1cda50d9f2
class's prefix, NE2K. The real issue is that the ne2k class exists at configuration time, so it is possible to tell it how to respond to panics, errors, etc. The packet mover is created after configuration depending on the setting of bx_options.ne2k.Oethmod, so I cannot (with major hacks) affect its settings from the configuration interface. Several packet movers were already set up this way anyway.
380 lines
12 KiB
C++
380 lines
12 KiB
C++
/////////////////////////////////////////////////////////////////////////
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// $Id: eth_fbsd.cc,v 1.20 2002-09-02 16:56:24 bdenney Exp $
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/////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2001 MandrakeSoft S.A.
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//
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// MandrakeSoft S.A.
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// 43, rue d'Aboukir
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// 75002 Paris - France
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// http://www.linux-mandrake.com/
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// http://www.mandrakesoft.com/
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2 of the License, or (at your option) any later version.
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//
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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// Peter Grehan (grehan@iprg.nokia.com) coded all of this
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// NE2000/ether stuff.
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// eth_fbsd.cc - A FreeBSD packet filter implementation of
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// an ethernet pktmover. There are some problems and limitations
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// with FreeBSD:
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// - the source address of the frame is overwritten by
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// the hosts's source address. This causes problems with
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// learning bridges - since they cannot determine where
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// BOCHS 'is', they broadcast the frame to all ports.
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// - packets cannot be sent from BOCHS to the host
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// - TCP performance seems to be abysmal; I think this is
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// a timing problem somewhere.
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// - I haven't handled the case where multiple frames arrive
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// in a single BPF read.
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//
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// The /dev/bpf* devices need to be set up with the appropriate
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// permissions for this to work.
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//
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// The config line in .bochsrc should look something like:
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//
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// ne2k: ioaddr=0x280, irq=9, mac=00:a:b:c:1:2, ethmod=fbsd, ethdev=fxp0
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//
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#include "bochs.h"
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#ifdef ETH_FBSD
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#define LOG_THIS bx_ne2k.
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extern "C" {
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#include <fcntl.h>
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#include <sys/ioctl.h>
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#include <sys/socket.h>
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#include <net/if.h>
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#include <net/bpf.h>
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#include <errno.h>
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};
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#define BX_BPF_POLL 1000 // Poll for a frame every 250 usecs
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#define BX_BPF_BUFSIZ 2048 // enough for an ether frame + bpf hdr
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#define BX_BPF_INSNSIZ 8 // number of bpf insns
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// template filter for a unicast mac address and all
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// multicast/broadcast frames
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static const struct bpf_insn macfilter[] = {
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BPF_STMT(BPF_LD|BPF_W|BPF_ABS, 2), // A <- P[2:4]
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BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, 0xaaaaaaaa, 0, 2), // if A != 0xaaaaaaa GOTO LABEL-1
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BPF_STMT(BPF_LD|BPF_H|BPF_ABS, 0), // A <- P[0:2]
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BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, 0x0000aaaa, 2, 0), // if A == 0xaaaa GOTO ACCEPT
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// LABEL-1
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BPF_STMT(BPF_LD|BPF_B|BPF_ABS, 0), // A <- P[0:1]
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BPF_JUMP(BPF_JMP|BPF_JSET|BPF_K, 0x01, 0, 1), // if !(A & 1) GOTO LABEL-REJECT
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// LABEL-ACCEPT
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BPF_STMT(BPF_RET, 1514), // Accept packet
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// LABEL-REJECT
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BPF_STMT(BPF_RET, 0), // Reject packet
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};
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// template filter for all frames
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static const struct bpf_insn promiscfilter[] = {
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BPF_STMT(BPF_RET, 1514)
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};
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//
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// Define the class. This is private to this module
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//
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class bx_fbsd_pktmover_c : public eth_pktmover_c {
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public:
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bx_fbsd_pktmover_c(const char *netif,
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const char *macaddr,
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eth_rx_handler_t rxh,
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void *rxarg);
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void sendpkt(void *buf, unsigned io_len);
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private:
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char *fbsd_macaddr[6];
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int bpf_fd;
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static void rx_timer_handler(void *);
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void rx_timer(void);
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int rx_timer_index;
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struct bpf_insn filter[BX_BPF_INSNSIZ];
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FILE *ne2klog, *ne2klog_txt;
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};
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//
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// Define the static class that registers the derived pktmover class,
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// and allocates one on request.
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//
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class bx_fbsd_locator_c : public eth_locator_c {
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public:
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bx_fbsd_locator_c(void) : eth_locator_c("fbsd") {}
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protected:
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eth_pktmover_c *allocate(const char *netif,
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const char *macaddr,
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eth_rx_handler_t rxh,
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void *rxarg) {
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return (new bx_fbsd_pktmover_c(netif, macaddr, rxh, rxarg));
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}
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} bx_fbsd_match;
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//
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// Define the methods for the bx_fbsd_pktmover derived class
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//
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// the constructor
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//
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// Open a bpf file descriptor, and attempt to bind to
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// the specified netif (Replicates libpcap open code)
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//
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bx_fbsd_pktmover_c::bx_fbsd_pktmover_c(const char *netif,
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const char *macaddr,
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eth_rx_handler_t rxh,
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void *rxarg)
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{
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char device[sizeof "/dev/bpf000"];
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int tmpfd;
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int n = 0;
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struct ifreq ifr;
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struct bpf_version bv;
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struct bpf_program bp;
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u_int v;
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put("BPF");
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memcpy(fbsd_macaddr, macaddr, 6);
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do {
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(void)sprintf(device, "/dev/bpf%d", n++);
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this->bpf_fd = open(device, O_RDWR);
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BX_DEBUG(("tried %s, returned %d (%s)",device,this->bpf_fd,strerror(errno)));
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if(errno == EACCES)
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break;
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} while (this->bpf_fd == -1);
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if (this->bpf_fd == -1) {
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BX_PANIC(("eth_freebsd: could not open packet filter: %s", strerror(errno)));
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return;
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}
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if (ioctl(this->bpf_fd, BIOCVERSION, (caddr_t)&bv) < 0) {
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BX_PANIC(("eth_freebsd: could not retrieve bpf version"));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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if (bv.bv_major != BPF_MAJOR_VERSION || bv.bv_minor < BPF_MINOR_VERSION) {
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BX_PANIC(("eth_freebsd: bpf version mismatch between compilation and runtime"));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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// Set buffer size
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v = BX_BPF_BUFSIZ;
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if (ioctl(this->bpf_fd, BIOCSBLEN, (caddr_t)&v) < 0) {
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BX_PANIC(("eth_freebsd: could not set buffer size: %s", strerror(errno)));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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(void)strncpy(ifr.ifr_name, netif, sizeof(ifr.ifr_name));
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if (ioctl(this->bpf_fd, BIOCSETIF, (caddr_t)&ifr) < 0) {
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BX_PANIC(("eth_freebsd: could not enable interface '%s': %s", netif, strerror(errno)));
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close(this->bpf_fd);
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this->bpf_fd == -1;
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}
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// Verify that the device is an ethernet.
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if (ioctl(this->bpf_fd, BIOCGDLT, (caddr_t)&v) < 0) {
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BX_PANIC(("eth_freebsd: could not retrieve datalink type: %s", strerror(errno)));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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if (v != DLT_EN10MB) {
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BX_PANIC(("eth_freebsd: incorrect datalink type %d, expected 10mb ethernet", v));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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// Put the device into promisc mode. This could be optimised
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// to filter on a MAC address, broadcast, and all-multi,
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// but this will do for now.
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//
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if (ioctl(this->bpf_fd, BIOCPROMISC, NULL) < 0) {
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BX_PANIC(("eth_freebsd: could not enable promisc mode: %s", strerror(errno)));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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// Set up non-blocking i/o
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v = 1;
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if (ioctl(this->bpf_fd, FIONBIO, &v) < 0) {
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BX_PANIC(("eth_freebsd: could not enable non-blocking i/o: %s", strerror(errno)));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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// Install a filter
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#ifdef notdef
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memcpy(&this->filter, promiscfilter, sizeof(promiscfilter));
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bp.bf_len = 1;
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#else
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memcpy(&this->filter, macfilter, sizeof(macfilter));
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this->filter[1].k =
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(macaddr[2] & 0xff) << 24 |
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(macaddr[3] & 0xff) << 16 |
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(macaddr[4] & 0xff) << 8 |
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(macaddr[5] & 0xff);
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this->filter[3].k =
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(macaddr[0] & 0xff) << 8 |
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(macaddr[1] & 0xff);
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bp.bf_len = 8;
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#endif
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bp.bf_insns = &this->filter[0];
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if (ioctl(this->bpf_fd, BIOCSETF, &bp) < 0) {
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BX_PANIC(("eth_freebsd: could not set filter: %s", strerror(errno)));
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close(this->bpf_fd);
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this->bpf_fd = -1;
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return;
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}
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// Start the rx poll
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this->rx_timer_index =
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bx_pc_system.register_timer(this, this->rx_timer_handler, BX_BPF_POLL,
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1, 1); // continuous, active
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this->rxh = rxh;
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this->rxarg = rxarg;
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#if BX_ETH_FBSD_LOGGING
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// eventually Bryce wants ne2klog to dump in pcap format so that
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// tcpdump -r FILE can read it and interpret packets.
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ne2klog = fopen ("ne2k.raw", "wb");
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if (!ne2klog) BX_PANIC (("open ne2k-tx.log failed"));
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ne2klog_txt = fopen ("ne2k.txt", "wb");
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if (!ne2klog_txt) BX_PANIC (("open ne2k-txdump.txt failed"));
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fprintf (ne2klog_txt, "null packetmover readable log file\n");
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fprintf (ne2klog_txt, "net IF = %s\n", netif);
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fprintf (ne2klog_txt, "MAC address = ");
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for (int i=0; i<6; i++)
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fprintf (ne2klog_txt, "%02x%s", 0xff & macaddr[i], i<5?":" : "");
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fprintf (ne2klog_txt, "\n--\n");
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fflush (ne2klog_txt);
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#endif
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}
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// the output routine - called with pre-formatted ethernet frame.
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void
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bx_fbsd_pktmover_c::sendpkt(void *buf, unsigned io_len)
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{
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#if BX_ETH_FBSD_LOGGING
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BX_DEBUG (("sendpkt length %u", io_len));
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// dump raw bytes to a file, eventually dump in pcap format so that
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// tcpdump -r FILE can interpret them for us.
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int n = fwrite (buf, io_len, 1, ne2klog);
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if (n != 1) BX_ERROR (("fwrite to ne2klog failed", io_len));
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// dump packet in hex into an ascii log file
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fprintf (ne2klog_txt, "NE2K TX packet, length %u\n", io_len);
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Bit8u *charbuf = (Bit8u *)buf;
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for (n=0; n<io_len; n++) {
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if (((n % 16) == 0) && n>0)
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fprintf (ne2klog_txt, "\n");
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fprintf (ne2klog_txt, "%02x ", charbuf[n]);
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}
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fprintf (ne2klog_txt, "\n--\n");
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// flush log so that we see the packets as they arrive w/o buffering
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fflush (ne2klog);
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fflush (ne2klog_txt);
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#endif
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int status;
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if (this->bpf_fd != -1)
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status = write(this->bpf_fd, buf, io_len);
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}
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// The receive poll process
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void
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bx_fbsd_pktmover_c::rx_timer_handler(void *this_ptr)
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{
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bx_fbsd_pktmover_c *class_ptr = (bx_fbsd_pktmover_c *) this_ptr;
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class_ptr->rx_timer();
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}
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void
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bx_fbsd_pktmover_c::rx_timer(void)
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{
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int nbytes = 0;
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unsigned char rxbuf[BX_BPF_BUFSIZ];
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struct bpf_hdr *bhdr;
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struct bpf_stat bstat;
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static struct bpf_stat previous_bstat;
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int counter = 10;
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#define phdr ((unsigned char*)bhdr)
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bhdr = (struct bpf_hdr *) rxbuf;
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nbytes = read(this->bpf_fd, rxbuf, sizeof(rxbuf));
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while (phdr < (rxbuf + nbytes)) {
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if (ioctl(this->bpf_fd, BIOCGSTATS, &bstat) < 0) {
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BX_PANIC(("eth_freebsd: could not stat filter: %s", strerror(errno)));
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}
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if (bstat.bs_drop > previous_bstat.bs_drop) {
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BX_INFO (("eth_freebsd: %d packets dropped by the kernel.",
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bstat.bs_drop - previous_bstat.bs_drop));
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}
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previous_bstat = bstat;
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if (bhdr->bh_caplen < 20 || bhdr->bh_caplen > 1514) {
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BX_ERROR(("eth_freebsd: received too weird packet length: %d", bhdr->bh_caplen));
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}
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// filter out packets sourced from this node
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if (memcmp(bhdr + bhdr->bh_hdrlen + 6, this->fbsd_macaddr, 6)) {
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(*rxh)(rxarg, phdr + bhdr->bh_hdrlen, bhdr->bh_caplen);
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}
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#if BX_ETH_FBSD_LOGGING
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/// hey wait there is no receive data with a NULL ethernet, is there....
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BX_DEBUG (("receive packet length %u", nbytes));
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// dump raw bytes to a file, eventually dump in pcap format so that
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// tcpdump -r FILE can interpret them for us.
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if (1 != fwrite (bhdr, bhdr->bh_caplen, 1, ne2klog)) {
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BX_PANIC (("fwrite to ne2klog failed: %s", strerror(errno)));
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}
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// dump packet in hex into an ascii log file
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fprintf (this->ne2klog_txt, "NE2K RX packet, length %u\n", bhdr->bh_caplen);
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Bit8u *charrxbuf = (Bit8u *)rxbuf;
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int n;
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for (n=0; n<bhdr->bh_caplen; n++) {
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if (((n % 16) == 0) && n>0)
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fprintf (this->ne2klog_txt, "\n");
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fprintf (this->ne2klog_txt, "%02x ", phdr[n]);
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}
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fprintf (this->ne2klog_txt, "\n--\n");
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// flush log so that we see the packets as they arrive w/o buffering
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fflush (this->ne2klog);
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fflush (this->ne2klog_txt);
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#endif
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// Advance bhdr and phdr pointers to next packet
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bhdr = (struct bpf_hdr*) ((char*) bhdr + BPF_WORDALIGN(bhdr->bh_hdrlen + bhdr->bh_caplen));
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}
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}
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#endif
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