HID: sony: Remove the size check for the Dualshock 4 HID Descriptor
[cascardo/linux.git] / drivers / gpu / drm / mgag200 / mgag200_cursor.c
1 /*
2  * Copyright 2013 Matrox Graphics
3  *
4  * This file is subject to the terms and conditions of the GNU General
5  * Public License version 2. See the file COPYING in the main
6  * directory of this archive for more details.
7  *
8  * Author: Christopher Harvey <charvey@matrox.com>
9  */
10
11 #include <drm/drmP.h>
12 #include "mgag200_drv.h"
13
14 static bool warn_transparent = true;
15 static bool warn_palette = true;
16
17 /*
18   Hide the cursor off screen. We can't disable the cursor hardware because it
19   takes too long to re-activate and causes momentary corruption
20 */
21 static void mga_hide_cursor(struct mga_device *mdev)
22 {
23         WREG8(MGA_CURPOSXL, 0);
24         WREG8(MGA_CURPOSXH, 0);
25         if (mdev->cursor.pixels_1->pin_count)
26                 mgag200_bo_unpin(mdev->cursor.pixels_1);
27         if (mdev->cursor.pixels_2->pin_count)
28                 mgag200_bo_unpin(mdev->cursor.pixels_2);
29 }
30
31 int mga_crtc_cursor_set(struct drm_crtc *crtc,
32                         struct drm_file *file_priv,
33                         uint32_t handle,
34                         uint32_t width,
35                         uint32_t height)
36 {
37         struct drm_device *dev = crtc->dev;
38         struct mga_device *mdev = (struct mga_device *)dev->dev_private;
39         struct mgag200_bo *pixels_1 = mdev->cursor.pixels_1;
40         struct mgag200_bo *pixels_2 = mdev->cursor.pixels_2;
41         struct mgag200_bo *pixels_current = mdev->cursor.pixels_current;
42         struct mgag200_bo *pixels_prev = mdev->cursor.pixels_prev;
43         struct drm_gem_object *obj;
44         struct mgag200_bo *bo = NULL;
45         int ret = 0;
46         unsigned int i, row, col;
47         uint32_t colour_set[16];
48         uint32_t *next_space = &colour_set[0];
49         uint32_t *palette_iter;
50         uint32_t this_colour;
51         bool found = false;
52         int colour_count = 0;
53         u64 gpu_addr;
54         u8 reg_index;
55         u8 this_row[48];
56
57         if (!pixels_1 || !pixels_2) {
58                 WREG8(MGA_CURPOSXL, 0);
59                 WREG8(MGA_CURPOSXH, 0);
60                 return -ENOTSUPP; /* Didn't allocate space for cursors */
61         }
62
63         if ((width != 64 || height != 64) && handle) {
64                 WREG8(MGA_CURPOSXL, 0);
65                 WREG8(MGA_CURPOSXH, 0);
66                 return -EINVAL;
67         }
68
69         BUG_ON(pixels_1 != pixels_current && pixels_1 != pixels_prev);
70         BUG_ON(pixels_2 != pixels_current && pixels_2 != pixels_prev);
71         BUG_ON(pixels_current == pixels_prev);
72
73         obj = drm_gem_object_lookup(dev, file_priv, handle);
74         if (!obj)
75                 return -ENOENT;
76
77         ret = mgag200_bo_reserve(pixels_1, true);
78         if (ret) {
79                 WREG8(MGA_CURPOSXL, 0);
80                 WREG8(MGA_CURPOSXH, 0);
81                 goto out_unref;
82         }
83         ret = mgag200_bo_reserve(pixels_2, true);
84         if (ret) {
85                 WREG8(MGA_CURPOSXL, 0);
86                 WREG8(MGA_CURPOSXH, 0);
87                 mgag200_bo_unreserve(pixels_1);
88                 goto out_unreserve1;
89         }
90
91         if (!handle) {
92                 mga_hide_cursor(mdev);
93                 ret = 0;
94                 goto out1;
95         }
96
97         /* Move cursor buffers into VRAM if they aren't already */
98         if (!pixels_1->pin_count) {
99                 ret = mgag200_bo_pin(pixels_1, TTM_PL_FLAG_VRAM,
100                                      &mdev->cursor.pixels_1_gpu_addr);
101                 if (ret)
102                         goto out1;
103         }
104         if (!pixels_2->pin_count) {
105                 ret = mgag200_bo_pin(pixels_2, TTM_PL_FLAG_VRAM,
106                                      &mdev->cursor.pixels_2_gpu_addr);
107                 if (ret) {
108                         mgag200_bo_unpin(pixels_1);
109                         goto out1;
110                 }
111         }
112
113         bo = gem_to_mga_bo(obj);
114         ret = mgag200_bo_reserve(bo, true);
115         if (ret) {
116                 dev_err(&dev->pdev->dev, "failed to reserve user bo\n");
117                 goto out1;
118         }
119         if (!bo->kmap.virtual) {
120                 ret = ttm_bo_kmap(&bo->bo, 0, bo->bo.num_pages, &bo->kmap);
121                 if (ret) {
122                         dev_err(&dev->pdev->dev, "failed to kmap user buffer updates\n");
123                         goto out2;
124                 }
125         }
126
127         memset(&colour_set[0], 0, sizeof(uint32_t)*16);
128         /* width*height*4 = 16384 */
129         for (i = 0; i < 16384; i += 4) {
130                 this_colour = ioread32(bo->kmap.virtual + i);
131                 /* No transparency */
132                 if (this_colour>>24 != 0xff &&
133                         this_colour>>24 != 0x0) {
134                         if (warn_transparent) {
135                                 dev_info(&dev->pdev->dev, "Video card doesn't support cursors with partial transparency.\n");
136                                 dev_info(&dev->pdev->dev, "Not enabling hardware cursor.\n");
137                                 warn_transparent = false; /* Only tell the user once. */
138                         }
139                         ret = -EINVAL;
140                         goto out3;
141                 }
142                 /* Don't need to store transparent pixels as colours */
143                 if (this_colour>>24 == 0x0)
144                         continue;
145                 found = false;
146                 for (palette_iter = &colour_set[0]; palette_iter != next_space; palette_iter++) {
147                         if (*palette_iter == this_colour) {
148                                 found = true;
149                                 break;
150                         }
151                 }
152                 if (found)
153                         continue;
154                 /* We only support 4bit paletted cursors */
155                 if (colour_count >= 16) {
156                         if (warn_palette) {
157                                 dev_info(&dev->pdev->dev, "Video card only supports cursors with up to 16 colours.\n");
158                                 dev_info(&dev->pdev->dev, "Not enabling hardware cursor.\n");
159                                 warn_palette = false; /* Only tell the user once. */
160                         }
161                         ret = -EINVAL;
162                         goto out3;
163                 }
164                 *next_space = this_colour;
165                 next_space++;
166                 colour_count++;
167         }
168
169         /* Program colours from cursor icon into palette */
170         for (i = 0; i < colour_count; i++) {
171                 if (i <= 2)
172                         reg_index = 0x8 + i*0x4;
173                 else
174                         reg_index = 0x60 + i*0x3;
175                 WREG_DAC(reg_index, colour_set[i] & 0xff);
176                 WREG_DAC(reg_index+1, colour_set[i]>>8 & 0xff);
177                 WREG_DAC(reg_index+2, colour_set[i]>>16 & 0xff);
178                 BUG_ON((colour_set[i]>>24 & 0xff) != 0xff);
179         }
180
181         /* Map up-coming buffer to write colour indices */
182         if (!pixels_prev->kmap.virtual) {
183                 ret = ttm_bo_kmap(&pixels_prev->bo, 0,
184                                   pixels_prev->bo.num_pages,
185                                   &pixels_prev->kmap);
186                 if (ret) {
187                         dev_err(&dev->pdev->dev, "failed to kmap cursor updates\n");
188                         goto out3;
189                 }
190         }
191
192         /* now write colour indices into hardware cursor buffer */
193         for (row = 0; row < 64; row++) {
194                 memset(&this_row[0], 0, 48);
195                 for (col = 0; col < 64; col++) {
196                         this_colour = ioread32(bo->kmap.virtual + 4*(col + 64*row));
197                         /* write transparent pixels */
198                         if (this_colour>>24 == 0x0) {
199                                 this_row[47 - col/8] |= 0x80>>(col%8);
200                                 continue;
201                         }
202
203                         /* write colour index here */
204                         for (i = 0; i < colour_count; i++) {
205                                 if (colour_set[i] == this_colour) {
206                                         if (col % 2)
207                                                 this_row[col/2] |= i<<4;
208                                         else
209                                                 this_row[col/2] |= i;
210                                         break;
211                                 }
212                         }
213                 }
214                 memcpy_toio(pixels_prev->kmap.virtual + row*48, &this_row[0], 48);
215         }
216
217         /* Program gpu address of cursor buffer */
218         if (pixels_prev == pixels_1)
219                 gpu_addr = mdev->cursor.pixels_1_gpu_addr;
220         else
221                 gpu_addr = mdev->cursor.pixels_2_gpu_addr;
222         WREG_DAC(MGA1064_CURSOR_BASE_ADR_LOW, (u8)((gpu_addr>>10) & 0xff));
223         WREG_DAC(MGA1064_CURSOR_BASE_ADR_HI, (u8)((gpu_addr>>18) & 0x3f));
224
225         /* Adjust cursor control register to turn on the cursor */
226         WREG_DAC(MGA1064_CURSOR_CTL, 4); /* 16-colour palletized cursor mode */
227
228         /* Now swap internal buffer pointers */
229         if (mdev->cursor.pixels_1 == mdev->cursor.pixels_prev) {
230                 mdev->cursor.pixels_prev = mdev->cursor.pixels_2;
231                 mdev->cursor.pixels_current = mdev->cursor.pixels_1;
232         } else if (mdev->cursor.pixels_1 == mdev->cursor.pixels_current) {
233                 mdev->cursor.pixels_prev = mdev->cursor.pixels_1;
234                 mdev->cursor.pixels_current = mdev->cursor.pixels_2;
235         } else {
236                 BUG();
237         }
238         ret = 0;
239
240         ttm_bo_kunmap(&pixels_prev->kmap);
241  out3:
242         ttm_bo_kunmap(&bo->kmap);
243  out2:
244         mgag200_bo_unreserve(bo);
245  out1:
246         if (ret)
247                 mga_hide_cursor(mdev);
248         mgag200_bo_unreserve(pixels_1);
249 out_unreserve1:
250         mgag200_bo_unreserve(pixels_2);
251 out_unref:
252         drm_gem_object_unreference_unlocked(obj);
253
254         return ret;
255 }
256
257 int mga_crtc_cursor_move(struct drm_crtc *crtc, int x, int y)
258 {
259         struct mga_device *mdev = (struct mga_device *)crtc->dev->dev_private;
260         /* Our origin is at (64,64) */
261         x += 64;
262         y += 64;
263
264         BUG_ON(x <= 0);
265         BUG_ON(y <= 0);
266         BUG_ON(x & ~0xffff);
267         BUG_ON(y & ~0xffff);
268
269         WREG8(MGA_CURPOSXL, x & 0xff);
270         WREG8(MGA_CURPOSXH, (x>>8) & 0xff);
271
272         WREG8(MGA_CURPOSYL, y & 0xff);
273         WREG8(MGA_CURPOSYH, (y>>8) & 0xff);
274         return 0;
275 }