furi_hal_power.c 12 KB

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  1. #include <furi_hal_power.h>
  2. #include <furi_hal_clock.h>
  3. #include <furi_hal_bt.h>
  4. #include <stm32wbxx_ll_rcc.h>
  5. #include <stm32wbxx_ll_pwr.h>
  6. #include <stm32wbxx_ll_hsem.h>
  7. #include <stm32wbxx_ll_cortex.h>
  8. #include <stm32wbxx_ll_gpio.h>
  9. #include <main.h>
  10. #include <hw_conf.h>
  11. #include <bq27220.h>
  12. #include <bq25896.h>
  13. #include <furi.h>
  14. #define TAG "FuriHalPower"
  15. typedef struct {
  16. volatile uint8_t insomnia;
  17. volatile uint8_t deep_insomnia;
  18. volatile uint8_t suppress_charge;
  19. } FuriHalPower;
  20. static volatile FuriHalPower furi_hal_power = {
  21. .insomnia = 0,
  22. .deep_insomnia = 1,
  23. .suppress_charge = 0,
  24. };
  25. const ParamCEDV cedv = {
  26. .cedv_conf.gauge_conf =
  27. {
  28. .CCT = 1,
  29. .CSYNC = 0,
  30. .EDV_CMP = 0,
  31. .SC = 1,
  32. .FIXED_EDV0 = 1,
  33. .FCC_LIM = 1,
  34. .FC_FOR_VDQ = 1,
  35. .IGNORE_SD = 1,
  36. .SME0 = 0,
  37. },
  38. .full_charge_cap = 2100,
  39. .design_cap = 2100,
  40. .EDV0 = 3300,
  41. .EDV1 = 3321,
  42. .EDV2 = 3355,
  43. .EMF = 3679,
  44. .C0 = 430,
  45. .C1 = 0,
  46. .R1 = 408,
  47. .R0 = 334,
  48. .T0 = 4626,
  49. .TC = 11,
  50. .DOD0 = 4044,
  51. .DOD10 = 3905,
  52. .DOD20 = 3807,
  53. .DOD30 = 3718,
  54. .DOD40 = 3642,
  55. .DOD50 = 3585,
  56. .DOD60 = 3546,
  57. .DOD70 = 3514,
  58. .DOD80 = 3477,
  59. .DOD90 = 3411,
  60. .DOD100 = 3299,
  61. };
  62. void HAL_RCC_CSSCallback(void) {
  63. // TODO: notify user about issue with HSE
  64. furi_hal_power_reset();
  65. }
  66. void furi_hal_power_init() {
  67. LL_PWR_SetRegulVoltageScaling(LL_PWR_REGU_VOLTAGE_SCALE1);
  68. LL_PWR_SMPS_SetMode(LL_PWR_SMPS_STEP_DOWN);
  69. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  70. bq27220_init(&furi_hal_i2c_handle_power, &cedv);
  71. bq25896_init(&furi_hal_i2c_handle_power);
  72. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  73. FURI_LOG_I(TAG, "Init OK");
  74. }
  75. uint16_t furi_hal_power_insomnia_level() {
  76. return furi_hal_power.insomnia;
  77. }
  78. void furi_hal_power_insomnia_enter() {
  79. vTaskSuspendAll();
  80. furi_hal_power.insomnia++;
  81. xTaskResumeAll();
  82. }
  83. void furi_hal_power_insomnia_exit() {
  84. vTaskSuspendAll();
  85. furi_hal_power.insomnia--;
  86. xTaskResumeAll();
  87. }
  88. bool furi_hal_power_sleep_available() {
  89. return furi_hal_power.insomnia == 0;
  90. }
  91. bool furi_hal_power_deep_sleep_available() {
  92. return furi_hal_bt_is_alive() && furi_hal_power.deep_insomnia == 0;
  93. }
  94. void furi_hal_power_light_sleep() {
  95. __WFI();
  96. }
  97. void furi_hal_power_deep_sleep() {
  98. while(LL_HSEM_1StepLock(HSEM, CFG_HW_RCC_SEMID))
  99. ;
  100. if(!LL_HSEM_1StepLock(HSEM, CFG_HW_ENTRY_STOP_MODE_SEMID)) {
  101. if(LL_PWR_IsActiveFlag_C2DS()) {
  102. // Release ENTRY_STOP_MODE semaphore
  103. LL_HSEM_ReleaseLock(HSEM, CFG_HW_ENTRY_STOP_MODE_SEMID, 0);
  104. // The switch on HSI before entering Stop Mode is required
  105. furi_hal_clock_switch_to_hsi();
  106. }
  107. } else {
  108. /**
  109. * The switch on HSI before entering Stop Mode is required
  110. */
  111. furi_hal_clock_switch_to_hsi();
  112. }
  113. /* Release RCC semaphore */
  114. LL_HSEM_ReleaseLock(HSEM, CFG_HW_RCC_SEMID, 0);
  115. // Prepare deep sleep
  116. LL_PWR_SetPowerMode(LL_PWR_MODE_STOP1);
  117. LL_LPM_EnableDeepSleep();
  118. #if defined(__CC_ARM)
  119. // Force store operations
  120. __force_stores();
  121. #endif
  122. __WFI();
  123. /* Release ENTRY_STOP_MODE semaphore */
  124. LL_HSEM_ReleaseLock(HSEM, CFG_HW_ENTRY_STOP_MODE_SEMID, 0);
  125. while(LL_HSEM_1StepLock(HSEM, CFG_HW_RCC_SEMID))
  126. ;
  127. if(LL_RCC_GetSysClkSource() != LL_RCC_SYS_CLKSOURCE_STATUS_PLL) {
  128. furi_hal_clock_switch_to_pll();
  129. }
  130. LL_HSEM_ReleaseLock(HSEM, CFG_HW_RCC_SEMID, 0);
  131. }
  132. void furi_hal_power_sleep() {
  133. if(furi_hal_power_deep_sleep_available()) {
  134. furi_hal_power_deep_sleep();
  135. } else {
  136. furi_hal_power_light_sleep();
  137. }
  138. }
  139. uint8_t furi_hal_power_get_pct() {
  140. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  141. uint8_t ret = bq27220_get_state_of_charge(&furi_hal_i2c_handle_power);
  142. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  143. return ret;
  144. }
  145. uint8_t furi_hal_power_get_bat_health_pct() {
  146. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  147. uint8_t ret = bq27220_get_state_of_health(&furi_hal_i2c_handle_power);
  148. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  149. return ret;
  150. }
  151. bool furi_hal_power_is_charging() {
  152. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  153. bool ret = bq25896_is_charging(&furi_hal_i2c_handle_power);
  154. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  155. return ret;
  156. }
  157. void furi_hal_power_off() {
  158. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  159. bq25896_poweroff(&furi_hal_i2c_handle_power);
  160. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  161. }
  162. void furi_hal_power_reset() {
  163. NVIC_SystemReset();
  164. }
  165. void furi_hal_power_enable_otg() {
  166. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  167. bq25896_enable_otg(&furi_hal_i2c_handle_power);
  168. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  169. }
  170. void furi_hal_power_disable_otg() {
  171. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  172. bq25896_disable_otg(&furi_hal_i2c_handle_power);
  173. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  174. }
  175. bool furi_hal_power_is_otg_enabled() {
  176. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  177. bool ret = bq25896_is_otg_enabled(&furi_hal_i2c_handle_power);
  178. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  179. return ret;
  180. }
  181. uint32_t furi_hal_power_get_battery_remaining_capacity() {
  182. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  183. uint32_t ret = bq27220_get_remaining_capacity(&furi_hal_i2c_handle_power);
  184. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  185. return ret;
  186. }
  187. uint32_t furi_hal_power_get_battery_full_capacity() {
  188. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  189. uint32_t ret = bq27220_get_full_charge_capacity(&furi_hal_i2c_handle_power);
  190. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  191. return ret;
  192. }
  193. float furi_hal_power_get_battery_voltage(FuriHalPowerIC ic) {
  194. float ret = 0.0f;
  195. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  196. if(ic == FuriHalPowerICCharger) {
  197. ret = (float)bq25896_get_vbat_voltage(&furi_hal_i2c_handle_power) / 1000.0f;
  198. } else if(ic == FuriHalPowerICFuelGauge) {
  199. ret = (float)bq27220_get_voltage(&furi_hal_i2c_handle_power) / 1000.0f;
  200. }
  201. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  202. return ret;
  203. }
  204. float furi_hal_power_get_battery_current(FuriHalPowerIC ic) {
  205. float ret = 0.0f;
  206. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  207. if(ic == FuriHalPowerICCharger) {
  208. ret = (float)bq25896_get_vbat_current(&furi_hal_i2c_handle_power) / 1000.0f;
  209. } else if(ic == FuriHalPowerICFuelGauge) {
  210. ret = (float)bq27220_get_current(&furi_hal_i2c_handle_power) / 1000.0f;
  211. }
  212. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  213. return ret;
  214. }
  215. static float furi_hal_power_get_battery_temperature_internal(FuriHalPowerIC ic) {
  216. float ret = 0.0f;
  217. if(ic == FuriHalPowerICCharger) {
  218. // Linear approximation, +/- 5 C
  219. ret = (71.0f - (float)bq25896_get_ntc_mpct(&furi_hal_i2c_handle_power) / 1000) / 0.6f;
  220. } else if(ic == FuriHalPowerICFuelGauge) {
  221. ret = ((float)bq27220_get_temperature(&furi_hal_i2c_handle_power) - 2731.0f) / 10.0f;
  222. }
  223. return ret;
  224. }
  225. float furi_hal_power_get_battery_temperature(FuriHalPowerIC ic) {
  226. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  227. float ret = furi_hal_power_get_battery_temperature_internal(ic);
  228. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  229. return ret;
  230. }
  231. float furi_hal_power_get_usb_voltage() {
  232. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  233. float ret = (float)bq25896_get_vbus_voltage(&furi_hal_i2c_handle_power) / 1000.0f;
  234. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  235. return ret;
  236. }
  237. void furi_hal_power_dump_state() {
  238. BatteryStatus battery_status;
  239. OperationStatus operation_status;
  240. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  241. if(bq27220_get_battery_status(&furi_hal_i2c_handle_power, &battery_status) == BQ27220_ERROR ||
  242. bq27220_get_operation_status(&furi_hal_i2c_handle_power, &operation_status) ==
  243. BQ27220_ERROR) {
  244. printf("Failed to get bq27220 status. Communication error.\r\n");
  245. } else {
  246. printf(
  247. "bq27220: CALMD: %d, SEC0: %d, SEC1: %d, EDV2: %d, VDQ: %d, INITCOMP: %d, SMTH: %d, BTPINT: %d, CFGUPDATE: %d\r\n",
  248. operation_status.CALMD,
  249. operation_status.SEC0,
  250. operation_status.SEC1,
  251. operation_status.EDV2,
  252. operation_status.VDQ,
  253. operation_status.INITCOMP,
  254. operation_status.SMTH,
  255. operation_status.BTPINT,
  256. operation_status.CFGUPDATE);
  257. // Battery status register, part 1
  258. printf(
  259. "bq27220: CHGINH: %d, FC: %d, OTD: %d, OTC: %d, SLEEP: %d, OCVFAIL: %d, OCVCOMP: %d, FD: %d\r\n",
  260. battery_status.CHGINH,
  261. battery_status.FC,
  262. battery_status.OTD,
  263. battery_status.OTC,
  264. battery_status.SLEEP,
  265. battery_status.OCVFAIL,
  266. battery_status.OCVCOMP,
  267. battery_status.FD);
  268. // Battery status register, part 2
  269. printf(
  270. "bq27220: DSG: %d, SYSDWN: %d, TDA: %d, BATTPRES: %d, AUTH_GD: %d, OCVGD: %d, TCA: %d, RSVD: %d\r\n",
  271. battery_status.DSG,
  272. battery_status.SYSDWN,
  273. battery_status.TDA,
  274. battery_status.BATTPRES,
  275. battery_status.AUTH_GD,
  276. battery_status.OCVGD,
  277. battery_status.TCA,
  278. battery_status.RSVD);
  279. // Voltage and current info
  280. printf(
  281. "bq27220: Full capacity: %dmAh, Design capacity: %dmAh, Remaining capacity: %dmAh, State of Charge: %d%%, State of health: %d%%\r\n",
  282. bq27220_get_full_charge_capacity(&furi_hal_i2c_handle_power),
  283. bq27220_get_design_capacity(&furi_hal_i2c_handle_power),
  284. bq27220_get_remaining_capacity(&furi_hal_i2c_handle_power),
  285. bq27220_get_state_of_charge(&furi_hal_i2c_handle_power),
  286. bq27220_get_state_of_health(&furi_hal_i2c_handle_power));
  287. printf(
  288. "bq27220: Voltage: %dmV, Current: %dmA, Temperature: %dC\r\n",
  289. bq27220_get_voltage(&furi_hal_i2c_handle_power),
  290. bq27220_get_current(&furi_hal_i2c_handle_power),
  291. (int)furi_hal_power_get_battery_temperature_internal(FuriHalPowerICFuelGauge));
  292. }
  293. printf(
  294. "bq25896: VBUS: %d, VSYS: %d, VBAT: %d, Current: %d, NTC: %ldm%%\r\n",
  295. bq25896_get_vbus_voltage(&furi_hal_i2c_handle_power),
  296. bq25896_get_vsys_voltage(&furi_hal_i2c_handle_power),
  297. bq25896_get_vbat_voltage(&furi_hal_i2c_handle_power),
  298. bq25896_get_vbat_current(&furi_hal_i2c_handle_power),
  299. bq25896_get_ntc_mpct(&furi_hal_i2c_handle_power));
  300. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  301. }
  302. void furi_hal_power_enable_external_3_3v() {
  303. LL_GPIO_SetOutputPin(PERIPH_POWER_GPIO_Port, PERIPH_POWER_Pin);
  304. }
  305. void furi_hal_power_disable_external_3_3v() {
  306. LL_GPIO_ResetOutputPin(PERIPH_POWER_GPIO_Port, PERIPH_POWER_Pin);
  307. }
  308. void furi_hal_power_suppress_charge_enter() {
  309. vTaskSuspendAll();
  310. bool disable_charging = furi_hal_power.suppress_charge == 0;
  311. furi_hal_power.suppress_charge++;
  312. xTaskResumeAll();
  313. if(disable_charging) {
  314. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  315. bq25896_disable_charging(&furi_hal_i2c_handle_power);
  316. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  317. }
  318. }
  319. void furi_hal_power_suppress_charge_exit() {
  320. vTaskSuspendAll();
  321. furi_hal_power.suppress_charge--;
  322. bool enable_charging = furi_hal_power.suppress_charge == 0;
  323. xTaskResumeAll();
  324. if(enable_charging) {
  325. furi_hal_i2c_acquire(&furi_hal_i2c_handle_power);
  326. bq25896_enable_charging(&furi_hal_i2c_handle_power);
  327. furi_hal_i2c_release(&furi_hal_i2c_handle_power);
  328. }
  329. }