xref: /linux/drivers/scsi/ibmvscsi/ibmvscsi.c (revision be54f8c558027a218423134dd9b8c7c46d92204a)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* ------------------------------------------------------------
3  * ibmvscsi.c
4  * (C) Copyright IBM Corporation 1994, 2004
5  * Authors: Colin DeVilbiss (devilbis@us.ibm.com)
6  *          Santiago Leon (santil@us.ibm.com)
7  *          Dave Boutcher (sleddog@us.ibm.com)
8  *
9  * ------------------------------------------------------------
10  * Emulation of a SCSI host adapter for Virtual I/O devices
11  *
12  * This driver supports the SCSI adapter implemented by the IBM
13  * Power5 firmware.  That SCSI adapter is not a physical adapter,
14  * but allows Linux SCSI peripheral drivers to directly
15  * access devices in another logical partition on the physical system.
16  *
17  * The virtual adapter(s) are present in the open firmware device
18  * tree just like real adapters.
19  *
20  * One of the capabilities provided on these systems is the ability
21  * to DMA between partitions.  The architecture states that for VSCSI,
22  * the server side is allowed to DMA to and from the client.  The client
23  * is never trusted to DMA to or from the server directly.
24  *
25  * Messages are sent between partitions on a "Command/Response Queue"
26  * (CRQ), which is just a buffer of 16 byte entries in the receiver's
27  * Senders cannot access the buffer directly, but send messages by
28  * making a hypervisor call and passing in the 16 bytes.  The hypervisor
29  * puts the message in the next 16 byte space in round-robin fashion,
30  * turns on the high order bit of the message (the valid bit), and
31  * generates an interrupt to the receiver (if interrupts are turned on.)
32  * The receiver just turns off the valid bit when they have copied out
33  * the message.
34  *
35  * The VSCSI client builds a SCSI Remote Protocol (SRP) Information Unit
36  * (IU) (as defined in the T10 standard available at www.t10.org), gets
37  * a DMA address for the message, and sends it to the server as the
38  * payload of a CRQ message.  The server DMAs the SRP IU and processes it,
39  * including doing any additional data transfers.  When it is done, it
40  * DMAs the SRP response back to the same address as the request came from,
41  * and sends a CRQ message back to inform the client that the request has
42  * completed.
43  *
44  * TODO: This is currently pretty tied to the IBM pSeries hypervisor
45  * interfaces.  It would be really nice to abstract this above an RDMA
46  * layer.
47  */
48 
49 #include <linux/module.h>
50 #include <linux/moduleparam.h>
51 #include <linux/dma-mapping.h>
52 #include <linux/delay.h>
53 #include <linux/slab.h>
54 #include <linux/of.h>
55 #include <linux/pm.h>
56 #include <linux/kthread.h>
57 #include <asm/firmware.h>
58 #include <asm/vio.h>
59 #include <scsi/scsi.h>
60 #include <scsi/scsi_cmnd.h>
61 #include <scsi/scsi_host.h>
62 #include <scsi/scsi_device.h>
63 #include <scsi/scsi_transport_srp.h>
64 #include "ibmvscsi.h"
65 
66 /* The values below are somewhat arbitrary default values, but
67  * OS/400 will use 3 busses (disks, CDs, tapes, I think.)
68  * Note that there are 3 bits of channel value, 6 bits of id, and
69  * 5 bits of LUN.
70  */
71 static int max_id = 64;
72 static int max_channel = 3;
73 static int init_timeout = 300;
74 static int login_timeout = 60;
75 static int info_timeout = 30;
76 static int abort_timeout = 60;
77 static int reset_timeout = 60;
78 static int max_requests = IBMVSCSI_MAX_REQUESTS_DEFAULT;
79 static int max_events = IBMVSCSI_MAX_REQUESTS_DEFAULT + 2;
80 static int fast_fail = 1;
81 static int client_reserve = 1;
82 static char partition_name[96] = "UNKNOWN";
83 static unsigned int partition_number = -1;
84 static LIST_HEAD(ibmvscsi_head);
85 static DEFINE_SPINLOCK(ibmvscsi_driver_lock);
86 
87 static struct scsi_transport_template *ibmvscsi_transport_template;
88 
89 #define IBMVSCSI_VERSION "1.5.9"
90 
91 MODULE_DESCRIPTION("IBM Virtual SCSI");
92 MODULE_AUTHOR("Dave Boutcher");
93 MODULE_LICENSE("GPL");
94 MODULE_VERSION(IBMVSCSI_VERSION);
95 
96 module_param_named(max_id, max_id, int, S_IRUGO | S_IWUSR);
97 MODULE_PARM_DESC(max_id, "Largest ID value for each channel [Default=64]");
98 module_param_named(max_channel, max_channel, int, S_IRUGO | S_IWUSR);
99 MODULE_PARM_DESC(max_channel, "Largest channel value [Default=3]");
100 module_param_named(init_timeout, init_timeout, int, S_IRUGO | S_IWUSR);
101 MODULE_PARM_DESC(init_timeout, "Initialization timeout in seconds");
102 module_param_named(max_requests, max_requests, int, S_IRUGO);
103 MODULE_PARM_DESC(max_requests, "Maximum requests for this adapter");
104 module_param_named(fast_fail, fast_fail, int, S_IRUGO | S_IWUSR);
105 MODULE_PARM_DESC(fast_fail, "Enable fast fail. [Default=1]");
106 module_param_named(client_reserve, client_reserve, int, S_IRUGO );
107 MODULE_PARM_DESC(client_reserve, "Attempt client managed reserve/release");
108 
109 static void ibmvscsi_handle_crq(struct viosrp_crq *crq,
110 				struct ibmvscsi_host_data *hostdata);
111 
112 /* ------------------------------------------------------------
113  * Routines for managing the command/response queue
114  */
115 /**
116  * ibmvscsi_handle_event: - Interrupt handler for crq events
117  * @irq:	number of irq to handle, not used
118  * @dev_instance: ibmvscsi_host_data of host that received interrupt
119  *
120  * Disables interrupts and schedules srp_task
121  * Always returns IRQ_HANDLED
122  */
ibmvscsi_handle_event(int irq,void * dev_instance)123 static irqreturn_t ibmvscsi_handle_event(int irq, void *dev_instance)
124 {
125 	struct ibmvscsi_host_data *hostdata =
126 	    (struct ibmvscsi_host_data *)dev_instance;
127 	vio_disable_interrupts(to_vio_dev(hostdata->dev));
128 	tasklet_schedule(&hostdata->srp_task);
129 	return IRQ_HANDLED;
130 }
131 
132 /**
133  * ibmvscsi_release_crq_queue() - Deallocates data and unregisters CRQ
134  * @queue:		crq_queue to initialize and register
135  * @hostdata:		ibmvscsi_host_data of host
136  * @max_requests:	maximum requests (unused)
137  *
138  * Frees irq, deallocates a page for messages, unmaps dma, and unregisters
139  * the crq with the hypervisor.
140  */
ibmvscsi_release_crq_queue(struct crq_queue * queue,struct ibmvscsi_host_data * hostdata,int max_requests)141 static void ibmvscsi_release_crq_queue(struct crq_queue *queue,
142 				       struct ibmvscsi_host_data *hostdata,
143 				       int max_requests)
144 {
145 	long rc = 0;
146 	struct vio_dev *vdev = to_vio_dev(hostdata->dev);
147 	free_irq(vdev->irq, (void *)hostdata);
148 	tasklet_kill(&hostdata->srp_task);
149 	do {
150 		if (rc)
151 			msleep(100);
152 		rc = plpar_hcall_norets(H_FREE_CRQ, vdev->unit_address);
153 	} while ((rc == H_BUSY) || (H_IS_LONG_BUSY(rc)));
154 	dma_unmap_single(hostdata->dev,
155 			 queue->msg_token,
156 			 queue->size * sizeof(*queue->msgs), DMA_BIDIRECTIONAL);
157 	free_page((unsigned long)queue->msgs);
158 }
159 
160 /**
161  * crq_queue_next_crq: - Returns the next entry in message queue
162  * @queue:	crq_queue to use
163  *
164  * Returns pointer to next entry in queue, or NULL if there are no new
165  * entried in the CRQ.
166  */
crq_queue_next_crq(struct crq_queue * queue)167 static struct viosrp_crq *crq_queue_next_crq(struct crq_queue *queue)
168 {
169 	struct viosrp_crq *crq;
170 	unsigned long flags;
171 
172 	spin_lock_irqsave(&queue->lock, flags);
173 	crq = &queue->msgs[queue->cur];
174 	if (crq->valid != VIOSRP_CRQ_FREE) {
175 		if (++queue->cur == queue->size)
176 			queue->cur = 0;
177 
178 		/* Ensure the read of the valid bit occurs before reading any
179 		 * other bits of the CRQ entry
180 		 */
181 		rmb();
182 	} else
183 		crq = NULL;
184 	spin_unlock_irqrestore(&queue->lock, flags);
185 
186 	return crq;
187 }
188 
189 /**
190  * ibmvscsi_send_crq: - Send a CRQ
191  * @hostdata:	the adapter
192  * @word1:	the first 64 bits of the data
193  * @word2:	the second 64 bits of the data
194  */
ibmvscsi_send_crq(struct ibmvscsi_host_data * hostdata,u64 word1,u64 word2)195 static int ibmvscsi_send_crq(struct ibmvscsi_host_data *hostdata,
196 			     u64 word1, u64 word2)
197 {
198 	struct vio_dev *vdev = to_vio_dev(hostdata->dev);
199 
200 	/*
201 	 * Ensure the command buffer is flushed to memory before handing it
202 	 * over to the VIOS to prevent it from fetching any stale data.
203 	 */
204 	mb();
205 	return plpar_hcall_norets(H_SEND_CRQ, vdev->unit_address, word1, word2);
206 }
207 
208 /**
209  * ibmvscsi_task: - Process srps asynchronously
210  * @data:	ibmvscsi_host_data of host
211  */
ibmvscsi_task(void * data)212 static void ibmvscsi_task(void *data)
213 {
214 	struct ibmvscsi_host_data *hostdata = (struct ibmvscsi_host_data *)data;
215 	struct vio_dev *vdev = to_vio_dev(hostdata->dev);
216 	struct viosrp_crq *crq;
217 	int done = 0;
218 
219 	while (!done) {
220 		/* Pull all the valid messages off the CRQ */
221 		while ((crq = crq_queue_next_crq(&hostdata->queue)) != NULL) {
222 			ibmvscsi_handle_crq(crq, hostdata);
223 			crq->valid = VIOSRP_CRQ_FREE;
224 			wmb();
225 		}
226 
227 		vio_enable_interrupts(vdev);
228 		crq = crq_queue_next_crq(&hostdata->queue);
229 		if (crq != NULL) {
230 			vio_disable_interrupts(vdev);
231 			ibmvscsi_handle_crq(crq, hostdata);
232 			crq->valid = VIOSRP_CRQ_FREE;
233 			wmb();
234 		} else {
235 			done = 1;
236 		}
237 	}
238 }
239 
gather_partition_info(void)240 static void gather_partition_info(void)
241 {
242 	const char *ppartition_name;
243 	const __be32 *p_number_ptr;
244 
245 	/* Retrieve information about this partition */
246 	if (!of_root)
247 		return;
248 
249 	of_node_get(of_root);
250 
251 	ppartition_name = of_get_property(of_root, "ibm,partition-name", NULL);
252 	if (ppartition_name)
253 		strscpy(partition_name, ppartition_name,
254 				sizeof(partition_name));
255 	p_number_ptr = of_get_property(of_root, "ibm,partition-no", NULL);
256 	if (p_number_ptr)
257 		partition_number = of_read_number(p_number_ptr, 1);
258 	of_node_put(of_root);
259 }
260 
set_adapter_info(struct ibmvscsi_host_data * hostdata)261 static void set_adapter_info(struct ibmvscsi_host_data *hostdata)
262 {
263 	memset(&hostdata->madapter_info, 0x00,
264 			sizeof(hostdata->madapter_info));
265 
266 	dev_info(hostdata->dev, "SRP_VERSION: %s\n", SRP_VERSION);
267 	strcpy(hostdata->madapter_info.srp_version, SRP_VERSION);
268 
269 	strscpy(hostdata->madapter_info.partition_name, partition_name,
270 			sizeof(hostdata->madapter_info.partition_name));
271 
272 	hostdata->madapter_info.partition_number =
273 					cpu_to_be32(partition_number);
274 
275 	hostdata->madapter_info.mad_version = cpu_to_be32(SRP_MAD_VERSION_1);
276 	hostdata->madapter_info.os_type = cpu_to_be32(SRP_MAD_OS_LINUX);
277 }
278 
279 /**
280  * ibmvscsi_reset_crq_queue() - resets a crq after a failure
281  * @queue:	crq_queue to initialize and register
282  * @hostdata:	ibmvscsi_host_data of host
283  */
ibmvscsi_reset_crq_queue(struct crq_queue * queue,struct ibmvscsi_host_data * hostdata)284 static int ibmvscsi_reset_crq_queue(struct crq_queue *queue,
285 				    struct ibmvscsi_host_data *hostdata)
286 {
287 	int rc = 0;
288 	struct vio_dev *vdev = to_vio_dev(hostdata->dev);
289 
290 	/* Close the CRQ */
291 	do {
292 		if (rc)
293 			msleep(100);
294 		rc = plpar_hcall_norets(H_FREE_CRQ, vdev->unit_address);
295 	} while ((rc == H_BUSY) || (H_IS_LONG_BUSY(rc)));
296 
297 	/* Clean out the queue */
298 	memset(queue->msgs, 0x00, PAGE_SIZE);
299 	queue->cur = 0;
300 
301 	set_adapter_info(hostdata);
302 
303 	/* And re-open it again */
304 	rc = plpar_hcall_norets(H_REG_CRQ,
305 				vdev->unit_address,
306 				queue->msg_token, PAGE_SIZE);
307 	if (rc == H_CLOSED) {
308 		/* Adapter is good, but other end is not ready */
309 		dev_warn(hostdata->dev, "Partner adapter not ready\n");
310 	} else if (rc != 0) {
311 		dev_warn(hostdata->dev, "couldn't register crq--rc 0x%x\n", rc);
312 	}
313 	return rc;
314 }
315 
316 /**
317  * ibmvscsi_init_crq_queue() - Initializes and registers CRQ with hypervisor
318  * @queue:		crq_queue to initialize and register
319  * @hostdata:		ibmvscsi_host_data of host
320  * @max_requests:	maximum requests (unused)
321  *
322  * Allocates a page for messages, maps it for dma, and registers
323  * the crq with the hypervisor.
324  * Returns zero on success.
325  */
ibmvscsi_init_crq_queue(struct crq_queue * queue,struct ibmvscsi_host_data * hostdata,int max_requests)326 static int ibmvscsi_init_crq_queue(struct crq_queue *queue,
327 				   struct ibmvscsi_host_data *hostdata,
328 				   int max_requests)
329 {
330 	int rc;
331 	int retrc;
332 	struct vio_dev *vdev = to_vio_dev(hostdata->dev);
333 
334 	queue->msgs = (struct viosrp_crq *)get_zeroed_page(GFP_KERNEL);
335 
336 	if (!queue->msgs)
337 		goto malloc_failed;
338 	queue->size = PAGE_SIZE / sizeof(*queue->msgs);
339 
340 	queue->msg_token = dma_map_single(hostdata->dev, queue->msgs,
341 					  queue->size * sizeof(*queue->msgs),
342 					  DMA_BIDIRECTIONAL);
343 
344 	if (dma_mapping_error(hostdata->dev, queue->msg_token))
345 		goto map_failed;
346 
347 	gather_partition_info();
348 	set_adapter_info(hostdata);
349 
350 	retrc = rc = plpar_hcall_norets(H_REG_CRQ,
351 				vdev->unit_address,
352 				queue->msg_token, PAGE_SIZE);
353 	if (rc == H_RESOURCE)
354 		/* maybe kexecing and resource is busy. try a reset */
355 		rc = ibmvscsi_reset_crq_queue(queue,
356 					      hostdata);
357 
358 	if (rc == H_CLOSED) {
359 		/* Adapter is good, but other end is not ready */
360 		dev_warn(hostdata->dev, "Partner adapter not ready\n");
361 		retrc = 0;
362 	} else if (rc != 0) {
363 		dev_warn(hostdata->dev, "Error %d opening adapter\n", rc);
364 		goto reg_crq_failed;
365 	}
366 
367 	queue->cur = 0;
368 	spin_lock_init(&queue->lock);
369 
370 	tasklet_init(&hostdata->srp_task, (void *)ibmvscsi_task,
371 		     (unsigned long)hostdata);
372 
373 	if (request_irq(vdev->irq,
374 			ibmvscsi_handle_event,
375 			0, "ibmvscsi", (void *)hostdata) != 0) {
376 		dev_err(hostdata->dev, "couldn't register irq 0x%x\n",
377 			vdev->irq);
378 		goto req_irq_failed;
379 	}
380 
381 	rc = vio_enable_interrupts(vdev);
382 	if (rc != 0) {
383 		dev_err(hostdata->dev, "Error %d enabling interrupts!!!\n", rc);
384 		goto req_irq_failed;
385 	}
386 
387 	return retrc;
388 
389       req_irq_failed:
390 	tasklet_kill(&hostdata->srp_task);
391 	rc = 0;
392 	do {
393 		if (rc)
394 			msleep(100);
395 		rc = plpar_hcall_norets(H_FREE_CRQ, vdev->unit_address);
396 	} while ((rc == H_BUSY) || (H_IS_LONG_BUSY(rc)));
397       reg_crq_failed:
398 	dma_unmap_single(hostdata->dev,
399 			 queue->msg_token,
400 			 queue->size * sizeof(*queue->msgs), DMA_BIDIRECTIONAL);
401       map_failed:
402 	free_page((unsigned long)queue->msgs);
403       malloc_failed:
404 	return -1;
405 }
406 
407 /**
408  * ibmvscsi_reenable_crq_queue() - reenables a crq after
409  * @queue:	crq_queue to initialize and register
410  * @hostdata:	ibmvscsi_host_data of host
411  */
ibmvscsi_reenable_crq_queue(struct crq_queue * queue,struct ibmvscsi_host_data * hostdata)412 static int ibmvscsi_reenable_crq_queue(struct crq_queue *queue,
413 				       struct ibmvscsi_host_data *hostdata)
414 {
415 	int rc = 0;
416 	struct vio_dev *vdev = to_vio_dev(hostdata->dev);
417 
418 	set_adapter_info(hostdata);
419 
420 	/* Re-enable the CRQ */
421 	do {
422 		if (rc)
423 			msleep(100);
424 		rc = plpar_hcall_norets(H_ENABLE_CRQ, vdev->unit_address);
425 	} while ((rc == H_IN_PROGRESS) || (rc == H_BUSY) || (H_IS_LONG_BUSY(rc)));
426 
427 	if (rc)
428 		dev_err(hostdata->dev, "Error %d enabling adapter\n", rc);
429 	return rc;
430 }
431 
432 /* ------------------------------------------------------------
433  * Routines for the event pool and event structs
434  */
435 /**
436  * initialize_event_pool: - Allocates and initializes the event pool for a host
437  * @pool:	event_pool to be initialized
438  * @size:	Number of events in pool
439  * @hostdata:	ibmvscsi_host_data who owns the event pool
440  *
441  * Returns zero on success.
442  */
initialize_event_pool(struct event_pool * pool,int size,struct ibmvscsi_host_data * hostdata)443 static int initialize_event_pool(struct event_pool *pool,
444 				 int size, struct ibmvscsi_host_data *hostdata)
445 {
446 	int i;
447 
448 	pool->size = size;
449 	pool->next = 0;
450 	pool->events = kcalloc(pool->size, sizeof(*pool->events), GFP_KERNEL);
451 	if (!pool->events)
452 		return -ENOMEM;
453 
454 	pool->iu_storage =
455 	    dma_alloc_coherent(hostdata->dev,
456 			       pool->size * sizeof(*pool->iu_storage),
457 			       &pool->iu_token, GFP_KERNEL);
458 	if (!pool->iu_storage) {
459 		kfree(pool->events);
460 		return -ENOMEM;
461 	}
462 
463 	for (i = 0; i < pool->size; ++i) {
464 		struct srp_event_struct *evt = &pool->events[i];
465 		memset(&evt->crq, 0x00, sizeof(evt->crq));
466 		atomic_set(&evt->free, 1);
467 		evt->crq.valid = VIOSRP_CRQ_CMD_RSP;
468 		evt->crq.IU_length = cpu_to_be16(sizeof(*evt->xfer_iu));
469 		evt->crq.IU_data_ptr = cpu_to_be64(pool->iu_token +
470 			sizeof(*evt->xfer_iu) * i);
471 		evt->xfer_iu = pool->iu_storage + i;
472 		evt->hostdata = hostdata;
473 		evt->ext_list = NULL;
474 		evt->ext_list_token = 0;
475 	}
476 
477 	return 0;
478 }
479 
480 /**
481  * release_event_pool() - Frees memory of an event pool of a host
482  * @pool:	event_pool to be released
483  * @hostdata:	ibmvscsi_host_data who owns the even pool
484  *
485  * Returns zero on success.
486  */
release_event_pool(struct event_pool * pool,struct ibmvscsi_host_data * hostdata)487 static void release_event_pool(struct event_pool *pool,
488 			       struct ibmvscsi_host_data *hostdata)
489 {
490 	int i, in_use = 0;
491 	for (i = 0; i < pool->size; ++i) {
492 		if (atomic_read(&pool->events[i].free) != 1)
493 			++in_use;
494 		if (pool->events[i].ext_list) {
495 			dma_free_coherent(hostdata->dev,
496 				  SG_ALL * sizeof(struct srp_direct_buf),
497 				  pool->events[i].ext_list,
498 				  pool->events[i].ext_list_token);
499 		}
500 	}
501 	if (in_use)
502 		dev_warn(hostdata->dev, "releasing event pool with %d "
503 			 "events still in use?\n", in_use);
504 	kfree(pool->events);
505 	dma_free_coherent(hostdata->dev,
506 			  pool->size * sizeof(*pool->iu_storage),
507 			  pool->iu_storage, pool->iu_token);
508 }
509 
510 /**
511  * valid_event_struct: - Determines if event is valid.
512  * @pool:	event_pool that contains the event
513  * @evt:	srp_event_struct to be checked for validity
514  *
515  * Returns zero if event is invalid, one otherwise.
516 */
valid_event_struct(struct event_pool * pool,struct srp_event_struct * evt)517 static int valid_event_struct(struct event_pool *pool,
518 				struct srp_event_struct *evt)
519 {
520 	int index = evt - pool->events;
521 	if (index < 0 || index >= pool->size)	/* outside of bounds */
522 		return 0;
523 	if (evt != pool->events + index)	/* unaligned */
524 		return 0;
525 	return 1;
526 }
527 
528 /**
529  * free_event_struct() - Changes status of event to "free"
530  * @pool:	event_pool that contains the event
531  * @evt:	srp_event_struct to be modified
532  */
free_event_struct(struct event_pool * pool,struct srp_event_struct * evt)533 static void free_event_struct(struct event_pool *pool,
534 				       struct srp_event_struct *evt)
535 {
536 	if (!valid_event_struct(pool, evt)) {
537 		dev_err(evt->hostdata->dev, "Freeing invalid event_struct %p "
538 			"(not in pool %p)\n", evt, pool->events);
539 		return;
540 	}
541 	if (atomic_inc_return(&evt->free) != 1) {
542 		dev_err(evt->hostdata->dev, "Freeing event_struct %p "
543 			"which is not in use!\n", evt);
544 		return;
545 	}
546 }
547 
548 /**
549  * get_event_struct() - Gets the next free event in pool
550  * @pool:	event_pool that contains the events to be searched
551  *
552  * Returns the next event in "free" state, and NULL if none are free.
553  * Note that no synchronization is done here, we assume the host_lock
554  * will syncrhonze things.
555 */
get_event_struct(struct event_pool * pool)556 static struct srp_event_struct *get_event_struct(struct event_pool *pool)
557 {
558 	int i;
559 	int poolsize = pool->size;
560 	int offset = pool->next;
561 
562 	for (i = 0; i < poolsize; i++) {
563 		offset = (offset + 1) % poolsize;
564 		if (!atomic_dec_if_positive(&pool->events[offset].free)) {
565 			pool->next = offset;
566 			return &pool->events[offset];
567 		}
568 	}
569 
570 	printk(KERN_ERR "ibmvscsi: found no event struct in pool!\n");
571 	return NULL;
572 }
573 
574 /**
575  * init_event_struct: Initialize fields in an event struct that are always
576  *                    required.
577  * @evt_struct: The event
578  * @done:       Routine to call when the event is responded to
579  * @format:     SRP or MAD format
580  * @timeout:    timeout value set in the CRQ
581  */
init_event_struct(struct srp_event_struct * evt_struct,void (* done)(struct srp_event_struct *),u8 format,int timeout)582 static void init_event_struct(struct srp_event_struct *evt_struct,
583 			      void (*done) (struct srp_event_struct *),
584 			      u8 format,
585 			      int timeout)
586 {
587 	evt_struct->cmnd = NULL;
588 	evt_struct->cmnd_done = NULL;
589 	evt_struct->sync_srp = NULL;
590 	evt_struct->crq.format = format;
591 	evt_struct->crq.timeout = cpu_to_be16(timeout);
592 	evt_struct->done = done;
593 }
594 
595 /* ------------------------------------------------------------
596  * Routines for receiving SCSI responses from the hosting partition
597  */
598 
599 /*
600  * set_srp_direction: Set the fields in the srp related to data
601  *     direction and number of buffers based on the direction in
602  *     the scsi_cmnd and the number of buffers
603  */
set_srp_direction(struct scsi_cmnd * cmd,struct srp_cmd * srp_cmd,int numbuf)604 static void set_srp_direction(struct scsi_cmnd *cmd,
605 			      struct srp_cmd *srp_cmd,
606 			      int numbuf)
607 {
608 	u8 fmt;
609 
610 	if (numbuf == 0)
611 		return;
612 
613 	if (numbuf == 1)
614 		fmt = SRP_DATA_DESC_DIRECT;
615 	else {
616 		fmt = SRP_DATA_DESC_INDIRECT;
617 		numbuf = min(numbuf, MAX_INDIRECT_BUFS);
618 
619 		if (cmd->sc_data_direction == DMA_TO_DEVICE)
620 			srp_cmd->data_out_desc_cnt = numbuf;
621 		else
622 			srp_cmd->data_in_desc_cnt = numbuf;
623 	}
624 
625 	if (cmd->sc_data_direction == DMA_TO_DEVICE)
626 		srp_cmd->buf_fmt = fmt << 4;
627 	else
628 		srp_cmd->buf_fmt = fmt;
629 }
630 
631 /**
632  * unmap_cmd_data: - Unmap data pointed in srp_cmd based on the format
633  * @cmd:	srp_cmd whose additional_data member will be unmapped
634  * @evt_struct: the event
635  * @dev:	device for which the memory is mapped
636  */
unmap_cmd_data(struct srp_cmd * cmd,struct srp_event_struct * evt_struct,struct device * dev)637 static void unmap_cmd_data(struct srp_cmd *cmd,
638 			   struct srp_event_struct *evt_struct,
639 			   struct device *dev)
640 {
641 	u8 out_fmt, in_fmt;
642 
643 	out_fmt = cmd->buf_fmt >> 4;
644 	in_fmt = cmd->buf_fmt & ((1U << 4) - 1);
645 
646 	if (out_fmt == SRP_NO_DATA_DESC && in_fmt == SRP_NO_DATA_DESC)
647 		return;
648 
649 	if (evt_struct->cmnd)
650 		scsi_dma_unmap(evt_struct->cmnd);
651 }
652 
map_sg_list(struct scsi_cmnd * cmd,int nseg,struct srp_direct_buf * md)653 static int map_sg_list(struct scsi_cmnd *cmd, int nseg,
654 		       struct srp_direct_buf *md)
655 {
656 	int i;
657 	struct scatterlist *sg;
658 	u64 total_length = 0;
659 
660 	scsi_for_each_sg(cmd, sg, nseg, i) {
661 		struct srp_direct_buf *descr = md + i;
662 		descr->va = cpu_to_be64(sg_dma_address(sg));
663 		descr->len = cpu_to_be32(sg_dma_len(sg));
664 		descr->key = 0;
665 		total_length += sg_dma_len(sg);
666  	}
667 	return total_length;
668 }
669 
670 /**
671  * map_sg_data: - Maps dma for a scatterlist and initializes descriptor fields
672  * @cmd:	struct scsi_cmnd with the scatterlist
673  * @evt_struct:	struct srp_event_struct to map
674  * @srp_cmd:	srp_cmd that contains the memory descriptor
675  * @dev:	device for which to map dma memory
676  *
677  * Called by map_data_for_srp_cmd() when building srp cmd from scsi cmd.
678  * Returns 1 on success.
679 */
map_sg_data(struct scsi_cmnd * cmd,struct srp_event_struct * evt_struct,struct srp_cmd * srp_cmd,struct device * dev)680 static int map_sg_data(struct scsi_cmnd *cmd,
681 		       struct srp_event_struct *evt_struct,
682 		       struct srp_cmd *srp_cmd, struct device *dev)
683 {
684 
685 	int sg_mapped;
686 	u64 total_length = 0;
687 	struct srp_direct_buf *data =
688 		(struct srp_direct_buf *) srp_cmd->add_data;
689 	struct srp_indirect_buf *indirect =
690 		(struct srp_indirect_buf *) data;
691 
692 	sg_mapped = scsi_dma_map(cmd);
693 	if (!sg_mapped)
694 		return 1;
695 	else if (sg_mapped < 0)
696 		return 0;
697 
698 	set_srp_direction(cmd, srp_cmd, sg_mapped);
699 
700 	/* special case; we can use a single direct descriptor */
701 	if (sg_mapped == 1) {
702 		map_sg_list(cmd, sg_mapped, data);
703 		return 1;
704 	}
705 
706 	indirect->table_desc.va = 0;
707 	indirect->table_desc.len = cpu_to_be32(sg_mapped *
708 					       sizeof(struct srp_direct_buf));
709 	indirect->table_desc.key = 0;
710 
711 	if (sg_mapped <= MAX_INDIRECT_BUFS) {
712 		total_length = map_sg_list(cmd, sg_mapped,
713 					   &indirect->desc_list[0]);
714 		indirect->len = cpu_to_be32(total_length);
715 		return 1;
716 	}
717 
718 	/* get indirect table */
719 	if (!evt_struct->ext_list) {
720 		evt_struct->ext_list = dma_alloc_coherent(dev,
721 					   SG_ALL * sizeof(struct srp_direct_buf),
722 					   &evt_struct->ext_list_token, 0);
723 		if (!evt_struct->ext_list) {
724 			if (!firmware_has_feature(FW_FEATURE_CMO))
725 				sdev_printk(KERN_ERR, cmd->device,
726 				            "Can't allocate memory "
727 				            "for indirect table\n");
728 			scsi_dma_unmap(cmd);
729 			return 0;
730 		}
731 	}
732 
733 	total_length = map_sg_list(cmd, sg_mapped, evt_struct->ext_list);
734 
735 	indirect->len = cpu_to_be32(total_length);
736 	indirect->table_desc.va = cpu_to_be64(evt_struct->ext_list_token);
737 	indirect->table_desc.len = cpu_to_be32(sg_mapped *
738 					       sizeof(indirect->desc_list[0]));
739 	memcpy(indirect->desc_list, evt_struct->ext_list,
740 	       MAX_INDIRECT_BUFS * sizeof(struct srp_direct_buf));
741  	return 1;
742 }
743 
744 /**
745  * map_data_for_srp_cmd: - Calls functions to map data for srp cmds
746  * @cmd:	struct scsi_cmnd with the memory to be mapped
747  * @evt_struct:	struct srp_event_struct to map
748  * @srp_cmd:	srp_cmd that contains the memory descriptor
749  * @dev:	dma device for which to map dma memory
750  *
751  * Called by scsi_cmd_to_srp_cmd() when converting scsi cmds to srp cmds
752  * Returns 1 on success.
753 */
map_data_for_srp_cmd(struct scsi_cmnd * cmd,struct srp_event_struct * evt_struct,struct srp_cmd * srp_cmd,struct device * dev)754 static int map_data_for_srp_cmd(struct scsi_cmnd *cmd,
755 				struct srp_event_struct *evt_struct,
756 				struct srp_cmd *srp_cmd, struct device *dev)
757 {
758 	switch (cmd->sc_data_direction) {
759 	case DMA_FROM_DEVICE:
760 	case DMA_TO_DEVICE:
761 		break;
762 	case DMA_NONE:
763 		return 1;
764 	case DMA_BIDIRECTIONAL:
765 		sdev_printk(KERN_ERR, cmd->device,
766 			    "Can't map DMA_BIDIRECTIONAL to read/write\n");
767 		return 0;
768 	default:
769 		sdev_printk(KERN_ERR, cmd->device,
770 			    "Unknown data direction 0x%02x; can't map!\n",
771 			    cmd->sc_data_direction);
772 		return 0;
773 	}
774 
775 	return map_sg_data(cmd, evt_struct, srp_cmd, dev);
776 }
777 
778 /**
779  * purge_requests: Our virtual adapter just shut down.  purge any sent requests
780  * @hostdata:    the adapter
781  * @error_code:  error code to return as the 'result'
782  */
purge_requests(struct ibmvscsi_host_data * hostdata,int error_code)783 static void purge_requests(struct ibmvscsi_host_data *hostdata, int error_code)
784 {
785 	struct srp_event_struct *evt;
786 	unsigned long flags;
787 
788 	spin_lock_irqsave(hostdata->host->host_lock, flags);
789 	while (!list_empty(&hostdata->sent)) {
790 		evt = list_first_entry(&hostdata->sent, struct srp_event_struct, list);
791 		list_del(&evt->list);
792 		timer_delete(&evt->timer);
793 
794 		spin_unlock_irqrestore(hostdata->host->host_lock, flags);
795 		if (evt->cmnd) {
796 			evt->cmnd->result = (error_code << 16);
797 			unmap_cmd_data(&evt->iu.srp.cmd, evt,
798 				       evt->hostdata->dev);
799 			if (evt->cmnd_done)
800 				evt->cmnd_done(evt->cmnd);
801 		} else if (evt->done && evt->crq.format != VIOSRP_MAD_FORMAT &&
802 			   evt->iu.srp.login_req.opcode != SRP_LOGIN_REQ)
803 			evt->done(evt);
804 		free_event_struct(&evt->hostdata->pool, evt);
805 		spin_lock_irqsave(hostdata->host->host_lock, flags);
806 	}
807 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
808 }
809 
810 /**
811  * ibmvscsi_set_request_limit - Set the adapter request_limit in response to
812  * an adapter failure, reset, or SRP Login. Done under host lock to prevent
813  * race with SCSI command submission.
814  * @hostdata:	adapter to adjust
815  * @limit:	new request limit
816  */
ibmvscsi_set_request_limit(struct ibmvscsi_host_data * hostdata,int limit)817 static void ibmvscsi_set_request_limit(struct ibmvscsi_host_data *hostdata, int limit)
818 {
819 	unsigned long flags;
820 
821 	spin_lock_irqsave(hostdata->host->host_lock, flags);
822 	atomic_set(&hostdata->request_limit, limit);
823 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
824 }
825 
826 /**
827  * ibmvscsi_reset_host - Reset the connection to the server
828  * @hostdata:	struct ibmvscsi_host_data to reset
829 */
ibmvscsi_reset_host(struct ibmvscsi_host_data * hostdata)830 static void ibmvscsi_reset_host(struct ibmvscsi_host_data *hostdata)
831 {
832 	scsi_block_requests(hostdata->host);
833 	ibmvscsi_set_request_limit(hostdata, 0);
834 
835 	purge_requests(hostdata, DID_ERROR);
836 	hostdata->action = IBMVSCSI_HOST_ACTION_RESET;
837 	wake_up(&hostdata->work_wait_q);
838 }
839 
840 /**
841  * ibmvscsi_timeout - Internal command timeout handler
842  * @t:	struct srp_event_struct that timed out
843  *
844  * Called when an internally generated command times out
845 */
ibmvscsi_timeout(struct timer_list * t)846 static void ibmvscsi_timeout(struct timer_list *t)
847 {
848 	struct srp_event_struct *evt_struct = timer_container_of(evt_struct,
849 								 t, timer);
850 	struct ibmvscsi_host_data *hostdata = evt_struct->hostdata;
851 
852 	dev_err(hostdata->dev, "Command timed out (%x). Resetting connection\n",
853 		evt_struct->iu.srp.cmd.opcode);
854 
855 	ibmvscsi_reset_host(hostdata);
856 }
857 
858 
859 /* ------------------------------------------------------------
860  * Routines for sending and receiving SRPs
861  */
862 /**
863  * ibmvscsi_send_srp_event: - Transforms event to u64 array and calls send_crq()
864  * @evt_struct:	evt_struct to be sent
865  * @hostdata:	ibmvscsi_host_data of host
866  * @timeout:	timeout in seconds - 0 means do not time command
867  *
868  * Returns the value returned from ibmvscsi_send_crq(). (Zero for success)
869  * Note that this routine assumes that host_lock is held for synchronization
870 */
ibmvscsi_send_srp_event(struct srp_event_struct * evt_struct,struct ibmvscsi_host_data * hostdata,unsigned long timeout)871 static int ibmvscsi_send_srp_event(struct srp_event_struct *evt_struct,
872 				   struct ibmvscsi_host_data *hostdata,
873 				   unsigned long timeout)
874 {
875 	__be64 *crq_as_u64 = (__be64 *)&evt_struct->crq;
876 	int request_status = 0;
877 	int rc;
878 	int srp_req = 0;
879 
880 	/* If we have exhausted our request limit, just fail this request,
881 	 * unless it is for a reset or abort.
882 	 * Note that there are rare cases involving driver generated requests
883 	 * (such as task management requests) that the mid layer may think we
884 	 * can handle more requests (can_queue) when we actually can't
885 	 */
886 	if (evt_struct->crq.format == VIOSRP_SRP_FORMAT) {
887 		srp_req = 1;
888 		request_status =
889 			atomic_dec_if_positive(&hostdata->request_limit);
890 		/* If request limit was -1 when we started, it is now even
891 		 * less than that
892 		 */
893 		if (request_status < -1)
894 			goto send_error;
895 		/* Otherwise, we may have run out of requests. */
896 		/* If request limit was 0 when we started the adapter is in the
897 		 * process of performing a login with the server adapter, or
898 		 * we may have run out of requests.
899 		 */
900 		else if (request_status == -1 &&
901 		         evt_struct->iu.srp.login_req.opcode != SRP_LOGIN_REQ)
902 			goto send_busy;
903 		/* Abort and reset calls should make it through.
904 		 * Nothing except abort and reset should use the last two
905 		 * slots unless we had two or less to begin with.
906 		 */
907 		else if (request_status < 2 &&
908 		         evt_struct->iu.srp.cmd.opcode != SRP_TSK_MGMT) {
909 			/* In the case that we have less than two requests
910 			 * available, check the server limit as a combination
911 			 * of the request limit and the number of requests
912 			 * in-flight (the size of the send list).  If the
913 			 * server limit is greater than 2, return busy so
914 			 * that the last two are reserved for reset and abort.
915 			 */
916 			int server_limit = request_status;
917 			struct srp_event_struct *tmp_evt;
918 
919 			list_for_each_entry(tmp_evt, &hostdata->sent, list) {
920 				server_limit++;
921 			}
922 
923 			if (server_limit > 2)
924 				goto send_busy;
925 		}
926 	}
927 
928 	/* Copy the IU into the transfer area */
929 	*evt_struct->xfer_iu = evt_struct->iu;
930 	evt_struct->xfer_iu->srp.rsp.tag = (u64)evt_struct;
931 
932 	/* Add this to the sent list.  We need to do this
933 	 * before we actually send
934 	 * in case it comes back REALLY fast
935 	 */
936 	list_add_tail(&evt_struct->list, &hostdata->sent);
937 
938 	timer_setup(&evt_struct->timer, ibmvscsi_timeout, 0);
939 	if (timeout) {
940 		evt_struct->timer.expires = jiffies + (timeout * HZ);
941 		add_timer(&evt_struct->timer);
942 	}
943 
944 	rc = ibmvscsi_send_crq(hostdata, be64_to_cpu(crq_as_u64[0]),
945 			       be64_to_cpu(crq_as_u64[1]));
946 	if (rc != 0) {
947 		list_del(&evt_struct->list);
948 		timer_delete(&evt_struct->timer);
949 
950 		/* If send_crq returns H_CLOSED, return SCSI_MLQUEUE_HOST_BUSY.
951 		 * Firmware will send a CRQ with a transport event (0xFF) to
952 		 * tell this client what has happened to the transport.  This
953 		 * will be handled in ibmvscsi_handle_crq()
954 		 */
955 		if (rc == H_CLOSED) {
956 			dev_warn(hostdata->dev, "send warning. "
957 			         "Receive queue closed, will retry.\n");
958 			goto send_busy;
959 		}
960 		dev_err(hostdata->dev, "send error %d\n", rc);
961 		if (srp_req)
962 			atomic_inc(&hostdata->request_limit);
963 		goto send_error;
964 	}
965 
966 	return 0;
967 
968  send_busy:
969 	unmap_cmd_data(&evt_struct->iu.srp.cmd, evt_struct, hostdata->dev);
970 
971 	free_event_struct(&hostdata->pool, evt_struct);
972 	if (srp_req && request_status != -1)
973 		atomic_inc(&hostdata->request_limit);
974 	return SCSI_MLQUEUE_HOST_BUSY;
975 
976  send_error:
977 	unmap_cmd_data(&evt_struct->iu.srp.cmd, evt_struct, hostdata->dev);
978 
979 	if (evt_struct->cmnd != NULL) {
980 		evt_struct->cmnd->result = DID_ERROR << 16;
981 		evt_struct->cmnd_done(evt_struct->cmnd);
982 	} else if (evt_struct->done)
983 		evt_struct->done(evt_struct);
984 
985 	free_event_struct(&hostdata->pool, evt_struct);
986 	return 0;
987 }
988 
989 /**
990  * handle_cmd_rsp: -  Handle responses from commands
991  * @evt_struct:	srp_event_struct to be handled
992  *
993  * Used as a callback by when sending scsi cmds.
994  * Gets called by ibmvscsi_handle_crq()
995 */
handle_cmd_rsp(struct srp_event_struct * evt_struct)996 static void handle_cmd_rsp(struct srp_event_struct *evt_struct)
997 {
998 	struct srp_rsp *rsp = &evt_struct->xfer_iu->srp.rsp;
999 	struct scsi_cmnd *cmnd = evt_struct->cmnd;
1000 
1001 	if (unlikely(rsp->opcode != SRP_RSP)) {
1002 		if (printk_ratelimit())
1003 			dev_warn(evt_struct->hostdata->dev,
1004 				 "bad SRP RSP type %#02x\n", rsp->opcode);
1005 	}
1006 
1007 	if (cmnd) {
1008 		cmnd->result |= rsp->status;
1009 		if (scsi_status_is_check_condition(cmnd->result))
1010 			memcpy(cmnd->sense_buffer,
1011 			       rsp->data,
1012 			       be32_to_cpu(rsp->sense_data_len));
1013 		unmap_cmd_data(&evt_struct->iu.srp.cmd,
1014 			       evt_struct,
1015 			       evt_struct->hostdata->dev);
1016 
1017 		if (rsp->flags & SRP_RSP_FLAG_DOOVER)
1018 			scsi_set_resid(cmnd,
1019 				       be32_to_cpu(rsp->data_out_res_cnt));
1020 		else if (rsp->flags & SRP_RSP_FLAG_DIOVER)
1021 			scsi_set_resid(cmnd, be32_to_cpu(rsp->data_in_res_cnt));
1022 	}
1023 
1024 	if (evt_struct->cmnd_done)
1025 		evt_struct->cmnd_done(cmnd);
1026 }
1027 
1028 /**
1029  * lun_from_dev: - Returns the lun of the scsi device
1030  * @dev:	struct scsi_device
1031  *
1032 */
lun_from_dev(struct scsi_device * dev)1033 static inline u16 lun_from_dev(struct scsi_device *dev)
1034 {
1035 	return (0x2 << 14) | (dev->id << 8) | (dev->channel << 5) | dev->lun;
1036 }
1037 
1038 /**
1039  * ibmvscsi_queuecommand_lck() - The queuecommand function of the scsi template
1040  * @cmnd:	struct scsi_cmnd to be executed
1041  * @done:	Callback function to be called when cmd is completed
1042 */
ibmvscsi_queuecommand_lck(struct scsi_cmnd * cmnd)1043 static int ibmvscsi_queuecommand_lck(struct scsi_cmnd *cmnd)
1044 {
1045 	void (*done)(struct scsi_cmnd *) = scsi_done;
1046 	struct srp_cmd *srp_cmd;
1047 	struct srp_event_struct *evt_struct;
1048 	struct srp_indirect_buf *indirect;
1049 	struct ibmvscsi_host_data *hostdata = shost_priv(cmnd->device->host);
1050 	u16 lun = lun_from_dev(cmnd->device);
1051 	u8 out_fmt, in_fmt;
1052 
1053 	cmnd->result = (DID_OK << 16);
1054 	evt_struct = get_event_struct(&hostdata->pool);
1055 	if (!evt_struct)
1056 		return SCSI_MLQUEUE_HOST_BUSY;
1057 
1058 	/* Set up the actual SRP IU */
1059 	BUILD_BUG_ON(sizeof(evt_struct->iu.srp) != SRP_MAX_IU_LEN);
1060 	memset(&evt_struct->iu.srp, 0x00, sizeof(evt_struct->iu.srp));
1061 	srp_cmd = &evt_struct->iu.srp.cmd;
1062 	srp_cmd->opcode = SRP_CMD;
1063 	memcpy(srp_cmd->cdb, cmnd->cmnd, sizeof(srp_cmd->cdb));
1064 	int_to_scsilun(lun, &srp_cmd->lun);
1065 
1066 	if (!map_data_for_srp_cmd(cmnd, evt_struct, srp_cmd, hostdata->dev)) {
1067 		if (!firmware_has_feature(FW_FEATURE_CMO))
1068 			sdev_printk(KERN_ERR, cmnd->device,
1069 			            "couldn't convert cmd to srp_cmd\n");
1070 		free_event_struct(&hostdata->pool, evt_struct);
1071 		return SCSI_MLQUEUE_HOST_BUSY;
1072 	}
1073 
1074 	init_event_struct(evt_struct,
1075 			  handle_cmd_rsp,
1076 			  VIOSRP_SRP_FORMAT,
1077 			  scsi_cmd_to_rq(cmnd)->timeout / HZ);
1078 
1079 	evt_struct->cmnd = cmnd;
1080 	evt_struct->cmnd_done = done;
1081 
1082 	/* Fix up dma address of the buffer itself */
1083 	indirect = (struct srp_indirect_buf *) srp_cmd->add_data;
1084 	out_fmt = srp_cmd->buf_fmt >> 4;
1085 	in_fmt = srp_cmd->buf_fmt & ((1U << 4) - 1);
1086 	if ((in_fmt == SRP_DATA_DESC_INDIRECT ||
1087 	     out_fmt == SRP_DATA_DESC_INDIRECT) &&
1088 	    indirect->table_desc.va == 0) {
1089 		indirect->table_desc.va =
1090 			cpu_to_be64(be64_to_cpu(evt_struct->crq.IU_data_ptr) +
1091 			offsetof(struct srp_cmd, add_data) +
1092 			offsetof(struct srp_indirect_buf, desc_list));
1093 	}
1094 
1095 	return ibmvscsi_send_srp_event(evt_struct, hostdata, 0);
1096 }
1097 
DEF_SCSI_QCMD(ibmvscsi_queuecommand)1098 static DEF_SCSI_QCMD(ibmvscsi_queuecommand)
1099 
1100 /* ------------------------------------------------------------
1101  * Routines for driver initialization
1102  */
1103 
1104 /**
1105  * map_persist_bufs: - Pre-map persistent data for adapter logins
1106  * @hostdata:   ibmvscsi_host_data of host
1107  *
1108  * Map the capabilities and adapter info DMA buffers to avoid runtime failures.
1109  * Return 1 on error, 0 on success.
1110  */
1111 static int map_persist_bufs(struct ibmvscsi_host_data *hostdata)
1112 {
1113 
1114 	hostdata->caps_addr = dma_map_single(hostdata->dev, &hostdata->caps,
1115 					     sizeof(hostdata->caps), DMA_BIDIRECTIONAL);
1116 
1117 	if (dma_mapping_error(hostdata->dev, hostdata->caps_addr)) {
1118 		dev_err(hostdata->dev, "Unable to map capabilities buffer!\n");
1119 		return 1;
1120 	}
1121 
1122 	hostdata->adapter_info_addr = dma_map_single(hostdata->dev,
1123 						     &hostdata->madapter_info,
1124 						     sizeof(hostdata->madapter_info),
1125 						     DMA_BIDIRECTIONAL);
1126 	if (dma_mapping_error(hostdata->dev, hostdata->adapter_info_addr)) {
1127 		dev_err(hostdata->dev, "Unable to map adapter info buffer!\n");
1128 		dma_unmap_single(hostdata->dev, hostdata->caps_addr,
1129 				 sizeof(hostdata->caps), DMA_BIDIRECTIONAL);
1130 		return 1;
1131 	}
1132 
1133 	return 0;
1134 }
1135 
1136 /**
1137  * unmap_persist_bufs: - Unmap persistent data needed for adapter logins
1138  * @hostdata:   ibmvscsi_host_data of host
1139  *
1140  * Unmap the capabilities and adapter info DMA buffers
1141  */
unmap_persist_bufs(struct ibmvscsi_host_data * hostdata)1142 static void unmap_persist_bufs(struct ibmvscsi_host_data *hostdata)
1143 {
1144 	dma_unmap_single(hostdata->dev, hostdata->caps_addr,
1145 			 sizeof(hostdata->caps), DMA_BIDIRECTIONAL);
1146 
1147 	dma_unmap_single(hostdata->dev, hostdata->adapter_info_addr,
1148 			 sizeof(hostdata->madapter_info), DMA_BIDIRECTIONAL);
1149 }
1150 
1151 /**
1152  * login_rsp: - Handle response to SRP login request
1153  * @evt_struct:	srp_event_struct with the response
1154  *
1155  * Used as a "done" callback by when sending srp_login. Gets called
1156  * by ibmvscsi_handle_crq()
1157 */
login_rsp(struct srp_event_struct * evt_struct)1158 static void login_rsp(struct srp_event_struct *evt_struct)
1159 {
1160 	struct ibmvscsi_host_data *hostdata = evt_struct->hostdata;
1161 	switch (evt_struct->xfer_iu->srp.login_rsp.opcode) {
1162 	case SRP_LOGIN_RSP:	/* it worked! */
1163 		break;
1164 	case SRP_LOGIN_REJ:	/* refused! */
1165 		dev_info(hostdata->dev, "SRP_LOGIN_REJ reason %u\n",
1166 			 evt_struct->xfer_iu->srp.login_rej.reason);
1167 		/* Login failed.  */
1168 		ibmvscsi_set_request_limit(hostdata, -1);
1169 		return;
1170 	default:
1171 		dev_err(hostdata->dev, "Invalid login response typecode 0x%02x!\n",
1172 			evt_struct->xfer_iu->srp.login_rsp.opcode);
1173 		/* Login failed.  */
1174 		ibmvscsi_set_request_limit(hostdata, -1);
1175 		return;
1176 	}
1177 
1178 	dev_info(hostdata->dev, "SRP_LOGIN succeeded\n");
1179 	hostdata->client_migrated = 0;
1180 
1181 	/* Now we know what the real request-limit is.
1182 	 * This value is set rather than added to request_limit because
1183 	 * request_limit could have been set to -1 by this client.
1184 	 */
1185 	ibmvscsi_set_request_limit(hostdata,
1186 		   be32_to_cpu(evt_struct->xfer_iu->srp.login_rsp.req_lim_delta));
1187 
1188 	/* If we had any pending I/Os, kick them */
1189 	hostdata->action = IBMVSCSI_HOST_ACTION_UNBLOCK;
1190 	wake_up(&hostdata->work_wait_q);
1191 }
1192 
1193 /**
1194  * send_srp_login: - Sends the srp login
1195  * @hostdata:	ibmvscsi_host_data of host
1196  *
1197  * Returns zero if successful.
1198 */
send_srp_login(struct ibmvscsi_host_data * hostdata)1199 static int send_srp_login(struct ibmvscsi_host_data *hostdata)
1200 {
1201 	int rc;
1202 	unsigned long flags;
1203 	struct srp_login_req *login;
1204 	struct srp_event_struct *evt_struct = get_event_struct(&hostdata->pool);
1205 
1206 	BUG_ON(!evt_struct);
1207 	init_event_struct(evt_struct, login_rsp,
1208 			  VIOSRP_SRP_FORMAT, login_timeout);
1209 
1210 	login = &evt_struct->iu.srp.login_req;
1211 	memset(login, 0, sizeof(*login));
1212 	login->opcode = SRP_LOGIN_REQ;
1213 	login->req_it_iu_len = cpu_to_be32(sizeof(union srp_iu));
1214 	login->req_buf_fmt = cpu_to_be16(SRP_BUF_FORMAT_DIRECT |
1215 					 SRP_BUF_FORMAT_INDIRECT);
1216 
1217 	/* Start out with a request limit of 0, since this is negotiated in
1218 	 * the login request we are just sending and login requests always
1219 	 * get sent by the driver regardless of request_limit.
1220 	 */
1221 	ibmvscsi_set_request_limit(hostdata, 0);
1222 
1223 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1224 	rc = ibmvscsi_send_srp_event(evt_struct, hostdata, login_timeout * 2);
1225 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1226 	dev_info(hostdata->dev, "sent SRP login\n");
1227 	return rc;
1228 };
1229 
1230 /**
1231  * capabilities_rsp: - Handle response to MAD adapter capabilities request
1232  * @evt_struct:	srp_event_struct with the response
1233  *
1234  * Used as a "done" callback by when sending adapter_info.
1235  */
capabilities_rsp(struct srp_event_struct * evt_struct)1236 static void capabilities_rsp(struct srp_event_struct *evt_struct)
1237 {
1238 	struct ibmvscsi_host_data *hostdata = evt_struct->hostdata;
1239 
1240 	if (evt_struct->xfer_iu->mad.capabilities.common.status) {
1241 		dev_err(hostdata->dev, "error 0x%X getting capabilities info\n",
1242 			evt_struct->xfer_iu->mad.capabilities.common.status);
1243 	} else {
1244 		if (hostdata->caps.migration.common.server_support !=
1245 		    cpu_to_be16(SERVER_SUPPORTS_CAP))
1246 			dev_info(hostdata->dev, "Partition migration not supported\n");
1247 
1248 		if (client_reserve) {
1249 			if (hostdata->caps.reserve.common.server_support ==
1250 			    cpu_to_be16(SERVER_SUPPORTS_CAP))
1251 				dev_info(hostdata->dev, "Client reserve enabled\n");
1252 			else
1253 				dev_info(hostdata->dev, "Client reserve not supported\n");
1254 		}
1255 	}
1256 
1257 	send_srp_login(hostdata);
1258 }
1259 
1260 /**
1261  * send_mad_capabilities: - Sends the mad capabilities request
1262  *      and stores the result so it can be retrieved with
1263  * @hostdata:	ibmvscsi_host_data of host
1264  */
send_mad_capabilities(struct ibmvscsi_host_data * hostdata)1265 static void send_mad_capabilities(struct ibmvscsi_host_data *hostdata)
1266 {
1267 	struct viosrp_capabilities *req;
1268 	struct srp_event_struct *evt_struct;
1269 	unsigned long flags;
1270 	struct device_node *of_node = hostdata->dev->of_node;
1271 	const char *location;
1272 
1273 	evt_struct = get_event_struct(&hostdata->pool);
1274 	BUG_ON(!evt_struct);
1275 
1276 	init_event_struct(evt_struct, capabilities_rsp,
1277 			  VIOSRP_MAD_FORMAT, info_timeout);
1278 
1279 	req = &evt_struct->iu.mad.capabilities;
1280 	memset(req, 0, sizeof(*req));
1281 
1282 	hostdata->caps.flags = cpu_to_be32(CAP_LIST_SUPPORTED);
1283 	if (hostdata->client_migrated)
1284 		hostdata->caps.flags |= cpu_to_be32(CLIENT_MIGRATED);
1285 
1286 	strscpy(hostdata->caps.name, dev_name(&hostdata->host->shost_gendev),
1287 		sizeof(hostdata->caps.name));
1288 
1289 	location = of_get_property(of_node, "ibm,loc-code", NULL);
1290 	location = location ? location : dev_name(hostdata->dev);
1291 	strscpy(hostdata->caps.loc, location, sizeof(hostdata->caps.loc));
1292 
1293 	req->common.type = cpu_to_be32(VIOSRP_CAPABILITIES_TYPE);
1294 	req->buffer = cpu_to_be64(hostdata->caps_addr);
1295 
1296 	hostdata->caps.migration.common.cap_type =
1297 				cpu_to_be32(MIGRATION_CAPABILITIES);
1298 	hostdata->caps.migration.common.length =
1299 				cpu_to_be16(sizeof(hostdata->caps.migration));
1300 	hostdata->caps.migration.common.server_support =
1301 				cpu_to_be16(SERVER_SUPPORTS_CAP);
1302 	hostdata->caps.migration.ecl = cpu_to_be32(1);
1303 
1304 	if (client_reserve) {
1305 		hostdata->caps.reserve.common.cap_type =
1306 					cpu_to_be32(RESERVATION_CAPABILITIES);
1307 		hostdata->caps.reserve.common.length =
1308 				cpu_to_be16(sizeof(hostdata->caps.reserve));
1309 		hostdata->caps.reserve.common.server_support =
1310 				cpu_to_be16(SERVER_SUPPORTS_CAP);
1311 		hostdata->caps.reserve.type =
1312 				cpu_to_be32(CLIENT_RESERVE_SCSI_2);
1313 		req->common.length =
1314 				cpu_to_be16(sizeof(hostdata->caps));
1315 	} else
1316 		req->common.length = cpu_to_be16(sizeof(hostdata->caps) -
1317 						sizeof(hostdata->caps.reserve));
1318 
1319 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1320 	if (ibmvscsi_send_srp_event(evt_struct, hostdata, info_timeout * 2))
1321 		dev_err(hostdata->dev, "couldn't send CAPABILITIES_REQ!\n");
1322 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1323 };
1324 
1325 /**
1326  * fast_fail_rsp: - Handle response to MAD enable fast fail
1327  * @evt_struct:	srp_event_struct with the response
1328  *
1329  * Used as a "done" callback by when sending enable fast fail. Gets called
1330  * by ibmvscsi_handle_crq()
1331  */
fast_fail_rsp(struct srp_event_struct * evt_struct)1332 static void fast_fail_rsp(struct srp_event_struct *evt_struct)
1333 {
1334 	struct ibmvscsi_host_data *hostdata = evt_struct->hostdata;
1335 	u16 status = be16_to_cpu(evt_struct->xfer_iu->mad.fast_fail.common.status);
1336 
1337 	if (status == VIOSRP_MAD_NOT_SUPPORTED)
1338 		dev_err(hostdata->dev, "fast_fail not supported in server\n");
1339 	else if (status == VIOSRP_MAD_FAILED)
1340 		dev_err(hostdata->dev, "fast_fail request failed\n");
1341 	else if (status != VIOSRP_MAD_SUCCESS)
1342 		dev_err(hostdata->dev, "error 0x%X enabling fast_fail\n", status);
1343 
1344 	send_mad_capabilities(hostdata);
1345 }
1346 
1347 /**
1348  * enable_fast_fail() - Start host initialization
1349  * @hostdata:	ibmvscsi_host_data of host
1350  *
1351  * Returns zero if successful.
1352  */
enable_fast_fail(struct ibmvscsi_host_data * hostdata)1353 static int enable_fast_fail(struct ibmvscsi_host_data *hostdata)
1354 {
1355 	int rc;
1356 	unsigned long flags;
1357 	struct viosrp_fast_fail *fast_fail_mad;
1358 	struct srp_event_struct *evt_struct;
1359 
1360 	if (!fast_fail) {
1361 		send_mad_capabilities(hostdata);
1362 		return 0;
1363 	}
1364 
1365 	evt_struct = get_event_struct(&hostdata->pool);
1366 	BUG_ON(!evt_struct);
1367 
1368 	init_event_struct(evt_struct, fast_fail_rsp, VIOSRP_MAD_FORMAT, info_timeout);
1369 
1370 	fast_fail_mad = &evt_struct->iu.mad.fast_fail;
1371 	memset(fast_fail_mad, 0, sizeof(*fast_fail_mad));
1372 	fast_fail_mad->common.type = cpu_to_be32(VIOSRP_ENABLE_FAST_FAIL);
1373 	fast_fail_mad->common.length = cpu_to_be16(sizeof(*fast_fail_mad));
1374 
1375 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1376 	rc = ibmvscsi_send_srp_event(evt_struct, hostdata, info_timeout * 2);
1377 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1378 	return rc;
1379 }
1380 
1381 /**
1382  * adapter_info_rsp: - Handle response to MAD adapter info request
1383  * @evt_struct:	srp_event_struct with the response
1384  *
1385  * Used as a "done" callback by when sending adapter_info. Gets called
1386  * by ibmvscsi_handle_crq()
1387 */
adapter_info_rsp(struct srp_event_struct * evt_struct)1388 static void adapter_info_rsp(struct srp_event_struct *evt_struct)
1389 {
1390 	struct ibmvscsi_host_data *hostdata = evt_struct->hostdata;
1391 
1392 	if (evt_struct->xfer_iu->mad.adapter_info.common.status) {
1393 		dev_err(hostdata->dev, "error %d getting adapter info\n",
1394 			evt_struct->xfer_iu->mad.adapter_info.common.status);
1395 	} else {
1396 		dev_info(hostdata->dev, "host srp version: %s, "
1397 			 "host partition %s (%d), OS %d, max io %u\n",
1398 			 hostdata->madapter_info.srp_version,
1399 			 hostdata->madapter_info.partition_name,
1400 			 be32_to_cpu(hostdata->madapter_info.partition_number),
1401 			 be32_to_cpu(hostdata->madapter_info.os_type),
1402 			 be32_to_cpu(hostdata->madapter_info.port_max_txu[0]));
1403 
1404 		if (hostdata->madapter_info.port_max_txu[0])
1405 			hostdata->host->max_sectors =
1406 				be32_to_cpu(hostdata->madapter_info.port_max_txu[0]) >> 9;
1407 
1408 		if (be32_to_cpu(hostdata->madapter_info.os_type) == SRP_MAD_OS_AIX &&
1409 		    strcmp(hostdata->madapter_info.srp_version, "1.6a") <= 0) {
1410 			dev_err(hostdata->dev, "host (Ver. %s) doesn't support large transfers\n",
1411 				hostdata->madapter_info.srp_version);
1412 			dev_err(hostdata->dev, "limiting scatterlists to %d\n",
1413 				MAX_INDIRECT_BUFS);
1414 			hostdata->host->sg_tablesize = MAX_INDIRECT_BUFS;
1415 		}
1416 
1417 		if (be32_to_cpu(hostdata->madapter_info.os_type) == SRP_MAD_OS_AIX) {
1418 			enable_fast_fail(hostdata);
1419 			return;
1420 		}
1421 	}
1422 
1423 	send_srp_login(hostdata);
1424 }
1425 
1426 /**
1427  * send_mad_adapter_info: - Sends the mad adapter info request
1428  *      and stores the result so it can be retrieved with
1429  *      sysfs.  We COULD consider causing a failure if the
1430  *      returned SRP version doesn't match ours.
1431  * @hostdata:	ibmvscsi_host_data of host
1432  *
1433  * Returns zero if successful.
1434 */
send_mad_adapter_info(struct ibmvscsi_host_data * hostdata)1435 static void send_mad_adapter_info(struct ibmvscsi_host_data *hostdata)
1436 {
1437 	struct viosrp_adapter_info *req;
1438 	struct srp_event_struct *evt_struct;
1439 	unsigned long flags;
1440 
1441 	evt_struct = get_event_struct(&hostdata->pool);
1442 	BUG_ON(!evt_struct);
1443 
1444 	init_event_struct(evt_struct,
1445 			  adapter_info_rsp,
1446 			  VIOSRP_MAD_FORMAT,
1447 			  info_timeout);
1448 
1449 	req = &evt_struct->iu.mad.adapter_info;
1450 	memset(req, 0x00, sizeof(*req));
1451 
1452 	req->common.type = cpu_to_be32(VIOSRP_ADAPTER_INFO_TYPE);
1453 	req->common.length = cpu_to_be16(sizeof(hostdata->madapter_info));
1454 	req->buffer = cpu_to_be64(hostdata->adapter_info_addr);
1455 
1456 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1457 	if (ibmvscsi_send_srp_event(evt_struct, hostdata, info_timeout * 2))
1458 		dev_err(hostdata->dev, "couldn't send ADAPTER_INFO_REQ!\n");
1459 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1460 };
1461 
1462 /*
1463  * init_adapter() - Start virtual adapter initialization sequence
1464  */
init_adapter(struct ibmvscsi_host_data * hostdata)1465 static void init_adapter(struct ibmvscsi_host_data *hostdata)
1466 {
1467 	send_mad_adapter_info(hostdata);
1468 }
1469 
1470 /*
1471  * sync_completion: Signal that a synchronous command has completed
1472  * Note that after returning from this call, the evt_struct is freed.
1473  * the caller waiting on this completion shouldn't touch the evt_struct
1474  * again.
1475  */
sync_completion(struct srp_event_struct * evt_struct)1476 static void sync_completion(struct srp_event_struct *evt_struct)
1477 {
1478 	/* copy the response back */
1479 	if (evt_struct->sync_srp)
1480 		*evt_struct->sync_srp = *evt_struct->xfer_iu;
1481 
1482 	complete(&evt_struct->comp);
1483 }
1484 
1485 /*
1486  * ibmvscsi_eh_abort_handler: Abort a command...from scsi host template
1487  * send this over to the server and wait synchronously for the response
1488  */
ibmvscsi_eh_abort_handler(struct scsi_cmnd * cmd)1489 static int ibmvscsi_eh_abort_handler(struct scsi_cmnd *cmd)
1490 {
1491 	struct ibmvscsi_host_data *hostdata = shost_priv(cmd->device->host);
1492 	struct srp_tsk_mgmt *tsk_mgmt;
1493 	struct srp_event_struct *evt;
1494 	struct srp_event_struct *tmp_evt, *found_evt;
1495 	union viosrp_iu srp_rsp;
1496 	int rsp_rc;
1497 	unsigned long flags;
1498 	u16 lun = lun_from_dev(cmd->device);
1499 	unsigned long wait_switch = 0;
1500 
1501 	/* First, find this command in our sent list so we can figure
1502 	 * out the correct tag
1503 	 */
1504 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1505 	wait_switch = jiffies + (init_timeout * HZ);
1506 	do {
1507 		found_evt = NULL;
1508 		list_for_each_entry(tmp_evt, &hostdata->sent, list) {
1509 			if (tmp_evt->cmnd == cmd) {
1510 				found_evt = tmp_evt;
1511 				break;
1512 			}
1513 		}
1514 
1515 		if (!found_evt) {
1516 			spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1517 			return SUCCESS;
1518 		}
1519 
1520 		evt = get_event_struct(&hostdata->pool);
1521 		if (evt == NULL) {
1522 			spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1523 			sdev_printk(KERN_ERR, cmd->device,
1524 				"failed to allocate abort event\n");
1525 			return FAILED;
1526 		}
1527 
1528 		init_event_struct(evt,
1529 				  sync_completion,
1530 				  VIOSRP_SRP_FORMAT,
1531 				  abort_timeout);
1532 
1533 		tsk_mgmt = &evt->iu.srp.tsk_mgmt;
1534 
1535 		/* Set up an abort SRP command */
1536 		memset(tsk_mgmt, 0x00, sizeof(*tsk_mgmt));
1537 		tsk_mgmt->opcode = SRP_TSK_MGMT;
1538 		int_to_scsilun(lun, &tsk_mgmt->lun);
1539 		tsk_mgmt->tsk_mgmt_func = SRP_TSK_ABORT_TASK;
1540 		tsk_mgmt->task_tag = (u64) found_evt;
1541 
1542 		evt->sync_srp = &srp_rsp;
1543 
1544 		init_completion(&evt->comp);
1545 		rsp_rc = ibmvscsi_send_srp_event(evt, hostdata, abort_timeout * 2);
1546 
1547 		if (rsp_rc != SCSI_MLQUEUE_HOST_BUSY)
1548 			break;
1549 
1550 		spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1551 		msleep(10);
1552 		spin_lock_irqsave(hostdata->host->host_lock, flags);
1553 	} while (time_before(jiffies, wait_switch));
1554 
1555 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1556 
1557 	if (rsp_rc != 0) {
1558 		sdev_printk(KERN_ERR, cmd->device,
1559 			    "failed to send abort() event. rc=%d\n", rsp_rc);
1560 		return FAILED;
1561 	}
1562 
1563 	sdev_printk(KERN_INFO, cmd->device,
1564                     "aborting command. lun 0x%llx, tag 0x%llx\n",
1565 		    (((u64) lun) << 48), (u64) found_evt);
1566 
1567 	wait_for_completion(&evt->comp);
1568 
1569 	/* make sure we got a good response */
1570 	if (unlikely(srp_rsp.srp.rsp.opcode != SRP_RSP)) {
1571 		if (printk_ratelimit())
1572 			sdev_printk(KERN_WARNING, cmd->device, "abort bad SRP RSP type %d\n",
1573 				    srp_rsp.srp.rsp.opcode);
1574 		return FAILED;
1575 	}
1576 
1577 	if (srp_rsp.srp.rsp.flags & SRP_RSP_FLAG_RSPVALID)
1578 		rsp_rc = *((int *)srp_rsp.srp.rsp.data);
1579 	else
1580 		rsp_rc = srp_rsp.srp.rsp.status;
1581 
1582 	if (rsp_rc) {
1583 		if (printk_ratelimit())
1584 			sdev_printk(KERN_WARNING, cmd->device,
1585 				    "abort code %d for task tag 0x%llx\n",
1586 				    rsp_rc, tsk_mgmt->task_tag);
1587 		return FAILED;
1588 	}
1589 
1590 	/* Because we dropped the spinlock above, it's possible
1591 	 * The event is no longer in our list.  Make sure it didn't
1592 	 * complete while we were aborting
1593 	 */
1594 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1595 	found_evt = NULL;
1596 	list_for_each_entry(tmp_evt, &hostdata->sent, list) {
1597 		if (tmp_evt->cmnd == cmd) {
1598 			found_evt = tmp_evt;
1599 			break;
1600 		}
1601 	}
1602 
1603 	if (found_evt == NULL) {
1604 		spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1605 		sdev_printk(KERN_INFO, cmd->device, "aborted task tag 0x%llx completed\n",
1606 			    tsk_mgmt->task_tag);
1607 		return SUCCESS;
1608 	}
1609 
1610 	sdev_printk(KERN_INFO, cmd->device, "successfully aborted task tag 0x%llx\n",
1611 		    tsk_mgmt->task_tag);
1612 
1613 	cmd->result = (DID_ABORT << 16);
1614 	list_del(&found_evt->list);
1615 	unmap_cmd_data(&found_evt->iu.srp.cmd, found_evt,
1616 		       found_evt->hostdata->dev);
1617 	free_event_struct(&found_evt->hostdata->pool, found_evt);
1618 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1619 	atomic_inc(&hostdata->request_limit);
1620 	return SUCCESS;
1621 }
1622 
1623 /*
1624  * ibmvscsi_eh_device_reset_handler: Reset a single LUN...from scsi host
1625  * template send this over to the server and wait synchronously for the
1626  * response
1627  */
ibmvscsi_eh_device_reset_handler(struct scsi_cmnd * cmd)1628 static int ibmvscsi_eh_device_reset_handler(struct scsi_cmnd *cmd)
1629 {
1630 	struct ibmvscsi_host_data *hostdata = shost_priv(cmd->device->host);
1631 	struct srp_tsk_mgmt *tsk_mgmt;
1632 	struct srp_event_struct *evt;
1633 	struct srp_event_struct *tmp_evt, *pos;
1634 	union viosrp_iu srp_rsp;
1635 	int rsp_rc;
1636 	unsigned long flags;
1637 	u16 lun = lun_from_dev(cmd->device);
1638 	unsigned long wait_switch = 0;
1639 
1640 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1641 	wait_switch = jiffies + (init_timeout * HZ);
1642 	do {
1643 		evt = get_event_struct(&hostdata->pool);
1644 		if (evt == NULL) {
1645 			spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1646 			sdev_printk(KERN_ERR, cmd->device,
1647 				"failed to allocate reset event\n");
1648 			return FAILED;
1649 		}
1650 
1651 		init_event_struct(evt,
1652 				  sync_completion,
1653 				  VIOSRP_SRP_FORMAT,
1654 				  reset_timeout);
1655 
1656 		tsk_mgmt = &evt->iu.srp.tsk_mgmt;
1657 
1658 		/* Set up a lun reset SRP command */
1659 		memset(tsk_mgmt, 0x00, sizeof(*tsk_mgmt));
1660 		tsk_mgmt->opcode = SRP_TSK_MGMT;
1661 		int_to_scsilun(lun, &tsk_mgmt->lun);
1662 		tsk_mgmt->tsk_mgmt_func = SRP_TSK_LUN_RESET;
1663 
1664 		evt->sync_srp = &srp_rsp;
1665 
1666 		init_completion(&evt->comp);
1667 		rsp_rc = ibmvscsi_send_srp_event(evt, hostdata, reset_timeout * 2);
1668 
1669 		if (rsp_rc != SCSI_MLQUEUE_HOST_BUSY)
1670 			break;
1671 
1672 		spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1673 		msleep(10);
1674 		spin_lock_irqsave(hostdata->host->host_lock, flags);
1675 	} while (time_before(jiffies, wait_switch));
1676 
1677 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1678 
1679 	if (rsp_rc != 0) {
1680 		sdev_printk(KERN_ERR, cmd->device,
1681 			    "failed to send reset event. rc=%d\n", rsp_rc);
1682 		return FAILED;
1683 	}
1684 
1685 	sdev_printk(KERN_INFO, cmd->device, "resetting device. lun 0x%llx\n",
1686 		    (((u64) lun) << 48));
1687 
1688 	wait_for_completion(&evt->comp);
1689 
1690 	/* make sure we got a good response */
1691 	if (unlikely(srp_rsp.srp.rsp.opcode != SRP_RSP)) {
1692 		if (printk_ratelimit())
1693 			sdev_printk(KERN_WARNING, cmd->device, "reset bad SRP RSP type %d\n",
1694 				    srp_rsp.srp.rsp.opcode);
1695 		return FAILED;
1696 	}
1697 
1698 	if (srp_rsp.srp.rsp.flags & SRP_RSP_FLAG_RSPVALID)
1699 		rsp_rc = *((int *)srp_rsp.srp.rsp.data);
1700 	else
1701 		rsp_rc = srp_rsp.srp.rsp.status;
1702 
1703 	if (rsp_rc) {
1704 		if (printk_ratelimit())
1705 			sdev_printk(KERN_WARNING, cmd->device,
1706 				    "reset code %d for task tag 0x%llx\n",
1707 				    rsp_rc, tsk_mgmt->task_tag);
1708 		return FAILED;
1709 	}
1710 
1711 	/* We need to find all commands for this LUN that have not yet been
1712 	 * responded to, and fail them with DID_RESET
1713 	 */
1714 	spin_lock_irqsave(hostdata->host->host_lock, flags);
1715 	list_for_each_entry_safe(tmp_evt, pos, &hostdata->sent, list) {
1716 		if ((tmp_evt->cmnd) && (tmp_evt->cmnd->device == cmd->device)) {
1717 			if (tmp_evt->cmnd)
1718 				tmp_evt->cmnd->result = (DID_RESET << 16);
1719 			list_del(&tmp_evt->list);
1720 			unmap_cmd_data(&tmp_evt->iu.srp.cmd, tmp_evt,
1721 				       tmp_evt->hostdata->dev);
1722 			free_event_struct(&tmp_evt->hostdata->pool,
1723 						   tmp_evt);
1724 			atomic_inc(&hostdata->request_limit);
1725 			if (tmp_evt->cmnd_done)
1726 				tmp_evt->cmnd_done(tmp_evt->cmnd);
1727 			else if (tmp_evt->done)
1728 				tmp_evt->done(tmp_evt);
1729 		}
1730 	}
1731 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
1732 	return SUCCESS;
1733 }
1734 
1735 /**
1736  * ibmvscsi_eh_host_reset_handler - Reset the connection to the server
1737  * @cmd:	struct scsi_cmnd having problems
1738 */
ibmvscsi_eh_host_reset_handler(struct scsi_cmnd * cmd)1739 static int ibmvscsi_eh_host_reset_handler(struct scsi_cmnd *cmd)
1740 {
1741 	unsigned long wait_switch = 0;
1742 	struct ibmvscsi_host_data *hostdata = shost_priv(cmd->device->host);
1743 
1744 	dev_err(hostdata->dev, "Resetting connection due to error recovery\n");
1745 
1746 	ibmvscsi_reset_host(hostdata);
1747 
1748 	for (wait_switch = jiffies + (init_timeout * HZ);
1749 	     time_before(jiffies, wait_switch) &&
1750 		     atomic_read(&hostdata->request_limit) < 2;) {
1751 
1752 		msleep(10);
1753 	}
1754 
1755 	if (atomic_read(&hostdata->request_limit) <= 0)
1756 		return FAILED;
1757 
1758 	return SUCCESS;
1759 }
1760 
1761 /**
1762  * ibmvscsi_handle_crq: - Handles and frees received events in the CRQ
1763  * @crq:	Command/Response queue
1764  * @hostdata:	ibmvscsi_host_data of host
1765  *
1766 */
ibmvscsi_handle_crq(struct viosrp_crq * crq,struct ibmvscsi_host_data * hostdata)1767 static void ibmvscsi_handle_crq(struct viosrp_crq *crq,
1768 				struct ibmvscsi_host_data *hostdata)
1769 {
1770 	long rc;
1771 	unsigned long flags;
1772 	/* The hypervisor copies our tag value here so no byteswapping */
1773 	struct srp_event_struct *evt_struct =
1774 			(__force struct srp_event_struct *)crq->IU_data_ptr;
1775 	switch (crq->valid) {
1776 	case VIOSRP_CRQ_INIT_RSP:		/* initialization */
1777 		switch (crq->format) {
1778 		case VIOSRP_CRQ_INIT:	/* Initialization message */
1779 			dev_info(hostdata->dev, "partner initialized\n");
1780 			/* Send back a response */
1781 			rc = ibmvscsi_send_crq(hostdata, 0xC002000000000000LL, 0);
1782 			if (rc == 0) {
1783 				/* Now login */
1784 				init_adapter(hostdata);
1785 			} else {
1786 				dev_err(hostdata->dev, "Unable to send init rsp. rc=%ld\n", rc);
1787 			}
1788 
1789 			break;
1790 		case VIOSRP_CRQ_INIT_COMPLETE:	/* Initialization response */
1791 			dev_info(hostdata->dev, "partner initialization complete\n");
1792 
1793 			/* Now login */
1794 			init_adapter(hostdata);
1795 			break;
1796 		default:
1797 			dev_err(hostdata->dev, "unknown crq message type: %d\n", crq->format);
1798 		}
1799 		return;
1800 	case VIOSRP_CRQ_XPORT_EVENT:	/* Hypervisor telling us the connection is closed */
1801 		scsi_block_requests(hostdata->host);
1802 		ibmvscsi_set_request_limit(hostdata, 0);
1803 		if (crq->format == 0x06) {
1804 			/* We need to re-setup the interpartition connection */
1805 			dev_info(hostdata->dev, "Re-enabling adapter!\n");
1806 			hostdata->client_migrated = 1;
1807 			hostdata->action = IBMVSCSI_HOST_ACTION_REENABLE;
1808 			purge_requests(hostdata, DID_REQUEUE);
1809 			wake_up(&hostdata->work_wait_q);
1810 		} else {
1811 			dev_err(hostdata->dev, "Virtual adapter failed rc %d!\n",
1812 				crq->format);
1813 			ibmvscsi_reset_host(hostdata);
1814 		}
1815 		return;
1816 	case VIOSRP_CRQ_CMD_RSP:		/* real payload */
1817 		break;
1818 	default:
1819 		dev_err(hostdata->dev, "got an invalid message type 0x%02x\n",
1820 			crq->valid);
1821 		return;
1822 	}
1823 
1824 	/* The only kind of payload CRQs we should get are responses to
1825 	 * things we send. Make sure this response is to something we
1826 	 * actually sent
1827 	 */
1828 	if (!valid_event_struct(&hostdata->pool, evt_struct)) {
1829 		dev_err(hostdata->dev, "returned correlation_token 0x%p is invalid!\n",
1830 		       evt_struct);
1831 		return;
1832 	}
1833 
1834 	if (atomic_read(&evt_struct->free)) {
1835 		dev_err(hostdata->dev, "received duplicate correlation_token 0x%p!\n",
1836 			evt_struct);
1837 		return;
1838 	}
1839 
1840 	if (crq->format == VIOSRP_SRP_FORMAT)
1841 		atomic_add(be32_to_cpu(evt_struct->xfer_iu->srp.rsp.req_lim_delta),
1842 			   &hostdata->request_limit);
1843 
1844 	timer_delete(&evt_struct->timer);
1845 
1846 	if ((crq->status != VIOSRP_OK && crq->status != VIOSRP_OK2) && evt_struct->cmnd)
1847 		evt_struct->cmnd->result = DID_ERROR << 16;
1848 	if (evt_struct->done)
1849 		evt_struct->done(evt_struct);
1850 	else
1851 		dev_err(hostdata->dev, "returned done() is NULL; not running it!\n");
1852 
1853 	/*
1854 	 * Lock the host_lock before messing with these structures, since we
1855 	 * are running in a task context
1856 	 */
1857 	spin_lock_irqsave(evt_struct->hostdata->host->host_lock, flags);
1858 	list_del(&evt_struct->list);
1859 	free_event_struct(&evt_struct->hostdata->pool, evt_struct);
1860 	spin_unlock_irqrestore(evt_struct->hostdata->host->host_lock, flags);
1861 }
1862 
1863 /**
1864  * ibmvscsi_sdev_configure: Set the "allow_restart" flag for each disk.
1865  * @sdev:	struct scsi_device device to configure
1866  * @lim:	Request queue limits
1867  *
1868  * Enable allow_restart for a device if it is a disk.  Adjust the
1869  * queue_depth here also as is required by the documentation for
1870  * struct scsi_host_template.
1871  */
ibmvscsi_sdev_configure(struct scsi_device * sdev,struct queue_limits * lim)1872 static int ibmvscsi_sdev_configure(struct scsi_device *sdev,
1873 				   struct queue_limits *lim)
1874 {
1875 	struct Scsi_Host *shost = sdev->host;
1876 	unsigned long lock_flags = 0;
1877 
1878 	spin_lock_irqsave(shost->host_lock, lock_flags);
1879 	if (sdev->type == TYPE_DISK) {
1880 		sdev->allow_restart = 1;
1881 		blk_queue_rq_timeout(sdev->request_queue, 120 * HZ);
1882 	}
1883 	spin_unlock_irqrestore(shost->host_lock, lock_flags);
1884 	return 0;
1885 }
1886 
1887 /**
1888  * ibmvscsi_change_queue_depth - Change the device's queue depth
1889  * @sdev:	scsi device struct
1890  * @qdepth:	depth to set
1891  *
1892  * Return value:
1893  * 	actual depth set
1894  **/
ibmvscsi_change_queue_depth(struct scsi_device * sdev,int qdepth)1895 static int ibmvscsi_change_queue_depth(struct scsi_device *sdev, int qdepth)
1896 {
1897 	if (qdepth > IBMVSCSI_MAX_CMDS_PER_LUN)
1898 		qdepth = IBMVSCSI_MAX_CMDS_PER_LUN;
1899 	return scsi_change_queue_depth(sdev, qdepth);
1900 }
1901 
1902 /* ------------------------------------------------------------
1903  * sysfs attributes
1904  */
show_host_vhost_loc(struct device * dev,struct device_attribute * attr,char * buf)1905 static ssize_t show_host_vhost_loc(struct device *dev,
1906 				   struct device_attribute *attr, char *buf)
1907 {
1908 	struct Scsi_Host *shost = class_to_shost(dev);
1909 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
1910 	int len;
1911 
1912 	len = snprintf(buf, sizeof(hostdata->caps.loc), "%s\n",
1913 		       hostdata->caps.loc);
1914 	return len;
1915 }
1916 
1917 static struct device_attribute ibmvscsi_host_vhost_loc = {
1918 	.attr = {
1919 		 .name = "vhost_loc",
1920 		 .mode = S_IRUGO,
1921 		 },
1922 	.show = show_host_vhost_loc,
1923 };
1924 
show_host_vhost_name(struct device * dev,struct device_attribute * attr,char * buf)1925 static ssize_t show_host_vhost_name(struct device *dev,
1926 				    struct device_attribute *attr, char *buf)
1927 {
1928 	struct Scsi_Host *shost = class_to_shost(dev);
1929 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
1930 	int len;
1931 
1932 	len = snprintf(buf, sizeof(hostdata->caps.name), "%s\n",
1933 		       hostdata->caps.name);
1934 	return len;
1935 }
1936 
1937 static struct device_attribute ibmvscsi_host_vhost_name = {
1938 	.attr = {
1939 		 .name = "vhost_name",
1940 		 .mode = S_IRUGO,
1941 		 },
1942 	.show = show_host_vhost_name,
1943 };
1944 
show_host_srp_version(struct device * dev,struct device_attribute * attr,char * buf)1945 static ssize_t show_host_srp_version(struct device *dev,
1946 				     struct device_attribute *attr, char *buf)
1947 {
1948 	struct Scsi_Host *shost = class_to_shost(dev);
1949 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
1950 	int len;
1951 
1952 	len = snprintf(buf, PAGE_SIZE, "%s\n",
1953 		       hostdata->madapter_info.srp_version);
1954 	return len;
1955 }
1956 
1957 static struct device_attribute ibmvscsi_host_srp_version = {
1958 	.attr = {
1959 		 .name = "srp_version",
1960 		 .mode = S_IRUGO,
1961 		 },
1962 	.show = show_host_srp_version,
1963 };
1964 
show_host_partition_name(struct device * dev,struct device_attribute * attr,char * buf)1965 static ssize_t show_host_partition_name(struct device *dev,
1966 					struct device_attribute *attr,
1967 					char *buf)
1968 {
1969 	struct Scsi_Host *shost = class_to_shost(dev);
1970 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
1971 	int len;
1972 
1973 	len = snprintf(buf, PAGE_SIZE, "%s\n",
1974 		       hostdata->madapter_info.partition_name);
1975 	return len;
1976 }
1977 
1978 static struct device_attribute ibmvscsi_host_partition_name = {
1979 	.attr = {
1980 		 .name = "partition_name",
1981 		 .mode = S_IRUGO,
1982 		 },
1983 	.show = show_host_partition_name,
1984 };
1985 
show_host_partition_number(struct device * dev,struct device_attribute * attr,char * buf)1986 static ssize_t show_host_partition_number(struct device *dev,
1987 					  struct device_attribute *attr,
1988 					  char *buf)
1989 {
1990 	struct Scsi_Host *shost = class_to_shost(dev);
1991 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
1992 	int len;
1993 
1994 	len = snprintf(buf, PAGE_SIZE, "%d\n",
1995 		       be32_to_cpu(hostdata->madapter_info.partition_number));
1996 	return len;
1997 }
1998 
1999 static struct device_attribute ibmvscsi_host_partition_number = {
2000 	.attr = {
2001 		 .name = "partition_number",
2002 		 .mode = S_IRUGO,
2003 		 },
2004 	.show = show_host_partition_number,
2005 };
2006 
show_host_mad_version(struct device * dev,struct device_attribute * attr,char * buf)2007 static ssize_t show_host_mad_version(struct device *dev,
2008 				     struct device_attribute *attr, char *buf)
2009 {
2010 	struct Scsi_Host *shost = class_to_shost(dev);
2011 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
2012 	int len;
2013 
2014 	len = snprintf(buf, PAGE_SIZE, "%d\n",
2015 		       be32_to_cpu(hostdata->madapter_info.mad_version));
2016 	return len;
2017 }
2018 
2019 static struct device_attribute ibmvscsi_host_mad_version = {
2020 	.attr = {
2021 		 .name = "mad_version",
2022 		 .mode = S_IRUGO,
2023 		 },
2024 	.show = show_host_mad_version,
2025 };
2026 
show_host_os_type(struct device * dev,struct device_attribute * attr,char * buf)2027 static ssize_t show_host_os_type(struct device *dev,
2028 				 struct device_attribute *attr, char *buf)
2029 {
2030 	struct Scsi_Host *shost = class_to_shost(dev);
2031 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
2032 	int len;
2033 
2034 	len = snprintf(buf, PAGE_SIZE, "%d\n",
2035 		       be32_to_cpu(hostdata->madapter_info.os_type));
2036 	return len;
2037 }
2038 
2039 static struct device_attribute ibmvscsi_host_os_type = {
2040 	.attr = {
2041 		 .name = "os_type",
2042 		 .mode = S_IRUGO,
2043 		 },
2044 	.show = show_host_os_type,
2045 };
2046 
show_host_config(struct device * dev,struct device_attribute * attr,char * buf)2047 static ssize_t show_host_config(struct device *dev,
2048 				struct device_attribute *attr, char *buf)
2049 {
2050 	return 0;
2051 }
2052 
2053 static struct device_attribute ibmvscsi_host_config = {
2054 	.attr = {
2055 		.name = "config",
2056 		.mode = S_IRUGO,
2057 		},
2058 	.show = show_host_config,
2059 };
2060 
ibmvscsi_host_reset(struct Scsi_Host * shost,int reset_type)2061 static int ibmvscsi_host_reset(struct Scsi_Host *shost, int reset_type)
2062 {
2063 	struct ibmvscsi_host_data *hostdata = shost_priv(shost);
2064 
2065 	dev_info(hostdata->dev, "Initiating adapter reset!\n");
2066 	ibmvscsi_reset_host(hostdata);
2067 
2068 	return 0;
2069 }
2070 
2071 static struct attribute *ibmvscsi_host_attrs[] = {
2072 	&ibmvscsi_host_vhost_loc.attr,
2073 	&ibmvscsi_host_vhost_name.attr,
2074 	&ibmvscsi_host_srp_version.attr,
2075 	&ibmvscsi_host_partition_name.attr,
2076 	&ibmvscsi_host_partition_number.attr,
2077 	&ibmvscsi_host_mad_version.attr,
2078 	&ibmvscsi_host_os_type.attr,
2079 	&ibmvscsi_host_config.attr,
2080 	NULL
2081 };
2082 
2083 ATTRIBUTE_GROUPS(ibmvscsi_host);
2084 
2085 /* ------------------------------------------------------------
2086  * SCSI driver registration
2087  */
2088 static struct scsi_host_template driver_template = {
2089 	.module = THIS_MODULE,
2090 	.name = "IBM POWER Virtual SCSI Adapter " IBMVSCSI_VERSION,
2091 	.proc_name = "ibmvscsi",
2092 	.queuecommand = ibmvscsi_queuecommand,
2093 	.eh_timed_out = srp_timed_out,
2094 	.eh_abort_handler = ibmvscsi_eh_abort_handler,
2095 	.eh_device_reset_handler = ibmvscsi_eh_device_reset_handler,
2096 	.eh_host_reset_handler = ibmvscsi_eh_host_reset_handler,
2097 	.sdev_configure = ibmvscsi_sdev_configure,
2098 	.change_queue_depth = ibmvscsi_change_queue_depth,
2099 	.host_reset = ibmvscsi_host_reset,
2100 	.cmd_per_lun = IBMVSCSI_CMDS_PER_LUN_DEFAULT,
2101 	.can_queue = IBMVSCSI_MAX_REQUESTS_DEFAULT,
2102 	.this_id = -1,
2103 	.sg_tablesize = SG_ALL,
2104 	.shost_groups = ibmvscsi_host_groups,
2105 };
2106 
2107 /**
2108  * ibmvscsi_get_desired_dma - Calculate IO memory desired by the driver
2109  *
2110  * @vdev: struct vio_dev for the device whose desired IO mem is to be returned
2111  *
2112  * Return value:
2113  *	Number of bytes of IO data the driver will need to perform well.
2114  */
ibmvscsi_get_desired_dma(struct vio_dev * vdev)2115 static unsigned long ibmvscsi_get_desired_dma(struct vio_dev *vdev)
2116 {
2117 	/* iu_storage data allocated in initialize_event_pool */
2118 	unsigned long desired_io = max_events * sizeof(union viosrp_iu);
2119 
2120 	/* add io space for sg data */
2121 	desired_io += (IBMVSCSI_MAX_SECTORS_DEFAULT * 512 *
2122 	                     IBMVSCSI_CMDS_PER_LUN_DEFAULT);
2123 
2124 	return desired_io;
2125 }
2126 
ibmvscsi_do_work(struct ibmvscsi_host_data * hostdata)2127 static void ibmvscsi_do_work(struct ibmvscsi_host_data *hostdata)
2128 {
2129 	unsigned long flags;
2130 	int rc;
2131 	char *action = "reset";
2132 
2133 	spin_lock_irqsave(hostdata->host->host_lock, flags);
2134 	switch (hostdata->action) {
2135 	case IBMVSCSI_HOST_ACTION_UNBLOCK:
2136 		rc = 0;
2137 		break;
2138 	case IBMVSCSI_HOST_ACTION_RESET:
2139 		spin_unlock_irqrestore(hostdata->host->host_lock, flags);
2140 		rc = ibmvscsi_reset_crq_queue(&hostdata->queue, hostdata);
2141 		spin_lock_irqsave(hostdata->host->host_lock, flags);
2142 		if (!rc)
2143 			rc = ibmvscsi_send_crq(hostdata, 0xC001000000000000LL, 0);
2144 		vio_enable_interrupts(to_vio_dev(hostdata->dev));
2145 		break;
2146 	case IBMVSCSI_HOST_ACTION_REENABLE:
2147 		action = "enable";
2148 		spin_unlock_irqrestore(hostdata->host->host_lock, flags);
2149 		rc = ibmvscsi_reenable_crq_queue(&hostdata->queue, hostdata);
2150 		spin_lock_irqsave(hostdata->host->host_lock, flags);
2151 		if (!rc)
2152 			rc = ibmvscsi_send_crq(hostdata, 0xC001000000000000LL, 0);
2153 		break;
2154 	case IBMVSCSI_HOST_ACTION_NONE:
2155 	default:
2156 		spin_unlock_irqrestore(hostdata->host->host_lock, flags);
2157 		return;
2158 	}
2159 
2160 	hostdata->action = IBMVSCSI_HOST_ACTION_NONE;
2161 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
2162 
2163 	if (rc) {
2164 		ibmvscsi_set_request_limit(hostdata, -1);
2165 		dev_err(hostdata->dev, "error after %s\n", action);
2166 	}
2167 
2168 	scsi_unblock_requests(hostdata->host);
2169 }
2170 
__ibmvscsi_work_to_do(struct ibmvscsi_host_data * hostdata)2171 static int __ibmvscsi_work_to_do(struct ibmvscsi_host_data *hostdata)
2172 {
2173 	if (kthread_should_stop())
2174 		return 1;
2175 	switch (hostdata->action) {
2176 	case IBMVSCSI_HOST_ACTION_NONE:
2177 		return 0;
2178 	case IBMVSCSI_HOST_ACTION_RESET:
2179 	case IBMVSCSI_HOST_ACTION_REENABLE:
2180 	case IBMVSCSI_HOST_ACTION_UNBLOCK:
2181 	default:
2182 		break;
2183 	}
2184 
2185 	return 1;
2186 }
2187 
ibmvscsi_work_to_do(struct ibmvscsi_host_data * hostdata)2188 static int ibmvscsi_work_to_do(struct ibmvscsi_host_data *hostdata)
2189 {
2190 	unsigned long flags;
2191 	int rc;
2192 
2193 	spin_lock_irqsave(hostdata->host->host_lock, flags);
2194 	rc = __ibmvscsi_work_to_do(hostdata);
2195 	spin_unlock_irqrestore(hostdata->host->host_lock, flags);
2196 
2197 	return rc;
2198 }
2199 
ibmvscsi_work(void * data)2200 static int ibmvscsi_work(void *data)
2201 {
2202 	struct ibmvscsi_host_data *hostdata = data;
2203 	int rc;
2204 
2205 	set_user_nice(current, MIN_NICE);
2206 
2207 	while (1) {
2208 		rc = wait_event_interruptible(hostdata->work_wait_q,
2209 					      ibmvscsi_work_to_do(hostdata));
2210 
2211 		BUG_ON(rc);
2212 
2213 		if (kthread_should_stop())
2214 			break;
2215 
2216 		ibmvscsi_do_work(hostdata);
2217 	}
2218 
2219 	return 0;
2220 }
2221 
2222 /*
2223  * Called by bus code for each adapter
2224  */
ibmvscsi_probe(struct vio_dev * vdev,const struct vio_device_id * id)2225 static int ibmvscsi_probe(struct vio_dev *vdev, const struct vio_device_id *id)
2226 {
2227 	struct ibmvscsi_host_data *hostdata;
2228 	struct Scsi_Host *host;
2229 	struct device *dev = &vdev->dev;
2230 	struct srp_rport_identifiers ids;
2231 	struct srp_rport *rport;
2232 	unsigned long wait_switch = 0;
2233 	int rc;
2234 
2235 	dev_set_drvdata(&vdev->dev, NULL);
2236 
2237 	host = scsi_host_alloc(&driver_template, sizeof(*hostdata));
2238 	if (!host) {
2239 		dev_err(&vdev->dev, "couldn't allocate host data\n");
2240 		goto scsi_host_alloc_failed;
2241 	}
2242 
2243 	host->transportt = ibmvscsi_transport_template;
2244 	hostdata = shost_priv(host);
2245 	memset(hostdata, 0x00, sizeof(*hostdata));
2246 	INIT_LIST_HEAD(&hostdata->sent);
2247 	init_waitqueue_head(&hostdata->work_wait_q);
2248 	hostdata->host = host;
2249 	hostdata->dev = dev;
2250 	ibmvscsi_set_request_limit(hostdata, -1);
2251 	hostdata->host->max_sectors = IBMVSCSI_MAX_SECTORS_DEFAULT;
2252 
2253 	if (map_persist_bufs(hostdata)) {
2254 		dev_err(&vdev->dev, "couldn't map persistent buffers\n");
2255 		goto persist_bufs_failed;
2256 	}
2257 
2258 	hostdata->work_thread = kthread_run(ibmvscsi_work, hostdata, "%s_%d",
2259 					    "ibmvscsi", host->host_no);
2260 
2261 	if (IS_ERR(hostdata->work_thread)) {
2262 		dev_err(&vdev->dev, "couldn't initialize kthread. rc=%ld\n",
2263 			PTR_ERR(hostdata->work_thread));
2264 		goto init_crq_failed;
2265 	}
2266 
2267 	rc = ibmvscsi_init_crq_queue(&hostdata->queue, hostdata, max_events);
2268 	if (rc != 0 && rc != H_RESOURCE) {
2269 		dev_err(&vdev->dev, "couldn't initialize crq. rc=%d\n", rc);
2270 		goto kill_kthread;
2271 	}
2272 	if (initialize_event_pool(&hostdata->pool, max_events, hostdata) != 0) {
2273 		dev_err(&vdev->dev, "couldn't initialize event pool\n");
2274 		goto init_pool_failed;
2275 	}
2276 
2277 	host->max_lun = IBMVSCSI_MAX_LUN;
2278 	host->max_id = max_id;
2279 	host->max_channel = max_channel;
2280 	host->max_cmd_len = 16;
2281 
2282 	dev_info(dev,
2283 		 "Maximum ID: %d Maximum LUN: %llu Maximum Channel: %d\n",
2284 		 host->max_id, host->max_lun, host->max_channel);
2285 
2286 	if (scsi_add_host(hostdata->host, hostdata->dev))
2287 		goto add_host_failed;
2288 
2289 	/* we don't have a proper target_port_id so let's use the fake one */
2290 	memcpy(ids.port_id, hostdata->madapter_info.partition_name,
2291 	       sizeof(ids.port_id));
2292 	ids.roles = SRP_RPORT_ROLE_TARGET;
2293 	rport = srp_rport_add(host, &ids);
2294 	if (IS_ERR(rport))
2295 		goto add_srp_port_failed;
2296 
2297 	/* Try to send an initialization message.  Note that this is allowed
2298 	 * to fail if the other end is not acive.  In that case we don't
2299 	 * want to scan
2300 	 */
2301 	if (ibmvscsi_send_crq(hostdata, 0xC001000000000000LL, 0) == 0
2302 	    || rc == H_RESOURCE) {
2303 		/*
2304 		 * Wait around max init_timeout secs for the adapter to finish
2305 		 * initializing. When we are done initializing, we will have a
2306 		 * valid request_limit.  We don't want Linux scanning before
2307 		 * we are ready.
2308 		 */
2309 		for (wait_switch = jiffies + (init_timeout * HZ);
2310 		     time_before(jiffies, wait_switch) &&
2311 		     atomic_read(&hostdata->request_limit) < 2;) {
2312 
2313 			msleep(10);
2314 		}
2315 
2316 		/* if we now have a valid request_limit, initiate a scan */
2317 		if (atomic_read(&hostdata->request_limit) > 0)
2318 			scsi_scan_host(host);
2319 	}
2320 
2321 	dev_set_drvdata(&vdev->dev, hostdata);
2322 	spin_lock(&ibmvscsi_driver_lock);
2323 	list_add_tail(&hostdata->host_list, &ibmvscsi_head);
2324 	spin_unlock(&ibmvscsi_driver_lock);
2325 	return 0;
2326 
2327       add_srp_port_failed:
2328 	scsi_remove_host(hostdata->host);
2329       add_host_failed:
2330 	release_event_pool(&hostdata->pool, hostdata);
2331       init_pool_failed:
2332 	ibmvscsi_release_crq_queue(&hostdata->queue, hostdata, max_events);
2333       kill_kthread:
2334       kthread_stop(hostdata->work_thread);
2335       init_crq_failed:
2336 	unmap_persist_bufs(hostdata);
2337       persist_bufs_failed:
2338 	scsi_host_put(host);
2339       scsi_host_alloc_failed:
2340 	return -1;
2341 }
2342 
ibmvscsi_remove(struct vio_dev * vdev)2343 static void ibmvscsi_remove(struct vio_dev *vdev)
2344 {
2345 	struct ibmvscsi_host_data *hostdata = dev_get_drvdata(&vdev->dev);
2346 
2347 	srp_remove_host(hostdata->host);
2348 	scsi_remove_host(hostdata->host);
2349 
2350 	purge_requests(hostdata, DID_ERROR);
2351 	release_event_pool(&hostdata->pool, hostdata);
2352 
2353 	ibmvscsi_release_crq_queue(&hostdata->queue, hostdata,
2354 					max_events);
2355 
2356 	kthread_stop(hostdata->work_thread);
2357 	unmap_persist_bufs(hostdata);
2358 
2359 	spin_lock(&ibmvscsi_driver_lock);
2360 	list_del(&hostdata->host_list);
2361 	spin_unlock(&ibmvscsi_driver_lock);
2362 
2363 	scsi_host_put(hostdata->host);
2364 }
2365 
2366 /**
2367  * ibmvscsi_resume: Resume from suspend
2368  * @dev:	device struct
2369  *
2370  * We may have lost an interrupt across suspend/resume, so kick the
2371  * interrupt handler
2372  */
ibmvscsi_resume(struct device * dev)2373 static int ibmvscsi_resume(struct device *dev)
2374 {
2375 	struct ibmvscsi_host_data *hostdata = dev_get_drvdata(dev);
2376 	vio_disable_interrupts(to_vio_dev(hostdata->dev));
2377 	tasklet_schedule(&hostdata->srp_task);
2378 
2379 	return 0;
2380 }
2381 
2382 /*
2383  * ibmvscsi_device_table: Used by vio.c to match devices in the device tree we
2384  * support.
2385  */
2386 static const struct vio_device_id ibmvscsi_device_table[] = {
2387 	{"vscsi", "IBM,v-scsi"},
2388 	{ "", "" }
2389 };
2390 MODULE_DEVICE_TABLE(vio, ibmvscsi_device_table);
2391 
2392 static const struct dev_pm_ops ibmvscsi_pm_ops = {
2393 	.resume = ibmvscsi_resume
2394 };
2395 
2396 static struct vio_driver ibmvscsi_driver = {
2397 	.id_table = ibmvscsi_device_table,
2398 	.probe = ibmvscsi_probe,
2399 	.remove = ibmvscsi_remove,
2400 	.get_desired_dma = ibmvscsi_get_desired_dma,
2401 	.name = "ibmvscsi",
2402 	.pm = &ibmvscsi_pm_ops,
2403 };
2404 
2405 static struct srp_function_template ibmvscsi_transport_functions = {
2406 };
2407 
ibmvscsi_module_init(void)2408 static int __init ibmvscsi_module_init(void)
2409 {
2410 	int ret;
2411 
2412 	/* Ensure we have two requests to do error recovery */
2413 	driver_template.can_queue = max_requests;
2414 	max_events = max_requests + 2;
2415 
2416 	if (!firmware_has_feature(FW_FEATURE_VIO))
2417 		return -ENODEV;
2418 
2419 	ibmvscsi_transport_template =
2420 		srp_attach_transport(&ibmvscsi_transport_functions);
2421 	if (!ibmvscsi_transport_template)
2422 		return -ENOMEM;
2423 
2424 	ret = vio_register_driver(&ibmvscsi_driver);
2425 	if (ret)
2426 		srp_release_transport(ibmvscsi_transport_template);
2427 	return ret;
2428 }
2429 
ibmvscsi_module_exit(void)2430 static void __exit ibmvscsi_module_exit(void)
2431 {
2432 	vio_unregister_driver(&ibmvscsi_driver);
2433 	srp_release_transport(ibmvscsi_transport_template);
2434 }
2435 
2436 module_init(ibmvscsi_module_init);
2437 module_exit(ibmvscsi_module_exit);
2438