GPIO.txt 6.9 KB

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  1. S3C2410 GPIO Control
  2. ====================
  3. Introduction
  4. ------------
  5. The s3c2410 kernel provides an interface to configure and
  6. manipulate the state of the GPIO pins, and find out other
  7. information about them.
  8. There are a number of conditions attached to the configuration
  9. of the s3c2410 GPIO system, please read the Samsung provided
  10. data-sheet/users manual to find out the complete list.
  11. See Documentation/arm/Samsung/GPIO.txt for the core implemetation.
  12. GPIOLIB
  13. -------
  14. With the event of the GPIOLIB in drivers/gpio, support for some
  15. of the GPIO functions such as reading and writing a pin will
  16. be removed in favour of this common access method.
  17. Once all the extant drivers have been converted, the functions
  18. listed below will be removed (they may be marked as __deprecated
  19. in the near future).
  20. The following functions now either have a s3c_ specific variant
  21. or are merged into gpiolib. See the definitions in
  22. arch/arm/plat-samsung/include/plat/gpio-cfg.h:
  23. s3c2410_gpio_setpin() gpio_set_value() or gpio_direction_output()
  24. s3c2410_gpio_getpin() gpio_get_value() or gpio_direction_input()
  25. s3c2410_gpio_getirq() gpio_to_irq()
  26. s3c2410_gpio_cfgpin() s3c_gpio_cfgpin()
  27. s3c2410_gpio_getcfg() s3c_gpio_getcfg()
  28. s3c2410_gpio_pullup() s3c_gpio_setpull()
  29. GPIOLIB conversion
  30. ------------------
  31. If you need to convert your board or driver to use gpiolib from the exiting
  32. s3c2410 api, then here are some notes on the process.
  33. 1) If your board is exclusively using an GPIO, say to control peripheral
  34. power, then it will require to claim the gpio with gpio_request() before
  35. it can use it.
  36. It is recommended to check the return value, with at least WARN_ON()
  37. during initialisation.
  38. 2) The s3c2410_gpio_cfgpin() can be directly replaced with s3c_gpio_cfgpin()
  39. as they have the same arguments, and can either take the pin specific
  40. values, or the more generic special-function-number arguments.
  41. 3) s3c2410_gpio_pullup() changs have the problem that whilst the
  42. s3c2410_gpio_pullup(x, 1) can be easily translated to the
  43. s3c_gpio_setpull(x, S3C_GPIO_PULL_NONE), the s3c2410_gpio_pullup(x, 0)
  44. are not so easy.
  45. The s3c2410_gpio_pullup(x, 0) case enables the pull-up (or in the case
  46. of some of the devices, a pull-down) and as such the new API distinguishes
  47. between the UP and DOWN case. There is currently no 'just turn on' setting
  48. which may be required if this becomes a problem.
  49. 4) s3c2410_gpio_setpin() can be replaced by gpio_set_value(), the old call
  50. does not implicitly configure the relevant gpio to output. The gpio
  51. direction should be changed before using gpio_set_value().
  52. 5) s3c2410_gpio_getpin() is replaceable by gpio_get_value() if the pin
  53. has been set to input. It is currently unknown what the behaviour is
  54. when using gpio_get_value() on an output pin (s3c2410_gpio_getpin
  55. would return the value the pin is supposed to be outputting).
  56. 6) s3c2410_gpio_getirq() should be directly replacable with the
  57. gpio_to_irq() call.
  58. The s3c2410_gpio and gpio_ calls have always operated on the same gpio
  59. numberspace, so there is no problem with converting the gpio numbering
  60. between the calls.
  61. Headers
  62. -------
  63. See arch/arm/mach-s3c2410/include/mach/regs-gpio.h for the list
  64. of GPIO pins, and the configuration values for them. This
  65. is included by using #include <mach/regs-gpio.h>
  66. The GPIO management functions are defined in the hardware
  67. header arch/arm/mach-s3c2410/include/mach/hardware.h which can be
  68. included by #include <mach/hardware.h>
  69. A useful amount of documentation can be found in the hardware
  70. header on how the GPIO functions (and others) work.
  71. Whilst a number of these functions do make some checks on what
  72. is passed to them, for speed of use, they may not always ensure
  73. that the user supplied data to them is correct.
  74. PIN Numbers
  75. -----------
  76. Each pin has an unique number associated with it in regs-gpio.h,
  77. eg S3C2410_GPA(0) or S3C2410_GPF(1). These defines are used to tell
  78. the GPIO functions which pin is to be used.
  79. With the conversion to gpiolib, there is no longer a direct conversion
  80. from gpio pin number to register base address as in earlier kernels. This
  81. is due to the number space required for newer SoCs where the later
  82. GPIOs are not contiguous.
  83. Configuring a pin
  84. -----------------
  85. The following function allows the configuration of a given pin to
  86. be changed.
  87. void s3c2410_gpio_cfgpin(unsigned int pin, unsigned int function);
  88. Eg:
  89. s3c2410_gpio_cfgpin(S3C2410_GPA(0), S3C2410_GPA0_ADDR0);
  90. s3c2410_gpio_cfgpin(S3C2410_GPE(8), S3C2410_GPE8_SDDAT1);
  91. which would turn GPA(0) into the lowest Address line A0, and set
  92. GPE(8) to be connected to the SDIO/MMC controller's SDDAT1 line.
  93. The s3c_gpio_cfgpin() call is a functional replacement for this call.
  94. Reading the current configuration
  95. ---------------------------------
  96. The current configuration of a pin can be read by using:
  97. s3c2410_gpio_getcfg(unsigned int pin);
  98. The return value will be from the same set of values which can be
  99. passed to s3c2410_gpio_cfgpin().
  100. The s3c_gpio_getcfg() call should be a functional replacement for
  101. this call.
  102. Configuring a pull-up resistor
  103. ------------------------------
  104. A large proportion of the GPIO pins on the S3C2410 can have weak
  105. pull-up resistors enabled. This can be configured by the following
  106. function:
  107. void s3c2410_gpio_pullup(unsigned int pin, unsigned int to);
  108. Where the to value is zero to set the pull-up off, and 1 to enable
  109. the specified pull-up. Any other values are currently undefined.
  110. The s3c_gpio_setpull() offers similar functionality, but with the
  111. ability to encode whether the pull is up or down. Currently there
  112. is no 'just on' state, so up or down must be selected.
  113. Getting the state of a PIN
  114. --------------------------
  115. The state of a pin can be read by using the function:
  116. unsigned int s3c2410_gpio_getpin(unsigned int pin);
  117. This will return either zero or non-zero. Do not count on this
  118. function returning 1 if the pin is set.
  119. This call is now implemented by the relevant gpiolib calls, convert
  120. your board or driver to use gpiolib.
  121. Setting the state of a PIN
  122. --------------------------
  123. The value an pin is outputing can be modified by using the following:
  124. void s3c2410_gpio_setpin(unsigned int pin, unsigned int to);
  125. Which sets the given pin to the value. Use 0 to write 0, and 1 to
  126. set the output to 1.
  127. This call is now implemented by the relevant gpiolib calls, convert
  128. your board or driver to use gpiolib.
  129. Getting the IRQ number associated with a PIN
  130. --------------------------------------------
  131. The following function can map the given pin number to an IRQ
  132. number to pass to the IRQ system.
  133. int s3c2410_gpio_getirq(unsigned int pin);
  134. Note, not all pins have an IRQ.
  135. This call is now implemented by the relevant gpiolib calls, convert
  136. your board or driver to use gpiolib.
  137. Authour
  138. -------
  139. Ben Dooks, 03 October 2004
  140. Copyright 2004 Ben Dooks, Simtec Electronics