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/*
 * Copyright (c) 2004, Swedish Institute of Computer Science.
 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 * 1. Redistributions of source code must retain the above copyright
 *    notice, this list of conditions and the following disclaimer.
 * 2. Redistributions in binary form must reproduce the above copyright
 *    notice, this list of conditions and the following disclaimer in the
 *    documentation and/or other materials provided with the distribution.
 * 3. Neither the name of the Institute nor the names of its contributors
 *    may be used to endorse or promote products derived from this software
 *    without specific prior written permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``AS IS'' AND
 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
 * ARE DISCLAIMED.  IN NO EVENT SHALL THE INSTITUTE OR CONTRIBUTORS BE LIABLE
 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
 * SUCH DAMAGE.
 *
 * This file is part of the Contiki operating system.
 *
 * Author: Adam Dunkels <adam@sics.se>
 *
 * $Id: uip-split.c,v 1.2 2008/10/14 13:39:12 julienabeille Exp $
 */

#include "uip-split.h"


#define BUF ((struct uip_tcpip_hdr *)&uip_buf[UIP_LLH_LEN])

/*-----------------------------------------------------------------------------*/
void
uip_split_output(void)
{
#if UIP_TCP
  u16_t tcplen, len1, len2;

  /* We only try to split maximum sized TCP segments. */
  if(BUF->proto == UIP_PROTO_TCP  && uip_len == UIP_BUFSIZE) {

    tcplen = uip_len - UIP_TCPIP_HLEN - UIP_LLH_LEN;
    /* Split the segment in two. If the original packet length was
       odd, we make the second packet one byte larger. */
    len1 = len2 = tcplen / 2;
    if(len1 + len2 < tcplen) {
      ++len2;
    }

    /* Create the first packet. This is done by altering the length
       field of the IP header and updating the checksums. */
    uip_len = len1 + UIP_TCPIP_HLEN + UIP_LLH_LEN;
#if UIP_CONF_IPV6
    /* For IPv6, the IP length field does not include the IPv6 IP header
       length. */
    BUF->len[0] = ((uip_len - UIP_IPH_LEN) >> 8);
    BUF->len[1] = ((uip_len - UIP_IPH_LEN) & 0xff);
#else /* UIP_CONF_IPV6 */
    BUF->len[0] = (uip_len - UIP_LLH_LEN) >> 8;
    BUF->len[1] = (uip_len - UIP_LLH_LEN) & 0xff;
#endif /* UIP_CONF_IPV6 */

    /* Recalculate the TCP checksum. */
    BUF->tcpchksum = 0;
    BUF->tcpchksum = ~(uip_tcpchksum());

#if !UIP_CONF_IPV6
    /* Recalculate the IP checksum. */
    BUF->ipchksum = 0;
    BUF->ipchksum = ~(uip_ipchksum());
#endif /* UIP_CONF_IPV6 */

    /* Transmit the first packet. */
#if UIP_CONF_IPV6
    tcpip_ipv6_output();
#else
	if (USB_CurrentMode == USB_MODE_Device)
	  RNDIS_Device_SendPacket(&Ethernet_RNDIS_Interface_Device, uip_buf, uip_len);
	else
	  RNDIS_Host_SendPacket(&Ethernet_RNDIS_Interface_Host, uip_buf, uip_len);
#endif /* UIP_CONF_IPV6 */

    /* Now, create the second packet. To do this, it is not enough to
       just alter the length field, but we must also update the TCP
       sequence number and point the uip_appdata to a new place in
       memory. This place is determined by the length of the first
       packet (len1). */
    uip_len = len2 + UIP_TCPIP_HLEN + UIP_LLH_LEN;
#if UIP_CONF_IPV6
    /* For IPv6, the IP length field does not include the IPv6 IP header
       length. */
    BUF->len[0] = ((uip_len - UIP_IPH_LEN) >> 8);
    BUF->len[1] = ((uip_len - UIP_IPH_LEN) & 0xff);
#else /* UIP_CONF_IPV6 */
    BUF->len[0] = (uip_len  - UIP_LLH_LEN) >> 8;
    BUF->len[1] = (uip_len - UIP_LLH_LEN) & 0xff;
#endif /* UIP_CONF_IPV6 */

    memcpy(uip_appdata, (u8_t *)uip_appdata + len1, len2);

    uip_add32(BUF->seqno, len1);
    BUF->seqno[0] = uip_acc32[0];
    BUF->seqno[1] = uip_acc32[1];
    BUF->seqno[2] = uip_acc32[2];
    BUF->seqno[3] = uip_acc32[3];

    /* Recalculate the TCP checksum. */
    BUF->tcpchksum = 0;
    BUF->tcpchksum = ~(uip_tcpchksum());

#if !UIP_CONF_IPV6
    /* Recalculate the IP checksum. */
    BUF->ipchksum = 0;
    BUF->ipchksum = ~(uip_ipchksum());
#endif /* UIP_CONF_IPV6 */

    /* Transmit the second packet. */
#if UIP_CONF_IPV6
    tcpip_ipv6_output();
#else
	if (USB_CurrentMode == USB_MODE_Device)
	  RNDIS_Device_SendPacket(&Ethernet_RNDIS_Interface_Device, uip_buf, uip_len);
	else
	  RNDIS_Host_SendPacket(&Ethernet_RNDIS_Interface_Host, uip_buf, uip_len);
#endif /* UIP_CONF_IPV6 */
    return;
  }
#endif /* UIP_TCP */

  /*    uip_fw_output();*/
#if UIP_CONF_IPV6
	tcpip_ipv6_output();
#else
	if (USB_CurrentMode == USB_MODE_Device)
	  RNDIS_Device_SendPacket(&Ethernet_RNDIS_Interface_Device, uip_buf, uip_len);
	else
	  RNDIS_Host_SendPacket(&Ethernet_RNDIS_Interface_Host, uip_buf, uip_len);
#endif /* UIP_CONF_IPV6 */
}

/*-----------------------------------------------------------------------------*/
/* Input (Const, Variable, Absolute) */ 0x95, 0x05, /* Report Count (5) */ 0x75, 0x01, /* Report Size (1) */ 0x05, 0x08, /* Usage Page (LEDs) */ 0x19, 0x01, /* Usage Minimum (Num Lock) */ 0x29, 0x05, /* Usage Maximum (Kana) */ 0x91, 0x02, /* Output (Data, Variable, Absolute) */ 0x95, 0x01, /* Report Count (1) */ 0x75, 0x03, /* Report Size (3) */ 0x91, 0x03, /* Output (Const, Variable, Absolute) */ 0x95, 0x06, /* Report Count (6) */ 0x75, 0x08, /* Report Size (8) */ 0x15, 0x00, /* Logical Minimum (0) */ 0x25, 0x65, /* Logical Maximum (101) */ 0x05, 0x07, /* Usage Page (Keyboard) */ 0x19, 0x00, /* Usage Minimum (Reserved (no event indicated)) */ 0x29, 0x65, /* Usage Maximum (Keyboard Application) */ 0x81, 0x00, /* Input (Data, Array, Absolute) */ 0xC0 /* End Collection */ }; /** Device descriptor structure. This descriptor, located in FLASH memory, describes the overall * device characteristics, including the supported USB version, control endpoint size and the * number of device configurations. The descriptor is read out by the USB host when the enumeration * process begins. */ USB_Descriptor_Device_t PROGMEM DeviceDescriptor = { .Header = {.Size = sizeof(USB_Descriptor_Device_t), .Type = DTYPE_Device}, .USBSpecification = VERSION_BCD(01.10), .Class = 0x00, .SubClass = 0x00, .Protocol = 0x00, .Endpoint0Size = FIXED_CONTROL_ENDPOINT_SIZE, .VendorID = 0x03EB, .ProductID = 0x204D, .ReleaseNumber = 0x0000, .ManufacturerStrIndex = 0x01, .ProductStrIndex = 0x02, .SerialNumStrIndex = NO_DESCRIPTOR, .NumberOfConfigurations = FIXED_NUM_CONFIGURATIONS }; /** Configuration descriptor structure. This descriptor, located in FLASH memory, describes the usage * of the device in one of its supported configurations, including information about any device interfaces * and endpoints. The descriptor is read out by the USB host during the enumeration process when selecting * a configuration so that the host may correctly communicate with the USB device. */ USB_Descriptor_Configuration_t PROGMEM ConfigurationDescriptor = { .Config = { .Header = {.Size = sizeof(USB_Descriptor_Configuration_Header_t), .Type = DTYPE_Configuration}, .TotalConfigurationSize = sizeof(USB_Descriptor_Configuration_t), .TotalInterfaces = 2, .ConfigurationNumber = 1, .ConfigurationStrIndex = NO_DESCRIPTOR, .ConfigAttributes = (USB_CONFIG_ATTR_BUSPOWERED | USB_CONFIG_ATTR_SELFPOWERED), .MaxPowerConsumption = USB_CONFIG_POWER_MA(100) }, .HID1_KeyboardInterface = { .Header = {.Size = sizeof(USB_Descriptor_Interface_t), .Type = DTYPE_Interface}, .InterfaceNumber = 0x00, .AlternateSetting = 0x00, .TotalEndpoints = 1, .Class = 0x03, .SubClass = 0x01, .Protocol = HID_BOOT_KEYBOARD_PROTOCOL, .InterfaceStrIndex = NO_DESCRIPTOR }, .HID1_KeyboardHID = { .Header = {.Size = sizeof(USB_HID_Descriptor_t), .Type = DTYPE_HID}, .HIDSpec = VERSION_BCD(01.11), .CountryCode = 0x00, .TotalReportDescriptors = 1, .HIDReportType = DTYPE_Report, .HIDReportLength = sizeof(KeyboardReport) }, .HID1_ReportINEndpoint = { .Header = {.Size = sizeof(USB_Descriptor_Endpoint_t), .Type = DTYPE_Endpoint}, .EndpointAddress = (ENDPOINT_DESCRIPTOR_DIR_IN | KEYBOARD_IN_EPNUM), .Attributes = (EP_TYPE_INTERRUPT | ENDPOINT_ATTR_NO_SYNC | ENDPOINT_USAGE_DATA), .EndpointSize = HID_EPSIZE, .PollingIntervalMS = 0x0A }, .HID2_MouseInterface = { .Header = {.Size = sizeof(USB_Descriptor_Interface_t), .Type = DTYPE_Interface}, .InterfaceNumber = 0x01, .AlternateSetting = 0x00, .TotalEndpoints = 1, .Class = 0x03, .SubClass = 0x01, .Protocol = HID_BOOT_MOUSE_PROTOCOL, .InterfaceStrIndex = NO_DESCRIPTOR }, .HID2_MouseHID = { .Header = {.Size = sizeof(USB_HID_Descriptor_t), .Type = DTYPE_HID}, .HIDSpec = VERSION_BCD(01.11), .CountryCode = 0x00, .TotalReportDescriptors = 1, .HIDReportType = DTYPE_Report, .HIDReportLength = sizeof(MouseReport) }, .HID2_ReportINEndpoint = { .Header = {.Size = sizeof(USB_Descriptor_Endpoint_t), .Type = DTYPE_Endpoint}, .EndpointAddress = (ENDPOINT_DESCRIPTOR_DIR_IN | MOUSE_IN_EPNUM), .Attributes = (EP_TYPE_INTERRUPT | ENDPOINT_ATTR_NO_SYNC | ENDPOINT_USAGE_DATA), .EndpointSize = HID_EPSIZE, .PollingIntervalMS = 0x0A } }; /** Language descriptor structure. This descriptor, located in FLASH memory, is returned when the host requests * the string descriptor with index 0 (the first index). It is actually an array of 16-bit integers, which indicate * via the language ID table available at USB.org what languages the device supports for its string descriptors. */ USB_Descriptor_String_t PROGMEM LanguageString = { .Header = {.Size = USB_STRING_LEN(1), .Type = DTYPE_String}, .UnicodeString = {LANGUAGE_ID_ENG} }; /** Manufacturer descriptor string. This is a Unicode string containing the manufacturer's details in human readable * form, and is read out upon request by the host when the appropriate string ID is requested, listed in the Device * Descriptor. */ USB_Descriptor_String_t PROGMEM ManufacturerString = { .Header = {.Size = USB_STRING_LEN(11), .Type = DTYPE_String}, .UnicodeString = L"Dean Camera" }; /** Product descriptor string. This is a Unicode string containing the product's details in human readable form, * and is read out upon request by the host when the appropriate string ID is requested, listed in the Device * Descriptor. */ USB_Descriptor_String_t PROGMEM ProductString = { .Header = {.Size = USB_STRING_LEN(28), .Type = DTYPE_String}, .UnicodeString = L"LUFA Mouse and Keyboard Demo" }; /** This function is called by the library when in device mode, and must be overridden (see library "USB Descriptors" * documentation) by the application code so that the address and size of a requested descriptor can be given * to the USB library. When the device receives a Get Descriptor request on the control endpoint, this function * is called so that the descriptor details can be passed back and the appropriate descriptor sent back to the * USB host. */ uint16_t CALLBACK_USB_GetDescriptor(const uint16_t wValue, const uint8_t wIndex, void** const DescriptorAddress) { const uint8_t DescriptorType = (wValue >> 8); const uint8_t DescriptorNumber = (wValue & 0xFF); void* Address = NULL; uint16_t Size = NO_DESCRIPTOR; switch (DescriptorType) { case DTYPE_Device: Address = (void*)&DeviceDescriptor; Size = sizeof(USB_Descriptor_Device_t); break; case DTYPE_Configuration: Address = (void*)&ConfigurationDescriptor; Size = sizeof(USB_Descriptor_Configuration_t); break; case DTYPE_String: switch (DescriptorNumber) { case 0x00: Address = (void*)&LanguageString; Size = pgm_read_byte(&LanguageString.Header.Size); break; case 0x01: Address = (void*)&ManufacturerString; Size = pgm_read_byte(&ManufacturerString.Header.Size); break; case 0x02: Address = (void*)&ProductString; Size = pgm_read_byte(&ProductString.Header.Size); break; } break; case DTYPE_HID: if (!(wIndex)) { Address = (void*)&ConfigurationDescriptor.HID1_KeyboardHID; Size = sizeof(USB_HID_Descriptor_t); } else { Address = (void*)&ConfigurationDescriptor.HID2_MouseHID; Size = sizeof(USB_HID_Descriptor_t); } break; case DTYPE_Report: if (!(wIndex)) { Address = (void*)&KeyboardReport; Size = sizeof(KeyboardReport); } else { Address = (void*)&MouseReport; Size = sizeof(MouseReport); } break; } *DescriptorAddress = Address; return Size; }