asc_vsbus.c revision 1.37 1 1.37 christos /* $NetBSD: asc_vsbus.c,v 1.37 2008/03/07 16:02:43 christos Exp $ */
2 1.1 matt
3 1.1 matt /*-
4 1.1 matt * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.1 matt * All rights reserved.
6 1.1 matt *
7 1.1 matt * This code is derived from software contributed to The NetBSD Foundation
8 1.1 matt * by Charles M. Hannum.
9 1.1 matt *
10 1.1 matt * Redistribution and use in source and binary forms, with or without
11 1.1 matt * modification, are permitted provided that the following conditions
12 1.1 matt * are met:
13 1.1 matt * 1. Redistributions of source code must retain the above copyright
14 1.1 matt * notice, this list of conditions and the following disclaimer.
15 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 matt * notice, this list of conditions and the following disclaimer in the
17 1.1 matt * documentation and/or other materials provided with the distribution.
18 1.1 matt * 3. All advertising materials mentioning features or use of this software
19 1.1 matt * must display the following acknowledgement:
20 1.1 matt * This product includes software developed by the NetBSD
21 1.1 matt * Foundation, Inc. and its contributors.
22 1.1 matt * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 matt * contributors may be used to endorse or promote products derived
24 1.1 matt * from this software without specific prior written permission.
25 1.1 matt *
26 1.1 matt * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 matt * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 matt * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 matt * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 matt * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 matt * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 matt * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 matt * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 matt * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 matt * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 matt * POSSIBILITY OF SUCH DAMAGE.
37 1.1 matt */
38 1.1 matt
39 1.31 chs #include <sys/cdefs.h> /* RCS ID & Copyright macro defns */
40 1.9 ragge
41 1.37 christos __KERNEL_RCSID(0, "$NetBSD: asc_vsbus.c,v 1.37 2008/03/07 16:02:43 christos Exp $");
42 1.1 matt
43 1.31 chs #include "locators.h"
44 1.31 chs #include "opt_cputype.h"
45 1.1 matt
46 1.1 matt #include <sys/types.h>
47 1.1 matt #include <sys/param.h>
48 1.1 matt #include <sys/systm.h>
49 1.1 matt #include <sys/kernel.h>
50 1.1 matt #include <sys/errno.h>
51 1.1 matt #include <sys/ioctl.h>
52 1.1 matt #include <sys/device.h>
53 1.1 matt #include <sys/buf.h>
54 1.1 matt #include <sys/proc.h>
55 1.1 matt #include <sys/user.h>
56 1.1 matt #include <sys/reboot.h>
57 1.1 matt #include <sys/queue.h>
58 1.1 matt
59 1.1 matt #include <dev/scsipi/scsi_all.h>
60 1.1 matt #include <dev/scsipi/scsipi_all.h>
61 1.1 matt #include <dev/scsipi/scsiconf.h>
62 1.1 matt #include <dev/scsipi/scsi_message.h>
63 1.1 matt
64 1.1 matt #include <machine/bus.h>
65 1.5 matt #include <machine/vmparam.h>
66 1.1 matt
67 1.1 matt #include <dev/ic/ncr53c9xreg.h>
68 1.1 matt #include <dev/ic/ncr53c9xvar.h>
69 1.1 matt
70 1.1 matt #include <machine/cpu.h>
71 1.1 matt #include <machine/sid.h>
72 1.1 matt #include <machine/scb.h>
73 1.1 matt #include <machine/vsbus.h>
74 1.9 ragge #include <machine/clock.h> /* for SCSI ctlr ID# XXX */
75 1.1 matt
76 1.1 matt struct asc_vsbus_softc {
77 1.1 matt struct ncr53c9x_softc sc_ncr53c9x; /* Must be first */
78 1.15 matt struct evcnt sc_intrcnt; /* count interrupts */
79 1.1 matt bus_space_tag_t sc_bst; /* bus space tag */
80 1.1 matt bus_space_handle_t sc_bsh; /* bus space handle */
81 1.11 matt bus_space_handle_t sc_dirh; /* scsi direction handle */
82 1.11 matt bus_space_handle_t sc_adrh; /* scsi address handle */
83 1.4 matt bus_space_handle_t sc_ncrh; /* ncr bus space handle */
84 1.29 wiz bus_dma_tag_t sc_dmat; /* bus DMA tag */
85 1.1 matt bus_dmamap_t sc_dmamap;
86 1.34 christos void **sc_dmaaddr;
87 1.1 matt size_t *sc_dmalen;
88 1.1 matt size_t sc_dmasize;
89 1.1 matt unsigned int sc_flags;
90 1.6 matt #define ASC_FROMMEMORY 0x0001 /* Must be 1 */
91 1.6 matt #define ASC_DMAACTIVE 0x0002
92 1.4 matt #define ASC_MAPLOADED 0x0004
93 1.6 matt unsigned long sc_xfers;
94 1.1 matt };
95 1.1 matt
96 1.11 matt #define ASC_REG_KA46_ADR 0x0000
97 1.11 matt #define ASC_REG_KA46_DIR 0x000C
98 1.13 matt #define ASC_REG_KA49_ADR 0x0000
99 1.13 matt #define ASC_REG_KA49_DIR 0x0004
100 1.1 matt #define ASC_REG_NCR 0x0080
101 1.1 matt #define ASC_REG_END 0x00B0
102 1.1 matt
103 1.1 matt #define ASC_MAXXFERSIZE 65536
104 1.5 matt #define ASC_FREQUENCY 25000000
105 1.1 matt
106 1.20 matt static int asc_vsbus_match(struct device *, struct cfdata *, void *);
107 1.20 matt static void asc_vsbus_attach(struct device *, struct device *, void *);
108 1.1 matt
109 1.27 thorpej CFATTACH_DECL(asc_vsbus, sizeof(struct asc_vsbus_softc),
110 1.28 thorpej asc_vsbus_match, asc_vsbus_attach, NULL, NULL);
111 1.1 matt
112 1.1 matt /*
113 1.1 matt * Functions and the switch for the MI code
114 1.1 matt */
115 1.20 matt static u_char asc_vsbus_read_reg(struct ncr53c9x_softc *, int);
116 1.20 matt static void asc_vsbus_write_reg(struct ncr53c9x_softc *, int, u_char);
117 1.20 matt static int asc_vsbus_dma_isintr(struct ncr53c9x_softc *);
118 1.20 matt static void asc_vsbus_dma_reset(struct ncr53c9x_softc *);
119 1.20 matt static int asc_vsbus_dma_intr(struct ncr53c9x_softc *);
120 1.34 christos static int asc_vsbus_dma_setup(struct ncr53c9x_softc *, void **,
121 1.20 matt size_t *, int, size_t *);
122 1.20 matt static void asc_vsbus_dma_go(struct ncr53c9x_softc *);
123 1.20 matt static void asc_vsbus_dma_stop(struct ncr53c9x_softc *);
124 1.20 matt static int asc_vsbus_dma_isactive(struct ncr53c9x_softc *);
125 1.1 matt
126 1.1 matt static struct ncr53c9x_glue asc_vsbus_glue = {
127 1.1 matt asc_vsbus_read_reg,
128 1.1 matt asc_vsbus_write_reg,
129 1.1 matt asc_vsbus_dma_isintr,
130 1.1 matt asc_vsbus_dma_reset,
131 1.1 matt asc_vsbus_dma_intr,
132 1.1 matt asc_vsbus_dma_setup,
133 1.1 matt asc_vsbus_dma_go,
134 1.1 matt asc_vsbus_dma_stop,
135 1.1 matt asc_vsbus_dma_isactive,
136 1.4 matt NULL,
137 1.1 matt };
138 1.1 matt
139 1.12 matt static u_int8_t asc_attached; /* can't have more than one asc */
140 1.12 matt
141 1.1 matt static int
142 1.1 matt asc_vsbus_match( struct device *parent, struct cfdata *cf, void *aux)
143 1.1 matt {
144 1.1 matt struct vsbus_attach_args *va = aux;
145 1.12 matt volatile u_int8_t *ncr_regs;
146 1.1 matt int dummy;
147 1.12 matt
148 1.12 matt if (asc_attached)
149 1.12 matt return 0;
150 1.1 matt
151 1.14 matt if (vax_boardtype == VAX_BTYP_46 || vax_boardtype == VAX_BTYP_48) {
152 1.31 chs if (cf->cf_loc[VSBUSCF_CSR] != 0x200c0080)
153 1.14 matt return 0;
154 1.22 ragge } else if (vax_boardtype == VAX_BTYP_49 ||
155 1.22 ragge vax_boardtype == VAX_BTYP_53) {
156 1.31 chs if (cf->cf_loc[VSBUSCF_CSR] != 0x26000080)
157 1.14 matt return 0;
158 1.14 matt } else {
159 1.12 matt return 0;
160 1.14 matt }
161 1.12 matt
162 1.3 matt ncr_regs = (volatile u_int8_t *) va->va_addr;
163 1.1 matt
164 1.1 matt /* *** need to generate an interrupt here
165 1.1 matt * From trial and error, I've determined that an INT is generated
166 1.1 matt * only when the following sequence of events occurs:
167 1.1 matt * 1) The interrupt status register (0x05) must be read.
168 1.1 matt * 2) SCSI bus reset interrupt must be enabled
169 1.1 matt * 3) SCSI bus reset command must be sent
170 1.1 matt * 4) NOP command must be sent
171 1.1 matt */
172 1.1 matt
173 1.3 matt dummy = ncr_regs[NCR_INTR << 2] & 0xFF;
174 1.8 ragge ncr_regs[NCR_CFG1 << 2] = 0x06; /* we're ID 6, turn on INT for SCSI reset */
175 1.3 matt ncr_regs[NCR_CMD << 2] = NCRCMD_RSTSCSI; /* send the reset */
176 1.3 matt ncr_regs[NCR_CMD << 2] = NCRCMD_NOP; /* send a NOP */
177 1.1 matt DELAY(10000);
178 1.1 matt
179 1.3 matt dummy = ncr_regs[NCR_INTR << 2] & 0xFF;
180 1.3 matt return (dummy & NCRINTR_SBR) != 0;
181 1.1 matt }
182 1.1 matt
183 1.1 matt
184 1.1 matt /*
185 1.1 matt * Attach this instance, and then all the sub-devices
186 1.1 matt */
187 1.1 matt static void
188 1.1 matt asc_vsbus_attach(struct device *parent, struct device *self, void *aux)
189 1.1 matt {
190 1.1 matt struct vsbus_attach_args *va = aux;
191 1.1 matt struct asc_vsbus_softc *asc = (void *)self;
192 1.1 matt struct ncr53c9x_softc *sc = &asc->sc_ncr53c9x;
193 1.1 matt int error;
194 1.1 matt
195 1.12 matt asc_attached = 1;
196 1.1 matt /*
197 1.1 matt * Set up glue for MI code early; we use some of it here.
198 1.1 matt */
199 1.1 matt sc->sc_glue = &asc_vsbus_glue;
200 1.1 matt
201 1.36 matt asc->sc_bst = va->va_memt;
202 1.1 matt asc->sc_dmat = va->va_dmat;
203 1.1 matt
204 1.1 matt error = bus_space_map(asc->sc_bst, va->va_paddr - ASC_REG_NCR,
205 1.1 matt ASC_REG_END, 0, &asc->sc_bsh);
206 1.1 matt if (error) {
207 1.1 matt printf(": failed to map registers: error=%d\n", error);
208 1.1 matt return;
209 1.1 matt }
210 1.4 matt error = bus_space_subregion(asc->sc_bst, asc->sc_bsh, ASC_REG_NCR,
211 1.4 matt ASC_REG_END - ASC_REG_NCR, &asc->sc_ncrh);
212 1.4 matt if (error) {
213 1.4 matt printf(": failed to map ncr registers: error=%d\n", error);
214 1.4 matt return;
215 1.4 matt }
216 1.11 matt if (vax_boardtype == VAX_BTYP_46 || vax_boardtype == VAX_BTYP_48) {
217 1.11 matt error = bus_space_subregion(asc->sc_bst, asc->sc_bsh,
218 1.11 matt ASC_REG_KA46_ADR, sizeof(u_int32_t), &asc->sc_adrh);
219 1.11 matt if (error) {
220 1.11 matt printf(": failed to map adr register: error=%d\n",
221 1.11 matt error);
222 1.11 matt return;
223 1.11 matt }
224 1.11 matt error = bus_space_subregion(asc->sc_bst, asc->sc_bsh,
225 1.11 matt ASC_REG_KA46_DIR, sizeof(u_int32_t), &asc->sc_dirh);
226 1.11 matt if (error) {
227 1.11 matt printf(": failed to map dir register: error=%d\n",
228 1.11 matt error);
229 1.11 matt return;
230 1.11 matt }
231 1.11 matt } else {
232 1.11 matt /* This is a gross and disgusting kludge but it'll
233 1.11 matt * save a bunch of ugly code. Unlike the VS4000/60,
234 1.11 matt * the SCSI Address and direction registers are not
235 1.11 matt * near the SCSI NCR registers and are inside the
236 1.11 matt * block of general VAXstation registers. So we grab
237 1.11 matt * them from there and knowing the internals of the
238 1.11 matt * bus_space implementation, we cast to bus_space_handles.
239 1.11 matt */
240 1.11 matt struct vsbus_softc *vsc = (struct vsbus_softc *) parent;
241 1.11 matt asc->sc_adrh = (bus_space_handle_t) (vsc->sc_vsregs + ASC_REG_KA49_ADR);
242 1.11 matt asc->sc_dirh = (bus_space_handle_t) (vsc->sc_vsregs + ASC_REG_KA49_DIR);
243 1.14 matt #if 0
244 1.14 matt printf("\n%s: adrh=0x%08lx dirh=0x%08lx", self->dv_xname,
245 1.14 matt asc->sc_adrh, asc->sc_dirh);
246 1.14 matt ncr53c9x_debug = NCR_SHOWDMA|NCR_SHOWINTS|NCR_SHOWCMDS|NCR_SHOWPHASE|NCR_SHOWSTART|NCR_SHOWMSGS;
247 1.14 matt #endif
248 1.11 matt }
249 1.4 matt error = bus_dmamap_create(asc->sc_dmat, ASC_MAXXFERSIZE, 1,
250 1.4 matt ASC_MAXXFERSIZE, 0, BUS_DMA_NOWAIT, &asc->sc_dmamap);
251 1.1 matt
252 1.37 christos #if defined(VAX46) || defined(VAX48) || defined(VAX49) || defined(VAXANY)
253 1.37 christos if(vax_boardtype != VAX_BTYP_53)
254 1.37 christos /* SCSI ID is store in the clock NVRAM at magic address 0xbc */
255 1.37 christos sc->sc_id = (clk_page[0xbc/2] >> clk_tweak) & 7;
256 1.37 christos else
257 1.37 christos #endif
258 1.37 christos sc->sc_id = 6; /* XXX need to get this from VMB */
259 1.1 matt sc->sc_freq = ASC_FREQUENCY;
260 1.1 matt
261 1.33 lukem /* gimme MHz */
262 1.1 matt sc->sc_freq /= 1000000;
263 1.1 matt
264 1.4 matt scb_vecalloc(va->va_cvec, (void (*)(void *)) ncr53c9x_intr,
265 1.15 matt &asc->sc_ncr53c9x, SCB_ISTACK, &asc->sc_intrcnt);
266 1.16 matt evcnt_attach_dynamic(&asc->sc_intrcnt, EVCNT_TYPE_INTR, NULL,
267 1.16 matt self->dv_xname, "intr");
268 1.1 matt
269 1.1 matt /*
270 1.1 matt * XXX More of this should be in ncr53c9x_attach(), but
271 1.1 matt * XXX should we really poke around the chip that much in
272 1.1 matt * XXX the MI code? Think about this more...
273 1.1 matt */
274 1.1 matt
275 1.1 matt /*
276 1.1 matt * Set up static configuration info.
277 1.1 matt */
278 1.1 matt sc->sc_cfg1 = sc->sc_id | NCRCFG1_PARENB;
279 1.1 matt sc->sc_cfg2 = NCRCFG2_SCSI2;
280 1.4 matt sc->sc_cfg3 = 0;
281 1.1 matt sc->sc_rev = NCR_VARIANT_NCR53C94;
282 1.1 matt
283 1.1 matt /*
284 1.1 matt * XXX minsync and maxxfer _should_ be set up in MI code,
285 1.1 matt * XXX but it appears to have some dependency on what sort
286 1.1 matt * XXX of DMA we're hooked up to, etc.
287 1.1 matt */
288 1.1 matt
289 1.1 matt /*
290 1.1 matt * This is the value used to start sync negotiations
291 1.1 matt * Note that the NCR register "SYNCTP" is programmed
292 1.1 matt * in "clocks per byte", and has a minimum value of 4.
293 1.1 matt * The SCSI period used in negotiation is one-fourth
294 1.1 matt * of the time (in nanoseconds) needed to transfer one byte.
295 1.1 matt * Since the chip's clock is given in MHz, we have the following
296 1.1 matt * formula: 4 * period = (1000 / freq) * 4
297 1.1 matt */
298 1.1 matt sc->sc_minsync = (1000 / sc->sc_freq);
299 1.25 chuck sc->sc_maxxfer = 64 * 1024;
300 1.1 matt
301 1.3 matt printf("\n%s", self->dv_xname); /* Pretty print */
302 1.3 matt
303 1.1 matt /* Do the common parts of attachment. */
304 1.23 bouyer sc->sc_adapter.adapt_minphys = minphys;
305 1.23 bouyer sc->sc_adapter.adapt_request = ncr53c9x_scsipi_request;
306 1.23 bouyer ncr53c9x_attach(sc);
307 1.1 matt }
308 1.1 matt
309 1.1 matt /*
310 1.1 matt * Glue functions.
311 1.1 matt */
312 1.1 matt
313 1.1 matt static u_char
314 1.1 matt asc_vsbus_read_reg(struct ncr53c9x_softc *sc, int reg)
315 1.1 matt {
316 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
317 1.1 matt
318 1.4 matt return bus_space_read_1(asc->sc_bst, asc->sc_ncrh,
319 1.4 matt reg * sizeof(u_int32_t));
320 1.1 matt }
321 1.1 matt
322 1.1 matt static void
323 1.1 matt asc_vsbus_write_reg(sc, reg, val)
324 1.1 matt struct ncr53c9x_softc *sc;
325 1.1 matt int reg;
326 1.1 matt u_char val;
327 1.1 matt {
328 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
329 1.1 matt
330 1.4 matt bus_space_write_1(asc->sc_bst, asc->sc_ncrh,
331 1.4 matt reg * sizeof(u_int32_t), val);
332 1.1 matt }
333 1.1 matt
334 1.1 matt static int
335 1.1 matt asc_vsbus_dma_isintr(sc)
336 1.1 matt struct ncr53c9x_softc *sc;
337 1.1 matt {
338 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
339 1.4 matt return bus_space_read_1(asc->sc_bst, asc->sc_ncrh,
340 1.4 matt NCR_STAT * sizeof(u_int32_t)) & NCRSTAT_INT;
341 1.1 matt }
342 1.1 matt
343 1.1 matt static void
344 1.1 matt asc_vsbus_dma_reset(sc)
345 1.1 matt struct ncr53c9x_softc *sc;
346 1.1 matt {
347 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
348 1.1 matt
349 1.4 matt if (asc->sc_flags & ASC_MAPLOADED)
350 1.4 matt bus_dmamap_unload(asc->sc_dmat, asc->sc_dmamap);
351 1.4 matt asc->sc_flags &= ~(ASC_DMAACTIVE|ASC_MAPLOADED);
352 1.1 matt }
353 1.1 matt
354 1.1 matt static int
355 1.1 matt asc_vsbus_dma_intr(sc)
356 1.1 matt struct ncr53c9x_softc *sc;
357 1.1 matt {
358 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
359 1.4 matt u_int tcl, tcm;
360 1.4 matt int trans, resid;
361 1.4 matt
362 1.4 matt if ((asc->sc_flags & ASC_DMAACTIVE) == 0)
363 1.4 matt panic("asc_vsbus_dma_intr: DMA wasn't active");
364 1.4 matt
365 1.4 matt asc->sc_flags &= ~ASC_DMAACTIVE;
366 1.4 matt
367 1.4 matt if (asc->sc_dmasize == 0) {
368 1.4 matt /* A "Transfer Pad" operation completed */
369 1.4 matt tcl = NCR_READ_REG(sc, NCR_TCL);
370 1.4 matt tcm = NCR_READ_REG(sc, NCR_TCM);
371 1.4 matt NCR_DMA(("asc_vsbus_intr: discarded %d bytes (tcl=%d, tcm=%d)\n",
372 1.4 matt tcl | (tcm << 8), tcl, tcm));
373 1.4 matt return 0;
374 1.4 matt }
375 1.4 matt
376 1.4 matt resid = 0;
377 1.4 matt if ((resid = (NCR_READ_REG(sc, NCR_FFLAG) & NCRFIFO_FF)) != 0) {
378 1.4 matt NCR_DMA(("asc_vsbus_intr: empty FIFO of %d ", resid));
379 1.4 matt DELAY(1);
380 1.4 matt }
381 1.6 matt if (asc->sc_flags & ASC_MAPLOADED) {
382 1.6 matt bus_dmamap_sync(asc->sc_dmat, asc->sc_dmamap,
383 1.6 matt 0, asc->sc_dmasize,
384 1.6 matt asc->sc_flags & ASC_FROMMEMORY
385 1.6 matt ? BUS_DMASYNC_POSTWRITE
386 1.6 matt : BUS_DMASYNC_POSTREAD);
387 1.4 matt bus_dmamap_unload(asc->sc_dmat, asc->sc_dmamap);
388 1.6 matt }
389 1.4 matt asc->sc_flags &= ~ASC_MAPLOADED;
390 1.4 matt
391 1.4 matt resid += (tcl = NCR_READ_REG(sc, NCR_TCL));
392 1.4 matt resid += (tcm = NCR_READ_REG(sc, NCR_TCM)) << 8;
393 1.4 matt
394 1.4 matt trans = asc->sc_dmasize - resid;
395 1.4 matt if (trans < 0) { /* transferred < 0 ? */
396 1.19 matt printf("asc_vsbus_intr: xfer (%d) > req (%lu)\n",
397 1.19 matt trans, (u_long) asc->sc_dmasize);
398 1.4 matt trans = asc->sc_dmasize;
399 1.4 matt }
400 1.4 matt NCR_DMA(("asc_vsbus_intr: tcl=%d, tcm=%d; trans=%d, resid=%d\n",
401 1.4 matt tcl, tcm, trans, resid));
402 1.1 matt
403 1.4 matt *asc->sc_dmalen -= trans;
404 1.35 christos *asc->sc_dmaaddr = (char *)*asc->sc_dmaaddr + trans;
405 1.4 matt
406 1.6 matt asc->sc_xfers++;
407 1.1 matt return 0;
408 1.1 matt }
409 1.1 matt
410 1.1 matt static int
411 1.34 christos asc_vsbus_dma_setup(struct ncr53c9x_softc *sc, void **addr, size_t *len,
412 1.1 matt int datain, size_t *dmasize)
413 1.1 matt {
414 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
415 1.1 matt
416 1.1 matt asc->sc_dmaaddr = addr;
417 1.1 matt asc->sc_dmalen = len;
418 1.1 matt if (datain) {
419 1.6 matt asc->sc_flags &= ~ASC_FROMMEMORY;
420 1.1 matt } else {
421 1.6 matt asc->sc_flags |= ASC_FROMMEMORY;
422 1.1 matt }
423 1.5 matt if ((vaddr_t) *asc->sc_dmaaddr < VM_MIN_KERNEL_ADDRESS)
424 1.29 wiz panic("asc_vsbus_dma_setup: DMA address (%p) outside of kernel",
425 1.5 matt *asc->sc_dmaaddr);
426 1.1 matt
427 1.1 matt NCR_DMA(("%s: start %d@%p,%d\n", sc->sc_dev.dv_xname,
428 1.6 matt (int)*asc->sc_dmalen, *asc->sc_dmaaddr, (asc->sc_flags & ASC_FROMMEMORY)));
429 1.1 matt *dmasize = asc->sc_dmasize = min(*dmasize, ASC_MAXXFERSIZE);
430 1.1 matt
431 1.1 matt if (asc->sc_dmasize) {
432 1.1 matt if (bus_dmamap_load(asc->sc_dmat, asc->sc_dmamap,
433 1.1 matt *asc->sc_dmaaddr, asc->sc_dmasize,
434 1.1 matt NULL /* kernel address */,
435 1.7 matt BUS_DMA_NOWAIT|VAX_BUS_DMA_SPILLPAGE))
436 1.29 wiz panic("%s: cannot load DMA map", sc->sc_dev.dv_xname);
437 1.1 matt bus_dmamap_sync(asc->sc_dmat, asc->sc_dmamap,
438 1.6 matt 0, asc->sc_dmasize,
439 1.6 matt asc->sc_flags & ASC_FROMMEMORY
440 1.6 matt ? BUS_DMASYNC_PREWRITE
441 1.6 matt : BUS_DMASYNC_PREREAD);
442 1.11 matt bus_space_write_4(asc->sc_bst, asc->sc_adrh, 0,
443 1.1 matt asc->sc_dmamap->dm_segs[0].ds_addr);
444 1.11 matt bus_space_write_4(asc->sc_bst, asc->sc_dirh, 0,
445 1.6 matt asc->sc_flags & ASC_FROMMEMORY);
446 1.14 matt NCR_DMA(("%s: dma-load %lu@0x%08lx\n", sc->sc_dev.dv_xname,
447 1.14 matt asc->sc_dmamap->dm_segs[0].ds_len,
448 1.14 matt asc->sc_dmamap->dm_segs[0].ds_addr));
449 1.4 matt asc->sc_flags |= ASC_MAPLOADED;
450 1.1 matt }
451 1.1 matt
452 1.1 matt return 0;
453 1.1 matt }
454 1.1 matt
455 1.1 matt static void
456 1.1 matt asc_vsbus_dma_go(struct ncr53c9x_softc *sc)
457 1.1 matt {
458 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
459 1.1 matt
460 1.4 matt asc->sc_flags |= ASC_DMAACTIVE;
461 1.1 matt }
462 1.1 matt
463 1.1 matt static void
464 1.1 matt asc_vsbus_dma_stop(struct ncr53c9x_softc *sc)
465 1.1 matt {
466 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
467 1.1 matt
468 1.6 matt if (asc->sc_flags & ASC_MAPLOADED) {
469 1.6 matt bus_dmamap_sync(asc->sc_dmat, asc->sc_dmamap,
470 1.6 matt 0, asc->sc_dmasize,
471 1.6 matt asc->sc_flags & ASC_FROMMEMORY
472 1.6 matt ? BUS_DMASYNC_POSTWRITE
473 1.6 matt : BUS_DMASYNC_POSTREAD);
474 1.4 matt bus_dmamap_unload(asc->sc_dmat, asc->sc_dmamap);
475 1.6 matt }
476 1.4 matt
477 1.4 matt asc->sc_flags &= ~(ASC_DMAACTIVE|ASC_MAPLOADED);
478 1.1 matt }
479 1.1 matt
480 1.1 matt static int
481 1.1 matt asc_vsbus_dma_isactive(struct ncr53c9x_softc *sc)
482 1.1 matt {
483 1.1 matt struct asc_vsbus_softc *asc = (struct asc_vsbus_softc *)sc;
484 1.1 matt
485 1.1 matt return (asc->sc_flags & ASC_DMAACTIVE) != 0;
486 1.1 matt }
487