app.py 3.5 KB

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  1. import sys
  2. from nbus_slave import *
  3. from nbus_system import *
  4. import matplotlib.pyplot as plt
  5. from imu_slave import *
  6. import numpy as np
  7. def show_data(data):
  8. fig, ax = plt.subplots()
  9. for d in data:
  10. ax.plot(data[d])
  11. ax.grid()
  12. plt.show()
  13. if __name__ == "__main__":
  14. nbus = NbusSystem(True)
  15. s1_adr = 5
  16. s2_adr = 6
  17. adrs = [s1_adr]
  18. foundSlaves = {}
  19. for adr in adrs:
  20. slave1 = nbus.create_slave(ImuSlave, adr)
  21. foundSlaves[adr] = True
  22. startCheck = True
  23. for adr in adrs:
  24. if nbus.get_slave(adr).cmd_echo([97, 98, 99, 100]) == 0:
  25. foundSlaves[adr] = False
  26. for s in foundSlaves:
  27. startCheck = startCheck and foundSlaves[s]
  28. print("Module presence:", foundSlaves)
  29. if not startCheck:
  30. sys.exit()
  31. # app.cmd_reset()
  32. store_param = False
  33. if store_param:
  34. nbus.get_slave(s1_adr).cmd_set_param(1, PARAM_SAMPLERATE, 1)
  35. nbus.get_slave(s1_adr).cmd_set_param(1, PARAM_RANGE, 0)
  36. nbus.get_slave(s1_adr).cmd_set_param(1, PARAM_FILTER, 2)
  37. nbus.get_slave(s1_adr).cmd_store(1)
  38. sys.exit()
  39. # !!!! slave1.cmd_set_param(1, PARAM_SAMPLERATE, 10)
  40. # !!!! slave1.cmd_set_param(2, PARAM_SAMPLERATE, 10)
  41. for adr in adrs:
  42. for s in range(1):
  43. sr = nbus.get_slave(adr).cmd_get_param(s + 1, PARAM_SAMPLERATE)
  44. r = nbus.get_slave(adr).cmd_get_param(s + 1, PARAM_RANGE)
  45. lpf = nbus.get_slave(adr).cmd_get_param(s + 1, PARAM_FILTER)
  46. ee = nbus.get_slave(adr).cmd_get_param(s + 1, PARAM_GAIN)
  47. print(sr, r, lpf, ee)
  48. # sr = nbus.get_slave(adr).cmd_get_param(1, PARAM_SAMPLERATE)
  49. # nbus.get_slave(adr).cmd_set_param(1, PARAM_RANGE, 1)
  50. # print(nbus.get_slave(adr).slave_params)
  51. pocet = {}
  52. for adr in adrs:
  53. pocet[adr] = nbus.get_slave(adr).cmd_sensor_cnt()
  54. # sys.exit()
  55. print("pocet senzorov=", pocet)
  56. nbus.cmd_start()
  57. time.sleep(0.1)
  58. #nbus.cmd_stop()
  59. #sys.exit()
  60. data_acc = {}
  61. for adr in adrs:
  62. data_acc[adr] = []
  63. print(data_acc)
  64. start = time.time()
  65. num = 56
  66. for i in range(num):
  67. for adr in adrs:
  68. acc = nbus.get_slave(adr).cmd_sensor_get_data_IMU(1)
  69. #gyr = nbus.get_slave(adr).cmd_sensor_get_data_IMU(2)
  70. data_acc[adr].append(acc)
  71. #print(gyr)
  72. print(".", end=" ")
  73. stop = time.time() - start
  74. print(f"t={stop}")
  75. print(f"datarate={num/stop} mer/s")
  76. nbus.cmd_stop()
  77. nbus.cmd_stop()
  78. show_data(data_acc)
  79. nbus.cmd_stop()
  80. nbus.finish()
  81. sys.exit()
  82. for adr in adrs:
  83. for i in range(pocet[adr]):
  84. d = nbus.get_slave(adr).cmd_sensor_get_data(i + 1)
  85. print("Data", i + 1, ":\t", d)
  86. print("Sensor type")
  87. for i in range(pocet[adr]):
  88. print(nbus.get_slave(adr).cmd_sensor_type(i + 1))
  89. print("Sensors type")
  90. print(nbus.get_slave(adr).cmd_sensors_type(pocet[adr]))
  91. par = nbus.get_slave(adr).cmd_get_params(1)
  92. print(par)
  93. r = nbus.get_slave(adr).cmd_module_info(0xE1)
  94. print('NAME:', r)
  95. r = nbus.get_slave(adr).cmd_module_info(0xE2)
  96. print('TYPE', r)
  97. r = nbus.get_slave(adr).cmd_module_info(0xE4)
  98. print('FW', r)
  99. r = nbus.get_slave(adr).cmd_module_info(0xE5)
  100. print('HW', r)
  101. r = nbus.get_slave(adr).cmd_module_info(0xE3)
  102. print("UUID", r)
  103. r = nbus.get_slave(adr).cmd_module_info(0xE6)
  104. print("MEM ID", r)
  105. nbus.finish()