esiop.ss revision 1.1
1;	$NetBSD: esiop.ss,v 1.1 2002/04/21 22:52:06 bouyer Exp $
2
3;
4; Copyright (c) 2002 Manuel Bouyer.
5;
6; Redistribution and use in source and binary forms, with or without
7; modification, are permitted provided that the following conditions
8; are met:
9; 1. Redistributions of source code must retain the above copyright
10;    notice, this list of conditions and the following disclaimer.
11; 2. Redistributions in binary form must reproduce the above copyright
12;    notice, this list of conditions and the following disclaimer in the
13;    documentation and/or other materials provided with the distribution.
14; 3. All advertising materials mentioning features or use of this software
15;    must display the following acknowledgement:
16;	This product includes software developed by the University of
17;	California, Berkeley and its contributors.
18; 4. Neither the name of the University nor the names of its contributors
19;    may be used to endorse or promote products derived from this software
20;    without specific prior written permission.
21;
22; THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23; ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24; IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25; ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26; FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27; DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28; OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29; HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30; LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31; OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32; SUCH DAMAGE.
33;
34
35ARCH 825
36
37; offsets in sym_xfer
38ABSOLUTE t_id = 24;
39ABSOLUTE t_msg_in = 32;
40ABSOLUTE t_ext_msg_in = 40;
41ABSOLUTE t_ext_msg_data = 48;
42ABSOLUTE t_msg_out = 56;
43ABSOLUTE t_cmd = 64;
44ABSOLUTE t_status = 72;
45ABSOLUTE t_data = 80;
46
47; offsets in the per-target lun table
48ABSOLUTE target_id = 0x0;
49ABSOLUTE target_luntbl = 0x8;
50
51;; interrupt codes
52; interrupts that needs a valid target/lun/tag
53ABSOLUTE int_done	= 0xff00;
54ABSOLUTE int_msgin	= 0xff01;
55ABSOLUTE int_extmsgin	= 0xff02;
56ABSOLUTE int_extmsgdata	= 0xff03;
57ABSOLUTE int_disc	= 0xff04;
58; interrupts that don't have a valid I/T/Q
59ABSOLUTE int_resfail	= 0xff80;     
60ABSOLUTE int_err	= 0xffff;     
61
62; We use the various scratch[a-j] registers to keep internal status:
63
64; scratchA1: offset in data DSA (for save data pointer)
65; scratchB: save/restore DSA in data loop
66; scratchC: current target/lun/tag
67; scratchC0: flags
68ABSOLUTE f_c_target	= 0x01 ; target valid
69ABSOLUTE f_c_lun	= 0x02 ; lun valud
70ABSOLUTE f_c_tag	= 0x04 ; tag valid
71ABSOLUTE f_c_data	= 0x08 ; data I/O in progress
72ABSOLUTE f_c_data_mask	= 0xf7 ; ~f_c_data
73ABSOLUTE f_c_sdp	= 0x10 ; got save data pointer message
74; scratchC[1-3]: target/lun/tag
75
76; scratchD: current DSA in start cmd ring
77; scratchE0: index in start cmd ring
78ABSOLUTE ncmd_slots	= 64 ; number of slots in CMD ring
79; flags in a cmd slot
80ABSOLUTE f_cmd_free	= 0x01 ; this slot is free
81; offsets in a cmd slot
82ABSOLUTE o_cmd_dsa	= 0; also holds f_cmd_free
83ABSOLUTE o_cmd_id	= 4;
84
85; SCRATCHE1: last status
86
87ENTRY reselect;
88ENTRY ring_reset;
89ENTRY cmdr0;
90ENTRY cmdr1;
91ENTRY cmdr2;
92ENTRY cmdr3;
93ENTRY led_on1;
94ENTRY led_on2;
95ENTRY led_off;
96ENTRY status;
97ENTRY msgin;
98ENTRY msgin_ack;
99ENTRY get_extmsgdata;
100ENTRY send_msgout;
101ENTRY script_sched;
102ENTRY load_targtable;
103
104EXTERN tlq_offset;
105EXTERN abs_msgin2;
106
107PROC  esiop_script:
108
109no_cmd:
110	MOVE ISTAT & 0x10 TO SFBR;  pending done command ?
111	INTFLY 0, IF NOT 0x00; 
112reselect:
113	MOVE 0x00 TO SCRATCHA1;
114	MOVE 0x00 TO SCRATCHC0;
115	MOVE 0xff TO SCRATCHE1;
116; a NOP by default; patched with MOVE GPREG | 0x01 to GPREG on compile-time
117; option "SIOP_SYMLED"
118led_off:
119	NOP;
120	WAIT RESELECT REL(reselect_fail);
121; a NOP by default; patched with MOVE GPREG & 0xfe to GPREG on compile-time
122; option "SIOP_SYMLED"
123led_on2:
124        NOP;
125	MOVE SSID & 0x0f to SFBR;
126	MOVE SFBR to SCRATCHC1;
127	MOVE SCRATCHC0 | f_c_target to SCRATCHC0; save target
128	CLEAR CARRY;
129	MOVE SCRATCHC1 SHL SFBR;
130	MOVE SFBR SHL DSA0; target * 4
131	MOVE 0x0 to DSA1;
132	MOVE 0x0 to DSA2;
133	MOVE 0x0 to DSA3;
134; load DSA for the target table
135load_targtable:
136	MOVE DSA0 + 0x00 to DSA0;
137	MOVE DSA1 + 0x00 to DSA1 with carry;
138	MOVE DSA2 + 0x00 to DSA2 with carry;
139	MOVE DSA3 + 0x00 to DSA3 with carry;
140	LOAD DSA0, 4, FROM 0; now load DSA for this target
141	SELECT FROM target_id, REL(nextisn);
142nextisn:
143	MOVE 1, abs_msgin2, WHEN MSG_IN;
144	MOVE SFBR & 0x07 to SCRATCHC2;
145	MOVE SCRATCHC0 | f_c_lun to SCRATCHC0; save LUN
146	CLEAR ACK and CARRY;
147	MOVE SCRATCHC2 SHL SFBR; 
148	MOVE SFBR SHL SFBR; target * 4
149	MOVE DSA0 + SFBR TO DSA0;
150	MOVE DSA1 + 0x0 TO DSA1 with carry;
151	MOVE DSA2 + 0x0 TO DSA2 with carry;
152	MOVE DSA3 + 0x0 TO DSA3 with carry;
153	LOAD DSA0, 4, from target_luntbl; load DSA for ths LUN
154	JUMP REL(waitphase);
155
156reselect_fail:
157	; check that host asserted SIGP, this'll clear SIGP in ISTAT
158	MOVE CTEST2 & 0x40 TO SFBR;
159	INT int_resfail,  IF 0x00;
160script_sched:
161; Load ring DSA
162	MOVE SCRATCHD0 to SFBR;
163	MOVE SFBR to DSA0;
164	MOVE SCRATCHD1 to SFBR;
165	MOVE SFBR to DSA1;
166	MOVE SCRATCHD2 to SFBR;
167	MOVE SFBR to DSA2;
168	MOVE SCRATCHD3 to SFBR;
169	MOVE SFBR to DSA3;
170	LOAD SCRATCHA0,4, from o_cmd_dsa; /* get flags */
171	MOVE SCRATCHA0 & f_cmd_free to SFBR;
172	JUMP REL(no_cmd), IF NOT 0x0;
173; this slot is busy, attempt to exec command
174	SELECT ATN FROM o_cmd_id, REL(reselect);
175; select either succeeded or timed out. In either case update ring pointer.
176; if timed out the STO interrupt will be posted at the first SCSI bus access
177; waiting for a valid phase.
178	MOVE SCRATCHE0 + 1 to SFBR;
179	MOVE SFBR to SCRATCHE0;
180	JUMP REL(ring_reset), IF ncmd_slots;
181	MOVE SCRATCHD0 + 8 to SCRATCHD0; sizeof (esiop_cmd_slot)
182	MOVE SCRATCHD1 + 0 to SCRATCHD1 WITH CARRY;
183	MOVE SCRATCHD2 + 0 to SCRATCHD2 WITH CARRY;
184	MOVE SCRATCHD3 + 0 to SCRATCHD3 WITH CARRY;
185	JUMP REL(handle_cmd);
186ring_reset:
187cmdr0:
188	MOVE 0xff to SCRATCHD0; correct value will be patched by driver
189cmdr1:
190	MOVE 0xff to SCRATCHD1;
191cmdr2:
192	MOVE 0xff to SCRATCHD2;
193cmdr3:
194	MOVE 0xff to SCRATCHD3;
195	MOVE 0x00 to SCRATCHE0;
196handle_cmd:
197; a NOP by default; patched with MOVE GPREG & 0xfe to GPREG on compile-time
198; option "SIOP_SYMLED"
199led_on1:
200	NOP;
201	MOVE SCRATCHA0 | f_cmd_free to SCRATCHA0;
202	STORE noflush SCRATCHA0, 4, FROM o_cmd_dsa;
203	LOAD DSA0, 4, FROM o_cmd_dsa; /* load new DSA */
204	MOVE DSA0 & 0xfc to DSA0; /* clear flags */
205	MOVE 0x00 TO SCRATCHA1;
206	MOVE 0xff TO SCRATCHE1;
207	LOAD SCRATCHC0, 4, FROM tlq_offset;
208msgin_ack:
209	CLEAR ACK;
210waitphase:
211	JUMP REL(msgout), WHEN MSG_OUT;
212	JUMP REL(msgin), WHEN MSG_IN;
213	JUMP REL(dataout), WHEN DATA_OUT;
214	JUMP REL(datain), WHEN DATA_IN;
215	JUMP REL(cmdout), WHEN CMD;
216	JUMP REL(status), WHEN STATUS;
217	INT int_err;
218
219; entry point for msgout after a msgin or status phase
220send_msgout: 
221	SET ATN;
222	CLEAR ACK;
223msgout: 
224        MOVE FROM t_msg_out, WHEN MSG_OUT;
225	CLEAR ATN;  
226	JUMP REL(waitphase);
227
228handle_sdp:
229	CLEAR ACK;
230	MOVE SCRATCHC0 | f_c_sdp TO SCRATCHC0;
231	; should get a disconnect message now
232msgin:
233	CLEAR ATN
234	MOVE FROM t_msg_in, WHEN MSG_IN;
235handle_msgin:
236	JUMP REL(handle_cmpl), IF 0x00	; command complete message
237	JUMP REL(handle_sdp), IF 0x02	; save data pointer message
238	JUMP REL(handle_extin), IF 0x01	; extended message
239	INT int_msgin, IF NOT 0x04;
240	CALL REL(disconnect)		; disconnect message
241; if we didn't get sdp, or if offset is 0, no need to interrupt
242	MOVE SCRATCHC0 & f_c_sdp TO SFBR;
243	JUMP REL(script_sched), if 0x00;
244	MOVE SCRATCHA1 TO SFBR;
245	JUMP REL(script_sched), if 0x00;
246; Ok, we need to save data pointers
247	INT int_disc;
248
249cmdout:
250        MOVE FROM t_cmd, WHEN CMD; 
251	JUMP REL(waitphase);
252status: 
253        MOVE FROM t_status, WHEN STATUS;
254	MOVE SFBR TO SCRATCHE1;
255	JUMP REL(waitphase);
256datain:
257        CALL REL(savedsa);
258	MOVE SCRATCHC0 | f_c_data TO SCRATCHC0;
259	datain_loop:
260	MOVE FROM t_data, WHEN DATA_IN;
261	MOVE SCRATCHA1 + 1 TO SCRATCHA1 ; adjust offset
262	MOVE DSA0 + 8 to DSA0;
263	MOVE DSA1 + 0 to DSA1 WITH CARRY;
264	MOVE DSA2 + 0 to DSA2 WITH CARRY;
265	MOVE DSA3 + 0 to DSA3 WITH CARRY;
266	JUMP REL(datain_loop), WHEN DATA_IN;
267	CALL REL(restoredsa);
268	MOVE SCRATCHC0 & f_c_data_mask TO SCRATCHC0;
269	JUMP REL(waitphase);
270
271dataout:
272        CALL REL(savedsa);
273	MOVE SCRATCHC0 | f_c_data TO SCRATCHC0;
274dataout_loop:
275	MOVE FROM t_data, WHEN DATA_OUT;
276	MOVE SCRATCHA1 + 1 TO SCRATCHA1 ; adjust offset
277	MOVE DSA0 + 8 to DSA0;
278	MOVE DSA1 + 0 to DSA1 WITH CARRY;
279	MOVE DSA2 + 0 to DSA2 WITH CARRY;
280	MOVE DSA3 + 0 to DSA3 WITH CARRY;
281	JUMP REL(dataout_loop), WHEN DATA_OUT;
282	CALL REL(restoredsa);
283	MOVE SCRATCHC0 & f_c_data_mask TO SCRATCHC0;
284	JUMP REL(waitphase);
285
286savedsa:
287        MOVE DSA0 to SFBR;
288	MOVE SFBR to SCRATCHB0;       
289	MOVE DSA1 to SFBR;
290	MOVE SFBR to SCRATCHB1;       
291	MOVE DSA2 to SFBR;
292	MOVE SFBR to SCRATCHB2;
293	MOVE DSA3 to SFBR;
294	MOVE SFBR to SCRATCHB3;
295	RETURN;
296
297restoredsa:
298	MOVE SCRATCHB0 TO SFBR;
299	MOVE SFBR TO DSA0;
300	MOVE SCRATCHB1 TO SFBR;
301	MOVE SFBR TO DSA1;
302	MOVE SCRATCHB2 TO SFBR;
303	MOVE SFBR TO DSA2;
304	MOVE SCRATCHB3 TO SFBR;       
305	MOVE SFBR TO DSA3;
306	RETURN;
307
308disconnect:
309        MOVE SCNTL2 & 0x7f TO SCNTL2;
310	CLEAR ATN;
311	CLEAR ACK;
312	WAIT DISCONNECT;
313	RETURN;
314
315handle_cmpl:
316	CALL REL(disconnect);
317	MOVE SCRATCHE1 to SFBR;
318	INT int_done, IF NOT 0x00; if status is not "done", let host handle it
319	MOVE ISTAT | 0x10 TO ISTAT; else signal that cmd is done in ISTAT
320	JUMP REL(script_sched); and attempt next command
321
322handle_extin:
323	CLEAR ACK;
324	MOVE FROM t_ext_msg_in, WHEN MSG_IN;
325	INT int_extmsgin; /* let host fill in t_ext_msg_data */
326get_extmsgdata:
327	CLEAR ACK;
328	MOVE FROM t_ext_msg_data, WHEN MSG_IN;
329	INT int_extmsgdata; 
330