opm.c revision 1.11 1 1.11 lukem /* $NetBSD: opm.c,v 1.11 2003/07/15 01:44:52 lukem Exp $ */
2 1.1 oki
3 1.1 oki /*
4 1.1 oki * Copyright (c) 1995 Masanobu Saitoh, 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 Masanobu Saitoh.
18 1.1 oki * 4. Neither the name of the University nor of the Laboratory may be used
19 1.1 oki * to endorse or promote products derived from this software without
20 1.1 oki * specific prior written permission.
21 1.1 oki *
22 1.1 oki * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 oki * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 oki * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 oki * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 oki * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 oki * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 oki * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 oki * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 oki * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 oki * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 oki * SUCH DAMAGE.
33 1.1 oki */
34 1.1 oki
35 1.4 minoura /*
36 1.4 minoura * Temporary implementation: not fully bus.h'fied.
37 1.4 minoura */
38 1.11 lukem
39 1.11 lukem #include <sys/cdefs.h>
40 1.11 lukem __KERNEL_RCSID(0, "$NetBSD: opm.c,v 1.11 2003/07/15 01:44:52 lukem Exp $");
41 1.1 oki
42 1.1 oki #include <sys/param.h>
43 1.1 oki #include <sys/systm.h>
44 1.4 minoura #include <sys/device.h>
45 1.4 minoura
46 1.4 minoura #include <machine/bus.h>
47 1.4 minoura #include <machine/cpu.h>
48 1.4 minoura
49 1.4 minoura #include <arch/x68k/dev/opmreg.h>
50 1.4 minoura #include <arch/x68k/dev/intiovar.h>
51 1.1 oki
52 1.4 minoura struct opm_softc {
53 1.4 minoura struct device sc_dev;
54 1.4 minoura
55 1.4 minoura bus_space_tag_t sc_bst;
56 1.4 minoura bus_space_handle_t sc_bht;
57 1.4 minoura u_int8_t sc_regs[0x100];
58 1.4 minoura struct opm_voice sc_vdata[8];
59 1.4 minoura };
60 1.4 minoura
61 1.4 minoura struct opm_softc *opm0; /* XXX */
62 1.4 minoura
63 1.4 minoura static int opm_match __P((struct device *, struct cfdata *, void *));
64 1.4 minoura static void opm_attach __P((struct device *, struct device *, void *));
65 1.4 minoura
66 1.9 thorpej CFATTACH_DECL(opm, sizeof (struct opm_softc),
67 1.10 thorpej opm_match, opm_attach, NULL, NULL);
68 1.4 minoura
69 1.4 minoura static int
70 1.4 minoura opm_match(parent, cf, aux)
71 1.4 minoura struct device *parent;
72 1.4 minoura struct cfdata *cf;
73 1.4 minoura void *aux;
74 1.4 minoura {
75 1.4 minoura struct intio_attach_args *ia = aux;
76 1.4 minoura
77 1.4 minoura if (strcmp(ia->ia_name, "opm") != 0)
78 1.4 minoura return 0;
79 1.4 minoura
80 1.4 minoura if (ia->ia_addr == INTIOCF_ADDR_DEFAULT)
81 1.4 minoura ia->ia_addr = 0xe90000;
82 1.4 minoura ia->ia_size = 0x2000;
83 1.4 minoura if (intio_map_allocate_region (parent, ia, INTIO_MAP_TESTONLY))
84 1.4 minoura return 0;
85 1.4 minoura
86 1.4 minoura return 1;
87 1.4 minoura }
88 1.4 minoura
89 1.4 minoura static void
90 1.4 minoura opm_attach(parent, self, aux)
91 1.4 minoura struct device *parent, *self;
92 1.4 minoura void *aux;
93 1.4 minoura {
94 1.4 minoura struct opm_softc *sc = (struct opm_softc *)self;
95 1.4 minoura struct intio_attach_args *ia = aux;
96 1.4 minoura int r;
97 1.4 minoura
98 1.4 minoura printf ("\n");
99 1.4 minoura ia->ia_size = 0x2000;
100 1.4 minoura r = intio_map_allocate_region (parent, ia, INTIO_MAP_ALLOCATE);
101 1.4 minoura #ifdef DIAGNOSTIC
102 1.4 minoura if (r)
103 1.4 minoura panic ("IO map for OPM corruption??");
104 1.4 minoura #endif
105 1.4 minoura
106 1.4 minoura sc->sc_bst = ia->ia_bst;
107 1.4 minoura r = bus_space_map (sc->sc_bst,
108 1.4 minoura ia->ia_addr, ia->ia_size,
109 1.4 minoura BUS_SPACE_MAP_SHIFTED,
110 1.4 minoura &sc->sc_bht);
111 1.4 minoura #ifdef DIAGNOSTIC
112 1.4 minoura if (r)
113 1.4 minoura panic ("Cannot map IO space for OPM.");
114 1.4 minoura #endif
115 1.4 minoura
116 1.4 minoura if (sc->sc_dev.dv_unit == 0)
117 1.4 minoura opm0 = sc; /* XXX */
118 1.4 minoura
119 1.4 minoura return;
120 1.4 minoura }
121 1.1 oki
122 1.3 oki void opm_set_volume __P((int, int));
123 1.3 oki void opm_set_key __P((int, int));
124 1.3 oki void opm_set_voice __P((int, struct opm_voice *));
125 1.3 oki void opm_set_voice_sub __P((int, struct opm_operator *));
126 1.3 oki __inline static void writeopm __P((int, int));
127 1.3 oki __inline static int readopm __P((int));
128 1.3 oki void opm_key_on __P((u_char));
129 1.3 oki void opm_key_off __P((u_char));
130 1.3 oki int opmopen __P((dev_t, int, int));
131 1.3 oki int opmclose __P((dev_t));
132 1.1 oki
133 1.3 oki __inline static void
134 1.1 oki writeopm(reg, dat)
135 1.1 oki int reg, dat;
136 1.1 oki {
137 1.4 minoura while (bus_space_read_1 (opm0->sc_bst, opm0->sc_bht, OPM_DATA) & 0x80);
138 1.4 minoura bus_space_write_1 (opm0->sc_bst, opm0->sc_bht, OPM_REG, reg);
139 1.4 minoura while (bus_space_read_1 (opm0->sc_bst, opm0->sc_bht, OPM_DATA) & 0x80);
140 1.4 minoura bus_space_write_1 (opm0->sc_bst, opm0->sc_bht, OPM_DATA, dat);
141 1.4 minoura opm0->sc_regs[reg] = dat;
142 1.1 oki }
143 1.1 oki
144 1.3 oki __inline static int
145 1.1 oki readopm(reg)
146 1.1 oki int reg;
147 1.1 oki {
148 1.4 minoura return opm0->sc_regs[reg];
149 1.1 oki }
150 1.1 oki
151 1.4 minoura #include "fd.h"
152 1.6 minoura #include "vs.h"
153 1.4 minoura #include "bell.h"
154 1.4 minoura
155 1.6 minoura #if NVS > 0
156 1.1 oki void
157 1.1 oki adpcm_chgclk(clk)
158 1.1 oki u_char clk;
159 1.1 oki {
160 1.6 minoura writeopm(0x1b, (readopm(0x1b) & ~OPM1B_CT1MSK) | clk);
161 1.1 oki }
162 1.4 minoura #endif
163 1.1 oki
164 1.4 minoura #if NFD > 0
165 1.1 oki void
166 1.1 oki fdc_force_ready(rdy)
167 1.1 oki u_char rdy;
168 1.1 oki {
169 1.5 minoura writeopm(0x1b, (readopm(0x1b) & ~OPM1B_CT2MSK) | rdy);
170 1.1 oki }
171 1.4 minoura #endif
172 1.1 oki
173 1.4 minoura #if NBELL > 0
174 1.1 oki void
175 1.1 oki opm_key_on(channel)
176 1.3 oki u_char channel;
177 1.1 oki {
178 1.4 minoura writeopm(0x08, opm0->sc_vdata[channel].sm << 3 | channel);
179 1.1 oki }
180 1.1 oki
181 1.1 oki void
182 1.1 oki opm_key_off(channel)
183 1.1 oki u_char channel;
184 1.1 oki {
185 1.1 oki writeopm(0x08, channel);
186 1.1 oki }
187 1.1 oki
188 1.1 oki void
189 1.1 oki opm_set_voice(channel, voice)
190 1.1 oki int channel;
191 1.1 oki struct opm_voice *voice;
192 1.1 oki {
193 1.7 wiz memcpy(&opm0->sc_vdata[channel], voice, sizeof(struct opm_voice));
194 1.1 oki
195 1.1 oki opm_set_voice_sub(0x40 + channel, &voice->m1);
196 1.1 oki opm_set_voice_sub(0x48 + channel, &voice->m2);
197 1.1 oki opm_set_voice_sub(0x50 + channel, &voice->c1);
198 1.1 oki opm_set_voice_sub(0x58 + channel, &voice->c2);
199 1.1 oki writeopm(0x20 + channel, 0xc0 | (voice->fb & 0x7) << 3 | (voice->con & 0x7));
200 1.1 oki }
201 1.1 oki
202 1.1 oki void
203 1.1 oki opm_set_voice_sub(reg, op)
204 1.1 oki register int reg;
205 1.1 oki struct opm_operator *op;
206 1.1 oki {
207 1.1 oki /* DT1/MUL */
208 1.1 oki writeopm(reg, (op->dt1 & 0x7) << 3 | (op->mul & 0x7));
209 1.1 oki
210 1.1 oki /* TL */
211 1.1 oki writeopm(reg + 0x20, op->tl & 0x7f);
212 1.1 oki
213 1.1 oki /* KS/AR */
214 1.1 oki writeopm(reg + 0x40, (op->ks & 0x3) << 6 | (op->ar & 0x1f));
215 1.1 oki
216 1.1 oki /* AMS/D1R */
217 1.1 oki writeopm(reg + 0x60, (op->ame & 0x1) << 7 | (op->d1r & 0x1f));
218 1.1 oki
219 1.1 oki /* DT2/D2R */
220 1.1 oki writeopm(reg + 0x80, (op->dt2 & 0x3) << 6 | (op->d2r & 0x1f));
221 1.1 oki
222 1.1 oki /* D1L/RR */
223 1.1 oki writeopm(reg + 0xa0, (op->d1l & 0xf) << 4 | (op->rr & 0xf));
224 1.1 oki }
225 1.1 oki
226 1.1 oki void
227 1.1 oki opm_set_volume(channel, volume)
228 1.1 oki int channel;
229 1.1 oki int volume;
230 1.1 oki {
231 1.1 oki int value;
232 1.1 oki
233 1.4 minoura switch (opm0->sc_vdata[channel].con) {
234 1.1 oki case 7:
235 1.4 minoura value = opm0->sc_vdata[channel].m1.tl + volume;
236 1.1 oki writeopm(0x60 + channel, ((value > 0x7f) ? 0x7f : value));
237 1.1 oki case 6:
238 1.1 oki case 5:
239 1.4 minoura value = opm0->sc_vdata[channel].m2.tl + volume;
240 1.1 oki writeopm(0x68 + channel, ((value > 0x7f) ? 0x7f : value));
241 1.1 oki case 4:
242 1.4 minoura value = opm0->sc_vdata[channel].c1.tl + volume;
243 1.1 oki writeopm(0x70 + channel, ((value > 0x7f) ? 0x7f : value));
244 1.1 oki case 3:
245 1.1 oki case 2:
246 1.1 oki case 1:
247 1.1 oki case 0:
248 1.4 minoura value = opm0->sc_vdata[channel].c2.tl + volume;
249 1.1 oki writeopm(0x78 + channel, ((value > 0x7f) ? 0x7f : value));
250 1.1 oki }
251 1.1 oki }
252 1.1 oki
253 1.1 oki void
254 1.1 oki opm_set_key(channel, tone)
255 1.1 oki int channel;
256 1.1 oki int tone;
257 1.1 oki {
258 1.1 oki writeopm(0x28 + channel, tone >> 8);
259 1.1 oki writeopm(0x30 + channel, tone & 0xff);
260 1.1 oki }
261 1.1 oki
262 1.1 oki /*ARGSUSED*/
263 1.1 oki int
264 1.1 oki opmopen(dev, flag, mode)
265 1.1 oki dev_t dev;
266 1.3 oki int flag, mode;
267 1.1 oki {
268 1.2 oki return 0;
269 1.1 oki }
270 1.1 oki
271 1.1 oki /*ARGSUSED*/
272 1.1 oki int
273 1.1 oki opmclose(dev)
274 1.1 oki dev_t dev;
275 1.1 oki {
276 1.2 oki return 0;
277 1.1 oki }
278 1.1 oki
279 1.1 oki #endif
280