 
   6539  1.19    isaki 	fd = OPEN(devaudio, openmode);
   6540  1.19    isaki 	REQUIRED_SYS_OK(fd);
   6541  1.19    isaki 
   6542  1.19    isaki #if 0
   6543  1.19    isaki 	/* On NetBSD7/8, native encoding changes buffer behavior. */
   6544  1.19    isaki 	AUDIO_INITINFO(&ai);
   6545  1.19    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_NE;
   6546  1.19    isaki 	ai.play.precision = 16;
   6547  1.19    isaki 	ai.play.channels = 2;
   6548  1.19    isaki 	ai.play.sample_rate = 48000;
   6549  1.19    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "");
   6550  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6551  1.19    isaki #endif
   6552  1.19    isaki 
   6553  1.19    isaki 	/* Get blocksize. */
   6554  1.19    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   6555  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6556  1.19    isaki 
   6557  1.19    isaki 	buf = (char *)malloc(ai.blocksize);
   6558  1.19    isaki 	REQUIRED_IF(buf != NULL);
   6559  1.19    isaki 	memset(buf, 0xff, ai.blocksize);
   6560  1.19    isaki 
   6561  1.19    isaki 	/*
   6562  1.19    isaki 	 * On NetBSD7, .offset starts from one block.  What is the block??
   6563  1.19    isaki 	 * On NetBSD9, .offset starts from zero.
   6564  1.19    isaki 	 */
   6565  1.19    isaki 	if (netbsd < 9) {
   6566  1.19    isaki 		initial_offset = ai.blocksize;
   6567  1.19    isaki 	} else {
   6568  1.19    isaki 		initial_offset = 0;
   6569  1.19    isaki 	}
   6570  1.19    isaki 
   6571  1.19    isaki 	/* Write one block. */
   6572  1.19    isaki 	r = WRITE(fd, buf, ai.blocksize);
   6573  1.19    isaki 	if (mode2play(openmode)) {
   6574  1.19    isaki 		XP_SYS_EQ(ai.blocksize, r);
   6575  1.19    isaki 	} else {
   6576  1.19    isaki 		XP_SYS_NG(EBADF, r);
   6577  1.19    isaki 	}
   6578  1.19    isaki 	r = IOCTL(fd, AUDIO_DRAIN, NULL, "");
   6579  1.19    isaki 	XP_SYS_EQ(0, r);
   6580  1.19    isaki 
   6581  1.19    isaki 	/* Obtain once. */
   6582  1.19    isaki 	r = IOCTL(fd, AUDIO_GETOOFFS, &o, "");
   6583  1.19    isaki 	XP_SYS_EQ(0, r);
   6584  1.19    isaki 	if (mode2play(openmode)) {
   6585  1.19    isaki 		XP_EQ(ai.blocksize, o.samples);
   6586  1.19    isaki 		XP_EQ(1, o.deltablks);
   6587  1.19    isaki 		XP_EQ(initial_offset + ai.blocksize, o.offset);
   6588  1.19    isaki 	} else {
   6589  1.19    isaki 		/*
   6590  1.19    isaki 		 * On non-play track, it silently succeeds with zero.
   6591  1.19    isaki 		 * But on NetBSD7, RDONLY descriptor also has play buffer.
   6592  1.19    isaki 		 */
   6593  1.19    isaki 		XP_EQ(0, o.samples);
   6594  1.19    isaki 		XP_EQ(0, o.deltablks);
   6595  1.19    isaki 		XP_EQ(initial_offset, o.offset);
   6596  1.19    isaki 	}
   6597  1.19    isaki 
   6598  1.19    isaki 	/* Write one more block to advance .offset. */
   6599  1.19    isaki 	r = WRITE(fd, buf, ai.blocksize);
   6600  1.19    isaki 	if (mode2play(openmode)) {
   6601  1.19    isaki 		XP_SYS_EQ(ai.blocksize, r);
   6602  1.19    isaki 	} else {
   6603  1.19    isaki 		XP_SYS_NG(EBADF, r);
   6604  1.19    isaki 	}
   6605  1.19    isaki 	r = IOCTL(fd, AUDIO_DRAIN, NULL, "");
   6606  1.19    isaki 	XP_SYS_EQ(0, r);
   6607  1.19    isaki 
   6608  1.19    isaki 	/* If offset remains unchanged, this is expected offset. */
   6609  1.19    isaki 	last_offset = initial_offset + ai.blocksize * 2;
   6610  1.19    isaki 
   6611  1.19    isaki 	/* Then, flush. */
   6612  1.19    isaki 	r = IOCTL(fd, AUDIO_FLUSH, NULL, "");
   6613  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6614  1.19    isaki 
   6615  1.19    isaki 	/* All should be cleared. */
   6616  1.19    isaki 	r = IOCTL(fd, AUDIO_GETOOFFS, &o, "");
   6617  1.19    isaki 	XP_SYS_EQ(0, r);
   6618  1.19    isaki 	XP_EQ(0, o.samples);
   6619  1.19    isaki 	XP_EQ(0, o.deltablks);
   6620  1.19    isaki 	if (mode2play(openmode)) {
   6621  1.19    isaki 		/*
   6622  1.19    isaki 		 * On NetBSD7,
   6623  1.19    isaki 		 * offset is cleared if native encodings(?), but remains
   6624  1.19    isaki 		 * unchanged if emulated encodings(?).  Looks a bug.
   6625  1.19    isaki 		 * On NetBSD9, it should always be cleared.
   6626  1.19    isaki 		 */
   6627  1.19    isaki 		if (netbsd < 9 && o.offset == last_offset) {
   6628  1.19    isaki 			DPRINTF("  > %d: offset(%u) == last_offset\n",
   6629  1.19    isaki 			    __LINE__, o.offset);
   6630  1.19    isaki 		} else {
   6631  1.19    isaki 			XP_EQ(initial_offset, o.offset);
   6632  1.19    isaki 		}
   6633  1.19    isaki 	} else {
   6634  1.19    isaki 		XP_EQ(initial_offset, o.offset);
   6635  1.19    isaki 	}
   6636  1.19    isaki 
   6637  1.19    isaki 	r = CLOSE(fd);
   6638  1.19    isaki 	XP_SYS_EQ(0, r);
   6639  1.19    isaki 
   6640  1.19    isaki 	free(buf);
   6641  1.19    isaki }
   6642  1.19    isaki DEF(AUDIO_GETOOFFS_flush_RDONLY) { test_AUDIO_GETOOFFS_flush(O_RDONLY); }
   6643  1.19    isaki DEF(AUDIO_GETOOFFS_flush_WRONLY) { test_AUDIO_GETOOFFS_flush(O_WRONLY); }
   6644  1.19    isaki DEF(AUDIO_GETOOFFS_flush_RDWR)   { test_AUDIO_GETOOFFS_flush(O_RDWR); }
   6645  1.19    isaki 
   6646  1.19    isaki /*
   6647  1.19    isaki  * Check whether AUDIO_SETINFO(encoding) clears AUDIO_GETOOFFS.
   6648  1.19    isaki  */
   6649  1.19    isaki void
   6650  1.19    isaki test_AUDIO_GETOOFFS_set(int openmode)
   6651  1.19    isaki {
   6652  1.19    isaki 	struct audio_info ai;
   6653  1.19    isaki 	audio_offset_t o;
   6654  1.19    isaki 	char *buf;
   6655  1.19    isaki 	int fd;
   6656  1.19    isaki 	int r;
   6657  1.19    isaki 	u_int initial_offset;
   6658  1.19    isaki 
   6659  1.19    isaki 	TEST("AUDIO_GETOOFFS_set_%s", openmode_str[openmode] + 2);
   6660  1.19    isaki 	if (mode2aumode(openmode) == 0) {
   6661  1.19    isaki 		XP_SKIP("Operation not allowed on this hardware property");
   6662  1.19    isaki 		return;
   6663  1.19    isaki 	}
   6664  1.19    isaki 
   6665  1.19    isaki 	fd = OPEN(devaudio, openmode);
   6666  1.19    isaki 	REQUIRED_SYS_OK(fd);
   6667  1.19    isaki 
   6668  1.19    isaki 	/* Get blocksize. */
   6669  1.19    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   6670  1.19    isaki 	XP_SYS_EQ(0, r);
   6671  1.19    isaki 
   6672  1.19    isaki 	buf = (char *)malloc(ai.blocksize);
   6673  1.19    isaki 	REQUIRED_IF(buf != NULL);
   6674  1.19    isaki 	memset(buf, 0xff, ai.blocksize);
   6675  1.19    isaki 
   6676  1.19    isaki 	/*
   6677  1.19    isaki 	 * On NetBSD7, .offset starts from one block.  What is the block??
   6678  1.19    isaki 	 * On NetBSD9, .offset starts from zero.
   6679  1.19    isaki 	 */
   6680  1.19    isaki 	if (netbsd < 9) {
   6681  1.19    isaki 		initial_offset = ai.blocksize;
   6682  1.19    isaki 	} else {
   6683  1.19    isaki 		initial_offset = 0;
   6684  1.19    isaki 	}
   6685  1.19    isaki 
   6686  1.19    isaki 	/* Write one block. */
   6687  1.19    isaki 	r = WRITE(fd, buf, ai.blocksize);
   6688  1.19    isaki 	if (mode2play(openmode)) {
   6689  1.19    isaki 		XP_SYS_EQ(ai.blocksize, r);
   6690  1.19    isaki 	} else {
   6691  1.19    isaki 		XP_SYS_NG(EBADF, r);
   6692  1.19    isaki 	}
   6693  1.19    isaki 	r = IOCTL(fd, AUDIO_DRAIN, NULL, "");
   6694  1.19    isaki 	XP_SYS_EQ(0, r);
   6695  1.19    isaki 
   6696  1.19    isaki 	/*
   6697  1.19    isaki 	 * Then, change encoding.
   6698  1.19    isaki 	 * If we fail to change it, we cannot continue.  This may happen
   6699  1.19    isaki 	 * on NetBSD7/8.
   6700  1.19    isaki 	 */
   6701  1.19    isaki 	AUDIO_INITINFO(&ai);
   6702  1.19    isaki 	ai.play.encoding = AUDIO_ENCODING_SLINEAR_NE;
   6703  1.19    isaki 	ai.play.precision = 16;
   6704  1.19    isaki 	ai.play.channels = 2;
   6705  1.19    isaki 	ai.play.sample_rate = 48000;
   6706  1.19    isaki 	r = IOCTL(fd, AUDIO_SETINFO, &ai, "slinear16/2ch/48000");
   6707  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6708  1.19    isaki 
   6709  1.19    isaki 	r = IOCTL(fd, AUDIO_GETBUFINFO, &ai, "");
   6710  1.19    isaki 	REQUIRED_SYS_EQ(0, r);
   6711  1.19    isaki 	if (netbsd < 9) {
   6712  1.19    isaki 		initial_offset = ai.blocksize;
   6713  1.19    isaki 	} else {
   6714  1.19    isaki 		initial_offset = 0;
   6715  1.19    isaki 	}
   6716  1.19    isaki 
   6717  1.19    isaki 	/* Clear counters? */
   6718  1.19    isaki 	r = IOCTL(fd, AUDIO_GETOOFFS, &o, "");
   6719  1.19    isaki 	XP_SYS_EQ(0, r);
   6720  1.19    isaki 	XP_EQ(0, o.samples);
   6721  1.19    isaki 	XP_EQ(0, o.deltablks);
   6722  1.19    isaki 	XP_EQ(initial_offset, o.offset);
   6723  1.19    isaki 
   6724  1.19    isaki 	r = CLOSE(fd);
   6725  1.19    isaki 	XP_SYS_EQ(0, r);
   6726  1.19    isaki 
   6727  1.19    isaki 	free(buf);
   6728  1.19    isaki }
   6729  1.19    isaki DEF(AUDIO_GETOOFFS_set_RDONLY) { test_AUDIO_GETOOFFS_set(O_RDONLY); }
   6730  1.19    isaki DEF(AUDIO_GETOOFFS_set_WRONLY) { test_AUDIO_GETOOFFS_set(O_WRONLY); }
   6731  1.19    isaki DEF(AUDIO_GETOOFFS_set_RDWR)   { test_AUDIO_GETOOFFS_set(O_RDWR); }
   6732  1.19    isaki 
   6733  1.19    isaki /*
   6734   1.1    isaki  * /dev/audioctl can always be opened while /dev/audio is open.
   6735   1.1    isaki  */
   6736   1.1    isaki void
   6737   1.1    isaki test_audioctl_open_1(int fmode, int cmode)
   6738   1.1    isaki {
   6739   1.1    isaki 	int fd;
   6740   1.1    isaki 	int ctl;
   6741   1.1    isaki 	int r;
   6742   1.1    isaki 
   6743   1.1    isaki 	TEST("audioctl_open_1_%s_%s",
   6744   1.1    isaki 	    openmode_str[fmode] + 2, openmode_str[cmode] + 2);
   6745   1.1    isaki 	if (hw_canplay() == 0 && fmode == O_WRONLY) {
   6746   1.1    isaki 		XP_SKIP("This test is for playable device");
   6747   1.1    isaki 		return;
   6748   1.1    isaki 	}
   6749   1.1    isaki 	if (hw_canrec() == 0 && fmode == O_RDONLY) {
   6750   1.1    isaki 		XP_SKIP("This test is for recordable device");
   6751   1.1    isaki 		return;
   6752   1.1    isaki 	}
   6753   1.1    isaki 
   6754   1.1    isaki 	fd = OPEN(devaudio, fmode);
   6755   1.1    isaki 	REQUIRED_SYS_OK(fd);
   6756   1.1    isaki 
   6757   1.1    isaki 	ctl = OPEN(devaudioctl, cmode);
   6758   1.1    isaki 	XP_SYS_OK(ctl);
   6759   1.1    isaki 
   6760   1.1    isaki 	r = CLOSE(ctl);
   6761   1.1    isaki 	XP_SYS_EQ(0, r);
   6762   1.1    isaki 
   6763   1.1    isaki 	r = CLOSE(fd);
   6764   1.1    isaki 	XP_SYS_EQ(0, r);
   6765   1.1    isaki }
   6766   1.1    isaki DEF(audioctl_open_1_RDONLY_RDONLY) { test_audioctl_open_1(O_RDONLY, O_RDONLY); }
   6767   1.1    isaki DEF(audioctl_open_1_RDONLY_RWONLY) { test_audioctl_open_1(O_RDONLY, O_WRONLY); }
   6768   1.1    isaki DEF(audioctl_open_1_RDONLY_RDWR)   { test_audioctl_open_1(O_RDONLY, O_RDWR); }
   6769   1.1    isaki DEF(audioctl_open_1_WRONLY_RDONLY) { test_audioctl_open_1(O_WRONLY, O_RDONLY); }
   6770   1.1    isaki DEF(audioctl_open_1_WRONLY_RWONLY) { test_audioctl_open_1(O_WRONLY, O_WRONLY); }
   6771   1.1    isaki DEF(audioctl_open_1_WRONLY_RDWR)   { test_audioctl_open_1(O_WRONLY, O_RDWR); }
   6772   1.1    isaki DEF(audioctl_open_1_RDWR_RDONLY)   { test_audioctl_open_1(O_RDWR, O_RDONLY); }
   6773   1.1    isaki DEF(audioctl_open_1_RDWR_RWONLY)   { test_audioctl_open_1(O_RDWR, O_WRONLY); }
   6774   1.1    isaki DEF(audioctl_open_1_RDWR_RDWR)     { test_audioctl_open_1(O_RDWR, O_RDWR); }
   6775   1.1    isaki 
   6776   1.1    isaki /*
   6777   1.1    isaki  * /dev/audio can always be opened while /dev/audioctl is open.
   6778   1.1    isaki  */
   6779   1.1    isaki void
   6780   1.1    isaki test_audioctl_open_2(int fmode, int cmode)
   6781   1.1    isaki {
   6782   1.1    isaki 	int fd;
   6783   1.1    isaki 	int ctl;
   6784   1.1    isaki 	int r;
   6785   1.1    isaki 
   6786   1.1    isaki 	TEST("audioctl_open_2_%s_%s",
   6787   1.1    isaki 	    openmode_str[fmode] + 2, openmode_str[cmode] + 2);
   6788   1.1    isaki 	if (hw_canplay() == 0 && fmode == O_WRONLY) {
   6789   1.1    isaki 		XP_SKIP("This test is for playable device");
   6790   1.1    isaki 		return;
   6791   1.1    isaki 	}
   6792   1.1    isaki 	if (hw_canrec() == 0 && fmode == O_RDONLY) {
   6793   1.1    isaki 		XP_SKIP("This test is for recordable device");
   6794   1.1    isaki 		return;
   6795   1.1    isaki 	}
   6796   1.1    isaki 
   6797   1.1    isaki 	ctl = OPEN(devaudioctl, cmode);
   6798   1.1    isaki 	REQUIRED_SYS_OK(ctl);
   6799   1.1    isaki 
   6800   1.1    isaki 	fd = OPEN(devaudio, fmode);
   6801   1.1    isaki 	XP_SYS_OK(fd);
   6802   1.1    isaki 
   6803   1.1    isaki 	r = CLOSE(fd);
   6804   1.1    isaki 	XP_SYS_EQ(0, r);
   6805   1.1    isaki 
   6806   1.1    isaki 	r = CLOSE(ctl);
   6807   1.1    isaki 	XP_SYS_EQ(0, r);
   6808   1.1    isaki }
   6809   1.1    isaki DEF(audioctl_open_2_RDONLY_RDONLY) { test_audioctl_open_2(O_RDONLY, O_RDONLY); }
   6810   1.1    isaki DEF(audioctl_open_2_RDONLY_RWONLY) { test_audioctl_open_2(O_RDONLY, O_WRONLY); }
   6811   1.1    isaki DEF(audioctl_open_2_RDONLY_RDWR)   { test_audioctl_open_2(O_RDONLY, O_RDWR); }
   6812   1.1    isaki DEF(audioctl_open_2_WRONLY_RDONLY) { test_audioctl_open_2(O_WRONLY, O_RDONLY); }
   6813   1.1    isaki DEF(audioctl_open_2_WRONLY_RWONLY) { test_audioctl_open_2(O_WRONLY, O_WRONLY); }
   6814   1.1    isaki DEF(audioctl_open_2_WRONLY_RDWR)   { test_audioctl_open_2(O_WRONLY, O_RDWR); }
   6815   1.1    isaki DEF(audioctl_open_2_RDWR_RDONLY)   { test_audioctl_open_2(O_RDWR, O_RDONLY); }
   6816   1.1    isaki DEF(audioctl_open_2_RDWR_RWONLY)   { test_audioctl_open_2(O_RDWR, O_WRONLY); }
   6817   1.1    isaki DEF(audioctl_open_2_RDWR_RDWR)     { test_audioctl_open_2(O_RDWR, O_RDWR); }
   6818   1.1    isaki 
   6819   1.1    isaki /*
   6820   1.1    isaki  * Open multiple /dev/audioctl.
   6821   1.1    isaki  */
   6822   1.1    isaki DEF(audioctl_open_simul)
   6823   1.1    isaki {
   6824   1.1    isaki 	int ctl0;
   6825   1.1    isaki 	int ctl1;
   6826   1.1    isaki 	int r;
   6827   1.1    isaki 
   6828   1.1    isaki 	TEST("audioctl_open_simul");
   6829   1.1    isaki 
   6830   1.1    isaki 	ctl0 = OPEN(devaudioctl, O_RDWR);
   6831   1.1    isaki 	REQUIRED_SYS_OK(ctl0);
   6832   1.1    isaki 
   6833   1.1    isaki 	ctl1 = OPEN(devaudioctl, O_RDWR);
   6834   1.1    isaki 	XP_SYS_OK(ctl1);
   6835   1.1    isaki 
   6836   1.1    isaki 	r = CLOSE(ctl0);
   6837   1.1    isaki 	XP_SYS_EQ(0, r);
   6838   1.1    isaki 
   6839   1.1    isaki 	r = CLOSE(ctl1);
   6840   1.1    isaki 	XP_SYS_EQ(0, r);
   6841   1.1    isaki }
   6842   1.1    isaki 
   6843   1.1    isaki /*
   6844   1.4    isaki  * /dev/audioctl can be opened by other user who opens /dev/audioctl,
   6845   1.4    isaki  * /dev/audioctl can be opened by other user who opens /dev/audio,
   6846   1.4    isaki  * /dev/audio    can be opened by other user who opens /dev/audioctl,
   6847   1.4    isaki  * regardless of multiuser mode.
   6848   1.1    isaki  */
   6849   1.1    isaki void
   6850   1.4    isaki try_audioctl_open_multiuser(const char *dev1, const char *dev2)
   6851   1.1    isaki {
   6852   1.1    isaki 	int fd1;
   6853   1.1    isaki 	int fd2;
   6854   1.1    isaki 	int r;
   6855   1.1    isaki 	uid_t ouid;
   6856   1.1    isaki 
   6857   1.1    isaki 	/*
   6858   1.1    isaki 	 * At first, open dev1 as root.
   6859   1.1    isaki 	 * And then open dev2 as unprivileged user.
   6860   1.1    isaki 	 */
   6861   1.1    isaki 
   6862   1.1    isaki 	fd1 = OPEN(dev1, O_RDWR);
   6863   1.1    isaki 	REQUIRED_SYS_OK(fd1);
   6864   1.1    isaki 
   6865   1.1    isaki 	ouid = GETUID();
   6866   1.1    isaki 	r = SETEUID(1);
   6867   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   6868   1.1    isaki 
   6869   1.1    isaki 	fd2 = OPEN(dev2, O_RDWR);
   6870   1.1    isaki 	XP_SYS_OK(fd2);
   6871   1.1    isaki 
   6872   1.1    isaki 	/* Close */
   6873   1.1    isaki 	r = CLOSE(fd2);
   6874   1.1    isaki 	XP_SYS_EQ(0, r);
   6875   1.1    isaki 
   6876   1.1    isaki 	r = SETEUID(ouid);
   6877   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   6878   1.1    isaki 
   6879   1.1    isaki 	r = CLOSE(fd1);
   6880   1.1    isaki 	XP_SYS_EQ(0, r);
   6881   1.1    isaki }
   6882   1.1    isaki /*
   6883   1.1    isaki  * This is a wrapper for audioctl_open_multiuser.
   6884   1.1    isaki  * XXX XP_* macros are not compatible with on-error-goto, we need try-catch...
   6885   1.1    isaki  */
   6886   1.1    isaki void
   6887   1.4    isaki test_audioctl_open_multiuser(bool multiuser,
   6888   1.4    isaki 	const char *dev1, const char *dev2)
   6889   1.1    isaki {
   6890   1.1    isaki 	char mibname[32];
   6891   1.1    isaki 	bool oldval;
   6892   1.1    isaki 	size_t oldlen;
   6893   1.1    isaki 	int r;
   6894   1.1    isaki 
   6895   1.1    isaki 	if (netbsd < 8 && multiuser == 1) {
   6896   1.1    isaki 		XP_SKIP("multiuser is not supported");
   6897   1.1    isaki 		return;
   6898   1.1    isaki 	}
   6899   1.1    isaki 	if (netbsd < 9) {
   6900   1.1    isaki 		/* NetBSD8 has no way (difficult) to determine device name */
   6901   1.1    isaki 		XP_SKIP("NetBSD8 cannot determine device name");
   6902   1.1    isaki 		return;
   6903   1.1    isaki 	}
   6904   1.1    isaki 	if (geteuid() != 0) {
   6905   1.1    isaki 		XP_SKIP("This test must be priviledged user");
   6906   1.1    isaki 		return;
   6907   1.1    isaki 	}
   6908   1.1    isaki 
   6909   1.1    isaki 	/* Get current multiuser mode (and save it) */
   6910   1.1    isaki 	snprintf(mibname, sizeof(mibname), "hw.%s.multiuser", devicename);
   6911   1.1    isaki 	oldlen = sizeof(oldval);
   6912   1.1    isaki 	r = SYSCTLBYNAME(mibname, &oldval, &oldlen, NULL, 0);
   6913   1.1    isaki 	REQUIRED_SYS_EQ(0, r);
   6914   1.1    isaki 	DPRINTF("  > multiuser=%d\n", oldval);
   6915   1.1    isaki 
   6916   1.1    isaki 	/* Change if necessary */
   6917   1.1    isaki 	if (oldval != multiuser) {
   6918   1.4    isaki 		r = SYSCTLBYNAME(mibname, NULL, NULL, &multiuser,
   6919   1.4    isaki 		    sizeof(multiuser));
   6920   1.1    isaki 		REQUIRED_SYS_EQ(0, r);
   6921   1.1    isaki 		DPRINTF("  > new multiuser=%d\n", multiuser);
   6922   1.1    isaki 	}
   6923   1.1    isaki 
   6924   1.1    isaki 	/* Do test */
   6925   1.4    isaki 	try_audioctl_open_multiuser(dev1, dev2);
   6926   1.1    isaki 
   6927   1.1    isaki 	/* Restore multiuser mode */
   6928   1.4    isaki 	if (oldval != multiuser) {
   6929   1.1    isaki 		DPRINTF("  > restore multiuser to %d\n", oldval);
   6930   1.1    isaki 		r = SYSCTLBYNAME(mibname, NULL, NULL, &oldval, sizeof(oldval));
   6931   1.1    isaki 		XP_SYS_EQ(0, r);
   6932   1.1    isaki 	}
   6933   1.1    isaki }
   6934   1.1    isaki DEF(audioctl_open_multiuser0_audio1) {
   6935   1.1    isaki 	TEST("audioctl_open_multiuser0_audio1");
   6936   1.4    isaki 	test_audioctl_open_multiuser(false, devaudio, devaudioctl);
   6937   1.1    isaki }
   6938   1.1    isaki DEF(audioctl_open_multiuser1_audio1) {
   6939   1.1    isaki 	TEST("audioctl_open_multiuser1_audio1");
   6940   1.4    isaki 	test_audioctl_open_multiuser(true, devaudio, devaudioctl);
   6941   1.1    isaki }
   6942   1.1    isaki DEF(audioctl_open_multiuser0_audio2) {
   6943   1.1    isaki 	TEST("audioctl_open_multiuser0_audio2");
   6944   1.4    isaki 	test_audioctl_open_multiuser(false, devaudioctl, devaudio);
   6945   1.1    isaki }
   6946   1.1    isaki DEF(audioctl_open_multiuser1_audio2) {
   6947   1.1    isaki 	TEST("audioctl_open_multiuser1_audio2");
   6948   1.4    isaki 	test_audioctl_open_multiuser(true, devaudioctl, devaudio);
   6949   1.1    isaki }
   6950   1.1    isaki DEF(audioctl_open_multiuser0_audioctl) {
   6951   1.1    isaki 	TEST("audioctl_open_multiuser0_audioctl");
   6952   1.4    isaki 	test_audioctl_open_multiuser(false, devaudioctl, devaudioctl);
   6953   1.1    isaki }
   6954   1.1    isaki DEF(audioctl_open_multiuser1_audioctl) {
   6955   1.1    isaki 	TEST("audioctl_open_multiuser1_audioctl");
   6956   1.4    isaki 	test_audioctl_open_multiuser(true, devaudioctl, devaudioctl);
   6957   1.1    isaki }
   6958   1.1    isaki 
   6959   1.1    isaki /*
   6960   1.1    isaki  * /dev/audioctl cannot be read/written regardless of its open mode.
   6961   1.1    isaki  */
   6962   1.1    isaki void
   6963   1.1    isaki test_audioctl_rw(int openmode)
   6964   1.1    isaki {
   6965   1.1    isaki 	char buf[1];
   6966   1.1    isaki 	int fd;
   6967   1.1    isaki 	int r;
   6968   1.1    isaki 
   6969   1.1    isaki 	TEST("audioctl_rw_%s", openmode_str[openmode] + 2);
   6970   1.1    isaki 
   6971   1.1    isaki 	fd = OPEN(devaudioctl, openmode);
   6972   1.1    isaki 	REQUIRED_SYS_OK(fd);
   6973   1.1    isaki 
   6974   1.1    isaki 	if (mode2play(openmode)) {
   6975   1.1    isaki 		r = WRITE(fd, buf, sizeof(buf));
   6976   1.1    isaki 		XP_SYS_NG(ENODEV, r);
   6977   1.1    isaki 	}
   6978   1.1    isaki 
   6979   1.1    isaki 	if (mode2rec(openmode)) {
   6980   1.1    isaki 		r = READ(fd, buf, sizeof(buf));
   6981   1.1    isaki 		XP_SYS_NG(ENODEV, r);
   6982   1.1    isaki 	}
   6983   1.1    isaki 
   6984   1.1    isaki 	r = CLOSE(fd);
   6985   1.1    isaki 	XP_SYS_EQ(0, r);
   6986   1.1    isaki }
   6987   1.1    isaki DEF(audioctl_rw_RDONLY)	{ test_audioctl_rw(O_RDONLY); }
   6988   1.1    isaki DEF(audioctl_rw_WRONLY)	{ test_audioctl_rw(O_WRONLY); }
   6989   1.1    isaki DEF(audioctl_rw_RDWR)	{ test_audioctl_rw(O_RDWR); }
   6990   1.1    isaki 
   6991   1.1    isaki /*
   6992   1.1    isaki  * poll(2) for /dev/audioctl should never raise.
   6993   1.1    isaki  * I'm not sure about consistency between poll(2) and kqueue(2) but
   6994   1.1    isaki  * anyway I follow it.
   6995   1.1    isaki  * XXX Omit checking each openmode
   6996   1.1    isaki  */
   6997   1.1    isaki DEF(audioctl_poll)
   6998   1.1    isaki {
   6999   1.1    isaki 	struct pollfd pfd;
   7000   1.1    isaki 	int fd;
   7001   1.1    isaki 	int r;
   7002   1.1    isaki 
   7003   1.1    isaki 	TEST("audioctl_poll");
   7004   1.1    isaki 
   7005   1.1    isaki 	fd = OPEN(devaudioctl, O_WRONLY);
   7006   1.1    isaki 	REQUIRED_SYS_OK(fd);
   7007   1.1    isaki 
   7008   1.1    isaki 	pfd.fd = fd;
   7009   1.1    isaki 	pfd.events = POLLOUT;
   7010   1.1    isaki 	r = POLL(&pfd, 1, 100);
   7011   1.1    isaki 	XP_SYS_EQ(0, r);
   7012   1.1    isaki 	XP_EQ(0, pfd.revents);
   7013   1.1    isaki 
   7014   1.1    isaki 	r = CLOSE(fd);
   7015   1.1    isaki 	XP_SYS_EQ(0, r);
   7016   1.1    isaki }
   7017   1.1    isaki 
   7018   1.1    isaki /*
   7019   1.1    isaki  * kqueue(2) for /dev/audioctl fails.
   7020   1.1    isaki  * I'm not sure about consistency between poll(2) and kqueue(2) but
   7021   1.1    isaki  * anyway I follow it.
   7022   1.1    isaki  * XXX Omit checking each openmode
   7023   1.1    isaki  */
   7024   1.1    isaki DEF(audioctl_kqueue)
   7025   1.1    isaki {
   7026   1.1    isaki 	struct kevent kev;
   7027   1.1    isaki 	int fd;
   7028   1.1    isaki 	int kq;
   7029   1.1    isaki 	int r;
   7030   1.1    isaki 
   7031   1.1    isaki 	TEST("audioctl_kqueue");
   7032   1.1    isaki 
   7033   1.1    isaki 	fd = OPEN(devaudioctl, O_WRONLY);
   7034   1.1    isaki 	REQUIRED_SYS_OK(fd);
   7035   1.1    isaki 
   7036   1.1    isaki 	kq = KQUEUE();
   7037   1.1    isaki 	XP_SYS_OK(kq);
   7038   1.1    isaki 
   7039   1.1    isaki 	EV_SET(&kev, fd, EVFILT_WRITE, EV_ADD, 0, 0, 0);
   7040   1.1    isaki 	r = KEVENT_SET(kq, &kev, 1);
   7041   1.1    isaki 	/*
   7042   1.1    isaki 	 * NetBSD7 has a bug.  It looks to wanted to treat it as successful
   7043   1.1    isaki 	 * but returned 1(== EPERM).
   7044   1.1    isaki 	 * On NetBSD9, I decided to return ENODEV.
   7045   1.1    isaki 	 */
   7046   1.1    isaki 	if (netbsd < 8) {
   7047   1.1    isaki 		XP_SYS_NG(1/*EPERM*/, r);
   7048   1.1    isaki 	} else {
   7049   1.1    isaki 		XP_SYS_NG(ENODEV, r);
   7050   1.1    isaki 	}
   7051   1.1    isaki 
   7052   1.1    isaki 	r = CLOSE(fd);
   7053   1.1    isaki 	XP_SYS_EQ(0, r);
   7054   1.1    isaki }
   7055   1.1    isaki 
   7056   1.1    isaki 
   7057   1.1    isaki /*
   7058   1.1    isaki  * This table is processed by t_audio.awk!
   7059   1.1    isaki  * Keep /^\tENT(testname),/ format in order to add to atf.
   7060   1.1    isaki  */
   7061   1.1    isaki #define ENT(x) { #x, test__ ## x }
   7062   1.1    isaki struct testentry testtable[] = {
   7063   1.1    isaki 	ENT(open_mode_RDONLY),
   7064   1.1    isaki 	ENT(open_mode_WRONLY),
   7065   1.1    isaki 	ENT(open_mode_RDWR),
   7066   1.1    isaki 	ENT(open_audio_RDONLY),
   7067   1.1    isaki 	ENT(open_audio_WRONLY),
   7068   1.1    isaki 	ENT(open_audio_RDWR),
   7069   1.1    isaki 	ENT(open_sound_RDONLY),
   7070   1.1    isaki 	ENT(open_sound_WRONLY),
   7071   1.1    isaki 	ENT(open_sound_RDWR),
   7072   1.1    isaki 	ENT(open_audioctl_RDONLY),
   7073   1.1    isaki 	ENT(open_audioctl_WRONLY),
   7074   1.1    isaki 	ENT(open_audioctl_RDWR),
   7075   1.1    isaki 	ENT(open_sound_sticky),
   7076   1.1    isaki 	ENT(open_audioctl_sticky),
   7077   1.1    isaki 	ENT(open_simul_RDONLY_RDONLY),
   7078   1.1    isaki 	ENT(open_simul_RDONLY_WRONLY),
   7079   1.1    isaki 	ENT(open_simul_RDONLY_RDWR),
   7080   1.1    isaki 	ENT(open_simul_WRONLY_RDONLY),
   7081   1.1    isaki 	ENT(open_simul_WRONLY_WRONLY),
   7082   1.1    isaki 	ENT(open_simul_WRONLY_RDWR),
   7083   1.1    isaki 	ENT(open_simul_RDWR_RDONLY),
   7084   1.1    isaki 	ENT(open_simul_RDWR_WRONLY),
   7085   1.1    isaki 	ENT(open_simul_RDWR_RDWR),
   7086   1.1    isaki /**/	ENT(open_multiuser_0),		// XXX TODO sysctl
   7087   1.1    isaki /**/	ENT(open_multiuser_1),		// XXX TODO sysctl
   7088   1.1    isaki 	ENT(write_PLAY_ALL),
   7089   1.1    isaki 	ENT(write_PLAY),
   7090   1.1    isaki 	ENT(read),
   7091   1.1    isaki 	ENT(rept_write),
   7092   1.1    isaki 	ENT(rept_read),
   7093   1.1    isaki 	ENT(rdwr_fallback_RDONLY),
   7094   1.1    isaki 	ENT(rdwr_fallback_WRONLY),
   7095   1.1    isaki 	ENT(rdwr_fallback_RDWR),
   7096   1.1    isaki 	ENT(rdwr_two_RDONLY_RDONLY),
   7097   1.1    isaki 	ENT(rdwr_two_RDONLY_WRONLY),
   7098   1.1    isaki 	ENT(rdwr_two_RDONLY_RDWR),
   7099   1.1    isaki 	ENT(rdwr_two_WRONLY_RDONLY),
   7100   1.1    isaki 	ENT(rdwr_two_WRONLY_WRONLY),
   7101   1.1    isaki 	ENT(rdwr_two_WRONLY_RDWR),
   7102   1.1    isaki 	ENT(rdwr_two_RDWR_RDONLY),
   7103   1.1    isaki 	ENT(rdwr_two_RDWR_WRONLY),
   7104   1.1    isaki 	ENT(rdwr_two_RDWR_RDWR),
   7105   1.1    isaki 	ENT(rdwr_simul),
   7106   1.1    isaki 	ENT(drain_incomplete),
   7107   1.1    isaki 	ENT(drain_pause),
   7108   1.1    isaki 	ENT(drain_onrec),
   7109   1.1    isaki /**/	ENT(mmap_mode_RDONLY_NONE),	// XXX rump doesn't supprot mmap
   7110   1.1    isaki /**/	ENT(mmap_mode_RDONLY_READ),	// XXX rump doesn't supprot mmap
   7111   1.1    isaki /**/	ENT(mmap_mode_RDONLY_WRITE),	// XXX rump doesn't supprot mmap
   7112   1.1    isaki /**/	ENT(mmap_mode_RDONLY_READWRITE),// XXX rump doesn't supprot mmap
   7113   1.1    isaki /**/	ENT(mmap_mode_WRONLY_NONE),	// XXX rump doesn't supprot mmap
   7114   1.1    isaki /**/	ENT(mmap_mode_WRONLY_READ),	// XXX rump doesn't supprot mmap
   7115   1.1    isaki /**/	ENT(mmap_mode_WRONLY_WRITE),	// XXX rump doesn't supprot mmap
   7116   1.1    isaki /**/	ENT(mmap_mode_WRONLY_READWRITE),// XXX rump doesn't supprot mmap
   7117   1.1    isaki /**/	ENT(mmap_mode_RDWR_NONE),	// XXX rump doesn't supprot mmap
   7118   1.1    isaki /**/	ENT(mmap_mode_RDWR_READ),	// XXX rump doesn't supprot mmap
   7119   1.1    isaki /**/	ENT(mmap_mode_RDWR_WRITE),	// XXX rump doesn't supprot mmap
   7120   1.1    isaki /**/	ENT(mmap_mode_RDWR_READWRITE),	// XXX rump doesn't supprot mmap
   7121  1.25    isaki /**/	ENT(mmap_len_0),		// XXX rump doesn't supprot mmap
   7122  1.25    isaki /**/	ENT(mmap_len_1),		// XXX rump doesn't supprot mmap
   7123  1.25    isaki /**/	ENT(mmap_len_2),		// XXX rump doesn't supprot mmap
   7124  1.25    isaki /**/	ENT(mmap_len_3),		// XXX rump doesn't supprot mmap
   7125  1.25    isaki /**/	ENT(mmap_len_4),		// XXX rump doesn't supprot mmap
   7126  1.25    isaki /**/	ENT(mmap_len_5),		// XXX rump doesn't supprot mmap
   7127  1.25    isaki /**/	ENT(mmap_len_6),		// XXX rump doesn't supprot mmap
   7128  1.25    isaki /**/	ENT(mmap_len_7),		// XXX rump doesn't supprot mmap
   7129  1.25    isaki /**/	ENT(mmap_len_8),		// XXX rump doesn't supprot mmap
   7130   1.1    isaki /**/	ENT(mmap_twice),		// XXX rump doesn't supprot mmap
   7131   1.1    isaki /**/	ENT(mmap_multi),		// XXX rump doesn't supprot mmap
   7132   1.1    isaki 	ENT(poll_mode_RDONLY_IN),
   7133   1.1    isaki 	ENT(poll_mode_RDONLY_OUT),
   7134   1.1    isaki 	ENT(poll_mode_RDONLY_INOUT),
   7135   1.1    isaki 	ENT(poll_mode_WRONLY_IN),
   7136   1.1    isaki 	ENT(poll_mode_WRONLY_OUT),
   7137   1.1    isaki 	ENT(poll_mode_WRONLY_INOUT),
   7138   1.1    isaki 	ENT(poll_mode_RDWR_IN),
   7139   1.1    isaki 	ENT(poll_mode_RDWR_OUT),
   7140   1.1    isaki 	ENT(poll_mode_RDWR_INOUT),
   7141   1.1    isaki 	ENT(poll_out_empty),
   7142   1.1    isaki 	ENT(poll_out_full),
   7143   1.1    isaki 	ENT(poll_out_hiwat),
   7144   1.1    isaki /**/	ENT(poll_out_unpause),		// XXX does not seem to work on rump
   7145   1.1    isaki /**/	ENT(poll_out_simul),		// XXX does not seem to work on rump
   7146  1.10    isaki 	ENT(poll_in_open_audio),
   7147  1.10    isaki 	ENT(poll_in_open_sound),
   7148  1.10    isaki 	ENT(poll_in_open_audioctl),
   7149   1.1    isaki 	ENT(poll_in_simul),
   7150   1.1    isaki 	ENT(kqueue_mode_RDONLY_READ),
   7151   1.1    isaki 	ENT(kqueue_mode_RDONLY_WRITE),
   7152   1.1    isaki 	ENT(kqueue_mode_WRONLY_READ),
   7153   1.1    isaki 	ENT(kqueue_mode_WRONLY_WRITE),
   7154   1.1    isaki 	ENT(kqueue_mode_RDWR_READ),
   7155   1.1    isaki 	ENT(kqueue_mode_RDWR_WRITE),
   7156   1.1    isaki 	ENT(kqueue_empty),
   7157   1.1    isaki 	ENT(kqueue_full),
   7158   1.1    isaki 	ENT(kqueue_hiwat),
   7159   1.1    isaki /**/	ENT(kqueue_unpause),		// XXX does not seem to work on rump
   7160   1.1    isaki /**/	ENT(kqueue_simul),		// XXX does not seem to work on rump
   7161   1.1    isaki 	ENT(ioctl_while_write),
   7162   1.1    isaki 	ENT(FIOASYNC_reset),
   7163   1.1    isaki 	ENT(FIOASYNC_play_signal),
   7164   1.1    isaki 	ENT(FIOASYNC_rec_signal),
   7165   1.1    isaki /**/	ENT(FIOASYNC_multi),		// XXX does not seem to work on rump
   7166   1.1    isaki 	ENT(AUDIO_WSEEK),
   7167   1.1    isaki 	ENT(AUDIO_SETFD_RDONLY),
   7168   1.1    isaki 	ENT(AUDIO_SETFD_WRONLY),
   7169   1.1    isaki 	ENT(AUDIO_SETFD_RDWR),
   7170   1.1    isaki 	ENT(AUDIO_GETINFO_eof),
   7171   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_0),
   7172   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_1),
   7173   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_2),
   7174   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_3),
   7175   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_4),
   7176   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_5),
   7177   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_6),
   7178   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_7),
   7179   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDONLY_8),
   7180   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_0),
   7181   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_1),
   7182   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_2),
   7183   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_3),
   7184   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_4),
   7185   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_5),
   7186   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_6),
   7187   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_7),
   7188   1.1    isaki 	ENT(AUDIO_SETINFO_mode_WRONLY_8),
   7189   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_0),
   7190   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_1),
   7191   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_2),
   7192   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_3),
   7193   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_4),
   7194   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_5),
   7195   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_6),
   7196   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_7),
   7197   1.1    isaki 	ENT(AUDIO_SETINFO_mode_RDWR_8),
   7198   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_RDONLY_0),
   7199   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_RDONLY_1),
   7200   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_WRONLY_0),
   7201   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_WRONLY_1),
   7202   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_WRONLY_2),
   7203   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_WRONLY_3),
   7204   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_RDWR_0),
   7205   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_RDWR_1),
   7206   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_RDWR_2),
   7207   1.1    isaki 	ENT(AUDIO_SETINFO_params_set_RDWR_3),
   7208   1.1    isaki 	ENT(AUDIO_SETINFO_params_simul),
   7209   1.5    isaki 	ENT(AUDIO_SETINFO_channels),
   7210   1.5    isaki 	ENT(AUDIO_SETINFO_sample_rate),
   7211   1.5    isaki 	ENT(AUDIO_SETINFO_sample_rate_0),
   7212   1.1    isaki 	ENT(AUDIO_SETINFO_pause_RDONLY_0),
   7213   1.1    isaki 	ENT(AUDIO_SETINFO_pause_RDONLY_1),
   7214   1.1    isaki 	ENT(AUDIO_SETINFO_pause_WRONLY_0),
   7215   1.1    isaki 	ENT(AUDIO_SETINFO_pause_WRONLY_1),
   7216   1.1    isaki 	ENT(AUDIO_SETINFO_pause_WRONLY_2),
   7217   1.1    isaki 	ENT(AUDIO_SETINFO_pause_WRONLY_3),
   7218   1.1    isaki 	ENT(AUDIO_SETINFO_pause_RDWR_0),
   7219   1.1    isaki 	ENT(AUDIO_SETINFO_pause_RDWR_1),
   7220   1.1    isaki 	ENT(AUDIO_SETINFO_pause_RDWR_2),
   7221   1.1    isaki 	ENT(AUDIO_SETINFO_pause_RDWR_3),
   7222   1.1    isaki 	ENT(AUDIO_SETINFO_gain),
   7223  1.14    isaki 	ENT(AUDIO_SETINFO_gain_balance),
   7224   1.1    isaki 	ENT(AUDIO_GETENC_range),
   7225   1.1    isaki 	ENT(AUDIO_GETENC_error),
   7226   1.1    isaki 	ENT(AUDIO_ERROR_RDONLY),
   7227   1.1    isaki 	ENT(AUDIO_ERROR_WRONLY),
   7228   1.1    isaki 	ENT(AUDIO_ERROR_RDWR),
   7229  1.19    isaki 	ENT(AUDIO_GETIOFFS_one_RDONLY),
   7230  1.19    isaki 	ENT(AUDIO_GETIOFFS_one_WRONLY),
   7231  1.19    isaki 	ENT(AUDIO_GETIOFFS_one_RDWR),
   7232  1.19    isaki 	ENT(AUDIO_GETOOFFS_one_RDONLY),
   7233  1.19    isaki 	ENT(AUDIO_GETOOFFS_one_WRONLY),
   7234  1.19    isaki 	ENT(AUDIO_GETOOFFS_one_RDWR),
   7235  1.19    isaki 	ENT(AUDIO_GETOOFFS_wrap_RDONLY),
   7236  1.19    isaki 	ENT(AUDIO_GETOOFFS_wrap_WRONLY),
   7237  1.19    isaki 	ENT(AUDIO_GETOOFFS_wrap_RDWR),
   7238  1.19    isaki 	ENT(AUDIO_GETOOFFS_flush_RDONLY),
   7239  1.19    isaki 	ENT(AUDIO_GETOOFFS_flush_WRONLY),
   7240  1.19    isaki 	ENT(AUDIO_GETOOFFS_flush_RDWR),
   7241  1.19    isaki 	ENT(AUDIO_GETOOFFS_set_RDONLY),
   7242  1.19    isaki 	ENT(AUDIO_GETOOFFS_set_WRONLY),
   7243  1.19    isaki 	ENT(AUDIO_GETOOFFS_set_RDWR),
   7244   1.1    isaki 	ENT(audioctl_open_1_RDONLY_RDONLY),
   7245   1.1    isaki 	ENT(audioctl_open_1_RDONLY_RWONLY),
   7246   1.1    isaki 	ENT(audioctl_open_1_RDONLY_RDWR),
   7247   1.1    isaki 	ENT(audioctl_open_1_WRONLY_RDONLY),
   7248   1.1    isaki 	ENT(audioctl_open_1_WRONLY_RWONLY),
   7249   1.1    isaki 	ENT(audioctl_open_1_WRONLY_RDWR),
   7250   1.1    isaki 	ENT(audioctl_open_1_RDWR_RDONLY),
   7251   1.1    isaki 	ENT(audioctl_open_1_RDWR_RWONLY),
   7252   1.1    isaki 	ENT(audioctl_open_1_RDWR_RDWR),
   7253   1.1    isaki 	ENT(audioctl_open_2_RDONLY_RDONLY),
   7254   1.1    isaki 	ENT(audioctl_open_2_RDONLY_RWONLY),
   7255   1.1    isaki 	ENT(audioctl_open_2_RDONLY_RDWR),
   7256   1.1    isaki 	ENT(audioctl_open_2_WRONLY_RDONLY),
   7257   1.1    isaki 	ENT(audioctl_open_2_WRONLY_RWONLY),
   7258   1.1    isaki 	ENT(audioctl_open_2_WRONLY_RDWR),
   7259   1.1    isaki 	ENT(audioctl_open_2_RDWR_RDONLY),
   7260   1.1    isaki 	ENT(audioctl_open_2_RDWR_RWONLY),
   7261   1.1    isaki 	ENT(audioctl_open_2_RDWR_RDWR),
   7262   1.1    isaki 	ENT(audioctl_open_simul),
   7263   1.1    isaki /**/	ENT(audioctl_open_multiuser0_audio1),	// XXX TODO sysctl
   7264   1.1    isaki /**/	ENT(audioctl_open_multiuser1_audio1),	// XXX TODO sysctl
   7265   1.1    isaki /**/	ENT(audioctl_open_multiuser0_audio2),	// XXX TODO sysctl
   7266   1.1    isaki /**/	ENT(audioctl_open_multiuser1_audio2),	// XXX TODO sysctl
   7267   1.1    isaki /**/	ENT(audioctl_open_multiuser0_audioctl),	// XXX TODO sysctl
   7268   1.1    isaki /**/	ENT(audioctl_open_multiuser1_audioctl),	// XXX TODO sysctl
   7269   1.1    isaki 	ENT(audioctl_rw_RDONLY),
   7270   1.1    isaki 	ENT(audioctl_rw_WRONLY),
   7271   1.1    isaki 	ENT(audioctl_rw_RDWR),
   7272   1.1    isaki 	ENT(audioctl_poll),
   7273   1.1    isaki 	ENT(audioctl_kqueue),
   7274   1.2   martin 	{.name = NULL},
   7275   1.1    isaki };
   7276