test_vfs_uart.c 11 KB

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  1. /*
  2. * SPDX-FileCopyrightText: 2015-2022 Espressif Systems (Shanghai) CO LTD
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. */
  6. #include <stdio.h>
  7. #include <stdlib.h>
  8. #include <string.h>
  9. #include <fcntl.h>
  10. #include <sys/termios.h>
  11. #include <sys/errno.h>
  12. #include "unity.h"
  13. #include "esp_rom_uart.h"
  14. #include "freertos/FreeRTOS.h"
  15. #include "freertos/task.h"
  16. #include "freertos/semphr.h"
  17. #include "driver/uart.h"
  18. #include "soc/uart_struct.h"
  19. #include "esp_vfs_dev.h"
  20. #include "esp_vfs.h"
  21. #include "test_utils.h"
  22. #include "sdkconfig.h"
  23. static void fwrite_str_loopback(const char* str, size_t size)
  24. {
  25. esp_rom_uart_tx_wait_idle(CONFIG_ESP_CONSOLE_UART_NUM);
  26. UART0.conf0.loopback = 1;
  27. fwrite(str, 1, size, stdout);
  28. fflush(stdout);
  29. esp_rom_uart_tx_wait_idle(CONFIG_ESP_CONSOLE_UART_NUM);
  30. vTaskDelay(2 / portTICK_PERIOD_MS);
  31. UART0.conf0.loopback = 0;
  32. }
  33. static void flush_stdin_stdout(void)
  34. {
  35. vTaskDelay(10 / portTICK_PERIOD_MS);
  36. char bitbucket[UART_FIFO_LEN];
  37. while (fread(bitbucket, 1, UART_FIFO_LEN, stdin) > 0) {
  38. ;
  39. }
  40. fflush(stdout);
  41. esp_rom_uart_tx_wait_idle(CONFIG_ESP_CONSOLE_UART_NUM);
  42. }
  43. TEST_CASE("can read from stdin", "[vfs]")
  44. {
  45. flush_stdin_stdout();
  46. const size_t count = 12;
  47. srand(count);
  48. char* data = (char*) calloc(1, count * 8 + 2);
  49. char* buf = (char*) calloc(1, count * 8 + 2);
  50. char* p = data;
  51. for (size_t i = 0; i < count; ++i) {
  52. p += sprintf(p, "%08x", rand());
  53. }
  54. p += sprintf(p, "\n");
  55. size_t len = p - data;
  56. fwrite_str_loopback(data, len);
  57. size_t cb = fread(buf, 1, len, stdin);
  58. TEST_ASSERT_EQUAL(len, cb);
  59. TEST_ASSERT_EQUAL_UINT8_ARRAY(data, buf, len);
  60. free(data);
  61. free(buf);
  62. }
  63. TEST_CASE("CRs are removed from the stdin correctly", "[vfs]")
  64. {
  65. esp_vfs_dev_uart_port_set_rx_line_endings(CONFIG_ESP_CONSOLE_UART_NUM, ESP_LINE_ENDINGS_CRLF);
  66. esp_vfs_dev_uart_port_set_tx_line_endings(CONFIG_ESP_CONSOLE_UART_NUM, ESP_LINE_ENDINGS_CRLF);
  67. flush_stdin_stdout();
  68. const char* send_str = "1234567890\n\r123\r\n4\n";
  69. /* with CONFIG_NEWLIB_STDOUT_ADDCR, the following will be sent on the wire.
  70. * (last character of each part is marked with a hat)
  71. *
  72. * 1234567890\r\n\r123\r\r\n4\r\n
  73. * ^ ^^ ^
  74. */
  75. char buf[128];
  76. char* dst = buf;
  77. fwrite_str_loopback(send_str, 11); // send up to the first \n
  78. size_t rb = fread(dst, 1, 5, stdin); // read first 5
  79. TEST_ASSERT_EQUAL(5, rb);
  80. dst += rb;
  81. rb = fread(dst, 1, 6, stdin); // ask for 6
  82. TEST_ASSERT_EQUAL(6, rb); // get 6
  83. TEST_ASSERT_EQUAL_UINT8_ARRAY("1234567890\n", buf, 11);
  84. dst += rb;
  85. rb = fread(dst, 1, 2, stdin); // any more characters?
  86. TEST_ASSERT_EQUAL(0, rb); // nothing
  87. fwrite_str_loopback(send_str + 11, 1); // send the '\r'
  88. vTaskDelay(10 / portTICK_PERIOD_MS);
  89. rb = fread(dst, 1, 2, stdin); // try to get somthing
  90. TEST_ASSERT_EQUAL(0, rb); // still nothing (\r is buffered)
  91. fwrite_str_loopback(send_str + 12, 1); // Now send the '1'
  92. vTaskDelay(10 / portTICK_PERIOD_MS);
  93. rb = fread(dst, 1, 2, stdin); // try again
  94. TEST_ASSERT_EQUAL(2, rb); // get two characters
  95. TEST_ASSERT_EQUAL_UINT8_ARRAY("\r1", dst, 2);
  96. dst += rb;
  97. fwrite_str_loopback(send_str + 13, 6); // Send the rest
  98. vTaskDelay(10 / portTICK_PERIOD_MS);
  99. rb = fread(dst, 1, 4, stdin); // consume "23\r\n"
  100. TEST_ASSERT_EQUAL(4, rb);
  101. TEST_ASSERT_EQUAL_UINT8_ARRAY("23\r\n", dst, 4);
  102. dst += rb;
  103. rb = fread(dst, 1, 4, stdin); // ask for more than the remainder
  104. TEST_ASSERT_EQUAL(2, rb);
  105. TEST_ASSERT_EQUAL_UINT8_ARRAY("4\n", dst, 2);
  106. }
  107. struct read_task_arg_t {
  108. char* out_buffer;
  109. size_t out_buffer_len;
  110. SemaphoreHandle_t ready;
  111. SemaphoreHandle_t done;
  112. };
  113. struct write_task_arg_t {
  114. const char* str;
  115. SemaphoreHandle_t done;
  116. };
  117. static void read_task_fn(void* varg)
  118. {
  119. struct read_task_arg_t* parg = (struct read_task_arg_t*) varg;
  120. parg->out_buffer[0] = 0;
  121. fgets(parg->out_buffer, parg->out_buffer_len, stdin);
  122. xSemaphoreGive(parg->done);
  123. vTaskDelete(NULL);
  124. }
  125. static void write_task_fn(void* varg)
  126. {
  127. struct write_task_arg_t* parg = (struct write_task_arg_t*) varg;
  128. fwrite_str_loopback(parg->str, strlen(parg->str));
  129. xSemaphoreGive(parg->done);
  130. vTaskDelete(NULL);
  131. }
  132. TEST_CASE("can write to UART while another task is reading", "[vfs]")
  133. {
  134. char out_buffer[32];
  135. size_t out_buffer_len = sizeof(out_buffer);
  136. struct read_task_arg_t read_arg = {
  137. .out_buffer = out_buffer,
  138. .out_buffer_len = out_buffer_len,
  139. .done = xSemaphoreCreateBinary()
  140. };
  141. struct write_task_arg_t write_arg = {
  142. .str = "!(@*#&(!*@&#((SDasdkjhadsl\n",
  143. .done = xSemaphoreCreateBinary()
  144. };
  145. flush_stdin_stdout();
  146. ESP_ERROR_CHECK( uart_driver_install(CONFIG_ESP_CONSOLE_UART_NUM,
  147. 256, 0, 0, NULL, 0) );
  148. esp_vfs_dev_uart_use_driver(CONFIG_ESP_CONSOLE_UART_NUM);
  149. xTaskCreate(&read_task_fn, "vfs_read", 4096, &read_arg, 5, NULL);
  150. vTaskDelay(10);
  151. xTaskCreate(&write_task_fn, "vfs_write", 4096, &write_arg, 6, NULL);
  152. int res = xSemaphoreTake(write_arg.done, 100 / portTICK_PERIOD_MS);
  153. TEST_ASSERT(res);
  154. res = xSemaphoreTake(read_arg.done, 100 / portTICK_PERIOD_MS);
  155. TEST_ASSERT(res);
  156. TEST_ASSERT_EQUAL(0, strcmp(write_arg.str, read_arg.out_buffer));
  157. esp_vfs_dev_uart_use_nonblocking(CONFIG_ESP_CONSOLE_UART_NUM);
  158. uart_driver_delete(CONFIG_ESP_CONSOLE_UART_NUM);
  159. vSemaphoreDelete(read_arg.done);
  160. vSemaphoreDelete(write_arg.done);
  161. }
  162. TEST_CASE("fcntl supported in UART VFS", "[vfs]")
  163. {
  164. int flags = fcntl(STDIN_FILENO, F_GETFL, 0);
  165. TEST_ASSERT_NOT_EQUAL(-1, flags);
  166. int res = fcntl(STDIN_FILENO, F_SETFL, flags | O_NONBLOCK);
  167. TEST_ASSERT_NOT_EQUAL(-1, res);
  168. /* revert */
  169. res = fcntl(STDIN_FILENO, F_SETFL, flags);
  170. TEST_ASSERT_NOT_EQUAL(-1, res);
  171. }
  172. #ifdef CONFIG_VFS_SUPPORT_TERMIOS
  173. #if !TEMPORARY_DISABLED_FOR_TARGETS(ESP32C2)
  174. //IDF-5139
  175. TEST_CASE("Can use termios for UART", "[vfs]")
  176. {
  177. uart_config_t uart_config = {
  178. .baud_rate = 115200,
  179. .data_bits = UART_DATA_8_BITS,
  180. .parity = UART_PARITY_DISABLE,
  181. .stop_bits = UART_STOP_BITS_1,
  182. .flow_ctrl = UART_HW_FLOWCTRL_DISABLE,
  183. .source_clk = UART_SCLK_DEFAULT,
  184. };
  185. uart_driver_install(UART_NUM_1, 256, 256, 0, NULL, 0);
  186. uart_param_config(UART_NUM_1, &uart_config);
  187. const int uart_fd = open("/dev/uart/1", O_RDWR);
  188. TEST_ASSERT_NOT_EQUAL_MESSAGE(uart_fd, -1, "Cannot open UART");
  189. esp_vfs_dev_uart_use_driver(1);
  190. TEST_ASSERT_EQUAL(-1, tcgetattr(uart_fd, NULL));
  191. TEST_ASSERT_EQUAL(EINVAL, errno);
  192. struct termios tios, tios_result;
  193. TEST_ASSERT_EQUAL(-1, tcgetattr(-1, &tios));
  194. TEST_ASSERT_EQUAL(EBADF, errno);
  195. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios));
  196. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSADRAIN, &tios));
  197. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSAFLUSH, &tios));
  198. tios.c_iflag |= IGNCR;
  199. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSANOW, &tios));
  200. tios.c_iflag &= (~IGNCR);
  201. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios_result));
  202. TEST_ASSERT_EQUAL(IGNCR, tios_result.c_iflag & IGNCR);
  203. memset(&tios_result, 0xFF, sizeof(struct termios));
  204. tios.c_iflag |= ICRNL;
  205. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSANOW, &tios));
  206. tios.c_iflag &= (~ICRNL);
  207. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios_result));
  208. TEST_ASSERT_EQUAL(ICRNL, tios_result.c_iflag & ICRNL);
  209. memset(&tios_result, 0xFF, sizeof(struct termios));
  210. {
  211. uart_word_length_t data_bit;
  212. uart_stop_bits_t stop_bits;
  213. uart_parity_t parity_mode;
  214. tios.c_cflag &= (~CSIZE);
  215. tios.c_cflag &= (~CSTOPB);
  216. tios.c_cflag &= (~PARENB);
  217. tios.c_cflag |= CS6;
  218. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSANOW, &tios));
  219. tios.c_cflag &= (~CSIZE);
  220. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios_result));
  221. TEST_ASSERT_EQUAL(CS6, tios_result.c_cflag & CS6);
  222. TEST_ASSERT_EQUAL(ESP_OK, uart_get_word_length(UART_NUM_1, &data_bit));
  223. TEST_ASSERT_EQUAL(UART_DATA_6_BITS, data_bit);
  224. TEST_ASSERT_EQUAL(0, tios_result.c_cflag & CSTOPB);
  225. TEST_ASSERT_EQUAL(ESP_OK, uart_get_stop_bits(UART_NUM_1, &stop_bits));
  226. TEST_ASSERT_EQUAL(UART_STOP_BITS_1, stop_bits);
  227. TEST_ASSERT_EQUAL(ESP_OK, uart_get_parity(UART_NUM_1, &parity_mode));
  228. TEST_ASSERT_EQUAL(UART_PARITY_DISABLE, parity_mode);
  229. memset(&tios_result, 0xFF, sizeof(struct termios));
  230. }
  231. {
  232. uart_stop_bits_t stop_bits;
  233. uart_parity_t parity_mode;
  234. tios.c_cflag |= CSTOPB;
  235. tios.c_cflag |= (PARENB | PARODD);
  236. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSANOW, &tios));
  237. tios.c_cflag &= (~(CSTOPB | PARENB | PARODD));
  238. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios_result));
  239. TEST_ASSERT_EQUAL(CSTOPB, tios_result.c_cflag & CSTOPB);
  240. TEST_ASSERT_EQUAL(ESP_OK, uart_get_stop_bits(UART_NUM_1, &stop_bits));
  241. TEST_ASSERT_EQUAL(UART_STOP_BITS_2, stop_bits);
  242. TEST_ASSERT_EQUAL(ESP_OK, uart_get_parity(UART_NUM_1, &parity_mode));
  243. TEST_ASSERT_EQUAL(UART_PARITY_ODD, parity_mode);
  244. memset(&tios_result, 0xFF, sizeof(struct termios));
  245. }
  246. {
  247. uint32_t baudrate;
  248. tios.c_cflag &= (~BOTHER);
  249. tios.c_cflag |= CBAUD;
  250. tios.c_ispeed = tios.c_ospeed = B38400;
  251. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSANOW, &tios));
  252. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios_result));
  253. TEST_ASSERT_EQUAL(CBAUD, tios_result.c_cflag & CBAUD);
  254. TEST_ASSERT_EQUAL(B38400, tios_result.c_ispeed);
  255. TEST_ASSERT_EQUAL(B38400, tios_result.c_ospeed);
  256. TEST_ASSERT_EQUAL(ESP_OK, uart_get_baudrate(UART_NUM_1, &baudrate));
  257. TEST_ASSERT_EQUAL(38400, baudrate);
  258. tios.c_cflag |= CBAUDEX;
  259. tios.c_ispeed = tios.c_ospeed = B230400;
  260. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSANOW, &tios));
  261. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios_result));
  262. TEST_ASSERT_EQUAL(BOTHER, tios_result.c_cflag & BOTHER);
  263. // Setting the speed to 230400 will set it actually to 230423
  264. TEST_ASSERT_EQUAL(230423, tios_result.c_ispeed);
  265. TEST_ASSERT_EQUAL(230423, tios_result.c_ospeed);
  266. TEST_ASSERT_EQUAL(ESP_OK, uart_get_baudrate(UART_NUM_1, &baudrate));
  267. TEST_ASSERT_EQUAL(230423, baudrate);
  268. tios.c_cflag |= BOTHER;
  269. tios.c_ispeed = tios.c_ospeed = 42321;
  270. TEST_ASSERT_EQUAL(0, tcsetattr(uart_fd, TCSANOW, &tios));
  271. TEST_ASSERT_EQUAL(0, tcgetattr(uart_fd, &tios_result));
  272. TEST_ASSERT_EQUAL(BOTHER, tios_result.c_cflag & BOTHER);
  273. TEST_ASSERT_EQUAL(42321, tios_result.c_ispeed);
  274. TEST_ASSERT_EQUAL(42321, tios_result.c_ospeed);
  275. TEST_ASSERT_EQUAL(ESP_OK, uart_get_baudrate(UART_NUM_1, &baudrate));
  276. TEST_ASSERT_EQUAL(42321, baudrate);
  277. memset(&tios_result, 0xFF, sizeof(struct termios));
  278. }
  279. esp_vfs_dev_uart_use_nonblocking(1);
  280. close(uart_fd);
  281. uart_driver_delete(UART_NUM_1);
  282. }
  283. #endif //!TEMPORARY_DISABLED_FOR_TARGETS(ESP32C2)
  284. #endif // CONFIG_VFS_SUPPORT_TERMIOS