mirror of
https://github.com/oliverschmidt/contiki.git
synced 2024-11-19 03:05:14 +00:00
331 lines
7.3 KiB
C
331 lines
7.3 KiB
C
#include <stdbool.h>
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#include "cdc_ecm.h"
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#include "contiki.h"
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#include "usb_drv.h"
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#include "usb_descriptors.h"
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#include "usb_specific_request.h"
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#include "rndis/rndis_task.h"
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#include "rndis/rndis_protocol.h"
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#include "uip.h"
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#include "sicslow_ethernet.h"
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#include <stdio.h>
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#if RF230BB
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#include "rf230bb.h"
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#endif
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#include <avr/pgmspace.h>
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#include <util/delay.h>
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#define BUF ((struct uip_eth_hdr *)&uip_buf[0])
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#define PRINTF printf
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#define PRINTF_P printf_P
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extern uint8_t usb_eth_data_buffer[64];
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static U16 usb_ecm_packet_filter = 0;
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#define PACKET_TYPE_PROMISCUOUS (1<<0)
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#define PACKET_TYPE_ALL_MULTICAST (1<<1)
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#define PACKET_TYPE_DIRECTED (1<<2)
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#define PACKET_TYPE_BROADCAST (1<<3)
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#define PACKET_TYPE_MULTICAST (1<<4)
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#define Usb_write_word(x) Usb_write_byte((x)&0xFF),Usb_write_byte((x>>8)&0xFF)
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#define Usb_write_long(x) Usb_write_word((x)&0xFFFF),Usb_write_word((x>>16)&0xFFFF)
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#define Usb_read_word() ((U16)Usb_read_byte()+((U16)Usb_read_byte()<<8))
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void
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cdc_ecm_set_ethernet_packet_filter(void) {
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usb_ecm_packet_filter = Usb_read_word();
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Usb_ack_receive_setup();
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Usb_send_control_in();
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usb_endpoint_wait_for_read_control_enabled();
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PRINTF_P(PSTR("cdc_ecm: Received SET_ETHERNET_PACKET_FILTER: (0x%04X) "),usb_ecm_packet_filter);
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if(usb_ecm_packet_filter & PACKET_TYPE_PROMISCUOUS) {
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PRINTF_P(PSTR("PROMISCUOUS "));
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USB_ETH_HOOK_SET_PROMISCIOUS_MODE(true);
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} else {
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USB_ETH_HOOK_SET_PROMISCIOUS_MODE(false);
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}
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if(usb_ecm_packet_filter & PACKET_TYPE_ALL_MULTICAST)
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PRINTF_P(PSTR("ALL_MULTICAST "));
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if(usb_ecm_packet_filter & PACKET_TYPE_DIRECTED)
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PRINTF_P(PSTR("DIRECTED "));
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if(usb_ecm_packet_filter & PACKET_TYPE_BROADCAST)
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PRINTF_P(PSTR("BROADCAST "));
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if(usb_ecm_packet_filter & PACKET_TYPE_MULTICAST)
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PRINTF_P(PSTR("MULTICAST "));
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PRINTF_P(PSTR("\n"));
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}
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#define CDC_NOTIFY_NETWORK_CONNECTION (0x00)
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#define CDC_NOTIFY_CONNECTION_SPEED_CHANGE (0x2A)
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void
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cdc_ecm_notify_network_connection(uint8_t value) {
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#if CDC_ECM_USES_INTERRUPT_ENDPOINT
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Usb_select_endpoint(INT_EP);
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if(!Is_usb_endpoint_enabled()) {
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//PRINTF_P(PSTR("cdc_ecm: cdc_ecm_notify_network_connection: endpoint not enabled\n"));
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return;
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}
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if(usb_endpoint_wait_for_IN_ready()!=0) {
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//PRINTF_P(PSTR("cdc_ecm: cdc_ecm_notify_network_connection: Timeout waiting for interrupt endpoint to be available\n"));
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return;
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}
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Usb_send_control_in();
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Usb_write_byte(0x51); // 10100001b
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Usb_write_byte(CDC_NOTIFY_NETWORK_CONNECTION);
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Usb_write_byte(value);
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Usb_write_byte(0x00);
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Usb_write_word(ECM_INTERFACE0_NB);
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Usb_write_word(0x0000);
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Usb_send_in();
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PRINTF_P(PSTR("cdc_ecm: CDC_NOTIFY_NETWORK_CONNECTION %d\n"),value);
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#endif
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}
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#define CDC_ECM_DATA_ENDPOINT_SIZE 64
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void cdc_ecm_configure_endpoints() {
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#if CDC_ECM_USES_INTERRUPT_ENDPOINT
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usb_configure_endpoint(INT_EP, \
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TYPE_INTERRUPT, \
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DIRECTION_IN, \
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SIZE_8, \
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TWO_BANKS, \
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NYET_ENABLED);
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#endif
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usb_configure_endpoint(TX_EP, \
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TYPE_BULK, \
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DIRECTION_IN, \
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SIZE_64, \
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TWO_BANKS, \
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NYET_ENABLED);
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usb_configure_endpoint(RX_EP, \
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TYPE_BULK, \
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DIRECTION_OUT, \
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SIZE_64, \
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TWO_BANKS, \
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NYET_ENABLED);
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#if CDC_ECM_USES_INTERRUPT_ENDPOINT
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Usb_reset_endpoint(INT_EP);
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#endif
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Usb_reset_endpoint(TX_EP);
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Usb_reset_endpoint(RX_EP);
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usb_eth_is_active = 1;
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}
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void
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cdc_ecm_notify_connection_speed_change(uint32_t upstream,uint32_t downstream) {
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#if CDC_ECM_USES_INTERRUPT_ENDPOINT
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Usb_select_endpoint(INT_EP);
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if(!Is_usb_endpoint_enabled())
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return;
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if(usb_endpoint_wait_for_IN_ready()!=0)
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return;
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Usb_send_control_in();
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Usb_write_byte(0x51); // 10100001b
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Usb_write_byte(CDC_NOTIFY_CONNECTION_SPEED_CHANGE);
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Usb_write_word(0x0000);
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Usb_write_word(ECM_INTERFACE0_NB);
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Usb_write_word(0x0008);
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Usb_send_in();
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if(usb_endpoint_wait_for_write_enabled()!=0)
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return;
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Usb_write_long(upstream);
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Usb_write_long(downstream);
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Usb_send_in();
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PRINTF_P(PSTR("cdc_ecm: CDC_NOTIFY_CONNECTION_SPEED_CHANGE UP:%d DOWN:%d\n"),upstream,downstream);
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#endif
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}
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void cdc_ecm_set_active(uint8_t value) {
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if(value!=usb_eth_is_active) {
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Led3_on();
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usb_eth_is_active = value;
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cdc_ecm_notify_network_connection(value);
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if(value) {
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cdc_ecm_notify_connection_speed_change(250000,250000);
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} else {
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cdc_ecm_notify_connection_speed_change(0,0);
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}
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}
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}
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uint8_t
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cdc_ecm_process(void) {
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static uint8_t doInit = 1;
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Usb_select_endpoint(RX_EP);
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if(!Is_usb_endpoint_enabled()) {
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return 0;
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}
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if (doInit) {
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#ifdef USB_ETH_HOOK_INIT
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USB_ETH_HOOK_INIT();
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#endif
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cdc_ecm_notify_network_connection(1);
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cdc_ecm_notify_connection_speed_change(250000,250000);
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doInit = 0;
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if(usb_ecm_packet_filter & PACKET_TYPE_PROMISCUOUS) {
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#if RF230BB
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rf230_set_promiscuous_mode(true);
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#else
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radio_set_trx_state(RX_ON);
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#endif
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}
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// Select again, just to make sure.
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Usb_select_endpoint(RX_EP);
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}
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if(!usb_eth_is_active) {
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// If we aren't active, just eat the packets.
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if(Is_usb_read_enabled()) {
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Usb_ack_receive_out();
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}
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return 0;
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}
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//Connected!
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Led0_on();
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if(Is_usb_read_enabled()) {
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uint16_t bytecounter;
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uint16_t bytes_received = 0;
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U8 * buffer = uip_buf;
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if(!usb_eth_ready_for_next_packet()) {
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// Since we aren't ready for a packet yet,
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// just return.
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goto bail;
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}
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#ifdef USB_ETH_HOOK_RX_START
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USB_ETH_HOOK_RX_START();
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#endif
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while((bytecounter=Usb_byte_counter_8())==CDC_ECM_DATA_ENDPOINT_SIZE) {
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while((bytes_received<USB_ETH_MTU) && (bytecounter--)) {
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*buffer++ = Usb_read_byte();
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bytes_received++;
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}
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bytes_received+=bytecounter+1;
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//ACK previous data
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Usb_ack_receive_out();
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//Wait for new data
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if(usb_endpoint_wait_for_read_enabled()!=0) {
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USB_ETH_HOOK_RX_ERROR("Timeout: read enabled");
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goto bail;
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}
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}
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bytecounter = Usb_byte_counter_8();
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while((bytes_received<USB_ETH_MTU) && (bytecounter--)) {
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*buffer++ = Usb_read_byte();
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bytes_received++;
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}
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bytes_received+=bytecounter+1;
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//Ack final data packet
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Usb_ack_receive_out();
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//PRINTF_P(PSTR("cdc_ecm: Got packet %d bytes long\n"),bytes_received);
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#ifdef USB_ETH_HOOK_RX_END
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USB_ETH_HOOK_RX_END();
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#endif
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//Send data over RF or to local stack
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if(bytes_received<=USB_ETH_MTU) {
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USB_ETH_HOOK_HANDLE_INBOUND_PACKET(uip_buf,bytes_received);
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} else {
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USB_ETH_HOOK_RX_ERROR("Oversized packet");
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}
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}
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bail:
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return 1;
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}
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uint8_t
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ecm_send(uint8_t * senddata, uint16_t sendlen, uint8_t led) {
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U8 byte_in_packet = 0;
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//Send Data
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Usb_select_endpoint(TX_EP);
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if(usb_endpoint_wait_for_write_enabled()!=0) {
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USB_ETH_HOOK_TX_ERROR("Timeout: write enabled");
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return 0;
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}
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#ifdef USB_ETH_HOOK_TX_START
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USB_ETH_HOOK_TX_START();
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#endif
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//Send packet
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while(sendlen) {
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Usb_write_byte(*senddata);
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senddata++;
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sendlen--;
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byte_in_packet++;
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//If endpoint is full, send data in
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//And then wait for data to transfer
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if (!Is_usb_write_enabled()) {
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Usb_ack_in_ready();
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if(usb_endpoint_wait_for_write_enabled()!=0) {
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USB_ETH_HOOK_TX_ERROR("Timeout: write enabled");
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return 0;
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}
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byte_in_packet=0;
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}
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}
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//Send last data in - also handles sending a ZLP if needed
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Usb_ack_in_ready();
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#ifdef USB_ETH_HOOK_TX_END
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USB_ETH_HOOK_TX_END();
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#endif
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//Wait for ready
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if(usb_endpoint_wait_for_IN_ready()!=0) {
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USB_ETH_HOOK_TX_ERROR("Timeout: IN ready");
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return 0;
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}
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return 1;
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}
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