dma.c revision 1.26 1 1.26 tsutsui /* $NetBSD: dma.c,v 1.26 2010/04/12 12:28:59 tsutsui Exp $ */
2 1.1 leo
3 1.1 leo /*
4 1.1 leo * Copyright (c) 1995 Leo Weppelman.
5 1.1 leo * All rights reserved.
6 1.1 leo *
7 1.1 leo * Redistribution and use in source and binary forms, with or without
8 1.1 leo * modification, are permitted provided that the following conditions
9 1.1 leo * are met:
10 1.1 leo * 1. Redistributions of source code must retain the above copyright
11 1.1 leo * notice, this list of conditions and the following disclaimer.
12 1.1 leo * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 leo * notice, this list of conditions and the following disclaimer in the
14 1.1 leo * documentation and/or other materials provided with the distribution.
15 1.1 leo *
16 1.1 leo * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.1 leo * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.1 leo * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.1 leo * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.1 leo * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.1 leo * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.1 leo * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.1 leo * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.1 leo * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 1.1 leo * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 leo */
27 1.1 leo
28 1.1 leo /*
29 1.1 leo * This file contains special code dealing with the DMA interface
30 1.1 leo * on the Atari ST.
31 1.1 leo *
32 1.1 leo * The DMA circuitry requires some special treatment for the peripheral
33 1.1 leo * devices which make use of the ST's DMA feature (the hard disk and the
34 1.1 leo * floppy drive).
35 1.1 leo * All devices using DMA need mutually exclusive access and can follow some
36 1.1 leo * standard pattern which will be provided in this file.
37 1.1 leo *
38 1.1 leo * The file contains the following entry points:
39 1.1 leo *
40 1.2 leo * st_dmagrab: ensure exclusive access to the DMA circuitry
41 1.2 leo * st_dmafree: free exclusive access to the DMA circuitry
42 1.2 leo * st_dmawanted: somebody is queued waiting for DMA-access
43 1.1 leo * dmaint: DMA interrupt routine, switches to the current driver
44 1.4 leo * st_dmaaddr_set: specify 24 bit RAM address
45 1.4 leo * st_dmaaddr_get: get address of last DMA-op
46 1.2 leo * st_dmacomm: program DMA, flush FIFO first
47 1.1 leo */
48 1.16 lukem
49 1.16 lukem #include <sys/cdefs.h>
50 1.26 tsutsui __KERNEL_RCSID(0, "$NetBSD: dma.c,v 1.26 2010/04/12 12:28:59 tsutsui Exp $");
51 1.1 leo
52 1.1 leo #include <sys/param.h>
53 1.1 leo #include <sys/systm.h>
54 1.1 leo #include <sys/kernel.h>
55 1.14 leo #include <sys/proc.h>
56 1.3 leo #include <sys/queue.h>
57 1.12 leo
58 1.1 leo #include <machine/cpu.h>
59 1.1 leo #include <machine/iomap.h>
60 1.1 leo #include <machine/dma.h>
61 1.23 tsutsui #include <machine/intr.h>
62 1.12 leo
63 1.1 leo #define NDMA_DEV 10 /* Max 2 floppy's, 8 hard-disks */
64 1.3 leo typedef struct dma_entry {
65 1.3 leo TAILQ_ENTRY(dma_entry) entries; /* List pointers */
66 1.6 leo void (*call_func)(void *); /* Call when lock granted */
67 1.6 leo void (*int_func)(void *); /* Call on DMA interrupt */
68 1.6 leo void *softc; /* Arg. to int_func */
69 1.6 leo int *lock_stat; /* status of DMA lock */
70 1.3 leo } DMA_ENTRY;
71 1.3 leo
72 1.3 leo /*
73 1.3 leo * Preallocated entries. An allocator seem an overkill here.
74 1.3 leo */
75 1.3 leo static DMA_ENTRY dmatable[NDMA_DEV]; /* preallocated entries */
76 1.3 leo
77 1.3 leo /*
78 1.3 leo * Heads of free and active lists:
79 1.3 leo */
80 1.3 leo static TAILQ_HEAD(freehead, dma_entry) dma_free;
81 1.3 leo static TAILQ_HEAD(acthead, dma_entry) dma_active;
82 1.3 leo
83 1.3 leo static int must_init = 1; /* Must initialize */
84 1.1 leo
85 1.19 dsl int cdmaint(void *, int);
86 1.6 leo
87 1.19 dsl static void st_dma_init(void);
88 1.1 leo
89 1.6 leo static void
90 1.22 cegger st_dma_init(void)
91 1.3 leo {
92 1.26 tsutsui int i;
93 1.3 leo
94 1.3 leo TAILQ_INIT(&dma_free);
95 1.3 leo TAILQ_INIT(&dma_active);
96 1.3 leo
97 1.3 leo for(i = 0; i < NDMA_DEV; i++)
98 1.3 leo TAILQ_INSERT_HEAD(&dma_free, &dmatable[i], entries);
99 1.12 leo
100 1.13 leo if (intr_establish(7, USER_VEC, 0, cdmaint, NULL) == NULL)
101 1.15 provos panic("st_dma_init: Can't establish interrupt");
102 1.3 leo }
103 1.3 leo
104 1.6 leo int
105 1.26 tsutsui st_dmagrab(dma_farg int_func, dma_farg call_func, void *softc, int *lock_stat,
106 1.26 tsutsui int rcaller)
107 1.1 leo {
108 1.26 tsutsui int s;
109 1.26 tsutsui DMA_ENTRY *req;
110 1.1 leo
111 1.26 tsutsui if (must_init) {
112 1.12 leo st_dma_init();
113 1.3 leo must_init = 0;
114 1.3 leo }
115 1.3 leo *lock_stat = DMA_LOCK_REQ;
116 1.1 leo
117 1.26 tsutsui s = splhigh();
118 1.3 leo
119 1.3 leo /*
120 1.3 leo * Create a request...
121 1.3 leo */
122 1.26 tsutsui if (dma_free.tqh_first == NULL)
123 1.15 provos panic("st_dmagrab: Too many outstanding requests");
124 1.3 leo req = dma_free.tqh_first;
125 1.3 leo TAILQ_REMOVE(&dma_free, dma_free.tqh_first, entries);
126 1.3 leo req->call_func = call_func;
127 1.3 leo req->int_func = int_func;
128 1.3 leo req->softc = softc;
129 1.3 leo req->lock_stat = lock_stat;
130 1.3 leo TAILQ_INSERT_TAIL(&dma_active, req, entries);
131 1.3 leo
132 1.26 tsutsui if (dma_active.tqh_first != req) {
133 1.14 leo if (call_func == NULL) {
134 1.14 leo do {
135 1.14 leo tsleep(&dma_active, PRIBIO, "dmalck", 0);
136 1.14 leo } while (*req->lock_stat != DMA_LOCK_GRANT);
137 1.26 tsutsui splx(s);
138 1.26 tsutsui return 1;
139 1.14 leo }
140 1.26 tsutsui splx(s);
141 1.26 tsutsui return 0;
142 1.1 leo }
143 1.26 tsutsui splx(s);
144 1.3 leo
145 1.3 leo /*
146 1.3 leo * We're at the head of the queue, ergo: we got the lock.
147 1.3 leo */
148 1.3 leo *lock_stat = DMA_LOCK_GRANT;
149 1.3 leo
150 1.26 tsutsui if (rcaller || (call_func == NULL)) {
151 1.2 leo /*
152 1.2 leo * Just return to caller immediately without going
153 1.2 leo * through 'call_func' first.
154 1.2 leo */
155 1.26 tsutsui return 1;
156 1.2 leo }
157 1.2 leo
158 1.1 leo (*call_func)(softc); /* Call followup function */
159 1.26 tsutsui return 0;
160 1.1 leo }
161 1.1 leo
162 1.2 leo void
163 1.20 dsl st_dmafree(void *softc, int *lock_stat)
164 1.1 leo {
165 1.26 tsutsui int s;
166 1.26 tsutsui DMA_ENTRY *req;
167 1.1 leo
168 1.26 tsutsui s = splhigh();
169 1.3 leo
170 1.3 leo /*
171 1.3 leo * Some validity checks first.
172 1.3 leo */
173 1.26 tsutsui if ((req = dma_active.tqh_first) == NULL)
174 1.15 provos panic("st_dmafree: empty active queue");
175 1.26 tsutsui if (req->softc != softc)
176 1.11 christos printf("Caller of st_dmafree is not lock-owner!\n");
177 1.3 leo
178 1.3 leo /*
179 1.3 leo * Clear lock status, move request from active to free queue.
180 1.3 leo */
181 1.3 leo *lock_stat = 0;
182 1.3 leo TAILQ_REMOVE(&dma_active, req, entries);
183 1.3 leo TAILQ_INSERT_HEAD(&dma_free, req, entries);
184 1.3 leo
185 1.26 tsutsui if ((req = dma_active.tqh_first) != NULL) {
186 1.3 leo *req->lock_stat = DMA_LOCK_GRANT;
187 1.14 leo
188 1.14 leo if (req->call_func == NULL)
189 1.18 christos wakeup((void *)&dma_active);
190 1.14 leo else {
191 1.26 tsutsui /*
192 1.26 tsutsui * Call next request through softint handler.
193 1.26 tsutsui * This avoids spl-conflicts.
194 1.26 tsutsui */
195 1.26 tsutsui add_sicallback((si_farg)req->call_func, req->softc, 0);
196 1.14 leo }
197 1.1 leo }
198 1.26 tsutsui splx(s);
199 1.1 leo }
200 1.1 leo
201 1.2 leo int
202 1.22 cegger st_dmawanted(void)
203 1.2 leo {
204 1.26 tsutsui
205 1.26 tsutsui return dma_active.tqh_first->entries.tqe_next != NULL;
206 1.2 leo }
207 1.2 leo
208 1.13 leo int
209 1.21 dsl cdmaint(void *unused, int sr)
210 1.21 dsl /* sr: sr at time of interrupt */
211 1.1 leo {
212 1.26 tsutsui dma_farg int_func;
213 1.26 tsutsui void *softc;
214 1.4 leo
215 1.26 tsutsui if (dma_active.tqh_first != NULL) {
216 1.13 leo /*
217 1.13 leo * Due to the logic of the ST-DMA chip, it is not possible to
218 1.13 leo * check for stray interrupts here...
219 1.13 leo */
220 1.4 leo int_func = dma_active.tqh_first->int_func;
221 1.4 leo softc = dma_active.tqh_first->softc;
222 1.25 tsutsui add_sicallback((si_farg)int_func, softc, 0);
223 1.13 leo return 1;
224 1.4 leo }
225 1.13 leo return 0;
226 1.1 leo }
227 1.1 leo
228 1.2 leo /*
229 1.2 leo * Setup address for DMA-transfer.
230 1.2 leo * Note: The order _is_ important!
231 1.2 leo */
232 1.2 leo void
233 1.26 tsutsui st_dmaaddr_set(void *address)
234 1.1 leo {
235 1.26 tsutsui u_long ad = (u_long)address;
236 1.1 leo
237 1.1 leo DMA->dma_addr[AD_LOW ] = (ad ) & 0xff;
238 1.1 leo DMA->dma_addr[AD_MID ] = (ad >> 8) & 0xff;
239 1.1 leo DMA->dma_addr[AD_HIGH] = (ad >>16) & 0xff;
240 1.1 leo }
241 1.1 leo
242 1.2 leo /*
243 1.4 leo * Get address from DMA unit.
244 1.4 leo */
245 1.4 leo u_long
246 1.22 cegger st_dmaaddr_get(void)
247 1.4 leo {
248 1.26 tsutsui u_long ad = 0;
249 1.4 leo
250 1.4 leo ad = (DMA->dma_addr[AD_LOW ] & 0xff);
251 1.4 leo ad |= (DMA->dma_addr[AD_MID ] & 0xff) << 8;
252 1.4 leo ad |= (DMA->dma_addr[AD_HIGH] & 0xff) <<16;
253 1.26 tsutsui return ad;
254 1.4 leo }
255 1.4 leo
256 1.4 leo /*
257 1.2 leo * Program the DMA-controller to transfer 'nblk' blocks of 512 bytes.
258 1.2 leo * The DMA_WRBIT trick flushes the FIFO before doing DMA.
259 1.2 leo */
260 1.2 leo void
261 1.21 dsl st_dmacomm(int mode, int nblk)
262 1.1 leo {
263 1.26 tsutsui
264 1.1 leo DMA->dma_mode = mode;
265 1.2 leo DMA->dma_mode = mode ^ DMA_WRBIT;
266 1.1 leo DMA->dma_mode = mode;
267 1.4 leo DMA->dma_data = nblk;
268 1.5 leo delay(2); /* Needed for Falcon */
269 1.4 leo DMA->dma_mode = DMA_SCREG | (mode & DMA_WRBIT);
270 1.1 leo }
271