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grf_cl.c revision 1.24.6.1
      1  1.24.6.1    itojun /*	$NetBSD: grf_cl.c,v 1.24.6.1 1999/11/30 13:31:53 itojun Exp $	*/
      2       1.1    chopps 
      3       1.1    chopps /*
      4      1.19     veego  * Copyright (c) 1997 Klaus Burkert
      5       1.1    chopps  * Copyright (c) 1995 Ezra Story
      6       1.1    chopps  * Copyright (c) 1995 Kari Mettinen
      7       1.1    chopps  * Copyright (c) 1994 Markus Wild
      8       1.1    chopps  * Copyright (c) 1994 Lutz Vieweg
      9       1.1    chopps  * All rights reserved.
     10       1.1    chopps  *
     11       1.1    chopps  * Redistribution and use in source and binary forms, with or without
     12       1.1    chopps  * modification, are permitted provided that the following conditions
     13       1.1    chopps  * are met:
     14       1.1    chopps  * 1. Redistributions of source code must retain the above copyright
     15       1.1    chopps  *    notice, this list of conditions and the following disclaimer.
     16       1.1    chopps  * 2. Redistributions in binary form must reproduce the above copyright
     17       1.1    chopps  *    notice, this list of conditions and the following disclaimer in the
     18       1.1    chopps  *    documentation and/or other materials provided with the distribution.
     19       1.1    chopps  * 3. All advertising materials mentioning features or use of this software
     20       1.1    chopps  *    must display the following acknowledgement:
     21       1.1    chopps  *      This product includes software developed by Lutz Vieweg.
     22       1.1    chopps  * 4. The name of the author may not be used to endorse or promote products
     23       1.1    chopps  *    derived from this software without specific prior written permission
     24       1.1    chopps  *
     25       1.1    chopps  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     26       1.1    chopps  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     27       1.1    chopps  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     28       1.1    chopps  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     29       1.1    chopps  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     30       1.1    chopps  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     31       1.1    chopps  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     32       1.1    chopps  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     33       1.1    chopps  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     34       1.5    chopps  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     35       1.1    chopps  */
     36      1.24        is #include "opt_amigacons.h"
     37       1.5    chopps #include "grfcl.h"
     38       1.5    chopps #if NGRFCL > 0
     39       1.1    chopps 
     40       1.1    chopps /*
     41       1.1    chopps  * Graphics routines for Cirrus CL GD 5426 boards,
     42       1.1    chopps  *
     43       1.1    chopps  * This code offers low-level routines to access Cirrus Cl GD 5426
     44       1.1    chopps  * graphics-boards from within NetBSD for the Amiga.
     45       1.1    chopps  * No warranties for any kind of function at all - this
     46       1.1    chopps  * code may crash your hardware and scratch your harddisk.  Use at your
     47       1.1    chopps  * own risk.  Freely distributable.
     48       1.1    chopps  *
     49       1.1    chopps  * Modified for Cirrus CL GD 5426 from
     50       1.1    chopps  * Lutz Vieweg's retina driver by Kari Mettinen 08/94
     51       1.1    chopps  * Contributions by Ill, ScottE, MiL
     52       1.1    chopps  * Extensively hacked and rewritten by Ezra Story (Ezy) 01/95
     53       1.6        is  * Picasso/040 patches (wee!) by crest 01/96
     54       1.1    chopps  *
     55      1.19     veego  * PicassoIV support bz Klaus "crest" Burkert.
     56      1.19     veego  * Fixed interlace and doublescan, added clockdoubling and
     57      1.19     veego  * HiColor&TrueColor suuport by crest 01/97
     58      1.19     veego  *
     59       1.1    chopps  * Thanks to Village Tronic Marketing Gmbh for providing me with
     60       1.1    chopps  * a Picasso-II board.
     61       1.1    chopps  * Thanks for Integrated Electronics Oy Ab for providing me with
     62       1.1    chopps  * Cirrus CL GD 542x family documentation.
     63       1.1    chopps  *
     64       1.1    chopps  * TODO:
     65       1.5    chopps  *    Mouse support (almost there! :-))
     66       1.1    chopps  *    Blitter support
     67       1.1    chopps  *
     68       1.1    chopps  */
     69       1.1    chopps 
     70       1.1    chopps #include <sys/param.h>
     71       1.4    chopps #include <sys/systm.h>
     72       1.1    chopps #include <sys/errno.h>
     73       1.1    chopps #include <sys/ioctl.h>
     74       1.1    chopps #include <sys/device.h>
     75       1.1    chopps #include <sys/malloc.h>
     76       1.5    chopps 
     77       1.1    chopps #include <machine/cpu.h>
     78       1.1    chopps #include <dev/cons.h>
     79       1.9     veego #include <amiga/dev/itevar.h>
     80       1.1    chopps #include <amiga/amiga/device.h>
     81       1.1    chopps #include <amiga/dev/grfioctl.h>
     82       1.1    chopps #include <amiga/dev/grfvar.h>
     83       1.1    chopps #include <amiga/dev/grf_clreg.h>
     84       1.1    chopps #include <amiga/dev/zbusvar.h>
     85       1.1    chopps 
     86      1.19     veego int	cl_mondefok __P((struct grfvideo_mode *));
     87      1.19     veego void	cl_boardinit __P((struct grf_softc *));
     88      1.19     veego static void	cl_CompFQ __P((u_int, u_char *, u_char *, u_char *));
     89      1.19     veego int	cl_getvmode __P((struct grf_softc *, struct grfvideo_mode *));
     90      1.19     veego int	cl_setvmode __P((struct grf_softc *, unsigned int));
     91      1.19     veego int	cl_toggle __P((struct grf_softc *, unsigned short));
     92      1.19     veego int	cl_getcmap __P((struct grf_softc *, struct grf_colormap *));
     93      1.19     veego int	cl_putcmap __P((struct grf_softc *, struct grf_colormap *));
     94       1.9     veego #ifndef CL5426CONSOLE
     95      1.19     veego void	cl_off __P((struct grf_softc *));
     96       1.9     veego #endif
     97      1.19     veego void	cl_inittextmode __P((struct grf_softc *));
     98      1.19     veego int	cl_ioctl __P((register struct grf_softc *, u_long, void *));
     99      1.19     veego int	cl_getmousepos __P((struct grf_softc *, struct grf_position *));
    100      1.19     veego int	cl_setmousepos __P((struct grf_softc *, struct grf_position *));
    101      1.19     veego static int	cl_setspriteinfo __P((struct grf_softc *, struct grf_spriteinfo *));
    102      1.19     veego int	cl_getspriteinfo __P((struct grf_softc *, struct grf_spriteinfo *));
    103      1.19     veego static int	cl_getspritemax __P((struct grf_softc *, struct grf_position *));
    104      1.19     veego int	cl_blank __P((struct grf_softc *, int *));
    105      1.19     veego int	cl_setmonitor __P((struct grf_softc *, struct grfvideo_mode *));
    106      1.19     veego void	cl_writesprpos __P((volatile char *, short, short));
    107      1.19     veego void	writeshifted __P((volatile char *, char, char));
    108      1.19     veego 
    109      1.19     veego static void	RegWakeup __P((volatile caddr_t));
    110      1.19     veego static void	RegOnpass __P((volatile caddr_t));
    111      1.19     veego static void	RegOffpass __P((volatile caddr_t));
    112      1.19     veego 
    113      1.19     veego void	grfclattach __P((struct device *, struct device *, void *));
    114      1.19     veego int	grfclprint __P((void *, const char *));
    115      1.19     veego int	grfclmatch __P((struct device *, struct cfdata *, void *));
    116      1.19     veego void	cl_memset __P((unsigned char *, unsigned char, int));
    117       1.1    chopps 
    118       1.5    chopps /* Graphics display definitions.
    119       1.1    chopps  * These are filled by 'grfconfig' using GRFIOCSETMON.
    120       1.1    chopps  */
    121      1.20     veego #define monitor_def_max 24
    122      1.20     veego static struct grfvideo_mode monitor_def[24] = {
    123      1.20     veego 	{0}, {0}, {0}, {0}, {0}, {0}, {0}, {0},
    124      1.20     veego 	{0}, {0}, {0}, {0}, {0}, {0}, {0}, {0},
    125       1.1    chopps 	{0}, {0}, {0}, {0}, {0}, {0}, {0}, {0}
    126       1.1    chopps };
    127       1.1    chopps static struct grfvideo_mode *monitor_current = &monitor_def[0];
    128       1.1    chopps 
    129       1.1    chopps /* Patchable maximum pixel clock */
    130       1.5    chopps unsigned long cl_maxpixelclock = 86000000;
    131       1.1    chopps 
    132       1.1    chopps /* Console display definition.
    133       1.1    chopps  *   Default hardcoded text mode.  This grf_cl is set up to
    134       1.1    chopps  *   use one text mode only, and this is it.  You may use
    135       1.1    chopps  *   grfconfig to change the mode after boot.
    136       1.5    chopps  */
    137       1.1    chopps /* Console font */
    138       1.2    chopps #ifdef KFONT_8X11
    139       1.2    chopps #define CIRRUSFONT kernel_font_8x11
    140       1.2    chopps #define CIRRUSFONTY 11
    141       1.2    chopps #else
    142       1.1    chopps #define CIRRUSFONT kernel_font_8x8
    143       1.1    chopps #define CIRRUSFONTY 8
    144       1.2    chopps #endif
    145       1.1    chopps extern unsigned char CIRRUSFONT[];
    146       1.1    chopps 
    147       1.1    chopps struct grfcltext_mode clconsole_mode = {
    148  1.24.6.1    itojun 	{255, "", 25000000, 640, 480, 4, 640/8, 680/8, 768/8, 800/8,
    149      1.20     veego 	 481, 490, 498, 522, 0},
    150       1.5    chopps 	8, CIRRUSFONTY, 80, 480 / CIRRUSFONTY, CIRRUSFONT, 32, 255
    151       1.1    chopps };
    152       1.1    chopps /* Console colors */
    153       1.5    chopps unsigned char clconscolors[3][3] = {	/* background, foreground, hilite */
    154       1.5    chopps 	{0, 0x40, 0x50}, {152, 152, 152}, {255, 255, 255}
    155       1.1    chopps };
    156       1.1    chopps 
    157      1.11     veego int	cltype = 0;		/* Picasso, Spectrum or Piccolo */
    158      1.19     veego int	cl_64bit = 0;		/* PiccoloSD64 or PicassoIV */
    159       1.5    chopps unsigned char pass_toggle;	/* passthru status tracker */
    160       1.1    chopps 
    161      1.19     veego /*
    162      1.19     veego  * because all 542x-boards have 2 configdev entries, one for
    163       1.1    chopps  * framebuffer mem and the other for regs, we have to hold onto
    164       1.1    chopps  * the pointers globally until we match on both.  This and 'cltype'
    165       1.1    chopps  * are the primary obsticles to multiple board support, but if you
    166       1.1    chopps  * have multiple boards you have bigger problems than grf_cl.
    167       1.1    chopps  */
    168       1.5    chopps static void *cl_fbaddr = 0;	/* framebuffer */
    169       1.5    chopps static void *cl_regaddr = 0;	/* registers */
    170       1.5    chopps static int cl_fbsize;		/* framebuffer size */
    171      1.19     veego static int cl_fbautosize;	/* framebuffer autoconfig size */
    172      1.19     veego 
    173       1.5    chopps 
    174      1.19     veego /*
    175      1.19     veego  * current sprite info, if you add support for multiple boards
    176       1.5    chopps  * make this an array or something
    177       1.5    chopps  */
    178       1.5    chopps struct grf_spriteinfo cl_cursprite;
    179       1.5    chopps 
    180       1.5    chopps /* sprite bitmaps in kernel stack, you'll need to arrayize these too if
    181       1.5    chopps  * you add multiple board support
    182       1.5    chopps  */
    183       1.5    chopps static unsigned char cl_imageptr[8 * 64], cl_maskptr[8 * 64];
    184       1.5    chopps static unsigned char cl_sprred[2], cl_sprgreen[2], cl_sprblue[2];
    185       1.1    chopps 
    186       1.1    chopps /* standard driver stuff */
    187       1.8    mhitch struct cfattach grfcl_ca = {
    188       1.7   thorpej 	sizeof(struct grf_softc), grfclmatch, grfclattach
    189       1.7   thorpej };
    190       1.7   thorpej 
    191       1.1    chopps static struct cfdata *cfdata;
    192       1.1    chopps 
    193       1.1    chopps int
    194      1.18     veego grfclmatch(pdp, cfp, auxp)
    195       1.1    chopps 	struct device *pdp;
    196      1.18     veego 	struct cfdata *cfp;
    197      1.18     veego 	void   *auxp;
    198       1.1    chopps {
    199       1.1    chopps 	struct zbus_args *zap;
    200      1.19     veego 	static int regprod, fbprod, fbprod2;
    201      1.11     veego 	int error;
    202       1.1    chopps 
    203      1.19     veego 	fbprod2 = 0;
    204       1.1    chopps 	zap = auxp;
    205       1.1    chopps 
    206       1.1    chopps #ifndef CL5426CONSOLE
    207       1.1    chopps 	if (amiga_realconfig == 0)
    208       1.5    chopps 		return (0);
    209       1.1    chopps #endif
    210       1.1    chopps 
    211       1.5    chopps 	/* Grab the first board we encounter as the preferred one.  This will
    212       1.5    chopps 	 * allow one board to work in a multiple 5426 board system, but not
    213       1.5    chopps 	 * multiple boards at the same time.  */
    214       1.1    chopps 	if (cltype == 0) {
    215       1.1    chopps 		switch (zap->manid) {
    216      1.11     veego 		    case PICASSO:
    217      1.19     veego 			switch (zap->prodid) {
    218      1.19     veego 			    case 11:
    219      1.19     veego 			    case 12:
    220      1.19     veego 				regprod = 12;
    221      1.19     veego 				fbprod = 11;
    222      1.19     veego 				error = 0;
    223      1.19     veego 				break;
    224      1.19     veego 			    case 22:
    225      1.19     veego 				fbprod2 = 22;
    226      1.19     veego 				error = 0;
    227      1.19     veego 				break;
    228      1.19     veego 			    case 21:
    229      1.19     veego 			    case 23:
    230      1.19     veego 				regprod = 23;
    231      1.19     veego 				fbprod = 21;
    232      1.19     veego 				cl_64bit = 1;
    233      1.19     veego 				error = 0;
    234      1.19     veego 				break;
    235      1.19     veego 			    case 24:
    236      1.19     veego 				regprod = 24;
    237      1.19     veego 				fbprod = 24;
    238      1.19     veego 				cl_64bit = 1;
    239      1.19     veego 				error = 0;
    240      1.19     veego 				break;
    241      1.19     veego 		    	    default:
    242      1.19     veego 				error = 1;
    243      1.19     veego 				break;
    244      1.19     veego 			}
    245      1.19     veego 			if (error == 1)
    246      1.19     veego 			    return (0);
    247      1.19     veego 			else
    248      1.19     veego 			    break;
    249      1.11     veego 		    case SPECTRUM:
    250       1.3    chopps 			if (zap->prodid != 2 && zap->prodid != 1)
    251       1.3    chopps 				return (0);
    252       1.1    chopps 			regprod = 2;
    253       1.1    chopps 			fbprod = 1;
    254       1.1    chopps 			break;
    255      1.11     veego 		    case PICCOLO:
    256      1.11     veego 			switch (zap->prodid) {
    257      1.11     veego 			    case 5:
    258      1.11     veego 			    case 6:
    259      1.11     veego 				regprod = 6;
    260      1.11     veego 				fbprod = 5;
    261      1.11     veego 				error = 0;
    262      1.11     veego 				break;
    263      1.11     veego 			    case 10:
    264      1.11     veego 			    case 11:
    265      1.11     veego 				regprod = 11;
    266      1.11     veego 				fbprod = 10;
    267      1.19     veego 				cl_64bit = 1;
    268      1.11     veego 				error = 0;
    269      1.11     veego 				break;
    270      1.11     veego 		    	    default:
    271      1.11     veego 				error = 1;
    272      1.11     veego 				break;
    273      1.11     veego 			}
    274      1.11     veego 			if (error == 1)
    275      1.11     veego 			    return (0);
    276      1.11     veego 			else
    277      1.11     veego 			    break;
    278      1.11     veego 		    default:
    279       1.5    chopps 			return (0);
    280       1.1    chopps 		}
    281       1.1    chopps 		cltype = zap->manid;
    282       1.1    chopps 	} else {
    283       1.1    chopps 		if (cltype != zap->manid) {
    284       1.5    chopps 			return (0);
    285       1.1    chopps 		}
    286       1.1    chopps 	}
    287       1.1    chopps 
    288       1.5    chopps 	/* Configure either registers or framebuffer in any order */
    289      1.19     veego 	if ((cltype == PICASSO) && (cl_64bit == 1)) {
    290      1.19     veego 		switch (zap->prodid) {
    291      1.19     veego 		    case 21:
    292       1.5    chopps 			cl_fbaddr = zap->va;
    293      1.19     veego 			cl_fbautosize = zap->size;
    294      1.19     veego 			break;
    295      1.19     veego 		    case 22:
    296      1.19     veego 			cl_fbautosize += zap->size;
    297      1.19     veego 			break;
    298      1.19     veego 		    case 23:
    299      1.19     veego 			cl_regaddr = (void *)((unsigned long)(zap->va) + 0x10000);
    300      1.19     veego 			break;
    301      1.19     veego 		    case 24:
    302      1.19     veego 			cl_regaddr = (void *)((unsigned long)(zap->va) + 0x600000);
    303      1.23     veego 			/* check for PicassoIV with 64MB config and handle it */
    304      1.23     veego 			if (zap->size == 0x04000000) {
    305      1.23     veego 			    cl_fbaddr = (void *)((unsigned long)(zap->va) + 0x02000000);
    306      1.23     veego 			} else {
    307      1.23     veego 			    cl_fbaddr = (void *)((unsigned long)(zap->va) + 0x01000000);
    308      1.23     veego 			}
    309      1.19     veego 			cl_fbautosize = 0x400000;
    310      1.19     veego 			break;
    311      1.19     veego 		    default:
    312       1.5    chopps 			return (0);
    313      1.19     veego 		}
    314      1.19     veego 	}
    315      1.19     veego 	else {
    316      1.19     veego 		if (zap->prodid == regprod)
    317      1.19     veego 			cl_regaddr = zap->va;
    318      1.19     veego 		else
    319      1.19     veego 			if (zap->prodid == fbprod) {
    320      1.19     veego 				cl_fbaddr = zap->va;
    321      1.19     veego 				cl_fbautosize = zap->size;
    322      1.19     veego 			} else
    323      1.19     veego 				return (0);
    324      1.19     veego 	}
    325       1.1    chopps 
    326       1.1    chopps #ifdef CL5426CONSOLE
    327      1.19     veego 		if (amiga_realconfig == 0) {
    328      1.19     veego 			cfdata = cfp;
    329      1.19     veego 		}
    330       1.5    chopps #endif
    331      1.19     veego 
    332       1.5    chopps 	return (1);
    333       1.1    chopps }
    334       1.1    chopps 
    335       1.1    chopps void
    336       1.1    chopps grfclattach(pdp, dp, auxp)
    337       1.1    chopps 	struct device *pdp, *dp;
    338       1.5    chopps 	void   *auxp;
    339       1.1    chopps {
    340       1.1    chopps 	static struct grf_softc congrf;
    341       1.1    chopps 	struct zbus_args *zap;
    342       1.1    chopps 	struct grf_softc *gp;
    343       1.1    chopps 	static char attachflag = 0;
    344       1.1    chopps 
    345       1.1    chopps 	zap = auxp;
    346       1.1    chopps 
    347      1.16  christos 	printf("\n");
    348       1.1    chopps 
    349       1.1    chopps 	/* make sure both halves have matched */
    350       1.1    chopps 	if (!cl_regaddr || !cl_fbaddr)
    351       1.1    chopps 		return;
    352       1.1    chopps 
    353       1.1    chopps 	/* do all that messy console/grf stuff */
    354       1.1    chopps 	if (dp == NULL)
    355       1.1    chopps 		gp = &congrf;
    356       1.1    chopps 	else
    357       1.5    chopps 		gp = (struct grf_softc *) dp;
    358       1.1    chopps 
    359       1.1    chopps 	if (dp != NULL && congrf.g_regkva != 0) {
    360       1.1    chopps 		/*
    361       1.1    chopps 		 * inited earlier, just copy (not device struct)
    362       1.1    chopps 		 */
    363       1.1    chopps 		bcopy(&congrf.g_display, &gp->g_display,
    364       1.5    chopps 		    (char *) &gp[1] - (char *) &gp->g_display);
    365       1.1    chopps 	} else {
    366       1.5    chopps 		gp->g_regkva = (volatile caddr_t) cl_regaddr;
    367       1.5    chopps 		gp->g_fbkva = (volatile caddr_t) cl_fbaddr;
    368       1.1    chopps 
    369       1.1    chopps 		gp->g_unit = GRF_CL5426_UNIT;
    370       1.1    chopps 		gp->g_mode = cl_mode;
    371       1.1    chopps 		gp->g_conpri = grfcl_cnprobe();
    372       1.1    chopps 		gp->g_flags = GF_ALIVE;
    373       1.1    chopps 
    374       1.1    chopps 		/* wakeup the board */
    375       1.1    chopps 		cl_boardinit(gp);
    376       1.1    chopps #ifdef CL5426CONSOLE
    377       1.1    chopps 		grfcl_iteinit(gp);
    378       1.5    chopps 		(void) cl_load_mon(gp, &clconsole_mode);
    379       1.1    chopps #endif
    380       1.1    chopps 
    381       1.1    chopps 	}
    382       1.1    chopps 
    383       1.1    chopps 	/*
    384       1.1    chopps 	 * attach grf (once)
    385       1.1    chopps 	 */
    386       1.1    chopps 	if (amiga_config_found(cfdata, &gp->g_device, gp, grfclprint)) {
    387       1.1    chopps 		attachflag = 1;
    388      1.16  christos 		printf("grfcl: %dMB ", cl_fbsize / 0x100000);
    389       1.1    chopps 		switch (cltype) {
    390      1.11     veego 		    case PICASSO:
    391      1.19     veego 			if (cl_64bit == 1) {
    392      1.19     veego 				printf("Picasso IV");
    393      1.19     veego 				/* 135MHz will be supported if we
    394      1.19     veego 				 * have a palette doubling mode.
    395      1.19     veego 				 */
    396      1.19     veego 				cl_maxpixelclock = 86000000;
    397      1.19     veego 			}
    398      1.19     veego 			else {
    399      1.19     veego 				printf("Picasso II");
    400      1.19     veego 
    401      1.19     veego 				/* check for PicassoII+ (crest) */
    402      1.19     veego 				if(zap->serno == 0x00100000)
    403      1.19     veego 				    printf("+");
    404      1.19     veego 
    405      1.19     veego 				/* determine used Gfx/chipset (crest) */
    406      1.19     veego 				vgaw(gp->g_regkva, CRT_ADDRESS, 0x27); /* Chip ID */
    407      1.19     veego 				switch(vgar(gp->g_regkva, CRT_ADDRESS_R)>>2) {
    408      1.19     veego 				    case 0x24:
    409      1.19     veego 					printf(" (with CL-GD5426)");
    410      1.19     veego 					break;
    411      1.19     veego 				    case 0x26:
    412      1.19     veego 					printf(" (with CL-GD5428)");
    413      1.19     veego 					break;
    414      1.19     veego 				    case 0x27:
    415      1.19     veego 					printf(" (with CL-GD5429)");
    416      1.19     veego 					break;
    417      1.19     veego 				}
    418      1.19     veego 	                        cl_maxpixelclock = 86000000;
    419      1.19     veego 			}
    420       1.1    chopps 			break;
    421      1.11     veego 		    case SPECTRUM:
    422      1.16  christos 			printf("Spectrum");
    423       1.5    chopps                         cl_maxpixelclock = 90000000;
    424       1.1    chopps 			break;
    425      1.11     veego 		    case PICCOLO:
    426      1.19     veego 			if (cl_64bit == 1) {
    427      1.16  christos 				printf("Piccolo SD64");
    428      1.11     veego 				/* 110MHz will be supported if we
    429      1.11     veego 				 * have a palette doubling mode.
    430      1.11     veego 				 */
    431      1.11     veego 				cl_maxpixelclock = 90000000;
    432      1.11     veego 			} else {
    433      1.16  christos 				printf("Piccolo");
    434      1.11     veego 				cl_maxpixelclock = 90000000;
    435      1.11     veego 			}
    436       1.1    chopps 			break;
    437       1.1    chopps 		}
    438      1.16  christos 		printf(" being used\n");
    439       1.5    chopps #ifdef CL_OVERCLOCK
    440       1.5    chopps                 cl_maxpixelclock = 115000000;
    441       1.5    chopps #endif
    442       1.1    chopps 	} else {
    443       1.1    chopps 		if (!attachflag)
    444      1.16  christos 			printf("grfcl unattached!!\n");
    445       1.1    chopps 	}
    446       1.1    chopps }
    447       1.1    chopps 
    448       1.1    chopps int
    449       1.1    chopps grfclprint(auxp, pnp)
    450       1.5    chopps 	void   *auxp;
    451      1.13       cgd 	const char *pnp;
    452       1.1    chopps {
    453       1.1    chopps 	if (pnp)
    454      1.16  christos 		printf("ite at %s: ", pnp);
    455       1.5    chopps 	return (UNCONF);
    456       1.1    chopps }
    457       1.1    chopps 
    458       1.1    chopps void
    459       1.1    chopps cl_boardinit(gp)
    460       1.5    chopps 	struct grf_softc *gp;
    461       1.1    chopps {
    462       1.1    chopps 	unsigned char *ba = gp->g_regkva;
    463       1.5    chopps 	int     x;
    464       1.1    chopps 
    465      1.19     veego 	if ((cltype == PICASSO) && (cl_64bit == 1)) { /* PicassoIV */
    466      1.19     veego 		WCrt(ba, 0x51, 0x00);		/* disable capture (FlickerFixer) */
    467      1.19     veego 		delay(200000);		/* wait some time (two frames as of now) */
    468      1.19     veego 		WGfx(ba, 0x2f, 0x00);			/* get Blitter into 542x  */
    469      1.19     veego 		WGfx(ba, GCT_ID_RESERVED, 0x00);	/* compatibility mode     */
    470      1.19     veego 		WGfx(ba, GCT_ID_BLT_STAT_START, 0x00);	/* or at least, try so... */
    471      1.19     veego 		cl_fbsize = cl_fbautosize;
    472      1.19     veego 	} else {
    473      1.19     veego 
    474      1.19     veego 		/* wakeup board and flip passthru OFF */
    475      1.19     veego 		RegWakeup(ba);
    476      1.19     veego 		RegOnpass(ba);
    477      1.19     veego 
    478      1.19     veego 		vgaw(ba, 0x46e8, 0x16);
    479      1.19     veego 		vgaw(ba, 0x102, 1);
    480      1.19     veego 		vgaw(ba, 0x46e8, 0x0e);
    481      1.19     veego 		if (cl_64bit != 1)
    482      1.19     veego 			vgaw(ba, 0x3c3, 1);
    483      1.19     veego 
    484      1.19     veego 		cl_fbsize = cl_fbautosize;
    485       1.1    chopps 
    486      1.19     veego 		/* setup initial unchanging parameters */
    487      1.19     veego 
    488      1.19     veego 		WSeq(ba, SEQ_ID_CLOCKING_MODE, 0x21);	/* 8 dot - display off */
    489      1.19     veego 		vgaw(ba, GREG_MISC_OUTPUT_W, 0xed);	/* mem disable */
    490      1.19     veego 
    491      1.19     veego 		WGfx(ba, GCT_ID_OFFSET_1, 0xec);	/* magic cookie */
    492      1.19     veego 		WSeq(ba, SEQ_ID_UNLOCK_EXT, 0x12);	/* yum! cookies! */
    493       1.1    chopps 
    494      1.19     veego 		if (cl_64bit == 1) {
    495      1.19     veego 			WSeq(ba, SEQ_ID_CONF_RBACK, 0x00);
    496      1.19     veego 			WSeq(ba, SEQ_ID_DRAM_CNTL, (cl_fbsize / 0x100000 == 2) ? 0x38 : 0xb8);
    497      1.19     veego 		} else {
    498      1.19     veego 			WSeq(ba, SEQ_ID_DRAM_CNTL, 0xb0);
    499      1.19     veego 		}
    500      1.19     veego 		WSeq(ba, SEQ_ID_RESET, 0x03);
    501      1.19     veego 		WSeq(ba, SEQ_ID_MAP_MASK, 0xff);
    502      1.19     veego 		WSeq(ba, SEQ_ID_CHAR_MAP_SELECT, 0x00);
    503      1.19     veego 		WSeq(ba, SEQ_ID_MEMORY_MODE, 0x0e);	/* a or 6? */
    504      1.19     veego 		WSeq(ba, SEQ_ID_EXT_SEQ_MODE, (cltype == PICASSO) ? 0x21 : 0x81);
    505      1.19     veego 		WSeq(ba, SEQ_ID_EEPROM_CNTL, 0x00);
    506      1.19     veego 		if (cl_64bit == 1)
    507      1.19     veego 			WSeq(ba, SEQ_ID_PERF_TUNE, 0x5a);
    508      1.19     veego 		else
    509      1.19     veego 			WSeq(ba, SEQ_ID_PERF_TUNE, 0x0a);	/* mouse 0a fa */
    510      1.19     veego 		WSeq(ba, SEQ_ID_SIG_CNTL, 0x02);
    511      1.19     veego 		WSeq(ba, SEQ_ID_CURSOR_ATTR, 0x04);
    512       1.1    chopps 
    513      1.19     veego 		if (cl_64bit == 1)
    514      1.19     veego 			WSeq(ba, SEQ_ID_MCLK_SELECT, 0x1c);
    515      1.19     veego 		else
    516      1.14   thorpej 		WSeq(ba, SEQ_ID_MCLK_SELECT, 0x22);
    517       1.1    chopps 
    518      1.19     veego 		WCrt(ba, CRT_ID_PRESET_ROW_SCAN, 0x00);
    519      1.19     veego 		WCrt(ba, CRT_ID_CURSOR_START, 0x00);
    520      1.19     veego 		WCrt(ba, CRT_ID_CURSOR_END, 0x08);
    521      1.19     veego 		WCrt(ba, CRT_ID_START_ADDR_HIGH, 0x00);
    522      1.19     veego 		WCrt(ba, CRT_ID_START_ADDR_LOW, 0x00);
    523      1.19     veego 		WCrt(ba, CRT_ID_CURSOR_LOC_HIGH, 0x00);
    524      1.19     veego 		WCrt(ba, CRT_ID_CURSOR_LOC_LOW, 0x00);
    525       1.1    chopps 
    526      1.19     veego 		WCrt(ba, CRT_ID_UNDERLINE_LOC, 0x07);
    527      1.19     veego 		WCrt(ba, CRT_ID_MODE_CONTROL, 0xe3);
    528      1.19     veego 		WCrt(ba, CRT_ID_LINE_COMPARE, 0xff);	/* ff */
    529      1.19     veego 		WCrt(ba, CRT_ID_EXT_DISP_CNTL, 0x22);
    530      1.19     veego 		if (cl_64bit == 1) {
    531      1.19     veego 			WCrt(ba, CRT_ID_SYNC_ADJ_GENLOCK, 0x00);
    532      1.19     veego 			WCrt(ba, CRT_ID_OVERLAY_EXT_CTRL_REG, 0x40);
    533      1.19     veego 		}
    534      1.19     veego 		WSeq(ba, SEQ_ID_CURSOR_STORE, 0x3c);	/* mouse 0x00 */
    535       1.1    chopps 
    536      1.19     veego 		WGfx(ba, GCT_ID_SET_RESET, 0x00);
    537      1.19     veego 		WGfx(ba, GCT_ID_ENABLE_SET_RESET, 0x00);
    538      1.19     veego 		WGfx(ba, GCT_ID_DATA_ROTATE, 0x00);
    539      1.19     veego 		WGfx(ba, GCT_ID_READ_MAP_SELECT, 0x00);
    540      1.19     veego 		WGfx(ba, GCT_ID_GRAPHICS_MODE, 0x00);
    541      1.19     veego 		WGfx(ba, GCT_ID_MISC, 0x01);
    542      1.19     veego 		WGfx(ba, GCT_ID_COLOR_XCARE, 0x0f);
    543      1.19     veego 		WGfx(ba, GCT_ID_BITMASK, 0xff);
    544      1.19     veego 		WGfx(ba, GCT_ID_MODE_EXT, 0x28);
    545      1.19     veego 
    546      1.19     veego 		for (x = 0; x < 0x10; x++)
    547      1.19     veego 			WAttr(ba, x, x);
    548      1.19     veego 		WAttr(ba, ACT_ID_ATTR_MODE_CNTL, 0x01);
    549      1.19     veego 		WAttr(ba, ACT_ID_OVERSCAN_COLOR, 0x00);
    550      1.19     veego 		WAttr(ba, ACT_ID_COLOR_PLANE_ENA, 0x0f);
    551      1.19     veego 		WAttr(ba, ACT_ID_HOR_PEL_PANNING, 0x00);
    552      1.19     veego 		WAttr(ba, ACT_ID_COLOR_SELECT, 0x00);
    553      1.19     veego 		WAttr(ba, 0x34, 0x00);
    554       1.1    chopps 
    555      1.19     veego 		vgaw(ba, VDAC_MASK, 0xff);
    556      1.19     veego 		vgaw(ba, GREG_MISC_OUTPUT_W, 0xef);
    557       1.1    chopps 
    558      1.19     veego 		WGfx(ba, GCT_ID_BLT_STAT_START, 0x04);
    559      1.19     veego 		WGfx(ba, GCT_ID_BLT_STAT_START, 0x00);
    560      1.19     veego 	}
    561       1.1    chopps 
    562       1.1    chopps 	/* colors initially set to greyscale */
    563       1.1    chopps 	vgaw(ba, VDAC_ADDRESS_W, 0);
    564       1.5    chopps 	for (x = 255; x >= 0; x--) {
    565       1.1    chopps 		vgaw(ba, VDAC_DATA, x);
    566       1.1    chopps 		vgaw(ba, VDAC_DATA, x);
    567       1.1    chopps 		vgaw(ba, VDAC_DATA, x);
    568       1.1    chopps 	}
    569       1.5    chopps 	/* set sprite bitmap pointers */
    570       1.5    chopps 	cl_cursprite.image = cl_imageptr;
    571       1.5    chopps 	cl_cursprite.mask = cl_maskptr;
    572       1.5    chopps 	cl_cursprite.cmap.red = cl_sprred;
    573       1.5    chopps 	cl_cursprite.cmap.green = cl_sprgreen;
    574       1.5    chopps 	cl_cursprite.cmap.blue = cl_sprblue;
    575      1.19     veego 
    576      1.19     veego 	if (cl_64bit == 0) {
    577      1.19     veego 
    578      1.19     veego 		/* check for 1MB or 2MB board (crest) */
    579      1.19     veego 		volatile unsigned long *cl_fbtestaddr;
    580      1.19     veego 		cl_fbtestaddr = (volatile unsigned long *)gp->g_fbkva;
    581      1.19     veego 
    582      1.19     veego 		WGfx(ba, GCT_ID_OFFSET_0, 0x40);
    583      1.19     veego 		*cl_fbtestaddr = 0x12345678;
    584      1.19     veego 
    585      1.19     veego 		if (*cl_fbtestaddr != 0x12345678) {
    586      1.19     veego 			WSeq(ba, SEQ_ID_DRAM_CNTL, 0x30);
    587      1.19     veego 			cl_fbsize = 0x100000;
    588      1.19     veego 		}
    589      1.19     veego 		else
    590      1.19     veego 		{
    591      1.19     veego 			cl_fbsize = 0x200000;
    592      1.19     veego 		}
    593      1.19     veego 	}
    594      1.19     veego 	WGfx(ba, GCT_ID_OFFSET_0, 0x00);
    595       1.1    chopps }
    596       1.1    chopps 
    597       1.1    chopps 
    598       1.1    chopps int
    599       1.1    chopps cl_getvmode(gp, vm)
    600       1.1    chopps 	struct grf_softc *gp;
    601       1.1    chopps 	struct grfvideo_mode *vm;
    602       1.1    chopps {
    603       1.1    chopps 	struct grfvideo_mode *gv;
    604       1.1    chopps 
    605       1.1    chopps #ifdef CL5426CONSOLE
    606       1.1    chopps 	/* Handle grabbing console mode */
    607       1.1    chopps 	if (vm->mode_num == 255) {
    608       1.1    chopps 		bcopy(&clconsole_mode, vm, sizeof(struct grfvideo_mode));
    609       1.5    chopps 		/* XXX so grfconfig can tell us the correct text dimensions. */
    610       1.1    chopps 		vm->depth = clconsole_mode.fy;
    611       1.5    chopps 	} else
    612       1.1    chopps #endif
    613       1.5    chopps         {
    614       1.5    chopps                 if (vm->mode_num == 0)
    615       1.5    chopps                         vm->mode_num = (monitor_current - monitor_def) + 1;
    616       1.5    chopps                 if (vm->mode_num < 1 || vm->mode_num > monitor_def_max)
    617       1.5    chopps                         return (EINVAL);
    618       1.5    chopps                 gv = monitor_def + (vm->mode_num - 1);
    619       1.5    chopps                 if (gv->mode_num == 0)
    620       1.5    chopps                         return (EINVAL);
    621       1.5    chopps 
    622       1.5    chopps                 bcopy(gv, vm, sizeof(struct grfvideo_mode));
    623       1.5    chopps         }
    624       1.5    chopps 
    625       1.5    chopps         /* adjust internal values to pixel values */
    626       1.5    chopps 
    627       1.5    chopps         vm->hblank_start *= 8;
    628       1.5    chopps         vm->hsync_start *= 8;
    629       1.5    chopps         vm->hsync_stop *= 8;
    630       1.5    chopps         vm->htotal *= 8;
    631       1.5    chopps 
    632       1.5    chopps 	return (0);
    633       1.1    chopps }
    634       1.1    chopps 
    635       1.1    chopps 
    636       1.1    chopps int
    637       1.1    chopps cl_setvmode(gp, mode)
    638       1.1    chopps 	struct grf_softc *gp;
    639       1.1    chopps 	unsigned mode;
    640       1.1    chopps {
    641       1.5    chopps 	if (!mode || (mode > monitor_def_max) ||
    642       1.5    chopps 	    monitor_def[mode - 1].mode_num == 0)
    643       1.5    chopps 		return (EINVAL);
    644       1.1    chopps 
    645       1.1    chopps 	monitor_current = monitor_def + (mode - 1);
    646       1.1    chopps 
    647       1.5    chopps 	return (0);
    648       1.1    chopps }
    649       1.1    chopps 
    650       1.9     veego #ifndef CL5426CONSOLE
    651       1.1    chopps void
    652       1.1    chopps cl_off(gp)
    653       1.5    chopps 	struct grf_softc *gp;
    654       1.1    chopps {
    655       1.5    chopps 	char   *ba = gp->g_regkva;
    656       1.1    chopps 
    657      1.19     veego 	/*
    658      1.19     veego 	 * we'll put the pass-through on for cc ite and set Full Bandwidth bit
    659       1.5    chopps 	 * on just in case it didn't work...but then it doesn't matter does
    660      1.19     veego 	 * it? =)
    661      1.19     veego 	 */
    662       1.1    chopps 	RegOnpass(ba);
    663      1.19     veego 	vgaw(ba, SEQ_ADDRESS, SEQ_ID_CLOCKING_MODE);
    664      1.19     veego 	vgaw(ba, SEQ_ADDRESS_W, vgar(ba, SEQ_ADDRESS_W) | 0x20);
    665       1.1    chopps }
    666       1.9     veego #endif
    667       1.1    chopps 
    668       1.5    chopps int
    669       1.5    chopps cl_blank(gp, on)
    670       1.5    chopps         struct grf_softc *gp;
    671       1.5    chopps         int *on;
    672       1.5    chopps {
    673      1.12        is         WSeq(gp->g_regkva, SEQ_ID_CLOCKING_MODE, *on > 0 ? 0x01 : 0x21);
    674       1.5    chopps         return(0);
    675       1.5    chopps }
    676       1.5    chopps 
    677       1.1    chopps /*
    678       1.1    chopps  * Change the mode of the display.
    679       1.1    chopps  * Return a UNIX error number or 0 for success.
    680       1.1    chopps  */
    681       1.9     veego int
    682       1.1    chopps cl_mode(gp, cmd, arg, a2, a3)
    683       1.1    chopps 	register struct grf_softc *gp;
    684       1.9     veego 	u_long cmd;
    685       1.9     veego 	void *arg;
    686       1.9     veego 	u_long a2;
    687       1.9     veego 	int a3;
    688       1.1    chopps {
    689       1.5    chopps 	int     error;
    690       1.1    chopps 
    691       1.1    chopps 	switch (cmd) {
    692      1.11     veego 	    case GM_GRFON:
    693       1.5    chopps 		error = cl_load_mon(gp,
    694       1.1    chopps 		    (struct grfcltext_mode *) monitor_current) ? 0 : EINVAL;
    695       1.5    chopps 		return (error);
    696       1.1    chopps 
    697      1.11     veego 	    case GM_GRFOFF:
    698       1.1    chopps #ifndef CL5426CONSOLE
    699       1.1    chopps 		cl_off(gp);
    700       1.1    chopps #else
    701       1.1    chopps 		cl_load_mon(gp, &clconsole_mode);
    702       1.1    chopps #endif
    703       1.5    chopps 		return (0);
    704       1.1    chopps 
    705      1.11     veego 	    case GM_GRFCONFIG:
    706       1.5    chopps 		return (0);
    707       1.1    chopps 
    708      1.11     veego 	    case GM_GRFGETVMODE:
    709       1.5    chopps 		return (cl_getvmode(gp, (struct grfvideo_mode *) arg));
    710       1.1    chopps 
    711      1.11     veego 	    case GM_GRFSETVMODE:
    712       1.5    chopps 		error = cl_setvmode(gp, *(unsigned *) arg);
    713       1.5    chopps 		if (!error && (gp->g_flags & GF_GRFON))
    714       1.5    chopps 			cl_load_mon(gp,
    715       1.1    chopps 			    (struct grfcltext_mode *) monitor_current);
    716       1.5    chopps 		return (error);
    717       1.1    chopps 
    718      1.11     veego 	    case GM_GRFGETNUMVM:
    719       1.5    chopps 		*(int *) arg = monitor_def_max;
    720       1.5    chopps 		return (0);
    721       1.1    chopps 
    722      1.11     veego 	    case GM_GRFIOCTL:
    723       1.9     veego 		return (cl_ioctl(gp, a2, arg));
    724       1.1    chopps 
    725      1.11     veego 	    default:
    726       1.1    chopps 		break;
    727       1.1    chopps 	}
    728       1.1    chopps 
    729       1.5    chopps 	return (EINVAL);
    730       1.1    chopps }
    731       1.1    chopps 
    732       1.1    chopps int
    733       1.5    chopps cl_ioctl(gp, cmd, data)
    734       1.1    chopps 	register struct grf_softc *gp;
    735       1.9     veego 	u_long cmd;
    736       1.5    chopps 	void   *data;
    737       1.1    chopps {
    738       1.1    chopps 	switch (cmd) {
    739      1.11     veego 	    case GRFIOCGSPRITEPOS:
    740       1.5    chopps 		return (cl_getmousepos(gp, (struct grf_position *) data));
    741       1.5    chopps 
    742      1.11     veego 	    case GRFIOCSSPRITEPOS:
    743       1.5    chopps 		return (cl_setmousepos(gp, (struct grf_position *) data));
    744       1.5    chopps 
    745      1.11     veego 	    case GRFIOCSSPRITEINF:
    746       1.5    chopps 		return (cl_setspriteinfo(gp, (struct grf_spriteinfo *) data));
    747       1.5    chopps 
    748      1.11     veego 	    case GRFIOCGSPRITEINF:
    749       1.5    chopps 		return (cl_getspriteinfo(gp, (struct grf_spriteinfo *) data));
    750       1.5    chopps 
    751      1.11     veego 	    case GRFIOCGSPRITEMAX:
    752       1.5    chopps 		return (cl_getspritemax(gp, (struct grf_position *) data));
    753       1.1    chopps 
    754      1.11     veego 	    case GRFIOCGETCMAP:
    755       1.5    chopps 		return (cl_getcmap(gp, (struct grf_colormap *) data));
    756       1.1    chopps 
    757      1.11     veego 	    case GRFIOCPUTCMAP:
    758       1.5    chopps 		return (cl_putcmap(gp, (struct grf_colormap *) data));
    759       1.1    chopps 
    760      1.11     veego 	    case GRFIOCBITBLT:
    761       1.1    chopps 		break;
    762       1.1    chopps 
    763      1.11     veego 	    case GRFTOGGLE:
    764       1.5    chopps 		return (cl_toggle(gp, 0));
    765       1.1    chopps 
    766      1.11     veego 	    case GRFIOCSETMON:
    767       1.5    chopps 		return (cl_setmonitor(gp, (struct grfvideo_mode *) data));
    768       1.5    chopps 
    769      1.11     veego             case GRFIOCBLANK:
    770       1.5    chopps                 return (cl_blank(gp, (int *)data));
    771       1.5    chopps 
    772       1.5    chopps 	}
    773       1.5    chopps 	return (EINVAL);
    774       1.5    chopps }
    775       1.5    chopps 
    776       1.5    chopps int
    777       1.5    chopps cl_getmousepos(gp, data)
    778       1.5    chopps 	struct grf_softc *gp;
    779       1.5    chopps 	struct grf_position *data;
    780       1.5    chopps {
    781       1.5    chopps 	data->x = cl_cursprite.pos.x;
    782       1.5    chopps 	data->y = cl_cursprite.pos.y;
    783       1.5    chopps 	return (0);
    784       1.5    chopps }
    785       1.5    chopps 
    786       1.5    chopps void
    787       1.5    chopps cl_writesprpos(ba, x, y)
    788       1.5    chopps 	volatile char *ba;
    789       1.5    chopps 	short   x;
    790       1.5    chopps 	short   y;
    791       1.5    chopps {
    792       1.5    chopps 	/* we want to use a 16-bit write to 3c4 so no macros used */
    793       1.5    chopps 	volatile unsigned char *cwp;
    794       1.5    chopps         volatile unsigned short *wp;
    795       1.5    chopps 
    796       1.5    chopps 	cwp = ba + 0x3c4;
    797       1.5    chopps         wp = (unsigned short *)cwp;
    798       1.5    chopps 
    799      1.19     veego 	/*
    800      1.19     veego 	 * don't ask me why, but apparently you can't do a 16-bit write with
    801      1.19     veego 	 * x-position like with y-position below (dagge)
    802      1.19     veego 	 */
    803       1.5    chopps         cwp[0] = 0x10 | ((x << 5) & 0xff);
    804       1.5    chopps         cwp[1] = (x >> 3) & 0xff;
    805       1.5    chopps 
    806       1.5    chopps         *wp = 0x1100 | ((y & 7) << 13) | ((y >> 3) & 0xff);
    807       1.5    chopps }
    808       1.5    chopps 
    809       1.5    chopps void
    810       1.5    chopps writeshifted(to, shiftx, shifty)
    811       1.9     veego 	volatile char *to;
    812       1.5    chopps 	char    shiftx;
    813       1.5    chopps 	char    shifty;
    814       1.5    chopps {
    815      1.22     veego 	int y;
    816       1.5    chopps 	unsigned long long *tptr, *iptr, *mptr, line;
    817       1.5    chopps 
    818       1.5    chopps 	tptr = (unsigned long long *) to;
    819       1.5    chopps         iptr = (unsigned long long *) cl_cursprite.image;
    820       1.5    chopps         mptr = (unsigned long long *) cl_cursprite.mask;
    821       1.5    chopps 
    822       1.5    chopps         shiftx = shiftx < 0 ? 0 : shiftx;
    823       1.5    chopps         shifty = shifty < 0 ? 0 : shifty;
    824       1.5    chopps 
    825       1.5    chopps         /* start reading shifty lines down, and
    826       1.5    chopps          * shift each line in by shiftx
    827       1.5    chopps          */
    828       1.5    chopps         for (y = shifty; y < 64; y++) {
    829       1.5    chopps 
    830       1.5    chopps                 /* image */
    831       1.5    chopps                 line = iptr[y];
    832       1.5    chopps 		*tptr++ = line << shiftx;
    833       1.5    chopps 
    834       1.5    chopps                 /* mask */
    835       1.5    chopps                 line = mptr[y];
    836       1.5    chopps 		*tptr++ = line << shiftx;
    837       1.5    chopps 	}
    838       1.5    chopps 
    839       1.5    chopps         /* clear the remainder */
    840       1.5    chopps         for (y = shifty; y > 0; y--) {
    841       1.5    chopps                 *tptr++ = 0;
    842       1.5    chopps                 *tptr++ = 0;
    843       1.5    chopps         }
    844       1.5    chopps }
    845       1.5    chopps 
    846       1.5    chopps int
    847       1.5    chopps cl_setmousepos(gp, data)
    848       1.5    chopps 	struct grf_softc *gp;
    849       1.5    chopps 	struct grf_position *data;
    850       1.5    chopps {
    851       1.5    chopps 	volatile char *ba = gp->g_regkva;
    852       1.9     veego         short rx, ry, prx, pry;
    853       1.9     veego #ifdef CL_SHIFTSPRITE
    854       1.5    chopps 	volatile char *fb = gp->g_fbkva;
    855       1.5    chopps         volatile char *sprite = fb + (cl_fbsize - 1024);
    856       1.9     veego #endif
    857       1.5    chopps 
    858       1.5    chopps         /* no movement */
    859       1.5    chopps 	if (cl_cursprite.pos.x == data->x && cl_cursprite.pos.y == data->y)
    860       1.5    chopps 		return (0);
    861       1.5    chopps 
    862       1.5    chopps         /* current and previous real coordinates */
    863       1.5    chopps 	rx = data->x - cl_cursprite.hot.x;
    864       1.5    chopps 	ry = data->y - cl_cursprite.hot.y;
    865       1.5    chopps 	prx = cl_cursprite.pos.x - cl_cursprite.hot.x;
    866       1.5    chopps 	pry = cl_cursprite.pos.y - cl_cursprite.hot.y;
    867       1.5    chopps 
    868      1.19     veego         /*
    869      1.19     veego 	 * if we are/were on an edge, create (un)shifted bitmap --
    870       1.5    chopps          * ripped out optimization (not extremely worthwhile,
    871       1.5    chopps          * and kind of buggy anyhow).
    872       1.5    chopps          */
    873       1.5    chopps #ifdef CL_SHIFTSPRITE
    874       1.5    chopps         if (rx < 0 || ry < 0 || prx < 0 || pry < 0) {
    875       1.5    chopps                 writeshifted(sprite, rx < 0 ? -rx : 0, ry < 0 ? -ry : 0);
    876       1.5    chopps         }
    877       1.5    chopps #endif
    878       1.5    chopps 
    879       1.5    chopps         /* do movement, save position */
    880       1.5    chopps         cl_writesprpos(ba, rx < 0 ? 0 : rx, ry < 0 ? 0 : ry);
    881       1.5    chopps 	cl_cursprite.pos.x = data->x;
    882       1.5    chopps 	cl_cursprite.pos.y = data->y;
    883       1.5    chopps 
    884       1.5    chopps 	return (0);
    885       1.5    chopps }
    886       1.5    chopps 
    887       1.5    chopps int
    888       1.5    chopps cl_getspriteinfo(gp, data)
    889       1.5    chopps 	struct grf_softc *gp;
    890       1.5    chopps 	struct grf_spriteinfo *data;
    891       1.5    chopps {
    892       1.5    chopps 	copyout(&cl_cursprite, data, sizeof(struct grf_spriteinfo));
    893       1.5    chopps 	copyout(cl_cursprite.image, data->image, 64 * 8);
    894       1.5    chopps 	copyout(cl_cursprite.mask, data->mask, 64 * 8);
    895       1.5    chopps 	return (0);
    896       1.5    chopps }
    897       1.5    chopps 
    898      1.14   thorpej static int
    899       1.5    chopps cl_setspriteinfo(gp, data)
    900       1.5    chopps 	struct grf_softc *gp;
    901       1.5    chopps 	struct grf_spriteinfo *data;
    902       1.5    chopps {
    903       1.5    chopps 	volatile unsigned char *ba = gp->g_regkva, *fb = gp->g_fbkva;
    904       1.5    chopps         volatile char *sprite = fb + (cl_fbsize - 1024);
    905       1.5    chopps 
    906       1.5    chopps 	if (data->set & GRFSPRSET_SHAPE) {
    907       1.5    chopps 
    908       1.5    chopps                 short dsx, dsy, i;
    909       1.5    chopps                 unsigned long *di, *dm, *si, *sm;
    910       1.5    chopps                 unsigned long ssi[128], ssm[128];
    911       1.5    chopps                 struct grf_position gpos;
    912       1.5    chopps 
    913       1.5    chopps 
    914       1.5    chopps                 /* check for a too large sprite (no clipping!) */
    915       1.5    chopps                 dsy = data->size.y;
    916       1.5    chopps                 dsx = data->size.x;
    917       1.5    chopps                 if (dsy > 64 || dsx > 64)
    918       1.5    chopps                         return(EINVAL);
    919       1.5    chopps 
    920       1.5    chopps                 /* prepare destination */
    921       1.5    chopps                 di = (unsigned long *)cl_cursprite.image;
    922       1.5    chopps                 dm = (unsigned long *)cl_cursprite.mask;
    923       1.5    chopps                 cl_memset((unsigned char *)di, 0, 8*64);
    924       1.5    chopps                 cl_memset((unsigned char *)dm, 0, 8*64);
    925       1.5    chopps 
    926       1.5    chopps                 /* two alternatives:  64 across, then it's
    927       1.5    chopps                  * the same format we use, just copy.  Otherwise,
    928       1.5    chopps                  * copy into tmp buf and recopy skipping the
    929       1.5    chopps                  * unused 32 bits.
    930       1.5    chopps                  */
    931       1.5    chopps                 if ((dsx - 1) / 32) {
    932       1.5    chopps                         copyin(data->image, di, 8 * dsy);
    933       1.5    chopps                         copyin(data->mask, dm, 8 * dsy);
    934       1.5    chopps                 } else {
    935       1.5    chopps                         si = ssi; sm = ssm;
    936       1.5    chopps                         copyin(data->image, si, 4 * dsy);
    937       1.5    chopps                         copyin(data->mask, sm, 4 * dsy);
    938       1.5    chopps                         for (i = 0; i < dsy; i++) {
    939       1.5    chopps                                 *di = *si++;
    940       1.5    chopps                                 *dm = *sm++;
    941       1.5    chopps                                 di += 2;
    942       1.5    chopps                                 dm += 2;
    943       1.5    chopps                         }
    944       1.5    chopps                 }
    945       1.5    chopps 
    946       1.5    chopps                 /* set size */
    947       1.5    chopps 		cl_cursprite.size.x = data->size.x;
    948       1.5    chopps 		cl_cursprite.size.y = data->size.y;
    949       1.5    chopps 
    950       1.5    chopps                 /* forcably load into board */
    951       1.5    chopps                 gpos.x = cl_cursprite.pos.x;
    952       1.5    chopps                 gpos.y = cl_cursprite.pos.y;
    953       1.5    chopps                 cl_cursprite.pos.x = -1;
    954       1.5    chopps                 cl_cursprite.pos.y = -1;
    955       1.5    chopps                 writeshifted(sprite, 0, 0);
    956       1.5    chopps                 cl_setmousepos(gp, &gpos);
    957       1.5    chopps 
    958       1.5    chopps 	}
    959       1.5    chopps 	if (data->set & GRFSPRSET_HOT) {
    960       1.5    chopps 
    961       1.5    chopps 		cl_cursprite.hot = data->hot;
    962       1.5    chopps 
    963       1.5    chopps 	}
    964       1.5    chopps 	if (data->set & GRFSPRSET_CMAP) {
    965       1.5    chopps 
    966       1.5    chopps 		u_char  red[2], green[2], blue[2];
    967       1.5    chopps 
    968       1.5    chopps 		copyin(data->cmap.red, red, 2);
    969       1.5    chopps 		copyin(data->cmap.green, green, 2);
    970       1.5    chopps 		copyin(data->cmap.blue, blue, 2);
    971       1.5    chopps 		bcopy(red, cl_cursprite.cmap.red, 2);
    972       1.5    chopps 		bcopy(green, cl_cursprite.cmap.green, 2);
    973       1.5    chopps 		bcopy(blue, cl_cursprite.cmap.blue, 2);
    974       1.5    chopps 
    975       1.5    chopps                 /* enable and load colors 256 & 257 */
    976       1.5    chopps 		WSeq(ba, SEQ_ID_CURSOR_ATTR, 0x06);
    977       1.5    chopps 
    978       1.5    chopps                 /* 256 */
    979       1.5    chopps 		vgaw(ba, VDAC_ADDRESS_W, 0x00);
    980       1.5    chopps 		if (cltype == PICASSO) {
    981       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (red[0] >> 2));
    982       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (green[0] >> 2));
    983       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (blue[0] >> 2));
    984       1.5    chopps 		} else {
    985       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (blue[0] >> 2));
    986       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (green[0] >> 2));
    987       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (red[0] >> 2));
    988       1.5    chopps 		}
    989       1.5    chopps 
    990       1.5    chopps                 /* 257 */
    991       1.5    chopps 		vgaw(ba, VDAC_ADDRESS_W, 0x0f);
    992       1.5    chopps 		if (cltype == PICASSO) {
    993       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (red[1] >> 2));
    994       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (green[1] >> 2));
    995       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (blue[1] >> 2));
    996       1.5    chopps 		} else {
    997       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (blue[1] >> 2));
    998       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (green[1] >> 2));
    999       1.5    chopps 			vgaw(ba, VDAC_DATA, (u_char) (red[1] >> 2));
   1000       1.5    chopps 		}
   1001       1.5    chopps 
   1002       1.5    chopps                 /* turn on/off sprite */
   1003       1.5    chopps 		if (cl_cursprite.enable) {
   1004       1.5    chopps 			WSeq(ba, SEQ_ID_CURSOR_ATTR, 0x05);
   1005       1.5    chopps 		} else {
   1006       1.5    chopps 			WSeq(ba, SEQ_ID_CURSOR_ATTR, 0x04);
   1007       1.5    chopps 		}
   1008       1.5    chopps 
   1009       1.5    chopps 	}
   1010       1.5    chopps 	if (data->set & GRFSPRSET_ENABLE) {
   1011       1.5    chopps 
   1012       1.5    chopps 		if (data->enable == 1) {
   1013       1.5    chopps 			WSeq(ba, SEQ_ID_CURSOR_ATTR, 0x05);
   1014       1.5    chopps 			cl_cursprite.enable = 1;
   1015       1.5    chopps 		} else {
   1016       1.5    chopps 			WSeq(ba, SEQ_ID_CURSOR_ATTR, 0x04);
   1017       1.5    chopps 			cl_cursprite.enable = 0;
   1018       1.5    chopps 		}
   1019       1.5    chopps 
   1020       1.5    chopps 	}
   1021       1.5    chopps 	if (data->set & GRFSPRSET_POS) {
   1022       1.5    chopps 
   1023       1.5    chopps                 /* force placement */
   1024       1.5    chopps                 cl_cursprite.pos.x = -1;
   1025       1.5    chopps                 cl_cursprite.pos.y = -1;
   1026       1.1    chopps 
   1027       1.5    chopps                 /* do it */
   1028       1.5    chopps                 cl_setmousepos(gp, &data->pos);
   1029       1.5    chopps 
   1030       1.1    chopps 	}
   1031       1.5    chopps 	return (0);
   1032       1.5    chopps }
   1033       1.5    chopps 
   1034      1.14   thorpej static int
   1035       1.5    chopps cl_getspritemax(gp, data)
   1036       1.5    chopps 	struct grf_softc *gp;
   1037       1.5    chopps 	struct grf_position *data;
   1038       1.5    chopps {
   1039       1.5    chopps 	if (gp->g_display.gd_planes == 24)
   1040       1.5    chopps 		return (EINVAL);
   1041       1.5    chopps 	data->x = 64;
   1042       1.5    chopps 	data->y = 64;
   1043       1.5    chopps 	return (0);
   1044       1.1    chopps }
   1045       1.1    chopps 
   1046       1.1    chopps int
   1047       1.1    chopps cl_setmonitor(gp, gv)
   1048       1.1    chopps 	struct grf_softc *gp;
   1049       1.1    chopps 	struct grfvideo_mode *gv;
   1050       1.1    chopps {
   1051       1.5    chopps 	struct grfvideo_mode *md;
   1052       1.5    chopps 
   1053       1.5    chopps         if (!cl_mondefok(gv))
   1054       1.5    chopps                 return(EINVAL);
   1055       1.1    chopps 
   1056       1.1    chopps #ifdef CL5426CONSOLE
   1057       1.1    chopps 	/* handle interactive setting of console mode */
   1058       1.5    chopps 	if (gv->mode_num == 255) {
   1059       1.1    chopps 		bcopy(gv, &clconsole_mode.gv, sizeof(struct grfvideo_mode));
   1060      1.20     veego 		clconsole_mode.gv.hblank_start /= 8;
   1061      1.20     veego 		clconsole_mode.gv.hsync_start /= 8;
   1062      1.20     veego 		clconsole_mode.gv.hsync_stop /= 8;
   1063      1.20     veego 		clconsole_mode.gv.htotal /= 8;
   1064       1.1    chopps 		clconsole_mode.rows = gv->disp_height / clconsole_mode.fy;
   1065       1.1    chopps 		clconsole_mode.cols = gv->disp_width / clconsole_mode.fx;
   1066       1.1    chopps 		if (!(gp->g_flags & GF_GRFON))
   1067       1.5    chopps 			cl_load_mon(gp, &clconsole_mode);
   1068       1.1    chopps 		ite_reinit(gp->g_itedev);
   1069       1.5    chopps 		return (0);
   1070       1.1    chopps 	}
   1071       1.1    chopps #endif
   1072       1.1    chopps 
   1073       1.5    chopps 	md = monitor_def + (gv->mode_num - 1);
   1074       1.5    chopps 	bcopy(gv, md, sizeof(struct grfvideo_mode));
   1075       1.5    chopps 
   1076      1.20     veego 	/* adjust pixel oriented values to internal rep. */
   1077       1.1    chopps 
   1078      1.20     veego 	md->hblank_start /= 8;
   1079      1.20     veego 	md->hsync_start /= 8;
   1080      1.20     veego 	md->hsync_stop /= 8;
   1081      1.20     veego 	md->htotal /= 8;
   1082       1.1    chopps 
   1083       1.5    chopps 	return (0);
   1084       1.1    chopps }
   1085       1.1    chopps 
   1086       1.1    chopps int
   1087       1.5    chopps cl_getcmap(gfp, cmap)
   1088       1.1    chopps 	struct grf_softc *gfp;
   1089       1.1    chopps 	struct grf_colormap *cmap;
   1090       1.1    chopps {
   1091       1.1    chopps 	volatile unsigned char *ba;
   1092       1.5    chopps 	u_char  red[256], green[256], blue[256], *rp, *gp, *bp;
   1093       1.5    chopps 	short   x;
   1094       1.5    chopps 	int     error;
   1095       1.1    chopps 
   1096       1.1    chopps 	if (cmap->count == 0 || cmap->index >= 256)
   1097       1.1    chopps 		return 0;
   1098       1.1    chopps 
   1099       1.1    chopps 	if (cmap->index + cmap->count > 256)
   1100       1.1    chopps 		cmap->count = 256 - cmap->index;
   1101       1.1    chopps 
   1102       1.1    chopps 	ba = gfp->g_regkva;
   1103       1.1    chopps 	/* first read colors out of the chip, then copyout to userspace */
   1104       1.6        is 	vgaw(ba, VDAC_ADDRESS_R, cmap->index);
   1105       1.1    chopps 	x = cmap->count - 1;
   1106       1.1    chopps 
   1107      1.19     veego /*
   1108      1.19     veego  * Some sort 'o Magic. Spectrum has some changes on the board to speed
   1109       1.1    chopps  * up 15 and 16Bit modes. They can access these modes with easy-to-programm
   1110       1.1    chopps  * rgbrgbrgb instead of rrrgggbbb. Side effect: when in 8Bit mode, rgb
   1111       1.1    chopps  * is swapped to bgr. I wonder if we need to check for 8Bit though, ill
   1112       1.1    chopps  */
   1113       1.1    chopps 
   1114      1.19     veego /*
   1115      1.19     veego  * The source for the above comment is somewhat unknow to me.
   1116      1.19     veego  * The Spectrum, Piccolo and PiccoloSD64 have the analog Red and Blue
   1117      1.19     veego  * lines swapped. In 24BPP this provides RGB instead of BGR as it would
   1118      1.19     veego  * be native to the chipset. This requires special programming for the
   1119      1.19     veego  * CLUT in 8BPP to compensate and avoid false colors.
   1120      1.19     veego  * I didn't find any special stuff for 15 and 16BPP though, crest.
   1121      1.19     veego  */
   1122      1.19     veego 
   1123       1.5    chopps 	switch (cltype) {
   1124      1.11     veego 	    case SPECTRUM:
   1125      1.11     veego 	    case PICCOLO:
   1126       1.5    chopps 		rp = blue + cmap->index;
   1127       1.1    chopps 		gp = green + cmap->index;
   1128       1.1    chopps 		bp = red + cmap->index;
   1129       1.1    chopps 		break;
   1130      1.11     veego 	    case PICASSO:
   1131       1.5    chopps 		rp = red + cmap->index;
   1132       1.1    chopps 		gp = green + cmap->index;
   1133       1.1    chopps 		bp = blue + cmap->index;
   1134       1.1    chopps 		break;
   1135      1.11     veego 	    default:
   1136       1.9     veego 		rp = gp = bp = 0;
   1137       1.9     veego 		break;
   1138       1.1    chopps 	}
   1139       1.1    chopps 
   1140       1.1    chopps 	do {
   1141       1.5    chopps 		*rp++ = vgar(ba, VDAC_DATA) << 2;
   1142       1.5    chopps 		*gp++ = vgar(ba, VDAC_DATA) << 2;
   1143       1.5    chopps 		*bp++ = vgar(ba, VDAC_DATA) << 2;
   1144       1.1    chopps 	} while (x-- > 0);
   1145       1.1    chopps 
   1146       1.5    chopps 	if (!(error = copyout(red + cmap->index, cmap->red, cmap->count))
   1147       1.5    chopps 	    && !(error = copyout(green + cmap->index, cmap->green, cmap->count))
   1148       1.5    chopps 	    && !(error = copyout(blue + cmap->index, cmap->blue, cmap->count)))
   1149       1.5    chopps 		return (0);
   1150       1.1    chopps 
   1151       1.5    chopps 	return (error);
   1152       1.1    chopps }
   1153       1.1    chopps 
   1154       1.1    chopps int
   1155       1.5    chopps cl_putcmap(gfp, cmap)
   1156       1.1    chopps 	struct grf_softc *gfp;
   1157       1.1    chopps 	struct grf_colormap *cmap;
   1158       1.1    chopps {
   1159       1.1    chopps 	volatile unsigned char *ba;
   1160       1.5    chopps 	u_char  red[256], green[256], blue[256], *rp, *gp, *bp;
   1161       1.5    chopps 	short   x;
   1162       1.5    chopps 	int     error;
   1163       1.1    chopps 
   1164       1.1    chopps 	if (cmap->count == 0 || cmap->index >= 256)
   1165       1.5    chopps 		return (0);
   1166       1.1    chopps 
   1167       1.1    chopps 	if (cmap->index + cmap->count > 256)
   1168       1.1    chopps 		cmap->count = 256 - cmap->index;
   1169       1.1    chopps 
   1170       1.1    chopps 	/* first copy the colors into kernelspace */
   1171       1.5    chopps 	if (!(error = copyin(cmap->red, red + cmap->index, cmap->count))
   1172       1.5    chopps 	    && !(error = copyin(cmap->green, green + cmap->index, cmap->count))
   1173       1.5    chopps 	    && !(error = copyin(cmap->blue, blue + cmap->index, cmap->count))) {
   1174       1.1    chopps 		ba = gfp->g_regkva;
   1175       1.5    chopps 		vgaw(ba, VDAC_ADDRESS_W, cmap->index);
   1176       1.1    chopps 		x = cmap->count - 1;
   1177       1.1    chopps 
   1178       1.5    chopps 		switch (cltype) {
   1179      1.11     veego 		    case SPECTRUM:
   1180      1.11     veego 		    case PICCOLO:
   1181       1.1    chopps 			rp = blue + cmap->index;
   1182       1.1    chopps 			gp = green + cmap->index;
   1183       1.1    chopps 			bp = red + cmap->index;
   1184       1.1    chopps 			break;
   1185      1.11     veego 		    case PICASSO:
   1186       1.1    chopps 			rp = red + cmap->index;
   1187       1.1    chopps 			gp = green + cmap->index;
   1188       1.1    chopps 			bp = blue + cmap->index;
   1189       1.1    chopps 			break;
   1190      1.11     veego 		    default:
   1191       1.9     veego 			rp = gp = bp = 0;
   1192       1.9     veego 			break;
   1193       1.5    chopps 		}
   1194       1.1    chopps 
   1195       1.1    chopps 		do {
   1196       1.5    chopps 			vgaw(ba, VDAC_DATA, *rp++ >> 2);
   1197       1.5    chopps 			vgaw(ba, VDAC_DATA, *gp++ >> 2);
   1198       1.5    chopps 			vgaw(ba, VDAC_DATA, *bp++ >> 2);
   1199       1.1    chopps 		} while (x-- > 0);
   1200       1.5    chopps 		return (0);
   1201       1.5    chopps 	} else
   1202       1.5    chopps 		return (error);
   1203       1.1    chopps }
   1204       1.1    chopps 
   1205       1.1    chopps 
   1206       1.1    chopps int
   1207       1.5    chopps cl_toggle(gp, wopp)
   1208       1.1    chopps 	struct grf_softc *gp;
   1209       1.5    chopps 	unsigned short wopp;	/* don't need that one yet, ill */
   1210       1.1    chopps {
   1211      1.14   thorpej 	volatile caddr_t ba;
   1212       1.1    chopps 
   1213       1.1    chopps 	ba = gp->g_regkva;
   1214       1.1    chopps 
   1215       1.1    chopps 	if (pass_toggle) {
   1216       1.1    chopps 		RegOffpass(ba);
   1217       1.1    chopps 	} else {
   1218       1.1    chopps 		RegOnpass(ba);
   1219       1.1    chopps 	}
   1220       1.5    chopps 	return (0);
   1221       1.1    chopps }
   1222       1.1    chopps 
   1223       1.1    chopps static void
   1224      1.19     veego cl_CompFQ(fq, num, denom, clkdoub)
   1225       1.5    chopps 	u_int   fq;
   1226       1.5    chopps 	u_char *num;
   1227       1.5    chopps 	u_char *denom;
   1228      1.19     veego 	u_char *clkdoub;
   1229       1.1    chopps {
   1230       1.1    chopps #define OSC     14318180
   1231       1.1    chopps /* OK, here's what we're doing here:
   1232       1.5    chopps  *
   1233       1.1    chopps  *             OSC * NUMERATOR
   1234       1.1    chopps  *      VCLK = -------------------  Hz
   1235       1.1    chopps  *             DENOMINATOR * (1+P)
   1236       1.1    chopps  *
   1237       1.1    chopps  * so we're given VCLK and we should give out some useful
   1238       1.1    chopps  * values....
   1239       1.1    chopps  *
   1240       1.5    chopps  * NUMERATOR is 7 bits wide
   1241       1.1    chopps  * DENOMINATOR is 5 bits wide with bit P in the same char as bit 0.
   1242       1.1    chopps  *
   1243       1.1    chopps  * We run through all the possible combinations and
   1244       1.1    chopps  * return the values which deviate the least from the chosen frequency.
   1245       1.5    chopps  *
   1246       1.1    chopps  */
   1247       1.1    chopps #define OSC     14318180
   1248       1.1    chopps #define count(n,d,p)    ((OSC * n)/(d * (1+p)))
   1249       1.1    chopps 
   1250       1.9     veego 	unsigned char n, d, p, minn, mind, minp = 0;
   1251       1.1    chopps 	unsigned long err, minerr;
   1252       1.1    chopps 
   1253       1.1    chopps /*
   1254       1.5    chopps numer = 0x00 - 0x7f
   1255       1.1    chopps denom = 0x00 - 0x1f (1) 0x20 - 0x3e (even)
   1256       1.1    chopps */
   1257       1.1    chopps 
   1258       1.5    chopps 	/* find lowest error in 6144 iterations. */
   1259       1.1    chopps 	minerr = fq;
   1260       1.1    chopps 	minn = 0;
   1261       1.1    chopps 	mind = 0;
   1262       1.1    chopps 	p = 0;
   1263       1.1    chopps 
   1264      1.19     veego 	if ((cl_64bit == 1) && (fq >= 86000000))
   1265      1.19     veego 	{
   1266      1.19     veego 		for (d = 1; d < 0x20; d++) {
   1267      1.19     veego 			for (n = 1; n < 0x80; n++) {
   1268      1.19     veego 				err = abs(count(n, d, 0) - fq);
   1269      1.19     veego 				if (err < minerr) {
   1270      1.19     veego 					minerr = err;
   1271      1.19     veego 					minn = n;
   1272      1.19     veego 					mind = d;
   1273      1.19     veego 					minp = 1;
   1274      1.19     veego 				}
   1275       1.1    chopps 			}
   1276       1.1    chopps 		}
   1277      1.19     veego 		*clkdoub = 1;
   1278      1.19     veego 	}
   1279      1.19     veego 	else {
   1280      1.19     veego 		for (d = 1; d < 0x20; d++) {
   1281      1.19     veego 			for (n = 1; n < 0x80; n++) {
   1282      1.19     veego 				err = abs(count(n, d, p) - fq);
   1283      1.19     veego 				if (err < minerr) {
   1284      1.19     veego 					minerr = err;
   1285      1.19     veego 					minn = n;
   1286      1.19     veego 					mind = d;
   1287      1.19     veego 					minp = p;
   1288      1.19     veego 				}
   1289      1.19     veego 			}
   1290      1.19     veego 			if (d == 0x1f && p == 0) {
   1291      1.19     veego 				p = 1;
   1292      1.19     veego 				d = 0x0f;
   1293      1.19     veego 			}
   1294       1.1    chopps 		}
   1295      1.19     veego 		*clkdoub = 0;
   1296       1.1    chopps 	}
   1297       1.1    chopps 
   1298       1.1    chopps 	*num = minn;
   1299       1.1    chopps 	*denom = (mind << 1) | minp;
   1300       1.1    chopps 	if (minerr > 500000)
   1301      1.16  christos 		printf("Warning: CompFQ minimum error = %ld\n", minerr);
   1302       1.1    chopps 	return;
   1303       1.1    chopps }
   1304       1.1    chopps 
   1305       1.1    chopps int
   1306       1.5    chopps cl_mondefok(gv)
   1307       1.5    chopps 	struct grfvideo_mode *gv;
   1308       1.1    chopps {
   1309       1.5    chopps         unsigned long maxpix;
   1310       1.5    chopps 
   1311       1.5    chopps 	if (gv->mode_num < 1 || gv->mode_num > monitor_def_max)
   1312       1.5    chopps                 if (gv->mode_num != 255 || gv->depth != 4)
   1313       1.5    chopps                         return(0);
   1314       1.1    chopps 
   1315       1.5    chopps 	switch (gv->depth) {
   1316      1.11     veego 	    case 4:
   1317       1.5    chopps                 if (gv->mode_num != 255)
   1318       1.5    chopps                         return(0);
   1319      1.11     veego 	    case 1:
   1320      1.11     veego 	    case 8:
   1321      1.19     veego 		maxpix = cl_maxpixelclock;
   1322      1.19     veego 		if (cl_64bit == 1)
   1323      1.19     veego 		{
   1324      1.19     veego 			if (cltype == PICASSO) /* Picasso IV */
   1325      1.19     veego 				maxpix = 135000000;
   1326      1.19     veego 			else                   /* Piccolo SD64 */
   1327      1.19     veego 				maxpix = 110000000;
   1328      1.19     veego 		}
   1329       1.5    chopps                 break;
   1330      1.11     veego 	    case 15:
   1331      1.11     veego 	    case 16:
   1332      1.19     veego 		if (cl_64bit == 1)
   1333      1.19     veego 	                maxpix = 85000000;
   1334      1.19     veego 		else
   1335      1.19     veego 	                maxpix = cl_maxpixelclock - (cl_maxpixelclock / 3);
   1336       1.5    chopps                 break;
   1337      1.11     veego 	    case 24:
   1338      1.19     veego 		if ((cltype == PICASSO) && (cl_64bit == 1))
   1339      1.19     veego 	                maxpix = 85000000;
   1340      1.19     veego 		else
   1341      1.19     veego 	                maxpix = cl_maxpixelclock / 3;
   1342      1.19     veego                 break;
   1343      1.19     veego 	    case 32:
   1344      1.19     veego 		if ((cltype == PICCOLO) && (cl_64bit == 1))
   1345      1.19     veego 	                maxpix = 50000000;
   1346      1.19     veego 		else
   1347      1.19     veego 	                maxpix = 0;
   1348       1.5    chopps                 break;
   1349       1.1    chopps 	default:
   1350      1.20     veego 		printf("grfcl: Illegal depth in mode %d\n",
   1351      1.20     veego 			(int) gv->mode_num);
   1352       1.5    chopps 		return (0);
   1353       1.1    chopps 	}
   1354      1.20     veego 
   1355      1.20     veego         if (gv->pixel_clock > maxpix) {
   1356      1.20     veego 		printf("grfcl: Pixelclock too high in mode %d\n",
   1357      1.20     veego 			(int) gv->mode_num);
   1358       1.5    chopps                 return (0);
   1359      1.20     veego 	}
   1360      1.20     veego 
   1361      1.20     veego 	if (gv->disp_flags & GRF_FLAGS_SYNC_ON_GREEN) {
   1362      1.20     veego 		printf("grfcl: sync-on-green is not supported\n");
   1363      1.20     veego 		return (0);
   1364      1.20     veego 	}
   1365      1.20     veego 
   1366       1.5    chopps         return (1);
   1367       1.1    chopps }
   1368       1.1    chopps 
   1369       1.1    chopps int
   1370       1.1    chopps cl_load_mon(gp, md)
   1371       1.1    chopps 	struct grf_softc *gp;
   1372       1.1    chopps 	struct grfcltext_mode *md;
   1373       1.1    chopps {
   1374       1.1    chopps 	struct grfvideo_mode *gv;
   1375       1.1    chopps 	struct grfinfo *gi;
   1376      1.14   thorpej 	volatile caddr_t ba, fb;
   1377      1.19     veego 	unsigned char num0, denom0, clkdoub;
   1378       1.5    chopps 	unsigned short HT, HDE, HBS, HBE, HSS, HSE, VDE, VBS, VBE, VSS,
   1379       1.5    chopps 	        VSE, VT;
   1380      1.20     veego 	int	clkmul, offsmul, clkmode;
   1381      1.20     veego 	int	vmul;
   1382      1.11     veego 	int	sr15;
   1383      1.20     veego 	unsigned char hvsync_pulse;
   1384      1.20     veego 	char    TEXT;
   1385       1.1    chopps 
   1386       1.1    chopps 	/* identity */
   1387       1.1    chopps 	gv = &md->gv;
   1388       1.1    chopps 	TEXT = (gv->depth == 4);
   1389       1.1    chopps 
   1390       1.1    chopps 	if (!cl_mondefok(gv)) {
   1391      1.20     veego 		printf("grfcl: Monitor definition not ok\n");
   1392       1.5    chopps 		return (0);
   1393       1.1    chopps 	}
   1394      1.20     veego 
   1395       1.1    chopps 	ba = gp->g_regkva;
   1396       1.1    chopps 	fb = gp->g_fbkva;
   1397       1.1    chopps 
   1398       1.5    chopps 	/* provide all needed information in grf device-independant locations */
   1399       1.5    chopps 	gp->g_data = (caddr_t) gv;
   1400       1.1    chopps 	gi = &gp->g_display;
   1401      1.19     veego 	gi->gd_regaddr = (caddr_t) kvtop(ba);
   1402       1.5    chopps 	gi->gd_regsize = 64 * 1024;
   1403       1.5    chopps 	gi->gd_fbaddr = (caddr_t) kvtop(fb);
   1404       1.5    chopps 	gi->gd_fbsize = cl_fbsize;
   1405       1.5    chopps 	gi->gd_colors = 1 << gv->depth;
   1406       1.5    chopps 	gi->gd_planes = gv->depth;
   1407       1.5    chopps 	gi->gd_fbwidth = gv->disp_width;
   1408       1.5    chopps 	gi->gd_fbheight = gv->disp_height;
   1409       1.5    chopps 	gi->gd_fbx = 0;
   1410       1.5    chopps 	gi->gd_fby = 0;
   1411       1.1    chopps 	if (TEXT) {
   1412       1.5    chopps 		gi->gd_dwidth = md->fx * md->cols;
   1413       1.5    chopps 		gi->gd_dheight = md->fy * md->rows;
   1414       1.1    chopps 	} else {
   1415       1.5    chopps 		gi->gd_dwidth = gv->disp_width;
   1416       1.5    chopps 		gi->gd_dheight = gv->disp_height;
   1417       1.1    chopps 	}
   1418       1.5    chopps 	gi->gd_dx = 0;
   1419       1.5    chopps 	gi->gd_dy = 0;
   1420       1.1    chopps 
   1421       1.1    chopps 	/* get display mode parameters */
   1422       1.1    chopps 
   1423       1.1    chopps 	HBS = gv->hblank_start;
   1424       1.1    chopps 	HSS = gv->hsync_start;
   1425       1.1    chopps 	HSE = gv->hsync_stop;
   1426      1.20     veego 	HBE = gv->htotal - 1;
   1427       1.5    chopps 	HT = gv->htotal;
   1428       1.1    chopps 	VBS = gv->vblank_start;
   1429       1.1    chopps 	VSS = gv->vsync_start;
   1430       1.1    chopps 	VSE = gv->vsync_stop;
   1431      1.20     veego 	VBE = gv->vtotal - 1;
   1432       1.5    chopps 	VT = gv->vtotal;
   1433       1.1    chopps 
   1434       1.5    chopps 	if (TEXT)
   1435       1.5    chopps 		HDE = ((gv->disp_width + md->fx - 1) / md->fx) - 1;
   1436       1.1    chopps 	else
   1437       1.5    chopps 		HDE = (gv->disp_width + 3) / 8 - 1;	/* HBS; */
   1438       1.5    chopps 	VDE = gv->disp_height - 1;
   1439       1.1    chopps 
   1440       1.1    chopps 	/* adjustments */
   1441      1.19     veego 	switch (gv->depth) {
   1442      1.19     veego 	    case 8:
   1443      1.19     veego 		clkmul = 1;
   1444      1.19     veego 		offsmul = 1;
   1445      1.19     veego 		clkmode = 0x0;
   1446      1.19     veego 		break;
   1447      1.19     veego 	    case 15:
   1448      1.19     veego 	    case 16:
   1449      1.19     veego 		clkmul = 1;
   1450      1.19     veego 		offsmul = 2;
   1451      1.19     veego 		clkmode = 0x6;
   1452      1.19     veego 		break;
   1453      1.19     veego 	    case 24:
   1454      1.19     veego 		if ((cltype == PICASSO) && (cl_64bit == 1))	/* Picasso IV */
   1455      1.19     veego 			clkmul = 1;
   1456      1.19     veego 		else
   1457      1.19     veego 			clkmul = 3;
   1458      1.19     veego 		offsmul = 3;
   1459      1.19     veego 		clkmode = 0x4;
   1460      1.19     veego 		break;
   1461      1.19     veego 	    case 32:
   1462      1.19     veego 		clkmul = 1;
   1463      1.19     veego 		offsmul = 2;
   1464      1.19     veego 		clkmode = 0x8;
   1465      1.19     veego 		break;
   1466      1.19     veego 	    default:
   1467      1.19     veego 		clkmul = 1;
   1468      1.19     veego 		offsmul = 1;
   1469      1.19     veego 		clkmode = 0x0;
   1470      1.19     veego 		break;
   1471      1.19     veego 	}
   1472       1.1    chopps 
   1473      1.20     veego 	if ((VT > 1023) && (!(gv->disp_flags & GRF_FLAGS_LACE))) {
   1474      1.19     veego 		WCrt(ba, CRT_ID_MODE_CONTROL, 0xe7);
   1475      1.20     veego 	} else
   1476      1.19     veego 		WCrt(ba, CRT_ID_MODE_CONTROL, 0xe3);
   1477      1.19     veego 
   1478      1.20     veego 	vmul = 2;
   1479      1.20     veego 	if ((VT > 1023) || (gv->disp_flags & GRF_FLAGS_LACE))
   1480      1.20     veego 		vmul = 1;
   1481      1.20     veego 	if (gv->disp_flags & GRF_FLAGS_DBLSCAN)
   1482      1.20     veego 		vmul = 4;
   1483      1.20     veego 
   1484      1.20     veego 	VDE = VDE * vmul / 2;
   1485      1.20     veego 	VBS = VBS * vmul / 2;
   1486      1.20     veego 	VSS = VSS * vmul / 2;
   1487      1.20     veego 	VSE = VSE * vmul / 2;
   1488      1.20     veego 	VBE = VBE * vmul / 2;
   1489      1.20     veego 	VT  = VT * vmul / 2;
   1490      1.20     veego 
   1491       1.1    chopps 	WSeq(ba, SEQ_ID_MEMORY_MODE, (TEXT || (gv->depth == 1)) ? 0x06 : 0x0e);
   1492      1.19     veego 	if (cl_64bit == 1) {
   1493      1.11     veego 	    if (TEXT || (gv->depth == 1))
   1494      1.19     veego 		sr15 = 0xd0;
   1495      1.11     veego 	    else
   1496      1.11     veego 		sr15 = ((cl_fbsize / 0x100000 == 2) ? 0x38 : 0xb8);
   1497      1.11     veego 	    WSeq(ba, SEQ_ID_CONF_RBACK, 0x00);
   1498      1.11     veego 	} else {
   1499      1.17     veego 		sr15 = (TEXT || (gv->depth == 1)) ? 0xd0 : 0xb0;
   1500      1.19     veego 		sr15 &= ((cl_fbsize / 0x100000) == 2) ? 0xff : 0x7f;
   1501      1.11     veego 	}
   1502      1.11     veego 	WSeq(ba, SEQ_ID_DRAM_CNTL, sr15);
   1503       1.5    chopps 	WGfx(ba, GCT_ID_READ_MAP_SELECT, 0x00);
   1504       1.1    chopps 	WSeq(ba, SEQ_ID_MAP_MASK, (gv->depth == 1) ? 0x01 : 0xff);
   1505       1.5    chopps 	WSeq(ba, SEQ_ID_CHAR_MAP_SELECT, 0x00);
   1506       1.1    chopps 
   1507       1.1    chopps 	/* Set clock */
   1508       1.1    chopps 
   1509      1.19     veego 	cl_CompFQ(gv->pixel_clock * clkmul, &num0, &denom0, &clkdoub);
   1510      1.19     veego 
   1511      1.20     veego 	/* Horizontal/Vertical Sync Pulse */
   1512      1.20     veego 	hvsync_pulse = vgar(ba, GREG_MISC_OUTPUT_R);
   1513      1.20     veego 	if (gv->disp_flags & GRF_FLAGS_PHSYNC)
   1514      1.20     veego 		hvsync_pulse &= ~0x40;
   1515      1.20     veego 	else
   1516      1.20     veego 		hvsync_pulse |= 0x40;
   1517      1.20     veego 	if (gv->disp_flags & GRF_FLAGS_PVSYNC)
   1518      1.20     veego 		hvsync_pulse &= ~0x80;
   1519      1.20     veego 	else
   1520      1.20     veego 		hvsync_pulse |= 0x80;
   1521      1.20     veego 	vgaw(ba, GREG_MISC_OUTPUT_W, hvsync_pulse);
   1522      1.20     veego 
   1523      1.19     veego 	if (clkdoub) {
   1524      1.19     veego 		HDE /= 2;
   1525      1.19     veego 		HBS /= 2;
   1526      1.19     veego 		HSS /= 2;
   1527      1.19     veego 		HSE /= 2;
   1528      1.19     veego 		HBE /= 2;
   1529      1.19     veego 		HT  /= 2;
   1530      1.19     veego 		clkmode = 0x6;
   1531      1.19     veego 	}
   1532      1.19     veego 
   1533      1.11     veego 	WSeq(ba, SEQ_ID_VCLK_3_NUM, num0);
   1534      1.11     veego 	WSeq(ba, SEQ_ID_VCLK_3_DENOM, denom0);
   1535       1.1    chopps 
   1536       1.1    chopps 	/* load display parameters into board */
   1537       1.1    chopps 
   1538       1.1    chopps 	WCrt(ba, CRT_ID_HOR_TOTAL, HT);
   1539       1.5    chopps 	WCrt(ba, CRT_ID_HOR_DISP_ENA_END, ((HDE >= HBS) ? HBS - 1 : HDE));
   1540       1.1    chopps 	WCrt(ba, CRT_ID_START_HOR_BLANK, HBS);
   1541       1.5    chopps 	WCrt(ba, CRT_ID_END_HOR_BLANK, (HBE & 0x1f) | 0x80);	/* | 0x80? */
   1542       1.1    chopps 	WCrt(ba, CRT_ID_START_HOR_RETR, HSS);
   1543       1.1    chopps 	WCrt(ba, CRT_ID_END_HOR_RETR,
   1544       1.5    chopps 	    (HSE & 0x1f) |
   1545       1.5    chopps 	    ((HBE & 0x20) ? 0x80 : 0x00));
   1546       1.1    chopps 	WCrt(ba, CRT_ID_VER_TOTAL, VT);
   1547       1.1    chopps 	WCrt(ba, CRT_ID_OVERFLOW,
   1548       1.1    chopps 	    0x10 |
   1549       1.5    chopps 	    ((VT & 0x100) ? 0x01 : 0x00) |
   1550       1.1    chopps 	    ((VDE & 0x100) ? 0x02 : 0x00) |
   1551       1.1    chopps 	    ((VSS & 0x100) ? 0x04 : 0x00) |
   1552       1.1    chopps 	    ((VBS & 0x100) ? 0x08 : 0x00) |
   1553       1.5    chopps 	    ((VT & 0x200) ? 0x20 : 0x00) |
   1554       1.1    chopps 	    ((VDE & 0x200) ? 0x40 : 0x00) |
   1555       1.5    chopps 	    ((VSS & 0x200) ? 0x80 : 0x00));
   1556       1.1    chopps 
   1557       1.1    chopps 	WCrt(ba, CRT_ID_CHAR_HEIGHT,
   1558       1.5    chopps 	    0x40 |		/* TEXT ? 0x00 ??? */
   1559      1.20     veego 	    ((gv->disp_flags & GRF_FLAGS_DBLSCAN) ? 0x80 : 0x00) |
   1560       1.1    chopps 	    ((VBS & 0x200) ? 0x20 : 0x00) |
   1561       1.5    chopps 	    (TEXT ? ((md->fy - 1) & 0x1f) : 0x00));
   1562       1.1    chopps 
   1563       1.1    chopps 	/* text cursor */
   1564       1.1    chopps 
   1565       1.1    chopps 	if (TEXT) {
   1566       1.5    chopps #if CL_ULCURSOR
   1567       1.1    chopps 		WCrt(ba, CRT_ID_CURSOR_START, (md->fy & 0x1f) - 2);
   1568       1.1    chopps 		WCrt(ba, CRT_ID_CURSOR_END, (md->fy & 0x1f) - 1);
   1569       1.1    chopps #else
   1570       1.1    chopps 		WCrt(ba, CRT_ID_CURSOR_START, 0x00);
   1571       1.1    chopps 		WCrt(ba, CRT_ID_CURSOR_END, md->fy & 0x1f);
   1572       1.1    chopps #endif
   1573       1.9     veego 		WCrt(ba, CRT_ID_UNDERLINE_LOC, (md->fy - 1) & 0x1f);
   1574       1.1    chopps 
   1575       1.1    chopps 		WCrt(ba, CRT_ID_CURSOR_LOC_HIGH, 0x00);
   1576       1.5    chopps 		WCrt(ba, CRT_ID_CURSOR_LOC_LOW, 0x00);
   1577       1.1    chopps 	}
   1578       1.1    chopps 	WCrt(ba, CRT_ID_START_ADDR_HIGH, 0x00);
   1579       1.1    chopps 	WCrt(ba, CRT_ID_START_ADDR_LOW, 0x00);
   1580       1.1    chopps 
   1581       1.1    chopps 	WCrt(ba, CRT_ID_START_VER_RETR, VSS);
   1582      1.14   thorpej 	WCrt(ba, CRT_ID_END_VER_RETR, (VSE & 0x0f) | 0x20);
   1583       1.1    chopps 	WCrt(ba, CRT_ID_VER_DISP_ENA_END, VDE);
   1584       1.1    chopps 	WCrt(ba, CRT_ID_START_VER_BLANK, VBS);
   1585       1.1    chopps 	WCrt(ba, CRT_ID_END_VER_BLANK, VBE);
   1586       1.1    chopps 
   1587       1.1    chopps 	WCrt(ba, CRT_ID_LINE_COMPARE, 0xff);
   1588       1.5    chopps 	WCrt(ba, CRT_ID_LACE_END, HT / 2);	/* MW/16 */
   1589       1.1    chopps 	WCrt(ba, CRT_ID_LACE_CNTL,
   1590      1.20     veego 	    ((gv->disp_flags & GRF_FLAGS_LACE) ? 0x01 : 0x00) |
   1591       1.1    chopps 	    ((HBE & 0x40) ? 0x10 : 0x00) |
   1592       1.1    chopps 	    ((HBE & 0x80) ? 0x20 : 0x00) |
   1593       1.1    chopps 	    ((VBE & 0x100) ? 0x40 : 0x00) |
   1594       1.5    chopps 	    ((VBE & 0x200) ? 0x80 : 0x00));
   1595       1.1    chopps 
   1596       1.5    chopps 	WGfx(ba, GCT_ID_GRAPHICS_MODE,
   1597       1.1    chopps 	    ((TEXT || (gv->depth == 1)) ? 0x00 : 0x40));
   1598       1.1    chopps 	WGfx(ba, GCT_ID_MISC, (TEXT ? 0x04 : 0x01));
   1599       1.1    chopps 
   1600       1.5    chopps 	WSeq(ba, SEQ_ID_EXT_SEQ_MODE,
   1601       1.5    chopps 	    ((TEXT || (gv->depth == 1)) ? 0x00 : 0x01) |
   1602      1.19     veego 	    ((cltype == PICASSO) ? 0x20 : 0x80) | clkmode);
   1603       1.6        is 
   1604       1.6        is 	/* write 0x00 to VDAC_MASK before accessing HDR this helps
   1605       1.6        is 	   sometimes, out of "secret" application note (crest) */
   1606       1.6        is 	vgaw(ba, VDAC_MASK, 0);
   1607       1.6        is 	/* reset HDR "magic" access counter (crest) */
   1608       1.6        is 	vgar(ba, VDAC_ADDRESS);
   1609       1.6        is 
   1610       1.1    chopps 	delay(200000);
   1611       1.1    chopps 	vgar(ba, VDAC_MASK);
   1612       1.1    chopps 	delay(200000);
   1613       1.1    chopps 	vgar(ba, VDAC_MASK);
   1614       1.1    chopps 	delay(200000);
   1615       1.1    chopps 	vgar(ba, VDAC_MASK);
   1616       1.1    chopps 	delay(200000);
   1617       1.1    chopps 	vgar(ba, VDAC_MASK);
   1618       1.1    chopps 	delay(200000);
   1619       1.1    chopps 	switch (gv->depth) {
   1620      1.11     veego 	    case 1:
   1621      1.11     veego 	    case 4:		/* text */
   1622       1.1    chopps 		vgaw(ba, VDAC_MASK, 0);
   1623       1.1    chopps 		HDE = gv->disp_width / 16;
   1624       1.1    chopps 		break;
   1625      1.11     veego 	    case 8:
   1626      1.19     veego 		if (clkdoub)
   1627      1.19     veego 			vgaw(ba, VDAC_MASK, 0x4a); /* Clockdouble Magic */
   1628      1.19     veego 		else
   1629      1.19     veego 			vgaw(ba, VDAC_MASK, 0);
   1630       1.1    chopps 		HDE = gv->disp_width / 8;
   1631       1.1    chopps 		break;
   1632      1.11     veego 	    case 15:
   1633       1.1    chopps 		vgaw(ba, VDAC_MASK, 0xd0);
   1634       1.1    chopps 		HDE = gv->disp_width / 4;
   1635       1.1    chopps 		break;
   1636      1.11     veego 	    case 16:
   1637       1.5    chopps 		vgaw(ba, VDAC_MASK, 0xc1);
   1638       1.1    chopps 		HDE = gv->disp_width / 4;
   1639       1.1    chopps 		break;
   1640      1.11     veego 	    case 24:
   1641       1.5    chopps 		vgaw(ba, VDAC_MASK, 0xc5);
   1642       1.1    chopps 		HDE = (gv->disp_width / 8) * 3;
   1643       1.1    chopps 		break;
   1644      1.19     veego 	    case 32:
   1645      1.19     veego 		vgaw(ba, VDAC_MASK, 0xc5);
   1646      1.19     veego 		HDE = (gv->disp_width / 4);
   1647      1.19     veego 		break;
   1648       1.1    chopps 	}
   1649       1.6        is 
   1650       1.6        is 	/* reset HDR "magic" access counter (crest) */
   1651       1.6        is 	vgar(ba, VDAC_ADDRESS);
   1652       1.6        is 	/* then enable all bit in VDAC_MASK afterwards (crest) */
   1653       1.6        is 	vgaw(ba, VDAC_MASK, 0xff);
   1654       1.1    chopps 
   1655       1.5    chopps 	WCrt(ba, CRT_ID_OFFSET, HDE);
   1656      1.19     veego 	if (cl_64bit == 1) {
   1657      1.11     veego 		WCrt(ba, CRT_ID_SYNC_ADJ_GENLOCK, 0x00);
   1658      1.11     veego 		WCrt(ba, CRT_ID_OVERLAY_EXT_CTRL_REG, 0x40);
   1659      1.11     veego 	}
   1660       1.5    chopps 	WCrt(ba, CRT_ID_EXT_DISP_CNTL,
   1661       1.1    chopps 	    ((TEXT && gv->pixel_clock > 29000000) ? 0x40 : 0x00) |
   1662       1.5    chopps 	    0x22 |
   1663      1.19     veego 	    ((HDE > 0xff) ? 0x10 : 0x00));
   1664       1.1    chopps 
   1665       1.1    chopps 	WAttr(ba, ACT_ID_ATTR_MODE_CNTL, (TEXT ? 0x0a : 0x01));
   1666       1.5    chopps 	WAttr(ba, 0x20 | ACT_ID_COLOR_PLANE_ENA,
   1667       1.1    chopps 	    (gv->depth == 1) ? 0x01 : 0x0f);
   1668       1.1    chopps 
   1669       1.1    chopps 	/* text initialization */
   1670       1.1    chopps 
   1671       1.1    chopps 	if (TEXT) {
   1672       1.1    chopps 		cl_inittextmode(gp);
   1673       1.1    chopps 	}
   1674       1.1    chopps 	WSeq(ba, SEQ_ID_CURSOR_ATTR, 0x14);
   1675       1.1    chopps 	WSeq(ba, SEQ_ID_CLOCKING_MODE, 0x01);
   1676       1.1    chopps 
   1677       1.1    chopps 	/* Pass-through */
   1678       1.1    chopps 
   1679       1.1    chopps 	RegOffpass(ba);
   1680       1.1    chopps 
   1681       1.5    chopps 	return (1);
   1682       1.1    chopps }
   1683       1.1    chopps 
   1684       1.1    chopps void
   1685       1.1    chopps cl_inittextmode(gp)
   1686       1.1    chopps 	struct grf_softc *gp;
   1687       1.1    chopps {
   1688       1.5    chopps 	struct grfcltext_mode *tm = (struct grfcltext_mode *) gp->g_data;
   1689       1.1    chopps 	volatile unsigned char *ba = gp->g_regkva;
   1690       1.1    chopps 	unsigned char *fb = gp->g_fbkva;
   1691       1.1    chopps 	unsigned char *c, *f, y;
   1692       1.1    chopps 	unsigned short z;
   1693       1.1    chopps 
   1694       1.1    chopps 
   1695       1.5    chopps 	/* load text font into beginning of display memory. Each character
   1696       1.5    chopps 	 * cell is 32 bytes long (enough for 4 planes) */
   1697       1.1    chopps 
   1698       1.1    chopps 	SetTextPlane(ba, 0x02);
   1699       1.5    chopps         cl_memset(fb, 0, 256 * 32);
   1700       1.5    chopps 	c = (unsigned char *) (fb) + (32 * tm->fdstart);
   1701       1.1    chopps 	f = tm->fdata;
   1702       1.5    chopps 	for (z = tm->fdstart; z <= tm->fdend; z++, c += (32 - tm->fy))
   1703       1.5    chopps 		for (y = 0; y < tm->fy; y++)
   1704       1.1    chopps 			*c++ = *f++;
   1705       1.1    chopps 
   1706       1.1    chopps 	/* clear out text/attr planes (three screens worth) */
   1707       1.1    chopps 
   1708       1.1    chopps 	SetTextPlane(ba, 0x01);
   1709       1.5    chopps 	cl_memset(fb, 0x07, tm->cols * tm->rows * 3);
   1710       1.1    chopps 	SetTextPlane(ba, 0x00);
   1711       1.5    chopps 	cl_memset(fb, 0x20, tm->cols * tm->rows * 3);
   1712       1.1    chopps 
   1713       1.1    chopps 	/* print out a little init msg */
   1714       1.1    chopps 
   1715       1.5    chopps 	c = (unsigned char *) (fb) + (tm->cols - 16);
   1716       1.1    chopps 	strcpy(c, "CIRRUS");
   1717       1.1    chopps 	c[6] = 0x20;
   1718       1.1    chopps 
   1719       1.1    chopps 	/* set colors (B&W) */
   1720       1.1    chopps 
   1721       1.1    chopps 	vgaw(ba, VDAC_ADDRESS_W, 0);
   1722       1.5    chopps 	for (z = 0; z < 256; z++) {
   1723       1.1    chopps 		unsigned char r, g, b;
   1724       1.1    chopps 
   1725       1.1    chopps 		y = (z & 1) ? ((z > 7) ? 2 : 1) : 0;
   1726       1.1    chopps 
   1727       1.1    chopps 		if (cltype == PICASSO) {
   1728       1.1    chopps 			r = clconscolors[y][0];
   1729       1.1    chopps 			g = clconscolors[y][1];
   1730       1.1    chopps 			b = clconscolors[y][2];
   1731       1.1    chopps 		} else {
   1732       1.1    chopps 			b = clconscolors[y][0];
   1733       1.1    chopps 			g = clconscolors[y][1];
   1734       1.1    chopps 			r = clconscolors[y][2];
   1735       1.1    chopps 		}
   1736       1.1    chopps 		vgaw(ba, VDAC_DATA, r >> 2);
   1737       1.1    chopps 		vgaw(ba, VDAC_DATA, g >> 2);
   1738       1.1    chopps 		vgaw(ba, VDAC_DATA, b >> 2);
   1739       1.1    chopps 	}
   1740       1.1    chopps }
   1741       1.1    chopps 
   1742       1.1    chopps void
   1743       1.5    chopps cl_memset(d, c, l)
   1744       1.1    chopps 	unsigned char *d;
   1745       1.1    chopps 	unsigned char c;
   1746       1.5    chopps 	int     l;
   1747       1.1    chopps {
   1748       1.5    chopps 	for (; l > 0; l--)
   1749       1.1    chopps 		*d++ = c;
   1750       1.1    chopps }
   1751      1.14   thorpej 
   1752      1.19     veego /*
   1753      1.19     veego  * Special wakeup/passthrough registers on graphics boards
   1754      1.14   thorpej  *
   1755      1.14   thorpej  * The methods have diverged a bit for each board, so
   1756      1.14   thorpej  * WPass(P) has been converted into a set of specific
   1757      1.14   thorpej  * inline functions.
   1758      1.14   thorpej  */
   1759      1.14   thorpej static void
   1760      1.14   thorpej RegWakeup(ba)
   1761      1.14   thorpej 	volatile caddr_t ba;
   1762      1.14   thorpej {
   1763      1.14   thorpej 
   1764      1.14   thorpej 	switch (cltype) {
   1765      1.14   thorpej 	    case SPECTRUM:
   1766      1.14   thorpej 		vgaw(ba, PASS_ADDRESS_W, 0x1f);
   1767      1.14   thorpej 		break;
   1768      1.14   thorpej 	    case PICASSO:
   1769      1.19     veego 		/* Picasso needs no wakeup */
   1770      1.14   thorpej 		break;
   1771      1.14   thorpej 	    case PICCOLO:
   1772      1.19     veego 		if (cl_64bit == 1)
   1773      1.14   thorpej 			vgaw(ba, PASS_ADDRESS_W, 0x1f);
   1774      1.14   thorpej 		else
   1775      1.14   thorpej 			vgaw(ba, PASS_ADDRESS_W, vgar(ba, PASS_ADDRESS) | 0x10);
   1776      1.14   thorpej 		break;
   1777      1.14   thorpej 	}
   1778      1.14   thorpej 	delay(200000);
   1779      1.14   thorpej }
   1780      1.14   thorpej 
   1781      1.14   thorpej static void
   1782      1.14   thorpej RegOnpass(ba)
   1783      1.14   thorpej 	volatile caddr_t ba;
   1784      1.14   thorpej {
   1785      1.14   thorpej 
   1786      1.14   thorpej 	switch (cltype) {
   1787      1.14   thorpej 	    case SPECTRUM:
   1788      1.14   thorpej 		vgaw(ba, PASS_ADDRESS_W, 0x4f);
   1789      1.14   thorpej 		break;
   1790      1.14   thorpej 	    case PICASSO:
   1791      1.19     veego 		if (cl_64bit == 0)
   1792      1.19     veego 			vgaw(ba, PASS_ADDRESS_WP, 0x01);
   1793      1.14   thorpej 		break;
   1794      1.14   thorpej 	    case PICCOLO:
   1795      1.19     veego 		if (cl_64bit == 1)
   1796      1.14   thorpej 			vgaw(ba, PASS_ADDRESS_W, 0x4f);
   1797      1.14   thorpej 		else
   1798      1.14   thorpej 			vgaw(ba, PASS_ADDRESS_W, vgar(ba, PASS_ADDRESS) & 0xdf);
   1799      1.14   thorpej 		break;
   1800      1.14   thorpej 	}
   1801      1.14   thorpej 	pass_toggle = 1;
   1802      1.14   thorpej 	delay(200000);
   1803      1.14   thorpej }
   1804      1.14   thorpej 
   1805      1.14   thorpej static void
   1806      1.14   thorpej RegOffpass(ba)
   1807      1.14   thorpej 	volatile caddr_t ba;
   1808      1.14   thorpej {
   1809      1.14   thorpej 
   1810      1.14   thorpej 	switch (cltype) {
   1811      1.14   thorpej 	    case SPECTRUM:
   1812      1.14   thorpej 		vgaw(ba, PASS_ADDRESS_W, 0x6f);
   1813      1.14   thorpej 		break;
   1814      1.14   thorpej 	    case PICASSO:
   1815      1.19     veego 		if (cl_64bit == 0)
   1816      1.19     veego 			vgaw(ba, PASS_ADDRESS_W, 0xff);
   1817      1.14   thorpej 		break;
   1818      1.14   thorpej 	    case PICCOLO:
   1819      1.19     veego 		if (cl_64bit == 1)
   1820      1.14   thorpej 			vgaw(ba, PASS_ADDRESS_W, 0x6f);
   1821      1.14   thorpej 		else
   1822      1.14   thorpej 			vgaw(ba, PASS_ADDRESS_W, vgar(ba, PASS_ADDRESS) | 0x20);
   1823      1.14   thorpej 		break;
   1824      1.14   thorpej 	}
   1825      1.14   thorpej 	pass_toggle = 0;
   1826      1.14   thorpej 	delay(200000);
   1827      1.14   thorpej }
   1828      1.14   thorpej 
   1829       1.5    chopps #endif /* NGRFCL */
   1830