1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Bitbanging I2C bus driver using the GPIO API 4 * 5 * Copyright (C) 2007 Atmel Corporation 6 */ 7 #include <linux/completion.h> 8 #include <linux/debugfs.h> 9 #include <linux/delay.h> 10 #include <linux/gpio/consumer.h> 11 #include <linux/i2c-algo-bit.h> 12 #include <linux/i2c.h> 13 #include <linux/init.h> 14 #include <linux/interrupt.h> 15 #include <linux/module.h> 16 #include <linux/platform_data/i2c-gpio.h> 17 #include <linux/platform_device.h> 18 #include <linux/property.h> 19 #include <linux/slab.h> 20 21 static LIST_HEAD(i2c_gpio_scl_list); 22 static DEFINE_MUTEX(i2c_gpio_scl_list_lock); 23 static struct lock_class_key i2c_gpio_scl_lock_key; 24 25 struct i2c_gpio_scl_data { 26 struct fwnode_reference_args args; 27 struct gpio_desc *gpio; 28 struct rt_mutex lock; 29 struct list_head list; 30 refcount_t ref; 31 }; 32 33 struct i2c_gpio_private_data { 34 struct gpio_desc *sda; 35 struct i2c_gpio_scl_data *scl; 36 struct i2c_adapter adap; 37 struct i2c_algo_bit_data bit_data; 38 struct i2c_gpio_platform_data pdata; 39 #ifdef CONFIG_I2C_GPIO_FAULT_INJECTOR 40 /* these must be protected by bus lock */ 41 struct completion scl_irq_completion; 42 u64 scl_irq_data; 43 #endif 44 }; 45 46 static inline struct i2c_gpio_private_data *adap_to_priv(struct i2c_adapter *adap) 47 { 48 return container_of(adap, struct i2c_gpio_private_data, adap); 49 } 50 51 /* 52 * Toggle SDA by changing the output value of the pin. This is only 53 * valid for pins configured as open drain (i.e. setting the value 54 * high effectively turns off the output driver.) 55 */ 56 static void i2c_gpio_setsda_val(void *data, int state) 57 { 58 struct i2c_gpio_private_data *priv = data; 59 60 gpiod_set_value_cansleep(priv->sda, state); 61 } 62 63 /* 64 * Toggle SCL by changing the output value of the pin. This is used 65 * for pins that are configured as open drain and for output-only 66 * pins. The latter case will break the i2c protocol, but it will 67 * often work in practice. 68 */ 69 static void i2c_gpio_setscl_val(void *data, int state) 70 { 71 struct i2c_gpio_private_data *priv = data; 72 73 gpiod_set_value_cansleep(priv->scl->gpio, state); 74 } 75 76 static int i2c_gpio_getsda(void *data) 77 { 78 struct i2c_gpio_private_data *priv = data; 79 80 return gpiod_get_value_cansleep(priv->sda); 81 } 82 83 static int i2c_gpio_getscl(void *data) 84 { 85 struct i2c_gpio_private_data *priv = data; 86 87 return gpiod_get_value_cansleep(priv->scl->gpio); 88 } 89 90 static void i2c_gpio_lock_bus(struct i2c_adapter *adap, unsigned int flags) 91 { 92 /* Take care about adapter lock. See i2c_adapter_lock_bus() and others. */ 93 rt_mutex_lock_nested(&adap->bus_lock, i2c_adapter_depth(adap)); 94 rt_mutex_lock(&adap_to_priv(adap)->scl->lock); 95 } 96 97 static int i2c_gpio_trylock_bus(struct i2c_adapter *adap, unsigned int flags) 98 { 99 if (!rt_mutex_trylock(&adap->bus_lock)) 100 return 0; 101 102 if (!rt_mutex_trylock(&adap_to_priv(adap)->scl->lock)) { 103 rt_mutex_unlock(&adap->bus_lock); 104 return 0; 105 } 106 107 return 1; 108 } 109 110 static void i2c_gpio_unlock_bus(struct i2c_adapter *adap, unsigned int flags) 111 { 112 rt_mutex_unlock(&adap_to_priv(adap)->scl->lock); 113 rt_mutex_unlock(&adap->bus_lock); 114 } 115 116 static const struct i2c_lock_operations i2c_gpio_lock_ops = { 117 .lock_bus = i2c_gpio_lock_bus, 118 .trylock_bus = i2c_gpio_trylock_bus, 119 .unlock_bus = i2c_gpio_unlock_bus, 120 }; 121 122 #ifdef CONFIG_I2C_GPIO_FAULT_INJECTOR 123 124 #define setsda(bd, val) ((bd)->setsda((bd)->data, val)) 125 #define setscl(bd, val) ((bd)->setscl((bd)->data, val)) 126 #define getsda(bd) ((bd)->getsda((bd)->data)) 127 #define getscl(bd) ((bd)->getscl((bd)->data)) 128 129 #define WIRE_ATTRIBUTE(wire) \ 130 static int fops_##wire##_get(void *data, u64 *val) \ 131 { \ 132 struct i2c_gpio_private_data *priv = data; \ 133 \ 134 i2c_lock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); \ 135 *val = get##wire(&priv->bit_data); \ 136 i2c_unlock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); \ 137 return 0; \ 138 } \ 139 static int fops_##wire##_set(void *data, u64 val) \ 140 { \ 141 struct i2c_gpio_private_data *priv = data; \ 142 \ 143 i2c_lock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); \ 144 set##wire(&priv->bit_data, val); \ 145 i2c_unlock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); \ 146 return 0; \ 147 } \ 148 DEFINE_DEBUGFS_ATTRIBUTE(fops_##wire, fops_##wire##_get, fops_##wire##_set, "%llu\n") 149 150 WIRE_ATTRIBUTE(scl); 151 WIRE_ATTRIBUTE(sda); 152 153 static void i2c_gpio_incomplete_transfer(struct i2c_gpio_private_data *priv, 154 u32 pattern, u8 pattern_size) 155 { 156 struct i2c_algo_bit_data *bit_data = &priv->bit_data; 157 int i; 158 159 i2c_lock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); 160 161 /* START condition */ 162 setsda(bit_data, 0); 163 udelay(bit_data->udelay); 164 165 /* Send pattern, request ACK, don't send STOP */ 166 for (i = pattern_size - 1; i >= 0; i--) { 167 setscl(bit_data, 0); 168 udelay(bit_data->udelay / 2); 169 setsda(bit_data, (pattern >> i) & 1); 170 udelay((bit_data->udelay + 1) / 2); 171 setscl(bit_data, 1); 172 udelay(bit_data->udelay); 173 } 174 175 i2c_unlock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); 176 } 177 178 static int fops_incomplete_addr_phase_set(void *data, u64 addr) 179 { 180 struct i2c_gpio_private_data *priv = data; 181 u32 pattern; 182 183 if (addr > 0x7f) 184 return -EINVAL; 185 186 /* ADDR (7 bit) + RD (1 bit) + Client ACK, keep SDA hi (1 bit) */ 187 pattern = (addr << 2) | 3; 188 189 i2c_gpio_incomplete_transfer(priv, pattern, 9); 190 191 return 0; 192 } 193 DEFINE_DEBUGFS_ATTRIBUTE(fops_incomplete_addr_phase, NULL, fops_incomplete_addr_phase_set, "%llu\n"); 194 195 static int fops_incomplete_write_byte_set(void *data, u64 addr) 196 { 197 struct i2c_gpio_private_data *priv = data; 198 u32 pattern; 199 200 if (addr > 0x7f) 201 return -EINVAL; 202 203 /* ADDR (7 bit) + WR (1 bit) + Client ACK (1 bit) */ 204 pattern = (addr << 2) | 1; 205 /* 0x00 (8 bit) + Client ACK, keep SDA hi (1 bit) */ 206 pattern = (pattern << 9) | 1; 207 208 i2c_gpio_incomplete_transfer(priv, pattern, 18); 209 210 return 0; 211 } 212 DEFINE_DEBUGFS_ATTRIBUTE(fops_incomplete_write_byte, NULL, fops_incomplete_write_byte_set, "%llu\n"); 213 214 static int i2c_gpio_fi_act_on_scl_irq(struct i2c_gpio_private_data *priv, 215 irqreturn_t handler(int, void*)) 216 { 217 int ret, irq = gpiod_to_irq(priv->scl->gpio); 218 219 if (irq < 0) 220 return irq; 221 222 i2c_lock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); 223 224 ret = gpiod_direction_input(priv->scl->gpio); 225 if (ret) 226 goto unlock; 227 228 reinit_completion(&priv->scl_irq_completion); 229 230 ret = request_irq(irq, handler, IRQF_TRIGGER_FALLING, 231 "i2c_gpio_fault_injector_scl_irq", priv); 232 if (ret) 233 goto output; 234 235 wait_for_completion_interruptible(&priv->scl_irq_completion); 236 237 free_irq(irq, priv); 238 output: 239 ret = gpiod_direction_output(priv->scl->gpio, 1) ?: ret; 240 unlock: 241 i2c_unlock_bus(&priv->adap, I2C_LOCK_ROOT_ADAPTER); 242 243 return ret; 244 } 245 246 static irqreturn_t lose_arbitration_irq(int irq, void *dev_id) 247 { 248 struct i2c_gpio_private_data *priv = dev_id; 249 250 setsda(&priv->bit_data, 0); 251 udelay(priv->scl_irq_data); 252 setsda(&priv->bit_data, 1); 253 254 complete(&priv->scl_irq_completion); 255 256 return IRQ_HANDLED; 257 } 258 259 static int fops_lose_arbitration_set(void *data, u64 duration) 260 { 261 struct i2c_gpio_private_data *priv = data; 262 263 if (duration > 100 * 1000) 264 return -EINVAL; 265 266 priv->scl_irq_data = duration; 267 /* 268 * Interrupt on falling SCL. This ensures that the controller under test 269 * has really started the transfer. Interrupt on falling SDA did only 270 * exercise 'bus busy' detection on some HW but not 'arbitration lost'. 271 * Note that the interrupt latency may cause the first bits to be 272 * transmitted correctly. 273 */ 274 return i2c_gpio_fi_act_on_scl_irq(priv, lose_arbitration_irq); 275 } 276 DEFINE_DEBUGFS_ATTRIBUTE(fops_lose_arbitration, NULL, fops_lose_arbitration_set, "%llu\n"); 277 278 static irqreturn_t inject_panic_irq(int irq, void *dev_id) 279 { 280 struct i2c_gpio_private_data *priv = dev_id; 281 282 udelay(priv->scl_irq_data); 283 panic("I2C fault injector induced panic"); 284 285 return IRQ_HANDLED; 286 } 287 288 static int fops_inject_panic_set(void *data, u64 duration) 289 { 290 struct i2c_gpio_private_data *priv = data; 291 292 if (duration > 100 * 1000) 293 return -EINVAL; 294 295 priv->scl_irq_data = duration; 296 /* 297 * Interrupt on falling SCL. This ensures that the controller under test 298 * has really started the transfer. 299 */ 300 return i2c_gpio_fi_act_on_scl_irq(priv, inject_panic_irq); 301 } 302 DEFINE_DEBUGFS_ATTRIBUTE(fops_inject_panic, NULL, fops_inject_panic_set, "%llu\n"); 303 304 static void i2c_gpio_fault_injector_init(struct platform_device *pdev) 305 { 306 struct i2c_gpio_private_data *priv = platform_get_drvdata(pdev); 307 308 init_completion(&priv->scl_irq_completion); 309 310 debugfs_create_file_unsafe("incomplete_address_phase", 0200, priv->adap.debugfs, 311 priv, &fops_incomplete_addr_phase); 312 debugfs_create_file_unsafe("incomplete_write_byte", 0200, priv->adap.debugfs, 313 priv, &fops_incomplete_write_byte); 314 if (priv->bit_data.getscl) { 315 debugfs_create_file_unsafe("inject_panic", 0200, priv->adap.debugfs, 316 priv, &fops_inject_panic); 317 debugfs_create_file_unsafe("lose_arbitration", 0200, priv->adap.debugfs, 318 priv, &fops_lose_arbitration); 319 } 320 debugfs_create_file_unsafe("scl", 0600, priv->adap.debugfs, priv, &fops_scl); 321 debugfs_create_file_unsafe("sda", 0600, priv->adap.debugfs, priv, &fops_sda); 322 } 323 #else 324 static inline void i2c_gpio_fault_injector_init(struct platform_device *pdev) {} 325 #endif /* CONFIG_I2C_GPIO_FAULT_INJECTOR*/ 326 327 /* Get i2c-gpio properties from DT or ACPI table */ 328 static void i2c_gpio_get_properties(struct device *dev, 329 struct i2c_gpio_platform_data *pdata) 330 { 331 u32 reg; 332 333 device_property_read_u32(dev, "i2c-gpio,delay-us", &pdata->udelay); 334 335 if (!device_property_read_u32(dev, "i2c-gpio,timeout-ms", ®)) 336 pdata->timeout = msecs_to_jiffies(reg); 337 338 pdata->sda_is_open_drain = 339 device_property_read_bool(dev, "i2c-gpio,sda-open-drain"); 340 pdata->scl_is_open_drain = 341 device_property_read_bool(dev, "i2c-gpio,scl-open-drain"); 342 pdata->scl_is_output_only = 343 device_property_read_bool(dev, "i2c-gpio,scl-output-only"); 344 pdata->sda_is_output_only = 345 device_property_read_bool(dev, "i2c-gpio,sda-output-only"); 346 pdata->sda_has_no_pullup = 347 device_property_read_bool(dev, "i2c-gpio,sda-has-no-pullup"); 348 pdata->scl_has_no_pullup = 349 device_property_read_bool(dev, "i2c-gpio,scl-has-no-pullup"); 350 } 351 352 static struct gpio_desc *i2c_gpio_get_desc(struct device *dev, 353 const char *con_id, 354 unsigned int index, 355 enum gpiod_flags gflags) 356 { 357 struct gpio_desc *retdesc; 358 int ret; 359 360 /* 361 * Don't use resource-managed functions. SCL may be shared across adapters and has 362 * its own lifetime management. SDA uses the same path for consistency. 363 */ 364 retdesc = gpiod_get(dev, con_id, gflags); 365 if (!IS_ERR(retdesc)) { 366 dev_dbg(dev, "got GPIO from name %s\n", con_id); 367 return retdesc; 368 } 369 370 retdesc = gpiod_get_index(dev, NULL, index, gflags); 371 if (!IS_ERR(retdesc)) { 372 dev_dbg(dev, "got GPIO from index %u\n", index); 373 return retdesc; 374 } 375 376 ret = PTR_ERR(retdesc); 377 378 /* FIXME: hack in the old code, is this really necessary? */ 379 if (ret == -EINVAL) 380 retdesc = ERR_PTR(-EPROBE_DEFER); 381 382 /* This happens if the GPIO driver is not yet probed, let's defer */ 383 if (ret == -ENOENT) 384 retdesc = ERR_PTR(-EPROBE_DEFER); 385 386 if (PTR_ERR(retdesc) != -EPROBE_DEFER) 387 dev_err(dev, "error trying to get descriptor: %d\n", ret); 388 389 return retdesc; 390 } 391 392 static struct i2c_gpio_scl_data *i2c_gpio_create_scl(struct device *dev) 393 { 394 struct fwnode_handle *fwnode = dev_fwnode(dev); 395 struct fwnode_reference_args args; 396 struct i2c_gpio_scl_data *scl; 397 bool sharable = false; 398 int ret; 399 400 /* 401 * SCL gpios can be shared if they are defined in the devicetree and have at least one 402 * cell in addition to the phandle. This is usually the pin. To support complex designs 403 * with arbitrary of_xlate() mappings handle the node cells opaque. 404 */ 405 if (fwnode) { 406 ret = fwnode_property_get_reference_args(fwnode, "scl-gpios", 407 "#gpio-cells", 0, 0, &args); 408 if (ret) 409 /* try the ancient way */ 410 ret = fwnode_property_get_reference_args(fwnode, "gpios", 411 "#gpio-cells", 0, 1, &args); 412 413 if (!ret) { 414 if (args.nargs >= 1) 415 sharable = true; 416 else 417 fwnode_handle_put(args.fwnode); 418 } 419 } 420 421 scl = kzalloc_obj(*scl); 422 if (!scl) { 423 if (sharable) 424 fwnode_handle_put(args.fwnode); 425 return ERR_PTR(-ENOMEM); 426 } 427 428 if (sharable) { 429 scl->args.fwnode = args.fwnode; 430 scl->args.nargs = args.nargs; 431 memcpy(scl->args.args, args.args, sizeof(args.args[0]) * args.nargs); 432 } 433 434 rt_mutex_init(&scl->lock); 435 lockdep_set_class(&scl->lock, &i2c_gpio_scl_lock_key); 436 refcount_set(&scl->ref, 1); 437 438 return scl; 439 } 440 441 static void i2c_gpio_free_scl(struct i2c_gpio_scl_data *scl) 442 { 443 if (scl->args.fwnode) 444 fwnode_handle_put(scl->args.fwnode); 445 kfree(scl); 446 } 447 448 static bool i2c_gpio_scl_matches(struct i2c_gpio_scl_data *a, struct i2c_gpio_scl_data *b) 449 { 450 if (!a->args.fwnode || !b->args.fwnode || 451 a->args.fwnode != b->args.fwnode || a->args.nargs != b->args.nargs) 452 return false; 453 454 return memcmp(a->args.args, b->args.args, sizeof(a->args.args[0]) * a->args.nargs) == 0; 455 } 456 457 /* 458 * Look up an existing or create a new shared SCL structure. Optimistic setup sequence always 459 * creates and tries to add a new entry to the list. This uses minimum locking and afterwards 460 * requests the GPIO without a lock held. Concurrent probes for the same SCL pin see the entry 461 * and do not race into a second gpiod_get(). Until everything is setup they terminate with 462 * -EPROBE_DEFER. 463 */ 464 static struct i2c_gpio_scl_data *i2c_gpio_lookup_scl(struct device *dev, enum gpiod_flags gflags) 465 { 466 struct i2c_gpio_scl_data *scl, *new_scl; 467 struct gpio_desc *gpio; 468 469 new_scl = i2c_gpio_create_scl(dev); 470 if (IS_ERR(new_scl)) 471 return new_scl; 472 473 scoped_guard(mutex, &i2c_gpio_scl_list_lock) { 474 list_for_each_entry(scl, &i2c_gpio_scl_list, list) { 475 if (!i2c_gpio_scl_matches(scl, new_scl)) 476 continue; 477 478 i2c_gpio_free_scl(new_scl); 479 if (!scl->gpio) 480 return ERR_PTR(-EPROBE_DEFER); 481 482 refcount_inc(&scl->ref); 483 if (scl->args.fwnode) 484 dev_dbg(dev, "reusing shared SCL (%pfwP)\n", scl->args.fwnode); 485 486 return scl; 487 } 488 list_add(&new_scl->list, &i2c_gpio_scl_list); 489 } 490 491 gpio = i2c_gpio_get_desc(dev, "scl", 1, gflags); 492 if (IS_ERR(gpio)) { 493 scoped_guard(mutex, &i2c_gpio_scl_list_lock) 494 list_del(&new_scl->list); 495 i2c_gpio_free_scl(new_scl); 496 497 return ERR_CAST(gpio); 498 } 499 500 scoped_guard(mutex, &i2c_gpio_scl_list_lock) 501 new_scl->gpio = gpio; 502 503 if (new_scl->args.fwnode) 504 dev_dbg(dev, "registered shared SCL (%pfwP)\n", new_scl->args.fwnode); 505 506 return new_scl; 507 } 508 509 static void i2c_gpio_cleanup_scl(struct i2c_gpio_scl_data *scl) 510 { 511 if (!refcount_dec_and_mutex_lock(&scl->ref, &i2c_gpio_scl_list_lock)) 512 return; 513 514 list_del(&scl->list); 515 mutex_unlock(&i2c_gpio_scl_list_lock); 516 gpiod_put(scl->gpio); 517 i2c_gpio_free_scl(scl); 518 } 519 520 static int i2c_gpio_probe(struct platform_device *pdev) 521 { 522 struct i2c_gpio_private_data *priv; 523 struct i2c_gpio_platform_data *pdata; 524 struct i2c_algo_bit_data *bit_data; 525 struct i2c_adapter *adap; 526 struct device *dev = &pdev->dev; 527 struct fwnode_handle *fwnode = dev_fwnode(dev); 528 enum gpiod_flags gflags; 529 int ret; 530 531 priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL); 532 if (!priv) 533 return -ENOMEM; 534 535 adap = &priv->adap; 536 bit_data = &priv->bit_data; 537 pdata = &priv->pdata; 538 539 if (fwnode) { 540 i2c_gpio_get_properties(dev, pdata); 541 } else { 542 /* 543 * If all platform data settings are zero it is OK 544 * to not provide any platform data from the board. 545 */ 546 if (dev_get_platdata(dev)) 547 memcpy(pdata, dev_get_platdata(dev), sizeof(*pdata)); 548 } 549 550 /* 551 * First get the GPIO pins; if it fails, we'll defer the probe. 552 * If the SCL/SDA lines are marked "open drain" by platform data or 553 * device tree then this means that something outside of our control is 554 * marking these lines to be handled as open drain, and we should just 555 * handle them as we handle any other output. Else we enforce open 556 * drain as this is required for an I2C bus. 557 */ 558 if (pdata->sda_is_open_drain || pdata->sda_has_no_pullup) 559 gflags = GPIOD_OUT_HIGH; 560 else 561 gflags = GPIOD_OUT_HIGH_OPEN_DRAIN; 562 priv->sda = i2c_gpio_get_desc(dev, "sda", 0, gflags); 563 if (IS_ERR(priv->sda)) 564 return PTR_ERR(priv->sda); 565 566 if (pdata->scl_is_open_drain || pdata->scl_has_no_pullup) 567 gflags = GPIOD_OUT_HIGH; 568 else 569 gflags = GPIOD_OUT_HIGH_OPEN_DRAIN; 570 priv->scl = i2c_gpio_lookup_scl(dev, gflags); 571 if (IS_ERR(priv->scl)) { 572 ret = PTR_ERR(priv->scl); 573 goto err_cleanup_sda; 574 } 575 576 if (gpiod_cansleep(priv->sda) || gpiod_cansleep(priv->scl->gpio)) 577 dev_warn(dev, "Slow GPIO pins might wreak havoc into I2C/SMBus bus timing"); 578 else 579 bit_data->can_do_atomic = true; 580 581 bit_data->skip_bit_test = !!priv->scl->args.fwnode; 582 bit_data->setsda = i2c_gpio_setsda_val; 583 bit_data->setscl = i2c_gpio_setscl_val; 584 585 if (!pdata->scl_is_output_only) 586 bit_data->getscl = i2c_gpio_getscl; 587 if (!pdata->sda_is_output_only) 588 bit_data->getsda = i2c_gpio_getsda; 589 590 if (pdata->udelay) 591 bit_data->udelay = pdata->udelay; 592 else if (pdata->scl_is_output_only) 593 bit_data->udelay = 50; /* 10 kHz */ 594 else 595 bit_data->udelay = 5; /* 100 kHz */ 596 597 if (pdata->timeout) 598 bit_data->timeout = pdata->timeout; 599 else 600 bit_data->timeout = HZ / 10; /* 100 ms */ 601 602 bit_data->data = priv; 603 604 adap->owner = THIS_MODULE; 605 if (fwnode) 606 strscpy(adap->name, dev_name(dev), sizeof(adap->name)); 607 else 608 snprintf(adap->name, sizeof(adap->name), "i2c-gpio%d", pdev->id); 609 610 /* Always use shared SCL aware locking */ 611 adap->lock_ops = &i2c_gpio_lock_ops; 612 adap->algo_data = bit_data; 613 adap->class = I2C_CLASS_HWMON; 614 adap->dev.parent = dev; 615 device_set_node(&adap->dev, fwnode); 616 617 adap->nr = pdev->id; 618 ret = i2c_bit_add_numbered_bus(adap); 619 if (ret) 620 goto err_cleanup_scl; 621 622 platform_set_drvdata(pdev, priv); 623 624 /* 625 * FIXME: using global GPIO numbers is not helpful. If/when we 626 * get accessors to get the actual name of the GPIO line, 627 * from the descriptor, then provide that instead. 628 */ 629 dev_info(dev, "using lines %u (SDA) and %u (SCL%s)\n", 630 desc_to_gpio(priv->sda), desc_to_gpio(priv->scl->gpio), 631 pdata->scl_is_output_only 632 ? ", no clock stretching" : ""); 633 634 i2c_gpio_fault_injector_init(pdev); 635 636 return 0; 637 638 err_cleanup_scl: 639 i2c_gpio_cleanup_scl(priv->scl); 640 err_cleanup_sda: 641 gpiod_put(priv->sda); 642 643 return ret; 644 } 645 646 static void i2c_gpio_remove(struct platform_device *pdev) 647 { 648 struct i2c_gpio_private_data *priv; 649 struct i2c_adapter *adap; 650 651 priv = platform_get_drvdata(pdev); 652 adap = &priv->adap; 653 654 i2c_del_adapter(adap); 655 i2c_gpio_cleanup_scl(priv->scl); 656 gpiod_put(priv->sda); 657 } 658 659 static const struct of_device_id i2c_gpio_dt_ids[] = { 660 { .compatible = "i2c-gpio", }, 661 { /* sentinel */ } 662 }; 663 664 MODULE_DEVICE_TABLE(of, i2c_gpio_dt_ids); 665 666 static const struct acpi_device_id i2c_gpio_acpi_match[] = { 667 { "LOON0005" }, /* LoongArch */ 668 { } 669 }; 670 MODULE_DEVICE_TABLE(acpi, i2c_gpio_acpi_match); 671 672 static struct platform_driver i2c_gpio_driver = { 673 .driver = { 674 .name = "i2c-gpio", 675 .of_match_table = i2c_gpio_dt_ids, 676 .acpi_match_table = i2c_gpio_acpi_match, 677 }, 678 .probe = i2c_gpio_probe, 679 .remove = i2c_gpio_remove, 680 }; 681 682 static int __init i2c_gpio_init(void) 683 { 684 int ret; 685 686 ret = platform_driver_register(&i2c_gpio_driver); 687 if (ret) 688 printk(KERN_ERR "i2c-gpio: probe failed: %d\n", ret); 689 690 return ret; 691 } 692 subsys_initcall(i2c_gpio_init); 693 694 static void __exit i2c_gpio_exit(void) 695 { 696 platform_driver_unregister(&i2c_gpio_driver); 697 } 698 module_exit(i2c_gpio_exit); 699 700 MODULE_AUTHOR("Haavard Skinnemoen (Atmel)"); 701 MODULE_DESCRIPTION("Platform-independent bitbanging I2C driver"); 702 MODULE_LICENSE("GPL v2"); 703 MODULE_ALIAS("platform:i2c-gpio"); 704