xref: /linux/drivers/memstick/core/mspro_block.c (revision 9b960d8cd6f712cb2c03e2bdd4d5ca058238037f)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  *  Sony MemoryStick Pro storage support
4  *
5  *  Copyright (C) 2007 Alex Dubov <oakad@yahoo.com>
6  *
7  * Special thanks to Carlos Corbacho for providing various MemoryStick cards
8  * that made this driver possible.
9  */
10 
11 #include <linux/blk-mq.h>
12 #include <linux/idr.h>
13 #include <linux/hdreg.h>
14 #include <linux/kthread.h>
15 #include <linux/delay.h>
16 #include <linux/slab.h>
17 #include <linux/mutex.h>
18 #include <linux/memstick.h>
19 #include <linux/module.h>
20 
21 #define DRIVER_NAME "mspro_block"
22 
23 static int major;
24 module_param(major, int, 0644);
25 
26 #define MSPRO_BLOCK_MAX_SEGS  32
27 #define MSPRO_BLOCK_MAX_PAGES ((2 << 16) - 1)
28 
29 #define MSPRO_BLOCK_SIGNATURE        0xa5c3
30 #define MSPRO_BLOCK_MAX_ATTRIBUTES   41
31 
32 #define MSPRO_BLOCK_PART_SHIFT 3
33 
34 enum {
35 	MSPRO_BLOCK_ID_SYSINFO         = 0x10,
36 	MSPRO_BLOCK_ID_MODELNAME       = 0x15,
37 	MSPRO_BLOCK_ID_MBR             = 0x20,
38 	MSPRO_BLOCK_ID_PBR16           = 0x21,
39 	MSPRO_BLOCK_ID_PBR32           = 0x22,
40 	MSPRO_BLOCK_ID_SPECFILEVALUES1 = 0x25,
41 	MSPRO_BLOCK_ID_SPECFILEVALUES2 = 0x26,
42 	MSPRO_BLOCK_ID_DEVINFO         = 0x30
43 };
44 
45 struct mspro_sys_attr {
46 	size_t                  size;
47 	void                    *data;
48 	unsigned char           id;
49 	char                    name[32];
50 	struct device_attribute dev_attr;
51 };
52 
53 struct mspro_attr_entry {
54 	__be32 address;
55 	__be32 size;
56 	unsigned char id;
57 	unsigned char reserved[3];
58 } __attribute__((packed));
59 
60 struct mspro_attribute {
61 	__be16 signature;
62 	unsigned short          version;
63 	unsigned char           count;
64 	unsigned char           reserved[11];
65 	struct mspro_attr_entry entries[];
66 } __attribute__((packed));
67 
68 struct mspro_sys_info {
69 	unsigned char  class;
70 	unsigned char  reserved0;
71 	__be16 block_size;
72 	__be16 block_count;
73 	__be16 user_block_count;
74 	__be16 page_size;
75 	unsigned char  reserved1[2];
76 	unsigned char  assembly_date[8];
77 	__be32 serial_number;
78 	unsigned char  assembly_maker_code;
79 	unsigned char  assembly_model_code[3];
80 	__be16 memory_maker_code;
81 	__be16 memory_model_code;
82 	unsigned char  reserved2[4];
83 	unsigned char  vcc;
84 	unsigned char  vpp;
85 	__be16 controller_number;
86 	__be16 controller_function;
87 	__be16 start_sector;
88 	__be16 unit_size;
89 	unsigned char  ms_sub_class;
90 	unsigned char  reserved3[4];
91 	unsigned char  interface_type;
92 	__be16 controller_code;
93 	unsigned char  format_type;
94 	unsigned char  reserved4;
95 	unsigned char  device_type;
96 	unsigned char  reserved5[7];
97 	unsigned char  mspro_id[16];
98 	unsigned char  reserved6[16];
99 } __attribute__((packed));
100 
101 struct mspro_mbr {
102 	unsigned char boot_partition;
103 	unsigned char start_head;
104 	unsigned char start_sector;
105 	unsigned char start_cylinder;
106 	unsigned char partition_type;
107 	unsigned char end_head;
108 	unsigned char end_sector;
109 	unsigned char end_cylinder;
110 	unsigned int  start_sectors;
111 	unsigned int  sectors_per_partition;
112 } __attribute__((packed));
113 
114 struct mspro_specfile {
115 	char           name[8];
116 	char           ext[3];
117 	unsigned char  attr;
118 	unsigned char  reserved[10];
119 	unsigned short time;
120 	unsigned short date;
121 	unsigned short cluster;
122 	unsigned int   size;
123 } __attribute__((packed));
124 
125 struct mspro_devinfo {
126 	__be16 cylinders;
127 	__be16 heads;
128 	__be16 bytes_per_track;
129 	__be16 bytes_per_sector;
130 	__be16 sectors_per_track;
131 	unsigned char  reserved[6];
132 } __attribute__((packed));
133 
134 struct mspro_block_data {
135 	struct memstick_dev   *card;
136 	unsigned int          caps;
137 	struct gendisk        *disk;
138 	struct request_queue  *queue;
139 	struct request        *block_req;
140 	struct blk_mq_tag_set tag_set;
141 	spinlock_t            q_lock;
142 
143 	unsigned short        page_size;
144 	unsigned short        cylinders;
145 	unsigned short        heads;
146 	unsigned short        sectors_per_track;
147 
148 	unsigned char         system;
149 	unsigned char         read_only:1,
150 			      eject:1,
151 			      data_dir:1,
152 			      active:1;
153 	unsigned char         transfer_cmd;
154 
155 	int                   (*mrq_handler)(struct memstick_dev *card,
156 					     struct memstick_request **mrq);
157 
158 
159 	/* Default request setup function for data access method preferred by
160 	 * this host instance.
161 	 */
162 	void                  (*setup_transfer)(struct memstick_dev *card,
163 						u64 offset, size_t length);
164 
165 	struct attribute_group attr_group;
166 
167 	struct scatterlist    req_sg[MSPRO_BLOCK_MAX_SEGS];
168 	unsigned int          seg_count;
169 	unsigned int          current_seg;
170 	unsigned int          current_page;
171 };
172 
173 static DEFINE_IDR(mspro_block_disk_idr);
174 static DEFINE_MUTEX(mspro_block_disk_lock);
175 
176 static int mspro_block_complete_req(struct memstick_dev *card, int error);
177 
178 /*** Block device ***/
179 
mspro_block_bd_free_disk(struct gendisk * disk)180 static void mspro_block_bd_free_disk(struct gendisk *disk)
181 {
182 	struct mspro_block_data *msb = disk->private_data;
183 	int disk_id = MINOR(disk_devt(disk)) >> MSPRO_BLOCK_PART_SHIFT;
184 
185 	mutex_lock(&mspro_block_disk_lock);
186 	idr_remove(&mspro_block_disk_idr, disk_id);
187 	mutex_unlock(&mspro_block_disk_lock);
188 
189 	kfree(msb);
190 }
191 
mspro_block_bd_getgeo(struct block_device * bdev,struct hd_geometry * geo)192 static int mspro_block_bd_getgeo(struct block_device *bdev,
193 				 struct hd_geometry *geo)
194 {
195 	struct mspro_block_data *msb = bdev->bd_disk->private_data;
196 
197 	geo->heads = msb->heads;
198 	geo->sectors = msb->sectors_per_track;
199 	geo->cylinders = msb->cylinders;
200 
201 	return 0;
202 }
203 
204 static const struct block_device_operations ms_block_bdops = {
205 	.owner		= THIS_MODULE,
206 	.getgeo		= mspro_block_bd_getgeo,
207 	.free_disk	= mspro_block_bd_free_disk,
208 };
209 
210 /*** Information ***/
211 
mspro_from_sysfs_attr(struct attribute * attr)212 static struct mspro_sys_attr *mspro_from_sysfs_attr(struct attribute *attr)
213 {
214 	struct device_attribute *dev_attr
215 		= container_of(attr, struct device_attribute, attr);
216 	return container_of(dev_attr, struct mspro_sys_attr, dev_attr);
217 }
218 
mspro_block_attr_name(unsigned char tag)219 static const char *mspro_block_attr_name(unsigned char tag)
220 {
221 	switch (tag) {
222 	case MSPRO_BLOCK_ID_SYSINFO:
223 		return "attr_sysinfo";
224 	case MSPRO_BLOCK_ID_MODELNAME:
225 		return "attr_modelname";
226 	case MSPRO_BLOCK_ID_MBR:
227 		return "attr_mbr";
228 	case MSPRO_BLOCK_ID_PBR16:
229 		return "attr_pbr16";
230 	case MSPRO_BLOCK_ID_PBR32:
231 		return "attr_pbr32";
232 	case MSPRO_BLOCK_ID_SPECFILEVALUES1:
233 		return "attr_specfilevalues1";
234 	case MSPRO_BLOCK_ID_SPECFILEVALUES2:
235 		return "attr_specfilevalues2";
236 	case MSPRO_BLOCK_ID_DEVINFO:
237 		return "attr_devinfo";
238 	default:
239 		return NULL;
240 	}
241 }
242 
243 typedef ssize_t (*sysfs_show_t)(struct device *dev,
244 				struct device_attribute *attr,
245 				char *buffer);
246 
mspro_block_attr_show_default(struct device * dev,struct device_attribute * attr,char * buffer)247 static ssize_t mspro_block_attr_show_default(struct device *dev,
248 					     struct device_attribute *attr,
249 					     char *buffer)
250 {
251 	struct mspro_sys_attr *s_attr = container_of(attr,
252 						     struct mspro_sys_attr,
253 						     dev_attr);
254 
255 	ssize_t cnt, rc = 0;
256 
257 	for (cnt = 0; cnt < s_attr->size; cnt++) {
258 		if (cnt && !(cnt % 16)) {
259 			if (PAGE_SIZE - rc)
260 				buffer[rc++] = '\n';
261 		}
262 
263 		rc += sysfs_emit_at(buffer, rc, "%02x ",
264 				    ((unsigned char *)s_attr->data)[cnt]);
265 	}
266 	return rc;
267 }
268 
mspro_block_attr_show_sysinfo(struct device * dev,struct device_attribute * attr,char * buffer)269 static ssize_t mspro_block_attr_show_sysinfo(struct device *dev,
270 					     struct device_attribute *attr,
271 					     char *buffer)
272 {
273 	struct mspro_sys_attr *x_attr = container_of(attr,
274 						     struct mspro_sys_attr,
275 						     dev_attr);
276 	struct mspro_sys_info *x_sys = x_attr->data;
277 	ssize_t rc = 0;
278 	int date_tz = 0, date_tz_f = 0;
279 
280 	if (x_sys->assembly_date[0] > 0x80U) {
281 		date_tz = (~x_sys->assembly_date[0]) + 1;
282 		date_tz_f = date_tz & 3;
283 		date_tz >>= 2;
284 		date_tz = -date_tz;
285 		date_tz_f *= 15;
286 	} else if (x_sys->assembly_date[0] < 0x80U) {
287 		date_tz = x_sys->assembly_date[0];
288 		date_tz_f = date_tz & 3;
289 		date_tz >>= 2;
290 		date_tz_f *= 15;
291 	}
292 
293 	rc += sysfs_emit_at(buffer, rc, "class: %x\n", x_sys->class);
294 	rc += sysfs_emit_at(buffer, rc, "block size: %x\n", be16_to_cpu(x_sys->block_size));
295 	rc += sysfs_emit_at(buffer, rc, "block count: %x\n", be16_to_cpu(x_sys->block_count));
296 	rc += sysfs_emit_at(buffer, rc, "user block count: %x\n",
297 			    be16_to_cpu(x_sys->user_block_count));
298 	rc += sysfs_emit_at(buffer, rc, "page size: %x\n", be16_to_cpu(x_sys->page_size));
299 	rc += sysfs_emit_at(buffer, rc, "assembly date: GMT%+d:%d %04u-%02u-%02u %02u:%02u:%02u\n",
300 			    date_tz, date_tz_f,
301 			    be16_to_cpup((__be16 *)&x_sys->assembly_date[1]),
302 			    x_sys->assembly_date[3], x_sys->assembly_date[4],
303 			    x_sys->assembly_date[5], x_sys->assembly_date[6],
304 			    x_sys->assembly_date[7]);
305 	rc += sysfs_emit_at(buffer, rc, "serial number: %x\n", be32_to_cpu(x_sys->serial_number));
306 	rc += sysfs_emit_at(buffer, rc, "assembly maker code: %x\n", x_sys->assembly_maker_code);
307 	rc += sysfs_emit_at(buffer, rc, "assembly model code: %02x%02x%02x\n",
308 			    x_sys->assembly_model_code[0],
309 			    x_sys->assembly_model_code[1],
310 			    x_sys->assembly_model_code[2]);
311 	rc += sysfs_emit_at(buffer, rc, "memory maker code: %x\n",
312 			    be16_to_cpu(x_sys->memory_maker_code));
313 	rc += sysfs_emit_at(buffer, rc, "memory model code: %x\n",
314 			    be16_to_cpu(x_sys->memory_model_code));
315 	rc += sysfs_emit_at(buffer, rc, "vcc: %x\n", x_sys->vcc);
316 	rc += sysfs_emit_at(buffer, rc, "vpp: %x\n", x_sys->vpp);
317 	rc += sysfs_emit_at(buffer, rc, "controller number: %x\n",
318 			    be16_to_cpu(x_sys->controller_number));
319 	rc += sysfs_emit_at(buffer, rc, "controller function: %x\n",
320 			    be16_to_cpu(x_sys->controller_function));
321 	rc += sysfs_emit_at(buffer, rc, "start sector: %x\n", be16_to_cpu(x_sys->start_sector));
322 	rc += sysfs_emit_at(buffer, rc, "unit size: %x\n", be16_to_cpu(x_sys->unit_size));
323 	rc += sysfs_emit_at(buffer, rc, "sub class: %x\n", x_sys->ms_sub_class);
324 	rc += sysfs_emit_at(buffer, rc, "interface type: %x\n", x_sys->interface_type);
325 	rc += sysfs_emit_at(buffer, rc, "controller code: %x\n",
326 			    be16_to_cpu(x_sys->controller_code));
327 	rc += sysfs_emit_at(buffer, rc, "format type: %x\n", x_sys->format_type);
328 	rc += sysfs_emit_at(buffer, rc, "device type: %x\n", x_sys->device_type);
329 	rc += sysfs_emit_at(buffer, rc, "mspro id: %s\n", x_sys->mspro_id);
330 	return rc;
331 }
332 
mspro_block_attr_show_modelname(struct device * dev,struct device_attribute * attr,char * buffer)333 static ssize_t mspro_block_attr_show_modelname(struct device *dev,
334 					       struct device_attribute *attr,
335 					       char *buffer)
336 {
337 	struct mspro_sys_attr *s_attr = container_of(attr,
338 						     struct mspro_sys_attr,
339 						     dev_attr);
340 
341 	return sysfs_emit(buffer, "%s", (char *)s_attr->data);
342 }
343 
mspro_block_attr_show_mbr(struct device * dev,struct device_attribute * attr,char * buffer)344 static ssize_t mspro_block_attr_show_mbr(struct device *dev,
345 					 struct device_attribute *attr,
346 					 char *buffer)
347 {
348 	struct mspro_sys_attr *x_attr = container_of(attr,
349 						     struct mspro_sys_attr,
350 						     dev_attr);
351 	struct mspro_mbr *x_mbr = x_attr->data;
352 	ssize_t rc = 0;
353 
354 	rc += sysfs_emit_at(buffer, rc, "boot partition: %x\n", x_mbr->boot_partition);
355 	rc += sysfs_emit_at(buffer, rc, "start head: %x\n", x_mbr->start_head);
356 	rc += sysfs_emit_at(buffer, rc, "start sector: %x\n", x_mbr->start_sector);
357 	rc += sysfs_emit_at(buffer, rc, "start cylinder: %x\n", x_mbr->start_cylinder);
358 	rc += sysfs_emit_at(buffer, rc, "partition type: %x\n", x_mbr->partition_type);
359 	rc += sysfs_emit_at(buffer, rc, "end head: %x\n", x_mbr->end_head);
360 	rc += sysfs_emit_at(buffer, rc, "end sector: %x\n", x_mbr->end_sector);
361 	rc += sysfs_emit_at(buffer, rc, "end cylinder: %x\n", x_mbr->end_cylinder);
362 	rc += sysfs_emit_at(buffer, rc, "start sectors: %x\n", x_mbr->start_sectors);
363 	rc += sysfs_emit_at(buffer, rc, "sectors per partition: %x\n",
364 			    x_mbr->sectors_per_partition);
365 	return rc;
366 }
367 
mspro_block_attr_show_specfile(struct device * dev,struct device_attribute * attr,char * buffer)368 static ssize_t mspro_block_attr_show_specfile(struct device *dev,
369 					      struct device_attribute *attr,
370 					      char *buffer)
371 {
372 	struct mspro_sys_attr *x_attr = container_of(attr,
373 						     struct mspro_sys_attr,
374 						     dev_attr);
375 	struct mspro_specfile *x_spfile = x_attr->data;
376 	char name[9], ext[4];
377 	ssize_t rc = 0;
378 
379 	memcpy(name, x_spfile->name, 8);
380 	name[8] = 0;
381 	memcpy(ext, x_spfile->ext, 3);
382 	ext[3] = 0;
383 
384 	rc += sysfs_emit_at(buffer, rc, "name: %s\n", name);
385 	rc += sysfs_emit_at(buffer, rc, "ext: %s\n", ext);
386 	rc += sysfs_emit_at(buffer, rc, "attribute: %x\n", x_spfile->attr);
387 	rc += sysfs_emit_at(buffer, rc, "time: %d:%d:%d\n",
388 			    x_spfile->time >> 11,
389 			    (x_spfile->time >> 5) & 0x3f,
390 			    (x_spfile->time & 0x1f) * 2);
391 	rc += sysfs_emit_at(buffer, rc, "date: %d-%d-%d\n",
392 			    (x_spfile->date >> 9) + 1980,
393 			    (x_spfile->date >> 5) & 0xf,
394 			    x_spfile->date & 0x1f);
395 	rc += sysfs_emit_at(buffer, rc, "start cluster: %x\n", x_spfile->cluster);
396 	rc += sysfs_emit_at(buffer, rc, "size: %x\n", x_spfile->size);
397 	return rc;
398 }
399 
mspro_block_attr_show_devinfo(struct device * dev,struct device_attribute * attr,char * buffer)400 static ssize_t mspro_block_attr_show_devinfo(struct device *dev,
401 					     struct device_attribute *attr,
402 					     char *buffer)
403 {
404 	struct mspro_sys_attr *x_attr = container_of(attr,
405 						     struct mspro_sys_attr,
406 						     dev_attr);
407 	struct mspro_devinfo *x_devinfo = x_attr->data;
408 	ssize_t rc = 0;
409 
410 	rc += sysfs_emit_at(buffer, rc, "cylinders: %x\n", be16_to_cpu(x_devinfo->cylinders));
411 	rc += sysfs_emit_at(buffer, rc, "heads: %x\n", be16_to_cpu(x_devinfo->heads));
412 	rc += sysfs_emit_at(buffer, rc, "bytes per track: %x\n",
413 			    be16_to_cpu(x_devinfo->bytes_per_track));
414 	rc += sysfs_emit_at(buffer, rc, "bytes per sector: %x\n",
415 			    be16_to_cpu(x_devinfo->bytes_per_sector));
416 	rc += sysfs_emit_at(buffer, rc, "sectors per track: %x\n",
417 			    be16_to_cpu(x_devinfo->sectors_per_track));
418 	return rc;
419 }
420 
mspro_block_attr_show(unsigned char tag)421 static sysfs_show_t mspro_block_attr_show(unsigned char tag)
422 {
423 	switch (tag) {
424 	case MSPRO_BLOCK_ID_SYSINFO:
425 		return mspro_block_attr_show_sysinfo;
426 	case MSPRO_BLOCK_ID_MODELNAME:
427 		return mspro_block_attr_show_modelname;
428 	case MSPRO_BLOCK_ID_MBR:
429 		return mspro_block_attr_show_mbr;
430 	case MSPRO_BLOCK_ID_SPECFILEVALUES1:
431 	case MSPRO_BLOCK_ID_SPECFILEVALUES2:
432 		return mspro_block_attr_show_specfile;
433 	case MSPRO_BLOCK_ID_DEVINFO:
434 		return mspro_block_attr_show_devinfo;
435 	default:
436 		return mspro_block_attr_show_default;
437 	}
438 }
439 
440 /*** Protocol handlers ***/
441 
442 /*
443  * Functions prefixed with "h_" are protocol callbacks. They can be called from
444  * interrupt context. Return value of 0 means that request processing is still
445  * ongoing, while special error value of -EAGAIN means that current request is
446  * finished (and request processor should come back some time later).
447  */
448 
h_mspro_block_req_init(struct memstick_dev * card,struct memstick_request ** mrq)449 static int h_mspro_block_req_init(struct memstick_dev *card,
450 				  struct memstick_request **mrq)
451 {
452 	struct mspro_block_data *msb = memstick_get_drvdata(card);
453 
454 	*mrq = &card->current_mrq;
455 	card->next_request = msb->mrq_handler;
456 	return 0;
457 }
458 
h_mspro_block_default(struct memstick_dev * card,struct memstick_request ** mrq)459 static int h_mspro_block_default(struct memstick_dev *card,
460 				 struct memstick_request **mrq)
461 {
462 	return mspro_block_complete_req(card, (*mrq)->error);
463 }
464 
h_mspro_block_default_bad(struct memstick_dev * card,struct memstick_request ** mrq)465 static int h_mspro_block_default_bad(struct memstick_dev *card,
466 				     struct memstick_request **mrq)
467 {
468 	return -ENXIO;
469 }
470 
h_mspro_block_get_ro(struct memstick_dev * card,struct memstick_request ** mrq)471 static int h_mspro_block_get_ro(struct memstick_dev *card,
472 				struct memstick_request **mrq)
473 {
474 	struct mspro_block_data *msb = memstick_get_drvdata(card);
475 
476 	if (!(*mrq)->error) {
477 		if ((*mrq)->data[offsetof(struct ms_status_register, status0)]
478 		    & MEMSTICK_STATUS0_WP)
479 			msb->read_only = 1;
480 		else
481 			msb->read_only = 0;
482 	}
483 
484 	return mspro_block_complete_req(card, (*mrq)->error);
485 }
486 
h_mspro_block_wait_for_ced(struct memstick_dev * card,struct memstick_request ** mrq)487 static int h_mspro_block_wait_for_ced(struct memstick_dev *card,
488 				      struct memstick_request **mrq)
489 {
490 	dev_dbg(&card->dev, "wait for ced: value %x\n", (*mrq)->data[0]);
491 
492 	if (!(*mrq)->error) {
493 		if ((*mrq)->data[0] & (MEMSTICK_INT_CMDNAK | MEMSTICK_INT_ERR))
494 			(*mrq)->error = -EFAULT;
495 		else if (!((*mrq)->data[0] & MEMSTICK_INT_CED))
496 			return 0;
497 	}
498 
499 	return mspro_block_complete_req(card, (*mrq)->error);
500 }
501 
h_mspro_block_transfer_data(struct memstick_dev * card,struct memstick_request ** mrq)502 static int h_mspro_block_transfer_data(struct memstick_dev *card,
503 				       struct memstick_request **mrq)
504 {
505 	struct mspro_block_data *msb = memstick_get_drvdata(card);
506 	unsigned char t_val = 0;
507 	struct scatterlist t_sg = { 0 };
508 	size_t t_offset;
509 
510 	if ((*mrq)->error)
511 		return mspro_block_complete_req(card, (*mrq)->error);
512 
513 	switch ((*mrq)->tpc) {
514 	case MS_TPC_WRITE_REG:
515 		memstick_init_req(*mrq, MS_TPC_SET_CMD, &msb->transfer_cmd, 1);
516 		(*mrq)->need_card_int = 1;
517 		return 0;
518 	case MS_TPC_SET_CMD:
519 		t_val = (*mrq)->int_reg;
520 		memstick_init_req(*mrq, MS_TPC_GET_INT, NULL, 1);
521 		if (msb->caps & MEMSTICK_CAP_AUTO_GET_INT)
522 			goto has_int_reg;
523 		return 0;
524 	case MS_TPC_GET_INT:
525 		t_val = (*mrq)->data[0];
526 has_int_reg:
527 		if (t_val & (MEMSTICK_INT_CMDNAK | MEMSTICK_INT_ERR)) {
528 			t_val = MSPRO_CMD_STOP;
529 			memstick_init_req(*mrq, MS_TPC_SET_CMD, &t_val, 1);
530 			card->next_request = h_mspro_block_default;
531 			return 0;
532 		}
533 
534 		if (msb->current_page
535 		    == (msb->req_sg[msb->current_seg].length
536 			/ msb->page_size)) {
537 			msb->current_page = 0;
538 			msb->current_seg++;
539 
540 			if (msb->current_seg == msb->seg_count) {
541 				if (t_val & MEMSTICK_INT_CED) {
542 					return mspro_block_complete_req(card,
543 									0);
544 				} else {
545 					card->next_request
546 						= h_mspro_block_wait_for_ced;
547 					memstick_init_req(*mrq, MS_TPC_GET_INT,
548 							  NULL, 1);
549 					return 0;
550 				}
551 			}
552 		}
553 
554 		if (!(t_val & MEMSTICK_INT_BREQ)) {
555 			memstick_init_req(*mrq, MS_TPC_GET_INT, NULL, 1);
556 			return 0;
557 		}
558 
559 		t_offset = msb->req_sg[msb->current_seg].offset;
560 		t_offset += msb->current_page * msb->page_size;
561 
562 		sg_set_page(&t_sg,
563 			    nth_page(sg_page(&(msb->req_sg[msb->current_seg])),
564 				     t_offset >> PAGE_SHIFT),
565 			    msb->page_size, offset_in_page(t_offset));
566 
567 		memstick_init_req_sg(*mrq, msb->data_dir == READ
568 					   ? MS_TPC_READ_LONG_DATA
569 					   : MS_TPC_WRITE_LONG_DATA,
570 				     &t_sg);
571 		(*mrq)->need_card_int = 1;
572 		return 0;
573 	case MS_TPC_READ_LONG_DATA:
574 	case MS_TPC_WRITE_LONG_DATA:
575 		msb->current_page++;
576 		if (msb->caps & MEMSTICK_CAP_AUTO_GET_INT) {
577 			t_val = (*mrq)->int_reg;
578 			goto has_int_reg;
579 		} else {
580 			memstick_init_req(*mrq, MS_TPC_GET_INT, NULL, 1);
581 			return 0;
582 		}
583 
584 	default:
585 		BUG();
586 	}
587 }
588 
589 /*** Transfer setup functions for different access methods. ***/
590 
591 /** Setup data transfer request for SET_CMD TPC with arguments in card
592  *  registers.
593  *
594  *  @card    Current media instance
595  *  @offset  Target data offset in bytes
596  *  @length  Required transfer length in bytes.
597  */
h_mspro_block_setup_cmd(struct memstick_dev * card,u64 offset,size_t length)598 static void h_mspro_block_setup_cmd(struct memstick_dev *card, u64 offset,
599 				    size_t length)
600 {
601 	struct mspro_block_data *msb = memstick_get_drvdata(card);
602 	struct mspro_param_register param = {
603 		.system = msb->system,
604 		.data_count = cpu_to_be16((uint16_t)(length / msb->page_size)),
605 		/* ISO C90 warning precludes direct initialization for now. */
606 		.data_address = 0,
607 		.tpc_param = 0
608 	};
609 
610 	do_div(offset, msb->page_size);
611 	param.data_address = cpu_to_be32((uint32_t)offset);
612 
613 	card->next_request = h_mspro_block_req_init;
614 	msb->mrq_handler = h_mspro_block_transfer_data;
615 	memstick_init_req(&card->current_mrq, MS_TPC_WRITE_REG,
616 			  &param, sizeof(param));
617 }
618 
619 /*** Data transfer ***/
620 
mspro_block_issue_req(struct memstick_dev * card)621 static int mspro_block_issue_req(struct memstick_dev *card)
622 {
623 	struct mspro_block_data *msb = memstick_get_drvdata(card);
624 	u64 t_off;
625 	unsigned int count;
626 
627 	while (true) {
628 		msb->current_page = 0;
629 		msb->current_seg = 0;
630 		msb->seg_count = blk_rq_map_sg(msb->block_req, msb->req_sg);
631 
632 		if (!msb->seg_count) {
633 			unsigned int bytes = blk_rq_cur_bytes(msb->block_req);
634 			bool chunk;
635 
636 			chunk = blk_update_request(msb->block_req,
637 							BLK_STS_RESOURCE,
638 							bytes);
639 			if (chunk)
640 				continue;
641 			__blk_mq_end_request(msb->block_req,
642 						BLK_STS_RESOURCE);
643 			msb->block_req = NULL;
644 			return -EAGAIN;
645 		}
646 
647 		t_off = blk_rq_pos(msb->block_req);
648 		t_off <<= 9;
649 		count = blk_rq_bytes(msb->block_req);
650 
651 		msb->setup_transfer(card, t_off, count);
652 
653 		msb->data_dir = rq_data_dir(msb->block_req);
654 		msb->transfer_cmd = msb->data_dir == READ
655 				    ? MSPRO_CMD_READ_DATA
656 				    : MSPRO_CMD_WRITE_DATA;
657 
658 		memstick_new_req(card->host);
659 		return 0;
660 	}
661 }
662 
mspro_block_complete_req(struct memstick_dev * card,int error)663 static int mspro_block_complete_req(struct memstick_dev *card, int error)
664 {
665 	struct mspro_block_data *msb = memstick_get_drvdata(card);
666 	int cnt;
667 	bool chunk;
668 	unsigned int t_len = 0;
669 	unsigned long flags;
670 
671 	spin_lock_irqsave(&msb->q_lock, flags);
672 	dev_dbg(&card->dev, "complete %d, %d\n", msb->block_req ? 1 : 0,
673 		error);
674 
675 	if (msb->block_req) {
676 		/* Nothing to do - not really an error */
677 		if (error == -EAGAIN)
678 			error = 0;
679 
680 		if (error || (card->current_mrq.tpc == MSPRO_CMD_STOP)) {
681 			if (msb->data_dir == READ) {
682 				for (cnt = 0; cnt < msb->current_seg; cnt++) {
683 					t_len += msb->req_sg[cnt].length
684 						 / msb->page_size;
685 
686 					if (msb->current_page)
687 						t_len += msb->current_page - 1;
688 
689 					t_len *= msb->page_size;
690 				}
691 			}
692 		} else
693 			t_len = blk_rq_bytes(msb->block_req);
694 
695 		dev_dbg(&card->dev, "transferred %x (%d)\n", t_len, error);
696 
697 		if (error && !t_len)
698 			t_len = blk_rq_cur_bytes(msb->block_req);
699 
700 		chunk = blk_update_request(msb->block_req,
701 				errno_to_blk_status(error), t_len);
702 		if (chunk) {
703 			error = mspro_block_issue_req(card);
704 			if (!error)
705 				goto out;
706 		} else {
707 			__blk_mq_end_request(msb->block_req,
708 						errno_to_blk_status(error));
709 			msb->block_req = NULL;
710 		}
711 	} else {
712 		if (!error)
713 			error = -EAGAIN;
714 	}
715 
716 	card->next_request = h_mspro_block_default_bad;
717 	complete_all(&card->mrq_complete);
718 out:
719 	spin_unlock_irqrestore(&msb->q_lock, flags);
720 	return error;
721 }
722 
mspro_block_stop(struct memstick_dev * card)723 static void mspro_block_stop(struct memstick_dev *card)
724 {
725 	struct mspro_block_data *msb = memstick_get_drvdata(card);
726 	int rc = 0;
727 	unsigned long flags;
728 
729 	while (1) {
730 		spin_lock_irqsave(&msb->q_lock, flags);
731 		if (!msb->block_req) {
732 			blk_mq_stop_hw_queues(msb->queue);
733 			rc = 1;
734 		}
735 		spin_unlock_irqrestore(&msb->q_lock, flags);
736 
737 		if (rc)
738 			break;
739 
740 		wait_for_completion(&card->mrq_complete);
741 	}
742 }
743 
mspro_block_start(struct memstick_dev * card)744 static void mspro_block_start(struct memstick_dev *card)
745 {
746 	struct mspro_block_data *msb = memstick_get_drvdata(card);
747 
748 	blk_mq_start_hw_queues(msb->queue);
749 }
750 
mspro_queue_rq(struct blk_mq_hw_ctx * hctx,const struct blk_mq_queue_data * bd)751 static blk_status_t mspro_queue_rq(struct blk_mq_hw_ctx *hctx,
752 				   const struct blk_mq_queue_data *bd)
753 {
754 	struct memstick_dev *card = hctx->queue->queuedata;
755 	struct mspro_block_data *msb = memstick_get_drvdata(card);
756 
757 	spin_lock_irq(&msb->q_lock);
758 
759 	if (msb->block_req) {
760 		spin_unlock_irq(&msb->q_lock);
761 		return BLK_STS_DEV_RESOURCE;
762 	}
763 
764 	if (msb->eject) {
765 		spin_unlock_irq(&msb->q_lock);
766 		blk_mq_start_request(bd->rq);
767 		return BLK_STS_IOERR;
768 	}
769 
770 	msb->block_req = bd->rq;
771 	blk_mq_start_request(bd->rq);
772 
773 	if (mspro_block_issue_req(card))
774 		msb->block_req = NULL;
775 
776 	spin_unlock_irq(&msb->q_lock);
777 	return BLK_STS_OK;
778 }
779 
780 /*** Initialization ***/
781 
mspro_block_wait_for_ced(struct memstick_dev * card)782 static int mspro_block_wait_for_ced(struct memstick_dev *card)
783 {
784 	struct mspro_block_data *msb = memstick_get_drvdata(card);
785 
786 	card->next_request = h_mspro_block_req_init;
787 	msb->mrq_handler = h_mspro_block_wait_for_ced;
788 	memstick_init_req(&card->current_mrq, MS_TPC_GET_INT, NULL, 1);
789 	memstick_new_req(card->host);
790 	wait_for_completion(&card->mrq_complete);
791 	return card->current_mrq.error;
792 }
793 
mspro_block_set_interface(struct memstick_dev * card,unsigned char sys_reg)794 static int mspro_block_set_interface(struct memstick_dev *card,
795 				     unsigned char sys_reg)
796 {
797 	struct memstick_host *host = card->host;
798 	struct mspro_block_data *msb = memstick_get_drvdata(card);
799 	struct mspro_param_register param = {
800 		.system = sys_reg,
801 		.data_count = 0,
802 		.data_address = 0,
803 		.tpc_param = 0
804 	};
805 
806 	card->next_request = h_mspro_block_req_init;
807 	msb->mrq_handler = h_mspro_block_default;
808 	memstick_init_req(&card->current_mrq, MS_TPC_WRITE_REG, &param,
809 			  sizeof(param));
810 	memstick_new_req(host);
811 	wait_for_completion(&card->mrq_complete);
812 	return card->current_mrq.error;
813 }
814 
mspro_block_switch_interface(struct memstick_dev * card)815 static int mspro_block_switch_interface(struct memstick_dev *card)
816 {
817 	struct memstick_host *host = card->host;
818 	struct mspro_block_data *msb = memstick_get_drvdata(card);
819 	int rc = 0;
820 
821 try_again:
822 	if (msb->caps & MEMSTICK_CAP_PAR4)
823 		rc = mspro_block_set_interface(card, MEMSTICK_SYS_PAR4);
824 	else
825 		return 0;
826 
827 	if (rc) {
828 		printk(KERN_WARNING
829 		       "%s: could not switch to 4-bit mode, error %d\n",
830 		       dev_name(&card->dev), rc);
831 		return 0;
832 	}
833 
834 	msb->system = MEMSTICK_SYS_PAR4;
835 	host->set_param(host, MEMSTICK_INTERFACE, MEMSTICK_PAR4);
836 	printk(KERN_INFO "%s: switching to 4-bit parallel mode\n",
837 	       dev_name(&card->dev));
838 
839 	if (msb->caps & MEMSTICK_CAP_PAR8) {
840 		rc = mspro_block_set_interface(card, MEMSTICK_SYS_PAR8);
841 
842 		if (!rc) {
843 			msb->system = MEMSTICK_SYS_PAR8;
844 			host->set_param(host, MEMSTICK_INTERFACE,
845 					MEMSTICK_PAR8);
846 			printk(KERN_INFO
847 			       "%s: switching to 8-bit parallel mode\n",
848 			       dev_name(&card->dev));
849 		} else
850 			printk(KERN_WARNING
851 			       "%s: could not switch to 8-bit mode, error %d\n",
852 			       dev_name(&card->dev), rc);
853 	}
854 
855 	card->next_request = h_mspro_block_req_init;
856 	msb->mrq_handler = h_mspro_block_default;
857 	memstick_init_req(&card->current_mrq, MS_TPC_GET_INT, NULL, 1);
858 	memstick_new_req(card->host);
859 	wait_for_completion(&card->mrq_complete);
860 	rc = card->current_mrq.error;
861 
862 	if (rc) {
863 		printk(KERN_WARNING
864 		       "%s: interface error, trying to fall back to serial\n",
865 		       dev_name(&card->dev));
866 		msb->system = MEMSTICK_SYS_SERIAL;
867 		host->set_param(host, MEMSTICK_POWER, MEMSTICK_POWER_OFF);
868 		msleep(10);
869 		host->set_param(host, MEMSTICK_POWER, MEMSTICK_POWER_ON);
870 		host->set_param(host, MEMSTICK_INTERFACE, MEMSTICK_SERIAL);
871 
872 		rc = memstick_set_rw_addr(card);
873 		if (!rc)
874 			rc = mspro_block_set_interface(card, msb->system);
875 
876 		if (!rc) {
877 			msleep(150);
878 			rc = mspro_block_wait_for_ced(card);
879 			if (rc)
880 				return rc;
881 
882 			if (msb->caps & MEMSTICK_CAP_PAR8) {
883 				msb->caps &= ~MEMSTICK_CAP_PAR8;
884 				goto try_again;
885 			}
886 		}
887 	}
888 	return rc;
889 }
890 
891 /* Memory allocated for attributes by this function should be freed by
892  * mspro_block_data_clear, no matter if the initialization process succeeded
893  * or failed.
894  */
mspro_block_read_attributes(struct memstick_dev * card)895 static int mspro_block_read_attributes(struct memstick_dev *card)
896 {
897 	struct mspro_block_data *msb = memstick_get_drvdata(card);
898 	struct mspro_attribute *attr = NULL;
899 	struct mspro_sys_attr *s_attr = NULL;
900 	unsigned char *buffer = NULL;
901 	int cnt, rc, attr_count;
902 	/* While normally physical device offsets, represented here by
903 	 * attr_offset and attr_len will be of large numeric types, we can be
904 	 * sure, that attributes are close enough to the beginning of the
905 	 * device, to save ourselves some trouble.
906 	 */
907 	unsigned int addr, attr_offset = 0, attr_len = msb->page_size;
908 
909 	attr = kmalloc(msb->page_size, GFP_KERNEL);
910 	if (!attr)
911 		return -ENOMEM;
912 
913 	sg_init_one(&msb->req_sg[0], attr, msb->page_size);
914 	msb->seg_count = 1;
915 	msb->current_seg = 0;
916 	msb->current_page = 0;
917 	msb->data_dir = READ;
918 	msb->transfer_cmd = MSPRO_CMD_READ_ATRB;
919 
920 	msb->setup_transfer(card, attr_offset, attr_len);
921 
922 	memstick_new_req(card->host);
923 	wait_for_completion(&card->mrq_complete);
924 	if (card->current_mrq.error) {
925 		rc = card->current_mrq.error;
926 		goto out_free_attr;
927 	}
928 
929 	if (be16_to_cpu(attr->signature) != MSPRO_BLOCK_SIGNATURE) {
930 		printk(KERN_ERR "%s: unrecognized device signature %x\n",
931 		       dev_name(&card->dev), be16_to_cpu(attr->signature));
932 		rc = -ENODEV;
933 		goto out_free_attr;
934 	}
935 
936 	if (attr->count > MSPRO_BLOCK_MAX_ATTRIBUTES) {
937 		printk(KERN_WARNING "%s: way too many attribute entries\n",
938 		       dev_name(&card->dev));
939 		attr_count = MSPRO_BLOCK_MAX_ATTRIBUTES;
940 	} else
941 		attr_count = attr->count;
942 
943 	msb->attr_group.attrs = kcalloc(attr_count + 1,
944 					sizeof(*msb->attr_group.attrs),
945 					GFP_KERNEL);
946 	if (!msb->attr_group.attrs) {
947 		rc = -ENOMEM;
948 		goto out_free_attr;
949 	}
950 	msb->attr_group.name = "media_attributes";
951 
952 	buffer = kmemdup(attr, attr_len, GFP_KERNEL);
953 	if (!buffer) {
954 		rc = -ENOMEM;
955 		goto out_free_attr;
956 	}
957 
958 	for (cnt = 0; cnt < attr_count; ++cnt) {
959 		s_attr = kzalloc(sizeof(struct mspro_sys_attr), GFP_KERNEL);
960 		if (!s_attr) {
961 			rc = -ENOMEM;
962 			goto out_free_buffer;
963 		}
964 
965 		msb->attr_group.attrs[cnt] = &s_attr->dev_attr.attr;
966 		addr = be32_to_cpu(attr->entries[cnt].address);
967 		s_attr->size = be32_to_cpu(attr->entries[cnt].size);
968 		dev_dbg(&card->dev, "adding attribute %d: id %x, address %x, "
969 			"size %zx\n", cnt, attr->entries[cnt].id, addr,
970 			s_attr->size);
971 		s_attr->id = attr->entries[cnt].id;
972 		if (mspro_block_attr_name(s_attr->id))
973 			snprintf(s_attr->name, sizeof(s_attr->name), "%s",
974 				 mspro_block_attr_name(attr->entries[cnt].id));
975 		else
976 			snprintf(s_attr->name, sizeof(s_attr->name),
977 				 "attr_x%02x", attr->entries[cnt].id);
978 
979 		sysfs_attr_init(&s_attr->dev_attr.attr);
980 		s_attr->dev_attr.attr.name = s_attr->name;
981 		s_attr->dev_attr.attr.mode = S_IRUGO;
982 		s_attr->dev_attr.show = mspro_block_attr_show(s_attr->id);
983 
984 		if (!s_attr->size)
985 			continue;
986 
987 		s_attr->data = kmalloc(s_attr->size, GFP_KERNEL);
988 		if (!s_attr->data) {
989 			rc = -ENOMEM;
990 			goto out_free_buffer;
991 		}
992 
993 		if (((addr / msb->page_size) == (attr_offset / msb->page_size))
994 		    && (((addr + s_attr->size - 1) / msb->page_size)
995 			== (attr_offset / msb->page_size))) {
996 			memcpy(s_attr->data, buffer + addr % msb->page_size,
997 			       s_attr->size);
998 			continue;
999 		}
1000 
1001 		attr_offset = (addr / msb->page_size) * msb->page_size;
1002 
1003 		if ((attr_offset + attr_len) < (addr + s_attr->size)) {
1004 			kfree(buffer);
1005 			attr_len = (((addr + s_attr->size) / msb->page_size)
1006 				    + 1 ) * msb->page_size - attr_offset;
1007 			buffer = kmalloc(attr_len, GFP_KERNEL);
1008 			if (!buffer) {
1009 				rc = -ENOMEM;
1010 				goto out_free_attr;
1011 			}
1012 		}
1013 
1014 		sg_init_one(&msb->req_sg[0], buffer, attr_len);
1015 		msb->seg_count = 1;
1016 		msb->current_seg = 0;
1017 		msb->current_page = 0;
1018 		msb->data_dir = READ;
1019 		msb->transfer_cmd = MSPRO_CMD_READ_ATRB;
1020 
1021 		dev_dbg(&card->dev, "reading attribute range %x, %x\n",
1022 			attr_offset, attr_len);
1023 
1024 		msb->setup_transfer(card, attr_offset, attr_len);
1025 		memstick_new_req(card->host);
1026 		wait_for_completion(&card->mrq_complete);
1027 		if (card->current_mrq.error) {
1028 			rc = card->current_mrq.error;
1029 			goto out_free_buffer;
1030 		}
1031 
1032 		memcpy(s_attr->data, buffer + addr % msb->page_size,
1033 		       s_attr->size);
1034 	}
1035 
1036 	rc = 0;
1037 out_free_buffer:
1038 	kfree(buffer);
1039 out_free_attr:
1040 	kfree(attr);
1041 	return rc;
1042 }
1043 
mspro_block_init_card(struct memstick_dev * card)1044 static int mspro_block_init_card(struct memstick_dev *card)
1045 {
1046 	struct mspro_block_data *msb = memstick_get_drvdata(card);
1047 	struct memstick_host *host = card->host;
1048 	int rc = 0;
1049 
1050 	msb->system = MEMSTICK_SYS_SERIAL;
1051 	msb->setup_transfer = h_mspro_block_setup_cmd;
1052 
1053 	card->reg_addr.r_offset = offsetof(struct mspro_register, status);
1054 	card->reg_addr.r_length = sizeof(struct ms_status_register);
1055 	card->reg_addr.w_offset = offsetof(struct mspro_register, param);
1056 	card->reg_addr.w_length = sizeof(struct mspro_param_register);
1057 
1058 	if (memstick_set_rw_addr(card))
1059 		return -EIO;
1060 
1061 	msb->caps = host->caps;
1062 
1063 	msleep(150);
1064 	rc = mspro_block_wait_for_ced(card);
1065 	if (rc)
1066 		return rc;
1067 
1068 	rc = mspro_block_switch_interface(card);
1069 	if (rc)
1070 		return rc;
1071 
1072 	dev_dbg(&card->dev, "card activated\n");
1073 	if (msb->system != MEMSTICK_SYS_SERIAL)
1074 		msb->caps |= MEMSTICK_CAP_AUTO_GET_INT;
1075 
1076 	card->next_request = h_mspro_block_req_init;
1077 	msb->mrq_handler = h_mspro_block_get_ro;
1078 	memstick_init_req(&card->current_mrq, MS_TPC_READ_REG, NULL,
1079 			  sizeof(struct ms_status_register));
1080 	memstick_new_req(card->host);
1081 	wait_for_completion(&card->mrq_complete);
1082 	if (card->current_mrq.error)
1083 		return card->current_mrq.error;
1084 
1085 	dev_dbg(&card->dev, "card r/w status %d\n", msb->read_only ? 0 : 1);
1086 
1087 	msb->page_size = 512;
1088 	rc = mspro_block_read_attributes(card);
1089 	if (rc)
1090 		return rc;
1091 
1092 	dev_dbg(&card->dev, "attributes loaded\n");
1093 	return 0;
1094 
1095 }
1096 
1097 static const struct blk_mq_ops mspro_mq_ops = {
1098 	.queue_rq	= mspro_queue_rq,
1099 };
1100 
mspro_block_init_disk(struct memstick_dev * card)1101 static int mspro_block_init_disk(struct memstick_dev *card)
1102 {
1103 	struct mspro_block_data *msb = memstick_get_drvdata(card);
1104 	struct queue_limits lim = {
1105 		.logical_block_size	= msb->page_size,
1106 		.max_hw_sectors		= MSPRO_BLOCK_MAX_PAGES,
1107 		.max_segments		= MSPRO_BLOCK_MAX_SEGS,
1108 		.max_segment_size	= MSPRO_BLOCK_MAX_PAGES * msb->page_size,
1109 	};
1110 	struct mspro_devinfo *dev_info = NULL;
1111 	struct mspro_sys_info *sys_info = NULL;
1112 	struct mspro_sys_attr *s_attr = NULL;
1113 	int rc, disk_id;
1114 	unsigned long capacity;
1115 
1116 	for (rc = 0; msb->attr_group.attrs[rc]; ++rc) {
1117 		s_attr = mspro_from_sysfs_attr(msb->attr_group.attrs[rc]);
1118 
1119 		if (s_attr->id == MSPRO_BLOCK_ID_DEVINFO)
1120 			dev_info = s_attr->data;
1121 		else if (s_attr->id == MSPRO_BLOCK_ID_SYSINFO)
1122 			sys_info = s_attr->data;
1123 	}
1124 
1125 	if (!dev_info || !sys_info)
1126 		return -ENODEV;
1127 
1128 	msb->cylinders = be16_to_cpu(dev_info->cylinders);
1129 	msb->heads = be16_to_cpu(dev_info->heads);
1130 	msb->sectors_per_track = be16_to_cpu(dev_info->sectors_per_track);
1131 
1132 	msb->page_size = be16_to_cpu(sys_info->unit_size);
1133 
1134 	mutex_lock(&mspro_block_disk_lock);
1135 	disk_id = idr_alloc(&mspro_block_disk_idr, card, 0, 256, GFP_KERNEL);
1136 	mutex_unlock(&mspro_block_disk_lock);
1137 	if (disk_id < 0)
1138 		return disk_id;
1139 
1140 	rc = blk_mq_alloc_sq_tag_set(&msb->tag_set, &mspro_mq_ops, 2, 0);
1141 	if (rc)
1142 		goto out_release_id;
1143 
1144 	msb->disk = blk_mq_alloc_disk(&msb->tag_set, &lim, card);
1145 	if (IS_ERR(msb->disk)) {
1146 		rc = PTR_ERR(msb->disk);
1147 		goto out_free_tag_set;
1148 	}
1149 	msb->queue = msb->disk->queue;
1150 
1151 	msb->disk->major = major;
1152 	msb->disk->first_minor = disk_id << MSPRO_BLOCK_PART_SHIFT;
1153 	msb->disk->minors = 1 << MSPRO_BLOCK_PART_SHIFT;
1154 	msb->disk->fops = &ms_block_bdops;
1155 	msb->disk->private_data = msb;
1156 
1157 	sprintf(msb->disk->disk_name, "mspblk%d", disk_id);
1158 
1159 	capacity = be16_to_cpu(sys_info->user_block_count);
1160 	capacity *= be16_to_cpu(sys_info->block_size);
1161 	capacity *= msb->page_size >> 9;
1162 	set_capacity(msb->disk, capacity);
1163 	dev_dbg(&card->dev, "capacity set %ld\n", capacity);
1164 
1165 	if (msb->read_only)
1166 		set_disk_ro(msb->disk, true);
1167 
1168 	rc = device_add_disk(&card->dev, msb->disk, NULL);
1169 	if (rc)
1170 		goto out_cleanup_disk;
1171 	msb->active = 1;
1172 	return 0;
1173 
1174 out_cleanup_disk:
1175 	put_disk(msb->disk);
1176 out_free_tag_set:
1177 	blk_mq_free_tag_set(&msb->tag_set);
1178 out_release_id:
1179 	mutex_lock(&mspro_block_disk_lock);
1180 	idr_remove(&mspro_block_disk_idr, disk_id);
1181 	mutex_unlock(&mspro_block_disk_lock);
1182 	return rc;
1183 }
1184 
mspro_block_data_clear(struct mspro_block_data * msb)1185 static void mspro_block_data_clear(struct mspro_block_data *msb)
1186 {
1187 	int cnt;
1188 	struct mspro_sys_attr *s_attr;
1189 
1190 	if (msb->attr_group.attrs) {
1191 		for (cnt = 0; msb->attr_group.attrs[cnt]; ++cnt) {
1192 			s_attr = mspro_from_sysfs_attr(msb->attr_group
1193 							   .attrs[cnt]);
1194 			kfree(s_attr->data);
1195 			kfree(s_attr);
1196 		}
1197 		kfree(msb->attr_group.attrs);
1198 	}
1199 
1200 	msb->card = NULL;
1201 }
1202 
mspro_block_check_card(struct memstick_dev * card)1203 static int mspro_block_check_card(struct memstick_dev *card)
1204 {
1205 	struct mspro_block_data *msb = memstick_get_drvdata(card);
1206 
1207 	return (msb->active == 1);
1208 }
1209 
mspro_block_probe(struct memstick_dev * card)1210 static int mspro_block_probe(struct memstick_dev *card)
1211 {
1212 	struct mspro_block_data *msb;
1213 	int rc = 0;
1214 
1215 	msb = kzalloc(sizeof(struct mspro_block_data), GFP_KERNEL);
1216 	if (!msb)
1217 		return -ENOMEM;
1218 	memstick_set_drvdata(card, msb);
1219 	msb->card = card;
1220 	spin_lock_init(&msb->q_lock);
1221 
1222 	rc = mspro_block_init_card(card);
1223 
1224 	if (rc)
1225 		goto out_free;
1226 
1227 	rc = sysfs_create_group(&card->dev.kobj, &msb->attr_group);
1228 	if (rc)
1229 		goto out_free;
1230 
1231 	rc = mspro_block_init_disk(card);
1232 	if (!rc) {
1233 		card->check = mspro_block_check_card;
1234 		card->stop = mspro_block_stop;
1235 		card->start = mspro_block_start;
1236 		return 0;
1237 	}
1238 
1239 	sysfs_remove_group(&card->dev.kobj, &msb->attr_group);
1240 out_free:
1241 	memstick_set_drvdata(card, NULL);
1242 	mspro_block_data_clear(msb);
1243 	kfree(msb);
1244 	return rc;
1245 }
1246 
mspro_block_remove(struct memstick_dev * card)1247 static void mspro_block_remove(struct memstick_dev *card)
1248 {
1249 	struct mspro_block_data *msb = memstick_get_drvdata(card);
1250 	unsigned long flags;
1251 
1252 	spin_lock_irqsave(&msb->q_lock, flags);
1253 	msb->eject = 1;
1254 	spin_unlock_irqrestore(&msb->q_lock, flags);
1255 	blk_mq_start_hw_queues(msb->queue);
1256 
1257 	del_gendisk(msb->disk);
1258 	dev_dbg(&card->dev, "mspro block remove\n");
1259 
1260 	blk_mq_free_tag_set(&msb->tag_set);
1261 	msb->queue = NULL;
1262 
1263 	sysfs_remove_group(&card->dev.kobj, &msb->attr_group);
1264 
1265 	mutex_lock(&mspro_block_disk_lock);
1266 	mspro_block_data_clear(msb);
1267 	mutex_unlock(&mspro_block_disk_lock);
1268 
1269 	put_disk(msb->disk);
1270 	memstick_set_drvdata(card, NULL);
1271 }
1272 
1273 #ifdef CONFIG_PM
1274 
mspro_block_suspend(struct memstick_dev * card,pm_message_t state)1275 static int mspro_block_suspend(struct memstick_dev *card, pm_message_t state)
1276 {
1277 	struct mspro_block_data *msb = memstick_get_drvdata(card);
1278 	unsigned long flags;
1279 
1280 	blk_mq_stop_hw_queues(msb->queue);
1281 
1282 	spin_lock_irqsave(&msb->q_lock, flags);
1283 	msb->active = 0;
1284 	spin_unlock_irqrestore(&msb->q_lock, flags);
1285 
1286 	return 0;
1287 }
1288 
mspro_block_resume(struct memstick_dev * card)1289 static int mspro_block_resume(struct memstick_dev *card)
1290 {
1291 	struct mspro_block_data *msb = memstick_get_drvdata(card);
1292 	int rc = 0;
1293 
1294 #ifdef CONFIG_MEMSTICK_UNSAFE_RESUME
1295 
1296 	struct mspro_block_data *new_msb;
1297 	struct memstick_host *host = card->host;
1298 	struct mspro_sys_attr *s_attr, *r_attr;
1299 	unsigned char cnt;
1300 
1301 	mutex_lock(&host->lock);
1302 	new_msb = kzalloc(sizeof(struct mspro_block_data), GFP_KERNEL);
1303 	if (!new_msb) {
1304 		rc = -ENOMEM;
1305 		goto out_unlock;
1306 	}
1307 
1308 	new_msb->card = card;
1309 	memstick_set_drvdata(card, new_msb);
1310 	rc = mspro_block_init_card(card);
1311 	if (rc)
1312 		goto out_free;
1313 
1314 	for (cnt = 0; new_msb->attr_group.attrs[cnt]
1315 		      && msb->attr_group.attrs[cnt]; ++cnt) {
1316 		s_attr = mspro_from_sysfs_attr(new_msb->attr_group.attrs[cnt]);
1317 		r_attr = mspro_from_sysfs_attr(msb->attr_group.attrs[cnt]);
1318 
1319 		if (s_attr->id == MSPRO_BLOCK_ID_SYSINFO
1320 		    && r_attr->id == s_attr->id) {
1321 			if (memcmp(s_attr->data, r_attr->data, s_attr->size))
1322 				break;
1323 
1324 			msb->active = 1;
1325 			break;
1326 		}
1327 	}
1328 
1329 out_free:
1330 	memstick_set_drvdata(card, msb);
1331 	mspro_block_data_clear(new_msb);
1332 	kfree(new_msb);
1333 out_unlock:
1334 	mutex_unlock(&host->lock);
1335 
1336 #endif /* CONFIG_MEMSTICK_UNSAFE_RESUME */
1337 
1338 	blk_mq_start_hw_queues(msb->queue);
1339 	return rc;
1340 }
1341 
1342 #else
1343 
1344 #define mspro_block_suspend NULL
1345 #define mspro_block_resume NULL
1346 
1347 #endif /* CONFIG_PM */
1348 
1349 static const struct memstick_device_id mspro_block_id_tbl[] = {
1350 	{MEMSTICK_MATCH_ALL, MEMSTICK_TYPE_PRO, MEMSTICK_CATEGORY_STORAGE_DUO,
1351 	 MEMSTICK_CLASS_DUO},
1352 	{}
1353 };
1354 
1355 
1356 static struct memstick_driver mspro_block_driver = {
1357 	.driver = {
1358 		.name  = DRIVER_NAME,
1359 		.owner = THIS_MODULE
1360 	},
1361 	.id_table = mspro_block_id_tbl,
1362 	.probe    = mspro_block_probe,
1363 	.remove   = mspro_block_remove,
1364 	.suspend  = mspro_block_suspend,
1365 	.resume   = mspro_block_resume
1366 };
1367 
mspro_block_init(void)1368 static int __init mspro_block_init(void)
1369 {
1370 	int rc = -ENOMEM;
1371 
1372 	rc = register_blkdev(major, DRIVER_NAME);
1373 	if (rc < 0) {
1374 		printk(KERN_ERR DRIVER_NAME ": failed to register "
1375 		       "major %d, error %d\n", major, rc);
1376 		return rc;
1377 	}
1378 	if (!major)
1379 		major = rc;
1380 
1381 	rc = memstick_register_driver(&mspro_block_driver);
1382 	if (rc)
1383 		unregister_blkdev(major, DRIVER_NAME);
1384 	return rc;
1385 }
1386 
mspro_block_exit(void)1387 static void __exit mspro_block_exit(void)
1388 {
1389 	memstick_unregister_driver(&mspro_block_driver);
1390 	unregister_blkdev(major, DRIVER_NAME);
1391 	idr_destroy(&mspro_block_disk_idr);
1392 }
1393 
1394 module_init(mspro_block_init);
1395 module_exit(mspro_block_exit);
1396 
1397 MODULE_LICENSE("GPL");
1398 MODULE_AUTHOR("Alex Dubov");
1399 MODULE_DESCRIPTION("Sony MemoryStickPro block device driver");
1400 MODULE_DEVICE_TABLE(memstick, mspro_block_id_tbl);
1401