mfi.c revision 1.19 1 1.19 bouyer /* $NetBSD: mfi.c,v 1.19 2008/10/23 21:00:06 bouyer Exp $ */
2 1.1 bouyer /* $OpenBSD: mfi.c,v 1.66 2006/11/28 23:59:45 dlg Exp $ */
3 1.1 bouyer /*
4 1.1 bouyer * Copyright (c) 2006 Marco Peereboom <marco (at) peereboom.us>
5 1.1 bouyer *
6 1.1 bouyer * Permission to use, copy, modify, and distribute this software for any
7 1.1 bouyer * purpose with or without fee is hereby granted, provided that the above
8 1.1 bouyer * copyright notice and this permission notice appear in all copies.
9 1.1 bouyer *
10 1.1 bouyer * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
11 1.1 bouyer * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
12 1.1 bouyer * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
13 1.1 bouyer * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
14 1.1 bouyer * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
15 1.1 bouyer * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
16 1.1 bouyer * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
17 1.1 bouyer */
18 1.1 bouyer
19 1.2 bouyer #include <sys/cdefs.h>
20 1.19 bouyer __KERNEL_RCSID(0, "$NetBSD: mfi.c,v 1.19 2008/10/23 21:00:06 bouyer Exp $");
21 1.2 bouyer
22 1.4 bouyer #include "bio.h"
23 1.1 bouyer
24 1.1 bouyer #include <sys/param.h>
25 1.1 bouyer #include <sys/systm.h>
26 1.1 bouyer #include <sys/buf.h>
27 1.1 bouyer #include <sys/ioctl.h>
28 1.1 bouyer #include <sys/device.h>
29 1.1 bouyer #include <sys/kernel.h>
30 1.1 bouyer #include <sys/malloc.h>
31 1.1 bouyer #include <sys/proc.h>
32 1.1 bouyer
33 1.1 bouyer #include <uvm/uvm_param.h>
34 1.1 bouyer
35 1.10 ad #include <sys/bus.h>
36 1.1 bouyer
37 1.1 bouyer #include <dev/scsipi/scsipi_all.h>
38 1.1 bouyer #include <dev/scsipi/scsi_all.h>
39 1.1 bouyer #include <dev/scsipi/scsi_spc.h>
40 1.1 bouyer #include <dev/scsipi/scsipi_disk.h>
41 1.1 bouyer #include <dev/scsipi/scsi_disk.h>
42 1.1 bouyer #include <dev/scsipi/scsiconf.h>
43 1.1 bouyer
44 1.1 bouyer #include <dev/ic/mfireg.h>
45 1.1 bouyer #include <dev/ic/mfivar.h>
46 1.1 bouyer
47 1.1 bouyer #if NBIO > 0
48 1.1 bouyer #include <dev/biovar.h>
49 1.1 bouyer #endif /* NBIO > 0 */
50 1.1 bouyer
51 1.1 bouyer #ifdef MFI_DEBUG
52 1.1 bouyer uint32_t mfi_debug = 0
53 1.1 bouyer /* | MFI_D_CMD */
54 1.1 bouyer /* | MFI_D_INTR */
55 1.1 bouyer /* | MFI_D_MISC */
56 1.1 bouyer /* | MFI_D_DMA */
57 1.1 bouyer | MFI_D_IOCTL
58 1.1 bouyer /* | MFI_D_RW */
59 1.1 bouyer /* | MFI_D_MEM */
60 1.1 bouyer /* | MFI_D_CCB */
61 1.1 bouyer ;
62 1.1 bouyer #endif
63 1.1 bouyer
64 1.13 xtraeme static void mfi_scsipi_request(struct scsipi_channel *,
65 1.13 xtraeme scsipi_adapter_req_t, void *);
66 1.13 xtraeme static void mfiminphys(struct buf *bp);
67 1.13 xtraeme
68 1.13 xtraeme static struct mfi_ccb *mfi_get_ccb(struct mfi_softc *);
69 1.13 xtraeme static void mfi_put_ccb(struct mfi_ccb *);
70 1.13 xtraeme static int mfi_init_ccb(struct mfi_softc *);
71 1.13 xtraeme
72 1.13 xtraeme static struct mfi_mem *mfi_allocmem(struct mfi_softc *, size_t);
73 1.13 xtraeme static void mfi_freemem(struct mfi_softc *, struct mfi_mem *);
74 1.13 xtraeme
75 1.13 xtraeme static int mfi_transition_firmware(struct mfi_softc *);
76 1.13 xtraeme static int mfi_initialize_firmware(struct mfi_softc *);
77 1.13 xtraeme static int mfi_get_info(struct mfi_softc *);
78 1.13 xtraeme static uint32_t mfi_read(struct mfi_softc *, bus_size_t);
79 1.13 xtraeme static void mfi_write(struct mfi_softc *, bus_size_t, uint32_t);
80 1.13 xtraeme static int mfi_poll(struct mfi_ccb *);
81 1.13 xtraeme static int mfi_create_sgl(struct mfi_ccb *, int);
82 1.1 bouyer
83 1.1 bouyer /* commands */
84 1.13 xtraeme static int mfi_scsi_ld(struct mfi_ccb *, struct scsipi_xfer *);
85 1.13 xtraeme static int mfi_scsi_io(struct mfi_ccb *, struct scsipi_xfer *,
86 1.13 xtraeme uint32_t, uint32_t);
87 1.13 xtraeme static void mfi_scsi_xs_done(struct mfi_ccb *);
88 1.19 bouyer static int mfi_mgmt_internal(struct mfi_softc *,
89 1.19 bouyer uint32_t, uint32_t, uint32_t, void *, uint8_t *);
90 1.19 bouyer static int mfi_mgmt(struct mfi_ccb *,struct scsipi_xfer *,
91 1.19 bouyer uint32_t, uint32_t, uint32_t, void *, uint8_t *);
92 1.13 xtraeme static void mfi_mgmt_done(struct mfi_ccb *);
93 1.1 bouyer
94 1.1 bouyer #if NBIO > 0
95 1.13 xtraeme static int mfi_ioctl(struct device *, u_long, void *);
96 1.13 xtraeme static int mfi_ioctl_inq(struct mfi_softc *, struct bioc_inq *);
97 1.13 xtraeme static int mfi_ioctl_vol(struct mfi_softc *, struct bioc_vol *);
98 1.13 xtraeme static int mfi_ioctl_disk(struct mfi_softc *, struct bioc_disk *);
99 1.13 xtraeme static int mfi_ioctl_alarm(struct mfi_softc *,
100 1.13 xtraeme struct bioc_alarm *);
101 1.13 xtraeme static int mfi_ioctl_blink(struct mfi_softc *sc,
102 1.13 xtraeme struct bioc_blink *);
103 1.13 xtraeme static int mfi_ioctl_setstate(struct mfi_softc *,
104 1.13 xtraeme struct bioc_setstate *);
105 1.13 xtraeme static int mfi_bio_hs(struct mfi_softc *, int, int, void *);
106 1.13 xtraeme static int mfi_create_sensors(struct mfi_softc *);
107 1.13 xtraeme static void mfi_sensor_refresh(struct sysmon_envsys *,
108 1.13 xtraeme envsys_data_t *);
109 1.1 bouyer #endif /* NBIO > 0 */
110 1.1 bouyer
111 1.13 xtraeme static uint32_t mfi_xscale_fw_state(struct mfi_softc *sc);
112 1.13 xtraeme static void mfi_xscale_intr_ena(struct mfi_softc *sc);
113 1.13 xtraeme static int mfi_xscale_intr(struct mfi_softc *sc);
114 1.13 xtraeme static void mfi_xscale_post(struct mfi_softc *sc, struct mfi_ccb *ccb);
115 1.12 xtraeme
116 1.12 xtraeme static const struct mfi_iop_ops mfi_iop_xscale = {
117 1.12 xtraeme mfi_xscale_fw_state,
118 1.12 xtraeme mfi_xscale_intr_ena,
119 1.12 xtraeme mfi_xscale_intr,
120 1.12 xtraeme mfi_xscale_post
121 1.12 xtraeme };
122 1.12 xtraeme
123 1.13 xtraeme static uint32_t mfi_ppc_fw_state(struct mfi_softc *sc);
124 1.13 xtraeme static void mfi_ppc_intr_ena(struct mfi_softc *sc);
125 1.13 xtraeme static int mfi_ppc_intr(struct mfi_softc *sc);
126 1.13 xtraeme static void mfi_ppc_post(struct mfi_softc *sc, struct mfi_ccb *ccb);
127 1.12 xtraeme
128 1.12 xtraeme static const struct mfi_iop_ops mfi_iop_ppc = {
129 1.12 xtraeme mfi_ppc_fw_state,
130 1.12 xtraeme mfi_ppc_intr_ena,
131 1.12 xtraeme mfi_ppc_intr,
132 1.12 xtraeme mfi_ppc_post
133 1.12 xtraeme };
134 1.12 xtraeme
135 1.12 xtraeme #define mfi_fw_state(_s) ((_s)->sc_iop->mio_fw_state(_s))
136 1.12 xtraeme #define mfi_intr_enable(_s) ((_s)->sc_iop->mio_intr_ena(_s))
137 1.12 xtraeme #define mfi_my_intr(_s) ((_s)->sc_iop->mio_intr(_s))
138 1.12 xtraeme #define mfi_post(_s, _c) ((_s)->sc_iop->mio_post((_s), (_c)))
139 1.12 xtraeme
140 1.13 xtraeme static struct mfi_ccb *
141 1.1 bouyer mfi_get_ccb(struct mfi_softc *sc)
142 1.1 bouyer {
143 1.1 bouyer struct mfi_ccb *ccb;
144 1.1 bouyer int s;
145 1.1 bouyer
146 1.1 bouyer s = splbio();
147 1.1 bouyer ccb = TAILQ_FIRST(&sc->sc_ccb_freeq);
148 1.1 bouyer if (ccb) {
149 1.1 bouyer TAILQ_REMOVE(&sc->sc_ccb_freeq, ccb, ccb_link);
150 1.1 bouyer ccb->ccb_state = MFI_CCB_READY;
151 1.1 bouyer }
152 1.1 bouyer splx(s);
153 1.1 bouyer
154 1.1 bouyer DNPRINTF(MFI_D_CCB, "%s: mfi_get_ccb: %p\n", DEVNAME(sc), ccb);
155 1.1 bouyer
156 1.13 xtraeme return ccb;
157 1.1 bouyer }
158 1.1 bouyer
159 1.13 xtraeme static void
160 1.1 bouyer mfi_put_ccb(struct mfi_ccb *ccb)
161 1.1 bouyer {
162 1.1 bouyer struct mfi_softc *sc = ccb->ccb_sc;
163 1.1 bouyer int s;
164 1.1 bouyer
165 1.1 bouyer DNPRINTF(MFI_D_CCB, "%s: mfi_put_ccb: %p\n", DEVNAME(sc), ccb);
166 1.1 bouyer
167 1.1 bouyer s = splbio();
168 1.1 bouyer ccb->ccb_state = MFI_CCB_FREE;
169 1.1 bouyer ccb->ccb_xs = NULL;
170 1.1 bouyer ccb->ccb_flags = 0;
171 1.1 bouyer ccb->ccb_done = NULL;
172 1.1 bouyer ccb->ccb_direction = 0;
173 1.1 bouyer ccb->ccb_frame_size = 0;
174 1.1 bouyer ccb->ccb_extra_frames = 0;
175 1.1 bouyer ccb->ccb_sgl = NULL;
176 1.1 bouyer ccb->ccb_data = NULL;
177 1.1 bouyer ccb->ccb_len = 0;
178 1.1 bouyer TAILQ_INSERT_TAIL(&sc->sc_ccb_freeq, ccb, ccb_link);
179 1.1 bouyer splx(s);
180 1.1 bouyer }
181 1.1 bouyer
182 1.13 xtraeme static int
183 1.1 bouyer mfi_init_ccb(struct mfi_softc *sc)
184 1.1 bouyer {
185 1.1 bouyer struct mfi_ccb *ccb;
186 1.1 bouyer uint32_t i;
187 1.1 bouyer int error;
188 1.1 bouyer
189 1.1 bouyer DNPRINTF(MFI_D_CCB, "%s: mfi_init_ccb\n", DEVNAME(sc));
190 1.1 bouyer
191 1.1 bouyer sc->sc_ccb = malloc(sizeof(struct mfi_ccb) * sc->sc_max_cmds,
192 1.13 xtraeme M_DEVBUF, M_WAITOK|M_ZERO);
193 1.1 bouyer
194 1.1 bouyer for (i = 0; i < sc->sc_max_cmds; i++) {
195 1.1 bouyer ccb = &sc->sc_ccb[i];
196 1.1 bouyer
197 1.1 bouyer ccb->ccb_sc = sc;
198 1.1 bouyer
199 1.1 bouyer /* select i'th frame */
200 1.1 bouyer ccb->ccb_frame = (union mfi_frame *)
201 1.1 bouyer ((char*)MFIMEM_KVA(sc->sc_frames) + sc->sc_frames_size * i);
202 1.1 bouyer ccb->ccb_pframe =
203 1.1 bouyer MFIMEM_DVA(sc->sc_frames) + sc->sc_frames_size * i;
204 1.1 bouyer ccb->ccb_frame->mfr_header.mfh_context = i;
205 1.1 bouyer
206 1.1 bouyer /* select i'th sense */
207 1.1 bouyer ccb->ccb_sense = (struct mfi_sense *)
208 1.1 bouyer ((char*)MFIMEM_KVA(sc->sc_sense) + MFI_SENSE_SIZE * i);
209 1.1 bouyer ccb->ccb_psense =
210 1.1 bouyer (MFIMEM_DVA(sc->sc_sense) + MFI_SENSE_SIZE * i);
211 1.1 bouyer
212 1.1 bouyer /* create a dma map for transfer */
213 1.1 bouyer error = bus_dmamap_create(sc->sc_dmat,
214 1.1 bouyer MAXPHYS, sc->sc_max_sgl, MAXPHYS, 0,
215 1.1 bouyer BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW, &ccb->ccb_dmamap);
216 1.1 bouyer if (error) {
217 1.1 bouyer printf("%s: cannot create ccb dmamap (%d)\n",
218 1.1 bouyer DEVNAME(sc), error);
219 1.1 bouyer goto destroy;
220 1.1 bouyer }
221 1.1 bouyer
222 1.1 bouyer DNPRINTF(MFI_D_CCB,
223 1.4 bouyer "ccb(%d): %p frame: %#lx (%#lx) sense: %#lx (%#lx) map: %#lx\n",
224 1.1 bouyer ccb->ccb_frame->mfr_header.mfh_context, ccb,
225 1.4 bouyer (u_long)ccb->ccb_frame, (u_long)ccb->ccb_pframe,
226 1.4 bouyer (u_long)ccb->ccb_sense, (u_long)ccb->ccb_psense,
227 1.4 bouyer (u_long)ccb->ccb_dmamap);
228 1.1 bouyer
229 1.1 bouyer /* add ccb to queue */
230 1.1 bouyer mfi_put_ccb(ccb);
231 1.1 bouyer }
232 1.1 bouyer
233 1.13 xtraeme return 0;
234 1.1 bouyer destroy:
235 1.1 bouyer /* free dma maps and ccb memory */
236 1.17 cegger while (i) {
237 1.17 cegger i--;
238 1.1 bouyer ccb = &sc->sc_ccb[i];
239 1.1 bouyer bus_dmamap_destroy(sc->sc_dmat, ccb->ccb_dmamap);
240 1.1 bouyer }
241 1.1 bouyer
242 1.1 bouyer free(sc->sc_ccb, M_DEVBUF);
243 1.1 bouyer
244 1.13 xtraeme return 1;
245 1.1 bouyer }
246 1.1 bouyer
247 1.13 xtraeme static uint32_t
248 1.1 bouyer mfi_read(struct mfi_softc *sc, bus_size_t r)
249 1.1 bouyer {
250 1.1 bouyer uint32_t rv;
251 1.1 bouyer
252 1.1 bouyer bus_space_barrier(sc->sc_iot, sc->sc_ioh, r, 4,
253 1.1 bouyer BUS_SPACE_BARRIER_READ);
254 1.1 bouyer rv = bus_space_read_4(sc->sc_iot, sc->sc_ioh, r);
255 1.1 bouyer
256 1.4 bouyer DNPRINTF(MFI_D_RW, "%s: mr 0x%lx 0x08%x ", DEVNAME(sc), (u_long)r, rv);
257 1.13 xtraeme return rv;
258 1.1 bouyer }
259 1.1 bouyer
260 1.13 xtraeme static void
261 1.1 bouyer mfi_write(struct mfi_softc *sc, bus_size_t r, uint32_t v)
262 1.1 bouyer {
263 1.4 bouyer DNPRINTF(MFI_D_RW, "%s: mw 0x%lx 0x%08x", DEVNAME(sc), (u_long)r, v);
264 1.1 bouyer
265 1.1 bouyer bus_space_write_4(sc->sc_iot, sc->sc_ioh, r, v);
266 1.1 bouyer bus_space_barrier(sc->sc_iot, sc->sc_ioh, r, 4,
267 1.1 bouyer BUS_SPACE_BARRIER_WRITE);
268 1.1 bouyer }
269 1.1 bouyer
270 1.13 xtraeme static struct mfi_mem *
271 1.1 bouyer mfi_allocmem(struct mfi_softc *sc, size_t size)
272 1.1 bouyer {
273 1.1 bouyer struct mfi_mem *mm;
274 1.1 bouyer int nsegs;
275 1.1 bouyer
276 1.4 bouyer DNPRINTF(MFI_D_MEM, "%s: mfi_allocmem: %ld\n", DEVNAME(sc),
277 1.4 bouyer (long)size);
278 1.1 bouyer
279 1.13 xtraeme mm = malloc(sizeof(struct mfi_mem), M_DEVBUF, M_NOWAIT|M_ZERO);
280 1.1 bouyer if (mm == NULL)
281 1.13 xtraeme return NULL;
282 1.1 bouyer
283 1.1 bouyer mm->am_size = size;
284 1.1 bouyer
285 1.1 bouyer if (bus_dmamap_create(sc->sc_dmat, size, 1, size, 0,
286 1.1 bouyer BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW, &mm->am_map) != 0)
287 1.1 bouyer goto amfree;
288 1.1 bouyer
289 1.1 bouyer if (bus_dmamem_alloc(sc->sc_dmat, size, PAGE_SIZE, 0, &mm->am_seg, 1,
290 1.1 bouyer &nsegs, BUS_DMA_NOWAIT) != 0)
291 1.1 bouyer goto destroy;
292 1.1 bouyer
293 1.1 bouyer if (bus_dmamem_map(sc->sc_dmat, &mm->am_seg, nsegs, size, &mm->am_kva,
294 1.1 bouyer BUS_DMA_NOWAIT) != 0)
295 1.1 bouyer goto free;
296 1.1 bouyer
297 1.1 bouyer if (bus_dmamap_load(sc->sc_dmat, mm->am_map, mm->am_kva, size, NULL,
298 1.1 bouyer BUS_DMA_NOWAIT) != 0)
299 1.1 bouyer goto unmap;
300 1.1 bouyer
301 1.1 bouyer DNPRINTF(MFI_D_MEM, " kva: %p dva: %p map: %p\n",
302 1.4 bouyer mm->am_kva, (void *)mm->am_map->dm_segs[0].ds_addr, mm->am_map);
303 1.1 bouyer
304 1.1 bouyer memset(mm->am_kva, 0, size);
305 1.13 xtraeme return mm;
306 1.1 bouyer
307 1.1 bouyer unmap:
308 1.1 bouyer bus_dmamem_unmap(sc->sc_dmat, mm->am_kva, size);
309 1.1 bouyer free:
310 1.1 bouyer bus_dmamem_free(sc->sc_dmat, &mm->am_seg, 1);
311 1.1 bouyer destroy:
312 1.1 bouyer bus_dmamap_destroy(sc->sc_dmat, mm->am_map);
313 1.1 bouyer amfree:
314 1.1 bouyer free(mm, M_DEVBUF);
315 1.1 bouyer
316 1.13 xtraeme return NULL;
317 1.1 bouyer }
318 1.1 bouyer
319 1.13 xtraeme static void
320 1.1 bouyer mfi_freemem(struct mfi_softc *sc, struct mfi_mem *mm)
321 1.1 bouyer {
322 1.1 bouyer DNPRINTF(MFI_D_MEM, "%s: mfi_freemem: %p\n", DEVNAME(sc), mm);
323 1.1 bouyer
324 1.1 bouyer bus_dmamap_unload(sc->sc_dmat, mm->am_map);
325 1.1 bouyer bus_dmamem_unmap(sc->sc_dmat, mm->am_kva, mm->am_size);
326 1.1 bouyer bus_dmamem_free(sc->sc_dmat, &mm->am_seg, 1);
327 1.1 bouyer bus_dmamap_destroy(sc->sc_dmat, mm->am_map);
328 1.1 bouyer free(mm, M_DEVBUF);
329 1.1 bouyer }
330 1.1 bouyer
331 1.13 xtraeme static int
332 1.1 bouyer mfi_transition_firmware(struct mfi_softc *sc)
333 1.1 bouyer {
334 1.18 gmcgarry uint32_t fw_state, cur_state;
335 1.1 bouyer int max_wait, i;
336 1.1 bouyer
337 1.12 xtraeme fw_state = mfi_fw_state(sc) & MFI_STATE_MASK;
338 1.1 bouyer
339 1.1 bouyer DNPRINTF(MFI_D_CMD, "%s: mfi_transition_firmware: %#x\n", DEVNAME(sc),
340 1.1 bouyer fw_state);
341 1.1 bouyer
342 1.1 bouyer while (fw_state != MFI_STATE_READY) {
343 1.1 bouyer DNPRINTF(MFI_D_MISC,
344 1.1 bouyer "%s: waiting for firmware to become ready\n",
345 1.1 bouyer DEVNAME(sc));
346 1.1 bouyer cur_state = fw_state;
347 1.1 bouyer switch (fw_state) {
348 1.1 bouyer case MFI_STATE_FAULT:
349 1.1 bouyer printf("%s: firmware fault\n", DEVNAME(sc));
350 1.13 xtraeme return 1;
351 1.1 bouyer case MFI_STATE_WAIT_HANDSHAKE:
352 1.1 bouyer mfi_write(sc, MFI_IDB, MFI_INIT_CLEAR_HANDSHAKE);
353 1.1 bouyer max_wait = 2;
354 1.1 bouyer break;
355 1.1 bouyer case MFI_STATE_OPERATIONAL:
356 1.1 bouyer mfi_write(sc, MFI_IDB, MFI_INIT_READY);
357 1.1 bouyer max_wait = 10;
358 1.1 bouyer break;
359 1.1 bouyer case MFI_STATE_UNDEFINED:
360 1.1 bouyer case MFI_STATE_BB_INIT:
361 1.1 bouyer max_wait = 2;
362 1.1 bouyer break;
363 1.1 bouyer case MFI_STATE_FW_INIT:
364 1.1 bouyer case MFI_STATE_DEVICE_SCAN:
365 1.1 bouyer case MFI_STATE_FLUSH_CACHE:
366 1.1 bouyer max_wait = 20;
367 1.1 bouyer break;
368 1.1 bouyer default:
369 1.1 bouyer printf("%s: unknown firmware state %d\n",
370 1.1 bouyer DEVNAME(sc), fw_state);
371 1.13 xtraeme return 1;
372 1.1 bouyer }
373 1.1 bouyer for (i = 0; i < (max_wait * 10); i++) {
374 1.12 xtraeme fw_state = mfi_fw_state(sc) & MFI_STATE_MASK;
375 1.1 bouyer if (fw_state == cur_state)
376 1.1 bouyer DELAY(100000);
377 1.1 bouyer else
378 1.1 bouyer break;
379 1.1 bouyer }
380 1.1 bouyer if (fw_state == cur_state) {
381 1.1 bouyer printf("%s: firmware stuck in state %#x\n",
382 1.1 bouyer DEVNAME(sc), fw_state);
383 1.13 xtraeme return 1;
384 1.1 bouyer }
385 1.1 bouyer }
386 1.1 bouyer
387 1.13 xtraeme return 0;
388 1.1 bouyer }
389 1.1 bouyer
390 1.13 xtraeme static int
391 1.1 bouyer mfi_initialize_firmware(struct mfi_softc *sc)
392 1.1 bouyer {
393 1.1 bouyer struct mfi_ccb *ccb;
394 1.1 bouyer struct mfi_init_frame *init;
395 1.1 bouyer struct mfi_init_qinfo *qinfo;
396 1.1 bouyer
397 1.1 bouyer DNPRINTF(MFI_D_MISC, "%s: mfi_initialize_firmware\n", DEVNAME(sc));
398 1.1 bouyer
399 1.1 bouyer if ((ccb = mfi_get_ccb(sc)) == NULL)
400 1.13 xtraeme return 1;
401 1.1 bouyer
402 1.1 bouyer init = &ccb->ccb_frame->mfr_init;
403 1.1 bouyer qinfo = (struct mfi_init_qinfo *)((uint8_t *)init + MFI_FRAME_SIZE);
404 1.1 bouyer
405 1.1 bouyer memset(qinfo, 0, sizeof *qinfo);
406 1.1 bouyer qinfo->miq_rq_entries = sc->sc_max_cmds + 1;
407 1.1 bouyer qinfo->miq_rq_addr_lo = htole32(MFIMEM_DVA(sc->sc_pcq) +
408 1.1 bouyer offsetof(struct mfi_prod_cons, mpc_reply_q));
409 1.1 bouyer qinfo->miq_pi_addr_lo = htole32(MFIMEM_DVA(sc->sc_pcq) +
410 1.1 bouyer offsetof(struct mfi_prod_cons, mpc_producer));
411 1.1 bouyer qinfo->miq_ci_addr_lo = htole32(MFIMEM_DVA(sc->sc_pcq) +
412 1.1 bouyer offsetof(struct mfi_prod_cons, mpc_consumer));
413 1.1 bouyer
414 1.1 bouyer init->mif_header.mfh_cmd = MFI_CMD_INIT;
415 1.1 bouyer init->mif_header.mfh_data_len = sizeof *qinfo;
416 1.1 bouyer init->mif_qinfo_new_addr_lo = htole32(ccb->ccb_pframe + MFI_FRAME_SIZE);
417 1.1 bouyer
418 1.1 bouyer DNPRINTF(MFI_D_MISC, "%s: entries: %#x rq: %#x pi: %#x ci: %#x\n",
419 1.1 bouyer DEVNAME(sc),
420 1.1 bouyer qinfo->miq_rq_entries, qinfo->miq_rq_addr_lo,
421 1.1 bouyer qinfo->miq_pi_addr_lo, qinfo->miq_ci_addr_lo);
422 1.1 bouyer
423 1.1 bouyer if (mfi_poll(ccb)) {
424 1.1 bouyer printf("%s: mfi_initialize_firmware failed\n", DEVNAME(sc));
425 1.13 xtraeme return 1;
426 1.1 bouyer }
427 1.1 bouyer
428 1.1 bouyer mfi_put_ccb(ccb);
429 1.1 bouyer
430 1.13 xtraeme return 0;
431 1.1 bouyer }
432 1.1 bouyer
433 1.13 xtraeme static int
434 1.1 bouyer mfi_get_info(struct mfi_softc *sc)
435 1.1 bouyer {
436 1.1 bouyer #ifdef MFI_DEBUG
437 1.1 bouyer int i;
438 1.1 bouyer #endif
439 1.1 bouyer DNPRINTF(MFI_D_MISC, "%s: mfi_get_info\n", DEVNAME(sc));
440 1.1 bouyer
441 1.19 bouyer if (mfi_mgmt_internal(sc, MR_DCMD_CTRL_GET_INFO, MFI_DATA_IN,
442 1.1 bouyer sizeof(sc->sc_info), &sc->sc_info, NULL))
443 1.13 xtraeme return 1;
444 1.1 bouyer
445 1.1 bouyer #ifdef MFI_DEBUG
446 1.1 bouyer
447 1.1 bouyer for (i = 0; i < sc->sc_info.mci_image_component_count; i++) {
448 1.1 bouyer printf("%s: active FW %s Version %s date %s time %s\n",
449 1.1 bouyer DEVNAME(sc),
450 1.1 bouyer sc->sc_info.mci_image_component[i].mic_name,
451 1.1 bouyer sc->sc_info.mci_image_component[i].mic_version,
452 1.1 bouyer sc->sc_info.mci_image_component[i].mic_build_date,
453 1.1 bouyer sc->sc_info.mci_image_component[i].mic_build_time);
454 1.1 bouyer }
455 1.1 bouyer
456 1.1 bouyer for (i = 0; i < sc->sc_info.mci_pending_image_component_count; i++) {
457 1.1 bouyer printf("%s: pending FW %s Version %s date %s time %s\n",
458 1.1 bouyer DEVNAME(sc),
459 1.1 bouyer sc->sc_info.mci_pending_image_component[i].mic_name,
460 1.1 bouyer sc->sc_info.mci_pending_image_component[i].mic_version,
461 1.1 bouyer sc->sc_info.mci_pending_image_component[i].mic_build_date,
462 1.1 bouyer sc->sc_info.mci_pending_image_component[i].mic_build_time);
463 1.1 bouyer }
464 1.1 bouyer
465 1.1 bouyer printf("%s: max_arms %d max_spans %d max_arrs %d max_lds %d name %s\n",
466 1.1 bouyer DEVNAME(sc),
467 1.1 bouyer sc->sc_info.mci_max_arms,
468 1.1 bouyer sc->sc_info.mci_max_spans,
469 1.1 bouyer sc->sc_info.mci_max_arrays,
470 1.1 bouyer sc->sc_info.mci_max_lds,
471 1.1 bouyer sc->sc_info.mci_product_name);
472 1.1 bouyer
473 1.1 bouyer printf("%s: serial %s present %#x fw time %d max_cmds %d max_sg %d\n",
474 1.1 bouyer DEVNAME(sc),
475 1.1 bouyer sc->sc_info.mci_serial_number,
476 1.1 bouyer sc->sc_info.mci_hw_present,
477 1.1 bouyer sc->sc_info.mci_current_fw_time,
478 1.1 bouyer sc->sc_info.mci_max_cmds,
479 1.1 bouyer sc->sc_info.mci_max_sg_elements);
480 1.1 bouyer
481 1.1 bouyer printf("%s: max_rq %d lds_pres %d lds_deg %d lds_off %d pd_pres %d\n",
482 1.1 bouyer DEVNAME(sc),
483 1.1 bouyer sc->sc_info.mci_max_request_size,
484 1.1 bouyer sc->sc_info.mci_lds_present,
485 1.1 bouyer sc->sc_info.mci_lds_degraded,
486 1.1 bouyer sc->sc_info.mci_lds_offline,
487 1.1 bouyer sc->sc_info.mci_pd_present);
488 1.1 bouyer
489 1.1 bouyer printf("%s: pd_dsk_prs %d pd_dsk_pred_fail %d pd_dsk_fail %d\n",
490 1.1 bouyer DEVNAME(sc),
491 1.1 bouyer sc->sc_info.mci_pd_disks_present,
492 1.1 bouyer sc->sc_info.mci_pd_disks_pred_failure,
493 1.1 bouyer sc->sc_info.mci_pd_disks_failed);
494 1.1 bouyer
495 1.1 bouyer printf("%s: nvram %d mem %d flash %d\n",
496 1.1 bouyer DEVNAME(sc),
497 1.1 bouyer sc->sc_info.mci_nvram_size,
498 1.1 bouyer sc->sc_info.mci_memory_size,
499 1.1 bouyer sc->sc_info.mci_flash_size);
500 1.1 bouyer
501 1.1 bouyer printf("%s: ram_cor %d ram_uncor %d clus_all %d clus_act %d\n",
502 1.1 bouyer DEVNAME(sc),
503 1.1 bouyer sc->sc_info.mci_ram_correctable_errors,
504 1.1 bouyer sc->sc_info.mci_ram_uncorrectable_errors,
505 1.1 bouyer sc->sc_info.mci_cluster_allowed,
506 1.1 bouyer sc->sc_info.mci_cluster_active);
507 1.1 bouyer
508 1.1 bouyer printf("%s: max_strps_io %d raid_lvl %#x adapt_ops %#x ld_ops %#x\n",
509 1.1 bouyer DEVNAME(sc),
510 1.1 bouyer sc->sc_info.mci_max_strips_per_io,
511 1.1 bouyer sc->sc_info.mci_raid_levels,
512 1.1 bouyer sc->sc_info.mci_adapter_ops,
513 1.1 bouyer sc->sc_info.mci_ld_ops);
514 1.1 bouyer
515 1.1 bouyer printf("%s: strp_sz_min %d strp_sz_max %d pd_ops %#x pd_mix %#x\n",
516 1.1 bouyer DEVNAME(sc),
517 1.1 bouyer sc->sc_info.mci_stripe_sz_ops.min,
518 1.1 bouyer sc->sc_info.mci_stripe_sz_ops.max,
519 1.1 bouyer sc->sc_info.mci_pd_ops,
520 1.1 bouyer sc->sc_info.mci_pd_mix_support);
521 1.1 bouyer
522 1.1 bouyer printf("%s: ecc_bucket %d pckg_prop %s\n",
523 1.1 bouyer DEVNAME(sc),
524 1.1 bouyer sc->sc_info.mci_ecc_bucket_count,
525 1.1 bouyer sc->sc_info.mci_package_version);
526 1.1 bouyer
527 1.1 bouyer printf("%s: sq_nm %d prd_fail_poll %d intr_thrtl %d intr_thrtl_to %d\n",
528 1.1 bouyer DEVNAME(sc),
529 1.1 bouyer sc->sc_info.mci_properties.mcp_seq_num,
530 1.1 bouyer sc->sc_info.mci_properties.mcp_pred_fail_poll_interval,
531 1.1 bouyer sc->sc_info.mci_properties.mcp_intr_throttle_cnt,
532 1.1 bouyer sc->sc_info.mci_properties.mcp_intr_throttle_timeout);
533 1.1 bouyer
534 1.1 bouyer printf("%s: rbld_rate %d patr_rd_rate %d bgi_rate %d cc_rate %d\n",
535 1.1 bouyer DEVNAME(sc),
536 1.1 bouyer sc->sc_info.mci_properties.mcp_rebuild_rate,
537 1.1 bouyer sc->sc_info.mci_properties.mcp_patrol_read_rate,
538 1.1 bouyer sc->sc_info.mci_properties.mcp_bgi_rate,
539 1.1 bouyer sc->sc_info.mci_properties.mcp_cc_rate);
540 1.1 bouyer
541 1.1 bouyer printf("%s: rc_rate %d ch_flsh %d spin_cnt %d spin_dly %d clus_en %d\n",
542 1.1 bouyer DEVNAME(sc),
543 1.1 bouyer sc->sc_info.mci_properties.mcp_recon_rate,
544 1.1 bouyer sc->sc_info.mci_properties.mcp_cache_flush_interval,
545 1.1 bouyer sc->sc_info.mci_properties.mcp_spinup_drv_cnt,
546 1.1 bouyer sc->sc_info.mci_properties.mcp_spinup_delay,
547 1.1 bouyer sc->sc_info.mci_properties.mcp_cluster_enable);
548 1.1 bouyer
549 1.1 bouyer printf("%s: coerc %d alarm %d dis_auto_rbld %d dis_bat_wrn %d ecc %d\n",
550 1.1 bouyer DEVNAME(sc),
551 1.1 bouyer sc->sc_info.mci_properties.mcp_coercion_mode,
552 1.1 bouyer sc->sc_info.mci_properties.mcp_alarm_enable,
553 1.1 bouyer sc->sc_info.mci_properties.mcp_disable_auto_rebuild,
554 1.1 bouyer sc->sc_info.mci_properties.mcp_disable_battery_warn,
555 1.1 bouyer sc->sc_info.mci_properties.mcp_ecc_bucket_size);
556 1.1 bouyer
557 1.1 bouyer printf("%s: ecc_leak %d rest_hs %d exp_encl_dev %d\n",
558 1.1 bouyer DEVNAME(sc),
559 1.1 bouyer sc->sc_info.mci_properties.mcp_ecc_bucket_leak_rate,
560 1.1 bouyer sc->sc_info.mci_properties.mcp_restore_hotspare_on_insertion,
561 1.1 bouyer sc->sc_info.mci_properties.mcp_expose_encl_devices);
562 1.1 bouyer
563 1.1 bouyer printf("%s: vendor %#x device %#x subvendor %#x subdevice %#x\n",
564 1.1 bouyer DEVNAME(sc),
565 1.1 bouyer sc->sc_info.mci_pci.mip_vendor,
566 1.1 bouyer sc->sc_info.mci_pci.mip_device,
567 1.1 bouyer sc->sc_info.mci_pci.mip_subvendor,
568 1.1 bouyer sc->sc_info.mci_pci.mip_subdevice);
569 1.1 bouyer
570 1.1 bouyer printf("%s: type %#x port_count %d port_addr ",
571 1.1 bouyer DEVNAME(sc),
572 1.1 bouyer sc->sc_info.mci_host.mih_type,
573 1.1 bouyer sc->sc_info.mci_host.mih_port_count);
574 1.1 bouyer
575 1.1 bouyer for (i = 0; i < 8; i++)
576 1.4 bouyer printf("%.0lx ", sc->sc_info.mci_host.mih_port_addr[i]);
577 1.1 bouyer printf("\n");
578 1.1 bouyer
579 1.1 bouyer printf("%s: type %.x port_count %d port_addr ",
580 1.1 bouyer DEVNAME(sc),
581 1.1 bouyer sc->sc_info.mci_device.mid_type,
582 1.1 bouyer sc->sc_info.mci_device.mid_port_count);
583 1.1 bouyer
584 1.1 bouyer for (i = 0; i < 8; i++)
585 1.4 bouyer printf("%.0lx ", sc->sc_info.mci_device.mid_port_addr[i]);
586 1.1 bouyer printf("\n");
587 1.1 bouyer #endif /* MFI_DEBUG */
588 1.1 bouyer
589 1.13 xtraeme return 0;
590 1.1 bouyer }
591 1.1 bouyer
592 1.13 xtraeme static void
593 1.1 bouyer mfiminphys(struct buf *bp)
594 1.1 bouyer {
595 1.1 bouyer DNPRINTF(MFI_D_MISC, "mfiminphys: %d\n", bp->b_bcount);
596 1.1 bouyer
597 1.1 bouyer /* XXX currently using MFI_MAXFER = MAXPHYS */
598 1.1 bouyer if (bp->b_bcount > MFI_MAXFER)
599 1.1 bouyer bp->b_bcount = MFI_MAXFER;
600 1.1 bouyer minphys(bp);
601 1.1 bouyer }
602 1.1 bouyer
603 1.1 bouyer int
604 1.12 xtraeme mfi_attach(struct mfi_softc *sc, enum mfi_iop iop)
605 1.1 bouyer {
606 1.1 bouyer struct scsipi_adapter *adapt = &sc->sc_adapt;
607 1.1 bouyer struct scsipi_channel *chan = &sc->sc_chan;
608 1.1 bouyer uint32_t status, frames;
609 1.1 bouyer int i;
610 1.1 bouyer
611 1.1 bouyer DNPRINTF(MFI_D_MISC, "%s: mfi_attach\n", DEVNAME(sc));
612 1.1 bouyer
613 1.12 xtraeme switch (iop) {
614 1.12 xtraeme case MFI_IOP_XSCALE:
615 1.12 xtraeme sc->sc_iop = &mfi_iop_xscale;
616 1.12 xtraeme break;
617 1.12 xtraeme case MFI_IOP_PPC:
618 1.12 xtraeme sc->sc_iop = &mfi_iop_ppc;
619 1.12 xtraeme break;
620 1.12 xtraeme default:
621 1.12 xtraeme panic("%s: unknown iop %d", DEVNAME(sc), iop);
622 1.12 xtraeme }
623 1.12 xtraeme
624 1.1 bouyer if (mfi_transition_firmware(sc))
625 1.13 xtraeme return 1;
626 1.1 bouyer
627 1.1 bouyer TAILQ_INIT(&sc->sc_ccb_freeq);
628 1.1 bouyer
629 1.12 xtraeme status = mfi_fw_state(sc);
630 1.1 bouyer sc->sc_max_cmds = status & MFI_STATE_MAXCMD_MASK;
631 1.1 bouyer sc->sc_max_sgl = (status & MFI_STATE_MAXSGL_MASK) >> 16;
632 1.1 bouyer DNPRINTF(MFI_D_MISC, "%s: max commands: %u, max sgl: %u\n",
633 1.1 bouyer DEVNAME(sc), sc->sc_max_cmds, sc->sc_max_sgl);
634 1.1 bouyer
635 1.1 bouyer /* consumer/producer and reply queue memory */
636 1.1 bouyer sc->sc_pcq = mfi_allocmem(sc, (sizeof(uint32_t) * sc->sc_max_cmds) +
637 1.1 bouyer sizeof(struct mfi_prod_cons));
638 1.1 bouyer if (sc->sc_pcq == NULL) {
639 1.1 bouyer aprint_error("%s: unable to allocate reply queue memory\n",
640 1.1 bouyer DEVNAME(sc));
641 1.1 bouyer goto nopcq;
642 1.1 bouyer }
643 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_pcq), 0,
644 1.1 bouyer sizeof(uint32_t) * sc->sc_max_cmds + sizeof(struct mfi_prod_cons),
645 1.1 bouyer BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
646 1.1 bouyer
647 1.1 bouyer /* frame memory */
648 1.1 bouyer /* we are not doing 64 bit IO so only calculate # of 32 bit frames */
649 1.1 bouyer frames = (sizeof(struct mfi_sg32) * sc->sc_max_sgl +
650 1.1 bouyer MFI_FRAME_SIZE - 1) / MFI_FRAME_SIZE + 1;
651 1.1 bouyer sc->sc_frames_size = frames * MFI_FRAME_SIZE;
652 1.1 bouyer sc->sc_frames = mfi_allocmem(sc, sc->sc_frames_size * sc->sc_max_cmds);
653 1.1 bouyer if (sc->sc_frames == NULL) {
654 1.1 bouyer aprint_error("%s: unable to allocate frame memory\n",
655 1.1 bouyer DEVNAME(sc));
656 1.1 bouyer goto noframe;
657 1.1 bouyer }
658 1.1 bouyer /* XXX hack, fix this */
659 1.1 bouyer if (MFIMEM_DVA(sc->sc_frames) & 0x3f) {
660 1.1 bouyer aprint_error("%s: improper frame alignment (%#llx) FIXME\n",
661 1.1 bouyer DEVNAME(sc), (long long int)MFIMEM_DVA(sc->sc_frames));
662 1.1 bouyer goto noframe;
663 1.1 bouyer }
664 1.1 bouyer
665 1.1 bouyer /* sense memory */
666 1.1 bouyer sc->sc_sense = mfi_allocmem(sc, sc->sc_max_cmds * MFI_SENSE_SIZE);
667 1.1 bouyer if (sc->sc_sense == NULL) {
668 1.1 bouyer aprint_error("%s: unable to allocate sense memory\n",
669 1.1 bouyer DEVNAME(sc));
670 1.1 bouyer goto nosense;
671 1.1 bouyer }
672 1.1 bouyer
673 1.1 bouyer /* now that we have all memory bits go initialize ccbs */
674 1.1 bouyer if (mfi_init_ccb(sc)) {
675 1.1 bouyer aprint_error("%s: could not init ccb list\n", DEVNAME(sc));
676 1.1 bouyer goto noinit;
677 1.1 bouyer }
678 1.1 bouyer
679 1.1 bouyer /* kickstart firmware with all addresses and pointers */
680 1.1 bouyer if (mfi_initialize_firmware(sc)) {
681 1.1 bouyer aprint_error("%s: could not initialize firmware\n",
682 1.1 bouyer DEVNAME(sc));
683 1.1 bouyer goto noinit;
684 1.1 bouyer }
685 1.1 bouyer
686 1.1 bouyer if (mfi_get_info(sc)) {
687 1.1 bouyer aprint_error("%s: could not retrieve controller information\n",
688 1.1 bouyer DEVNAME(sc));
689 1.1 bouyer goto noinit;
690 1.1 bouyer }
691 1.1 bouyer
692 1.1 bouyer aprint_normal("%s: logical drives %d, version %s, %dMB RAM\n",
693 1.1 bouyer DEVNAME(sc),
694 1.1 bouyer sc->sc_info.mci_lds_present,
695 1.1 bouyer sc->sc_info.mci_package_version,
696 1.1 bouyer sc->sc_info.mci_memory_size);
697 1.1 bouyer
698 1.1 bouyer sc->sc_ld_cnt = sc->sc_info.mci_lds_present;
699 1.1 bouyer sc->sc_max_ld = sc->sc_ld_cnt;
700 1.1 bouyer for (i = 0; i < sc->sc_ld_cnt; i++)
701 1.1 bouyer sc->sc_ld[i].ld_present = 1;
702 1.1 bouyer
703 1.1 bouyer memset(adapt, 0, sizeof(*adapt));
704 1.1 bouyer adapt->adapt_dev = &sc->sc_dev;
705 1.1 bouyer adapt->adapt_nchannels = 1;
706 1.1 bouyer if (sc->sc_ld_cnt)
707 1.1 bouyer adapt->adapt_openings = sc->sc_max_cmds / sc->sc_ld_cnt;
708 1.1 bouyer else
709 1.1 bouyer adapt->adapt_openings = sc->sc_max_cmds;
710 1.1 bouyer adapt->adapt_max_periph = adapt->adapt_openings;
711 1.1 bouyer adapt->adapt_request = mfi_scsipi_request;
712 1.1 bouyer adapt->adapt_minphys = mfiminphys;
713 1.1 bouyer
714 1.1 bouyer memset(chan, 0, sizeof(*chan));
715 1.1 bouyer chan->chan_adapter = adapt;
716 1.1 bouyer chan->chan_bustype = &scsi_bustype;
717 1.1 bouyer chan->chan_channel = 0;
718 1.1 bouyer chan->chan_flags = 0;
719 1.1 bouyer chan->chan_nluns = 8;
720 1.1 bouyer chan->chan_ntargets = MFI_MAX_LD;
721 1.1 bouyer chan->chan_id = MFI_MAX_LD;
722 1.1 bouyer
723 1.13 xtraeme (void)config_found(&sc->sc_dev, &sc->sc_chan, scsiprint);
724 1.1 bouyer
725 1.1 bouyer /* enable interrupts */
726 1.12 xtraeme mfi_intr_enable(sc);
727 1.1 bouyer
728 1.1 bouyer #if NBIO > 0
729 1.1 bouyer if (bio_register(&sc->sc_dev, mfi_ioctl) != 0)
730 1.1 bouyer panic("%s: controller registration failed", DEVNAME(sc));
731 1.1 bouyer if (mfi_create_sensors(sc) != 0)
732 1.1 bouyer aprint_error("%s: unable to create sensors\n", DEVNAME(sc));
733 1.1 bouyer #endif /* NBIO > 0 */
734 1.1 bouyer
735 1.13 xtraeme return 0;
736 1.1 bouyer noinit:
737 1.1 bouyer mfi_freemem(sc, sc->sc_sense);
738 1.1 bouyer nosense:
739 1.1 bouyer mfi_freemem(sc, sc->sc_frames);
740 1.1 bouyer noframe:
741 1.1 bouyer mfi_freemem(sc, sc->sc_pcq);
742 1.1 bouyer nopcq:
743 1.13 xtraeme return 1;
744 1.1 bouyer }
745 1.1 bouyer
746 1.13 xtraeme static int
747 1.1 bouyer mfi_poll(struct mfi_ccb *ccb)
748 1.1 bouyer {
749 1.1 bouyer struct mfi_softc *sc = ccb->ccb_sc;
750 1.1 bouyer struct mfi_frame_header *hdr;
751 1.1 bouyer int to = 0;
752 1.1 bouyer
753 1.1 bouyer DNPRINTF(MFI_D_CMD, "%s: mfi_poll\n", DEVNAME(sc));
754 1.1 bouyer
755 1.1 bouyer hdr = &ccb->ccb_frame->mfr_header;
756 1.1 bouyer hdr->mfh_cmd_status = 0xff;
757 1.1 bouyer hdr->mfh_flags |= MFI_FRAME_DONT_POST_IN_REPLY_QUEUE;
758 1.1 bouyer
759 1.12 xtraeme mfi_post(sc, ccb);
760 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_frames),
761 1.1 bouyer ccb->ccb_pframe - MFIMEM_DVA(sc->sc_frames),
762 1.1 bouyer sc->sc_frames_size, BUS_DMASYNC_POSTREAD);
763 1.1 bouyer
764 1.1 bouyer while (hdr->mfh_cmd_status == 0xff) {
765 1.1 bouyer delay(1000);
766 1.1 bouyer if (to++ > 5000) /* XXX 5 seconds busywait sucks */
767 1.1 bouyer break;
768 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_frames),
769 1.1 bouyer ccb->ccb_pframe - MFIMEM_DVA(sc->sc_frames),
770 1.1 bouyer sc->sc_frames_size, BUS_DMASYNC_POSTREAD);
771 1.1 bouyer }
772 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_frames),
773 1.1 bouyer ccb->ccb_pframe - MFIMEM_DVA(sc->sc_frames),
774 1.1 bouyer sc->sc_frames_size, BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
775 1.1 bouyer
776 1.1 bouyer if (ccb->ccb_data != NULL) {
777 1.1 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_mgmt_done sync\n",
778 1.1 bouyer DEVNAME(sc));
779 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap, 0,
780 1.1 bouyer ccb->ccb_dmamap->dm_mapsize,
781 1.1 bouyer (ccb->ccb_direction & MFI_DATA_IN) ?
782 1.1 bouyer BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
783 1.1 bouyer
784 1.1 bouyer bus_dmamap_unload(sc->sc_dmat, ccb->ccb_dmamap);
785 1.1 bouyer }
786 1.1 bouyer
787 1.1 bouyer if (hdr->mfh_cmd_status == 0xff) {
788 1.1 bouyer printf("%s: timeout on ccb %d\n", DEVNAME(sc),
789 1.1 bouyer hdr->mfh_context);
790 1.1 bouyer ccb->ccb_flags |= MFI_CCB_F_ERR;
791 1.13 xtraeme return 1;
792 1.1 bouyer }
793 1.1 bouyer
794 1.13 xtraeme return 0;
795 1.1 bouyer }
796 1.1 bouyer
797 1.1 bouyer int
798 1.1 bouyer mfi_intr(void *arg)
799 1.1 bouyer {
800 1.1 bouyer struct mfi_softc *sc = arg;
801 1.1 bouyer struct mfi_prod_cons *pcq;
802 1.1 bouyer struct mfi_ccb *ccb;
803 1.12 xtraeme uint32_t producer, consumer, ctx;
804 1.1 bouyer int claimed = 0;
805 1.1 bouyer
806 1.12 xtraeme if (!mfi_my_intr(sc))
807 1.12 xtraeme return 0;
808 1.1 bouyer
809 1.4 bouyer pcq = MFIMEM_KVA(sc->sc_pcq);
810 1.4 bouyer
811 1.4 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_intr %#lx %#lx\n", DEVNAME(sc),
812 1.4 bouyer (u_long)sc, (u_long)pcq);
813 1.1 bouyer
814 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_pcq), 0,
815 1.1 bouyer sizeof(uint32_t) * sc->sc_max_cmds + sizeof(struct mfi_prod_cons),
816 1.1 bouyer BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
817 1.1 bouyer
818 1.1 bouyer producer = pcq->mpc_producer;
819 1.1 bouyer consumer = pcq->mpc_consumer;
820 1.1 bouyer
821 1.1 bouyer while (consumer != producer) {
822 1.1 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_intr pi %#x ci %#x\n",
823 1.1 bouyer DEVNAME(sc), producer, consumer);
824 1.1 bouyer
825 1.1 bouyer ctx = pcq->mpc_reply_q[consumer];
826 1.1 bouyer pcq->mpc_reply_q[consumer] = MFI_INVALID_CTX;
827 1.1 bouyer if (ctx == MFI_INVALID_CTX)
828 1.1 bouyer printf("%s: invalid context, p: %d c: %d\n",
829 1.1 bouyer DEVNAME(sc), producer, consumer);
830 1.1 bouyer else {
831 1.1 bouyer /* XXX remove from queue and call scsi_done */
832 1.1 bouyer ccb = &sc->sc_ccb[ctx];
833 1.1 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_intr context %#x\n",
834 1.1 bouyer DEVNAME(sc), ctx);
835 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_frames),
836 1.1 bouyer ccb->ccb_pframe - MFIMEM_DVA(sc->sc_frames),
837 1.1 bouyer sc->sc_frames_size,
838 1.1 bouyer BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
839 1.1 bouyer ccb->ccb_done(ccb);
840 1.1 bouyer
841 1.1 bouyer claimed = 1;
842 1.1 bouyer }
843 1.1 bouyer consumer++;
844 1.1 bouyer if (consumer == (sc->sc_max_cmds + 1))
845 1.1 bouyer consumer = 0;
846 1.1 bouyer }
847 1.1 bouyer
848 1.1 bouyer pcq->mpc_consumer = consumer;
849 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_pcq), 0,
850 1.1 bouyer sizeof(uint32_t) * sc->sc_max_cmds + sizeof(struct mfi_prod_cons),
851 1.1 bouyer BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
852 1.1 bouyer
853 1.13 xtraeme return claimed;
854 1.1 bouyer }
855 1.1 bouyer
856 1.13 xtraeme static int
857 1.1 bouyer mfi_scsi_io(struct mfi_ccb *ccb, struct scsipi_xfer *xs, uint32_t blockno,
858 1.1 bouyer uint32_t blockcnt)
859 1.1 bouyer {
860 1.1 bouyer struct scsipi_periph *periph = xs->xs_periph;
861 1.1 bouyer struct mfi_io_frame *io;
862 1.1 bouyer
863 1.1 bouyer DNPRINTF(MFI_D_CMD, "%s: mfi_scsi_io: %d\n",
864 1.15 cegger device_xname(periph->periph_channel->chan_adapter->adapt_dev),
865 1.1 bouyer periph->periph_target);
866 1.1 bouyer
867 1.1 bouyer if (!xs->data)
868 1.13 xtraeme return 1;
869 1.1 bouyer
870 1.1 bouyer io = &ccb->ccb_frame->mfr_io;
871 1.1 bouyer if (xs->xs_control & XS_CTL_DATA_IN) {
872 1.1 bouyer io->mif_header.mfh_cmd = MFI_CMD_LD_READ;
873 1.1 bouyer ccb->ccb_direction = MFI_DATA_IN;
874 1.1 bouyer } else {
875 1.1 bouyer io->mif_header.mfh_cmd = MFI_CMD_LD_WRITE;
876 1.1 bouyer ccb->ccb_direction = MFI_DATA_OUT;
877 1.1 bouyer }
878 1.1 bouyer io->mif_header.mfh_target_id = periph->periph_target;
879 1.1 bouyer io->mif_header.mfh_timeout = 0;
880 1.1 bouyer io->mif_header.mfh_flags = 0;
881 1.1 bouyer io->mif_header.mfh_sense_len = MFI_SENSE_SIZE;
882 1.1 bouyer io->mif_header.mfh_data_len= blockcnt;
883 1.1 bouyer io->mif_lba_hi = 0;
884 1.1 bouyer io->mif_lba_lo = blockno;
885 1.1 bouyer io->mif_sense_addr_lo = htole32(ccb->ccb_psense);
886 1.1 bouyer io->mif_sense_addr_hi = 0;
887 1.1 bouyer
888 1.1 bouyer ccb->ccb_done = mfi_scsi_xs_done;
889 1.1 bouyer ccb->ccb_xs = xs;
890 1.1 bouyer ccb->ccb_frame_size = MFI_IO_FRAME_SIZE;
891 1.1 bouyer ccb->ccb_sgl = &io->mif_sgl;
892 1.1 bouyer ccb->ccb_data = xs->data;
893 1.1 bouyer ccb->ccb_len = xs->datalen;
894 1.1 bouyer
895 1.14 xtraeme if (mfi_create_sgl(ccb, (xs->xs_control & XS_CTL_NOSLEEP) ?
896 1.14 xtraeme BUS_DMA_NOWAIT : BUS_DMA_WAITOK))
897 1.13 xtraeme return 1;
898 1.1 bouyer
899 1.13 xtraeme return 0;
900 1.1 bouyer }
901 1.1 bouyer
902 1.13 xtraeme static void
903 1.1 bouyer mfi_scsi_xs_done(struct mfi_ccb *ccb)
904 1.1 bouyer {
905 1.1 bouyer struct scsipi_xfer *xs = ccb->ccb_xs;
906 1.1 bouyer struct mfi_softc *sc = ccb->ccb_sc;
907 1.1 bouyer struct mfi_frame_header *hdr = &ccb->ccb_frame->mfr_header;
908 1.1 bouyer
909 1.4 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_scsi_xs_done %#lx %#lx\n",
910 1.4 bouyer DEVNAME(sc), (u_long)ccb, (u_long)ccb->ccb_frame);
911 1.1 bouyer
912 1.1 bouyer if (xs->data != NULL) {
913 1.1 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_scsi_xs_done sync\n",
914 1.1 bouyer DEVNAME(sc));
915 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap, 0,
916 1.1 bouyer ccb->ccb_dmamap->dm_mapsize,
917 1.1 bouyer (xs->xs_control & XS_CTL_DATA_IN) ?
918 1.1 bouyer BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
919 1.1 bouyer
920 1.1 bouyer bus_dmamap_unload(sc->sc_dmat, ccb->ccb_dmamap);
921 1.1 bouyer }
922 1.1 bouyer
923 1.1 bouyer if (hdr->mfh_cmd_status != MFI_STAT_OK) {
924 1.1 bouyer xs->error = XS_DRIVER_STUFFUP;
925 1.1 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_scsi_xs_done stuffup %#x\n",
926 1.1 bouyer DEVNAME(sc), hdr->mfh_cmd_status);
927 1.1 bouyer
928 1.1 bouyer if (hdr->mfh_scsi_status != 0) {
929 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_sense),
930 1.1 bouyer ccb->ccb_psense - MFIMEM_DVA(sc->sc_sense),
931 1.1 bouyer MFI_SENSE_SIZE, BUS_DMASYNC_POSTREAD);
932 1.1 bouyer DNPRINTF(MFI_D_INTR,
933 1.4 bouyer "%s: mfi_scsi_xs_done sense %#x %lx %lx\n",
934 1.1 bouyer DEVNAME(sc), hdr->mfh_scsi_status,
935 1.4 bouyer (u_long)&xs->sense, (u_long)ccb->ccb_sense);
936 1.1 bouyer memset(&xs->sense, 0, sizeof(xs->sense));
937 1.1 bouyer memcpy(&xs->sense, ccb->ccb_sense,
938 1.1 bouyer sizeof(struct scsi_sense_data));
939 1.1 bouyer xs->error = XS_SENSE;
940 1.1 bouyer }
941 1.1 bouyer } else {
942 1.1 bouyer xs->error = XS_NOERROR;
943 1.1 bouyer xs->status = SCSI_OK;
944 1.1 bouyer xs->resid = 0;
945 1.1 bouyer }
946 1.1 bouyer
947 1.1 bouyer mfi_put_ccb(ccb);
948 1.1 bouyer scsipi_done(xs);
949 1.1 bouyer }
950 1.1 bouyer
951 1.13 xtraeme static int
952 1.1 bouyer mfi_scsi_ld(struct mfi_ccb *ccb, struct scsipi_xfer *xs)
953 1.1 bouyer {
954 1.1 bouyer struct mfi_pass_frame *pf;
955 1.1 bouyer struct scsipi_periph *periph = xs->xs_periph;
956 1.1 bouyer
957 1.1 bouyer DNPRINTF(MFI_D_CMD, "%s: mfi_scsi_ld: %d\n",
958 1.15 cegger device_xname(periph->periph_channel->chan_adapter->adapt_dev),
959 1.1 bouyer periph->periph_target);
960 1.1 bouyer
961 1.1 bouyer pf = &ccb->ccb_frame->mfr_pass;
962 1.1 bouyer pf->mpf_header.mfh_cmd = MFI_CMD_LD_SCSI_IO;
963 1.1 bouyer pf->mpf_header.mfh_target_id = periph->periph_target;
964 1.1 bouyer pf->mpf_header.mfh_lun_id = 0;
965 1.1 bouyer pf->mpf_header.mfh_cdb_len = xs->cmdlen;
966 1.1 bouyer pf->mpf_header.mfh_timeout = 0;
967 1.1 bouyer pf->mpf_header.mfh_data_len= xs->datalen; /* XXX */
968 1.1 bouyer pf->mpf_header.mfh_sense_len = MFI_SENSE_SIZE;
969 1.1 bouyer
970 1.1 bouyer pf->mpf_sense_addr_hi = 0;
971 1.1 bouyer pf->mpf_sense_addr_lo = htole32(ccb->ccb_psense);
972 1.1 bouyer
973 1.1 bouyer memset(pf->mpf_cdb, 0, 16);
974 1.1 bouyer memcpy(pf->mpf_cdb, &xs->cmdstore, xs->cmdlen);
975 1.1 bouyer
976 1.1 bouyer ccb->ccb_done = mfi_scsi_xs_done;
977 1.1 bouyer ccb->ccb_xs = xs;
978 1.1 bouyer ccb->ccb_frame_size = MFI_PASS_FRAME_SIZE;
979 1.1 bouyer ccb->ccb_sgl = &pf->mpf_sgl;
980 1.1 bouyer
981 1.1 bouyer if (xs->xs_control & (XS_CTL_DATA_IN | XS_CTL_DATA_OUT))
982 1.1 bouyer ccb->ccb_direction = (xs->xs_control & XS_CTL_DATA_IN) ?
983 1.1 bouyer MFI_DATA_IN : MFI_DATA_OUT;
984 1.1 bouyer else
985 1.1 bouyer ccb->ccb_direction = MFI_DATA_NONE;
986 1.1 bouyer
987 1.1 bouyer if (xs->data) {
988 1.1 bouyer ccb->ccb_data = xs->data;
989 1.1 bouyer ccb->ccb_len = xs->datalen;
990 1.1 bouyer
991 1.14 xtraeme if (mfi_create_sgl(ccb, (xs->xs_control & XS_CTL_NOSLEEP) ?
992 1.14 xtraeme BUS_DMA_NOWAIT : BUS_DMA_WAITOK))
993 1.13 xtraeme return 1;
994 1.1 bouyer }
995 1.1 bouyer
996 1.13 xtraeme return 0;
997 1.1 bouyer }
998 1.1 bouyer
999 1.13 xtraeme static void
1000 1.1 bouyer mfi_scsipi_request(struct scsipi_channel *chan, scsipi_adapter_req_t req,
1001 1.1 bouyer void *arg)
1002 1.1 bouyer {
1003 1.1 bouyer struct scsipi_periph *periph;
1004 1.1 bouyer struct scsipi_xfer *xs;
1005 1.1 bouyer struct scsipi_adapter *adapt = chan->chan_adapter;
1006 1.1 bouyer struct mfi_softc *sc = (void *) adapt->adapt_dev;
1007 1.1 bouyer struct mfi_ccb *ccb;
1008 1.1 bouyer struct scsi_rw_6 *rw;
1009 1.1 bouyer struct scsipi_rw_10 *rwb;
1010 1.1 bouyer uint32_t blockno, blockcnt;
1011 1.1 bouyer uint8_t target;
1012 1.1 bouyer uint8_t mbox[MFI_MBOX_SIZE];
1013 1.1 bouyer int s;
1014 1.1 bouyer
1015 1.1 bouyer switch (req) {
1016 1.1 bouyer case ADAPTER_REQ_GROW_RESOURCES:
1017 1.1 bouyer /* Not supported. */
1018 1.1 bouyer return;
1019 1.1 bouyer case ADAPTER_REQ_SET_XFER_MODE:
1020 1.1 bouyer /* Not supported. */
1021 1.1 bouyer return;
1022 1.1 bouyer case ADAPTER_REQ_RUN_XFER:
1023 1.1 bouyer break;
1024 1.1 bouyer }
1025 1.1 bouyer
1026 1.1 bouyer xs = arg;
1027 1.4 bouyer
1028 1.4 bouyer DNPRINTF(MFI_D_CMD, "%s: mfi_scsipi_request req %d opcode: %#x\n",
1029 1.4 bouyer DEVNAME(sc), req, xs->cmd->opcode);
1030 1.4 bouyer
1031 1.1 bouyer periph = xs->xs_periph;
1032 1.1 bouyer target = periph->periph_target;
1033 1.1 bouyer
1034 1.1 bouyer s = splbio();
1035 1.1 bouyer if (target >= MFI_MAX_LD || !sc->sc_ld[target].ld_present ||
1036 1.1 bouyer periph->periph_lun != 0) {
1037 1.1 bouyer DNPRINTF(MFI_D_CMD, "%s: invalid target %d\n",
1038 1.1 bouyer DEVNAME(sc), target);
1039 1.1 bouyer xs->error = XS_SELTIMEOUT;
1040 1.1 bouyer scsipi_done(xs);
1041 1.1 bouyer splx(s);
1042 1.1 bouyer return;
1043 1.1 bouyer }
1044 1.1 bouyer
1045 1.1 bouyer if ((ccb = mfi_get_ccb(sc)) == NULL) {
1046 1.1 bouyer DNPRINTF(MFI_D_CMD, "%s: mfi_scsipi_request no ccb\n", DEVNAME(sc));
1047 1.1 bouyer xs->error = XS_RESOURCE_SHORTAGE;
1048 1.1 bouyer scsipi_done(xs);
1049 1.1 bouyer splx(s);
1050 1.1 bouyer return;
1051 1.1 bouyer }
1052 1.1 bouyer
1053 1.1 bouyer switch (xs->cmd->opcode) {
1054 1.1 bouyer /* IO path */
1055 1.1 bouyer case READ_10:
1056 1.1 bouyer case WRITE_10:
1057 1.1 bouyer rwb = (struct scsipi_rw_10 *)xs->cmd;
1058 1.1 bouyer blockno = _4btol(rwb->addr);
1059 1.1 bouyer blockcnt = _2btol(rwb->length);
1060 1.1 bouyer if (mfi_scsi_io(ccb, xs, blockno, blockcnt)) {
1061 1.1 bouyer mfi_put_ccb(ccb);
1062 1.1 bouyer goto stuffup;
1063 1.1 bouyer }
1064 1.1 bouyer break;
1065 1.1 bouyer
1066 1.1 bouyer case SCSI_READ_6_COMMAND:
1067 1.1 bouyer case SCSI_WRITE_6_COMMAND:
1068 1.1 bouyer rw = (struct scsi_rw_6 *)xs->cmd;
1069 1.1 bouyer blockno = _3btol(rw->addr) & (SRW_TOPADDR << 16 | 0xffff);
1070 1.1 bouyer blockcnt = rw->length ? rw->length : 0x100;
1071 1.1 bouyer if (mfi_scsi_io(ccb, xs, blockno, blockcnt)) {
1072 1.1 bouyer mfi_put_ccb(ccb);
1073 1.1 bouyer goto stuffup;
1074 1.1 bouyer }
1075 1.1 bouyer break;
1076 1.1 bouyer
1077 1.1 bouyer case SCSI_SYNCHRONIZE_CACHE_10:
1078 1.1 bouyer mbox[0] = MR_FLUSH_CTRL_CACHE | MR_FLUSH_DISK_CACHE;
1079 1.19 bouyer if (mfi_mgmt(ccb, xs,
1080 1.19 bouyer MR_DCMD_CTRL_CACHE_FLUSH, MFI_DATA_NONE, 0, NULL, mbox)) {
1081 1.19 bouyer mfi_put_ccb(ccb);
1082 1.1 bouyer goto stuffup;
1083 1.19 bouyer }
1084 1.19 bouyer break;
1085 1.1 bouyer
1086 1.1 bouyer /* hand it of to the firmware and let it deal with it */
1087 1.1 bouyer case SCSI_TEST_UNIT_READY:
1088 1.1 bouyer /* save off sd? after autoconf */
1089 1.1 bouyer if (!cold) /* XXX bogus */
1090 1.15 cegger strlcpy(sc->sc_ld[target].ld_dev, device_xname(&sc->sc_dev),
1091 1.1 bouyer sizeof(sc->sc_ld[target].ld_dev));
1092 1.1 bouyer /* FALLTHROUGH */
1093 1.1 bouyer
1094 1.1 bouyer default:
1095 1.1 bouyer if (mfi_scsi_ld(ccb, xs)) {
1096 1.1 bouyer mfi_put_ccb(ccb);
1097 1.1 bouyer goto stuffup;
1098 1.1 bouyer }
1099 1.1 bouyer break;
1100 1.1 bouyer }
1101 1.1 bouyer
1102 1.1 bouyer DNPRINTF(MFI_D_CMD, "%s: start io %d\n", DEVNAME(sc), target);
1103 1.1 bouyer
1104 1.1 bouyer if (xs->xs_control & XS_CTL_POLL) {
1105 1.1 bouyer if (mfi_poll(ccb)) {
1106 1.1 bouyer /* XXX check for sense in ccb->ccb_sense? */
1107 1.1 bouyer printf("%s: mfi_scsipi_request poll failed\n",
1108 1.1 bouyer DEVNAME(sc));
1109 1.1 bouyer mfi_put_ccb(ccb);
1110 1.1 bouyer bzero(&xs->sense, sizeof(xs->sense));
1111 1.1 bouyer xs->sense.scsi_sense.response_code =
1112 1.1 bouyer SSD_RCODE_VALID | SSD_RCODE_CURRENT;
1113 1.1 bouyer xs->sense.scsi_sense.flags = SKEY_ILLEGAL_REQUEST;
1114 1.1 bouyer xs->sense.scsi_sense.asc = 0x20; /* invalid opcode */
1115 1.1 bouyer xs->error = XS_SENSE;
1116 1.1 bouyer xs->status = SCSI_CHECK;
1117 1.1 bouyer } else {
1118 1.1 bouyer DNPRINTF(MFI_D_DMA,
1119 1.1 bouyer "%s: mfi_scsipi_request poll complete %d\n",
1120 1.1 bouyer DEVNAME(sc), ccb->ccb_dmamap->dm_nsegs);
1121 1.1 bouyer xs->error = XS_NOERROR;
1122 1.1 bouyer xs->status = SCSI_OK;
1123 1.1 bouyer xs->resid = 0;
1124 1.1 bouyer }
1125 1.1 bouyer mfi_put_ccb(ccb);
1126 1.1 bouyer scsipi_done(xs);
1127 1.1 bouyer splx(s);
1128 1.1 bouyer return;
1129 1.1 bouyer }
1130 1.1 bouyer
1131 1.12 xtraeme mfi_post(sc, ccb);
1132 1.1 bouyer
1133 1.1 bouyer DNPRINTF(MFI_D_DMA, "%s: mfi_scsipi_request queued %d\n", DEVNAME(sc),
1134 1.1 bouyer ccb->ccb_dmamap->dm_nsegs);
1135 1.1 bouyer
1136 1.1 bouyer splx(s);
1137 1.1 bouyer return;
1138 1.1 bouyer
1139 1.1 bouyer stuffup:
1140 1.1 bouyer xs->error = XS_DRIVER_STUFFUP;
1141 1.1 bouyer scsipi_done(xs);
1142 1.1 bouyer splx(s);
1143 1.1 bouyer }
1144 1.1 bouyer
1145 1.13 xtraeme static int
1146 1.1 bouyer mfi_create_sgl(struct mfi_ccb *ccb, int flags)
1147 1.1 bouyer {
1148 1.1 bouyer struct mfi_softc *sc = ccb->ccb_sc;
1149 1.1 bouyer struct mfi_frame_header *hdr;
1150 1.1 bouyer bus_dma_segment_t *sgd;
1151 1.1 bouyer union mfi_sgl *sgl;
1152 1.1 bouyer int error, i;
1153 1.1 bouyer
1154 1.4 bouyer DNPRINTF(MFI_D_DMA, "%s: mfi_create_sgl %#lx\n", DEVNAME(sc),
1155 1.4 bouyer (u_long)ccb->ccb_data);
1156 1.1 bouyer
1157 1.1 bouyer if (!ccb->ccb_data)
1158 1.13 xtraeme return 1;
1159 1.1 bouyer
1160 1.1 bouyer error = bus_dmamap_load(sc->sc_dmat, ccb->ccb_dmamap,
1161 1.1 bouyer ccb->ccb_data, ccb->ccb_len, NULL, flags);
1162 1.1 bouyer if (error) {
1163 1.1 bouyer if (error == EFBIG)
1164 1.1 bouyer printf("more than %d dma segs\n",
1165 1.1 bouyer sc->sc_max_sgl);
1166 1.1 bouyer else
1167 1.1 bouyer printf("error %d loading dma map\n", error);
1168 1.13 xtraeme return 1;
1169 1.1 bouyer }
1170 1.1 bouyer
1171 1.1 bouyer hdr = &ccb->ccb_frame->mfr_header;
1172 1.1 bouyer sgl = ccb->ccb_sgl;
1173 1.1 bouyer sgd = ccb->ccb_dmamap->dm_segs;
1174 1.1 bouyer for (i = 0; i < ccb->ccb_dmamap->dm_nsegs; i++) {
1175 1.1 bouyer sgl->sg32[i].addr = htole32(sgd[i].ds_addr);
1176 1.1 bouyer sgl->sg32[i].len = htole32(sgd[i].ds_len);
1177 1.1 bouyer DNPRINTF(MFI_D_DMA, "%s: addr: %#x len: %#x\n",
1178 1.1 bouyer DEVNAME(sc), sgl->sg32[i].addr, sgl->sg32[i].len);
1179 1.1 bouyer }
1180 1.1 bouyer
1181 1.1 bouyer if (ccb->ccb_direction == MFI_DATA_IN) {
1182 1.1 bouyer hdr->mfh_flags |= MFI_FRAME_DIR_READ;
1183 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap, 0,
1184 1.1 bouyer ccb->ccb_dmamap->dm_mapsize, BUS_DMASYNC_PREREAD);
1185 1.1 bouyer } else {
1186 1.1 bouyer hdr->mfh_flags |= MFI_FRAME_DIR_WRITE;
1187 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap, 0,
1188 1.1 bouyer ccb->ccb_dmamap->dm_mapsize, BUS_DMASYNC_PREWRITE);
1189 1.1 bouyer }
1190 1.1 bouyer
1191 1.1 bouyer hdr->mfh_sg_count = ccb->ccb_dmamap->dm_nsegs;
1192 1.1 bouyer /* for 64 bit io make the sizeof a variable to hold whatever sg size */
1193 1.1 bouyer ccb->ccb_frame_size += sizeof(struct mfi_sg32) *
1194 1.1 bouyer ccb->ccb_dmamap->dm_nsegs;
1195 1.1 bouyer ccb->ccb_extra_frames = (ccb->ccb_frame_size - 1) / MFI_FRAME_SIZE;
1196 1.1 bouyer
1197 1.1 bouyer DNPRINTF(MFI_D_DMA, "%s: sg_count: %d frame_size: %d frames_size: %d"
1198 1.1 bouyer " dm_nsegs: %d extra_frames: %d\n",
1199 1.1 bouyer DEVNAME(sc),
1200 1.1 bouyer hdr->mfh_sg_count,
1201 1.1 bouyer ccb->ccb_frame_size,
1202 1.1 bouyer sc->sc_frames_size,
1203 1.1 bouyer ccb->ccb_dmamap->dm_nsegs,
1204 1.1 bouyer ccb->ccb_extra_frames);
1205 1.1 bouyer
1206 1.13 xtraeme return 0;
1207 1.1 bouyer }
1208 1.1 bouyer
1209 1.13 xtraeme static int
1210 1.19 bouyer mfi_mgmt_internal(struct mfi_softc *sc, uint32_t opc, uint32_t dir,
1211 1.19 bouyer uint32_t len, void *buf, uint8_t *mbox) {
1212 1.1 bouyer struct mfi_ccb *ccb;
1213 1.1 bouyer int rv = 1;
1214 1.1 bouyer
1215 1.1 bouyer if ((ccb = mfi_get_ccb(sc)) == NULL)
1216 1.13 xtraeme return rv;
1217 1.19 bouyer rv = mfi_mgmt(ccb, NULL, opc, dir, len, buf, mbox);
1218 1.19 bouyer if (rv)
1219 1.19 bouyer return rv;
1220 1.19 bouyer
1221 1.19 bouyer if (cold) {
1222 1.19 bouyer if (mfi_poll(ccb))
1223 1.19 bouyer goto done;
1224 1.19 bouyer } else {
1225 1.19 bouyer mfi_post(sc, ccb);
1226 1.19 bouyer
1227 1.19 bouyer DNPRINTF(MFI_D_MISC, "%s: mfi_mgmt_internal sleeping\n",
1228 1.19 bouyer DEVNAME(sc));
1229 1.19 bouyer while (ccb->ccb_state != MFI_CCB_DONE)
1230 1.19 bouyer tsleep(ccb, PRIBIO, "mfi_mgmt", 0);
1231 1.19 bouyer
1232 1.19 bouyer if (ccb->ccb_flags & MFI_CCB_F_ERR)
1233 1.19 bouyer goto done;
1234 1.19 bouyer }
1235 1.19 bouyer rv = 0;
1236 1.19 bouyer
1237 1.19 bouyer done:
1238 1.19 bouyer mfi_put_ccb(ccb);
1239 1.19 bouyer return rv;
1240 1.19 bouyer }
1241 1.19 bouyer
1242 1.19 bouyer static int
1243 1.19 bouyer mfi_mgmt(struct mfi_ccb *ccb, struct scsipi_xfer *xs,
1244 1.19 bouyer uint32_t opc, uint32_t dir, uint32_t len, void *buf, uint8_t *mbox)
1245 1.19 bouyer {
1246 1.19 bouyer struct mfi_dcmd_frame *dcmd;
1247 1.19 bouyer
1248 1.19 bouyer DNPRINTF(MFI_D_MISC, "%s: mfi_mgmt %#x\n", DEVNAME(ccb->ccb_sc), opc);
1249 1.1 bouyer
1250 1.1 bouyer dcmd = &ccb->ccb_frame->mfr_dcmd;
1251 1.1 bouyer memset(dcmd->mdf_mbox, 0, MFI_MBOX_SIZE);
1252 1.1 bouyer dcmd->mdf_header.mfh_cmd = MFI_CMD_DCMD;
1253 1.1 bouyer dcmd->mdf_header.mfh_timeout = 0;
1254 1.1 bouyer
1255 1.1 bouyer dcmd->mdf_opcode = opc;
1256 1.1 bouyer dcmd->mdf_header.mfh_data_len = 0;
1257 1.1 bouyer ccb->ccb_direction = dir;
1258 1.19 bouyer ccb->ccb_xs = xs;
1259 1.1 bouyer ccb->ccb_done = mfi_mgmt_done;
1260 1.1 bouyer
1261 1.1 bouyer ccb->ccb_frame_size = MFI_DCMD_FRAME_SIZE;
1262 1.1 bouyer
1263 1.1 bouyer /* handle special opcodes */
1264 1.1 bouyer if (mbox)
1265 1.1 bouyer memcpy(dcmd->mdf_mbox, mbox, MFI_MBOX_SIZE);
1266 1.1 bouyer
1267 1.1 bouyer if (dir != MFI_DATA_NONE) {
1268 1.1 bouyer dcmd->mdf_header.mfh_data_len = len;
1269 1.1 bouyer ccb->ccb_data = buf;
1270 1.1 bouyer ccb->ccb_len = len;
1271 1.1 bouyer ccb->ccb_sgl = &dcmd->mdf_sgl;
1272 1.1 bouyer
1273 1.1 bouyer if (mfi_create_sgl(ccb, BUS_DMA_WAITOK))
1274 1.19 bouyer return 1;
1275 1.1 bouyer }
1276 1.19 bouyer return 0;
1277 1.1 bouyer }
1278 1.1 bouyer
1279 1.13 xtraeme static void
1280 1.1 bouyer mfi_mgmt_done(struct mfi_ccb *ccb)
1281 1.1 bouyer {
1282 1.19 bouyer struct scsipi_xfer *xs = ccb->ccb_xs;
1283 1.1 bouyer struct mfi_softc *sc = ccb->ccb_sc;
1284 1.1 bouyer struct mfi_frame_header *hdr = &ccb->ccb_frame->mfr_header;
1285 1.1 bouyer
1286 1.4 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_mgmt_done %#lx %#lx\n",
1287 1.4 bouyer DEVNAME(sc), (u_long)ccb, (u_long)ccb->ccb_frame);
1288 1.1 bouyer
1289 1.1 bouyer if (ccb->ccb_data != NULL) {
1290 1.1 bouyer DNPRINTF(MFI_D_INTR, "%s: mfi_mgmt_done sync\n",
1291 1.1 bouyer DEVNAME(sc));
1292 1.1 bouyer bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap, 0,
1293 1.1 bouyer ccb->ccb_dmamap->dm_mapsize,
1294 1.1 bouyer (ccb->ccb_direction & MFI_DATA_IN) ?
1295 1.1 bouyer BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
1296 1.1 bouyer
1297 1.1 bouyer bus_dmamap_unload(sc->sc_dmat, ccb->ccb_dmamap);
1298 1.1 bouyer }
1299 1.1 bouyer
1300 1.1 bouyer if (hdr->mfh_cmd_status != MFI_STAT_OK)
1301 1.1 bouyer ccb->ccb_flags |= MFI_CCB_F_ERR;
1302 1.1 bouyer
1303 1.1 bouyer ccb->ccb_state = MFI_CCB_DONE;
1304 1.19 bouyer if (xs) {
1305 1.19 bouyer if (hdr->mfh_cmd_status != MFI_STAT_OK) {
1306 1.19 bouyer xs->error = XS_DRIVER_STUFFUP;
1307 1.19 bouyer } else {
1308 1.19 bouyer xs->error = XS_NOERROR;
1309 1.19 bouyer xs->status = SCSI_OK;
1310 1.19 bouyer xs->resid = 0;
1311 1.19 bouyer }
1312 1.19 bouyer mfi_put_ccb(ccb);
1313 1.19 bouyer scsipi_done(xs);
1314 1.19 bouyer } else
1315 1.19 bouyer wakeup(ccb);
1316 1.1 bouyer }
1317 1.1 bouyer
1318 1.1 bouyer #if NBIO > 0
1319 1.1 bouyer int
1320 1.3 christos mfi_ioctl(struct device *dev, u_long cmd, void *addr)
1321 1.1 bouyer {
1322 1.1 bouyer struct mfi_softc *sc = (struct mfi_softc *)dev;
1323 1.1 bouyer int error = 0;
1324 1.13 xtraeme int s = splbio();
1325 1.1 bouyer
1326 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl ", DEVNAME(sc));
1327 1.1 bouyer
1328 1.1 bouyer switch (cmd) {
1329 1.1 bouyer case BIOCINQ:
1330 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "inq\n");
1331 1.1 bouyer error = mfi_ioctl_inq(sc, (struct bioc_inq *)addr);
1332 1.1 bouyer break;
1333 1.1 bouyer
1334 1.1 bouyer case BIOCVOL:
1335 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "vol\n");
1336 1.1 bouyer error = mfi_ioctl_vol(sc, (struct bioc_vol *)addr);
1337 1.1 bouyer break;
1338 1.1 bouyer
1339 1.1 bouyer case BIOCDISK:
1340 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "disk\n");
1341 1.1 bouyer error = mfi_ioctl_disk(sc, (struct bioc_disk *)addr);
1342 1.1 bouyer break;
1343 1.1 bouyer
1344 1.1 bouyer case BIOCALARM:
1345 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "alarm\n");
1346 1.1 bouyer error = mfi_ioctl_alarm(sc, (struct bioc_alarm *)addr);
1347 1.1 bouyer break;
1348 1.1 bouyer
1349 1.1 bouyer case BIOCBLINK:
1350 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "blink\n");
1351 1.1 bouyer error = mfi_ioctl_blink(sc, (struct bioc_blink *)addr);
1352 1.1 bouyer break;
1353 1.1 bouyer
1354 1.1 bouyer case BIOCSETSTATE:
1355 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "setstate\n");
1356 1.1 bouyer error = mfi_ioctl_setstate(sc, (struct bioc_setstate *)addr);
1357 1.1 bouyer break;
1358 1.1 bouyer
1359 1.1 bouyer default:
1360 1.1 bouyer DNPRINTF(MFI_D_IOCTL, " invalid ioctl\n");
1361 1.1 bouyer error = EINVAL;
1362 1.1 bouyer }
1363 1.4 bouyer splx(s);
1364 1.13 xtraeme
1365 1.4 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl return %x\n", DEVNAME(sc), error);
1366 1.13 xtraeme return error;
1367 1.1 bouyer }
1368 1.1 bouyer
1369 1.13 xtraeme static int
1370 1.1 bouyer mfi_ioctl_inq(struct mfi_softc *sc, struct bioc_inq *bi)
1371 1.1 bouyer {
1372 1.1 bouyer struct mfi_conf *cfg;
1373 1.1 bouyer int rv = EINVAL;
1374 1.1 bouyer
1375 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_inq\n", DEVNAME(sc));
1376 1.1 bouyer
1377 1.1 bouyer if (mfi_get_info(sc)) {
1378 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_inq failed\n",
1379 1.1 bouyer DEVNAME(sc));
1380 1.13 xtraeme return EIO;
1381 1.1 bouyer }
1382 1.1 bouyer
1383 1.1 bouyer /* get figures */
1384 1.1 bouyer cfg = malloc(sizeof *cfg, M_DEVBUF, M_WAITOK);
1385 1.19 bouyer if (mfi_mgmt_internal(sc, MD_DCMD_CONF_GET, MFI_DATA_IN,
1386 1.19 bouyer sizeof *cfg, cfg, NULL))
1387 1.1 bouyer goto freeme;
1388 1.1 bouyer
1389 1.1 bouyer strlcpy(bi->bi_dev, DEVNAME(sc), sizeof(bi->bi_dev));
1390 1.1 bouyer bi->bi_novol = cfg->mfc_no_ld + cfg->mfc_no_hs;
1391 1.1 bouyer bi->bi_nodisk = sc->sc_info.mci_pd_disks_present;
1392 1.1 bouyer
1393 1.1 bouyer rv = 0;
1394 1.1 bouyer freeme:
1395 1.1 bouyer free(cfg, M_DEVBUF);
1396 1.13 xtraeme return rv;
1397 1.1 bouyer }
1398 1.1 bouyer
1399 1.13 xtraeme static int
1400 1.1 bouyer mfi_ioctl_vol(struct mfi_softc *sc, struct bioc_vol *bv)
1401 1.1 bouyer {
1402 1.1 bouyer int i, per, rv = EINVAL;
1403 1.1 bouyer uint8_t mbox[MFI_MBOX_SIZE];
1404 1.1 bouyer
1405 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_vol %#x\n",
1406 1.1 bouyer DEVNAME(sc), bv->bv_volid);
1407 1.1 bouyer
1408 1.19 bouyer if (mfi_mgmt_internal(sc, MR_DCMD_LD_GET_LIST, MFI_DATA_IN,
1409 1.1 bouyer sizeof(sc->sc_ld_list), &sc->sc_ld_list, NULL))
1410 1.1 bouyer goto done;
1411 1.1 bouyer
1412 1.1 bouyer i = bv->bv_volid;
1413 1.1 bouyer mbox[0] = sc->sc_ld_list.mll_list[i].mll_ld.mld_target;
1414 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_vol target %#x\n",
1415 1.1 bouyer DEVNAME(sc), mbox[0]);
1416 1.1 bouyer
1417 1.19 bouyer if (mfi_mgmt_internal(sc, MR_DCMD_LD_GET_INFO, MFI_DATA_IN,
1418 1.1 bouyer sizeof(sc->sc_ld_details), &sc->sc_ld_details, mbox))
1419 1.1 bouyer goto done;
1420 1.1 bouyer
1421 1.1 bouyer if (bv->bv_volid >= sc->sc_ld_list.mll_no_ld) {
1422 1.1 bouyer /* go do hotspares */
1423 1.1 bouyer rv = mfi_bio_hs(sc, bv->bv_volid, MFI_MGMT_VD, bv);
1424 1.1 bouyer goto done;
1425 1.1 bouyer }
1426 1.1 bouyer
1427 1.1 bouyer strlcpy(bv->bv_dev, sc->sc_ld[i].ld_dev, sizeof(bv->bv_dev));
1428 1.1 bouyer
1429 1.1 bouyer switch(sc->sc_ld_list.mll_list[i].mll_state) {
1430 1.1 bouyer case MFI_LD_OFFLINE:
1431 1.1 bouyer bv->bv_status = BIOC_SVOFFLINE;
1432 1.1 bouyer break;
1433 1.1 bouyer
1434 1.1 bouyer case MFI_LD_PART_DEGRADED:
1435 1.1 bouyer case MFI_LD_DEGRADED:
1436 1.1 bouyer bv->bv_status = BIOC_SVDEGRADED;
1437 1.1 bouyer break;
1438 1.1 bouyer
1439 1.1 bouyer case MFI_LD_ONLINE:
1440 1.1 bouyer bv->bv_status = BIOC_SVONLINE;
1441 1.1 bouyer break;
1442 1.1 bouyer
1443 1.1 bouyer default:
1444 1.1 bouyer bv->bv_status = BIOC_SVINVALID;
1445 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: invalid logical disk state %#x\n",
1446 1.1 bouyer DEVNAME(sc),
1447 1.1 bouyer sc->sc_ld_list.mll_list[i].mll_state);
1448 1.1 bouyer }
1449 1.1 bouyer
1450 1.1 bouyer /* additional status can modify MFI status */
1451 1.1 bouyer switch (sc->sc_ld_details.mld_progress.mlp_in_prog) {
1452 1.1 bouyer case MFI_LD_PROG_CC:
1453 1.1 bouyer case MFI_LD_PROG_BGI:
1454 1.1 bouyer bv->bv_status = BIOC_SVSCRUB;
1455 1.1 bouyer per = (int)sc->sc_ld_details.mld_progress.mlp_cc.mp_progress;
1456 1.1 bouyer bv->bv_percent = (per * 100) / 0xffff;
1457 1.1 bouyer bv->bv_seconds =
1458 1.1 bouyer sc->sc_ld_details.mld_progress.mlp_cc.mp_elapsed_seconds;
1459 1.1 bouyer break;
1460 1.1 bouyer
1461 1.1 bouyer case MFI_LD_PROG_FGI:
1462 1.1 bouyer case MFI_LD_PROG_RECONSTRUCT:
1463 1.1 bouyer /* nothing yet */
1464 1.1 bouyer break;
1465 1.1 bouyer }
1466 1.1 bouyer
1467 1.1 bouyer /*
1468 1.1 bouyer * The RAID levels are determined per the SNIA DDF spec, this is only
1469 1.1 bouyer * a subset that is valid for the MFI contrller.
1470 1.1 bouyer */
1471 1.1 bouyer bv->bv_level = sc->sc_ld_details.mld_cfg.mlc_parm.mpa_pri_raid;
1472 1.1 bouyer if (sc->sc_ld_details.mld_cfg.mlc_parm.mpa_sec_raid ==
1473 1.1 bouyer MFI_DDF_SRL_SPANNED)
1474 1.1 bouyer bv->bv_level *= 10;
1475 1.1 bouyer
1476 1.1 bouyer bv->bv_nodisk = sc->sc_ld_details.mld_cfg.mlc_parm.mpa_no_drv_per_span *
1477 1.1 bouyer sc->sc_ld_details.mld_cfg.mlc_parm.mpa_span_depth;
1478 1.1 bouyer
1479 1.1 bouyer bv->bv_size = sc->sc_ld_details.mld_size * 512; /* bytes per block */
1480 1.1 bouyer
1481 1.1 bouyer rv = 0;
1482 1.1 bouyer done:
1483 1.4 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_vol done %x\n",
1484 1.4 bouyer DEVNAME(sc), rv);
1485 1.13 xtraeme return rv;
1486 1.1 bouyer }
1487 1.1 bouyer
1488 1.13 xtraeme static int
1489 1.1 bouyer mfi_ioctl_disk(struct mfi_softc *sc, struct bioc_disk *bd)
1490 1.1 bouyer {
1491 1.1 bouyer struct mfi_conf *cfg;
1492 1.1 bouyer struct mfi_array *ar;
1493 1.1 bouyer struct mfi_ld_cfg *ld;
1494 1.1 bouyer struct mfi_pd_details *pd;
1495 1.4 bouyer struct scsipi_inquiry_data *inqbuf;
1496 1.1 bouyer char vend[8+16+4+1];
1497 1.1 bouyer int i, rv = EINVAL;
1498 1.1 bouyer int arr, vol, disk;
1499 1.1 bouyer uint32_t size;
1500 1.1 bouyer uint8_t mbox[MFI_MBOX_SIZE];
1501 1.1 bouyer
1502 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_disk %#x\n",
1503 1.1 bouyer DEVNAME(sc), bd->bd_diskid);
1504 1.1 bouyer
1505 1.4 bouyer pd = malloc(sizeof *pd, M_DEVBUF, M_WAITOK | M_ZERO);
1506 1.1 bouyer
1507 1.1 bouyer /* send single element command to retrieve size for full structure */
1508 1.1 bouyer cfg = malloc(sizeof *cfg, M_DEVBUF, M_WAITOK);
1509 1.19 bouyer if (mfi_mgmt_internal(sc, MD_DCMD_CONF_GET, MFI_DATA_IN,
1510 1.19 bouyer sizeof *cfg, cfg, NULL))
1511 1.1 bouyer goto freeme;
1512 1.1 bouyer
1513 1.1 bouyer size = cfg->mfc_size;
1514 1.1 bouyer free(cfg, M_DEVBUF);
1515 1.1 bouyer
1516 1.1 bouyer /* memory for read config */
1517 1.13 xtraeme cfg = malloc(size, M_DEVBUF, M_WAITOK|M_ZERO);
1518 1.19 bouyer if (mfi_mgmt_internal(sc, MD_DCMD_CONF_GET, MFI_DATA_IN,
1519 1.19 bouyer size, cfg, NULL))
1520 1.1 bouyer goto freeme;
1521 1.1 bouyer
1522 1.1 bouyer ar = cfg->mfc_array;
1523 1.1 bouyer
1524 1.1 bouyer /* calculate offset to ld structure */
1525 1.1 bouyer ld = (struct mfi_ld_cfg *)(
1526 1.1 bouyer ((uint8_t *)cfg) + offsetof(struct mfi_conf, mfc_array) +
1527 1.1 bouyer cfg->mfc_array_size * cfg->mfc_no_array);
1528 1.1 bouyer
1529 1.1 bouyer vol = bd->bd_volid;
1530 1.1 bouyer
1531 1.1 bouyer if (vol >= cfg->mfc_no_ld) {
1532 1.1 bouyer /* do hotspares */
1533 1.1 bouyer rv = mfi_bio_hs(sc, bd->bd_volid, MFI_MGMT_SD, bd);
1534 1.1 bouyer goto freeme;
1535 1.1 bouyer }
1536 1.1 bouyer
1537 1.1 bouyer /* find corresponding array for ld */
1538 1.1 bouyer for (i = 0, arr = 0; i < vol; i++)
1539 1.1 bouyer arr += ld[i].mlc_parm.mpa_span_depth;
1540 1.1 bouyer
1541 1.1 bouyer /* offset disk into pd list */
1542 1.1 bouyer disk = bd->bd_diskid % ld[vol].mlc_parm.mpa_no_drv_per_span;
1543 1.1 bouyer
1544 1.1 bouyer /* offset array index into the next spans */
1545 1.1 bouyer arr += bd->bd_diskid / ld[vol].mlc_parm.mpa_no_drv_per_span;
1546 1.1 bouyer
1547 1.1 bouyer bd->bd_target = ar[arr].pd[disk].mar_enc_slot;
1548 1.1 bouyer switch (ar[arr].pd[disk].mar_pd_state){
1549 1.1 bouyer case MFI_PD_UNCONFIG_GOOD:
1550 1.1 bouyer bd->bd_status = BIOC_SDUNUSED;
1551 1.1 bouyer break;
1552 1.1 bouyer
1553 1.1 bouyer case MFI_PD_HOTSPARE: /* XXX dedicated hotspare part of array? */
1554 1.1 bouyer bd->bd_status = BIOC_SDHOTSPARE;
1555 1.1 bouyer break;
1556 1.1 bouyer
1557 1.1 bouyer case MFI_PD_OFFLINE:
1558 1.1 bouyer bd->bd_status = BIOC_SDOFFLINE;
1559 1.1 bouyer break;
1560 1.1 bouyer
1561 1.1 bouyer case MFI_PD_FAILED:
1562 1.1 bouyer bd->bd_status = BIOC_SDFAILED;
1563 1.1 bouyer break;
1564 1.1 bouyer
1565 1.1 bouyer case MFI_PD_REBUILD:
1566 1.1 bouyer bd->bd_status = BIOC_SDREBUILD;
1567 1.1 bouyer break;
1568 1.1 bouyer
1569 1.1 bouyer case MFI_PD_ONLINE:
1570 1.1 bouyer bd->bd_status = BIOC_SDONLINE;
1571 1.1 bouyer break;
1572 1.1 bouyer
1573 1.1 bouyer case MFI_PD_UNCONFIG_BAD: /* XXX define new state in bio */
1574 1.1 bouyer default:
1575 1.1 bouyer bd->bd_status = BIOC_SDINVALID;
1576 1.1 bouyer break;
1577 1.1 bouyer
1578 1.1 bouyer }
1579 1.1 bouyer
1580 1.1 bouyer /* get the remaining fields */
1581 1.1 bouyer *((uint16_t *)&mbox) = ar[arr].pd[disk].mar_pd.mfp_id;
1582 1.4 bouyer memset(pd, 0, sizeof(*pd));
1583 1.19 bouyer if (mfi_mgmt_internal(sc, MR_DCMD_PD_GET_INFO, MFI_DATA_IN,
1584 1.1 bouyer sizeof *pd, pd, mbox))
1585 1.1 bouyer goto freeme;
1586 1.1 bouyer
1587 1.1 bouyer bd->bd_size = pd->mpd_size * 512; /* bytes per block */
1588 1.1 bouyer
1589 1.1 bouyer /* if pd->mpd_enc_idx is 0 then it is not in an enclosure */
1590 1.1 bouyer bd->bd_channel = pd->mpd_enc_idx;
1591 1.1 bouyer
1592 1.4 bouyer inqbuf = (struct scsipi_inquiry_data *)&pd->mpd_inq_data;
1593 1.1 bouyer memcpy(vend, inqbuf->vendor, sizeof vend - 1);
1594 1.1 bouyer vend[sizeof vend - 1] = '\0';
1595 1.1 bouyer strlcpy(bd->bd_vendor, vend, sizeof(bd->bd_vendor));
1596 1.1 bouyer
1597 1.1 bouyer /* XXX find a way to retrieve serial nr from drive */
1598 1.1 bouyer /* XXX find a way to get bd_procdev */
1599 1.1 bouyer
1600 1.1 bouyer rv = 0;
1601 1.1 bouyer freeme:
1602 1.1 bouyer free(pd, M_DEVBUF);
1603 1.1 bouyer free(cfg, M_DEVBUF);
1604 1.1 bouyer
1605 1.13 xtraeme return rv;
1606 1.1 bouyer }
1607 1.1 bouyer
1608 1.13 xtraeme static int
1609 1.1 bouyer mfi_ioctl_alarm(struct mfi_softc *sc, struct bioc_alarm *ba)
1610 1.1 bouyer {
1611 1.1 bouyer uint32_t opc, dir = MFI_DATA_NONE;
1612 1.1 bouyer int rv = 0;
1613 1.1 bouyer int8_t ret;
1614 1.1 bouyer
1615 1.1 bouyer switch(ba->ba_opcode) {
1616 1.1 bouyer case BIOC_SADISABLE:
1617 1.1 bouyer opc = MR_DCMD_SPEAKER_DISABLE;
1618 1.1 bouyer break;
1619 1.1 bouyer
1620 1.1 bouyer case BIOC_SAENABLE:
1621 1.1 bouyer opc = MR_DCMD_SPEAKER_ENABLE;
1622 1.1 bouyer break;
1623 1.1 bouyer
1624 1.1 bouyer case BIOC_SASILENCE:
1625 1.1 bouyer opc = MR_DCMD_SPEAKER_SILENCE;
1626 1.1 bouyer break;
1627 1.1 bouyer
1628 1.1 bouyer case BIOC_GASTATUS:
1629 1.1 bouyer opc = MR_DCMD_SPEAKER_GET;
1630 1.1 bouyer dir = MFI_DATA_IN;
1631 1.1 bouyer break;
1632 1.1 bouyer
1633 1.1 bouyer case BIOC_SATEST:
1634 1.1 bouyer opc = MR_DCMD_SPEAKER_TEST;
1635 1.1 bouyer break;
1636 1.1 bouyer
1637 1.1 bouyer default:
1638 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_alarm biocalarm invalid "
1639 1.1 bouyer "opcode %x\n", DEVNAME(sc), ba->ba_opcode);
1640 1.13 xtraeme return EINVAL;
1641 1.1 bouyer }
1642 1.1 bouyer
1643 1.19 bouyer if (mfi_mgmt_internal(sc, opc, dir, sizeof(ret), &ret, NULL))
1644 1.1 bouyer rv = EINVAL;
1645 1.1 bouyer else
1646 1.1 bouyer if (ba->ba_opcode == BIOC_GASTATUS)
1647 1.1 bouyer ba->ba_status = ret;
1648 1.1 bouyer else
1649 1.1 bouyer ba->ba_status = 0;
1650 1.1 bouyer
1651 1.13 xtraeme return rv;
1652 1.1 bouyer }
1653 1.1 bouyer
1654 1.13 xtraeme static int
1655 1.1 bouyer mfi_ioctl_blink(struct mfi_softc *sc, struct bioc_blink *bb)
1656 1.1 bouyer {
1657 1.1 bouyer int i, found, rv = EINVAL;
1658 1.1 bouyer uint8_t mbox[MFI_MBOX_SIZE];
1659 1.1 bouyer uint32_t cmd;
1660 1.1 bouyer struct mfi_pd_list *pd;
1661 1.1 bouyer
1662 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_blink %x\n", DEVNAME(sc),
1663 1.1 bouyer bb->bb_status);
1664 1.1 bouyer
1665 1.1 bouyer /* channel 0 means not in an enclosure so can't be blinked */
1666 1.1 bouyer if (bb->bb_channel == 0)
1667 1.13 xtraeme return EINVAL;
1668 1.1 bouyer
1669 1.1 bouyer pd = malloc(MFI_PD_LIST_SIZE, M_DEVBUF, M_WAITOK);
1670 1.1 bouyer
1671 1.19 bouyer if (mfi_mgmt_internal(sc, MR_DCMD_PD_GET_LIST, MFI_DATA_IN,
1672 1.1 bouyer MFI_PD_LIST_SIZE, pd, NULL))
1673 1.1 bouyer goto done;
1674 1.1 bouyer
1675 1.1 bouyer for (i = 0, found = 0; i < pd->mpl_no_pd; i++)
1676 1.1 bouyer if (bb->bb_channel == pd->mpl_address[i].mpa_enc_index &&
1677 1.1 bouyer bb->bb_target == pd->mpl_address[i].mpa_enc_slot) {
1678 1.1 bouyer found = 1;
1679 1.1 bouyer break;
1680 1.1 bouyer }
1681 1.1 bouyer
1682 1.1 bouyer if (!found)
1683 1.1 bouyer goto done;
1684 1.1 bouyer
1685 1.1 bouyer memset(mbox, 0, sizeof mbox);
1686 1.1 bouyer
1687 1.1 bouyer *((uint16_t *)&mbox) = pd->mpl_address[i].mpa_pd_id;;
1688 1.1 bouyer
1689 1.1 bouyer switch (bb->bb_status) {
1690 1.1 bouyer case BIOC_SBUNBLINK:
1691 1.1 bouyer cmd = MR_DCMD_PD_UNBLINK;
1692 1.1 bouyer break;
1693 1.1 bouyer
1694 1.1 bouyer case BIOC_SBBLINK:
1695 1.1 bouyer cmd = MR_DCMD_PD_BLINK;
1696 1.1 bouyer break;
1697 1.1 bouyer
1698 1.1 bouyer case BIOC_SBALARM:
1699 1.1 bouyer default:
1700 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_blink biocblink invalid "
1701 1.1 bouyer "opcode %x\n", DEVNAME(sc), bb->bb_status);
1702 1.1 bouyer goto done;
1703 1.1 bouyer }
1704 1.1 bouyer
1705 1.1 bouyer
1706 1.19 bouyer if (mfi_mgmt_internal(sc, cmd, MFI_DATA_NONE, 0, NULL, mbox))
1707 1.1 bouyer goto done;
1708 1.1 bouyer
1709 1.1 bouyer rv = 0;
1710 1.1 bouyer done:
1711 1.1 bouyer free(pd, M_DEVBUF);
1712 1.13 xtraeme return rv;
1713 1.1 bouyer }
1714 1.1 bouyer
1715 1.13 xtraeme static int
1716 1.1 bouyer mfi_ioctl_setstate(struct mfi_softc *sc, struct bioc_setstate *bs)
1717 1.1 bouyer {
1718 1.1 bouyer struct mfi_pd_list *pd;
1719 1.1 bouyer int i, found, rv = EINVAL;
1720 1.1 bouyer uint8_t mbox[MFI_MBOX_SIZE];
1721 1.1 bouyer uint32_t cmd;
1722 1.1 bouyer
1723 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_setstate %x\n", DEVNAME(sc),
1724 1.1 bouyer bs->bs_status);
1725 1.1 bouyer
1726 1.1 bouyer pd = malloc(MFI_PD_LIST_SIZE, M_DEVBUF, M_WAITOK);
1727 1.1 bouyer
1728 1.19 bouyer if (mfi_mgmt_internal(sc, MR_DCMD_PD_GET_LIST, MFI_DATA_IN,
1729 1.1 bouyer MFI_PD_LIST_SIZE, pd, NULL))
1730 1.1 bouyer goto done;
1731 1.1 bouyer
1732 1.1 bouyer for (i = 0, found = 0; i < pd->mpl_no_pd; i++)
1733 1.1 bouyer if (bs->bs_channel == pd->mpl_address[i].mpa_enc_index &&
1734 1.1 bouyer bs->bs_target == pd->mpl_address[i].mpa_enc_slot) {
1735 1.1 bouyer found = 1;
1736 1.1 bouyer break;
1737 1.1 bouyer }
1738 1.1 bouyer
1739 1.1 bouyer if (!found)
1740 1.1 bouyer goto done;
1741 1.1 bouyer
1742 1.1 bouyer memset(mbox, 0, sizeof mbox);
1743 1.1 bouyer
1744 1.1 bouyer *((uint16_t *)&mbox) = pd->mpl_address[i].mpa_pd_id;;
1745 1.1 bouyer
1746 1.1 bouyer switch (bs->bs_status) {
1747 1.1 bouyer case BIOC_SSONLINE:
1748 1.1 bouyer mbox[2] = MFI_PD_ONLINE;
1749 1.1 bouyer cmd = MD_DCMD_PD_SET_STATE;
1750 1.1 bouyer break;
1751 1.1 bouyer
1752 1.1 bouyer case BIOC_SSOFFLINE:
1753 1.1 bouyer mbox[2] = MFI_PD_OFFLINE;
1754 1.1 bouyer cmd = MD_DCMD_PD_SET_STATE;
1755 1.1 bouyer break;
1756 1.1 bouyer
1757 1.1 bouyer case BIOC_SSHOTSPARE:
1758 1.1 bouyer mbox[2] = MFI_PD_HOTSPARE;
1759 1.1 bouyer cmd = MD_DCMD_PD_SET_STATE;
1760 1.1 bouyer break;
1761 1.1 bouyer /*
1762 1.1 bouyer case BIOC_SSREBUILD:
1763 1.1 bouyer cmd = MD_DCMD_PD_REBUILD;
1764 1.1 bouyer break;
1765 1.1 bouyer */
1766 1.1 bouyer default:
1767 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_ioctl_setstate invalid "
1768 1.1 bouyer "opcode %x\n", DEVNAME(sc), bs->bs_status);
1769 1.1 bouyer goto done;
1770 1.1 bouyer }
1771 1.1 bouyer
1772 1.1 bouyer
1773 1.19 bouyer if (mfi_mgmt_internal(sc, MD_DCMD_PD_SET_STATE, MFI_DATA_NONE,
1774 1.19 bouyer 0, NULL, mbox))
1775 1.1 bouyer goto done;
1776 1.1 bouyer
1777 1.1 bouyer rv = 0;
1778 1.1 bouyer done:
1779 1.1 bouyer free(pd, M_DEVBUF);
1780 1.13 xtraeme return rv;
1781 1.1 bouyer }
1782 1.1 bouyer
1783 1.13 xtraeme static int
1784 1.1 bouyer mfi_bio_hs(struct mfi_softc *sc, int volid, int type, void *bio_hs)
1785 1.1 bouyer {
1786 1.1 bouyer struct mfi_conf *cfg;
1787 1.1 bouyer struct mfi_hotspare *hs;
1788 1.1 bouyer struct mfi_pd_details *pd;
1789 1.1 bouyer struct bioc_disk *sdhs;
1790 1.1 bouyer struct bioc_vol *vdhs;
1791 1.4 bouyer struct scsipi_inquiry_data *inqbuf;
1792 1.1 bouyer char vend[8+16+4+1];
1793 1.1 bouyer int i, rv = EINVAL;
1794 1.1 bouyer uint32_t size;
1795 1.1 bouyer uint8_t mbox[MFI_MBOX_SIZE];
1796 1.1 bouyer
1797 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_vol_hs %d\n", DEVNAME(sc), volid);
1798 1.1 bouyer
1799 1.1 bouyer if (!bio_hs)
1800 1.13 xtraeme return EINVAL;
1801 1.1 bouyer
1802 1.4 bouyer pd = malloc(sizeof *pd, M_DEVBUF, M_WAITOK | M_ZERO);
1803 1.1 bouyer
1804 1.1 bouyer /* send single element command to retrieve size for full structure */
1805 1.1 bouyer cfg = malloc(sizeof *cfg, M_DEVBUF, M_WAITOK);
1806 1.19 bouyer if (mfi_mgmt_internal(sc, MD_DCMD_CONF_GET, MFI_DATA_IN,
1807 1.19 bouyer sizeof *cfg, cfg, NULL))
1808 1.1 bouyer goto freeme;
1809 1.1 bouyer
1810 1.1 bouyer size = cfg->mfc_size;
1811 1.1 bouyer free(cfg, M_DEVBUF);
1812 1.1 bouyer
1813 1.1 bouyer /* memory for read config */
1814 1.13 xtraeme cfg = malloc(size, M_DEVBUF, M_WAITOK|M_ZERO);
1815 1.19 bouyer if (mfi_mgmt_internal(sc, MD_DCMD_CONF_GET, MFI_DATA_IN,
1816 1.19 bouyer size, cfg, NULL))
1817 1.1 bouyer goto freeme;
1818 1.1 bouyer
1819 1.1 bouyer /* calculate offset to hs structure */
1820 1.1 bouyer hs = (struct mfi_hotspare *)(
1821 1.1 bouyer ((uint8_t *)cfg) + offsetof(struct mfi_conf, mfc_array) +
1822 1.1 bouyer cfg->mfc_array_size * cfg->mfc_no_array +
1823 1.1 bouyer cfg->mfc_ld_size * cfg->mfc_no_ld);
1824 1.1 bouyer
1825 1.1 bouyer if (volid < cfg->mfc_no_ld)
1826 1.1 bouyer goto freeme; /* not a hotspare */
1827 1.1 bouyer
1828 1.1 bouyer if (volid > (cfg->mfc_no_ld + cfg->mfc_no_hs))
1829 1.1 bouyer goto freeme; /* not a hotspare */
1830 1.1 bouyer
1831 1.1 bouyer /* offset into hotspare structure */
1832 1.1 bouyer i = volid - cfg->mfc_no_ld;
1833 1.1 bouyer
1834 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_vol_hs i %d volid %d no_ld %d no_hs %d "
1835 1.1 bouyer "hs %p cfg %p id %02x\n", DEVNAME(sc), i, volid, cfg->mfc_no_ld,
1836 1.1 bouyer cfg->mfc_no_hs, hs, cfg, hs[i].mhs_pd.mfp_id);
1837 1.1 bouyer
1838 1.1 bouyer /* get pd fields */
1839 1.1 bouyer memset(mbox, 0, sizeof mbox);
1840 1.1 bouyer *((uint16_t *)&mbox) = hs[i].mhs_pd.mfp_id;
1841 1.19 bouyer if (mfi_mgmt_internal(sc, MR_DCMD_PD_GET_INFO, MFI_DATA_IN,
1842 1.1 bouyer sizeof *pd, pd, mbox)) {
1843 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_vol_hs illegal PD\n",
1844 1.1 bouyer DEVNAME(sc));
1845 1.1 bouyer goto freeme;
1846 1.1 bouyer }
1847 1.1 bouyer
1848 1.1 bouyer switch (type) {
1849 1.1 bouyer case MFI_MGMT_VD:
1850 1.1 bouyer vdhs = bio_hs;
1851 1.1 bouyer vdhs->bv_status = BIOC_SVONLINE;
1852 1.14 xtraeme vdhs->bv_size = pd->mpd_size * 512; /* bytes per block */
1853 1.1 bouyer vdhs->bv_level = -1; /* hotspare */
1854 1.1 bouyer vdhs->bv_nodisk = 1;
1855 1.1 bouyer break;
1856 1.1 bouyer
1857 1.1 bouyer case MFI_MGMT_SD:
1858 1.1 bouyer sdhs = bio_hs;
1859 1.1 bouyer sdhs->bd_status = BIOC_SDHOTSPARE;
1860 1.14 xtraeme sdhs->bd_size = pd->mpd_size * 512; /* bytes per block */
1861 1.1 bouyer sdhs->bd_channel = pd->mpd_enc_idx;
1862 1.1 bouyer sdhs->bd_target = pd->mpd_enc_slot;
1863 1.4 bouyer inqbuf = (struct scsipi_inquiry_data *)&pd->mpd_inq_data;
1864 1.4 bouyer memcpy(vend, inqbuf->vendor, sizeof(vend) - 1);
1865 1.1 bouyer vend[sizeof vend - 1] = '\0';
1866 1.1 bouyer strlcpy(sdhs->bd_vendor, vend, sizeof(sdhs->bd_vendor));
1867 1.1 bouyer break;
1868 1.1 bouyer
1869 1.1 bouyer default:
1870 1.1 bouyer goto freeme;
1871 1.1 bouyer }
1872 1.1 bouyer
1873 1.1 bouyer DNPRINTF(MFI_D_IOCTL, "%s: mfi_vol_hs 6\n", DEVNAME(sc));
1874 1.1 bouyer rv = 0;
1875 1.1 bouyer freeme:
1876 1.1 bouyer free(pd, M_DEVBUF);
1877 1.1 bouyer free(cfg, M_DEVBUF);
1878 1.1 bouyer
1879 1.13 xtraeme return rv;
1880 1.1 bouyer }
1881 1.1 bouyer
1882 1.13 xtraeme static int
1883 1.1 bouyer mfi_create_sensors(struct mfi_softc *sc)
1884 1.1 bouyer {
1885 1.13 xtraeme int i;
1886 1.4 bouyer int nsensors = sc->sc_ld_cnt;
1887 1.1 bouyer
1888 1.11 xtraeme sc->sc_sme = sysmon_envsys_create();
1889 1.11 xtraeme sc->sc_sensor = malloc(sizeof(envsys_data_t) * nsensors,
1890 1.11 xtraeme M_DEVBUF, M_NOWAIT | M_ZERO);
1891 1.11 xtraeme if (sc->sc_sensor == NULL) {
1892 1.11 xtraeme aprint_error("%s: can't allocate envsys_data_t\n",
1893 1.4 bouyer DEVNAME(sc));
1894 1.13 xtraeme return ENOMEM;
1895 1.4 bouyer }
1896 1.6 xtraeme
1897 1.4 bouyer for (i = 0; i < nsensors; i++) {
1898 1.11 xtraeme sc->sc_sensor[i].units = ENVSYS_DRIVE;
1899 1.11 xtraeme sc->sc_sensor[i].monitor = true;
1900 1.6 xtraeme /* Enable monitoring for drive state changes */
1901 1.11 xtraeme sc->sc_sensor[i].flags |= ENVSYS_FMONSTCHANGED;
1902 1.4 bouyer /* logical drives */
1903 1.11 xtraeme snprintf(sc->sc_sensor[i].desc,
1904 1.11 xtraeme sizeof(sc->sc_sensor[i].desc), "%s:%d",
1905 1.4 bouyer DEVNAME(sc), i);
1906 1.11 xtraeme if (sysmon_envsys_sensor_attach(sc->sc_sme,
1907 1.11 xtraeme &sc->sc_sensor[i]))
1908 1.11 xtraeme goto out;
1909 1.4 bouyer }
1910 1.6 xtraeme
1911 1.11 xtraeme sc->sc_sme->sme_name = DEVNAME(sc);
1912 1.11 xtraeme sc->sc_sme->sme_cookie = sc;
1913 1.11 xtraeme sc->sc_sme->sme_refresh = mfi_sensor_refresh;
1914 1.11 xtraeme if (sysmon_envsys_register(sc->sc_sme)) {
1915 1.13 xtraeme aprint_error("%s: unable to register with sysmon\n",
1916 1.13 xtraeme DEVNAME(sc));
1917 1.11 xtraeme goto out;
1918 1.1 bouyer }
1919 1.13 xtraeme return 0;
1920 1.11 xtraeme
1921 1.11 xtraeme out:
1922 1.11 xtraeme free(sc->sc_sensor, M_DEVBUF);
1923 1.11 xtraeme sysmon_envsys_destroy(sc->sc_sme);
1924 1.11 xtraeme return EINVAL;
1925 1.1 bouyer }
1926 1.1 bouyer
1927 1.13 xtraeme static void
1928 1.11 xtraeme mfi_sensor_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
1929 1.1 bouyer {
1930 1.4 bouyer struct mfi_softc *sc = sme->sme_cookie;
1931 1.1 bouyer struct bioc_vol bv;
1932 1.4 bouyer int s;
1933 1.1 bouyer
1934 1.6 xtraeme if (edata->sensor >= sc->sc_ld_cnt)
1935 1.11 xtraeme return;
1936 1.1 bouyer
1937 1.4 bouyer bzero(&bv, sizeof(bv));
1938 1.6 xtraeme bv.bv_volid = edata->sensor;
1939 1.4 bouyer s = splbio();
1940 1.4 bouyer if (mfi_ioctl_vol(sc, &bv)) {
1941 1.4 bouyer splx(s);
1942 1.11 xtraeme return;
1943 1.4 bouyer }
1944 1.4 bouyer splx(s);
1945 1.1 bouyer
1946 1.4 bouyer switch(bv.bv_status) {
1947 1.4 bouyer case BIOC_SVOFFLINE:
1948 1.6 xtraeme edata->value_cur = ENVSYS_DRIVE_FAIL;
1949 1.6 xtraeme edata->state = ENVSYS_SCRITICAL;
1950 1.4 bouyer break;
1951 1.1 bouyer
1952 1.4 bouyer case BIOC_SVDEGRADED:
1953 1.6 xtraeme edata->value_cur = ENVSYS_DRIVE_PFAIL;
1954 1.6 xtraeme edata->state = ENVSYS_SCRITICAL;
1955 1.4 bouyer break;
1956 1.1 bouyer
1957 1.4 bouyer case BIOC_SVSCRUB:
1958 1.4 bouyer case BIOC_SVONLINE:
1959 1.6 xtraeme edata->value_cur = ENVSYS_DRIVE_ONLINE;
1960 1.6 xtraeme edata->state = ENVSYS_SVALID;
1961 1.4 bouyer break;
1962 1.1 bouyer
1963 1.4 bouyer case BIOC_SVINVALID:
1964 1.4 bouyer /* FALLTRHOUGH */
1965 1.4 bouyer default:
1966 1.6 xtraeme edata->value_cur = 0; /* unknown */
1967 1.6 xtraeme edata->state = ENVSYS_SINVALID;
1968 1.1 bouyer }
1969 1.4 bouyer }
1970 1.4 bouyer
1971 1.1 bouyer #endif /* NBIO > 0 */
1972 1.12 xtraeme
1973 1.13 xtraeme static uint32_t
1974 1.12 xtraeme mfi_xscale_fw_state(struct mfi_softc *sc)
1975 1.12 xtraeme {
1976 1.12 xtraeme return mfi_read(sc, MFI_OMSG0);
1977 1.12 xtraeme }
1978 1.12 xtraeme
1979 1.13 xtraeme static void
1980 1.12 xtraeme mfi_xscale_intr_ena(struct mfi_softc *sc)
1981 1.12 xtraeme {
1982 1.12 xtraeme mfi_write(sc, MFI_OMSK, MFI_ENABLE_INTR);
1983 1.12 xtraeme }
1984 1.12 xtraeme
1985 1.13 xtraeme static int
1986 1.12 xtraeme mfi_xscale_intr(struct mfi_softc *sc)
1987 1.12 xtraeme {
1988 1.12 xtraeme uint32_t status;
1989 1.12 xtraeme
1990 1.12 xtraeme status = mfi_read(sc, MFI_OSTS);
1991 1.12 xtraeme if (!ISSET(status, MFI_OSTS_INTR_VALID))
1992 1.12 xtraeme return 0;
1993 1.12 xtraeme
1994 1.12 xtraeme /* write status back to acknowledge interrupt */
1995 1.12 xtraeme mfi_write(sc, MFI_OSTS, status);
1996 1.12 xtraeme return 1;
1997 1.12 xtraeme }
1998 1.12 xtraeme
1999 1.13 xtraeme static void
2000 1.12 xtraeme mfi_xscale_post(struct mfi_softc *sc, struct mfi_ccb *ccb)
2001 1.12 xtraeme {
2002 1.14 xtraeme bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_frames),
2003 1.14 xtraeme ccb->ccb_pframe - MFIMEM_DVA(sc->sc_frames),
2004 1.14 xtraeme sc->sc_frames_size, BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
2005 1.14 xtraeme bus_dmamap_sync(sc->sc_dmat, MFIMEM_MAP(sc->sc_sense),
2006 1.14 xtraeme ccb->ccb_psense - MFIMEM_DVA(sc->sc_sense),
2007 1.14 xtraeme MFI_SENSE_SIZE, BUS_DMASYNC_PREREAD);
2008 1.14 xtraeme
2009 1.12 xtraeme mfi_write(sc, MFI_IQP, (ccb->ccb_pframe >> 3) |
2010 1.12 xtraeme ccb->ccb_extra_frames);
2011 1.12 xtraeme }
2012 1.12 xtraeme
2013 1.13 xtraeme static uint32_t
2014 1.12 xtraeme mfi_ppc_fw_state(struct mfi_softc *sc)
2015 1.12 xtraeme {
2016 1.12 xtraeme return mfi_read(sc, MFI_OSP);
2017 1.12 xtraeme }
2018 1.12 xtraeme
2019 1.13 xtraeme static void
2020 1.12 xtraeme mfi_ppc_intr_ena(struct mfi_softc *sc)
2021 1.12 xtraeme {
2022 1.12 xtraeme mfi_write(sc, MFI_ODC, 0xffffffff);
2023 1.12 xtraeme mfi_write(sc, MFI_OMSK, ~0x80000004);
2024 1.12 xtraeme }
2025 1.12 xtraeme
2026 1.13 xtraeme static int
2027 1.12 xtraeme mfi_ppc_intr(struct mfi_softc *sc)
2028 1.12 xtraeme {
2029 1.12 xtraeme uint32_t status;
2030 1.12 xtraeme
2031 1.12 xtraeme status = mfi_read(sc, MFI_OSTS);
2032 1.12 xtraeme if (!ISSET(status, MFI_OSTS_PPC_INTR_VALID))
2033 1.12 xtraeme return 0;
2034 1.12 xtraeme
2035 1.12 xtraeme /* write status back to acknowledge interrupt */
2036 1.12 xtraeme mfi_write(sc, MFI_ODC, status);
2037 1.12 xtraeme return 1;
2038 1.12 xtraeme }
2039 1.12 xtraeme
2040 1.13 xtraeme static void
2041 1.12 xtraeme mfi_ppc_post(struct mfi_softc *sc, struct mfi_ccb *ccb)
2042 1.12 xtraeme {
2043 1.12 xtraeme mfi_write(sc, MFI_IQP, 0x1 | ccb->ccb_pframe |
2044 1.12 xtraeme (ccb->ccb_extra_frames << 1));
2045 1.12 xtraeme }
2046