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[/] [minsoc/] [trunk/] [sw/] [drivers/] [eth.c] - Rev 94
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#include <board.h> #include <support.h> #include "eth.h" int eth_tx_done; int eth_rx_done; int eth_rx_len; unsigned char eth_tx_packet[1536]; //max length unsigned char eth_rx_packet[1536]; unsigned char * eth_tx_data; unsigned char * eth_rx_data; void eth_recv_ack(void) { eth_rx_done = 0; eth_rx_len = 0; //accept further data (reset RXBD to empty) REG32(ETH_BASE + ETH_RXBD0L) = RX_READY; //len = 0 | IRQ & WR = 1 | EMPTY = 1 } void eth_init() { //TXEN & RXEN = 1; PAD & CRC = 1; FULLD = 1 REG32(ETH_BASE + ETH_MODER) = ETH_TXEN | ETH_RXEN | ETH_PAD | ETH_CRCEN | ETH_FULLD; //PHY Address = 0x001 REG32(ETH_BASE + ETH_MIIADDRESS) = 0x00000001; //enable all interrupts REG32(ETH_BASE + ETH_INT_MASK) = ETH_RXB | ETH_TXB; //set MAC ADDRESS REG32(ETH_BASE + ETH_MAC_ADDR1) = (OWN_MAC_ADDRESS_5 << 8) | OWN_MAC_ADDRESS_4; //low word = mac address high word REG32(ETH_BASE + ETH_MAC_ADDR0) = (OWN_MAC_ADDRESS_3 << 24) | (OWN_MAC_ADDRESS_2 << 16) | (OWN_MAC_ADDRESS_1 << 8) | OWN_MAC_ADDRESS_0; //mac address rest //configure TXBD0 REG32(ETH_BASE + ETH_TXBD0H) = (unsigned long)eth_tx_packet; //address used for tx_data REG32(ETH_BASE + ETH_TXBD0L) = TX_READY; //length = 0 | PAD & CRC = 1 | IRQ & WR = 1 //configure RXBD0 REG32(ETH_BASE + ETH_RXBD0H) = (unsigned long)eth_rx_packet; //address used for tx_data REG32(ETH_BASE + ETH_RXBD0L) = RX_READY; //len = 0 | IRQ & WR = 1 | EMPTY = 1 //set txdata eth_tx_packet[0] = BROADCAST_ADDRESS_5; eth_tx_packet[1] = BROADCAST_ADDRESS_4; eth_tx_packet[2] = BROADCAST_ADDRESS_3; eth_tx_packet[3] = BROADCAST_ADDRESS_2; eth_tx_packet[4] = BROADCAST_ADDRESS_1; eth_tx_packet[5] = BROADCAST_ADDRESS_0; eth_tx_packet[6] = OWN_MAC_ADDRESS_5; eth_tx_packet[7] = OWN_MAC_ADDRESS_4; eth_tx_packet[8] = OWN_MAC_ADDRESS_3; eth_tx_packet[9] = OWN_MAC_ADDRESS_2; eth_tx_packet[10] = OWN_MAC_ADDRESS_1; eth_tx_packet[11] = OWN_MAC_ADDRESS_0; //erase interrupts REG32(ETH_BASE + ETH_INT_SOURCE) = ETH_RXC | ETH_TXC | ETH_BUSY | ETH_RXE | ETH_RXB | ETH_TXE | ETH_TXB; eth_tx_done = 1; eth_rx_done = 0; eth_rx_len = 0; eth_tx_data = ð_tx_packet[HDR_LEN]; eth_rx_data = ð_rx_packet[HDR_LEN]; } int eth_send(int length) { if (!eth_tx_done) //if previous command not fully processed, bail out return -1; eth_tx_done = 0; eth_tx_packet[12] = length >> 8; eth_tx_packet[13] = length; REG32(ETH_BASE + ETH_TXBD0L) = (( 0x0000FFFF & ( length + HDR_LEN ) ) << 16) | BD_SND; return length; } void eth_interrupt() { unsigned long source = REG32(ETH_BASE + ETH_INT_SOURCE); if ( source & ETH_TXB ) { eth_tx_done = 1; //erase interrupt REG32(ETH_BASE + ETH_INT_SOURCE) |= ETH_TXB; } if ( source & ETH_RXB ) { eth_rx_done = 1; eth_rx_len = (REG32(ETH_BASE + ETH_RXBD0L) >> 16) - HDR_LEN - CRC_LEN; //erase interrupt REG32(ETH_BASE + ETH_INT_SOURCE) |= ETH_RXB; } }
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