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grfabs_tt.c revision 1.15.78.4
      1  1.15.78.4     yamt /*	$NetBSD: grfabs_tt.c,v 1.15.78.4 2010/08/11 22:51:44 yamt Exp $	*/
      2        1.1      leo 
      3        1.1      leo /*
      4        1.1      leo  * Copyright (c) 1995 Leo Weppelman.
      5        1.1      leo  * All rights reserved.
      6        1.1      leo  *
      7        1.1      leo  * Redistribution and use in source and binary forms, with or without
      8        1.1      leo  * modification, are permitted provided that the following conditions
      9        1.1      leo  * are met:
     10        1.1      leo  * 1. Redistributions of source code must retain the above copyright
     11        1.1      leo  *    notice, this list of conditions and the following disclaimer.
     12        1.1      leo  * 2. Redistributions in binary form must reproduce the above copyright
     13        1.1      leo  *    notice, this list of conditions and the following disclaimer in the
     14        1.1      leo  *    documentation and/or other materials provided with the distribution.
     15        1.1      leo  *
     16        1.1      leo  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17        1.1      leo  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18        1.1      leo  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19        1.1      leo  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20        1.1      leo  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     21        1.1      leo  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     22        1.1      leo  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     23        1.1      leo  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     24        1.1      leo  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     25        1.1      leo  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     26        1.1      leo  */
     27       1.14    lukem 
     28       1.14    lukem #include <sys/cdefs.h>
     29  1.15.78.4     yamt __KERNEL_RCSID(0, "$NetBSD: grfabs_tt.c,v 1.15.78.4 2010/08/11 22:51:44 yamt Exp $");
     30        1.1      leo 
     31        1.1      leo #ifdef TT_VIDEO
     32        1.1      leo /*
     33        1.1      leo  *  atari abstract graphics driver: TT-interface
     34        1.1      leo  */
     35        1.1      leo #include <sys/param.h>
     36        1.1      leo #include <sys/queue.h>
     37        1.1      leo #include <sys/malloc.h>
     38        1.1      leo #include <sys/device.h>
     39        1.2      leo #include <sys/systm.h>
     40        1.1      leo 
     41       1.12  thorpej #include <uvm/uvm_extern.h>
     42       1.12  thorpej 
     43        1.1      leo #include <machine/iomap.h>
     44        1.1      leo #include <machine/video.h>
     45        1.1      leo #include <machine/mfp.h>
     46        1.1      leo #include <atari/atari/device.h>
     47        1.3      leo #include <atari/atari/stalloc.h>
     48        1.1      leo #include <atari/dev/grfabs_reg.h>
     49        1.5      leo #include <atari/dev/grfabs_tt.h>
     50        1.1      leo 
     51        1.1      leo /*
     52        1.1      leo  * Function decls
     53        1.1      leo  */
     54  1.15.78.1     yamt static void       init_view(view_t *, bmap_t *, dmode_t *, box_t *);
     55  1.15.78.1     yamt static bmap_t	  *alloc_bitmap(u_long, u_long, u_char);
     56  1.15.78.1     yamt static colormap_t *alloc_colormap(dmode_t *);
     57  1.15.78.1     yamt static void 	  free_bitmap(bmap_t *);
     58  1.15.78.1     yamt static void	  tt_display_view(view_t *);
     59  1.15.78.1     yamt static view_t	  *tt_alloc_view(dmode_t *, dimen_t *, u_char);
     60  1.15.78.1     yamt static void	  tt_free_view(view_t *);
     61  1.15.78.1     yamt static void	  tt_remove_view(view_t *);
     62  1.15.78.1     yamt static void	  tt_save_view(view_t *);
     63  1.15.78.1     yamt static int	  tt_use_colormap(view_t *, colormap_t *);
     64        1.1      leo 
     65        1.1      leo /*
     66        1.1      leo  * Our function switch table
     67        1.1      leo  */
     68        1.1      leo struct grfabs_sw tt_vid_sw = {
     69        1.1      leo 	tt_display_view,
     70        1.1      leo 	tt_alloc_view,
     71        1.1      leo 	tt_free_view,
     72        1.1      leo 	tt_remove_view,
     73        1.6      leo 	tt_save_view,
     74        1.1      leo 	tt_use_colormap
     75        1.1      leo };
     76        1.1      leo 
     77        1.5      leo struct tt_hwregs {
     78        1.5      leo 	u_short		tt_reg;	/* video mode-register TT	*/
     79        1.5      leo };
     80        1.5      leo #define vm_reg(dm)	(((struct tt_hwregs*)(dm->data))->tt_reg)
     81        1.5      leo 
     82        1.5      leo /*
     83        1.5      leo  * Note that the order of this table *must* match the order of
     84        1.5      leo  * the table below!
     85        1.5      leo  */
     86        1.5      leo static struct tt_hwregs tt_hwregs[] = {
     87        1.5      leo 	{ RES_STHIGH },
     88        1.5      leo 	{ RES_TTHIGH },
     89        1.5      leo 	{ RES_STMID  },
     90        1.5      leo 	{ RES_STLOW  },
     91        1.5      leo 	{ RES_TTMID  },
     92        1.5      leo 	{ RES_TTLOW  }
     93        1.5      leo };
     94        1.5      leo 
     95        1.1      leo static dmode_t vid_modes[] = {
     96        1.5      leo     { { NULL, NULL }, "sthigh", { 640,  400 }, 1, NULL, &tt_vid_sw },
     97        1.5      leo     { { NULL, NULL }, "tthigh", { 1280, 960 }, 1, NULL, &tt_vid_sw },
     98        1.5      leo     { { NULL, NULL }, "stmid",  { 640,  200 }, 2, NULL, &tt_vid_sw },
     99        1.5      leo     { { NULL, NULL }, "stlow",  { 320,  200 }, 4, NULL, &tt_vid_sw },
    100        1.5      leo     { { NULL, NULL }, "ttmid",  { 640,  480 }, 4, NULL, &tt_vid_sw },
    101        1.5      leo     { { NULL, NULL }, "ttlow",  { 320,  480 }, 8, NULL, &tt_vid_sw },
    102        1.4      leo     { { NULL, NULL }, NULL,  }
    103        1.1      leo };
    104        1.1      leo 
    105        1.1      leo /*
    106        1.1      leo  * XXX: called from ite console init routine.
    107       1.10      wiz  * Initialize list of possible video modes.
    108        1.1      leo  */
    109        1.5      leo 
    110        1.1      leo void
    111  1.15.78.1     yamt tt_probe_video(MODES *modelp)
    112        1.1      leo {
    113        1.1      leo 	dmode_t	*dm;
    114        1.1      leo 	int	i;
    115        1.1      leo 	int	has_mono;
    116        1.1      leo 
    117        1.1      leo 	/*
    118       1.13      wiz 	 * First find out what kind of monitor is attached. DMA-sound
    119        1.1      leo 	 * should be off because the 'sound-done' and 'monochrome-detect'
    120        1.1      leo 	 * are xor-ed together. I think that shutting it down here is the
    121        1.1      leo 	 * wrong place.
    122        1.1      leo 	 */
    123        1.1      leo 	has_mono = (MFP->mf_gpip & IA_MONO) == 0;
    124        1.1      leo 
    125        1.1      leo 	for (i = 0; (dm = &vid_modes[i])->name != NULL; i++) {
    126        1.5      leo 		dm->data = (void *)&tt_hwregs[i];
    127        1.5      leo 		if (has_mono && (vm_reg(dm) != RES_TTHIGH))
    128        1.1      leo 			continue;
    129        1.5      leo 		if (!has_mono && (vm_reg(dm) == RES_TTHIGH))
    130        1.1      leo 			continue;
    131        1.1      leo 		LIST_INSERT_HEAD(modelp, dm, link);
    132        1.1      leo 	}
    133        1.1      leo 
    134        1.1      leo 	for (i=0; i < 16; i++)
    135        1.1      leo 		VIDEO->vd_tt_rgb[i] = CM_L2TT(gra_def_color16[i]);
    136        1.1      leo }
    137        1.1      leo 
    138        1.1      leo static void
    139  1.15.78.1     yamt tt_display_view(view_t *v)
    140        1.1      leo {
    141        1.1      leo 	dmode_t	*dm = v->mode;
    142        1.1      leo 	bmap_t	*bm = v->bitmap;
    143        1.1      leo 
    144        1.1      leo 	if (dm->current_view) {
    145        1.1      leo 		/*
    146        1.1      leo 		 * Mark current view for this mode as no longer displayed
    147        1.1      leo 		 */
    148        1.1      leo 		dm->current_view->flags &= ~VF_DISPLAY;
    149        1.1      leo 	}
    150        1.1      leo 	dm->current_view = v;
    151        1.1      leo 	v->flags |= VF_DISPLAY;
    152        1.1      leo 
    153        1.1      leo 	tt_use_colormap(v, v->colormap);
    154        1.1      leo 
    155        1.1      leo 	/* XXX: should use vbl for this	*/
    156        1.5      leo 	VIDEO->vd_tt_res = vm_reg(dm);
    157        1.1      leo 	VIDEO->vd_raml   =  (u_long)bm->hw_address & 0xff;
    158        1.1      leo 	VIDEO->vd_ramm   = ((u_long)bm->hw_address >>  8) & 0xff;
    159        1.1      leo 	VIDEO->vd_ramh   = ((u_long)bm->hw_address >> 16) & 0xff;
    160        1.1      leo }
    161        1.1      leo 
    162        1.1      leo void
    163  1.15.78.1     yamt tt_remove_view(view_t *v)
    164        1.1      leo {
    165        1.1      leo 	dmode_t *mode = v->mode;
    166        1.1      leo 
    167        1.1      leo 	if (mode->current_view == v) {
    168        1.1      leo #if 0
    169        1.1      leo 		if (v->flags & VF_DISPLAY)
    170       1.11   provos 			panic("Cannot shutdown display"); /* XXX */
    171        1.1      leo #endif
    172        1.1      leo 		mode->current_view = NULL;
    173        1.1      leo 	}
    174        1.1      leo 	v->flags &= ~VF_DISPLAY;
    175        1.6      leo }
    176        1.6      leo 
    177        1.6      leo void
    178  1.15.78.1     yamt tt_save_view(view_t *v)
    179        1.6      leo {
    180        1.1      leo }
    181        1.1      leo 
    182        1.1      leo void
    183  1.15.78.1     yamt tt_free_view(view_t *v)
    184        1.1      leo {
    185  1.15.78.4     yamt 
    186  1.15.78.4     yamt 	if (v) {
    187        1.1      leo 		tt_remove_view(v);
    188        1.1      leo 		if (v->colormap != &gra_con_cmap)
    189        1.1      leo 			free(v->colormap, M_DEVBUF);
    190        1.1      leo 		free_bitmap(v->bitmap);
    191        1.1      leo 		if (v != &gra_con_view)
    192        1.1      leo 			free(v, M_DEVBUF);
    193        1.1      leo 	}
    194        1.1      leo }
    195        1.1      leo 
    196        1.1      leo static int
    197  1.15.78.1     yamt tt_use_colormap(view_t *v, colormap_t *cm)
    198        1.1      leo {
    199        1.1      leo 	dmode_t			*dm;
    200        1.1      leo 	volatile u_short	*creg;
    201        1.1      leo 	u_long			*src;
    202        1.1      leo 	colormap_t		*vcm;
    203        1.1      leo 	u_long			*vcreg;
    204        1.1      leo 	u_short			ncreg;
    205        1.1      leo 	int			i;
    206        1.1      leo 
    207        1.1      leo 	dm  = v->mode;
    208        1.1      leo 	vcm = v->colormap;
    209        1.1      leo 
    210        1.1      leo 	/*
    211        1.1      leo 	 * I guess it seems reasonable to require the maps to be
    212        1.1      leo 	 * of the same type...
    213        1.1      leo 	 */
    214        1.1      leo 	if (cm->type != vcm->type)
    215        1.1      leo 		return(EINVAL);
    216        1.1      leo 
    217        1.1      leo 	/*
    218        1.1      leo 	 * First figure out where the actual colormap resides and
    219        1.1      leo 	 * howmany colors are in it.
    220        1.1      leo 	 */
    221        1.5      leo 	switch (vm_reg(dm)) {
    222        1.1      leo 		case RES_STLOW:
    223        1.1      leo 			creg  = &VIDEO->vd_tt_rgb[0];
    224        1.1      leo 			ncreg = 16;
    225        1.1      leo 			break;
    226        1.1      leo 		case RES_STMID:
    227        1.1      leo 			creg  = &VIDEO->vd_tt_rgb[0];
    228        1.1      leo 			ncreg = 4;
    229        1.1      leo 			break;
    230        1.1      leo 		case RES_STHIGH:
    231        1.1      leo 			creg  = &VIDEO->vd_tt_rgb[254];
    232        1.1      leo 			ncreg = 2;
    233        1.1      leo 			break;
    234        1.1      leo 		case RES_TTLOW:
    235        1.1      leo 			creg  = &VIDEO->vd_tt_rgb[0];
    236        1.1      leo 			ncreg = 256;
    237        1.1      leo 			break;
    238        1.1      leo 		case RES_TTMID:
    239        1.1      leo 			creg  = &VIDEO->vd_tt_rgb[0];
    240        1.1      leo 			ncreg = 16;
    241        1.1      leo 			break;
    242        1.1      leo 		case RES_TTHIGH:
    243        1.1      leo 			return(0);	/* No colors	*/
    244        1.1      leo 		default:
    245        1.1      leo 			panic("grf_tt:use_colormap: wrong mode!?");
    246        1.1      leo 	}
    247        1.1      leo 
    248        1.1      leo 	/* If first entry specified beyond capabilities -> error */
    249        1.1      leo 	if (cm->first >= ncreg)
    250        1.1      leo 		return(EINVAL);
    251        1.1      leo 
    252        1.1      leo 	/*
    253        1.1      leo 	 * A little tricky, the actual colormap pointer will be NULL
    254        1.1      leo 	 * when view is not displaying, valid otherwise.
    255        1.1      leo 	 */
    256        1.1      leo 	if (v->flags & VF_DISPLAY)
    257        1.1      leo 		creg = &creg[cm->first];
    258  1.15.78.4     yamt 	else
    259  1.15.78.4     yamt 		creg = NULL;
    260        1.1      leo 
    261        1.1      leo 	vcreg  = &vcm->entry[cm->first];
    262        1.1      leo 	ncreg -= cm->first;
    263        1.1      leo 	if (cm->size > ncreg)
    264        1.1      leo 		return(EINVAL);
    265        1.1      leo 	ncreg = cm->size;
    266        1.1      leo 
    267        1.1      leo 	for (i = 0, src = cm->entry; i < ncreg; i++, vcreg++) {
    268        1.1      leo 		*vcreg = *src++;
    269        1.1      leo 
    270        1.1      leo 		/*
    271        1.1      leo 		 * If displaying, also update actual color registers.
    272        1.1      leo 		 */
    273        1.1      leo 		if (creg != NULL)
    274        1.1      leo 			*creg++ = CM_L2TT(*vcreg);
    275        1.1      leo 	}
    276        1.1      leo 	return (0);
    277        1.1      leo }
    278        1.1      leo 
    279        1.1      leo static view_t *
    280  1.15.78.1     yamt tt_alloc_view(dmode_t *mode, dimen_t *dim, u_char depth)
    281        1.1      leo {
    282        1.1      leo 	view_t *v;
    283        1.1      leo 	bmap_t *bm;
    284        1.1      leo 
    285        1.1      leo 	if (!atari_realconfig)
    286        1.1      leo 		v = &gra_con_view;
    287  1.15.78.4     yamt 	else
    288  1.15.78.4     yamt 		v = malloc(sizeof(*v), M_DEVBUF, M_NOWAIT);
    289  1.15.78.4     yamt 	if (v == NULL)
    290        1.1      leo 		return (NULL);
    291        1.1      leo 
    292        1.1      leo 	bm = alloc_bitmap(mode->size.width, mode->size.height, mode->depth);
    293        1.1      leo 	if (bm) {
    294        1.1      leo 		box_t   box;
    295        1.1      leo 
    296        1.1      leo 		v->colormap = alloc_colormap(mode);
    297        1.1      leo 		if (v->colormap) {
    298        1.1      leo 			INIT_BOX(&box,0,0,mode->size.width,mode->size.height);
    299        1.1      leo 			init_view(v, bm, mode, &box);
    300        1.1      leo 			return (v);
    301        1.1      leo 		}
    302        1.1      leo 		free_bitmap(bm);
    303        1.1      leo 	}
    304        1.1      leo 	if (v != &gra_con_view)
    305        1.1      leo 		free(v, M_DEVBUF);
    306        1.1      leo 	return (NULL);
    307        1.1      leo }
    308        1.1      leo 
    309        1.1      leo static void
    310  1.15.78.1     yamt init_view(view_t *v, bmap_t *bm, dmode_t *mode, box_t *dbox)
    311        1.1      leo {
    312        1.1      leo 	v->bitmap = bm;
    313        1.1      leo 	v->mode   = mode;
    314        1.1      leo 	v->flags  = 0;
    315  1.15.78.2     yamt 	memcpy(&v->display, dbox, sizeof(box_t));
    316        1.1      leo }
    317        1.1      leo 
    318        1.1      leo /* bitmap functions */
    319        1.1      leo 
    320        1.1      leo static bmap_t *
    321  1.15.78.1     yamt alloc_bitmap(u_long width, u_long height, u_char depth)
    322        1.1      leo {
    323        1.1      leo 	u_long  total_size, bm_size;
    324        1.1      leo 	void	*hw_address;
    325        1.1      leo 	bmap_t	*bm;
    326        1.1      leo 
    327        1.1      leo 	/*
    328        1.1      leo 	 * Sigh, it seems for mapping to work we need the bitplane data to
    329        1.1      leo 	 *  1: be aligned on a page boundry.
    330        1.1      leo 	 *  2: be n pages large.
    331        1.1      leo 	 *
    332        1.1      leo 	 * why? because the user gets a page aligned address, if this is before
    333        1.1      leo 	 * your allocation, too bad.  Also it seems that the mapping routines
    334        1.1      leo 	 * do not watch to closely to the allowable length. so if you go over
    335        1.1      leo 	 * n pages by less than another page, the user gets to write all over
    336        1.1      leo 	 * the entire page. Since you did not allocate up to a page boundry
    337        1.1      leo 	 * (or more) the user writes into someone elses memory. -ch
    338        1.1      leo 	 */
    339        1.8    veego 	bm_size    = m68k_round_page((width * height * depth) / NBBY);
    340       1.12  thorpej 	total_size = bm_size + sizeof(bmap_t) + PAGE_SIZE;
    341        1.1      leo 
    342        1.1      leo 	if ((bm = (bmap_t*)alloc_stmem(total_size, &hw_address)) == NULL)
    343        1.1      leo 		return(NULL);
    344        1.1      leo 
    345        1.1      leo 	bm->plane         = (u_char*)bm + sizeof(bmap_t);
    346        1.8    veego 	bm->plane         = (u_char*)m68k_round_page(bm->plane);
    347        1.1      leo 	bm->hw_address    = (u_char*)hw_address + sizeof(bmap_t);
    348        1.8    veego 	bm->hw_address    = (u_char*)m68k_round_page(bm->hw_address);
    349        1.1      leo 	bm->bytes_per_row = (width * depth) / NBBY;
    350        1.1      leo 	bm->rows          = height;
    351        1.1      leo 	bm->depth         = depth;
    352        1.5      leo 	bm->regs          = NULL;
    353        1.5      leo 	bm->hw_regs       = NULL;
    354        1.5      leo 	bm->reg_size      = 0;
    355        1.7      leo 	bm->phys_mappable = (depth * width * height) / NBBY;
    356        1.9   thomas 	bm->lin_base      = 0;
    357        1.9   thomas 	bm->vga_address   = NULL;
    358        1.9   thomas 	bm->vga_mappable  = 0;
    359        1.9   thomas 	bm->vga_base      = 0;
    360        1.1      leo 
    361  1.15.78.1     yamt 	memset(bm->plane, 0, bm_size);
    362        1.1      leo 	return (bm);
    363        1.1      leo }
    364        1.1      leo 
    365        1.1      leo static void
    366  1.15.78.1     yamt free_bitmap(bmap_t *bm)
    367        1.1      leo {
    368        1.1      leo 	if (bm)
    369        1.1      leo 		free_stmem(bm);
    370        1.1      leo }
    371        1.1      leo 
    372        1.1      leo static colormap_t *
    373  1.15.78.1     yamt alloc_colormap(dmode_t *dm)
    374        1.1      leo {
    375        1.1      leo 	int		nentries, i;
    376        1.1      leo 	colormap_t	*cm;
    377        1.1      leo 	u_char		type = CM_COLOR;
    378        1.1      leo 
    379        1.5      leo 	switch (vm_reg(dm)) {
    380        1.1      leo 		case RES_STLOW:
    381        1.1      leo 		case RES_TTMID:
    382        1.1      leo 			nentries = 16;
    383        1.1      leo 			break;
    384        1.1      leo 		case RES_STMID:
    385        1.1      leo 			nentries = 4;
    386        1.1      leo 			break;
    387        1.1      leo 		case RES_STHIGH:
    388        1.1      leo 			nentries = 2;
    389        1.1      leo 			break;
    390        1.1      leo 		case RES_TTLOW:
    391        1.1      leo 			nentries = 256;
    392        1.1      leo 			break;
    393        1.1      leo 		case RES_TTHIGH:
    394        1.1      leo 			type     = CM_MONO;
    395        1.1      leo 			nentries = 0;
    396        1.1      leo 			break;
    397        1.1      leo 		default:
    398        1.1      leo 			panic("grf_tt:alloc_colormap: wrong mode!?");
    399        1.1      leo 	}
    400        1.1      leo 	if (!atari_realconfig) {
    401        1.1      leo 		cm = &gra_con_cmap;
    402        1.1      leo 		cm->entry = gra_con_colors;
    403  1.15.78.4     yamt 	} else {
    404        1.1      leo 		int size;
    405        1.1      leo 
    406        1.1      leo 		size = sizeof(*cm) + (nentries * sizeof(cm->entry[0]));
    407        1.1      leo 		cm   = malloc(size, M_DEVBUF, M_NOWAIT);
    408        1.1      leo 		if (cm == NULL)
    409        1.1      leo 			return (NULL);
    410        1.1      leo 		cm->entry = (long *)&cm[1];
    411        1.1      leo 
    412        1.1      leo 	}
    413        1.1      leo 	if ((cm->type = type) == CM_COLOR)
    414        1.1      leo 		cm->red_mask = cm->green_mask = cm->blue_mask = 0xf;
    415        1.1      leo 	cm->first = 0;
    416        1.1      leo 	cm->size  = nentries;
    417        1.1      leo 
    418        1.1      leo 	for (i = 0; i < nentries; i++)
    419        1.1      leo 		cm->entry[i] = gra_def_color16[i % 16];
    420        1.1      leo 	return (cm);
    421        1.1      leo }
    422        1.1      leo #endif /* TT_VIDEO */
    423