furi-hal-rfid.c 9.7 KB

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  1. #include <furi-hal-rfid.h>
  2. #include <furi-hal-ibutton.h>
  3. #include <furi-hal-resources.h>
  4. #include <stm32wbxx_ll_tim.h>
  5. #define LFRFID_READ_TIM htim1
  6. #define LFRFID_READ_CHANNEL TIM_CHANNEL_1
  7. #define LFRFID_EMULATE_TIM htim2
  8. #define LFRFID_EMULATE_CHANNEL TIM_CHANNEL_3
  9. void furi_hal_rfid_pins_reset() {
  10. // ibutton bus disable
  11. furi_hal_ibutton_stop();
  12. // pulldown rfid antenna
  13. hal_gpio_init(&gpio_rfid_carrier_out, GpioModeOutputPushPull, GpioSpeedLow, GpioPullNo);
  14. hal_gpio_write(&gpio_rfid_carrier_out, false);
  15. // from both sides
  16. hal_gpio_init(&gpio_rfid_pull, GpioModeOutputPushPull, GpioSpeedLow, GpioPullNo);
  17. hal_gpio_write(&gpio_rfid_pull, true);
  18. }
  19. void furi_hal_rfid_pins_emulate() {
  20. // ibutton low
  21. furi_hal_ibutton_start();
  22. furi_hal_ibutton_pin_low();
  23. // pull pin to timer out
  24. hal_gpio_init_ex(
  25. &gpio_rfid_pull, GpioModeAltFunctionPushPull, GpioPullNo, GpioSpeedLow, GpioAltFn1TIM2);
  26. // pull rfid antenna from carrier side
  27. hal_gpio_init(&gpio_rfid_carrier_out, GpioModeOutputPushPull, GpioSpeedLow, GpioPullNo);
  28. hal_gpio_write(&gpio_rfid_carrier_out, false);
  29. }
  30. void furi_hal_rfid_pins_read() {
  31. // ibutton low
  32. furi_hal_ibutton_start();
  33. furi_hal_ibutton_pin_low();
  34. // dont pull rfid antenna
  35. hal_gpio_init(&gpio_rfid_pull, GpioModeOutputPushPull, GpioSpeedLow, GpioPullNo);
  36. hal_gpio_write(&gpio_rfid_pull, false);
  37. // carrier pin to timer out
  38. hal_gpio_init_ex(
  39. &gpio_rfid_carrier_out,
  40. GpioModeAltFunctionPushPull,
  41. GpioPullNo,
  42. GpioSpeedLow,
  43. GpioAltFn1TIM1);
  44. // comparator in
  45. hal_gpio_init(&gpio_rfid_data_in, GpioModeAnalog, GpioSpeedLow, GpioPullNo);
  46. }
  47. void furi_hal_rfid_tim_read(float freq, float duty_cycle) {
  48. // TODO LL init
  49. uint32_t period = (uint32_t)((SystemCoreClock) / freq) - 1;
  50. TIM_ClockConfigTypeDef sClockSourceConfig = {0};
  51. TIM_MasterConfigTypeDef sMasterConfig = {0};
  52. TIM_OC_InitTypeDef sConfigOC = {0};
  53. TIM_BreakDeadTimeConfigTypeDef sBreakDeadTimeConfig = {0};
  54. // basic PWM setup with needed freq and internal clock
  55. LFRFID_READ_TIM.Init.Prescaler = 0;
  56. LFRFID_READ_TIM.Init.CounterMode = TIM_COUNTERMODE_UP;
  57. LFRFID_READ_TIM.Init.Period = period;
  58. LFRFID_READ_TIM.Init.ClockDivision = TIM_CLOCKDIVISION_DIV1;
  59. LFRFID_READ_TIM.Init.RepetitionCounter = 0;
  60. LFRFID_READ_TIM.Init.AutoReloadPreload = TIM_AUTORELOAD_PRELOAD_DISABLE;
  61. if(HAL_TIM_Base_Init(&LFRFID_READ_TIM) != HAL_OK) {
  62. Error_Handler();
  63. }
  64. sClockSourceConfig.ClockSource = TIM_CLOCKSOURCE_INTERNAL;
  65. if(HAL_TIM_ConfigClockSource(&LFRFID_READ_TIM, &sClockSourceConfig) != HAL_OK) {
  66. Error_Handler();
  67. }
  68. if(HAL_TIM_PWM_Init(&LFRFID_READ_TIM) != HAL_OK) {
  69. Error_Handler();
  70. }
  71. // no master-slave mode
  72. sMasterConfig.MasterOutputTrigger = TIM_TRGO_RESET;
  73. sMasterConfig.MasterOutputTrigger2 = TIM_TRGO2_RESET;
  74. sMasterConfig.MasterSlaveMode = TIM_MASTERSLAVEMODE_DISABLE;
  75. if(HAL_TIMEx_MasterConfigSynchronization(&LFRFID_READ_TIM, &sMasterConfig) != HAL_OK) {
  76. Error_Handler();
  77. }
  78. // pwm config
  79. sConfigOC.OCMode = TIM_OCMODE_PWM1;
  80. sConfigOC.Pulse = (uint32_t)(LFRFID_READ_TIM.Init.Period * duty_cycle);
  81. sConfigOC.OCPolarity = TIM_OCPOLARITY_HIGH;
  82. sConfigOC.OCNPolarity = TIM_OCNPOLARITY_HIGH;
  83. sConfigOC.OCFastMode = TIM_OCFAST_DISABLE;
  84. sConfigOC.OCIdleState = TIM_OCIDLESTATE_RESET;
  85. sConfigOC.OCNIdleState = TIM_OCNIDLESTATE_RESET;
  86. if(HAL_TIM_OC_ConfigChannel(&LFRFID_READ_TIM, &sConfigOC, LFRFID_READ_CHANNEL) != HAL_OK) {
  87. Error_Handler();
  88. }
  89. // no deadtime
  90. sBreakDeadTimeConfig.OffStateRunMode = TIM_OSSR_DISABLE;
  91. sBreakDeadTimeConfig.OffStateIDLEMode = TIM_OSSI_DISABLE;
  92. sBreakDeadTimeConfig.LockLevel = TIM_LOCKLEVEL_OFF;
  93. sBreakDeadTimeConfig.DeadTime = 0;
  94. sBreakDeadTimeConfig.BreakState = TIM_BREAK_DISABLE;
  95. sBreakDeadTimeConfig.BreakPolarity = TIM_BREAKPOLARITY_HIGH;
  96. sBreakDeadTimeConfig.BreakFilter = 0;
  97. sBreakDeadTimeConfig.BreakAFMode = TIM_BREAK_AFMODE_INPUT;
  98. sBreakDeadTimeConfig.Break2State = TIM_BREAK2_DISABLE;
  99. sBreakDeadTimeConfig.Break2Polarity = TIM_BREAK2POLARITY_HIGH;
  100. sBreakDeadTimeConfig.Break2Filter = 0;
  101. sBreakDeadTimeConfig.Break2AFMode = TIM_BREAK_AFMODE_INPUT;
  102. sBreakDeadTimeConfig.AutomaticOutput = TIM_AUTOMATICOUTPUT_DISABLE;
  103. if(HAL_TIMEx_ConfigBreakDeadTime(&LFRFID_READ_TIM, &sBreakDeadTimeConfig) != HAL_OK) {
  104. Error_Handler();
  105. }
  106. }
  107. void furi_hal_rfid_tim_read_start() {
  108. HAL_TIMEx_PWMN_Start(&LFRFID_READ_TIM, LFRFID_READ_CHANNEL);
  109. }
  110. void furi_hal_rfid_tim_read_stop() {
  111. HAL_TIMEx_PWMN_Stop(&LFRFID_READ_TIM, LFRFID_READ_CHANNEL);
  112. }
  113. void furi_hal_rfid_tim_emulate(float freq) {
  114. // TODO LL init
  115. uint32_t prescaler = (uint32_t)((SystemCoreClock) / freq) - 1;
  116. TIM_ClockConfigTypeDef sClockSourceConfig = {0};
  117. TIM_MasterConfigTypeDef sMasterConfig = {0};
  118. TIM_OC_InitTypeDef sConfigOC = {0};
  119. TIM_BreakDeadTimeConfigTypeDef sBreakDeadTimeConfig = {0};
  120. // basic PWM setup with needed freq and internal clock
  121. LFRFID_EMULATE_TIM.Init.Prescaler = prescaler;
  122. LFRFID_EMULATE_TIM.Init.CounterMode = TIM_COUNTERMODE_UP;
  123. LFRFID_EMULATE_TIM.Init.Period = 1;
  124. LFRFID_EMULATE_TIM.Init.ClockDivision = TIM_CLOCKDIVISION_DIV1;
  125. LFRFID_EMULATE_TIM.Init.RepetitionCounter = 0;
  126. LFRFID_EMULATE_TIM.Init.AutoReloadPreload = TIM_AUTORELOAD_PRELOAD_ENABLE;
  127. if(HAL_TIM_Base_Init(&LFRFID_EMULATE_TIM) != HAL_OK) {
  128. Error_Handler();
  129. }
  130. sClockSourceConfig.ClockSource = TIM_CLOCKSOURCE_INTERNAL;
  131. if(HAL_TIM_ConfigClockSource(&LFRFID_EMULATE_TIM, &sClockSourceConfig) != HAL_OK) {
  132. Error_Handler();
  133. }
  134. if(HAL_TIM_PWM_Init(&LFRFID_EMULATE_TIM) != HAL_OK) {
  135. Error_Handler();
  136. }
  137. // no master-slave mode
  138. sMasterConfig.MasterOutputTrigger = TIM_TRGO_RESET;
  139. sMasterConfig.MasterOutputTrigger2 = TIM_TRGO2_RESET;
  140. sMasterConfig.MasterSlaveMode = TIM_MASTERSLAVEMODE_DISABLE;
  141. if(HAL_TIMEx_MasterConfigSynchronization(&LFRFID_EMULATE_TIM, &sMasterConfig) != HAL_OK) {
  142. Error_Handler();
  143. }
  144. // pwm config
  145. sConfigOC.OCMode = TIM_OCMODE_PWM1;
  146. sConfigOC.Pulse = 1;
  147. sConfigOC.OCPolarity = TIM_OCPOLARITY_HIGH;
  148. sConfigOC.OCNPolarity = TIM_OCNPOLARITY_HIGH;
  149. sConfigOC.OCFastMode = TIM_OCFAST_DISABLE;
  150. sConfigOC.OCIdleState = TIM_OCIDLESTATE_RESET;
  151. sConfigOC.OCNIdleState = TIM_OCNIDLESTATE_RESET;
  152. if(HAL_TIM_PWM_ConfigChannel(&LFRFID_EMULATE_TIM, &sConfigOC, LFRFID_EMULATE_CHANNEL) !=
  153. HAL_OK) {
  154. Error_Handler();
  155. }
  156. // no deadtime
  157. sBreakDeadTimeConfig.OffStateRunMode = TIM_OSSR_DISABLE;
  158. sBreakDeadTimeConfig.OffStateIDLEMode = TIM_OSSI_DISABLE;
  159. sBreakDeadTimeConfig.LockLevel = TIM_LOCKLEVEL_OFF;
  160. sBreakDeadTimeConfig.DeadTime = 0;
  161. sBreakDeadTimeConfig.BreakState = TIM_BREAK_DISABLE;
  162. sBreakDeadTimeConfig.BreakPolarity = TIM_BREAKPOLARITY_HIGH;
  163. sBreakDeadTimeConfig.BreakFilter = 0;
  164. sBreakDeadTimeConfig.BreakAFMode = TIM_BREAK_AFMODE_INPUT;
  165. sBreakDeadTimeConfig.Break2State = TIM_BREAK2_DISABLE;
  166. sBreakDeadTimeConfig.Break2Polarity = TIM_BREAK2POLARITY_HIGH;
  167. sBreakDeadTimeConfig.Break2Filter = 0;
  168. sBreakDeadTimeConfig.Break2AFMode = TIM_BREAK_AFMODE_INPUT;
  169. sBreakDeadTimeConfig.AutomaticOutput = TIM_AUTOMATICOUTPUT_DISABLE;
  170. if(HAL_TIMEx_ConfigBreakDeadTime(&LFRFID_EMULATE_TIM, &sBreakDeadTimeConfig) != HAL_OK) {
  171. Error_Handler();
  172. }
  173. }
  174. void furi_hal_rfid_tim_emulate_start() {
  175. // TODO make api for interrupts priority
  176. for(size_t i = WWDG_IRQn; i <= DMAMUX1_OVR_IRQn; i++) {
  177. HAL_NVIC_SetPriority(i, 15, 0);
  178. }
  179. HAL_NVIC_SetPriority(TIM2_IRQn, 5, 0);
  180. HAL_NVIC_EnableIRQ(TIM2_IRQn);
  181. HAL_TIM_PWM_Start_IT(&LFRFID_EMULATE_TIM, LFRFID_EMULATE_CHANNEL);
  182. HAL_TIM_Base_Start_IT(&LFRFID_EMULATE_TIM);
  183. }
  184. void furi_hal_rfid_tim_emulate_stop() {
  185. HAL_TIM_Base_Stop(&LFRFID_EMULATE_TIM);
  186. HAL_TIM_PWM_Stop(&LFRFID_EMULATE_TIM, LFRFID_EMULATE_CHANNEL);
  187. }
  188. void furi_hal_rfid_tim_reset() {
  189. HAL_TIM_Base_DeInit(&LFRFID_READ_TIM);
  190. LL_TIM_DeInit(TIM1);
  191. LL_APB2_GRP1_DisableClock(LL_APB2_GRP1_PERIPH_TIM1);
  192. HAL_TIM_Base_DeInit(&LFRFID_EMULATE_TIM);
  193. LL_TIM_DeInit(TIM2);
  194. LL_APB1_GRP1_DisableClock(LL_APB1_GRP1_PERIPH_TIM2);
  195. }
  196. bool furi_hal_rfid_is_tim_emulate(TIM_HandleTypeDef* hw) {
  197. return (hw == &LFRFID_EMULATE_TIM);
  198. }
  199. void furi_hal_rfid_set_emulate_period(uint32_t period) {
  200. LFRFID_EMULATE_TIM.Instance->ARR = period;
  201. }
  202. void furi_hal_rfid_set_emulate_pulse(uint32_t pulse) {
  203. switch(LFRFID_EMULATE_CHANNEL) {
  204. case TIM_CHANNEL_1:
  205. LFRFID_EMULATE_TIM.Instance->CCR1 = pulse;
  206. break;
  207. case TIM_CHANNEL_2:
  208. LFRFID_EMULATE_TIM.Instance->CCR2 = pulse;
  209. break;
  210. case TIM_CHANNEL_3:
  211. LFRFID_EMULATE_TIM.Instance->CCR3 = pulse;
  212. break;
  213. case TIM_CHANNEL_4:
  214. LFRFID_EMULATE_TIM.Instance->CCR4 = pulse;
  215. break;
  216. default:
  217. furi_check(0);
  218. break;
  219. }
  220. }
  221. void furi_hal_rfid_set_read_period(uint32_t period) {
  222. LFRFID_TIM.Instance->ARR = period;
  223. }
  224. void furi_hal_rfid_set_read_pulse(uint32_t pulse) {
  225. switch(LFRFID_READ_CHANNEL) {
  226. case TIM_CHANNEL_1:
  227. LFRFID_TIM.Instance->CCR1 = pulse;
  228. break;
  229. case TIM_CHANNEL_2:
  230. LFRFID_TIM.Instance->CCR2 = pulse;
  231. break;
  232. case TIM_CHANNEL_3:
  233. LFRFID_TIM.Instance->CCR3 = pulse;
  234. break;
  235. case TIM_CHANNEL_4:
  236. LFRFID_TIM.Instance->CCR4 = pulse;
  237. break;
  238. default:
  239. furi_check(0);
  240. break;
  241. }
  242. }
  243. void furi_hal_rfid_change_read_config(float freq, float duty_cycle) {
  244. uint32_t period = (uint32_t)((SystemCoreClock) / freq) - 1;
  245. furi_hal_rfid_set_read_period(period);
  246. furi_hal_rfid_set_read_pulse(period * duty_cycle);
  247. }