pcnt.c 14 KB

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  1. // Copyright 2015-2016 Espressif Systems (Shanghai) PTE LTD
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. // http://www.apache.org/licenses/LICENSE-2.0
  7. //
  8. // Unless required by applicable law or agreed to in writing, software
  9. // distributed under the License is distributed on an "AS IS" BASIS,
  10. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  11. // See the License for the specific language governing permissions and
  12. // limitations under the License.
  13. #include "esp_log.h"
  14. #include "esp_intr_alloc.h"
  15. #include "driver/pcnt.h"
  16. #include "driver/periph_ctrl.h"
  17. #define PCNT_CHANNEL_ERR_STR "PCNT CHANNEL ERROR"
  18. #define PCNT_UNIT_ERR_STR "PCNT UNIT ERROR"
  19. #define PCNT_GPIO_ERR_STR "PCNT GPIO NUM ERROR"
  20. #define PCNT_ADDRESS_ERR_STR "PCNT ADDRESS ERROR"
  21. #define PCNT_PARAM_ERR_STR "PCNT PARAM ERROR"
  22. #define PCNT_COUNT_MODE_ERR_STR "PCNT COUNTER MODE ERROR"
  23. #define PCNT_CTRL_MODE_ERR_STR "PCNT CTRL MODE ERROR"
  24. #define PCNT_EVT_TYPE_ERR_STR "PCNT value type error"
  25. #define PCNT_LIMT_VAL_ERR_STR "PCNT limit value error"
  26. #define PCNT_ENTER_CRITICAL(mux) portENTER_CRITICAL(mux)
  27. #define PCNT_EXIT_CRITICAL(mux) portEXIT_CRITICAL(mux)
  28. #define PCNT_CHECK(a, str, ret_val) \
  29. if (!(a)) { \
  30. ESP_LOGE(PCNT_TAG,"%s(%d): %s", __FUNCTION__, __LINE__, str); \
  31. return (ret_val); \
  32. }
  33. typedef struct{
  34. void(*fn)(void *args); /*!< isr function */
  35. void* args; /*!< isr function args */
  36. } pcnt_isr_func_t;
  37. static pcnt_isr_func_t *pcnt_isr_func = NULL;
  38. static pcnt_isr_handle_t pcnt_isr_service = NULL;
  39. static portMUX_TYPE pcnt_spinlock = portMUX_INITIALIZER_UNLOCKED;
  40. static const char* PCNT_TAG = "pcnt";
  41. esp_err_t pcnt_unit_config(const pcnt_config_t *pcnt_config)
  42. {
  43. uint8_t unit = pcnt_config->unit;
  44. uint8_t channel = pcnt_config->channel;
  45. int input_io = pcnt_config->pulse_gpio_num;
  46. int ctrl_io = pcnt_config->ctrl_gpio_num;
  47. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  48. PCNT_CHECK(channel < PCNT_CHANNEL_MAX, PCNT_CHANNEL_ERR_STR, ESP_ERR_INVALID_ARG);
  49. PCNT_CHECK(input_io < 0 || (GPIO_IS_VALID_GPIO(input_io) && (input_io != ctrl_io)), "PCNT pluse input io error", ESP_ERR_INVALID_ARG);
  50. PCNT_CHECK(ctrl_io < 0 || GPIO_IS_VALID_GPIO(ctrl_io), "PCNT ctrl io error", ESP_ERR_INVALID_ARG);
  51. PCNT_CHECK((pcnt_config->pos_mode < PCNT_COUNT_MAX) && (pcnt_config->neg_mode < PCNT_COUNT_MAX), PCNT_COUNT_MODE_ERR_STR, ESP_ERR_INVALID_ARG);
  52. PCNT_CHECK((pcnt_config->hctrl_mode < PCNT_MODE_MAX) && (pcnt_config->lctrl_mode < PCNT_MODE_MAX), PCNT_CTRL_MODE_ERR_STR, ESP_ERR_INVALID_ARG);
  53. /*Enalbe hardware module*/
  54. periph_module_enable(PERIPH_PCNT_MODULE);
  55. /*Set counter range*/
  56. pcnt_set_event_value(unit, PCNT_EVT_H_LIM, pcnt_config->counter_h_lim);
  57. pcnt_set_event_value(unit, PCNT_EVT_L_LIM, pcnt_config->counter_l_lim);
  58. /*Default value after reboot is positive, we disable these events like others*/
  59. pcnt_event_disable(unit, PCNT_EVT_H_LIM);
  60. pcnt_event_disable(unit, PCNT_EVT_L_LIM);
  61. pcnt_event_disable(unit, PCNT_EVT_ZERO);
  62. pcnt_filter_disable(unit);
  63. /*set pulse input and control mode*/
  64. pcnt_set_mode(unit, channel, pcnt_config->pos_mode, pcnt_config->neg_mode, pcnt_config->hctrl_mode, pcnt_config->lctrl_mode);
  65. /*Set pulse input and control pins*/
  66. pcnt_set_pin(unit, channel, input_io, ctrl_io);
  67. return ESP_OK;
  68. }
  69. esp_err_t pcnt_set_mode(pcnt_unit_t unit, pcnt_channel_t channel, pcnt_count_mode_t pos_mode, pcnt_count_mode_t neg_mode, pcnt_ctrl_mode_t hctrl_mode, pcnt_ctrl_mode_t lctrl_mode)
  70. {
  71. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  72. PCNT_CHECK(channel < PCNT_CHANNEL_MAX, PCNT_CHANNEL_ERR_STR, ESP_ERR_INVALID_ARG);
  73. PCNT_CHECK((pos_mode < PCNT_COUNT_MAX) && (neg_mode < PCNT_COUNT_MAX), PCNT_COUNT_MODE_ERR_STR, ESP_ERR_INVALID_ARG);
  74. PCNT_CHECK((hctrl_mode < PCNT_MODE_MAX) && (lctrl_mode < PCNT_MODE_MAX), PCNT_CTRL_MODE_ERR_STR, ESP_ERR_INVALID_ARG);
  75. if(channel == 0) {
  76. PCNT.conf_unit[unit].conf0.ch0_pos_mode = pos_mode;
  77. PCNT.conf_unit[unit].conf0.ch0_neg_mode = neg_mode;
  78. PCNT.conf_unit[unit].conf0.ch0_hctrl_mode = hctrl_mode;
  79. PCNT.conf_unit[unit].conf0.ch0_lctrl_mode = lctrl_mode;
  80. } else {
  81. PCNT.conf_unit[unit].conf0.ch1_pos_mode = pos_mode;
  82. PCNT.conf_unit[unit].conf0.ch1_neg_mode = neg_mode;
  83. PCNT.conf_unit[unit].conf0.ch1_hctrl_mode = hctrl_mode;
  84. PCNT.conf_unit[unit].conf0.ch1_lctrl_mode = lctrl_mode;
  85. }
  86. return ESP_OK;
  87. }
  88. esp_err_t pcnt_set_pin(pcnt_unit_t unit, pcnt_channel_t channel, int pulse_io, int ctrl_io)
  89. {
  90. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  91. PCNT_CHECK(channel < PCNT_CHANNEL_MAX, PCNT_CHANNEL_ERR_STR, ESP_ERR_INVALID_ARG);
  92. PCNT_CHECK(GPIO_IS_VALID_GPIO(pulse_io) || pulse_io < 0, PCNT_GPIO_ERR_STR, ESP_ERR_INVALID_ARG);
  93. PCNT_CHECK(GPIO_IS_VALID_GPIO(ctrl_io) || ctrl_io < 0, PCNT_GPIO_ERR_STR, ESP_ERR_INVALID_ARG);
  94. int sig_base = (channel == 0) ? PCNT_SIG_CH0_IN0_IDX : PCNT_SIG_CH1_IN0_IDX;
  95. int ctrl_base = (channel == 0) ? PCNT_CTRL_CH0_IN0_IDX : PCNT_CTRL_CH1_IN0_IDX;
  96. if (unit > 4) {
  97. sig_base += 12; // GPIO matrix assignments have a gap between units 4 & 5
  98. ctrl_base += 12;
  99. }
  100. int input_sig_index = sig_base + (4 * unit);
  101. int ctrl_sig_index = ctrl_base + (4 * unit);
  102. if(pulse_io >= 0) {
  103. PIN_FUNC_SELECT(GPIO_PIN_MUX_REG[pulse_io], PIN_FUNC_GPIO);
  104. gpio_set_direction(pulse_io, GPIO_MODE_INPUT);
  105. gpio_set_pull_mode(pulse_io, GPIO_PULLUP_ONLY);
  106. gpio_matrix_in(pulse_io, input_sig_index, 0);
  107. }
  108. if(ctrl_io >= 0) {
  109. PIN_FUNC_SELECT(GPIO_PIN_MUX_REG[ctrl_io], PIN_FUNC_GPIO);
  110. gpio_set_direction(ctrl_io, GPIO_MODE_INPUT);
  111. gpio_set_pull_mode(ctrl_io, GPIO_PULLUP_ONLY);
  112. gpio_matrix_in(ctrl_io, ctrl_sig_index, 0);
  113. }
  114. return ESP_OK;
  115. }
  116. esp_err_t pcnt_get_counter_value(pcnt_unit_t pcnt_unit, int16_t* count)
  117. {
  118. PCNT_CHECK(pcnt_unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  119. PCNT_CHECK(count != NULL, PCNT_ADDRESS_ERR_STR, ESP_ERR_INVALID_ARG);
  120. *count = (int16_t) PCNT.cnt_unit[pcnt_unit].cnt_val;
  121. return ESP_OK;
  122. }
  123. esp_err_t pcnt_counter_pause(pcnt_unit_t pcnt_unit)
  124. {
  125. PCNT_CHECK(pcnt_unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  126. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  127. PCNT.ctrl.val |= BIT(PCNT_CNT_PAUSE_U0_S + (pcnt_unit * 2));
  128. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  129. return ESP_OK;
  130. }
  131. esp_err_t pcnt_counter_resume(pcnt_unit_t pcnt_unit)
  132. {
  133. PCNT_CHECK(pcnt_unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  134. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  135. PCNT.ctrl.val &= (~(BIT(PCNT_CNT_PAUSE_U0_S + (pcnt_unit * 2))));
  136. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  137. return ESP_OK;
  138. }
  139. esp_err_t pcnt_counter_clear(pcnt_unit_t pcnt_unit)
  140. {
  141. PCNT_CHECK(pcnt_unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  142. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  143. uint32_t reset_bit = BIT(PCNT_PLUS_CNT_RST_U0_S + (pcnt_unit * 2));
  144. PCNT.ctrl.val |= reset_bit;
  145. PCNT.ctrl.val &= ~reset_bit;
  146. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  147. return ESP_OK;
  148. }
  149. esp_err_t pcnt_intr_enable(pcnt_unit_t pcnt_unit)
  150. {
  151. PCNT_CHECK(pcnt_unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  152. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  153. PCNT.int_ena.val |= BIT(PCNT_CNT_THR_EVENT_U0_INT_ENA_S + pcnt_unit);
  154. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  155. return ESP_OK;
  156. }
  157. esp_err_t pcnt_intr_disable(pcnt_unit_t pcnt_unit)
  158. {
  159. PCNT_CHECK(pcnt_unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  160. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  161. PCNT.int_ena.val &= (~(BIT(PCNT_CNT_THR_EVENT_U0_INT_ENA_S + pcnt_unit)));
  162. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  163. return ESP_OK;
  164. }
  165. esp_err_t pcnt_event_enable(pcnt_unit_t unit, pcnt_evt_type_t evt_type)
  166. {
  167. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  168. PCNT_CHECK(evt_type < PCNT_EVT_MAX, PCNT_EVT_TYPE_ERR_STR, ESP_ERR_INVALID_ARG);
  169. if(evt_type == PCNT_EVT_L_LIM) {
  170. PCNT.conf_unit[unit].conf0.thr_l_lim_en = 1;
  171. } else if(evt_type == PCNT_EVT_H_LIM) {
  172. PCNT.conf_unit[unit].conf0.thr_h_lim_en = 1;
  173. } else if(evt_type == PCNT_EVT_THRES_0) {
  174. PCNT.conf_unit[unit].conf0.thr_thres0_en = 1;
  175. } else if(evt_type == PCNT_EVT_THRES_1) {
  176. PCNT.conf_unit[unit].conf0.thr_thres1_en = 1;
  177. } else if(evt_type == PCNT_EVT_ZERO) {
  178. PCNT.conf_unit[unit].conf0.thr_zero_en = 1;
  179. }
  180. return ESP_OK;
  181. }
  182. esp_err_t pcnt_event_disable(pcnt_unit_t unit, pcnt_evt_type_t evt_type)
  183. {
  184. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  185. PCNT_CHECK(evt_type < PCNT_EVT_MAX, PCNT_EVT_TYPE_ERR_STR, ESP_ERR_INVALID_ARG);
  186. if(evt_type == PCNT_EVT_L_LIM) {
  187. PCNT.conf_unit[unit].conf0.thr_l_lim_en = 0;
  188. } else if(evt_type == PCNT_EVT_H_LIM) {
  189. PCNT.conf_unit[unit].conf0.thr_h_lim_en = 0;
  190. } else if(evt_type == PCNT_EVT_THRES_0) {
  191. PCNT.conf_unit[unit].conf0.thr_thres0_en = 0;
  192. } else if(evt_type == PCNT_EVT_THRES_1) {
  193. PCNT.conf_unit[unit].conf0.thr_thres1_en = 0;
  194. } else if(evt_type == PCNT_EVT_ZERO) {
  195. PCNT.conf_unit[unit].conf0.thr_zero_en = 0;
  196. }
  197. return ESP_OK;
  198. }
  199. esp_err_t pcnt_set_event_value(pcnt_unit_t unit, pcnt_evt_type_t evt_type, int16_t value)
  200. {
  201. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  202. PCNT_CHECK(evt_type < PCNT_EVT_MAX, PCNT_EVT_TYPE_ERR_STR, ESP_ERR_INVALID_ARG);
  203. PCNT_CHECK(!(evt_type == PCNT_EVT_L_LIM && value > 0), PCNT_LIMT_VAL_ERR_STR, ESP_ERR_INVALID_ARG);
  204. PCNT_CHECK(!(evt_type == PCNT_EVT_H_LIM && value < 0), PCNT_LIMT_VAL_ERR_STR, ESP_ERR_INVALID_ARG);
  205. if(evt_type == PCNT_EVT_L_LIM) {
  206. PCNT.conf_unit[unit].conf2.cnt_l_lim = value;
  207. } else if(evt_type == PCNT_EVT_H_LIM) {
  208. PCNT.conf_unit[unit].conf2.cnt_h_lim = value;
  209. } else if(evt_type == PCNT_EVT_THRES_0) {
  210. PCNT.conf_unit[unit].conf1.cnt_thres0 = value;
  211. } else if(evt_type == PCNT_EVT_THRES_1) {
  212. PCNT.conf_unit[unit].conf1.cnt_thres1 = value;
  213. }
  214. return ESP_OK;
  215. }
  216. esp_err_t pcnt_get_event_value(pcnt_unit_t unit, pcnt_evt_type_t evt_type, int16_t *value)
  217. {
  218. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  219. PCNT_CHECK(evt_type < PCNT_EVT_MAX, PCNT_EVT_TYPE_ERR_STR, ESP_ERR_INVALID_ARG);
  220. PCNT_CHECK(value != NULL, PCNT_ADDRESS_ERR_STR, ESP_ERR_INVALID_ARG);
  221. if(evt_type == PCNT_EVT_L_LIM) {
  222. *value = (int16_t) PCNT.conf_unit[unit].conf2.cnt_l_lim;
  223. } else if(evt_type == PCNT_EVT_H_LIM) {
  224. *value = (int16_t) PCNT.conf_unit[unit].conf2.cnt_h_lim;
  225. } else if(evt_type == PCNT_EVT_THRES_0) {
  226. *value = (int16_t) PCNT.conf_unit[unit].conf1.cnt_thres0;
  227. } else if(evt_type == PCNT_EVT_THRES_1) {
  228. *value = (int16_t) PCNT.conf_unit[unit].conf1.cnt_thres1;
  229. } else {
  230. *value = 0;
  231. }
  232. return ESP_OK;
  233. }
  234. esp_err_t pcnt_set_filter_value(pcnt_unit_t unit, uint16_t filter_val)
  235. {
  236. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  237. PCNT_CHECK(filter_val < 1024, PCNT_PARAM_ERR_STR, ESP_ERR_INVALID_ARG);
  238. PCNT.conf_unit[unit].conf0.filter_thres = filter_val;
  239. return ESP_OK;
  240. }
  241. esp_err_t pcnt_get_filter_value(pcnt_unit_t unit, uint16_t *filter_val)
  242. {
  243. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  244. PCNT_CHECK(filter_val != NULL, PCNT_ADDRESS_ERR_STR, ESP_ERR_INVALID_ARG);
  245. *filter_val = PCNT.conf_unit[unit].conf0.filter_thres;
  246. return ESP_OK;
  247. }
  248. esp_err_t pcnt_filter_enable(pcnt_unit_t unit)
  249. {
  250. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  251. PCNT.conf_unit[unit].conf0.filter_en = 1;
  252. return ESP_OK;
  253. }
  254. esp_err_t pcnt_filter_disable(pcnt_unit_t unit)
  255. {
  256. PCNT_CHECK(unit < PCNT_UNIT_MAX, PCNT_UNIT_ERR_STR, ESP_ERR_INVALID_ARG);
  257. PCNT.conf_unit[unit].conf0.filter_en = 0;
  258. return ESP_OK;
  259. }
  260. esp_err_t pcnt_isr_register(void (*fun)(void*), void * arg, int intr_alloc_flags, pcnt_isr_handle_t *handle)
  261. {
  262. PCNT_CHECK(fun != NULL, PCNT_ADDRESS_ERR_STR, ESP_ERR_INVALID_ARG);
  263. return esp_intr_alloc(ETS_PCNT_INTR_SOURCE, intr_alloc_flags, fun, arg, handle);
  264. }
  265. // pcnt interrupt service
  266. static void IRAM_ATTR pcnt_intr_service(void* arg)
  267. {
  268. uint32_t intr_status = PCNT.int_st.val;
  269. for (int unit = 0; unit < PCNT_UNIT_MAX; unit++) {
  270. if (intr_status & (BIT(unit))) {
  271. if (pcnt_isr_func[unit].fn != NULL) {
  272. (pcnt_isr_func[unit].fn)(pcnt_isr_func[unit].args);
  273. }
  274. PCNT.int_clr.val = BIT(unit);
  275. }
  276. }
  277. }
  278. esp_err_t pcnt_isr_handler_add(pcnt_unit_t unit, void(*isr_handler)(void *), void *args)
  279. {
  280. PCNT_CHECK(pcnt_isr_func != NULL, "ISR service is not installed, call pcnt_install_isr_service() first", ESP_ERR_INVALID_STATE);
  281. PCNT_CHECK(unit < PCNT_UNIT_MAX, "PCNT unit error", ESP_ERR_INVALID_ARG);
  282. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  283. pcnt_intr_disable(unit);
  284. if (pcnt_isr_func) {
  285. pcnt_isr_func[unit].fn = isr_handler;
  286. pcnt_isr_func[unit].args = args;
  287. }
  288. pcnt_intr_enable(unit);
  289. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  290. return ESP_OK;
  291. }
  292. esp_err_t pcnt_isr_handler_remove(pcnt_unit_t unit)
  293. {
  294. PCNT_CHECK(pcnt_isr_func != NULL, "ISR service is not installed", ESP_ERR_INVALID_STATE);
  295. PCNT_CHECK(unit < PCNT_UNIT_MAX, "PCNT unit error", ESP_ERR_INVALID_ARG);
  296. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  297. pcnt_intr_disable(unit);
  298. if (pcnt_isr_func) {
  299. pcnt_isr_func[unit].fn = NULL;
  300. pcnt_isr_func[unit].args = NULL;
  301. }
  302. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  303. return ESP_OK;
  304. }
  305. esp_err_t pcnt_isr_service_install(int intr_alloc_flags)
  306. {
  307. PCNT_CHECK(pcnt_isr_func == NULL, "ISR service already installed", ESP_ERR_INVALID_STATE);
  308. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  309. esp_err_t ret = ESP_FAIL;
  310. pcnt_isr_func = (pcnt_isr_func_t*) calloc(PCNT_UNIT_MAX, sizeof(pcnt_isr_func_t));
  311. if (pcnt_isr_func == NULL) {
  312. ret = ESP_ERR_NO_MEM;
  313. } else {
  314. ret = pcnt_isr_register(pcnt_intr_service, NULL, intr_alloc_flags, &pcnt_isr_service);
  315. }
  316. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  317. return ret;
  318. }
  319. void pcnt_isr_service_uninstall(void)
  320. {
  321. if (pcnt_isr_func == NULL) {
  322. return;
  323. }
  324. PCNT_ENTER_CRITICAL(&pcnt_spinlock);
  325. esp_intr_free(pcnt_isr_service);
  326. free(pcnt_isr_func);
  327. pcnt_isr_func = NULL;
  328. pcnt_isr_service = NULL;
  329. PCNT_EXIT_CRITICAL(&pcnt_spinlock);
  330. }