Mercurial > public > ostc4
annotate Discovery/Src/tComm.c @ 460:2effe85f1a9b minor_improvments
merged default into minor_improvments
author | Ideenmodellierer |
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date | Sun, 29 Mar 2020 21:55:00 +0200 |
parents | 5dd996ed8611 |
children | dddfe7917131 |
rev | line source |
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38 | 1 /////////////////////////////////////////////////////////////////////////////// |
2 /// -*- coding: UTF-8 -*- | |
3 /// | |
4 /// \file Discovery/Src/tComm.c | |
5 /// \brief Main file for communication with PC | |
6 /// \author heinrichs weikamp gmbh | |
7 /// \date 08-Aug-2014 | |
8 /// | |
9 /// \details | |
10 /// | |
11 /// $Id$ | |
12 /////////////////////////////////////////////////////////////////////////////// | |
13 /// \par Copyright (c) 2014-2018 Heinrichs Weikamp gmbh | |
14 /// | |
15 /// This program is free software: you can redistribute it and/or modify | |
16 /// it under the terms of the GNU General Public License as published by | |
17 /// the Free Software Foundation, either version 3 of the License, or | |
18 /// (at your option) any later version. | |
19 /// | |
20 /// This program is distributed in the hope that it will be useful, | |
21 /// but WITHOUT ANY WARRANTY; without even the implied warranty of | |
22 /// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
23 /// GNU General Public License for more details. | |
24 /// | |
25 /// You should have received a copy of the GNU General Public License | |
26 /// along with this program. If not, see <http://www.gnu.org/licenses/>. | |
27 ////////////////////////////////////////////////////////////////////////////// | |
28 | |
29 /** | |
30 ============================================================================== | |
31 ##### How to use ##### | |
32 ============================================================================== | |
33 ============================================================================== | |
34 ##### History ##### | |
35 ============================================================================== | |
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36 160211 added 4 bytes Serial in update Files after checksum prior to binary |
38 | 37 160211 0x6B changed to version only |
38 160623 fixed 0x72 (in V1.0.9) | |
39 160623 fixed rebuild menu (before update) for V1.0.10 | |
40 | |
41 ============================================================================== | |
42 ##### CTS / RTS ##### | |
43 ============================================================================== | |
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44 RTS is Output, CTS is Input |
38 | 45 |
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46 BlueMod Pin D7 UART-RTS# is Output |
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47 connected to STM32F429 PA11 CTS (Input) |
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48 also STM32 PA12 RTS is connected to BlueMod UART-CTS# F3 |
38 | 49 |
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50 see BlueMod_SR_HWreference_r06.pdf, page 156 |
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51 and MAIN_CPU STM32F4 Reference manual DM00031020.pdf, page 990 |
38 | 52 |
53 | |
54 ============================================================================== | |
55 ##### Codes ##### | |
56 ============================================================================== | |
57 [0x73] upload CPU2 firmware in SDRAM and update CPU2 | |
58 | |
59 [0x74] upload MainCPU firmware in EEPROM and start bootloader | |
60 | |
61 */ | |
62 | |
63 /* Includes ------------------------------------------------------------------*/ | |
64 | |
65 #include "tComm.h" | |
66 | |
67 #include "externCPU2bootloader.h" | |
68 #include "externLogbookFlash.h" | |
69 #include "gfx_colors.h" | |
70 #include "gfx_engine.h" | |
71 #include "gfx_fonts.h" | |
72 #include "ostc.h" | |
73 | |
74 #ifndef BOOTLOADER_STANDALONE | |
75 # include "base.h" | |
76 # include "tHome.h" | |
77 # include "logbook.h" | |
78 # include "tMenu.h" | |
79 #else | |
80 # include "base_bootloader.h" | |
81 # include "firmwareEraseProgram.h" | |
82 #endif | |
83 | |
84 #ifdef SPECIALPROGRAMM | |
85 # include "firmwareEraseProgram.h" | |
86 #endif | |
396 | 87 #include <stdlib.h> |
38 | 88 #include <string.h> |
89 | |
90 | |
91 /* Private variables ---------------------------------------------------------*/ | |
92 GFX_DrawCfgScreen tCscreen; | |
93 GFX_DrawCfgWindow tCwindow; | |
94 | |
95 uint8_t receiveStartByteUart = 0; | |
96 uint8_t bluetoothActiveLastTime = 0; | |
97 | |
98 uint8_t StartListeningToUART = 0; | |
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99 char display_text[256] = { 0 }; |
38 | 100 |
101 uint8_t setForcedBluetoothName = 0; | |
102 | |
103 uint8_t updateSettingsAndMenuOnExit = 0; | |
104 | |
105 /* Private types -------------------------------------------------------------*/ | |
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106 #define BYTE_DOWNLOAD_MODE (0xBB) |
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107 #define BYTE_SERVICE_MODE (0xAA) |
38 | 108 |
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109 #define UART_OPERATION_TIMEOUT (500u) /* Timeout for common read / write operations (ms) */ |
316
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110 #define UART_TIMEOUT_SECONDS (120u) /* Timeout for keeping connection open and waiting for data */ |
400 | 111 #define UART_TIMEOUT_LARGE_BLOCK (6000u) /* Timeout (ms) for reception of an 16K data block (typical RX time ~4,5seconds) */ |
112 | |
113 #define UART_CMD_BUF_SIZE (20u) /* size of buffer for command exchange */ | |
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114 |
38 | 115 const uint8_t id_Region1_firmware = 0xFF; |
116 const uint8_t id_RTE = 0xFE; | |
117 const uint8_t id_FONT = 0x10; | |
118 const uint8_t id_FONT_OLD = 0x00; | |
119 | |
396 | 120 static BlueModTmpConfig_t BmTmpConfig = BM_CONFIG_OFF; /* Config BlueMod without storing the changes */ |
121 static uint8_t EvaluateBluetoothSignalStrength = 0; | |
122 static uint8_t RequestDisconnection = 0; /* Disconnection from remote device requested */ | |
38 | 123 /* Private function prototypes -----------------------------------------------*/ |
396 | 124 static void tComm_Disconnect(void); |
38 | 125 static void tComm_Error_Handler(void); |
126 static uint8_t select_mode(uint8_t aRxByte); | |
396 | 127 static uint8_t tComm_CheckAnswerOK(void); |
128 static uint8_t tComm_HandleBlueModConfig(void); | |
129 static void tComm_EvaluateBluetoothStrength(void); | |
38 | 130 uint8_t receive_update_flex(uint8_t isRTEupdateALLOWED); |
131 uint8_t receive_update_data_flex(uint8_t* pBuffer1, uint8_t* pBuffer2, uint8_t RTEupdateALLOWED); | |
132 uint8_t receive_update_data_mainCPU_firmware(void); | |
133 uint8_t receive_update_data_mainCPU_variable_firmware(void); | |
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134 uint8_t receive_update_data_mainCPU_firmware_subroutine(uint8_t region, uint8_t* pBuffer1, uint8_t* pBuffer2); |
38 | 135 HAL_StatusTypeDef receive_uart_large_size(UART_HandleTypeDef *huart, uint8_t *pData, uint32_t Size); |
136 static uint8_t openComm(uint8_t aRxByte); | |
137 uint8_t HW_Set_Bluetooth_Name(uint16_t serial, uint8_t withEscapeSequence); | |
138 uint8_t prompt4D4C(uint8_t mode); | |
139 | |
140 #ifdef BOOTLOADER_STANDALONE | |
141 static uint8_t receive_update_data_cpu2(void); | |
142 uint8_t receive_update_data_cpu2_sub(uint8_t* pBuffer); | |
143 #endif | |
144 | |
145 /* Exported functions --------------------------------------------------------*/ | |
146 | |
147 void tComm_init(void) | |
148 { | |
149 tCscreen.FBStartAdress = 0; | |
150 tCscreen.ImageHeight = 480; | |
151 tCscreen.ImageWidth = 800; | |
152 tCscreen.LayerIndex = 1; | |
153 | |
154 tCwindow.Image = &tCscreen; | |
155 tCwindow.WindowNumberOfTextLines = 6; | |
156 tCwindow.WindowLineSpacing = 65; | |
157 tCwindow.WindowTab = 400; | |
158 tCwindow.WindowX0 = 20; | |
159 tCwindow.WindowX1 = 779; | |
316
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160 |
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161 |
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162 if(!settingsGetPointer()->FlipDisplay) |
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163 { |
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164 tCwindow.WindowY0 = 0; |
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165 tCwindow.WindowY1 = 479; |
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166 } |
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167 else |
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168 { |
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169 tCwindow.WindowY0 = 479 - 390; |
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170 tCwindow.WindowY1 = 479 - 25; |
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171 } |
38 | 172 |
173 StartListeningToUART = 1; | |
174 } | |
175 | |
176 uint8_t tComm_control(void) | |
177 { | |
178 uint8_t answer = 0; | |
179 #ifndef BOOTLOADER_STANDALONE | |
180 | |
181 /* should do something like reset UART ... */ | |
182 if( settingsGetPointer()->bluetoothActive == 0) | |
183 { | |
184 if(bluetoothActiveLastTime) | |
185 { | |
396 | 186 HAL_UART_AbortReceive_IT(&UartHandle); |
38 | 187 HAL_UART_DeInit(&UartHandle); |
188 HAL_Delay(1); | |
396 | 189 UartHandle.Init.BaudRate = 115200; /* Module will be operating at default baud rate if powered again */ |
190 BmTmpConfig = BM_CONFIG_OFF; /* Restart configuration if powered again */ | |
38 | 191 HAL_UART_Init(&UartHandle); |
192 HAL_Delay(1); | |
193 UartReady = RESET; | |
194 StartListeningToUART = 1; | |
195 bluetoothActiveLastTime = 0; | |
196 receiveStartByteUart = 0; | |
396 | 197 RequestDisconnection = 0; |
38 | 198 } |
199 return 0; | |
200 } | |
201 else | |
202 { | |
203 bluetoothActiveLastTime = 1; | |
396 | 204 if(RequestDisconnection) |
205 { | |
206 RequestDisconnection = 0; | |
207 tComm_Disconnect(); | |
208 } | |
38 | 209 } |
210 | |
211 #endif | |
212 | |
396 | 213 if(BmTmpConfig != BM_CONFIG_DONE) |
214 { | |
215 tComm_HandleBlueModConfig(); | |
216 } | |
217 else | |
218 { | |
38 | 219 /*##-2- Put UART peripheral in reception process ###########################*/ |
220 | |
396 | 221 if((UartReady == RESET) && StartListeningToUART) |
222 { | |
223 StartListeningToUART = 0; | |
224 if(HAL_UART_Receive_IT(&UartHandle, &receiveStartByteUart, 1) != HAL_OK) | |
225 tComm_Error_Handler(); | |
226 } | |
227 /* Reset transmission flag */ | |
228 if(UartReady == SET) | |
229 { | |
230 UartReady = RESET; | |
231 if((receiveStartByteUart == BYTE_DOWNLOAD_MODE) || (receiveStartByteUart == BYTE_SERVICE_MODE)) | |
232 answer = openComm(receiveStartByteUart); | |
233 StartListeningToUART = 1; | |
234 return answer; | |
235 } | |
38 | 236 } |
237 return 0; | |
238 } | |
239 | |
240 | |
241 void tComm_refresh(void) | |
242 { | |
243 if(tCscreen.FBStartAdress == 0) | |
244 { | |
245 GFX_hwBackgroundOn(); | |
246 tCscreen.FBStartAdress = getFrame(18); | |
247 write_content_simple(&tCscreen, 0, 800, 480-24, &FontT24,"Exit",CLUT_ButtonSurfaceScreen); | |
396 | 248 write_content_simple(&tCscreen, 800 - 70, 800, 480-24, &FontT24,"Signal",CLUT_ButtonSurfaceScreen); |
249 | |
38 | 250 if(receiveStartByteUart == BYTE_SERVICE_MODE) |
251 GFX_write_string(&FontT48, &tCwindow, "Service mode enabled",2); | |
252 else | |
253 GFX_write_string(&FontT48, &tCwindow, "Download mode enabled",2); | |
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254 GFX_SetFramesTopBottom(tCscreen.FBStartAdress, 0,480); |
38 | 255 display_text[0] = 0; |
256 display_text[255] = 0; | |
257 } | |
258 else if(display_text[255]) | |
259 { | |
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260 display_text[(uint8_t)display_text[255]] = 0; |
38 | 261 releaseFrame(18,tCscreen.FBStartAdress); |
262 tCscreen.FBStartAdress = getFrame(18); | |
263 write_content_simple(&tCscreen, 0, 800, 480-24, &FontT24,"Exit",CLUT_ButtonSurfaceScreen); | |
396 | 264 write_content_simple(&tCscreen, 800 - 70, 800, 480-24, &FontT24,"Signal",CLUT_ButtonSurfaceScreen); |
38 | 265 GFX_write_string(&FontT48, &tCwindow, display_text,2); |
266 GFX_SetFrameTop(tCscreen.FBStartAdress); | |
267 display_text[0] = 0; | |
268 display_text[255] = 0; | |
269 } | |
270 } | |
271 | |
272 | |
273 void tComm_verlauf(uint8_t percentage_complete) | |
274 { | |
275 uint32_t pDestination; | |
276 | |
277 pDestination = (uint32_t)tCscreen.FBStartAdress; | |
278 pDestination += 150 * tCscreen.ImageHeight * 2; | |
279 pDestination += 100 * 2; | |
280 | |
281 if(percentage_complete > 100) | |
282 percentage_complete = 100; | |
283 | |
284 int i = 1; | |
285 while(i<=percentage_complete) | |
286 { | |
287 i += 1; | |
288 for(int y=0;y<4;y++) | |
289 { | |
290 for(int x=0;x<40;x++) | |
291 { | |
292 *(__IO uint16_t*)pDestination = 0xFF00 + 00; | |
293 pDestination += 2; | |
294 } | |
295 pDestination += (tCscreen.ImageHeight - 40 )* 2; | |
296 } | |
297 pDestination += tCscreen.ImageHeight * 2; // one spare line | |
298 } | |
299 } | |
300 | |
301 | |
302 void tComm_exit(void) | |
303 { | |
304 SStateList status; | |
305 get_globalStateList(&status); | |
306 | |
307 releaseFrame(18,tCscreen.FBStartAdress); | |
308 tCscreen.FBStartAdress = 0; | |
309 GFX_hwBackgroundOff(); | |
310 | |
311 if(setForcedBluetoothName) | |
312 { | |
313 setForcedBluetoothName = 0; | |
314 MX_Bluetooth_PowerOff(); | |
315 HAL_Delay(1000); | |
316 MX_Bluetooth_PowerOn(); | |
317 tComm_Set_Bluetooth_Name(1); | |
396 | 318 tComm_StartBlueModConfig(); |
38 | 319 } |
320 #ifndef BOOTLOADER_STANDALONE | |
321 if(updateSettingsAndMenuOnExit) | |
322 { | |
323 check_and_correct_settings(); | |
324 createDiveSettings(); | |
325 tM_rebuild_menu_after_tComm(); | |
326 } | |
327 #endif | |
328 updateSettingsAndMenuOnExit = 0; | |
329 | |
330 if(status.base == BaseComm) | |
331 { | |
332 #ifndef BOOTLOADER_STANDALONE | |
333 set_globalState_tHome(); | |
334 #else | |
335 set_globalState_Base(); | |
336 #endif | |
337 } | |
338 } | |
339 | |
340 | |
341 uint8_t tComm_Set_Bluetooth_Name(uint8_t force) | |
342 { | |
343 uint8_t answer = 0; | |
344 | |
345 if(hardwareDataGetPointer()->secondarySerial != 0xFFFF) | |
346 { | |
347 if(force || (hardwareDataGetPointer()->secondary_bluetooth_name_set == 0xFF)) | |
348 answer = HW_Set_Bluetooth_Name(hardwareDataGetPointer()->secondarySerial, 0); | |
349 #ifdef BOOTLOADER_STANDALONE | |
350 if(answer == HAL_OK) | |
351 hardware_programmSecondaryBluetoothNameSet(); | |
352 #endif | |
353 } | |
354 else | |
355 if(hardwareDataGetPointer()->primarySerial != 0xFFFF) | |
356 { | |
357 if(force || (hardwareDataGetPointer()->production_bluetooth_name_set == 0xFF)) | |
358 answer = HW_Set_Bluetooth_Name(hardwareDataGetPointer()->primarySerial, 0); | |
359 #ifdef BOOTLOADER_STANDALONE | |
360 if(answer == HAL_OK) | |
361 hardware_programmPrimaryBluetoothNameSet(); | |
362 #endif | |
363 } | |
364 return answer; | |
365 } | |
366 | |
367 | |
368 uint8_t HW_Set_Bluetooth_Name(uint16_t serial, uint8_t withEscapeSequence) | |
369 { | |
370 uint8_t answer = HAL_OK; | |
371 uint8_t aRxBuffer[50]; | |
372 | |
373 // char aTxFactoryDefaults[50] = "AT&F1\r"; | |
374 | |
375 char aTxBufferEscapeSequence[50] = "+++"; | |
376 // limit is 19 chars, with 7 chars shown in BLE advertising mode | |
377 //________________________123456789012345678901 | |
378 char aTxBufferName[50] = "AT+BNAME=OSTC4-12345\r"; | |
396 | 379 char answerOkay[6] = "\r\nOK\r\n"; |
38 | 380 |
381 gfx_number_to_string(5,1,&aTxBufferName[15],serial); | |
382 | |
383 // store active configuration in non-volatile memory | |
384 char aTxBufferWrite[50] = "AT&W\r"; | |
385 | |
386 // char aTxBufferReset[50] = "AT+RESET\r"; | |
387 | |
388 | |
389 HAL_Delay(1010); | |
390 if(withEscapeSequence) | |
391 { | |
392 aRxBuffer[0] = 0; | |
393 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferEscapeSequence, 3, 2000)!= HAL_OK) | |
394 answer = HAL_ERROR; | |
395 HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 3, 2000); | |
396 HAL_Delay(1010); | |
397 | |
398 for(int i=0;i<3;i++) | |
399 if(aRxBuffer[i] != '+') | |
400 answer = HAL_ERROR; | |
401 } | |
402 | |
403 aRxBuffer[0] = 0; | |
404 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferName, 21, 2000)!= HAL_OK) | |
405 answer = HAL_ERROR; | |
406 HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 21+6, 2000); | |
407 | |
408 for(int i=0;i<21;i++) | |
409 if(aRxBuffer[i] != aTxBufferName[i]) | |
410 answer = HAL_ERROR; | |
411 | |
412 for(int i=0;i<6;i++) | |
413 if(aRxBuffer[21+i] != answerOkay[i]) | |
414 answer = HAL_ERROR; | |
415 | |
416 HAL_Delay(200); | |
417 | |
418 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferWrite, 5, 2000)!= HAL_OK) | |
419 answer = HAL_ERROR; | |
420 HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 5+6, 2000); | |
421 | |
422 for(int i=0;i<5;i++) | |
423 if(aRxBuffer[i] != aTxBufferWrite[i]) | |
424 answer = HAL_ERROR; | |
425 | |
426 for(int i=0;i<6;i++) | |
427 if(aRxBuffer[5+i] != answerOkay[i]) | |
428 answer = HAL_ERROR; | |
429 | |
430 answer = HAL_OK; | |
431 return answer; | |
432 } | |
433 | |
396 | 434 void tComm_Disconnect() |
435 { | |
436 uint8_t answer; | |
437 uint8_t retrycnt = 3; | |
438 char aTxDisconnect[] ="ATH\r"; | |
439 char aTxBufferEnd[] = "ATO\r"; | |
440 char aTxBufferEscapeSequence[] = "+++"; | |
441 | |
442 uint8_t sizeDisconnect = sizeof(aTxDisconnect) -1; | |
443 | |
444 HAL_UART_AbortReceive_IT(&UartHandle); | |
445 do | |
446 { | |
447 HAL_Delay(200); | |
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448 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferEscapeSequence, 3, UART_OPERATION_TIMEOUT)== HAL_OK) |
396 | 449 { |
450 answer = tComm_CheckAnswerOK(); | |
451 } | |
452 retrycnt--; | |
453 } | |
454 while((answer != HAL_OK) && (retrycnt > 0)); | |
455 | |
456 if(answer == HAL_OK) | |
457 { | |
458 answer = HAL_ERROR; | |
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459 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxDisconnect,sizeDisconnect , UART_OPERATION_TIMEOUT)== HAL_OK) |
396 | 460 { |
461 answer = HAL_ERROR; | |
462 if(tComm_CheckAnswerOK() == HAL_OK) | |
463 { | |
464 answer = HAL_ERROR; | |
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465 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferEnd, 4, UART_OPERATION_TIMEOUT) == HAL_OK) /* exit terminal mode */ |
396 | 466 { |
467 answer = tComm_CheckAnswerOK(); | |
468 } | |
469 } | |
470 } | |
471 } | |
472 | |
473 if(answer != HAL_OK) /* we are somehow not able to do a clean disconnect => fallback to "previous" power off implementation" */ | |
474 { | |
475 settingsGetPointer()->bluetoothActive = 0; | |
476 MX_Bluetooth_PowerOff(); | |
477 } | |
478 } | |
479 | |
38 | 480 |
481 uint8_t openComm(uint8_t aRxByte) | |
482 { | |
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483 SStateList status; |
396 | 484 uint8_t localRx; |
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485 uint8_t timeoutCounter = 0; |
38 | 486 uint8_t answer = 0; |
487 uint8_t service_mode_last_three_bytes[3]; | |
488 uint8_t service_mode_response[5] = | |
489 { | |
490 0x4B, | |
491 0xAB, | |
492 0xCD, | |
493 0xEF, | |
494 0x4C | |
495 }; | |
496 uint8_t download_mode_response[2] = | |
497 { | |
498 0xBB, | |
499 0x4D | |
500 }; | |
501 | |
502 if((aRxByte != BYTE_DOWNLOAD_MODE) && (aRxByte != BYTE_SERVICE_MODE)) | |
503 return 0; | |
504 | |
505 set_globalState(StUART_STANDARD); | |
506 | |
507 /* service mode is four bytes | |
508 0xAA 0xAB 0xCD 0xEF | |
509 answer is | |
510 */ | |
396 | 511 localRx = aRxByte; |
38 | 512 |
513 if(aRxByte == BYTE_SERVICE_MODE) | |
514 { | |
515 if((HAL_UART_Receive(&UartHandle, (uint8_t*)service_mode_last_three_bytes, 3, 2000)!= HAL_OK)) | |
516 answer = 0x00; | |
517 else | |
518 { | |
519 if((service_mode_last_three_bytes[0] != 0xAB) || (service_mode_last_three_bytes[1] != 0xCD) || (service_mode_last_three_bytes[2] != 0xEF)) | |
520 answer = 0x00; | |
521 else | |
522 { | |
523 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)service_mode_response, 5, 2000)!= HAL_OK) | |
524 answer = 0x00; | |
525 else | |
526 answer = prompt4D4C(receiveStartByteUart); | |
527 } | |
528 } | |
529 } | |
530 else //if(aRxByte == BYTE_SERVICE_MODE) | |
531 { | |
532 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)download_mode_response, 2, 2000)!= HAL_OK) | |
533 answer = 0x00; | |
534 else | |
535 answer = prompt4D4C(receiveStartByteUart); | |
536 } | |
396 | 537 |
538 while((answer == prompt4D4C(receiveStartByteUart)) && (timeoutCounter < UART_TIMEOUT_SECONDS)) /* try receive once a second */ | |
38 | 539 { |
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540 if(HAL_UART_Receive(&UartHandle, (uint8_t*)&localRx, 1, UART_OPERATION_TIMEOUT)!= HAL_OK) |
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541 { |
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542 timeoutCounter++; |
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543 get_globalStateList(&status); |
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544 if (status.base != BaseComm) |
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545 { |
396 | 546 timeoutCounter = UART_TIMEOUT_SECONDS; /* Abort action triggered outside main loop => exit */ |
547 } | |
548 if(EvaluateBluetoothSignalStrength) | |
549 { | |
550 tComm_EvaluateBluetoothStrength(); | |
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551 } |
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552 } |
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553 else |
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554 { |
396 | 555 answer = select_mode(localRx); |
556 timeoutCounter = 0; | |
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557 } |
38 | 558 } |
559 set_returnFromComm(); | |
560 return 1; | |
561 } | |
562 | |
563 | |
564 uint8_t prompt4D4C(uint8_t mode) | |
565 { | |
566 if(mode == BYTE_SERVICE_MODE) | |
567 return 0x4C; | |
568 else | |
569 return 0x4D; | |
570 } | |
571 | |
572 | |
573 uint8_t select_mode(uint8_t type) | |
574 { | |
575 #ifndef BOOTLOADER_STANDALONE | |
576 SLogbookHeader logbookHeader; | |
577 SLogbookHeaderOSTC3 * plogbookHeaderOSTC3; | |
578 SLogbookHeaderOSTC3compact * plogbookHeaderOSTC3compact; | |
579 uint32_t sampleTotalLength; | |
580 SSettings* pSettings = settingsGetPointer(); | |
581 RTC_DateTypeDef sdatestructure; | |
582 RTC_TimeTypeDef stimestructure; | |
583 #else | |
584 uint8_t dummyForBootloader[256] = {0}; | |
585 #endif | |
586 uint8_t count; | |
587 uint8_t aTxBuffer[128]; | |
588 uint8_t aRxBuffer[68]; | |
589 uint8_t answer; | |
590 aTxBuffer[0] = type; | |
591 aTxBuffer[1] = prompt4D4C(receiveStartByteUart); | |
592 uint8_t tempHigh, tempLow; | |
593 count = 0; | |
594 | |
595 // service mode only commands | |
596 if(receiveStartByteUart == BYTE_SERVICE_MODE) | |
597 { | |
598 // first part | |
599 switch(type) | |
600 { | |
601 // start communication (again) | |
602 case 0xAA: | |
603 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 2, 1000)!= HAL_OK) | |
604 return 0; | |
605 else | |
606 return prompt4D4C(receiveStartByteUart); | |
607 | |
608 /* | |
609 // update firmware main preparation | |
610 case 0x74: | |
611 ext_flash_erase_firmware_if_not_empty(); | |
612 break; | |
613 | |
614 // update firmware main with variable full access memory location preparation | |
615 case 0x76: | |
616 ext_flash_erase_firmware2_if_not_empty(); | |
617 break; | |
618 */ | |
619 default: | |
620 break; | |
621 } | |
622 | |
623 #ifndef BOOTLOADER_STANDALONE | |
624 uint32_t logCopyDataPtr = 0; | |
625 convert_Type logCopyDataLength; | |
626 uint32_t logCopyDataPtrTemp = 0; | |
627 uint32_t logCopyDataLengthTemp = 0; | |
628 uint8_t logDummyByte = 0; | |
629 uint8_t logStepBackwards = 0; | |
630 convert16_Type totalDiveCount; | |
631 logCopyDataLength.u32bit = 0; | |
632 totalDiveCount.u16bit = 0; | |
633 #endif | |
634 | |
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635 // Exit communication on Text like RING, CONNECT, ... or 0xFF command |
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636 if((type < 0x60) || (type == 0xFF)) |
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637 return 0; |
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638 |
38 | 639 // return of command for (almost) all commands |
640 switch(type) | |
641 { | |
642 // not supported yet case 0x20: // send hi:lo:temp1 bytes starting from ext_flash_address:3 | |
643 // not supported yet case 0x22: // Resets all logbook pointers and the logbook (!) | |
644 // not supported yet case 0x23: // Resets battery gauge registers | |
645 // not supported yet case 0x30: // write bytes starting from ext_flash_address:3 (Stop when timeout) | |
646 // not supported yet case 0x40: // erases 4kB block from ext_flash_address:3 (Warning: No confirmation or built-in security here...) | |
647 // not supported yet case 0x42: // erases range in 4kB steps (Get 3 bytes address and 1byte amount of 4kB blocks) | |
648 // not supported yet case 0x50: // sends firmware from external flash from 0x3E0000 to 0x3FD000 (118784bytes) via comm | |
649 case 0xFE: // hw unit_tests | |
650 case 0x71: // hw read manufacturing data | |
651 case 0x73: // hw update FLEX | |
652 case 0x79: // hw read device data | |
653 #ifdef BOOTLOADER_STANDALONE | |
654 case 0x74: // hw update Firmware | |
655 case 0x75: // hw update RTE | |
656 case 0x76: // hw update Fonts | |
657 case 0x80: // hw write manufacturing data | |
658 case 0x81: // hw write second serial | |
659 case 0x82: // hw set bluetooth name | |
660 #else | |
661 case 0x83: // hw copy logbook entry - read | |
662 case 0x84: // hw copy logbook entry - write | |
663 case 0x85: // hw read entire logbook memory | |
664 case 0x86: // hw overwrite entire logbook memory | |
665 case 0x87: // hw ext_flash_repair_SPECIAL_dive_numbers_starting_count_with memory(x) | |
666 | |
667 #endif | |
668 case 0xC1: // Start low-level bootloader | |
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669 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 1, UART_OPERATION_TIMEOUT)!= HAL_OK) |
38 | 670 return 0; |
671 break; | |
672 default: | |
673 break; | |
674 } | |
675 | |
676 // now send content or update firmware | |
677 switch(type) | |
678 { | |
679 case 0xFE: | |
680 // work to do :-) 12. Oct. 2015 | |
681 // 256 bytes output | |
682 memset(aTxBuffer,0,128); | |
683 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 128,5000)!= HAL_OK) | |
684 return 0; | |
685 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 128,5000)!= HAL_OK) | |
686 return 0; | |
687 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
688 break; | |
689 | |
690 case 0x71: | |
691 memcpy(aTxBuffer,hardwareDataGetPointer(),64); | |
692 count += 64; | |
693 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
694 break; | |
695 | |
696 case 0x73: | |
697 #ifndef BOOTLOADER_STANDALONE | |
698 answer = receive_update_flex(1); | |
699 #else | |
700 answer = receive_update_flex(0); | |
701 #endif | |
702 if(answer == 0) | |
703 return 0; | |
704 else if(answer == 2) // 2 = RTE without bootToBootloader | |
705 { | |
706 aTxBuffer[0] = 0xFF; | |
707 HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 1,10000); | |
708 return 0; | |
709 } | |
710 else | |
711 { | |
712 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
713 if(answer == 1) /* 0xFF is checksum error, 2 = RTE without bootToBootloader */ | |
714 { | |
715 extern uint8_t bootToBootloader; | |
716 bootToBootloader = 1; | |
717 } | |
718 } | |
719 break; | |
720 | |
721 case 0x79: | |
722 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 1,10000)!= HAL_OK) | |
723 return 0; | |
724 ext_flash_read_fixed_16_devicedata_blocks_formated_128byte_total(aTxBuffer); | |
725 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 128,5000)!= HAL_OK) | |
726 return 0; | |
727 aTxBuffer[0] = prompt4D4C(receiveStartByteUart); | |
728 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 1,10000)!= HAL_OK) | |
729 return 0; | |
730 else | |
731 return prompt4D4C(receiveStartByteUart); | |
732 | |
733 case 0x82: | |
734 #ifdef BOOTLOADER_STANDALONE | |
735 setForcedBluetoothName = 1; | |
736 return 0; | |
737 #else | |
738 settingsGetPointer()->debugModeOnStart = 1; | |
739 extern uint8_t bootToBootloader; | |
740 bootToBootloader = 1; | |
741 return prompt4D4C(receiveStartByteUart); | |
742 #endif | |
743 | |
744 #ifdef BOOTLOADER_STANDALONE | |
745 case 0x74: | |
746 answer = receive_update_data_mainCPU_firmware(); | |
747 if(answer != 0) | |
748 { | |
749 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
750 if(answer == 1) // 0xFF is checksum error | |
751 { | |
752 extern uint8_t bootToBootloader; | |
753 bootToBootloader = 1; | |
754 } | |
755 } | |
756 else | |
757 return 0; | |
758 break; | |
759 | |
760 case 0x75: | |
761 receive_update_data_cpu2(); | |
762 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
763 break; | |
764 | |
765 case 0x76: | |
766 answer = receive_update_data_mainCPU_variable_firmware(); | |
767 if(answer != 0) | |
768 { | |
769 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
770 if(answer == 1) // 0xFF is checksum error | |
771 { | |
772 extern uint8_t bootToBootloader; | |
773 bootToBootloader = 1; | |
774 } | |
775 } | |
776 else | |
777 return 0; | |
778 break; | |
779 | |
780 case 0x80: | |
781 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 52, 5000)!= HAL_OK) | |
782 return 0; | |
783 if(hardware_programmProductionData(aRxBuffer) == HAL_OK) | |
784 { | |
785 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
786 } | |
787 else | |
788 return 0; | |
789 break; | |
790 | |
791 case 0x81: | |
792 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 12, 1000)!= HAL_OK) | |
793 return 0; | |
794 if(hardware_programmSecondarySerial(aRxBuffer) == HAL_OK) | |
795 { | |
796 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
797 } | |
798 else | |
799 return 0; | |
800 break; | |
801 | |
802 #else | |
803 | |
804 #ifdef SPECIALPROGRAMM | |
805 case 0x80: | |
806 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 52, 5000)!= HAL_OK) | |
807 return 0; | |
808 if(hardware_programmProductionData(aRxBuffer) == HAL_OK) | |
809 { | |
810 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
811 } | |
812 else | |
813 return 0; | |
814 break; | |
815 #endif | |
816 case 0x83: | |
817 if(HAL_UART_Receive(&UartHandle, &logStepBackwards, 1, 1000)!= HAL_OK) | |
818 return 0; | |
819 logCopyDataPtr = getFrame(98); | |
820 logCopyDataPtrTemp = logCopyDataPtr; | |
821 logCopyDataLength.u32bit = ext_flash_read_dive_raw_with_double_header_1K((uint8_t *)logCopyDataPtr, 1000000,logStepBackwards); | |
822 answer = HAL_OK; | |
823 if(answer == HAL_OK) | |
824 answer = HAL_UART_Transmit(&UartHandle, &(logCopyDataLength.u8bit.byteLow), 1,2000); | |
825 if(answer == HAL_OK) | |
826 answer = HAL_UART_Transmit(&UartHandle, &(logCopyDataLength.u8bit.byteMidLow), 1,2000); | |
827 if(answer == HAL_OK) | |
828 answer = HAL_UART_Transmit(&UartHandle, &(logCopyDataLength.u8bit.byteMidHigh), 1,2000); | |
829 if(answer == HAL_OK) | |
830 answer = HAL_UART_Transmit(&UartHandle, &(logCopyDataLength.u8bit.byteHigh), 1,2000); | |
831 logCopyDataLengthTemp = logCopyDataLength.u32bit; | |
832 while((logCopyDataLengthTemp >= 0xFFFF) && (answer == HAL_OK)) | |
833 { | |
834 answer = HAL_UART_Transmit(&UartHandle, (uint8_t *)logCopyDataPtrTemp, 0xFFFF,30000); | |
835 logCopyDataLengthTemp -= 0xFFFF; | |
836 logCopyDataPtrTemp += 0xFFFF; | |
837 } | |
838 if((logCopyDataLengthTemp > 0) && (answer == HAL_OK)) | |
839 answer = HAL_UART_Transmit(&UartHandle, (uint8_t *)logCopyDataPtrTemp, (uint16_t)logCopyDataLengthTemp,30000); | |
840 releaseFrame(98,logCopyDataPtr); | |
841 if(answer == HAL_OK) | |
842 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
843 else | |
844 return 0; | |
845 break; | |
846 | |
847 case 0x84: | |
848 logCopyDataPtr = getFrame(98); | |
849 logCopyDataPtrTemp = logCopyDataPtr; | |
850 answer = HAL_OK; | |
851 if(answer == HAL_OK) | |
852 answer = HAL_UART_Receive(&UartHandle, &logDummyByte, 1,2000); | |
853 if(answer == HAL_OK) | |
854 answer = HAL_UART_Receive(&UartHandle, &(logCopyDataLength.u8bit.byteLow), 1,2000); | |
855 if(answer == HAL_OK) | |
856 answer = HAL_UART_Receive(&UartHandle, &(logCopyDataLength.u8bit.byteMidLow), 1,2000); | |
857 if(answer == HAL_OK) | |
858 answer = HAL_UART_Receive(&UartHandle, &(logCopyDataLength.u8bit.byteMidHigh), 1,2000); | |
859 if(answer == HAL_OK) | |
860 answer = HAL_UART_Receive(&UartHandle, &(logCopyDataLength.u8bit.byteHigh), 1,2000); | |
861 logCopyDataLengthTemp = logCopyDataLength.u32bit; | |
862 while((logCopyDataLengthTemp >= 0xFFFF) && (answer == HAL_OK)) | |
863 { | |
864 answer = HAL_UART_Receive(&UartHandle, (uint8_t *)logCopyDataPtrTemp, 0xFFFF,30000); | |
865 logCopyDataLengthTemp -= 0xFFFF; | |
866 logCopyDataPtrTemp += 0xFFFF; | |
867 } | |
868 if((logCopyDataLengthTemp > 0) && (answer == HAL_OK)) | |
869 answer = HAL_UART_Receive(&UartHandle, (uint8_t *)logCopyDataPtrTemp, (uint16_t)logCopyDataLengthTemp,30000); | |
870 if(answer == HAL_OK) | |
871 ext_flash_write_dive_raw_with_double_header_1K((uint8_t *)logCopyDataPtr, logCopyDataLength.u32bit); | |
872 releaseFrame(98,logCopyDataPtr); | |
873 if(answer == HAL_OK) | |
874 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
875 else | |
876 return 0; | |
877 break; | |
878 | |
879 case 0x85: | |
880 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
881 logCopyDataPtr = getFrame(98); | |
882 ext_flash_read_header_memory((uint8_t *)logCopyDataPtr); | |
883 for(int i=0;i<8;i++) | |
884 HAL_UART_Transmit(&UartHandle, (uint8_t *)(logCopyDataPtr + (0x8000 * i)), (uint16_t)0x8000,60000); | |
885 releaseFrame(98,logCopyDataPtr); | |
886 break; | |
887 | |
888 case 0x86: | |
889 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
890 logCopyDataPtr = getFrame(98); | |
891 for(int i=0;i<8;i++) | |
892 HAL_UART_Receive(&UartHandle, (uint8_t *)(logCopyDataPtr + (0x8000 * i)), (uint16_t)0x8000,60000); | |
893 ext_flash_write_header_memory((uint8_t *)logCopyDataPtr); | |
894 releaseFrame(98,logCopyDataPtr); | |
895 break; | |
896 | |
897 case 0x87: | |
898 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 4, 1000)!= HAL_OK) | |
899 return 0; | |
900 if(((aRxBuffer[0] ^ aRxBuffer[2]) != 0xFF) || ((aRxBuffer[1] ^ aRxBuffer[3]) != 0xFF)) | |
901 return 0; | |
902 totalDiveCount.u8bit.byteLow = aRxBuffer[1]; | |
903 totalDiveCount.u8bit.byteHigh = aRxBuffer[0]; | |
904 ext_flash_repair_SPECIAL_dive_numbers_starting_count_with(totalDiveCount.u16bit); | |
905 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
906 break; | |
907 #endif | |
908 } | |
909 | |
910 // was service command? Yes, finish and exit | |
911 if(count) | |
912 { | |
913 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, count,10000)!= HAL_OK) | |
914 return 0; | |
915 else | |
916 return prompt4D4C(receiveStartByteUart); | |
917 } | |
918 } | |
919 | |
920 | |
921 // download mode commands | |
922 switch(type) | |
923 { | |
924 // return of command for almost all commands | |
925 case 0x60: // get model + features | |
926 case 0x61: // get all headers full (256 bytes) | |
927 case 0x62: // set clock | |
928 case 0x63: // set custom text | |
929 case 0x66: // get dive profile | |
930 case 0x69: // get serial, old version numbering, custom text | |
931 case 0x6A: // get model | |
932 case 0x6B: // get specific firmware version | |
396 | 933 case 0x6C: /* Display Bluetooth signal strength */ |
38 | 934 case 0x6D: // get all compact headers (16 byte) |
935 case 0x6E: // display text | |
936 case 0x70: // read min, default, max setting | |
937 case 0x72: // read setting | |
938 case 0x77: // write setting | |
939 case 0x78: // reset all settings | |
940 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 1, 1000)!= HAL_OK) | |
941 return 0; | |
942 break; | |
943 | |
944 // start communication (again) | |
945 case 0xBB: | |
946 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 2, 1000)!= HAL_OK) | |
947 return 0; | |
948 else | |
949 return prompt4D4C(receiveStartByteUart); | |
950 | |
951 // stop communication | |
952 case 0xFF: | |
953 HAL_UART_Transmit(&UartHandle, (uint8_t*)&aTxBuffer, 1, 1000); | |
954 return 0; | |
955 | |
956 default: | |
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957 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); |
38 | 958 break; |
959 } | |
960 | |
961 switch(type) | |
962 { | |
963 case 0x62: | |
964 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 6, 2000)!= HAL_OK) | |
965 return 0; | |
966 break; | |
967 case 0x63: | |
968 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 60, 5000)!= HAL_OK) | |
969 return 0; | |
970 break; | |
971 case 0x66: | |
972 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 1, 1000)!= HAL_OK) | |
973 return 0; | |
974 break; | |
975 case 0x6B: | |
976 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 1, 1000)!= HAL_OK) | |
977 return 0; | |
978 break; | |
979 case 0x6E: | |
980 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 16, 5000)!= HAL_OK) | |
981 return 0; | |
982 break; | |
983 case 0x77: | |
984 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 5, 5000)!= HAL_OK) | |
985 return 0; | |
986 break; | |
987 case 0x72: | |
988 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 1, 5000)!= HAL_OK) | |
989 return 0; | |
990 break; | |
991 case 0x70: | |
992 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, 1, 5000)!= HAL_OK) | |
993 return 0; | |
994 break; | |
995 } | |
996 | |
997 switch(type) | |
998 { | |
999 /* common to standard and bootloader */ | |
1000 | |
1001 // get model + features | |
1002 case 0x60: | |
1003 aTxBuffer[count++] = 0x00; // hardware descriptor HIGH byte | |
1004 aTxBuffer[count++] = 0x3B; // hardware descriptor LOW byte // 0x3B is OSTC4 // 0x1A is OTSC3 | |
1005 aTxBuffer[count++] = 0x00; // feature descriptor HIGH byte | |
138 | 1006 aTxBuffer[count++] = 0x00; // feature descriptor LOW byte |
38 | 1007 aTxBuffer[count++] = 0x43; // model id |
1008 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1009 break; | |
1010 | |
1011 // get model | |
1012 case 0x6A: | |
1013 aTxBuffer[count++] = 0x3B; // 0x3B is OSTC4 // 0x1A is OTSC3 | |
1014 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1015 break; | |
1016 | |
1017 // get all firmware version and status (OSTC4 only) | |
1018 case 0x6B: | |
1019 switch(*aRxBuffer) | |
1020 { | |
1021 case 0xFF: | |
1022 // firmware | |
1023 aTxBuffer[count++] = firmwareDataGetPointer()->versionFirst; | |
1024 aTxBuffer[count++] = firmwareDataGetPointer()->versionSecond; | |
1025 aTxBuffer[count++] = firmwareDataGetPointer()->versionThird; | |
1026 aTxBuffer[count++] = firmwareDataGetPointer()->versionBeta; | |
1027 break; | |
1028 case 0xFE: | |
1029 // RTE | |
1030 getActualRTEandFONTversion(&tempHigh, &tempLow, 0, 0); // RTE | |
1031 aTxBuffer[count++] = tempHigh; | |
1032 aTxBuffer[count++] = tempLow; | |
1033 aTxBuffer[count++] = 0; | |
1034 aTxBuffer[count++] = 0; | |
1035 break; | |
1036 case 0x10: | |
1037 getActualRTEandFONTversion( 0, 0, &tempHigh, &tempLow); // font | |
1038 aTxBuffer[count++] = tempHigh; | |
1039 aTxBuffer[count++] = tempLow; | |
1040 aTxBuffer[count++] = 0; | |
1041 aTxBuffer[count++] = 0; | |
1042 break; | |
1043 default: | |
1044 // not supported | |
1045 aTxBuffer[count++] = 0xFF; | |
1046 aTxBuffer[count++] = 0xFF; | |
1047 aTxBuffer[count++] = 0xFF; | |
1048 aTxBuffer[count++] = 0xFF; | |
1049 break; | |
1050 /* Jef Driesen Test | |
1051 default: | |
1052 // not supported | |
1053 aTxBuffer[count++] = 0x1; | |
1054 aTxBuffer[count++] = 0x1; | |
1055 aTxBuffer[count++] = 0x1; | |
1056 aTxBuffer[count++] = 0x1; | |
1057 break; | |
1058 */ | |
1059 } | |
1060 /* | |
1061 // serial | |
1062 aTxBuffer[count++] = pSettings->serialLow; | |
1063 aTxBuffer[count++] = pSettings->serialHigh; | |
1064 // batch code (date) | |
1065 hardwareBatchCode(&tempHigh, &tempLow); | |
1066 aTxBuffer[count++] = tempLow; | |
1067 aTxBuffer[count++] = tempHigh; | |
1068 // status and status detail (future feature) | |
1069 aTxBuffer[count++] = 0; | |
1070 aTxBuffer[count++] = 0; | |
1071 aTxBuffer[count++] = 0; | |
1072 aTxBuffer[count++] = 0; | |
1073 */ | |
1074 // prompt | |
1075 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1076 break; | |
1077 | |
396 | 1078 /* Trigger Bluetooth signal strength evaluation */ |
1079 case 0x6C: tComm_EvaluateBluetoothStrength(); | |
1080 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1081 break; | |
38 | 1082 // display text |
1083 case 0x6E: | |
1084 for(int i=0;i<16;i++) | |
1085 display_text[i] = aRxBuffer[i]; | |
1086 display_text[15] = 0; | |
1087 display_text[255] = 16; | |
1088 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1089 break; | |
1090 | |
1091 // version / identify | |
1092 case 0x69: | |
1093 #ifndef BOOTLOADER_STANDALONE | |
1094 aTxBuffer[count++] = pSettings->serialLow; | |
1095 aTxBuffer[count++] = pSettings->serialHigh; | |
1096 aTxBuffer[count++] = firmwareVersion_16bit_low(); | |
1097 aTxBuffer[count++] = firmwareVersion_16bit_high(); | |
1098 memcpy(&aTxBuffer[count], pSettings->customtext, 60); | |
1099 #else | |
1100 aTxBuffer[count++] = 0;//pSettings->serialLow; | |
1101 aTxBuffer[count++] = 0;//pSettings->serialHigh; | |
1102 aTxBuffer[count++] = 0;//firmwareVersion_16bit_low(); | |
1103 aTxBuffer[count++] = 0;//firmwareVersion_16bit_high(); | |
1104 memset(&aTxBuffer[count], 0, 60); | |
1105 #endif | |
1106 count += 60; | |
1107 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1108 break; | |
1109 | |
1110 #ifndef BOOTLOADER_STANDALONE | |
1111 //Reset all setting | |
1112 case 0x78: | |
1113 set_settings_to_Standard(); | |
1114 updateSettingsAndMenuOnExit = 1; | |
1115 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1116 break; | |
1117 #endif | |
1118 | |
1119 #ifndef BOOTLOADER_STANDALONE | |
1120 // full headers (256 byte) | |
1121 case 0x61: | |
1122 for(int StepBackwards = 255; StepBackwards > -1; StepBackwards--) | |
1123 { | |
1124 logbook_getHeader(StepBackwards, &logbookHeader); | |
1125 plogbookHeaderOSTC3 = logbook_build_ostc3header(&logbookHeader); | |
1126 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)plogbookHeaderOSTC3, 256,5000)!= HAL_OK) | |
1127 return 0; | |
1128 } | |
1129 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1130 break; | |
1131 | |
1132 // compact headers (16 byte) | |
1133 case 0x6D: | |
1134 for(int StepBackwards = 255; StepBackwards > -1; StepBackwards--) | |
1135 { | |
1136 logbook_getHeader(StepBackwards, &logbookHeader); | |
1137 plogbookHeaderOSTC3compact = logbook_build_ostc3header_compact(&logbookHeader); | |
1138 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)plogbookHeaderOSTC3compact, 16,5000)!= HAL_OK) | |
1139 return 0; | |
1140 } | |
1141 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1142 break; | |
1143 | |
1144 // set clock & date | |
1145 case 0x62: | |
1146 // ToDo | |
1147 stimestructure.Hours = aRxBuffer[0]; | |
1148 stimestructure.Minutes = aRxBuffer[1]; | |
1149 stimestructure.Seconds = aRxBuffer[2]; | |
1150 sdatestructure.Month = aRxBuffer[3]; | |
1151 sdatestructure.Date = aRxBuffer[4]; | |
1152 sdatestructure.Year = aRxBuffer[5]; // This parameter must be a number between Min_Data = 0 and Max_Data = 99 | |
1153 setWeekday(&sdatestructure); | |
1154 | |
1155 if( ( stimestructure.Hours < 24 ) | |
1156 &&( stimestructure.Minutes < 60 ) | |
1157 &&( stimestructure.Seconds < 60 ) | |
1158 &&( sdatestructure.Month < 13 ) | |
1159 &&( sdatestructure.Date < 32 ) | |
1160 &&( sdatestructure.Year < 100 )) | |
1161 { | |
1162 setTime(stimestructure); | |
1163 setDate(sdatestructure); | |
1164 set_globalState(StUART_RTECONNECT); | |
1165 HAL_Delay(1); | |
1166 set_globalState(StUART_STANDARD); | |
1167 } | |
1168 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1169 break; | |
1170 | |
1171 case 0x63: | |
1172 for(int i=0;i<60;i++) | |
1173 pSettings->customtext[i] = aRxBuffer[i]; | |
1174 pSettings->customtext[59] = 0; | |
1175 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1176 break; | |
1177 | |
1178 // get dive profile | |
1179 case 0x66: | |
1180 logbook_getHeader(255 - aRxBuffer[0], &logbookHeader); | |
1181 plogbookHeaderOSTC3 = logbook_build_ostc3header(&logbookHeader); | |
1182 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)plogbookHeaderOSTC3, 256,5000)!= HAL_OK) | |
1183 return 0; | |
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1184 |
458 | 1185 if((logbookHeader.pBeginProfileData[0]==0) /* no sample information */ |
1186 && (logbookHeader.pBeginProfileData[1]==0) | |
1187 && (logbookHeader.pBeginProfileData[2]==0)) | |
38 | 1188 { |
458 | 1189 sampleTotalLength = logbook_fillDummySampleBuffer(&logbookHeader); |
456
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1190 while(sampleTotalLength >= 128) |
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1191 { |
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1192 logbook_readDummySamples(aTxBuffer,128); |
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1193 sampleTotalLength -= 128; |
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1194 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 128,5000)!= HAL_OK) |
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1195 return 0; |
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1196 } |
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1197 if(sampleTotalLength) |
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1198 { |
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1199 logbook_readDummySamples(aTxBuffer,sampleTotalLength); |
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1200 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, sampleTotalLength,5000)!= HAL_OK) |
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1201 return 0; |
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1202 } |
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1203 |
38 | 1204 } |
456
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1205 else |
38 | 1206 { |
456
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1207 ext_flash_open_read_sample(255 - aRxBuffer[0], &sampleTotalLength); |
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1208 while(sampleTotalLength >= 128) |
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1209 { |
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1210 ext_flash_read_next_sample_part(aTxBuffer,128); |
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1211 sampleTotalLength -= 128; |
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1212 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, 128,5000)!= HAL_OK) |
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1213 return 0; |
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|
1214 } |
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1215 if(sampleTotalLength) |
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1216 { |
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1217 ext_flash_read_next_sample_part(aTxBuffer,sampleTotalLength); |
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1218 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, sampleTotalLength,5000)!= HAL_OK) |
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1219 return 0; |
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1220 } |
38 | 1221 } |
456
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1222 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); |
38 | 1223 break; |
1224 | |
1225 // read min,default,max setting | |
1226 case 0x70: | |
1227 count += readDataLimits__8and16BitValues_4and7BytesOutput(aRxBuffer[0],&aTxBuffer[count]); | |
1228 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1229 break; | |
1230 | |
1231 // read setting | |
1232 case 0x72: | |
1233 readData(aRxBuffer[0],&aTxBuffer[count]); | |
1234 count += 4; | |
1235 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1236 break; | |
1237 | |
1238 // write setting | |
1239 case 0x77: | |
1240 writeData(aRxBuffer); | |
1241 updateSettingsAndMenuOnExit = 1; | |
1242 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1243 break; | |
1244 #else | |
1245 /* bootloader dummies */ | |
1246 // full headers (256 byte) | |
1247 case 0x61: | |
1248 for(int StepBackwards = 0;StepBackwards<256;StepBackwards++) | |
1249 { | |
1250 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)dummyForBootloader, 256,5000)!= HAL_OK) | |
1251 return 0; | |
1252 } | |
1253 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1254 break; | |
1255 // compact headers (16 byte) | |
1256 case 0x6D: | |
1257 for(int StepBackwards = 0;StepBackwards<256;StepBackwards++) | |
1258 { | |
1259 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)dummyForBootloader, 16,5000)!= HAL_OK) | |
1260 return 0; | |
1261 } | |
1262 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1263 break; | |
1264 // set clock & date | |
1265 case 0x62: | |
1266 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1267 break; | |
1268 // set custom text | |
1269 case 0x63: | |
1270 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1271 break; | |
1272 // get dive profile | |
1273 case 0x66: | |
1274 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)dummyForBootloader, 256,5000)!= HAL_OK) | |
1275 return 0; | |
1276 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1277 break; | |
1278 // read min,default,max setting | |
1279 // read settings | |
1280 | |
1281 | |
1282 case 0x72: | |
1283 memcpy(&aTxBuffer[count], dummyForBootloader, 4); | |
1284 count += 4; | |
1285 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1286 break; | |
1287 // write settings | |
1288 case 0x77: | |
1289 aTxBuffer[count++] = prompt4D4C(receiveStartByteUart); | |
1290 break; | |
1291 #endif | |
1292 } | |
1293 | |
1294 if(count) | |
1295 { | |
1296 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBuffer, count,10000)!= HAL_OK) | |
1297 return 0; | |
1298 else | |
1299 return prompt4D4C(receiveStartByteUart); | |
1300 } | |
1301 return 0; | |
1302 } | |
1303 | |
396 | 1304 #define BLOCKSIZE 0x1000 |
38 | 1305 |
1306 HAL_StatusTypeDef receive_uart_large_size(UART_HandleTypeDef *huart, uint8_t *pData, uint32_t Size) | |
1307 { | |
396 | 1308 uint16_t length_4k_blocks; |
1309 uint16_t length_4k_remainder; | |
38 | 1310 uint32_t temp; |
1311 HAL_StatusTypeDef result = HAL_OK; | |
1312 uint32_t pDataLocal; | |
1313 | |
396 | 1314 length_4k_blocks = (uint16_t) (Size / BLOCKSIZE); |
1315 temp = length_4k_blocks; | |
1316 temp *= BLOCKSIZE; | |
1317 length_4k_remainder = (uint16_t) ( Size - temp); | |
38 | 1318 |
1319 pDataLocal = (uint32_t)pData; | |
1320 | |
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1321 |
396 | 1322 while((result == HAL_OK) && length_4k_blocks) |
38 | 1323 { |
396 | 1324 result = HAL_UART_Receive(&UartHandle, (uint8_t *)pDataLocal, BLOCKSIZE , UART_TIMEOUT_LARGE_BLOCK); |
1325 pDataLocal += BLOCKSIZE; | |
1326 length_4k_blocks--; | |
38 | 1327 } |
396 | 1328 |
1329 if((result == HAL_OK) && length_4k_remainder) | |
38 | 1330 { |
396 | 1331 result = HAL_UART_Receive(&UartHandle, (uint8_t *)pDataLocal, length_4k_remainder , UART_TIMEOUT_LARGE_BLOCK); |
38 | 1332 } |
1333 return result; | |
1334 } | |
1335 | |
1336 | |
1337 /* for safety reason (memory blocking this code is main and sub */ | |
1338 | |
1339 #ifdef BOOTLOADER_STANDALONE | |
1340 | |
1341 uint8_t receive_update_data_cpu2(void) | |
1342 { | |
1343 uint8_t answer; | |
1344 | |
1345 uint8_t* pBuffer = (uint8_t*)getFrame(20); | |
1346 answer = receive_update_data_cpu2_sub(pBuffer); | |
1347 releaseFrame(20,(uint32_t)pBuffer); | |
1348 return answer; | |
1349 } | |
1350 | |
1351 | |
1352 uint8_t receive_update_data_cpu2_sub(uint8_t* pBuffer) | |
1353 { | |
1354 uint8_t sBuffer[10]; | |
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1355 uint32_t length, offsetTotal, checksum, checksumCalc; |
38 | 1356 uint8_t id; |
1357 const uint8_t id_RTE = 0xFE; | |
1358 | |
1359 //Get length | |
1360 if(HAL_UART_Receive(&UartHandle, pBuffer, 4,5000)!= HAL_OK) // 58000 | |
1361 { | |
1362 return 0; | |
1363 } | |
1364 length = 256 * 256 * 256 * (uint32_t)pBuffer[0] + 256 * 256 * (uint32_t)pBuffer[1] + 256 * (uint32_t)pBuffer[2] + pBuffer[3]; | |
1365 | |
1366 //Get id | |
1367 if(HAL_UART_Receive(&UartHandle, pBuffer, 4,5000)!= HAL_OK) // 58000 | |
1368 { | |
1369 return 0; | |
1370 } | |
1371 id = pBuffer[0]; | |
1372 offsetTotal = 256 * 256 * 256 * (uint32_t)pBuffer[0] + 256 * 256 * (uint32_t)pBuffer[1] + 256 * (uint32_t)pBuffer[2] + pBuffer[3]; | |
1373 | |
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1374 // get checksum, bytes are in different order on Dev C++ code!!! |
38 | 1375 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 |
1376 { | |
1377 return 0; | |
1378 } | |
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1379 checksum = 256 * 256 * 256 * (uint32_t)sBuffer[3] + 256 * 256 * (uint32_t)sBuffer[2] + 256 * (uint32_t)sBuffer[1] + sBuffer[0]; |
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1380 checksumCalc = length + offsetTotal; |
38 | 1381 |
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1382 // no need to get code if checksum == length is wrong |
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1383 if(checksumCalc != checksum) |
38 | 1384 { |
1385 return 0; | |
1386 } | |
1387 | |
1388 //get Code | |
1389 if(receive_uart_large_size(&UartHandle, pBuffer, length)!= HAL_OK) | |
1390 { | |
1391 return 0; | |
1392 } | |
1393 | |
1394 //get Checksum | |
1395 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 580000 | |
1396 { | |
1397 return 0; | |
1398 } | |
1399 uint32_t checksum = 256 * 256 * 256 *(uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; | |
1400 // uint32_t checksumCalc = crc32c_checksum(pBuffer, length,0,0); | |
1401 uint32_t checksumCalc = CRC_CalcBlockCRC((uint32_t*)pBuffer, length/4); | |
1402 | |
1403 if(checksum != checksumCalc) | |
1404 { | |
1405 return 0; | |
1406 } | |
1407 | |
1408 if(id != id_RTE) | |
1409 { | |
1410 strcpy(display_text,"wrong data."); | |
1411 display_text[255] = 32; | |
1412 return 0; | |
1413 } | |
1414 | |
1415 strcpy(display_text," RTE update."); | |
1416 display_text[255] = 32; | |
1417 | |
1418 return extCPU2bootloader(pBuffer,length,display_text); | |
1419 } | |
1420 #endif // BOOTLOADER_STANDALONE | |
1421 | |
1422 | |
1423 | |
1424 uint8_t receive_update_flex(uint8_t isRTEupdateALLOWED) | |
1425 { | |
1426 uint8_t answer; | |
1427 | |
1428 uint8_t* pBuffer1 = (uint8_t*)getFrame(20); | |
1429 uint8_t* pBuffer2 = (uint8_t*)getFrame(20); | |
1430 | |
1431 answer = receive_update_data_flex(pBuffer1, pBuffer2, isRTEupdateALLOWED); | |
1432 | |
1433 releaseFrame(20,(uint32_t)pBuffer1); | |
1434 releaseFrame(20,(uint32_t)pBuffer2); | |
1435 | |
1436 return answer; | |
1437 } | |
1438 | |
1439 uint8_t receive_update_data_mainCPU_firmware(void) | |
1440 { | |
1441 uint8_t answer; | |
1442 | |
1443 uint8_t* pBuffer1 = (uint8_t*)getFrame(20); | |
1444 | |
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1445 answer = receive_update_data_mainCPU_firmware_subroutine(1, pBuffer1, 0); |
38 | 1446 |
1447 releaseFrame(20,(uint32_t)pBuffer1); | |
1448 | |
1449 return answer; | |
1450 } | |
1451 | |
1452 /* multi buffer (long data) not tested yet */ | |
1453 uint8_t receive_update_data_mainCPU_variable_firmware(void) | |
1454 { | |
1455 uint8_t answer; | |
1456 | |
1457 uint8_t* pBuffer1 = (uint8_t*)getFrame(20); | |
1458 uint8_t* pBuffer2 = (uint8_t*)getFrame(20); | |
1459 | |
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1460 answer = receive_update_data_mainCPU_firmware_subroutine(2, pBuffer1, pBuffer2); |
38 | 1461 |
1462 releaseFrame(20,(uint32_t)pBuffer1); | |
1463 releaseFrame(20,(uint32_t)pBuffer2); | |
1464 | |
1465 return answer; | |
1466 } | |
1467 | |
1468 uint8_t receive_update_data_flex(uint8_t* pBuffer1, uint8_t* pBuffer2, uint8_t RTEupdateALLOWED) | |
1469 { | |
1470 uint8_t sBuffer[10]; | |
1471 uint8_t serialBuffer[10]; | |
1472 uint32_t length1, length2, lengthCompare, offsetCompare, ByteCompareStatus; | |
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1473 uint32_t lengthTotal, offsetTotal; |
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1474 uint32_t checksum, checksumCalc = 0; |
38 | 1475 uint8_t id; |
1476 const uint8_t id_Region1_firmware = 0xFF; | |
1477 const uint8_t id_RTE = 0xFE; | |
1478 uint8_t textpointer = 0; | |
1479 | |
1480 //Get length | |
1481 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 | |
1482 { | |
1483 return 0; | |
1484 } | |
1485 lengthTotal = 256 * 256 * 256 * (uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; | |
1486 | |
1487 //Get offset and/or id (id is 0xFF for RTE, 0xFE for firmware and offset if var) | |
1488 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 | |
1489 { | |
1490 return 0; | |
1491 } | |
1492 id = sBuffer[0]; | |
1493 | |
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1494 checksumCalc = 256 * 256 * 256 * (uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; |
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1495 checksumCalc += lengthTotal; |
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1496 //old, does no longer work because of the fonts: checksumCalc = lengthTotal + offsetTotal; |
38 | 1497 |
1498 if((id != id_Region1_firmware) && (id != id_RTE) && (id != id_FONT) && (id != id_FONT_OLD)) | |
1499 { | |
1500 return 0; | |
1501 } | |
1502 | |
1503 // neu 110212 | |
1504 if(id == id_FONT) | |
1505 offsetTotal = 256 * 256 * 256 * (uint32_t)sBuffer[1] + 256 * 256 * (uint32_t)sBuffer[2] + 256 * (uint32_t)sBuffer[3]; | |
1506 else | |
1507 offsetTotal = 256 * 256 * 256 * (uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; | |
1508 | |
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1509 // get checksum, bytes are in different order on Dev C++ code!!! |
38 | 1510 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 |
1511 { | |
1512 return 0; | |
1513 } | |
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1514 checksum = 256 * 256 * 256 * (uint32_t)sBuffer[3] + 256 * 256 * (uint32_t)sBuffer[2] + 256 * (uint32_t)sBuffer[1] + sBuffer[0]; |
38 | 1515 |
1516 | |
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1517 if(checksumCalc != checksum) |
38 | 1518 { |
1519 uint8_t ptr = 0; | |
1520 strcpy(&display_text[ptr]," checksum error"); | |
1521 ptr += 15; | |
1522 strcpy(&display_text[ptr],"\n\r"); | |
1523 ptr += 2; | |
1524 ptr += gfx_number_to_string(10,0,&display_text[ptr],checksumCalc); | |
1525 display_text[ptr] = 0; | |
1526 display_text[255] = ptr + 1; | |
1527 return 0xFF; | |
1528 } | |
1529 | |
1530 //Get serial (new since 160211) | |
1531 if(HAL_UART_Receive(&UartHandle, serialBuffer, 4,5000)!= HAL_OK) | |
1532 { | |
1533 return 0; | |
1534 } | |
1535 | |
1536 if(lengthTotal > 768000) | |
1537 { | |
1538 length1 = 768000; | |
1539 length2 = lengthTotal - length1; | |
1540 } | |
1541 else | |
1542 { | |
1543 length1 = lengthTotal; | |
1544 length2 = 0; | |
1545 } | |
1546 | |
1547 if((pBuffer2 == 0) && (length2 != 0)) | |
1548 return 0; | |
1549 | |
1550 //get Code | |
1551 if(receive_uart_large_size(&UartHandle, pBuffer1, length1)!= HAL_OK) | |
1552 return 0; | |
1553 | |
1554 if(length2) | |
1555 if(receive_uart_large_size(&UartHandle, pBuffer2, length2)!= HAL_OK) | |
1556 return 0; | |
1557 | |
1558 //get Checksum | |
1559 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 | |
1560 return 0; | |
1561 | |
1562 checksum = 256 * 256 * 256 *(uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; | |
1563 // uint32_t checksumCalc = crc32c_checksum(pBuffer1, length1, pBuffer2, length2); | |
1564 if(length2) | |
1565 checksumCalc = CRC_CalcBlockCRC_moreThan768000((uint32_t*)pBuffer1, (uint32_t*)pBuffer2, lengthTotal/4); | |
1566 else | |
1567 checksumCalc = CRC_CalcBlockCRC((uint32_t*)pBuffer1, length1/4); | |
1568 | |
1569 /* check id now */ | |
1570 /* | |
1571 if(region == 2) | |
1572 { | |
1573 if((id == id_Region1_firmware) || (id == id_RTE)) | |
1574 { | |
1575 strcpy(display_text,"wrong data."); | |
1576 display_text[255] = 32; | |
1577 return 0; | |
1578 } | |
1579 } | |
1580 else | |
1581 { | |
1582 if(id != id_Region1_firmware) | |
1583 { | |
1584 strcpy(display_text,"wrong data."); | |
1585 display_text[255] = 32; | |
1586 return 0; | |
1587 } | |
1588 } | |
1589 */ | |
1590 /* test checksum */ | |
1591 if(checksum != checksumCalc) | |
1592 { | |
1593 uint8_t ptr = 0; | |
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1594 strcpy(&display_text[ptr]," checksum error"); |
38 | 1595 ptr += 15; |
1596 strcpy(&display_text[ptr],"\n\r"); | |
1597 display_text[ptr] = 0; | |
1598 display_text[255] = ptr + 1; | |
1599 return 0xFF; | |
1600 } | |
1601 | |
1602 if(id == id_Region1_firmware) | |
1603 { | |
1604 uint8_t ptr = 0; | |
1605 display_text[ptr++] = 'V'; | |
1606 ptr += gfx_number_to_string(2,0,&display_text[ptr],pBuffer1[0x10000] & 0x1F); | |
1607 display_text[ptr++] = '.'; | |
1608 ptr += gfx_number_to_string(2,0,&display_text[ptr],pBuffer1[0x10001] & 0x1F); | |
1609 display_text[ptr++] = '.'; | |
1610 ptr += gfx_number_to_string(2,0,&display_text[ptr],pBuffer1[0x10002] & 0x1F); | |
1611 display_text[ptr++] = ' '; | |
1612 if(pBuffer1[0x10003]) | |
1613 { | |
1614 strcpy(&display_text[ptr],"beta "); | |
1615 ptr +=5; | |
1616 } | |
1617 strcpy(&display_text[ptr],"\n\rpreparing for install."); | |
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1618 ptr += 25; |
38 | 1619 display_text[255] = ptr + 1; |
1620 } | |
1621 else if(id == id_RTE) | |
1622 { | |
1623 if(RTEupdateALLOWED) | |
1624 { | |
1625 strcpy(display_text," RTE update.\n\r"); | |
1626 textpointer = 0; | |
1627 while((display_text[textpointer] != 0) && (textpointer < 50)) | |
1628 textpointer++; | |
1629 #ifndef BOOTLOADER_STANDALONE | |
1630 if(textpointer < 50) | |
1631 { | |
1632 // display_text[textpointer++] = | |
1633 display_text[textpointer++] = '\025'; | |
1634 display_text[textpointer++] = TXT_2BYTE; | |
1635 display_text[textpointer++] = TXT2BYTE_DecoDataLost; | |
1636 display_text[textpointer] = 0; | |
1637 } | |
1638 #endif | |
1639 display_text[255] = textpointer+1; | |
1640 return extCPU2bootloader(pBuffer1,length1,display_text); | |
1641 } | |
1642 else | |
1643 return 0xFF; | |
1644 } | |
1645 else | |
1646 //if(region == 2) | |
1647 { | |
1648 uint8_t ptr = 0; | |
1649 ptr += gfx_number_to_string(7,0,&display_text[ptr],lengthTotal); | |
1650 strcpy(&display_text[ptr]," bytes with "); | |
1651 ptr += 12; | |
1652 ptr += gfx_number_to_string(7,0,&display_text[ptr],offsetTotal); | |
1653 strcpy(&display_text[ptr]," offset"); | |
1654 ptr += 7; | |
1655 strcpy(&display_text[ptr],"\n\rpreparing for install."); | |
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1656 ptr += 25; |
38 | 1657 display_text[255] = ptr + 1; |
1658 } | |
1659 | |
1660 | |
1661 // only non RTE !! | |
1662 uint8_t* pBufferCompare = (uint8_t*)getFrame(20); | |
1663 ByteCompareStatus = 0; | |
1664 | |
1665 if(id == id_Region1_firmware) | |
1666 { | |
1667 /* standard firmware limited to 768000 */ | |
1668 if(ext_flash_read_firmware(pBufferCompare,4,0) != 0xFFFFFFFF) | |
1669 ext_flash_erase_firmware(); | |
1670 ext_flash_write_firmware(pBuffer1, length1); | |
1671 lengthCompare = ext_flash_read_firmware(pBufferCompare,768000,0); | |
1672 | |
1673 if(lengthCompare != length1) | |
1674 ByteCompareStatus = 10000; | |
1675 for(int i = 0; i < length1; i++) | |
1676 { | |
1677 if(pBuffer1[0] != pBufferCompare[0]) | |
1678 ByteCompareStatus++; | |
1679 } | |
1680 } | |
1681 else | |
1682 //if(region == 2) | |
1683 { | |
1684 /* upper region firmware can be larger (1MB) */ | |
1685 if(ext_flash_read_firmware2(0, pBufferCompare,4, 0,0) != 0xFFFFFFFF) | |
1686 ext_flash_erase_firmware2(); | |
1687 ext_flash_write_firmware2(offsetTotal, pBuffer1, length1, pBuffer2, length2); | |
1688 lengthCompare = ext_flash_read_firmware2(&offsetCompare, pBufferCompare,768000, 0,768000); | |
1689 | |
1690 if(lengthCompare != length1 + length2) | |
1691 ByteCompareStatus = 10000; | |
1692 if(offsetTotal != offsetCompare) | |
1693 ByteCompareStatus += 20000; | |
1694 for(int i = 0; i < length1; i++) | |
1695 { | |
1696 if(pBuffer1[0] != pBufferCompare[0]) | |
1697 ByteCompareStatus++; | |
1698 } | |
1699 | |
1700 lengthCompare = ext_flash_read_firmware2(0, 0,768000, pBufferCompare,768000); | |
1701 for(int i = 0; i < length2; i++) | |
1702 { | |
1703 if(pBuffer2[0] != pBufferCompare[0]) | |
1704 ByteCompareStatus++; | |
1705 } | |
1706 } | |
1707 | |
1708 releaseFrame(20,(uint32_t)pBufferCompare); | |
1709 | |
1710 if(ByteCompareStatus != 0) | |
1711 { | |
1712 strcpy(&display_text[0],"\n\rcopy error."); | |
1713 display_text[255] = 21; | |
1714 return 0; | |
1715 } | |
1716 else | |
1717 { | |
1718 strcpy(&display_text[0],"\n\rready to install."); | |
1719 display_text[255] = 21; | |
1720 return 1; | |
1721 } | |
1722 } | |
1723 | |
1724 | |
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1725 uint8_t receive_update_data_mainCPU_firmware_subroutine(uint8_t region, uint8_t* pBuffer1, uint8_t* pBuffer2) |
38 | 1726 { |
1727 uint8_t sBuffer[10]; | |
1728 uint32_t length1, length2, lengthCompare, offsetCompare, ByteCompareStatus; | |
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1729 uint32_t lengthTotal, offsetTotal, checksum, checksumCalc = 0; |
38 | 1730 uint8_t id; |
1731 | |
1732 //Get length | |
1733 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 | |
1734 return 0; | |
1735 | |
1736 lengthTotal = 256 * 256 * 256 * (uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; | |
1737 | |
1738 //Get offset and/or id (id is 0xFF for RTE, 0xFE for firmware and offset if var) | |
1739 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 | |
1740 return 0; | |
1741 | |
1742 id = sBuffer[0]; | |
1743 | |
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1744 checksumCalc = 256 * 256 * 256 * (uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; |
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1745 checksumCalc += lengthTotal; |
38 | 1746 |
1747 if((id != id_Region1_firmware) && (id != id_RTE) && (id != id_FONT) && (id != id_FONT_OLD)) | |
1748 return 0; | |
1749 | |
1750 if(id == id_FONT) | |
1751 offsetTotal = 256 * 256 * 256 * (uint32_t)sBuffer[1] + 256 * 256 * (uint32_t)sBuffer[2] + 256 * (uint32_t)sBuffer[3]; | |
1752 // alt, prior to id for font | |
1753 else | |
1754 offsetTotal = 256 * 256 * 256 * (uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; | |
1755 | |
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1756 // get checksum, bytes are in different order on Dev C++ code!!! |
38 | 1757 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 |
1758 return 0; | |
1759 | |
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1760 checksum = 256 * 256 * 256 * (uint32_t)sBuffer[3] + 256 * 256 * (uint32_t)sBuffer[2] + 256 * (uint32_t)sBuffer[1] + sBuffer[0]; |
38 | 1761 |
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1762 //old: checksumCalc = lengthTotal + offsetTotal; |
38 | 1763 |
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1764 if(checksumCalc != checksum) |
38 | 1765 { |
1766 uint8_t ptr = 0; | |
1767 strcpy(&display_text[ptr]," checksum error"); | |
1768 ptr += 15; | |
1769 strcpy(&display_text[ptr],"\n\r"); | |
1770 ptr += 2; | |
1771 ptr += gfx_number_to_string(10,0,&display_text[ptr],checksumCalc); | |
1772 display_text[ptr] = 0; | |
1773 display_text[255] = ptr + 1; | |
1774 return 0xFF; | |
1775 } | |
1776 | |
1777 if(lengthTotal > 768000) | |
1778 { | |
1779 length1 = 768000; | |
1780 length2 = lengthTotal - length1; | |
1781 } | |
1782 else | |
1783 { | |
1784 length1 = lengthTotal; | |
1785 length2 = 0; | |
1786 } | |
1787 | |
1788 if((pBuffer2 == 0) && (length2 != 0)) | |
1789 return 0; | |
1790 | |
1791 //get Code | |
1792 if(receive_uart_large_size(&UartHandle, pBuffer1, length1)!= HAL_OK) | |
1793 return 0; | |
1794 | |
1795 if(length2) | |
1796 if(receive_uart_large_size(&UartHandle, pBuffer2, length2)!= HAL_OK) | |
1797 return 0; | |
1798 | |
1799 //get Checksum | |
1800 if(HAL_UART_Receive(&UartHandle, sBuffer, 4,5000)!= HAL_OK) // 58000 | |
1801 return 0; | |
1802 | |
1803 checksum = 256 * 256 * 256 *(uint32_t)sBuffer[0] + 256 * 256 * (uint32_t)sBuffer[1] + 256 * (uint32_t)sBuffer[2] + sBuffer[3]; | |
1804 // uint32_t checksumCalc = crc32c_checksum(pBuffer1, length1, pBuffer2, length2); | |
1805 if(length2) | |
1806 checksumCalc = CRC_CalcBlockCRC_moreThan768000((uint32_t*)pBuffer1, (uint32_t*)pBuffer2, lengthTotal/4); | |
1807 else | |
1808 checksumCalc = CRC_CalcBlockCRC((uint32_t*)pBuffer1, length1/4); | |
1809 | |
1810 /* check id now */ | |
1811 if(region == 2) | |
1812 { | |
1813 if((id == id_Region1_firmware) || (id == id_RTE)) | |
1814 { | |
1815 strcpy(display_text,"wrong data."); | |
1816 display_text[255] = 32; | |
1817 return 0; | |
1818 } | |
1819 } | |
1820 else | |
1821 { | |
1822 if(id != id_Region1_firmware) | |
1823 { | |
1824 strcpy(display_text,"wrong data."); | |
1825 display_text[255] = 32; | |
1826 return 0; | |
1827 } | |
1828 } | |
1829 | |
1830 /* test checksum */ | |
1831 if(checksum != checksumCalc) | |
1832 { | |
1833 uint8_t ptr = 0; | |
1834 strcpy(&display_text[ptr]," pruefsummen error"); | |
1835 ptr += 15; | |
1836 strcpy(&display_text[ptr],"\n\r"); | |
1837 display_text[ptr] = 0; | |
1838 display_text[255] = ptr + 1; | |
1839 return 0xFF; | |
1840 } | |
1841 | |
1842 if(region == 2) | |
1843 { | |
1844 uint8_t ptr = 0; | |
1845 ptr += gfx_number_to_string(7,0,&display_text[ptr],lengthTotal); | |
1846 strcpy(&display_text[ptr]," bytes with "); | |
1847 ptr += 12; | |
1848 ptr += gfx_number_to_string(7,0,&display_text[ptr],offsetTotal); | |
1849 strcpy(&display_text[ptr]," offset"); | |
1850 ptr += 7; | |
1851 strcpy(&display_text[ptr],"\n\rpreparing for install."); | |
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1852 ptr += 25; |
38 | 1853 display_text[255] = ptr + 1; |
1854 | |
1855 } | |
1856 else | |
1857 { | |
1858 uint8_t ptr = 0; | |
1859 display_text[ptr++] = 'V'; | |
1860 ptr += gfx_number_to_string(2,0,&display_text[ptr],pBuffer1[0x10000] & 0x1F); | |
1861 display_text[ptr++] = '.'; | |
1862 ptr += gfx_number_to_string(2,0,&display_text[ptr],pBuffer1[0x10001] & 0x1F); | |
1863 display_text[ptr++] = '.'; | |
1864 ptr += gfx_number_to_string(2,0,&display_text[ptr],pBuffer1[0x10002] & 0x1F); | |
1865 display_text[ptr++] = ' '; | |
1866 if(pBuffer1[0x10003]) | |
1867 { | |
1868 strcpy(&display_text[ptr],"beta "); | |
1869 ptr +=5; | |
1870 } | |
1871 strcpy(&display_text[ptr],"\n\rpreparing for install."); | |
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1872 ptr += 25; |
38 | 1873 display_text[255] = ptr + 1; |
1874 } | |
1875 | |
1876 uint8_t* pBufferCompare = (uint8_t*)getFrame(20); | |
1877 ByteCompareStatus = 0; | |
1878 | |
1879 if(region == 2) | |
1880 { | |
1881 /* upper region firmware can be larger (1MB) */ | |
1882 if(ext_flash_read_firmware2(0, pBufferCompare,4, 0,0) != 0xFFFFFFFF) | |
1883 ext_flash_erase_firmware2(); | |
1884 ext_flash_write_firmware2(offsetTotal, pBuffer1, length1, pBuffer2, length2); | |
1885 lengthCompare = ext_flash_read_firmware2(&offsetCompare, pBufferCompare,768000, 0,768000); | |
1886 | |
1887 if(lengthCompare != length1 + length2) | |
1888 ByteCompareStatus = 10000; | |
1889 if(offsetTotal != offsetCompare) | |
1890 ByteCompareStatus += 20000; | |
1891 for(int i = 0; i < length1; i++) | |
1892 { | |
1893 if(pBuffer1[0] != pBufferCompare[0]) | |
1894 ByteCompareStatus++; | |
1895 } | |
1896 | |
1897 lengthCompare = ext_flash_read_firmware2(0, 0,768000, pBufferCompare,768000); | |
1898 for(int i = 0; i < length2; i++) | |
1899 { | |
1900 if(pBuffer2[0] != pBufferCompare[0]) | |
1901 ByteCompareStatus++; | |
1902 } | |
1903 } | |
1904 else | |
1905 { | |
1906 /* standard firmware limited to 768000 */ | |
1907 if(ext_flash_read_firmware(pBufferCompare,4,0) != 0xFFFFFFFF) | |
1908 ext_flash_erase_firmware(); | |
1909 ext_flash_write_firmware(pBuffer1, length1); | |
1910 lengthCompare = ext_flash_read_firmware(pBufferCompare,768000,0); | |
1911 | |
1912 if(lengthCompare != length1) | |
1913 ByteCompareStatus = 10000; | |
1914 for(int i = 0; i < length1; i++) | |
1915 { | |
1916 if(pBuffer1[0] != pBufferCompare[0]) | |
1917 ByteCompareStatus++; | |
1918 } | |
1919 } | |
1920 | |
1921 releaseFrame(20,(uint32_t)pBufferCompare); | |
1922 | |
1923 if(ByteCompareStatus != 0) | |
1924 { | |
1925 strcpy(&display_text[0],"\n\rcopy error."); | |
1926 display_text[255] = 21; | |
1927 return 0; | |
1928 } | |
1929 else | |
1930 { | |
1931 strcpy(&display_text[0],"\n\rready to install."); | |
1932 display_text[255] = 21; | |
1933 return 1; | |
1934 } | |
1935 } | |
1936 | |
396 | 1937 void tComm_RequestBluetoothStrength(void) |
1938 { | |
1939 EvaluateBluetoothSignalStrength = 1; | |
1940 } | |
1941 | |
1942 /* read, validate the modul answer and flush rx que if necessary */ | |
1943 uint8_t tComm_CheckAnswerOK() | |
1944 { | |
1945 char answerOkay[] = "\r\nOK\r\n"; | |
400 | 1946 char aRxBuffer[UART_CMD_BUF_SIZE]; |
396 | 1947 uint8_t sizeAnswer = sizeof(answerOkay) -1; |
1948 uint8_t result = HAL_OK; | |
1949 uint8_t index = 0; | |
1950 uint8_t answer; | |
1951 | |
400 | 1952 memset(aRxBuffer,0,UART_CMD_BUF_SIZE); |
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1953 if(HAL_UART_Receive(&UartHandle, (uint8_t*)aRxBuffer, sizeAnswer, UART_OPERATION_TIMEOUT) == HAL_OK) |
396 | 1954 { |
1955 do | |
1956 { | |
1957 if(answerOkay[index] != aRxBuffer[index]) | |
1958 { | |
1959 index = sizeAnswer; | |
1960 result = HAL_ERROR; /* unexpected answer => there might be characters left in RX que => read and discard all rx bytes */ | |
1961 do | |
1962 { | |
1963 answer = HAL_UART_Receive(&UartHandle, (uint8_t*)&aRxBuffer[index], 1, 10); | |
400 | 1964 if (index < UART_CMD_BUF_SIZE) |
1965 { | |
1966 index++; | |
1967 } | |
396 | 1968 }while(answer == HAL_OK); |
1969 index = sizeAnswer; | |
1970 } | |
1971 else | |
1972 { | |
1973 index++; | |
1974 } | |
1975 }while(index < sizeAnswer); | |
1976 } | |
1977 else | |
1978 { | |
1979 result = HAL_ERROR; | |
1980 } | |
1981 return result; | |
1982 | |
1983 } | |
400 | 1984 |
396 | 1985 |
1986 void tComm_EvaluateBluetoothStrength(void) | |
1987 { | |
1988 char aTxBufferBarSSI[] = "AT+BARSSI\r"; | |
1989 char aTxBufferEscapeSequence[] = "+++"; | |
1990 char aTxBufferEnd[] = "ATO\r"; | |
1991 uint8_t sizeRequest = sizeof(aTxBufferBarSSI) -1; | |
1992 | |
1993 uint8_t answer = HAL_OK; | |
400 | 1994 char aRxBuffer[UART_CMD_BUF_SIZE]; |
1995 char SignalStr[UART_CMD_BUF_SIZE]; | |
396 | 1996 uint8_t index = 0; |
1997 uint8_t strindex = 0; | |
1998 int8_t sigqual = 0; | |
1999 | |
2000 HAL_Delay(200); | |
2001 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferEscapeSequence, 3, 2000)== HAL_OK) | |
2002 { | |
2003 if(tComm_CheckAnswerOK() == HAL_OK) | |
2004 { | |
2005 HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferBarSSI,sizeRequest , 2000); | |
2006 { | |
2007 index = 0; | |
2008 do /* Answer is not the common one. Instead the signal strength is received => read all available bytes one by one*/ | |
2009 { | |
2010 answer = HAL_UART_Receive(&UartHandle, (uint8_t*)&aRxBuffer[index], 1, 100); | |
400 | 2011 if(index < UART_CMD_BUF_SIZE) |
2012 { | |
2013 index++; | |
2014 } | |
396 | 2015 }while(answer == HAL_OK); |
2016 | |
2017 if((aRxBuffer[index] != 'E') && (aRxBuffer[index] != 0)) /* E represents the first letter of the string ERROR */ | |
2018 { | |
2019 index = 0; | |
2020 strindex = 0; | |
2021 do | |
2022 { | |
2023 SignalStr[strindex++] = aRxBuffer[index++]; | |
400 | 2024 }while ((index < UART_CMD_BUF_SIZE - 1) && (aRxBuffer[index] != '\r')); |
396 | 2025 SignalStr[strindex] = 0; /* terminate String */ |
2026 sigqual = strtol(SignalStr,NULL,0); | |
2027 /* Map db to abstract Bargraph */ | |
2028 if(sigqual > 0) | |
2029 { | |
400 | 2030 sprintf(SignalStr,"Bluetooth ||||||||"); |
396 | 2031 } |
2032 else | |
2033 { | |
2034 sprintf(SignalStr,"Bluetooth |"); | |
2035 strindex = strlen(SignalStr); | |
2036 sigqual *=-1; | |
2037 sigqual = 100 - sigqual; /* invert because of negative db value */ | |
2038 while(sigqual / 10 > 0 ) | |
2039 { | |
2040 SignalStr[strindex++] = '|'; | |
2041 sigqual -= 10; | |
2042 } | |
2043 SignalStr[strindex] = 0; | |
2044 } | |
2045 strcpy(display_text,SignalStr); | |
2046 display_text[255] = strlen(SignalStr); | |
2047 EvaluateBluetoothSignalStrength = 0; | |
2048 } | |
2049 } | |
2050 HAL_UART_Transmit(&UartHandle, (uint8_t*)aTxBufferEnd, 4, 2000); /* exit terminal mode */ | |
2051 index = 0; | |
2052 do /* module will answer with current connection state */ | |
2053 { | |
2054 answer = HAL_UART_Receive(&UartHandle, (uint8_t*)&aRxBuffer[index], 1, 100); | |
400 | 2055 if(index < UART_CMD_BUF_SIZE) |
2056 { | |
2057 index++; | |
2058 } | |
396 | 2059 }while(answer == HAL_OK); |
2060 } | |
2061 } | |
2062 } | |
2063 | |
2064 void tComm_StartBlueModConfig() | |
2065 { | |
2066 uint8_t answer = HAL_OK; | |
400 | 2067 uint8_t RxBuffer[UART_CMD_BUF_SIZE]; |
396 | 2068 uint8_t index = 0; |
2069 | |
2070 BmTmpConfig = BM_CONFIG_ECHO; | |
2071 do /* flush RX buffer */ | |
2072 { | |
2073 answer = HAL_UART_Receive(&UartHandle, (uint8_t*)&RxBuffer[index], 1, 10); | |
400 | 2074 if(index < UART_CMD_BUF_SIZE) index++; |
396 | 2075 }while(answer == HAL_OK); |
2076 } | |
2077 | |
2078 uint8_t tComm_HandleBlueModConfig() | |
2079 { | |
400 | 2080 static uint8_t RestartModule = 1; /* used to do power off / on cycle */ |
2081 static uint8_t ConfigRetryCnt = 0; /* Retry count without power cycle */ | |
396 | 2082 |
400 | 2083 char TxBuffer[UART_CMD_BUF_SIZE]; |
396 | 2084 uint8_t CmdSize = 0; |
2085 | |
2086 uint8_t result = HAL_OK; | |
2087 | |
400 | 2088 TxBuffer[0] = 0; |
2089 | |
396 | 2090 switch (BmTmpConfig) |
2091 { | |
2092 case BM_CONFIG_ECHO: sprintf(TxBuffer,"ATE0\r"); | |
2093 break; | |
2094 case BM_CONFIG_SILENCE: sprintf(TxBuffer,"ATS30=0\r"); | |
2095 break; | |
2096 case BM_CONFIG_ESCAPE_DELAY: sprintf(TxBuffer,"ATS12=10\r"); | |
2097 break; | |
2098 case BM_CONFIG_SIGNAL_POLL: sprintf(TxBuffer,"AT+BSTPOLL=100\r"); | |
2099 break; | |
2100 case BM_CONFIG_BAUD: sprintf(TxBuffer,"AT%%B22\r"); | |
2101 break; | |
400 | 2102 case BM_CONFIG_RETRY: ConfigRetryCnt--; |
2103 HAL_Delay(1); | |
2104 if(ConfigRetryCnt == 0) | |
2105 { | |
2106 MX_Bluetooth_PowerOn(); | |
2107 tComm_StartBlueModConfig(); | |
2108 } | |
2109 break; | |
396 | 2110 case BM_CONFIG_DONE: |
2111 case BM_CONFIG_OFF: | |
2112 ConfigRetryCnt = 0; | |
400 | 2113 RestartModule = 1; |
396 | 2114 break; |
2115 default: | |
2116 break; | |
2117 } | |
400 | 2118 if(TxBuffer[0] != 0) /* forward command to module */ |
396 | 2119 { |
2120 CmdSize = strlen(TxBuffer); | |
2121 if(HAL_UART_Transmit(&UartHandle, (uint8_t*)TxBuffer,CmdSize, 2000) == HAL_OK) | |
2122 { | |
2123 if(BmTmpConfig == BM_CONFIG_ECHO) /* echo is not yet turned off => read and discard echo */ | |
2124 { | |
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2125 HAL_UART_Receive(&UartHandle, (uint8_t*)TxBuffer, CmdSize, UART_OPERATION_TIMEOUT); |
396 | 2126 } |
2127 | |
2128 result = tComm_CheckAnswerOK(); | |
2129 | |
2130 | |
2131 if((BmTmpConfig == BM_CONFIG_BAUD) && (result == HAL_OK) && (UartHandle.Init.BaudRate != 460800)) /* is com already switched to fast speed? */ | |
2132 { | |
2133 HAL_UART_DeInit(&UartHandle); | |
2134 HAL_Delay(1); | |
2135 UartHandle.Init.BaudRate = 460800; | |
2136 HAL_UART_Init(&UartHandle); | |
2137 } | |
2138 if(result == HAL_OK) | |
2139 { | |
2140 BmTmpConfig++; | |
2141 } | |
2142 if(BmTmpConfig == BM_CONFIG_DONE) | |
2143 { | |
2144 ConfigRetryCnt = 0; | |
2145 } | |
2146 } | |
2147 } | |
2148 if(result != HAL_OK) | |
2149 { | |
2150 ConfigRetryCnt++; | |
2151 if(ConfigRetryCnt > 3) /* Configuration failed => switch off module */ | |
2152 { | |
2153 MX_Bluetooth_PowerOff(); | |
400 | 2154 if(RestartModule) |
2155 { | |
2156 RestartModule = 0; /* only one try */ | |
2157 ConfigRetryCnt = 200; /* used for delay to startup module again */ | |
2158 BmTmpConfig = BM_CONFIG_RETRY; | |
2159 } | |
2160 else /* even restarting module failed => switch bluetooth off */ | |
2161 { | |
2162 ConfigRetryCnt = 0; | |
2163 BmTmpConfig = BM_CONFIG_OFF; | |
2164 settingsGetPointer()->bluetoothActive = 0; | |
2165 } | |
396 | 2166 } |
2167 } | |
2168 return result; | |
2169 } | |
2170 | |
38 | 2171 static void tComm_Error_Handler(void) |
2172 { | |
2173 while(1) | |
2174 {} | |
2175 } |