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grf_rh.c revision 1.11
      1  1.11      is /*	$NetBSD: grf_rh.c,v 1.11 1996/03/06 20:13:28 is Exp $	*/
      2   1.1  chopps 
      3   1.6  chopps /*
      4   1.6  chopps  * Copyright (c) 1994 Markus Wild
      5   1.6  chopps  * Copyright (c) 1994 Lutz Vieweg
      6   1.6  chopps  * All rights reserved.
      7   1.6  chopps  *
      8   1.6  chopps  * Redistribution and use in source and binary forms, with or without
      9   1.6  chopps  * modification, are permitted provided that the following conditions
     10   1.6  chopps  * are met:
     11   1.6  chopps  * 1. Redistributions of source code must retain the above copyright
     12   1.6  chopps  *    notice, this list of conditions and the following disclaimer.
     13   1.6  chopps  * 2. Redistributions in binary form must reproduce the above copyright
     14   1.6  chopps  *    notice, this list of conditions and the following disclaimer in the
     15   1.6  chopps  *    documentation and/or other materials provided with the distribution.
     16   1.6  chopps  * 3. All advertising materials mentioning features or use of this software
     17   1.6  chopps  *    must display the following acknowledgement:
     18   1.6  chopps  *      This product includes software developed by Lutz Vieweg.
     19   1.6  chopps  * 4. The name of the author may not be used to endorse or promote products
     20   1.6  chopps  *    derived from this software without specific prior written permission
     21   1.6  chopps  *
     22   1.6  chopps  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     23   1.6  chopps  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     24   1.6  chopps  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     25   1.6  chopps  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     26   1.6  chopps  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     27   1.6  chopps  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     28   1.6  chopps  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     29   1.6  chopps  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     30   1.6  chopps  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     31   1.6  chopps  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     32   1.6  chopps  */
     33   1.2  chopps #include "grfrh.h"
     34   1.2  chopps #if NGRFRH > 0
     35   1.1  chopps 
     36   1.1  chopps /*
     37   1.1  chopps  * Graphics routines for the Retina BLT Z3 board,
     38   1.1  chopps  * using the NCR 77C32BLT VGA controller.
     39   1.1  chopps */
     40   1.1  chopps 
     41   1.1  chopps #include <sys/param.h>
     42   1.1  chopps #include <sys/errno.h>
     43   1.1  chopps #include <sys/ioctl.h>
     44   1.1  chopps #include <sys/device.h>
     45   1.1  chopps #include <sys/malloc.h>
     46   1.1  chopps #include <machine/cpu.h>
     47   1.1  chopps #include <amiga/amiga/device.h>
     48   1.1  chopps #include <amiga/dev/grfioctl.h>
     49   1.1  chopps #include <amiga/dev/grfvar.h>
     50   1.1  chopps #include <amiga/dev/grf_rhreg.h>
     51   1.5  chopps #include <amiga/dev/zbusvar.h>
     52   1.1  chopps 
     53   1.7  chopps enum mode_type { MT_TXTONLY, MT_GFXONLY, MT_BOTH };
     54   1.7  chopps 
     55   1.1  chopps int rh_mondefok __P((struct MonDef *));
     56   1.1  chopps 
     57   1.1  chopps u_short CompFQ __P((u_int fq));
     58   1.1  chopps int rh_load_mon __P((struct grf_softc *gp, struct MonDef *md));
     59   1.1  chopps int rh_getvmode __P((struct grf_softc *gp, struct grfvideo_mode *vm));
     60   1.7  chopps int rh_setvmode __P((struct grf_softc *gp, unsigned int mode,
     61   1.7  chopps                      enum mode_type type));
     62   1.7  chopps 
     63   1.7  chopps /* make it patchable, and settable by kernel config option */
     64   1.7  chopps #ifndef RH_MEMCLK
     65   1.7  chopps #define RH_MEMCLK 61000000  /* this is the memory clock value, you shouldn't
     66   1.7  chopps                                set it to less than 61000000, higher values may
     67   1.7  chopps                                speed up blits a little bit, if you raise this
     68   1.7  chopps                                value too much, some trash will appear on your
     69   1.7  chopps                                screen. */
     70   1.7  chopps #endif
     71   1.7  chopps int rh_memclk = RH_MEMCLK;
     72   1.1  chopps 
     73   1.1  chopps 
     74   1.1  chopps extern unsigned char kernel_font_8x8_width, kernel_font_8x8_height;
     75   1.1  chopps extern unsigned char kernel_font_8x8_lo, kernel_font_8x8_hi;
     76   1.1  chopps extern unsigned char kernel_font_8x8[];
     77   1.2  chopps #ifdef KFONT_8X11
     78   1.2  chopps extern unsigned char kernel_font_8x11_width, kernel_font_8x11_height;
     79   1.2  chopps extern unsigned char kernel_font_8x11_lo, kernel_font_8x11_hi;
     80   1.2  chopps extern unsigned char kernel_font_8x11[];
     81   1.2  chopps #endif
     82   1.1  chopps 
     83   1.1  chopps /*
     84   1.6  chopps  * This driver for the MacroSystem Retina board was only possible,
     85   1.6  chopps  * because MacroSystem provided information about the pecularities
     86   1.6  chopps  * of the board. THANKS! Competition in Europe among gfx board
     87   1.6  chopps  * manufacturers is rather tough, so Lutz Vieweg, who wrote the
     88   1.6  chopps  * initial driver, has made an agreement with MS not to document
     89   1.6  chopps  * the driver source (see also his comment below).
     90   1.6  chopps  * -> ALL comments after
     91   1.6  chopps  * -> "/* -------------- START OF CODE -------------- * /"
     92   1.6  chopps  * -> have been added by myself (mw) from studying the publically
     93   1.6  chopps  * -> available "NCR 77C32BLT" Data Manual
     94   1.1  chopps  */
     95   1.6  chopps /*
     96   1.6  chopps  * This code offers low-level routines to access the Retina BLT Z3
     97   1.1  chopps  * graphics-board manufactured by MS MacroSystem GmbH from within NetBSD
     98   1.6  chopps  * for the Amiga.
     99   1.1  chopps  *
    100   1.1  chopps  * Thanks to MacroSystem for providing me with the neccessary information
    101   1.1  chopps  * to create theese routines. The sparse documentation of this code
    102   1.1  chopps  * results from the agreements between MS and me.
    103   1.1  chopps  */
    104   1.1  chopps 
    105   1.1  chopps 
    106   1.1  chopps 
    107   1.1  chopps #define MDF_DBL 1
    108   1.1  chopps #define MDF_LACE 2
    109   1.1  chopps #define MDF_CLKDIV2 4
    110   1.1  chopps 
    111   1.7  chopps /* set this as an option in your kernel config file! */
    112   1.9  chopps /* #define RH_64BIT_SPRITE */
    113   1.1  chopps 
    114   1.1  chopps /* -------------- START OF CODE -------------- */
    115   1.1  chopps 
    116   1.1  chopps /* Convert big-endian long into little-endian long. */
    117   1.1  chopps 
    118   1.1  chopps #define M2I(val)                                                     \
    119   1.1  chopps 	asm volatile (" rorw #8,%0   ;                               \
    120   1.1  chopps 	                swap %0      ;                               \
    121   1.1  chopps 	                rorw #8,%0   ; " : "=d" (val) : "0" (val));
    122   1.1  chopps 
    123   1.1  chopps #define M2INS(val)                                                   \
    124   1.1  chopps 	asm volatile (" rorw #8,%0   ;                               \
    125   1.1  chopps 	                swap %0      ;                               \
    126   1.1  chopps 	                rorw #8,%0   ;                               \
    127   1.1  chopps  			swap %0	     ; " : "=d" (val) : "0" (val));
    128   1.1  chopps 
    129   1.1  chopps #define ACM_OFFSET	(0x00b00000)
    130   1.1  chopps #define LM_OFFSET	(0x00c00000)
    131   1.1  chopps 
    132   1.1  chopps static unsigned char optab[] = {
    133   1.1  chopps 	0x00, 0x80, 0x40, 0xc0, 0x20, 0xa0, 0x60, 0xe0,
    134   1.1  chopps 	0x10, 0x90, 0x50, 0xd0, 0x30, 0xb0, 0x70, 0xf0
    135   1.1  chopps };
    136   1.1  chopps static char optabs[] = {
    137   1.1  chopps 	   0,   -1,   -1,   -1,   -1,    0,   -1,   -1,
    138   1.1  chopps 	  -1,   -1,    0,   -1,   -1,   -1,   -1,    0
    139   1.1  chopps };
    140   1.1  chopps 
    141   1.1  chopps void
    142   1.1  chopps RZ3DisableHWC(gp)
    143   1.1  chopps 	struct grf_softc *gp;
    144   1.1  chopps {
    145   1.1  chopps 	volatile void *ba = gp->g_regkva;
    146   1.1  chopps 
    147   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_Y_INDEX, 0x00);
    148   1.1  chopps }
    149   1.1  chopps 
    150   1.1  chopps void
    151   1.1  chopps RZ3SetupHWC(gp, col1, col2, hsx, hsy, data)
    152   1.1  chopps 	struct grf_softc *gp;
    153   1.1  chopps 	unsigned char col1;
    154   1.1  chopps 	unsigned col2;
    155   1.1  chopps 	unsigned char hsx;
    156   1.1  chopps 	unsigned char hsy;
    157   1.1  chopps 	const unsigned long *data;
    158   1.1  chopps {
    159   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    160   1.1  chopps 	unsigned long *c = (unsigned long *)(ba + LM_OFFSET + HWC_MEM_OFF);
    161   1.1  chopps 	const unsigned long *s = data;
    162   1.1  chopps 	struct MonDef *MonitorDef = (struct MonDef *) gp->g_data;
    163   1.9  chopps #ifdef RH_64BIT_SPRITE
    164   1.1  chopps 	short x = (HWC_MEM_SIZE / (4*4)) - 1;
    165   1.7  chopps #else
    166   1.7  chopps         short x = (HWC_MEM_SIZE / (4*4*2)) - 1;
    167   1.7  chopps #endif
    168   1.1  chopps 	/* copy only, if there is a data pointer. */
    169   1.1  chopps 	if (data) do {
    170   1.1  chopps 		*c++ = *s++;
    171   1.1  chopps 		*c++ = *s++;
    172   1.1  chopps 		*c++ = *s++;
    173   1.1  chopps 		*c++ = *s++;
    174   1.1  chopps 	} while (x-- > 0);
    175   1.1  chopps 
    176   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_COLOR1, col1);
    177   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_COLOR0, col2);
    178   1.7  chopps         if (MonitorDef->DEP <= 8) {
    179   1.9  chopps #ifdef RH_64BIT_SPRITE
    180   1.1  chopps 		WSeq(ba, SEQ_ID_CURSOR_CONTROL, 0x85);
    181   1.7  chopps #else
    182   1.7  chopps                 WSeq(ba, SEQ_ID_CURSOR_CONTROL, 0x03);
    183   1.7  chopps #endif
    184   1.7  chopps         }
    185   1.7  chopps         else if (MonitorDef->DEP <= 16) {
    186   1.9  chopps #ifdef RH_64BIT_SPRITE
    187   1.1  chopps 		WSeq(ba, SEQ_ID_CURSOR_CONTROL, 0xa5);
    188   1.7  chopps #else
    189   1.7  chopps                 WSeq(ba, SEQ_ID_CURSOR_CONTROL, 0x23);
    190   1.7  chopps #endif
    191   1.7  chopps         }
    192   1.7  chopps         else {
    193   1.9  chopps #ifdef RH_64BIT_SPRITE
    194   1.7  chopps                 WSeq(ba, SEQ_ID_CURSOR_CONTROL, 0xc5);
    195   1.7  chopps #else
    196   1.7  chopps                 WSeq(ba, SEQ_ID_CURSOR_CONTROL, 0x43);
    197   1.7  chopps #endif
    198   1.7  chopps         }
    199   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_X_LOC_HI, 0x00);
    200   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_X_LOC_LO, 0x00);
    201   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_Y_LOC_HI, 0x00);
    202   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_Y_LOC_LO, 0x00);
    203   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_X_INDEX, hsx);
    204   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_Y_INDEX, hsy);
    205   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_STORE_HI, 0x00);
    206   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_STORE_LO,  ((HWC_MEM_OFF / 4) & 0x0000f));
    207   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_ST_OFF_HI, (((HWC_MEM_OFF / 4) & 0xff000) >> 12));
    208   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_ST_OFF_LO, (((HWC_MEM_OFF / 4) & 0x00ff0) >>  4));
    209   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_PIXELMASK, 0xff);
    210   1.1  chopps }
    211   1.1  chopps 
    212   1.1  chopps void
    213   1.1  chopps RZ3AlphaErase (gp, xd, yd, w, h)
    214   1.1  chopps 	struct grf_softc *gp;
    215   1.1  chopps 	unsigned short xd;
    216   1.1  chopps 	unsigned short yd;
    217   1.1  chopps 	unsigned short  w;
    218   1.1  chopps 	unsigned short  h;
    219   1.1  chopps {
    220   1.1  chopps 	const struct MonDef * md = (struct MonDef *) gp->g_data;
    221   1.1  chopps 	RZ3AlphaCopy(gp, xd, yd+md->TY, xd, yd, w, h);
    222   1.1  chopps }
    223   1.1  chopps 
    224   1.1  chopps void
    225   1.1  chopps RZ3AlphaCopy (gp, xs, ys, xd, yd, w, h)
    226   1.1  chopps 	struct grf_softc *gp;
    227   1.1  chopps 	unsigned short xs;
    228   1.1  chopps 	unsigned short ys;
    229   1.1  chopps 	unsigned short xd;
    230   1.1  chopps 	unsigned short yd;
    231   1.1  chopps 	unsigned short  w;
    232   1.1  chopps 	unsigned short  h;
    233   1.1  chopps {
    234   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    235   1.1  chopps 	const struct MonDef *md = (struct MonDef *) gp->g_data;
    236   1.1  chopps 	volatile unsigned long *acm = (unsigned long *) (ba + ACM_OFFSET);
    237   1.1  chopps 	unsigned short mod;
    238   1.1  chopps 
    239   1.1  chopps 	xs *= 4;
    240   1.1  chopps 	ys *= 4;
    241   1.1  chopps 	xd *= 4;
    242   1.1  chopps 	yd *= 4;
    243   1.1  chopps 	w  *= 4;
    244   1.1  chopps 
    245   1.1  chopps 	{
    246   1.1  chopps 		/* anyone got Windoze GDI opcodes handy?... */
    247   1.1  chopps 		unsigned long tmp = 0x0000ca00;
    248   1.1  chopps 		*(acm + ACM_RASTEROP_ROTATION/4) = tmp;
    249   1.1  chopps 	}
    250   1.1  chopps 
    251   1.1  chopps 	mod = 0xc0c2;
    252   1.1  chopps 
    253   1.1  chopps 	{
    254   1.1  chopps 		unsigned long pat = 8 * PAT_MEM_OFF;
    255   1.1  chopps 		unsigned long dst = 8 * (xd + yd * md->TX);
    256   1.1  chopps 
    257   1.1  chopps 		unsigned long src = 8 * (xs + ys * md->TX);
    258   1.1  chopps 
    259   1.1  chopps 		if (xd > xs) {
    260   1.1  chopps 			mod &= ~0x8000;
    261   1.1  chopps 			src += 8 * (w - 1);
    262   1.1  chopps 			dst += 8 * (w - 1);
    263   1.1  chopps 			pat += 8 * 2;
    264   1.1  chopps 		}
    265   1.1  chopps 		if (yd > ys) {
    266   1.1  chopps 			mod &= ~0x4000;
    267   1.1  chopps 			src += 8 * (h - 1) * md->TX * 4;
    268   1.1  chopps 			dst += 8 * (h - 1) * md->TX * 4;
    269   1.1  chopps 			pat += 8 * 4;
    270   1.1  chopps 		}
    271   1.1  chopps 
    272   1.1  chopps 		M2I(src);
    273   1.1  chopps 		*(acm + ACM_SOURCE/4) = src;
    274   1.1  chopps 
    275   1.1  chopps 		M2I(pat);
    276   1.1  chopps 		*(acm + ACM_PATTERN/4) = pat;
    277   1.1  chopps 
    278   1.1  chopps 		M2I(dst);
    279   1.1  chopps 		*(acm + ACM_DESTINATION/4) = dst;
    280   1.1  chopps 	}
    281   1.1  chopps 	{
    282   1.1  chopps 
    283   1.1  chopps 		unsigned long tmp = mod << 16;
    284   1.1  chopps 		*(acm + ACM_CONTROL/4) = tmp;
    285   1.1  chopps 	}
    286   1.1  chopps 	{
    287   1.1  chopps 
    288   1.1  chopps 		unsigned long tmp  = w | (h << 16);
    289   1.1  chopps 		M2I(tmp);
    290   1.1  chopps 		*(acm + ACM_BITMAP_DIMENSION/4) = tmp;
    291   1.1  chopps 	}
    292   1.1  chopps 
    293   1.1  chopps 	*(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x00;
    294   1.1  chopps 	*(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x01;
    295   1.1  chopps 
    296   1.1  chopps 	while ((*(((volatile unsigned char *)acm) +
    297   1.1  chopps 	    (ACM_START_STATUS + 2)) & 1) == 0);
    298   1.1  chopps }
    299   1.1  chopps 
    300   1.1  chopps void
    301   1.1  chopps RZ3BitBlit (gp, gbb)
    302   1.1  chopps 	struct grf_softc *gp;
    303   1.1  chopps 	struct grf_bitblt * gbb;
    304   1.1  chopps {
    305   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    306   1.1  chopps 	volatile unsigned char *lm = ba + LM_OFFSET;
    307   1.1  chopps 	volatile unsigned long *acm = (unsigned long *) (ba + ACM_OFFSET);
    308   1.1  chopps 	const struct MonDef *md = (struct MonDef *) gp->g_data;
    309   1.1  chopps 	unsigned short mod;
    310   1.1  chopps 
    311   1.1  chopps 	{
    312   1.1  chopps 		unsigned long * pt = (unsigned long *) (lm + PAT_MEM_OFF);
    313   1.1  chopps 		unsigned long tmp  = gbb->mask | ((unsigned long)gbb->mask << 16);
    314   1.1  chopps 		*pt++ = tmp;
    315   1.1  chopps 		*pt   = tmp;
    316   1.1  chopps 	}
    317   1.1  chopps 
    318   1.1  chopps 	{
    319   1.1  chopps 
    320   1.1  chopps 		unsigned long tmp = optab[ gbb->op ] << 8;
    321   1.1  chopps 		*(acm + ACM_RASTEROP_ROTATION/4) = tmp;
    322   1.1  chopps 	}
    323   1.1  chopps 
    324   1.1  chopps 	mod = 0xc0c2;
    325   1.1  chopps 
    326   1.1  chopps 	{
    327   1.1  chopps 		unsigned long pat = 8 * PAT_MEM_OFF;
    328   1.1  chopps 		unsigned long dst = 8 * (gbb->dst_x + gbb->dst_y * md->TX);
    329   1.1  chopps 
    330   1.1  chopps 		if (optabs[gbb->op]) {
    331   1.1  chopps 			unsigned long src = 8 * (gbb->src_x + gbb->src_y * md->TX);
    332   1.1  chopps 
    333   1.1  chopps 			if (gbb->dst_x > gbb->src_x) {
    334   1.1  chopps 				mod &= ~0x8000;
    335   1.1  chopps 				src += 8 * (gbb->w - 1);
    336   1.1  chopps 				dst += 8 * (gbb->w - 1);
    337   1.1  chopps 				pat += 8 * 2;
    338   1.1  chopps 			}
    339   1.1  chopps 			if (gbb->dst_y > gbb->src_y) {
    340   1.1  chopps 				mod &= ~0x4000;
    341   1.1  chopps 				src += 8 * (gbb->h - 1) * md->TX;
    342   1.1  chopps 				dst += 8 * (gbb->h - 1) * md->TX;
    343   1.1  chopps 				pat += 8 * 4;
    344   1.1  chopps 			}
    345   1.1  chopps 
    346   1.1  chopps 			M2I(src);
    347   1.1  chopps 			*(acm + ACM_SOURCE/4) = src;
    348   1.1  chopps 		}
    349   1.1  chopps 
    350   1.1  chopps 		M2I(pat);
    351   1.1  chopps 		*(acm + ACM_PATTERN/4) = pat;
    352   1.1  chopps 
    353   1.1  chopps 		M2I(dst);
    354   1.1  chopps 		*(acm + ACM_DESTINATION/4) = dst;
    355   1.1  chopps 	}
    356   1.1  chopps 	{
    357   1.1  chopps 
    358   1.1  chopps 		unsigned long tmp = mod << 16;
    359   1.1  chopps 		*(acm + ACM_CONTROL/4) = tmp;
    360   1.1  chopps 	}
    361   1.1  chopps 	{
    362   1.1  chopps 		unsigned long tmp  = gbb->w | (gbb->h << 16);
    363   1.1  chopps 		M2I(tmp);
    364   1.1  chopps 		*(acm + ACM_BITMAP_DIMENSION/4) = tmp;
    365   1.1  chopps 	}
    366   1.1  chopps 
    367   1.1  chopps 	*(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x00;
    368   1.1  chopps 	*(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x01;
    369   1.1  chopps 
    370   1.1  chopps 	while ((*(((volatile unsigned char *)acm) +
    371   1.1  chopps 	    (ACM_START_STATUS + 2)) & 1) == 0);
    372   1.1  chopps }
    373   1.1  chopps 
    374   1.1  chopps void
    375   1.1  chopps RZ3BitBlit16 (gp, gbb)
    376   1.1  chopps 	struct grf_softc *gp;
    377   1.1  chopps 	struct grf_bitblt * gbb;
    378   1.1  chopps {
    379   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    380   1.1  chopps 	volatile unsigned char *lm = ba + LM_OFFSET;
    381   1.1  chopps 	volatile unsigned long * acm = (unsigned long *) (ba + ACM_OFFSET);
    382   1.1  chopps 	const struct MonDef * md = (struct MonDef *) gp->g_data;
    383   1.1  chopps 	unsigned short mod;
    384   1.1  chopps 
    385   1.1  chopps 	{
    386   1.1  chopps 		unsigned long * pt = (unsigned long *) (lm + PAT_MEM_OFF);
    387   1.1  chopps 		unsigned long tmp  = gbb->mask | ((unsigned long)gbb->mask << 16);
    388   1.1  chopps 		*pt++ = tmp;
    389   1.1  chopps 		*pt++ = tmp;
    390   1.1  chopps 		*pt++ = tmp;
    391   1.1  chopps 		*pt   = tmp;
    392   1.1  chopps 	}
    393   1.1  chopps 
    394   1.1  chopps 	{
    395   1.1  chopps 
    396   1.1  chopps 		unsigned long tmp = optab[ gbb->op ] << 8;
    397   1.1  chopps 		*(acm + ACM_RASTEROP_ROTATION/4) = tmp;
    398   1.1  chopps 	}
    399   1.1  chopps 
    400   1.1  chopps 	mod = 0xc0c2;
    401   1.1  chopps 
    402   1.1  chopps 	{
    403   1.1  chopps 		unsigned long pat = 8 * PAT_MEM_OFF;
    404   1.1  chopps 		unsigned long dst = 8 * 2 * (gbb->dst_x + gbb->dst_y * md->TX);
    405   1.1  chopps 
    406   1.1  chopps 		if (optabs[gbb->op]) {
    407   1.1  chopps 			unsigned long src = 8 * 2 * (gbb->src_x + gbb->src_y * md->TX);
    408   1.1  chopps 
    409   1.1  chopps 			if (gbb->dst_x > gbb->src_x) {
    410   1.1  chopps 				mod &= ~0x8000;
    411   1.1  chopps 				src += 8 * 2 * (gbb->w);
    412   1.1  chopps 				dst += 8 * 2 * (gbb->w);
    413   1.1  chopps 				pat += 8 * 2 * 2;
    414   1.1  chopps 			}
    415   1.1  chopps 			if (gbb->dst_y > gbb->src_y) {
    416   1.1  chopps 				mod &= ~0x4000;
    417   1.1  chopps 				src += 8 * 2 * (gbb->h - 1) * md->TX;
    418   1.1  chopps 				dst += 8 * 2 * (gbb->h - 1) * md->TX;
    419   1.1  chopps 				pat += 8 * 4 * 2;
    420   1.1  chopps 			}
    421   1.1  chopps 
    422   1.1  chopps 			M2I(src);
    423   1.1  chopps 			*(acm + ACM_SOURCE/4) = src;
    424   1.1  chopps 		}
    425   1.1  chopps 
    426   1.1  chopps 		M2I(pat);
    427   1.1  chopps 		*(acm + ACM_PATTERN/4) = pat;
    428   1.1  chopps 
    429   1.1  chopps 		M2I(dst);
    430   1.1  chopps 		*(acm + ACM_DESTINATION/4) = dst;
    431   1.1  chopps 	}
    432   1.1  chopps 	{
    433   1.1  chopps 
    434   1.1  chopps 		unsigned long tmp = mod << 16;
    435   1.1  chopps 		*(acm + ACM_CONTROL/4) = tmp;
    436   1.1  chopps 	}
    437   1.1  chopps 	{
    438   1.1  chopps 
    439   1.1  chopps 		unsigned long tmp  = gbb->w | (gbb->h << 16);
    440   1.1  chopps 		M2I(tmp);
    441   1.1  chopps 		*(acm + ACM_BITMAP_DIMENSION/4) = tmp;
    442   1.1  chopps 	}
    443   1.1  chopps 
    444   1.1  chopps 	*(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x00;
    445   1.1  chopps 	*(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x01;
    446   1.1  chopps 
    447   1.1  chopps 	while ((*(((volatile unsigned char *)acm) +
    448   1.1  chopps 	    (ACM_START_STATUS+ 2)) & 1) == 0);
    449   1.1  chopps }
    450   1.1  chopps 
    451   1.1  chopps void
    452   1.7  chopps RZ3BitBlit24 (gp, gbb)
    453   1.7  chopps      struct grf_softc *gp;
    454   1.7  chopps      struct grf_bitblt * gbb;
    455   1.7  chopps {
    456   1.7  chopps         volatile unsigned char *ba = gp->g_regkva;
    457   1.7  chopps         volatile unsigned char *lm = ba + LM_OFFSET;
    458   1.7  chopps         volatile unsigned long * acm = (unsigned long *) (ba + ACM_OFFSET);
    459   1.7  chopps         const struct MonDef * md = (struct MonDef *) gp->g_data;
    460   1.7  chopps         unsigned short mod;
    461   1.7  chopps 
    462   1.7  chopps 
    463   1.7  chopps         {
    464   1.7  chopps                 unsigned long * pt = (unsigned long *) (lm + PAT_MEM_OFF);
    465   1.7  chopps                 unsigned long tmp  = gbb->mask | ((unsigned long)gbb->mask << 16);
    466   1.7  chopps                 *pt++ = tmp;
    467   1.7  chopps                 *pt++ = tmp;
    468   1.7  chopps                 *pt++ = tmp;
    469   1.7  chopps                 *pt++ = tmp;
    470   1.7  chopps                 *pt++ = tmp;
    471   1.7  chopps                 *pt   = tmp;
    472   1.7  chopps         }
    473   1.7  chopps 
    474   1.7  chopps         {
    475   1.7  chopps 
    476   1.7  chopps                 unsigned long tmp = optab[ gbb->op ] << 8;
    477   1.7  chopps                 *(acm + ACM_RASTEROP_ROTATION/4) = tmp;
    478   1.7  chopps         }
    479   1.7  chopps 
    480   1.7  chopps         mod = 0xc0c2;
    481   1.7  chopps 
    482   1.7  chopps         {
    483   1.7  chopps                 unsigned long pat = 8 * PAT_MEM_OFF;
    484   1.7  chopps                 unsigned long dst = 8 * 3 * (gbb->dst_x + gbb->dst_y * md->TX);
    485   1.7  chopps 
    486   1.7  chopps                 if (optabs[gbb->op]) {
    487   1.7  chopps                         unsigned long src = 8 * 3 * (gbb->src_x + gbb->src_y * md->TX);
    488   1.7  chopps 
    489   1.7  chopps                         if (gbb->dst_x > gbb->src_x ) {
    490   1.7  chopps                                 mod &= ~0x8000;
    491   1.7  chopps                                 src += 8 * 3 * (gbb->w);
    492   1.7  chopps                                 dst += 8 * 3 * (gbb->w);
    493   1.7  chopps                                 pat += 8 * 3 * 2;
    494   1.7  chopps                         }
    495   1.7  chopps                         if (gbb->dst_y > gbb->src_y) {
    496   1.7  chopps                                 mod &= ~0x4000;
    497   1.7  chopps                                 src += 8 * 3 * (gbb->h - 1) * md->TX;
    498   1.7  chopps                                 dst += 8 * 3 * (gbb->h - 1) * md->TX;
    499   1.7  chopps                                 pat += 8 * 4 * 3;
    500   1.7  chopps                         }
    501   1.7  chopps 
    502   1.7  chopps                         M2I(src);
    503   1.7  chopps                         *(acm + ACM_SOURCE/4) = src;
    504   1.7  chopps                 }
    505   1.7  chopps 
    506   1.7  chopps 
    507   1.7  chopps                 M2I(pat);
    508   1.7  chopps                 *(acm + ACM_PATTERN/4) = pat;
    509   1.7  chopps 
    510   1.7  chopps 
    511   1.7  chopps                 M2I(dst);
    512   1.7  chopps                 *(acm + ACM_DESTINATION/4) = dst;
    513   1.7  chopps         }
    514   1.7  chopps         {
    515   1.7  chopps 
    516   1.7  chopps                 unsigned long tmp = mod << 16;
    517   1.7  chopps                 *(acm + ACM_CONTROL/4) = tmp;
    518   1.7  chopps         }
    519   1.7  chopps         {
    520   1.7  chopps 
    521   1.7  chopps                 unsigned long tmp  = gbb->w | (gbb->h << 16);
    522   1.7  chopps                 M2I(tmp);
    523   1.7  chopps                 *(acm + ACM_BITMAP_DIMENSION/4) = tmp;
    524   1.7  chopps         }
    525   1.7  chopps 
    526   1.7  chopps 
    527   1.7  chopps         *(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x00;
    528   1.7  chopps         *(((volatile unsigned char *)acm) + ACM_START_STATUS) = 0x01;
    529   1.7  chopps 
    530   1.7  chopps         while ( (*(((volatile unsigned char *)acm)
    531   1.7  chopps                    + (ACM_START_STATUS+ 2)) & 1) == 0 ) {};
    532   1.7  chopps 
    533   1.7  chopps }
    534   1.7  chopps 
    535   1.7  chopps 
    536   1.7  chopps void
    537   1.1  chopps RZ3SetCursorPos (gp, pos)
    538   1.1  chopps 	struct grf_softc *gp;
    539   1.1  chopps 	unsigned short pos;
    540   1.1  chopps {
    541   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    542   1.1  chopps 
    543   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_LOC_LOW, (unsigned char)pos);
    544   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_LOC_HIGH, (unsigned char)(pos >> 8));
    545   1.1  chopps 
    546   1.1  chopps }
    547   1.1  chopps 
    548   1.1  chopps void
    549   1.1  chopps RZ3LoadPalette (gp, pal, firstcol, colors)
    550   1.1  chopps 	struct grf_softc *gp;
    551   1.1  chopps 	unsigned char * pal;
    552   1.1  chopps 	unsigned char firstcol;
    553   1.1  chopps 	unsigned char colors;
    554   1.1  chopps {
    555   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    556   1.1  chopps 
    557   1.1  chopps 	if (colors == 0)
    558   1.1  chopps 		return;
    559   1.1  chopps 
    560   1.1  chopps 	vgaw(ba, VDAC_ADDRESS_W, firstcol);
    561   1.1  chopps 
    562   1.1  chopps 	{
    563   1.1  chopps 
    564   1.1  chopps 		short x = colors-1;
    565   1.1  chopps 		const unsigned char * col = pal;
    566   1.1  chopps 		do {
    567   1.1  chopps 
    568   1.1  chopps 			vgaw(ba, VDAC_DATA, (*col++ >> 2));
    569   1.1  chopps 			vgaw(ba, VDAC_DATA, (*col++ >> 2));
    570   1.1  chopps 			vgaw(ba, VDAC_DATA, (*col++ >> 2));
    571   1.1  chopps 
    572   1.1  chopps 		} while (x-- > 0);
    573   1.1  chopps 
    574   1.1  chopps 	}
    575   1.1  chopps }
    576   1.1  chopps 
    577   1.1  chopps void
    578   1.1  chopps RZ3SetPalette (gp, colornum, red, green, blue)
    579   1.1  chopps 	struct grf_softc *gp;
    580   1.1  chopps 	unsigned char colornum;
    581   1.1  chopps 	unsigned char red, green, blue;
    582   1.1  chopps {
    583   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    584   1.1  chopps 
    585   1.1  chopps 	vgaw(ba, VDAC_ADDRESS_W, colornum);
    586   1.1  chopps 
    587   1.1  chopps 	vgaw(ba, VDAC_DATA, (red >> 2));
    588   1.1  chopps 	vgaw(ba, VDAC_DATA, (green >> 2));
    589   1.1  chopps 	vgaw(ba, VDAC_DATA, (blue >> 2));
    590   1.1  chopps 
    591   1.1  chopps }
    592   1.1  chopps 
    593   1.1  chopps /* XXXXXXXXX !! */
    594   1.1  chopps static unsigned short xpan;
    595   1.1  chopps static unsigned short ypan;
    596   1.1  chopps 
    597   1.1  chopps void
    598   1.1  chopps RZ3SetPanning (gp, xoff, yoff)
    599   1.1  chopps 	struct grf_softc *gp;
    600   1.1  chopps 	unsigned short xoff, yoff;
    601   1.1  chopps {
    602   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    603   1.1  chopps 	const struct MonDef * md = (struct MonDef *) gp->g_data;
    604   1.1  chopps 	unsigned long off;
    605   1.1  chopps 
    606   1.1  chopps 	xpan = xoff;
    607   1.1  chopps 	ypan = yoff;
    608   1.1  chopps 
    609   1.1  chopps 
    610   1.7  chopps         if (md->DEP > 8 && md->DEP <= 16) xoff *= 2;
    611   1.7  chopps         else if (md->DEP > 16) xoff *= 3;
    612   1.1  chopps 
    613   1.1  chopps 	vgar(ba, ACT_ADDRESS_RESET);
    614   1.1  chopps 	WAttr(ba, ACT_ID_HOR_PEL_PANNING, (unsigned char)((xoff << 1) & 0x07));
    615   1.1  chopps 	/* have the color lookup function normally again */
    616   1.1  chopps 	vgaw(ba,  ACT_ADDRESS_W, 0x20);
    617   1.1  chopps 
    618   1.1  chopps 	if (md->DEP == 8)
    619   1.1  chopps 		off = ((yoff * md->TX)/ 4) + (xoff >> 2);
    620   1.7  chopps         else if (md->DEP == 16)
    621   1.1  chopps 		off = ((yoff * md->TX * 2)/ 4) + (xoff >> 2);
    622   1.7  chopps         else
    623   1.7  chopps                 off = ((yoff * md->TX * 3)/ 4) + (xoff >> 2);
    624   1.1  chopps 	WCrt(ba, CRT_ID_START_ADDR_LOW, ((unsigned char)off));
    625   1.1  chopps 	off >>= 8;
    626   1.1  chopps 	WCrt(ba, CRT_ID_START_ADDR_HIGH, ((unsigned char)off));
    627   1.1  chopps 	off >>= 8;
    628   1.1  chopps 	WCrt(ba, CRT_ID_EXT_START_ADDR,
    629   1.1  chopps 	    ((RCrt(ba, CRT_ID_EXT_START_ADDR) & 0xf0) | (off & 0x0f)));
    630   1.1  chopps 
    631   1.1  chopps 
    632   1.1  chopps }
    633   1.1  chopps 
    634   1.1  chopps void
    635   1.1  chopps RZ3SetHWCloc (gp, x, y)
    636   1.1  chopps 	struct grf_softc *gp;
    637   1.1  chopps 	unsigned short x, y;
    638   1.1  chopps {
    639   1.1  chopps 	volatile unsigned char *ba = gp->g_regkva;
    640   1.1  chopps 	const struct MonDef *md = (struct MonDef *) gp->g_data;
    641   1.1  chopps 	volatile unsigned char *acm = ba + ACM_OFFSET;
    642   1.1  chopps 
    643   1.1  chopps 	if (x < xpan)
    644   1.1  chopps 		RZ3SetPanning(gp, x, ypan);
    645   1.1  chopps 
    646   1.1  chopps 	if (x >= (xpan+md->MW))
    647   1.1  chopps 		RZ3SetPanning(gp, (1 + x - md->MW) , ypan);
    648   1.1  chopps 
    649   1.1  chopps 	if (y < ypan)
    650   1.1  chopps 		RZ3SetPanning(gp, xpan, y);
    651   1.1  chopps 
    652   1.1  chopps 	if (y >= (ypan+md->MH))
    653   1.1  chopps 		RZ3SetPanning(gp, xpan, (1 + y - md->MH));
    654   1.1  chopps 
    655   1.1  chopps 	x -= xpan;
    656   1.1  chopps 	y -= ypan;
    657   1.1  chopps 
    658   1.1  chopps 	*(acm + (ACM_CURSOR_POSITION+0)) = x & 0xff;
    659   1.1  chopps 	*(acm + (ACM_CURSOR_POSITION+1)) = x >> 8;
    660   1.1  chopps 	*(acm + (ACM_CURSOR_POSITION+2)) = y & 0xff;
    661   1.1  chopps 	*(acm + (ACM_CURSOR_POSITION+3)) = y >> 8;
    662   1.1  chopps }
    663   1.1  chopps 
    664   1.1  chopps u_short
    665   1.1  chopps CompFQ(fq)
    666   1.1  chopps 	u_int fq;
    667   1.1  chopps {
    668   1.1  chopps  	/* yuck... this sure could need some explanation.. */
    669   1.1  chopps 
    670   1.1  chopps 	unsigned long f = fq;
    671   1.1  chopps 	long n2 = 3;
    672   1.1  chopps 	long abw = 0x7fffffff;
    673   1.1  chopps 	long n1 = 3;
    674   1.1  chopps 	unsigned long m;
    675   1.1  chopps 	unsigned short erg = 0;
    676   1.1  chopps 
    677   1.1  chopps 	f *= 8;
    678   1.1  chopps 
    679   1.1  chopps 	do {
    680   1.1  chopps 
    681   1.1  chopps 		if (f <= 250000000)
    682   1.1  chopps 			break;
    683   1.1  chopps 		f /= 2;
    684   1.1  chopps 
    685   1.1  chopps 	} while (n2-- > 0);
    686   1.1  chopps 
    687   1.1  chopps 	if (n2 < 0)
    688   1.1  chopps 		return(0);
    689   1.1  chopps 
    690   1.1  chopps 
    691   1.1  chopps 	do {
    692   1.1  chopps 	  	long tmp;
    693   1.1  chopps 
    694   1.1  chopps 		f = fq;
    695   1.1  chopps 		f >>= 3;
    696   1.1  chopps 		f <<= n2;
    697   1.1  chopps 		f >>= 7;
    698   1.1  chopps 
    699   1.1  chopps 		m = (f * n1) / (14318180/1024);
    700   1.1  chopps 
    701   1.1  chopps 		if (m > 129)
    702   1.1  chopps 			break;
    703   1.1  chopps 
    704   1.1  chopps 		tmp =  (((m * 14318180) >> n2) / n1) - fq;
    705   1.1  chopps 		if (tmp < 0)
    706   1.1  chopps 			tmp = -tmp;
    707   1.1  chopps 
    708   1.1  chopps 		if (tmp < abw) {
    709   1.1  chopps 			abw = tmp;
    710   1.1  chopps 			erg = (((n2 << 5) | (n1-2)) << 8) | (m-2);
    711   1.1  chopps 		}
    712   1.1  chopps 
    713   1.1  chopps 	} while ( (++n1) <= 21);
    714   1.1  chopps 
    715   1.1  chopps 	return(erg);
    716   1.1  chopps }
    717   1.1  chopps 
    718   1.1  chopps int
    719   1.1  chopps rh_mondefok(mdp)
    720   1.1  chopps 	struct MonDef *mdp;
    721   1.1  chopps {
    722   1.1  chopps 	switch(mdp->DEP) {
    723   1.1  chopps 	case 8:
    724   1.1  chopps 	case 16:
    725   1.7  chopps         case 24:
    726   1.1  chopps 		return(1);
    727   1.1  chopps 	case 4:
    728   1.1  chopps 		if (mdp->FX == 4 || (mdp->FX >= 7 && mdp->FX <= 16))
    729   1.2  chopps 			return(1);
    730   1.1  chopps 		/*FALLTHROUGH*/
    731   1.1  chopps 	default:
    732   1.1  chopps 		return(0);
    733   1.1  chopps 	}
    734   1.1  chopps }
    735   1.1  chopps 
    736   1.1  chopps 
    737   1.1  chopps int
    738   1.1  chopps rh_load_mon(gp, md)
    739   1.1  chopps 	struct grf_softc *gp;
    740   1.1  chopps 	struct MonDef *md;
    741   1.1  chopps {
    742   1.1  chopps 	struct grfinfo *gi = &gp->g_display;
    743   1.1  chopps 	volatile unsigned char *ba;
    744   1.1  chopps 	volatile unsigned char *fb;
    745   1.1  chopps 	short FW, clksel, HDE, VDE;
    746   1.1  chopps 	unsigned short *c, z;
    747   1.1  chopps 	const unsigned char *f;
    748   1.1  chopps 
    749   1.1  chopps 	ba = gp->g_regkva;;
    750   1.1  chopps 	fb = gp->g_fbkva;
    751   1.1  chopps 
    752   1.1  chopps 	/* provide all needed information in grf device-independant
    753   1.1  chopps 	 * locations */
    754   1.1  chopps 	gp->g_data 		= (caddr_t) md;
    755   1.1  chopps 	gi->gd_regaddr	 	= (caddr_t) kvtop (ba);
    756   1.1  chopps 	gi->gd_regsize		= LM_OFFSET;
    757   1.1  chopps 	gi->gd_fbaddr		= (caddr_t) kvtop (fb);
    758   1.1  chopps 	gi->gd_fbsize		= MEMSIZE *1024*1024;
    759   1.1  chopps #ifdef BANKEDDEVPAGER
    760   1.1  chopps 	/* we're not using banks NO MORE! */
    761   1.1  chopps 	gi->gd_bank_size	= 0;
    762   1.1  chopps #endif
    763   1.1  chopps 	gi->gd_colors		= 1 << md->DEP;
    764   1.1  chopps 	gi->gd_planes		= md->DEP;
    765   1.1  chopps 
    766   1.1  chopps 	if (md->DEP == 4) {
    767   1.1  chopps 		gi->gd_fbwidth	= md->MW;
    768   1.1  chopps 		gi->gd_fbheight	= md->MH;
    769   1.1  chopps 		gi->gd_fbx	= 0;
    770   1.1  chopps 		gi->gd_fby	= 0;
    771   1.1  chopps 		gi->gd_dwidth	= md->TX * md->FX;
    772   1.1  chopps 		gi->gd_dheight	= md->TY * md->FY;
    773   1.1  chopps 		gi->gd_dx	= 0;
    774   1.1  chopps 		gi->gd_dy	= 0;
    775   1.1  chopps 	} else {
    776   1.1  chopps 		gi->gd_fbwidth	= md->TX;
    777   1.1  chopps 		gi->gd_fbheight	= md->TY;
    778   1.1  chopps 		gi->gd_fbx	= 0;
    779   1.1  chopps 		gi->gd_fby	= 0;
    780   1.1  chopps 		gi->gd_dwidth	= md->MW;
    781   1.1  chopps 		gi->gd_dheight	= md->MH;
    782   1.1  chopps 		gi->gd_dx	= 0;
    783   1.1  chopps 		gi->gd_dy	= 0;
    784   1.1  chopps 	}
    785   1.1  chopps 
    786   1.1  chopps 	FW =0;
    787   1.1  chopps 	if (md->DEP == 4) {		/* XXX some text-mode! */
    788   1.1  chopps 		switch (md->FX) {
    789   1.1  chopps 		case 4:
    790   1.1  chopps 			FW = 0;
    791   1.1  chopps 			break;
    792   1.1  chopps 		case 7:
    793   1.1  chopps 			FW = 1;
    794   1.1  chopps 			break;
    795   1.1  chopps 		case 8:
    796   1.1  chopps 			FW = 2;
    797   1.1  chopps 			break;
    798   1.1  chopps 		case 9:
    799   1.1  chopps 			FW = 3;
    800   1.1  chopps 			break;
    801   1.1  chopps 		case 10:
    802   1.1  chopps 			FW = 4;
    803   1.1  chopps 			break;
    804   1.1  chopps 		case 11:
    805   1.1  chopps 			FW = 5;
    806   1.1  chopps 			break;
    807   1.1  chopps 		case 12:
    808   1.1  chopps 			FW = 6;
    809   1.1  chopps 			break;
    810   1.1  chopps 		case 13:
    811   1.1  chopps 			FW = 7;
    812   1.1  chopps 			break;
    813   1.1  chopps 		case 14:
    814   1.1  chopps 			FW = 8;
    815   1.1  chopps 			break;
    816   1.1  chopps 		case 15:
    817   1.1  chopps 			FW = 9;
    818   1.1  chopps 			break;
    819   1.1  chopps 		case 16:
    820   1.1  chopps 			FW = 11;
    821   1.1  chopps 			break;
    822   1.1  chopps 		default:
    823   1.1  chopps 			return(0);
    824   1.1  chopps 			break;
    825   1.1  chopps 		}
    826   1.1  chopps 	}
    827   1.1  chopps 
    828   1.7  chopps         if      (md->DEP == 4)  HDE = (md->MW+md->FX-1)/md->FX;
    829   1.7  chopps         else if (md->DEP == 8)  HDE = (md->MW+3)/4;
    830   1.7  chopps         else if (md->DEP == 16) HDE = (md->MW*2+3)/4;
    831   1.7  chopps         else if (md->DEP == 24) HDE = (md->MW*3+3)/4;
    832   1.1  chopps 
    833   1.1  chopps 	VDE = md->MH-1;
    834   1.1  chopps 
    835   1.1  chopps 	clksel = 0;
    836   1.1  chopps 
    837   1.1  chopps 	vgaw(ba, GREG_MISC_OUTPUT_W, 0xe3 | ((clksel & 3) * 0x04));
    838   1.1  chopps 	vgaw(ba, GREG_FEATURE_CONTROL_W, 0x00);
    839   1.1  chopps 
    840   1.1  chopps 	WSeq(ba, SEQ_ID_RESET, 0x00);
    841   1.1  chopps 	WSeq(ba, SEQ_ID_RESET, 0x03);
    842   1.1  chopps 	WSeq(ba, SEQ_ID_CLOCKING_MODE, 0x01 | ((md->FLG & MDF_CLKDIV2)/ MDF_CLKDIV2 * 8));
    843   1.1  chopps 	WSeq(ba, SEQ_ID_MAP_MASK, 0x0f);
    844   1.1  chopps 	WSeq(ba, SEQ_ID_CHAR_MAP_SELECT, 0x00);
    845   1.1  chopps 	WSeq(ba, SEQ_ID_MEMORY_MODE, 0x06);
    846   1.1  chopps 	WSeq(ba, SEQ_ID_RESET, 0x01);
    847   1.1  chopps 	WSeq(ba, SEQ_ID_RESET, 0x03);
    848   1.1  chopps 
    849   1.1  chopps 	WSeq(ba, SEQ_ID_EXTENDED_ENABLE, 0x05);
    850   1.1  chopps 	WSeq(ba, SEQ_ID_CURSOR_CONTROL, 0x00);
    851   1.1  chopps 	WSeq(ba, SEQ_ID_PRIM_HOST_OFF_HI, 0x00);
    852   1.1  chopps 	WSeq(ba, SEQ_ID_PRIM_HOST_OFF_HI, 0x00);
    853   1.1  chopps 	WSeq(ba, SEQ_ID_LINEAR_0, 0x4a);
    854   1.1  chopps 	WSeq(ba, SEQ_ID_LINEAR_1, 0x00);
    855   1.1  chopps 
    856   1.1  chopps 	WSeq(ba, SEQ_ID_SEC_HOST_OFF_HI, 0x00);
    857   1.1  chopps 	WSeq(ba, SEQ_ID_SEC_HOST_OFF_LO, 0x00);
    858   1.1  chopps 	WSeq(ba, SEQ_ID_EXTENDED_MEM_ENA, 0x3 | 0x4 | 0x10 | 0x40);
    859   1.1  chopps 	WSeq(ba, SEQ_ID_EXT_CLOCK_MODE, 0x10 | (FW & 0x0f));
    860   1.1  chopps 	WSeq(ba, SEQ_ID_EXT_VIDEO_ADDR, 0x03);
    861   1.1  chopps 	if (md->DEP == 4) {
    862   1.1  chopps 	  	/* 8bit pixel, no gfx byte path */
    863   1.1  chopps 		WSeq(ba, SEQ_ID_EXT_PIXEL_CNTL, 0x00);
    864   1.7  chopps         }
    865   1.7  chopps         else if (md->DEP == 8) {
    866   1.1  chopps 	  	/* 8bit pixel, gfx byte path */
    867   1.1  chopps 		WSeq(ba, SEQ_ID_EXT_PIXEL_CNTL, 0x01);
    868   1.7  chopps         }
    869   1.7  chopps         else if (md->DEP == 16) {
    870   1.1  chopps 	  	/* 16bit pixel, gfx byte path */
    871   1.1  chopps 		WSeq(ba, SEQ_ID_EXT_PIXEL_CNTL, 0x11);
    872   1.1  chopps 	}
    873   1.7  chopps         else if (md->DEP == 24) {
    874   1.7  chopps                 /* 24bit pixel, gfx byte path */
    875   1.7  chopps                 WSeq(ba, SEQ_ID_EXT_PIXEL_CNTL, 0x21);
    876   1.7  chopps         }
    877   1.1  chopps 	WSeq(ba, SEQ_ID_BUS_WIDTH_FEEDB, 0x04);
    878   1.1  chopps 	WSeq(ba, SEQ_ID_COLOR_EXP_WFG, 0x01);
    879   1.1  chopps 	WSeq(ba, SEQ_ID_COLOR_EXP_WBG, 0x00);
    880   1.1  chopps 	WSeq(ba, SEQ_ID_EXT_RW_CONTROL, 0x00);
    881   1.1  chopps 	WSeq(ba, SEQ_ID_MISC_FEATURE_SEL, (0x51 | (clksel & 8)));
    882   1.1  chopps 	WSeq(ba, SEQ_ID_COLOR_KEY_CNTL, 0x40);
    883   1.1  chopps 	WSeq(ba, SEQ_ID_COLOR_KEY_MATCH0, 0x00);
    884   1.1  chopps 	WSeq(ba, SEQ_ID_COLOR_KEY_MATCH1, 0x00);
    885   1.1  chopps 	WSeq(ba, SEQ_ID_COLOR_KEY_MATCH2, 0x00);
    886   1.1  chopps 	WSeq(ba, SEQ_ID_CRC_CONTROL, 0x00);
    887   1.1  chopps 	WSeq(ba, SEQ_ID_PERF_SELECT, 0x10);
    888   1.1  chopps 	WSeq(ba, SEQ_ID_ACM_APERTURE_1, 0x00);
    889   1.1  chopps 	WSeq(ba, SEQ_ID_ACM_APERTURE_2, 0x30);
    890   1.1  chopps 	WSeq(ba, SEQ_ID_ACM_APERTURE_3, 0x00);
    891   1.1  chopps 	WSeq(ba, SEQ_ID_MEMORY_MAP_CNTL, 0x07);
    892   1.1  chopps 
    893   1.1  chopps 	WCrt(ba, CRT_ID_END_VER_RETR, (md->VSE & 0xf) | 0x20);
    894   1.1  chopps 	WCrt(ba, CRT_ID_HOR_TOTAL, md->HT    & 0xff);
    895   1.1  chopps 	WCrt(ba, CRT_ID_HOR_DISP_ENA_END, (HDE-1)   & 0xff);
    896   1.1  chopps 	WCrt(ba, CRT_ID_START_HOR_BLANK, md->HBS   & 0xff);
    897   1.1  chopps 	WCrt(ba, CRT_ID_END_HOR_BLANK, (md->HBE   & 0x1f) | 0x80);
    898   1.1  chopps 
    899   1.1  chopps 	WCrt(ba, CRT_ID_START_HOR_RETR, md->HSS   & 0xff);
    900   1.1  chopps 	WCrt(ba, CRT_ID_END_HOR_RETR,
    901   1.1  chopps 	    (md->HSE & 0x1f)   |
    902   1.1  chopps 	    ((md->HBE & 0x20)/ 0x20 * 0x80));
    903   1.1  chopps 	WCrt(ba, CRT_ID_VER_TOTAL,  (md->VT  & 0xff));
    904   1.1  chopps 	WCrt(ba, CRT_ID_OVERFLOW,
    905   1.1  chopps 	    ((md->VSS & 0x200) / 0x200 * 0x80) |
    906   1.1  chopps 	    ((VDE     & 0x200) / 0x200 * 0x40) |
    907   1.1  chopps 	    ((md->VT  & 0x200) / 0x200 * 0x20) |
    908   1.1  chopps 	    0x10                               |
    909   1.1  chopps 	    ((md->VBS & 0x100) / 0x100 * 8)    |
    910   1.1  chopps 	    ((md->VSS & 0x100) / 0x100 * 4)    |
    911   1.1  chopps 	    ((VDE     & 0x100) / 0x100 * 2)    |
    912   1.1  chopps 	    ((md->VT  & 0x100) / 0x100));
    913   1.1  chopps 	WCrt(ba, CRT_ID_PRESET_ROW_SCAN, 0x00);
    914   1.1  chopps 
    915   1.1  chopps 	if (md->DEP == 4) {
    916   1.1  chopps 		WCrt(ba, CRT_ID_MAX_SCAN_LINE,
    917   1.1  chopps 		    ((md->FLG & MDF_DBL)/ MDF_DBL * 0x80) |
    918   1.1  chopps 		    0x40 |
    919   1.1  chopps 		    ((md->VBS & 0x200)/0x200*0x20) |
    920   1.1  chopps 		    ((md->FY-1) & 0x1f));
    921   1.1  chopps 	} else {
    922   1.1  chopps 		WCrt(ba, CRT_ID_MAX_SCAN_LINE,
    923   1.1  chopps 		    ((md->FLG & MDF_DBL)/ MDF_DBL * 0x80) |
    924   1.1  chopps 		    0x40 |
    925   1.1  chopps 		    ((md->VBS & 0x200)/0x200*0x20) |
    926   1.1  chopps 		    (0 & 0x1f));
    927   1.1  chopps 	}
    928   1.1  chopps 
    929   1.1  chopps 	/* I prefer "_" cursor to "block" cursor.. */
    930   1.1  chopps #if 1
    931   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_START, (md->FY & 0x1f) - 2);
    932   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_END, (md->FY & 0x1f) - 1);
    933   1.1  chopps #else
    934   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_START, 0x00);
    935   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_END, md->FY & 0x1f);
    936   1.1  chopps #endif
    937   1.1  chopps 
    938   1.1  chopps 	WCrt(ba, CRT_ID_START_ADDR_HIGH, 0x00);
    939   1.1  chopps 	WCrt(ba, CRT_ID_START_ADDR_LOW, 0x00);
    940   1.1  chopps 
    941   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_LOC_HIGH, 0x00);
    942   1.1  chopps 	WCrt(ba, CRT_ID_CURSOR_LOC_LOW, 0x00);
    943   1.1  chopps 
    944   1.1  chopps 	WCrt(ba, CRT_ID_START_VER_RETR, md->VSS & 0xff);
    945   1.1  chopps 	WCrt(ba, CRT_ID_END_VER_RETR, (md->VSE & 0xf) | 0x80 | 0x20);
    946   1.1  chopps 	WCrt(ba, CRT_ID_VER_DISP_ENA_END, VDE  & 0xff);
    947   1.1  chopps 
    948   1.7  chopps         if (md->DEP == 4) {
    949   1.7  chopps                 WCrt(ba, CRT_ID_OFFSET, (HDE / 2) & 0xff );
    950   1.7  chopps         }
    951   1.7  chopps         /* all gfx-modes are in byte-mode, means values are multiplied by 8 */
    952   1.7  chopps         else if (md->DEP == 8) {
    953   1.7  chopps                 WCrt(ba, CRT_ID_OFFSET, (md->TX / 8) & 0xff );
    954   1.7  chopps         } else if (md->DEP == 16) {
    955   1.7  chopps                 WCrt(ba, CRT_ID_OFFSET, (md->TX / 4) & 0xff );
    956   1.7  chopps         } else {
    957   1.7  chopps                 WCrt(ba, CRT_ID_OFFSET, (md->TX * 3 / 8) & 0xff );
    958   1.7  chopps         }
    959   1.1  chopps 
    960   1.1  chopps 	WCrt(ba, CRT_ID_UNDERLINE_LOC, (md->FY-1) & 0x1f);
    961   1.1  chopps 	WCrt(ba, CRT_ID_START_VER_BLANK, md->VBS & 0xff);
    962   1.1  chopps 	WCrt(ba, CRT_ID_END_VER_BLANK, md->VBE & 0xff);
    963   1.1  chopps 	WCrt(ba, CRT_ID_MODE_CONTROL, 0xe3);
    964   1.1  chopps 	WCrt(ba, CRT_ID_LINE_COMPARE, 0xff);
    965   1.1  chopps 
    966   1.1  chopps 	WCrt(ba, CRT_ID_EXT_HOR_TIMING1,
    967   1.1  chopps 		    0 | 0x20                                    |
    968   1.1  chopps 		    ((md->FLG & MDF_LACE)  / MDF_LACE   * 0x10) |
    969   1.1  chopps 		    ((md->HT  & 0x100) / 0x100)                 |
    970   1.1  chopps 		    (((HDE-1) & 0x100) / 0x100 * 2)             |
    971   1.1  chopps 		    ((md->HBS & 0x100) / 0x100 * 4)             |
    972   1.1  chopps 		    ((md->HSS & 0x100) / 0x100 * 8));
    973   1.1  chopps 
    974   1.7  chopps         if (md->DEP == 4) {
    975   1.7  chopps                 WCrt(ba, CRT_ID_EXT_START_ADDR, (((HDE / 2) & 0x100)/0x100 * 16));
    976   1.7  chopps         }
    977   1.7  chopps         else if (md->DEP == 8) {
    978   1.7  chopps                 WCrt(ba, CRT_ID_EXT_START_ADDR, (((md->TX / 8) & 0x100)/0x100 * 16));
    979   1.7  chopps         } else if (md->DEP == 16) {
    980   1.7  chopps                 WCrt(ba, CRT_ID_EXT_START_ADDR, (((md->TX / 4) & 0x100)/0x100 * 16));
    981   1.7  chopps         } else {
    982   1.7  chopps                 WCrt(ba, CRT_ID_EXT_START_ADDR, (((md->TX * 3 / 8) & 0x100)/0x100 * 16));
    983   1.7  chopps         }
    984   1.1  chopps 
    985   1.1  chopps 	WCrt(ba, CRT_ID_EXT_HOR_TIMING2,
    986   1.1  chopps 		    ((md->HT  & 0x200)/ 0x200)       |
    987   1.1  chopps 	            (((HDE-1) & 0x200)/ 0x200 * 2  ) |
    988   1.1  chopps 	            ((md->HBS & 0x200)/ 0x200 * 4  ) |
    989   1.1  chopps 	            ((md->HSS & 0x200)/ 0x200 * 8  ) |
    990   1.1  chopps 	            ((md->HBE & 0xc0) / 0x40  * 16 ) |
    991   1.1  chopps 	            ((md->HSE & 0x60) / 0x20  * 64));
    992   1.1  chopps 
    993   1.1  chopps 	WCrt(ba, CRT_ID_EXT_VER_TIMING,
    994   1.1  chopps 		    ((md->VSE & 0x10) / 0x10  * 0x80  ) |
    995   1.1  chopps 		    ((md->VBE & 0x300)/ 0x100 * 0x20  ) |
    996   1.1  chopps 		    0x10                                |
    997   1.1  chopps 		    ((md->VSS & 0x400)/ 0x400 * 8     ) |
    998   1.1  chopps 		    ((md->VBS & 0x400)/ 0x400 * 4     ) |
    999   1.1  chopps 		    ((VDE     & 0x400)/ 0x400 * 2     ) |
   1000   1.1  chopps 		    ((md->VT & 0x400)/ 0x400));
   1001   1.1  chopps 	WCrt(ba, CRT_ID_MONITOR_POWER, 0x00);
   1002   1.1  chopps 
   1003   1.1  chopps 	{
   1004   1.1  chopps 		unsigned short tmp = CompFQ(md->FQ);
   1005   1.1  chopps 		WPLL(ba, 2   , tmp);
   1006   1.7  chopps                 tmp = CompFQ(rh_memclk);
   1007   1.1  chopps 		WPLL(ba,10   , tmp);
   1008   1.1  chopps 		WPLL(ba,14   , 0x22);
   1009   1.1  chopps 	}
   1010   1.1  chopps 
   1011   1.1  chopps 	WGfx(ba, GCT_ID_SET_RESET, 0x00);
   1012   1.1  chopps 	WGfx(ba, GCT_ID_ENABLE_SET_RESET, 0x00);
   1013   1.1  chopps 	WGfx(ba, GCT_ID_COLOR_COMPARE, 0x00);
   1014   1.1  chopps 	WGfx(ba, GCT_ID_DATA_ROTATE, 0x00);
   1015   1.1  chopps 	WGfx(ba, GCT_ID_READ_MAP_SELECT, 0x00);
   1016   1.1  chopps 	WGfx(ba, GCT_ID_GRAPHICS_MODE, 0x00);
   1017   1.1  chopps 	if (md->DEP == 4)
   1018   1.1  chopps 		WGfx(ba, GCT_ID_MISC, 0x04);
   1019   1.1  chopps 	else
   1020   1.1  chopps 		WGfx(ba, GCT_ID_MISC, 0x05);
   1021   1.1  chopps 	WGfx(ba, GCT_ID_COLOR_XCARE, 0x0f);
   1022   1.1  chopps 	WGfx(ba, GCT_ID_BITMASK, 0xff);
   1023   1.1  chopps 
   1024   1.1  chopps 	vgar(ba, ACT_ADDRESS_RESET);
   1025   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE0 , 0x00);
   1026   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE1 , 0x01);
   1027   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE2 , 0x02);
   1028   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE3 , 0x03);
   1029   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE4 , 0x04);
   1030   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE5 , 0x05);
   1031   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE6 , 0x06);
   1032   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE7 , 0x07);
   1033   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE8 , 0x08);
   1034   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE9 , 0x09);
   1035   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE10, 0x0a);
   1036   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE11, 0x0b);
   1037   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE12, 0x0c);
   1038   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE13, 0x0d);
   1039   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE14, 0x0e);
   1040   1.1  chopps 	WAttr(ba, ACT_ID_PALETTE15, 0x0f);
   1041   1.1  chopps 
   1042   1.1  chopps 	vgar(ba, ACT_ADDRESS_RESET);
   1043   1.1  chopps 	if (md->DEP == 4)
   1044   1.1  chopps 		WAttr(ba, ACT_ID_ATTR_MODE_CNTL, 0x08);
   1045   1.1  chopps 	else
   1046   1.1  chopps 		WAttr(ba, ACT_ID_ATTR_MODE_CNTL, 0x09);
   1047   1.1  chopps 
   1048   1.1  chopps 	WAttr(ba, ACT_ID_OVERSCAN_COLOR, 0x00);
   1049   1.1  chopps 	WAttr(ba, ACT_ID_COLOR_PLANE_ENA, 0x0f);
   1050   1.1  chopps 	WAttr(ba, ACT_ID_HOR_PEL_PANNING, 0x00);
   1051   1.1  chopps 	WAttr(ba, ACT_ID_COLOR_SELECT, 0x00);
   1052   1.1  chopps 
   1053   1.1  chopps 	vgar(ba, ACT_ADDRESS_RESET);
   1054   1.1  chopps 	vgaw(ba, ACT_ADDRESS_W, 0x20);
   1055   1.1  chopps 
   1056   1.1  chopps 	vgaw(ba, VDAC_MASK, 0xff);
   1057   1.7  chopps         /* probably some PLL timing stuff here. The value
   1058   1.7  chopps            for 24bit was found by trial&error :-) */
   1059   1.7  chopps         if (md->DEP < 16) {
   1060   1.7  chopps                 vgaw(ba, 0x83c6, ((0 & 7) << 5) );
   1061   1.7  chopps         }
   1062   1.7  chopps         else if (md->DEP == 16) {
   1063   1.1  chopps 	  	/* well... */
   1064   1.7  chopps                 vgaw(ba, 0x83c6, ((3 & 7) << 5) );
   1065   1.7  chopps         }
   1066   1.7  chopps         else if (md->DEP == 24) {
   1067   1.7  chopps                 vgaw(ba, 0x83c6, 0xe0);
   1068   1.7  chopps         }
   1069   1.1  chopps 	vgaw(ba, VDAC_ADDRESS_W, 0x00);
   1070   1.1  chopps 
   1071   1.1  chopps 	if (md->DEP < 16) {
   1072   1.1  chopps 		short x = 256-17;
   1073   1.1  chopps 		unsigned char cl = 16;
   1074   1.1  chopps 		RZ3LoadPalette(gp, md->PAL, 0, 16);
   1075   1.1  chopps 		do {
   1076   1.1  chopps 			vgaw(ba, VDAC_DATA, (cl >> 2));
   1077   1.1  chopps 			vgaw(ba, VDAC_DATA, (cl >> 2));
   1078   1.1  chopps 			vgaw(ba, VDAC_DATA, (cl >> 2));
   1079   1.1  chopps 			cl++;
   1080   1.1  chopps 		} while (x-- > 0);
   1081   1.1  chopps 	}
   1082   1.1  chopps 
   1083   1.1  chopps 	if (md->DEP == 4) {
   1084   1.1  chopps 		{
   1085   1.1  chopps 			struct grf_bitblt bb = {
   1086   1.1  chopps 				GRFBBOPset,
   1087   1.1  chopps 				0, 0,
   1088   1.1  chopps 				0, 0,
   1089   1.1  chopps 				md->TX*4, 2*md->TY,
   1090   1.1  chopps 				EMPTY_ALPHA
   1091   1.1  chopps 			};
   1092   1.1  chopps 			RZ3BitBlit(gp, &bb);
   1093   1.1  chopps 		}
   1094   1.1  chopps 
   1095   1.1  chopps 		c = (unsigned short *)(ba + LM_OFFSET);
   1096   1.1  chopps 		c += 2 * md->FLo*32;
   1097   1.1  chopps 		c += 1;
   1098   1.1  chopps 		f = md->FData;
   1099   1.1  chopps 		for (z = md->FLo; z <= md->FHi; z++) {
   1100   1.1  chopps 			short y = md->FY-1;
   1101   1.1  chopps 			if (md->FX > 8){
   1102   1.1  chopps 				do {
   1103   1.1  chopps 					*c = *((const unsigned short *)f);
   1104   1.1  chopps 					c += 2;
   1105   1.1  chopps 					f += 2;
   1106   1.1  chopps 				} while (y-- > 0);
   1107   1.1  chopps 			} else {
   1108   1.1  chopps 				do {
   1109   1.1  chopps 					*c = (*f++) << 8;
   1110   1.1  chopps 					c += 2;
   1111   1.1  chopps 				} while (y-- > 0);
   1112   1.1  chopps 			}
   1113   1.1  chopps 
   1114   1.1  chopps 			c += 2 * (32-md->FY);
   1115   1.1  chopps 		}
   1116   1.1  chopps 		{
   1117   1.1  chopps 			unsigned long * pt = (unsigned long *) (ba + LM_OFFSET + PAT_MEM_OFF);
   1118   1.1  chopps 			unsigned long tmp  = 0xffff0000;
   1119   1.1  chopps 			*pt++ = tmp;
   1120   1.1  chopps 			*pt = tmp;
   1121   1.1  chopps 		}
   1122   1.1  chopps 
   1123   1.1  chopps 		WSeq(ba, SEQ_ID_MAP_MASK, 3);
   1124   1.1  chopps 
   1125   1.1  chopps 		c = (unsigned short *)(ba + LM_OFFSET);
   1126   1.1  chopps 		c += (md->TX-6)*2;
   1127   1.1  chopps 		{
   1128   1.1  chopps 		  	/* it's show-time :-) */
   1129   1.1  chopps 			static unsigned short init_msg[6] = {
   1130   1.1  chopps 				0x520a, 0x450b, 0x540c, 0x490d, 0x4e0e, 0x410f
   1131   1.1  chopps 			};
   1132   1.1  chopps 			unsigned short * m = init_msg;
   1133   1.1  chopps 			short x = 5;
   1134   1.1  chopps 			do {
   1135   1.1  chopps 				*c = *m++;
   1136   1.1  chopps 				c += 2;
   1137   1.1  chopps 			} while (x-- > 0);
   1138   1.1  chopps 		}
   1139   1.1  chopps 
   1140   1.1  chopps 		return(1);
   1141   1.1  chopps 	} else if (md->DEP == 8) {
   1142   1.1  chopps 		struct grf_bitblt bb = {
   1143   1.1  chopps 			GRFBBOPset,
   1144   1.1  chopps 			0, 0,
   1145   1.1  chopps 			0, 0,
   1146   1.1  chopps 			md->TX, md->TY,
   1147   1.1  chopps 			0x0000
   1148   1.1  chopps 		};
   1149   1.1  chopps 		WSeq(ba, SEQ_ID_MAP_MASK, 0x0f);
   1150   1.1  chopps 
   1151   1.1  chopps 		RZ3BitBlit(gp, &bb);
   1152   1.1  chopps 
   1153   1.1  chopps 		xpan = 0;
   1154   1.1  chopps 		ypan = 0;
   1155   1.1  chopps 
   1156   1.1  chopps 		return(1);
   1157   1.1  chopps 	} else if (md->DEP == 16) {
   1158   1.1  chopps 		struct grf_bitblt bb = {
   1159   1.1  chopps 			GRFBBOPset,
   1160   1.1  chopps 			0, 0,
   1161   1.1  chopps 			0, 0,
   1162   1.1  chopps 			md->TX, md->TY,
   1163   1.1  chopps 			0x0000
   1164   1.1  chopps 		};
   1165   1.1  chopps 		WSeq(ba, SEQ_ID_MAP_MASK, 0x0f);
   1166   1.1  chopps 
   1167   1.1  chopps 		RZ3BitBlit16(gp, &bb);
   1168   1.1  chopps 
   1169   1.1  chopps 		xpan = 0;
   1170   1.1  chopps 		ypan = 0;
   1171   1.1  chopps 
   1172   1.1  chopps 		return(1);
   1173   1.7  chopps         } else if (md->DEP == 24) {
   1174   1.7  chopps                 struct grf_bitblt bb = {
   1175   1.7  chopps                         GRFBBOPset,
   1176   1.7  chopps                         0, 0,
   1177   1.7  chopps                         0, 0,
   1178   1.7  chopps                         md->TX, md->TY,
   1179   1.7  chopps                         0x0000
   1180   1.7  chopps                 };
   1181   1.7  chopps                 WSeq(ba, SEQ_ID_MAP_MASK, 0x0f );
   1182   1.7  chopps 
   1183   1.7  chopps                 RZ3BitBlit24(gp, &bb );
   1184   1.7  chopps 
   1185   1.7  chopps                 xpan = 0;
   1186   1.7  chopps                 ypan = 0;
   1187   1.7  chopps 
   1188   1.7  chopps                 return 1;
   1189   1.1  chopps 	} else
   1190   1.1  chopps 		return(0);
   1191   1.1  chopps }
   1192   1.1  chopps 
   1193   1.1  chopps /* standard-palette definition */
   1194   1.1  chopps 
   1195   1.1  chopps unsigned char RZ3StdPalette[16*3] = {
   1196   1.1  chopps /*        R   G   B  */
   1197   1.1  chopps 	  0,  0,  0,
   1198   1.1  chopps 	192,192,192,
   1199   1.1  chopps 	128,  0,  0,
   1200   1.1  chopps 	  0,128,  0,
   1201   1.1  chopps 	  0,  0,128,
   1202   1.1  chopps 	128,128,  0,
   1203   1.1  chopps 	  0,128,128,
   1204   1.1  chopps 	128,  0,128,
   1205   1.1  chopps 	 64, 64, 64, /* the higher 8 colors have more intensity for  */
   1206   1.1  chopps 	255,255,255, /* compatibility with standard attributes       */
   1207   1.1  chopps 	255,  0,  0,
   1208   1.1  chopps 	  0,255,  0,
   1209   1.1  chopps 	  0,  0,255,
   1210   1.1  chopps 	255,255,  0,
   1211   1.1  chopps 	  0,255,255,
   1212   1.1  chopps 	255,  0,255
   1213   1.1  chopps };
   1214   1.1  chopps 
   1215   1.1  chopps /*
   1216   1.1  chopps  * The following structures are examples for monitor-definitions. To make one
   1217   1.1  chopps  * of your own, first use "DefineMonitor" and create the 8-bit or 16-bit
   1218   1.1  chopps  * monitor-mode of your dreams. Then save it, and make a structure from the
   1219   1.1  chopps  * values provided in the file DefineMonitor stored - the labels in the comment
   1220   1.1  chopps  * above the structure definition show where to put what value.
   1221   1.1  chopps  *
   1222   1.1  chopps  * If you want to use your definition for the text-mode, you'll need to adapt
   1223   1.1  chopps  * your 8-bit monitor-definition to the font you want to use. Be FX the width of
   1224   1.1  chopps  * the font, then the following modifications have to be applied to your values:
   1225   1.1  chopps  *
   1226   1.1  chopps  * HBS = (HBS * 4) / FX
   1227   1.1  chopps  * HSS = (HSS * 4) / FX
   1228   1.1  chopps  * HSE = (HSE * 4) / FX
   1229   1.1  chopps  * HBE = (HBE * 4) / FX
   1230   1.1  chopps  * HT  = (HT  * 4) / FX
   1231   1.1  chopps  *
   1232   1.1  chopps  * Make sure your maximum width (MW) and height (MH) are even multiples of
   1233   1.1  chopps  * the fonts' width and height.
   1234   1.1  chopps  *
   1235   1.1  chopps  * You may use definitons created by the old DefineMonitor, but you'll get
   1236   1.1  chopps  * better results with the new DefineMonitor supplied along with the Retin Z3.
   1237   1.1  chopps */
   1238   1.1  chopps 
   1239   1.1  chopps /*
   1240   1.1  chopps  *  FQ     FLG    MW   MH   HBS HSS HSE HBE  HT  VBS  VSS  VSE  VBE   VT
   1241   1.1  chopps  * Depth,          PAL, TX,  TY,    XY,FontX, FontY,    FontData,  FLo,  Fhi
   1242   1.1  chopps  */
   1243   1.7  chopps #ifdef KFONT_8X11
   1244   1.7  chopps #define KERNEL_FONT kernel_font_8x11
   1245   1.7  chopps #define FY 11
   1246   1.7  chopps #define FX  8
   1247   1.7  chopps #else
   1248   1.7  chopps #define KERNEL_FONT kernel_font_8x8
   1249   1.7  chopps #define FY  8
   1250   1.7  chopps #define FX  8
   1251   1.7  chopps #endif
   1252   1.7  chopps 
   1253   1.7  chopps 
   1254   1.1  chopps static struct MonDef monitor_defs[] = {
   1255   1.1  chopps   /* Text-mode definitions */
   1256   1.1  chopps 
   1257   1.1  chopps   /* horizontal 31.5 kHz */
   1258   1.1  chopps   { 50000000,  28,  640, 512,   81, 86, 93, 98, 95, 513, 513, 521, 535, 535,
   1259   1.7  chopps       4, RZ3StdPalette, 80,  64,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1260   1.1  chopps 
   1261   1.1  chopps   /* horizontal 38kHz */
   1262   1.1  chopps   { 75000000,  28,  768, 600,   97, 99,107,120,117, 601, 615, 625, 638, 638,
   1263   1.7  chopps       4, RZ3StdPalette, 96,  75,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1264   1.1  chopps 
   1265   1.1  chopps   /* horizontal 64kHz */
   1266   1.1  chopps   { 50000000, 24,  768, 600,   97,104,112,122,119, 601, 606, 616, 628, 628,
   1267   1.7  chopps       4, RZ3StdPalette, 96,  75,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1268   1.1  chopps 
   1269   1.1  chopps   /* 8-bit gfx-mode definitions */
   1270   1.1  chopps 
   1271   1.7  chopps   /* IMPORTANT: the "logical" screen size can be up to 2048x2048 pixels,
   1272   1.7  chopps      independent from the "physical" screen size. If your code does NOT
   1273   1.7  chopps      support panning, please adjust the "logical" screen sizes below to
   1274   1.7  chopps      match the physical ones
   1275   1.1  chopps    */
   1276   1.1  chopps 
   1277   1.1  chopps   /* 640 x 480, 8 Bit, 31862 Hz, 63 Hz */
   1278   1.1  chopps   { 26000000,  0,  640, 480,  161,175,188,200,199, 481, 483, 491, 502, 502,
   1279   1.7  chopps       8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1280   1.1  chopps   /* This is the logical ^    ^    screen size */
   1281   1.1  chopps 
   1282   1.1  chopps   /* 640 x 480, 8 Bit, 38366 Hz, 76 Hz */
   1283   1.1  chopps  { 31000000,  0,  640, 480,  161,169,182,198,197, 481, 482, 490, 502, 502,
   1284   1.7  chopps      8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1285   1.1  chopps 
   1286   1.1  chopps   /* 800 x 600, 8 Bit, 38537 Hz, 61 Hz */
   1287   1.1  chopps   { 39000000,  0,  800, 600,  201,211,227,249,248, 601, 603, 613, 628, 628,
   1288   1.7  chopps       8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1289   1.1  chopps 
   1290   1.1  chopps   /* 1024 x 768, 8 Bit, 63862 Hz, 79 Hz */
   1291   1.1  chopps   { 82000000,  0, 1024, 768,  257,257,277,317,316, 769, 771, 784, 804, 804,
   1292   1.7  chopps       8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1293   1.1  chopps 
   1294   1.1  chopps   /* 1120 x 896, 8 Bit, 64000 Hz, 69 Hz */
   1295   1.1  chopps   { 97000000,  0, 1120, 896,  281,283,306,369,368, 897, 898, 913, 938, 938,
   1296   1.7  chopps       8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1297   1.1  chopps 
   1298   1.1  chopps   /* 1152 x 910, 8 Bit, 76177 Hz, 79 Hz */
   1299   1.1  chopps   {110000000,  0, 1152, 910,  289,310,333,357,356, 911, 923, 938, 953, 953,
   1300   1.7  chopps       8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1301   1.1  chopps 
   1302   1.1  chopps   /* 1184 x 848, 8 Bit, 73529 Hz, 82 Hz */
   1303   1.1  chopps   {110000000,  0, 1184, 848,  297,319,342,370,369, 849, 852, 866, 888, 888,
   1304   1.7  chopps       8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1305   1.1  chopps 
   1306   1.1  chopps   /* 1280 x 1024, 8 Bit, 64516 Hz, 60 Hz */
   1307   1.1  chopps   {104000000, 0, 1280,1024,  321,323,348,399,398,1025,1026,1043,1073,1073,
   1308   1.7  chopps      8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1309   1.1  chopps 
   1310   1.1  chopps /* WARNING: THE FOLLOWING MONITOR MODE EXCEEDS THE 110-MHz LIMIT THE PROCESSOR
   1311   1.1  chopps             HAS BEEN SPECIFIED FOR. USE AT YOUR OWN RISK (AND THINK ABOUT
   1312   1.1  chopps             MOUNTING SOME COOLING DEVICE AT THE PROCESSOR AND RAMDAC)!     */
   1313   1.1  chopps   /* 1280 x 1024, 8 Bit, 75436 Hz, 70 Hz */
   1314   1.1  chopps   {121000000, 0, 1280,1024,  321,322,347,397,396,1025,1026,1043,1073,1073,
   1315   1.7  chopps      8, RZ3StdPalette,1280,1024,  5120,   FX,    FY, KERNEL_FONT,   32,  255},
   1316   1.1  chopps 
   1317   1.1  chopps 
   1318   1.1  chopps   /* 16-bit gfx-mode definitions */
   1319   1.1  chopps 
   1320   1.1  chopps   /* 640 x 480, 16 Bit, 31795 Hz, 63 Hz */
   1321   1.1  chopps   { 51000000, 0,  640, 480,  321,344,369,397,396, 481, 482, 490, 502, 502,
   1322   1.7  chopps       16,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1323   1.1  chopps 
   1324   1.1  chopps   /* 800 x 600, 16 Bit, 38500 Hz, 61 Hz */
   1325   1.1  chopps   { 77000000, 0,  800, 600,  401,418,449,496,495, 601, 602, 612, 628, 628,
   1326   1.7  chopps       16,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1327   1.1  chopps 
   1328   1.1  chopps   /* 1024 x 768, 16 Bit, 42768 Hz, 53 Hz */
   1329   1.1  chopps   {110000000,  0, 1024, 768,  513,514,554,639,638, 769, 770, 783, 804, 804,
   1330   1.7  chopps       16,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1331   1.1  chopps 
   1332   1.1  chopps   /* 864 x 648, 16 Bit, 50369 Hz, 74 Hz */
   1333   1.1  chopps   {109000000,  0,  864, 648,  433,434,468,537,536, 649, 650, 661, 678, 678,
   1334   1.7  chopps       16,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1335   1.1  chopps 
   1336   1.7  chopps /* WARNING: THE FOLLOWING MONITOR MODE EXCEEDS THE 110-MHz LIMIT THE PROCESSOR
   1337   1.7  chopps             HAS BEEN SPECIFIED FOR. USE AT YOUR OWN RISK (AND THINK ABOUT
   1338   1.7  chopps             MOUNTING SOME COOLING DEVICE AT THE PROCESSOR AND RAMDAC)!     */
   1339   1.1  chopps   /* 1024 x 768, 16 Bit, 48437 Hz, 60 Hz */
   1340   1.1  chopps   {124000000,  0, 1024, 768,  513,537,577,636,635, 769, 770, 783, 804, 804,
   1341   1.7  chopps       16,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1342   1.7  chopps 
   1343   1.7  chopps 
   1344   1.7  chopps   /* 24-bit gfx-mode definitions */
   1345   1.7  chopps 
   1346   1.7  chopps   /* 320 x 200, 24 Bit, 35060 Hz, 83 Hz d */
   1347   1.7  chopps   { 46000000,  1,  320, 200,  241,268,287,324,323, 401, 405, 412, 418, 418,
   1348   1.7  chopps       24,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1349   1.7  chopps 
   1350   1.7  chopps   /* 640 x 400, 24 Bit, 31404 Hz, 75 Hz */
   1351   1.7  chopps   { 76000000,  0,  640, 400,  481,514,552,601,600, 401, 402, 409, 418, 418,
   1352   1.7  chopps       24,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1353   1.7  chopps 
   1354   1.7  chopps   /* 724 x 482, 24 Bit, 36969 Hz, 73 Hz */
   1355   1.7  chopps   {101000000,  0,  724, 482,  544,576,619,682,678, 483, 487, 495, 495, 504,
   1356   1.7  chopps       24,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1357   1.7  chopps 
   1358   1.7  chopps   /* 800 x 600, 24 Bit, 37826 Hz, 60 Hz */
   1359   1.7  chopps   {110000000,  0,  800, 600,  601,602,647,723,722, 601, 602, 612, 628, 628,
   1360   1.7  chopps       24,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1361   1.7  chopps 
   1362   1.7  chopps   /* 800 x 600, 24 Bit, 43824 Hz, 69 Hz */
   1363   1.7  chopps   {132000000,  0,  800, 600,  601,641,688,749,748, 601, 611, 621, 628, 628,
   1364   1.7  chopps       24,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1365   1.7  chopps 
   1366   1.7  chopps   /*1024 x 768, 24 Bit, 32051 Hz, 79 Hz i */
   1367   1.7  chopps   {110000000,  2, 1024, 768,  769,770,824,854,853, 385, 386, 392, 401, 401,
   1368   1.7  chopps       24,           0,1280, 1024,  7200,   FX,    FY, KERNEL_FONT,   32,  255},
   1369   1.1  chopps };
   1370   1.7  chopps #undef KERNEL_FONT
   1371   1.7  chopps #undef FX
   1372   1.7  chopps #undef FY
   1373   1.1  chopps 
   1374   1.1  chopps static const char *monitor_descr[] = {
   1375   1.2  chopps #ifdef KFONT_8X11
   1376   1.2  chopps   "80x46 (640x506) 31.5kHz",
   1377   1.2  chopps   "96x54 (768x594) 38kHz",
   1378   1.2  chopps   "96x54 (768x594) 64kHz",
   1379   1.2  chopps #else
   1380   1.1  chopps   "80x64 (640x512) 31.5kHz",
   1381   1.1  chopps   "96x75 (768x600) 38kHz",
   1382   1.1  chopps   "96x75 (768x600) 64kHz",
   1383   1.2  chopps #endif
   1384   1.1  chopps 
   1385   1.1  chopps   "GFX-8 (640x480) 31.5kHz",
   1386   1.1  chopps   "GFX-8 (640x480) 38kHz",
   1387   1.1  chopps   "GFX-8 (800x600) 38.5kHz",
   1388   1.1  chopps   "GFX-8 (1024x768) 64kHz",
   1389   1.1  chopps   "GFX-8 (1120x896) 64kHz",
   1390   1.1  chopps   "GFX-8 (1152x910) 76kHz",
   1391   1.1  chopps   "GFX-8 (1182x848) 73kHz",
   1392   1.1  chopps   "GFX-8 (1280x1024) 64.5kHz",
   1393   1.1  chopps   "GFX-8 (1280x1024) 75.5kHz ***EXCEEDS CHIP LIMIT!!!***",
   1394   1.1  chopps 
   1395   1.1  chopps   "GFX-16 (640x480) 31.8kHz",
   1396   1.1  chopps   "GFX-16 (800x600) 38.5kHz",
   1397   1.1  chopps   "GFX-16 (1024x768) 42.8kHz",
   1398   1.1  chopps   "GFX-16 (864x648) 50kHz",
   1399   1.1  chopps   "GFX-16 (1024x768) 48.5kHz ***EXCEEDS CHIP LIMIT!!!***",
   1400   1.7  chopps 
   1401   1.7  chopps   "GFX-24 (320x200 d) 35kHz",
   1402   1.7  chopps   "GFX-24 (640x400) 31.4kHz",
   1403   1.7  chopps   "GFX-24 (724x482) 37kHz",
   1404   1.7  chopps   "GFX-24 (800x600) 38kHz",
   1405   1.7  chopps   "GFX-24 (800x600) 44kHz ***EXCEEDS CHIP LIMIT!!!***",
   1406   1.7  chopps   "GFX-24 (1024x768) 32kHz-i",
   1407   1.1  chopps };
   1408   1.1  chopps 
   1409   1.1  chopps int rh_mon_max = sizeof (monitor_defs)/sizeof (monitor_defs[0]);
   1410   1.1  chopps 
   1411   1.1  chopps /* patchable */
   1412   1.8  chopps int rh_default_mon = 0;
   1413   1.8  chopps int rh_default_gfx = 4;
   1414   1.1  chopps 
   1415   1.1  chopps static struct MonDef *current_mon;
   1416   1.1  chopps 
   1417   1.1  chopps int  rh_mode     __P((struct grf_softc *, int, void *, int, int));
   1418   1.1  chopps void grfrhattach __P((struct device *, struct device *, void *));
   1419   1.1  chopps int  grfrhprint  __P((void *, char *));
   1420   1.1  chopps int  grfrhmatch  __P((struct device *, struct cfdata *, void *));
   1421   1.1  chopps 
   1422   1.1  chopps struct cfdriver grfrhcd = {
   1423   1.4  chopps 	NULL, "grfrh", (cfmatch_t)grfrhmatch, grfrhattach,
   1424   1.1  chopps 	DV_DULL, sizeof(struct grf_softc), NULL, 0
   1425   1.1  chopps };
   1426   1.1  chopps 
   1427   1.1  chopps static struct cfdata *cfdata;
   1428   1.1  chopps 
   1429   1.1  chopps int
   1430   1.1  chopps grfrhmatch(pdp, cfp, auxp)
   1431   1.1  chopps 	struct device *pdp;
   1432   1.1  chopps 	struct cfdata *cfp;
   1433   1.1  chopps 	void *auxp;
   1434   1.1  chopps {
   1435   1.1  chopps #ifdef RETINACONSOLE
   1436   1.1  chopps 	static int rhconunit = -1;
   1437   1.1  chopps #endif
   1438   1.5  chopps 	struct zbus_args *zap;
   1439   1.1  chopps 
   1440   1.1  chopps 	zap = auxp;
   1441   1.1  chopps 
   1442   1.1  chopps 	if (amiga_realconfig == 0)
   1443   1.1  chopps #ifdef RETINACONSOLE
   1444   1.1  chopps 		if (rhconunit != -1)
   1445   1.1  chopps #endif
   1446   1.1  chopps 			return(0);
   1447  1.11      is 	if (zap->manid != 18260 ||
   1448  1.11      is 			(zap->prodid != 16) && (zap->prodid != 19))
   1449   1.1  chopps 		return(0);
   1450   1.1  chopps #ifdef RETINACONSOLE
   1451   1.1  chopps 	if (amiga_realconfig == 0 || rhconunit != cfp->cf_unit) {
   1452   1.1  chopps #endif
   1453   1.1  chopps 		if ((unsigned)rh_default_mon >= rh_mon_max ||
   1454   1.1  chopps 		    monitor_defs[rh_default_mon].DEP == 8)
   1455   1.1  chopps 			rh_default_mon = 0;
   1456   1.1  chopps 		current_mon = monitor_defs + rh_default_mon;
   1457   1.1  chopps 		if (rh_mondefok(current_mon) == 0)
   1458   1.1  chopps 			return(0);
   1459   1.1  chopps #ifdef RETINACONSOLE
   1460   1.1  chopps 		if (amiga_realconfig == 0) {
   1461   1.1  chopps 			rhconunit = cfp->cf_unit;
   1462   1.1  chopps 			cfdata = cfp;
   1463   1.1  chopps 		}
   1464   1.1  chopps 	}
   1465   1.1  chopps #endif
   1466   1.1  chopps 	return(1);
   1467   1.1  chopps }
   1468   1.1  chopps 
   1469   1.1  chopps void
   1470   1.1  chopps grfrhattach(pdp, dp, auxp)
   1471   1.1  chopps 	struct device *pdp, *dp;
   1472   1.1  chopps 	void *auxp;
   1473   1.1  chopps {
   1474   1.1  chopps 	static struct grf_softc congrf;
   1475   1.1  chopps 	static int coninited;
   1476   1.5  chopps 	struct zbus_args *zap;
   1477   1.1  chopps 	struct grf_softc *gp;
   1478   1.1  chopps 
   1479   1.1  chopps 	zap = auxp;
   1480   1.1  chopps 
   1481   1.1  chopps 	if (dp == NULL)
   1482   1.1  chopps 		gp = &congrf;
   1483   1.1  chopps 	else
   1484   1.1  chopps 		gp = (struct grf_softc *)dp;
   1485   1.1  chopps 	if (dp != NULL && congrf.g_regkva != 0) {
   1486   1.1  chopps 		/*
   1487   1.1  chopps 		 * inited earlier, just copy (not device struct)
   1488   1.1  chopps 		 */
   1489   1.1  chopps 		bcopy(&congrf.g_display, &gp->g_display,
   1490   1.1  chopps 		    (char *)&gp[1] - (char *)&gp->g_display);
   1491   1.1  chopps 	} else {
   1492   1.1  chopps 		gp->g_regkva = (volatile caddr_t)zap->va;
   1493   1.1  chopps 		gp->g_fbkva = (volatile caddr_t)zap->va + LM_OFFSET;
   1494   1.1  chopps 		gp->g_unit = GRF_RETINAIII_UNIT;
   1495   1.1  chopps 		gp->g_mode = rh_mode;
   1496   1.1  chopps 		gp->g_conpri = grfrh_cnprobe();
   1497   1.1  chopps 		gp->g_flags = GF_ALIVE;
   1498   1.1  chopps 		grfrh_iteinit(gp);
   1499   1.1  chopps 		(void)rh_load_mon(gp, current_mon);
   1500   1.1  chopps 	}
   1501   1.1  chopps 	if (dp != NULL)
   1502   1.1  chopps 		printf("\n");
   1503   1.1  chopps 	/*
   1504   1.1  chopps 	 * attach grf
   1505   1.1  chopps 	 */
   1506   1.1  chopps 	amiga_config_found(cfdata, &gp->g_device, gp, grfrhprint);
   1507   1.1  chopps }
   1508   1.1  chopps 
   1509   1.1  chopps int
   1510   1.1  chopps grfrhprint(auxp, pnp)
   1511   1.1  chopps 	void *auxp;
   1512   1.1  chopps 	char *pnp;
   1513   1.1  chopps {
   1514   1.1  chopps 	if (pnp)
   1515   1.1  chopps 		printf("ite at %s", pnp);
   1516   1.1  chopps 	return(UNCONF);
   1517   1.1  chopps }
   1518   1.1  chopps 
   1519   1.1  chopps int
   1520   1.1  chopps rh_getvmode(gp, vm)
   1521   1.1  chopps 	struct grf_softc *gp;
   1522   1.1  chopps 	struct grfvideo_mode *vm;
   1523   1.1  chopps {
   1524   1.1  chopps 	struct MonDef *md;
   1525   1.1  chopps 
   1526   1.1  chopps 	if (vm->mode_num && vm->mode_num > rh_mon_max)
   1527   1.1  chopps 		return(EINVAL);
   1528   1.1  chopps 
   1529   1.1  chopps 	if (! vm->mode_num)
   1530   1.1  chopps 		vm->mode_num = (current_mon - monitor_defs) + 1;
   1531   1.1  chopps 
   1532   1.1  chopps 	md = monitor_defs + (vm->mode_num - 1);
   1533   1.1  chopps 	strncpy (vm->mode_descr, monitor_descr + (vm->mode_num - 1),
   1534   1.1  chopps 	   sizeof (vm->mode_descr));
   1535   1.1  chopps 	vm->pixel_clock  = md->FQ;
   1536   1.7  chopps         vm->disp_width   = (md->DEP == 4) ? md->MW : md->TX;
   1537   1.7  chopps         vm->disp_height  = (md->DEP == 4) ? md->MH : md->TY;
   1538   1.1  chopps 	vm->depth        = md->DEP;
   1539  1.10  chopps 
   1540  1.10  chopps 	/*
   1541  1.10  chopps 	 * From observation of the monitor definition table above, I guess
   1542  1.10  chopps 	 * that the horizontal timings are in units of longwords. Hence, I
   1543  1.10  chopps 	 * get the pixels by multiplication with 32 and division by the depth.
   1544  1.10  chopps 	 * The text modes, apparently marked by depth == 4, are even more
   1545  1.10  chopps 	 * wierd. According to a comment above, they are computed from a
   1546  1.10  chopps 	 * depth==8 mode thats for us: * 32 / 8) by applying another factor
   1547  1.10  chopps 	 * of 4 / font width.
   1548  1.10  chopps 	 * Reverse applying the latter formula most of the constants cancel
   1549  1.10  chopps 	 * themselves and we are left with a nice (* font width).
   1550  1.10  chopps 	 * That is, internal timings are in units of longwords for graphics
   1551  1.10  chopps 	 * modes, or in units of characters widths for text modes.
   1552  1.10  chopps 	 * We better don't WRITE modes until this has been real live checked.
   1553  1.10  chopps 	 *                    - Ignatios Souvatzis
   1554  1.10  chopps 	 */
   1555  1.10  chopps 
   1556  1.10  chopps 	if (md->DEP == 4) {
   1557  1.10  chopps 		vm->hblank_start = md->HBS * 32 / md->DEP;
   1558  1.10  chopps 		vm->hblank_stop  = md->HBE * 32 / md->DEP;
   1559  1.10  chopps 		vm->hsync_start  = md->HSS * 32 / md->DEP;
   1560  1.10  chopps 		vm->hsync_stop   = md->HSE * 32 / md->DEP;
   1561  1.10  chopps 		vm->htotal       = md->HT * 32 / md->DEP;
   1562  1.10  chopps 	} else {
   1563  1.10  chopps 		vm->hblank_start = md->HBS * md->FX;
   1564  1.10  chopps 		vm->hblank_stop  = md->HBE * md->FX;
   1565  1.10  chopps 		vm->hsync_start  = md->HSS * md->FX;
   1566  1.10  chopps 		vm->hsync_stop   = md->HSE * md->FX;
   1567  1.10  chopps 		vm->htotal       = md->HT * md->FX;
   1568  1.10  chopps 	}
   1569  1.10  chopps 
   1570   1.1  chopps 	vm->vblank_start = md->VBS;
   1571   1.1  chopps 	vm->vblank_stop  = md->VBE;
   1572   1.1  chopps 	vm->vsync_start  = md->VSS;
   1573   1.1  chopps 	vm->vsync_stop   = md->VSE;
   1574   1.1  chopps 	vm->vtotal       = md->VT;
   1575   1.1  chopps 
   1576   1.1  chopps 	return(0);
   1577   1.1  chopps }
   1578   1.1  chopps 
   1579   1.1  chopps 
   1580   1.1  chopps int
   1581   1.7  chopps rh_setvmode(gp, mode, type)
   1582   1.1  chopps 	struct grf_softc *gp;
   1583   1.1  chopps 	unsigned mode;
   1584   1.7  chopps         enum mode_type type;
   1585   1.1  chopps {
   1586   1.1  chopps 	struct MonDef *md;
   1587   1.1  chopps 	int error;
   1588   1.1  chopps 
   1589   1.1  chopps 	if (!mode || mode > rh_mon_max)
   1590   1.1  chopps 		return(EINVAL);
   1591   1.1  chopps 
   1592   1.7  chopps         if ((type == MT_TXTONLY && monitor_defs[mode-1].DEP != 4)
   1593   1.7  chopps             || (type == MT_GFXONLY && monitor_defs[mode-1].DEP == 4))
   1594   1.1  chopps 		return(EINVAL);
   1595   1.1  chopps 
   1596   1.1  chopps 	current_mon = monitor_defs + (mode - 1);
   1597   1.1  chopps 
   1598   1.1  chopps 	error = rh_load_mon (gp, current_mon) ? 0 : EINVAL;
   1599   1.1  chopps 
   1600   1.1  chopps 	return(error);
   1601   1.1  chopps }
   1602   1.1  chopps 
   1603   1.1  chopps 
   1604   1.1  chopps /*
   1605   1.1  chopps  * Change the mode of the display.
   1606   1.1  chopps  * Return a UNIX error number or 0 for success.
   1607   1.1  chopps  */
   1608   1.1  chopps rh_mode(gp, cmd, arg, a2, a3)
   1609   1.1  chopps 	register struct grf_softc *gp;
   1610   1.1  chopps 	int cmd;
   1611   1.1  chopps 	void *arg;
   1612   1.1  chopps 	int a2, a3;
   1613   1.1  chopps {
   1614   1.1  chopps 	switch (cmd) {
   1615   1.1  chopps 	case GM_GRFON:
   1616   1.7  chopps                 rh_setvmode (gp, rh_default_gfx + 1, MT_GFXONLY);
   1617   1.1  chopps 		return(0);
   1618   1.1  chopps 
   1619   1.1  chopps 	case GM_GRFOFF:
   1620   1.7  chopps                 rh_setvmode (gp, rh_default_mon + 1, MT_TXTONLY);
   1621   1.1  chopps 		return(0);
   1622   1.1  chopps 
   1623   1.1  chopps 	case GM_GRFCONFIG:
   1624   1.1  chopps 		return(0);
   1625   1.1  chopps 
   1626   1.1  chopps 	case GM_GRFGETVMODE:
   1627   1.1  chopps 		return(rh_getvmode (gp, (struct grfvideo_mode *) arg));
   1628   1.1  chopps 
   1629   1.1  chopps 	case GM_GRFSETVMODE:
   1630   1.7  chopps                 return(rh_setvmode (gp, *(unsigned *) arg,
   1631   1.7  chopps                                     (gp->g_flags & GF_GRFON) ? MT_GFXONLY : MT_TXTONLY));
   1632   1.1  chopps 
   1633   1.1  chopps 	case GM_GRFGETNUMVM:
   1634   1.1  chopps 		*(int *)arg = rh_mon_max;
   1635   1.1  chopps 		return(0);
   1636   1.1  chopps 
   1637   1.1  chopps #ifdef BANKEDDEVPAGER
   1638   1.1  chopps 	case GM_GRFGETBANK:
   1639   1.1  chopps 	case GM_GRFGETCURBANK:
   1640   1.1  chopps 	case GM_GRFSETBANK:
   1641   1.1  chopps 		return(EINVAL);
   1642   1.1  chopps #endif
   1643   1.1  chopps 	case GM_GRFIOCTL:
   1644   1.4  chopps 		return(rh_ioctl (gp, (u_long) arg, (caddr_t) a2));
   1645   1.1  chopps 
   1646   1.1  chopps 	default:
   1647   1.1  chopps 		break;
   1648   1.1  chopps 	}
   1649   1.1  chopps 
   1650   1.1  chopps 	return(EINVAL);
   1651   1.1  chopps }
   1652   1.1  chopps 
   1653   1.1  chopps int
   1654   1.1  chopps rh_ioctl (gp, cmd, data)
   1655   1.1  chopps 	register struct grf_softc *gp;
   1656   1.4  chopps 	u_long cmd;
   1657   1.1  chopps 	void *data;
   1658   1.1  chopps {
   1659   1.1  chopps 	switch (cmd) {
   1660   1.1  chopps 	case GRFIOCGSPRITEPOS:
   1661   1.1  chopps 		return(rh_getspritepos (gp, (struct grf_position *) data));
   1662   1.1  chopps 
   1663   1.1  chopps 	case GRFIOCSSPRITEPOS:
   1664   1.1  chopps 		return(rh_setspritepos (gp, (struct grf_position *) data));
   1665   1.1  chopps 
   1666   1.1  chopps 	case GRFIOCSSPRITEINF:
   1667   1.1  chopps 		return(rh_setspriteinfo (gp, (struct grf_spriteinfo *) data));
   1668   1.1  chopps 
   1669   1.1  chopps 	case GRFIOCGSPRITEINF:
   1670   1.1  chopps 		return(rh_getspriteinfo (gp, (struct grf_spriteinfo *) data));
   1671   1.1  chopps 
   1672   1.1  chopps 	case GRFIOCGSPRITEMAX:
   1673   1.1  chopps 		return(rh_getspritemax (gp, (struct grf_position *) data));
   1674   1.1  chopps 
   1675   1.1  chopps 	case GRFIOCGETCMAP:
   1676   1.1  chopps 		return(rh_getcmap (gp, (struct grf_colormap *) data));
   1677   1.1  chopps 
   1678   1.1  chopps 	case GRFIOCPUTCMAP:
   1679   1.1  chopps 		return(rh_putcmap (gp, (struct grf_colormap *) data));
   1680   1.1  chopps 
   1681   1.1  chopps 	case GRFIOCBITBLT:
   1682   1.1  chopps 		return(rh_bitblt (gp, (struct grf_bitblt *) data));
   1683   1.1  chopps 	}
   1684   1.1  chopps 
   1685   1.1  chopps 	return(EINVAL);
   1686   1.1  chopps }
   1687   1.1  chopps 
   1688   1.1  chopps 
   1689   1.1  chopps int
   1690   1.1  chopps rh_getcmap (gfp, cmap)
   1691   1.1  chopps 	struct grf_softc *gfp;
   1692   1.1  chopps 	struct grf_colormap *cmap;
   1693   1.1  chopps {
   1694   1.1  chopps 	volatile unsigned char *ba;
   1695   1.1  chopps 	u_char red[256], green[256], blue[256], *rp, *gp, *bp;
   1696   1.1  chopps 	short x;
   1697   1.1  chopps 	int error;
   1698   1.1  chopps 
   1699   1.1  chopps 	if (cmap->count == 0 || cmap->index >= 256)
   1700   1.1  chopps 		return 0;
   1701   1.1  chopps 
   1702   1.1  chopps 	if (cmap->index + cmap->count > 256)
   1703   1.1  chopps 		cmap->count = 256 - cmap->index;
   1704   1.1  chopps 
   1705   1.1  chopps 	ba = gfp->g_regkva;
   1706   1.1  chopps 	/* first read colors out of the chip, then copyout to userspace */
   1707   1.1  chopps 	vgaw (ba, VDAC_ADDRESS_W, cmap->index);
   1708   1.1  chopps 	x = cmap->count - 1;
   1709   1.1  chopps 	rp = red + cmap->index;
   1710   1.1  chopps 	gp = green + cmap->index;
   1711   1.1  chopps 	bp = blue + cmap->index;
   1712   1.1  chopps 	do {
   1713   1.1  chopps 		*rp++ = vgar (ba, VDAC_DATA) << 2;
   1714   1.1  chopps 		*gp++ = vgar (ba, VDAC_DATA) << 2;
   1715   1.1  chopps 		*bp++ = vgar (ba, VDAC_DATA) << 2;
   1716   1.1  chopps 	} while (x-- > 0);
   1717   1.1  chopps 
   1718   1.1  chopps 	if (!(error = copyout (red + cmap->index, cmap->red, cmap->count))
   1719   1.1  chopps 	    && !(error = copyout (green + cmap->index, cmap->green, cmap->count))
   1720   1.1  chopps 	    && !(error = copyout (blue + cmap->index, cmap->blue, cmap->count)))
   1721   1.1  chopps 		return(0);
   1722   1.1  chopps 
   1723   1.1  chopps 	return(error);
   1724   1.1  chopps }
   1725   1.1  chopps 
   1726   1.1  chopps int
   1727   1.1  chopps rh_putcmap (gfp, cmap)
   1728   1.1  chopps 	struct grf_softc *gfp;
   1729   1.1  chopps 	struct grf_colormap *cmap;
   1730   1.1  chopps {
   1731   1.1  chopps 	volatile unsigned char *ba;
   1732   1.1  chopps 	u_char red[256], green[256], blue[256], *rp, *gp, *bp;
   1733   1.1  chopps 	short x;
   1734   1.1  chopps 	int error;
   1735   1.1  chopps 
   1736   1.1  chopps 	if (cmap->count == 0 || cmap->index >= 256)
   1737   1.1  chopps 		return(0);
   1738   1.1  chopps 
   1739   1.1  chopps 	if (cmap->index + cmap->count > 256)
   1740   1.1  chopps 		cmap->count = 256 - cmap->index;
   1741   1.1  chopps 
   1742   1.1  chopps 	/* first copy the colors into kernelspace */
   1743   1.1  chopps 	if (!(error = copyin (cmap->red, red + cmap->index, cmap->count))
   1744   1.1  chopps 	    && !(error = copyin (cmap->green, green + cmap->index, cmap->count))
   1745   1.1  chopps 	    && !(error = copyin (cmap->blue, blue + cmap->index, cmap->count))) {
   1746   1.1  chopps 		/* argl.. LoadPalette wants a different format, so do it like with
   1747   1.1  chopps 		* Retina2.. */
   1748   1.1  chopps 		ba = gfp->g_regkva;
   1749   1.1  chopps 		vgaw (ba, VDAC_ADDRESS_W, cmap->index);
   1750   1.1  chopps 		x = cmap->count - 1;
   1751   1.1  chopps 		rp = red + cmap->index;
   1752   1.1  chopps 		gp = green + cmap->index;
   1753   1.1  chopps 		bp = blue + cmap->index;
   1754   1.1  chopps 		do {
   1755   1.1  chopps 			vgaw (ba, VDAC_DATA, *rp++ >> 2);
   1756   1.1  chopps 			vgaw (ba, VDAC_DATA, *gp++ >> 2);
   1757   1.1  chopps 			vgaw (ba, VDAC_DATA, *bp++ >> 2);
   1758   1.1  chopps 		} while (x-- > 0);
   1759   1.1  chopps 		return(0);
   1760   1.1  chopps 	}
   1761   1.1  chopps 	else
   1762   1.1  chopps 		return(error);
   1763   1.1  chopps }
   1764   1.1  chopps 
   1765   1.1  chopps int
   1766   1.1  chopps rh_getspritepos (gp, pos)
   1767   1.1  chopps 	struct grf_softc *gp;
   1768   1.1  chopps 	struct grf_position *pos;
   1769   1.1  chopps {
   1770   1.1  chopps 	volatile unsigned char *acm = gp->g_regkva + ACM_OFFSET;
   1771   1.1  chopps 
   1772   1.1  chopps 	pos->x = acm[ACM_CURSOR_POSITION + 0] +
   1773   1.1  chopps 	    (acm[ACM_CURSOR_POSITION + 1] << 8);
   1774   1.1  chopps 	pos->y = acm[ACM_CURSOR_POSITION + 2] +
   1775   1.1  chopps 	    (acm[ACM_CURSOR_POSITION + 3] << 8);
   1776   1.1  chopps 
   1777   1.1  chopps 	pos->x += xpan;
   1778   1.1  chopps 	pos->y += ypan;
   1779   1.1  chopps 
   1780   1.1  chopps 	return(0);
   1781   1.1  chopps }
   1782   1.1  chopps 
   1783   1.1  chopps int
   1784   1.1  chopps rh_setspritepos (gp, pos)
   1785   1.1  chopps 	struct grf_softc *gp;
   1786   1.1  chopps 	struct grf_position *pos;
   1787   1.1  chopps {
   1788   1.1  chopps 	RZ3SetHWCloc (gp, pos->x, pos->y);
   1789   1.1  chopps 	return(0);
   1790   1.1  chopps }
   1791   1.1  chopps 
   1792   1.1  chopps int
   1793   1.1  chopps rh_getspriteinfo (gp, info)
   1794   1.1  chopps 	struct grf_softc *gp;
   1795   1.1  chopps 	struct grf_spriteinfo *info;
   1796   1.1  chopps {
   1797   1.1  chopps 	volatile unsigned char *ba, *fb;
   1798   1.1  chopps 
   1799   1.1  chopps 	ba = gp->g_regkva;
   1800   1.1  chopps 	fb = gp->g_fbkva;
   1801   1.1  chopps 	if (info->set & GRFSPRSET_ENABLE)
   1802   1.1  chopps 		info->enable = RSeq (ba, SEQ_ID_CURSOR_CONTROL) & 0x01;
   1803   1.1  chopps 	if (info->set & GRFSPRSET_POS)
   1804   1.1  chopps 		rh_getspritepos (gp, &info->pos);
   1805   1.1  chopps 	if (info->set & GRFSPRSET_HOT) {
   1806   1.1  chopps 		info->hot.x = RSeq (ba, SEQ_ID_CURSOR_X_INDEX) & 0x3f;
   1807   1.1  chopps 		info->hot.y = RSeq (ba, SEQ_ID_CURSOR_Y_INDEX) & 0x7f;
   1808   1.1  chopps 	}
   1809   1.1  chopps 	if (info->set & GRFSPRSET_CMAP) {
   1810   1.1  chopps 		struct grf_colormap cmap;
   1811   1.1  chopps 		int index;
   1812   1.1  chopps 		cmap.index = 0;
   1813   1.1  chopps 		cmap.count = 256;
   1814   1.1  chopps 		rh_getcmap (gp, &cmap);
   1815   1.1  chopps 		index = RSeq (ba, SEQ_ID_CURSOR_COLOR0);
   1816   1.1  chopps 		info->cmap.red[0] = cmap.red[index];
   1817   1.1  chopps 		info->cmap.green[0] = cmap.green[index];
   1818   1.1  chopps 		info->cmap.blue[0] = cmap.blue[index];
   1819   1.1  chopps 		index = RSeq (ba, SEQ_ID_CURSOR_COLOR1);
   1820   1.1  chopps 		info->cmap.red[1] = cmap.red[index];
   1821   1.1  chopps 		info->cmap.green[1] = cmap.green[index];
   1822   1.1  chopps 		info->cmap.blue[1] = cmap.blue[index];
   1823   1.1  chopps 	}
   1824   1.1  chopps 	if (info->set & GRFSPRSET_SHAPE) {
   1825   1.1  chopps 		u_char image[128], mask[128];
   1826   1.1  chopps 		volatile u_long *hwp;
   1827   1.1  chopps 		u_char *imp, *mp;
   1828   1.1  chopps 		short row;
   1829   1.1  chopps 
   1830   1.1  chopps 		/* sprite bitmap is WEIRD in this chip.. see grf_rhvar.h
   1831   1.1  chopps 		 * for an explanation. To convert to "our" format, the
   1832   1.1  chopps 		 * following holds:
   1833   1.1  chopps 		 *   col2   = !image & mask
   1834   1.1  chopps 		 *   col1   = image & mask
   1835   1.1  chopps 		 *   transp = !mask
   1836   1.1  chopps 		 * and thus:
   1837   1.1  chopps 		 *   image  = col1
   1838   1.1  chopps 		 *   mask   = col1 | col2
   1839   1.1  chopps 		 * hope I got these bool-eqs right below..
   1840   1.1  chopps 		 */
   1841   1.1  chopps 
   1842   1.9  chopps #ifdef RH_64BIT_SPRITE
   1843   1.1  chopps 		info->size.x = 64;
   1844   1.1  chopps 		info->size.y = 64;
   1845   1.1  chopps 		for (row = 0, hwp = (u_long *)(ba + LM_OFFSET + HWC_MEM_OFF),
   1846   1.1  chopps 		    mp = mask, imp = image;
   1847   1.1  chopps 		    row < 64;
   1848   1.1  chopps 		    row++) {
   1849   1.1  chopps 			u_long bp10, bp20, bp11, bp21;
   1850   1.1  chopps 			bp10 = *hwp++;
   1851   1.1  chopps 			bp20 = *hwp++;
   1852   1.1  chopps 			bp11 = *hwp++;
   1853   1.1  chopps 			bp21 = *hwp++;
   1854   1.1  chopps 			M2I (bp10);
   1855   1.1  chopps 			M2I (bp20);
   1856   1.1  chopps 			M2I (bp11);
   1857   1.1  chopps 			M2I (bp21);
   1858   1.1  chopps 			*imp++ = (~bp10) & bp11;
   1859   1.1  chopps 			*imp++ = (~bp20) & bp21;
   1860   1.1  chopps 			*mp++  = (~bp10) | (bp10 & ~bp11);
   1861   1.1  chopps 			*mp++  = (~bp20) & (bp20 & ~bp21);
   1862   1.1  chopps 		}
   1863   1.7  chopps #else
   1864   1.7  chopps                 info->size.x = 32;
   1865   1.7  chopps                 info->size.y = 32;
   1866   1.7  chopps                 for (row = 0, hwp = (u_long *)(ba + LM_OFFSET + HWC_MEM_OFF),
   1867   1.7  chopps                     mp = mask, imp = image;
   1868   1.7  chopps                     row < 32;
   1869   1.7  chopps                     row++) {
   1870   1.7  chopps                         u_long bp10, bp11;
   1871   1.7  chopps                         bp10 = *hwp++;
   1872   1.7  chopps                         bp11 = *hwp++;
   1873   1.7  chopps                         M2I (bp10);
   1874   1.7  chopps                         M2I (bp11);
   1875   1.7  chopps                         *imp++ = (~bp10) & bp11;
   1876   1.7  chopps                         *mp++  = (~bp10) | (bp10 & ~bp11);
   1877   1.7  chopps                 }
   1878   1.7  chopps #endif
   1879   1.1  chopps 		copyout (image, info->image, sizeof (image));
   1880   1.1  chopps 		copyout (mask, info->mask, sizeof (mask));
   1881   1.1  chopps 	}
   1882   1.1  chopps 	return(0);
   1883   1.1  chopps }
   1884   1.1  chopps 
   1885   1.1  chopps int
   1886   1.1  chopps rh_setspriteinfo (gp, info)
   1887   1.1  chopps 	struct grf_softc *gp;
   1888   1.1  chopps 	struct grf_spriteinfo *info;
   1889   1.1  chopps {
   1890   1.1  chopps 	volatile unsigned char *ba, *fb;
   1891   1.1  chopps 	u_char control;
   1892   1.1  chopps 
   1893   1.1  chopps 	ba = gp->g_regkva;
   1894   1.1  chopps 	fb = gp->g_fbkva;
   1895   1.1  chopps 
   1896   1.1  chopps 	if (info->set & GRFSPRSET_SHAPE) {
   1897   1.1  chopps 		/*
   1898   1.1  chopps 		 * For an explanation of these weird actions here, see above
   1899   1.1  chopps 		 * when reading the shape.  We set the shape directly into
   1900   1.1  chopps 		 * the video memory, there's no reason to keep 1k on the
   1901   1.1  chopps 		 * kernel stack just as template
   1902   1.1  chopps 		 */
   1903   1.1  chopps 		u_char *image, *mask;
   1904   1.1  chopps 		volatile u_long *hwp;
   1905   1.1  chopps 		u_char *imp, *mp;
   1906   1.1  chopps 		short row;
   1907   1.1  chopps 
   1908   1.9  chopps #ifdef RH_64BIT_SPRITE
   1909   1.1  chopps 		if (info->size.y > 64)
   1910   1.1  chopps 			info->size.y = 64;
   1911   1.1  chopps 		if (info->size.x > 64)
   1912   1.1  chopps 			info->size.x = 64;
   1913   1.7  chopps #else
   1914   1.7  chopps                 if (info->size.y > 32)
   1915   1.7  chopps                         info->size.y = 32;
   1916   1.7  chopps                 if (info->size.x > 32)
   1917   1.7  chopps                         info->size.x = 32;
   1918   1.7  chopps #endif
   1919   1.1  chopps 
   1920   1.1  chopps 		if (info->size.x < 32)
   1921   1.1  chopps 			info->size.x = 32;
   1922   1.1  chopps 
   1923   1.1  chopps 		image = malloc(HWC_MEM_SIZE, M_TEMP, M_WAITOK);
   1924   1.1  chopps 		mask  = image + HWC_MEM_SIZE/2;
   1925   1.1  chopps 
   1926   1.1  chopps 		copyin(info->image, image, info->size.y * info->size.x / 8);
   1927   1.1  chopps 		copyin(info->mask, mask, info->size.y * info->size.x / 8);
   1928   1.1  chopps 
   1929   1.1  chopps 		hwp = (u_long *)(ba + LM_OFFSET + HWC_MEM_OFF);
   1930   1.1  chopps 
   1931   1.1  chopps 		/*
   1932   1.1  chopps 		 * setting it is slightly more difficult, because we can't
   1933   1.1  chopps 		 * force the application to not pass a *smaller* than
   1934   1.1  chopps 		 * supported bitmap
   1935   1.1  chopps 		 */
   1936   1.1  chopps 
   1937   1.1  chopps 		for (row = 0, mp = mask, imp = image;
   1938   1.1  chopps 		    row < info->size.y;
   1939   1.1  chopps 		    row++) {
   1940   1.1  chopps 			u_long im1, im2, m1, m2;
   1941   1.1  chopps 
   1942   1.1  chopps 			im1 = *(unsigned long *)imp;
   1943   1.1  chopps 			imp += 4;
   1944   1.1  chopps 			m1  = *(unsigned long *)mp;
   1945   1.1  chopps 			mp  += 4;
   1946   1.9  chopps #ifdef RH_64BIT_SPRITE
   1947   1.1  chopps 			if (info->size.x > 32) {
   1948   1.1  chopps 	      			im2 = *(unsigned long *)imp;
   1949   1.1  chopps 				imp += 4;
   1950   1.1  chopps 				m2  = *(unsigned long *)mp;
   1951   1.1  chopps 				mp  += 4;
   1952   1.1  chopps 			}
   1953   1.1  chopps 			else
   1954   1.7  chopps #endif
   1955   1.1  chopps 				im2 = m2 = 0;
   1956   1.1  chopps 
   1957   1.1  chopps 			M2I(im1);
   1958   1.1  chopps 			M2I(im2);
   1959   1.1  chopps 			M2I(m1);
   1960   1.1  chopps 			M2I(m2);
   1961   1.1  chopps 
   1962   1.1  chopps 			*hwp++ = ~m1;
   1963   1.9  chopps #ifdef RH_64BIT_SPRITE
   1964   1.1  chopps 			*hwp++ = ~m2;
   1965   1.7  chopps #endif
   1966   1.1  chopps 			*hwp++ = m1 & im1;
   1967   1.9  chopps #ifdef RH_64BIT_SPRITE
   1968   1.1  chopps 			*hwp++ = m2 & im2;
   1969   1.7  chopps #endif
   1970   1.1  chopps 		}
   1971   1.9  chopps #ifdef RH_64BIT_SPRITE
   1972   1.1  chopps 		for (; row < 64; row++) {
   1973   1.1  chopps 			*hwp++ = 0xffffffff;
   1974   1.1  chopps 			*hwp++ = 0xffffffff;
   1975   1.1  chopps 			*hwp++ = 0x00000000;
   1976   1.1  chopps 			*hwp++ = 0x00000000;
   1977   1.1  chopps 		}
   1978   1.7  chopps #else
   1979   1.7  chopps                 for (; row < 32; row++) {
   1980   1.7  chopps                         *hwp++ = 0xffffffff;
   1981   1.7  chopps                         *hwp++ = 0x00000000;
   1982   1.7  chopps                 }
   1983   1.7  chopps #endif
   1984   1.1  chopps 
   1985   1.1  chopps 		free(image, M_TEMP);
   1986   1.1  chopps 		RZ3SetupHWC(gp, 1, 0, 0, 0, 0);
   1987   1.1  chopps 	}
   1988   1.1  chopps 	if (info->set & GRFSPRSET_CMAP) {
   1989   1.1  chopps 		/* hey cheat a bit here.. XXX */
   1990   1.1  chopps 		WSeq(ba, SEQ_ID_CURSOR_COLOR0, 0);
   1991   1.1  chopps 		WSeq(ba, SEQ_ID_CURSOR_COLOR1, 1);
   1992   1.1  chopps 	}
   1993   1.1  chopps 	if (info->set & GRFSPRSET_ENABLE) {
   1994   1.7  chopps #if 0
   1995   1.1  chopps 		if (info->enable)
   1996   1.1  chopps 			control = 0x85;
   1997   1.1  chopps 		else
   1998   1.1  chopps 			control = 0;
   1999   1.1  chopps 		WSeq(ba, SEQ_ID_CURSOR_CONTROL, control);
   2000   1.7  chopps #endif
   2001   1.1  chopps 	}
   2002   1.1  chopps 	if (info->set & GRFSPRSET_POS)
   2003   1.1  chopps 		rh_setspritepos(gp, &info->pos);
   2004   1.1  chopps 	if (info->set & GRFSPRSET_HOT) {
   2005   1.1  chopps 		WSeq(ba, SEQ_ID_CURSOR_X_INDEX, info->hot.x & 0x3f);
   2006   1.1  chopps 		WSeq(ba, SEQ_ID_CURSOR_Y_INDEX, info->hot.y & 0x7f);
   2007   1.1  chopps 	}
   2008   1.1  chopps 
   2009   1.1  chopps 	return(0);
   2010   1.1  chopps }
   2011   1.1  chopps 
   2012   1.1  chopps int
   2013   1.1  chopps rh_getspritemax (gp, pos)
   2014   1.1  chopps 	struct grf_softc *gp;
   2015   1.1  chopps 	struct grf_position *pos;
   2016   1.1  chopps {
   2017   1.9  chopps #ifdef RH_64BIT_SPRITE
   2018   1.1  chopps 	pos->x = 64;
   2019   1.1  chopps 	pos->y = 64;
   2020   1.7  chopps #else
   2021   1.7  chopps         pos->x = 32;
   2022   1.7  chopps         pos->y = 32;
   2023   1.7  chopps #endif
   2024   1.1  chopps 
   2025   1.1  chopps 	return(0);
   2026   1.1  chopps }
   2027   1.1  chopps 
   2028   1.1  chopps 
   2029   1.1  chopps int
   2030   1.1  chopps rh_bitblt (gp, bb)
   2031   1.1  chopps 	struct grf_softc *gp;
   2032   1.1  chopps 	struct grf_bitblt *bb;
   2033   1.1  chopps {
   2034   1.1  chopps 	struct MonDef *md = (struct MonDef *)gp->g_data;
   2035   1.7  chopps         if (md->DEP <= 8)
   2036   1.1  chopps 		RZ3BitBlit(gp, bb);
   2037   1.7  chopps         else if (md->DEP <= 16)
   2038   1.1  chopps 		RZ3BitBlit16(gp, bb);
   2039   1.7  chopps         else
   2040   1.7  chopps                 RZ3BitBlit24(gp, bb);
   2041   1.1  chopps }
   2042   1.1  chopps #endif	/* NGRF */
   2043