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NFC: trf7970a: Add Target Mode Support
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1/*
2 * TI TRF7970a RFID/NFC Transceiver Driver
3 *
4 * Copyright (C) 2013 Texas Instruments Incorporated - http://www.ti.com
5 *
6 * Author: Erick Macias <emacias@ti.com>
7 * Author: Felipe Balbi <balbi@ti.com>
8 * Author: Mark A. Greer <mgreer@animalcreek.com>
9 *
10 * This program is free software: you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 of
12 * the License as published by the Free Software Foundation.
13 */
14
15#include <linux/module.h>
16#include <linux/device.h>
17#include <linux/netdevice.h>
18#include <linux/interrupt.h>
e6403b7c 19#include <linux/pm_runtime.h>
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20#include <linux/nfc.h>
21#include <linux/skbuff.h>
22#include <linux/delay.h>
23#include <linux/gpio.h>
24#include <linux/of.h>
25#include <linux/of_gpio.h>
26#include <linux/spi/spi.h>
27#include <linux/regulator/consumer.h>
28
29#include <net/nfc/nfc.h>
30#include <net/nfc/digital.h>
31
32/* There are 3 ways the host can communicate with the trf7970a:
33 * parallel mode, SPI with Slave Select (SS) mode, and SPI without
34 * SS mode. The driver only supports the two SPI modes.
35 *
36 * The trf7970a is very timing sensitive and the VIN, EN2, and EN
37 * pins must asserted in that order and with specific delays in between.
38 * The delays used in the driver were provided by TI and have been
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39 * confirmed to work with this driver. There is a bug with the current
40 * version of the trf7970a that requires that EN2 remain low no matter
41 * what. If it goes high, it will generate an RF field even when in
42 * passive target mode. TI has indicated that the chip will work okay
43 * when EN2 is left low. The 'en2-rf-quirk' device tree property
44 * indicates that trf7970a currently being used has the erratum and
45 * that EN2 must be kept low.
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46 *
47 * Timeouts are implemented using the delayed workqueue kernel facility.
48 * Timeouts are required so things don't hang when there is no response
49 * from the trf7970a (or tag). Using this mechanism creates a race with
50 * interrupts, however. That is, an interrupt and a timeout could occur
51 * closely enough together that one is blocked by the mutex while the other
52 * executes. When the timeout handler executes first and blocks the
53 * interrupt handler, it will eventually set the state to IDLE so the
54 * interrupt handler will check the state and exit with no harm done.
55 * When the interrupt handler executes first and blocks the timeout handler,
56 * the cancel_delayed_work() call will know that it didn't cancel the
57 * work item (i.e., timeout) and will return zero. That return code is
58 * used by the timer handler to indicate that it should ignore the timeout
59 * once its unblocked.
60 *
61 * Aborting an active command isn't as simple as it seems because the only
62 * way to abort a command that's already been sent to the tag is so turn
63 * off power to the tag. If we do that, though, we'd have to go through
64 * the entire anticollision procedure again but the digital layer doesn't
13b4272a 65 * support that. So, if an abort is received before trf7970a_send_cmd()
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66 * has sent the command to the tag, it simply returns -ECANCELED. If the
67 * command has already been sent to the tag, then the driver continues
68 * normally and recieves the response data (or error) but just before
69 * sending the data upstream, it frees the rx_skb and sends -ECANCELED
70 * upstream instead. If the command failed, that error will be sent
71 * upstream.
72 *
73 * When recieving data from a tag and the interrupt status register has
74 * only the SRX bit set, it means that all of the data has been received
75 * (once what's in the fifo has been read). However, depending on timing
76 * an interrupt status with only the SRX bit set may not be recived. In
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77 * those cases, the timeout mechanism is used to wait 20 ms in case more
78 * data arrives. After 20 ms, it is assumed that all of the data has been
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79 * received and the accumulated rx data is sent upstream. The
80 * 'TRF7970A_ST_WAIT_FOR_RX_DATA_CONT' state is used for this purpose
81 * (i.e., it indicates that some data has been received but we're not sure
82 * if there is more coming so a timeout in this state means all data has
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83 * been received and there isn't an error). The delay is 20 ms since delays
84 * of ~16 ms have been observed during testing.
165063f1 85 *
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86 * When transmitting a frame larger than the FIFO size (127 bytes), the
87 * driver will wait 20 ms for the FIFO to drain past the low-watermark
88 * and generate an interrupt. The low-watermark set to 32 bytes so the
89 * interrupt should fire after 127 - 32 = 95 bytes have been sent. At
90 * the lowest possible bit rate (6.62 kbps for 15693), it will take up
91 * to ~14.35 ms so 20 ms is used for the timeout.
92 *
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93 * Type 2 write and sector select commands respond with a 4-bit ACK or NACK.
94 * Having only 4 bits in the FIFO won't normally generate an interrupt so
95 * driver enables the '4_bit_RX' bit of the Special Functions register 1
96 * to cause an interrupt in that case. Leaving that bit for a read command
97 * messes up the data returned so it is only enabled when the framing is
98 * 'NFC_DIGITAL_FRAMING_NFCA_T2T' and the command is not a read command.
99 * Unfortunately, that means that the driver has to peek into tx frames
100 * when the framing is 'NFC_DIGITAL_FRAMING_NFCA_T2T'. This is done by
101 * the trf7970a_per_cmd_config() routine.
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102 *
103 * ISO/IEC 15693 frames specify whether to use single or double sub-carrier
104 * frequencies and whether to use low or high data rates in the flags byte
105 * of the frame. This means that the driver has to peek at all 15693 frames
106 * to determine what speed to set the communication to. In addition, write
107 * and lock commands use the OPTION flag to indicate that an EOF must be
108 * sent to the tag before it will send its response. So the driver has to
109 * examine all frames for that reason too.
110 *
111 * It is unclear how long to wait before sending the EOF. According to the
112 * Note under Table 1-1 in section 1.6 of
113 * http://www.ti.com/lit/ug/scbu011/scbu011.pdf, that wait should be at least
114 * 10 ms for TI Tag-it HF-I tags; however testing has shown that is not long
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115 * enough so 20 ms is used. So the timer is set to 40 ms - 20 ms to drain
116 * up to 127 bytes in the FIFO at the lowest bit rate plus another 20 ms to
117 * ensure the wait is long enough before sending the EOF. This seems to work
9d9304b3 118 * reliably.
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119 */
120
80062891 121#define TRF7970A_SUPPORTED_PROTOCOLS \
9d9304b3 122 (NFC_PROTO_MIFARE_MASK | NFC_PROTO_ISO14443_MASK | \
6857bb96 123 NFC_PROTO_ISO14443_B_MASK | NFC_PROTO_FELICA_MASK | \
13b4272a 124 NFC_PROTO_ISO15693_MASK | NFC_PROTO_NFC_DEP_MASK)
165063f1 125
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126#define TRF7970A_AUTOSUSPEND_DELAY 30000 /* 30 seconds */
127
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128#define TRF7970A_RX_SKB_ALLOC_SIZE 256
129
1568bfef 130#define TRF7970A_FIFO_SIZE 127
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131
132/* TX length is 3 nibbles long ==> 4KB - 1 bytes max */
133#define TRF7970A_TX_MAX (4096 - 1)
134
1961843c 135#define TRF7970A_WAIT_FOR_TX_IRQ 20
5fa3af35 136#define TRF7970A_WAIT_FOR_RX_DATA_TIMEOUT 20
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137#define TRF7970A_WAIT_FOR_FIFO_DRAIN_TIMEOUT 20
138#define TRF7970A_WAIT_TO_ISSUE_ISO15693_EOF 40
165063f1 139
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140/* Guard times for various RF technologies (in us) */
141#define TRF7970A_GUARD_TIME_NFCA 5000
142#define TRF7970A_GUARD_TIME_NFCB 5000
143#define TRF7970A_GUARD_TIME_NFCF 20000
144#define TRF7970A_GUARD_TIME_15693 1000
145
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146/* Quirks */
147/* Erratum: When reading IRQ Status register on trf7970a, we must issue a
148 * read continuous command for IRQ Status and Collision Position registers.
149 */
772079eb 150#define TRF7970A_QUIRK_IRQ_STATUS_READ BIT(0)
95064bd9 151#define TRF7970A_QUIRK_EN2_MUST_STAY_LOW BIT(1)
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152
153/* Direct commands */
154#define TRF7970A_CMD_IDLE 0x00
155#define TRF7970A_CMD_SOFT_INIT 0x03
156#define TRF7970A_CMD_RF_COLLISION 0x04
157#define TRF7970A_CMD_RF_COLLISION_RESPONSE_N 0x05
158#define TRF7970A_CMD_RF_COLLISION_RESPONSE_0 0x06
159#define TRF7970A_CMD_FIFO_RESET 0x0f
160#define TRF7970A_CMD_TRANSMIT_NO_CRC 0x10
161#define TRF7970A_CMD_TRANSMIT 0x11
162#define TRF7970A_CMD_DELAY_TRANSMIT_NO_CRC 0x12
163#define TRF7970A_CMD_DELAY_TRANSMIT 0x13
164#define TRF7970A_CMD_EOF 0x14
165#define TRF7970A_CMD_CLOSE_SLOT 0x15
166#define TRF7970A_CMD_BLOCK_RX 0x16
167#define TRF7970A_CMD_ENABLE_RX 0x17
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168#define TRF7970A_CMD_TEST_INT_RF 0x18
169#define TRF7970A_CMD_TEST_EXT_RF 0x19
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170#define TRF7970A_CMD_RX_GAIN_ADJUST 0x1a
171
172/* Bits determining whether its a direct command or register R/W,
173 * whether to use a continuous SPI transaction or not, and the actual
174 * direct cmd opcode or regster address.
175 */
176#define TRF7970A_CMD_BIT_CTRL BIT(7)
177#define TRF7970A_CMD_BIT_RW BIT(6)
178#define TRF7970A_CMD_BIT_CONTINUOUS BIT(5)
179#define TRF7970A_CMD_BIT_OPCODE(opcode) ((opcode) & 0x1f)
180
181/* Registers addresses */
182#define TRF7970A_CHIP_STATUS_CTRL 0x00
183#define TRF7970A_ISO_CTRL 0x01
184#define TRF7970A_ISO14443B_TX_OPTIONS 0x02
185#define TRF7970A_ISO14443A_HIGH_BITRATE_OPTIONS 0x03
186#define TRF7970A_TX_TIMER_SETTING_H_BYTE 0x04
187#define TRF7970A_TX_TIMER_SETTING_L_BYTE 0x05
188#define TRF7970A_TX_PULSE_LENGTH_CTRL 0x06
189#define TRF7970A_RX_NO_RESPONSE_WAIT 0x07
190#define TRF7970A_RX_WAIT_TIME 0x08
191#define TRF7970A_MODULATOR_SYS_CLK_CTRL 0x09
192#define TRF7970A_RX_SPECIAL_SETTINGS 0x0a
193#define TRF7970A_REG_IO_CTRL 0x0b
194#define TRF7970A_IRQ_STATUS 0x0c
195#define TRF7970A_COLLISION_IRQ_MASK 0x0d
196#define TRF7970A_COLLISION_POSITION 0x0e
197#define TRF7970A_RSSI_OSC_STATUS 0x0f
198#define TRF7970A_SPECIAL_FCN_REG1 0x10
199#define TRF7970A_SPECIAL_FCN_REG2 0x11
200#define TRF7970A_RAM1 0x12
201#define TRF7970A_RAM2 0x13
202#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS 0x14
203#define TRF7970A_NFC_LOW_FIELD_LEVEL 0x16
204#define TRF7970A_NFCID1 0x17
205#define TRF7970A_NFC_TARGET_LEVEL 0x18
206#define TRF79070A_NFC_TARGET_PROTOCOL 0x19
207#define TRF7970A_TEST_REGISTER1 0x1a
208#define TRF7970A_TEST_REGISTER2 0x1b
209#define TRF7970A_FIFO_STATUS 0x1c
210#define TRF7970A_TX_LENGTH_BYTE1 0x1d
211#define TRF7970A_TX_LENGTH_BYTE2 0x1e
212#define TRF7970A_FIFO_IO_REGISTER 0x1f
213
214/* Chip Status Control Register Bits */
215#define TRF7970A_CHIP_STATUS_VRS5_3 BIT(0)
216#define TRF7970A_CHIP_STATUS_REC_ON BIT(1)
217#define TRF7970A_CHIP_STATUS_AGC_ON BIT(2)
218#define TRF7970A_CHIP_STATUS_PM_ON BIT(3)
219#define TRF7970A_CHIP_STATUS_RF_PWR BIT(4)
220#define TRF7970A_CHIP_STATUS_RF_ON BIT(5)
221#define TRF7970A_CHIP_STATUS_DIRECT BIT(6)
222#define TRF7970A_CHIP_STATUS_STBY BIT(7)
223
224/* ISO Control Register Bits */
225#define TRF7970A_ISO_CTRL_15693_SGL_1OF4_662 0x00
226#define TRF7970A_ISO_CTRL_15693_SGL_1OF256_662 0x01
227#define TRF7970A_ISO_CTRL_15693_SGL_1OF4_2648 0x02
228#define TRF7970A_ISO_CTRL_15693_SGL_1OF256_2648 0x03
229#define TRF7970A_ISO_CTRL_15693_DBL_1OF4_667a 0x04
230#define TRF7970A_ISO_CTRL_15693_DBL_1OF256_667 0x05
231#define TRF7970A_ISO_CTRL_15693_DBL_1OF4_2669 0x06
232#define TRF7970A_ISO_CTRL_15693_DBL_1OF256_2669 0x07
233#define TRF7970A_ISO_CTRL_14443A_106 0x08
234#define TRF7970A_ISO_CTRL_14443A_212 0x09
235#define TRF7970A_ISO_CTRL_14443A_424 0x0a
236#define TRF7970A_ISO_CTRL_14443A_848 0x0b
237#define TRF7970A_ISO_CTRL_14443B_106 0x0c
238#define TRF7970A_ISO_CTRL_14443B_212 0x0d
239#define TRF7970A_ISO_CTRL_14443B_424 0x0e
240#define TRF7970A_ISO_CTRL_14443B_848 0x0f
241#define TRF7970A_ISO_CTRL_FELICA_212 0x1a
242#define TRF7970A_ISO_CTRL_FELICA_424 0x1b
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243#define TRF7970A_ISO_CTRL_NFC_NFCA_106 0x01
244#define TRF7970A_ISO_CTRL_NFC_NFCF_212 0x02
245#define TRF7970A_ISO_CTRL_NFC_NFCF_424 0x03
246#define TRF7970A_ISO_CTRL_NFC_CE_14443A 0x00
247#define TRF7970A_ISO_CTRL_NFC_CE_14443B 0x01
248#define TRF7970A_ISO_CTRL_NFC_CE BIT(2)
249#define TRF7970A_ISO_CTRL_NFC_ACTIVE BIT(3)
250#define TRF7970A_ISO_CTRL_NFC_INITIATOR BIT(4)
251#define TRF7970A_ISO_CTRL_NFC_NFC_CE_MODE BIT(5)
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252#define TRF7970A_ISO_CTRL_RFID BIT(5)
253#define TRF7970A_ISO_CTRL_DIR_MODE BIT(6)
254#define TRF7970A_ISO_CTRL_RX_CRC_N BIT(7) /* true == No CRC */
255
256#define TRF7970A_ISO_CTRL_RFID_SPEED_MASK 0x1f
257
258/* Modulator and SYS_CLK Control Register Bits */
259#define TRF7970A_MODULATOR_DEPTH(n) ((n) & 0x7)
260#define TRF7970A_MODULATOR_DEPTH_ASK10 (TRF7970A_MODULATOR_DEPTH(0))
261#define TRF7970A_MODULATOR_DEPTH_OOK (TRF7970A_MODULATOR_DEPTH(1))
262#define TRF7970A_MODULATOR_DEPTH_ASK7 (TRF7970A_MODULATOR_DEPTH(2))
263#define TRF7970A_MODULATOR_DEPTH_ASK8_5 (TRF7970A_MODULATOR_DEPTH(3))
264#define TRF7970A_MODULATOR_DEPTH_ASK13 (TRF7970A_MODULATOR_DEPTH(4))
265#define TRF7970A_MODULATOR_DEPTH_ASK16 (TRF7970A_MODULATOR_DEPTH(5))
266#define TRF7970A_MODULATOR_DEPTH_ASK22 (TRF7970A_MODULATOR_DEPTH(6))
267#define TRF7970A_MODULATOR_DEPTH_ASK30 (TRF7970A_MODULATOR_DEPTH(7))
268#define TRF7970A_MODULATOR_EN_ANA BIT(3)
269#define TRF7970A_MODULATOR_CLK(n) (((n) & 0x3) << 4)
270#define TRF7970A_MODULATOR_CLK_DISABLED (TRF7970A_MODULATOR_CLK(0))
271#define TRF7970A_MODULATOR_CLK_3_6 (TRF7970A_MODULATOR_CLK(1))
272#define TRF7970A_MODULATOR_CLK_6_13 (TRF7970A_MODULATOR_CLK(2))
273#define TRF7970A_MODULATOR_CLK_13_27 (TRF7970A_MODULATOR_CLK(3))
274#define TRF7970A_MODULATOR_EN_OOK BIT(6)
275#define TRF7970A_MODULATOR_27MHZ BIT(7)
276
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277#define TRF7970A_RX_SPECIAL_SETTINGS_NO_LIM BIT(0)
278#define TRF7970A_RX_SPECIAL_SETTINGS_AGCR BIT(1)
279#define TRF7970A_RX_SPECIAL_SETTINGS_GD_0DB (0x0 << 2)
280#define TRF7970A_RX_SPECIAL_SETTINGS_GD_5DB (0x1 << 2)
281#define TRF7970A_RX_SPECIAL_SETTINGS_GD_10DB (0x2 << 2)
282#define TRF7970A_RX_SPECIAL_SETTINGS_GD_15DB (0x3 << 2)
283#define TRF7970A_RX_SPECIAL_SETTINGS_HBT BIT(4)
284#define TRF7970A_RX_SPECIAL_SETTINGS_M848 BIT(5)
285#define TRF7970A_RX_SPECIAL_SETTINGS_C424 BIT(6)
286#define TRF7970A_RX_SPECIAL_SETTINGS_C212 BIT(7)
287
288#define TRF7970A_REG_IO_CTRL_VRS(v) ((v) & 0x07)
289#define TRF7970A_REG_IO_CTRL_IO_LOW BIT(5)
290#define TRF7970A_REG_IO_CTRL_EN_EXT_PA BIT(6)
291#define TRF7970A_REG_IO_CTRL_AUTO_REG BIT(7)
292
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293/* IRQ Status Register Bits */
294#define TRF7970A_IRQ_STATUS_NORESP BIT(0) /* ISO15693 only */
13b4272a 295#define TRF7970A_IRQ_STATUS_NFC_COL_ERROR BIT(0)
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296#define TRF7970A_IRQ_STATUS_COL BIT(1)
297#define TRF7970A_IRQ_STATUS_FRAMING_EOF_ERROR BIT(2)
13b4272a 298#define TRF7970A_IRQ_STATUS_NFC_RF BIT(2)
165063f1 299#define TRF7970A_IRQ_STATUS_PARITY_ERROR BIT(3)
13b4272a 300#define TRF7970A_IRQ_STATUS_NFC_SDD BIT(3)
165063f1 301#define TRF7970A_IRQ_STATUS_CRC_ERROR BIT(4)
13b4272a 302#define TRF7970A_IRQ_STATUS_NFC_PROTO_ERROR BIT(4)
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303#define TRF7970A_IRQ_STATUS_FIFO BIT(5)
304#define TRF7970A_IRQ_STATUS_SRX BIT(6)
305#define TRF7970A_IRQ_STATUS_TX BIT(7)
306
307#define TRF7970A_IRQ_STATUS_ERROR \
308 (TRF7970A_IRQ_STATUS_COL | \
309 TRF7970A_IRQ_STATUS_FRAMING_EOF_ERROR | \
310 TRF7970A_IRQ_STATUS_PARITY_ERROR | \
311 TRF7970A_IRQ_STATUS_CRC_ERROR)
312
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313#define TRF7970A_RSSI_OSC_STATUS_RSSI_MASK (BIT(2) | BIT(1) | BIT(0))
314#define TRF7970A_RSSI_OSC_STATUS_RSSI_X_MASK (BIT(5) | BIT(4) | BIT(3))
315#define TRF7970A_RSSI_OSC_STATUS_RSSI_OSC_OK BIT(6)
316
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317#define TRF7970A_SPECIAL_FCN_REG1_COL_7_6 BIT(0)
318#define TRF7970A_SPECIAL_FCN_REG1_14_ANTICOLL BIT(1)
319#define TRF7970A_SPECIAL_FCN_REG1_4_BIT_RX BIT(2)
320#define TRF7970A_SPECIAL_FCN_REG1_SP_DIR_MODE BIT(3)
321#define TRF7970A_SPECIAL_FCN_REG1_NEXT_SLOT_37US BIT(4)
322#define TRF7970A_SPECIAL_FCN_REG1_PAR43 BIT(5)
323
324#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLH_124 (0x0 << 2)
325#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLH_120 (0x1 << 2)
326#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLH_112 (0x2 << 2)
327#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLH_96 (0x3 << 2)
328#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLL_4 0x0
329#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLL_8 0x1
330#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLL_16 0x2
331#define TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLL_32 0x3
332
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333#define TRF7970A_NFC_LOW_FIELD_LEVEL_RFDET(v) ((v) & 0x07)
334#define TRF7970A_NFC_LOW_FIELD_LEVEL_CLEX_DIS BIT(7)
335
336#define TRF7970A_NFC_TARGET_LEVEL_RFDET(v) ((v) & 0x07)
337#define TRF7970A_NFC_TARGET_LEVEL_HI_RF BIT(3)
338#define TRF7970A_NFC_TARGET_LEVEL_SDD_EN BIT(3)
339#define TRF7970A_NFC_TARGET_LEVEL_LD_S_4BYTES (0x0 << 6)
340#define TRF7970A_NFC_TARGET_LEVEL_LD_S_7BYTES (0x1 << 6)
341#define TRF7970A_NFC_TARGET_LEVEL_LD_S_10BYTES (0x2 << 6)
342
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343#define TRF7970A_FIFO_STATUS_OVERFLOW BIT(7)
344
345/* NFC (ISO/IEC 14443A) Type 2 Tag commands */
346#define NFC_T2T_CMD_READ 0x30
347
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348/* ISO 15693 commands codes */
349#define ISO15693_CMD_INVENTORY 0x01
350#define ISO15693_CMD_READ_SINGLE_BLOCK 0x20
351#define ISO15693_CMD_WRITE_SINGLE_BLOCK 0x21
352#define ISO15693_CMD_LOCK_BLOCK 0x22
353#define ISO15693_CMD_READ_MULTIPLE_BLOCK 0x23
354#define ISO15693_CMD_WRITE_MULTIPLE_BLOCK 0x24
355#define ISO15693_CMD_SELECT 0x25
356#define ISO15693_CMD_RESET_TO_READY 0x26
357#define ISO15693_CMD_WRITE_AFI 0x27
358#define ISO15693_CMD_LOCK_AFI 0x28
359#define ISO15693_CMD_WRITE_DSFID 0x29
360#define ISO15693_CMD_LOCK_DSFID 0x2a
361#define ISO15693_CMD_GET_SYSTEM_INFO 0x2b
362#define ISO15693_CMD_GET_MULTIPLE_BLOCK_SECURITY_STATUS 0x2c
363
364/* ISO 15693 request and response flags */
365#define ISO15693_REQ_FLAG_SUB_CARRIER BIT(0)
366#define ISO15693_REQ_FLAG_DATA_RATE BIT(1)
367#define ISO15693_REQ_FLAG_INVENTORY BIT(2)
368#define ISO15693_REQ_FLAG_PROTOCOL_EXT BIT(3)
369#define ISO15693_REQ_FLAG_SELECT BIT(4)
370#define ISO15693_REQ_FLAG_AFI BIT(4)
371#define ISO15693_REQ_FLAG_ADDRESS BIT(5)
372#define ISO15693_REQ_FLAG_NB_SLOTS BIT(5)
373#define ISO15693_REQ_FLAG_OPTION BIT(6)
374
375#define ISO15693_REQ_FLAG_SPEED_MASK \
376 (ISO15693_REQ_FLAG_SUB_CARRIER | ISO15693_REQ_FLAG_DATA_RATE)
377
165063f1 378enum trf7970a_state {
ceccd6aa 379 TRF7970A_ST_PWR_OFF,
b5e17d9b 380 TRF7970A_ST_RF_OFF,
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381 TRF7970A_ST_IDLE,
382 TRF7970A_ST_IDLE_RX_BLOCKED,
383 TRF7970A_ST_WAIT_FOR_TX_FIFO,
384 TRF7970A_ST_WAIT_FOR_RX_DATA,
385 TRF7970A_ST_WAIT_FOR_RX_DATA_CONT,
9d9304b3 386 TRF7970A_ST_WAIT_TO_ISSUE_EOF,
13b4272a 387 TRF7970A_ST_LISTENING,
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388 TRF7970A_ST_MAX
389};
390
391struct trf7970a {
392 enum trf7970a_state state;
393 struct device *dev;
394 struct spi_device *spi;
395 struct regulator *regulator;
396 struct nfc_digital_dev *ddev;
397 u32 quirks;
13b4272a 398 bool is_initiator;
165063f1
MG
399 bool aborting;
400 struct sk_buff *tx_skb;
401 struct sk_buff *rx_skb;
402 nfc_digital_cmd_complete_t cb;
403 void *cb_arg;
ebcc5a0d 404 u8 chip_status_ctrl;
165063f1 405 u8 iso_ctrl;
49d19cc7 406 u8 iso_ctrl_tech;
12e9ade3 407 u8 modulator_sys_clk_ctrl;
165063f1 408 u8 special_fcn_reg1;
4e64eff8 409 unsigned int guard_time;
165063f1
MG
410 int technology;
411 int framing;
412 u8 tx_cmd;
9d9304b3 413 bool issue_eof;
165063f1
MG
414 int en2_gpio;
415 int en_gpio;
416 struct mutex lock;
417 unsigned int timeout;
418 bool ignore_timeout;
419 struct delayed_work timeout_work;
420};
421
422
423static int trf7970a_cmd(struct trf7970a *trf, u8 opcode)
424{
425 u8 cmd = TRF7970A_CMD_BIT_CTRL | TRF7970A_CMD_BIT_OPCODE(opcode);
426 int ret;
427
428 dev_dbg(trf->dev, "cmd: 0x%x\n", cmd);
429
430 ret = spi_write(trf->spi, &cmd, 1);
431 if (ret)
432 dev_err(trf->dev, "%s - cmd: 0x%x, ret: %d\n", __func__, cmd,
433 ret);
434 return ret;
435}
436
437static int trf7970a_read(struct trf7970a *trf, u8 reg, u8 *val)
438{
439 u8 addr = TRF7970A_CMD_BIT_RW | reg;
440 int ret;
441
442 ret = spi_write_then_read(trf->spi, &addr, 1, val, 1);
443 if (ret)
444 dev_err(trf->dev, "%s - addr: 0x%x, ret: %d\n", __func__, addr,
445 ret);
446
447 dev_dbg(trf->dev, "read(0x%x): 0x%x\n", addr, *val);
448
449 return ret;
450}
451
3e7f3356 452static int trf7970a_read_cont(struct trf7970a *trf, u8 reg, u8 *buf, size_t len)
165063f1
MG
453{
454 u8 addr = reg | TRF7970A_CMD_BIT_RW | TRF7970A_CMD_BIT_CONTINUOUS;
3e7f3356
MG
455 struct spi_transfer t[2];
456 struct spi_message m;
165063f1
MG
457 int ret;
458
459 dev_dbg(trf->dev, "read_cont(0x%x, %zd)\n", addr, len);
460
3e7f3356
MG
461 spi_message_init(&m);
462
463 memset(&t, 0, sizeof(t));
464
465 t[0].tx_buf = &addr;
466 t[0].len = sizeof(addr);
467 spi_message_add_tail(&t[0], &m);
468
469 t[1].rx_buf = buf;
470 t[1].len = len;
471 spi_message_add_tail(&t[1], &m);
472
473 ret = spi_sync(trf->spi, &m);
165063f1
MG
474 if (ret)
475 dev_err(trf->dev, "%s - addr: 0x%x, ret: %d\n", __func__, addr,
476 ret);
477 return ret;
478}
479
480static int trf7970a_write(struct trf7970a *trf, u8 reg, u8 val)
481{
482 u8 buf[2] = { reg, val };
483 int ret;
484
485 dev_dbg(trf->dev, "write(0x%x): 0x%x\n", reg, val);
486
487 ret = spi_write(trf->spi, buf, 2);
488 if (ret)
489 dev_err(trf->dev, "%s - write: 0x%x 0x%x, ret: %d\n", __func__,
490 buf[0], buf[1], ret);
491
492 return ret;
493}
494
495static int trf7970a_read_irqstatus(struct trf7970a *trf, u8 *status)
496{
497 int ret;
498 u8 buf[2];
499 u8 addr;
500
501 addr = TRF7970A_IRQ_STATUS | TRF7970A_CMD_BIT_RW;
502
772079eb 503 if (trf->quirks & TRF7970A_QUIRK_IRQ_STATUS_READ) {
165063f1
MG
504 addr |= TRF7970A_CMD_BIT_CONTINUOUS;
505 ret = spi_write_then_read(trf->spi, &addr, 1, buf, 2);
506 } else {
507 ret = spi_write_then_read(trf->spi, &addr, 1, buf, 1);
508 }
509
510 if (ret)
511 dev_err(trf->dev, "%s - irqstatus: Status read failed: %d\n",
512 __func__, ret);
513 else
514 *status = buf[0];
515
516 return ret;
517}
518
519static void trf7970a_send_upstream(struct trf7970a *trf)
520{
165063f1
MG
521 dev_kfree_skb_any(trf->tx_skb);
522 trf->tx_skb = NULL;
523
524 if (trf->rx_skb && !IS_ERR(trf->rx_skb) && !trf->aborting)
525 print_hex_dump_debug("trf7970a rx data: ", DUMP_PREFIX_NONE,
526 16, 1, trf->rx_skb->data, trf->rx_skb->len,
527 false);
528
165063f1
MG
529 trf->state = TRF7970A_ST_IDLE;
530
531 if (trf->aborting) {
532 dev_dbg(trf->dev, "Abort process complete\n");
533
534 if (!IS_ERR(trf->rx_skb)) {
535 kfree_skb(trf->rx_skb);
536 trf->rx_skb = ERR_PTR(-ECANCELED);
537 }
538
539 trf->aborting = false;
540 }
541
542 trf->cb(trf->ddev, trf->cb_arg, trf->rx_skb);
543
544 trf->rx_skb = NULL;
545}
546
547static void trf7970a_send_err_upstream(struct trf7970a *trf, int errno)
548{
549 dev_dbg(trf->dev, "Error - state: %d, errno: %d\n", trf->state, errno);
550
6fb9edcb
MG
551 cancel_delayed_work(&trf->timeout_work);
552
165063f1
MG
553 kfree_skb(trf->rx_skb);
554 trf->rx_skb = ERR_PTR(errno);
555
556 trf7970a_send_upstream(trf);
557}
558
559static int trf7970a_transmit(struct trf7970a *trf, struct sk_buff *skb,
7a1e5552 560 unsigned int len, u8 *prefix, unsigned int prefix_len)
165063f1 561{
7a1e5552
MG
562 struct spi_transfer t[2];
563 struct spi_message m;
165063f1
MG
564 unsigned int timeout;
565 int ret;
566
567 print_hex_dump_debug("trf7970a tx data: ", DUMP_PREFIX_NONE,
568 16, 1, skb->data, len, false);
569
7a1e5552
MG
570 spi_message_init(&m);
571
572 memset(&t, 0, sizeof(t));
573
574 t[0].tx_buf = prefix;
575 t[0].len = prefix_len;
576 spi_message_add_tail(&t[0], &m);
577
578 t[1].tx_buf = skb->data;
579 t[1].len = len;
580 spi_message_add_tail(&t[1], &m);
581
582 ret = spi_sync(trf->spi, &m);
165063f1
MG
583 if (ret) {
584 dev_err(trf->dev, "%s - Can't send tx data: %d\n", __func__,
585 ret);
586 return ret;
587 }
588
589 skb_pull(skb, len);
590
591 if (skb->len > 0) {
592 trf->state = TRF7970A_ST_WAIT_FOR_TX_FIFO;
593 timeout = TRF7970A_WAIT_FOR_FIFO_DRAIN_TIMEOUT;
594 } else {
9d9304b3
MG
595 if (trf->issue_eof) {
596 trf->state = TRF7970A_ST_WAIT_TO_ISSUE_EOF;
597 timeout = TRF7970A_WAIT_TO_ISSUE_ISO15693_EOF;
598 } else {
599 trf->state = TRF7970A_ST_WAIT_FOR_RX_DATA;
1961843c
MG
600
601 if (!trf->timeout)
602 timeout = TRF7970A_WAIT_FOR_TX_IRQ;
603 else
604 timeout = trf->timeout;
9d9304b3 605 }
165063f1
MG
606 }
607
608 dev_dbg(trf->dev, "Setting timeout for %d ms, state: %d\n", timeout,
609 trf->state);
610
611 schedule_delayed_work(&trf->timeout_work, msecs_to_jiffies(timeout));
612
613 return 0;
614}
615
616static void trf7970a_fill_fifo(struct trf7970a *trf)
617{
618 struct sk_buff *skb = trf->tx_skb;
619 unsigned int len;
620 int ret;
621 u8 fifo_bytes;
7a1e5552 622 u8 prefix;
165063f1
MG
623
624 ret = trf7970a_read(trf, TRF7970A_FIFO_STATUS, &fifo_bytes);
625 if (ret) {
626 trf7970a_send_err_upstream(trf, ret);
627 return;
628 }
629
630 dev_dbg(trf->dev, "Filling FIFO - fifo_bytes: 0x%x\n", fifo_bytes);
631
4542e834 632 fifo_bytes &= ~TRF7970A_FIFO_STATUS_OVERFLOW;
165063f1
MG
633
634 /* Calculate how much more data can be written to the fifo */
635 len = TRF7970A_FIFO_SIZE - fifo_bytes;
0e840ed5
MG
636 if (!len) {
637 schedule_delayed_work(&trf->timeout_work,
638 msecs_to_jiffies(TRF7970A_WAIT_FOR_FIFO_DRAIN_TIMEOUT));
639 return;
640 }
641
165063f1
MG
642 len = min(skb->len, len);
643
7a1e5552
MG
644 prefix = TRF7970A_CMD_BIT_CONTINUOUS | TRF7970A_FIFO_IO_REGISTER;
645
646 ret = trf7970a_transmit(trf, skb, len, &prefix, sizeof(prefix));
165063f1
MG
647 if (ret)
648 trf7970a_send_err_upstream(trf, ret);
649}
650
651static void trf7970a_drain_fifo(struct trf7970a *trf, u8 status)
652{
653 struct sk_buff *skb = trf->rx_skb;
654 int ret;
655 u8 fifo_bytes;
656
657 if (status & TRF7970A_IRQ_STATUS_ERROR) {
658 trf7970a_send_err_upstream(trf, -EIO);
659 return;
660 }
661
662 ret = trf7970a_read(trf, TRF7970A_FIFO_STATUS, &fifo_bytes);
663 if (ret) {
664 trf7970a_send_err_upstream(trf, ret);
665 return;
666 }
667
668 dev_dbg(trf->dev, "Draining FIFO - fifo_bytes: 0x%x\n", fifo_bytes);
669
4542e834
MG
670 fifo_bytes &= ~TRF7970A_FIFO_STATUS_OVERFLOW;
671
165063f1
MG
672 if (!fifo_bytes)
673 goto no_rx_data;
674
165063f1
MG
675 if (fifo_bytes > skb_tailroom(skb)) {
676 skb = skb_copy_expand(skb, skb_headroom(skb),
677 max_t(int, fifo_bytes,
678 TRF7970A_RX_SKB_ALLOC_SIZE),
679 GFP_KERNEL);
680 if (!skb) {
681 trf7970a_send_err_upstream(trf, -ENOMEM);
682 return;
683 }
684
685 kfree_skb(trf->rx_skb);
686 trf->rx_skb = skb;
687 }
688
689 ret = trf7970a_read_cont(trf, TRF7970A_FIFO_IO_REGISTER,
690 skb_put(skb, fifo_bytes), fifo_bytes);
691 if (ret) {
692 trf7970a_send_err_upstream(trf, ret);
693 return;
694 }
695
696 /* If received Type 2 ACK/NACK, shift right 4 bits and pass up */
697 if ((trf->framing == NFC_DIGITAL_FRAMING_NFCA_T2T) && (skb->len == 1) &&
698 (trf->special_fcn_reg1 ==
699 TRF7970A_SPECIAL_FCN_REG1_4_BIT_RX)) {
700 skb->data[0] >>= 4;
701 status = TRF7970A_IRQ_STATUS_SRX;
702 } else {
703 trf->state = TRF7970A_ST_WAIT_FOR_RX_DATA_CONT;
5d8f7594
MG
704
705 ret = trf7970a_read(trf, TRF7970A_FIFO_STATUS, &fifo_bytes);
706 if (ret) {
707 trf7970a_send_err_upstream(trf, ret);
708 return;
709 }
710
711 fifo_bytes &= ~TRF7970A_FIFO_STATUS_OVERFLOW;
712
713 /* If there are bytes in the FIFO, set status to '0' so
714 * the if stmt below doesn't fire and the driver will wait
715 * for the trf7970a to generate another RX interrupt.
716 */
717 if (fifo_bytes)
718 status = 0;
165063f1
MG
719 }
720
721no_rx_data:
722 if (status == TRF7970A_IRQ_STATUS_SRX) { /* Receive complete */
723 trf7970a_send_upstream(trf);
724 return;
725 }
726
727 dev_dbg(trf->dev, "Setting timeout for %d ms\n",
728 TRF7970A_WAIT_FOR_RX_DATA_TIMEOUT);
729
730 schedule_delayed_work(&trf->timeout_work,
731 msecs_to_jiffies(TRF7970A_WAIT_FOR_RX_DATA_TIMEOUT));
732}
733
734static irqreturn_t trf7970a_irq(int irq, void *dev_id)
735{
736 struct trf7970a *trf = dev_id;
737 int ret;
13b4272a 738 u8 status, fifo_bytes, iso_ctrl;
165063f1
MG
739
740 mutex_lock(&trf->lock);
741
b5e17d9b 742 if (trf->state == TRF7970A_ST_RF_OFF) {
165063f1
MG
743 mutex_unlock(&trf->lock);
744 return IRQ_NONE;
745 }
746
747 ret = trf7970a_read_irqstatus(trf, &status);
748 if (ret) {
749 mutex_unlock(&trf->lock);
750 return IRQ_NONE;
751 }
752
753 dev_dbg(trf->dev, "IRQ - state: %d, status: 0x%x\n", trf->state,
754 status);
755
756 if (!status) {
757 mutex_unlock(&trf->lock);
758 return IRQ_NONE;
759 }
760
761 switch (trf->state) {
762 case TRF7970A_ST_IDLE:
763 case TRF7970A_ST_IDLE_RX_BLOCKED:
13b4272a
MG
764 /* If initiator and getting interrupts caused by RF noise,
765 * turn off the receiver to avoid unnecessary interrupts.
766 * It will be turned back on in trf7970a_send_cmd() when
767 * the next command is issued.
165063f1 768 */
13b4272a 769 if (trf->is_initiator && (status & TRF7970A_IRQ_STATUS_ERROR)) {
165063f1
MG
770 trf7970a_cmd(trf, TRF7970A_CMD_BLOCK_RX);
771 trf->state = TRF7970A_ST_IDLE_RX_BLOCKED;
772 }
773
774 trf7970a_cmd(trf, TRF7970A_CMD_FIFO_RESET);
775 break;
776 case TRF7970A_ST_WAIT_FOR_TX_FIFO:
777 if (status & TRF7970A_IRQ_STATUS_TX) {
778 trf->ignore_timeout =
779 !cancel_delayed_work(&trf->timeout_work);
780 trf7970a_fill_fifo(trf);
781 } else {
782 trf7970a_send_err_upstream(trf, -EIO);
783 }
784 break;
785 case TRF7970A_ST_WAIT_FOR_RX_DATA:
786 case TRF7970A_ST_WAIT_FOR_RX_DATA_CONT:
787 if (status & TRF7970A_IRQ_STATUS_SRX) {
788 trf->ignore_timeout =
789 !cancel_delayed_work(&trf->timeout_work);
790 trf7970a_drain_fifo(trf, status);
bece3c54
MG
791 } else if (status & TRF7970A_IRQ_STATUS_FIFO) {
792 ret = trf7970a_read(trf, TRF7970A_FIFO_STATUS,
793 &fifo_bytes);
794
795 fifo_bytes &= ~TRF7970A_FIFO_STATUS_OVERFLOW;
796
797 if (ret)
798 trf7970a_send_err_upstream(trf, ret);
799 else if (!fifo_bytes)
800 trf7970a_cmd(trf, TRF7970A_CMD_FIFO_RESET);
13b4272a
MG
801 } else if ((status == TRF7970A_IRQ_STATUS_TX) ||
802 (!trf->is_initiator &&
803 (status == (TRF7970A_IRQ_STATUS_TX |
804 TRF7970A_IRQ_STATUS_NFC_RF)))) {
4dd836e4 805 trf7970a_cmd(trf, TRF7970A_CMD_FIFO_RESET);
1961843c
MG
806
807 if (!trf->timeout) {
808 trf->ignore_timeout = !cancel_delayed_work(
809 &trf->timeout_work);
810 trf->rx_skb = ERR_PTR(0);
811 trf7970a_send_upstream(trf);
812 break;
813 }
13b4272a
MG
814
815 if (trf->is_initiator)
816 break;
817
818 iso_ctrl = trf->iso_ctrl;
819
820 switch (trf->framing) {
821 case NFC_DIGITAL_FRAMING_NFCA_STANDARD:
822 trf->tx_cmd = TRF7970A_CMD_TRANSMIT_NO_CRC;
823 iso_ctrl |= TRF7970A_ISO_CTRL_RX_CRC_N;
824 trf->iso_ctrl = 0xff; /* Force ISO_CTRL write */
825 break;
826 case NFC_DIGITAL_FRAMING_NFCA_STANDARD_WITH_CRC_A:
827 trf->tx_cmd = TRF7970A_CMD_TRANSMIT;
828 iso_ctrl &= ~TRF7970A_ISO_CTRL_RX_CRC_N;
829 trf->iso_ctrl = 0xff; /* Force ISO_CTRL write */
830 break;
831 case NFC_DIGITAL_FRAMING_NFCA_ANTICOL_COMPLETE:
832 ret = trf7970a_write(trf,
833 TRF7970A_SPECIAL_FCN_REG1,
834 TRF7970A_SPECIAL_FCN_REG1_14_ANTICOLL);
835 if (ret)
836 return ret;
837
838 trf->special_fcn_reg1 =
839 TRF7970A_SPECIAL_FCN_REG1_14_ANTICOLL;
840 break;
841 default:
842 break;
843 }
844
845 if (iso_ctrl != trf->iso_ctrl) {
846 ret = trf7970a_write(trf, TRF7970A_ISO_CTRL,
847 iso_ctrl);
848 if (ret)
849 return ret;
850
851 trf->iso_ctrl = iso_ctrl;
852 }
4dd836e4 853 } else {
165063f1
MG
854 trf7970a_send_err_upstream(trf, -EIO);
855 }
856 break;
9d9304b3
MG
857 case TRF7970A_ST_WAIT_TO_ISSUE_EOF:
858 if (status != TRF7970A_IRQ_STATUS_TX)
859 trf7970a_send_err_upstream(trf, -EIO);
860 break;
13b4272a
MG
861 case TRF7970A_ST_LISTENING:
862 if (status & TRF7970A_IRQ_STATUS_SRX) {
863 trf->ignore_timeout =
864 !cancel_delayed_work(&trf->timeout_work);
865 trf7970a_drain_fifo(trf, status);
866 } else if (!(status & TRF7970A_IRQ_STATUS_NFC_RF)) {
867 trf7970a_send_err_upstream(trf, -EIO);
868 }
869 break;
165063f1
MG
870 default:
871 dev_err(trf->dev, "%s - Driver in invalid state: %d\n",
872 __func__, trf->state);
873 }
874
875 mutex_unlock(&trf->lock);
876 return IRQ_HANDLED;
877}
878
9d9304b3
MG
879static void trf7970a_issue_eof(struct trf7970a *trf)
880{
881 int ret;
882
883 dev_dbg(trf->dev, "Issuing EOF\n");
884
885 ret = trf7970a_cmd(trf, TRF7970A_CMD_FIFO_RESET);
886 if (ret)
887 trf7970a_send_err_upstream(trf, ret);
888
889 ret = trf7970a_cmd(trf, TRF7970A_CMD_EOF);
890 if (ret)
891 trf7970a_send_err_upstream(trf, ret);
892
893 trf->state = TRF7970A_ST_WAIT_FOR_RX_DATA;
894
895 dev_dbg(trf->dev, "Setting timeout for %d ms, state: %d\n",
896 trf->timeout, trf->state);
897
898 schedule_delayed_work(&trf->timeout_work,
899 msecs_to_jiffies(trf->timeout));
900}
901
165063f1
MG
902static void trf7970a_timeout_work_handler(struct work_struct *work)
903{
904 struct trf7970a *trf = container_of(work, struct trf7970a,
905 timeout_work.work);
906
907 dev_dbg(trf->dev, "Timeout - state: %d, ignore_timeout: %d\n",
908 trf->state, trf->ignore_timeout);
909
910 mutex_lock(&trf->lock);
911
912 if (trf->ignore_timeout)
913 trf->ignore_timeout = false;
914 else if (trf->state == TRF7970A_ST_WAIT_FOR_RX_DATA_CONT)
afa5b5f1 915 trf7970a_drain_fifo(trf, TRF7970A_IRQ_STATUS_SRX);
9d9304b3
MG
916 else if (trf->state == TRF7970A_ST_WAIT_TO_ISSUE_EOF)
917 trf7970a_issue_eof(trf);
165063f1
MG
918 else
919 trf7970a_send_err_upstream(trf, -ETIMEDOUT);
920
921 mutex_unlock(&trf->lock);
922}
923
924static int trf7970a_init(struct trf7970a *trf)
925{
926 int ret;
927
928 dev_dbg(trf->dev, "Initializing device - state: %d\n", trf->state);
929
930 ret = trf7970a_cmd(trf, TRF7970A_CMD_SOFT_INIT);
931 if (ret)
932 goto err_out;
933
934 ret = trf7970a_cmd(trf, TRF7970A_CMD_IDLE);
935 if (ret)
936 goto err_out;
937
4e007f81
MG
938 usleep_range(1000, 2000);
939
7149d6bf
MG
940 trf->chip_status_ctrl &= ~TRF7970A_CHIP_STATUS_RF_ON;
941
6c08df42
MG
942 ret = trf7970a_write(trf, TRF7970A_MODULATOR_SYS_CLK_CTRL, 0);
943 if (ret)
944 goto err_out;
945
946 trf->modulator_sys_clk_ctrl = 0;
947
165063f1
MG
948 ret = trf7970a_write(trf, TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS,
949 TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLH_96 |
950 TRF7970A_ADJUTABLE_FIFO_IRQ_LEVELS_WLL_32);
951 if (ret)
952 goto err_out;
953
954 ret = trf7970a_write(trf, TRF7970A_SPECIAL_FCN_REG1, 0);
955 if (ret)
956 goto err_out;
957
958 trf->special_fcn_reg1 = 0;
959
49d19cc7 960 trf->iso_ctrl = 0xff;
165063f1
MG
961 return 0;
962
963err_out:
964 dev_dbg(trf->dev, "Couldn't init device: %d\n", ret);
965 return ret;
966}
967
968static void trf7970a_switch_rf_off(struct trf7970a *trf)
969{
cfc708db
MG
970 if ((trf->state == TRF7970A_ST_PWR_OFF) ||
971 (trf->state == TRF7970A_ST_RF_OFF))
972 return;
973
165063f1
MG
974 dev_dbg(trf->dev, "Switching rf off\n");
975
a1d2dc5b
MG
976 trf->chip_status_ctrl &= ~TRF7970A_CHIP_STATUS_RF_ON;
977
978 trf7970a_write(trf, TRF7970A_CHIP_STATUS_CTRL, trf->chip_status_ctrl);
979
165063f1 980 trf->aborting = false;
b5e17d9b 981 trf->state = TRF7970A_ST_RF_OFF;
e6403b7c
MG
982
983 pm_runtime_mark_last_busy(trf->dev);
984 pm_runtime_put_autosuspend(trf->dev);
165063f1
MG
985}
986
0a1de842 987static int trf7970a_switch_rf_on(struct trf7970a *trf)
165063f1 988{
a08e5454
MG
989 int ret;
990
165063f1
MG
991 dev_dbg(trf->dev, "Switching rf on\n");
992
e6403b7c 993 pm_runtime_get_sync(trf->dev);
165063f1 994
ceccd6aa
MG
995 if (trf->state != TRF7970A_ST_RF_OFF) { /* Power on, RF off */
996 dev_err(trf->dev, "%s - Incorrect state: %d\n", __func__,
997 trf->state);
998 return -EINVAL;
999 }
1000
a08e5454
MG
1001 ret = trf7970a_init(trf);
1002 if (ret) {
1003 dev_err(trf->dev, "%s - Can't initialize: %d\n", __func__, ret);
0a1de842 1004 return ret;
a08e5454
MG
1005 }
1006
e6403b7c 1007 trf->state = TRF7970A_ST_IDLE;
0a1de842
MG
1008
1009 return 0;
165063f1
MG
1010}
1011
1012static int trf7970a_switch_rf(struct nfc_digital_dev *ddev, bool on)
1013{
1014 struct trf7970a *trf = nfc_digital_get_drvdata(ddev);
0a1de842 1015 int ret = 0;
165063f1
MG
1016
1017 dev_dbg(trf->dev, "Switching RF - state: %d, on: %d\n", trf->state, on);
1018
1019 mutex_lock(&trf->lock);
1020
1021 if (on) {
1022 switch (trf->state) {
ceccd6aa 1023 case TRF7970A_ST_PWR_OFF:
b5e17d9b 1024 case TRF7970A_ST_RF_OFF:
0a1de842 1025 ret = trf7970a_switch_rf_on(trf);
165063f1
MG
1026 break;
1027 case TRF7970A_ST_IDLE:
1028 case TRF7970A_ST_IDLE_RX_BLOCKED:
1029 break;
1030 default:
1031 dev_err(trf->dev, "%s - Invalid request: %d %d\n",
1032 __func__, trf->state, on);
1033 trf7970a_switch_rf_off(trf);
0a1de842 1034 ret = -EINVAL;
165063f1
MG
1035 }
1036 } else {
1037 switch (trf->state) {
ceccd6aa 1038 case TRF7970A_ST_PWR_OFF:
b5e17d9b 1039 case TRF7970A_ST_RF_OFF:
165063f1
MG
1040 break;
1041 default:
1042 dev_err(trf->dev, "%s - Invalid request: %d %d\n",
1043 __func__, trf->state, on);
0a1de842 1044 ret = -EINVAL;
165063f1
MG
1045 /* FALLTHROUGH */
1046 case TRF7970A_ST_IDLE:
1047 case TRF7970A_ST_IDLE_RX_BLOCKED:
13b4272a
MG
1048 case TRF7970A_ST_WAIT_FOR_RX_DATA:
1049 case TRF7970A_ST_WAIT_FOR_RX_DATA_CONT:
165063f1
MG
1050 trf7970a_switch_rf_off(trf);
1051 }
1052 }
1053
1054 mutex_unlock(&trf->lock);
0a1de842 1055 return ret;
165063f1
MG
1056}
1057
307e5caf 1058static int trf7970a_in_config_rf_tech(struct trf7970a *trf, int tech)
165063f1
MG
1059{
1060 int ret = 0;
1061
1062 dev_dbg(trf->dev, "rf technology: %d\n", tech);
1063
1064 switch (tech) {
1065 case NFC_DIGITAL_RF_TECH_106A:
49d19cc7 1066 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_14443A_106;
12e9ade3 1067 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_OOK;
4e64eff8 1068 trf->guard_time = TRF7970A_GUARD_TIME_NFCA;
165063f1 1069 break;
742b1f9f
MG
1070 case NFC_DIGITAL_RF_TECH_106B:
1071 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_14443B_106;
1072 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_ASK10;
4e64eff8 1073 trf->guard_time = TRF7970A_GUARD_TIME_NFCB;
742b1f9f 1074 break;
6857bb96
MG
1075 case NFC_DIGITAL_RF_TECH_212F:
1076 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_FELICA_212;
1077 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_ASK10;
4e64eff8 1078 trf->guard_time = TRF7970A_GUARD_TIME_NFCF;
6857bb96
MG
1079 break;
1080 case NFC_DIGITAL_RF_TECH_424F:
1081 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_FELICA_424;
1082 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_ASK10;
4e64eff8 1083 trf->guard_time = TRF7970A_GUARD_TIME_NFCF;
6857bb96 1084 break;
9d9304b3 1085 case NFC_DIGITAL_RF_TECH_ISO15693:
49d19cc7 1086 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_15693_SGL_1OF4_2648;
12e9ade3 1087 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_OOK;
4e64eff8 1088 trf->guard_time = TRF7970A_GUARD_TIME_15693;
9d9304b3 1089 break;
165063f1
MG
1090 default:
1091 dev_dbg(trf->dev, "Unsupported rf technology: %d\n", tech);
1092 return -EINVAL;
1093 }
1094
1095 trf->technology = tech;
1096
13b4272a
MG
1097 /* If in initiator mode and not changing the RF tech due to a
1098 * PSL sequence (indicated by 'trf->iso_ctrl == 0xff' from
1099 * trf7970a_init()), clear the NFC Target Detection Level register
1100 * due to erratum.
1101 */
1102 if (trf->iso_ctrl == 0xff)
1103 ret = trf7970a_write(trf, TRF7970A_NFC_TARGET_LEVEL, 0);
1104
165063f1
MG
1105 return ret;
1106}
1107
851ee3cb
MG
1108static int trf7970a_is_rf_field(struct trf7970a *trf, bool *is_rf_field)
1109{
1110 int ret;
1111 u8 rssi;
1112
1113 ret = trf7970a_write(trf, TRF7970A_CHIP_STATUS_CTRL,
1114 trf->chip_status_ctrl | TRF7970A_CHIP_STATUS_REC_ON);
1115 if (ret)
1116 return ret;
1117
1118 ret = trf7970a_cmd(trf, TRF7970A_CMD_TEST_EXT_RF);
1119 if (ret)
1120 return ret;
1121
1122 usleep_range(50, 60);
1123
1124 ret = trf7970a_read(trf, TRF7970A_RSSI_OSC_STATUS, &rssi);
1125 if (ret)
1126 return ret;
1127
1128 ret = trf7970a_write(trf, TRF7970A_CHIP_STATUS_CTRL,
1129 trf->chip_status_ctrl);
1130 if (ret)
1131 return ret;
1132
1133 if (rssi & TRF7970A_RSSI_OSC_STATUS_RSSI_MASK)
1134 *is_rf_field = true;
1135 else
1136 *is_rf_field = false;
1137
1138 return 0;
1139}
1140
307e5caf 1141static int trf7970a_in_config_framing(struct trf7970a *trf, int framing)
165063f1 1142{
49d19cc7 1143 u8 iso_ctrl = trf->iso_ctrl_tech;
851ee3cb 1144 bool is_rf_field = false;
49d19cc7
MG
1145 int ret;
1146
165063f1
MG
1147 dev_dbg(trf->dev, "framing: %d\n", framing);
1148
1149 switch (framing) {
1150 case NFC_DIGITAL_FRAMING_NFCA_SHORT:
1151 case NFC_DIGITAL_FRAMING_NFCA_STANDARD:
1152 trf->tx_cmd = TRF7970A_CMD_TRANSMIT_NO_CRC;
49d19cc7 1153 iso_ctrl |= TRF7970A_ISO_CTRL_RX_CRC_N;
165063f1
MG
1154 break;
1155 case NFC_DIGITAL_FRAMING_NFCA_STANDARD_WITH_CRC_A:
80062891 1156 case NFC_DIGITAL_FRAMING_NFCA_T4T:
742b1f9f
MG
1157 case NFC_DIGITAL_FRAMING_NFCB:
1158 case NFC_DIGITAL_FRAMING_NFCB_T4T:
6857bb96
MG
1159 case NFC_DIGITAL_FRAMING_NFCF:
1160 case NFC_DIGITAL_FRAMING_NFCF_T3T:
9d9304b3
MG
1161 case NFC_DIGITAL_FRAMING_ISO15693_INVENTORY:
1162 case NFC_DIGITAL_FRAMING_ISO15693_T5T:
13b4272a
MG
1163 case NFC_DIGITAL_FRAMING_NFCA_NFC_DEP:
1164 case NFC_DIGITAL_FRAMING_NFCF_NFC_DEP:
165063f1 1165 trf->tx_cmd = TRF7970A_CMD_TRANSMIT;
49d19cc7 1166 iso_ctrl &= ~TRF7970A_ISO_CTRL_RX_CRC_N;
165063f1
MG
1167 break;
1168 case NFC_DIGITAL_FRAMING_NFCA_T2T:
1169 trf->tx_cmd = TRF7970A_CMD_TRANSMIT;
49d19cc7 1170 iso_ctrl |= TRF7970A_ISO_CTRL_RX_CRC_N;
165063f1
MG
1171 break;
1172 default:
1173 dev_dbg(trf->dev, "Unsupported Framing: %d\n", framing);
1174 return -EINVAL;
1175 }
1176
1177 trf->framing = framing;
1178
851ee3cb
MG
1179 if (!(trf->chip_status_ctrl & TRF7970A_CHIP_STATUS_RF_ON)) {
1180 ret = trf7970a_is_rf_field(trf, &is_rf_field);
1181 if (ret)
1182 return ret;
1183
1184 if (is_rf_field)
1185 return -EBUSY;
1186 }
1187
49d19cc7
MG
1188 if (iso_ctrl != trf->iso_ctrl) {
1189 ret = trf7970a_write(trf, TRF7970A_ISO_CTRL, iso_ctrl);
1190 if (ret)
1191 return ret;
1192
1193 trf->iso_ctrl = iso_ctrl;
a0822a7e
MG
1194
1195 ret = trf7970a_write(trf, TRF7970A_MODULATOR_SYS_CLK_CTRL,
12e9ade3 1196 trf->modulator_sys_clk_ctrl);
a0822a7e
MG
1197 if (ret)
1198 return ret;
49d19cc7
MG
1199 }
1200
a1d2dc5b
MG
1201 if (!(trf->chip_status_ctrl & TRF7970A_CHIP_STATUS_RF_ON)) {
1202 ret = trf7970a_write(trf, TRF7970A_CHIP_STATUS_CTRL,
1203 trf->chip_status_ctrl |
1204 TRF7970A_CHIP_STATUS_RF_ON);
1205 if (ret)
1206 return ret;
1207
1208 trf->chip_status_ctrl |= TRF7970A_CHIP_STATUS_RF_ON;
1209
4e64eff8 1210 usleep_range(trf->guard_time, trf->guard_time + 1000);
a1d2dc5b
MG
1211 }
1212
49d19cc7 1213 return 0;
165063f1
MG
1214}
1215
1216static int trf7970a_in_configure_hw(struct nfc_digital_dev *ddev, int type,
1217 int param)
1218{
1219 struct trf7970a *trf = nfc_digital_get_drvdata(ddev);
18422e68 1220 int ret;
165063f1
MG
1221
1222 dev_dbg(trf->dev, "Configure hw - type: %d, param: %d\n", type, param);
1223
1224 mutex_lock(&trf->lock);
1225
13b4272a
MG
1226 trf->is_initiator = true;
1227
ceccd6aa
MG
1228 if ((trf->state == TRF7970A_ST_PWR_OFF) ||
1229 (trf->state == TRF7970A_ST_RF_OFF)) {
0a1de842
MG
1230 ret = trf7970a_switch_rf_on(trf);
1231 if (ret)
1232 goto err_unlock;
1233 }
165063f1
MG
1234
1235 switch (type) {
1236 case NFC_DIGITAL_CONFIG_RF_TECH:
307e5caf 1237 ret = trf7970a_in_config_rf_tech(trf, param);
165063f1
MG
1238 break;
1239 case NFC_DIGITAL_CONFIG_FRAMING:
307e5caf 1240 ret = trf7970a_in_config_framing(trf, param);
165063f1
MG
1241 break;
1242 default:
1243 dev_dbg(trf->dev, "Unknown type: %d\n", type);
1244 ret = -EINVAL;
1245 }
1246
0a1de842 1247err_unlock:
165063f1
MG
1248 mutex_unlock(&trf->lock);
1249 return ret;
1250}
1251
9d9304b3
MG
1252static int trf7970a_is_iso15693_write_or_lock(u8 cmd)
1253{
1254 switch (cmd) {
1255 case ISO15693_CMD_WRITE_SINGLE_BLOCK:
1256 case ISO15693_CMD_LOCK_BLOCK:
1257 case ISO15693_CMD_WRITE_MULTIPLE_BLOCK:
1258 case ISO15693_CMD_WRITE_AFI:
1259 case ISO15693_CMD_LOCK_AFI:
1260 case ISO15693_CMD_WRITE_DSFID:
1261 case ISO15693_CMD_LOCK_DSFID:
1262 return 1;
1263 break;
1264 default:
1265 return 0;
1266 }
1267}
1268
165063f1
MG
1269static int trf7970a_per_cmd_config(struct trf7970a *trf, struct sk_buff *skb)
1270{
1271 u8 *req = skb->data;
9d9304b3 1272 u8 special_fcn_reg1, iso_ctrl;
165063f1
MG
1273 int ret;
1274
9d9304b3
MG
1275 trf->issue_eof = false;
1276
165063f1
MG
1277 /* When issuing Type 2 read command, make sure the '4_bit_RX' bit in
1278 * special functions register 1 is cleared; otherwise, its a write or
1279 * sector select command and '4_bit_RX' must be set.
9d9304b3
MG
1280 *
1281 * When issuing an ISO 15693 command, inspect the flags byte to see
1282 * what speed to use. Also, remember if the OPTION flag is set on
1283 * a Type 5 write or lock command so the driver will know that it
1284 * has to send an EOF in order to get a response.
165063f1
MG
1285 */
1286 if ((trf->technology == NFC_DIGITAL_RF_TECH_106A) &&
1287 (trf->framing == NFC_DIGITAL_FRAMING_NFCA_T2T)) {
1288 if (req[0] == NFC_T2T_CMD_READ)
1289 special_fcn_reg1 = 0;
1290 else
1291 special_fcn_reg1 = TRF7970A_SPECIAL_FCN_REG1_4_BIT_RX;
1292
1293 if (special_fcn_reg1 != trf->special_fcn_reg1) {
1294 ret = trf7970a_write(trf, TRF7970A_SPECIAL_FCN_REG1,
1295 special_fcn_reg1);
1296 if (ret)
1297 return ret;
1298
1299 trf->special_fcn_reg1 = special_fcn_reg1;
1300 }
9d9304b3
MG
1301 } else if (trf->technology == NFC_DIGITAL_RF_TECH_ISO15693) {
1302 iso_ctrl = trf->iso_ctrl & ~TRF7970A_ISO_CTRL_RFID_SPEED_MASK;
1303
1304 switch (req[0] & ISO15693_REQ_FLAG_SPEED_MASK) {
1305 case 0x00:
1306 iso_ctrl |= TRF7970A_ISO_CTRL_15693_SGL_1OF4_662;
1307 break;
1308 case ISO15693_REQ_FLAG_SUB_CARRIER:
1309 iso_ctrl |= TRF7970A_ISO_CTRL_15693_DBL_1OF4_667a;
1310 break;
1311 case ISO15693_REQ_FLAG_DATA_RATE:
1312 iso_ctrl |= TRF7970A_ISO_CTRL_15693_SGL_1OF4_2648;
1313 break;
1314 case (ISO15693_REQ_FLAG_SUB_CARRIER |
1315 ISO15693_REQ_FLAG_DATA_RATE):
1316 iso_ctrl |= TRF7970A_ISO_CTRL_15693_DBL_1OF4_2669;
1317 break;
1318 }
1319
1320 if (iso_ctrl != trf->iso_ctrl) {
1321 ret = trf7970a_write(trf, TRF7970A_ISO_CTRL, iso_ctrl);
1322 if (ret)
1323 return ret;
1324
1325 trf->iso_ctrl = iso_ctrl;
1326 }
1327
1328 if ((trf->framing == NFC_DIGITAL_FRAMING_ISO15693_T5T) &&
1329 trf7970a_is_iso15693_write_or_lock(req[1]) &&
1330 (req[0] & ISO15693_REQ_FLAG_OPTION))
1331 trf->issue_eof = true;
165063f1
MG
1332 }
1333
1334 return 0;
1335}
1336
13b4272a 1337static int trf7970a_send_cmd(struct nfc_digital_dev *ddev,
165063f1
MG
1338 struct sk_buff *skb, u16 timeout,
1339 nfc_digital_cmd_complete_t cb, void *arg)
1340{
1341 struct trf7970a *trf = nfc_digital_get_drvdata(ddev);
7a1e5552 1342 u8 prefix[5];
165063f1
MG
1343 unsigned int len;
1344 int ret;
aff0564a 1345 u8 status;
165063f1
MG
1346
1347 dev_dbg(trf->dev, "New request - state: %d, timeout: %d ms, len: %d\n",
1348 trf->state, timeout, skb->len);
1349
1350 if (skb->len > TRF7970A_TX_MAX)
1351 return -EINVAL;
1352
1353 mutex_lock(&trf->lock);
1354
1355 if ((trf->state != TRF7970A_ST_IDLE) &&
1356 (trf->state != TRF7970A_ST_IDLE_RX_BLOCKED)) {
1357 dev_err(trf->dev, "%s - Bogus state: %d\n", __func__,
1358 trf->state);
1359 ret = -EIO;
1360 goto out_err;
1361 }
1362
1363 if (trf->aborting) {
1364 dev_dbg(trf->dev, "Abort process complete\n");
1365 trf->aborting = false;
1366 ret = -ECANCELED;
1367 goto out_err;
1368 }
1369
1961843c
MG
1370 if (timeout) {
1371 trf->rx_skb = nfc_alloc_recv_skb(TRF7970A_RX_SKB_ALLOC_SIZE,
1372 GFP_KERNEL);
1373 if (!trf->rx_skb) {
1374 dev_dbg(trf->dev, "Can't alloc rx_skb\n");
1375 ret = -ENOMEM;
1376 goto out_err;
1377 }
165063f1
MG
1378 }
1379
1380 if (trf->state == TRF7970A_ST_IDLE_RX_BLOCKED) {
1381 ret = trf7970a_cmd(trf, TRF7970A_CMD_ENABLE_RX);
1382 if (ret)
1383 goto out_err;
1384
1385 trf->state = TRF7970A_ST_IDLE;
1386 }
1387
13b4272a
MG
1388 if (trf->is_initiator) {
1389 ret = trf7970a_per_cmd_config(trf, skb);
1390 if (ret)
1391 goto out_err;
1392 }
165063f1
MG
1393
1394 trf->ddev = ddev;
1395 trf->tx_skb = skb;
1396 trf->cb = cb;
1397 trf->cb_arg = arg;
1398 trf->timeout = timeout;
1399 trf->ignore_timeout = false;
1400
1401 len = skb->len;
165063f1
MG
1402
1403 /* TX data must be prefixed with a FIFO reset cmd, a cmd that depends
1404 * on what the current framing is, the address of the TX length byte 1
1405 * register (0x1d), and the 2 byte length of the data to be transmitted.
7a1e5552 1406 * That totals 5 bytes.
165063f1
MG
1407 */
1408 prefix[0] = TRF7970A_CMD_BIT_CTRL |
1409 TRF7970A_CMD_BIT_OPCODE(TRF7970A_CMD_FIFO_RESET);
1410 prefix[1] = TRF7970A_CMD_BIT_CTRL |
1411 TRF7970A_CMD_BIT_OPCODE(trf->tx_cmd);
1412 prefix[2] = TRF7970A_CMD_BIT_CONTINUOUS | TRF7970A_TX_LENGTH_BYTE1;
1413
1414 if (trf->framing == NFC_DIGITAL_FRAMING_NFCA_SHORT) {
1415 prefix[3] = 0x00;
1416 prefix[4] = 0x0f; /* 7 bits */
1417 } else {
1418 prefix[3] = (len & 0xf00) >> 4;
1419 prefix[3] |= ((len & 0xf0) >> 4);
1420 prefix[4] = ((len & 0x0f) << 4);
1421 }
1422
1423 len = min_t(int, skb->len, TRF7970A_FIFO_SIZE);
1424
aff0564a
MG
1425 /* Clear possible spurious interrupt */
1426 ret = trf7970a_read_irqstatus(trf, &status);
1427 if (ret)
1428 goto out_err;
1429
7a1e5552 1430 ret = trf7970a_transmit(trf, skb, len, prefix, sizeof(prefix));
165063f1
MG
1431 if (ret) {
1432 kfree_skb(trf->rx_skb);
1433 trf->rx_skb = NULL;
1434 }
1435
1436out_err:
1437 mutex_unlock(&trf->lock);
1438 return ret;
1439}
1440
13b4272a 1441static int trf7970a_tg_config_rf_tech(struct trf7970a *trf, int tech)
165063f1 1442{
13b4272a
MG
1443 int ret = 0;
1444
1445 dev_dbg(trf->dev, "rf technology: %d\n", tech);
1446
1447 switch (tech) {
1448 case NFC_DIGITAL_RF_TECH_106A:
1449 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_NFC_NFC_CE_MODE |
1450 TRF7970A_ISO_CTRL_NFC_CE |
1451 TRF7970A_ISO_CTRL_NFC_CE_14443A;
1452 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_OOK;
1453 break;
1454 case NFC_DIGITAL_RF_TECH_212F:
1455 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_NFC_NFC_CE_MODE |
1456 TRF7970A_ISO_CTRL_NFC_NFCF_212;
1457 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_ASK10;
1458 break;
1459 case NFC_DIGITAL_RF_TECH_424F:
1460 trf->iso_ctrl_tech = TRF7970A_ISO_CTRL_NFC_NFC_CE_MODE |
1461 TRF7970A_ISO_CTRL_NFC_NFCF_424;
1462 trf->modulator_sys_clk_ctrl = TRF7970A_MODULATOR_DEPTH_ASK10;
1463 break;
1464 default:
1465 dev_dbg(trf->dev, "Unsupported rf technology: %d\n", tech);
1466 return -EINVAL;
1467 }
1468
1469 trf->technology = tech;
165063f1 1470
13b4272a
MG
1471 /* Normally we write the ISO_CTRL register in
1472 * trf7970a_tg_config_framing() because the framing can change
1473 * the value written. However, when sending a PSL RES,
1474 * digital_tg_send_psl_res_complete() doesn't call
1475 * trf7970a_tg_config_framing() so we must write the register
1476 * here.
1477 */
1478 if ((trf->framing == NFC_DIGITAL_FRAMING_NFC_DEP_ACTIVATED) &&
1479 (trf->iso_ctrl_tech != trf->iso_ctrl)) {
1480 ret = trf7970a_write(trf, TRF7970A_ISO_CTRL,
1481 trf->iso_ctrl_tech);
1482
1483 trf->iso_ctrl = trf->iso_ctrl_tech;
1484 }
165063f1 1485
13b4272a 1486 return ret;
165063f1
MG
1487}
1488
13b4272a
MG
1489/* Since this is a target routine, several of the framing calls are
1490 * made between receiving the request and sending the response so they
1491 * should take effect until after the response is sent. This is accomplished
1492 * by skipping the ISO_CTRL register write here and doing it in the interrupt
1493 * handler.
1494 */
1495static int trf7970a_tg_config_framing(struct trf7970a *trf, int framing)
1496{
1497 u8 iso_ctrl = trf->iso_ctrl_tech;
1498 int ret;
1499
1500 dev_dbg(trf->dev, "framing: %d\n", framing);
1501
1502 switch (framing) {
1503 case NFC_DIGITAL_FRAMING_NFCA_NFC_DEP:
1504 trf->tx_cmd = TRF7970A_CMD_TRANSMIT_NO_CRC;
1505 iso_ctrl |= TRF7970A_ISO_CTRL_RX_CRC_N;
1506 break;
1507 case NFC_DIGITAL_FRAMING_NFCA_STANDARD:
1508 case NFC_DIGITAL_FRAMING_NFCA_STANDARD_WITH_CRC_A:
1509 case NFC_DIGITAL_FRAMING_NFCA_ANTICOL_COMPLETE:
1510 /* These ones are applied in the interrupt handler */
1511 iso_ctrl = trf->iso_ctrl; /* Don't write to ISO_CTRL yet */
1512 break;
1513 case NFC_DIGITAL_FRAMING_NFCF_NFC_DEP:
1514 trf->tx_cmd = TRF7970A_CMD_TRANSMIT;
1515 iso_ctrl &= ~TRF7970A_ISO_CTRL_RX_CRC_N;
1516 break;
1517 case NFC_DIGITAL_FRAMING_NFC_DEP_ACTIVATED:
1518 trf->tx_cmd = TRF7970A_CMD_TRANSMIT;
1519 iso_ctrl &= ~TRF7970A_ISO_CTRL_RX_CRC_N;
1520 break;
1521 default:
1522 dev_dbg(trf->dev, "Unsupported Framing: %d\n", framing);
1523 return -EINVAL;
1524 }
1525
1526 trf->framing = framing;
1527
1528 if (iso_ctrl != trf->iso_ctrl) {
1529 ret = trf7970a_write(trf, TRF7970A_ISO_CTRL, iso_ctrl);
1530 if (ret)
1531 return ret;
1532
1533 trf->iso_ctrl = iso_ctrl;
1534
1535 ret = trf7970a_write(trf, TRF7970A_MODULATOR_SYS_CLK_CTRL,
1536 trf->modulator_sys_clk_ctrl);
1537 if (ret)
1538 return ret;
1539 }
1540
1541 if (!(trf->chip_status_ctrl & TRF7970A_CHIP_STATUS_RF_ON)) {
1542 ret = trf7970a_write(trf, TRF7970A_CHIP_STATUS_CTRL,
1543 trf->chip_status_ctrl |
1544 TRF7970A_CHIP_STATUS_RF_ON);
1545 if (ret)
1546 return ret;
1547
1548 trf->chip_status_ctrl |= TRF7970A_CHIP_STATUS_RF_ON;
1549 }
1550
1551 return 0;
1552}
1553
1554static int trf7970a_tg_configure_hw(struct nfc_digital_dev *ddev, int type,
1555 int param)
165063f1
MG
1556{
1557 struct trf7970a *trf = nfc_digital_get_drvdata(ddev);
13b4272a
MG
1558 int ret;
1559
1560 dev_dbg(trf->dev, "Configure hw - type: %d, param: %d\n", type, param);
1561
1562 mutex_lock(&trf->lock);
1563
1564 trf->is_initiator = false;
165063f1 1565
13b4272a
MG
1566 if ((trf->state == TRF7970A_ST_PWR_OFF) ||
1567 (trf->state == TRF7970A_ST_RF_OFF)) {
1568 ret = trf7970a_switch_rf_on(trf);
1569 if (ret)
1570 goto err_unlock;
1571 }
1572
1573 switch (type) {
1574 case NFC_DIGITAL_CONFIG_RF_TECH:
1575 ret = trf7970a_tg_config_rf_tech(trf, param);
1576 break;
1577 case NFC_DIGITAL_CONFIG_FRAMING:
1578 ret = trf7970a_tg_config_framing(trf, param);
1579 break;
1580 default:
1581 dev_dbg(trf->dev, "Unknown type: %d\n", type);
1582 ret = -EINVAL;
1583 }
165063f1 1584
13b4272a
MG
1585err_unlock:
1586 mutex_unlock(&trf->lock);
1587 return ret;
165063f1
MG
1588}
1589
13b4272a
MG
1590static int trf7970a_tg_listen(struct nfc_digital_dev *ddev, u16 timeout,
1591 nfc_digital_cmd_complete_t cb, void *arg)
165063f1
MG
1592{
1593 struct trf7970a *trf = nfc_digital_get_drvdata(ddev);
13b4272a
MG
1594 int ret;
1595
1596 dev_dbg(trf->dev, "Listen - state: %d, timeout: %d ms\n",
1597 trf->state, timeout);
1598
1599 mutex_lock(&trf->lock);
165063f1 1600
13b4272a
MG
1601 if ((trf->state != TRF7970A_ST_IDLE) &&
1602 (trf->state != TRF7970A_ST_IDLE_RX_BLOCKED)) {
1603 dev_err(trf->dev, "%s - Bogus state: %d\n", __func__,
1604 trf->state);
1605 ret = -EIO;
1606 goto out_err;
1607 }
1608
1609 if (trf->aborting) {
1610 dev_dbg(trf->dev, "Abort process complete\n");
1611 trf->aborting = false;
1612 ret = -ECANCELED;
1613 goto out_err;
1614 }
1615
1616 trf->rx_skb = nfc_alloc_recv_skb(TRF7970A_RX_SKB_ALLOC_SIZE,
1617 GFP_KERNEL);
1618 if (!trf->rx_skb) {
1619 dev_dbg(trf->dev, "Can't alloc rx_skb\n");
1620 ret = -ENOMEM;
1621 goto out_err;
1622 }
1623
1624 ret = trf7970a_write(trf, TRF7970A_RX_SPECIAL_SETTINGS,
1625 TRF7970A_RX_SPECIAL_SETTINGS_HBT |
1626 TRF7970A_RX_SPECIAL_SETTINGS_M848 |
1627 TRF7970A_RX_SPECIAL_SETTINGS_C424 |
1628 TRF7970A_RX_SPECIAL_SETTINGS_C212);
1629 if (ret)
1630 return ret;
1631
1632 ret = trf7970a_write(trf, TRF7970A_REG_IO_CTRL,
1633 TRF7970A_REG_IO_CTRL_VRS(0x1));
1634 if (ret)
1635 return ret;
165063f1 1636
13b4272a
MG
1637 ret = trf7970a_write(trf, TRF7970A_NFC_LOW_FIELD_LEVEL,
1638 TRF7970A_NFC_LOW_FIELD_LEVEL_RFDET(0x3));
1639 if (ret)
1640 return ret;
1641
1642 ret = trf7970a_write(trf, TRF7970A_NFC_TARGET_LEVEL,
1643 TRF7970A_NFC_TARGET_LEVEL_RFDET(0x7));
1644 if (ret)
1645 return ret;
1646
1647 trf->ddev = ddev;
1648 trf->cb = cb;
1649 trf->cb_arg = arg;
1650 trf->timeout = timeout;
1651 trf->ignore_timeout = false;
1652
1653 ret = trf7970a_cmd(trf, TRF7970A_CMD_ENABLE_RX);
1654 if (ret)
1655 goto out_err;
1656
1657 trf->state = TRF7970A_ST_LISTENING;
1658
1659 schedule_delayed_work(&trf->timeout_work, msecs_to_jiffies(timeout));
1660
1661out_err:
1662 mutex_unlock(&trf->lock);
1663 return ret;
165063f1
MG
1664}
1665
165063f1
MG
1666static void trf7970a_abort_cmd(struct nfc_digital_dev *ddev)
1667{
1668 struct trf7970a *trf = nfc_digital_get_drvdata(ddev);
1669
1670 dev_dbg(trf->dev, "Abort process initiated\n");
1671
1672 mutex_lock(&trf->lock);
5876bc75
MG
1673
1674 switch (trf->state) {
1675 case TRF7970A_ST_WAIT_FOR_TX_FIFO:
1676 case TRF7970A_ST_WAIT_FOR_RX_DATA:
1677 case TRF7970A_ST_WAIT_FOR_RX_DATA_CONT:
1678 case TRF7970A_ST_WAIT_TO_ISSUE_EOF:
1679 trf->aborting = true;
1680 break;
13b4272a
MG
1681 case TRF7970A_ST_LISTENING:
1682 trf->ignore_timeout = !cancel_delayed_work(&trf->timeout_work);
1683 trf7970a_send_err_upstream(trf, -ECANCELED);
1684 dev_dbg(trf->dev, "Abort process complete\n");
1685 break;
5876bc75
MG
1686 default:
1687 break;
1688 }
1689
165063f1
MG
1690 mutex_unlock(&trf->lock);
1691}
1692
1693static struct nfc_digital_ops trf7970a_nfc_ops = {
1694 .in_configure_hw = trf7970a_in_configure_hw,
13b4272a 1695 .in_send_cmd = trf7970a_send_cmd,
165063f1 1696 .tg_configure_hw = trf7970a_tg_configure_hw,
13b4272a 1697 .tg_send_cmd = trf7970a_send_cmd,
165063f1 1698 .tg_listen = trf7970a_tg_listen,
165063f1
MG
1699 .switch_rf = trf7970a_switch_rf,
1700 .abort_cmd = trf7970a_abort_cmd,
1701};
1702
ceccd6aa
MG
1703static int trf7970a_power_up(struct trf7970a *trf)
1704{
1705 int ret;
1706
1707 dev_dbg(trf->dev, "Powering up - state: %d\n", trf->state);
1708
1709 if (trf->state != TRF7970A_ST_PWR_OFF)
1710 return 0;
1711
1712 ret = regulator_enable(trf->regulator);
1713 if (ret) {
1714 dev_err(trf->dev, "%s - Can't enable VIN: %d\n", __func__, ret);
1715 return ret;
1716 }
1717
1718 usleep_range(5000, 6000);
1719
1720 if (!(trf->quirks & TRF7970A_QUIRK_EN2_MUST_STAY_LOW)) {
1721 gpio_set_value(trf->en2_gpio, 1);
1722 usleep_range(1000, 2000);
1723 }
1724
1725 gpio_set_value(trf->en_gpio, 1);
1726
1727 usleep_range(20000, 21000);
1728
1729 trf->state = TRF7970A_ST_RF_OFF;
1730
1731 return 0;
1732}
1733
1734static int trf7970a_power_down(struct trf7970a *trf)
1735{
1736 int ret;
1737
1738 dev_dbg(trf->dev, "Powering down - state: %d\n", trf->state);
1739
1740 if (trf->state == TRF7970A_ST_PWR_OFF)
1741 return 0;
1742
1743 if (trf->state != TRF7970A_ST_RF_OFF) {
1744 dev_dbg(trf->dev, "Can't power down - not RF_OFF state (%d)\n",
1745 trf->state);
1746 return -EBUSY;
1747 }
1748
1749 gpio_set_value(trf->en_gpio, 0);
1750 gpio_set_value(trf->en2_gpio, 0);
1751
1752 ret = regulator_disable(trf->regulator);
1753 if (ret)
1754 dev_err(trf->dev, "%s - Can't disable VIN: %d\n", __func__,
1755 ret);
1756
1757 trf->state = TRF7970A_ST_PWR_OFF;
1758
1759 return ret;
1760}
1761
b528281b
MG
1762static int trf7970a_startup(struct trf7970a *trf)
1763{
1764 int ret;
1765
1766 ret = trf7970a_power_up(trf);
1767 if (ret)
1768 return ret;
1769
1770 pm_runtime_set_active(trf->dev);
1771 pm_runtime_enable(trf->dev);
1772 pm_runtime_mark_last_busy(trf->dev);
1773
1774 return 0;
1775}
1776
1777static void trf7970a_shutdown(struct trf7970a *trf)
1778{
1779 switch (trf->state) {
1780 case TRF7970A_ST_WAIT_FOR_TX_FIFO:
1781 case TRF7970A_ST_WAIT_FOR_RX_DATA:
1782 case TRF7970A_ST_WAIT_FOR_RX_DATA_CONT:
1783 case TRF7970A_ST_WAIT_TO_ISSUE_EOF:
13b4272a 1784 case TRF7970A_ST_LISTENING:
b528281b
MG
1785 trf7970a_send_err_upstream(trf, -ECANCELED);
1786 /* FALLTHROUGH */
1787 case TRF7970A_ST_IDLE:
1788 case TRF7970A_ST_IDLE_RX_BLOCKED:
1789 trf7970a_switch_rf_off(trf);
1790 break;
1791 default:
1792 break;
1793 }
1794
1795 pm_runtime_disable(trf->dev);
1796 pm_runtime_set_suspended(trf->dev);
1797
1798 trf7970a_power_down(trf);
1799}
1800
fd0c8280
MG
1801static int trf7970a_get_autosuspend_delay(struct device_node *np)
1802{
1803 int autosuspend_delay, ret;
1804
1805 ret = of_property_read_u32(np, "autosuspend-delay", &autosuspend_delay);
1806 if (ret)
1807 autosuspend_delay = TRF7970A_AUTOSUSPEND_DELAY;
1808
fd0c8280
MG
1809 return autosuspend_delay;
1810}
1811
3bd14233
MG
1812static int trf7970a_get_vin_voltage_override(struct device_node *np,
1813 u32 *vin_uvolts)
1814{
1815 return of_property_read_u32(np, "vin-voltage-override", vin_uvolts);
1816}
1817
165063f1
MG
1818static int trf7970a_probe(struct spi_device *spi)
1819{
1820 struct device_node *np = spi->dev.of_node;
165063f1 1821 struct trf7970a *trf;
fd0c8280 1822 int uvolts, autosuspend_delay, ret;
165063f1
MG
1823
1824 if (!np) {
1825 dev_err(&spi->dev, "No Device Tree entry\n");
1826 return -EINVAL;
1827 }
1828
1829 trf = devm_kzalloc(&spi->dev, sizeof(*trf), GFP_KERNEL);
1830 if (!trf)
1831 return -ENOMEM;
1832
ceccd6aa 1833 trf->state = TRF7970A_ST_PWR_OFF;
165063f1
MG
1834 trf->dev = &spi->dev;
1835 trf->spi = spi;
165063f1
MG
1836
1837 spi->mode = SPI_MODE_1;
1838 spi->bits_per_word = 8;
1839
24707296
MG
1840 ret = spi_setup(spi);
1841 if (ret < 0) {
1842 dev_err(trf->dev, "Can't set up SPI Communication\n");
1843 return ret;
1844 }
1845
772079eb
MG
1846 if (of_property_read_bool(np, "irq-status-read-quirk"))
1847 trf->quirks |= TRF7970A_QUIRK_IRQ_STATUS_READ;
1848
165063f1
MG
1849 /* There are two enable pins - both must be present */
1850 trf->en_gpio = of_get_named_gpio(np, "ti,enable-gpios", 0);
1851 if (!gpio_is_valid(trf->en_gpio)) {
1852 dev_err(trf->dev, "No EN GPIO property\n");
1853 return trf->en_gpio;
1854 }
1855
1856 ret = devm_gpio_request_one(trf->dev, trf->en_gpio,
f23b7352 1857 GPIOF_DIR_OUT | GPIOF_INIT_LOW, "trf7970a EN");
165063f1
MG
1858 if (ret) {
1859 dev_err(trf->dev, "Can't request EN GPIO: %d\n", ret);
1860 return ret;
1861 }
1862
1863 trf->en2_gpio = of_get_named_gpio(np, "ti,enable-gpios", 1);
1864 if (!gpio_is_valid(trf->en2_gpio)) {
1865 dev_err(trf->dev, "No EN2 GPIO property\n");
1866 return trf->en2_gpio;
1867 }
1868
1869 ret = devm_gpio_request_one(trf->dev, trf->en2_gpio,
f23b7352 1870 GPIOF_DIR_OUT | GPIOF_INIT_LOW, "trf7970a EN2");
165063f1
MG
1871 if (ret) {
1872 dev_err(trf->dev, "Can't request EN2 GPIO: %d\n", ret);
1873 return ret;
1874 }
1875
95064bd9
MG
1876 if (of_property_read_bool(np, "en2-rf-quirk"))
1877 trf->quirks |= TRF7970A_QUIRK_EN2_MUST_STAY_LOW;
1878
165063f1
MG
1879 ret = devm_request_threaded_irq(trf->dev, spi->irq, NULL,
1880 trf7970a_irq, IRQF_TRIGGER_RISING | IRQF_ONESHOT,
1881 "trf7970a", trf);
1882 if (ret) {
1883 dev_err(trf->dev, "Can't request IRQ#%d: %d\n", spi->irq, ret);
1884 return ret;
1885 }
1886
1887 mutex_init(&trf->lock);
1888 INIT_DELAYED_WORK(&trf->timeout_work, trf7970a_timeout_work_handler);
1889
1890 trf->regulator = devm_regulator_get(&spi->dev, "vin");
1891 if (IS_ERR(trf->regulator)) {
1892 ret = PTR_ERR(trf->regulator);
1893 dev_err(trf->dev, "Can't get VIN regulator: %d\n", ret);
1894 goto err_destroy_lock;
1895 }
1896
1897 ret = regulator_enable(trf->regulator);
1898 if (ret) {
1899 dev_err(trf->dev, "Can't enable VIN: %d\n", ret);
1900 goto err_destroy_lock;
1901 }
1902
3bd14233
MG
1903 ret = trf7970a_get_vin_voltage_override(np, &uvolts);
1904 if (ret)
1905 uvolts = regulator_get_voltage(trf->regulator);
ebcc5a0d
MG
1906
1907 if (uvolts > 4000000)
1908 trf->chip_status_ctrl = TRF7970A_CHIP_STATUS_VRS5_3;
1909
165063f1
MG
1910 trf->ddev = nfc_digital_allocate_device(&trf7970a_nfc_ops,
1911 TRF7970A_SUPPORTED_PROTOCOLS,
13b4272a
MG
1912 NFC_DIGITAL_DRV_CAPS_IN_CRC |
1913 NFC_DIGITAL_DRV_CAPS_TG_CRC, 0, 0);
165063f1
MG
1914 if (!trf->ddev) {
1915 dev_err(trf->dev, "Can't allocate NFC digital device\n");
1916 ret = -ENOMEM;
1917 goto err_disable_regulator;
1918 }
1919
1920 nfc_digital_set_parent_dev(trf->ddev, trf->dev);
1921 nfc_digital_set_drvdata(trf->ddev, trf);
1922 spi_set_drvdata(spi, trf);
1923
fd0c8280
MG
1924 autosuspend_delay = trf7970a_get_autosuspend_delay(np);
1925
1926 pm_runtime_set_autosuspend_delay(trf->dev, autosuspend_delay);
e6403b7c 1927 pm_runtime_use_autosuspend(trf->dev);
ceccd6aa 1928
b528281b 1929 ret = trf7970a_startup(trf);
ceccd6aa
MG
1930 if (ret)
1931 goto err_free_ddev;
1932
165063f1
MG
1933 ret = nfc_digital_register_device(trf->ddev);
1934 if (ret) {
1935 dev_err(trf->dev, "Can't register NFC digital device: %d\n",
1936 ret);
b528281b 1937 goto err_shutdown;
165063f1
MG
1938 }
1939
1940 return 0;
1941
b528281b
MG
1942err_shutdown:
1943 trf7970a_shutdown(trf);
ceccd6aa 1944err_free_ddev:
165063f1
MG
1945 nfc_digital_free_device(trf->ddev);
1946err_disable_regulator:
1947 regulator_disable(trf->regulator);
1948err_destroy_lock:
1949 mutex_destroy(&trf->lock);
1950 return ret;
1951}
1952
1953static int trf7970a_remove(struct spi_device *spi)
1954{
1955 struct trf7970a *trf = spi_get_drvdata(spi);
1956
1957 mutex_lock(&trf->lock);
1958
b528281b 1959 trf7970a_shutdown(trf);
ceccd6aa
MG
1960
1961 mutex_unlock(&trf->lock);
e6403b7c 1962
165063f1
MG
1963 nfc_digital_unregister_device(trf->ddev);
1964 nfc_digital_free_device(trf->ddev);
1965
1966 regulator_disable(trf->regulator);
1967
1968 mutex_destroy(&trf->lock);
1969
1970 return 0;
1971}
1972
77c9539d
MG
1973#ifdef CONFIG_PM_SLEEP
1974static int trf7970a_suspend(struct device *dev)
1975{
1976 struct spi_device *spi = container_of(dev, struct spi_device, dev);
1977 struct trf7970a *trf = spi_get_drvdata(spi);
1978 int ret = 0;
1979
1980 dev_dbg(dev, "Suspend\n");
1981
1982 mutex_lock(&trf->lock);
1983
1984 trf7970a_shutdown(trf);
1985
1986 mutex_unlock(&trf->lock);
1987
1988 return ret;
1989}
1990
1991static int trf7970a_resume(struct device *dev)
1992{
1993 struct spi_device *spi = container_of(dev, struct spi_device, dev);
1994 struct trf7970a *trf = spi_get_drvdata(spi);
1995 int ret = 0;
1996
1997 dev_dbg(dev, "Resume\n");
1998
1999 mutex_lock(&trf->lock);
2000
2001 ret = trf7970a_startup(trf);
2002
2003 mutex_unlock(&trf->lock);
2004
2005 return ret;
2006}
2007#endif
2008
e6403b7c
MG
2009#ifdef CONFIG_PM_RUNTIME
2010static int trf7970a_pm_runtime_suspend(struct device *dev)
2011{
2012 struct spi_device *spi = container_of(dev, struct spi_device, dev);
2013 struct trf7970a *trf = spi_get_drvdata(spi);
2014 int ret;
2015
2016 dev_dbg(dev, "Runtime suspend\n");
2017
ceccd6aa 2018 mutex_lock(&trf->lock);
e6403b7c 2019
ceccd6aa 2020 ret = trf7970a_power_down(trf);
e6403b7c 2021
ceccd6aa 2022 mutex_unlock(&trf->lock);
e6403b7c
MG
2023
2024 return ret;
2025}
2026
2027static int trf7970a_pm_runtime_resume(struct device *dev)
2028{
2029 struct spi_device *spi = container_of(dev, struct spi_device, dev);
2030 struct trf7970a *trf = spi_get_drvdata(spi);
2031 int ret;
2032
2033 dev_dbg(dev, "Runtime resume\n");
2034
ceccd6aa
MG
2035 ret = trf7970a_power_up(trf);
2036 if (!ret)
2037 pm_runtime_mark_last_busy(dev);
e6403b7c 2038
ceccd6aa 2039 return ret;
e6403b7c
MG
2040}
2041#endif
2042
2043static const struct dev_pm_ops trf7970a_pm_ops = {
77c9539d 2044 SET_SYSTEM_SLEEP_PM_OPS(trf7970a_suspend, trf7970a_resume)
e6403b7c
MG
2045 SET_RUNTIME_PM_OPS(trf7970a_pm_runtime_suspend,
2046 trf7970a_pm_runtime_resume, NULL)
2047};
2048
165063f1 2049static const struct spi_device_id trf7970a_id_table[] = {
772079eb 2050 { "trf7970a", 0 },
165063f1
MG
2051 { }
2052};
2053MODULE_DEVICE_TABLE(spi, trf7970a_id_table);
2054
2055static struct spi_driver trf7970a_spi_driver = {
2056 .probe = trf7970a_probe,
2057 .remove = trf7970a_remove,
2058 .id_table = trf7970a_id_table,
2059 .driver = {
2060 .name = "trf7970a",
2061 .owner = THIS_MODULE,
e6403b7c 2062 .pm = &trf7970a_pm_ops,
165063f1
MG
2063 },
2064};
2065
2066module_spi_driver(trf7970a_spi_driver);
2067
2068MODULE_AUTHOR("Mark A. Greer <mgreer@animalcreek.com>");
2069MODULE_LICENSE("GPL v2");
2070MODULE_DESCRIPTION("TI trf7970a RFID/NFC Transceiver Driver");