isp_target.h revision 1.5 1 1.5 mjacob /* $NetBSD: isp_target.h,v 1.5 2000/07/05 22:25:34 mjacob Exp $ */
2 1.1 mjacob /*
3 1.1 mjacob * Qlogic Target Mode Structure and Flag Definitions
4 1.1 mjacob *
5 1.1 mjacob * Copyright (c) 1997, 1998
6 1.1 mjacob * Patrick Stirling
7 1.1 mjacob * pms (at) psconsult.com
8 1.1 mjacob * All rights reserved.
9 1.1 mjacob *
10 1.1 mjacob * Additional Copyright (c) 1999
11 1.1 mjacob * Matthew Jacob
12 1.1 mjacob * mjacob (at) feral.com
13 1.1 mjacob * All rights reserved.
14 1.1 mjacob *
15 1.1 mjacob *
16 1.1 mjacob * Redistribution and use in source and binary forms, with or without
17 1.1 mjacob * modification, are permitted provided that the following conditions
18 1.1 mjacob * are met:
19 1.1 mjacob * 1. Redistributions of source code must retain the above copyright
20 1.1 mjacob * notice immediately at the beginning of the file, without modification,
21 1.1 mjacob * this list of conditions, and the following disclaimer.
22 1.1 mjacob * 2. Redistributions in binary form must reproduce the above copyright
23 1.1 mjacob * notice, this list of conditions and the following disclaimer in the
24 1.1 mjacob * documentation and/or other materials provided with the distribution.
25 1.1 mjacob * 3. The name of the author may not be used to endorse or promote products
26 1.1 mjacob * derived from this software without specific prior written permission.
27 1.1 mjacob *
28 1.1 mjacob * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
29 1.1 mjacob * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30 1.1 mjacob * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31 1.1 mjacob * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
32 1.1 mjacob * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33 1.1 mjacob * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34 1.1 mjacob * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35 1.1 mjacob * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36 1.1 mjacob * SUCH DAMAGE.
37 1.1 mjacob *
38 1.1 mjacob */
39 1.1 mjacob #ifndef _ISPTARGET_H
40 1.1 mjacob #define _ISPTARGET_H
41 1.1 mjacob
42 1.1 mjacob /*
43 1.1 mjacob * Defines for all entry types
44 1.1 mjacob */
45 1.1 mjacob #define QLTM_SVALID 0x80
46 1.1 mjacob #define QLTM_SENSELEN 18
47 1.1 mjacob
48 1.1 mjacob /*
49 1.1 mjacob * Structure for Enable Lun and Modify Lun queue entries
50 1.1 mjacob */
51 1.1 mjacob typedef struct {
52 1.1 mjacob isphdr_t le_header;
53 1.1 mjacob u_int32_t le_reserved;
54 1.1 mjacob u_int8_t le_lun;
55 1.1 mjacob u_int8_t le_rsvd;
56 1.1 mjacob u_int8_t le_ops; /* Modify LUN only */
57 1.1 mjacob u_int8_t le_tgt; /* Not for FC */
58 1.1 mjacob u_int32_t le_flags; /* Not for FC */
59 1.1 mjacob u_int8_t le_status;
60 1.1 mjacob u_int8_t le_reserved2;
61 1.1 mjacob u_int8_t le_cmd_count;
62 1.1 mjacob u_int8_t le_in_count;
63 1.1 mjacob u_int8_t le_cdb6len; /* Not for FC */
64 1.1 mjacob u_int8_t le_cdb7len; /* Not for FC */
65 1.1 mjacob u_int16_t le_timeout;
66 1.1 mjacob u_int16_t le_reserved3[20];
67 1.1 mjacob } lun_entry_t;
68 1.1 mjacob
69 1.1 mjacob /*
70 1.1 mjacob * le_flags values
71 1.1 mjacob */
72 1.1 mjacob #define LUN_TQAE 0x00000001 /* bit1 Tagged Queue Action Enable */
73 1.1 mjacob #define LUN_DSSM 0x01000000 /* bit24 Disable Sending SDP Message */
74 1.5 mjacob #define LUN_DISAD 0x02000000 /* bit25 Disable autodisconnect */
75 1.1 mjacob #define LUN_DM 0x40000000 /* bit30 Disconnects Mandatory */
76 1.1 mjacob
77 1.1 mjacob /*
78 1.1 mjacob * le_ops values
79 1.1 mjacob */
80 1.1 mjacob #define LUN_CCINCR 0x01 /* increment command count */
81 1.1 mjacob #define LUN_CCDECR 0x02 /* decrement command count */
82 1.1 mjacob #define LUN_ININCR 0x40 /* increment immed. notify count */
83 1.1 mjacob #define LUN_INDECR 0x80 /* decrement immed. notify count */
84 1.1 mjacob
85 1.1 mjacob /*
86 1.1 mjacob * le_status values
87 1.1 mjacob */
88 1.1 mjacob #define LUN_OK 0x01 /* we be rockin' */
89 1.1 mjacob #define LUN_ERR 0x04 /* request completed with error */
90 1.1 mjacob #define LUN_INVAL 0x06 /* invalid request */
91 1.1 mjacob #define LUN_NOCAP 0x16 /* can't provide requested capability */
92 1.1 mjacob #define LUN_ENABLED 0x3E /* LUN already enabled */
93 1.1 mjacob
94 1.1 mjacob /*
95 1.1 mjacob * Immediate Notify Entry structure
96 1.1 mjacob */
97 1.1 mjacob #define IN_MSGLEN 8 /* 8 bytes */
98 1.1 mjacob #define IN_RSVDLEN 8 /* 8 words */
99 1.1 mjacob typedef struct {
100 1.1 mjacob isphdr_t in_header;
101 1.1 mjacob u_int32_t in_reserved;
102 1.1 mjacob u_int8_t in_lun; /* lun */
103 1.1 mjacob u_int8_t in_iid; /* initiator */
104 1.1 mjacob u_int8_t in_reserved2;
105 1.1 mjacob u_int8_t in_tgt; /* target */
106 1.1 mjacob u_int32_t in_flags;
107 1.1 mjacob u_int8_t in_status;
108 1.1 mjacob u_int8_t in_rsvd2;
109 1.1 mjacob u_int8_t in_tag_val; /* tag value */
110 1.1 mjacob u_int8_t in_tag_type; /* tag type */
111 1.1 mjacob u_int16_t in_seqid; /* sequence id */
112 1.1 mjacob u_int8_t in_msg[IN_MSGLEN]; /* SCSI message bytes */
113 1.1 mjacob u_int16_t in_reserved3[IN_RSVDLEN];
114 1.1 mjacob u_int8_t in_sense[QLTM_SENSELEN];/* suggested sense data */
115 1.1 mjacob } in_entry_t;
116 1.1 mjacob
117 1.1 mjacob typedef struct {
118 1.1 mjacob isphdr_t in_header;
119 1.1 mjacob u_int32_t in_reserved;
120 1.1 mjacob u_int8_t in_lun; /* lun */
121 1.1 mjacob u_int8_t in_iid; /* initiator */
122 1.1 mjacob u_int16_t in_scclun;
123 1.1 mjacob u_int32_t in_reserved2;
124 1.1 mjacob u_int16_t in_status;
125 1.1 mjacob u_int16_t in_task_flags;
126 1.1 mjacob u_int16_t in_seqid; /* sequence id */
127 1.1 mjacob } in_fcentry_t;
128 1.1 mjacob
129 1.1 mjacob /*
130 1.1 mjacob * Values for the in_status field
131 1.1 mjacob */
132 1.1 mjacob #define IN_RESET 0x0E /* Bus Reset occurred */
133 1.1 mjacob #define IN_NO_RCAP 0x16 /* requested capability not available */
134 1.1 mjacob #define IN_IDE_RECEIVED 0x33 /* Initiator Detected Error msg received */
135 1.1 mjacob #define IN_RSRC_UNAVAIL 0x34 /* resource unavailable */
136 1.1 mjacob #define IN_MSG_RECEIVED 0x36 /* SCSI message received */
137 1.1 mjacob #define IN_ABORT_TASK 0x20 /* task named in RX_ID is being aborted (FC) */
138 1.1 mjacob #define IN_PORT_LOGOUT 0x29 /* port has logged out (FC) */
139 1.1 mjacob #define IN_PORT_CHANGED 0x2A /* port changed */
140 1.1 mjacob #define IN_GLOBAL_LOGO 0x2E /* all ports logged out */
141 1.1 mjacob
142 1.1 mjacob /*
143 1.1 mjacob * Values for the in_task_flags field- should only get one at a time!
144 1.1 mjacob */
145 1.1 mjacob #define TASK_FLAGS_ABORT_TASK (1<<9)
146 1.1 mjacob #define TASK_FLAGS_CLEAR_TASK_SET (1<<10)
147 1.1 mjacob #define TASK_FLAGS_TARGET_RESET (1<<13)
148 1.1 mjacob #define TASK_FLAGS_CLEAR_ACA (1<<14)
149 1.1 mjacob #define TASK_FLAGS_TERMINATE_TASK (1<<15)
150 1.1 mjacob
151 1.1 mjacob #ifndef MSG_ABORT_TAG
152 1.1 mjacob #define MSG_ABORT_TAG 0x06
153 1.1 mjacob #endif
154 1.1 mjacob #ifndef MSG_CLEAR_QUEUE
155 1.1 mjacob #define MSG_CLEAR_QUEUE 0x0e
156 1.1 mjacob #endif
157 1.1 mjacob #ifndef MSG_BUS_DEV_RESET
158 1.1 mjacob #define MSG_BUS_DEV_RESET 0x0b
159 1.1 mjacob #endif
160 1.1 mjacob #ifndef MSG_REL_RECOVERY
161 1.1 mjacob #define MSG_REL_RECOVERY 0x10
162 1.1 mjacob #endif
163 1.1 mjacob #ifndef MSG_TERM_IO_PROC
164 1.1 mjacob #define MSG_TERM_IO_PROC 0x11
165 1.1 mjacob #endif
166 1.1 mjacob
167 1.1 mjacob
168 1.1 mjacob /*
169 1.1 mjacob * Notify Acknowledge Entry structure
170 1.1 mjacob */
171 1.1 mjacob #define NA_RSVDLEN 22
172 1.1 mjacob typedef struct {
173 1.1 mjacob isphdr_t na_header;
174 1.1 mjacob u_int32_t na_reserved;
175 1.1 mjacob u_int8_t na_lun; /* lun */
176 1.1 mjacob u_int8_t na_iid; /* initiator */
177 1.1 mjacob u_int8_t na_reserved2;
178 1.1 mjacob u_int8_t na_tgt; /* target */
179 1.1 mjacob u_int32_t na_flags;
180 1.1 mjacob u_int8_t na_status;
181 1.1 mjacob u_int8_t na_event;
182 1.1 mjacob u_int16_t na_seqid; /* sequence id */
183 1.1 mjacob u_int16_t na_reserved3[NA_RSVDLEN];
184 1.1 mjacob } na_entry_t;
185 1.1 mjacob
186 1.1 mjacob /*
187 1.1 mjacob * Value for the na_event field
188 1.1 mjacob */
189 1.1 mjacob #define NA_RST_CLRD 0x80 /* Clear an async event notification */
190 1.4 he #define NA_OK 0x01 /* Notify Acknowledge Succeeded */
191 1.4 he #define NA_INVALID 0x06 /* Invalid Notify Acknowledge */
192 1.1 mjacob
193 1.1 mjacob #define NA2_RSVDLEN 21
194 1.1 mjacob typedef struct {
195 1.1 mjacob isphdr_t na_header;
196 1.1 mjacob u_int32_t na_reserved;
197 1.1 mjacob u_int8_t na_lun; /* lun */
198 1.1 mjacob u_int8_t na_iid; /* initiator */
199 1.1 mjacob u_int16_t na_scclun;
200 1.1 mjacob u_int16_t na_flags;
201 1.1 mjacob u_int16_t na_reserved2;
202 1.1 mjacob u_int16_t na_status;
203 1.1 mjacob u_int16_t na_task_flags;
204 1.1 mjacob u_int16_t na_seqid; /* sequence id */
205 1.1 mjacob u_int16_t na_reserved3[NA2_RSVDLEN];
206 1.1 mjacob } na_fcentry_t;
207 1.1 mjacob #define NAFC_RCOUNT 0x80 /* increment resource count */
208 1.1 mjacob #define NAFC_RST_CLRD 0x20 /* Clear LIP Reset */
209 1.1 mjacob /*
210 1.1 mjacob * Accept Target I/O Entry structure
211 1.1 mjacob */
212 1.1 mjacob #define ATIO_CDBLEN 26
213 1.1 mjacob
214 1.1 mjacob typedef struct {
215 1.1 mjacob isphdr_t at_header;
216 1.1 mjacob u_int32_t at_reserved;
217 1.1 mjacob u_int8_t at_lun; /* lun */
218 1.1 mjacob u_int8_t at_iid; /* initiator */
219 1.1 mjacob u_int8_t at_cdblen; /* cdb length */
220 1.1 mjacob u_int8_t at_tgt; /* target */
221 1.1 mjacob u_int32_t at_flags;
222 1.1 mjacob u_int8_t at_status; /* firmware status */
223 1.1 mjacob u_int8_t at_scsi_status; /* scsi status */
224 1.1 mjacob u_int8_t at_tag_val; /* tag value */
225 1.1 mjacob u_int8_t at_tag_type; /* tag type */
226 1.1 mjacob u_int8_t at_cdb[ATIO_CDBLEN]; /* received CDB */
227 1.1 mjacob u_int8_t at_sense[QLTM_SENSELEN];/* suggested sense data */
228 1.1 mjacob } at_entry_t;
229 1.1 mjacob
230 1.1 mjacob /*
231 1.1 mjacob * at_flags values
232 1.1 mjacob */
233 1.1 mjacob #define AT_NODISC 0x00008000 /* disconnect disabled */
234 1.1 mjacob #define AT_TQAE 0x00000001 /* Tagged Queue Action enabled */
235 1.1 mjacob
236 1.1 mjacob /*
237 1.1 mjacob * at_status values
238 1.1 mjacob */
239 1.1 mjacob #define AT_PATH_INVALID 0x07 /* ATIO sent to firmware for disabled lun */
240 1.1 mjacob #define AT_RESET 0x0E /* SCSI Bus Reset Occurred */
241 1.1 mjacob #define AT_PHASE_ERROR 0x14 /* Bus phase sequence error */
242 1.1 mjacob #define AT_NOCAP 0x16 /* Requested capability not available */
243 1.1 mjacob #define AT_BDR_MSG 0x17 /* Bus Device Reset msg received */
244 1.1 mjacob #define AT_CDB 0x3D /* CDB received */
245 1.1 mjacob
246 1.1 mjacob /*
247 1.1 mjacob * Accept Target I/O Entry structure, Type 2
248 1.1 mjacob */
249 1.1 mjacob #define ATIO2_CDBLEN 16
250 1.1 mjacob
251 1.1 mjacob typedef struct {
252 1.1 mjacob isphdr_t at_header;
253 1.1 mjacob u_int32_t at_reserved;
254 1.1 mjacob u_int8_t at_lun; /* lun or reserved */
255 1.1 mjacob u_int8_t at_iid; /* initiator */
256 1.1 mjacob u_int16_t at_rxid; /* response ID */
257 1.1 mjacob u_int16_t at_flags;
258 1.1 mjacob u_int16_t at_status; /* firmware status */
259 1.1 mjacob u_int8_t at_reserved1;
260 1.1 mjacob u_int8_t at_taskcodes;
261 1.1 mjacob u_int8_t at_taskflags;
262 1.1 mjacob u_int8_t at_execodes;
263 1.1 mjacob u_int8_t at_cdb[ATIO2_CDBLEN]; /* received CDB */
264 1.1 mjacob u_int32_t at_datalen; /* allocated data len */
265 1.1 mjacob u_int16_t at_scclun; /* SCC Lun or reserved */
266 1.1 mjacob u_int16_t at_reserved2;
267 1.1 mjacob u_int16_t at_scsi_status;
268 1.1 mjacob u_int8_t at_sense[QLTM_SENSELEN];
269 1.1 mjacob } at2_entry_t;
270 1.1 mjacob
271 1.1 mjacob #define ATIO2_TC_ATTR_MASK 0x7
272 1.1 mjacob #define ATIO2_TC_ATTR_SIMPLEQ 0
273 1.1 mjacob #define ATIO2_TC_ATTR_HEADOFQ 1
274 1.1 mjacob #define ATIO2_TC_ATTR_ORDERED 2
275 1.1 mjacob #define ATIO2_TC_ATTR_ACAQ 4
276 1.1 mjacob #define ATIO2_TC_ATTR_UNTAGGED 5
277 1.1 mjacob
278 1.1 mjacob /*
279 1.1 mjacob * Continue Target I/O Entry structure
280 1.1 mjacob * Request from driver. The response from the
281 1.1 mjacob * ISP firmware is the same except that the last 18
282 1.1 mjacob * bytes are overwritten by suggested sense data if
283 1.1 mjacob * the 'autosense valid' bit is set in the status byte.
284 1.1 mjacob */
285 1.1 mjacob typedef struct {
286 1.1 mjacob isphdr_t ct_header;
287 1.1 mjacob u_int32_t ct_reserved;
288 1.1 mjacob u_int8_t ct_lun; /* lun */
289 1.1 mjacob u_int8_t ct_iid; /* initiator id */
290 1.1 mjacob u_int8_t ct_reserved2;
291 1.1 mjacob u_int8_t ct_tgt; /* our target id */
292 1.1 mjacob u_int32_t ct_flags;
293 1.1 mjacob u_int8_t ct_status; /* isp status */
294 1.1 mjacob u_int8_t ct_scsi_status; /* scsi status */
295 1.1 mjacob u_int8_t ct_tag_val; /* tag value */
296 1.1 mjacob u_int8_t ct_tag_type; /* tag type */
297 1.1 mjacob u_int32_t ct_xfrlen; /* transfer length */
298 1.1 mjacob u_int32_t ct_resid; /* residual length */
299 1.1 mjacob u_int16_t ct_timeout;
300 1.1 mjacob u_int16_t ct_seg_count;
301 1.1 mjacob ispds_t ct_dataseg[ISP_RQDSEG];
302 1.1 mjacob } ct_entry_t;
303 1.1 mjacob
304 1.1 mjacob /*
305 1.2 mjacob * For some of the dual port SCSI adapters, port (bus #) is reported
306 1.2 mjacob * in the MSbit of ct_iid. Bit fields are a bit too awkward here.
307 1.2 mjacob *
308 1.2 mjacob * Note that this does not apply to FC adapters at all which can and
309 1.2 mjacob * do report IIDs between 129 && 255 (these represent devices that have
310 1.2 mjacob * logged in across a SCSI fabric).
311 1.2 mjacob */
312 1.2 mjacob #define GET_IID_VAL(x) (x & 0x3f)
313 1.2 mjacob #define GET_BUS_VAL(x) ((x >> 7) & 0x1)
314 1.2 mjacob #define SET_IID_VAL(y, x) (y | (x & 0x3f))
315 1.2 mjacob #define SET_BUS_VAL(y, x) (y | ((x & 0x1) << 7))
316 1.2 mjacob
317 1.2 mjacob /*
318 1.1 mjacob * ct_flags values
319 1.1 mjacob */
320 1.1 mjacob #define CT_TQAE 0x00000001 /* bit 1, Tagged Queue Action enable */
321 1.1 mjacob #define CT_DATA_IN 0x00000040 /* bits 6&7, Data direction */
322 1.1 mjacob #define CT_DATA_OUT 0x00000080 /* bits 6&7, Data direction */
323 1.1 mjacob #define CT_NO_DATA 0x000000C0 /* bits 6&7, Data direction */
324 1.1 mjacob #define CT_CCINCR 0x00000100 /* bit 8, autoincrement atio count */
325 1.1 mjacob #define CT_DATAMASK 0x000000C0 /* bits 6&7, Data direction */
326 1.1 mjacob #define CT_NODISC 0x00008000 /* bit 15, Disconnects disabled */
327 1.1 mjacob #define CT_DSDP 0x01000000 /* bit 24, Disable Save Data Pointers */
328 1.1 mjacob #define CT_SENDRDP 0x04000000 /* bit 26, Send Restore Pointers msg */
329 1.1 mjacob #define CT_SENDSTATUS 0x80000000 /* bit 31, Send SCSI status byte */
330 1.1 mjacob
331 1.1 mjacob /*
332 1.1 mjacob * ct_status values
333 1.1 mjacob * - set by the firmware when it returns the CTIO
334 1.1 mjacob */
335 1.1 mjacob #define CT_OK 0x01 /* completed without error */
336 1.1 mjacob #define CT_ABORTED 0x02 /* aborted by host */
337 1.1 mjacob #define CT_ERR 0x04 /* see sense data for error */
338 1.1 mjacob #define CT_INVAL 0x06 /* request for disabled lun */
339 1.1 mjacob #define CT_NOPATH 0x07 /* invalid ITL nexus */
340 1.1 mjacob #define CT_INVRXID 0x08 /* (FC only) Invalid RX_ID */
341 1.1 mjacob #define CT_RSELTMO 0x0A /* reselection timeout after 2 tries */
342 1.1 mjacob #define CT_TIMEOUT 0x0B /* timed out */
343 1.1 mjacob #define CT_RESET 0x0E /* SCSI Bus Reset occurred */
344 1.1 mjacob #define CT_PHASE_ERROR 0x14 /* Bus phase sequence error */
345 1.1 mjacob #define CT_BDR_MSG 0x17 /* Bus Device Reset msg received */
346 1.1 mjacob #define CT_TERMINATED 0x19 /* due to Terminate Transfer mbox cmd */
347 1.1 mjacob #define CT_PORTNOTAVAIL 0x28 /* port not available */
348 1.1 mjacob #define CT_LOGOUT 0x29 /* port logout */
349 1.1 mjacob #define CT_PORTCHANGED 0x2A /* port changed */
350 1.1 mjacob #define CT_NOACK 0x35 /* Outstanding Immed. Notify. entry */
351 1.1 mjacob
352 1.1 mjacob /*
353 1.1 mjacob * When the firmware returns a CTIO entry, it may overwrite the last
354 1.1 mjacob * part of the structure with sense data. This starts at offset 0x2E
355 1.1 mjacob * into the entry, which is in the middle of ct_dataseg[1]. Rather
356 1.1 mjacob * than define a new struct for this, I'm just using the sense data
357 1.1 mjacob * offset.
358 1.1 mjacob */
359 1.1 mjacob #define CTIO_SENSE_OFFSET 0x2E
360 1.1 mjacob
361 1.1 mjacob /*
362 1.1 mjacob * Entry length in u_longs. All entries are the same size so
363 1.1 mjacob * any one will do as the numerator.
364 1.1 mjacob */
365 1.1 mjacob #define UINT32_ENTRY_SIZE (sizeof(at_entry_t)/sizeof(u_int32_t))
366 1.1 mjacob
367 1.1 mjacob /*
368 1.1 mjacob * QLA2100 CTIO (type 2) entry
369 1.1 mjacob */
370 1.1 mjacob #define MAXRESPLEN 26
371 1.1 mjacob typedef struct {
372 1.1 mjacob isphdr_t ct_header;
373 1.1 mjacob u_int32_t ct_reserved;
374 1.1 mjacob u_int8_t ct_lun; /* lun */
375 1.1 mjacob u_int8_t ct_iid; /* initiator id */
376 1.1 mjacob u_int16_t ct_rxid; /* response ID */
377 1.1 mjacob u_int16_t ct_flags;
378 1.1 mjacob u_int16_t ct_status; /* isp status */
379 1.1 mjacob u_int16_t ct_timeout;
380 1.1 mjacob u_int16_t ct_seg_count;
381 1.1 mjacob u_int32_t ct_reloff; /* relative offset */
382 1.2 mjacob int32_t ct_resid; /* residual length */
383 1.1 mjacob union {
384 1.1 mjacob /*
385 1.1 mjacob * The three different modes that the target driver
386 1.1 mjacob * can set the CTIO2 up as.
387 1.1 mjacob *
388 1.1 mjacob * The first is for sending FCP_DATA_IUs as well as
389 1.1 mjacob * (optionally) sending a terminal SCSI status FCP_RSP_IU.
390 1.1 mjacob *
391 1.1 mjacob * The second is for sending SCSI sense data in an FCP_RSP_IU.
392 1.1 mjacob * Note that no FCP_DATA_IUs will be sent.
393 1.1 mjacob *
394 1.1 mjacob * The third is for sending FCP_RSP_IUs as built specifically
395 1.1 mjacob * in system memory as located by the isp_dataseg.
396 1.1 mjacob */
397 1.1 mjacob struct {
398 1.1 mjacob u_int32_t _reserved;
399 1.1 mjacob u_int16_t _reserved2;
400 1.1 mjacob u_int16_t ct_scsi_status;
401 1.1 mjacob u_int32_t ct_xfrlen;
402 1.1 mjacob ispds_t ct_dataseg[ISP_RQDSEG_T2];
403 1.1 mjacob } m0;
404 1.1 mjacob struct {
405 1.1 mjacob u_int16_t _reserved;
406 1.1 mjacob u_int16_t _reserved2;
407 1.1 mjacob u_int16_t ct_senselen;
408 1.1 mjacob u_int16_t ct_scsi_status;
409 1.1 mjacob u_int16_t ct_resplen;
410 1.1 mjacob u_int8_t ct_resp[MAXRESPLEN];
411 1.1 mjacob } m1;
412 1.1 mjacob struct {
413 1.1 mjacob u_int32_t _reserved;
414 1.1 mjacob u_int16_t _reserved2;
415 1.1 mjacob u_int16_t _reserved3;
416 1.1 mjacob u_int32_t ct_datalen;
417 1.1 mjacob ispds_t ct_fcp_rsp_iudata;
418 1.1 mjacob } m2;
419 1.1 mjacob /*
420 1.1 mjacob * CTIO2 returned from F/W...
421 1.1 mjacob */
422 1.1 mjacob struct {
423 1.1 mjacob u_int32_t _reserved[4];
424 1.1 mjacob u_int16_t ct_scsi_status;
425 1.1 mjacob u_int8_t ct_sense[QLTM_SENSELEN];
426 1.1 mjacob } fw;
427 1.1 mjacob } rsp;
428 1.1 mjacob } ct2_entry_t;
429 1.1 mjacob
430 1.1 mjacob /*
431 1.1 mjacob * ct_flags values for CTIO2
432 1.1 mjacob */
433 1.1 mjacob #define CT2_FLAG_MMASK 0x0003
434 1.1 mjacob #define CT2_FLAG_MODE0 0x0000
435 1.1 mjacob #define CT2_FLAG_MODE1 0x0001
436 1.1 mjacob #define CT2_FLAG_MODE2 0x0002
437 1.1 mjacob #define CT2_DATA_IN CT_DATA_IN
438 1.1 mjacob #define CT2_DATA_OUT CT_DATA_OUT
439 1.1 mjacob #define CT2_NO_DATA CT_NO_DATA
440 1.1 mjacob #define CT2_DATAMASK CT_DATAMASK
441 1.1 mjacob #define CT2_CCINCR 0x0100
442 1.1 mjacob #define CT2_FASTPOST 0x0200
443 1.1 mjacob #define CT2_SENDSTATUS 0x8000
444 1.1 mjacob
445 1.1 mjacob /*
446 1.1 mjacob * ct_status values are (mostly) the same as that for ct_entry.
447 1.1 mjacob */
448 1.1 mjacob
449 1.1 mjacob /*
450 1.1 mjacob * ct_scsi_status values- the low 8 bits are the normal SCSI status
451 1.1 mjacob * we know and love. The upper 8 bits are validity markers for FCP_RSP_IU
452 1.1 mjacob * fields.
453 1.1 mjacob */
454 1.1 mjacob #define CT2_RSPLEN_VALID 0x0100
455 1.1 mjacob #define CT2_SNSLEN_VALID 0x0200
456 1.1 mjacob #define CT2_DATA_OVER 0x0400
457 1.1 mjacob #define CT2_DATA_UNDER 0x0800
458 1.1 mjacob
459 1.1 mjacob /*
460 1.1 mjacob * Macros for packing/unpacking the above structures
461 1.1 mjacob */
462 1.1 mjacob
463 1.1 mjacob #ifdef __sparc__
464 1.1 mjacob #define ISP_SBUS_SWOZZLE(isp, src, dest, taga, tagb) \
465 1.1 mjacob if (isp->isp_bus == ISP_SBUS) { \
466 1.1 mjacob source -> taga = dest -> tagb; \
467 1.1 mjacob source -> tagb = dest -> taga; \
468 1.1 mjacob } else { \
469 1.1 mjacob source -> taga = dest -> taga; \
470 1.1 mjacob source -> tagb = dest -> taga; \
471 1.1 mjacob }
472 1.1 mjacob #else
473 1.1 mjacob #define ISP_SBUS_SWOZZLE(isp, src, dest, taga, tagb) \
474 1.1 mjacob source -> taga = dest -> taga; \
475 1.1 mjacob source -> tagb = dest -> taga;
476 1.1 mjacob #endif
477 1.1 mjacob
478 1.2 mjacob #define MCIDF(d, s) if ((void *) d != (void *)s) MEMCPY(d, s, QENTRY_LEN)
479 1.2 mjacob
480 1.1 mjacob /* This is really only for SBus cards on a sparc */
481 1.1 mjacob #ifdef __sparc__
482 1.1 mjacob #define ISP_SWIZ_ATIO(isp, dest, vsrc) \
483 1.1 mjacob { \
484 1.1 mjacob at_entry_t *source = (at_entry_t *) vsrc; \
485 1.2 mjacob at_entry_t local, *vdst; \
486 1.2 mjacob if ((void *)dest == (void *)vsrc) { \
487 1.2 mjacob MEMCPY(vsrc, &local, sizeof (at_entry_t)); \
488 1.2 mjacob vdst = &local; \
489 1.2 mjacob } else { \
490 1.2 mjacob vdst = dest; \
491 1.2 mjacob } \
492 1.2 mjacob vdst->at_header = source->at_header; \
493 1.2 mjacob vdst->at_reserved2 = source->at_reserved2; \
494 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, at_lun, at_iid); \
495 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, at_cdblen, at_tgt); \
496 1.2 mjacob vdst->at_flags = source->at_flags; \
497 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, at_status, at_scsi_status); \
498 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, at_tag_val, at_tag_type); \
499 1.2 mjacob MEMCPY(vdst->at_cdb, source->at_cdb, ATIO_CDBLEN); \
500 1.2 mjacob MEMCPY(vdst->at_sense, source->at_sense, QLTM_SENSELEN); \
501 1.1 mjacob }
502 1.1 mjacob
503 1.1 mjacob #define ISP_SWIZ_CTIO(isp, dest, vsrc) \
504 1.1 mjacob { \
505 1.1 mjacob ct_entry_t *source = (ct_entry-t *) vsrc; \
506 1.2 mjacob ct_entry_t *local, *vdst; \
507 1.2 mjacob if ((void *)dest == (void *)vsrc) { \
508 1.2 mjacob MEMCPY(vsrc, &local, sizeof (ct_entry_t)); \
509 1.2 mjacob vdst = &local; \
510 1.2 mjacob } else { \
511 1.2 mjacob vdst = dest; \
512 1.2 mjacob } \
513 1.2 mjacob vdst->ct_header = source->ct_header; \
514 1.2 mjacob vdst->ct_reserved = source->ct_reserved; \
515 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, ct_lun, ct_iid); \
516 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, ct_rsvd, ct_tgt); \
517 1.2 mjacob vdst->ct_flags = source->ct_flags; \
518 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, ct_status, ct_scsi_status); \
519 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, ct_tag_val, ct_tag_type); \
520 1.2 mjacob vdst->ct_xfrlen = source->ct_xfrlen; \
521 1.2 mjacob vdst->ct_resid = source->ct_resid; \
522 1.2 mjacob vdst->ct_timeout = source->ct_timeout; \
523 1.2 mjacob vdst->ct_seg_count = source->ct_seg_count; \
524 1.2 mjacob MEMCPY(vdst->ct_cdb, source->ct_cdb, ATIO_CDBLEN); \
525 1.2 mjacob MEMCPY(vdst->ct_sense, source->ct_sense, QLTM_SENSELEN); \
526 1.2 mjacob vdst->ct_dataseg = source->ct_dataseg; \
527 1.1 mjacob }
528 1.1 mjacob #define ISP_SWIZ_ENABLE_LUN(isp, dest, vsrc) \
529 1.1 mjacob { \
530 1.1 mjacob lun_entry_t *source = (lun_entry_t *)vsrc; \
531 1.2 mjacob lun_entry_t *local, *vdst; \
532 1.2 mjacob if ((void *)dest == (void *)vsrc) { \
533 1.2 mjacob MEMCPY(vsrc, &local, sizeof (lun_entry_t)); \
534 1.2 mjacob vdst = &local; \
535 1.2 mjacob } else { \
536 1.2 mjacob vdst = dest; \
537 1.2 mjacob } \
538 1.2 mjacob vdst->le_header = source->le_header; \
539 1.2 mjacob vdst->le_reserved2 = source->le_reserved2; \
540 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, le_lun, le_rsvd); \
541 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, le_ops, le_tgt); \
542 1.2 mjacob vdst->le_flags = source->le_flags; \
543 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, le_status, le_rsvd2); \
544 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, le_cmd_count, le_in_count); \
545 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, le_cdb6len, le_cdb7len); \
546 1.2 mjacob vdst->le_timeout = source->le_timeout; \
547 1.2 mjacob vdst->le_reserved = source->le_reserved; \
548 1.1 mjacob }
549 1.1 mjacob #define ISP_SWIZ_NOTIFY(isp, dest, vsrc) \
550 1.1 mjacob { \
551 1.1 mjacob in_entry_type *source = (in_entry_t *)vsrc; \
552 1.2 mjacob in_entry_t *local, *vdst; \
553 1.2 mjacob if ((void *)dest == (void *)vsrc) { \
554 1.2 mjacob MEMCPY(vsrc, &local, sizeof (in_entry_t)); \
555 1.2 mjacob vdst = &local; \
556 1.2 mjacob } else { \
557 1.2 mjacob vdst = dest; \
558 1.2 mjacob } \
559 1.2 mjacob vdst->in_header = source->in_header; \
560 1.2 mjacob vdst->in_reserved2 = source->in_reserved2; \
561 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, in_lun, in_iid); \
562 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, in_rsvd, in_tgt); \
563 1.2 mjacob vdst->in_flags = source->in_flags; \
564 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, in_status, in_rsvd2); \
565 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, in_tag_val, in_tag_type); \
566 1.2 mjacob vdst->in_seqid = source->in_seqid; \
567 1.2 mjacob MEMCPY(vdst->in_msg, source->in_msg, IN_MSGLEN); \
568 1.2 mjacob MEMCPY(vdst->in_reserved, source->in_reserved, IN_RESERVED); \
569 1.2 mjacob MEMCPY(vdst->in_sense, source->in_sense, QLTM_SENSELEN); \
570 1.1 mjacob }
571 1.1 mjacob #define ISP_SWIZ_NOT_ACK(isp, dest) \
572 1.1 mjacob { \
573 1.1 mjacob na_entry_t *source = (na_entry_t *)vsrc; \
574 1.2 mjacob na_entry_t *local, *vdst; \
575 1.2 mjacob if ((void *)dest == (void *)vsrc) { \
576 1.2 mjacob MEMCPY(vsrc, &local, sizeof (na_entry_t)); \
577 1.2 mjacob vdst = &local; \
578 1.2 mjacob } else { \
579 1.2 mjacob vdst = dest; \
580 1.2 mjacob } \
581 1.2 mjacob vdst->na_header = source->na_header; \
582 1.2 mjacob vdst->na_reserved2 = source->na_reserved2; \
583 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, na_lun, na_iid); \
584 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, na_rsvd, na_tgt); \
585 1.2 mjacob vdst->na_flags = source->na_flags; \
586 1.2 mjacob ISP_SBUS_SWOZZLE(isp, source, vdst, na_status, na_event); \
587 1.2 mjacob vdst->na_seqid = source->na_seqid; \
588 1.2 mjacob MEMCPY(vdst->na_reserved, source->na_reserved, NA_RSVDLEN); \
589 1.1 mjacob }
590 1.2 mjacob #define ISP_SWIZ_NOT_ACK_FC(isp, d, s) MCIDF(d, s)
591 1.2 mjacob #define ISP_SWIZ_ATIO2(isp, d, s) MCIDF(d, s)
592 1.2 mjacob #define ISP_SWIZ_CTIO2(isp, d, s) MCIDF(d, s)
593 1.1 mjacob #else
594 1.2 mjacob #define ISP_SWIZ_ATIO(isp, d, s) MCIDF(d, s)
595 1.2 mjacob #define ISP_SWIZ_CTIO(isp, d, s) MCIDF(d, s)
596 1.2 mjacob #define ISP_SWIZ_ENABLE_LUN(isp, d, s) MCIDF(d, s)
597 1.2 mjacob #define ISP_SWIZ_NOTIFY(isp, d, s) MCIDF(d, s)
598 1.2 mjacob #define ISP_SWIZ_NOT_ACK(isp, d, s) MCIDF(d, s)
599 1.2 mjacob #define ISP_SWIZ_NOT_ACK_FC(isp, d, s) MCIDF(d, s)
600 1.2 mjacob #define ISP_SWIZ_ATIO2(isp, d, s) MCIDF(d, s)
601 1.2 mjacob #define ISP_SWIZ_CTIO2(isp, d, s) MCIDF(d, s)
602 1.1 mjacob #endif
603 1.1 mjacob
604 1.1 mjacob /*
605 1.1 mjacob * Debug macros
606 1.1 mjacob */
607 1.1 mjacob
608 1.1 mjacob extern int isp_tdebug;
609 1.1 mjacob #define ISP_TDQE(isp, msg, idx, arg) \
610 1.1 mjacob if (isp_tdebug > 3) isp_print_qentry(isp, msg, idx, arg)
611 1.1 mjacob
612 1.3 mjacob #define ITDEBUG(level, msg) if (isp_tdebug >= level) PRINTF msg
613 1.1 mjacob
614 1.1 mjacob /*
615 1.2 mjacob * The functions below are target mode functions that
616 1.2 mjacob * are generally internal to the Qlogic driver.
617 1.1 mjacob */
618 1.1 mjacob
619 1.1 mjacob /*
620 1.1 mjacob * This function handles new response queue entry appropriate for target mode.
621 1.1 mjacob */
622 1.1 mjacob int isp_target_notify __P((struct ispsoftc *, void *, u_int16_t *));
623 1.1 mjacob
624 1.1 mjacob /*
625 1.1 mjacob * Enable/Disable/Modify a logical unit.
626 1.1 mjacob */
627 1.1 mjacob #define DFLT_CMD_CNT (RESULT_QUEUE_LEN >> 1)
628 1.1 mjacob #define DFLT_INOTIFY (4)
629 1.4 he int isp_lun_cmd __P((struct ispsoftc *, int, int, int, int, u_int32_t));
630 1.1 mjacob
631 1.1 mjacob /*
632 1.1 mjacob * General request queue 'put' routine for target mode entries.
633 1.1 mjacob */
634 1.1 mjacob int isp_target_put_entry __P((struct ispsoftc *isp, void *));
635 1.1 mjacob
636 1.1 mjacob /*
637 1.1 mjacob * General routine to put back an ATIO entry-
638 1.1 mjacob * used for replenishing f/w resource counts.
639 1.1 mjacob */
640 1.1 mjacob int
641 1.4 he isp_target_put_atio __P((struct ispsoftc *, int, int, int, int, int));
642 1.1 mjacob
643 1.1 mjacob /*
644 1.1 mjacob * General routine to send a final CTIO for a command- used mostly for
645 1.1 mjacob * local responses.
646 1.1 mjacob */
647 1.1 mjacob int
648 1.4 he isp_endcmd __P((struct ispsoftc *, void *, u_int32_t, u_int32_t));
649 1.2 mjacob #define ECMD_SVALID 0x100
650 1.1 mjacob
651 1.1 mjacob /*
652 1.1 mjacob * Handle an asynchronous event
653 1.1 mjacob */
654 1.1 mjacob
655 1.1 mjacob void isp_target_async __P((struct ispsoftc *, int, int));
656 1.1 mjacob
657 1.1 mjacob #endif /* _ISPTARGET_H */
658