corgi_pm.c 7.0 KB

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  1. /*
  2. * Battery and Power Management code for the Sharp SL-C7xx
  3. *
  4. * Copyright (c) 2005 Richard Purdie
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License version 2 as
  8. * published by the Free Software Foundation.
  9. *
  10. */
  11. #include <linux/module.h>
  12. #include <linux/stat.h>
  13. #include <linux/init.h>
  14. #include <linux/kernel.h>
  15. #include <linux/delay.h>
  16. #include <linux/interrupt.h>
  17. #include <linux/platform_device.h>
  18. #include <linux/apm-emulation.h>
  19. #include <asm/irq.h>
  20. #include <asm/mach-types.h>
  21. #include <mach/hardware.h>
  22. #include <mach/sharpsl.h>
  23. #include <mach/corgi.h>
  24. #include <mach/pxa2xx-regs.h>
  25. #include <mach/pxa2xx-gpio.h>
  26. #include "sharpsl.h"
  27. #define SHARPSL_CHARGE_ON_VOLT 0x99 /* 2.9V */
  28. #define SHARPSL_CHARGE_ON_TEMP 0xe0 /* 2.9V */
  29. #define SHARPSL_CHARGE_ON_ACIN_HIGH 0x9b /* 6V */
  30. #define SHARPSL_CHARGE_ON_ACIN_LOW 0x34 /* 2V */
  31. #define SHARPSL_FATAL_ACIN_VOLT 182 /* 3.45V */
  32. #define SHARPSL_FATAL_NOACIN_VOLT 170 /* 3.40V */
  33. static void corgi_charger_init(void)
  34. {
  35. pxa_gpio_mode(CORGI_GPIO_ADC_TEMP_ON | GPIO_OUT);
  36. pxa_gpio_mode(CORGI_GPIO_CHRG_ON | GPIO_OUT);
  37. pxa_gpio_mode(CORGI_GPIO_CHRG_UKN | GPIO_OUT);
  38. pxa_gpio_mode(CORGI_GPIO_KEY_INT | GPIO_IN);
  39. }
  40. static void corgi_measure_temp(int on)
  41. {
  42. if (on)
  43. GPSR(CORGI_GPIO_ADC_TEMP_ON) = GPIO_bit(CORGI_GPIO_ADC_TEMP_ON);
  44. else
  45. GPCR(CORGI_GPIO_ADC_TEMP_ON) = GPIO_bit(CORGI_GPIO_ADC_TEMP_ON);
  46. }
  47. static void corgi_charge(int on)
  48. {
  49. if (on) {
  50. if (machine_is_corgi() && (sharpsl_pm.flags & SHARPSL_SUSPENDED)) {
  51. GPCR(CORGI_GPIO_CHRG_ON) = GPIO_bit(CORGI_GPIO_CHRG_ON);
  52. GPSR(CORGI_GPIO_CHRG_UKN) = GPIO_bit(CORGI_GPIO_CHRG_UKN);
  53. } else {
  54. GPSR(CORGI_GPIO_CHRG_ON) = GPIO_bit(CORGI_GPIO_CHRG_ON);
  55. GPCR(CORGI_GPIO_CHRG_UKN) = GPIO_bit(CORGI_GPIO_CHRG_UKN);
  56. }
  57. } else {
  58. GPCR(CORGI_GPIO_CHRG_ON) = GPIO_bit(CORGI_GPIO_CHRG_ON);
  59. GPCR(CORGI_GPIO_CHRG_UKN) = GPIO_bit(CORGI_GPIO_CHRG_UKN);
  60. }
  61. }
  62. static void corgi_discharge(int on)
  63. {
  64. if (on)
  65. GPSR(CORGI_GPIO_DISCHARGE_ON) = GPIO_bit(CORGI_GPIO_DISCHARGE_ON);
  66. else
  67. GPCR(CORGI_GPIO_DISCHARGE_ON) = GPIO_bit(CORGI_GPIO_DISCHARGE_ON);
  68. }
  69. static void corgi_presuspend(void)
  70. {
  71. int i;
  72. unsigned long wakeup_mask;
  73. /* charging , so CHARGE_ON bit is HIGH during OFF. */
  74. if (READ_GPIO_BIT(CORGI_GPIO_CHRG_ON))
  75. PGSR1 |= GPIO_bit(CORGI_GPIO_CHRG_ON);
  76. else
  77. PGSR1 &= ~GPIO_bit(CORGI_GPIO_CHRG_ON);
  78. if (READ_GPIO_BIT(CORGI_GPIO_LED_ORANGE))
  79. PGSR0 |= GPIO_bit(CORGI_GPIO_LED_ORANGE);
  80. else
  81. PGSR0 &= ~GPIO_bit(CORGI_GPIO_LED_ORANGE);
  82. if (READ_GPIO_BIT(CORGI_GPIO_CHRG_UKN))
  83. PGSR1 |= GPIO_bit(CORGI_GPIO_CHRG_UKN);
  84. else
  85. PGSR1 &= ~GPIO_bit(CORGI_GPIO_CHRG_UKN);
  86. /* Resume on keyboard power key */
  87. PGSR2 = (PGSR2 & ~CORGI_GPIO_ALL_STROBE_BIT) | CORGI_GPIO_STROBE_BIT(0);
  88. wakeup_mask = GPIO_bit(CORGI_GPIO_KEY_INT) | GPIO_bit(CORGI_GPIO_WAKEUP) | GPIO_bit(CORGI_GPIO_AC_IN) | GPIO_bit(CORGI_GPIO_CHRG_FULL);
  89. if (!machine_is_corgi())
  90. wakeup_mask |= GPIO_bit(CORGI_GPIO_MAIN_BAT_LOW);
  91. PWER = wakeup_mask | PWER_RTC;
  92. PRER = wakeup_mask;
  93. PFER = wakeup_mask;
  94. for (i = 0; i <=15; i++) {
  95. if (PRER & PFER & GPIO_bit(i)) {
  96. if (GPLR0 & GPIO_bit(i) )
  97. PRER &= ~GPIO_bit(i);
  98. else
  99. PFER &= ~GPIO_bit(i);
  100. }
  101. }
  102. }
  103. static void corgi_postsuspend(void)
  104. {
  105. }
  106. /*
  107. * Check what brought us out of the suspend.
  108. * Return: 0 to sleep, otherwise wake
  109. */
  110. static int corgi_should_wakeup(unsigned int resume_on_alarm)
  111. {
  112. int is_resume = 0;
  113. dev_dbg(sharpsl_pm.dev, "GPLR0 = %x,%x\n", GPLR0, PEDR);
  114. if ((PEDR & GPIO_bit(CORGI_GPIO_AC_IN))) {
  115. if (sharpsl_pm.machinfo->read_devdata(SHARPSL_STATUS_ACIN)) {
  116. /* charge on */
  117. dev_dbg(sharpsl_pm.dev, "ac insert\n");
  118. sharpsl_pm.flags |= SHARPSL_DO_OFFLINE_CHRG;
  119. } else {
  120. /* charge off */
  121. dev_dbg(sharpsl_pm.dev, "ac remove\n");
  122. sharpsl_pm_led(SHARPSL_LED_OFF);
  123. sharpsl_pm.machinfo->charge(0);
  124. sharpsl_pm.charge_mode = CHRG_OFF;
  125. }
  126. }
  127. if ((PEDR & GPIO_bit(CORGI_GPIO_CHRG_FULL)))
  128. dev_dbg(sharpsl_pm.dev, "Charge full interrupt\n");
  129. if (PEDR & GPIO_bit(CORGI_GPIO_KEY_INT))
  130. is_resume |= GPIO_bit(CORGI_GPIO_KEY_INT);
  131. if (PEDR & GPIO_bit(CORGI_GPIO_WAKEUP))
  132. is_resume |= GPIO_bit(CORGI_GPIO_WAKEUP);
  133. if (resume_on_alarm && (PEDR & PWER_RTC))
  134. is_resume |= PWER_RTC;
  135. dev_dbg(sharpsl_pm.dev, "is_resume: %x\n",is_resume);
  136. return is_resume;
  137. }
  138. static unsigned long corgi_charger_wakeup(void)
  139. {
  140. return ~GPLR0 & ( GPIO_bit(CORGI_GPIO_AC_IN) | GPIO_bit(CORGI_GPIO_KEY_INT) | GPIO_bit(CORGI_GPIO_WAKEUP) );
  141. }
  142. unsigned long corgipm_read_devdata(int type)
  143. {
  144. switch(type) {
  145. case SHARPSL_STATUS_ACIN:
  146. return ((GPLR(CORGI_GPIO_AC_IN) & GPIO_bit(CORGI_GPIO_AC_IN)) != 0);
  147. case SHARPSL_STATUS_LOCK:
  148. return READ_GPIO_BIT(sharpsl_pm.machinfo->gpio_batlock);
  149. case SHARPSL_STATUS_CHRGFULL:
  150. return READ_GPIO_BIT(sharpsl_pm.machinfo->gpio_batfull);
  151. case SHARPSL_STATUS_FATAL:
  152. return READ_GPIO_BIT(sharpsl_pm.machinfo->gpio_fatal);
  153. case SHARPSL_ACIN_VOLT:
  154. return sharpsl_pm_pxa_read_max1111(MAX1111_ACIN_VOLT);
  155. case SHARPSL_BATT_TEMP:
  156. return sharpsl_pm_pxa_read_max1111(MAX1111_BATT_TEMP);
  157. case SHARPSL_BATT_VOLT:
  158. default:
  159. return sharpsl_pm_pxa_read_max1111(MAX1111_BATT_VOLT);
  160. }
  161. }
  162. static struct sharpsl_charger_machinfo corgi_pm_machinfo = {
  163. .init = corgi_charger_init,
  164. .exit = NULL,
  165. .gpio_batlock = CORGI_GPIO_BAT_COVER,
  166. .gpio_acin = CORGI_GPIO_AC_IN,
  167. .gpio_batfull = CORGI_GPIO_CHRG_FULL,
  168. .discharge = corgi_discharge,
  169. .charge = corgi_charge,
  170. .measure_temp = corgi_measure_temp,
  171. .presuspend = corgi_presuspend,
  172. .postsuspend = corgi_postsuspend,
  173. .read_devdata = corgipm_read_devdata,
  174. .charger_wakeup = corgi_charger_wakeup,
  175. .should_wakeup = corgi_should_wakeup,
  176. #if defined(CONFIG_LCD_CORGI)
  177. .backlight_limit = corgi_lcd_limit_intensity,
  178. #elif defined(CONFIG_BACKLIGHT_CORGI)
  179. .backlight_limit = corgibl_limit_intensity,
  180. #endif
  181. .charge_on_volt = SHARPSL_CHARGE_ON_VOLT,
  182. .charge_on_temp = SHARPSL_CHARGE_ON_TEMP,
  183. .charge_acin_high = SHARPSL_CHARGE_ON_ACIN_HIGH,
  184. .charge_acin_low = SHARPSL_CHARGE_ON_ACIN_LOW,
  185. .fatal_acin_volt = SHARPSL_FATAL_ACIN_VOLT,
  186. .fatal_noacin_volt= SHARPSL_FATAL_NOACIN_VOLT,
  187. .bat_levels = 40,
  188. .bat_levels_noac = spitz_battery_levels_noac,
  189. .bat_levels_acin = spitz_battery_levels_acin,
  190. .status_high_acin = 188,
  191. .status_low_acin = 178,
  192. .status_high_noac = 185,
  193. .status_low_noac = 175,
  194. };
  195. static struct platform_device *corgipm_device;
  196. static int __devinit corgipm_init(void)
  197. {
  198. int ret;
  199. if (!machine_is_corgi() && !machine_is_shepherd()
  200. && !machine_is_husky())
  201. return -ENODEV;
  202. corgipm_device = platform_device_alloc("sharpsl-pm", -1);
  203. if (!corgipm_device)
  204. return -ENOMEM;
  205. if (!machine_is_corgi())
  206. corgi_pm_machinfo.batfull_irq = 1;
  207. corgipm_device->dev.platform_data = &corgi_pm_machinfo;
  208. ret = platform_device_add(corgipm_device);
  209. if (ret)
  210. platform_device_put(corgipm_device);
  211. return ret;
  212. }
  213. static void corgipm_exit(void)
  214. {
  215. platform_device_unregister(corgipm_device);
  216. }
  217. module_init(corgipm_init);
  218. module_exit(corgipm_exit);