Staging: vt6656: use ETH_HLEN macro instead of custom one
Replace custom header length definition U_HEADER_LEN by ETH_HLEN from <linux/if_ether.h>. Also remove unused U_TYPE_LEN. Signed-off-by: Charles Clément <caratorn@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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Родитель
7ec52ed250
Коммит
21ec51f3df
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@ -1483,7 +1483,7 @@ s_bPacketToWirelessUsb(
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cb802_1_H_len = 0;
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cb802_1_H_len = 0;
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}
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}
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cbFrameBodySize = uSkbPacketLen - U_HEADER_LEN + cb802_1_H_len;
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cbFrameBodySize = uSkbPacketLen - ETH_HLEN + cb802_1_H_len;
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//Set packet type
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//Set packet type
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pTxBufHead->wFIFOCtl |= (WORD)(byPktType<<8);
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pTxBufHead->wFIFOCtl |= (WORD)(byPktType<<8);
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@ -1729,13 +1729,13 @@ s_bPacketToWirelessUsb(
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if (pPacket != NULL) {
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if (pPacket != NULL) {
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// Copy the Packet into a tx Buffer
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// Copy the Packet into a tx Buffer
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memcpy((pbyPayloadHead + cb802_1_H_len),
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memcpy((pbyPayloadHead + cb802_1_H_len),
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(pPacket + U_HEADER_LEN),
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(pPacket + ETH_HLEN),
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uSkbPacketLen - U_HEADER_LEN
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uSkbPacketLen - ETH_HLEN
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);
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);
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} else {
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} else {
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// while bRelayPacketSend psEthHeader is point to header+payload
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// while bRelayPacketSend psEthHeader is point to header+payload
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memcpy((pbyPayloadHead + cb802_1_H_len), ((PBYTE)psEthHeader)+U_HEADER_LEN, uSkbPacketLen - U_HEADER_LEN);
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memcpy((pbyPayloadHead + cb802_1_H_len), ((PBYTE)psEthHeader) + ETH_HLEN, uSkbPacketLen - ETH_HLEN);
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}
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}
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ASSERT(uLength == cbNdisBodySize);
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ASSERT(uLength == cbNdisBodySize);
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@ -2849,7 +2849,7 @@ nsDMA_tx_packet(
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return STATUS_RESOURCES;
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return STATUS_RESOURCES;
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}
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}
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memcpy(pDevice->sTxEthHeader.abyDstAddr, (PBYTE)(skb->data), U_HEADER_LEN);
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memcpy(pDevice->sTxEthHeader.abyDstAddr, (PBYTE)(skb->data), ETH_HLEN);
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//mike add:station mode check eapol-key challenge--->
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//mike add:station mode check eapol-key challenge--->
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{
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{
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@ -2858,10 +2858,10 @@ nsDMA_tx_packet(
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BYTE Descriptor_type;
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BYTE Descriptor_type;
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WORD Key_info;
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WORD Key_info;
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Protocol_Version = skb->data[U_HEADER_LEN];
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Protocol_Version = skb->data[ETH_HLEN];
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Packet_Type = skb->data[U_HEADER_LEN+1];
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Packet_Type = skb->data[ETH_HLEN+1];
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Descriptor_type = skb->data[U_HEADER_LEN+1+1+2];
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Descriptor_type = skb->data[ETH_HLEN+1+1+2];
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Key_info = (skb->data[U_HEADER_LEN+1+1+2+1] << 8)|(skb->data[U_HEADER_LEN+1+1+2+2]);
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Key_info = (skb->data[ETH_HLEN+1+1+2+1] << 8)|(skb->data[ETH_HLEN+1+1+2+2]);
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if (pDevice->sTxEthHeader.wType == TYPE_PKT_802_1x) {
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if (pDevice->sTxEthHeader.wType == TYPE_PKT_802_1x) {
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if(((Protocol_Version==1) ||(Protocol_Version==2)) &&
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if(((Protocol_Version==1) ||(Protocol_Version==2)) &&
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(Packet_Type==3)) { //802.1x OR eapol-key challenge frame transfer
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(Packet_Type==3)) { //802.1x OR eapol-key challenge frame transfer
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@ -3195,7 +3195,7 @@ bRelayPacketSend (
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return FALSE;
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return FALSE;
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}
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}
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memcpy(pDevice->sTxEthHeader.abyDstAddr, (PBYTE)pbySkbData, U_HEADER_LEN);
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memcpy(pDevice->sTxEthHeader.abyDstAddr, (PBYTE)pbySkbData, ETH_HLEN);
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if (pDevice->bEncryptionEnable == TRUE) {
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if (pDevice->bEncryptionEnable == TRUE) {
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bNeedEncryption = TRUE;
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bNeedEncryption = TRUE;
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@ -36,19 +36,17 @@
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//
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//
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// constants
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// constants
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//
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//
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#define U_TYPE_LEN 2 //
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#define U_CRC_LEN 4 //
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#define U_CRC_LEN 4 //
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#define U_HEADER_LEN (ETH_ALEN * 2 + U_TYPE_LEN)
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#define U_ETHER_ADDR_STR_LEN (ETH_ALEN * 2 + 1)
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#define U_ETHER_ADDR_STR_LEN (ETH_ALEN * 2 + 1)
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// Ethernet address string length
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// Ethernet address string length
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#define MIN_DATA_LEN 46 // min data length
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#define MIN_DATA_LEN 46 // min data length
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#define MAX_DATA_LEN 1500 // max data length
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#define MAX_DATA_LEN 1500 // max data length
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#define MIN_PACKET_LEN (MIN_DATA_LEN + U_HEADER_LEN)
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#define MIN_PACKET_LEN (MIN_DATA_LEN + ETH_HLEN)
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// 60
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// 60
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// min total packet length (tx)
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// min total packet length (tx)
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#define MAX_PACKET_LEN (MAX_DATA_LEN + U_HEADER_LEN)
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#define MAX_PACKET_LEN (MAX_DATA_LEN + ETH_HLEN)
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// 1514
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// 1514
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// max total packet length (tx)
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// max total packet length (tx)
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