1 /* 1 /* 2 * Copyright (C) 2011-2013 Intel Corporation 2 * Copyright (C) 2011-2013 Intel Corporation 3 * 3 * 4 * Permission is hereby granted, free of charg 4 * Permission is hereby granted, free of charge, to any person obtaining a 5 * copy of this software and associated docume 5 * copy of this software and associated documentation files (the "Software"), 6 * to deal in the Software without restriction 6 * to deal in the Software without restriction, including without limitation 7 * the rights to use, copy, modify, merge, pub 7 * the rights to use, copy, modify, merge, publish, distribute, sublicense, 8 * and/or sell copies of the Software, and to 8 * and/or sell copies of the Software, and to permit persons to whom the 9 * Software is furnished to do so, subject to 9 * Software is furnished to do so, subject to the following conditions: 10 * 10 * 11 * The above copyright notice and this permiss 11 * The above copyright notice and this permission notice (including the next 12 * paragraph) shall be included in all copies 12 * paragraph) shall be included in all copies or substantial portions of the 13 * Software. 13 * Software. 14 * 14 * 15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT W 15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE W 16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINF 17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE 18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT 19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 20 * OUT OF OR IN CONNECTION WITH THE SOFTWARE O 20 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 21 * SOFTWARE. 21 * SOFTWARE. 22 */ 22 */ 23 23 24 #ifndef DRM_RECT_H 24 #ifndef DRM_RECT_H 25 #define DRM_RECT_H 25 #define DRM_RECT_H 26 26 27 #include <linux/types.h> << 28 << 29 /** 27 /** 30 * DOC: rect utils 28 * DOC: rect utils 31 * 29 * 32 * Utility functions to help manage rectangula 30 * Utility functions to help manage rectangular areas for 33 * clipping, scaling, etc. calculations. 31 * clipping, scaling, etc. calculations. 34 */ 32 */ 35 33 36 /** 34 /** 37 * struct drm_rect - two dimensional rectangle 35 * struct drm_rect - two dimensional rectangle 38 * @x1: horizontal starting coordinate (inclus 36 * @x1: horizontal starting coordinate (inclusive) 39 * @x2: horizontal ending coordinate (exclusiv 37 * @x2: horizontal ending coordinate (exclusive) 40 * @y1: vertical starting coordinate (inclusiv 38 * @y1: vertical starting coordinate (inclusive) 41 * @y2: vertical ending coordinate (exclusive) 39 * @y2: vertical ending coordinate (exclusive) 42 * << 43 * Note that this must match the layout of str << 44 * helpers like drm_atomic_helper_damage_iter_ << 45 */ 40 */ 46 struct drm_rect { 41 struct drm_rect { 47 int x1, y1, x2, y2; 42 int x1, y1, x2, y2; 48 }; 43 }; 49 44 50 /** 45 /** 51 * DRM_RECT_INIT - initialize a rectangle from << 52 * @x: x coordinate << 53 * @y: y coordinate << 54 * @w: width << 55 * @h: height << 56 * << 57 * RETURNS: << 58 * A new rectangle of the specified size. << 59 */ << 60 #define DRM_RECT_INIT(x, y, w, h) ((struct drm << 61 .x1 = (x), \ << 62 .y1 = (y), \ << 63 .x2 = (x) + (w), \ << 64 .y2 = (y) + (h) }) << 65 << 66 /** << 67 * DRM_RECT_FMT - printf string for &struct dr << 68 */ << 69 #define DRM_RECT_FMT "%dx%d%+d%+d" << 70 /** << 71 * DRM_RECT_ARG - printf arguments for &struct << 72 * @r: rectangle struct << 73 */ << 74 #define DRM_RECT_ARG(r) drm_rect_width(r), drm << 75 << 76 /** << 77 * DRM_RECT_FP_FMT - printf string for &struct << 78 */ << 79 #define DRM_RECT_FP_FMT "%d.%06ux%d.%06u%+d.%0 << 80 /** << 81 * DRM_RECT_FP_ARG - printf arguments for &str << 82 * @r: rectangle struct << 83 * << 84 * This is useful for e.g. printing plane sour << 85 * fixed point. << 86 */ << 87 #define DRM_RECT_FP_ARG(r) \ << 88 drm_rect_width(r) >> 16, ((drm << 89 drm_rect_height(r) >> 16, ((dr << 90 (r)->x1 >> 16, (((r)->x1 & 0xf << 91 (r)->y1 >> 16, (((r)->y1 & 0xf << 92 << 93 /** << 94 * drm_rect_init - initialize the rectangle fr << 95 * @r: rectangle << 96 * @x: x coordinate << 97 * @y: y coordinate << 98 * @width: width << 99 * @height: height << 100 */ << 101 static inline void drm_rect_init(struct drm_re << 102 int width, in << 103 { << 104 r->x1 = x; << 105 r->y1 = y; << 106 r->x2 = x + width; << 107 r->y2 = y + height; << 108 } << 109 << 110 /** << 111 * drm_rect_adjust_size - adjust the size of t 46 * drm_rect_adjust_size - adjust the size of the rectangle 112 * @r: rectangle to be adjusted 47 * @r: rectangle to be adjusted 113 * @dw: horizontal adjustment 48 * @dw: horizontal adjustment 114 * @dh: vertical adjustment 49 * @dh: vertical adjustment 115 * 50 * 116 * Change the size of rectangle @r by @dw in t 51 * Change the size of rectangle @r by @dw in the horizontal direction, 117 * and by @dh in the vertical direction, while 52 * and by @dh in the vertical direction, while keeping the center 118 * of @r stationary. 53 * of @r stationary. 119 * 54 * 120 * Positive @dw and @dh increase the size, neg 55 * Positive @dw and @dh increase the size, negative values decrease it. 121 */ 56 */ 122 static inline void drm_rect_adjust_size(struct 57 static inline void drm_rect_adjust_size(struct drm_rect *r, int dw, int dh) 123 { 58 { 124 r->x1 -= dw >> 1; 59 r->x1 -= dw >> 1; 125 r->y1 -= dh >> 1; 60 r->y1 -= dh >> 1; 126 r->x2 += (dw + 1) >> 1; 61 r->x2 += (dw + 1) >> 1; 127 r->y2 += (dh + 1) >> 1; 62 r->y2 += (dh + 1) >> 1; 128 } 63 } 129 64 130 /** 65 /** 131 * drm_rect_translate - translate the rectangl 66 * drm_rect_translate - translate the rectangle 132 * @r: rectangle to be translated !! 67 * @r: rectangle to be tranlated 133 * @dx: horizontal translation 68 * @dx: horizontal translation 134 * @dy: vertical translation 69 * @dy: vertical translation 135 * 70 * 136 * Move rectangle @r by @dx in the horizontal 71 * Move rectangle @r by @dx in the horizontal direction, 137 * and by @dy in the vertical direction. 72 * and by @dy in the vertical direction. 138 */ 73 */ 139 static inline void drm_rect_translate(struct d 74 static inline void drm_rect_translate(struct drm_rect *r, int dx, int dy) 140 { 75 { 141 r->x1 += dx; 76 r->x1 += dx; 142 r->y1 += dy; 77 r->y1 += dy; 143 r->x2 += dx; 78 r->x2 += dx; 144 r->y2 += dy; 79 r->y2 += dy; 145 } 80 } 146 81 147 /** 82 /** 148 * drm_rect_translate_to - translate the recta << 149 * @r: rectangle to be translated << 150 * @x: horizontal position << 151 * @y: vertical position << 152 * << 153 * Move rectangle @r to @x in the horizontal d << 154 * and to @y in the vertical direction. << 155 */ << 156 static inline void drm_rect_translate_to(struc << 157 { << 158 drm_rect_translate(r, x - r->x1, y - r << 159 } << 160 << 161 /** << 162 * drm_rect_downscale - downscale a rectangle 83 * drm_rect_downscale - downscale a rectangle 163 * @r: rectangle to be downscaled 84 * @r: rectangle to be downscaled 164 * @horz: horizontal downscale factor 85 * @horz: horizontal downscale factor 165 * @vert: vertical downscale factor 86 * @vert: vertical downscale factor 166 * 87 * 167 * Divide the coordinates of rectangle @r by @ 88 * Divide the coordinates of rectangle @r by @horz and @vert. 168 */ 89 */ 169 static inline void drm_rect_downscale(struct d 90 static inline void drm_rect_downscale(struct drm_rect *r, int horz, int vert) 170 { 91 { 171 r->x1 /= horz; 92 r->x1 /= horz; 172 r->y1 /= vert; 93 r->y1 /= vert; 173 r->x2 /= horz; 94 r->x2 /= horz; 174 r->y2 /= vert; 95 r->y2 /= vert; 175 } 96 } 176 97 177 /** 98 /** 178 * drm_rect_width - determine the rectangle wi 99 * drm_rect_width - determine the rectangle width 179 * @r: rectangle whose width is returned 100 * @r: rectangle whose width is returned 180 * 101 * 181 * RETURNS: 102 * RETURNS: 182 * The width of the rectangle. 103 * The width of the rectangle. 183 */ 104 */ 184 static inline int drm_rect_width(const struct 105 static inline int drm_rect_width(const struct drm_rect *r) 185 { 106 { 186 return r->x2 - r->x1; 107 return r->x2 - r->x1; 187 } 108 } 188 109 189 /** 110 /** 190 * drm_rect_height - determine the rectangle h 111 * drm_rect_height - determine the rectangle height 191 * @r: rectangle whose height is returned 112 * @r: rectangle whose height is returned 192 * 113 * 193 * RETURNS: 114 * RETURNS: 194 * The height of the rectangle. 115 * The height of the rectangle. 195 */ 116 */ 196 static inline int drm_rect_height(const struct 117 static inline int drm_rect_height(const struct drm_rect *r) 197 { 118 { 198 return r->y2 - r->y1; 119 return r->y2 - r->y1; 199 } 120 } 200 121 201 /** 122 /** 202 * drm_rect_visible - determine if the rectang !! 123 * drm_rect_visible - determine if the the rectangle is visible 203 * @r: rectangle whose visibility is returned 124 * @r: rectangle whose visibility is returned 204 * 125 * 205 * RETURNS: 126 * RETURNS: 206 * %true if the rectangle is visible, %false o 127 * %true if the rectangle is visible, %false otherwise. 207 */ 128 */ 208 static inline bool drm_rect_visible(const stru 129 static inline bool drm_rect_visible(const struct drm_rect *r) 209 { 130 { 210 return drm_rect_width(r) > 0 && drm_re 131 return drm_rect_width(r) > 0 && drm_rect_height(r) > 0; 211 } 132 } 212 133 213 /** 134 /** 214 * drm_rect_equals - determine if two rectangl 135 * drm_rect_equals - determine if two rectangles are equal 215 * @r1: first rectangle 136 * @r1: first rectangle 216 * @r2: second rectangle 137 * @r2: second rectangle 217 * 138 * 218 * RETURNS: 139 * RETURNS: 219 * %true if the rectangles are equal, %false o 140 * %true if the rectangles are equal, %false otherwise. 220 */ 141 */ 221 static inline bool drm_rect_equals(const struc 142 static inline bool drm_rect_equals(const struct drm_rect *r1, 222 const struc 143 const struct drm_rect *r2) 223 { 144 { 224 return r1->x1 == r2->x1 && r1->x2 == r 145 return r1->x1 == r2->x1 && r1->x2 == r2->x2 && 225 r1->y1 == r2->y1 && r1->y2 == 146 r1->y1 == r2->y1 && r1->y2 == r2->y2; 226 } 147 } 227 148 228 /** << 229 * drm_rect_fp_to_int - Convert a rect in 16.1 << 230 * @dst: rect to be stored the converted value << 231 * @src: rect in 16.16 fixed point form << 232 */ << 233 static inline void drm_rect_fp_to_int(struct d << 234 const st << 235 { << 236 drm_rect_init(dst, src->x1 >> 16, src- << 237 drm_rect_width(src) >> 1 << 238 drm_rect_height(src) >> << 239 } << 240 << 241 /** << 242 * drm_rect_overlap - Check if two rectangles << 243 * @a: first rectangle << 244 * @b: second rectangle << 245 * << 246 * RETURNS: << 247 * %true if the rectangles overlap, %false oth << 248 */ << 249 static inline bool drm_rect_overlap(const stru << 250 const stru << 251 { << 252 return (a->x2 > b->x1 && b->x2 > a->x1 << 253 a->y2 > b->y1 && b->y2 > a->y1 << 254 } << 255 << 256 bool drm_rect_intersect(struct drm_rect *r, co 149 bool drm_rect_intersect(struct drm_rect *r, const struct drm_rect *clip); 257 bool drm_rect_clip_scaled(struct drm_rect *src 150 bool drm_rect_clip_scaled(struct drm_rect *src, struct drm_rect *dst, 258 const struct drm_rec !! 151 const struct drm_rect *clip, >> 152 int hscale, int vscale); 259 int drm_rect_calc_hscale(const struct drm_rect 153 int drm_rect_calc_hscale(const struct drm_rect *src, 260 const struct drm_rect 154 const struct drm_rect *dst, 261 int min_hscale, int m 155 int min_hscale, int max_hscale); 262 int drm_rect_calc_vscale(const struct drm_rect 156 int drm_rect_calc_vscale(const struct drm_rect *src, 263 const struct drm_rect 157 const struct drm_rect *dst, 264 int min_vscale, int m 158 int min_vscale, int max_vscale); >> 159 int drm_rect_calc_hscale_relaxed(struct drm_rect *src, >> 160 struct drm_rect *dst, >> 161 int min_hscale, int max_hscale); >> 162 int drm_rect_calc_vscale_relaxed(struct drm_rect *src, >> 163 struct drm_rect *dst, >> 164 int min_vscale, int max_vscale); 265 void drm_rect_debug_print(const char *prefix, 165 void drm_rect_debug_print(const char *prefix, 266 const struct drm_rec 166 const struct drm_rect *r, bool fixed_point); 267 void drm_rect_rotate(struct drm_rect *r, 167 void drm_rect_rotate(struct drm_rect *r, 268 int width, int height, 168 int width, int height, 269 unsigned int rotation); 169 unsigned int rotation); 270 void drm_rect_rotate_inv(struct drm_rect *r, 170 void drm_rect_rotate_inv(struct drm_rect *r, 271 int width, int height 171 int width, int height, 272 unsigned int rotation 172 unsigned int rotation); 273 173 274 #endif 174 #endif 275 175
Linux® is a registered trademark of Linus Torvalds in the United States and other countries.
TOMOYO® is a registered trademark of NTT DATA CORPORATION.