1 /*
2 * Copyright (C) 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 #include "hci/acl_manager/round_robin_scheduler.h"
18
19 #include <bluetooth/log.h>
20
21 #include <memory>
22 #include <utility>
23
24 #include "hci/acl_manager/acl_fragmenter.h"
25 namespace bluetooth {
26 namespace hci {
27 namespace acl_manager {
28
RoundRobinScheduler(os::Handler * handler,Controller * controller,common::BidiQueueEnd<AclBuilder,AclView> * hci_queue_end)29 RoundRobinScheduler::RoundRobinScheduler(os::Handler* handler, Controller* controller,
30 common::BidiQueueEnd<AclBuilder, AclView>* hci_queue_end)
31 : handler_(handler), controller_(controller), hci_queue_end_(hci_queue_end) {
32 max_acl_packet_credits_ = controller_->GetNumAclPacketBuffers();
33 acl_packet_credits_ = max_acl_packet_credits_;
34 hci_mtu_ = controller_->GetAclPacketLength();
35 LeBufferSize le_buffer_size = controller_->GetLeBufferSize();
36 le_max_acl_packet_credits_ = le_buffer_size.total_num_le_packets_;
37 le_acl_packet_credits_ = le_max_acl_packet_credits_;
38 le_hci_mtu_ = le_buffer_size.le_data_packet_length_;
39 controller_->RegisterCompletedAclPacketsCallback(
40 handler->BindOn(this, &RoundRobinScheduler::incoming_acl_credits));
41 }
42
~RoundRobinScheduler()43 RoundRobinScheduler::~RoundRobinScheduler() {
44 unregister_all_connections();
45 controller_->UnregisterCompletedAclPacketsCallback();
46 }
47
Register(ConnectionType connection_type,uint16_t handle,std::shared_ptr<acl_manager::AclConnection::Queue> queue)48 void RoundRobinScheduler::Register(ConnectionType connection_type, uint16_t handle,
49 std::shared_ptr<acl_manager::AclConnection::Queue> queue) {
50 log::assert_that(acl_queue_handlers_.count(handle) == 0,
51 "assert failed: acl_queue_handlers_.count(handle) == 0");
52 acl_queue_handler acl_queue_handler = {connection_type, std::move(queue), false, 0};
53 acl_queue_handlers_.insert(
54 std::pair<uint16_t, RoundRobinScheduler::acl_queue_handler>(handle, acl_queue_handler));
55 log::info("registering acl_queue handle={}, acl_credits={}, le_credits={}", handle,
56 acl_packet_credits_, le_acl_packet_credits_);
57 if (fragments_to_send_.size() == 0) {
58 log::info("start round robin");
59 start_round_robin();
60 }
61 }
62
Unregister(uint16_t handle)63 void RoundRobinScheduler::Unregister(uint16_t handle) {
64 log::assert_that(acl_queue_handlers_.count(handle) == 1,
65 "assert failed: acl_queue_handlers_.count(handle) == 1");
66
67 // Drop the pending fragments and recalculate number_of_sent_packets_
68 drop_packet_fragments(handle);
69
70 auto& acl_queue_handler = acl_queue_handlers_.find(handle)->second;
71 log::info("unregistering acl_queue handle={}, sent_packets={}", handle,
72 acl_queue_handler.number_of_sent_packets_);
73
74 bool credits_reclaimed_from_zero = acl_queue_handler.number_of_sent_packets_ > 0;
75
76 // Reclaim outstanding packets
77 if (acl_queue_handler.connection_type_ == ConnectionType::CLASSIC) {
78 credits_reclaimed_from_zero &= (acl_packet_credits_ == 0);
79 acl_packet_credits_ += acl_queue_handler.number_of_sent_packets_;
80 } else {
81 credits_reclaimed_from_zero &= (le_acl_packet_credits_ == 0);
82 le_acl_packet_credits_ += acl_queue_handler.number_of_sent_packets_;
83 }
84 acl_queue_handler.number_of_sent_packets_ = 0;
85
86 if (acl_queue_handler.dequeue_is_registered_) {
87 acl_queue_handler.dequeue_is_registered_ = false;
88 acl_queue_handler.queue_->GetDownEnd()->UnregisterDequeue();
89 }
90 acl_queue_handlers_.erase(handle);
91 starting_point_ = acl_queue_handlers_.begin();
92
93 // Restart sending packets if we got acl credits
94 if (credits_reclaimed_from_zero) {
95 start_round_robin();
96 }
97 }
98
SetLinkPriority(uint16_t handle,bool high_priority)99 void RoundRobinScheduler::SetLinkPriority(uint16_t handle, bool high_priority) {
100 auto acl_queue_handler = acl_queue_handlers_.find(handle);
101 if (acl_queue_handler == acl_queue_handlers_.end()) {
102 log::warn("handle {} is invalid", handle);
103 return;
104 }
105 acl_queue_handler->second.high_priority_ = high_priority;
106 }
107
GetCredits()108 uint16_t RoundRobinScheduler::GetCredits() { return acl_packet_credits_; }
109
GetLeCredits()110 uint16_t RoundRobinScheduler::GetLeCredits() { return le_acl_packet_credits_; }
111
start_round_robin()112 void RoundRobinScheduler::start_round_robin() {
113 if (acl_packet_credits_ == 0 && le_acl_packet_credits_ == 0) {
114 log::warn("Both buffers are full");
115 return;
116 }
117 if (!fragments_to_send_.empty()) {
118 auto connection_type = fragments_to_send_.front().connection_type_;
119 bool classic_buffer_full =
120 acl_packet_credits_ == 0 && connection_type == ConnectionType::CLASSIC;
121 bool le_buffer_full = le_acl_packet_credits_ == 0 && connection_type == ConnectionType::LE;
122 if (classic_buffer_full || le_buffer_full) {
123 log::warn("Buffer of connection_type {} is full", connection_type);
124 return;
125 }
126 send_next_fragment();
127 return;
128 }
129 if (acl_queue_handlers_.empty()) {
130 log::info("No any acl connection");
131 return;
132 }
133
134 if (acl_queue_handlers_.size() == 1 || starting_point_ == acl_queue_handlers_.end()) {
135 starting_point_ = acl_queue_handlers_.begin();
136 }
137 size_t count = acl_queue_handlers_.size();
138
139 for (auto acl_queue_handler = starting_point_; count > 0; count--) {
140 // Prevent registration when credits is zero
141 bool classic_buffer_full =
142 acl_packet_credits_ == 0 &&
143 acl_queue_handler->second.connection_type_ == ConnectionType::CLASSIC;
144 bool le_buffer_full = le_acl_packet_credits_ == 0 &&
145 acl_queue_handler->second.connection_type_ == ConnectionType::LE;
146 if (!acl_queue_handler->second.dequeue_is_registered_ && !classic_buffer_full &&
147 !le_buffer_full) {
148 acl_queue_handler->second.dequeue_is_registered_ = true;
149 uint16_t acl_handle = acl_queue_handler->first;
150 acl_queue_handler->second.queue_->GetDownEnd()->RegisterDequeue(
151 handler_, common::Bind(&RoundRobinScheduler::buffer_packet, common::Unretained(this),
152 acl_handle));
153 }
154 acl_queue_handler = std::next(acl_queue_handler);
155 if (acl_queue_handler == acl_queue_handlers_.end()) {
156 acl_queue_handler = acl_queue_handlers_.begin();
157 }
158 }
159
160 starting_point_ = std::next(starting_point_);
161 }
162
buffer_packet(uint16_t acl_handle)163 void RoundRobinScheduler::buffer_packet(uint16_t acl_handle) {
164 BroadcastFlag broadcast_flag = BroadcastFlag::POINT_TO_POINT;
165 auto acl_queue_handler = acl_queue_handlers_.find(acl_handle);
166 if (acl_queue_handler == acl_queue_handlers_.end()) {
167 log::error("Ignore since ACL connection vanished with handle: 0x{:X}", acl_handle);
168 return;
169 }
170
171 // Wrap packet and enqueue it
172 uint16_t handle = acl_queue_handler->first;
173 auto packet = acl_queue_handler->second.queue_->GetDownEnd()->TryDequeue();
174 log::assert_that(packet != nullptr, "assert failed: packet != nullptr");
175
176 ConnectionType connection_type = acl_queue_handler->second.connection_type_;
177 size_t mtu = connection_type == ConnectionType::CLASSIC ? hci_mtu_ : le_hci_mtu_;
178 PacketBoundaryFlag packet_boundary_flag =
179 (packet->IsFlushable()) ? PacketBoundaryFlag::FIRST_AUTOMATICALLY_FLUSHABLE
180 : PacketBoundaryFlag::FIRST_NON_AUTOMATICALLY_FLUSHABLE;
181
182 int acl_priority = acl_queue_handler->second.high_priority_ ? 1 : 0;
183 if (packet->size() <= mtu) {
184 fragments_to_send_.push(packet_fragment{connection_type, handle, acl_priority,
185 AclBuilder::Create(handle, packet_boundary_flag,
186 broadcast_flag, std::move(packet))},
187 acl_priority);
188 } else {
189 auto fragments = AclFragmenter(mtu, std::move(packet)).GetFragments();
190 for (size_t i = 0; i < fragments.size(); i++) {
191 fragments_to_send_.push(
192 packet_fragment{connection_type, handle, acl_priority,
193 AclBuilder::Create(handle, packet_boundary_flag, broadcast_flag,
194 std::move(fragments[i]))},
195 acl_priority);
196 packet_boundary_flag = PacketBoundaryFlag::CONTINUING_FRAGMENT;
197 }
198 }
199 log::assert_that(fragments_to_send_.size() > 0, "assert failed: fragments_to_send_.size() > 0");
200 unregister_all_connections();
201
202 acl_queue_handler->second.number_of_sent_packets_ += fragments_to_send_.size();
203 send_next_fragment();
204 }
205
206 // Drops packet fragments associated with the given handle.
drop_packet_fragments(uint16_t acl_handle)207 void RoundRobinScheduler::drop_packet_fragments(uint16_t acl_handle) {
208 if (fragments_to_send_.empty()) {
209 return;
210 }
211 auto acl_queue_handler = acl_queue_handlers_.find(acl_handle);
212
213 decltype(fragments_to_send_) new_fragments_to_send;
214 while (!fragments_to_send_.empty()) {
215 auto& fragment = fragments_to_send_.front();
216
217 if (fragment.handle_ == acl_handle) {
218 // This fragment is not sent to the controller.
219 acl_queue_handler->second.number_of_sent_packets_--;
220 } else {
221 new_fragments_to_send.push(packet_fragment{fragment.connection_type_, fragment.handle_,
222 fragment.priority_, std::move(fragment.packet_)},
223 fragment.priority_);
224 }
225 fragments_to_send_.pop();
226 }
227
228 if (new_fragments_to_send.empty()) {
229 if (enqueue_registered_.exchange(false)) {
230 hci_queue_end_->UnregisterEnqueue();
231 }
232 }
233 fragments_to_send_.swap(new_fragments_to_send);
234 }
235
unregister_all_connections()236 void RoundRobinScheduler::unregister_all_connections() {
237 for (auto acl_queue_handler = acl_queue_handlers_.begin();
238 acl_queue_handler != acl_queue_handlers_.end();
239 acl_queue_handler = std::next(acl_queue_handler)) {
240 if (acl_queue_handler->second.dequeue_is_registered_) {
241 acl_queue_handler->second.dequeue_is_registered_ = false;
242 acl_queue_handler->second.queue_->GetDownEnd()->UnregisterDequeue();
243 }
244 }
245 }
246
send_next_fragment()247 void RoundRobinScheduler::send_next_fragment() {
248 if (!enqueue_registered_.exchange(true)) {
249 hci_queue_end_->RegisterEnqueue(handler_,
250 common::Bind(&RoundRobinScheduler::handle_enqueue_next_fragment,
251 common::Unretained(this)));
252 }
253 }
254
255 // Invoked from some external Queue Reactable context 1
handle_enqueue_next_fragment()256 std::unique_ptr<AclBuilder> RoundRobinScheduler::handle_enqueue_next_fragment() {
257 ConnectionType connection_type = fragments_to_send_.front().connection_type_;
258
259 if (connection_type == ConnectionType::CLASSIC) {
260 log::assert_that(acl_packet_credits_ > 0, "assert failed: acl_packet_credits_ > 0");
261 acl_packet_credits_ -= 1;
262 } else {
263 log::assert_that(le_acl_packet_credits_ > 0, "assert failed: le_acl_packet_credits_ > 0");
264 le_acl_packet_credits_ -= 1;
265 }
266
267 auto raw_pointer = fragments_to_send_.front().packet_.release();
268 fragments_to_send_.pop();
269 if (fragments_to_send_.empty()) {
270 if (enqueue_registered_.exchange(false)) {
271 hci_queue_end_->UnregisterEnqueue();
272 }
273 handler_->Post(
274 common::BindOnce(&RoundRobinScheduler::start_round_robin, common::Unretained(this)));
275 } else {
276 ConnectionType next_connection_type = fragments_to_send_.front().connection_type_;
277 bool classic_buffer_full =
278 next_connection_type == ConnectionType::CLASSIC && acl_packet_credits_ == 0;
279 bool le_buffer_full = next_connection_type == ConnectionType::LE && le_acl_packet_credits_ == 0;
280 if ((classic_buffer_full || le_buffer_full) && enqueue_registered_.exchange(false)) {
281 hci_queue_end_->UnregisterEnqueue();
282 }
283 }
284 return std::unique_ptr<AclBuilder>(raw_pointer);
285 }
286
incoming_acl_credits(uint16_t handle,uint16_t credits)287 void RoundRobinScheduler::incoming_acl_credits(uint16_t handle, uint16_t credits) {
288 auto acl_queue_handler = acl_queue_handlers_.find(handle);
289 if (acl_queue_handler == acl_queue_handlers_.end()) {
290 return;
291 }
292
293 if (acl_queue_handler->second.number_of_sent_packets_ >= credits) {
294 acl_queue_handler->second.number_of_sent_packets_ -= credits;
295 } else {
296 log::warn("receive more credits than we sent");
297 acl_queue_handler->second.number_of_sent_packets_ = 0;
298 }
299
300 bool credit_was_zero = false;
301 if (acl_queue_handler->second.connection_type_ == ConnectionType::CLASSIC) {
302 if (acl_packet_credits_ == 0) {
303 credit_was_zero = true;
304 }
305 acl_packet_credits_ += credits;
306 if (acl_packet_credits_ > max_acl_packet_credits_) {
307 acl_packet_credits_ = max_acl_packet_credits_;
308 log::warn("acl packet credits overflow due to receive {} credits", credits);
309 }
310 } else {
311 if (le_acl_packet_credits_ == 0) {
312 credit_was_zero = true;
313 }
314 le_acl_packet_credits_ += credits;
315 if (le_acl_packet_credits_ > le_max_acl_packet_credits_) {
316 le_acl_packet_credits_ = le_max_acl_packet_credits_;
317 log::warn("le acl packet credits overflow due to receive {} credits", credits);
318 }
319 }
320 if (credit_was_zero) {
321 start_round_robin();
322 }
323 }
324
325 } // namespace acl_manager
326 } // namespace hci
327 } // namespace bluetooth
328