io.c 3.9 KB

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  1. /*
  2. * Helper functions for I/O pins.
  3. *
  4. * Copyright (c) 2004 Axis Communications AB.
  5. */
  6. #include <linux/config.h>
  7. #include <linux/types.h>
  8. #include <linux/errno.h>
  9. #include <linux/init.h>
  10. #include <linux/string.h>
  11. #include <linux/ctype.h>
  12. #include <linux/kernel.h>
  13. #include <linux/module.h>
  14. #include <asm/io.h>
  15. #include <asm/arch/pinmux.h>
  16. #include <asm/arch/hwregs/gio_defs.h>
  17. struct crisv32_ioport crisv32_ioports[] =
  18. {
  19. {
  20. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pa_oe),
  21. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pa_dout),
  22. (unsigned long*)REG_ADDR(gio, regi_gio, r_pa_din),
  23. 8
  24. },
  25. {
  26. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pb_oe),
  27. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pb_dout),
  28. (unsigned long*)REG_ADDR(gio, regi_gio, r_pb_din),
  29. 18
  30. },
  31. {
  32. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pc_oe),
  33. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pc_dout),
  34. (unsigned long*)REG_ADDR(gio, regi_gio, r_pc_din),
  35. 18
  36. },
  37. {
  38. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pd_oe),
  39. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pd_dout),
  40. (unsigned long*)REG_ADDR(gio, regi_gio, r_pd_din),
  41. 18
  42. },
  43. {
  44. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pe_oe),
  45. (unsigned long*)REG_ADDR(gio, regi_gio, rw_pe_dout),
  46. (unsigned long*)REG_ADDR(gio, regi_gio, r_pe_din),
  47. 18
  48. }
  49. };
  50. #define NBR_OF_PORTS sizeof(crisv32_ioports)/sizeof(struct crisv32_ioport)
  51. struct crisv32_iopin crisv32_led1_green;
  52. struct crisv32_iopin crisv32_led1_red;
  53. struct crisv32_iopin crisv32_led2_green;
  54. struct crisv32_iopin crisv32_led2_red;
  55. struct crisv32_iopin crisv32_led3_green;
  56. struct crisv32_iopin crisv32_led3_red;
  57. /* Dummy port used when green LED and red LED is on the same bit */
  58. static unsigned long io_dummy;
  59. static struct crisv32_ioport dummy_port =
  60. {
  61. &io_dummy,
  62. &io_dummy,
  63. &io_dummy,
  64. 18
  65. };
  66. static struct crisv32_iopin dummy_led =
  67. {
  68. &dummy_port,
  69. 0
  70. };
  71. static int __init crisv32_io_init(void)
  72. {
  73. int ret = 0;
  74. /* Initialize LEDs */
  75. ret += crisv32_io_get_name(&crisv32_led1_green, CONFIG_ETRAX_LED1G);
  76. ret += crisv32_io_get_name(&crisv32_led1_red, CONFIG_ETRAX_LED1R);
  77. ret += crisv32_io_get_name(&crisv32_led2_green, CONFIG_ETRAX_LED2G);
  78. ret += crisv32_io_get_name(&crisv32_led2_red, CONFIG_ETRAX_LED2R);
  79. ret += crisv32_io_get_name(&crisv32_led3_green, CONFIG_ETRAX_LED3G);
  80. ret += crisv32_io_get_name(&crisv32_led3_red, CONFIG_ETRAX_LED3R);
  81. crisv32_io_set_dir(&crisv32_led1_green, crisv32_io_dir_out);
  82. crisv32_io_set_dir(&crisv32_led1_red, crisv32_io_dir_out);
  83. crisv32_io_set_dir(&crisv32_led2_green, crisv32_io_dir_out);
  84. crisv32_io_set_dir(&crisv32_led2_red, crisv32_io_dir_out);
  85. crisv32_io_set_dir(&crisv32_led3_green, crisv32_io_dir_out);
  86. crisv32_io_set_dir(&crisv32_led3_red, crisv32_io_dir_out);
  87. if (!strcmp(CONFIG_ETRAX_LED1G, CONFIG_ETRAX_LED1R))
  88. crisv32_led1_red = dummy_led;
  89. if (!strcmp(CONFIG_ETRAX_LED2G, CONFIG_ETRAX_LED2R))
  90. crisv32_led2_red = dummy_led;
  91. return ret;
  92. }
  93. __initcall(crisv32_io_init);
  94. int crisv32_io_get(struct crisv32_iopin* iopin,
  95. unsigned int port, unsigned int pin)
  96. {
  97. if (port > NBR_OF_PORTS)
  98. return -EINVAL;
  99. if (port > crisv32_ioports[port].pin_count)
  100. return -EINVAL;
  101. iopin->bit = 1 << pin;
  102. iopin->port = &crisv32_ioports[port];
  103. if (crisv32_pinmux_alloc(port, pin, pin, pinmux_gpio))
  104. return -EIO;
  105. return 0;
  106. }
  107. int crisv32_io_get_name(struct crisv32_iopin* iopin,
  108. char* name)
  109. {
  110. int port;
  111. int pin;
  112. if (toupper(*name) == 'P')
  113. name++;
  114. if (toupper(*name) < 'A' || toupper(*name) > 'E')
  115. return -EINVAL;
  116. port = toupper(*name) - 'A';
  117. name++;
  118. pin = simple_strtoul(name, NULL, 10);
  119. if (pin < 0 || pin > crisv32_ioports[port].pin_count)
  120. return -EINVAL;
  121. iopin->bit = 1 << pin;
  122. iopin->port = &crisv32_ioports[port];
  123. if (crisv32_pinmux_alloc(port, pin, pin, pinmux_gpio))
  124. return -EIO;
  125. return 0;
  126. }
  127. #ifdef CONFIG_PCI
  128. /* PCI I/O access stuff */
  129. struct cris_io_operations* cris_iops = NULL;
  130. EXPORT_SYMBOL(cris_iops);
  131. #endif