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298 lines
6.0 KiB
C
298 lines
6.0 KiB
C
/*
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* This code is derived from code available from the STB bulletin board
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*/
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/* $XFree86: mit/server/ddx/x386/common_hw/ICD2061Aalt.c,v 2.6 1994/04/15 05:10:30 dawes Exp $ */
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#ifndef KERNEL
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#include "compiler.h"
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#else
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#define GCCUSESGAS
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#define PCVT_STANDALONE 1
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#endif
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#define SEQREG 0x03C4
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#define MISCREG 0x03C2
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#define MISCREAD 0x03CC
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double fref = 14.31818 * 2.0;
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char ascclk[] = "VIDEO CLOCK ?";
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unsigned short clknum;
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unsigned short vlbus_flag;
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unsigned short card;
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unsigned short crtcaddr;
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unsigned short clockreg;
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static double range[15] = {50.0, 51.0, 53.2, 58.5, 60.7, 64.4, 66.8, 73.5,
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75.6, 80.9, 83.2, 91.5, 100.0, 120.0, 120.0};
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#ifdef __STDC__
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static double genratio(unsigned int *p, unsigned int *q, double tgt);
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static double f(unsigned int p, unsigned int q, double basefreq);
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#if 0
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static void prtbinary(unsigned int size, unsigned int val);
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#endif
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static void wait_vb();
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static void wrt_clk_bit(unsigned int value);
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static void init_clock(unsigned long setup, unsigned short crtcport);
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#else
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static double genratio();
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static double f();
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#if 0
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static void prtbinary();
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#endif
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static void wait_vb();
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static void wrt_clk_bit();
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static void init_clock();
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#endif
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void AltICD2061SetClock(frequency, select)
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register long frequency; /* in Hz */
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int select;
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{
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unsigned int m, mval, ival;
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int i;
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long dwv;
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double realval;
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double freq, fvco;
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double dev, devx;
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double delta, deltax;
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unsigned int p, q;
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unsigned int bestp, bestq;
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unsigned char tmp;
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crtcaddr=(inb(0x3CC) & 0x01) ? 0x3D4 : 0x3B4;
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outb(crtcaddr, 0x11); /* Unlock CRTC registers */
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tmp = inb(crtcaddr + 1);
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outb(crtcaddr + 1, tmp & ~0x80);
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outw(crtcaddr, 0x4838); /* Unlock S3 register set */
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outw(crtcaddr, 0xA039);
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clknum = select;
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freq = ((double)frequency)/1000000.0;
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if (freq > range[14])
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freq =range[14];
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else if (freq <= 6.99)
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freq = 7.0;
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/*
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* Calculate values to load into ICD 2061A clock chip to set frequency
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*/
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delta = 999.0;
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dev = 999.0;
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ival = 99;
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mval = 99;
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fvco = freq / 2;
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for (m = 0; m < 8; m++) {
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fvco *= 2.0;
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for (i = 14; i >= 0; i--)
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if (fvco >= range[i])
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break;
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if (i < 0)
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continue;
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if (i == 14)
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break;
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devx = (fvco - (range[i] + range[i+1])/2)/fvco;
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if (devx < 0)
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devx = -devx;
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deltax = genratio(&p, &q, fvco);
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if (delta < deltax)
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continue;
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if (deltax < delta || devx < dev) {
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bestp = p;
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bestq = q;
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delta = deltax;
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dev = devx;
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ival = i;
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mval = m;
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}
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}
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fvco = fref;
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for (m=0; m<mval; m++)
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fvco /= 2.0;
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realval = f(bestp, bestq, fvco);
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dwv = ((((((long)ival << 7) | bestp) << 3) | mval) << 7) | bestq;
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/*
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* Write ICD 2061A clock chip
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*/
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init_clock(((unsigned long)dwv) | (((long)clknum) << 21), crtcaddr);
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wait_vb();
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wait_vb();
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wait_vb();
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wait_vb();
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wait_vb();
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wait_vb();
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wait_vb(); /* 0.10 second delay... */
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}
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static double f(p, q, base)
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unsigned int p;
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unsigned int q;
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double base;
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{
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return(base * (p + 3)/(q + 2));
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}
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static double genratio(p, q, tgt)
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unsigned int *p;
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unsigned int *q;
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double tgt;
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{
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int k, m;
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double test, mindiff;
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unsigned int mmax;
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mindiff = 999999999.0;
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for (k = 13; k < 69; k++) { /* q={15..71}:Constraint 2 on page 14 */
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m = 50.0*k/fref - 3;
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if (m < 0)
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m = 0;
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mmax = 120*k/fref - 3; /* m..mmax is constraint 3 on page 14 */
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if (mmax > 128)
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mmax = 128;
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while (m < mmax) {
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test = f(m, k, fref) - tgt;
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if (test < 0) test = -test;
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if (mindiff > test) {
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mindiff = test;
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*p = m;
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*q = k;
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}
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m++;
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}
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}
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return (mindiff);
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}
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#if 0
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static void prtbinary(size, val)
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unsigned int size;
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unsigned int val;
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{
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unsigned int mask;
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int k;
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mask = 1;
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for (k=size; --k > 0 || mask <= val/2;)
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mask <<= 1;
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while (mask) {
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fputc((mask&val)? '1': '0' , stderr);
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mask >>= 1;
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}
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}
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#endif
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static void wait_vb()
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{
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while ((inb(crtcaddr+6) & 0x08) == 0)
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;
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while (inb(crtcaddr+6) & 0x08)
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;
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}
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#ifdef __STDC__
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static void init_clock(unsigned long setup, unsigned short crtcport)
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#else
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static void init_clock(setup, crtcport)
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unsigned long setup;
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unsigned short crtcport;
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#endif
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{
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unsigned char nclk[2], clk[2];
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unsigned short restore42;
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unsigned short oldclk;
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unsigned short bitval;
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int i;
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unsigned char c;
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#ifndef PCVT_STANDALONE
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(void)xf86DisableInterrupts();
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#endif
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oldclk = inb(0x3CC);
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outb(crtcport, 0x42);
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restore42 = inb(crtcport+1);
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outw(0x3C4, 0x0100);
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outb(0x3C4, 1);
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c = inb(0x3C5);
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outb(0x3C5, 0x20 | c);
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outb(crtcport, 0x42);
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outb(crtcport+1, 0x03);
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outw(0x3C4, 0x0300);
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nclk[0] = oldclk & 0xF3;
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nclk[1] = nclk[0] | 0x08;
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clk[0] = nclk[0] | 0x04;
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clk[1] = nclk[0] | 0x0C;
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outb(crtcport, 0x42);
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i = inw(crtcport);
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outw(0x3C4, 0x0100);
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wrt_clk_bit(oldclk | 0x08);
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wrt_clk_bit(oldclk | 0x0C);
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for (i=0; i<5; i++) {
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wrt_clk_bit(nclk[1]);
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wrt_clk_bit(clk[1]);
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}
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wrt_clk_bit(nclk[1]);
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wrt_clk_bit(nclk[0]);
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wrt_clk_bit(clk[0]);
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wrt_clk_bit(nclk[0]);
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wrt_clk_bit(clk[0]);
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for (i=0; i<24; i++) {
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bitval = setup & 0x01;
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setup >>= 1;
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wrt_clk_bit(clk[1-bitval]);
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wrt_clk_bit(nclk[1-bitval]);
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wrt_clk_bit(nclk[bitval]);
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wrt_clk_bit(clk[bitval]);
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}
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wrt_clk_bit(clk[1]);
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wrt_clk_bit(nclk[1]);
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wrt_clk_bit(clk[1]);
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outb(0x3C4, 1);
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c = inb(0x3C5);
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outb(0x3C5, 0xDF & c);
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outb(crtcport, 0x42);
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outb(crtcport+1, restore42);
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outb(0x3C2, oldclk);
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outw(0x3C4, 0x0300);
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#ifndef PCVT_STANDALONE
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xf86EnableInterrupts();
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#endif
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}
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static void wrt_clk_bit(value)
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unsigned int value;
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{
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int j;
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outb(0x3C2, value);
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for (j=2; --j; )
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inb(0x200);
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}
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