485 lines
11 KiB
C
485 lines
11 KiB
C
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/*
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* $RCSId: xc/programs/Xserver/hw/kdrive/linux/linux.c,v 1.6 2001/07/24 21:26:17 keithp Exp $
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*
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* Copyright <EFBFBD> 1999 Keith Packard
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*
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* Permission to use, copy, modify, distribute, and sell this software and its
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* documentation for any purpose is hereby granted without fee, provided that
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* the above copyright notice appear in all copies and that both that
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* copyright notice and this permission notice appear in supporting
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* documentation, and that the name of Keith Packard not be used in
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* advertising or publicity pertaining to distribution of the software without
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* specific, written prior permission. Keith Packard makes no
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* representations about the suitability of this software for any purpose. It
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* is provided "as is" without express or implied warranty.
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*
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* KEITH PACKARD DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
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* INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO
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* EVENT SHALL KEITH PACKARD BE LIABLE FOR ANY SPECIAL, INDIRECT OR
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* CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE,
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* DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
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* TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
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* PERFORMANCE OF THIS SOFTWARE.
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*/
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#ifdef HAVE_CONFIG_H
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#include <kdrive-config.h>
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#endif
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#include "kdrive.h"
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#include "klinux.h"
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#include <errno.h>
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#include <signal.h>
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#include <linux/vt.h>
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#include <linux/kd.h>
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#include <sys/stat.h>
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#include <sys/ioctl.h>
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#include <X11/keysym.h>
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#include <linux/apm_bios.h>
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static int vtno;
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int LinuxConsoleFd;
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int LinuxApmFd = -1;
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static int activeVT;
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static Bool enabled;
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static void
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LinuxVTRequest (int sig)
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{
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kdSwitchPending = TRUE;
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}
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/* Check before chowning -- this avoids touching the file system */
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static void
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LinuxCheckChown (char *file)
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{
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struct stat st;
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__uid_t u;
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__gid_t g;
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if (stat (file, &st) < 0)
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return;
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u = getuid ();
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g = getgid ();
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if (st.st_uid != u || st.st_gid != g)
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chown (file, u, g);
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}
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static int
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LinuxInit (void)
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{
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int fd = -1;
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char vtname[11];
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struct vt_stat vts;
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LinuxConsoleFd = -1;
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/* check if we're run with euid==0 */
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if (geteuid() != 0)
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{
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FatalError("LinuxInit: Server must be suid root\n");
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}
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if (kdVirtualTerminal >= 0)
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vtno = kdVirtualTerminal;
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else
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{
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if ((fd = open("/dev/tty0",O_WRONLY,0)) < 0)
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{
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FatalError(
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"LinuxInit: Cannot open /dev/tty0 (%s)\n",
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strerror(errno));
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}
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if ((ioctl(fd, VT_OPENQRY, &vtno) < 0) ||
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(vtno == -1))
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{
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FatalError("xf86OpenConsole: Cannot find a free VT\n");
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}
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}
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close(fd);
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sprintf(vtname,"/dev/tty%d",vtno); /* /dev/tty1-64 */
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if ((LinuxConsoleFd = open(vtname, O_RDWR|O_NDELAY, 0)) < 0)
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{
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FatalError("LinuxInit: Cannot open %s (%s)\n",
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vtname, strerror(errno));
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}
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/* change ownership of the vt */
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LinuxCheckChown (vtname);
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/*
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* the current VT device we're running on is not "console", we want
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* to grab all consoles too
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*
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* Why is this needed?
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*/
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LinuxCheckChown ("/dev/tty0");
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/*
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* Linux doesn't switch to an active vt after the last close of a vt,
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* so we do this ourselves by remembering which is active now.
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*/
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memset (&vts, '\0', sizeof (vts)); /* valgrind */
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if (ioctl(LinuxConsoleFd, VT_GETSTATE, &vts) == 0)
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{
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activeVT = vts.v_active;
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}
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return 1;
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}
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Bool
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LinuxFindPci (CARD16 vendor, CARD16 device, CARD32 count, KdCardAttr *attr)
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{
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FILE *f;
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char line[2048], *l, *end;
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CARD32 bus, id, addr;
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int n;
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CARD32 ven_dev;
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Bool ret = FALSE;
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int i;
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attr->vendorID = vendor;
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attr->deviceID = device;
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ven_dev = (((CARD32) vendor) << 16) | ((CARD32) device);
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f = fopen ("/proc/bus/pci/devices", "r");
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if (!f)
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return FALSE;
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attr->io = 0;
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while (fgets (line, sizeof (line)-1, f))
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{
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line[sizeof(line)-1] = '\0';
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l = line;
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bus = strtoul (l, &end, 16);
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if (end == l)
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continue;
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l = end;
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id = strtoul (l, &end, 16);
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if (end == l)
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continue;
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l = end;
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if (id != ven_dev)
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continue;
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if (count--)
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continue;
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(void) strtoul (l, &end, 16); /* IRQ */
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if (end == l)
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continue;
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l = end;
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n = 0;
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for (i = 0; i < 6; i++)
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{
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addr = strtoul (l, &end, 16);
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if (end == l)
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break;
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if (addr & 1)
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attr->io = addr & ~0xf;
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else
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{
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if (n == KD_MAX_CARD_ADDRESS)
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break;
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attr->address[n++] = addr & ~0xf;
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}
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l = end;
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}
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while (n > 0)
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{
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if (attr->address[n-1] != 0)
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break;
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n--;
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}
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attr->naddr = n;
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attr->domain = 0; /* XXX */
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attr->bus = (bus >> 8) & 0xff;
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attr->slot = (bus >> 3) & 0x1f;
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attr->func = bus & 0x07;
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ret = TRUE;
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break;
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}
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fclose (f);
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return ret;
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}
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unsigned char *
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LinuxGetPciCfg(KdCardAttr *attr)
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{
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char filename[256];
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FILE *f;
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unsigned char *cfg;
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int r;
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snprintf(filename, 255, "/proc/bus/pci/%02x/%02x.%x",
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attr->bus >> 8, (attr->bus & 0xff) >> 3, attr->bus & 7);
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/* fprintf(stderr,"Find card on path %s\n",filename); */
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if (!(f=fopen(filename,"r")))
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return NULL;
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if (!(cfg=xalloc(256)))
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{
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fclose(f);
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return NULL;
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}
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if (256 != (r=fread(cfg, 1, 256, f)))
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{
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fprintf(stderr,"LinuxGetPciCfg: read %d, expected 256\n",r);
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free(cfg);
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cfg=NULL;
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}
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fclose(f);
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/* fprintf(stderr,"LinuxGetPciCfg: success, returning %p\n",cfg); */
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return cfg;
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}
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static void
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LinuxSetSwitchMode (int mode)
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{
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struct sigaction act;
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struct vt_mode VT;
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if (ioctl(LinuxConsoleFd, VT_GETMODE, &VT) < 0)
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{
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FatalError ("LinuxInit: VT_GETMODE failed\n");
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}
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if (mode == VT_PROCESS)
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{
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act.sa_handler = LinuxVTRequest;
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sigemptyset (&act.sa_mask);
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act.sa_flags = 0;
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sigaction (SIGUSR1, &act, 0);
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VT.mode = mode;
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VT.relsig = SIGUSR1;
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VT.acqsig = SIGUSR1;
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}
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else
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{
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act.sa_handler = SIG_IGN;
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sigemptyset (&act.sa_mask);
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act.sa_flags = 0;
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sigaction (SIGUSR1, &act, 0);
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VT.mode = mode;
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VT.relsig = 0;
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VT.acqsig = 0;
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}
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if (ioctl(LinuxConsoleFd, VT_SETMODE, &VT) < 0)
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{
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FatalError("LinuxInit: VT_SETMODE failed\n");
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}
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}
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static void
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LinuxApmBlock (pointer blockData, OSTimePtr pTimeout, pointer pReadmask)
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{
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}
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static Bool LinuxApmRunning;
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static void
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LinuxApmWakeup (pointer blockData, int result, pointer pReadmask)
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{
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fd_set *readmask = (fd_set *) pReadmask;
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if (result > 0 && LinuxApmFd >= 0 && FD_ISSET (LinuxApmFd, readmask))
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{
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apm_event_t event;
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Bool running = LinuxApmRunning;
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int cmd = APM_IOC_SUSPEND;
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while (read (LinuxApmFd, &event, sizeof (event)) == sizeof (event))
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{
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switch (event) {
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case APM_SYS_STANDBY:
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case APM_USER_STANDBY:
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running = FALSE;
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cmd = APM_IOC_STANDBY;
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break;
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case APM_SYS_SUSPEND:
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case APM_USER_SUSPEND:
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case APM_CRITICAL_SUSPEND:
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running = FALSE;
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cmd = APM_IOC_SUSPEND;
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break;
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case APM_NORMAL_RESUME:
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case APM_CRITICAL_RESUME:
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case APM_STANDBY_RESUME:
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running = TRUE;
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break;
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}
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}
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if (running && !LinuxApmRunning)
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{
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KdResume ();
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LinuxApmRunning = TRUE;
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}
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else if (!running && LinuxApmRunning)
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{
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KdSuspend ();
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LinuxApmRunning = FALSE;
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ioctl (LinuxApmFd, cmd, 0);
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}
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}
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}
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#ifdef FNONBLOCK
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#define NOBLOCK FNONBLOCK
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#else
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#define NOBLOCK FNDELAY
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#endif
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static void
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LinuxEnable (void)
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{
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if (enabled)
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return;
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if (kdSwitchPending)
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{
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kdSwitchPending = FALSE;
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ioctl (LinuxConsoleFd, VT_RELDISP, VT_ACKACQ);
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}
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/*
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* Open the APM driver
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*/
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LinuxApmFd = open ("/dev/apm_bios", 2);
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if (LinuxApmFd < 0 && errno == ENOENT)
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LinuxApmFd = open ("/dev/misc/apm_bios", 2);
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if (LinuxApmFd >= 0)
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{
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LinuxApmRunning = TRUE;
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fcntl (LinuxApmFd, F_SETFL, fcntl (LinuxApmFd, F_GETFL) | NOBLOCK);
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RegisterBlockAndWakeupHandlers (LinuxApmBlock, LinuxApmWakeup, 0);
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AddEnabledDevice (LinuxApmFd);
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}
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/*
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* now get the VT
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*/
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LinuxSetSwitchMode (VT_AUTO);
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if (ioctl(LinuxConsoleFd, VT_ACTIVATE, vtno) != 0)
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{
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FatalError("LinuxInit: VT_ACTIVATE failed\n");
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}
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if (ioctl(LinuxConsoleFd, VT_WAITACTIVE, vtno) != 0)
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{
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FatalError("LinuxInit: VT_WAITACTIVE failed\n");
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}
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LinuxSetSwitchMode (VT_PROCESS);
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if (ioctl(LinuxConsoleFd, KDSETMODE, KD_GRAPHICS) < 0)
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{
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FatalError("LinuxInit: KDSETMODE KD_GRAPHICS failed\n");
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}
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enabled = TRUE;
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}
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static Bool
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LinuxSpecialKey (KeySym sym)
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{
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struct vt_stat vts;
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int con;
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if (XK_F1 <= sym && sym <= XK_F12)
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{
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con = sym - XK_F1 + 1;
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memset (&vts, '\0', sizeof (vts)); /* valgrind */
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ioctl (LinuxConsoleFd, VT_GETSTATE, &vts);
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if (con != vts.v_active && (vts.v_state & (1 << con)))
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{
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ioctl (LinuxConsoleFd, VT_ACTIVATE, con);
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return TRUE;
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}
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}
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return FALSE;
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}
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static void
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LinuxDisable (void)
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{
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ioctl(LinuxConsoleFd, KDSETMODE, KD_TEXT); /* Back to text mode ... */
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if (kdSwitchPending)
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{
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kdSwitchPending = FALSE;
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ioctl (LinuxConsoleFd, VT_RELDISP, 1);
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}
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enabled = FALSE;
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if (LinuxApmFd >= 0)
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{
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RemoveBlockAndWakeupHandlers (LinuxApmBlock, LinuxApmWakeup, 0);
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RemoveEnabledDevice (LinuxApmFd);
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close (LinuxApmFd);
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LinuxApmFd = -1;
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}
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}
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static void
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LinuxFini (void)
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{
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struct vt_mode VT;
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struct vt_stat vts;
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int fd;
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if (LinuxConsoleFd < 0)
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return;
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if (ioctl(LinuxConsoleFd, VT_GETMODE, &VT) != -1)
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{
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VT.mode = VT_AUTO;
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ioctl(LinuxConsoleFd, VT_SETMODE, &VT); /* set dflt vt handling */
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}
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memset (&vts, '\0', sizeof (vts)); /* valgrind */
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ioctl (LinuxConsoleFd, VT_GETSTATE, &vts);
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if (vtno == vts.v_active)
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{
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/*
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* Find a legal VT to switch to, either the one we started from
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|||
|
* or the lowest active one that isn't ours
|
|||
|
*/
|
|||
|
if (activeVT < 0 ||
|
|||
|
activeVT == vts.v_active ||
|
|||
|
!(vts.v_state & (1 << activeVT)))
|
|||
|
{
|
|||
|
for (activeVT = 1; activeVT < 16; activeVT++)
|
|||
|
if (activeVT != vtno && (vts.v_state & (1 << activeVT)))
|
|||
|
break;
|
|||
|
if (activeVT == 16)
|
|||
|
activeVT = -1;
|
|||
|
}
|
|||
|
/*
|
|||
|
* Perform a switch back to the active VT when we were started
|
|||
|
*/
|
|||
|
if (activeVT >= -1)
|
|||
|
{
|
|||
|
ioctl (LinuxConsoleFd, VT_ACTIVATE, activeVT);
|
|||
|
ioctl (LinuxConsoleFd, VT_WAITACTIVE, activeVT);
|
|||
|
activeVT = -1;
|
|||
|
}
|
|||
|
}
|
|||
|
close(LinuxConsoleFd); /* make the vt-manager happy */
|
|||
|
fd = open ("/dev/tty0", O_RDWR|O_NDELAY, 0);
|
|||
|
if (fd >= 0)
|
|||
|
{
|
|||
|
memset (&vts, '\0', sizeof (vts)); /* valgrind */
|
|||
|
ioctl (fd, VT_GETSTATE, &vts);
|
|||
|
if (ioctl (fd, VT_DISALLOCATE, vtno) < 0)
|
|||
|
fprintf (stderr, "Can't deallocate console %d errno %d\n", vtno, errno);
|
|||
|
close (fd);
|
|||
|
}
|
|||
|
return;
|
|||
|
}
|
|||
|
|
|||
|
KdOsFuncs LinuxFuncs = {
|
|||
|
LinuxInit,
|
|||
|
LinuxEnable,
|
|||
|
LinuxSpecialKey,
|
|||
|
LinuxDisable,
|
|||
|
LinuxFini,
|
|||
|
0
|
|||
|
};
|
|||
|
|
|||
|
void
|
|||
|
OsVendorInit (void)
|
|||
|
{
|
|||
|
KdOsInit (&LinuxFuncs);
|
|||
|
}
|