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Amy Zhangbb94eeb2020-07-09 22:48:04 -07001/*
2 * Copyright 2020 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#define LOG_TAG "android.hardware.tv.tuner@1.1-Tuner"
18
19#include "Tuner.h"
20#include <utils/Log.h>
21#include "Demux.h"
22#include "Descrambler.h"
23#include "Frontend.h"
24#include "Lnb.h"
25
26namespace android {
27namespace hardware {
28namespace tv {
29namespace tuner {
30namespace V1_0 {
31namespace implementation {
32
33Tuner::Tuner() {
34 // Static Frontends array to maintain local frontends information
35 // Array index matches their FrontendId in the default impl
36 mFrontendSize = 8;
Amy Zhangbb94eeb2020-07-09 22:48:04 -070037 mFrontends[0] = new Frontend(FrontendType::DVBT, 0, this);
38 mFrontends[1] = new Frontend(FrontendType::ATSC, 1, this);
39 mFrontends[2] = new Frontend(FrontendType::DVBC, 2, this);
40 mFrontends[3] = new Frontend(FrontendType::DVBS, 3, this);
41 mFrontends[4] = new Frontend(FrontendType::DVBT, 4, this);
42 mFrontends[5] = new Frontend(FrontendType::ISDBT, 5, this);
43 mFrontends[6] = new Frontend(FrontendType::ANALOG, 6, this);
44 mFrontends[7] = new Frontend(FrontendType::ATSC, 7, this);
45
46 FrontendInfo::FrontendCapabilities caps;
Amy Zhangbb94eeb2020-07-09 22:48:04 -070047 caps = FrontendInfo::FrontendCapabilities();
48 caps.dvbtCaps(FrontendDvbtCapabilities());
49 mFrontendCaps[0] = caps;
50
51 caps = FrontendInfo::FrontendCapabilities();
52 caps.atscCaps(FrontendAtscCapabilities());
53 mFrontendCaps[1] = caps;
54
55 caps = FrontendInfo::FrontendCapabilities();
56 caps.dvbcCaps(FrontendDvbcCapabilities());
57 mFrontendCaps[2] = caps;
58
59 caps = FrontendInfo::FrontendCapabilities();
60 caps.dvbsCaps(FrontendDvbsCapabilities());
61 mFrontendCaps[3] = caps;
62
63 caps = FrontendInfo::FrontendCapabilities();
64 caps.dvbtCaps(FrontendDvbtCapabilities());
65 mFrontendCaps[4] = caps;
66
67 caps = FrontendInfo::FrontendCapabilities();
68 FrontendIsdbtCapabilities isdbtCaps{
69 .modeCap = FrontendIsdbtMode::MODE_1 | FrontendIsdbtMode::MODE_2,
70 .bandwidthCap = (unsigned int)FrontendIsdbtBandwidth::BANDWIDTH_6MHZ,
71 .modulationCap = (unsigned int)FrontendIsdbtModulation::MOD_16QAM,
72 // ISDBT shares coderate and guard interval with DVBT
73 .coderateCap = FrontendDvbtCoderate::CODERATE_4_5 | FrontendDvbtCoderate::CODERATE_6_7,
74 .guardIntervalCap = (unsigned int)FrontendDvbtGuardInterval::INTERVAL_1_128,
75 };
76 caps.isdbtCaps(isdbtCaps);
77 mFrontendCaps[5] = caps;
78
79 caps = FrontendInfo::FrontendCapabilities();
80 caps.analogCaps(FrontendAnalogCapabilities());
81 mFrontendCaps[6] = caps;
82
83 caps = FrontendInfo::FrontendCapabilities();
84 caps.atscCaps(FrontendAtscCapabilities());
85 mFrontendCaps[7] = caps;
86
87 mLnbs.resize(2);
88 mLnbs[0] = new Lnb(0);
89 mLnbs[1] = new Lnb(1);
90}
91
92Tuner::~Tuner() {}
93
94Return<void> Tuner::getFrontendIds(getFrontendIds_cb _hidl_cb) {
95 ALOGV("%s", __FUNCTION__);
96
97 vector<FrontendId> frontendIds;
98 frontendIds.resize(mFrontendSize);
99 for (int i = 0; i < mFrontendSize; i++) {
100 frontendIds[i] = mFrontends[i]->getFrontendId();
101 }
102
103 _hidl_cb(Result::SUCCESS, frontendIds);
104 return Void();
105}
106
107Return<void> Tuner::openFrontendById(uint32_t frontendId, openFrontendById_cb _hidl_cb) {
108 ALOGV("%s", __FUNCTION__);
109
110 if (frontendId >= mFrontendSize || frontendId < 0) {
111 ALOGW("[ WARN ] Frontend with id %d isn't available", frontendId);
112 _hidl_cb(Result::UNAVAILABLE, nullptr);
113 return Void();
114 }
115
116 _hidl_cb(Result::SUCCESS, mFrontends[frontendId]);
117 return Void();
118}
119
120Return<void> Tuner::openDemux(openDemux_cb _hidl_cb) {
121 ALOGV("%s", __FUNCTION__);
122
123 uint32_t demuxId = mLastUsedId + 1;
124 mLastUsedId += 1;
125 sp<Demux> demux = new Demux(demuxId, this);
126 mDemuxes[demuxId] = demux;
127
128 _hidl_cb(Result::SUCCESS, demuxId, demux);
129 return Void();
130}
131
132Return<void> Tuner::getDemuxCaps(getDemuxCaps_cb _hidl_cb) {
133 ALOGV("%s", __FUNCTION__);
134
135 DemuxCapabilities caps;
136
137 // IP filter can be an MMTP filter's data source.
138 caps.linkCaps = {0x00, 0x00, 0x02, 0x00, 0x00};
139 _hidl_cb(Result::SUCCESS, caps);
140 return Void();
141}
142
143Return<void> Tuner::openDescrambler(openDescrambler_cb _hidl_cb) {
144 ALOGV("%s", __FUNCTION__);
145
146 sp<V1_0::IDescrambler> descrambler = new Descrambler();
147
148 _hidl_cb(Result::SUCCESS, descrambler);
149 return Void();
150}
151
152Return<void> Tuner::getFrontendInfo(FrontendId frontendId, getFrontendInfo_cb _hidl_cb) {
153 ALOGV("%s", __FUNCTION__);
154
155 FrontendInfo info;
156 if (frontendId >= mFrontendSize) {
157 _hidl_cb(Result::INVALID_ARGUMENT, info);
158 return Void();
159 }
160
161 vector<FrontendStatusType> statusCaps = {
162 FrontendStatusType::DEMOD_LOCK,
163 FrontendStatusType::SNR,
164 FrontendStatusType::FEC,
165 FrontendStatusType::MODULATION,
166 FrontendStatusType::PLP_ID,
167 FrontendStatusType::LAYER_ERROR,
168 FrontendStatusType::ATSC3_PLP_INFO,
169 };
170 // assign randomly selected values for testing.
171 info = {
172 .type = mFrontends[frontendId]->getFrontendType(),
173 .minFrequency = 139,
174 .maxFrequency = 1139,
175 .minSymbolRate = 45,
176 .maxSymbolRate = 1145,
177 .acquireRange = 30,
178 .exclusiveGroupId = 57,
179 .statusCaps = statusCaps,
180 .frontendCaps = mFrontendCaps[frontendId],
181 };
182
183 _hidl_cb(Result::SUCCESS, info);
184 return Void();
185}
186
187Return<void> Tuner::getLnbIds(getLnbIds_cb _hidl_cb) {
188 ALOGV("%s", __FUNCTION__);
189
190 vector<V1_0::LnbId> lnbIds;
191 lnbIds.resize(mLnbs.size());
192 for (int i = 0; i < lnbIds.size(); i++) {
193 lnbIds[i] = mLnbs[i]->getId();
194 }
195
196 _hidl_cb(Result::SUCCESS, lnbIds);
197 return Void();
198}
199
200Return<void> Tuner::openLnbById(V1_0::LnbId lnbId, openLnbById_cb _hidl_cb) {
201 ALOGV("%s", __FUNCTION__);
202
203 if (lnbId >= mLnbs.size()) {
204 _hidl_cb(Result::INVALID_ARGUMENT, nullptr);
205 return Void();
206 }
207
208 _hidl_cb(Result::SUCCESS, mLnbs[lnbId]);
209 return Void();
210}
211
212sp<Frontend> Tuner::getFrontendById(uint32_t frontendId) {
213 ALOGV("%s", __FUNCTION__);
214
215 return mFrontends[frontendId];
216}
217
218Return<void> Tuner::openLnbByName(const hidl_string& /*lnbName*/, openLnbByName_cb _hidl_cb) {
219 ALOGV("%s", __FUNCTION__);
220
221 sp<V1_0::ILnb> lnb = new Lnb();
222
223 _hidl_cb(Result::SUCCESS, 1234, lnb);
224 return Void();
225}
226
227void Tuner::setFrontendAsDemuxSource(uint32_t frontendId, uint32_t demuxId) {
228 mFrontendToDemux[frontendId] = demuxId;
229 if (mFrontends[frontendId] != nullptr && mFrontends[frontendId]->isLocked()) {
230 mDemuxes[demuxId]->startFrontendInputLoop();
231 }
232}
233
Amy Zhang80cb9602020-07-15 13:06:39 -0700234void Tuner::removeDemux(uint32_t demuxId) {
235 map<uint32_t, uint32_t>::iterator it;
Amy Zhang68afca62020-07-20 18:28:58 -0700236 for (it = mFrontendToDemux.begin(); it != mFrontendToDemux.end(); it++) {
Amy Zhang80cb9602020-07-15 13:06:39 -0700237 if (it->second == demuxId) {
238 it = mFrontendToDemux.erase(it);
Amy Zhang68afca62020-07-20 18:28:58 -0700239 break;
Amy Zhang80cb9602020-07-15 13:06:39 -0700240 }
241 }
242 mDemuxes.erase(demuxId);
243}
244
245void Tuner::removeFrontend(uint32_t frontendId) {
246 mFrontendToDemux.erase(frontendId);
247}
248
Amy Zhangbb94eeb2020-07-09 22:48:04 -0700249void Tuner::frontendStopTune(uint32_t frontendId) {
250 map<uint32_t, uint32_t>::iterator it = mFrontendToDemux.find(frontendId);
251 uint32_t demuxId;
252 if (it != mFrontendToDemux.end()) {
253 demuxId = it->second;
254 mDemuxes[demuxId]->stopFrontendInput();
255 }
256}
257
258void Tuner::frontendStartTune(uint32_t frontendId) {
259 map<uint32_t, uint32_t>::iterator it = mFrontendToDemux.find(frontendId);
260 uint32_t demuxId;
261 if (it != mFrontendToDemux.end()) {
262 demuxId = it->second;
263 mDemuxes[demuxId]->startFrontendInputLoop();
264 }
265}
266
267} // namespace implementation
268} // namespace V1_0
269} // namespace tuner
270} // namespace tv
271} // namespace hardware
272} // namespace android