1 // SPDX-License-Identifier: GPL-2.0+
3 * Driver for Realtek RTS51xx USB card reader
5 * Copyright(c) 2009 Realtek Semiconductor Corp. All rights reserved.
8 * wwang (wei_wang@realsil.com.cn)
9 * No. 450, Shenhu Road, Suzhou Industry Park, Suzhou, China
12 #include <linux/module.h>
13 #include <linux/blkdev.h>
14 #include <linux/kthread.h>
15 #include <linux/sched.h>
16 #include <linux/kernel.h>
18 #include <scsi/scsi.h>
19 #include <scsi/scsi_cmnd.h>
20 #include <scsi/scsi_device.h>
21 #include <linux/cdrom.h>
23 #include <linux/usb.h>
24 #include <linux/slab.h>
25 #include <linux/usb_usual.h>
28 #include "transport.h"
33 #define DRV_NAME "ums-realtek"
35 MODULE_DESCRIPTION("Driver for Realtek USB Card Reader");
36 MODULE_AUTHOR("wwang <wei_wang@realsil.com.cn>");
37 MODULE_LICENSE("GPL");
39 static int auto_delink_en
= 1;
40 module_param(auto_delink_en
, int, S_IRUGO
| S_IWUSR
);
41 MODULE_PARM_DESC(auto_delink_en
, "enable auto delink");
43 #ifdef CONFIG_REALTEK_AUTOPM
45 module_param(ss_en
, int, S_IRUGO
| S_IWUSR
);
46 MODULE_PARM_DESC(ss_en
, "enable selective suspend");
48 static int ss_delay
= 50;
49 module_param(ss_delay
, int, S_IRUGO
| S_IWUSR
);
50 MODULE_PARM_DESC(ss_delay
,
51 "seconds to delay before entering selective suspend");
60 #define POLLING_INTERVAL 50
62 #define rts51x_set_stat(chip, stat) \
63 ((chip)->state = (enum RTS51X_STAT)(stat))
64 #define rts51x_get_stat(chip) ((chip)->state)
66 #define SET_LUN_READY(chip, lun) ((chip)->lun_ready |= ((u8)1 << (lun)))
67 #define CLR_LUN_READY(chip, lun) ((chip)->lun_ready &= ~((u8)1 << (lun)))
68 #define TST_LUN_READY(chip, lun) ((chip)->lun_ready & ((u8)1 << (lun)))
72 struct rts51x_status
{
95 struct rts51x_status
*status
;
101 #ifdef CONFIG_REALTEK_AUTOPM
102 struct timer_list rts51x_suspend_timer
;
103 unsigned long timer_expires
;
106 enum RTS51X_STAT state
;
107 int support_auto_delink
;
109 /* used to back up the protocol chosen in probe1 phase */
110 proto_cmnd proto_handler_backup
;
113 /* flag definition */
114 #define FLIDX_AUTO_DELINK 0x01
116 #define SCSI_LUN(srb) ((srb)->device->lun)
119 #define SET_BIT(data, idx) ((data) |= 1 << (idx))
120 #define CLR_BIT(data, idx) ((data) &= ~(1 << (idx)))
121 #define CHK_BIT(data, idx) ((data) & (1 << (idx)))
123 #define SET_AUTO_DELINK(chip) ((chip)->flag |= FLIDX_AUTO_DELINK)
124 #define CLR_AUTO_DELINK(chip) ((chip)->flag &= ~FLIDX_AUTO_DELINK)
125 #define CHK_AUTO_DELINK(chip) ((chip)->flag & FLIDX_AUTO_DELINK)
127 #define RTS51X_GET_VID(chip) ((chip)->vendor_id)
128 #define RTS51X_GET_PID(chip) ((chip)->product_id)
130 #define VENDOR_ID(chip) ((chip)->status[0].vid)
131 #define PRODUCT_ID(chip) ((chip)->status[0].pid)
132 #define FW_VERSION(chip) ((chip)->status[0].fw_ver)
133 #define STATUS_LEN(chip) ((chip)->status_len)
135 #define STATUS_SUCCESS 0
136 #define STATUS_FAIL 1
138 /* Check card reader function */
139 #define SUPPORT_DETAILED_TYPE1(chip) \
140 CHK_BIT((chip)->status[0].function[0], 1)
141 #define SUPPORT_OT(chip) \
142 CHK_BIT((chip)->status[0].function[0], 2)
143 #define SUPPORT_OC(chip) \
144 CHK_BIT((chip)->status[0].function[0], 3)
145 #define SUPPORT_AUTO_DELINK(chip) \
146 CHK_BIT((chip)->status[0].function[0], 4)
147 #define SUPPORT_SDIO(chip) \
148 CHK_BIT((chip)->status[0].function[1], 0)
149 #define SUPPORT_DETAILED_TYPE2(chip) \
150 CHK_BIT((chip)->status[0].function[1], 1)
152 #define CHECK_PID(chip, pid) (RTS51X_GET_PID(chip) == (pid))
153 #define CHECK_FW_VER(chip, fw_ver) (FW_VERSION(chip) == (fw_ver))
154 #define CHECK_ID(chip, pid, fw_ver) \
155 (CHECK_PID((chip), (pid)) && CHECK_FW_VER((chip), (fw_ver)))
157 static int init_realtek_cr(struct us_data
*us
);
160 * The table of devices
162 #define UNUSUAL_DEV(id_vendor, id_product, bcdDeviceMin, bcdDeviceMax, \
163 vendorName, productName, useProtocol, useTransport, \
164 initFunction, flags) \
166 USB_DEVICE_VER(id_vendor, id_product, bcdDeviceMin, bcdDeviceMax), \
167 .driver_info = (flags) \
170 static const struct usb_device_id realtek_cr_ids
[] = {
171 # include "unusual_realtek.h"
172 {} /* Terminating entry */
175 MODULE_DEVICE_TABLE(usb
, realtek_cr_ids
);
182 #define UNUSUAL_DEV(idVendor, idProduct, bcdDeviceMin, bcdDeviceMax, \
183 vendor_name, product_name, use_protocol, use_transport, \
184 init_function, Flags) \
186 .vendorName = vendor_name, \
187 .productName = product_name, \
188 .useProtocol = use_protocol, \
189 .useTransport = use_transport, \
190 .initFunction = init_function, \
193 static struct us_unusual_dev realtek_cr_unusual_dev_list
[] = {
194 # include "unusual_realtek.h"
195 {} /* Terminating entry */
200 static int rts51x_bulk_transport(struct us_data
*us
, u8 lun
,
201 u8
*cmd
, int cmd_len
, u8
*buf
, int buf_len
,
202 enum dma_data_direction dir
, int *act_len
)
204 struct bulk_cb_wrap
*bcb
= (struct bulk_cb_wrap
*)us
->iobuf
;
205 struct bulk_cs_wrap
*bcs
= (struct bulk_cs_wrap
*)us
->iobuf
;
207 unsigned int residue
;
209 unsigned int cbwlen
= US_BULK_CB_WRAP_LEN
;
211 /* set up the command wrapper */
212 bcb
->Signature
= cpu_to_le32(US_BULK_CB_SIGN
);
213 bcb
->DataTransferLength
= cpu_to_le32(buf_len
);
214 bcb
->Flags
= (dir
== DMA_FROM_DEVICE
) ? US_BULK_FLAG_IN
: 0;
215 bcb
->Tag
= ++us
->tag
;
217 bcb
->Length
= cmd_len
;
219 /* copy the command payload */
220 memset(bcb
->CDB
, 0, sizeof(bcb
->CDB
));
221 memcpy(bcb
->CDB
, cmd
, bcb
->Length
);
223 /* send it to out endpoint */
224 result
= usb_stor_bulk_transfer_buf(us
, us
->send_bulk_pipe
,
226 if (result
!= USB_STOR_XFER_GOOD
)
227 return USB_STOR_TRANSPORT_ERROR
;
230 /* send/receive data payload, if there is any */
232 if (buf
&& buf_len
) {
233 unsigned int pipe
= (dir
== DMA_FROM_DEVICE
) ?
234 us
->recv_bulk_pipe
: us
->send_bulk_pipe
;
235 result
= usb_stor_bulk_transfer_buf(us
, pipe
,
237 if (result
== USB_STOR_XFER_ERROR
)
238 return USB_STOR_TRANSPORT_ERROR
;
241 /* get CSW for device status */
242 result
= usb_stor_bulk_transfer_buf(us
, us
->recv_bulk_pipe
,
243 bcs
, US_BULK_CS_WRAP_LEN
, &cswlen
);
244 if (result
!= USB_STOR_XFER_GOOD
)
245 return USB_STOR_TRANSPORT_ERROR
;
247 /* check bulk status */
248 if (bcs
->Signature
!= cpu_to_le32(US_BULK_CS_SIGN
)) {
249 usb_stor_dbg(us
, "Signature mismatch: got %08X, expecting %08X\n",
250 le32_to_cpu(bcs
->Signature
), US_BULK_CS_SIGN
);
251 return USB_STOR_TRANSPORT_ERROR
;
254 residue
= bcs
->Residue
;
255 if (bcs
->Tag
!= us
->tag
)
256 return USB_STOR_TRANSPORT_ERROR
;
259 * try to compute the actual residue, based on how much data
260 * was really transferred and what the device tells us
263 residue
= residue
< buf_len
? residue
: buf_len
;
266 *act_len
= buf_len
- residue
;
268 /* based on the status code, we report good or bad */
269 switch (bcs
->Status
) {
270 case US_BULK_STAT_OK
:
271 /* command good -- note that data could be short */
272 return USB_STOR_TRANSPORT_GOOD
;
274 case US_BULK_STAT_FAIL
:
276 return USB_STOR_TRANSPORT_FAILED
;
278 case US_BULK_STAT_PHASE
:
280 * phase error -- note that a transport reset will be
281 * invoked by the invoke_transport() function
283 return USB_STOR_TRANSPORT_ERROR
;
286 /* we should never get here, but if we do, we're in trouble */
287 return USB_STOR_TRANSPORT_ERROR
;
290 static int rts51x_bulk_transport_special(struct us_data
*us
, u8 lun
,
291 u8
*cmd
, int cmd_len
, u8
*buf
, int buf_len
,
292 enum dma_data_direction dir
, int *act_len
)
294 struct bulk_cb_wrap
*bcb
= (struct bulk_cb_wrap
*) us
->iobuf
;
295 struct bulk_cs_wrap
*bcs
= (struct bulk_cs_wrap
*) us
->iobuf
;
298 unsigned int cbwlen
= US_BULK_CB_WRAP_LEN
;
300 /* set up the command wrapper */
301 bcb
->Signature
= cpu_to_le32(US_BULK_CB_SIGN
);
302 bcb
->DataTransferLength
= cpu_to_le32(buf_len
);
303 bcb
->Flags
= (dir
== DMA_FROM_DEVICE
) ? US_BULK_FLAG_IN
: 0;
304 bcb
->Tag
= ++us
->tag
;
306 bcb
->Length
= cmd_len
;
308 /* copy the command payload */
309 memset(bcb
->CDB
, 0, sizeof(bcb
->CDB
));
310 memcpy(bcb
->CDB
, cmd
, bcb
->Length
);
312 /* send it to out endpoint */
313 result
= usb_stor_bulk_transfer_buf(us
, us
->send_bulk_pipe
,
315 if (result
!= USB_STOR_XFER_GOOD
)
316 return USB_STOR_TRANSPORT_ERROR
;
319 /* send/receive data payload, if there is any */
321 if (buf
&& buf_len
) {
322 unsigned int pipe
= (dir
== DMA_FROM_DEVICE
) ?
323 us
->recv_bulk_pipe
: us
->send_bulk_pipe
;
324 result
= usb_stor_bulk_transfer_buf(us
, pipe
,
326 if (result
== USB_STOR_XFER_ERROR
)
327 return USB_STOR_TRANSPORT_ERROR
;
330 /* get CSW for device status */
331 result
= usb_bulk_msg(us
->pusb_dev
, us
->recv_bulk_pipe
, bcs
,
332 US_BULK_CS_WRAP_LEN
, &cswlen
, 250);
336 /* Determine what the maximum LUN supported is */
337 static int rts51x_get_max_lun(struct us_data
*us
)
341 /* issue the command */
343 result
= usb_stor_control_msg(us
, us
->recv_ctrl_pipe
,
345 USB_DIR_IN
| USB_TYPE_CLASS
|
347 0, us
->ifnum
, us
->iobuf
, 1, 10 * HZ
);
349 usb_stor_dbg(us
, "GetMaxLUN command result is %d, data is %d\n",
350 result
, us
->iobuf
[0]);
352 /* if we have a successful request, return the result */
359 static int rts51x_read_mem(struct us_data
*us
, u16 addr
, u8
*data
, u16 len
)
365 buf
= kmalloc(len
, GFP_NOIO
);
367 return USB_STOR_TRANSPORT_ERROR
;
369 usb_stor_dbg(us
, "addr = 0x%x, len = %d\n", addr
, len
);
373 cmnd
[2] = (u8
) (addr
>> 8);
375 cmnd
[4] = (u8
) (len
>> 8);
378 retval
= rts51x_bulk_transport(us
, 0, cmnd
, 12,
379 buf
, len
, DMA_FROM_DEVICE
, NULL
);
380 if (retval
!= USB_STOR_TRANSPORT_GOOD
) {
385 memcpy(data
, buf
, len
);
390 static int rts51x_write_mem(struct us_data
*us
, u16 addr
, u8
*data
, u16 len
)
396 buf
= kmemdup(data
, len
, GFP_NOIO
);
398 return USB_STOR_TRANSPORT_ERROR
;
400 usb_stor_dbg(us
, "addr = 0x%x, len = %d\n", addr
, len
);
404 cmnd
[2] = (u8
) (addr
>> 8);
406 cmnd
[4] = (u8
) (len
>> 8);
409 retval
= rts51x_bulk_transport(us
, 0, cmnd
, 12,
410 buf
, len
, DMA_TO_DEVICE
, NULL
);
412 if (retval
!= USB_STOR_TRANSPORT_GOOD
)
418 static int rts51x_read_status(struct us_data
*us
,
419 u8 lun
, u8
*status
, int len
, int *actlen
)
425 buf
= kmalloc(len
, GFP_NOIO
);
427 return USB_STOR_TRANSPORT_ERROR
;
429 usb_stor_dbg(us
, "lun = %d\n", lun
);
434 retval
= rts51x_bulk_transport(us
, lun
, cmnd
, 12,
435 buf
, len
, DMA_FROM_DEVICE
, actlen
);
436 if (retval
!= USB_STOR_TRANSPORT_GOOD
) {
441 memcpy(status
, buf
, len
);
446 static int rts51x_check_status(struct us_data
*us
, u8 lun
)
448 struct rts51x_chip
*chip
= (struct rts51x_chip
*)(us
->extra
);
452 retval
= rts51x_read_status(us
, lun
, buf
, 16, &(chip
->status_len
));
453 if (retval
!= STATUS_SUCCESS
)
456 usb_stor_dbg(us
, "chip->status_len = %d\n", chip
->status_len
);
458 chip
->status
[lun
].vid
= ((u16
) buf
[0] << 8) | buf
[1];
459 chip
->status
[lun
].pid
= ((u16
) buf
[2] << 8) | buf
[3];
460 chip
->status
[lun
].cur_lun
= buf
[4];
461 chip
->status
[lun
].card_type
= buf
[5];
462 chip
->status
[lun
].total_lun
= buf
[6];
463 chip
->status
[lun
].fw_ver
= ((u16
) buf
[7] << 8) | buf
[8];
464 chip
->status
[lun
].phy_exist
= buf
[9];
465 chip
->status
[lun
].multi_flag
= buf
[10];
466 chip
->status
[lun
].multi_card
= buf
[11];
467 chip
->status
[lun
].log_exist
= buf
[12];
468 if (chip
->status_len
== 16) {
469 chip
->status
[lun
].detailed_type
.detailed_type1
= buf
[13];
470 chip
->status
[lun
].function
[0] = buf
[14];
471 chip
->status
[lun
].function
[1] = buf
[15];
477 static int enable_oscillator(struct us_data
*us
)
482 retval
= rts51x_read_mem(us
, 0xFE77, &value
, 1);
487 retval
= rts51x_write_mem(us
, 0xFE77, &value
, 1);
491 retval
= rts51x_read_mem(us
, 0xFE77, &value
, 1);
501 static int __do_config_autodelink(struct us_data
*us
, u8
*data
, u16 len
)
507 usb_stor_dbg(us
, "addr = 0xfe47, len = %d\n", len
);
509 buf
= kmemdup(data
, len
, GFP_NOIO
);
511 return USB_STOR_TRANSPORT_ERROR
;
517 cmnd
[4] = (u8
)(len
>> 8);
520 retval
= rts51x_bulk_transport_special(us
, 0, cmnd
, 12, buf
, len
, DMA_TO_DEVICE
, NULL
);
522 if (retval
!= USB_STOR_TRANSPORT_GOOD
) {
529 static int do_config_autodelink(struct us_data
*us
, int enable
, int force
)
534 retval
= rts51x_read_mem(us
, 0xFE47, &value
, 1);
547 usb_stor_dbg(us
, "set 0xfe47 to 0x%x\n", value
);
549 /* retval = rts51x_write_mem(us, 0xFE47, &value, 1); */
550 retval
= __do_config_autodelink(us
, &value
, 1);
557 static int config_autodelink_after_power_on(struct us_data
*us
)
559 struct rts51x_chip
*chip
= (struct rts51x_chip
*)(us
->extra
);
563 if (!CHK_AUTO_DELINK(chip
))
566 retval
= rts51x_read_mem(us
, 0xFE47, &value
, 1);
570 if (auto_delink_en
) {
575 if (CHECK_ID(chip
, 0x0138, 0x3882))
580 /* retval = rts51x_write_mem(us, 0xFE47, &value, 1); */
581 retval
= __do_config_autodelink(us
, &value
, 1);
585 retval
= enable_oscillator(us
);
587 (void)do_config_autodelink(us
, 1, 0);
589 /* Autodelink controlled by firmware */
593 if (CHECK_ID(chip
, 0x0138, 0x3882))
596 if (CHECK_ID(chip
, 0x0159, 0x5889) ||
597 CHECK_ID(chip
, 0x0138, 0x3880)) {
602 /* retval = rts51x_write_mem(us, 0xFE47, &value, 1); */
603 retval
= __do_config_autodelink(us
, &value
, 1);
607 if (CHECK_ID(chip
, 0x0159, 0x5888)) {
609 retval
= rts51x_write_mem(us
, 0xFE79, &value
, 1);
614 retval
= rts51x_write_mem(us
, 0x48, &value
, 1);
624 static int config_autodelink_before_power_down(struct us_data
*us
)
626 struct rts51x_chip
*chip
= (struct rts51x_chip
*)(us
->extra
);
630 if (!CHK_AUTO_DELINK(chip
))
633 if (auto_delink_en
) {
634 retval
= rts51x_read_mem(us
, 0xFE77, &value
, 1);
639 retval
= rts51x_write_mem(us
, 0xFE77, &value
, 1);
643 if (CHECK_ID(chip
, 0x0159, 0x5888)) {
645 retval
= rts51x_write_mem(us
, 0x48, &value
, 1);
650 retval
= rts51x_read_mem(us
, 0xFE47, &value
, 1);
655 if (CHECK_ID(chip
, 0x0138, 0x3882))
657 retval
= rts51x_write_mem(us
, 0xFE77, &value
, 1);
661 if (CHECK_ID(chip
, 0x0159, 0x5889) ||
662 CHECK_ID(chip
, 0x0138, 0x3880) ||
663 CHECK_ID(chip
, 0x0138, 0x3882)) {
664 retval
= rts51x_read_mem(us
, 0xFE47, &value
, 1);
668 if (CHECK_ID(chip
, 0x0159, 0x5889) ||
669 CHECK_ID(chip
, 0x0138, 0x3880)) {
674 if (CHECK_ID(chip
, 0x0138, 0x3882))
677 /* retval = rts51x_write_mem(us, 0xFE47, &value, 1); */
678 retval
= __do_config_autodelink(us
, &value
, 1);
683 if (CHECK_ID(chip
, 0x0159, 0x5888)) {
685 retval
= rts51x_write_mem(us
, 0x48, &value
, 1);
694 static void fw5895_init(struct us_data
*us
)
696 struct rts51x_chip
*chip
= (struct rts51x_chip
*)(us
->extra
);
700 if ((PRODUCT_ID(chip
) != 0x0158) || (FW_VERSION(chip
) != 0x5895)) {
701 usb_stor_dbg(us
, "Not the specified device, return immediately!\n");
703 retval
= rts51x_read_mem(us
, 0xFD6F, &val
, 1);
704 if (retval
== STATUS_SUCCESS
&& (val
& 0x1F) == 0) {
706 retval
= rts51x_write_mem(us
, 0xFD70, &val
, 1);
707 if (retval
!= STATUS_SUCCESS
)
708 usb_stor_dbg(us
, "Write memory fail\n");
710 usb_stor_dbg(us
, "Read memory fail, OR (val & 0x1F) != 0\n");
716 #ifdef CONFIG_REALTEK_AUTOPM
717 static void fw5895_set_mmc_wp(struct us_data
*us
)
719 struct rts51x_chip
*chip
= (struct rts51x_chip
*)(us
->extra
);
723 if ((PRODUCT_ID(chip
) != 0x0158) || (FW_VERSION(chip
) != 0x5895)) {
724 usb_stor_dbg(us
, "Not the specified device, return immediately!\n");
726 retval
= rts51x_read_mem(us
, 0xFD6F, buf
, 1);
727 if (retval
== STATUS_SUCCESS
&& (buf
[0] & 0x24) == 0x24) {
728 /* SD Exist and SD WP */
729 retval
= rts51x_read_mem(us
, 0xD04E, buf
, 1);
730 if (retval
== STATUS_SUCCESS
) {
732 retval
= rts51x_write_mem(us
, 0xFD70, buf
, 1);
733 if (retval
!= STATUS_SUCCESS
)
734 usb_stor_dbg(us
, "Write memory fail\n");
736 usb_stor_dbg(us
, "Read memory fail\n");
739 usb_stor_dbg(us
, "Read memory fail, OR (buf[0]&0x24)!=0x24\n");
744 static void rts51x_modi_suspend_timer(struct rts51x_chip
*chip
)
746 struct us_data
*us
= chip
->us
;
748 usb_stor_dbg(us
, "state:%d\n", rts51x_get_stat(chip
));
750 chip
->timer_expires
= jiffies
+ msecs_to_jiffies(1000*ss_delay
);
751 mod_timer(&chip
->rts51x_suspend_timer
, chip
->timer_expires
);
754 static void rts51x_suspend_timer_fn(struct timer_list
*t
)
756 struct rts51x_chip
*chip
= from_timer(chip
, t
, rts51x_suspend_timer
);
757 struct us_data
*us
= chip
->us
;
759 switch (rts51x_get_stat(chip
)) {
760 case RTS51X_STAT_INIT
:
761 case RTS51X_STAT_RUN
:
762 rts51x_modi_suspend_timer(chip
);
764 case RTS51X_STAT_IDLE
:
766 usb_stor_dbg(us
, "RTS51X_STAT_SS, intf->pm_usage_cnt:%d, power.usage:%d\n",
767 atomic_read(&us
->pusb_intf
->pm_usage_cnt
),
768 atomic_read(&us
->pusb_intf
->dev
.power
.usage_count
));
770 if (atomic_read(&us
->pusb_intf
->pm_usage_cnt
) > 0) {
771 usb_stor_dbg(us
, "Ready to enter SS state\n");
772 rts51x_set_stat(chip
, RTS51X_STAT_SS
);
773 /* ignore mass storage interface's children */
774 pm_suspend_ignore_children(&us
->pusb_intf
->dev
, true);
775 usb_autopm_put_interface_async(us
->pusb_intf
);
776 usb_stor_dbg(us
, "RTS51X_STAT_SS 01, intf->pm_usage_cnt:%d, power.usage:%d\n",
777 atomic_read(&us
->pusb_intf
->pm_usage_cnt
),
778 atomic_read(&us
->pusb_intf
->dev
.power
.usage_count
));
782 usb_stor_dbg(us
, "Unknown state !!!\n");
787 static inline int working_scsi(struct scsi_cmnd
*srb
)
789 if ((srb
->cmnd
[0] == TEST_UNIT_READY
) ||
790 (srb
->cmnd
[0] == ALLOW_MEDIUM_REMOVAL
)) {
797 static void rts51x_invoke_transport(struct scsi_cmnd
*srb
, struct us_data
*us
)
799 struct rts51x_chip
*chip
= (struct rts51x_chip
*)(us
->extra
);
800 static int card_first_show
= 1;
801 static u8 media_not_present
[] = { 0x70, 0, 0x02, 0, 0, 0, 0,
802 10, 0, 0, 0, 0, 0x3A, 0, 0, 0, 0, 0
804 static u8 invalid_cmd_field
[] = { 0x70, 0, 0x05, 0, 0, 0, 0,
805 10, 0, 0, 0, 0, 0x24, 0, 0, 0, 0, 0
809 if (working_scsi(srb
)) {
810 usb_stor_dbg(us
, "working scsi, intf->pm_usage_cnt:%d, power.usage:%d\n",
811 atomic_read(&us
->pusb_intf
->pm_usage_cnt
),
812 atomic_read(&us
->pusb_intf
->dev
.power
.usage_count
));
814 if (atomic_read(&us
->pusb_intf
->pm_usage_cnt
) <= 0) {
815 ret
= usb_autopm_get_interface(us
->pusb_intf
);
816 usb_stor_dbg(us
, "working scsi, ret=%d\n", ret
);
818 if (rts51x_get_stat(chip
) != RTS51X_STAT_RUN
)
819 rts51x_set_stat(chip
, RTS51X_STAT_RUN
);
820 chip
->proto_handler_backup(srb
, us
);
822 if (rts51x_get_stat(chip
) == RTS51X_STAT_SS
) {
823 usb_stor_dbg(us
, "NOT working scsi\n");
824 if ((srb
->cmnd
[0] == TEST_UNIT_READY
) &&
825 (chip
->pwr_state
== US_SUSPEND
)) {
826 if (TST_LUN_READY(chip
, srb
->device
->lun
)) {
827 srb
->result
= SAM_STAT_GOOD
;
829 srb
->result
= SAM_STAT_CHECK_CONDITION
;
830 memcpy(srb
->sense_buffer
,
834 usb_stor_dbg(us
, "TEST_UNIT_READY\n");
837 if (srb
->cmnd
[0] == ALLOW_MEDIUM_REMOVAL
) {
838 int prevent
= srb
->cmnd
[4] & 0x1;
840 srb
->result
= SAM_STAT_CHECK_CONDITION
;
841 memcpy(srb
->sense_buffer
,
845 srb
->result
= SAM_STAT_GOOD
;
847 usb_stor_dbg(us
, "ALLOW_MEDIUM_REMOVAL\n");
851 usb_stor_dbg(us
, "NOT working scsi, not SS\n");
852 chip
->proto_handler_backup(srb
, us
);
853 /* Check whether card is plugged in */
854 if (srb
->cmnd
[0] == TEST_UNIT_READY
) {
855 if (srb
->result
== SAM_STAT_GOOD
) {
856 SET_LUN_READY(chip
, srb
->device
->lun
);
857 if (card_first_show
) {
859 fw5895_set_mmc_wp(us
);
862 CLR_LUN_READY(chip
, srb
->device
->lun
);
866 if (rts51x_get_stat(chip
) != RTS51X_STAT_IDLE
)
867 rts51x_set_stat(chip
, RTS51X_STAT_IDLE
);
871 usb_stor_dbg(us
, "state:%d\n", rts51x_get_stat(chip
));
872 if (rts51x_get_stat(chip
) == RTS51X_STAT_RUN
)
873 rts51x_modi_suspend_timer(chip
);
876 static int realtek_cr_autosuspend_setup(struct us_data
*us
)
878 struct rts51x_chip
*chip
;
879 struct rts51x_status
*status
= NULL
;
883 chip
= (struct rts51x_chip
*)us
->extra
;
884 chip
->support_auto_delink
= 0;
885 chip
->pwr_state
= US_RESUME
;
887 rts51x_set_stat(chip
, RTS51X_STAT_INIT
);
889 retval
= rts51x_read_status(us
, 0, buf
, 16, &(chip
->status_len
));
890 if (retval
!= STATUS_SUCCESS
) {
891 usb_stor_dbg(us
, "Read status fail\n");
894 status
= chip
->status
;
895 status
->vid
= ((u16
) buf
[0] << 8) | buf
[1];
896 status
->pid
= ((u16
) buf
[2] << 8) | buf
[3];
897 status
->cur_lun
= buf
[4];
898 status
->card_type
= buf
[5];
899 status
->total_lun
= buf
[6];
900 status
->fw_ver
= ((u16
) buf
[7] << 8) | buf
[8];
901 status
->phy_exist
= buf
[9];
902 status
->multi_flag
= buf
[10];
903 status
->multi_card
= buf
[11];
904 status
->log_exist
= buf
[12];
905 if (chip
->status_len
== 16) {
906 status
->detailed_type
.detailed_type1
= buf
[13];
907 status
->function
[0] = buf
[14];
908 status
->function
[1] = buf
[15];
911 /* back up the proto_handler in us->extra */
912 chip
= (struct rts51x_chip
*)(us
->extra
);
913 chip
->proto_handler_backup
= us
->proto_handler
;
914 /* Set the autosuspend_delay to 0 */
915 pm_runtime_set_autosuspend_delay(&us
->pusb_dev
->dev
, 0);
916 /* override us->proto_handler setted in get_protocol() */
917 us
->proto_handler
= rts51x_invoke_transport
;
919 chip
->timer_expires
= 0;
920 timer_setup(&chip
->rts51x_suspend_timer
, rts51x_suspend_timer_fn
, 0);
923 /* enable autosuspend function of the usb device */
924 usb_enable_autosuspend(us
->pusb_dev
);
930 static void realtek_cr_destructor(void *extra
)
932 struct rts51x_chip
*chip
= extra
;
937 #ifdef CONFIG_REALTEK_AUTOPM
939 del_timer(&chip
->rts51x_suspend_timer
);
940 chip
->timer_expires
= 0;
947 static int realtek_cr_suspend(struct usb_interface
*iface
, pm_message_t message
)
949 struct us_data
*us
= usb_get_intfdata(iface
);
951 /* wait until no command is running */
952 mutex_lock(&us
->dev_mutex
);
954 config_autodelink_before_power_down(us
);
956 mutex_unlock(&us
->dev_mutex
);
961 static int realtek_cr_resume(struct usb_interface
*iface
)
963 struct us_data
*us
= usb_get_intfdata(iface
);
966 config_autodelink_after_power_on(us
);
971 #define realtek_cr_suspend NULL
972 #define realtek_cr_resume NULL
975 static int init_realtek_cr(struct us_data
*us
)
977 struct rts51x_chip
*chip
;
980 chip
= kzalloc(sizeof(struct rts51x_chip
), GFP_KERNEL
);
985 us
->extra_destructor
= realtek_cr_destructor
;
986 us
->max_lun
= chip
->max_lun
= rts51x_get_max_lun(us
);
989 usb_stor_dbg(us
, "chip->max_lun = %d\n", chip
->max_lun
);
991 size
= (chip
->max_lun
+ 1) * sizeof(struct rts51x_status
);
992 chip
->status
= kzalloc(size
, GFP_KERNEL
);
996 for (i
= 0; i
<= (int)(chip
->max_lun
); i
++) {
997 retval
= rts51x_check_status(us
, (u8
) i
);
1002 if (CHECK_FW_VER(chip
, 0x5888) || CHECK_FW_VER(chip
, 0x5889) ||
1003 CHECK_FW_VER(chip
, 0x5901))
1004 SET_AUTO_DELINK(chip
);
1005 if (STATUS_LEN(chip
) == 16) {
1006 if (SUPPORT_AUTO_DELINK(chip
))
1007 SET_AUTO_DELINK(chip
);
1009 #ifdef CONFIG_REALTEK_AUTOPM
1011 realtek_cr_autosuspend_setup(us
);
1014 usb_stor_dbg(us
, "chip->flag = 0x%x\n", chip
->flag
);
1016 (void)config_autodelink_after_power_on(us
);
1022 kfree(chip
->status
);
1030 static struct scsi_host_template realtek_cr_host_template
;
1032 static int realtek_cr_probe(struct usb_interface
*intf
,
1033 const struct usb_device_id
*id
)
1038 dev_dbg(&intf
->dev
, "Probe Realtek Card Reader!\n");
1040 result
= usb_stor_probe1(&us
, intf
, id
,
1041 (id
- realtek_cr_ids
) +
1042 realtek_cr_unusual_dev_list
,
1043 &realtek_cr_host_template
);
1047 result
= usb_stor_probe2(us
);
1052 static struct usb_driver realtek_cr_driver
= {
1054 .probe
= realtek_cr_probe
,
1055 .disconnect
= usb_stor_disconnect
,
1056 /* .suspend = usb_stor_suspend, */
1057 /* .resume = usb_stor_resume, */
1058 .reset_resume
= usb_stor_reset_resume
,
1059 .suspend
= realtek_cr_suspend
,
1060 .resume
= realtek_cr_resume
,
1061 .pre_reset
= usb_stor_pre_reset
,
1062 .post_reset
= usb_stor_post_reset
,
1063 .id_table
= realtek_cr_ids
,
1065 .supports_autosuspend
= 1,
1069 module_usb_stor_driver(realtek_cr_driver
, realtek_cr_host_template
, DRV_NAME
);