uart_blocking_tx.c 3.2 KB

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  1. #include <rtthread.h>
  2. #include <rtdevice.h>
  3. #include "utest.h"
  4. #define SERIAL_UART_NAME "uart2"
  5. #define UART_SEND_TIMES 400
  6. #define UART_TEST_NUMBER 6
  7. #ifdef UTEST_SERIAL_TC
  8. static rt_bool_t block_write(rt_device_t uart_dev)
  9. {
  10. rt_size_t i, wr_sz, index, write_num_array[UART_TEST_NUMBER], total_write_num[UART_TEST_NUMBER];
  11. rt_tick_t tick1, tick2, tick_array[UART_TEST_NUMBER];
  12. rt_uint8_t uart_write_buffer[1024];
  13. for (i = 0; i < 1024; i++)
  14. uart_write_buffer[i] = '0' + (i % 49);
  15. /* make sure device is closed and reopen it */
  16. while(rt_device_close(uart_dev) != -RT_ERROR);
  17. rt_device_open(uart_dev, RT_DEVICE_FLAG_TX_BLOCKING);
  18. LOG_D("\nBLOCKING WRITE BEGIN\n");
  19. rt_thread_mdelay(2000);
  20. index = 0;
  21. wr_sz = 0;
  22. tick1 = rt_tick_get();
  23. for(i = 0; i < UART_SEND_TIMES; i++)
  24. wr_sz += rt_device_write(uart_dev, 0, uart_write_buffer, 1024);
  25. tick2 = rt_tick_get();
  26. total_write_num[index] = UART_SEND_TIMES * 1024;
  27. tick_array[index] = tick2 - tick1;
  28. write_num_array[index++] = wr_sz;
  29. wr_sz = 0;
  30. tick1 = rt_tick_get();
  31. wr_sz += rt_device_write(uart_dev, 0, uart_write_buffer, 8);
  32. tick2 = rt_tick_get();
  33. total_write_num[index] = 8;
  34. tick_array[index] = tick2 - tick1;
  35. write_num_array[index++] = wr_sz;
  36. wr_sz = 0;
  37. tick1 = rt_tick_get();
  38. wr_sz += rt_device_write(uart_dev, 0, uart_write_buffer, 32);
  39. tick2 = rt_tick_get();
  40. total_write_num[index] = 32;
  41. tick_array[index] = tick2 - tick1;
  42. write_num_array[index++] = wr_sz;
  43. wr_sz = 0;
  44. tick1 = rt_tick_get();
  45. wr_sz += rt_device_write(uart_dev, 0, uart_write_buffer, 128);
  46. tick2 = rt_tick_get();
  47. total_write_num[index] = 128;
  48. tick_array[index] = tick2 - tick1;
  49. write_num_array[index++] = wr_sz;
  50. wr_sz = 0;
  51. tick1 = rt_tick_get();
  52. wr_sz += rt_device_write(uart_dev, 0, uart_write_buffer, 512);
  53. tick2 = rt_tick_get();
  54. total_write_num[index] = 512;
  55. tick_array[index] = tick2 - tick1;
  56. write_num_array[index++] = wr_sz;
  57. wr_sz = 0;
  58. tick1 = rt_tick_get();
  59. wr_sz += rt_device_write(uart_dev, 0, uart_write_buffer, 1024);
  60. tick2 = rt_tick_get();
  61. total_write_num[index] = 1024;
  62. tick_array[index] = tick2 - tick1;
  63. write_num_array[index++] = wr_sz;
  64. rt_thread_mdelay(1000);
  65. LOG_D("\nBLOCKING_TX END\n");
  66. for(i = 0; i < index; i++)
  67. {
  68. LOG_D("\nBLOCKING_MODE : write %d / %d bytes in %d ticks\n", write_num_array[i], total_write_num[i], tick_array[i]);
  69. rt_thread_mdelay(1000);
  70. }
  71. return RT_TRUE;
  72. }
  73. static void uart_test_blocking_tx(void)
  74. {
  75. rt_device_t uart_dev;
  76. uart_dev = rt_device_find(SERIAL_UART_NAME);
  77. uassert_not_null(uart_dev);
  78. uassert_true (block_write(uart_dev));
  79. }
  80. static rt_err_t utest_tc_init(void)
  81. {
  82. return RT_EOK;
  83. }
  84. static rt_err_t utest_tc_cleanup(void)
  85. {
  86. rt_device_t uart_dev;
  87. uart_dev = rt_device_find(SERIAL_UART_NAME);
  88. while(rt_device_close(uart_dev) != -RT_ERROR);
  89. rt_device_open(uart_dev, RT_DEVICE_FLAG_TX_BLOCKING | RT_DEVICE_FLAG_TX_BLOCKING);
  90. return RT_EOK;
  91. }
  92. static void testcase(void)
  93. {
  94. UTEST_UNIT_RUN(uart_test_blocking_tx);
  95. }
  96. UTEST_TC_EXPORT(testcase, "uart_blocking_tx", utest_tc_init, utest_tc_cleanup, 10);
  97. #endif