blob: 2e4114fba1428e5aa511a5dbbd31d14178ca3af9 [file] [log] [blame]
David S. Millere4509922007-07-11 18:51:31 -07001/* ds.c: Domain Services driver for Logical Domains
2 *
3 * Copyright (C) 2007 David S. Miller <davem@davemloft.net>
4 */
5
6#include <linux/kernel.h>
7#include <linux/module.h>
8#include <linux/types.h>
9#include <linux/module.h>
10#include <linux/string.h>
11#include <linux/slab.h>
12#include <linux/sched.h>
13#include <linux/delay.h>
David S. Millerb3e13fb2007-07-12 15:55:55 -070014#include <linux/mutex.h>
David S. Miller4f0234f2007-07-13 16:03:42 -070015#include <linux/workqueue.h>
16#include <linux/cpu.h>
David S. Millere4509922007-07-11 18:51:31 -070017
18#include <asm/ldc.h>
19#include <asm/vio.h>
20#include <asm/power.h>
David S. Miller43fdf272007-07-12 13:47:50 -070021#include <asm/mdesc.h>
David S. Miller4f0234f2007-07-13 16:03:42 -070022#include <asm/head.h>
23#include <asm/io.h>
24#include <asm/hvtramp.h>
David S. Millere4509922007-07-11 18:51:31 -070025
26#define DRV_MODULE_NAME "ds"
27#define PFX DRV_MODULE_NAME ": "
28#define DRV_MODULE_VERSION "1.0"
29#define DRV_MODULE_RELDATE "Jul 11, 2007"
30
31static char version[] __devinitdata =
32 DRV_MODULE_NAME ".c:v" DRV_MODULE_VERSION " (" DRV_MODULE_RELDATE ")\n";
33MODULE_AUTHOR("David S. Miller (davem@davemloft.net)");
34MODULE_DESCRIPTION("Sun LDOM domain services driver");
35MODULE_LICENSE("GPL");
36MODULE_VERSION(DRV_MODULE_VERSION);
37
38struct ds_msg_tag {
39 __u32 type;
40#define DS_INIT_REQ 0x00
41#define DS_INIT_ACK 0x01
42#define DS_INIT_NACK 0x02
43#define DS_REG_REQ 0x03
44#define DS_REG_ACK 0x04
45#define DS_REG_NACK 0x05
46#define DS_UNREG_REQ 0x06
47#define DS_UNREG_ACK 0x07
48#define DS_UNREG_NACK 0x08
49#define DS_DATA 0x09
50#define DS_NACK 0x0a
51
52 __u32 len;
53};
54
55/* Result codes */
56#define DS_OK 0x00
57#define DS_REG_VER_NACK 0x01
58#define DS_REG_DUP 0x02
59#define DS_INV_HDL 0x03
60#define DS_TYPE_UNKNOWN 0x04
61
62struct ds_version {
63 __u16 major;
64 __u16 minor;
65};
66
67struct ds_ver_req {
68 struct ds_msg_tag tag;
69 struct ds_version ver;
70};
71
72struct ds_ver_ack {
73 struct ds_msg_tag tag;
74 __u16 minor;
75};
76
77struct ds_ver_nack {
78 struct ds_msg_tag tag;
79 __u16 major;
80};
81
82struct ds_reg_req {
83 struct ds_msg_tag tag;
84 __u64 handle;
85 __u16 major;
86 __u16 minor;
87 char svc_id[0];
88};
89
90struct ds_reg_ack {
91 struct ds_msg_tag tag;
92 __u64 handle;
93 __u16 minor;
94};
95
96struct ds_reg_nack {
97 struct ds_msg_tag tag;
98 __u64 handle;
99 __u16 major;
100};
101
102struct ds_unreg_req {
103 struct ds_msg_tag tag;
104 __u64 handle;
105};
106
107struct ds_unreg_ack {
108 struct ds_msg_tag tag;
109 __u64 handle;
110};
111
112struct ds_unreg_nack {
113 struct ds_msg_tag tag;
114 __u64 handle;
115};
116
117struct ds_data {
118 struct ds_msg_tag tag;
119 __u64 handle;
120};
121
122struct ds_data_nack {
123 struct ds_msg_tag tag;
124 __u64 handle;
125 __u64 result;
126};
127
128struct ds_cap_state {
129 __u64 handle;
130
131 void (*data)(struct ldc_channel *lp,
David S. Miller4f0234f2007-07-13 16:03:42 -0700132 struct ds_cap_state *cp,
David S. Millere4509922007-07-11 18:51:31 -0700133 void *buf, int len);
134
135 const char *service_id;
136
137 u8 state;
138#define CAP_STATE_UNKNOWN 0x00
139#define CAP_STATE_REG_SENT 0x01
140#define CAP_STATE_REGISTERED 0x02
141};
142
David S. Miller4f0234f2007-07-13 16:03:42 -0700143static void md_update_data(struct ldc_channel *lp, struct ds_cap_state *cp,
144 void *buf, int len);
145static void domain_shutdown_data(struct ldc_channel *lp,
146 struct ds_cap_state *cp,
147 void *buf, int len);
148static void domain_panic_data(struct ldc_channel *lp,
149 struct ds_cap_state *cp,
150 void *buf, int len);
David S. Millerb14f5c12007-07-14 00:45:16 -0700151#ifdef CONFIG_HOTPLUG_CPU
David S. Miller4f0234f2007-07-13 16:03:42 -0700152static void dr_cpu_data(struct ldc_channel *lp,
153 struct ds_cap_state *cp,
154 void *buf, int len);
David S. Millerb14f5c12007-07-14 00:45:16 -0700155#endif
David S. Miller4f0234f2007-07-13 16:03:42 -0700156static void ds_pri_data(struct ldc_channel *lp,
157 struct ds_cap_state *cp,
158 void *buf, int len);
159static void ds_var_data(struct ldc_channel *lp,
160 struct ds_cap_state *cp,
161 void *buf, int len);
162
163struct ds_cap_state ds_states[] = {
164 {
165 .service_id = "md-update",
166 .data = md_update_data,
167 },
168 {
169 .service_id = "domain-shutdown",
170 .data = domain_shutdown_data,
171 },
172 {
173 .service_id = "domain-panic",
174 .data = domain_panic_data,
175 },
David S. Millerb14f5c12007-07-14 00:45:16 -0700176#ifdef CONFIG_HOTPLUG_CPU
David S. Miller4f0234f2007-07-13 16:03:42 -0700177 {
178 .service_id = "dr-cpu",
179 .data = dr_cpu_data,
180 },
David S. Millerb14f5c12007-07-14 00:45:16 -0700181#endif
David S. Miller4f0234f2007-07-13 16:03:42 -0700182 {
183 .service_id = "pri",
184 .data = ds_pri_data,
185 },
186 {
187 .service_id = "var-config",
188 .data = ds_var_data,
189 },
190 {
191 .service_id = "var-config-backup",
192 .data = ds_var_data,
193 },
194};
195
196static DEFINE_SPINLOCK(ds_lock);
197
198struct ds_info {
199 struct ldc_channel *lp;
200 u8 hs_state;
201#define DS_HS_START 0x01
202#define DS_HS_DONE 0x02
203
204 void *rcv_buf;
205 int rcv_buf_len;
206};
207
208static struct ds_info *ds_info;
209
210static struct ds_cap_state *find_cap(u64 handle)
211{
212 unsigned int index = handle >> 32;
213
214 if (index >= ARRAY_SIZE(ds_states))
215 return NULL;
216 return &ds_states[index];
217}
218
219static struct ds_cap_state *find_cap_by_string(const char *name)
220{
221 int i;
222
223 for (i = 0; i < ARRAY_SIZE(ds_states); i++) {
224 if (strcmp(ds_states[i].service_id, name))
225 continue;
226
227 return &ds_states[i];
228 }
229 return NULL;
230}
231
David S. Millere4509922007-07-11 18:51:31 -0700232static int ds_send(struct ldc_channel *lp, void *data, int len)
233{
234 int err, limit = 1000;
235
236 err = -EINVAL;
237 while (limit-- > 0) {
238 err = ldc_write(lp, data, len);
239 if (!err || (err != -EAGAIN))
240 break;
241 udelay(1);
242 }
243
244 return err;
245}
246
247struct ds_md_update_req {
248 __u64 req_num;
249};
250
251struct ds_md_update_res {
252 __u64 req_num;
253 __u32 result;
254};
255
256static void md_update_data(struct ldc_channel *lp,
257 struct ds_cap_state *dp,
258 void *buf, int len)
259{
260 struct ds_data *dpkt = buf;
261 struct ds_md_update_req *rp;
262 struct {
263 struct ds_data data;
264 struct ds_md_update_res res;
265 } pkt;
266
267 rp = (struct ds_md_update_req *) (dpkt + 1);
268
David S. Millerb3e13fb2007-07-12 15:55:55 -0700269 printk(KERN_INFO PFX "Machine description update.\n");
David S. Millere4509922007-07-11 18:51:31 -0700270
271 memset(&pkt, 0, sizeof(pkt));
272 pkt.data.tag.type = DS_DATA;
273 pkt.data.tag.len = sizeof(pkt) - sizeof(struct ds_msg_tag);
274 pkt.data.handle = dp->handle;
275 pkt.res.req_num = rp->req_num;
276 pkt.res.result = DS_OK;
277
278 ds_send(lp, &pkt, sizeof(pkt));
David S. Miller43fdf272007-07-12 13:47:50 -0700279
280 mdesc_update();
David S. Millere4509922007-07-11 18:51:31 -0700281}
282
283struct ds_shutdown_req {
284 __u64 req_num;
285 __u32 ms_delay;
286};
287
288struct ds_shutdown_res {
289 __u64 req_num;
290 __u32 result;
291 char reason[1];
292};
293
294static void domain_shutdown_data(struct ldc_channel *lp,
295 struct ds_cap_state *dp,
296 void *buf, int len)
297{
298 struct ds_data *dpkt = buf;
299 struct ds_shutdown_req *rp;
300 struct {
301 struct ds_data data;
302 struct ds_shutdown_res res;
303 } pkt;
304
305 rp = (struct ds_shutdown_req *) (dpkt + 1);
306
307 printk(KERN_ALERT PFX "Shutdown request from "
308 "LDOM manager received.\n");
309
310 memset(&pkt, 0, sizeof(pkt));
311 pkt.data.tag.type = DS_DATA;
312 pkt.data.tag.len = sizeof(pkt) - sizeof(struct ds_msg_tag);
313 pkt.data.handle = dp->handle;
314 pkt.res.req_num = rp->req_num;
315 pkt.res.result = DS_OK;
316 pkt.res.reason[0] = 0;
317
318 ds_send(lp, &pkt, sizeof(pkt));
319
320 wake_up_powerd();
321}
322
323struct ds_panic_req {
324 __u64 req_num;
325};
326
327struct ds_panic_res {
328 __u64 req_num;
329 __u32 result;
330 char reason[1];
331};
332
333static void domain_panic_data(struct ldc_channel *lp,
334 struct ds_cap_state *dp,
335 void *buf, int len)
336{
337 struct ds_data *dpkt = buf;
338 struct ds_panic_req *rp;
339 struct {
340 struct ds_data data;
341 struct ds_panic_res res;
342 } pkt;
343
344 rp = (struct ds_panic_req *) (dpkt + 1);
345
David S. Millerb3e13fb2007-07-12 15:55:55 -0700346 printk(KERN_ALERT PFX "Panic request from "
347 "LDOM manager received.\n");
David S. Millere4509922007-07-11 18:51:31 -0700348
349 memset(&pkt, 0, sizeof(pkt));
350 pkt.data.tag.type = DS_DATA;
351 pkt.data.tag.len = sizeof(pkt) - sizeof(struct ds_msg_tag);
352 pkt.data.handle = dp->handle;
353 pkt.res.req_num = rp->req_num;
354 pkt.res.result = DS_OK;
355 pkt.res.reason[0] = 0;
356
357 ds_send(lp, &pkt, sizeof(pkt));
358
359 panic("PANIC requested by LDOM manager.");
360}
361
David S. Millerb14f5c12007-07-14 00:45:16 -0700362#ifdef CONFIG_HOTPLUG_CPU
David S. Miller4f0234f2007-07-13 16:03:42 -0700363struct dr_cpu_tag {
David S. Millere4509922007-07-11 18:51:31 -0700364 __u64 req_num;
365 __u32 type;
David S. Miller4f0234f2007-07-13 16:03:42 -0700366#define DR_CPU_CONFIGURE 0x43
367#define DR_CPU_UNCONFIGURE 0x55
368#define DR_CPU_FORCE_UNCONFIGURE 0x46
369#define DR_CPU_STATUS 0x53
David S. Millere4509922007-07-11 18:51:31 -0700370
371/* Responses */
David S. Miller4f0234f2007-07-13 16:03:42 -0700372#define DR_CPU_OK 0x6f
373#define DR_CPU_ERROR 0x65
David S. Millere4509922007-07-11 18:51:31 -0700374
375 __u32 num_records;
376};
377
David S. Miller4f0234f2007-07-13 16:03:42 -0700378struct dr_cpu_resp_entry {
379 __u32 cpu;
380 __u32 result;
381#define DR_CPU_RES_OK 0x00
382#define DR_CPU_RES_FAILURE 0x01
383#define DR_CPU_RES_BLOCKED 0x02
384#define DR_CPU_RES_CPU_NOT_RESPONDING 0x03
385#define DR_CPU_RES_NOT_IN_MD 0x04
386
387 __u32 stat;
388#define DR_CPU_STAT_NOT_PRESENT 0x00
389#define DR_CPU_STAT_UNCONFIGURED 0x01
390#define DR_CPU_STAT_CONFIGURED 0x02
391
392 __u32 str_off;
David S. Millere4509922007-07-11 18:51:31 -0700393};
394
David S. Miller4f0234f2007-07-13 16:03:42 -0700395/* XXX Put this in some common place. XXX */
396static unsigned long kimage_addr_to_ra(void *p)
397{
398 unsigned long val = (unsigned long) p;
399
400 return kern_base + (val - KERNBASE);
401}
402
David S. Miller4f0234f2007-07-13 16:03:42 -0700403/* DR cpu requests get queued onto the work list by the
404 * dr_cpu_data() callback. The list is protected by
405 * ds_lock, and processed by dr_cpu_process() in order.
406 */
407static LIST_HEAD(dr_cpu_work_list);
408
409struct dr_cpu_queue_entry {
410 struct list_head list;
411 char req[0];
412};
413
414static void __dr_cpu_send_error(struct ds_cap_state *cp, struct ds_data *data)
415{
416 struct dr_cpu_tag *tag = (struct dr_cpu_tag *) (data + 1);
417 struct ds_info *dp = ds_info;
418 struct {
419 struct ds_data data;
420 struct dr_cpu_tag tag;
421 } pkt;
422 int msg_len;
423
424 memset(&pkt, 0, sizeof(pkt));
425 pkt.data.tag.type = DS_DATA;
426 pkt.data.handle = cp->handle;
427 pkt.tag.req_num = tag->req_num;
428 pkt.tag.type = DR_CPU_ERROR;
429 pkt.tag.num_records = 0;
430
431 msg_len = (sizeof(struct ds_data) +
432 sizeof(struct dr_cpu_tag));
433
434 pkt.data.tag.len = msg_len - sizeof(struct ds_msg_tag);
435
436 ds_send(dp->lp, &pkt, msg_len);
437}
438
439static void dr_cpu_send_error(struct ds_cap_state *cp, struct ds_data *data)
440{
441 unsigned long flags;
442
443 spin_lock_irqsave(&ds_lock, flags);
444 __dr_cpu_send_error(cp, data);
445 spin_unlock_irqrestore(&ds_lock, flags);
446}
447
448#define CPU_SENTINEL 0xffffffff
449
450static void purge_dups(u32 *list, u32 num_ents)
451{
452 unsigned int i;
453
454 for (i = 0; i < num_ents; i++) {
455 u32 cpu = list[i];
456 unsigned int j;
457
458 if (cpu == CPU_SENTINEL)
459 continue;
460
461 for (j = i + 1; j < num_ents; j++) {
462 if (list[j] == cpu)
463 list[j] = CPU_SENTINEL;
464 }
465 }
466}
467
468static int dr_cpu_size_response(int ncpus)
469{
470 return (sizeof(struct ds_data) +
471 sizeof(struct dr_cpu_tag) +
472 (sizeof(struct dr_cpu_resp_entry) * ncpus));
473}
474
475static void dr_cpu_init_response(struct ds_data *resp, u64 req_num,
476 u64 handle, int resp_len, int ncpus,
477 cpumask_t *mask, u32 default_stat)
478{
479 struct dr_cpu_resp_entry *ent;
480 struct dr_cpu_tag *tag;
481 int i, cpu;
482
483 tag = (struct dr_cpu_tag *) (resp + 1);
484 ent = (struct dr_cpu_resp_entry *) (tag + 1);
485
486 resp->tag.type = DS_DATA;
487 resp->tag.len = resp_len - sizeof(struct ds_msg_tag);
488 resp->handle = handle;
489 tag->req_num = req_num;
490 tag->type = DR_CPU_OK;
491 tag->num_records = ncpus;
492
493 i = 0;
494 for_each_cpu_mask(cpu, *mask) {
495 ent[i].cpu = cpu;
496 ent[i].result = DR_CPU_RES_OK;
497 ent[i].stat = default_stat;
498 i++;
499 }
500 BUG_ON(i != ncpus);
501}
502
503static void dr_cpu_mark(struct ds_data *resp, int cpu, int ncpus,
504 u32 res, u32 stat)
505{
506 struct dr_cpu_resp_entry *ent;
507 struct dr_cpu_tag *tag;
508 int i;
509
510 tag = (struct dr_cpu_tag *) (resp + 1);
511 ent = (struct dr_cpu_resp_entry *) (tag + 1);
512
513 for (i = 0; i < ncpus; i++) {
514 if (ent[i].cpu != cpu)
515 continue;
516 ent[i].result = res;
517 ent[i].stat = stat;
518 break;
519 }
520}
521
522static int dr_cpu_configure(struct ds_cap_state *cp, u64 req_num,
523 cpumask_t *mask)
524{
525 struct ds_data *resp;
526 int resp_len, ncpus, cpu;
527 unsigned long flags;
528
529 ncpus = cpus_weight(*mask);
530 resp_len = dr_cpu_size_response(ncpus);
531 resp = kzalloc(resp_len, GFP_KERNEL);
532 if (!resp)
533 return -ENOMEM;
534
535 dr_cpu_init_response(resp, req_num, cp->handle,
536 resp_len, ncpus, mask,
537 DR_CPU_STAT_CONFIGURED);
538
539 mdesc_fill_in_cpu_data(*mask);
540
541 for_each_cpu_mask(cpu, *mask) {
542 int err;
543
544 printk(KERN_INFO PFX "Starting cpu %d...\n", cpu);
545 err = cpu_up(cpu);
546 if (err)
547 dr_cpu_mark(resp, cpu, ncpus,
548 DR_CPU_RES_FAILURE,
549 DR_CPU_STAT_UNCONFIGURED);
550 }
551
552 spin_lock_irqsave(&ds_lock, flags);
553 ds_send(ds_info->lp, resp, resp_len);
554 spin_unlock_irqrestore(&ds_lock, flags);
555
556 kfree(resp);
557
558 return 0;
559}
560
561static int dr_cpu_unconfigure(struct ds_cap_state *cp, u64 req_num,
562 cpumask_t *mask)
563{
564 struct ds_data *resp;
565 int resp_len, ncpus;
566
567 ncpus = cpus_weight(*mask);
568 resp_len = dr_cpu_size_response(ncpus);
569 resp = kzalloc(resp_len, GFP_KERNEL);
570 if (!resp)
571 return -ENOMEM;
572
573 dr_cpu_init_response(resp, req_num, cp->handle,
574 resp_len, ncpus, mask,
575 DR_CPU_STAT_UNCONFIGURED);
576
577 kfree(resp);
578
579 return -EOPNOTSUPP;
580}
581
582static void dr_cpu_process(struct work_struct *work)
583{
584 struct dr_cpu_queue_entry *qp, *tmp;
585 struct ds_cap_state *cp;
586 unsigned long flags;
587 LIST_HEAD(todo);
588 cpumask_t mask;
589
590 cp = find_cap_by_string("dr-cpu");
591
592 spin_lock_irqsave(&ds_lock, flags);
593 list_splice(&dr_cpu_work_list, &todo);
594 spin_unlock_irqrestore(&ds_lock, flags);
595
596 list_for_each_entry_safe(qp, tmp, &todo, list) {
597 struct ds_data *data = (struct ds_data *) qp->req;
598 struct dr_cpu_tag *tag = (struct dr_cpu_tag *) (data + 1);
599 u32 *cpu_list = (u32 *) (tag + 1);
600 u64 req_num = tag->req_num;
601 unsigned int i;
602 int err;
603
604 switch (tag->type) {
605 case DR_CPU_CONFIGURE:
606 case DR_CPU_UNCONFIGURE:
607 case DR_CPU_FORCE_UNCONFIGURE:
608 break;
609
610 default:
611 dr_cpu_send_error(cp, data);
612 goto next;
613 }
614
615 purge_dups(cpu_list, tag->num_records);
616
617 cpus_clear(mask);
618 for (i = 0; i < tag->num_records; i++) {
619 if (cpu_list[i] == CPU_SENTINEL)
620 continue;
621
622 if (cpu_list[i] < NR_CPUS)
623 cpu_set(cpu_list[i], mask);
624 }
625
626 if (tag->type == DR_CPU_CONFIGURE)
627 err = dr_cpu_configure(cp, req_num, &mask);
628 else
629 err = dr_cpu_unconfigure(cp, req_num, &mask);
630
631 if (err)
632 dr_cpu_send_error(cp, data);
633
634next:
635 list_del(&qp->list);
636 kfree(qp);
637 }
638}
639
640static DECLARE_WORK(dr_cpu_work, dr_cpu_process);
641
David S. Millere4509922007-07-11 18:51:31 -0700642static void dr_cpu_data(struct ldc_channel *lp,
643 struct ds_cap_state *dp,
644 void *buf, int len)
645{
David S. Miller4f0234f2007-07-13 16:03:42 -0700646 struct dr_cpu_queue_entry *qp;
David S. Millere4509922007-07-11 18:51:31 -0700647 struct ds_data *dpkt = buf;
David S. Miller4f0234f2007-07-13 16:03:42 -0700648 struct dr_cpu_tag *rp;
David S. Millere4509922007-07-11 18:51:31 -0700649
David S. Miller4f0234f2007-07-13 16:03:42 -0700650 rp = (struct dr_cpu_tag *) (dpkt + 1);
David S. Millere4509922007-07-11 18:51:31 -0700651
David S. Miller4f0234f2007-07-13 16:03:42 -0700652 qp = kmalloc(sizeof(struct dr_cpu_queue_entry) + len, GFP_ATOMIC);
653 if (!qp) {
654 struct ds_cap_state *cp;
655
656 cp = find_cap_by_string("dr-cpu");
657 __dr_cpu_send_error(cp, dpkt);
658 } else {
659 memcpy(&qp->req, buf, len);
660 list_add_tail(&qp->list, &dr_cpu_work_list);
661 schedule_work(&dr_cpu_work);
662 }
David S. Millere4509922007-07-11 18:51:31 -0700663}
David S. Millerb14f5c12007-07-14 00:45:16 -0700664#endif
David S. Millere4509922007-07-11 18:51:31 -0700665
666struct ds_pri_msg {
667 __u64 req_num;
668 __u64 type;
669#define DS_PRI_REQUEST 0x00
670#define DS_PRI_DATA 0x01
671#define DS_PRI_UPDATE 0x02
672};
673
674static void ds_pri_data(struct ldc_channel *lp,
675 struct ds_cap_state *dp,
676 void *buf, int len)
677{
678 struct ds_data *dpkt = buf;
679 struct ds_pri_msg *rp;
680
681 rp = (struct ds_pri_msg *) (dpkt + 1);
682
David S. Millerb3e13fb2007-07-12 15:55:55 -0700683 printk(KERN_INFO PFX "PRI REQ [%lx:%lx], len=%d\n",
David S. Millere4509922007-07-11 18:51:31 -0700684 rp->req_num, rp->type, len);
685}
686
David S. Millerb3e13fb2007-07-12 15:55:55 -0700687struct ds_var_hdr {
688 __u32 type;
689#define DS_VAR_SET_REQ 0x00
690#define DS_VAR_DELETE_REQ 0x01
691#define DS_VAR_SET_RESP 0x02
692#define DS_VAR_DELETE_RESP 0x03
693};
694
695struct ds_var_set_msg {
696 struct ds_var_hdr hdr;
697 char name_and_value[0];
698};
699
700struct ds_var_delete_msg {
701 struct ds_var_hdr hdr;
702 char name[0];
703};
704
705struct ds_var_resp {
706 struct ds_var_hdr hdr;
707 __u32 result;
708#define DS_VAR_SUCCESS 0x00
709#define DS_VAR_NO_SPACE 0x01
710#define DS_VAR_INVALID_VAR 0x02
711#define DS_VAR_INVALID_VAL 0x03
712#define DS_VAR_NOT_PRESENT 0x04
713};
714
715static DEFINE_MUTEX(ds_var_mutex);
716static int ds_var_doorbell;
717static int ds_var_response;
718
719static void ds_var_data(struct ldc_channel *lp,
720 struct ds_cap_state *dp,
721 void *buf, int len)
722{
723 struct ds_data *dpkt = buf;
724 struct ds_var_resp *rp;
725
726 rp = (struct ds_var_resp *) (dpkt + 1);
727
728 if (rp->hdr.type != DS_VAR_SET_RESP &&
729 rp->hdr.type != DS_VAR_DELETE_RESP)
730 return;
731
732 ds_var_response = rp->result;
733 wmb();
734 ds_var_doorbell = 1;
735}
736
David S. Millerb3e13fb2007-07-12 15:55:55 -0700737void ldom_set_var(const char *var, const char *value)
738{
739 struct ds_info *dp = ds_info;
740 struct ds_cap_state *cp;
741
742 cp = find_cap_by_string("var-config");
743 if (cp->state != CAP_STATE_REGISTERED)
744 cp = find_cap_by_string("var-config-backup");
745
746 if (cp->state == CAP_STATE_REGISTERED) {
747 union {
748 struct {
749 struct ds_data data;
750 struct ds_var_set_msg msg;
751 } header;
752 char all[512];
753 } pkt;
754 unsigned long flags;
755 char *base, *p;
756 int msg_len, loops;
757
758 memset(&pkt, 0, sizeof(pkt));
759 pkt.header.data.tag.type = DS_DATA;
760 pkt.header.data.handle = cp->handle;
761 pkt.header.msg.hdr.type = DS_VAR_SET_REQ;
762 base = p = &pkt.header.msg.name_and_value[0];
763 strcpy(p, var);
764 p += strlen(var) + 1;
765 strcpy(p, value);
766 p += strlen(value) + 1;
767
768 msg_len = (sizeof(struct ds_data) +
David S. Miller4f0234f2007-07-13 16:03:42 -0700769 sizeof(struct ds_var_set_msg) +
770 (p - base));
David S. Millerb3e13fb2007-07-12 15:55:55 -0700771 msg_len = (msg_len + 3) & ~3;
772 pkt.header.data.tag.len = msg_len - sizeof(struct ds_msg_tag);
773
774 mutex_lock(&ds_var_mutex);
775
776 spin_lock_irqsave(&ds_lock, flags);
777 ds_var_doorbell = 0;
778 ds_var_response = -1;
779
780 ds_send(dp->lp, &pkt, msg_len);
781 spin_unlock_irqrestore(&ds_lock, flags);
782
783 loops = 1000;
784 while (ds_var_doorbell == 0) {
785 if (loops-- < 0)
786 break;
787 barrier();
788 udelay(100);
789 }
790
791 mutex_unlock(&ds_var_mutex);
792
793 if (ds_var_doorbell == 0 ||
794 ds_var_response != DS_VAR_SUCCESS)
795 printk(KERN_ERR PFX "var-config [%s:%s] "
796 "failed, response(%d).\n",
797 var, value,
798 ds_var_response);
799 } else {
800 printk(KERN_ERR PFX "var-config not registered so "
801 "could not set (%s) variable to (%s).\n",
802 var, value);
803 }
804}
805
806void ldom_reboot(const char *boot_command)
807{
808 /* Don't bother with any of this if the boot_command
809 * is empty.
810 */
811 if (boot_command && strlen(boot_command)) {
812 char full_boot_str[256];
813
814 strcpy(full_boot_str, "boot ");
815 strcpy(full_boot_str + strlen("boot "), boot_command);
816
817 ldom_set_var("reboot-command", full_boot_str);
818 }
819 sun4v_mach_sir();
820}
821
David S. Miller4f0234f2007-07-13 16:03:42 -0700822void ldom_power_off(void)
823{
824 sun4v_mach_exit(0);
825}
826
David S. Millere4509922007-07-11 18:51:31 -0700827static void ds_conn_reset(struct ds_info *dp)
828{
829 printk(KERN_ERR PFX "ds_conn_reset() from %p\n",
830 __builtin_return_address(0));
831}
832
833static int register_services(struct ds_info *dp)
834{
835 struct ldc_channel *lp = dp->lp;
836 int i;
837
838 for (i = 0; i < ARRAY_SIZE(ds_states); i++) {
839 struct {
840 struct ds_reg_req req;
841 u8 id_buf[256];
842 } pbuf;
843 struct ds_cap_state *cp = &ds_states[i];
844 int err, msg_len;
845 u64 new_count;
846
847 if (cp->state == CAP_STATE_REGISTERED)
848 continue;
849
850 new_count = sched_clock() & 0xffffffff;
851 cp->handle = ((u64) i << 32) | new_count;
852
853 msg_len = (sizeof(struct ds_reg_req) +
854 strlen(cp->service_id));
855
856 memset(&pbuf, 0, sizeof(pbuf));
857 pbuf.req.tag.type = DS_REG_REQ;
858 pbuf.req.tag.len = (msg_len - sizeof(struct ds_msg_tag));
859 pbuf.req.handle = cp->handle;
860 pbuf.req.major = 1;
861 pbuf.req.minor = 0;
862 strcpy(pbuf.req.svc_id, cp->service_id);
863
864 err = ds_send(lp, &pbuf, msg_len);
865 if (err > 0)
866 cp->state = CAP_STATE_REG_SENT;
867 }
868 return 0;
869}
870
871static int ds_handshake(struct ds_info *dp, struct ds_msg_tag *pkt)
872{
873
874 if (dp->hs_state == DS_HS_START) {
875 if (pkt->type != DS_INIT_ACK)
876 goto conn_reset;
877
878 dp->hs_state = DS_HS_DONE;
879
880 return register_services(dp);
881 }
882
883 if (dp->hs_state != DS_HS_DONE)
884 goto conn_reset;
885
886 if (pkt->type == DS_REG_ACK) {
887 struct ds_reg_ack *ap = (struct ds_reg_ack *) pkt;
888 struct ds_cap_state *cp = find_cap(ap->handle);
889
890 if (!cp) {
891 printk(KERN_ERR PFX "REG ACK for unknown handle %lx\n",
892 ap->handle);
893 return 0;
894 }
895 printk(KERN_INFO PFX "Registered %s service.\n",
896 cp->service_id);
897 cp->state = CAP_STATE_REGISTERED;
898 } else if (pkt->type == DS_REG_NACK) {
899 struct ds_reg_nack *np = (struct ds_reg_nack *) pkt;
900 struct ds_cap_state *cp = find_cap(np->handle);
901
902 if (!cp) {
903 printk(KERN_ERR PFX "REG NACK for "
904 "unknown handle %lx\n",
905 np->handle);
906 return 0;
907 }
David S. Miller4f0234f2007-07-13 16:03:42 -0700908 printk(KERN_INFO PFX "Could not register %s service\n",
David S. Millere4509922007-07-11 18:51:31 -0700909 cp->service_id);
910 cp->state = CAP_STATE_UNKNOWN;
911 }
912
913 return 0;
914
915conn_reset:
916 ds_conn_reset(dp);
917 return -ECONNRESET;
918}
919
920static int ds_data(struct ds_info *dp, struct ds_msg_tag *pkt, int len)
921{
922 struct ds_data *dpkt = (struct ds_data *) pkt;
923 struct ds_cap_state *cp = find_cap(dpkt->handle);
924
925 if (!cp) {
926 struct ds_data_nack nack = {
927 .tag = {
928 .type = DS_NACK,
929 .len = (sizeof(struct ds_data_nack) -
930 sizeof(struct ds_msg_tag)),
931 },
932 .handle = dpkt->handle,
933 .result = DS_INV_HDL,
934 };
935
936 printk(KERN_ERR PFX "Data for unknown handle %lu\n",
937 dpkt->handle);
938 ds_send(dp->lp, &nack, sizeof(nack));
939 } else {
940 cp->data(dp->lp, cp, dpkt, len);
941 }
942 return 0;
943}
944
945static void ds_up(struct ds_info *dp)
946{
947 struct ldc_channel *lp = dp->lp;
948 struct ds_ver_req req;
949 int err;
950
951 req.tag.type = DS_INIT_REQ;
952 req.tag.len = sizeof(req) - sizeof(struct ds_msg_tag);
953 req.ver.major = 1;
954 req.ver.minor = 0;
955
956 err = ds_send(lp, &req, sizeof(req));
957 if (err > 0)
958 dp->hs_state = DS_HS_START;
959}
960
961static void ds_event(void *arg, int event)
962{
963 struct ds_info *dp = arg;
964 struct ldc_channel *lp = dp->lp;
965 unsigned long flags;
966 int err;
967
968 spin_lock_irqsave(&ds_lock, flags);
969
970 if (event == LDC_EVENT_UP) {
971 ds_up(dp);
972 spin_unlock_irqrestore(&ds_lock, flags);
973 return;
974 }
975
976 if (event != LDC_EVENT_DATA_READY) {
977 printk(KERN_WARNING PFX "Unexpected LDC event %d\n", event);
978 spin_unlock_irqrestore(&ds_lock, flags);
979 return;
980 }
981
982 err = 0;
983 while (1) {
984 struct ds_msg_tag *tag;
985
986 err = ldc_read(lp, dp->rcv_buf, sizeof(*tag));
987
988 if (unlikely(err < 0)) {
989 if (err == -ECONNRESET)
990 ds_conn_reset(dp);
991 break;
992 }
993 if (err == 0)
994 break;
995
996 tag = dp->rcv_buf;
997 err = ldc_read(lp, tag + 1, tag->len);
998
999 if (unlikely(err < 0)) {
1000 if (err == -ECONNRESET)
1001 ds_conn_reset(dp);
1002 break;
1003 }
1004 if (err < tag->len)
1005 break;
1006
1007 if (tag->type < DS_DATA)
1008 err = ds_handshake(dp, dp->rcv_buf);
1009 else
1010 err = ds_data(dp, dp->rcv_buf,
1011 sizeof(*tag) + err);
1012 if (err == -ECONNRESET)
1013 break;
1014 }
1015
1016 spin_unlock_irqrestore(&ds_lock, flags);
1017}
1018
1019static int __devinit ds_probe(struct vio_dev *vdev,
1020 const struct vio_device_id *id)
1021{
1022 static int ds_version_printed;
David S. Millere4509922007-07-11 18:51:31 -07001023 struct ldc_channel_config ds_cfg = {
1024 .event = ds_event,
1025 .mtu = 4096,
1026 .mode = LDC_MODE_STREAM,
1027 };
1028 struct ldc_channel *lp;
1029 struct ds_info *dp;
David S. Millere4509922007-07-11 18:51:31 -07001030 int err;
1031
1032 if (ds_version_printed++ == 0)
1033 printk(KERN_INFO "%s", version);
1034
David S. Millere4509922007-07-11 18:51:31 -07001035 dp = kzalloc(sizeof(*dp), GFP_KERNEL);
1036 err = -ENOMEM;
1037 if (!dp)
1038 goto out_err;
1039
1040 dp->rcv_buf = kzalloc(4096, GFP_KERNEL);
1041 if (!dp->rcv_buf)
1042 goto out_free_dp;
1043
1044 dp->rcv_buf_len = 4096;
1045
David S. Miller43fdf272007-07-12 13:47:50 -07001046 ds_cfg.tx_irq = vdev->tx_irq;
1047 ds_cfg.rx_irq = vdev->rx_irq;
David S. Millere4509922007-07-11 18:51:31 -07001048
David S. Miller43fdf272007-07-12 13:47:50 -07001049 lp = ldc_alloc(vdev->channel_id, &ds_cfg, dp);
David S. Millere4509922007-07-11 18:51:31 -07001050 if (IS_ERR(lp)) {
1051 err = PTR_ERR(lp);
1052 goto out_free_rcv_buf;
1053 }
1054 dp->lp = lp;
1055
David S. Miller133f09a2007-07-11 23:22:55 -07001056 err = ldc_bind(lp, "DS");
David S. Millere4509922007-07-11 18:51:31 -07001057 if (err)
1058 goto out_free_ldc;
1059
David S. Millerb3e13fb2007-07-12 15:55:55 -07001060 ds_info = dp;
1061
David S. Millere4509922007-07-11 18:51:31 -07001062 start_powerd();
1063
1064 return err;
1065
1066out_free_ldc:
1067 ldc_free(dp->lp);
1068
1069out_free_rcv_buf:
1070 kfree(dp->rcv_buf);
1071
1072out_free_dp:
1073 kfree(dp);
1074
1075out_err:
1076 return err;
1077}
1078
1079static int ds_remove(struct vio_dev *vdev)
1080{
1081 return 0;
1082}
1083
1084static struct vio_device_id ds_match[] = {
1085 {
1086 .type = "domain-services-port",
1087 },
1088 {},
1089};
1090
1091static struct vio_driver ds_driver = {
1092 .id_table = ds_match,
1093 .probe = ds_probe,
1094 .remove = ds_remove,
1095 .driver = {
1096 .name = "ds",
1097 .owner = THIS_MODULE,
1098 }
1099};
1100
1101static int __init ds_init(void)
1102{
1103 int i;
1104
1105 for (i = 0; i < ARRAY_SIZE(ds_states); i++)
1106 ds_states[i].handle = ((u64)i << 32);
1107
1108 return vio_register_driver(&ds_driver);
1109}
1110
1111subsys_initcall(ds_init);