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1==================================2GPIO Descriptor Consumer Interface3==================================4 5This document describes the consumer interface of the GPIO framework.6 7 8Guidelines for GPIOs consumers9==============================10 11Drivers that can't work without standard GPIO calls should have Kconfig entries12that depend on GPIOLIB or select GPIOLIB. The functions that allow a driver to13obtain and use GPIOs are available by including the following file::14 15	#include <linux/gpio/consumer.h>16 17There are static inline stubs for all functions in the header file in the case18where GPIOLIB is disabled. When these stubs are called they will emit19warnings. These stubs are used for two use cases:20 21- Simple compile coverage with e.g. COMPILE_TEST - it does not matter that22  the current platform does not enable or select GPIOLIB because we are not23  going to execute the system anyway.24 25- Truly optional GPIOLIB support - where the driver does not really make use26  of the GPIOs on certain compile-time configurations for certain systems, but27  will use it under other compile-time configurations. In this case the28  consumer must make sure not to call into these functions, or the user will29  be met with console warnings that may be perceived as intimidating.30  Combining truly optional GPIOLIB usage with calls to31  ``[devm_]gpiod_get_optional()`` is a *bad idea*, and will result in weird32  error messages. Use the ordinary getter functions with optional GPIOLIB:33  some open coding of error handling should be expected when you do this.34 35All the functions that work with the descriptor-based GPIO interface are36prefixed with ``gpiod_``. The ``gpio_`` prefix is used for the legacy37interface. No other function in the kernel should use these prefixes. The use38of the legacy functions is strongly discouraged, new code should use39<linux/gpio/consumer.h> and descriptors exclusively.40 41 42Obtaining and Disposing GPIOs43=============================44 45With the descriptor-based interface, GPIOs are identified with an opaque,46non-forgeable handler that must be obtained through a call to one of the47gpiod_get() functions. Like many other kernel subsystems, gpiod_get() takes the48device that will use the GPIO and the function the requested GPIO is supposed to49fulfill::50 51	struct gpio_desc *gpiod_get(struct device *dev, const char *con_id,52				    enum gpiod_flags flags)53 54If a function is implemented by using several GPIOs together (e.g. a simple LED55device that displays digits), an additional index argument can be specified::56 57	struct gpio_desc *gpiod_get_index(struct device *dev,58					  const char *con_id, unsigned int idx,59					  enum gpiod_flags flags)60 61For a more detailed description of the con_id parameter in the DeviceTree case62see Documentation/driver-api/gpio/board.rst63 64The flags parameter is used to optionally specify a direction and initial value65for the GPIO. Values can be:66 67* GPIOD_ASIS or 0 to not initialize the GPIO at all. The direction must be set68  later with one of the dedicated functions.69* GPIOD_IN to initialize the GPIO as input.70* GPIOD_OUT_LOW to initialize the GPIO as output with a value of 0.71* GPIOD_OUT_HIGH to initialize the GPIO as output with a value of 1.72* GPIOD_OUT_LOW_OPEN_DRAIN same as GPIOD_OUT_LOW but also enforce the line73  to be electrically used with open drain.74* GPIOD_OUT_HIGH_OPEN_DRAIN same as GPIOD_OUT_HIGH but also enforce the line75  to be electrically used with open drain.76 77Note that the initial value is *logical* and the physical line level depends on78whether the line is configured active high or active low (see79:ref:`active_low_semantics`).80 81The two last flags are used for use cases where open drain is mandatory, such82as I2C: if the line is not already configured as open drain in the mappings83(see board.rst), then open drain will be enforced anyway and a warning will be84printed that the board configuration needs to be updated to match the use case.85 86Both functions return either a valid GPIO descriptor, or an error code checkable87with IS_ERR() (they will never return a NULL pointer). -ENOENT will be returned88if and only if no GPIO has been assigned to the device/function/index triplet,89other error codes are used for cases where a GPIO has been assigned but an error90occurred while trying to acquire it. This is useful to discriminate between mere91errors and an absence of GPIO for optional GPIO parameters. For the common92pattern where a GPIO is optional, the gpiod_get_optional() and93gpiod_get_index_optional() functions can be used. These functions return NULL94instead of -ENOENT if no GPIO has been assigned to the requested function::95 96	struct gpio_desc *gpiod_get_optional(struct device *dev,97					     const char *con_id,98					     enum gpiod_flags flags)99 100	struct gpio_desc *gpiod_get_index_optional(struct device *dev,101						   const char *con_id,102						   unsigned int index,103						   enum gpiod_flags flags)104 105Note that gpio_get*_optional() functions (and their managed variants), unlike106the rest of gpiolib API, also return NULL when gpiolib support is disabled.107This is helpful to driver authors, since they do not need to special case108-ENOSYS return codes.  System integrators should however be careful to enable109gpiolib on systems that need it.110 111For a function using multiple GPIOs all of those can be obtained with one call::112 113	struct gpio_descs *gpiod_get_array(struct device *dev,114					   const char *con_id,115					   enum gpiod_flags flags)116 117This function returns a struct gpio_descs which contains an array of118descriptors.  It also contains a pointer to a gpiolib private structure which,119if passed back to get/set array functions, may speed up I/O processing::120 121	struct gpio_descs {122		struct gpio_array *info;123		unsigned int ndescs;124		struct gpio_desc *desc[];125	}126 127The following function returns NULL instead of -ENOENT if no GPIOs have been128assigned to the requested function::129 130	struct gpio_descs *gpiod_get_array_optional(struct device *dev,131						    const char *con_id,132						    enum gpiod_flags flags)133 134Device-managed variants of these functions are also defined::135 136	struct gpio_desc *devm_gpiod_get(struct device *dev, const char *con_id,137					 enum gpiod_flags flags)138 139	struct gpio_desc *devm_gpiod_get_index(struct device *dev,140					       const char *con_id,141					       unsigned int idx,142					       enum gpiod_flags flags)143 144	struct gpio_desc *devm_gpiod_get_optional(struct device *dev,145						  const char *con_id,146						  enum gpiod_flags flags)147 148	struct gpio_desc *devm_gpiod_get_index_optional(struct device *dev,149							const char *con_id,150							unsigned int index,151							enum gpiod_flags flags)152 153	struct gpio_descs *devm_gpiod_get_array(struct device *dev,154						const char *con_id,155						enum gpiod_flags flags)156 157	struct gpio_descs *devm_gpiod_get_array_optional(struct device *dev,158							 const char *con_id,159							 enum gpiod_flags flags)160 161A GPIO descriptor can be disposed of using the gpiod_put() function::162 163	void gpiod_put(struct gpio_desc *desc)164 165For an array of GPIOs this function can be used::166 167	void gpiod_put_array(struct gpio_descs *descs)168 169It is strictly forbidden to use a descriptor after calling these functions.170It is also not allowed to individually release descriptors (using gpiod_put())171from an array acquired with gpiod_get_array().172 173The device-managed variants are, unsurprisingly::174 175	void devm_gpiod_put(struct device *dev, struct gpio_desc *desc)176 177	void devm_gpiod_put_array(struct device *dev, struct gpio_descs *descs)178 179 180Using GPIOs181===========182 183Setting Direction184-----------------185The first thing a driver must do with a GPIO is setting its direction. If no186direction-setting flags have been given to gpiod_get*(), this is done by187invoking one of the gpiod_direction_*() functions::188 189	int gpiod_direction_input(struct gpio_desc *desc)190	int gpiod_direction_output(struct gpio_desc *desc, int value)191 192The return value is zero for success, else a negative errno. It should be193checked, since the get/set calls don't return errors and since misconfiguration194is possible. You should normally issue these calls from a task context. However,195for spinlock-safe GPIOs it is OK to use them before tasking is enabled, as part196of early board setup.197 198For output GPIOs, the value provided becomes the initial output value. This199helps avoid signal glitching during system startup.200 201A driver can also query the current direction of a GPIO::202 203	int gpiod_get_direction(const struct gpio_desc *desc)204 205This function returns 0 for output, 1 for input, or an error code in case of error.206 207Be aware that there is no default direction for GPIOs. Therefore, **using a GPIO208without setting its direction first is illegal and will result in undefined209behavior!**210 211 212Spinlock-Safe GPIO Access213-------------------------214Most GPIO controllers can be accessed with memory read/write instructions. Those215don't need to sleep, and can safely be done from inside hard (non-threaded) IRQ216handlers and similar contexts.217 218Use the following calls to access GPIOs from an atomic context::219 220	int gpiod_get_value(const struct gpio_desc *desc);221	void gpiod_set_value(struct gpio_desc *desc, int value);222 223The values are boolean, zero for inactive, nonzero for active. When reading the224value of an output pin, the value returned should be what's seen on the pin.225That won't always match the specified output value, because of issues including226open-drain signaling and output latencies.227 228The get/set calls do not return errors because "invalid GPIO" should have been229reported earlier from gpiod_direction_*(). However, note that not all platforms230can read the value of output pins; those that can't should always return zero.231Also, using these calls for GPIOs that can't safely be accessed without sleeping232(see below) is an error.233 234 235GPIO Access That May Sleep236--------------------------237Some GPIO controllers must be accessed using message based buses like I2C or238SPI. Commands to read or write those GPIO values require waiting to get to the239head of a queue to transmit a command and get its response. This requires240sleeping, which can't be done from inside IRQ handlers.241 242Platforms that support this type of GPIO distinguish them from other GPIOs by243returning nonzero from this call::244 245	int gpiod_cansleep(const struct gpio_desc *desc)246 247To access such GPIOs, a different set of accessors is defined::248 249	int gpiod_get_value_cansleep(const struct gpio_desc *desc)250	void gpiod_set_value_cansleep(struct gpio_desc *desc, int value)251 252Accessing such GPIOs requires a context which may sleep, for example a threaded253IRQ handler, and those accessors must be used instead of spinlock-safe254accessors without the cansleep() name suffix.255 256Other than the fact that these accessors might sleep, and will work on GPIOs257that can't be accessed from hardIRQ handlers, these calls act the same as the258spinlock-safe calls.259 260 261.. _active_low_semantics:262 263The active low and open drain semantics264---------------------------------------265As a consumer should not have to care about the physical line level, all of the266gpiod_set_value_xxx() or gpiod_set_array_value_xxx() functions operate with267the *logical* value. With this they take the active low property into account.268This means that they check whether the GPIO is configured to be active low,269and if so, they manipulate the passed value before the physical line level is270driven.271 272The same is applicable for open drain or open source output lines: those do not273actively drive their output high (open drain) or low (open source), they just274switch their output to a high impedance value. The consumer should not need to275care. (For details read about open drain in driver.rst.)276 277With this, all the gpiod_set_(array)_value_xxx() functions interpret the278parameter "value" as "active" ("1") or "inactive" ("0"). The physical line279level will be driven accordingly.280 281As an example, if the active low property for a dedicated GPIO is set, and the282gpiod_set_(array)_value_xxx() passes "active" ("1"), the physical line level283will be driven low.284 285To summarize::286 287  Function (example)                 line property          physical line288  gpiod_set_raw_value(desc, 0);      don't care             low289  gpiod_set_raw_value(desc, 1);      don't care             high290  gpiod_set_value(desc, 0);          default (active high)  low291  gpiod_set_value(desc, 1);          default (active high)  high292  gpiod_set_value(desc, 0);          active low             high293  gpiod_set_value(desc, 1);          active low             low294  gpiod_set_value(desc, 0);          open drain             low295  gpiod_set_value(desc, 1);          open drain             high impedance296  gpiod_set_value(desc, 0);          open source            high impedance297  gpiod_set_value(desc, 1);          open source            high298 299It is possible to override these semantics using the set_raw/get_raw functions300but it should be avoided as much as possible, especially by system-agnostic drivers301which should not need to care about the actual physical line level and worry about302the logical value instead.303 304 305Accessing raw GPIO values306-------------------------307Consumers exist that need to manage the logical state of a GPIO line, i.e. the value308their device will actually receive, no matter what lies between it and the GPIO309line.310 311The following set of calls ignore the active-low or open drain property of a GPIO and312work on the raw line value::313 314	int gpiod_get_raw_value(const struct gpio_desc *desc)315	void gpiod_set_raw_value(struct gpio_desc *desc, int value)316	int gpiod_get_raw_value_cansleep(const struct gpio_desc *desc)317	void gpiod_set_raw_value_cansleep(struct gpio_desc *desc, int value)318	int gpiod_direction_output_raw(struct gpio_desc *desc, int value)319 320The active low state of a GPIO can also be queried and toggled using the321following calls::322 323	int gpiod_is_active_low(const struct gpio_desc *desc)324	void gpiod_toggle_active_low(struct gpio_desc *desc)325 326Note that these functions should only be used with great moderation; a driver327should not have to care about the physical line level or open drain semantics.328 329 330Access multiple GPIOs with a single function call331-------------------------------------------------332The following functions get or set the values of an array of GPIOs::333 334	int gpiod_get_array_value(unsigned int array_size,335				  struct gpio_desc **desc_array,336				  struct gpio_array *array_info,337				  unsigned long *value_bitmap);338	int gpiod_get_raw_array_value(unsigned int array_size,339				      struct gpio_desc **desc_array,340				      struct gpio_array *array_info,341				      unsigned long *value_bitmap);342	int gpiod_get_array_value_cansleep(unsigned int array_size,343					   struct gpio_desc **desc_array,344					   struct gpio_array *array_info,345					   unsigned long *value_bitmap);346	int gpiod_get_raw_array_value_cansleep(unsigned int array_size,347					   struct gpio_desc **desc_array,348					   struct gpio_array *array_info,349					   unsigned long *value_bitmap);350 351	int gpiod_set_array_value(unsigned int array_size,352				  struct gpio_desc **desc_array,353				  struct gpio_array *array_info,354				  unsigned long *value_bitmap)355	int gpiod_set_raw_array_value(unsigned int array_size,356				      struct gpio_desc **desc_array,357				      struct gpio_array *array_info,358				      unsigned long *value_bitmap)359	int gpiod_set_array_value_cansleep(unsigned int array_size,360					   struct gpio_desc **desc_array,361					   struct gpio_array *array_info,362					   unsigned long *value_bitmap)363	int gpiod_set_raw_array_value_cansleep(unsigned int array_size,364					       struct gpio_desc **desc_array,365					       struct gpio_array *array_info,366					       unsigned long *value_bitmap)367 368The array can be an arbitrary set of GPIOs. The functions will try to access369GPIOs belonging to the same bank or chip simultaneously if supported by the370corresponding chip driver. In that case a significantly improved performance371can be expected. If simultaneous access is not possible the GPIOs will be372accessed sequentially.373 374The functions take four arguments:375 376	* array_size	- the number of array elements377	* desc_array	- an array of GPIO descriptors378	* array_info	- optional information obtained from gpiod_get_array()379	* value_bitmap	- a bitmap to store the GPIOs' values (get) or380          a bitmap of values to assign to the GPIOs (set)381 382The descriptor array can be obtained using the gpiod_get_array() function383or one of its variants. If the group of descriptors returned by that function384matches the desired group of GPIOs, those GPIOs can be accessed by simply using385the struct gpio_descs returned by gpiod_get_array()::386 387	struct gpio_descs *my_gpio_descs = gpiod_get_array(...);388	gpiod_set_array_value(my_gpio_descs->ndescs, my_gpio_descs->desc,389			      my_gpio_descs->info, my_gpio_value_bitmap);390 391It is also possible to access a completely arbitrary array of descriptors. The392descriptors may be obtained using any combination of gpiod_get() and393gpiod_get_array(). Afterwards the array of descriptors has to be setup394manually before it can be passed to one of the above functions.  In that case,395array_info should be set to NULL.396 397Note that for optimal performance GPIOs belonging to the same chip should be398contiguous within the array of descriptors.399 400Still better performance may be achieved if array indexes of the descriptors401match hardware pin numbers of a single chip.  If an array passed to a get/set402array function matches the one obtained from gpiod_get_array() and array_info403associated with the array is also passed, the function may take a fast bitmap404processing path, passing the value_bitmap argument directly to the respective405.get/set_multiple() callback of the chip.  That allows for utilization of GPIO406banks as data I/O ports without much loss of performance.407 408The return value of gpiod_get_array_value() and its variants is 0 on success409or negative on error. Note the difference to gpiod_get_value(), which returns4100 or 1 on success to convey the GPIO value. With the array functions, the GPIO411values are stored in value_array rather than passed back as return value.412 413 414GPIOs mapped to IRQs415--------------------416GPIO lines can quite often be used as IRQs. You can get the IRQ number417corresponding to a given GPIO using the following call::418 419	int gpiod_to_irq(const struct gpio_desc *desc)420 421It will return an IRQ number, or a negative errno code if the mapping can't be422done (most likely because that particular GPIO cannot be used as IRQ). It is an423unchecked error to use a GPIO that wasn't set up as an input using424gpiod_direction_input(), or to use an IRQ number that didn't originally come425from gpiod_to_irq(). gpiod_to_irq() is not allowed to sleep.426 427Non-error values returned from gpiod_to_irq() can be passed to request_irq() or428free_irq(). They will often be stored into IRQ resources for platform devices,429by the board-specific initialization code. Note that IRQ trigger options are430part of the IRQ interface, e.g. IRQF_TRIGGER_FALLING, as are system wakeup431capabilities.432 433 434GPIOs and ACPI435==============436 437On ACPI systems, GPIOs are described by GpioIo()/GpioInt() resources listed by438the _CRS configuration objects of devices.  Those resources do not provide439connection IDs (names) for GPIOs, so it is necessary to use an additional440mechanism for this purpose.441 442Systems compliant with ACPI 5.1 or newer may provide a _DSD configuration object443which, among other things, may be used to provide connection IDs for specific444GPIOs described by the GpioIo()/GpioInt() resources in _CRS.  If that is the445case, it will be handled by the GPIO subsystem automatically.  However, if the446_DSD is not present, the mappings between GpioIo()/GpioInt() resources and GPIO447connection IDs need to be provided by device drivers.448 449For details refer to Documentation/firmware-guide/acpi/gpio-properties.rst450 451 452Interacting With the Legacy GPIO Subsystem453==========================================454Many kernel subsystems and drivers still handle GPIOs using the legacy455integer-based interface. It is strongly recommended to update these to the new456gpiod interface. For cases where both interfaces need to be used, the following457two functions allow to convert a GPIO descriptor into the GPIO integer namespace458and vice-versa::459 460	int desc_to_gpio(const struct gpio_desc *desc)461	struct gpio_desc *gpio_to_desc(unsigned gpio)462 463The GPIO number returned by desc_to_gpio() can safely be used as a parameter of464the gpio\_*() functions for as long as the GPIO descriptor `desc` is not freed.465All the same, a GPIO number passed to gpio_to_desc() must first be properly466acquired using e.g. gpio_request_one(), and the returned GPIO descriptor is only467considered valid until that GPIO number is released using gpio_free().468 469Freeing a GPIO obtained by one API with the other API is forbidden and an470unchecked error.471