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https://github.com/qmk/qmk_firmware.git
synced 2024-11-30 06:55:51 +00:00
Stub out more of broadcast messages
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0d59f8b42d
commit
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@ -78,6 +78,28 @@
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'''
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}
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type_definitions: {
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broadcast_header: {
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name: Broadcast Header
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description: Packet format for broadcast messages.
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type: struct
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struct_members: [
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{
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type: token
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name: token
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},
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{
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type: u8
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name: type
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},
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{
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type: u8
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name: length
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}
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]
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}
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}
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broadcast_messages: {
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define_prefix: XAP_BROADCAST
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messages: {
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@ -97,6 +119,15 @@
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| **Value** | `0xFF` | `0xFF` | `0x00` | `0x0A`(10) | `0x48`(H) | `0x65`(e) | `0x6C`(l) | `0x6C`(l) | `0x6F`(o) | `0x20`( ) | `0x51`(Q) | `0x4D`(M) | `0x4B`(K) | `0x21`(!) |
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'''
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}
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0x01: {
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name: Secure Status
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define: SECURE_STATUS
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description:
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'''
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Secure status has changed.
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'''
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return_type: u8
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}
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}
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}
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@ -48,7 +48,7 @@ def print_dotted_output(kb_info_json, prefix=''):
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cli.echo(' {fg_blue}%s{fg_reset}: %s', new_prefix, kb_info_json[key])
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def _xap_transaction(device, sub, route, ret_len, *args):
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def _xap_transaction(device, sub, route, *args):
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# gen token
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tok = random.getrandbits(16)
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token = tok.to_bytes(2, byteorder='little')
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@ -78,16 +78,20 @@ def _xap_transaction(device, sub, route, ret_len, *args):
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device.write(buffer)
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# get resp
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array_alpha = device.read(4 + ret_len, 100)
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array_alpha = device.read(64, 100)
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# validate tok sent == resp
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if str(token) != str(array_alpha[:2]):
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return None
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return array_alpha[4:]
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if int(array_alpha[2]) != 0x01:
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return None
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payload_len = int(array_alpha[3])
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return array_alpha[4:4 + payload_len]
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def _query_device(device):
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ver_data = _xap_transaction(device, 0x00, 0x00, 4)
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ver_data = _xap_transaction(device, 0x00, 0x00)
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if not ver_data:
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return {'xap': 'UNKNOWN'}
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@ -95,14 +99,14 @@ def _query_device(device):
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a = (ver_data[3] << 24) + (ver_data[2] << 16) + (ver_data[1] << 8) + (ver_data[0])
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ver = f'{a>>24}.{a>>16 & 0xFF}.{a & 0xFFFF}'
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secure = int.from_bytes(_xap_transaction(device, 0x00, 0x03, 1), 'little')
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secure = int.from_bytes(_xap_transaction(device, 0x00, 0x03), 'little')
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secure = 'unlocked' if secure == 2 else 'LOCKED'
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return {'xap': ver, 'secure': secure}
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def _query_device_info_len(device):
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len_data = _xap_transaction(device, 0x01, 0x05, 4)
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len_data = _xap_transaction(device, 0x01, 0x05)
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if not len_data:
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return 0
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@ -111,7 +115,7 @@ def _query_device_info_len(device):
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def _query_device_info_chunk(device, offset):
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return _xap_transaction(device, 0x01, 0x06, 32, offset)
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return _xap_transaction(device, 0x01, 0x06, offset)
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def _query_device_info(device):
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@ -143,7 +147,42 @@ def _list_devices():
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# TODO: better formatting like "lsusb -v"?
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data = _query_device_info(device)
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print_dotted_output(data)
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# _xap_transaction(device, 0x01, 0x07, 1)
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def xap_doit():
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print("xap_doit")
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# get layer count
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# layers = _xap_transaction(device, 0x04, 0x01)
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# layers = int.from_bytes(layers, "little")
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# print(f'layers:{layers}')
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# get keycode [layer:0, row:0, col:0]
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# keycode = _xap_transaction(device, 0x04, 0x02, b"\x00\x00\x00")
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# keycode = int.from_bytes(keycode, "little")
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# keycode_map = {
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# # TODO: this should be data driven...
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# 0x04: 'KC_A',
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# 0x05: 'KC_B',
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# 0x29: 'KC_ESCAPE'
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# }
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# print('keycode:' + keycode_map.get(keycode, 'unknown'))
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# Reboot
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# _xap_transaction(device, 0x01, 0x07)
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def xap_broadcast_listen(device):
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try:
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cli.log.info("Listening for XAP broadcasts...")
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while 1:
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array_alpha = device.read(64, 100)
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if str(b"\xFF\xFF") == str(array_alpha[:2]):
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if array_alpha[2] == 1:
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cli.log.info(" Broadcast: Secure[%02x]", array_alpha[4])
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else:
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cli.log.info(" Broadcast: type[%02x] data:[%02x]", array_alpha[2], array_alpha[4])
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except KeyboardInterrupt:
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cli.log.info("Stopping...")
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@cli.argument('-d', '--device', help='device to select - uses format <pid>:<vid>.')
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@ -161,25 +200,14 @@ def xap(cli):
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return _list_devices()
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# Connect to first available device
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dev = _search()[0]
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devices = _search()
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if not devices:
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cli.log.error("No devices found!")
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return False
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dev = devices[0]
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device = hid.Device(path=dev['path'])
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cli.log.info("Connected to:%04x:%04x %s %s", dev['vendor_id'], dev['product_id'], dev['manufacturer_string'], dev['product_string'])
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# get layer count
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layers = _xap_transaction(device, 0x04, 0x01, 1)
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layers = int.from_bytes(layers, "little")
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print(f'layers:{layers}')
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# get keycode [layer:0, row:0, col:0]
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keycode = _xap_transaction(device, 0x04, 0x02, 2, b"\x00\x00\x00")
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keycode = int.from_bytes(keycode, "little")
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keycode_map = {
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# TODO: this should be data driven...
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0x04: 'KC_A',
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0x05: 'KC_B',
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0x29: 'KC_ESCAPE'
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}
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print('keycode:' + keycode_map.get(keycode, 'unknown'))
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# Reboot
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# _xap_transaction(device, 0x01, 0x07, 1)
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# xap_doit(device)
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xap_broadcast_listen(device)
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@ -177,6 +177,16 @@ def _append_internal_types(lines, container):
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lines.append(f'#define {prefix}_FAILED 0x00')
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lines.append('')
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broadcast_messages = container.get('broadcast_messages', {})
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broadcast_prefix = broadcast_messages['define_prefix']
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for key, value in broadcast_messages['messages'].items():
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define = value.get('define')
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lines.append(f'#define {broadcast_prefix}_{define} {key}')
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# Add special
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lines.append(f'#define {broadcast_prefix}_TOKEN 0xFFFF')
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lines.append('')
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additional_types = {}
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types = container.get('type_definitions', {})
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for key, value in types.items():
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@ -245,6 +245,22 @@ def _append_routing_tables(lines, container, container_id=None, route_stack=None
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route_stack.pop()
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def _append_broadcast_messages(lines, container):
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"""TODO:
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"""
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broadcast_messages = container.get('broadcast_messages', {})
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broadcast_prefix = broadcast_messages['define_prefix']
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for key, value in broadcast_messages['messages'].items():
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define = value.get('define')
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name = to_snake(f'{broadcast_prefix}_{define}')
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if 'return_type' in value:
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ret_type = _get_c_type(value['return_type'])
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lines.append(f'void {name}({ret_type} value) {{ xap_broadcast({key}, &value, sizeof(value)); }}')
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else:
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lines.append(f'void {name}(const void *data, size_t length){{ xap_broadcast({key}, data, length); }}')
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def generate_inline(output_file):
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"""Generates the XAP protocol header file, generated during normal build.
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"""
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@ -254,6 +270,7 @@ def generate_inline(output_file):
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lines = [GPL2_HEADER_C_LIKE, GENERATED_HEADER_C_LIKE, '']
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# Add all the generated code
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_append_broadcast_messages(lines, xap_defs)
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_append_routing_tables(lines, xap_defs)
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dump_lines(output_file, lines)
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@ -35,3 +35,4 @@ bool xap_respond_data(xap_token_t token, const void *data, size_t length);
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bool xap_respond_data_P(xap_token_t token, const void *data, size_t length);
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void xap_send(xap_token_t token, xap_response_flags_t response_flags, const void *data, size_t length);
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void xap_broadcast(uint8_t type, const void *data, size_t length);
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@ -1137,7 +1137,7 @@ void xap_send_base(uint8_t *data, uint8_t length) {
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chnWrite(&drivers.xap_driver.driver, data, length);
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}
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void xap_send(xap_token_t token, uint8_t response_flags, const void *data, size_t length) {
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void xap_send(xap_token_t token, xap_response_flags_t response_flags, const void *data, size_t length) {
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uint8_t rdata[XAP_EPSIZE] = {0};
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xap_response_header_t *header = (xap_response_header_t *)&rdata[0];
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header->token = token;
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@ -1154,6 +1154,21 @@ void xap_send(xap_token_t token, uint8_t response_flags, const void *data, size_
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xap_send_base(rdata, sizeof(rdata));
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}
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void xap_broadcast(uint8_t type, const void *data, size_t length) {
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uint8_t rdata[XAP_EPSIZE] = {0};
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xap_broadcast_header_t *header = (xap_broadcast_header_t *)&rdata[0];
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header->token = XAP_BROADCAST_TOKEN;
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header->type = type;
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if (length > (XAP_EPSIZE - sizeof(xap_broadcast_header_t))) return;
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header->length = (uint8_t)length;
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if (data != NULL) {
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memcpy(&rdata[sizeof(xap_broadcast_header_t)], data, length);
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}
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xap_send_base(rdata, sizeof(rdata));
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}
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void xap_receive_base(const void *data) {
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const uint8_t * u8data = (const uint8_t *)data;
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xap_request_header_t *header = (xap_request_header_t *)&u8data[0];
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@ -243,7 +243,7 @@ void xap_send_base(uint8_t *data, uint8_t length) {
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Endpoint_SelectEndpoint(ep);
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}
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void xap_send(xap_token_t token, uint8_t response_flags, const void *data, size_t length) {
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void xap_send(xap_token_t token, xap_response_flags_t response_flags, const void *data, size_t length) {
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uint8_t rdata[XAP_EPSIZE] = {0};
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xap_response_header_t *header = (xap_response_header_t *)&rdata[0];
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header->token = token;
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@ -260,6 +260,21 @@ void xap_send(xap_token_t token, uint8_t response_flags, const void *data, size_
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xap_send_base(rdata, sizeof(rdata));
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}
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void xap_broadcast(uint8_t type, const void *data, size_t length) {
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uint8_t rdata[XAP_EPSIZE] = {0};
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xap_broadcast_header_t *header = (xap_broadcast_header_t *)&rdata[0];
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header->token = XAP_BROADCAST_TOKEN;
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header->type = type;
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if (length > (XAP_EPSIZE - sizeof(xap_broadcast_header_t))) return;
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header->length = (uint8_t)length;
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if (data != NULL) {
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memcpy(&rdata[sizeof(xap_broadcast_header_t)], data, length);
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}
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xap_send_base(rdata, sizeof(rdata));
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}
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void xap_receive_base(const void *data) {
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const uint8_t * u8data = (const uint8_t *)data;
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xap_request_header_t *header = (xap_request_header_t *)&u8data[0];
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@ -204,7 +204,7 @@ void xap_send_base(uint8_t *data, uint8_t length) {
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usbSetInterrupt4(0, 0);
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}
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void xap_send(xap_token_t token, uint8_t response_flags, const void *data, size_t length) {
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void xap_send(xap_token_t token, xap_response_flags_t response_flags, const void *data, size_t length) {
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uint8_t rdata[XAP_BUFFER_SIZE] = {0};
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xap_response_header_t *header = (xap_response_header_t *)&rdata[0];
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header->token = token;
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@ -221,6 +221,21 @@ void xap_send(xap_token_t token, uint8_t response_flags, const void *data, size_
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xap_send_base(rdata, sizeof(rdata));
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}
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void xap_broadcast(uint8_t type, const void *data, size_t length) {
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uint8_t rdata[XAP_BUFFER_SIZE] = {0};
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xap_broadcast_header_t *header = (xap_broadcast_header_t *)&rdata[0];
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header->token = XAP_BROADCAST_TOKEN;
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header->type = type;
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if (length > (XAP_BUFFER_SIZE - sizeof(xap_broadcast_header_t))) return;
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header->length = (uint8_t)length;
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if (data != NULL) {
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memcpy(&rdata[sizeof(xap_broadcast_header_t)], data, length);
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}
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xap_send_base(rdata, sizeof(rdata));
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}
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void xap_receive_base(const void *data) {
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const uint8_t * u8data = (const uint8_t *)data;
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xap_request_header_t *header = (xap_request_header_t *)&u8data[0];
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