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""" |
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LUFA Library |
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Copyright (C) Dean Camera, 2013. |
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|
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dean [at] fourwalledcubicle [dot] com |
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www.lufa-lib.org |
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""" |
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|
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""" |
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LUFA Generic HID device demo host test script. This script will send a |
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continuous stream of generic reports to the device, to show a variable LED |
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pattern on the target board. Send and received report data is printed to |
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the terminal. |
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Requires the pywinusb library (https://pypi.python.org/pypi/pywinusb/). |
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""" |
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import sys |
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from time import sleep |
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import pywinusb.hid as hid |
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def get_hid_device_handle(VID, PID): |
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hid_device_filter = hid.HidDeviceFilter(vendor_id = VID, product_id = PID) |
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valid_hid_devices = hid_device_filter.get_devices() |
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if len(valid_hid_devices) is 0: |
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return None |
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else: |
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return valid_hid_devices[0] |
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def send_led_pattern(device, led1, led2, led3, led4): |
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# Length of the report: one byte for the report ID, remainder is the |
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# payload length as set in the demo |
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generic_report_size = 1 + 8 |
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|
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# Report data for the demo is the report ID (always zero) followed by the |
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# LED on/off data |
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report_data = [0, led1, led2, led3, led4] |
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# Zero-extend the array to the length the report should be |
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report_data.extend([0] * (generic_report_size - len(report_data))) |
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# Send the generated report to the device |
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device.send_output_report(report_data) |
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print("Sent LED Pattern: {0}".format(report_data[1:5])) |
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def received_led_pattern(report_data): |
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print("Received LED Pattern: {0}".format(report_data[1:5])) |
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def main(): |
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hid_device = get_hid_device_handle(VID=0x03EB, PID=0x204F) |
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if hid_device is None: |
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print("No valid HID device found.") |
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sys.exit(1) |
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try: |
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hid_device.open() |
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print("Connected to device 0x%04X/0x%04X - %s [%s]" % |
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(hid_device.vendor_id, hid_device.product_id, |
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hid_device.product_name, hid_device.vendor_name)) |
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# Set up the HID input report handler to receive reports |
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hid_device.set_raw_data_handler(received_led_pattern) |
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p = 0 |
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while (hid_device.is_plugged()): |
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# Convert the current pattern index to a bit-mask and send |
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send_led_pattern(hid_device, |
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(p >> 3) & 1, |
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(p >> 2) & 1, |
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(p >> 1) & 1, |
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(p >> 0) & 1) |
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# Compute next LED pattern in sequence |
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p = (p + 1) % 16 |
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# Delay a bit for visual effect |
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sleep(.2) |
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finally: |
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hid_device.close() |
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if __name__ == '__main__': |
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main() |
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