451 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			451 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * The MIT License (MIT)
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 *
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 * Copyright (c) 2020 Peter Lawrence
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 * Copyright (c) 2019 Ha Thach (tinyusb.org)
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 *
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
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 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
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 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
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 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
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 *
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 * This file is part of the TinyUSB stack.
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 */
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#include "tusb_option.h"
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#if ( CFG_TUD_ENABLED && CFG_TUD_ECM_RNDIS )
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#include "device/usbd.h"
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#include "device/usbd_pvt.h"
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#include "net_device.h"
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#include "rndis_protocol.h"
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void rndis_class_set_handler(uint8_t *data, int size); /* found in ./misc/networking/rndis_reports.c */
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//--------------------------------------------------------------------+
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// MACRO CONSTANT TYPEDEF
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//--------------------------------------------------------------------+
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typedef struct
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{
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  uint8_t itf_num;      // Index number of Management Interface, +1 for Data Interface
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  uint8_t itf_data_alt; // Alternate setting of Data Interface. 0 : inactive, 1 : active
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  uint8_t ep_notif;
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  uint8_t ep_in;
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  uint8_t ep_out;
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  bool ecm_mode;
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  // Endpoint descriptor use to open/close when receiving SetInterface
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  // TODO since configuration descriptor may not be long-lived memory, we should
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  // keep a copy of endpoint attribute instead
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  uint8_t const * ecm_desc_epdata;
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} netd_interface_t;
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#define CFG_TUD_NET_PACKET_PREFIX_LEN sizeof(rndis_data_packet_t)
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#define CFG_TUD_NET_PACKET_SUFFIX_LEN 0
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CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static
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uint8_t received[CFG_TUD_NET_PACKET_PREFIX_LEN + CFG_TUD_NET_MTU + CFG_TUD_NET_PACKET_PREFIX_LEN];
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CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static
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uint8_t transmitted[CFG_TUD_NET_PACKET_PREFIX_LEN + CFG_TUD_NET_MTU + CFG_TUD_NET_PACKET_PREFIX_LEN];
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struct ecm_notify_struct
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{
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  tusb_control_request_t header;
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  uint32_t downlink, uplink;
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};
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tu_static const struct ecm_notify_struct ecm_notify_nc =
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{
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  .header = {
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    .bmRequestType = 0xA1,
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    .bRequest = 0 /* NETWORK_CONNECTION aka NetworkConnection */,
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    .wValue = 1 /* Connected */,
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    .wLength = 0,
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  },
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};
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tu_static const struct ecm_notify_struct ecm_notify_csc =
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{
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  .header = {
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    .bmRequestType = 0xA1,
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    .bRequest = 0x2A /* CONNECTION_SPEED_CHANGE aka ConnectionSpeedChange */,
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    .wLength = 8,
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  },
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  .downlink = 9728000,
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  .uplink = 9728000,
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};
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// TODO remove CFG_TUD_MEM_SECTION, control internal buffer is already in this special section
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CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static union
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{
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  uint8_t rndis_buf[120];
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  struct ecm_notify_struct ecm_buf;
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} notify;
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//--------------------------------------------------------------------+
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// INTERNAL OBJECT & FUNCTION DECLARATION
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//--------------------------------------------------------------------+
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// TODO remove CFG_TUD_MEM_SECTION
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CFG_TUD_MEM_SECTION tu_static netd_interface_t _netd_itf;
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tu_static bool can_xmit;
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void tud_network_recv_renew(void)
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{
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  usbd_edpt_xfer(0, _netd_itf.ep_out, received, sizeof(received));
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}
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static void do_in_xfer(uint8_t *buf, uint16_t len)
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{
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  can_xmit = false;
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  usbd_edpt_xfer(0, _netd_itf.ep_in, buf, len);
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}
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void netd_report(uint8_t *buf, uint16_t len)
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{
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  uint8_t const rhport = 0;
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  // skip if previous report not yet acknowledged by host
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  if ( usbd_edpt_busy(rhport, _netd_itf.ep_notif) ) return;
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  usbd_edpt_xfer(rhport, _netd_itf.ep_notif, buf, len);
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}
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//--------------------------------------------------------------------+
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// USBD Driver API
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//--------------------------------------------------------------------+
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void netd_init(void)
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{
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  tu_memclr(&_netd_itf, sizeof(_netd_itf));
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}
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void netd_reset(uint8_t rhport)
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{
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  (void) rhport;
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  netd_init();
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}
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uint16_t netd_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len)
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{
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  bool const is_rndis = (TUD_RNDIS_ITF_CLASS    == itf_desc->bInterfaceClass    &&
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                         TUD_RNDIS_ITF_SUBCLASS == itf_desc->bInterfaceSubClass &&
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                         TUD_RNDIS_ITF_PROTOCOL == itf_desc->bInterfaceProtocol);
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  bool const is_ecm = (TUSB_CLASS_CDC                           == itf_desc->bInterfaceClass &&
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                       CDC_COMM_SUBCLASS_ETHERNET_CONTROL_MODEL == itf_desc->bInterfaceSubClass &&
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                       0x00                                     == itf_desc->bInterfaceProtocol);
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  TU_VERIFY(is_rndis || is_ecm, 0);
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  // confirm interface hasn't already been allocated
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  TU_ASSERT(0 == _netd_itf.ep_notif, 0);
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  // sanity check the descriptor
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  _netd_itf.ecm_mode = is_ecm;
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  //------------- Management Interface -------------//
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  _netd_itf.itf_num = itf_desc->bInterfaceNumber;
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  uint16_t drv_len = sizeof(tusb_desc_interface_t);
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  uint8_t const * p_desc = tu_desc_next( itf_desc );
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  // Communication Functional Descriptors
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  while ( TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc) && drv_len <= max_len )
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  {
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    drv_len += tu_desc_len(p_desc);
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    p_desc   = tu_desc_next(p_desc);
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  }
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  // notification endpoint (if any)
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  if ( TUSB_DESC_ENDPOINT == tu_desc_type(p_desc) )
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  {
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    TU_ASSERT( usbd_edpt_open(rhport, (tusb_desc_endpoint_t const *) p_desc), 0 );
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    _netd_itf.ep_notif = ((tusb_desc_endpoint_t const *) p_desc)->bEndpointAddress;
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    drv_len += tu_desc_len(p_desc);
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    p_desc   = tu_desc_next(p_desc);
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  }
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  //------------- Data Interface -------------//
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  // - RNDIS Data followed immediately by a pair of endpoints
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  // - CDC-ECM data interface has 2 alternate settings
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  //   - 0 : zero endpoints for inactive (default)
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  //   - 1 : IN & OUT endpoints for active networking
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  TU_ASSERT(TUSB_DESC_INTERFACE == tu_desc_type(p_desc), 0);
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  do
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  {
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    tusb_desc_interface_t const * data_itf_desc = (tusb_desc_interface_t const *) p_desc;
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    TU_ASSERT(TUSB_CLASS_CDC_DATA == data_itf_desc->bInterfaceClass, 0);
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    drv_len += tu_desc_len(p_desc);
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    p_desc   = tu_desc_next(p_desc);
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  }while( _netd_itf.ecm_mode && (TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && (drv_len <= max_len) );
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  // Pair of endpoints
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  TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(p_desc), 0);
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  if ( _netd_itf.ecm_mode )
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  {
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    // ECM by default is in-active, save the endpoint attribute
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    // to open later when received setInterface
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    _netd_itf.ecm_desc_epdata = p_desc;
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  }else
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  {
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    // Open endpoint pair for RNDIS
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    TU_ASSERT( usbd_open_edpt_pair(rhport, p_desc, 2, TUSB_XFER_BULK, &_netd_itf.ep_out, &_netd_itf.ep_in), 0 );
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    tud_network_init_cb();
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    // we are ready to transmit a packet
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    can_xmit = true;
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    // prepare for incoming packets
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    tud_network_recv_renew();
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  }
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  drv_len += 2*sizeof(tusb_desc_endpoint_t);
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  return drv_len;
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}
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static void ecm_report(bool nc)
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{
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  notify.ecm_buf = (nc) ? ecm_notify_nc : ecm_notify_csc;
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  notify.ecm_buf.header.wIndex = _netd_itf.itf_num;
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  netd_report((uint8_t *)¬ify.ecm_buf, (nc) ? sizeof(notify.ecm_buf.header) : sizeof(notify.ecm_buf));
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}
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// Invoked when a control transfer occurred on an interface of this class
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// Driver response accordingly to the request and the transfer stage (setup/data/ack)
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// return false to stall control endpoint (e.g unsupported request)
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bool netd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request)
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{
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  if ( stage == CONTROL_STAGE_SETUP )
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  {
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    switch ( request->bmRequestType_bit.type )
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    {
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      case TUSB_REQ_TYPE_STANDARD:
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        switch ( request->bRequest )
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        {
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          case TUSB_REQ_GET_INTERFACE:
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          {
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            uint8_t const req_itfnum = (uint8_t) request->wIndex;
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            TU_VERIFY(_netd_itf.itf_num+1 == req_itfnum);
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            tud_control_xfer(rhport, request, &_netd_itf.itf_data_alt, 1);
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          }
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          break;
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          case TUSB_REQ_SET_INTERFACE:
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          {
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            uint8_t const req_itfnum = (uint8_t) request->wIndex;
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            uint8_t const req_alt    = (uint8_t) request->wValue;
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            // Only valid for Data Interface with Alternate is either 0 or 1
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            TU_VERIFY(_netd_itf.itf_num+1 == req_itfnum && req_alt < 2);
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            // ACM-ECM only: qequest to enable/disable network activities
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            TU_VERIFY(_netd_itf.ecm_mode);
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            _netd_itf.itf_data_alt = req_alt;
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            if ( _netd_itf.itf_data_alt )
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            {
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              // TODO since we don't actually close endpoint
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              // hack here to not re-open it
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              if ( _netd_itf.ep_in == 0 && _netd_itf.ep_out == 0 )
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              {
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                TU_ASSERT(_netd_itf.ecm_desc_epdata);
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                TU_ASSERT( usbd_open_edpt_pair(rhport, _netd_itf.ecm_desc_epdata, 2, TUSB_XFER_BULK, &_netd_itf.ep_out, &_netd_itf.ep_in) );
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                // TODO should be merge with RNDIS's after endpoint opened
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                // Also should have opposite callback for application to disable network !!
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                tud_network_init_cb();
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                can_xmit = true; // we are ready to transmit a packet
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                tud_network_recv_renew(); // prepare for incoming packets
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              }
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            }else
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            {
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              // TODO close the endpoint pair
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              // For now pretend that we did, this should have no harm since host won't try to
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              // communicate with the endpoints again
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              // _netd_itf.ep_in = _netd_itf.ep_out = 0
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            }
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            tud_control_status(rhport, request);
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          }
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          break;
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          // unsupported request
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          default: return false;
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        }
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      break;
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      case TUSB_REQ_TYPE_CLASS:
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        TU_VERIFY (_netd_itf.itf_num == request->wIndex);
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        if (_netd_itf.ecm_mode)
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        {
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          /* the only required CDC-ECM Management Element Request is SetEthernetPacketFilter */
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          if (0x43 /* SET_ETHERNET_PACKET_FILTER */ == request->bRequest)
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          {
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            tud_control_xfer(rhport, request, NULL, 0);
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            ecm_report(true);
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          }
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        }
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        else
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        {
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          if (request->bmRequestType_bit.direction == TUSB_DIR_IN)
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          {
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            rndis_generic_msg_t *rndis_msg = (rndis_generic_msg_t *) ((void*) notify.rndis_buf);
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            uint32_t msglen = tu_le32toh(rndis_msg->MessageLength);
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            TU_ASSERT(msglen <= sizeof(notify.rndis_buf));
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            tud_control_xfer(rhport, request, notify.rndis_buf, (uint16_t) msglen);
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          }
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          else
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          {
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            tud_control_xfer(rhport, request, notify.rndis_buf, (uint16_t) sizeof(notify.rndis_buf));
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          }
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        }
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      break;
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      // unsupported request
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      default: return false;
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    }
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  }
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  else if ( stage == CONTROL_STAGE_DATA )
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  {
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    // Handle RNDIS class control OUT only
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    if (request->bmRequestType_bit.type == TUSB_REQ_TYPE_CLASS &&
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        request->bmRequestType_bit.direction == TUSB_DIR_OUT   &&
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        _netd_itf.itf_num == request->wIndex)
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    {
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      if ( !_netd_itf.ecm_mode )
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      {
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        rndis_class_set_handler(notify.rndis_buf, request->wLength);
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      }
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    }
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  }
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  return true;
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}
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static void handle_incoming_packet(uint32_t len)
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{
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  uint8_t *pnt = received;
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  uint32_t size = 0;
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  if (_netd_itf.ecm_mode)
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  {
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    size = len;
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  }
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  else
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  {
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    rndis_data_packet_t *r = (rndis_data_packet_t *) ((void*) pnt);
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    if (len >= sizeof(rndis_data_packet_t))
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      if ( (r->MessageType == REMOTE_NDIS_PACKET_MSG) && (r->MessageLength <= len))
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        if ( (r->DataOffset + offsetof(rndis_data_packet_t, DataOffset) + r->DataLength) <= len)
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        {
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          pnt = &received[r->DataOffset + offsetof(rndis_data_packet_t, DataOffset)];
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          size = r->DataLength;
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        }
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  }
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  if (!tud_network_recv_cb(pnt, (uint16_t) size))
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  {
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    /* if a buffer was never handled by user code, we must renew on the user's behalf */
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    tud_network_recv_renew();
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  }
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}
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bool netd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes)
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{
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  (void) rhport;
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  (void) result;
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  /* new packet received */
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  if ( ep_addr == _netd_itf.ep_out )
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  {
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    handle_incoming_packet(xferred_bytes);
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  }
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  /* data transmission finished */
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  if ( ep_addr == _netd_itf.ep_in )
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  {
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    /* TinyUSB requires the class driver to implement ZLP (since ZLP usage is class-specific) */
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    if ( xferred_bytes && (0 == (xferred_bytes % CFG_TUD_NET_ENDPOINT_SIZE)) )
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    {
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      do_in_xfer(NULL, 0); /* a ZLP is needed */
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    }
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    else
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    {
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      /* we're finally finished */
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      can_xmit = true;
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    }
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  }
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  if ( _netd_itf.ecm_mode && (ep_addr == _netd_itf.ep_notif) )
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  {
 | 
						|
    if (sizeof(notify.ecm_buf.header) == xferred_bytes) ecm_report(false);
 | 
						|
  }
 | 
						|
 | 
						|
  return true;
 | 
						|
}
 | 
						|
 | 
						|
bool tud_network_can_xmit(uint16_t size)
 | 
						|
{
 | 
						|
  (void)size;
 | 
						|
 | 
						|
  return can_xmit;
 | 
						|
}
 | 
						|
 | 
						|
void tud_network_xmit(void *ref, uint16_t arg)
 | 
						|
{
 | 
						|
  uint8_t *data;
 | 
						|
  uint16_t len;
 | 
						|
 | 
						|
  if (!can_xmit)
 | 
						|
    return;
 | 
						|
 | 
						|
  len = (_netd_itf.ecm_mode) ? 0 : CFG_TUD_NET_PACKET_PREFIX_LEN;
 | 
						|
  data = transmitted + len;
 | 
						|
 | 
						|
  len += tud_network_xmit_cb(data, ref, arg);
 | 
						|
 | 
						|
  if (!_netd_itf.ecm_mode)
 | 
						|
  {
 | 
						|
    rndis_data_packet_t *hdr = (rndis_data_packet_t *) ((void*) transmitted);
 | 
						|
    memset(hdr, 0, sizeof(rndis_data_packet_t));
 | 
						|
    hdr->MessageType = REMOTE_NDIS_PACKET_MSG;
 | 
						|
    hdr->MessageLength = len;
 | 
						|
    hdr->DataOffset = sizeof(rndis_data_packet_t) - offsetof(rndis_data_packet_t, DataOffset);
 | 
						|
    hdr->DataLength = len - sizeof(rndis_data_packet_t);
 | 
						|
  }
 | 
						|
 | 
						|
  do_in_xfer(transmitted, len);
 | 
						|
}
 | 
						|
 | 
						|
#endif
 |