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annotate Small_CPU/Src/batteryCharger.c @ 676:c855753af9a6 Betatest
Allow longer scrubber time
Do not limit the user.
Signed-off-by: Jan Mulder <jan@jlmulder.nl>
author | Jan Mulder <jan@jlmulder.nl> |
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date | Mon, 22 Nov 2021 19:39:11 +0100 |
parents | 079bb5b22c06 |
children | b1e24513b83e |
rev | line source |
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38 | 1 /** |
2 ****************************************************************************** | |
3 * @file batteryCharger.c | |
4 * @author heinrichs weikamp gmbh | |
5 * @date 09-Dec-2014 | |
6 * @version V0.0.1 | |
7 * @since 09-Dec-2014 | |
8 * @brief LTC4054 Battery Charger | |
9 * | |
10 @verbatim | |
11 ============================================================================== | |
12 ##### How to use ##### | |
13 ============================================================================== | |
14 | |
15 The bq5105x provides one status output, CHG. This output is an open-drain NMOS device that is rated to 20 V. | |
16 The open-drain FET connected to the CHG pin will be turned on whenever the output (BAT) of the charger is | |
17 enabled. As a note, the output of the charger supply will not be enabled if the VRECT-REG does not converge to the | |
18 no-load target voltage. | |
19 | |
644 | 20 CHG F4 7 O Open-drain output � active when BAT is enabled. Float if not used. |
38 | 21 |
22 @endverbatim | |
23 ****************************************************************************** | |
24 * @attention | |
25 * | |
26 * <h2><center>© COPYRIGHT(c) 2015 heinrichs weikamp</center></h2> | |
27 * | |
28 ****************************************************************************** | |
29 */ | |
30 /* Includes ------------------------------------------------------------------*/ | |
31 #include "batteryCharger.h" | |
32 #include "batteryGasGauge.h" | |
33 #include "stm32f4xx_hal.h" | |
34 #include "scheduler.h" | |
35 | |
36 | |
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37 /* Use This compile switch to select the new charger status control implementation */ |
644 | 38 #define ENABLE_CHARGER_STATUS_V2 |
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39 |
662 | 40 #define CHARGER_DEBOUNCE_SECONDS (6u) /* 6 seconds used to avoid problems with charger interrupts / disconnections */ |
38 | 41 |
668 | 42 static uint8_t battery_i_charge_status = 0; |
43 static uint16_t battery_charger_counter = 0; | |
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44 |
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45 #ifdef ENABLE_CHARGER_STATUS_V2 |
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46 static chargerState_t batteryChargerState = Charger_NotConnected; |
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47 #endif |
38 | 48 |
49 /* can be 0, 1 or 255 | |
50 * 0 is disconnected | |
51 * 1 is charging | |
52 * 255 is full | |
53 */ | |
54 uint8_t get_charge_status(void) | |
55 { | |
56 return battery_i_charge_status; | |
57 } | |
58 | |
662 | 59 void set_charge_state(uint8_t newState) |
60 { | |
61 #ifdef ENABLE_CHARGER_STATUS_V2 | |
62 if(newState < Charger_END) | |
63 { | |
64 batteryChargerState = newState; | |
65 } | |
66 #endif | |
67 } | |
68 | |
69 uint8_t get_charge_state(void) | |
70 { | |
71 return batteryChargerState; | |
72 } | |
73 | |
38 | 74 void init_battery_charger_status(void) |
75 { | |
76 #ifdef OSTC_ON_DISCOVERY_HARDWARE | |
77 return; | |
78 #endif | |
79 | |
80 CHARGE_IN_GPIO_ENABLE(); | |
81 CHARGE_OUT_GPIO_ENABLE(); | |
82 | |
83 ReInit_battery_charger_status_pins(); | |
84 } | |
85 | |
86 void ReInit_battery_charger_status_pins(void) | |
87 { | |
88 #ifdef OSTC_ON_DISCOVERY_HARDWARE | |
89 return; | |
90 #endif | |
91 | |
92 GPIO_InitTypeDef GPIO_InitStructure; | |
93 | |
94 GPIO_InitStructure.Pin = CHARGE_IN_PIN; | |
95 GPIO_InitStructure.Mode = GPIO_MODE_INPUT; | |
96 GPIO_InitStructure.Pull = GPIO_NOPULL; | |
97 GPIO_InitStructure.Speed = GPIO_SPEED_LOW; | |
98 HAL_GPIO_Init(CHARGE_IN_GPIO_PORT, &GPIO_InitStructure); | |
99 | |
100 GPIO_InitStructure.Pin = CHARGE_OUT_PIN; | |
101 GPIO_InitStructure.Mode = GPIO_MODE_ANALOG; | |
102 GPIO_InitStructure.Pull = GPIO_NOPULL; | |
103 GPIO_InitStructure.Speed = GPIO_SPEED_LOW; | |
104 HAL_GPIO_Init(CHARGE_OUT_GPIO_PORT, &GPIO_InitStructure); | |
105 } | |
106 | |
107 | |
108 void DeInit_battery_charger_status_pins(void) | |
109 { | |
110 #ifdef OSTC_ON_DISCOVERY_HARDWARE | |
111 return; | |
112 #endif | |
113 GPIO_InitTypeDef GPIO_InitStructure; | |
114 | |
115 | |
116 GPIO_InitStructure.Mode = GPIO_MODE_ANALOG; | |
117 GPIO_InitStructure.Speed = GPIO_SPEED_LOW; | |
118 GPIO_InitStructure.Pull = GPIO_NOPULL; | |
119 | |
120 GPIO_InitStructure.Pin = CHARGE_IN_PIN; | |
121 HAL_GPIO_Init(CHARGE_IN_GPIO_PORT, &GPIO_InitStructure); | |
122 | |
123 GPIO_InitStructure.Pin = CHARGE_OUT_PIN; | |
124 HAL_GPIO_Init(CHARGE_OUT_GPIO_PORT, &GPIO_InitStructure); | |
125 } | |
126 | |
127 /* static counter is used to avoid multiple counts of charge startings | |
128 and after that it is used, starting at 127 to count for the charge full signal | |
129 | |
130 there a short disconnections with the QI charger | |
131 therefore the battery_charger_counter has a countdown instead of = 0. | |
132 | |
133 battery_gas_gauge_set_charge_full and scheduleUpdateDeviceDataChargerFull are | |
134 set after disconnection as the charging process continues as long as not disconnected | |
135 to prevent the short disconnections the battery_charger_counter is used too including | |
136 upcounting again while battery_i_charge_status == 255 and the connection is established | |
137 | |
138 */ | |
139 | |
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140 void battery_charger_get_status_and_contral_battery_gas_gauge(uint8_t cycleTimeBase) |
38 | 141 { |
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142 #ifdef ENABLE_CHARGER_STATUS_V2 |
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143 static uint8_t notifyChargeComplete = 0; |
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144 #endif |
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145 |
38 | 146 #ifdef OSTC_ON_DISCOVERY_HARDWARE |
147 return; | |
148 #endif | |
149 | |
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150 #ifdef ENABLE_CHARGER_STATUS_V2 |
662 | 151 |
152 if(batteryChargerState == Charger_ColdStart) /* wait for the first valid voltage meassurement */ | |
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153 { |
662 | 154 if(global.lifeData.battery_voltage != BATTERY_DEFAULT_VOLTAGE) |
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155 { |
662 | 156 if(global.lifeData.battery_voltage > BATTERY_ENDOF_CHARGE_VOLTAGE) /* Voltage close to full state => maybe new battery inserted */ |
157 { | |
158 battery_gas_gauge_set_charge_full(); | |
159 } | |
160 batteryChargerState = Charger_NotConnected; | |
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161 } |
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162 } |
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163 else |
662 | 164 { /* on disconnection or while disconnected */ |
165 if(HAL_GPIO_ReadPin(CHARGE_IN_GPIO_PORT,CHARGE_IN_PIN)) | |
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166 { |
662 | 167 switch(batteryChargerState) |
168 { | |
169 case Charger_Active: global.dataSendToMaster.chargeStatus = CHARGER_lostConnection; | |
170 global.deviceDataSendToMaster.chargeStatus = CHARGER_lostConnection; | |
171 batteryChargerState = Charger_LostConnection; | |
172 battery_charger_counter = CHARGER_DEBOUNCE_SECONDS; | |
173 break; | |
668 | 174 case Charger_LostConnection: /* the charger stops charging when charge current is 1/10 */ |
175 /* Basically it is OK to rate a charging as complete if a defined voltage is reached */ | |
176 if(((battery_gas_gauge_isChargeValueValid() == 0) || (global.lifeData.battery_charge < 90)) && (get_voltage() >= BATTERY_ENDOF_CHARGE_VOLTAGE)) | |
662 | 177 { |
178 batteryChargerState = Charger_Finished; | |
179 global.dataSendToMaster.chargeStatus = CHARGER_complete; | |
180 global.deviceDataSendToMaster.chargeStatus = CHARGER_complete; | |
181 notifyChargeComplete = 1; | |
668 | 182 battery_charger_counter = 0; |
662 | 183 } |
184 /* no break */ | |
185 case Charger_WarmUp: | |
186 case Charger_Finished: if(battery_charger_counter >= cycleTimeBase) | |
187 { | |
188 battery_charger_counter -= cycleTimeBase; | |
189 global.dataSendToMaster.chargeStatus = CHARGER_lostConnection; | |
190 global.deviceDataSendToMaster.chargeStatus = CHARGER_lostConnection; | |
191 batteryChargerState = Charger_LostConnection; | |
192 } | |
193 else | |
194 { | |
195 battery_charger_counter = 0; | |
196 battery_i_charge_status = 0; | |
197 global.dataSendToMaster.chargeStatus = CHARGER_off; | |
198 global.deviceDataSendToMaster.chargeStatus = CHARGER_off; | |
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199 |
662 | 200 if(notifyChargeComplete) |
201 { | |
202 battery_gas_gauge_set_charge_full(); | |
203 scheduleUpdateDeviceDataChargerFull(); | |
204 notifyChargeComplete = 0; | |
205 if(cycleTimeBase > 2) | |
206 { | |
207 HAL_Delay(50); /* I2C operations are pending in the background. Wait to avoid data loose in caused to potential change to sleep state */ | |
208 } | |
209 } | |
210 batteryChargerState = Charger_NotConnected; | |
211 } | |
212 break; | |
213 default: break; | |
214 } | |
215 } | |
216 else | |
217 { | |
218 /* connected */ | |
219 /* wait for disconnection to write and reset */ | |
220 switch(batteryChargerState) | |
221 { | |
222 case Charger_NotConnected: battery_i_charge_status = 1; | |
223 battery_charger_counter = 0; | |
224 batteryChargerState = Charger_WarmUp; | |
225 break; | |
226 case Charger_LostConnection: batteryChargerState = Charger_Active; | |
227 break; | |
228 case Charger_WarmUp: battery_charger_counter += cycleTimeBase; | |
229 if(battery_charger_counter >= CHARGER_DEBOUNCE_SECONDS ) | |
230 { | |
231 battery_i_charge_status = 2; | |
232 scheduleUpdateDeviceDataChargerCharging(); | |
233 batteryChargerState = Charger_Active; | |
234 } | |
235 /* no break */ | |
236 case Charger_Finished: | |
237 case Charger_Active: global.dataSendToMaster.chargeStatus = CHARGER_running; | |
238 global.deviceDataSendToMaster.chargeStatus = CHARGER_running; | |
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239 |
662 | 240 /* drive the output pin high to determine the state of the charger */ |
241 GPIO_InitTypeDef GPIO_InitStructure; | |
242 GPIO_InitStructure.Pin = CHARGE_OUT_PIN; | |
243 GPIO_InitStructure.Mode = GPIO_MODE_OUTPUT_PP; | |
244 GPIO_InitStructure.Pull = GPIO_NOPULL; | |
245 GPIO_InitStructure.Speed = GPIO_SPEED_LOW; | |
246 HAL_GPIO_Init(CHARGE_OUT_GPIO_PORT, &GPIO_InitStructure); | |
247 HAL_GPIO_WritePin(CHARGE_OUT_GPIO_PORT, CHARGE_OUT_PIN,GPIO_PIN_SET); | |
248 HAL_Delay(1); | |
249 | |
250 if(HAL_GPIO_ReadPin(CHARGE_IN_GPIO_PORT,CHARGE_IN_PIN)) /* high => charger stopped charging */ | |
251 { | |
252 batteryChargerState = Charger_Finished; | |
253 global.dataSendToMaster.chargeStatus = CHARGER_complete; | |
254 global.deviceDataSendToMaster.chargeStatus = CHARGER_complete; | |
255 battery_charger_counter = 30; | |
256 notifyChargeComplete = 1; | |
257 } | |
258 else | |
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259 { |
668 | 260 if(global.lifeData.battery_charge > 100.0) /* still charging but indicator is set to full => decrease to 99% to keep count increasing */ |
261 { | |
262 battery_gas_gauge_set(99.0); | |
263 } | |
662 | 264 if(batteryChargerState == Charger_Finished) /* voltage dropped below the hysteresis again => charging restarted */ |
265 { | |
266 batteryChargerState = Charger_Active; | |
267 notifyChargeComplete = 0; | |
268 } | |
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269 } |
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270 |
662 | 271 /* restore high impedance to be able to detect disconnection */ |
272 GPIO_InitStructure.Pin = CHARGE_OUT_PIN; | |
273 GPIO_InitStructure.Mode = GPIO_MODE_ANALOG; | |
274 GPIO_InitStructure.Pull = GPIO_NOPULL; | |
275 GPIO_InitStructure.Speed = GPIO_SPEED_LOW; | |
276 HAL_GPIO_Init(CHARGE_OUT_GPIO_PORT, &GPIO_InitStructure); | |
277 HAL_Delay(1); | |
278 break; | |
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279 |
662 | 280 default: /* wait for disconnection */ |
281 break; | |
282 } | |
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283 } |
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284 } |
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285 #else |
38 | 286 /* on disconnection or while disconnected */ |
287 if(HAL_GPIO_ReadPin(CHARGE_IN_GPIO_PORT,CHARGE_IN_PIN)) | |
288 { | |
289 if(battery_charger_counter) | |
290 { | |
291 battery_charger_counter--; | |
292 global.dataSendToMaster.chargeStatus = CHARGER_lostConnection; | |
293 global.deviceDataSendToMaster.chargeStatus = CHARGER_lostConnection; | |
294 } | |
295 /* max count down to 127+5 or 127+20 */ | |
296 if((battery_i_charge_status == 255) && battery_charger_counter < 127) | |
297 { | |
298 // battery_gas_gauge_set_charge_full(); | |
299 // scheduleUpdateDeviceDataChargerFull(); | |
300 battery_charger_counter = 0; | |
301 } | |
302 | |
303 if(battery_charger_counter == 0) | |
304 { | |
305 battery_i_charge_status = 0; | |
306 global.dataSendToMaster.chargeStatus = CHARGER_off; | |
307 global.deviceDataSendToMaster.chargeStatus = CHARGER_off; | |
308 | |
309 } | |
310 return; | |
311 } | |
312 | |
313 /* connected */ | |
314 | |
315 /* wait for disconnection to write and reset */ | |
316 if(battery_i_charge_status == 255) | |
317 { | |
318 global.dataSendToMaster.chargeStatus = CHARGER_complete; | |
319 global.deviceDataSendToMaster.chargeStatus = CHARGER_complete; | |
320 | |
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321 if(((cycleTimeBase > 1) && (battery_charger_counter < 127+5)) || (battery_charger_counter < 127+20)) |
38 | 322 battery_charger_counter++; |
323 return; | |
324 } | |
325 | |
326 if(battery_charger_counter == 0) | |
327 battery_i_charge_status = 1; | |
328 | |
329 /* charger is connected and didn't signal full yet */ | |
330 global.dataSendToMaster.chargeStatus = CHARGER_running; | |
331 global.deviceDataSendToMaster.chargeStatus = CHARGER_running; | |
332 | |
333 GPIO_InitTypeDef GPIO_InitStructure; | |
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334 GPIO_InitStructure.Pin = CHARGE_OUT_PIN; |
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335 GPIO_InitStructure.Mode = GPIO_MODE_OUTPUT_PP; |
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336 GPIO_InitStructure.Pull = GPIO_NOPULL; |
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337 GPIO_InitStructure.Speed = GPIO_SPEED_LOW; |
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338 HAL_GPIO_Init(CHARGE_OUT_GPIO_PORT, &GPIO_InitStructure); |
38 | 339 HAL_GPIO_WritePin(CHARGE_OUT_GPIO_PORT, CHARGE_OUT_PIN,GPIO_PIN_SET); |
340 HAL_Delay(1); | |
341 | |
342 | |
343 if(battery_charger_counter < 120) | |
344 { | |
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345 if(cycleTimeBase == 1) |
38 | 346 battery_charger_counter++; |
347 else | |
348 { | |
349 battery_charger_counter += 30; | |
350 if(battery_charger_counter >= 127) | |
351 battery_charger_counter = 126; | |
352 } | |
353 } | |
354 else | |
355 if(battery_charger_counter < 127) | |
356 { | |
357 battery_charger_counter = 127; | |
358 if(battery_i_charge_status < 2) | |
359 { | |
360 battery_i_charge_status = 2; | |
361 scheduleUpdateDeviceDataChargerCharging(); | |
362 } | |
363 } | |
364 | |
365 if(battery_charger_counter >= 127) | |
366 { | |
367 if(HAL_GPIO_ReadPin(CHARGE_IN_GPIO_PORT,CHARGE_IN_PIN) || (get_voltage() >= 4.1f)) | |
368 { | |
369 battery_charger_counter++; | |
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370 if(((cycleTimeBase > 1) && (battery_charger_counter > 127+5)) || (battery_charger_counter > 127+20)) |
38 | 371 { |
372 battery_charger_counter = 127; | |
373 if(get_voltage() >= 4.1f) | |
374 { | |
375 battery_i_charge_status = 255; | |
376 battery_gas_gauge_set_charge_full(); | |
377 scheduleUpdateDeviceDataChargerFull(); | |
378 } | |
379 } | |
380 } | |
381 else | |
382 battery_charger_counter = 127; | |
383 } | |
384 | |
385 GPIO_InitStructure.Pin = CHARGE_OUT_PIN; | |
386 GPIO_InitStructure.Mode = GPIO_MODE_ANALOG; | |
387 GPIO_InitStructure.Pull = GPIO_NOPULL; | |
388 GPIO_InitStructure.Speed = GPIO_SPEED_LOW; | |
389 HAL_GPIO_Init(CHARGE_OUT_GPIO_PORT, &GPIO_InitStructure); | |
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390 #endif |
38 | 391 } |
392 | |
393 /************************ (C) COPYRIGHT heinrichs weikamp *****END OF FILE****/ |