1 /*
2 * Copyright 2018 Red Hat Inc.
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice shall be included in
12 * all copies or substantial portions of the Software.
13 *
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 * OTHER DEALINGS IN THE SOFTWARE.
21 */
22 #include "wndw.h"
23 #include "atom.h"
24
25 #include <drm/drm_atomic_helper.h>
26 #include <drm/drm_plane_helper.h>
27 #include <nouveau_bo.h>
28
29 #include <nvif/clc37e.h>
30
31 static void
wndwc37e_ilut_clr(struct nv50_wndw * wndw)32 wndwc37e_ilut_clr(struct nv50_wndw *wndw)
33 {
34 u32 *push;
35 if ((push = evo_wait(&wndw->wndw, 2))) {
36 evo_mthd(push, 0x02b8, 1);
37 evo_data(push, 0x00000000);
38 evo_kick(push, &wndw->wndw);
39 }
40 }
41
42 static void
wndwc37e_ilut_set(struct nv50_wndw * wndw,struct nv50_wndw_atom * asyw)43 wndwc37e_ilut_set(struct nv50_wndw *wndw, struct nv50_wndw_atom *asyw)
44 {
45 u32 *push;
46 if ((push = evo_wait(&wndw->wndw, 4))) {
47 evo_mthd(push, 0x02b0, 3);
48 evo_data(push, asyw->xlut.i.output_mode << 8 |
49 asyw->xlut.i.range << 4 |
50 asyw->xlut.i.size);
51 evo_data(push, asyw->xlut.i.offset >> 8);
52 evo_data(push, asyw->xlut.handle);
53 evo_kick(push, &wndw->wndw);
54 }
55 }
56
57 static void
wndwc37e_ilut(struct nv50_wndw * wndw,struct nv50_wndw_atom * asyw)58 wndwc37e_ilut(struct nv50_wndw *wndw, struct nv50_wndw_atom *asyw)
59 {
60 asyw->xlut.i.mode = 2;
61 asyw->xlut.i.size = 0;
62 asyw->xlut.i.range = 0;
63 asyw->xlut.i.output_mode = 1;
64 }
65
66 static void
wndwc37e_image_clr(struct nv50_wndw * wndw)67 wndwc37e_image_clr(struct nv50_wndw *wndw)
68 {
69 u32 *push;
70 if ((push = evo_wait(&wndw->wndw, 4))) {
71 evo_mthd(push, 0x0308, 1);
72 evo_data(push, 0x00000000);
73 evo_mthd(push, 0x0240, 1);
74 evo_data(push, 0x00000000);
75 evo_kick(push, &wndw->wndw);
76 }
77 }
78
79 static void
wndwc37e_image_set(struct nv50_wndw * wndw,struct nv50_wndw_atom * asyw)80 wndwc37e_image_set(struct nv50_wndw *wndw, struct nv50_wndw_atom *asyw)
81 {
82 u32 *push;
83
84 if (!(push = evo_wait(&wndw->wndw, 25)))
85 return;
86
87 evo_mthd(push, 0x0308, 1);
88 evo_data(push, asyw->image.mode << 4 | asyw->image.interval);
89 evo_mthd(push, 0x0224, 4);
90 evo_data(push, asyw->image.h << 16 | asyw->image.w);
91 evo_data(push, asyw->image.layout << 4 | asyw->image.blockh);
92 evo_data(push, asyw->image.colorspace << 8 | asyw->image.format);
93 evo_data(push, asyw->image.blocks[0] | (asyw->image.pitch[0] >> 6));
94 evo_mthd(push, 0x0240, 1);
95 evo_data(push, asyw->image.handle[0]);
96 evo_mthd(push, 0x0260, 1);
97 evo_data(push, asyw->image.offset[0] >> 8);
98 evo_mthd(push, 0x0290, 1);
99 evo_data(push, (asyw->state.src_y >> 16) << 16 |
100 (asyw->state.src_x >> 16));
101 evo_mthd(push, 0x0298, 1);
102 evo_data(push, (asyw->state.src_h >> 16) << 16 |
103 (asyw->state.src_w >> 16));
104 evo_mthd(push, 0x02a4, 1);
105 evo_data(push, asyw->state.crtc_h << 16 |
106 asyw->state.crtc_w);
107
108 /*XXX: Composition-related stuff. Need to implement properly. */
109 evo_mthd(push, 0x02ec, 1);
110 evo_data(push, (2 - (wndw->id & 1)) << 4);
111 evo_mthd(push, 0x02f4, 5);
112 evo_data(push, 0x00000011);
113 evo_data(push, 0xffff0000);
114 evo_data(push, 0xffff0000);
115 evo_data(push, 0xffff0000);
116 evo_data(push, 0xffff0000);
117 evo_kick(push, &wndw->wndw);
118 }
119
120 static void
wndwc37e_ntfy_clr(struct nv50_wndw * wndw)121 wndwc37e_ntfy_clr(struct nv50_wndw *wndw)
122 {
123 u32 *push;
124 if ((push = evo_wait(&wndw->wndw, 2))) {
125 evo_mthd(push, 0x021c, 1);
126 evo_data(push, 0x00000000);
127 evo_kick(push, &wndw->wndw);
128 }
129 }
130
131 static void
wndwc37e_ntfy_set(struct nv50_wndw * wndw,struct nv50_wndw_atom * asyw)132 wndwc37e_ntfy_set(struct nv50_wndw *wndw, struct nv50_wndw_atom *asyw)
133 {
134 u32 *push;
135 if ((push = evo_wait(&wndw->wndw, 3))) {
136 evo_mthd(push, 0x021c, 2);
137 evo_data(push, asyw->ntfy.handle);
138 evo_data(push, asyw->ntfy.offset | asyw->ntfy.awaken);
139 evo_kick(push, &wndw->wndw);
140 }
141 }
142
143 static void
wndwc37e_sema_clr(struct nv50_wndw * wndw)144 wndwc37e_sema_clr(struct nv50_wndw *wndw)
145 {
146 u32 *push;
147 if ((push = evo_wait(&wndw->wndw, 2))) {
148 evo_mthd(push, 0x0218, 1);
149 evo_data(push, 0x00000000);
150 evo_kick(push, &wndw->wndw);
151 }
152 }
153
154 static void
wndwc37e_sema_set(struct nv50_wndw * wndw,struct nv50_wndw_atom * asyw)155 wndwc37e_sema_set(struct nv50_wndw *wndw, struct nv50_wndw_atom *asyw)
156 {
157 u32 *push;
158 if ((push = evo_wait(&wndw->wndw, 5))) {
159 evo_mthd(push, 0x020c, 4);
160 evo_data(push, asyw->sema.offset);
161 evo_data(push, asyw->sema.acquire);
162 evo_data(push, asyw->sema.release);
163 evo_data(push, asyw->sema.handle);
164 evo_kick(push, &wndw->wndw);
165 }
166 }
167
168 static void
wndwc37e_update(struct nv50_wndw * wndw,u32 * interlock)169 wndwc37e_update(struct nv50_wndw *wndw, u32 *interlock)
170 {
171 u32 *push;
172 if ((push = evo_wait(&wndw->wndw, 5))) {
173 evo_mthd(push, 0x0370, 2);
174 evo_data(push, interlock[NV50_DISP_INTERLOCK_CURS] << 1 |
175 interlock[NV50_DISP_INTERLOCK_CORE]);
176 evo_data(push, interlock[NV50_DISP_INTERLOCK_WNDW]);
177 evo_mthd(push, 0x0200, 1);
178 if (interlock[NV50_DISP_INTERLOCK_WIMM] & wndw->interlock.data)
179 evo_data(push, 0x00001001);
180 else
181 evo_data(push, 0x00000001);
182 evo_kick(push, &wndw->wndw);
183 }
184 }
185
186 static void
wndwc37e_release(struct nv50_wndw * wndw,struct nv50_wndw_atom * asyw,struct nv50_head_atom * asyh)187 wndwc37e_release(struct nv50_wndw *wndw, struct nv50_wndw_atom *asyw,
188 struct nv50_head_atom *asyh)
189 {
190 }
191
192 static int
wndwc37e_acquire(struct nv50_wndw * wndw,struct nv50_wndw_atom * asyw,struct nv50_head_atom * asyh)193 wndwc37e_acquire(struct nv50_wndw *wndw, struct nv50_wndw_atom *asyw,
194 struct nv50_head_atom *asyh)
195 {
196 return drm_atomic_helper_check_plane_state(&asyw->state, &asyh->state,
197 DRM_PLANE_HELPER_NO_SCALING,
198 DRM_PLANE_HELPER_NO_SCALING,
199 true, true);
200 }
201
202 static const u32
203 wndwc37e_format[] = {
204 DRM_FORMAT_C8,
205 DRM_FORMAT_YUYV,
206 DRM_FORMAT_UYVY,
207 DRM_FORMAT_XRGB8888,
208 DRM_FORMAT_ARGB8888,
209 DRM_FORMAT_RGB565,
210 DRM_FORMAT_XRGB1555,
211 DRM_FORMAT_ARGB1555,
212 DRM_FORMAT_XBGR2101010,
213 DRM_FORMAT_ABGR2101010,
214 DRM_FORMAT_XBGR8888,
215 DRM_FORMAT_ABGR8888,
216 DRM_FORMAT_XRGB2101010,
217 DRM_FORMAT_ARGB2101010,
218 0
219 };
220
221 static const struct nv50_wndw_func
222 wndwc37e = {
223 .acquire = wndwc37e_acquire,
224 .release = wndwc37e_release,
225 .sema_set = wndwc37e_sema_set,
226 .sema_clr = wndwc37e_sema_clr,
227 .ntfy_set = wndwc37e_ntfy_set,
228 .ntfy_clr = wndwc37e_ntfy_clr,
229 .ntfy_reset = corec37d_ntfy_init,
230 .ntfy_wait_begun = base507c_ntfy_wait_begun,
231 .ilut = wndwc37e_ilut,
232 .xlut_set = wndwc37e_ilut_set,
233 .xlut_clr = wndwc37e_ilut_clr,
234 .image_set = wndwc37e_image_set,
235 .image_clr = wndwc37e_image_clr,
236 .update = wndwc37e_update,
237 };
238
239 static int
wndwc37e_new_(const struct nv50_wndw_func * func,struct nouveau_drm * drm,enum drm_plane_type type,int index,s32 oclass,u32 heads,struct nv50_wndw ** pwndw)240 wndwc37e_new_(const struct nv50_wndw_func *func, struct nouveau_drm *drm,
241 enum drm_plane_type type, int index, s32 oclass, u32 heads,
242 struct nv50_wndw **pwndw)
243 {
244 struct nvc37e_window_channel_dma_v0 args = {
245 .pushbuf = 0xb0007e00 | index,
246 .index = index,
247 };
248 struct nv50_disp *disp = nv50_disp(drm->dev);
249 struct nv50_wndw *wndw;
250 int ret;
251
252 ret = nv50_wndw_new_(func, drm->dev, type, "wndw", index,
253 wndwc37e_format, heads, NV50_DISP_INTERLOCK_WNDW,
254 BIT(index), &wndw);
255 if (*pwndw = wndw, ret)
256 return ret;
257
258 ret = nv50_dmac_create(&drm->client.device, &disp->disp->object,
259 &oclass, 0, &args, sizeof(args),
260 disp->sync->bo.offset, &wndw->wndw);
261 if (ret) {
262 NV_ERROR(drm, "qndw%04x allocation failed: %d\n", oclass, ret);
263 return ret;
264 }
265
266 wndw->ntfy = NV50_DISP_WNDW_NTFY(wndw->id);
267 wndw->sema = NV50_DISP_WNDW_SEM0(wndw->id);
268 wndw->data = 0x00000000;
269 return 0;
270 }
271
272 int
wndwc37e_new(struct nouveau_drm * drm,enum drm_plane_type type,int index,s32 oclass,struct nv50_wndw ** pwndw)273 wndwc37e_new(struct nouveau_drm *drm, enum drm_plane_type type, int index,
274 s32 oclass, struct nv50_wndw **pwndw)
275 {
276 return wndwc37e_new_(&wndwc37e, drm, type, index, oclass,
277 BIT(index >> 1), pwndw);
278 }
279