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opmbell.c revision 1.14
      1  1.14  christos /*	$NetBSD: opmbell.c,v 1.14 2005/12/11 12:19:37 christos Exp $	*/
      2   1.1       oki 
      3   1.1       oki /*
      4   1.1       oki  * Copyright (c) 1995 MINOURA Makoto, Takuya Harakawa.
      5   1.1       oki  * All rights reserved.
      6   1.1       oki  *
      7   1.1       oki  * Redistribution and use in source and binary forms, with or without
      8   1.1       oki  * modification, are permitted provided that the following conditions
      9   1.1       oki  * are met:
     10   1.1       oki  * 1. Redistributions of source code must retain the above copyright
     11   1.1       oki  *    notice, this list of conditions and the following disclaimer.
     12   1.1       oki  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1       oki  *    notice, this list of conditions and the following disclaimer in the
     14   1.1       oki  *    documentation and/or other materials provided with the distribution.
     15   1.1       oki  * 3. All advertising materials mentioning features or use of this software
     16   1.1       oki  *    must display the following acknowledgement:
     17   1.1       oki  *	This product includes software developed by MINOURA Makoto,
     18   1.1       oki  *	Takuya Harakawa.
     19   1.1       oki  * 4. Neither the name of the authors may be used to endorse or promote
     20   1.1       oki  *    products derived from this software without specific prior written
     21   1.1       oki  *    permission.
     22   1.1       oki  *
     23   1.1       oki  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24   1.1       oki  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25   1.1       oki  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26   1.1       oki  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27   1.1       oki  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28   1.1       oki  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29   1.1       oki  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30   1.1       oki  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31   1.1       oki  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32   1.1       oki  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33   1.1       oki  * SUCH DAMAGE.
     34   1.1       oki  *
     35   1.1       oki  */
     36   1.1       oki 
     37   1.1       oki /*
     38   1.1       oki  * bell device driver
     39   1.1       oki  */
     40  1.11     lukem 
     41  1.11     lukem #include <sys/cdefs.h>
     42  1.14  christos __KERNEL_RCSID(0, "$NetBSD: opmbell.c,v 1.14 2005/12/11 12:19:37 christos Exp $");
     43   1.1       oki 
     44   1.1       oki #include "bell.h"
     45   1.1       oki #if NBELL > 0
     46   1.1       oki 
     47   1.1       oki #if NBELL > 1
     48   1.1       oki #undef NBELL
     49   1.1       oki #define NBELL 1
     50   1.1       oki #endif
     51   1.1       oki 
     52   1.1       oki #include <sys/param.h>
     53   1.1       oki #include <sys/errno.h>
     54   1.1       oki #include <sys/uio.h>
     55   1.1       oki #include <sys/device.h>
     56   1.1       oki #include <sys/malloc.h>
     57   1.1       oki #include <sys/file.h>
     58   1.1       oki #include <sys/systm.h>
     59   1.7   thorpej #include <sys/callout.h>
     60   1.5       oki #include <sys/conf.h>
     61  1.10  jdolecek #include <sys/event.h>
     62   1.1       oki 
     63  1.12   minoura #include <machine/opmbellio.h>
     64  1.12   minoura 
     65   1.1       oki #include <x68k/x68k/iodevice.h>
     66  1.12   minoura #include <x68k/dev/opmvar.h>
     67   1.1       oki 
     68   1.6   minoura /* In opm.c. */
     69  1.13       chs void opm_set_volume(int, int);
     70  1.13       chs void opm_set_key(int, int);
     71  1.13       chs void opm_set_voice(int, struct opm_voice *);
     72  1.13       chs void opm_key_on(u_char);
     73  1.13       chs void opm_key_off(u_char);
     74   1.6   minoura 
     75  1.13       chs static u_int bell_pitchtokey(u_int);
     76  1.13       chs static void bell_timeout(void *);
     77   1.1       oki 
     78   1.1       oki struct bell_softc {
     79   1.1       oki 	int sc_flags;
     80   1.1       oki 	u_char ch;
     81   1.1       oki 	u_char volume;
     82   1.1       oki 	u_int pitch;
     83   1.1       oki 	u_int msec;
     84   1.1       oki 	u_int key;
     85   1.1       oki };
     86   1.1       oki 
     87   1.1       oki struct bell_softc *bell_softc;
     88   1.1       oki 
     89   1.7   thorpej struct callout bell_ch = CALLOUT_INITIALIZER;
     90   1.7   thorpej 
     91   1.1       oki static struct opm_voice vtab[NBELL];
     92   1.1       oki 
     93  1.12   minoura static struct opm_voice bell_voice = DEFAULT_BELL_VOICE;
     94  1.12   minoura 
     95   1.1       oki /* sc_flags values */
     96   1.1       oki #define	BELLF_READ	0x01
     97   1.1       oki #define	BELLF_WRITE	0x02
     98   1.1       oki #define	BELLF_ALIVE	0x04
     99   1.1       oki #define	BELLF_OPEN	0x08
    100   1.1       oki #define BELLF_OUT	0x10
    101   1.1       oki #define BELLF_ON	0x20
    102   1.1       oki 
    103   1.1       oki #define UNIT(x)		minor(x)
    104   1.1       oki 
    105  1.13       chs void bell_on(struct bell_softc *);
    106  1.13       chs void bell_off(struct bell_softc *);
    107  1.13       chs void opm_bell(void);
    108  1.13       chs void opm_bell_on(void);
    109  1.13       chs void opm_bell_off(void);
    110  1.13       chs int opm_bell_setup(struct bell_info *);
    111  1.13       chs int bellmstohz(int);
    112   1.5       oki 
    113  1.13       chs void bellattach(int);
    114   1.9   gehenna 
    115   1.9   gehenna dev_type_open(bellopen);
    116   1.9   gehenna dev_type_close(bellclose);
    117   1.9   gehenna dev_type_ioctl(bellioctl);
    118   1.9   gehenna 
    119   1.9   gehenna const struct cdevsw bell_cdevsw = {
    120   1.9   gehenna 	bellopen, bellclose, noread, nowrite, bellioctl,
    121  1.10  jdolecek 	nostop, notty, nopoll, nommap, nokqfilter,
    122   1.9   gehenna };
    123   1.5       oki 
    124  1.13       chs void
    125  1.13       chs bellattach(int num)
    126   1.1       oki {
    127   1.1       oki 	char *mem;
    128  1.13       chs 	u_long size;
    129  1.13       chs 	struct bell_softc *sc;
    130   1.1       oki 	int unit;
    131   1.1       oki 
    132   1.1       oki 	if (num <= 0)
    133   1.1       oki 		return;
    134   1.1       oki 	size = num * sizeof(struct bell_softc);
    135   1.1       oki 	mem = malloc(size, M_DEVBUF, M_NOWAIT);
    136   1.1       oki 	if (mem == NULL) {
    137   1.4  christos 		printf("WARNING: no memory for opm bell\n");
    138   1.1       oki 		return;
    139   1.1       oki 	}
    140   1.8       wiz 	memset(mem, 0, size);
    141   1.1       oki 	bell_softc = (struct bell_softc *)mem;
    142   1.1       oki 
    143   1.1       oki 	for (unit = 0; unit < num; unit++) {
    144   1.1       oki 		sc = &bell_softc[unit];
    145   1.1       oki 		sc->sc_flags = BELLF_ALIVE;
    146   1.1       oki 		sc->ch = BELL_CHANNEL;
    147   1.1       oki 		sc->volume = BELL_VOLUME;
    148   1.1       oki 		sc->pitch = BELL_PITCH;
    149   1.1       oki 		sc->msec = BELL_DURATION;
    150   1.1       oki 		sc->key = bell_pitchtokey(sc->pitch);
    151   1.1       oki 
    152   1.1       oki 		/* setup initial voice parameter */
    153   1.8       wiz 		memcpy(&vtab[unit], &bell_voice, sizeof(bell_voice));
    154   1.1       oki 		opm_set_voice(sc->ch, &vtab[unit]);
    155   1.1       oki 
    156   1.4  christos 		printf("bell%d: YM2151 OPM bell emulation.\n", unit);
    157   1.1       oki 	}
    158   1.1       oki }
    159   1.1       oki 
    160  1.13       chs int
    161  1.14  christos bellopen(dev_t dev, int flags, int mode, struct lwp *l)
    162   1.1       oki {
    163  1.13       chs 	int unit = UNIT(dev);
    164  1.13       chs 	struct bell_softc *sc = &bell_softc[unit];
    165   1.1       oki 
    166   1.1       oki 	if (unit >= NBELL || !(sc->sc_flags & BELLF_ALIVE))
    167   1.1       oki 		return ENXIO;
    168   1.1       oki 
    169   1.1       oki 	if (sc->sc_flags & BELLF_OPEN)
    170   1.1       oki 		return EBUSY;
    171   1.1       oki 
    172   1.1       oki 	sc->sc_flags |= BELLF_OPEN;
    173   1.1       oki 	sc->sc_flags |= (flags & (FREAD | FWRITE));
    174   1.1       oki 
    175   1.1       oki 	return 0;
    176   1.1       oki }
    177   1.1       oki 
    178  1.13       chs int
    179  1.14  christos bellclose(dev_t dev, int flags, int mode, struct lwp *l)
    180   1.1       oki {
    181   1.1       oki 	int unit = UNIT(dev);
    182   1.1       oki 	struct bell_softc *sc = &bell_softc[unit];
    183   1.1       oki 
    184   1.1       oki 	sc->sc_flags &= ~BELLF_OPEN;
    185   1.5       oki 	return 0;
    186   1.1       oki }
    187   1.1       oki 
    188  1.13       chs int
    189  1.14  christos bellioctl(dev_t dev, u_long cmd, caddr_t addr, int flag, struct lwp *l)
    190   1.1       oki {
    191   1.1       oki 	int unit = UNIT(dev);
    192   1.1       oki 	struct bell_softc *sc = &bell_softc[unit];
    193   1.1       oki 
    194   1.1       oki 	switch (cmd) {
    195   1.1       oki 	case BELLIOCGPARAM:
    196   1.1       oki 	  {
    197   1.1       oki 	      struct bell_info *bp = (struct bell_info *)addr;
    198   1.1       oki 	      if (!(sc->sc_flags & FREAD))
    199   1.1       oki 		  return EBADF;
    200   1.1       oki 
    201   1.1       oki 	      bp->volume = sc->volume;
    202   1.1       oki 	      bp->pitch = sc->pitch;
    203   1.1       oki 	      bp->msec = sc->msec;
    204   1.1       oki 	      break;
    205   1.1       oki 	  }
    206   1.1       oki 
    207   1.1       oki 	case BELLIOCSPARAM:
    208   1.1       oki 	  {
    209   1.1       oki 	      struct bell_info *bp = (struct bell_info *)addr;
    210   1.1       oki 
    211   1.1       oki 	      if (!(sc->sc_flags & FWRITE))
    212   1.1       oki 		  return EBADF;
    213   1.1       oki 
    214   1.1       oki 	      return opm_bell_setup(bp);
    215   1.1       oki 	  }
    216   1.1       oki 
    217   1.1       oki 	case BELLIOCGVOICE:
    218   1.1       oki 	    if (!(sc->sc_flags & FREAD))
    219   1.1       oki 		return EBADF;
    220   1.1       oki 
    221   1.1       oki 	    if (addr == NULL)
    222   1.1       oki 		return EFAULT;
    223   1.1       oki 
    224   1.8       wiz 	    memcpy(addr, &vtab[unit], sizeof(struct opm_voice));
    225   1.1       oki 	    break;
    226   1.1       oki 
    227   1.1       oki 	case BELLIOCSVOICE:
    228   1.1       oki 	    if (!(sc->sc_flags & FWRITE))
    229   1.1       oki 		return EBADF;
    230   1.1       oki 
    231   1.1       oki 	    if (addr == NULL)
    232   1.1       oki 		return EFAULT;
    233   1.1       oki 
    234   1.8       wiz 	    memcpy(&vtab[unit], addr, sizeof(struct opm_voice));
    235   1.1       oki 	    opm_set_voice(sc->ch, &vtab[unit]);
    236   1.1       oki 	    break;
    237   1.1       oki 
    238   1.1       oki 	default:
    239   1.1       oki 	    return EINVAL;
    240   1.1       oki 	}
    241   1.1       oki 	return 0;
    242   1.1       oki }
    243   1.1       oki 
    244   1.1       oki /*
    245   1.1       oki  * The next table is used for calculating KeyCode/KeyFraction pair
    246   1.1       oki  * from frequency.
    247   1.1       oki  */
    248   1.1       oki 
    249   1.1       oki static u_int note[] = {
    250  1.13       chs 	0x0800, 0x0808, 0x0810, 0x081c,
    251  1.13       chs 	0x0824, 0x0830, 0x0838, 0x0844,
    252  1.13       chs 	0x084c, 0x0858, 0x0860, 0x086c,
    253  1.13       chs 	0x0874, 0x0880, 0x0888, 0x0890,
    254  1.13       chs 	0x089c, 0x08a4, 0x08b0, 0x08b8,
    255  1.13       chs 	0x08c4, 0x08cc, 0x08d8, 0x08e0,
    256  1.13       chs 	0x08ec, 0x08f4, 0x0900, 0x0908,
    257  1.13       chs 	0x0910, 0x091c, 0x0924, 0x092c,
    258  1.13       chs 	0x0938, 0x0940, 0x0948, 0x0954,
    259  1.13       chs 	0x095c, 0x0968, 0x0970, 0x0978,
    260  1.13       chs 	0x0984, 0x098c, 0x0994, 0x09a0,
    261  1.13       chs 	0x09a8, 0x09b4, 0x09bc, 0x09c4,
    262  1.13       chs 	0x09d0, 0x09d8, 0x09e0, 0x09ec,
    263  1.13       chs 	0x09f4, 0x0a00, 0x0a08, 0x0a10,
    264  1.13       chs 	0x0a18, 0x0a20, 0x0a28, 0x0a30,
    265  1.13       chs 	0x0a38, 0x0a44, 0x0a4c, 0x0a54,
    266  1.13       chs 	0x0a5c, 0x0a64, 0x0a6c, 0x0a74,
    267  1.13       chs 	0x0a80, 0x0a88, 0x0a90, 0x0a98,
    268  1.13       chs 	0x0aa0, 0x0aa8, 0x0ab0, 0x0ab8,
    269  1.13       chs 	0x0ac4, 0x0acc, 0x0ad4, 0x0adc,
    270  1.13       chs 	0x0ae4, 0x0aec, 0x0af4, 0x0c00,
    271  1.13       chs 	0x0c08, 0x0c10, 0x0c18, 0x0c20,
    272  1.13       chs 	0x0c28, 0x0c30, 0x0c38, 0x0c40,
    273  1.13       chs 	0x0c48, 0x0c50, 0x0c58, 0x0c60,
    274  1.13       chs 	0x0c68, 0x0c70, 0x0c78, 0x0c84,
    275  1.13       chs 	0x0c8c, 0x0c94, 0x0c9c, 0x0ca4,
    276  1.13       chs 	0x0cac, 0x0cb4, 0x0cbc, 0x0cc4,
    277  1.13       chs 	0x0ccc, 0x0cd4, 0x0cdc, 0x0ce4,
    278  1.13       chs 	0x0cec, 0x0cf4, 0x0d00, 0x0d04,
    279  1.13       chs 	0x0d0c, 0x0d14, 0x0d1c, 0x0d24,
    280  1.13       chs 	0x0d2c, 0x0d34, 0x0d3c, 0x0d44,
    281  1.13       chs 	0x0d4c, 0x0d54, 0x0d5c, 0x0d64,
    282  1.13       chs 	0x0d6c, 0x0d74, 0x0d7c, 0x0d80,
    283  1.13       chs 	0x0d88, 0x0d90, 0x0d98, 0x0da0,
    284  1.13       chs 	0x0da8, 0x0db0, 0x0db8, 0x0dc0,
    285  1.13       chs 	0x0dc8, 0x0dd0, 0x0dd8, 0x0de0,
    286  1.13       chs 	0x0de8, 0x0df0, 0x0df8, 0x0e00,
    287  1.13       chs 	0x0e04, 0x0e0c, 0x0e14, 0x0e1c,
    288  1.13       chs 	0x0e24, 0x0e28, 0x0e30, 0x0e38,
    289  1.13       chs 	0x0e40, 0x0e48, 0x0e50, 0x0e54,
    290  1.13       chs 	0x0e5c, 0x0e64, 0x0e6c, 0x0e74,
    291  1.13       chs 	0x0e7c, 0x0e80, 0x0e88, 0x0e90,
    292  1.13       chs 	0x0e98, 0x0ea0, 0x0ea8, 0x0eac,
    293  1.13       chs 	0x0eb4, 0x0ebc, 0x0ec4, 0x0ecc,
    294  1.13       chs 	0x0ed4, 0x0ed8, 0x0ee0, 0x0ee8,
    295  1.13       chs 	0x0ef0, 0x0ef8, 0x1000, 0x1004,
    296  1.13       chs 	0x100c, 0x1014, 0x1018, 0x1020,
    297  1.13       chs 	0x1028, 0x1030, 0x1034, 0x103c,
    298  1.13       chs 	0x1044, 0x104c, 0x1050, 0x1058,
    299  1.13       chs 	0x1060, 0x1064, 0x106c, 0x1074,
    300  1.13       chs 	0x107c, 0x1080, 0x1088, 0x1090,
    301  1.13       chs 	0x1098, 0x109c, 0x10a4, 0x10ac,
    302  1.13       chs 	0x10b0, 0x10b8, 0x10c0, 0x10c8,
    303  1.13       chs 	0x10cc, 0x10d4, 0x10dc, 0x10e4,
    304  1.13       chs 	0x10e8, 0x10f0, 0x10f8, 0x1100,
    305  1.13       chs 	0x1104, 0x110c, 0x1110, 0x1118,
    306  1.13       chs 	0x1120, 0x1124, 0x112c, 0x1134,
    307  1.13       chs 	0x1138, 0x1140, 0x1148, 0x114c,
    308  1.13       chs 	0x1154, 0x1158, 0x1160, 0x1168,
    309  1.13       chs 	0x116c, 0x1174, 0x117c, 0x1180,
    310  1.13       chs 	0x1188, 0x1190, 0x1194, 0x119c,
    311  1.13       chs 	0x11a4, 0x11a8, 0x11b0, 0x11b4,
    312  1.13       chs 	0x11bc, 0x11c4, 0x11c8, 0x11d0,
    313  1.13       chs 	0x11d8, 0x11dc, 0x11e4, 0x11ec,
    314  1.13       chs 	0x11f0, 0x11f8, 0x1200, 0x1204,
    315  1.13       chs 	0x120c, 0x1210, 0x1218, 0x121c,
    316  1.13       chs 	0x1224, 0x1228, 0x1230, 0x1238,
    317  1.13       chs 	0x123c, 0x1244, 0x1248, 0x1250,
    318  1.13       chs 	0x1254, 0x125c, 0x1260, 0x1268,
    319  1.13       chs 	0x1270, 0x1274, 0x127c, 0x1280,
    320  1.13       chs 	0x1288, 0x128c, 0x1294, 0x129c,
    321  1.13       chs 	0x12a0, 0x12a8, 0x12ac, 0x12b4,
    322  1.13       chs 	0x12b8, 0x12c0, 0x12c4, 0x12cc,
    323  1.13       chs 	0x12d4, 0x12d8, 0x12e0, 0x12e4,
    324  1.13       chs 	0x12ec, 0x12f0, 0x12f8, 0x1400,
    325  1.13       chs 	0x1404, 0x1408, 0x1410, 0x1414,
    326  1.13       chs 	0x141c, 0x1420, 0x1428, 0x142c,
    327  1.13       chs 	0x1434, 0x1438, 0x1440, 0x1444,
    328  1.13       chs 	0x1448, 0x1450, 0x1454, 0x145c,
    329  1.13       chs 	0x1460, 0x1468, 0x146c, 0x1474,
    330  1.13       chs 	0x1478, 0x1480, 0x1484, 0x1488,
    331  1.13       chs 	0x1490, 0x1494, 0x149c, 0x14a0,
    332  1.13       chs 	0x14a8, 0x14ac, 0x14b4, 0x14b8,
    333  1.13       chs 	0x14c0, 0x14c4, 0x14c8, 0x14d0,
    334  1.13       chs 	0x14d4, 0x14dc, 0x14e0, 0x14e8,
    335  1.13       chs 	0x14ec, 0x14f4, 0x14f8, 0x1500,
    336  1.13       chs 	0x1504, 0x1508, 0x1510, 0x1514,
    337  1.13       chs 	0x1518, 0x1520, 0x1524, 0x1528,
    338  1.13       chs 	0x1530, 0x1534, 0x1538, 0x1540,
    339  1.13       chs 	0x1544, 0x154c, 0x1550, 0x1554,
    340  1.13       chs 	0x155c, 0x1560, 0x1564, 0x156c,
    341  1.13       chs 	0x1570, 0x1574, 0x157c, 0x1580,
    342  1.13       chs 	0x1588, 0x158c, 0x1590, 0x1598,
    343  1.13       chs 	0x159c, 0x15a0, 0x15a8, 0x15ac,
    344  1.13       chs 	0x15b0, 0x15b8, 0x15bc, 0x15c4,
    345  1.13       chs 	0x15c8, 0x15cc, 0x15d4, 0x15d8,
    346  1.13       chs 	0x15dc, 0x15e4, 0x15e8, 0x15ec,
    347  1.13       chs 	0x15f4, 0x15f8, 0x1600, 0x1604,
    348  1.13       chs 	0x1608, 0x160c, 0x1614, 0x1618,
    349  1.13       chs 	0x161c, 0x1620, 0x1628, 0x162c,
    350  1.13       chs 	0x1630, 0x1638, 0x163c, 0x1640,
    351  1.13       chs 	0x1644, 0x164c, 0x1650, 0x1654,
    352  1.13       chs 	0x165c, 0x1660, 0x1664, 0x1668,
    353  1.13       chs 	0x1670, 0x1674, 0x1678, 0x1680,
    354  1.13       chs 	0x1684, 0x1688, 0x168c, 0x1694,
    355  1.13       chs 	0x1698, 0x169c, 0x16a0, 0x16a8,
    356  1.13       chs 	0x16ac, 0x16b0, 0x16b8, 0x16bc,
    357  1.13       chs 	0x16c0, 0x16c4, 0x16cc, 0x16d0,
    358  1.13       chs 	0x16d4, 0x16dc, 0x16e0, 0x16e4,
    359  1.13       chs 	0x16e8, 0x16f0, 0x16f4, 0x16f8,
    360   1.1       oki };
    361   1.1       oki 
    362  1.13       chs static u_int
    363  1.13       chs bell_pitchtokey(u_int pitch)
    364   1.1       oki {
    365  1.13       chs 	int i, oct;
    366  1.13       chs 	u_int key;
    367   1.1       oki 
    368  1.13       chs 	i = 16 * pitch / 440;
    369  1.13       chs 	for (oct = -1; i > 0; i >>= 1, oct++)
    370  1.13       chs 		;
    371   1.1       oki 
    372  1.13       chs 	i  = (pitch * 16 - (440 * (1 << oct))) / (1 << oct);
    373  1.13       chs 	key = (oct << 12) + note[i];
    374   1.1       oki 
    375  1.13       chs 	return key;
    376   1.1       oki }
    377   1.1       oki 
    378   1.1       oki /*
    379   1.1       oki  * The next table is a little trikcy table of volume factors.
    380   1.1       oki  * Its values have been calculated as table[i] = -15 * log10(i/100)
    381   1.1       oki  * with an obvious exception for i = 0; This log-table converts a linear
    382   1.1       oki  * volume-scaling (0...100) to a logarithmic scaling as present in the
    383   1.1       oki  * OPM chips. so: Volume 50% = 6 db.
    384   1.1       oki  */
    385   1.1       oki 
    386   1.1       oki static u_char vol_table[] = {
    387  1.13       chs 	0x7f, 0x35, 0x2d, 0x28, 0x25, 0x22, 0x20, 0x1e,
    388  1.13       chs 	0x1d, 0x1b, 0x1a, 0x19, 0x18, 0x17, 0x16, 0x15,
    389  1.13       chs 	0x15, 0x14, 0x13, 0x13, 0x12, 0x12, 0x11, 0x11,
    390  1.13       chs 	0x10, 0x10, 0x0f, 0x0f, 0x0e, 0x0e, 0x0d, 0x0d,
    391  1.13       chs 	0x0d, 0x0c, 0x0c, 0x0c, 0x0b, 0x0b, 0x0b, 0x0a,
    392  1.13       chs 	0x0a, 0x0a, 0x0a, 0x09, 0x09, 0x09, 0x08, 0x08,
    393  1.13       chs 	0x08, 0x08, 0x08, 0x07, 0x07, 0x07, 0x07, 0x06,
    394  1.13       chs 	0x06, 0x06, 0x06, 0x06, 0x05, 0x05, 0x05, 0x05,
    395  1.13       chs 	0x05, 0x04, 0x04, 0x04, 0x04, 0x04, 0x04, 0x03,
    396  1.13       chs 	0x03, 0x03, 0x03, 0x03, 0x03, 0x03, 0x02, 0x02,
    397  1.13       chs 	0x02, 0x02, 0x02, 0x02, 0x02, 0x01, 0x01, 0x01,
    398  1.13       chs 	0x01, 0x01, 0x01, 0x01, 0x00, 0x00, 0x00, 0x00,
    399  1.13       chs 	0x00, 0x00, 0x00, 0x00, 0x00,
    400   1.1       oki };
    401   1.1       oki 
    402  1.13       chs void
    403  1.13       chs bell_on(struct bell_softc *sc)
    404   1.1       oki {
    405  1.13       chs 	int sps;
    406   1.1       oki 
    407  1.13       chs 	sps = spltty();
    408  1.13       chs 	opm_set_volume(sc->ch, vol_table[sc->volume]);
    409  1.13       chs 	opm_set_key(sc->ch, sc->key);
    410  1.13       chs 	splx(sps);
    411   1.1       oki 
    412  1.13       chs 	opm_key_on(sc->ch);
    413  1.13       chs 	sc->sc_flags |= BELLF_ON;
    414   1.1       oki }
    415   1.1       oki 
    416  1.13       chs void
    417  1.13       chs bell_off(struct bell_softc *sc)
    418   1.1       oki {
    419  1.13       chs 	if (sc->sc_flags & BELLF_ON) {
    420  1.13       chs 		opm_key_off(sc->ch);
    421  1.13       chs 		sc->sc_flags &= ~BELLF_ON;
    422  1.13       chs 	}
    423   1.1       oki }
    424   1.1       oki 
    425  1.13       chs void
    426  1.13       chs opm_bell(void)
    427   1.1       oki {
    428  1.13       chs 	struct bell_softc *sc = &bell_softc[0];
    429  1.13       chs 	int ticks;
    430   1.1       oki 
    431  1.13       chs 	if (sc->msec != 0) {
    432  1.13       chs 		if (sc->sc_flags & BELLF_OUT) {
    433  1.13       chs 			bell_timeout(0);
    434  1.13       chs 		} else if (sc->sc_flags & BELLF_ON)
    435  1.13       chs 			return;
    436   1.1       oki 
    437  1.13       chs 		ticks = bellmstohz(sc->msec);
    438   1.1       oki 
    439  1.13       chs 		bell_on(sc);
    440  1.13       chs 		sc->sc_flags |= BELLF_OUT;
    441   1.1       oki 
    442  1.13       chs 		callout_reset(&bell_ch, ticks, bell_timeout, NULL);
    443  1.13       chs 	}
    444   1.1       oki }
    445   1.1       oki 
    446  1.13       chs static void
    447  1.13       chs bell_timeout(void *arg)
    448   1.1       oki {
    449  1.13       chs 	struct bell_softc *sc = &bell_softc[0];
    450   1.1       oki 
    451  1.13       chs 	sc->sc_flags &= ~BELLF_OUT;
    452  1.13       chs 	bell_off(sc);
    453  1.13       chs 	callout_stop(&bell_ch);
    454   1.1       oki }
    455   1.1       oki 
    456  1.13       chs void
    457  1.13       chs opm_bell_on(void)
    458   1.1       oki {
    459  1.13       chs 	struct bell_softc *sc = &bell_softc[0];
    460  1.13       chs 
    461  1.13       chs 	if (sc->sc_flags & BELLF_OUT)
    462  1.13       chs 		bell_timeout(0);
    463  1.13       chs 	if (sc->sc_flags & BELLF_ON)
    464  1.13       chs 		return;
    465   1.1       oki 
    466  1.13       chs 	bell_on(sc);
    467  1.13       chs }
    468   1.1       oki 
    469  1.13       chs void
    470  1.13       chs opm_bell_off(void)
    471  1.13       chs {
    472  1.13       chs 	struct bell_softc *sc = &bell_softc[0];
    473  1.13       chs 
    474  1.13       chs 	if (sc->sc_flags & BELLF_ON)
    475  1.13       chs 		bell_off(sc);
    476   1.1       oki }
    477   1.1       oki 
    478  1.13       chs int
    479  1.13       chs opm_bell_setup(struct bell_info *data)
    480   1.1       oki {
    481  1.13       chs 	struct bell_softc *sc = &bell_softc[0];
    482   1.1       oki 
    483  1.13       chs 	/* bounds check */
    484  1.13       chs 	if (data->pitch > MAXBPITCH || data->pitch < MINBPITCH ||
    485  1.13       chs 	    data->volume > MAXBVOLUME || data->msec > MAXBTIME) {
    486  1.13       chs 		return EINVAL;
    487  1.13       chs 	} else {
    488  1.13       chs 		sc->volume = data->volume;
    489  1.13       chs 		sc->pitch = data->pitch;
    490  1.13       chs 		sc->msec = data->msec;
    491  1.13       chs 		sc->key = bell_pitchtokey(data->pitch);
    492  1.13       chs 	}
    493  1.13       chs 	return 0;
    494   1.1       oki }
    495   1.1       oki 
    496  1.13       chs int
    497  1.13       chs bellmstohz(int m)
    498  1.13       chs {
    499  1.13       chs 	extern int hz;
    500  1.13       chs 	int h = m;
    501  1.13       chs 
    502  1.13       chs 	if (h > 0) {
    503  1.13       chs 		h = h * hz / 1000;
    504  1.13       chs 		if (h == 0)
    505  1.13       chs 			h = 1000 / hz;
    506  1.13       chs 	}
    507  1.13       chs 	return h;
    508   1.1       oki }
    509   1.1       oki 
    510   1.1       oki #endif
    511