2 * Copyright (c) 2014 Redpine Signals Inc.
4 * Permission to use, copy, modify, and/or distribute this software for any
5 * purpose with or without fee is hereby granted, provided that the above
6 * copyright notice and this permission notice appear in all copies.
8 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
9 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
10 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
11 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
12 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
13 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
14 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 #include <linux/module.h>
20 #include "rsi_common.h"
24 /* Default operating mode is wlan STA + BT */
25 static u16 dev_oper_mode
= DEV_OPMODE_STA_BT_DUAL
;
26 module_param(dev_oper_mode
, ushort
, 0444);
27 MODULE_PARM_DESC(dev_oper_mode
, DEV_OPMODE_PARAM_DESC
);
30 * rsi_sdio_set_cmd52_arg() - This function prepares cmd 52 read/write arg.
32 * @func: function number
33 * @raw: indicates whether to perform read after write
34 * @address: address to which to read/write
35 * @writedata: data to write
39 static u32
rsi_sdio_set_cmd52_arg(bool rw
,
45 return ((rw
& 1) << 31) | ((func
& 0x7) << 28) |
46 ((raw
& 1) << 27) | (1 << 26) |
47 ((address
& 0x1FFFF) << 9) | (1 << 8) |
52 * rsi_cmd52writebyte() - This function issues cmd52 byte write onto the card.
53 * @card: Pointer to the mmc_card.
54 * @address: Address to write.
55 * @byte: Data to write.
57 * Return: Write status.
59 static int rsi_cmd52writebyte(struct mmc_card
*card
,
63 struct mmc_command io_cmd
;
66 memset(&io_cmd
, 0, sizeof(io_cmd
));
67 arg
= rsi_sdio_set_cmd52_arg(1, 0, 0, address
, byte
);
68 io_cmd
.opcode
= SD_IO_RW_DIRECT
;
70 io_cmd
.flags
= MMC_RSP_R5
| MMC_CMD_AC
;
72 return mmc_wait_for_cmd(card
->host
, &io_cmd
, 0);
76 * rsi_cmd52readbyte() - This function issues cmd52 byte read onto the card.
77 * @card: Pointer to the mmc_card.
78 * @address: Address to read from.
79 * @byte: Variable to store read value.
81 * Return: Read status.
83 static int rsi_cmd52readbyte(struct mmc_card
*card
,
87 struct mmc_command io_cmd
;
91 memset(&io_cmd
, 0, sizeof(io_cmd
));
92 arg
= rsi_sdio_set_cmd52_arg(0, 0, 0, address
, 0);
93 io_cmd
.opcode
= SD_IO_RW_DIRECT
;
95 io_cmd
.flags
= MMC_RSP_R5
| MMC_CMD_AC
;
97 err
= mmc_wait_for_cmd(card
->host
, &io_cmd
, 0);
99 *byte
= io_cmd
.resp
[0] & 0xFF;
104 * rsi_issue_sdiocommand() - This function issues sdio commands.
105 * @func: Pointer to the sdio_func structure.
106 * @opcode: Opcode value.
107 * @arg: Arguments to pass.
108 * @flags: Flags which are set.
109 * @resp: Pointer to store response.
111 * Return: err: command status as 0 or -1.
113 static int rsi_issue_sdiocommand(struct sdio_func
*func
,
119 struct mmc_command cmd
;
120 struct mmc_host
*host
;
123 host
= func
->card
->host
;
125 memset(&cmd
, 0, sizeof(struct mmc_command
));
129 err
= mmc_wait_for_cmd(host
, &cmd
, 3);
131 if ((!err
) && (resp
))
138 * rsi_handle_interrupt() - This function is called upon the occurrence
140 * @function: Pointer to the sdio_func structure.
144 static void rsi_handle_interrupt(struct sdio_func
*function
)
146 struct rsi_hw
*adapter
= sdio_get_drvdata(function
);
147 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
149 if (adapter
->priv
->fsm_state
== FSM_FW_NOT_LOADED
)
152 rsi_set_event(&dev
->rx_thread
.event
);
156 * rsi_reset_card() - This function resets and re-initializes the card.
157 * @pfunction: Pointer to the sdio_func structure.
161 static void rsi_reset_card(struct sdio_func
*pfunction
)
165 struct mmc_card
*card
= pfunction
->card
;
166 struct mmc_host
*host
= card
->host
;
171 /* Reset 9110 chip */
172 ret
= rsi_cmd52writebyte(pfunction
->card
,
176 /* Card will not send any response as it is getting reset immediately
177 * Hence expect a timeout status from host controller
179 if (ret
!= -ETIMEDOUT
)
180 rsi_dbg(ERR_ZONE
, "%s: Reset failed : %d\n", __func__
, ret
);
182 /* Wait for few milli seconds to get rid of residue charges if any */
185 /* Initialize the SDIO card */
186 host
->ios
.chip_select
= MMC_CS_DONTCARE
;
187 host
->ios
.bus_mode
= MMC_BUSMODE_OPENDRAIN
;
188 host
->ios
.power_mode
= MMC_POWER_UP
;
189 host
->ios
.bus_width
= MMC_BUS_WIDTH_1
;
190 host
->ios
.timing
= MMC_TIMING_LEGACY
;
191 host
->ops
->set_ios(host
, &host
->ios
);
194 * This delay should be sufficient to allow the power supply
195 * to reach the minimum voltage.
199 host
->ios
.clock
= host
->f_min
;
200 host
->ios
.power_mode
= MMC_POWER_ON
;
201 host
->ops
->set_ios(host
, &host
->ios
);
204 * This delay must be at least 74 clock sizes, or 1 ms, or the
205 * time required to reach a stable voltage.
209 /* Issue CMD0. Goto idle state */
210 host
->ios
.chip_select
= MMC_CS_HIGH
;
211 host
->ops
->set_ios(host
, &host
->ios
);
213 err
= rsi_issue_sdiocommand(pfunction
,
216 (MMC_RSP_NONE
| MMC_CMD_BC
),
218 host
->ios
.chip_select
= MMC_CS_DONTCARE
;
219 host
->ops
->set_ios(host
, &host
->ios
);
221 host
->use_spi_crc
= 0;
224 rsi_dbg(ERR_ZONE
, "%s: CMD0 failed : %d\n", __func__
, err
);
226 /* Issue CMD5, arg = 0 */
227 err
= rsi_issue_sdiocommand(pfunction
, SD_IO_SEND_OP_COND
, 0,
228 (MMC_RSP_R4
| MMC_CMD_BCR
), &resp
);
230 rsi_dbg(ERR_ZONE
, "%s: CMD5 failed : %d\n",
233 /* Issue CMD5, arg = ocr. Wait till card is ready */
234 for (i
= 0; i
< 100; i
++) {
235 err
= rsi_issue_sdiocommand(pfunction
, SD_IO_SEND_OP_COND
,
237 (MMC_RSP_R4
| MMC_CMD_BCR
), &resp
);
239 rsi_dbg(ERR_ZONE
, "%s: CMD5 failed : %d\n",
244 if (resp
& MMC_CARD_BUSY
)
249 if ((i
== 100) || (err
)) {
250 rsi_dbg(ERR_ZONE
, "%s: card in not ready : %d %d\n",
255 /* Issue CMD3, get RCA */
256 err
= rsi_issue_sdiocommand(pfunction
,
257 SD_SEND_RELATIVE_ADDR
,
259 (MMC_RSP_R6
| MMC_CMD_BCR
),
262 rsi_dbg(ERR_ZONE
, "%s: CMD3 failed : %d\n", __func__
, err
);
266 host
->ios
.bus_mode
= MMC_BUSMODE_PUSHPULL
;
267 host
->ops
->set_ios(host
, &host
->ios
);
269 /* Issue CMD7, select card */
270 err
= rsi_issue_sdiocommand(pfunction
,
273 (MMC_RSP_R1
| MMC_CMD_AC
),
276 rsi_dbg(ERR_ZONE
, "%s: CMD7 failed : %d\n", __func__
, err
);
280 /* Enable high speed */
281 if (card
->host
->caps
& MMC_CAP_SD_HIGHSPEED
) {
282 rsi_dbg(ERR_ZONE
, "%s: Set high speed mode\n", __func__
);
283 err
= rsi_cmd52readbyte(card
, SDIO_CCCR_SPEED
, &cmd52_resp
);
285 rsi_dbg(ERR_ZONE
, "%s: CCCR speed reg read failed: %d\n",
288 err
= rsi_cmd52writebyte(card
,
290 (cmd52_resp
| SDIO_SPEED_EHS
));
293 "%s: CCR speed regwrite failed %d\n",
297 host
->ios
.timing
= MMC_TIMING_SD_HS
;
298 host
->ops
->set_ios(host
, &host
->ios
);
303 if (mmc_card_hs(card
))
306 clock
= card
->cis
.max_dtr
;
308 if (clock
> host
->f_max
)
311 host
->ios
.clock
= clock
;
312 host
->ops
->set_ios(host
, &host
->ios
);
314 if (card
->host
->caps
& MMC_CAP_4_BIT_DATA
) {
315 /* CMD52: Set bus width & disable card detect resistor */
316 err
= rsi_cmd52writebyte(card
,
318 (SDIO_BUS_CD_DISABLE
|
319 SDIO_BUS_WIDTH_4BIT
));
321 rsi_dbg(ERR_ZONE
, "%s: Set bus mode failed : %d\n",
325 host
->ios
.bus_width
= MMC_BUS_WIDTH_4
;
326 host
->ops
->set_ios(host
, &host
->ios
);
331 * rsi_setclock() - This function sets the clock frequency.
332 * @adapter: Pointer to the adapter structure.
333 * @freq: Clock frequency.
337 static void rsi_setclock(struct rsi_hw
*adapter
, u32 freq
)
339 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
340 struct mmc_host
*host
= dev
->pfunction
->card
->host
;
344 if (clock
> host
->f_max
)
346 host
->ios
.clock
= clock
;
347 host
->ops
->set_ios(host
, &host
->ios
);
351 * rsi_setblocklength() - This function sets the host block length.
352 * @adapter: Pointer to the adapter structure.
353 * @length: Block length to be set.
355 * Return: status: 0 on success, -1 on failure.
357 static int rsi_setblocklength(struct rsi_hw
*adapter
, u32 length
)
359 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
361 rsi_dbg(INIT_ZONE
, "%s: Setting the block length\n", __func__
);
363 status
= sdio_set_block_size(dev
->pfunction
, length
);
364 dev
->pfunction
->max_blksize
= 256;
365 adapter
->block_size
= dev
->pfunction
->max_blksize
;
368 "%s: Operational blk length is %d\n", __func__
, length
);
373 * rsi_setupcard() - This function queries and sets the card's features.
374 * @adapter: Pointer to the adapter structure.
376 * Return: status: 0 on success, -1 on failure.
378 static int rsi_setupcard(struct rsi_hw
*adapter
)
380 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
383 rsi_setclock(adapter
, 50000);
385 dev
->tx_blk_size
= 256;
386 status
= rsi_setblocklength(adapter
, dev
->tx_blk_size
);
389 "%s: Unable to set block length\n", __func__
);
394 * rsi_sdio_read_register() - This function reads one byte of information
396 * @adapter: Pointer to the adapter structure.
397 * @addr: Address of the register.
398 * @data: Pointer to the data that stores the data read.
400 * Return: 0 on success, -1 on failure.
402 int rsi_sdio_read_register(struct rsi_hw
*adapter
,
406 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
410 if (likely(dev
->sdio_irq_task
!= current
))
411 sdio_claim_host(dev
->pfunction
);
414 *data
= sdio_f0_readb(dev
->pfunction
, addr
, &status
);
416 *data
= sdio_readb(dev
->pfunction
, addr
, &status
);
418 if (likely(dev
->sdio_irq_task
!= current
))
419 sdio_release_host(dev
->pfunction
);
425 * rsi_sdio_write_register() - This function writes one byte of information
427 * @adapter: Pointer to the adapter structure.
428 * @function: Function Number.
429 * @addr: Address of the register.
430 * @data: Pointer to the data tha has to be written.
432 * Return: 0 on success, -1 on failure.
434 int rsi_sdio_write_register(struct rsi_hw
*adapter
,
439 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
442 if (likely(dev
->sdio_irq_task
!= current
))
443 sdio_claim_host(dev
->pfunction
);
446 sdio_f0_writeb(dev
->pfunction
, *data
, addr
, &status
);
448 sdio_writeb(dev
->pfunction
, *data
, addr
, &status
);
450 if (likely(dev
->sdio_irq_task
!= current
))
451 sdio_release_host(dev
->pfunction
);
457 * rsi_sdio_ack_intr() - This function acks the interrupt received.
458 * @adapter: Pointer to the adapter structure.
459 * @int_bit: Interrupt bit to write into register.
463 void rsi_sdio_ack_intr(struct rsi_hw
*adapter
, u8 int_bit
)
466 status
= rsi_sdio_write_register(adapter
,
468 (SDIO_FUN1_INTR_CLR_REG
|
469 RSI_SD_REQUEST_MASTER
),
472 rsi_dbg(ERR_ZONE
, "%s: unable to send ack\n", __func__
);
478 * rsi_sdio_read_register_multiple() - This function read multiple bytes of
479 * information from the SD card.
480 * @adapter: Pointer to the adapter structure.
481 * @addr: Address of the register.
482 * @count: Number of multiple bytes to be read.
483 * @data: Pointer to the read data.
485 * Return: 0 on success, -1 on failure.
487 static int rsi_sdio_read_register_multiple(struct rsi_hw
*adapter
,
492 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
495 if (likely(dev
->sdio_irq_task
!= current
))
496 sdio_claim_host(dev
->pfunction
);
498 status
= sdio_readsb(dev
->pfunction
, data
, addr
, count
);
500 if (likely(dev
->sdio_irq_task
!= current
))
501 sdio_release_host(dev
->pfunction
);
504 rsi_dbg(ERR_ZONE
, "%s: Synch Cmd53 read failed\n", __func__
);
509 * rsi_sdio_write_register_multiple() - This function writes multiple bytes of
510 * information to the SD card.
511 * @adapter: Pointer to the adapter structure.
512 * @addr: Address of the register.
513 * @data: Pointer to the data that has to be written.
514 * @count: Number of multiple bytes to be written.
516 * Return: 0 on success, -1 on failure.
518 int rsi_sdio_write_register_multiple(struct rsi_hw
*adapter
,
523 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
526 if (dev
->write_fail
> 1) {
527 rsi_dbg(ERR_ZONE
, "%s: Stopping card writes\n", __func__
);
529 } else if (dev
->write_fail
== 1) {
531 * Assuming it is a CRC failure, we want to allow another
534 rsi_dbg(ERR_ZONE
, "%s: Continue card writes\n", __func__
);
538 if (likely(dev
->sdio_irq_task
!= current
))
539 sdio_claim_host(dev
->pfunction
);
541 status
= sdio_writesb(dev
->pfunction
, addr
, data
, count
);
543 if (likely(dev
->sdio_irq_task
!= current
))
544 sdio_release_host(dev
->pfunction
);
547 rsi_dbg(ERR_ZONE
, "%s: Synch Cmd53 write failed %d\n",
551 memcpy(dev
->prev_desc
, data
, FRAME_DESC_SZ
);
556 static int rsi_sdio_load_data_master_write(struct rsi_hw
*adapter
,
562 u32 num_blocks
, offset
, i
;
563 u16 msb_address
, lsb_address
;
567 num_blocks
= instructions_sz
/ block_size
;
568 msb_address
= base_address
>> 16;
570 rsi_dbg(INFO_ZONE
, "ins_size: %d, num_blocks: %d\n",
571 instructions_sz
, num_blocks
);
573 temp_buf
= kmalloc(block_size
, GFP_KERNEL
);
577 /* Loading DM ms word in the sdio slave */
578 status
= rsi_sdio_master_access_msword(adapter
, msb_address
);
580 rsi_dbg(ERR_ZONE
, "%s: Unable to set ms word reg\n", __func__
);
584 for (offset
= 0, i
= 0; i
< num_blocks
; i
++, offset
+= block_size
) {
585 memcpy(temp_buf
, ta_firmware
+ offset
, block_size
);
586 lsb_address
= (u16
)base_address
;
587 status
= rsi_sdio_write_register_multiple
589 lsb_address
| RSI_SD_REQUEST_MASTER
,
590 temp_buf
, block_size
);
592 rsi_dbg(ERR_ZONE
, "%s: failed to write\n", __func__
);
595 rsi_dbg(INFO_ZONE
, "%s: loading block: %d\n", __func__
, i
);
596 base_address
+= block_size
;
598 if ((base_address
>> 16) != msb_address
) {
601 /* Loading DM ms word in the sdio slave */
602 status
= rsi_sdio_master_access_msword(adapter
,
606 "%s: Unable to set ms word reg\n",
613 if (instructions_sz
% block_size
) {
614 memset(temp_buf
, 0, block_size
);
615 memcpy(temp_buf
, ta_firmware
+ offset
,
616 instructions_sz
% block_size
);
617 lsb_address
= (u16
)base_address
;
618 status
= rsi_sdio_write_register_multiple
620 lsb_address
| RSI_SD_REQUEST_MASTER
,
622 instructions_sz
% block_size
);
626 "Written Last Block in Address 0x%x Successfully\n",
627 offset
| RSI_SD_REQUEST_MASTER
);
636 #define FLASH_SIZE_ADDR 0x04000016
637 static int rsi_sdio_master_reg_read(struct rsi_hw
*adapter
, u32 addr
,
638 u32
*read_buf
, u16 size
)
640 u32 addr_on_bus
, *data
;
644 data
= kzalloc(RSI_MASTER_REG_BUF_SIZE
, GFP_KERNEL
);
648 ms_addr
= (addr
>> 16);
649 status
= rsi_sdio_master_access_msword(adapter
, ms_addr
);
652 "%s: Unable to set ms word to common reg\n",
658 addr_on_bus
= (addr
& 0xFF000000);
659 if ((addr_on_bus
== (FLASH_SIZE_ADDR
& 0xFF000000)) ||
660 (addr_on_bus
== 0x0))
661 addr_on_bus
= (addr
& ~(0x3));
665 /* Bring TA out of reset */
666 status
= rsi_sdio_read_register_multiple
668 (addr_on_bus
| RSI_SD_REQUEST_MASTER
),
671 rsi_dbg(ERR_ZONE
, "%s: AHB register read failed\n", __func__
);
675 if ((addr
& 0x3) == 0)
678 *read_buf
= (*data
>> 16);
679 *read_buf
= (*read_buf
& 0xFFFF);
680 } else if (size
== 1) {
681 if ((addr
& 0x3) == 0)
683 else if ((addr
& 0x3) == 1)
684 *read_buf
= (*data
>> 8);
685 else if ((addr
& 0x3) == 2)
686 *read_buf
= (*data
>> 16);
688 *read_buf
= (*data
>> 24);
689 *read_buf
= (*read_buf
& 0xFF);
699 static int rsi_sdio_master_reg_write(struct rsi_hw
*adapter
,
701 unsigned long data
, u16 size
)
703 unsigned long *data_aligned
;
706 data_aligned
= kzalloc(RSI_MASTER_REG_BUF_SIZE
, GFP_KERNEL
);
711 *data_aligned
= ((data
<< 16) | (data
& 0xFFFF));
712 } else if (size
== 1) {
713 u32 temp_data
= data
& 0xFF;
715 *data_aligned
= ((temp_data
<< 24) | (temp_data
<< 16) |
716 (temp_data
<< 8) | temp_data
);
718 *data_aligned
= data
;
722 status
= rsi_sdio_master_access_msword(adapter
, (addr
>> 16));
725 "%s: Unable to set ms word to common reg\n",
730 addr
= addr
& 0xFFFF;
732 /* Bring TA out of reset */
733 status
= rsi_sdio_write_register_multiple
735 (addr
| RSI_SD_REQUEST_MASTER
),
736 (u8
*)data_aligned
, size
);
739 "%s: Unable to do AHB reg write\n", __func__
);
746 * rsi_sdio_host_intf_write_pkt() - This function writes the packet to device.
747 * @adapter: Pointer to the adapter structure.
748 * @pkt: Pointer to the data to be written on to the device.
749 * @len: length of the data to be written on to the device.
751 * Return: 0 on success, -1 on failure.
753 static int rsi_sdio_host_intf_write_pkt(struct rsi_hw
*adapter
,
757 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
758 u32 block_size
= dev
->tx_blk_size
;
759 u32 num_blocks
, address
, length
;
763 queueno
= ((pkt
[1] >> 4) & 0xf);
764 if (queueno
== RSI_BT_MGMT_Q
|| queueno
== RSI_BT_DATA_Q
)
767 num_blocks
= len
/ block_size
;
769 if (len
% block_size
)
772 address
= (num_blocks
* block_size
| (queueno
<< 12));
773 length
= num_blocks
* block_size
;
775 status
= rsi_sdio_write_register_multiple(adapter
,
780 rsi_dbg(ERR_ZONE
, "%s: Unable to write onto the card: %d\n",
782 rsi_dbg(DATA_TX_ZONE
, "%s: Successfully written onto card\n", __func__
);
787 * rsi_sdio_host_intf_read_pkt() - This function reads the packet
789 * @adapter: Pointer to the adapter data structure.
790 * @pkt: Pointer to the packet data to be read from the device.
791 * @length: Length of the data to be read from the device.
793 * Return: 0 on success, -1 on failure.
795 int rsi_sdio_host_intf_read_pkt(struct rsi_hw
*adapter
,
799 int status
= -EINVAL
;
802 rsi_dbg(ERR_ZONE
, "%s: Pkt size is zero\n", __func__
);
806 status
= rsi_sdio_read_register_multiple(adapter
,
809 length
); /*num of bytes*/
812 rsi_dbg(ERR_ZONE
, "%s: Failed to read frame: %d\n", __func__
,
818 * rsi_init_sdio_interface() - This function does init specific to SDIO.
820 * @adapter: Pointer to the adapter data structure.
821 * @pfunction: Pointer to the sdio_func structure.
823 * Return: 0 on success, -1 on failure.
825 static int rsi_init_sdio_interface(struct rsi_hw
*adapter
,
826 struct sdio_func
*pfunction
)
828 struct rsi_91x_sdiodev
*rsi_91x_dev
;
831 rsi_91x_dev
= kzalloc(sizeof(*rsi_91x_dev
), GFP_KERNEL
);
835 adapter
->rsi_dev
= rsi_91x_dev
;
837 sdio_claim_host(pfunction
);
839 pfunction
->enable_timeout
= 100;
840 status
= sdio_enable_func(pfunction
);
842 rsi_dbg(ERR_ZONE
, "%s: Failed to enable interface\n", __func__
);
843 sdio_release_host(pfunction
);
847 rsi_dbg(INIT_ZONE
, "%s: Enabled the interface\n", __func__
);
849 rsi_91x_dev
->pfunction
= pfunction
;
850 adapter
->device
= &pfunction
->dev
;
852 sdio_set_drvdata(pfunction
, adapter
);
854 status
= rsi_setupcard(adapter
);
856 rsi_dbg(ERR_ZONE
, "%s: Failed to setup card\n", __func__
);
860 rsi_dbg(INIT_ZONE
, "%s: Setup card successfully\n", __func__
);
862 status
= rsi_init_sdio_slave_regs(adapter
);
864 rsi_dbg(ERR_ZONE
, "%s: Failed to init slave regs\n", __func__
);
867 sdio_release_host(pfunction
);
869 adapter
->determine_event_timeout
= rsi_sdio_determine_event_timeout
;
870 adapter
->check_hw_queue_status
= rsi_sdio_check_buffer_status
;
872 #ifdef CONFIG_RSI_DEBUGFS
873 adapter
->num_debugfs_entries
= MAX_DEBUGFS_ENTRIES
;
877 sdio_disable_func(pfunction
);
878 sdio_release_host(pfunction
);
882 static int rsi_sdio_reinit_device(struct rsi_hw
*adapter
)
884 struct rsi_91x_sdiodev
*sdev
= adapter
->rsi_dev
;
885 struct sdio_func
*pfunction
= sdev
->pfunction
;
888 for (ii
= 0; ii
< NUM_SOFT_QUEUES
; ii
++)
889 skb_queue_purge(&adapter
->priv
->tx_queue
[ii
]);
891 /* Initialize device again */
892 sdio_claim_host(pfunction
);
894 sdio_release_irq(pfunction
);
895 rsi_reset_card(pfunction
);
897 sdio_enable_func(pfunction
);
898 rsi_setupcard(adapter
);
899 rsi_init_sdio_slave_regs(adapter
);
900 sdio_claim_irq(pfunction
, rsi_handle_interrupt
);
901 rsi_hal_device_init(adapter
);
903 sdio_release_host(pfunction
);
908 static int rsi_sdio_ta_reset(struct rsi_hw
*adapter
)
914 data
= kzalloc(RSI_9116_REG_SIZE
, GFP_KERNEL
);
918 status
= rsi_sdio_master_access_msword(adapter
, TA_BASE_ADDR
);
921 "Unable to set ms word to common reg\n");
925 rsi_dbg(INIT_ZONE
, "%s: Bring TA out of reset\n", __func__
);
926 put_unaligned_le32(TA_HOLD_THREAD_VALUE
, data
);
927 addr
= TA_HOLD_THREAD_REG
| RSI_SD_REQUEST_MASTER
;
928 status
= rsi_sdio_write_register_multiple(adapter
, addr
,
932 rsi_dbg(ERR_ZONE
, "Unable to hold TA threads\n");
936 put_unaligned_le32(TA_SOFT_RST_CLR
, data
);
937 addr
= TA_SOFT_RESET_REG
| RSI_SD_REQUEST_MASTER
;
938 status
= rsi_sdio_write_register_multiple(adapter
, addr
,
942 rsi_dbg(ERR_ZONE
, "Unable to get TA out of reset\n");
946 put_unaligned_le32(TA_PC_ZERO
, data
);
947 addr
= TA_TH0_PC_REG
| RSI_SD_REQUEST_MASTER
;
948 status
= rsi_sdio_write_register_multiple(adapter
, addr
,
952 rsi_dbg(ERR_ZONE
, "Unable to Reset TA PC value\n");
957 put_unaligned_le32(TA_RELEASE_THREAD_VALUE
, data
);
958 addr
= TA_RELEASE_THREAD_REG
| RSI_SD_REQUEST_MASTER
;
959 status
= rsi_sdio_write_register_multiple(adapter
, addr
,
963 rsi_dbg(ERR_ZONE
, "Unable to release TA threads\n");
967 status
= rsi_sdio_master_access_msword(adapter
, MISC_CFG_BASE_ADDR
);
969 rsi_dbg(ERR_ZONE
, "Unable to set ms word to common reg\n");
972 rsi_dbg(INIT_ZONE
, "***** TA Reset done *****\n");
979 static struct rsi_host_intf_ops sdio_host_intf_ops
= {
980 .write_pkt
= rsi_sdio_host_intf_write_pkt
,
981 .read_pkt
= rsi_sdio_host_intf_read_pkt
,
982 .master_access_msword
= rsi_sdio_master_access_msword
,
983 .read_reg_multiple
= rsi_sdio_read_register_multiple
,
984 .write_reg_multiple
= rsi_sdio_write_register_multiple
,
985 .master_reg_read
= rsi_sdio_master_reg_read
,
986 .master_reg_write
= rsi_sdio_master_reg_write
,
987 .load_data_master_write
= rsi_sdio_load_data_master_write
,
988 .reinit_device
= rsi_sdio_reinit_device
,
989 .ta_reset
= rsi_sdio_ta_reset
,
993 * rsi_probe() - This function is called by kernel when the driver provided
994 * Vendor and device IDs are matched. All the initialization
996 * @pfunction: Pointer to the sdio_func structure.
997 * @id: Pointer to sdio_device_id structure.
999 * Return: 0 on success, 1 on failure.
1001 static int rsi_probe(struct sdio_func
*pfunction
,
1002 const struct sdio_device_id
*id
)
1004 struct rsi_hw
*adapter
;
1005 struct rsi_91x_sdiodev
*sdev
;
1006 int status
= -EINVAL
;
1008 rsi_dbg(INIT_ZONE
, "%s: Init function called\n", __func__
);
1010 adapter
= rsi_91x_init(dev_oper_mode
);
1012 rsi_dbg(ERR_ZONE
, "%s: Failed to init os intf ops\n",
1016 adapter
->rsi_host_intf
= RSI_HOST_INTF_SDIO
;
1017 adapter
->host_intf_ops
= &sdio_host_intf_ops
;
1019 if (rsi_init_sdio_interface(adapter
, pfunction
)) {
1020 rsi_dbg(ERR_ZONE
, "%s: Failed to init sdio interface\n",
1023 goto fail_free_adapter
;
1026 if (pfunction
->device
== SDIO_DEVICE_ID_RSI_9113
) {
1027 rsi_dbg(ERR_ZONE
, "%s: 9113 module detected\n", __func__
);
1028 adapter
->device_model
= RSI_DEV_9113
;
1029 } else if (pfunction
->device
== SDIO_DEVICE_ID_RSI_9116
) {
1030 rsi_dbg(ERR_ZONE
, "%s: 9116 module detected\n", __func__
);
1031 adapter
->device_model
= RSI_DEV_9116
;
1034 "%s: Unsupported RSI device id 0x%x\n", __func__
,
1036 goto fail_free_adapter
;
1039 sdev
= adapter
->rsi_dev
;
1040 rsi_init_event(&sdev
->rx_thread
.event
);
1041 status
= rsi_create_kthread(adapter
->priv
, &sdev
->rx_thread
,
1042 rsi_sdio_rx_thread
, "SDIO-RX-Thread");
1044 rsi_dbg(ERR_ZONE
, "%s: Unable to init rx thrd\n", __func__
);
1045 goto fail_kill_thread
;
1048 sdio_claim_host(pfunction
);
1049 if (sdio_claim_irq(pfunction
, rsi_handle_interrupt
)) {
1050 rsi_dbg(ERR_ZONE
, "%s: Failed to request IRQ\n", __func__
);
1051 sdio_release_host(pfunction
);
1053 goto fail_claim_irq
;
1055 sdio_release_host(pfunction
);
1056 rsi_dbg(INIT_ZONE
, "%s: Registered Interrupt handler\n", __func__
);
1058 if (rsi_hal_device_init(adapter
)) {
1059 rsi_dbg(ERR_ZONE
, "%s: Failed in device init\n", __func__
);
1063 rsi_dbg(INFO_ZONE
, "===> RSI Device Init Done <===\n");
1065 if (rsi_sdio_master_access_msword(adapter
, MISC_CFG_BASE_ADDR
)) {
1066 rsi_dbg(ERR_ZONE
, "%s: Unable to set ms word reg\n", __func__
);
1071 adapter
->priv
->hibernate_resume
= false;
1072 adapter
->priv
->reinit_hw
= false;
1076 sdio_claim_host(pfunction
);
1077 sdio_release_irq(pfunction
);
1078 sdio_release_host(pfunction
);
1080 rsi_kill_thread(&sdev
->rx_thread
);
1082 sdio_claim_host(pfunction
);
1083 sdio_disable_func(pfunction
);
1084 sdio_release_host(pfunction
);
1086 rsi_91x_deinit(adapter
);
1087 rsi_dbg(ERR_ZONE
, "%s: Failed in probe...Exiting\n", __func__
);
1091 static void ulp_read_write(struct rsi_hw
*adapter
, u16 addr
, u32 data
,
1094 rsi_sdio_master_reg_write(adapter
, RSI_GSPI_DATA_REG1
,
1095 ((addr
<< 6) | ((data
>> 16) & 0xffff)), 2);
1096 rsi_sdio_master_reg_write(adapter
, RSI_GSPI_DATA_REG0
,
1097 (data
& 0xffff), 2);
1098 rsi_sdio_master_reg_write(adapter
, RSI_GSPI_CTRL_REG0
,
1099 RSI_GSPI_CTRL_REG0_VALUE
, 2);
1100 rsi_sdio_master_reg_write(adapter
, RSI_GSPI_CTRL_REG1
,
1101 ((len_in_bits
- 1) | RSI_GSPI_TRIG
), 2);
1105 /*This function resets and re-initializes the chip.*/
1106 static void rsi_reset_chip(struct rsi_hw
*adapter
)
1109 u8 sdio_interrupt_status
= 0;
1113 data
= kzalloc(sizeof(u32
), GFP_KERNEL
);
1117 rsi_dbg(INFO_ZONE
, "Writing disable to wakeup register\n");
1118 ret
= rsi_sdio_write_register(adapter
, 0, SDIO_WAKEUP_REG
, &request
);
1121 "%s: Failed to write SDIO wakeup register\n", __func__
);
1125 ret
= rsi_sdio_read_register(adapter
, RSI_FN1_INT_REGISTER
,
1126 &sdio_interrupt_status
);
1128 rsi_dbg(ERR_ZONE
, "%s: Failed to Read Intr Status Register\n",
1132 rsi_dbg(INFO_ZONE
, "%s: Intr Status Register value = %d\n",
1133 __func__
, sdio_interrupt_status
);
1135 /* Put Thread-Arch processor on hold */
1136 if (rsi_sdio_master_access_msword(adapter
, TA_BASE_ADDR
)) {
1138 "%s: Unable to set ms word to common reg\n",
1143 put_unaligned_le32(TA_HOLD_THREAD_VALUE
, data
);
1144 if (rsi_sdio_write_register_multiple(adapter
, TA_HOLD_THREAD_REG
|
1145 RSI_SD_REQUEST_MASTER
,
1148 "%s: Unable to hold Thread-Arch processor threads\n",
1153 /* This msleep will ensure Thread-Arch processor to go to hold
1154 * and any pending dma transfers to rf spi in device to finish.
1157 if (adapter
->device_model
!= RSI_DEV_9116
) {
1158 ulp_read_write(adapter
, RSI_ULP_RESET_REG
, RSI_ULP_WRITE_0
, 32);
1159 ulp_read_write(adapter
,
1160 RSI_WATCH_DOG_TIMER_1
, RSI_ULP_WRITE_2
, 32);
1161 ulp_read_write(adapter
, RSI_WATCH_DOG_TIMER_2
, RSI_ULP_WRITE_0
,
1163 ulp_read_write(adapter
, RSI_WATCH_DOG_DELAY_TIMER_1
,
1164 RSI_ULP_WRITE_50
, 32);
1165 ulp_read_write(adapter
, RSI_WATCH_DOG_DELAY_TIMER_2
,
1166 RSI_ULP_WRITE_0
, 32);
1167 ulp_read_write(adapter
, RSI_WATCH_DOG_TIMER_ENABLE
,
1168 RSI_ULP_TIMER_ENABLE
, 32);
1170 if ((rsi_sdio_master_reg_write(adapter
,
1171 NWP_WWD_INTERRUPT_TIMER
,
1172 NWP_WWD_INT_TIMER_CLKS
,
1173 RSI_9116_REG_SIZE
)) < 0) {
1174 rsi_dbg(ERR_ZONE
, "Failed to write to intr timer\n");
1176 if ((rsi_sdio_master_reg_write(adapter
,
1177 NWP_WWD_SYSTEM_RESET_TIMER
,
1178 NWP_WWD_SYS_RESET_TIMER_CLKS
,
1179 RSI_9116_REG_SIZE
)) < 0) {
1181 "Failed to write to system reset timer\n");
1183 if ((rsi_sdio_master_reg_write(adapter
,
1184 NWP_WWD_MODE_AND_RSTART
,
1185 NWP_WWD_TIMER_DISABLE
,
1186 RSI_9116_REG_SIZE
)) < 0) {
1188 "Failed to write to mode and restart\n");
1190 rsi_dbg(ERR_ZONE
, "***** Watch Dog Reset Successful *****\n");
1192 /* This msleep will be sufficient for the ulp
1193 * read write operations to complete for chip reset.
1202 * rsi_disconnect() - This function performs the reverse of the probe function.
1203 * @pfunction: Pointer to the sdio_func structure.
1207 static void rsi_disconnect(struct sdio_func
*pfunction
)
1209 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunction
);
1210 struct rsi_91x_sdiodev
*dev
;
1215 dev
= adapter
->rsi_dev
;
1217 rsi_kill_thread(&dev
->rx_thread
);
1218 sdio_claim_host(pfunction
);
1219 sdio_release_irq(pfunction
);
1220 sdio_release_host(pfunction
);
1223 rsi_mac80211_detach(adapter
);
1226 if (IS_ENABLED(CONFIG_RSI_COEX
) && adapter
->priv
->coex_mode
> 1 &&
1227 adapter
->priv
->bt_adapter
) {
1228 rsi_bt_ops
.detach(adapter
->priv
->bt_adapter
);
1229 adapter
->priv
->bt_adapter
= NULL
;
1233 rsi_reset_chip(adapter
);
1235 /* Resetting to take care of the case, where-in driver is re-loaded */
1236 sdio_claim_host(pfunction
);
1237 rsi_reset_card(pfunction
);
1238 sdio_disable_func(pfunction
);
1239 sdio_release_host(pfunction
);
1240 dev
->write_fail
= 2;
1241 rsi_91x_deinit(adapter
);
1242 rsi_dbg(ERR_ZONE
, "##### RSI SDIO device disconnected #####\n");
1247 static int rsi_set_sdio_pm_caps(struct rsi_hw
*adapter
)
1249 struct rsi_91x_sdiodev
*dev
= adapter
->rsi_dev
;
1250 struct sdio_func
*func
= dev
->pfunction
;
1253 ret
= sdio_set_host_pm_flags(func
, MMC_PM_KEEP_POWER
);
1255 rsi_dbg(ERR_ZONE
, "Set sdio keep pwr flag failed: %d\n", ret
);
1260 static int rsi_sdio_disable_interrupts(struct sdio_func
*pfunc
)
1262 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunc
);
1263 u8 isr_status
= 0, data
= 0;
1267 rsi_dbg(INFO_ZONE
, "Waiting for interrupts to be cleared..");
1270 rsi_sdio_read_register(adapter
, RSI_FN1_INT_REGISTER
,
1272 rsi_dbg(INFO_ZONE
, ".");
1273 } while ((isr_status
) && (jiffies_to_msecs(jiffies
- t1
) < 20));
1274 rsi_dbg(INFO_ZONE
, "Interrupts cleared\n");
1276 sdio_claim_host(pfunc
);
1277 ret
= rsi_cmd52readbyte(pfunc
->card
, RSI_INT_ENABLE_REGISTER
, &data
);
1280 "%s: Failed to read int enable register\n",
1285 data
&= RSI_INT_ENABLE_MASK
;
1286 ret
= rsi_cmd52writebyte(pfunc
->card
, RSI_INT_ENABLE_REGISTER
, data
);
1289 "%s: Failed to write to int enable register\n",
1293 ret
= rsi_cmd52readbyte(pfunc
->card
, RSI_INT_ENABLE_REGISTER
, &data
);
1296 "%s: Failed to read int enable register\n",
1300 rsi_dbg(INFO_ZONE
, "int enable reg content = %x\n", data
);
1303 sdio_release_host(pfunc
);
1307 static int rsi_sdio_enable_interrupts(struct sdio_func
*pfunc
)
1311 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunc
);
1312 struct rsi_common
*common
= adapter
->priv
;
1314 sdio_claim_host(pfunc
);
1315 ret
= rsi_cmd52readbyte(pfunc
->card
, RSI_INT_ENABLE_REGISTER
, &data
);
1318 "%s: Failed to read int enable register\n", __func__
);
1322 data
|= ~RSI_INT_ENABLE_MASK
& 0xff;
1324 ret
= rsi_cmd52writebyte(pfunc
->card
, RSI_INT_ENABLE_REGISTER
, data
);
1327 "%s: Failed to write to int enable register\n",
1332 if ((common
->wow_flags
& RSI_WOW_ENABLED
) &&
1333 (common
->wow_flags
& RSI_WOW_NO_CONNECTION
))
1335 "##### Device can not wake up through WLAN\n");
1337 ret
= rsi_cmd52readbyte(pfunc
->card
, RSI_INT_ENABLE_REGISTER
, &data
);
1340 "%s: Failed to read int enable register\n", __func__
);
1343 rsi_dbg(INFO_ZONE
, "int enable reg content = %x\n", data
);
1346 sdio_release_host(pfunc
);
1350 static int rsi_suspend(struct device
*dev
)
1353 struct sdio_func
*pfunction
= dev_to_sdio_func(dev
);
1354 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunction
);
1355 struct rsi_common
*common
;
1358 rsi_dbg(ERR_ZONE
, "Device is not ready\n");
1361 common
= adapter
->priv
;
1362 rsi_sdio_disable_interrupts(pfunction
);
1364 ret
= rsi_set_sdio_pm_caps(adapter
);
1367 "Setting power management caps failed\n");
1368 common
->fsm_state
= FSM_CARD_NOT_READY
;
1373 static int rsi_resume(struct device
*dev
)
1375 struct sdio_func
*pfunction
= dev_to_sdio_func(dev
);
1376 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunction
);
1377 struct rsi_common
*common
= adapter
->priv
;
1379 common
->fsm_state
= FSM_MAC_INIT_DONE
;
1380 rsi_sdio_enable_interrupts(pfunction
);
1385 static int rsi_freeze(struct device
*dev
)
1388 struct sdio_func
*pfunction
= dev_to_sdio_func(dev
);
1389 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunction
);
1390 struct rsi_common
*common
;
1391 struct rsi_91x_sdiodev
*sdev
;
1393 rsi_dbg(INFO_ZONE
, "SDIO Bus freeze ===>\n");
1396 rsi_dbg(ERR_ZONE
, "Device is not ready\n");
1399 common
= adapter
->priv
;
1400 sdev
= adapter
->rsi_dev
;
1402 if ((common
->wow_flags
& RSI_WOW_ENABLED
) &&
1403 (common
->wow_flags
& RSI_WOW_NO_CONNECTION
))
1405 "##### Device can not wake up through WLAN\n");
1407 if (IS_ENABLED(CONFIG_RSI_COEX
) && common
->coex_mode
> 1 &&
1408 common
->bt_adapter
) {
1409 rsi_bt_ops
.detach(common
->bt_adapter
);
1410 common
->bt_adapter
= NULL
;
1413 ret
= rsi_sdio_disable_interrupts(pfunction
);
1415 if (sdev
->write_fail
)
1416 rsi_dbg(INFO_ZONE
, "###### Device is not ready #######\n");
1418 ret
= rsi_set_sdio_pm_caps(adapter
);
1420 rsi_dbg(INFO_ZONE
, "Setting power management caps failed\n");
1422 rsi_dbg(INFO_ZONE
, "***** RSI module freezed *****\n");
1427 static int rsi_thaw(struct device
*dev
)
1429 struct sdio_func
*pfunction
= dev_to_sdio_func(dev
);
1430 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunction
);
1431 struct rsi_common
*common
= adapter
->priv
;
1433 rsi_dbg(ERR_ZONE
, "SDIO Bus thaw =====>\n");
1435 common
->hibernate_resume
= true;
1436 common
->fsm_state
= FSM_CARD_NOT_READY
;
1437 common
->iface_down
= true;
1439 rsi_sdio_enable_interrupts(pfunction
);
1441 rsi_dbg(INFO_ZONE
, "***** RSI module thaw done *****\n");
1446 static void rsi_shutdown(struct device
*dev
)
1448 struct sdio_func
*pfunction
= dev_to_sdio_func(dev
);
1449 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunction
);
1450 struct rsi_91x_sdiodev
*sdev
= adapter
->rsi_dev
;
1451 struct ieee80211_hw
*hw
= adapter
->hw
;
1453 rsi_dbg(ERR_ZONE
, "SDIO Bus shutdown =====>\n");
1455 if (hw
&& hw
->wiphy
&& hw
->wiphy
->wowlan_config
) {
1456 if (rsi_config_wowlan(adapter
, hw
->wiphy
->wowlan_config
))
1457 rsi_dbg(ERR_ZONE
, "Failed to configure WoWLAN\n");
1460 if (IS_ENABLED(CONFIG_RSI_COEX
) && adapter
->priv
->coex_mode
> 1 &&
1461 adapter
->priv
->bt_adapter
) {
1462 rsi_bt_ops
.detach(adapter
->priv
->bt_adapter
);
1463 adapter
->priv
->bt_adapter
= NULL
;
1466 rsi_sdio_disable_interrupts(sdev
->pfunction
);
1468 if (sdev
->write_fail
)
1469 rsi_dbg(INFO_ZONE
, "###### Device is not ready #######\n");
1471 rsi_dbg(INFO_ZONE
, "***** RSI module shut down *****\n");
1474 static int rsi_restore(struct device
*dev
)
1476 struct sdio_func
*pfunction
= dev_to_sdio_func(dev
);
1477 struct rsi_hw
*adapter
= sdio_get_drvdata(pfunction
);
1478 struct rsi_common
*common
= adapter
->priv
;
1480 rsi_dbg(INFO_ZONE
, "SDIO Bus restore ======>\n");
1481 common
->hibernate_resume
= true;
1482 common
->fsm_state
= FSM_FW_NOT_LOADED
;
1483 common
->iface_down
= true;
1485 adapter
->sc_nvifs
= 0;
1486 adapter
->ps_state
= PS_NONE
;
1488 common
->wow_flags
= 0;
1489 common
->iface_down
= false;
1491 rsi_dbg(INFO_ZONE
, "RSI module restored\n");
1495 static const struct dev_pm_ops rsi_pm_ops
= {
1496 .suspend
= rsi_suspend
,
1497 .resume_noirq
= rsi_resume
,
1498 .freeze
= rsi_freeze
,
1500 .restore
= rsi_restore
,
1504 static const struct sdio_device_id rsi_dev_table
[] = {
1505 { SDIO_DEVICE(SDIO_VENDOR_ID_RSI
, SDIO_DEVICE_ID_RSI_9113
) },
1506 { SDIO_DEVICE(SDIO_VENDOR_ID_RSI
, SDIO_DEVICE_ID_RSI_9116
) },
1510 static struct sdio_driver rsi_driver
= {
1511 .name
= "RSI-SDIO WLAN",
1513 .remove
= rsi_disconnect
,
1514 .id_table
= rsi_dev_table
,
1518 .shutdown
= rsi_shutdown
,
1522 module_sdio_driver(rsi_driver
);
1524 MODULE_AUTHOR("Redpine Signals Inc");
1525 MODULE_DESCRIPTION("Common SDIO layer for RSI drivers");
1526 MODULE_DEVICE_TABLE(sdio
, rsi_dev_table
);
1527 MODULE_FIRMWARE(FIRMWARE_RSI9113
);
1528 MODULE_VERSION("0.1");
1529 MODULE_LICENSE("Dual BSD/GPL");