cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
git clone https://git.sinitax.com/sinitax/cachepc-linux
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hid-cp2112.c (37216B)


      1// SPDX-License-Identifier: GPL-2.0-only
      2/*
      3 * hid-cp2112.c - Silicon Labs HID USB to SMBus master bridge
      4 * Copyright (c) 2013,2014 Uplogix, Inc.
      5 * David Barksdale <dbarksdale@uplogix.com>
      6 */
      7
      8/*
      9 * The Silicon Labs CP2112 chip is a USB HID device which provides an
     10 * SMBus controller for talking to slave devices and 8 GPIO pins. The
     11 * host communicates with the CP2112 via raw HID reports.
     12 *
     13 * Data Sheet:
     14 *   https://www.silabs.com/Support%20Documents/TechnicalDocs/CP2112.pdf
     15 * Programming Interface Specification:
     16 *   https://www.silabs.com/documents/public/application-notes/an495-cp2112-interface-specification.pdf
     17 */
     18
     19#include <linux/gpio/consumer.h>
     20#include <linux/gpio/machine.h>
     21#include <linux/gpio/driver.h>
     22#include <linux/hid.h>
     23#include <linux/hidraw.h>
     24#include <linux/i2c.h>
     25#include <linux/module.h>
     26#include <linux/nls.h>
     27#include <linux/usb/ch9.h>
     28#include "hid-ids.h"
     29
     30#define CP2112_REPORT_MAX_LENGTH		64
     31#define CP2112_GPIO_CONFIG_LENGTH		5
     32#define CP2112_GPIO_GET_LENGTH			2
     33#define CP2112_GPIO_SET_LENGTH			3
     34
     35enum {
     36	CP2112_GPIO_CONFIG		= 0x02,
     37	CP2112_GPIO_GET			= 0x03,
     38	CP2112_GPIO_SET			= 0x04,
     39	CP2112_GET_VERSION_INFO		= 0x05,
     40	CP2112_SMBUS_CONFIG		= 0x06,
     41	CP2112_DATA_READ_REQUEST	= 0x10,
     42	CP2112_DATA_WRITE_READ_REQUEST	= 0x11,
     43	CP2112_DATA_READ_FORCE_SEND	= 0x12,
     44	CP2112_DATA_READ_RESPONSE	= 0x13,
     45	CP2112_DATA_WRITE_REQUEST	= 0x14,
     46	CP2112_TRANSFER_STATUS_REQUEST	= 0x15,
     47	CP2112_TRANSFER_STATUS_RESPONSE	= 0x16,
     48	CP2112_CANCEL_TRANSFER		= 0x17,
     49	CP2112_LOCK_BYTE		= 0x20,
     50	CP2112_USB_CONFIG		= 0x21,
     51	CP2112_MANUFACTURER_STRING	= 0x22,
     52	CP2112_PRODUCT_STRING		= 0x23,
     53	CP2112_SERIAL_STRING		= 0x24,
     54};
     55
     56enum {
     57	STATUS0_IDLE		= 0x00,
     58	STATUS0_BUSY		= 0x01,
     59	STATUS0_COMPLETE	= 0x02,
     60	STATUS0_ERROR		= 0x03,
     61};
     62
     63enum {
     64	STATUS1_TIMEOUT_NACK		= 0x00,
     65	STATUS1_TIMEOUT_BUS		= 0x01,
     66	STATUS1_ARBITRATION_LOST	= 0x02,
     67	STATUS1_READ_INCOMPLETE		= 0x03,
     68	STATUS1_WRITE_INCOMPLETE	= 0x04,
     69	STATUS1_SUCCESS			= 0x05,
     70};
     71
     72struct cp2112_smbus_config_report {
     73	u8 report;		/* CP2112_SMBUS_CONFIG */
     74	__be32 clock_speed;	/* Hz */
     75	u8 device_address;	/* Stored in the upper 7 bits */
     76	u8 auto_send_read;	/* 1 = enabled, 0 = disabled */
     77	__be16 write_timeout;	/* ms, 0 = no timeout */
     78	__be16 read_timeout;	/* ms, 0 = no timeout */
     79	u8 scl_low_timeout;	/* 1 = enabled, 0 = disabled */
     80	__be16 retry_time;	/* # of retries, 0 = no limit */
     81} __packed;
     82
     83struct cp2112_usb_config_report {
     84	u8 report;	/* CP2112_USB_CONFIG */
     85	__le16 vid;	/* Vendor ID */
     86	__le16 pid;	/* Product ID */
     87	u8 max_power;	/* Power requested in 2mA units */
     88	u8 power_mode;	/* 0x00 = bus powered
     89			   0x01 = self powered & regulator off
     90			   0x02 = self powered & regulator on */
     91	u8 release_major;
     92	u8 release_minor;
     93	u8 mask;	/* What fields to program */
     94} __packed;
     95
     96struct cp2112_read_req_report {
     97	u8 report;	/* CP2112_DATA_READ_REQUEST */
     98	u8 slave_address;
     99	__be16 length;
    100} __packed;
    101
    102struct cp2112_write_read_req_report {
    103	u8 report;	/* CP2112_DATA_WRITE_READ_REQUEST */
    104	u8 slave_address;
    105	__be16 length;
    106	u8 target_address_length;
    107	u8 target_address[16];
    108} __packed;
    109
    110struct cp2112_write_req_report {
    111	u8 report;	/* CP2112_DATA_WRITE_REQUEST */
    112	u8 slave_address;
    113	u8 length;
    114	u8 data[61];
    115} __packed;
    116
    117struct cp2112_force_read_report {
    118	u8 report;	/* CP2112_DATA_READ_FORCE_SEND */
    119	__be16 length;
    120} __packed;
    121
    122struct cp2112_xfer_status_report {
    123	u8 report;	/* CP2112_TRANSFER_STATUS_RESPONSE */
    124	u8 status0;	/* STATUS0_* */
    125	u8 status1;	/* STATUS1_* */
    126	__be16 retries;
    127	__be16 length;
    128} __packed;
    129
    130struct cp2112_string_report {
    131	u8 dummy;		/* force .string to be aligned */
    132	struct_group_attr(contents, __packed,
    133		u8 report;		/* CP2112_*_STRING */
    134		u8 length;		/* length in bytes of everything after .report */
    135		u8 type;		/* USB_DT_STRING */
    136		wchar_t string[30];	/* UTF16_LITTLE_ENDIAN string */
    137	);
    138} __packed;
    139
    140/* Number of times to request transfer status before giving up waiting for a
    141   transfer to complete. This may need to be changed if SMBUS clock, retries,
    142   or read/write/scl_low timeout settings are changed. */
    143static const int XFER_STATUS_RETRIES = 10;
    144
    145/* Time in ms to wait for a CP2112_DATA_READ_RESPONSE or
    146   CP2112_TRANSFER_STATUS_RESPONSE. */
    147static const int RESPONSE_TIMEOUT = 50;
    148
    149static const struct hid_device_id cp2112_devices[] = {
    150	{ HID_USB_DEVICE(USB_VENDOR_ID_CYGNAL, USB_DEVICE_ID_CYGNAL_CP2112) },
    151	{ }
    152};
    153MODULE_DEVICE_TABLE(hid, cp2112_devices);
    154
    155struct cp2112_device {
    156	struct i2c_adapter adap;
    157	struct hid_device *hdev;
    158	wait_queue_head_t wait;
    159	u8 read_data[61];
    160	u8 read_length;
    161	u8 hwversion;
    162	int xfer_status;
    163	atomic_t read_avail;
    164	atomic_t xfer_avail;
    165	struct gpio_chip gc;
    166	struct irq_chip irq;
    167	u8 *in_out_buffer;
    168	struct mutex lock;
    169
    170	struct gpio_desc *desc[8];
    171	bool gpio_poll;
    172	struct delayed_work gpio_poll_worker;
    173	unsigned long irq_mask;
    174	u8 gpio_prev_state;
    175};
    176
    177static int gpio_push_pull = 0xFF;
    178module_param(gpio_push_pull, int, S_IRUGO | S_IWUSR);
    179MODULE_PARM_DESC(gpio_push_pull, "GPIO push-pull configuration bitmask");
    180
    181static int cp2112_gpio_direction_input(struct gpio_chip *chip, unsigned offset)
    182{
    183	struct cp2112_device *dev = gpiochip_get_data(chip);
    184	struct hid_device *hdev = dev->hdev;
    185	u8 *buf = dev->in_out_buffer;
    186	int ret;
    187
    188	mutex_lock(&dev->lock);
    189
    190	ret = hid_hw_raw_request(hdev, CP2112_GPIO_CONFIG, buf,
    191				 CP2112_GPIO_CONFIG_LENGTH, HID_FEATURE_REPORT,
    192				 HID_REQ_GET_REPORT);
    193	if (ret != CP2112_GPIO_CONFIG_LENGTH) {
    194		hid_err(hdev, "error requesting GPIO config: %d\n", ret);
    195		if (ret >= 0)
    196			ret = -EIO;
    197		goto exit;
    198	}
    199
    200	buf[1] &= ~(1 << offset);
    201	buf[2] = gpio_push_pull;
    202
    203	ret = hid_hw_raw_request(hdev, CP2112_GPIO_CONFIG, buf,
    204				 CP2112_GPIO_CONFIG_LENGTH, HID_FEATURE_REPORT,
    205				 HID_REQ_SET_REPORT);
    206	if (ret != CP2112_GPIO_CONFIG_LENGTH) {
    207		hid_err(hdev, "error setting GPIO config: %d\n", ret);
    208		if (ret >= 0)
    209			ret = -EIO;
    210		goto exit;
    211	}
    212
    213	ret = 0;
    214
    215exit:
    216	mutex_unlock(&dev->lock);
    217	return ret;
    218}
    219
    220static void cp2112_gpio_set(struct gpio_chip *chip, unsigned offset, int value)
    221{
    222	struct cp2112_device *dev = gpiochip_get_data(chip);
    223	struct hid_device *hdev = dev->hdev;
    224	u8 *buf = dev->in_out_buffer;
    225	int ret;
    226
    227	mutex_lock(&dev->lock);
    228
    229	buf[0] = CP2112_GPIO_SET;
    230	buf[1] = value ? 0xff : 0;
    231	buf[2] = 1 << offset;
    232
    233	ret = hid_hw_raw_request(hdev, CP2112_GPIO_SET, buf,
    234				 CP2112_GPIO_SET_LENGTH, HID_FEATURE_REPORT,
    235				 HID_REQ_SET_REPORT);
    236	if (ret < 0)
    237		hid_err(hdev, "error setting GPIO values: %d\n", ret);
    238
    239	mutex_unlock(&dev->lock);
    240}
    241
    242static int cp2112_gpio_get_all(struct gpio_chip *chip)
    243{
    244	struct cp2112_device *dev = gpiochip_get_data(chip);
    245	struct hid_device *hdev = dev->hdev;
    246	u8 *buf = dev->in_out_buffer;
    247	int ret;
    248
    249	mutex_lock(&dev->lock);
    250
    251	ret = hid_hw_raw_request(hdev, CP2112_GPIO_GET, buf,
    252				 CP2112_GPIO_GET_LENGTH, HID_FEATURE_REPORT,
    253				 HID_REQ_GET_REPORT);
    254	if (ret != CP2112_GPIO_GET_LENGTH) {
    255		hid_err(hdev, "error requesting GPIO values: %d\n", ret);
    256		ret = ret < 0 ? ret : -EIO;
    257		goto exit;
    258	}
    259
    260	ret = buf[1];
    261
    262exit:
    263	mutex_unlock(&dev->lock);
    264
    265	return ret;
    266}
    267
    268static int cp2112_gpio_get(struct gpio_chip *chip, unsigned int offset)
    269{
    270	int ret;
    271
    272	ret = cp2112_gpio_get_all(chip);
    273	if (ret < 0)
    274		return ret;
    275
    276	return (ret >> offset) & 1;
    277}
    278
    279static int cp2112_gpio_direction_output(struct gpio_chip *chip,
    280					unsigned offset, int value)
    281{
    282	struct cp2112_device *dev = gpiochip_get_data(chip);
    283	struct hid_device *hdev = dev->hdev;
    284	u8 *buf = dev->in_out_buffer;
    285	int ret;
    286
    287	mutex_lock(&dev->lock);
    288
    289	ret = hid_hw_raw_request(hdev, CP2112_GPIO_CONFIG, buf,
    290				 CP2112_GPIO_CONFIG_LENGTH, HID_FEATURE_REPORT,
    291				 HID_REQ_GET_REPORT);
    292	if (ret != CP2112_GPIO_CONFIG_LENGTH) {
    293		hid_err(hdev, "error requesting GPIO config: %d\n", ret);
    294		goto fail;
    295	}
    296
    297	buf[1] |= 1 << offset;
    298	buf[2] = gpio_push_pull;
    299
    300	ret = hid_hw_raw_request(hdev, CP2112_GPIO_CONFIG, buf,
    301				 CP2112_GPIO_CONFIG_LENGTH, HID_FEATURE_REPORT,
    302				 HID_REQ_SET_REPORT);
    303	if (ret < 0) {
    304		hid_err(hdev, "error setting GPIO config: %d\n", ret);
    305		goto fail;
    306	}
    307
    308	mutex_unlock(&dev->lock);
    309
    310	/*
    311	 * Set gpio value when output direction is already set,
    312	 * as specified in AN495, Rev. 0.2, cpt. 4.4
    313	 */
    314	cp2112_gpio_set(chip, offset, value);
    315
    316	return 0;
    317
    318fail:
    319	mutex_unlock(&dev->lock);
    320	return ret < 0 ? ret : -EIO;
    321}
    322
    323static int cp2112_hid_get(struct hid_device *hdev, unsigned char report_number,
    324			  u8 *data, size_t count, unsigned char report_type)
    325{
    326	u8 *buf;
    327	int ret;
    328
    329	buf = kmalloc(count, GFP_KERNEL);
    330	if (!buf)
    331		return -ENOMEM;
    332
    333	ret = hid_hw_raw_request(hdev, report_number, buf, count,
    334				       report_type, HID_REQ_GET_REPORT);
    335	memcpy(data, buf, count);
    336	kfree(buf);
    337	return ret;
    338}
    339
    340static int cp2112_hid_output(struct hid_device *hdev, u8 *data, size_t count,
    341			     unsigned char report_type)
    342{
    343	u8 *buf;
    344	int ret;
    345
    346	buf = kmemdup(data, count, GFP_KERNEL);
    347	if (!buf)
    348		return -ENOMEM;
    349
    350	if (report_type == HID_OUTPUT_REPORT)
    351		ret = hid_hw_output_report(hdev, buf, count);
    352	else
    353		ret = hid_hw_raw_request(hdev, buf[0], buf, count, report_type,
    354				HID_REQ_SET_REPORT);
    355
    356	kfree(buf);
    357	return ret;
    358}
    359
    360static int cp2112_wait(struct cp2112_device *dev, atomic_t *avail)
    361{
    362	int ret = 0;
    363
    364	/* We have sent either a CP2112_TRANSFER_STATUS_REQUEST or a
    365	 * CP2112_DATA_READ_FORCE_SEND and we are waiting for the response to
    366	 * come in cp2112_raw_event or timeout. There will only be one of these
    367	 * in flight at any one time. The timeout is extremely large and is a
    368	 * last resort if the CP2112 has died. If we do timeout we don't expect
    369	 * to receive the response which would cause data races, it's not like
    370	 * we can do anything about it anyway.
    371	 */
    372	ret = wait_event_interruptible_timeout(dev->wait,
    373		atomic_read(avail), msecs_to_jiffies(RESPONSE_TIMEOUT));
    374	if (-ERESTARTSYS == ret)
    375		return ret;
    376	if (!ret)
    377		return -ETIMEDOUT;
    378
    379	atomic_set(avail, 0);
    380	return 0;
    381}
    382
    383static int cp2112_xfer_status(struct cp2112_device *dev)
    384{
    385	struct hid_device *hdev = dev->hdev;
    386	u8 buf[2];
    387	int ret;
    388
    389	buf[0] = CP2112_TRANSFER_STATUS_REQUEST;
    390	buf[1] = 0x01;
    391	atomic_set(&dev->xfer_avail, 0);
    392
    393	ret = cp2112_hid_output(hdev, buf, 2, HID_OUTPUT_REPORT);
    394	if (ret < 0) {
    395		hid_warn(hdev, "Error requesting status: %d\n", ret);
    396		return ret;
    397	}
    398
    399	ret = cp2112_wait(dev, &dev->xfer_avail);
    400	if (ret)
    401		return ret;
    402
    403	return dev->xfer_status;
    404}
    405
    406static int cp2112_read(struct cp2112_device *dev, u8 *data, size_t size)
    407{
    408	struct hid_device *hdev = dev->hdev;
    409	struct cp2112_force_read_report report;
    410	int ret;
    411
    412	if (size > sizeof(dev->read_data))
    413		size = sizeof(dev->read_data);
    414	report.report = CP2112_DATA_READ_FORCE_SEND;
    415	report.length = cpu_to_be16(size);
    416
    417	atomic_set(&dev->read_avail, 0);
    418
    419	ret = cp2112_hid_output(hdev, &report.report, sizeof(report),
    420				HID_OUTPUT_REPORT);
    421	if (ret < 0) {
    422		hid_warn(hdev, "Error requesting data: %d\n", ret);
    423		return ret;
    424	}
    425
    426	ret = cp2112_wait(dev, &dev->read_avail);
    427	if (ret)
    428		return ret;
    429
    430	hid_dbg(hdev, "read %d of %zd bytes requested\n",
    431		dev->read_length, size);
    432
    433	if (size > dev->read_length)
    434		size = dev->read_length;
    435
    436	memcpy(data, dev->read_data, size);
    437	return dev->read_length;
    438}
    439
    440static int cp2112_read_req(void *buf, u8 slave_address, u16 length)
    441{
    442	struct cp2112_read_req_report *report = buf;
    443
    444	if (length < 1 || length > 512)
    445		return -EINVAL;
    446
    447	report->report = CP2112_DATA_READ_REQUEST;
    448	report->slave_address = slave_address << 1;
    449	report->length = cpu_to_be16(length);
    450	return sizeof(*report);
    451}
    452
    453static int cp2112_write_read_req(void *buf, u8 slave_address, u16 length,
    454				 u8 command, u8 *data, u8 data_length)
    455{
    456	struct cp2112_write_read_req_report *report = buf;
    457
    458	if (length < 1 || length > 512
    459	    || data_length > sizeof(report->target_address) - 1)
    460		return -EINVAL;
    461
    462	report->report = CP2112_DATA_WRITE_READ_REQUEST;
    463	report->slave_address = slave_address << 1;
    464	report->length = cpu_to_be16(length);
    465	report->target_address_length = data_length + 1;
    466	report->target_address[0] = command;
    467	memcpy(&report->target_address[1], data, data_length);
    468	return data_length + 6;
    469}
    470
    471static int cp2112_write_req(void *buf, u8 slave_address, u8 command, u8 *data,
    472			    u8 data_length)
    473{
    474	struct cp2112_write_req_report *report = buf;
    475
    476	if (data_length > sizeof(report->data) - 1)
    477		return -EINVAL;
    478
    479	report->report = CP2112_DATA_WRITE_REQUEST;
    480	report->slave_address = slave_address << 1;
    481	report->length = data_length + 1;
    482	report->data[0] = command;
    483	memcpy(&report->data[1], data, data_length);
    484	return data_length + 4;
    485}
    486
    487static int cp2112_i2c_write_req(void *buf, u8 slave_address, u8 *data,
    488				u8 data_length)
    489{
    490	struct cp2112_write_req_report *report = buf;
    491
    492	if (data_length > sizeof(report->data))
    493		return -EINVAL;
    494
    495	report->report = CP2112_DATA_WRITE_REQUEST;
    496	report->slave_address = slave_address << 1;
    497	report->length = data_length;
    498	memcpy(report->data, data, data_length);
    499	return data_length + 3;
    500}
    501
    502static int cp2112_i2c_write_read_req(void *buf, u8 slave_address,
    503				     u8 *addr, int addr_length,
    504				     int read_length)
    505{
    506	struct cp2112_write_read_req_report *report = buf;
    507
    508	if (read_length < 1 || read_length > 512 ||
    509	    addr_length > sizeof(report->target_address))
    510		return -EINVAL;
    511
    512	report->report = CP2112_DATA_WRITE_READ_REQUEST;
    513	report->slave_address = slave_address << 1;
    514	report->length = cpu_to_be16(read_length);
    515	report->target_address_length = addr_length;
    516	memcpy(report->target_address, addr, addr_length);
    517	return addr_length + 5;
    518}
    519
    520static int cp2112_i2c_xfer(struct i2c_adapter *adap, struct i2c_msg *msgs,
    521			   int num)
    522{
    523	struct cp2112_device *dev = (struct cp2112_device *)adap->algo_data;
    524	struct hid_device *hdev = dev->hdev;
    525	u8 buf[64];
    526	ssize_t count;
    527	ssize_t read_length = 0;
    528	u8 *read_buf = NULL;
    529	unsigned int retries;
    530	int ret;
    531
    532	hid_dbg(hdev, "I2C %d messages\n", num);
    533
    534	if (num == 1) {
    535		if (msgs->flags & I2C_M_RD) {
    536			hid_dbg(hdev, "I2C read %#04x len %d\n",
    537				msgs->addr, msgs->len);
    538			read_length = msgs->len;
    539			read_buf = msgs->buf;
    540			count = cp2112_read_req(buf, msgs->addr, msgs->len);
    541		} else {
    542			hid_dbg(hdev, "I2C write %#04x len %d\n",
    543				msgs->addr, msgs->len);
    544			count = cp2112_i2c_write_req(buf, msgs->addr,
    545						     msgs->buf, msgs->len);
    546		}
    547		if (count < 0)
    548			return count;
    549	} else if (dev->hwversion > 1 &&  /* no repeated start in rev 1 */
    550		   num == 2 &&
    551		   msgs[0].addr == msgs[1].addr &&
    552		   !(msgs[0].flags & I2C_M_RD) && (msgs[1].flags & I2C_M_RD)) {
    553		hid_dbg(hdev, "I2C write-read %#04x wlen %d rlen %d\n",
    554			msgs[0].addr, msgs[0].len, msgs[1].len);
    555		read_length = msgs[1].len;
    556		read_buf = msgs[1].buf;
    557		count = cp2112_i2c_write_read_req(buf, msgs[0].addr,
    558				msgs[0].buf, msgs[0].len, msgs[1].len);
    559		if (count < 0)
    560			return count;
    561	} else {
    562		hid_err(hdev,
    563			"Multi-message I2C transactions not supported\n");
    564		return -EOPNOTSUPP;
    565	}
    566
    567	ret = hid_hw_power(hdev, PM_HINT_FULLON);
    568	if (ret < 0) {
    569		hid_err(hdev, "power management error: %d\n", ret);
    570		return ret;
    571	}
    572
    573	ret = cp2112_hid_output(hdev, buf, count, HID_OUTPUT_REPORT);
    574	if (ret < 0) {
    575		hid_warn(hdev, "Error starting transaction: %d\n", ret);
    576		goto power_normal;
    577	}
    578
    579	for (retries = 0; retries < XFER_STATUS_RETRIES; ++retries) {
    580		ret = cp2112_xfer_status(dev);
    581		if (-EBUSY == ret)
    582			continue;
    583		if (ret < 0)
    584			goto power_normal;
    585		break;
    586	}
    587
    588	if (XFER_STATUS_RETRIES <= retries) {
    589		hid_warn(hdev, "Transfer timed out, cancelling.\n");
    590		buf[0] = CP2112_CANCEL_TRANSFER;
    591		buf[1] = 0x01;
    592
    593		ret = cp2112_hid_output(hdev, buf, 2, HID_OUTPUT_REPORT);
    594		if (ret < 0)
    595			hid_warn(hdev, "Error cancelling transaction: %d\n",
    596				 ret);
    597
    598		ret = -ETIMEDOUT;
    599		goto power_normal;
    600	}
    601
    602	for (count = 0; count < read_length;) {
    603		ret = cp2112_read(dev, read_buf + count, read_length - count);
    604		if (ret < 0)
    605			goto power_normal;
    606		if (ret == 0) {
    607			hid_err(hdev, "read returned 0\n");
    608			ret = -EIO;
    609			goto power_normal;
    610		}
    611		count += ret;
    612		if (count > read_length) {
    613			/*
    614			 * The hardware returned too much data.
    615			 * This is mostly harmless because cp2112_read()
    616			 * has a limit check so didn't overrun our
    617			 * buffer.  Nevertheless, we return an error
    618			 * because something is seriously wrong and
    619			 * it shouldn't go unnoticed.
    620			 */
    621			hid_err(hdev, "long read: %d > %zd\n",
    622				ret, read_length - count + ret);
    623			ret = -EIO;
    624			goto power_normal;
    625		}
    626	}
    627
    628	/* return the number of transferred messages */
    629	ret = num;
    630
    631power_normal:
    632	hid_hw_power(hdev, PM_HINT_NORMAL);
    633	hid_dbg(hdev, "I2C transfer finished: %d\n", ret);
    634	return ret;
    635}
    636
    637static int cp2112_xfer(struct i2c_adapter *adap, u16 addr,
    638		       unsigned short flags, char read_write, u8 command,
    639		       int size, union i2c_smbus_data *data)
    640{
    641	struct cp2112_device *dev = (struct cp2112_device *)adap->algo_data;
    642	struct hid_device *hdev = dev->hdev;
    643	u8 buf[64];
    644	__le16 word;
    645	ssize_t count;
    646	size_t read_length = 0;
    647	unsigned int retries;
    648	int ret;
    649
    650	hid_dbg(hdev, "%s addr 0x%x flags 0x%x cmd 0x%x size %d\n",
    651		read_write == I2C_SMBUS_WRITE ? "write" : "read",
    652		addr, flags, command, size);
    653
    654	switch (size) {
    655	case I2C_SMBUS_BYTE:
    656		read_length = 1;
    657
    658		if (I2C_SMBUS_READ == read_write)
    659			count = cp2112_read_req(buf, addr, read_length);
    660		else
    661			count = cp2112_write_req(buf, addr, command, NULL,
    662						 0);
    663		break;
    664	case I2C_SMBUS_BYTE_DATA:
    665		read_length = 1;
    666
    667		if (I2C_SMBUS_READ == read_write)
    668			count = cp2112_write_read_req(buf, addr, read_length,
    669						      command, NULL, 0);
    670		else
    671			count = cp2112_write_req(buf, addr, command,
    672						 &data->byte, 1);
    673		break;
    674	case I2C_SMBUS_WORD_DATA:
    675		read_length = 2;
    676		word = cpu_to_le16(data->word);
    677
    678		if (I2C_SMBUS_READ == read_write)
    679			count = cp2112_write_read_req(buf, addr, read_length,
    680						      command, NULL, 0);
    681		else
    682			count = cp2112_write_req(buf, addr, command,
    683						 (u8 *)&word, 2);
    684		break;
    685	case I2C_SMBUS_PROC_CALL:
    686		size = I2C_SMBUS_WORD_DATA;
    687		read_write = I2C_SMBUS_READ;
    688		read_length = 2;
    689		word = cpu_to_le16(data->word);
    690
    691		count = cp2112_write_read_req(buf, addr, read_length, command,
    692					      (u8 *)&word, 2);
    693		break;
    694	case I2C_SMBUS_I2C_BLOCK_DATA:
    695		if (read_write == I2C_SMBUS_READ) {
    696			read_length = data->block[0];
    697			count = cp2112_write_read_req(buf, addr, read_length,
    698						      command, NULL, 0);
    699		} else {
    700			count = cp2112_write_req(buf, addr, command,
    701						 data->block + 1,
    702						 data->block[0]);
    703		}
    704		break;
    705	case I2C_SMBUS_BLOCK_DATA:
    706		if (I2C_SMBUS_READ == read_write) {
    707			count = cp2112_write_read_req(buf, addr,
    708						      I2C_SMBUS_BLOCK_MAX,
    709						      command, NULL, 0);
    710		} else {
    711			count = cp2112_write_req(buf, addr, command,
    712						 data->block,
    713						 data->block[0] + 1);
    714		}
    715		break;
    716	case I2C_SMBUS_BLOCK_PROC_CALL:
    717		size = I2C_SMBUS_BLOCK_DATA;
    718		read_write = I2C_SMBUS_READ;
    719
    720		count = cp2112_write_read_req(buf, addr, I2C_SMBUS_BLOCK_MAX,
    721					      command, data->block,
    722					      data->block[0] + 1);
    723		break;
    724	default:
    725		hid_warn(hdev, "Unsupported transaction %d\n", size);
    726		return -EOPNOTSUPP;
    727	}
    728
    729	if (count < 0)
    730		return count;
    731
    732	ret = hid_hw_power(hdev, PM_HINT_FULLON);
    733	if (ret < 0) {
    734		hid_err(hdev, "power management error: %d\n", ret);
    735		return ret;
    736	}
    737
    738	ret = cp2112_hid_output(hdev, buf, count, HID_OUTPUT_REPORT);
    739	if (ret < 0) {
    740		hid_warn(hdev, "Error starting transaction: %d\n", ret);
    741		goto power_normal;
    742	}
    743
    744	for (retries = 0; retries < XFER_STATUS_RETRIES; ++retries) {
    745		ret = cp2112_xfer_status(dev);
    746		if (-EBUSY == ret)
    747			continue;
    748		if (ret < 0)
    749			goto power_normal;
    750		break;
    751	}
    752
    753	if (XFER_STATUS_RETRIES <= retries) {
    754		hid_warn(hdev, "Transfer timed out, cancelling.\n");
    755		buf[0] = CP2112_CANCEL_TRANSFER;
    756		buf[1] = 0x01;
    757
    758		ret = cp2112_hid_output(hdev, buf, 2, HID_OUTPUT_REPORT);
    759		if (ret < 0)
    760			hid_warn(hdev, "Error cancelling transaction: %d\n",
    761				 ret);
    762
    763		ret = -ETIMEDOUT;
    764		goto power_normal;
    765	}
    766
    767	if (I2C_SMBUS_WRITE == read_write) {
    768		ret = 0;
    769		goto power_normal;
    770	}
    771
    772	if (I2C_SMBUS_BLOCK_DATA == size)
    773		read_length = ret;
    774
    775	ret = cp2112_read(dev, buf, read_length);
    776	if (ret < 0)
    777		goto power_normal;
    778	if (ret != read_length) {
    779		hid_warn(hdev, "short read: %d < %zd\n", ret, read_length);
    780		ret = -EIO;
    781		goto power_normal;
    782	}
    783
    784	switch (size) {
    785	case I2C_SMBUS_BYTE:
    786	case I2C_SMBUS_BYTE_DATA:
    787		data->byte = buf[0];
    788		break;
    789	case I2C_SMBUS_WORD_DATA:
    790		data->word = le16_to_cpup((__le16 *)buf);
    791		break;
    792	case I2C_SMBUS_I2C_BLOCK_DATA:
    793		memcpy(data->block + 1, buf, read_length);
    794		break;
    795	case I2C_SMBUS_BLOCK_DATA:
    796		if (read_length > I2C_SMBUS_BLOCK_MAX) {
    797			ret = -EPROTO;
    798			goto power_normal;
    799		}
    800
    801		memcpy(data->block, buf, read_length);
    802		break;
    803	}
    804
    805	ret = 0;
    806power_normal:
    807	hid_hw_power(hdev, PM_HINT_NORMAL);
    808	hid_dbg(hdev, "transfer finished: %d\n", ret);
    809	return ret;
    810}
    811
    812static u32 cp2112_functionality(struct i2c_adapter *adap)
    813{
    814	return I2C_FUNC_I2C |
    815		I2C_FUNC_SMBUS_BYTE |
    816		I2C_FUNC_SMBUS_BYTE_DATA |
    817		I2C_FUNC_SMBUS_WORD_DATA |
    818		I2C_FUNC_SMBUS_BLOCK_DATA |
    819		I2C_FUNC_SMBUS_I2C_BLOCK |
    820		I2C_FUNC_SMBUS_PROC_CALL |
    821		I2C_FUNC_SMBUS_BLOCK_PROC_CALL;
    822}
    823
    824static const struct i2c_algorithm smbus_algorithm = {
    825	.master_xfer	= cp2112_i2c_xfer,
    826	.smbus_xfer	= cp2112_xfer,
    827	.functionality	= cp2112_functionality,
    828};
    829
    830static int cp2112_get_usb_config(struct hid_device *hdev,
    831				 struct cp2112_usb_config_report *cfg)
    832{
    833	int ret;
    834
    835	ret = cp2112_hid_get(hdev, CP2112_USB_CONFIG, (u8 *)cfg, sizeof(*cfg),
    836			     HID_FEATURE_REPORT);
    837	if (ret != sizeof(*cfg)) {
    838		hid_err(hdev, "error reading usb config: %d\n", ret);
    839		if (ret < 0)
    840			return ret;
    841		return -EIO;
    842	}
    843
    844	return 0;
    845}
    846
    847static int cp2112_set_usb_config(struct hid_device *hdev,
    848				 struct cp2112_usb_config_report *cfg)
    849{
    850	int ret;
    851
    852	BUG_ON(cfg->report != CP2112_USB_CONFIG);
    853
    854	ret = cp2112_hid_output(hdev, (u8 *)cfg, sizeof(*cfg),
    855				HID_FEATURE_REPORT);
    856	if (ret != sizeof(*cfg)) {
    857		hid_err(hdev, "error writing usb config: %d\n", ret);
    858		if (ret < 0)
    859			return ret;
    860		return -EIO;
    861	}
    862
    863	return 0;
    864}
    865
    866static void chmod_sysfs_attrs(struct hid_device *hdev);
    867
    868#define CP2112_CONFIG_ATTR(name, store, format, ...) \
    869static ssize_t name##_store(struct device *kdev, \
    870			    struct device_attribute *attr, const char *buf, \
    871			    size_t count) \
    872{ \
    873	struct hid_device *hdev = to_hid_device(kdev); \
    874	struct cp2112_usb_config_report cfg; \
    875	int ret = cp2112_get_usb_config(hdev, &cfg); \
    876	if (ret) \
    877		return ret; \
    878	store; \
    879	ret = cp2112_set_usb_config(hdev, &cfg); \
    880	if (ret) \
    881		return ret; \
    882	chmod_sysfs_attrs(hdev); \
    883	return count; \
    884} \
    885static ssize_t name##_show(struct device *kdev, \
    886			   struct device_attribute *attr, char *buf) \
    887{ \
    888	struct hid_device *hdev = to_hid_device(kdev); \
    889	struct cp2112_usb_config_report cfg; \
    890	int ret = cp2112_get_usb_config(hdev, &cfg); \
    891	if (ret) \
    892		return ret; \
    893	return scnprintf(buf, PAGE_SIZE, format, ##__VA_ARGS__); \
    894} \
    895static DEVICE_ATTR_RW(name);
    896
    897CP2112_CONFIG_ATTR(vendor_id, ({
    898	u16 vid;
    899
    900	if (sscanf(buf, "%hi", &vid) != 1)
    901		return -EINVAL;
    902
    903	cfg.vid = cpu_to_le16(vid);
    904	cfg.mask = 0x01;
    905}), "0x%04x\n", le16_to_cpu(cfg.vid));
    906
    907CP2112_CONFIG_ATTR(product_id, ({
    908	u16 pid;
    909
    910	if (sscanf(buf, "%hi", &pid) != 1)
    911		return -EINVAL;
    912
    913	cfg.pid = cpu_to_le16(pid);
    914	cfg.mask = 0x02;
    915}), "0x%04x\n", le16_to_cpu(cfg.pid));
    916
    917CP2112_CONFIG_ATTR(max_power, ({
    918	int mA;
    919
    920	if (sscanf(buf, "%i", &mA) != 1)
    921		return -EINVAL;
    922
    923	cfg.max_power = (mA + 1) / 2;
    924	cfg.mask = 0x04;
    925}), "%u mA\n", cfg.max_power * 2);
    926
    927CP2112_CONFIG_ATTR(power_mode, ({
    928	if (sscanf(buf, "%hhi", &cfg.power_mode) != 1)
    929		return -EINVAL;
    930
    931	cfg.mask = 0x08;
    932}), "%u\n", cfg.power_mode);
    933
    934CP2112_CONFIG_ATTR(release_version, ({
    935	if (sscanf(buf, "%hhi.%hhi", &cfg.release_major, &cfg.release_minor)
    936	    != 2)
    937		return -EINVAL;
    938
    939	cfg.mask = 0x10;
    940}), "%u.%u\n", cfg.release_major, cfg.release_minor);
    941
    942#undef CP2112_CONFIG_ATTR
    943
    944struct cp2112_pstring_attribute {
    945	struct device_attribute attr;
    946	unsigned char report;
    947};
    948
    949static ssize_t pstr_store(struct device *kdev,
    950			  struct device_attribute *kattr, const char *buf,
    951			  size_t count)
    952{
    953	struct hid_device *hdev = to_hid_device(kdev);
    954	struct cp2112_pstring_attribute *attr =
    955		container_of(kattr, struct cp2112_pstring_attribute, attr);
    956	struct cp2112_string_report report;
    957	int ret;
    958
    959	memset(&report, 0, sizeof(report));
    960
    961	ret = utf8s_to_utf16s(buf, count, UTF16_LITTLE_ENDIAN,
    962			      report.string, ARRAY_SIZE(report.string));
    963	report.report = attr->report;
    964	report.length = ret * sizeof(report.string[0]) + 2;
    965	report.type = USB_DT_STRING;
    966
    967	ret = cp2112_hid_output(hdev, &report.report, report.length + 1,
    968				HID_FEATURE_REPORT);
    969	if (ret != report.length + 1) {
    970		hid_err(hdev, "error writing %s string: %d\n", kattr->attr.name,
    971			ret);
    972		if (ret < 0)
    973			return ret;
    974		return -EIO;
    975	}
    976
    977	chmod_sysfs_attrs(hdev);
    978	return count;
    979}
    980
    981static ssize_t pstr_show(struct device *kdev,
    982			 struct device_attribute *kattr, char *buf)
    983{
    984	struct hid_device *hdev = to_hid_device(kdev);
    985	struct cp2112_pstring_attribute *attr =
    986		container_of(kattr, struct cp2112_pstring_attribute, attr);
    987	struct cp2112_string_report report;
    988	u8 length;
    989	int ret;
    990
    991	ret = cp2112_hid_get(hdev, attr->report, (u8 *)&report.contents,
    992			     sizeof(report.contents), HID_FEATURE_REPORT);
    993	if (ret < 3) {
    994		hid_err(hdev, "error reading %s string: %d\n", kattr->attr.name,
    995			ret);
    996		if (ret < 0)
    997			return ret;
    998		return -EIO;
    999	}
   1000
   1001	if (report.length < 2) {
   1002		hid_err(hdev, "invalid %s string length: %d\n",
   1003			kattr->attr.name, report.length);
   1004		return -EIO;
   1005	}
   1006
   1007	length = report.length > ret - 1 ? ret - 1 : report.length;
   1008	length = (length - 2) / sizeof(report.string[0]);
   1009	ret = utf16s_to_utf8s(report.string, length, UTF16_LITTLE_ENDIAN, buf,
   1010			      PAGE_SIZE - 1);
   1011	buf[ret++] = '\n';
   1012	return ret;
   1013}
   1014
   1015#define CP2112_PSTR_ATTR(name, _report) \
   1016static struct cp2112_pstring_attribute dev_attr_##name = { \
   1017	.attr = __ATTR(name, (S_IWUSR | S_IRUGO), pstr_show, pstr_store), \
   1018	.report = _report, \
   1019};
   1020
   1021CP2112_PSTR_ATTR(manufacturer,	CP2112_MANUFACTURER_STRING);
   1022CP2112_PSTR_ATTR(product,	CP2112_PRODUCT_STRING);
   1023CP2112_PSTR_ATTR(serial,	CP2112_SERIAL_STRING);
   1024
   1025#undef CP2112_PSTR_ATTR
   1026
   1027static const struct attribute_group cp2112_attr_group = {
   1028	.attrs = (struct attribute *[]){
   1029		&dev_attr_vendor_id.attr,
   1030		&dev_attr_product_id.attr,
   1031		&dev_attr_max_power.attr,
   1032		&dev_attr_power_mode.attr,
   1033		&dev_attr_release_version.attr,
   1034		&dev_attr_manufacturer.attr.attr,
   1035		&dev_attr_product.attr.attr,
   1036		&dev_attr_serial.attr.attr,
   1037		NULL
   1038	}
   1039};
   1040
   1041/* Chmoding our sysfs attributes is simply a way to expose which fields in the
   1042 * PROM have already been programmed. We do not depend on this preventing
   1043 * writing to these attributes since the CP2112 will simply ignore writes to
   1044 * already-programmed fields. This is why there is no sense in fixing this
   1045 * racy behaviour.
   1046 */
   1047static void chmod_sysfs_attrs(struct hid_device *hdev)
   1048{
   1049	struct attribute **attr;
   1050	u8 buf[2];
   1051	int ret;
   1052
   1053	ret = cp2112_hid_get(hdev, CP2112_LOCK_BYTE, buf, sizeof(buf),
   1054			     HID_FEATURE_REPORT);
   1055	if (ret != sizeof(buf)) {
   1056		hid_err(hdev, "error reading lock byte: %d\n", ret);
   1057		return;
   1058	}
   1059
   1060	for (attr = cp2112_attr_group.attrs; *attr; ++attr) {
   1061		umode_t mode = (buf[1] & 1) ? S_IWUSR | S_IRUGO : S_IRUGO;
   1062		ret = sysfs_chmod_file(&hdev->dev.kobj, *attr, mode);
   1063		if (ret < 0)
   1064			hid_err(hdev, "error chmoding sysfs file %s\n",
   1065				(*attr)->name);
   1066		buf[1] >>= 1;
   1067	}
   1068}
   1069
   1070static void cp2112_gpio_irq_ack(struct irq_data *d)
   1071{
   1072}
   1073
   1074static void cp2112_gpio_irq_mask(struct irq_data *d)
   1075{
   1076	struct gpio_chip *gc = irq_data_get_irq_chip_data(d);
   1077	struct cp2112_device *dev = gpiochip_get_data(gc);
   1078
   1079	__clear_bit(d->hwirq, &dev->irq_mask);
   1080}
   1081
   1082static void cp2112_gpio_irq_unmask(struct irq_data *d)
   1083{
   1084	struct gpio_chip *gc = irq_data_get_irq_chip_data(d);
   1085	struct cp2112_device *dev = gpiochip_get_data(gc);
   1086
   1087	__set_bit(d->hwirq, &dev->irq_mask);
   1088}
   1089
   1090static void cp2112_gpio_poll_callback(struct work_struct *work)
   1091{
   1092	struct cp2112_device *dev = container_of(work, struct cp2112_device,
   1093						 gpio_poll_worker.work);
   1094	struct irq_data *d;
   1095	u8 gpio_mask;
   1096	u8 virqs = (u8)dev->irq_mask;
   1097	u32 irq_type;
   1098	int irq, virq, ret;
   1099
   1100	ret = cp2112_gpio_get_all(&dev->gc);
   1101	if (ret == -ENODEV) /* the hardware has been disconnected */
   1102		return;
   1103	if (ret < 0)
   1104		goto exit;
   1105
   1106	gpio_mask = ret;
   1107
   1108	while (virqs) {
   1109		virq = ffs(virqs) - 1;
   1110		virqs &= ~BIT(virq);
   1111
   1112		if (!dev->gc.to_irq)
   1113			break;
   1114
   1115		irq = dev->gc.to_irq(&dev->gc, virq);
   1116
   1117		d = irq_get_irq_data(irq);
   1118		if (!d)
   1119			continue;
   1120
   1121		irq_type = irqd_get_trigger_type(d);
   1122
   1123		if (gpio_mask & BIT(virq)) {
   1124			/* Level High */
   1125
   1126			if (irq_type & IRQ_TYPE_LEVEL_HIGH)
   1127				handle_nested_irq(irq);
   1128
   1129			if ((irq_type & IRQ_TYPE_EDGE_RISING) &&
   1130			    !(dev->gpio_prev_state & BIT(virq)))
   1131				handle_nested_irq(irq);
   1132		} else {
   1133			/* Level Low */
   1134
   1135			if (irq_type & IRQ_TYPE_LEVEL_LOW)
   1136				handle_nested_irq(irq);
   1137
   1138			if ((irq_type & IRQ_TYPE_EDGE_FALLING) &&
   1139			    (dev->gpio_prev_state & BIT(virq)))
   1140				handle_nested_irq(irq);
   1141		}
   1142	}
   1143
   1144	dev->gpio_prev_state = gpio_mask;
   1145
   1146exit:
   1147	if (dev->gpio_poll)
   1148		schedule_delayed_work(&dev->gpio_poll_worker, 10);
   1149}
   1150
   1151
   1152static unsigned int cp2112_gpio_irq_startup(struct irq_data *d)
   1153{
   1154	struct gpio_chip *gc = irq_data_get_irq_chip_data(d);
   1155	struct cp2112_device *dev = gpiochip_get_data(gc);
   1156
   1157	INIT_DELAYED_WORK(&dev->gpio_poll_worker, cp2112_gpio_poll_callback);
   1158
   1159	if (!dev->gpio_poll) {
   1160		dev->gpio_poll = true;
   1161		schedule_delayed_work(&dev->gpio_poll_worker, 0);
   1162	}
   1163
   1164	cp2112_gpio_irq_unmask(d);
   1165	return 0;
   1166}
   1167
   1168static void cp2112_gpio_irq_shutdown(struct irq_data *d)
   1169{
   1170	struct gpio_chip *gc = irq_data_get_irq_chip_data(d);
   1171	struct cp2112_device *dev = gpiochip_get_data(gc);
   1172
   1173	cancel_delayed_work_sync(&dev->gpio_poll_worker);
   1174}
   1175
   1176static int cp2112_gpio_irq_type(struct irq_data *d, unsigned int type)
   1177{
   1178	return 0;
   1179}
   1180
   1181static int __maybe_unused cp2112_allocate_irq(struct cp2112_device *dev,
   1182					      int pin)
   1183{
   1184	int ret;
   1185
   1186	if (dev->desc[pin])
   1187		return -EINVAL;
   1188
   1189	dev->desc[pin] = gpiochip_request_own_desc(&dev->gc, pin,
   1190						   "HID/I2C:Event",
   1191						   GPIO_ACTIVE_HIGH,
   1192						   GPIOD_IN);
   1193	if (IS_ERR(dev->desc[pin])) {
   1194		dev_err(dev->gc.parent, "Failed to request GPIO\n");
   1195		return PTR_ERR(dev->desc[pin]);
   1196	}
   1197
   1198	ret = cp2112_gpio_direction_input(&dev->gc, pin);
   1199	if (ret < 0) {
   1200		dev_err(dev->gc.parent, "Failed to set GPIO to input dir\n");
   1201		goto err_desc;
   1202	}
   1203
   1204	ret = gpiochip_lock_as_irq(&dev->gc, pin);
   1205	if (ret) {
   1206		dev_err(dev->gc.parent, "Failed to lock GPIO as interrupt\n");
   1207		goto err_desc;
   1208	}
   1209
   1210	ret = gpiod_to_irq(dev->desc[pin]);
   1211	if (ret < 0) {
   1212		dev_err(dev->gc.parent, "Failed to translate GPIO to IRQ\n");
   1213		goto err_lock;
   1214	}
   1215
   1216	return ret;
   1217
   1218err_lock:
   1219	gpiochip_unlock_as_irq(&dev->gc, pin);
   1220err_desc:
   1221	gpiochip_free_own_desc(dev->desc[pin]);
   1222	dev->desc[pin] = NULL;
   1223	return ret;
   1224}
   1225
   1226static int cp2112_probe(struct hid_device *hdev, const struct hid_device_id *id)
   1227{
   1228	struct cp2112_device *dev;
   1229	u8 buf[3];
   1230	struct cp2112_smbus_config_report config;
   1231	struct gpio_irq_chip *girq;
   1232	int ret;
   1233
   1234	dev = devm_kzalloc(&hdev->dev, sizeof(*dev), GFP_KERNEL);
   1235	if (!dev)
   1236		return -ENOMEM;
   1237
   1238	dev->in_out_buffer = devm_kzalloc(&hdev->dev, CP2112_REPORT_MAX_LENGTH,
   1239					  GFP_KERNEL);
   1240	if (!dev->in_out_buffer)
   1241		return -ENOMEM;
   1242
   1243	mutex_init(&dev->lock);
   1244
   1245	ret = hid_parse(hdev);
   1246	if (ret) {
   1247		hid_err(hdev, "parse failed\n");
   1248		return ret;
   1249	}
   1250
   1251	ret = hid_hw_start(hdev, HID_CONNECT_HIDRAW);
   1252	if (ret) {
   1253		hid_err(hdev, "hw start failed\n");
   1254		return ret;
   1255	}
   1256
   1257	ret = hid_hw_open(hdev);
   1258	if (ret) {
   1259		hid_err(hdev, "hw open failed\n");
   1260		goto err_hid_stop;
   1261	}
   1262
   1263	ret = hid_hw_power(hdev, PM_HINT_FULLON);
   1264	if (ret < 0) {
   1265		hid_err(hdev, "power management error: %d\n", ret);
   1266		goto err_hid_close;
   1267	}
   1268
   1269	ret = cp2112_hid_get(hdev, CP2112_GET_VERSION_INFO, buf, sizeof(buf),
   1270			     HID_FEATURE_REPORT);
   1271	if (ret != sizeof(buf)) {
   1272		hid_err(hdev, "error requesting version\n");
   1273		if (ret >= 0)
   1274			ret = -EIO;
   1275		goto err_power_normal;
   1276	}
   1277
   1278	hid_info(hdev, "Part Number: 0x%02X Device Version: 0x%02X\n",
   1279		 buf[1], buf[2]);
   1280
   1281	ret = cp2112_hid_get(hdev, CP2112_SMBUS_CONFIG, (u8 *)&config,
   1282			     sizeof(config), HID_FEATURE_REPORT);
   1283	if (ret != sizeof(config)) {
   1284		hid_err(hdev, "error requesting SMBus config\n");
   1285		if (ret >= 0)
   1286			ret = -EIO;
   1287		goto err_power_normal;
   1288	}
   1289
   1290	config.retry_time = cpu_to_be16(1);
   1291
   1292	ret = cp2112_hid_output(hdev, (u8 *)&config, sizeof(config),
   1293				HID_FEATURE_REPORT);
   1294	if (ret != sizeof(config)) {
   1295		hid_err(hdev, "error setting SMBus config\n");
   1296		if (ret >= 0)
   1297			ret = -EIO;
   1298		goto err_power_normal;
   1299	}
   1300
   1301	hid_set_drvdata(hdev, (void *)dev);
   1302	dev->hdev		= hdev;
   1303	dev->adap.owner		= THIS_MODULE;
   1304	dev->adap.class		= I2C_CLASS_HWMON;
   1305	dev->adap.algo		= &smbus_algorithm;
   1306	dev->adap.algo_data	= dev;
   1307	dev->adap.dev.parent	= &hdev->dev;
   1308	snprintf(dev->adap.name, sizeof(dev->adap.name),
   1309		 "CP2112 SMBus Bridge on hidraw%d",
   1310		 ((struct hidraw *)hdev->hidraw)->minor);
   1311	dev->hwversion = buf[2];
   1312	init_waitqueue_head(&dev->wait);
   1313
   1314	hid_device_io_start(hdev);
   1315	ret = i2c_add_adapter(&dev->adap);
   1316	hid_device_io_stop(hdev);
   1317
   1318	if (ret) {
   1319		hid_err(hdev, "error registering i2c adapter\n");
   1320		goto err_power_normal;
   1321	}
   1322
   1323	hid_dbg(hdev, "adapter registered\n");
   1324
   1325	dev->gc.label			= "cp2112_gpio";
   1326	dev->gc.direction_input		= cp2112_gpio_direction_input;
   1327	dev->gc.direction_output	= cp2112_gpio_direction_output;
   1328	dev->gc.set			= cp2112_gpio_set;
   1329	dev->gc.get			= cp2112_gpio_get;
   1330	dev->gc.base			= -1;
   1331	dev->gc.ngpio			= 8;
   1332	dev->gc.can_sleep		= 1;
   1333	dev->gc.parent			= &hdev->dev;
   1334
   1335	dev->irq.name = "cp2112-gpio";
   1336	dev->irq.irq_startup = cp2112_gpio_irq_startup;
   1337	dev->irq.irq_shutdown = cp2112_gpio_irq_shutdown;
   1338	dev->irq.irq_ack = cp2112_gpio_irq_ack;
   1339	dev->irq.irq_mask = cp2112_gpio_irq_mask;
   1340	dev->irq.irq_unmask = cp2112_gpio_irq_unmask;
   1341	dev->irq.irq_set_type = cp2112_gpio_irq_type;
   1342	dev->irq.flags = IRQCHIP_MASK_ON_SUSPEND;
   1343
   1344	girq = &dev->gc.irq;
   1345	girq->chip = &dev->irq;
   1346	/* The event comes from the outside so no parent handler */
   1347	girq->parent_handler = NULL;
   1348	girq->num_parents = 0;
   1349	girq->parents = NULL;
   1350	girq->default_type = IRQ_TYPE_NONE;
   1351	girq->handler = handle_simple_irq;
   1352
   1353	ret = gpiochip_add_data(&dev->gc, dev);
   1354	if (ret < 0) {
   1355		hid_err(hdev, "error registering gpio chip\n");
   1356		goto err_free_i2c;
   1357	}
   1358
   1359	ret = sysfs_create_group(&hdev->dev.kobj, &cp2112_attr_group);
   1360	if (ret < 0) {
   1361		hid_err(hdev, "error creating sysfs attrs\n");
   1362		goto err_gpiochip_remove;
   1363	}
   1364
   1365	chmod_sysfs_attrs(hdev);
   1366	hid_hw_power(hdev, PM_HINT_NORMAL);
   1367
   1368	return ret;
   1369
   1370err_gpiochip_remove:
   1371	gpiochip_remove(&dev->gc);
   1372err_free_i2c:
   1373	i2c_del_adapter(&dev->adap);
   1374err_power_normal:
   1375	hid_hw_power(hdev, PM_HINT_NORMAL);
   1376err_hid_close:
   1377	hid_hw_close(hdev);
   1378err_hid_stop:
   1379	hid_hw_stop(hdev);
   1380	return ret;
   1381}
   1382
   1383static void cp2112_remove(struct hid_device *hdev)
   1384{
   1385	struct cp2112_device *dev = hid_get_drvdata(hdev);
   1386	int i;
   1387
   1388	sysfs_remove_group(&hdev->dev.kobj, &cp2112_attr_group);
   1389	i2c_del_adapter(&dev->adap);
   1390
   1391	if (dev->gpio_poll) {
   1392		dev->gpio_poll = false;
   1393		cancel_delayed_work_sync(&dev->gpio_poll_worker);
   1394	}
   1395
   1396	for (i = 0; i < ARRAY_SIZE(dev->desc); i++) {
   1397		gpiochip_unlock_as_irq(&dev->gc, i);
   1398		gpiochip_free_own_desc(dev->desc[i]);
   1399	}
   1400
   1401	gpiochip_remove(&dev->gc);
   1402	/* i2c_del_adapter has finished removing all i2c devices from our
   1403	 * adapter. Well behaved devices should no longer call our cp2112_xfer
   1404	 * and should have waited for any pending calls to finish. It has also
   1405	 * waited for device_unregister(&adap->dev) to complete. Therefore we
   1406	 * can safely free our struct cp2112_device.
   1407	 */
   1408	hid_hw_close(hdev);
   1409	hid_hw_stop(hdev);
   1410}
   1411
   1412static int cp2112_raw_event(struct hid_device *hdev, struct hid_report *report,
   1413			    u8 *data, int size)
   1414{
   1415	struct cp2112_device *dev = hid_get_drvdata(hdev);
   1416	struct cp2112_xfer_status_report *xfer = (void *)data;
   1417
   1418	switch (data[0]) {
   1419	case CP2112_TRANSFER_STATUS_RESPONSE:
   1420		hid_dbg(hdev, "xfer status: %02x %02x %04x %04x\n",
   1421			xfer->status0, xfer->status1,
   1422			be16_to_cpu(xfer->retries), be16_to_cpu(xfer->length));
   1423
   1424		switch (xfer->status0) {
   1425		case STATUS0_IDLE:
   1426			dev->xfer_status = -EAGAIN;
   1427			break;
   1428		case STATUS0_BUSY:
   1429			dev->xfer_status = -EBUSY;
   1430			break;
   1431		case STATUS0_COMPLETE:
   1432			dev->xfer_status = be16_to_cpu(xfer->length);
   1433			break;
   1434		case STATUS0_ERROR:
   1435			switch (xfer->status1) {
   1436			case STATUS1_TIMEOUT_NACK:
   1437			case STATUS1_TIMEOUT_BUS:
   1438				dev->xfer_status = -ETIMEDOUT;
   1439				break;
   1440			default:
   1441				dev->xfer_status = -EIO;
   1442				break;
   1443			}
   1444			break;
   1445		default:
   1446			dev->xfer_status = -EINVAL;
   1447			break;
   1448		}
   1449
   1450		atomic_set(&dev->xfer_avail, 1);
   1451		break;
   1452	case CP2112_DATA_READ_RESPONSE:
   1453		hid_dbg(hdev, "read response: %02x %02x\n", data[1], data[2]);
   1454
   1455		dev->read_length = data[2];
   1456		if (dev->read_length > sizeof(dev->read_data))
   1457			dev->read_length = sizeof(dev->read_data);
   1458
   1459		memcpy(dev->read_data, &data[3], dev->read_length);
   1460		atomic_set(&dev->read_avail, 1);
   1461		break;
   1462	default:
   1463		hid_err(hdev, "unknown report\n");
   1464
   1465		return 0;
   1466	}
   1467
   1468	wake_up_interruptible(&dev->wait);
   1469	return 1;
   1470}
   1471
   1472static struct hid_driver cp2112_driver = {
   1473	.name		= "cp2112",
   1474	.id_table	= cp2112_devices,
   1475	.probe		= cp2112_probe,
   1476	.remove		= cp2112_remove,
   1477	.raw_event	= cp2112_raw_event,
   1478};
   1479
   1480module_hid_driver(cp2112_driver);
   1481MODULE_DESCRIPTION("Silicon Labs HID USB to SMBus master bridge");
   1482MODULE_AUTHOR("David Barksdale <dbarksdale@uplogix.com>");
   1483MODULE_LICENSE("GPL");
   1484