grfabs_reg.h revision 1.5 1 1.4 leo /* $NetBSD: grfabs_reg.h,v 1.5 1995/09/04 19:41:41 leo Exp $ */
2 1.1 leo
3 1.1 leo /*
4 1.1 leo * Copyright (c) 1995 Leo Weppelman
5 1.1 leo * Copyright (c) 1994 Christian E. Hopps
6 1.1 leo * All rights reserved.
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 * 3. All advertising materials mentioning features or use of this software
16 1.1 leo * must display the following acknowledgement:
17 1.1 leo * This product includes software developed by Christian E. Hopps.
18 1.1 leo * 4. The name of the author may not be used to endorse or promote products
19 1.1 leo * derived from this software without specific prior written permission
20 1.1 leo *
21 1.1 leo * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 leo * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 leo * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 leo * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 leo * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 leo * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 leo * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 leo * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 leo * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 leo * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 leo */
32 1.1 leo
33 1.1 leo #ifndef _GRFABS_REG_H
34 1.1 leo #define _GRFABS_REG_H
35 1.1 leo
36 1.1 leo struct point {
37 1.1 leo long x;
38 1.1 leo long y;
39 1.1 leo };
40 1.1 leo typedef struct point point_t;
41 1.1 leo
42 1.1 leo struct dimension {
43 1.1 leo u_long width;
44 1.1 leo u_long height;
45 1.1 leo };
46 1.1 leo typedef struct dimension dimen_t;
47 1.1 leo
48 1.1 leo struct box {
49 1.1 leo long x;
50 1.1 leo long y;
51 1.1 leo u_long width;
52 1.1 leo u_long height;
53 1.1 leo };
54 1.1 leo typedef struct box box_t;
55 1.1 leo
56 1.1 leo struct rectangle {
57 1.1 leo long left;
58 1.1 leo long top;
59 1.1 leo long right;
60 1.1 leo long bottom;
61 1.1 leo };
62 1.1 leo typedef struct rectangle rect_t;
63 1.1 leo
64 1.1 leo typedef struct bitmap bmap_t;
65 1.1 leo typedef struct colormap colormap_t;
66 1.1 leo typedef struct display_mode dmode_t;
67 1.1 leo
68 1.1 leo /*
69 1.1 leo * View stuff.
70 1.1 leo */
71 1.1 leo
72 1.1 leo struct view {
73 1.1 leo bmap_t *bitmap; /* bitmap. */
74 1.1 leo box_t display; /* viewable area. */
75 1.1 leo dmode_t *mode; /* the mode for this view */
76 1.1 leo colormap_t *colormap; /* the colormap for this view */
77 1.1 leo int flags;
78 1.1 leo };
79 1.1 leo typedef struct view view_t;
80 1.1 leo
81 1.1 leo /* View-flags: */
82 1.1 leo #define VF_DISPLAY 1 /* view is on the air now */
83 1.1 leo
84 1.1 leo /*
85 1.1 leo * Bitmap stuff.
86 1.1 leo */
87 1.1 leo struct bitmap {
88 1.1 leo u_short bytes_per_row; /* number of bytes per display row. */
89 1.1 leo u_short rows; /* number of display rows. */
90 1.1 leo u_short depth; /* depth of bitmap. */
91 1.1 leo u_char *plane; /* plane data for bitmap. */
92 1.1 leo u_char *hw_address; /* mappable bitplane pointer. */
93 1.1 leo };
94 1.1 leo
95 1.1 leo /*
96 1.1 leo * Colormap stuff.
97 1.1 leo */
98 1.1 leo struct colormap {
99 1.2 leo u_char type; /* what type of entries these are. */
100 1.2 leo union {
101 1.2 leo u_char grey; /* CM_GREYSCALE */
102 1.2 leo struct { /* CM_COLOR */
103 1.2 leo u_char red;
104 1.2 leo u_char green;
105 1.2 leo u_char blue;
106 1.2 leo } rgb_mask;
107 1.2 leo } valid_mask;
108 1.2 leo u_short first; /* color register entry[0] refers to */
109 1.2 leo u_short size; /* number of entries */
110 1.2 leo u_long *entry; /* the table of actual color values */
111 1.1 leo };
112 1.1 leo
113 1.1 leo /*
114 1.2 leo * Mask short-hands
115 1.2 leo */
116 1.2 leo #define grey_mask valid_mask.grey
117 1.2 leo #define red_mask valid_mask.rgb_mask.red
118 1.2 leo #define green_mask valid_mask.rgb_mask.green
119 1.2 leo #define blue_mask valid_mask.rgb_mask.blue
120 1.2 leo
121 1.2 leo enum colormap_type {
122 1.2 leo CM_MONO, /* only on or off allowed */
123 1.2 leo CM_GREYSCALE, /* grey values */
124 1.2 leo CM_COLOR /* RGB values */
125 1.2 leo };
126 1.2 leo
127 1.2 leo #define MAX_CENTRIES 256 /* that all there is */
128 1.2 leo /*
129 1.1 leo * Create a colormap entry
130 1.1 leo */
131 1.4 leo #define MAKE_COLOR_ENTRY(r,g,b) (((r & 0xff)<<16)|((g & 0xff)<<8)|(b & 0xff))
132 1.2 leo #define MAKE_MONO_ENTRY(x) ((x) ? 1 : 0)
133 1.2 leo #define MAKE_GREY_ENTRY(l) (l & 0xff)
134 1.2 leo
135 1.4 leo #define CM_L2TT(v) \
136 1.5 leo (((0x000f0000 & (v)) >> 8) | ((0x00000f00 & (v)) >> 4) |\
137 1.5 leo (0x0000000f & (v)))
138 1.4 leo #define CM_TT2L(v) \
139 1.4 leo ((((0x00000f00 & (v)) * 0xff / 0xf) << 8) |\
140 1.4 leo (((0x000000f0 & (v)) * 0xff / 0xf) << 4) |\
141 1.4 leo (0x0000000f & (v)) * 0xff / 0xf)
142 1.4 leo #define CM_L2FAL(v) \
143 1.5 leo (((0x003f0000 & (v)) << 10) | ((0x00003f00 & (v)) << 10) |\
144 1.5 leo (0x0000003f & (v)) << 2)
145 1.4 leo #define CM_FAL2L(v) \
146 1.4 leo (((((0xfc000000 & (v)) >> 10) * 0xff / 0x3f) & 0x00ff0000) |\
147 1.4 leo ((((0x00fc0000 & (v)) >> 10) * 0xff / 0x3f) & 0x0000ff00) |\
148 1.4 leo ((0x000000fc & (v)) >> 2) * 0xff / 0x3f)
149 1.4 leo #define CM_L2ST(v) \
150 1.5 leo (((0x000e0000 & (v)) >> 9) | ((0x00000e00 & (v)) >> 5) |\
151 1.5 leo (0x0000000e & (v)) >> 1)
152 1.4 leo #define CM_ST2L(v) \
153 1.4 leo (((((0x00000700 & (v)) * 0xff / 0x7) << 8) & 0x00ff0000) |\
154 1.4 leo ((((0x00000070 & (v)) * 0xff / 0x7) << 4) & 0x0000ff00) |\
155 1.4 leo (0x00000007 & (v)) * 0xff / 0x7)
156 1.4 leo
157 1.4 leo struct grfabs_sw {
158 1.4 leo void (*display_view) __P((view_t*));
159 1.4 leo view_t * (*alloc_view) __P((dmode_t *, dimen_t *, u_char));
160 1.4 leo void (*free_view) __P((view_t *));
161 1.4 leo void (*remove_view) __P((view_t *));
162 1.4 leo int (*use_colormap) __P((view_t *, colormap_t *));
163 1.4 leo };
164 1.4 leo
165 1.1 leo /* display mode */
166 1.1 leo struct display_mode {
167 1.1 leo LIST_ENTRY(display_mode) link;
168 1.1 leo u_char *name; /* logical name for mode. */
169 1.1 leo dimen_t size; /* screen size */
170 1.1 leo u_char depth; /* screen depth */
171 1.1 leo u_short vm_reg; /* video mode register */
172 1.4 leo struct grfabs_sw *grfabs_funcs; /* hardware switch table */
173 1.1 leo view_t *current_view; /* view displaying me */
174 1.1 leo };
175 1.1 leo
176 1.1 leo /*
177 1.4 leo * Definition of available graphic mode list.
178 1.4 leo */
179 1.4 leo typedef LIST_HEAD(modelist, display_mode) MODES;
180 1.4 leo
181 1.4 leo /*
182 1.1 leo * Misc draw related macros.
183 1.1 leo */
184 1.1 leo #define INIT_BOX(b,xx,yy,ww,hh) \
185 1.1 leo do { \
186 1.1 leo (b)->x = xx; \
187 1.1 leo (b)->y = yy; \
188 1.1 leo (b)->width = ww; \
189 1.1 leo (b)->height = hh; \
190 1.1 leo } while(0)
191 1.1 leo
192 1.4 leo
193 1.4 leo /*
194 1.4 leo * Common variables
195 1.4 leo */
196 1.4 leo extern view_t gra_con_view;
197 1.4 leo extern colormap_t gra_con_cmap;
198 1.4 leo extern long gra_con_colors[MAX_CENTRIES];
199 1.4 leo extern u_long gra_def_color16[16];
200 1.4 leo
201 1.1 leo /*
202 1.1 leo * Prototypes:
203 1.1 leo */
204 1.4 leo #ifdef FALCON_VIDEO
205 1.4 leo void falcon_probe_video __P((MODES *));
206 1.4 leo #endif /* FALCON_VIDEO */
207 1.4 leo #ifdef TT_VIDEO
208 1.4 leo void tt_probe_video __P((MODES *));
209 1.4 leo #endif /* TT_VIDEO */
210 1.4 leo
211 1.1 leo view_t *grf_alloc_view __P((dmode_t *d, dimen_t *dim, u_char depth));
212 1.3 leo dmode_t *grf_get_best_mode __P((dimen_t *dim, u_char depth));
213 1.1 leo void grf_display_view __P((view_t *v));
214 1.1 leo void grf_remove_view __P((view_t *v));
215 1.1 leo void grf_free_view __P((view_t *v));
216 1.1 leo int grf_get_colormap __P((view_t *, colormap_t *));
217 1.1 leo int grf_use_colormap __P((view_t *, colormap_t *));
218 1.1 leo
219 1.1 leo #endif /* _GRFABS_REG_H */
220