vdsk.c revision 1.6 1 1.6 thorpej /* $NetBSD: vdsk.c,v 1.6 2021/04/24 23:36:49 thorpej Exp $ */
2 1.1 palle /* $OpenBSD: vdsk.c,v 1.46 2015/01/25 21:42:13 kettenis Exp $ */
3 1.1 palle /*
4 1.1 palle * Copyright (c) 2009, 2011 Mark Kettenis
5 1.1 palle *
6 1.1 palle * Permission to use, copy, modify, and distribute this software for any
7 1.1 palle * purpose with or without fee is hereby granted, provided that the above
8 1.1 palle * copyright notice and this permission notice appear in all copies.
9 1.1 palle *
10 1.1 palle * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
11 1.1 palle * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
12 1.1 palle * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
13 1.1 palle * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
14 1.1 palle * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
15 1.1 palle * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
16 1.1 palle * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
17 1.1 palle */
18 1.1 palle
19 1.1 palle #include <sys/kmem.h>
20 1.1 palle #include <sys/param.h>
21 1.1 palle #include <sys/buf.h>
22 1.1 palle #include <sys/device.h>
23 1.1 palle #include <sys/systm.h>
24 1.1 palle
25 1.1 palle #include <machine/autoconf.h>
26 1.1 palle #include <machine/hypervisor.h>
27 1.1 palle
28 1.1 palle #include <uvm/uvm_extern.h>
29 1.1 palle
30 1.1 palle #include <dev/scsipi/scsi_all.h>
31 1.1 palle #include <dev/scsipi/scsipi_disk.h>
32 1.1 palle #include <dev/scsipi/scsipi_cd.h>
33 1.1 palle #include <dev/scsipi/scsiconf.h>
34 1.1 palle
35 1.1 palle #include <dev/scsipi/scsi_disk.h>
36 1.1 palle #include <dev/scsipi/scsipi_all.h>
37 1.1 palle #include <dev/scsipi/scsiconf.h>
38 1.1 palle #include <dev/scsipi/scsi_message.h>
39 1.1 palle
40 1.1 palle #include <sparc64/dev/cbusvar.h>
41 1.1 palle #include <sparc64/dev/ldcvar.h>
42 1.1 palle #include <sparc64/dev/viovar.h>
43 1.1 palle
44 1.1 palle #ifdef VDSK_DEBUG
45 1.1 palle #define DPRINTF(x) printf x
46 1.1 palle #else
47 1.1 palle #define DPRINTF(x)
48 1.1 palle #endif
49 1.1 palle
50 1.1 palle #define VDSK_TX_ENTRIES 32
51 1.1 palle #define VDSK_RX_ENTRIES 32
52 1.1 palle
53 1.1 palle struct vd_attr_info {
54 1.1 palle struct vio_msg_tag tag;
55 1.1 palle uint8_t xfer_mode;
56 1.1 palle uint8_t vd_type;
57 1.1 palle uint8_t vd_mtype;
58 1.1 palle uint8_t _reserved1;
59 1.1 palle uint32_t vdisk_block_size;
60 1.1 palle uint64_t operations;
61 1.1 palle uint64_t vdisk_size;
62 1.1 palle uint64_t max_xfer_sz;
63 1.1 palle uint64_t _reserved2[2];
64 1.1 palle };
65 1.1 palle
66 1.1 palle #define VD_DISK_TYPE_SLICE 0x01
67 1.1 palle #define VD_DISK_TYPE_DISK 0x02
68 1.1 palle
69 1.1 palle #define VD_MEDIA_TYPE_FIXED 0x01
70 1.1 palle #define VD_MEDIA_TYPE_CD 0x02
71 1.1 palle #define VD_MEDIA_TYPE_DVD 0x03
72 1.1 palle
73 1.1 palle /* vDisk version 1.0. */
74 1.1 palle #define VD_OP_BREAD 0x01
75 1.1 palle #define VD_OP_BWRITE 0x02
76 1.1 palle #define VD_OP_FLUSH 0x03
77 1.1 palle #define VD_OP_GET_WCE 0x04
78 1.1 palle #define VD_OP_SET_WCE 0x05
79 1.1 palle #define VD_OP_GET_VTOC 0x06
80 1.1 palle #define VD_OP_SET_VTOC 0x07
81 1.1 palle #define VD_OP_GET_DISKGEOM 0x08
82 1.1 palle #define VD_OP_SET_DISKGEOM 0x09
83 1.1 palle #define VD_OP_GET_DEVID 0x0b
84 1.1 palle #define VD_OP_GET_EFI 0x0c
85 1.1 palle #define VD_OP_SET_EFI 0x0d
86 1.1 palle
87 1.1 palle /* vDisk version 1.1 */
88 1.1 palle #define VD_OP_SCSICMD 0x0a
89 1.1 palle #define VD_OP_RESET 0x0e
90 1.1 palle #define VD_OP_GET_ACCESS 0x0f
91 1.1 palle #define VD_OP_SET_ACCESS 0x10
92 1.1 palle #define VD_OP_GET_CAPACITY 0x11
93 1.1 palle
94 1.1 palle struct vd_desc {
95 1.1 palle struct vio_dring_hdr hdr;
96 1.1 palle uint64_t req_id;
97 1.1 palle uint8_t operation;
98 1.1 palle uint8_t slice;
99 1.1 palle uint16_t _reserved1;
100 1.1 palle uint32_t status;
101 1.1 palle uint64_t offset;
102 1.1 palle uint64_t size;
103 1.1 palle uint32_t ncookies;
104 1.1 palle uint32_t _reserved2;
105 1.1 palle struct ldc_cookie cookie[MAXPHYS / PAGE_SIZE];
106 1.1 palle };
107 1.1 palle
108 1.1 palle #define VD_SLICE_NONE 0xff
109 1.1 palle
110 1.1 palle struct vdsk_dring {
111 1.1 palle bus_dmamap_t vd_map;
112 1.1 palle bus_dma_segment_t vd_seg;
113 1.1 palle struct vd_desc *vd_desc;
114 1.1 palle int vd_nentries;
115 1.1 palle };
116 1.1 palle
117 1.1 palle #if OPENBSD_BUSDMA
118 1.1 palle struct vdsk_dring *vdsk_dring_alloc(bus_dma_tag_t, int);
119 1.1 palle void vdsk_dring_free(bus_dma_tag_t, struct vdsk_dring *);
120 1.1 palle #else
121 1.1 palle struct vdsk_dring *vdsk_dring_alloc(int);
122 1.1 palle void vdsk_dring_free(struct vdsk_dring *);
123 1.1 palle #endif
124 1.1 palle
125 1.1 palle /*
126 1.1 palle * We support vDisk 1.0 and 1.1.
127 1.1 palle */
128 1.1 palle #define VDSK_MAJOR 1
129 1.1 palle #define VDSK_MINOR 1
130 1.1 palle
131 1.1 palle struct vdsk_soft_desc {
132 1.1 palle int vsd_map_idx[MAXPHYS / PAGE_SIZE];
133 1.1 palle struct scsipi_xfer *vsd_xs;
134 1.1 palle int vsd_ncookies;
135 1.1 palle };
136 1.1 palle
137 1.1 palle struct vdsk_softc {
138 1.1 palle device_t sc_dv;
139 1.1 palle
140 1.1 palle struct scsipi_adapter sc_adapter;
141 1.1 palle struct scsipi_channel sc_channel;
142 1.1 palle
143 1.1 palle bus_space_tag_t sc_bustag;
144 1.1 palle bus_dma_tag_t sc_dmatag;
145 1.1 palle
146 1.1 palle void *sc_tx_ih;
147 1.1 palle void *sc_rx_ih;
148 1.1 palle
149 1.1 palle struct ldc_conn sc_lc;
150 1.1 palle
151 1.1 palle uint16_t sc_vio_state;
152 1.1 palle #define VIO_SND_VER_INFO 0x0001
153 1.1 palle #define VIO_ACK_VER_INFO 0x0002
154 1.1 palle #define VIO_SND_ATTR_INFO 0x0004
155 1.1 palle #define VIO_ACK_ATTR_INFO 0x0008
156 1.1 palle #define VIO_SND_DRING_REG 0x0010
157 1.1 palle #define VIO_ACK_DRING_REG 0x0020
158 1.1 palle #define VIO_SND_RDX 0x0040
159 1.1 palle #define VIO_ACK_RDX 0x0080
160 1.1 palle #define VIO_ESTABLISHED 0x00ff
161 1.1 palle
162 1.1 palle uint16_t sc_major;
163 1.1 palle uint16_t sc_minor;
164 1.1 palle
165 1.1 palle uint32_t sc_local_sid;
166 1.1 palle uint64_t sc_dring_ident;
167 1.1 palle uint64_t sc_seq_no;
168 1.1 palle
169 1.1 palle int sc_tx_cnt;
170 1.1 palle int sc_tx_prod;
171 1.1 palle int sc_tx_cons;
172 1.1 palle
173 1.1 palle struct ldc_map *sc_lm;
174 1.1 palle struct vdsk_dring *sc_vd;
175 1.1 palle struct vdsk_soft_desc *sc_vsd;
176 1.1 palle
177 1.1 palle uint32_t sc_vdisk_block_size;
178 1.1 palle uint64_t sc_vdisk_size;
179 1.1 palle uint8_t sc_vd_mtype;
180 1.1 palle };
181 1.1 palle
182 1.1 palle int vdsk_match(device_t, cfdata_t, void *);
183 1.1 palle void vdsk_attach(device_t, device_t, void *);
184 1.1 palle void vdsk_scsipi_request(struct scsipi_channel *, scsipi_adapter_req_t,
185 1.1 palle void *);
186 1.1 palle
187 1.1 palle CFATTACH_DECL_NEW(vdsk, sizeof(struct vdsk_softc),
188 1.1 palle vdsk_match, vdsk_attach, NULL, NULL);
189 1.1 palle
190 1.1 palle int vdsk_tx_intr(void *);
191 1.1 palle int vdsk_rx_intr(void *);
192 1.1 palle
193 1.1 palle void vdsk_rx_data(struct ldc_conn *, struct ldc_pkt *);
194 1.1 palle void vdsk_rx_vio_ctrl(struct vdsk_softc *, struct vio_msg *);
195 1.1 palle void vdsk_rx_vio_ver_info(struct vdsk_softc *, struct vio_msg_tag *);
196 1.1 palle void vdsk_rx_vio_attr_info(struct vdsk_softc *, struct vio_msg_tag *);
197 1.1 palle void vdsk_rx_vio_dring_reg(struct vdsk_softc *, struct vio_msg_tag *);
198 1.1 palle void vdsk_rx_vio_rdx(struct vdsk_softc *sc, struct vio_msg_tag *);
199 1.1 palle void vdsk_rx_vio_data(struct vdsk_softc *sc, struct vio_msg *);
200 1.1 palle void vdsk_rx_vio_dring_data(struct vdsk_softc *sc, struct vio_msg_tag *);
201 1.1 palle
202 1.1 palle void vdsk_ldc_reset(struct ldc_conn *);
203 1.1 palle void vdsk_ldc_start(struct ldc_conn *);
204 1.1 palle
205 1.1 palle void vdsk_sendmsg(struct vdsk_softc *, void *, size_t);
206 1.1 palle void vdsk_send_ver_info(struct vdsk_softc *, uint16_t, uint16_t);
207 1.1 palle void vdsk_send_attr_info(struct vdsk_softc *);
208 1.1 palle void vdsk_send_dring_reg(struct vdsk_softc *);
209 1.1 palle void vdsk_send_rdx(struct vdsk_softc *);
210 1.1 palle
211 1.1 palle void *vdsk_io_get(void *);
212 1.1 palle void vdsk_io_put(void *, void *);
213 1.1 palle
214 1.1 palle void vdsk_scsi_cmd(struct vdsk_softc *sc, struct scsipi_xfer *);
215 1.1 palle int vdsk_submit_cmd(struct vdsk_softc *sc, struct scsipi_xfer *);
216 1.1 palle void vdsk_complete_cmd(struct vdsk_softc *sc, struct scsipi_xfer *, int);
217 1.1 palle void vdsk_scsi_inq(struct vdsk_softc *sc, struct scsipi_xfer *);
218 1.1 palle void vdsk_scsi_inquiry(struct vdsk_softc *sc, struct scsipi_xfer *);
219 1.1 palle void vdsk_scsi_capacity(struct vdsk_softc *sc, struct scsipi_xfer *);
220 1.1 palle void vdsk_scsi_capacity16(struct vdsk_softc *sc, struct scsipi_xfer *);
221 1.1 palle void vdsk_scsi_done(struct scsipi_xfer *, int);
222 1.1 palle
223 1.1 palle int
224 1.1 palle vdsk_match(device_t parent, cfdata_t match, void *aux)
225 1.1 palle {
226 1.1 palle struct cbus_attach_args *ca = aux;
227 1.1 palle
228 1.1 palle if (strcmp(ca->ca_name, "disk") == 0)
229 1.1 palle return (1);
230 1.1 palle
231 1.1 palle return (0);
232 1.1 palle }
233 1.1 palle
234 1.1 palle void
235 1.1 palle vdsk_attach(device_t parent, device_t self, void *aux)
236 1.1 palle {
237 1.1 palle struct vdsk_softc *sc = device_private(self);
238 1.1 palle struct cbus_attach_args *ca = aux;
239 1.1 palle struct ldc_conn *lc;
240 1.1 palle int err, s;
241 1.1 palle int timeout;
242 1.1 palle vaddr_t va;
243 1.1 palle paddr_t pa;
244 1.1 palle
245 1.1 palle sc->sc_bustag = ca->ca_bustag;
246 1.1 palle sc->sc_dmatag = ca->ca_dmatag;
247 1.1 palle
248 1.1 palle printf(": ivec 0x%llx, 0x%llx",
249 1.1 palle (long long unsigned int)ca->ca_tx_ino,
250 1.1 palle (long long unsigned int)ca->ca_rx_ino);
251 1.1 palle
252 1.1 palle /*
253 1.1 palle * Un-configure queues before registering interrupt handlers,
254 1.1 palle * such that we dont get any stale LDC packets or events.
255 1.1 palle */
256 1.1 palle hv_ldc_tx_qconf(ca->ca_id, 0, 0);
257 1.1 palle hv_ldc_rx_qconf(ca->ca_id, 0, 0);
258 1.1 palle
259 1.1 palle sc->sc_tx_ih = bus_intr_establish(ca->ca_bustag, ca->ca_tx_ino,
260 1.1 palle IPL_BIO, vdsk_tx_intr, sc);
261 1.1 palle sc->sc_rx_ih = bus_intr_establish(ca->ca_bustag, ca->ca_rx_ino,
262 1.1 palle IPL_BIO, vdsk_rx_intr, sc);
263 1.1 palle if (sc->sc_tx_ih == NULL || sc->sc_rx_ih == NULL) {
264 1.1 palle printf(", can't establish interrupt\n");
265 1.1 palle return;
266 1.1 palle }
267 1.1 palle
268 1.1 palle lc = &sc->sc_lc;
269 1.1 palle lc->lc_id = ca->ca_id;
270 1.1 palle lc->lc_sc = sc;
271 1.1 palle lc->lc_reset = vdsk_ldc_reset;
272 1.1 palle lc->lc_start = vdsk_ldc_start;
273 1.1 palle lc->lc_rx_data = vdsk_rx_data;
274 1.1 palle
275 1.1 palle #if OPENBSD_BUSDMA
276 1.1 palle lc->lc_txq = ldc_queue_alloc(sc->sc_dmatag, VDSK_TX_ENTRIES);
277 1.1 palle #else
278 1.1 palle lc->lc_txq = ldc_queue_alloc(VDSK_TX_ENTRIES);
279 1.1 palle #endif
280 1.1 palle #if OPENBSD_BUSDMA
281 1.1 palle lc->lc_rxq = ldc_queue_alloc(sc->sc_dmatag, VDSK_RX_ENTRIES);
282 1.1 palle #else
283 1.1 palle lc->lc_rxq = ldc_queue_alloc(VDSK_RX_ENTRIES);
284 1.1 palle #endif
285 1.1 palle #if OPENBSD_BUSDMA
286 1.1 palle sc->sc_lm = ldc_map_alloc(sc->sc_dmatag, 2048);
287 1.1 palle #else
288 1.1 palle sc->sc_lm = ldc_map_alloc(2048);
289 1.1 palle #endif
290 1.1 palle #if OPENBSD_BUSDMA
291 1.1 palle err = hv_ldc_set_map_table(lc->lc_id,
292 1.1 palle sc->sc_lm->lm_map->dm_segs[0].ds_addr, sc->sc_lm->lm_nentries);
293 1.1 palle #else
294 1.1 palle va = (vaddr_t)sc->sc_lm->lm_slot;
295 1.1 palle pa = 0;
296 1.1 palle if (pmap_extract(pmap_kernel(), va, &pa) == FALSE)
297 1.1 palle panic("pmap_extract failed %lx\n", va);
298 1.1 palle err = hv_ldc_set_map_table(lc->lc_id, pa, 2048);
299 1.1 palle #endif
300 1.1 palle if (err != H_EOK) {
301 1.1 palle printf("hv_ldc_set_map_table %d\n", err);
302 1.1 palle goto free_map;
303 1.1 palle }
304 1.1 palle #if OPENBSD_BUSDMA
305 1.1 palle sc->sc_vd = vdsk_dring_alloc(sc->sc_dmatag, 32);
306 1.1 palle #else
307 1.1 palle sc->sc_vd = vdsk_dring_alloc(32);
308 1.1 palle #endif
309 1.4 chs sc->sc_vsd = kmem_zalloc(32 * sizeof(*sc->sc_vsd), KM_SLEEP);
310 1.1 palle
311 1.1 palle #if OPENBSD_BUSDMA
312 1.1 palle sc->sc_lm->lm_slot[0].entry = sc->sc_vd->vd_map->dm_segs[0].ds_addr;
313 1.1 palle #else
314 1.1 palle va = (vaddr_t)sc->sc_vd->vd_desc;
315 1.1 palle pa = 0;
316 1.1 palle if (pmap_extract(pmap_kernel(), va, &pa) == FALSE)
317 1.1 palle panic("pmap_extract failed %lx\n", va);
318 1.1 palle
319 1.1 palle sc->sc_lm->lm_slot[0].entry = pa;
320 1.1 palle #endif
321 1.1 palle sc->sc_lm->lm_slot[0].entry &= LDC_MTE_RA_MASK;
322 1.1 palle sc->sc_lm->lm_slot[0].entry |= LDC_MTE_CPR | LDC_MTE_CPW;
323 1.1 palle sc->sc_lm->lm_slot[0].entry |= LDC_MTE_R | LDC_MTE_W;
324 1.1 palle sc->sc_lm->lm_next = 1;
325 1.1 palle sc->sc_lm->lm_count = 1;
326 1.1 palle va = lc->lc_txq->lq_va;
327 1.1 palle pa = 0;
328 1.1 palle if (pmap_extract(pmap_kernel(), va, &pa) == FALSE)
329 1.1 palle panic("pmap_extract failed %lx\n", va);
330 1.1 palle #if OPENBSD_BUSDMA
331 1.1 palle err = hv_ldc_tx_qconf(lc->lc_id,
332 1.1 palle lc->lc_txq->lq_map->dm_segs[0].ds_addr, lc->lc_txq->lq_nentries);
333 1.1 palle #else
334 1.1 palle err = hv_ldc_tx_qconf(lc->lc_id, pa, lc->lc_txq->lq_nentries);
335 1.1 palle #endif
336 1.1 palle if (err != H_EOK)
337 1.1 palle printf("hv_ldc_tx_qconf %d\n", err);
338 1.1 palle va = (vaddr_t)lc->lc_rxq->lq_va;
339 1.1 palle pa = 0;
340 1.1 palle if (pmap_extract(pmap_kernel(), va, &pa) == FALSE)
341 1.1 palle panic("pmap_extract failed %lx\n", va);
342 1.1 palle #if OPENBSD_BUSDMA
343 1.1 palle err = hv_ldc_rx_qconf(lc->lc_id,
344 1.1 palle lc->lc_rxq->lq_map->dm_segs[0].ds_addr, lc->lc_rxq->lq_nentries);
345 1.1 palle #else
346 1.1 palle err = hv_ldc_rx_qconf(lc->lc_id, pa, lc->lc_rxq->lq_nentries);
347 1.1 palle #endif
348 1.1 palle if (err != H_EOK)
349 1.1 palle printf("hv_ldc_rx_qconf %d\n", err);
350 1.1 palle
351 1.1 palle cbus_intr_setenabled(sc->sc_bustag, ca->ca_tx_ino, INTR_ENABLED);
352 1.1 palle cbus_intr_setenabled(sc->sc_bustag, ca->ca_rx_ino, INTR_ENABLED);
353 1.1 palle
354 1.1 palle ldc_send_vers(lc);
355 1.1 palle
356 1.1 palle printf("\n");
357 1.1 palle
358 1.1 palle /*
359 1.1 palle * Interrupts aren't enabled during autoconf, so poll for VIO
360 1.1 palle * peer-to-peer hanshake completion.
361 1.1 palle */
362 1.1 palle s = splbio();
363 1.1 palle timeout = 10 * 1000;
364 1.1 palle do {
365 1.1 palle if (vdsk_rx_intr(sc) && sc->sc_vio_state == VIO_ESTABLISHED)
366 1.1 palle break;
367 1.1 palle
368 1.1 palle delay(1000);
369 1.1 palle } while(--timeout > 0);
370 1.1 palle splx(s);
371 1.1 palle
372 1.1 palle if (sc->sc_vio_state != VIO_ESTABLISHED) {
373 1.1 palle printf("vio not establshed: %d\n", sc->sc_vio_state);
374 1.1 palle return;
375 1.1 palle }
376 1.1 palle
377 1.1 palle sc->sc_dv = self;
378 1.1 palle
379 1.1 palle sc->sc_adapter.adapt_dev = sc->sc_dv;
380 1.1 palle sc->sc_adapter.adapt_nchannels = 1;
381 1.1 palle sc->sc_adapter.adapt_openings = sc->sc_vd->vd_nentries - 1;
382 1.1 palle sc->sc_adapter.adapt_max_periph = sc->sc_vd->vd_nentries - 1;
383 1.1 palle
384 1.1 palle sc->sc_adapter.adapt_minphys = minphys;
385 1.1 palle sc->sc_adapter.adapt_request = vdsk_scsipi_request;
386 1.1 palle
387 1.1 palle sc->sc_channel.chan_adapter = &sc->sc_adapter;
388 1.1 palle sc->sc_channel.chan_bustype = &scsi_bustype;
389 1.1 palle sc->sc_channel.chan_channel = 0;
390 1.1 palle sc->sc_channel.chan_ntargets = 2; /* XXX why not 1? */
391 1.1 palle sc->sc_channel.chan_nluns = 1; /* XXX slices should be presented as luns? */
392 1.1 palle sc->sc_channel.chan_id = 0;
393 1.1 palle sc->sc_channel.chan_flags = SCSIPI_CHAN_NOSETTLE;
394 1.1 palle
395 1.6 thorpej config_found(self, &sc->sc_channel, scsiprint, CFARG_EOL);
396 1.1 palle
397 1.1 palle return;
398 1.1 palle
399 1.1 palle free_map:
400 1.1 palle hv_ldc_set_map_table(lc->lc_id, 0, 0);
401 1.1 palle #if OPENBSD_BUSDMA
402 1.1 palle ldc_map_free(sc->sc_dmatag, sc->sc_lm);
403 1.1 palle #else
404 1.1 palle ldc_map_free(sc->sc_lm);
405 1.1 palle #endif
406 1.1 palle }
407 1.1 palle
408 1.1 palle void
409 1.1 palle vdsk_scsipi_request(struct scsipi_channel *chan, scsipi_adapter_req_t req,
410 1.1 palle void *arg)
411 1.1 palle {
412 1.1 palle
413 1.1 palle struct vdsk_softc *sc;
414 1.1 palle struct scsipi_xfer *xs;
415 1.1 palle
416 1.1 palle sc = device_private(chan->chan_adapter->adapt_dev);
417 1.1 palle
418 1.1 palle xs = arg;
419 1.1 palle
420 1.1 palle switch (req) {
421 1.1 palle case ADAPTER_REQ_RUN_XFER:
422 1.1 palle vdsk_scsi_cmd(sc, xs);
423 1.1 palle break;
424 1.1 palle case ADAPTER_REQ_GROW_RESOURCES:
425 1.1 palle case ADAPTER_REQ_SET_XFER_MODE:
426 1.1 palle /* Ignored */
427 1.1 palle break;
428 1.1 palle default:
429 1.1 palle panic("req unhandled: %x", req);
430 1.1 palle }
431 1.1 palle
432 1.1 palle }
433 1.1 palle
434 1.1 palle int
435 1.1 palle vdsk_tx_intr(void *arg)
436 1.1 palle {
437 1.1 palle panic("%s: not verified yet", __FUNCTION__);
438 1.1 palle
439 1.1 palle struct vdsk_softc *sc = arg;
440 1.1 palle struct ldc_conn *lc = &sc->sc_lc;
441 1.1 palle uint64_t tx_head, tx_tail, tx_state;
442 1.1 palle
443 1.1 palle hv_ldc_tx_get_state(lc->lc_id, &tx_head, &tx_tail, &tx_state);
444 1.1 palle if (tx_state != lc->lc_tx_state) {
445 1.1 palle switch (tx_state) {
446 1.1 palle case LDC_CHANNEL_DOWN:
447 1.1 palle DPRINTF(("Tx link down\n"));
448 1.1 palle break;
449 1.1 palle case LDC_CHANNEL_UP:
450 1.1 palle DPRINTF(("Tx link up\n"));
451 1.1 palle break;
452 1.1 palle case LDC_CHANNEL_RESET:
453 1.1 palle DPRINTF(("Tx link reset\n"));
454 1.1 palle break;
455 1.1 palle }
456 1.1 palle lc->lc_tx_state = tx_state;
457 1.1 palle }
458 1.1 palle
459 1.1 palle return (1);
460 1.1 palle }
461 1.1 palle
462 1.1 palle int
463 1.1 palle vdsk_rx_intr(void *arg)
464 1.1 palle {
465 1.1 palle struct vdsk_softc *sc = arg;
466 1.1 palle struct ldc_conn *lc = &sc->sc_lc;
467 1.1 palle uint64_t rx_head, rx_tail, rx_state;
468 1.1 palle struct ldc_pkt *lp;
469 1.1 palle int err;
470 1.1 palle
471 1.1 palle err = hv_ldc_rx_get_state(lc->lc_id, &rx_head, &rx_tail, &rx_state);
472 1.1 palle if (err == H_EINVAL) {
473 1.1 palle printf("hv_ldc_rx_get_state H_EINVAL\n");
474 1.1 palle return (0);
475 1.1 palle }
476 1.1 palle if (err != H_EOK) {
477 1.1 palle printf("hv_ldc_rx_get_state %d\n", err);
478 1.1 palle return (0);
479 1.1 palle }
480 1.1 palle
481 1.1 palle if (rx_state != lc->lc_rx_state) {
482 1.1 palle sc->sc_vio_state = 0;
483 1.1 palle lc->lc_tx_seqid = 0;
484 1.1 palle lc->lc_state = 0;
485 1.1 palle switch (rx_state) {
486 1.1 palle case LDC_CHANNEL_DOWN:
487 1.1 palle DPRINTF(("Rx link down\n"));
488 1.1 palle break;
489 1.1 palle case LDC_CHANNEL_UP:
490 1.1 palle DPRINTF(("Rx link up\n"));
491 1.1 palle ldc_send_vers(lc);
492 1.1 palle break;
493 1.1 palle case LDC_CHANNEL_RESET:
494 1.1 palle DPRINTF(("Rx link reset\n"));
495 1.1 palle break;
496 1.1 palle }
497 1.1 palle lc->lc_rx_state = rx_state;
498 1.1 palle hv_ldc_rx_set_qhead(lc->lc_id, rx_tail);
499 1.1 palle return (1);
500 1.1 palle }
501 1.1 palle
502 1.1 palle if (rx_head == rx_tail)
503 1.1 palle return (0);
504 1.1 palle
505 1.2 nakayama lp = (struct ldc_pkt *)(uintptr_t)(lc->lc_rxq->lq_va + rx_head);
506 1.1 palle switch (lp->type) {
507 1.1 palle case LDC_CTRL:
508 1.1 palle ldc_rx_ctrl(lc, lp);
509 1.1 palle break;
510 1.1 palle
511 1.1 palle case LDC_DATA:
512 1.1 palle ldc_rx_data(lc, lp);
513 1.1 palle break;
514 1.1 palle
515 1.1 palle default:
516 1.1 palle DPRINTF(("%0x02/%0x02/%0x02\n", lp->type, lp->stype,
517 1.1 palle lp->ctrl));
518 1.1 palle ldc_reset(lc);
519 1.1 palle break;
520 1.1 palle }
521 1.1 palle
522 1.1 palle if (lc->lc_state == 0)
523 1.1 palle return (1);
524 1.1 palle
525 1.1 palle rx_head += sizeof(*lp);
526 1.1 palle rx_head &= ((lc->lc_rxq->lq_nentries * sizeof(*lp)) - 1);
527 1.1 palle err = hv_ldc_rx_set_qhead(lc->lc_id, rx_head);
528 1.1 palle if (err != H_EOK)
529 1.1 palle printf("%s: hv_ldc_rx_set_qhead %d\n", __func__, err);
530 1.1 palle
531 1.1 palle return (1);
532 1.1 palle }
533 1.1 palle
534 1.1 palle void
535 1.1 palle vdsk_rx_data(struct ldc_conn *lc, struct ldc_pkt *lp)
536 1.1 palle {
537 1.1 palle struct vio_msg *vm = (struct vio_msg *)lp;
538 1.1 palle
539 1.1 palle switch (vm->type) {
540 1.1 palle case VIO_TYPE_CTRL:
541 1.1 palle if ((lp->env & LDC_FRAG_START) == 0 &&
542 1.1 palle (lp->env & LDC_FRAG_STOP) == 0)
543 1.1 palle return;
544 1.1 palle vdsk_rx_vio_ctrl(lc->lc_sc, vm);
545 1.1 palle break;
546 1.1 palle
547 1.1 palle case VIO_TYPE_DATA:
548 1.1 palle if((lp->env & LDC_FRAG_START) == 0)
549 1.1 palle return;
550 1.1 palle vdsk_rx_vio_data(lc->lc_sc, vm);
551 1.1 palle break;
552 1.1 palle
553 1.1 palle default:
554 1.1 palle DPRINTF(("Unhandled packet type 0x%02x\n", vm->type));
555 1.1 palle ldc_reset(lc);
556 1.1 palle break;
557 1.1 palle }
558 1.1 palle }
559 1.1 palle
560 1.1 palle void
561 1.1 palle vdsk_rx_vio_ctrl(struct vdsk_softc *sc, struct vio_msg *vm)
562 1.1 palle {
563 1.1 palle struct vio_msg_tag *tag = (struct vio_msg_tag *)&vm->type;
564 1.1 palle
565 1.1 palle switch (tag->stype_env) {
566 1.1 palle case VIO_VER_INFO:
567 1.1 palle vdsk_rx_vio_ver_info(sc, tag);
568 1.1 palle break;
569 1.1 palle case VIO_ATTR_INFO:
570 1.1 palle vdsk_rx_vio_attr_info(sc, tag);
571 1.1 palle break;
572 1.1 palle case VIO_DRING_REG:
573 1.1 palle vdsk_rx_vio_dring_reg(sc, tag);
574 1.1 palle break;
575 1.1 palle case VIO_RDX:
576 1.1 palle vdsk_rx_vio_rdx(sc, tag);
577 1.1 palle break;
578 1.1 palle default:
579 1.1 palle DPRINTF(("CTRL/0x%02x/0x%04x\n", tag->stype, tag->stype_env));
580 1.1 palle break;
581 1.1 palle }
582 1.1 palle }
583 1.1 palle
584 1.1 palle void
585 1.1 palle vdsk_rx_vio_ver_info(struct vdsk_softc *sc, struct vio_msg_tag *tag)
586 1.1 palle {
587 1.1 palle struct vio_ver_info *vi = (struct vio_ver_info *)tag;
588 1.1 palle
589 1.1 palle switch (vi->tag.stype) {
590 1.1 palle case VIO_SUBTYPE_INFO:
591 1.1 palle DPRINTF(("CTRL/INFO/VER_INFO\n"));
592 1.1 palle break;
593 1.1 palle
594 1.1 palle case VIO_SUBTYPE_ACK:
595 1.1 palle DPRINTF(("CTRL/ACK/VER_INFO\n"));
596 1.1 palle if (!ISSET(sc->sc_vio_state, VIO_SND_VER_INFO)) {
597 1.1 palle ldc_reset(&sc->sc_lc);
598 1.1 palle break;
599 1.1 palle }
600 1.1 palle sc->sc_major = vi->major;
601 1.1 palle sc->sc_minor = vi->minor;
602 1.1 palle sc->sc_vio_state |= VIO_ACK_VER_INFO;
603 1.1 palle break;
604 1.1 palle
605 1.1 palle default:
606 1.1 palle DPRINTF(("CTRL/0x%02x/VER_INFO\n", vi->tag.stype));
607 1.1 palle break;
608 1.1 palle }
609 1.1 palle
610 1.1 palle if (ISSET(sc->sc_vio_state, VIO_ACK_VER_INFO))
611 1.1 palle vdsk_send_attr_info(sc);
612 1.1 palle }
613 1.1 palle
614 1.1 palle void
615 1.1 palle vdsk_rx_vio_attr_info(struct vdsk_softc *sc, struct vio_msg_tag *tag)
616 1.1 palle {
617 1.1 palle struct vd_attr_info *ai = (struct vd_attr_info *)tag;
618 1.1 palle
619 1.1 palle switch (ai->tag.stype) {
620 1.1 palle case VIO_SUBTYPE_INFO:
621 1.1 palle DPRINTF(("CTRL/INFO/ATTR_INFO\n"));
622 1.1 palle break;
623 1.1 palle
624 1.1 palle case VIO_SUBTYPE_ACK:
625 1.1 palle DPRINTF(("CTRL/ACK/ATTR_INFO\n"));
626 1.1 palle if (!ISSET(sc->sc_vio_state, VIO_SND_ATTR_INFO)) {
627 1.1 palle ldc_reset(&sc->sc_lc);
628 1.1 palle break;
629 1.1 palle }
630 1.1 palle
631 1.1 palle sc->sc_vdisk_block_size = ai->vdisk_block_size;
632 1.1 palle sc->sc_vdisk_size = ai->vdisk_size;
633 1.1 palle if (sc->sc_major > 1 || sc->sc_minor >= 1)
634 1.1 palle sc->sc_vd_mtype = ai->vd_mtype;
635 1.1 palle else
636 1.1 palle sc->sc_vd_mtype = VD_MEDIA_TYPE_FIXED;
637 1.1 palle
638 1.1 palle sc->sc_vio_state |= VIO_ACK_ATTR_INFO;
639 1.1 palle break;
640 1.1 palle
641 1.1 palle default:
642 1.1 palle DPRINTF(("CTRL/0x%02x/ATTR_INFO\n", ai->tag.stype));
643 1.1 palle break;
644 1.1 palle }
645 1.1 palle
646 1.1 palle if (ISSET(sc->sc_vio_state, VIO_ACK_ATTR_INFO))
647 1.1 palle vdsk_send_dring_reg(sc);
648 1.1 palle
649 1.1 palle }
650 1.1 palle
651 1.1 palle void
652 1.1 palle vdsk_rx_vio_dring_reg(struct vdsk_softc *sc, struct vio_msg_tag *tag)
653 1.1 palle {
654 1.1 palle struct vio_dring_reg *dr = (struct vio_dring_reg *)tag;
655 1.1 palle
656 1.1 palle switch (dr->tag.stype) {
657 1.1 palle case VIO_SUBTYPE_INFO:
658 1.1 palle DPRINTF(("CTRL/INFO/DRING_REG\n"));
659 1.1 palle break;
660 1.1 palle
661 1.1 palle case VIO_SUBTYPE_ACK:
662 1.1 palle DPRINTF(("CTRL/ACK/DRING_REG\n"));
663 1.1 palle if (!ISSET(sc->sc_vio_state, VIO_SND_DRING_REG)) {
664 1.1 palle ldc_reset(&sc->sc_lc);
665 1.1 palle break;
666 1.1 palle }
667 1.1 palle
668 1.1 palle sc->sc_dring_ident = dr->dring_ident;
669 1.1 palle sc->sc_seq_no = 1;
670 1.1 palle
671 1.1 palle sc->sc_vio_state |= VIO_ACK_DRING_REG;
672 1.1 palle break;
673 1.1 palle
674 1.1 palle default:
675 1.1 palle DPRINTF(("CTRL/0x%02x/DRING_REG\n", dr->tag.stype));
676 1.1 palle break;
677 1.1 palle }
678 1.1 palle
679 1.1 palle if (ISSET(sc->sc_vio_state, VIO_ACK_DRING_REG))
680 1.1 palle vdsk_send_rdx(sc);
681 1.1 palle }
682 1.1 palle
683 1.1 palle void
684 1.1 palle vdsk_rx_vio_rdx(struct vdsk_softc *sc, struct vio_msg_tag *tag)
685 1.1 palle {
686 1.1 palle switch(tag->stype) {
687 1.1 palle case VIO_SUBTYPE_INFO:
688 1.1 palle DPRINTF(("CTRL/INFO/RDX\n"));
689 1.1 palle break;
690 1.1 palle
691 1.1 palle case VIO_SUBTYPE_ACK:
692 1.1 palle {
693 1.1 palle int prod;
694 1.1 palle
695 1.1 palle DPRINTF(("CTRL/ACK/RDX\n"));
696 1.1 palle if (!ISSET(sc->sc_vio_state, VIO_SND_RDX)) {
697 1.1 palle ldc_reset(&sc->sc_lc);
698 1.1 palle break;
699 1.1 palle }
700 1.1 palle sc->sc_vio_state |= VIO_ACK_RDX;
701 1.1 palle
702 1.1 palle /*
703 1.1 palle * If this ACK is the result of a reconnect, we may
704 1.1 palle * have pending I/O that we need to resubmit. We need
705 1.1 palle * to rebuild the ring descriptors though since the
706 1.1 palle * vDisk server on the other side may have touched
707 1.1 palle * them already. So we just clean up the ring and the
708 1.1 palle * LDC map and resubmit the SCSI commands based on our
709 1.1 palle * soft descriptors.
710 1.1 palle */
711 1.1 palle prod = sc->sc_tx_prod;
712 1.1 palle sc->sc_tx_prod = sc->sc_tx_cons;
713 1.1 palle sc->sc_tx_cnt = 0;
714 1.1 palle sc->sc_lm->lm_next = 1;
715 1.1 palle sc->sc_lm->lm_count = 1;
716 1.1 palle while (sc->sc_tx_prod != prod)
717 1.1 palle vdsk_submit_cmd(sc, sc->sc_vsd[sc->sc_tx_prod].vsd_xs);
718 1.1 palle break;
719 1.1 palle }
720 1.1 palle
721 1.1 palle default:
722 1.1 palle DPRINTF(("CTRL/0x%02x/RDX (VIO)\n", tag->stype));
723 1.1 palle break;
724 1.1 palle }
725 1.1 palle }
726 1.1 palle
727 1.1 palle void
728 1.1 palle vdsk_rx_vio_data(struct vdsk_softc *sc, struct vio_msg *vm)
729 1.1 palle {
730 1.1 palle struct vio_msg_tag *tag = (struct vio_msg_tag *)&vm->type;
731 1.1 palle
732 1.1 palle if (sc->sc_vio_state != VIO_ESTABLISHED) {
733 1.1 palle DPRINTF(("Spurious DATA/0x%02x/0x%04x\n", tag->stype,
734 1.1 palle tag->stype_env));
735 1.1 palle return;
736 1.1 palle }
737 1.1 palle
738 1.1 palle switch(tag->stype_env) {
739 1.1 palle case VIO_DRING_DATA:
740 1.1 palle vdsk_rx_vio_dring_data(sc, tag);
741 1.1 palle break;
742 1.1 palle
743 1.1 palle default:
744 1.1 palle DPRINTF(("DATA/0x%02x/0x%04x\n", tag->stype, tag->stype_env));
745 1.1 palle break;
746 1.1 palle }
747 1.1 palle }
748 1.1 palle
749 1.1 palle void
750 1.1 palle vdsk_rx_vio_dring_data(struct vdsk_softc *sc, struct vio_msg_tag *tag)
751 1.1 palle {
752 1.1 palle switch(tag->stype) {
753 1.1 palle case VIO_SUBTYPE_INFO:
754 1.1 palle DPRINTF(("DATA/INFO/DRING_DATA\n"));
755 1.1 palle break;
756 1.1 palle
757 1.1 palle case VIO_SUBTYPE_ACK:
758 1.1 palle {
759 1.1 palle struct scsipi_xfer *xs;
760 1.1 palle int cons;
761 1.1 palle
762 1.1 palle cons = sc->sc_tx_cons;
763 1.1 palle while (sc->sc_vd->vd_desc[cons].hdr.dstate == VIO_DESC_DONE) {
764 1.1 palle xs = sc->sc_vsd[cons].vsd_xs;
765 1.1 palle if (ISSET(xs->xs_control, XS_CTL_POLL) == 0)
766 1.1 palle vdsk_complete_cmd(sc, xs, cons);
767 1.1 palle cons++;
768 1.1 palle cons &= (sc->sc_vd->vd_nentries - 1);
769 1.1 palle }
770 1.1 palle sc->sc_tx_cons = cons;
771 1.1 palle break;
772 1.1 palle }
773 1.1 palle
774 1.1 palle case VIO_SUBTYPE_NACK:
775 1.1 palle DPRINTF(("DATA/NACK/DRING_DATA\n"));
776 1.1 palle break;
777 1.1 palle
778 1.1 palle default:
779 1.1 palle DPRINTF(("DATA/0x%02x/DRING_DATA\n", tag->stype));
780 1.1 palle break;
781 1.1 palle }
782 1.1 palle }
783 1.1 palle
784 1.1 palle void
785 1.1 palle vdsk_ldc_reset(struct ldc_conn *lc)
786 1.1 palle {
787 1.1 palle
788 1.1 palle struct vdsk_softc *sc = lc->lc_sc;
789 1.1 palle
790 1.1 palle sc->sc_vio_state = 0;
791 1.1 palle }
792 1.1 palle
793 1.1 palle void
794 1.1 palle vdsk_ldc_start(struct ldc_conn *lc)
795 1.1 palle {
796 1.1 palle
797 1.1 palle struct vdsk_softc *sc = lc->lc_sc;
798 1.1 palle
799 1.1 palle vdsk_send_ver_info(sc, VDSK_MAJOR, VDSK_MINOR);
800 1.1 palle }
801 1.1 palle
802 1.1 palle void
803 1.1 palle vdsk_sendmsg(struct vdsk_softc *sc, void *msg, size_t len)
804 1.1 palle {
805 1.1 palle
806 1.1 palle struct ldc_conn *lc = &sc->sc_lc;
807 1.1 palle int err;
808 1.1 palle
809 1.1 palle err = ldc_send_unreliable(lc, msg, len);
810 1.1 palle if (err)
811 1.1 palle printf("%s: ldc_send_unreliable: %d\n", __func__, err);
812 1.1 palle }
813 1.1 palle
814 1.1 palle void
815 1.1 palle vdsk_send_ver_info(struct vdsk_softc *sc, uint16_t major, uint16_t minor)
816 1.1 palle {
817 1.1 palle
818 1.1 palle struct vio_ver_info vi;
819 1.1 palle
820 1.1 palle /* Allocate new session ID. */
821 1.1 palle sc->sc_local_sid = gettick();
822 1.1 palle
823 1.1 palle bzero(&vi, sizeof(vi));
824 1.1 palle vi.tag.type = VIO_TYPE_CTRL;
825 1.1 palle vi.tag.stype = VIO_SUBTYPE_INFO;
826 1.1 palle vi.tag.stype_env = VIO_VER_INFO;
827 1.1 palle vi.tag.sid = sc->sc_local_sid;
828 1.1 palle vi.major = major;
829 1.1 palle vi.minor = minor;
830 1.1 palle vi.dev_class = VDEV_DISK;
831 1.1 palle vdsk_sendmsg(sc, &vi, sizeof(vi));
832 1.1 palle
833 1.1 palle sc->sc_vio_state |= VIO_SND_VER_INFO;
834 1.1 palle }
835 1.1 palle
836 1.1 palle void
837 1.1 palle vdsk_send_attr_info(struct vdsk_softc *sc)
838 1.1 palle {
839 1.1 palle struct vd_attr_info ai;
840 1.1 palle
841 1.1 palle bzero(&ai, sizeof(ai));
842 1.1 palle ai.tag.type = VIO_TYPE_CTRL;
843 1.1 palle ai.tag.stype = VIO_SUBTYPE_INFO;
844 1.1 palle ai.tag.stype_env = VIO_ATTR_INFO;
845 1.1 palle ai.tag.sid = sc->sc_local_sid;
846 1.1 palle ai.xfer_mode = VIO_DRING_MODE;
847 1.1 palle ai.vdisk_block_size = DEV_BSIZE;
848 1.1 palle ai.max_xfer_sz = MAXPHYS / DEV_BSIZE;
849 1.1 palle vdsk_sendmsg(sc, &ai, sizeof(ai));
850 1.1 palle
851 1.1 palle sc->sc_vio_state |= VIO_SND_ATTR_INFO;
852 1.1 palle }
853 1.1 palle
854 1.1 palle void
855 1.1 palle vdsk_send_dring_reg(struct vdsk_softc *sc)
856 1.1 palle {
857 1.1 palle struct vio_dring_reg dr;
858 1.1 palle
859 1.1 palle bzero(&dr, sizeof(dr));
860 1.1 palle dr.tag.type = VIO_TYPE_CTRL;
861 1.1 palle dr.tag.stype = VIO_SUBTYPE_INFO;
862 1.1 palle dr.tag.stype_env = VIO_DRING_REG;
863 1.1 palle dr.tag.sid = sc->sc_local_sid;
864 1.1 palle dr.dring_ident = 0;
865 1.1 palle dr.num_descriptors = sc->sc_vd->vd_nentries;
866 1.1 palle dr.descriptor_size = sizeof(struct vd_desc);
867 1.1 palle dr.options = VIO_TX_RING | VIO_RX_RING;
868 1.1 palle dr.ncookies = 1;
869 1.1 palle dr.cookie[0].addr = 0;
870 1.1 palle dr.cookie[0].size = PAGE_SIZE;
871 1.1 palle vdsk_sendmsg(sc, &dr, sizeof(dr));
872 1.1 palle
873 1.1 palle sc->sc_vio_state |= VIO_SND_DRING_REG;
874 1.1 palle };
875 1.1 palle
876 1.1 palle void
877 1.1 palle vdsk_send_rdx(struct vdsk_softc *sc)
878 1.1 palle {
879 1.1 palle struct vio_rdx rdx;
880 1.1 palle
881 1.1 palle bzero(&rdx, sizeof(rdx));
882 1.1 palle rdx.tag.type = VIO_TYPE_CTRL;
883 1.1 palle rdx.tag.stype = VIO_SUBTYPE_INFO;
884 1.1 palle rdx.tag.stype_env = VIO_RDX;
885 1.1 palle rdx.tag.sid = sc->sc_local_sid;
886 1.1 palle vdsk_sendmsg(sc, &rdx, sizeof(rdx));
887 1.1 palle
888 1.1 palle sc->sc_vio_state |= VIO_SND_RDX;
889 1.1 palle }
890 1.1 palle
891 1.1 palle #if OPENBSD_BUSDMA
892 1.1 palle struct vdsk_dring *
893 1.1 palle vdsk_dring_alloc(bus_dma_tag_t t, int nentries)
894 1.1 palle #else
895 1.1 palle struct vdsk_dring *
896 1.1 palle vdsk_dring_alloc(int nentries)
897 1.1 palle #endif
898 1.1 palle {
899 1.1 palle
900 1.1 palle struct vdsk_dring *vd;
901 1.1 palle bus_size_t size;
902 1.1 palle vaddr_t va;
903 1.1 palle #if OPENBSD_BUSDMA
904 1.1 palle int nsegs;
905 1.1 palle #endif
906 1.1 palle int i;
907 1.1 palle
908 1.4 chs vd = kmem_zalloc(sizeof(struct vdsk_dring), KM_SLEEP);
909 1.1 palle
910 1.1 palle size = roundup(nentries * sizeof(struct vd_desc), PAGE_SIZE);
911 1.1 palle
912 1.1 palle #if OPENBSD_BUSDMA
913 1.1 palle if (bus_dmamap_create(t, size, 1, size, 0,
914 1.1 palle BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW, &vd->vd_map) != 0)
915 1.1 palle return (NULL);
916 1.1 palle
917 1.1 palle if (bus_dmamem_alloc(t, size, PAGE_SIZE, 0, &vd->vd_seg, 1,
918 1.1 palle &nsegs, BUS_DMA_NOWAIT) != 0)
919 1.1 palle goto destroy;
920 1.1 palle
921 1.1 palle if (bus_dmamem_map(t, &vd->vd_seg, 1, size, (void*)&va,
922 1.1 palle BUS_DMA_NOWAIT) != 0)
923 1.1 palle goto free;
924 1.1 palle
925 1.1 palle if (bus_dmamap_load(t, vd->vd_map, (void*)va, size, NULL,
926 1.1 palle BUS_DMA_NOWAIT) != 0)
927 1.1 palle goto unmap;
928 1.1 palle #else
929 1.4 chs va = (vaddr_t)kmem_zalloc(size, KM_SLEEP);
930 1.1 palle #endif
931 1.1 palle vd->vd_desc = (struct vd_desc *)va;
932 1.1 palle vd->vd_nentries = nentries;
933 1.1 palle bzero(vd->vd_desc, nentries * sizeof(struct vd_desc));
934 1.1 palle for (i = 0; i < vd->vd_nentries; i++)
935 1.1 palle vd->vd_desc[i].hdr.dstate = VIO_DESC_FREE;
936 1.1 palle return (vd);
937 1.1 palle
938 1.1 palle #if OPENBSD_BUSDMA
939 1.1 palle unmap:
940 1.1 palle bus_dmamem_unmap(t, (void*)va, size);
941 1.1 palle free:
942 1.1 palle bus_dmamem_free(t, &vd->vd_seg, 1);
943 1.1 palle destroy:
944 1.1 palle bus_dmamap_destroy(t, vd->vd_map);
945 1.1 palle #endif
946 1.1 palle return (NULL);
947 1.1 palle }
948 1.1 palle
949 1.1 palle #if OPENBSD_BUSDMA
950 1.1 palle void
951 1.1 palle vdsk_dring_free(bus_dma_tag_t t, struct vdsk_dring *vd)
952 1.1 palle #else
953 1.1 palle void
954 1.1 palle vdsk_dring_free(struct vdsk_dring *vd)
955 1.1 palle #endif
956 1.1 palle {
957 1.1 palle
958 1.1 palle bus_size_t size;
959 1.1 palle
960 1.1 palle size = vd->vd_nentries * sizeof(struct vd_desc);
961 1.1 palle size = roundup(size, PAGE_SIZE);
962 1.1 palle
963 1.1 palle #if OPENBSD_BUSDMA
964 1.1 palle bus_dmamap_unload(t, vd->vd_map);
965 1.1 palle
966 1.1 palle bus_dmamem_unmap(t, (caddr_t)vd->vd_desc, size);
967 1.1 palle bus_dmamem_free(t, &vd->vd_seg, 1);
968 1.1 palle bus_dmamap_destroy(t, vd->vd_map);
969 1.1 palle #else
970 1.1 palle kmem_free(vd->vd_desc, size);
971 1.1 palle #endif
972 1.1 palle kmem_free(vd, size);
973 1.1 palle }
974 1.1 palle
975 1.1 palle void *
976 1.1 palle vdsk_io_get(void *xsc)
977 1.1 palle {
978 1.1 palle
979 1.1 palle panic("%s: not verified yet", __FUNCTION__);
980 1.1 palle
981 1.1 palle struct vdsk_softc *sc = xsc;
982 1.1 palle void *rv = sc; /* just has to be !NULL */
983 1.1 palle int s;
984 1.1 palle
985 1.1 palle s = splbio();
986 1.1 palle if (sc->sc_vio_state != VIO_ESTABLISHED ||
987 1.1 palle sc->sc_tx_cnt >= sc->sc_vd->vd_nentries)
988 1.1 palle rv = NULL;
989 1.1 palle else
990 1.1 palle sc->sc_tx_cnt++;
991 1.1 palle splx(s);
992 1.1 palle
993 1.1 palle return (rv);
994 1.1 palle }
995 1.1 palle
996 1.1 palle void
997 1.1 palle vdsk_io_put(void *xsc, void *io)
998 1.1 palle {
999 1.1 palle
1000 1.1 palle panic("%s: not verified yet", __FUNCTION__);
1001 1.1 palle
1002 1.1 palle struct vdsk_softc *sc = xsc;
1003 1.1 palle int s;
1004 1.1 palle
1005 1.1 palle #ifdef DIAGNOSTIC
1006 1.1 palle if (sc != io)
1007 1.1 palle panic("vsdk_io_put: unexpected io");
1008 1.1 palle #endif
1009 1.1 palle
1010 1.1 palle s = splbio();
1011 1.1 palle sc->sc_tx_cnt--;
1012 1.1 palle splx(s);
1013 1.1 palle }
1014 1.1 palle
1015 1.1 palle void
1016 1.1 palle vdsk_scsi_cmd(struct vdsk_softc *sc, struct scsipi_xfer *xs)
1017 1.1 palle {
1018 1.1 palle int timeout, s;
1019 1.1 palle int desc;
1020 1.1 palle
1021 1.1 palle DPRINTF(("vdsk_scsi_cmd() opcode %x\n", xs->cmd->opcode));
1022 1.1 palle
1023 1.1 palle switch (xs->cmd->opcode) {
1024 1.1 palle
1025 1.1 palle case SCSI_READ_6_COMMAND:
1026 1.1 palle case READ_10:
1027 1.1 palle case READ_12:
1028 1.1 palle case READ_16:
1029 1.1 palle case SCSI_WRITE_6_COMMAND:
1030 1.1 palle case WRITE_10:
1031 1.1 palle case WRITE_12:
1032 1.1 palle case WRITE_16:
1033 1.1 palle case SCSI_SYNCHRONIZE_CACHE_10:
1034 1.1 palle break;
1035 1.1 palle
1036 1.1 palle case INQUIRY:
1037 1.1 palle vdsk_scsi_inq(sc, xs);
1038 1.1 palle return;
1039 1.1 palle
1040 1.1 palle case READ_CAPACITY_10:
1041 1.1 palle vdsk_scsi_capacity(sc, xs);
1042 1.1 palle return;
1043 1.1 palle
1044 1.1 palle case READ_CAPACITY_16:
1045 1.1 palle vdsk_scsi_capacity16(sc, xs);
1046 1.1 palle return;
1047 1.1 palle
1048 1.1 palle case SCSI_TEST_UNIT_READY:
1049 1.1 palle case START_STOP:
1050 1.1 palle case SCSI_PREVENT_ALLOW_MEDIUM_REMOVAL:
1051 1.1 palle case SCSI_MODE_SENSE_6:
1052 1.5 palle case SCSI_MAINTENANCE_IN:
1053 1.1 palle vdsk_scsi_done(xs, XS_NOERROR);
1054 1.1 palle return;
1055 1.1 palle
1056 1.1 palle case SCSI_MODE_SENSE_10:
1057 1.1 palle case READ_TOC:
1058 1.1 palle vdsk_scsi_done(xs, XS_DRIVER_STUFFUP);
1059 1.1 palle return;
1060 1.1 palle
1061 1.1 palle default:
1062 1.1 palle panic("%s unhandled cmd 0x%02x\n",
1063 1.1 palle __func__, xs->cmd->opcode);
1064 1.1 palle }
1065 1.1 palle
1066 1.1 palle s = splbio();
1067 1.1 palle desc = vdsk_submit_cmd(sc, xs);
1068 1.1 palle
1069 1.1 palle if (!ISSET(xs->xs_control, XS_CTL_POLL)) {
1070 1.1 palle splx(s);
1071 1.1 palle return;
1072 1.1 palle }
1073 1.1 palle timeout = 1000;
1074 1.1 palle do {
1075 1.1 palle if (sc->sc_vd->vd_desc[desc].hdr.dstate == VIO_DESC_DONE)
1076 1.1 palle break;
1077 1.1 palle
1078 1.1 palle delay(1000);
1079 1.1 palle } while(--timeout > 0);
1080 1.1 palle if (sc->sc_vd->vd_desc[desc].hdr.dstate == VIO_DESC_DONE) {
1081 1.1 palle vdsk_complete_cmd(sc, xs, desc);
1082 1.1 palle } else {
1083 1.1 palle ldc_reset(&sc->sc_lc);
1084 1.1 palle vdsk_scsi_done(xs, XS_TIMEOUT);
1085 1.1 palle }
1086 1.1 palle splx(s);
1087 1.1 palle }
1088 1.1 palle
1089 1.1 palle int
1090 1.1 palle vdsk_submit_cmd(struct vdsk_softc *sc, struct scsipi_xfer *xs)
1091 1.1 palle {
1092 1.1 palle struct ldc_map *map = sc->sc_lm;
1093 1.1 palle struct vio_dring_msg dm;
1094 1.1 palle struct scsi_rw_6 *rw6;
1095 1.1 palle struct scsipi_rw_10 *rw10;
1096 1.1 palle struct scsipi_rw_12 *rw12;
1097 1.1 palle struct scsipi_rw_16 *rw16;
1098 1.1 palle u_int64_t lba = 0;
1099 1.1 palle uint8_t operation;
1100 1.1 palle vaddr_t va;
1101 1.1 palle paddr_t pa;
1102 1.1 palle psize_t nbytes;
1103 1.1 palle int len, ncookies;
1104 1.1 palle int desc;
1105 1.1 palle
1106 1.1 palle switch (xs->cmd->opcode) {
1107 1.1 palle
1108 1.1 palle case SCSI_READ_6_COMMAND:
1109 1.1 palle case READ_10:
1110 1.1 palle case READ_12:
1111 1.1 palle case READ_16:
1112 1.1 palle operation = VD_OP_BREAD;
1113 1.1 palle break;
1114 1.1 palle
1115 1.1 palle case SCSI_WRITE_6_COMMAND:
1116 1.1 palle case WRITE_10:
1117 1.1 palle case WRITE_12:
1118 1.1 palle case WRITE_16:
1119 1.1 palle operation = VD_OP_BWRITE;
1120 1.1 palle break;
1121 1.1 palle
1122 1.1 palle case SCSI_SYNCHRONIZE_CACHE_10:
1123 1.1 palle operation = VD_OP_FLUSH;
1124 1.1 palle break;
1125 1.1 palle
1126 1.1 palle default:
1127 1.1 palle panic("%s unhandled cmd opcode 0x%x",
1128 1.1 palle __func__, xs->cmd->opcode);
1129 1.1 palle }
1130 1.1 palle
1131 1.1 palle /*
1132 1.1 palle * READ/WRITE/SYNCHRONIZE commands. SYNCHRONIZE CACHE has same
1133 1.1 palle * layout as 10-byte READ/WRITE commands.
1134 1.1 palle */
1135 1.1 palle if (xs->cmdlen == 6) {
1136 1.1 palle rw6 = (struct scsi_rw_6 *)xs->cmd;
1137 1.1 palle lba = _3btol(rw6->addr) & (SRW_TOPADDR << 16 | 0xffff);
1138 1.1 palle } else if (xs->cmdlen == 10) {
1139 1.1 palle rw10 = (struct scsipi_rw_10 *)xs->cmd;
1140 1.1 palle lba = _4btol(rw10->addr);
1141 1.1 palle } else if (xs->cmdlen == 12) {
1142 1.1 palle rw12 = (struct scsipi_rw_12 *)xs->cmd;
1143 1.1 palle lba = _4btol(rw12->addr);
1144 1.1 palle } else if (xs->cmdlen == 16) {
1145 1.1 palle rw16 = (struct scsipi_rw_16 *)xs->cmd;
1146 1.1 palle lba = _8btol(rw16->addr);
1147 1.1 palle }
1148 1.1 palle
1149 1.1 palle DPRINTF(("lba = %lu\n", lba));
1150 1.1 palle
1151 1.1 palle desc = sc->sc_tx_prod;
1152 1.1 palle ncookies = 0;
1153 1.1 palle len = xs->datalen;
1154 1.1 palle va = (vaddr_t)xs->data;
1155 1.1 palle while (len > 0) {
1156 1.1 palle DPRINTF(("len = %u\n", len));
1157 1.1 palle KASSERT(ncookies < MAXPHYS / PAGE_SIZE);
1158 1.1 palle pa = 0;
1159 1.1 palle pmap_extract(pmap_kernel(), va, &pa);
1160 1.1 palle while (map->lm_slot[map->lm_next].entry != 0) {
1161 1.1 palle map->lm_next++;
1162 1.1 palle map->lm_next &= (map->lm_nentries - 1);
1163 1.1 palle }
1164 1.1 palle map->lm_slot[map->lm_next].entry = (pa & LDC_MTE_RA_MASK);
1165 1.1 palle map->lm_slot[map->lm_next].entry |= LDC_MTE_CPR | LDC_MTE_CPW;
1166 1.1 palle map->lm_slot[map->lm_next].entry |= LDC_MTE_IOR | LDC_MTE_IOW;
1167 1.1 palle map->lm_slot[map->lm_next].entry |= LDC_MTE_R | LDC_MTE_W;
1168 1.1 palle map->lm_count++;
1169 1.1 palle
1170 1.1 palle nbytes = MIN(len, PAGE_SIZE - (pa & PAGE_MASK));
1171 1.1 palle
1172 1.1 palle sc->sc_vd->vd_desc[desc].cookie[ncookies].addr =
1173 1.1 palle map->lm_next << PAGE_SHIFT | (pa & PAGE_MASK);
1174 1.1 palle sc->sc_vd->vd_desc[desc].cookie[ncookies].size = nbytes;
1175 1.1 palle
1176 1.1 palle sc->sc_vsd[desc].vsd_map_idx[ncookies] = map->lm_next;
1177 1.1 palle va += nbytes;
1178 1.1 palle len -= nbytes;
1179 1.1 palle ncookies++;
1180 1.1 palle }
1181 1.1 palle if (ISSET(xs->xs_control, XS_CTL_POLL) == 0)
1182 1.1 palle sc->sc_vd->vd_desc[desc].hdr.ack = 1;
1183 1.1 palle else
1184 1.1 palle sc->sc_vd->vd_desc[desc].hdr.ack = 0;
1185 1.1 palle sc->sc_vd->vd_desc[desc].operation = operation;
1186 1.1 palle sc->sc_vd->vd_desc[desc].slice = VD_SLICE_NONE;
1187 1.1 palle sc->sc_vd->vd_desc[desc].status = 0xffffffff;
1188 1.1 palle sc->sc_vd->vd_desc[desc].offset = lba;
1189 1.1 palle sc->sc_vd->vd_desc[desc].size = xs->datalen;
1190 1.1 palle sc->sc_vd->vd_desc[desc].ncookies = ncookies;
1191 1.1 palle
1192 1.1 palle membar_Sync();
1193 1.1 palle
1194 1.1 palle sc->sc_vd->vd_desc[desc].hdr.dstate = VIO_DESC_READY;
1195 1.1 palle
1196 1.1 palle sc->sc_vsd[desc].vsd_xs = xs;
1197 1.1 palle sc->sc_vsd[desc].vsd_ncookies = ncookies;
1198 1.1 palle
1199 1.1 palle sc->sc_tx_prod++;
1200 1.1 palle sc->sc_tx_prod &= (sc->sc_vd->vd_nentries - 1);
1201 1.1 palle
1202 1.1 palle bzero(&dm, sizeof(dm));
1203 1.1 palle dm.tag.type = VIO_TYPE_DATA;
1204 1.1 palle dm.tag.stype = VIO_SUBTYPE_INFO;
1205 1.1 palle dm.tag.stype_env = VIO_DRING_DATA;
1206 1.1 palle dm.tag.sid = sc->sc_local_sid;
1207 1.1 palle dm.seq_no = sc->sc_seq_no++;
1208 1.1 palle dm.dring_ident = sc->sc_dring_ident;
1209 1.1 palle dm.start_idx = dm.end_idx = desc;
1210 1.1 palle vdsk_sendmsg(sc, &dm, sizeof(dm));
1211 1.1 palle
1212 1.1 palle return desc;
1213 1.1 palle }
1214 1.1 palle
1215 1.1 palle void
1216 1.1 palle vdsk_complete_cmd(struct vdsk_softc *sc, struct scsipi_xfer *xs, int desc)
1217 1.1 palle {
1218 1.1 palle struct ldc_map *map = sc->sc_lm;
1219 1.1 palle int cookie, idx;
1220 1.1 palle int error;
1221 1.1 palle
1222 1.1 palle cookie = 0;
1223 1.1 palle while (cookie < sc->sc_vsd[desc].vsd_ncookies) {
1224 1.1 palle idx = sc->sc_vsd[desc].vsd_map_idx[cookie++];
1225 1.1 palle map->lm_slot[idx].entry = 0;
1226 1.1 palle map->lm_count--;
1227 1.1 palle }
1228 1.1 palle
1229 1.1 palle error = XS_NOERROR;
1230 1.1 palle if (sc->sc_vd->vd_desc[desc].status != 0)
1231 1.1 palle error = XS_DRIVER_STUFFUP;
1232 1.1 palle xs->resid = xs->datalen -
1233 1.1 palle sc->sc_vd->vd_desc[desc].size;
1234 1.1 palle
1235 1.1 palle /*
1236 1.1 palle * scsi_done() called by vdsk_scsi_done() requires
1237 1.1 palle * the kernel to be locked
1238 1.1 palle */
1239 1.1 palle KERNEL_LOCK(1, curlwp);
1240 1.1 palle vdsk_scsi_done(xs, error);
1241 1.1 palle KERNEL_UNLOCK_ONE(curlwp);
1242 1.1 palle
1243 1.1 palle sc->sc_vd->vd_desc[desc].hdr.dstate = VIO_DESC_FREE;
1244 1.1 palle
1245 1.1 palle }
1246 1.1 palle
1247 1.1 palle void
1248 1.1 palle vdsk_scsi_inq(struct vdsk_softc *sc, struct scsipi_xfer *xs)
1249 1.1 palle {
1250 1.1 palle
1251 1.1 palle vdsk_scsi_inquiry(sc, xs);
1252 1.1 palle }
1253 1.1 palle
1254 1.1 palle void
1255 1.1 palle vdsk_scsi_inquiry(struct vdsk_softc *sc, struct scsipi_xfer *xs)
1256 1.1 palle {
1257 1.1 palle
1258 1.1 palle struct scsipi_inquiry_data inq;
1259 1.1 palle char buf[5];
1260 1.1 palle
1261 1.1 palle bzero(&inq, sizeof(inq));
1262 1.1 palle
1263 1.1 palle switch (sc->sc_vd_mtype) {
1264 1.1 palle case VD_MEDIA_TYPE_CD:
1265 1.1 palle case VD_MEDIA_TYPE_DVD:
1266 1.1 palle inq.device = T_CDROM;
1267 1.1 palle break;
1268 1.1 palle
1269 1.1 palle case VD_MEDIA_TYPE_FIXED:
1270 1.1 palle default:
1271 1.1 palle inq.device = T_DIRECT;
1272 1.1 palle break;
1273 1.1 palle }
1274 1.1 palle
1275 1.1 palle inq.version = 0x05; /* SPC-3 */
1276 1.1 palle inq.response_format = 2;
1277 1.1 palle inq.additional_length = 32;
1278 1.1 palle inq.flags3 |= SID_CmdQue;
1279 1.1 palle bcopy("SUN ", inq.vendor, sizeof(inq.vendor));
1280 1.1 palle bcopy("Virtual Disk ", inq.product, sizeof(inq.product));
1281 1.1 palle snprintf(buf, sizeof(buf), "%u.%u ", sc->sc_major, sc->sc_minor);
1282 1.1 palle bcopy(buf, inq.revision, sizeof(inq.revision));
1283 1.1 palle
1284 1.1 palle bcopy(&inq, xs->data, MIN(sizeof(inq), xs->datalen));
1285 1.1 palle
1286 1.1 palle vdsk_scsi_done(xs, XS_NOERROR);
1287 1.1 palle }
1288 1.1 palle
1289 1.1 palle void
1290 1.1 palle vdsk_scsi_capacity(struct vdsk_softc *sc, struct scsipi_xfer *xs)
1291 1.1 palle {
1292 1.1 palle
1293 1.1 palle struct scsipi_read_capacity_10_data rcd;
1294 1.1 palle uint64_t capacity;
1295 1.1 palle
1296 1.1 palle bzero(&rcd, sizeof(rcd));
1297 1.1 palle
1298 1.1 palle capacity = sc->sc_vdisk_size - 1;
1299 1.1 palle if (capacity > 0xffffffff)
1300 1.1 palle capacity = 0xffffffff;
1301 1.1 palle
1302 1.1 palle _lto4b(capacity, rcd.addr);
1303 1.1 palle _lto4b(sc->sc_vdisk_block_size, rcd.length);
1304 1.1 palle
1305 1.1 palle DPRINTF(("%s() capacity %lu block size %u\n",
1306 1.1 palle __FUNCTION__, capacity, sc->sc_vdisk_block_size));
1307 1.1 palle
1308 1.1 palle bcopy(&rcd, xs->data, MIN(sizeof(rcd), xs->datalen));
1309 1.1 palle
1310 1.1 palle vdsk_scsi_done(xs, XS_NOERROR);
1311 1.1 palle }
1312 1.1 palle
1313 1.1 palle void
1314 1.1 palle vdsk_scsi_capacity16(struct vdsk_softc *sc, struct scsipi_xfer *xs)
1315 1.1 palle {
1316 1.1 palle
1317 1.1 palle struct scsipi_read_capacity_16_data rcd;
1318 1.1 palle
1319 1.1 palle bzero(&rcd, sizeof(rcd));
1320 1.1 palle
1321 1.1 palle _lto8b(sc->sc_vdisk_size - 1, rcd.addr);
1322 1.1 palle _lto4b(sc->sc_vdisk_block_size, rcd.length);
1323 1.1 palle
1324 1.1 palle DPRINTF(("%s() capacity %lu block size %u\n",
1325 1.1 palle __FUNCTION__, capacity, sc->sc_vdisk_block_size));
1326 1.1 palle
1327 1.1 palle bcopy(&rcd, xs->data, MIN(sizeof(rcd), xs->datalen));
1328 1.1 palle
1329 1.1 palle vdsk_scsi_done(xs, XS_NOERROR);
1330 1.1 palle }
1331 1.1 palle
1332 1.1 palle void
1333 1.1 palle vdsk_scsi_done(struct scsipi_xfer *xs, int error)
1334 1.1 palle {
1335 1.1 palle
1336 1.1 palle xs->error = error;
1337 1.1 palle
1338 1.1 palle scsipi_done(xs);
1339 1.1 palle }
1340