• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * Copyright (C) 2013 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include <fcntl.h>
18 #include <poll.h>
19 #include <pthread.h>
20 #include <sys/resource.h>
21 
22 #include <adf/adf.h>
23 #include <adfhwc/adfhwc.h>
24 
25 #include <cutils/log.h>
26 #include <utils/Vector.h>
27 
28 struct adf_hwc_helper {
29     adf_hwc_event_callbacks const *event_cb;
30     void *event_cb_data;
31 
32     pthread_t event_thread;
33 
34     android::Vector<int> intf_fds;
35     android::Vector<drm_mode_modeinfo> display_configs;
36 };
37 
min(T a,T b)38 template<typename T> inline T min(T a, T b) { return (a < b) ? a : b; }
39 
adf_eventControl(struct adf_hwc_helper * dev,int disp,int event,int enabled)40 int adf_eventControl(struct adf_hwc_helper *dev, int disp, int event,
41         int enabled)
42 {
43     if (enabled != !!enabled)
44         return -EINVAL;
45 
46     if ((size_t)disp >= dev->intf_fds.size())
47         return -EINVAL;
48 
49     switch (event) {
50     case HWC_EVENT_VSYNC:
51         return adf_set_event(dev->intf_fds[disp], ADF_EVENT_VSYNC, enabled);
52     }
53 
54     return -EINVAL;
55 }
56 
dpi(uint16_t res,uint16_t size_mm)57 static inline int32_t dpi(uint16_t res, uint16_t size_mm)
58 {
59     if (size_mm)
60         return 1000 * (res * 25.4f) / size_mm;
61     return 0;
62 }
63 
adf_blank(struct adf_hwc_helper * dev,int disp,int blank)64 int adf_blank(struct adf_hwc_helper *dev, int disp, int blank)
65 {
66     if ((size_t)disp >= dev->intf_fds.size())
67         return -EINVAL;
68 
69     uint8_t dpms_mode = blank ? DRM_MODE_DPMS_OFF : DRM_MODE_DPMS_ON;
70     return adf_interface_blank(dev->intf_fds[disp], dpms_mode);
71 }
72 
adf_query_display_types_supported(struct adf_hwc_helper * dev,int * value)73 int adf_query_display_types_supported(struct adf_hwc_helper *dev, int *value)
74 {
75     *value = 0;
76     if (dev->intf_fds.size() > 0)
77         *value |= HWC_DISPLAY_PRIMARY_BIT;
78     if (dev->intf_fds.size() > 1)
79         *value |= HWC_DISPLAY_EXTERNAL_BIT;
80 
81     return 0;
82 }
83 
adf_getDisplayConfigs(struct adf_hwc_helper * dev,int disp,uint32_t * configs,size_t * numConfigs)84 int adf_getDisplayConfigs(struct adf_hwc_helper *dev, int disp,
85         uint32_t *configs, size_t *numConfigs)
86 {
87     if ((size_t)disp >= dev->intf_fds.size())
88         return -EINVAL;
89 
90     adf_interface_data data;
91     int err = adf_get_interface_data(dev->intf_fds[disp], &data);
92     if (err < 0) {
93         ALOGE("failed to get ADF interface data: %s", strerror(err));
94         return err;
95     }
96 
97     if (!data.hotplug_detect)
98         return -ENODEV;
99 
100     android::Vector<drm_mode_modeinfo *> unique_configs;
101     unique_configs.push_back(&data.current_mode);
102     for (size_t i = 0; i < data.n_available_modes; i++)
103         if (memcmp(&data.available_modes[i], &data.current_mode,
104                 sizeof(data.current_mode)))
105             unique_configs.push_back(&data.available_modes[i]);
106 
107     for (size_t i = 0; i < min(*numConfigs, unique_configs.size()); i++) {
108         configs[i] = dev->display_configs.size();
109         dev->display_configs.push_back(*unique_configs[i]);
110     }
111     *numConfigs = unique_configs.size();
112 
113     adf_free_interface_data(&data);
114     return 0;
115 }
116 
adf_display_attribute(const adf_interface_data & data,const drm_mode_modeinfo & mode,const uint32_t attribute)117 static int32_t adf_display_attribute(const adf_interface_data &data,
118         const drm_mode_modeinfo &mode, const uint32_t attribute)
119 {
120     switch (attribute) {
121     case HWC_DISPLAY_VSYNC_PERIOD:
122         if (mode.vrefresh)
123             return 1000000000 / mode.vrefresh;
124         return 0;
125 
126     case HWC_DISPLAY_WIDTH:
127         return mode.hdisplay;
128 
129     case HWC_DISPLAY_HEIGHT:
130         return mode.vdisplay;
131 
132     case HWC_DISPLAY_DPI_X:
133         return dpi(mode.hdisplay, data.width_mm);
134 
135     case HWC_DISPLAY_DPI_Y:
136         return dpi(mode.vdisplay, data.height_mm);
137 
138     default:
139         ALOGE("unknown display attribute %u", attribute);
140         return -EINVAL;
141     }
142 }
143 
adf_getDisplayAttributes(struct adf_hwc_helper * dev,int disp,uint32_t config,const uint32_t * attributes,int32_t * values)144 int adf_getDisplayAttributes(struct adf_hwc_helper *dev, int disp,
145         uint32_t config, const uint32_t *attributes, int32_t *values)
146 {
147     if ((size_t)disp >= dev->intf_fds.size())
148         return -EINVAL;
149 
150     if (config >= dev->display_configs.size())
151         return -EINVAL;
152 
153     adf_interface_data data;
154     int err = adf_get_interface_data(dev->intf_fds[disp], &data);
155     if (err < 0) {
156         ALOGE("failed to get ADF interface data: %s", strerror(err));
157         return err;
158     }
159 
160     for (int i = 0; attributes[i] != HWC_DISPLAY_NO_ATTRIBUTE; i++)
161         values[i] = adf_display_attribute(data, dev->display_configs[config],
162                 attributes[i]);
163 
164     adf_free_interface_data(&data);
165     return 0;
166 }
167 
handle_adf_event(struct adf_hwc_helper * dev,int disp)168 static void handle_adf_event(struct adf_hwc_helper *dev, int disp)
169 {
170     adf_event *event;
171     int err = adf_read_event(dev->intf_fds[disp], &event);
172     if (err < 0) {
173         ALOGE("error reading event from display %d: %s", disp, strerror(err));
174         return;
175     }
176 
177     void *vsync_temp;
178     adf_vsync_event *vsync;
179     adf_hotplug_event *hotplug;
180 
181     switch (event->type) {
182     case ADF_EVENT_VSYNC:
183         vsync_temp = event;
184         vsync = static_cast<adf_vsync_event *>(vsync_temp);
185         // casting directly to adf_vsync_event * makes g++ warn about
186         // potential alignment issues that don't apply here
187         dev->event_cb->vsync(dev->event_cb_data, disp, vsync->timestamp);
188         break;
189     case ADF_EVENT_HOTPLUG:
190         hotplug = reinterpret_cast<adf_hotplug_event *>(event);
191         dev->event_cb->hotplug(dev->event_cb_data, disp, hotplug->connected);
192         break;
193     default:
194         if (event->type < ADF_EVENT_DEVICE_CUSTOM)
195             ALOGW("unrecognized event type %u", event->type);
196         else if (!dev->event_cb || !dev->event_cb->custom_event)
197             ALOGW("unhandled event type %u", event->type);
198         else
199             dev->event_cb->custom_event(dev->event_cb_data, disp, event);
200     }
201     free(event);
202 }
203 
adf_event_thread(void * data)204 static void *adf_event_thread(void *data)
205 {
206     adf_hwc_helper *dev = static_cast<adf_hwc_helper *>(data);
207 
208     setpriority(PRIO_PROCESS, 0, HAL_PRIORITY_URGENT_DISPLAY);
209 
210     pollfd *fds = new pollfd[dev->intf_fds.size()];
211     for (size_t i = 0; i < dev->intf_fds.size(); i++) {
212         fds[i].fd = dev->intf_fds[i];
213         fds[i].events = POLLIN | POLLPRI;
214     }
215 
216     while (true) {
217         int err = poll(fds, dev->intf_fds.size(), -1);
218 
219         if (err > 0) {
220             for (size_t i = 0; i < dev->intf_fds.size(); i++)
221                 if (fds[i].revents & (POLLIN | POLLPRI))
222                     handle_adf_event(dev, i);
223         }
224         else if (err == -1) {
225             if (errno == EINTR)
226                 break;
227             ALOGE("error in event thread: %s", strerror(errno));
228         }
229     }
230 
231     delete [] fds;
232     return NULL;
233 }
234 
adf_hwc_open(int * intf_fds,size_t n_intfs,const struct adf_hwc_event_callbacks * event_cb,void * event_cb_data,struct adf_hwc_helper ** dev)235 int adf_hwc_open(int *intf_fds, size_t n_intfs,
236         const struct adf_hwc_event_callbacks *event_cb, void *event_cb_data,
237         struct adf_hwc_helper **dev)
238 {
239     if (!n_intfs)
240         return -EINVAL;
241 
242     adf_hwc_helper *dev_ret = new adf_hwc_helper;
243     dev_ret->event_cb = event_cb;
244     dev_ret->event_cb_data = event_cb_data;
245 
246     int ret;
247 
248     for (size_t i = 0; i < n_intfs; i++) {
249         int dup_intf_fd = dup(intf_fds[i]);
250         if (dup_intf_fd < 0) {
251             ALOGE("failed to dup interface fd: %s", strerror(errno));
252             ret = -errno;
253             goto err;
254         }
255 
256         dev_ret->intf_fds.push_back(dup_intf_fd);
257 
258         ret = adf_set_event(dup_intf_fd, ADF_EVENT_HOTPLUG, 1);
259         if (ret < 0 && ret != -EINVAL) {
260             ALOGE("failed to enable hotplug event on display %zu: %s",
261                     i, strerror(errno));
262             goto err;
263         }
264     }
265 
266     ret = pthread_create(&dev_ret->event_thread, NULL, adf_event_thread,
267             dev_ret);
268     if (ret) {
269         ALOGE("failed to create event thread: %s", strerror(ret));
270         goto err;
271     }
272 
273     *dev = dev_ret;
274     return 0;
275 
276 err:
277     for (size_t i = 0; i < dev_ret->intf_fds.size(); i++)
278         close(dev_ret->intf_fds[i]);
279 
280     delete dev_ret;
281     return ret;
282 }
283 
adf_hwc_close(struct adf_hwc_helper * dev)284 void adf_hwc_close(struct adf_hwc_helper *dev)
285 {
286     pthread_kill(dev->event_thread, SIGTERM);
287     pthread_join(dev->event_thread, NULL);
288 
289     for (size_t i = 0; i < dev->intf_fds.size(); i++)
290         close(dev->intf_fds[i]);
291 
292     delete dev;
293 }
294