io.h 7.2 KB

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  1. #ifndef _ASM_ARCH_CRIS_IO_H
  2. #define _ASM_ARCH_CRIS_IO_H
  3. #include <asm/arch/svinto.h>
  4. #include <linux/config.h>
  5. /* Etrax shadow registers - which live in arch/cris/kernel/shadows.c */
  6. extern unsigned long gen_config_ii_shadow;
  7. extern unsigned long port_g_data_shadow;
  8. extern unsigned char port_pa_dir_shadow;
  9. extern unsigned char port_pa_data_shadow;
  10. extern unsigned char port_pb_i2c_shadow;
  11. extern unsigned char port_pb_config_shadow;
  12. extern unsigned char port_pb_dir_shadow;
  13. extern unsigned char port_pb_data_shadow;
  14. extern unsigned long r_timer_ctrl_shadow;
  15. extern unsigned long port_cse1_shadow;
  16. extern unsigned long port_csp0_shadow;
  17. extern unsigned long port_csp4_shadow;
  18. extern volatile unsigned long *port_cse1_addr;
  19. extern volatile unsigned long *port_csp0_addr;
  20. extern volatile unsigned long *port_csp4_addr;
  21. /* macro for setting regs through a shadow -
  22. * r = register name (like R_PORT_PA_DATA)
  23. * s = shadow name (like port_pa_data_shadow)
  24. * b = bit number
  25. * v = value (0 or 1)
  26. */
  27. #define REG_SHADOW_SET(r,s,b,v) *r = s = (s & ~(1 << (b))) | ((v) << (b))
  28. /* The LED's on various Etrax-based products are set differently. */
  29. #if defined(CONFIG_ETRAX_NO_LEDS) || defined(CONFIG_SVINTO_SIM)
  30. #undef CONFIG_ETRAX_PA_LEDS
  31. #undef CONFIG_ETRAX_PB_LEDS
  32. #undef CONFIG_ETRAX_CSP0_LEDS
  33. #define LED_NETWORK_SET_G(x)
  34. #define LED_NETWORK_SET_R(x)
  35. #define LED_ACTIVE_SET_G(x)
  36. #define LED_ACTIVE_SET_R(x)
  37. #define LED_DISK_WRITE(x)
  38. #define LED_DISK_READ(x)
  39. #endif
  40. #if !defined(CONFIG_ETRAX_CSP0_LEDS)
  41. #define LED_BIT_SET(x)
  42. #define LED_BIT_CLR(x)
  43. #endif
  44. #define LED_OFF 0x00
  45. #define LED_GREEN 0x01
  46. #define LED_RED 0x02
  47. #define LED_ORANGE (LED_GREEN | LED_RED)
  48. #if CONFIG_ETRAX_LED1G == CONFIG_ETRAX_LED1R
  49. #define LED_NETWORK_SET(x) \
  50. do { \
  51. LED_NETWORK_SET_G((x) & LED_GREEN); \
  52. } while (0)
  53. #else
  54. #define LED_NETWORK_SET(x) \
  55. do { \
  56. LED_NETWORK_SET_G((x) & LED_GREEN); \
  57. LED_NETWORK_SET_R((x) & LED_RED); \
  58. } while (0)
  59. #endif
  60. #if CONFIG_ETRAX_LED2G == CONFIG_ETRAX_LED2R
  61. #define LED_ACTIVE_SET(x) \
  62. do { \
  63. LED_ACTIVE_SET_G((x) & LED_GREEN); \
  64. } while (0)
  65. #else
  66. #define LED_ACTIVE_SET(x) \
  67. do { \
  68. LED_ACTIVE_SET_G((x) & LED_GREEN); \
  69. LED_ACTIVE_SET_R((x) & LED_RED); \
  70. } while (0)
  71. #endif
  72. #ifdef CONFIG_ETRAX_PA_LEDS
  73. #define LED_NETWORK_SET_G(x) \
  74. REG_SHADOW_SET(R_PORT_PA_DATA, port_pa_data_shadow, CONFIG_ETRAX_LED1G, !(x))
  75. #define LED_NETWORK_SET_R(x) \
  76. REG_SHADOW_SET(R_PORT_PA_DATA, port_pa_data_shadow, CONFIG_ETRAX_LED1R, !(x))
  77. #define LED_ACTIVE_SET_G(x) \
  78. REG_SHADOW_SET(R_PORT_PA_DATA, port_pa_data_shadow, CONFIG_ETRAX_LED2G, !(x))
  79. #define LED_ACTIVE_SET_R(x) \
  80. REG_SHADOW_SET(R_PORT_PA_DATA, port_pa_data_shadow, CONFIG_ETRAX_LED2R, !(x))
  81. #define LED_DISK_WRITE(x) \
  82. do{\
  83. REG_SHADOW_SET(R_PORT_PA_DATA, port_pa_data_shadow, CONFIG_ETRAX_LED3G, !(x));\
  84. REG_SHADOW_SET(R_PORT_PA_DATA, port_pa_data_shadow, CONFIG_ETRAX_LED3R, !(x));\
  85. }while(0)
  86. #define LED_DISK_READ(x) \
  87. REG_SHADOW_SET(R_PORT_PA_DATA, port_pa_data_shadow, CONFIG_ETRAX_LED3G, !(x))
  88. #endif
  89. #ifdef CONFIG_ETRAX_PB_LEDS
  90. #define LED_NETWORK_SET_G(x) \
  91. REG_SHADOW_SET(R_PORT_PB_DATA, port_pb_data_shadow, CONFIG_ETRAX_LED1G, !(x))
  92. #define LED_NETWORK_SET_R(x) \
  93. REG_SHADOW_SET(R_PORT_PB_DATA, port_pb_data_shadow, CONFIG_ETRAX_LED1R, !(x))
  94. #define LED_ACTIVE_SET_G(x) \
  95. REG_SHADOW_SET(R_PORT_PB_DATA, port_pb_data_shadow, CONFIG_ETRAX_LED2G, !(x))
  96. #define LED_ACTIVE_SET_R(x) \
  97. REG_SHADOW_SET(R_PORT_PB_DATA, port_pb_data_shadow, CONFIG_ETRAX_LED2R, !(x))
  98. #define LED_DISK_WRITE(x) \
  99. do{\
  100. REG_SHADOW_SET(R_PORT_PB_DATA, port_pb_data_shadow, CONFIG_ETRAX_LED3G, !(x));\
  101. REG_SHADOW_SET(R_PORT_PB_DATA, port_pb_data_shadow, CONFIG_ETRAX_LED3R, !(x));\
  102. }while(0)
  103. #define LED_DISK_READ(x) \
  104. REG_SHADOW_SET(R_PORT_PB_DATA, port_pb_data_shadow, CONFIG_ETRAX_LED3G, !(x))
  105. #endif
  106. #ifdef CONFIG_ETRAX_CSP0_LEDS
  107. #define CONFIGURABLE_LEDS\
  108. ((1 << CONFIG_ETRAX_LED1G ) | (1 << CONFIG_ETRAX_LED1R ) |\
  109. (1 << CONFIG_ETRAX_LED2G ) | (1 << CONFIG_ETRAX_LED2R ) |\
  110. (1 << CONFIG_ETRAX_LED3G ) | (1 << CONFIG_ETRAX_LED3R ) |\
  111. (1 << CONFIG_ETRAX_LED4G ) | (1 << CONFIG_ETRAX_LED4R ) |\
  112. (1 << CONFIG_ETRAX_LED5G ) | (1 << CONFIG_ETRAX_LED5R ) |\
  113. (1 << CONFIG_ETRAX_LED6G ) | (1 << CONFIG_ETRAX_LED6R ) |\
  114. (1 << CONFIG_ETRAX_LED7G ) | (1 << CONFIG_ETRAX_LED7R ) |\
  115. (1 << CONFIG_ETRAX_LED8Y ) | (1 << CONFIG_ETRAX_LED9Y ) |\
  116. (1 << CONFIG_ETRAX_LED10Y ) |(1 << CONFIG_ETRAX_LED11Y )|\
  117. (1 << CONFIG_ETRAX_LED12R ))
  118. #define LED_NETWORK_SET_G(x) \
  119. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_LED1G, !(x))
  120. #define LED_NETWORK_SET_R(x) \
  121. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_LED1R, !(x))
  122. #define LED_ACTIVE_SET_G(x) \
  123. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_LED2G, !(x))
  124. #define LED_ACTIVE_SET_R(x) \
  125. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_LED2R, !(x))
  126. #define LED_DISK_WRITE(x) \
  127. do{\
  128. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_LED3G, !(x));\
  129. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_LED3R, !(x));\
  130. }while(0)
  131. #define LED_DISK_READ(x) \
  132. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_LED3G, !(x))
  133. #define LED_BIT_SET(x)\
  134. do{\
  135. if((( 1 << x) & CONFIGURABLE_LEDS) != 0)\
  136. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, x, 1);\
  137. }while(0)
  138. #define LED_BIT_CLR(x)\
  139. do{\
  140. if((( 1 << x) & CONFIGURABLE_LEDS) != 0)\
  141. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, x, 0);\
  142. }while(0)
  143. #endif
  144. #
  145. #ifdef CONFIG_ETRAX_SOFT_SHUTDOWN
  146. #define SOFT_SHUTDOWN() \
  147. REG_SHADOW_SET(port_csp0_addr, port_csp0_shadow, CONFIG_ETRAX_SHUTDOWN_BIT, 1)
  148. #else
  149. #define SOFT_SHUTDOWN()
  150. #endif
  151. /* Console I/O for simulated etrax100. Use #ifdef so erroneous
  152. use will be evident. */
  153. #ifdef CONFIG_SVINTO_SIM
  154. /* Let's use the ucsim interface since it lets us do write(2, ...) */
  155. #define SIMCOUT(s,len) \
  156. asm ("moveq 4,$r9 \n\t" \
  157. "moveq 2,$r10 \n\t" \
  158. "move.d %0,$r11 \n\t" \
  159. "move.d %1,$r12 \n\t" \
  160. "push $irp \n\t" \
  161. "move 0f,$irp \n\t" \
  162. "jump -6809 \n" \
  163. "0: \n\t" \
  164. "pop $irp" \
  165. : : "rm" (s), "rm" (len) : "r9","r10","r11","r12","memory")
  166. #define TRACE_ON() __extension__ \
  167. ({ int _Foofoo; __asm__ volatile ("bmod [%0],%0" : "=r" (_Foofoo) : "0" \
  168. (255)); _Foofoo; })
  169. #define TRACE_OFF() do { __asm__ volatile ("bmod [%0],%0" :: "r" (254)); } while (0)
  170. #define SIM_END() do { __asm__ volatile ("bmod [%0],%0" :: "r" (28)); } while (0)
  171. #define CRIS_CYCLES() __extension__ \
  172. ({ unsigned long c; asm ("bmod [%1],%0" : "=r" (c) : "r" (27)); c;})
  173. #endif /* ! defined CONFIG_SVINTO_SIM */
  174. #endif