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Side by Side Diff: media/midi/midi_manager_alsa.cc

Issue 264973012: Use seq instead of rawmidi for MidiManagerAlsa (Closed) Base URL: https://chromium.googlesource.com/chromium/src.git@master
Patch Set: Constify a few last things Created 6 years, 6 months ago
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1 // Copyright 2014 The Chromium Authors. All rights reserved. 1 // Copyright 2014 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "media/midi/midi_manager_alsa.h" 5 #include "media/midi/midi_manager_alsa.h"
6 6
7 #include <alsa/asoundlib.h> 7 #include <alsa/asoundlib.h>
8 #include <stdlib.h> 8 #include <stdlib.h>
9 #include <algorithm> 9 #include <algorithm>
10 #include <string> 10 #include <string>
11 11
12 #include "base/bind.h" 12 #include "base/bind.h"
13 #include "base/logging.h" 13 #include "base/logging.h"
14 #include "base/memory/ref_counted.h" 14 #include "base/memory/ref_counted.h"
15 #include "base/memory/scoped_vector.h"
15 #include "base/message_loop/message_loop.h" 16 #include "base/message_loop/message_loop.h"
16 #include "base/posix/eintr_wrapper.h" 17 #include "base/posix/eintr_wrapper.h"
17 #include "base/strings/stringprintf.h" 18 #include "base/strings/stringprintf.h"
18 #include "base/threading/thread.h" 19 #include "base/threading/thread.h"
19 #include "base/time/time.h" 20 #include "base/time/time.h"
20 #include "media/midi/midi_port_info.h" 21 #include "media/midi/midi_port_info.h"
21 22
22 namespace media { 23 namespace media {
23 24
24 namespace { 25 namespace {
25 26
26 const size_t kReceiveBufferSize = 4096; 27 // Per-output buffer. This can be smaller, but then large sysex messages
27 const unsigned short kPollEventMask = POLLIN | POLLERR | POLLNVAL; 28 // will be (harmlessly) split across multiple seq events. This should
29 // not have any real practical effect, except perhaps to slightly reorder
30 // realtime messages with respect to sysex.
31 const size_t kSendBufferSize = 256;
32
33 // Constants for the capabilities we search for in inputs and outputs.
34 // See http://www.alsa-project.org/alsa-doc/alsa-lib/seq.html.
35 const unsigned int kRequiredInputPortCaps =
36 SND_SEQ_PORT_CAP_READ | SND_SEQ_PORT_CAP_SUBS_READ;
37 const unsigned int kRequiredOutputPortCaps =
38 SND_SEQ_PORT_CAP_WRITE | SND_SEQ_PORT_CAP_SUBS_WRITE;
39
40 int AddrToInt(const snd_seq_addr_t* addr) {
41 return (addr->client << 8) | addr->port;
42 }
43
44 class CardInfo {
45 public:
46 CardInfo(const std::string name, const std::string manufacturer,
47 const std::string driver)
48 : name_(name), manufacturer_(manufacturer), driver_(driver) {
49 }
50 const std::string name_;
51 const std::string manufacturer_;
52 const std::string driver_;
53 };
28 54
29 } // namespace 55 } // namespace
30 56
31 class MidiManagerAlsa::MidiDeviceInfo
32 : public base::RefCounted<MidiDeviceInfo> {
33 public:
34 MidiDeviceInfo(MidiManagerAlsa* manager,
35 const std::string& bus_id,
36 snd_ctl_card_info_t* card,
37 const snd_rawmidi_info_t* midi,
38 int device) {
39 opened_ = !snd_rawmidi_open(&midi_in_, &midi_out_, bus_id.c_str(), 0);
40 if (!opened_)
41 return;
42
43 const std::string id = base::StringPrintf("%s:%d", bus_id.c_str(), device);
44 const std::string name = snd_rawmidi_info_get_name(midi);
45 // We assume that card longname is in the format of
46 // "<manufacturer> <name> at <bus>". Otherwise, we give up to detect
47 // a manufacturer name here.
48 std::string manufacturer;
49 const std::string card_name = snd_ctl_card_info_get_longname(card);
50 size_t name_index = card_name.find(name);
51 if (std::string::npos != name_index)
52 manufacturer = card_name.substr(0, name_index - 1);
53 const std::string version =
54 base::StringPrintf("%s / ALSA library version %d.%d.%d",
55 snd_ctl_card_info_get_driver(card),
56 SND_LIB_MAJOR, SND_LIB_MINOR, SND_LIB_SUBMINOR);
57 port_info_ = MidiPortInfo(id, manufacturer, name, version);
58 }
59
60 void Send(MidiManagerClient* client, const std::vector<uint8>& data) {
61 ssize_t result = snd_rawmidi_write(
62 midi_out_, reinterpret_cast<const void*>(&data[0]), data.size());
63 if (static_cast<size_t>(result) != data.size()) {
64 // TODO(toyoshim): Handle device disconnection.
65 VLOG(1) << "snd_rawmidi_write fails: " << strerror(-result);
66 }
67 base::MessageLoop::current()->PostTask(
68 FROM_HERE,
69 base::Bind(&MidiManagerClient::AccumulateMidiBytesSent,
70 base::Unretained(client), data.size()));
71 }
72
73 // Read input data from a MIDI input device which is ready to read through
74 // the ALSA library. Called from EventLoop() and read data will be sent to
75 // blink through MIDIManager base class.
76 size_t Receive(uint8* data, size_t length) {
77 return snd_rawmidi_read(midi_in_, reinterpret_cast<void*>(data), length);
78 }
79
80 const MidiPortInfo& GetMidiPortInfo() const { return port_info_; }
81
82 // Get the number of descriptors which is required to call poll() on the
83 // device. The ALSA library always returns 1 here now, but it may be changed
84 // in the future.
85 int GetPollDescriptorsCount() {
86 return snd_rawmidi_poll_descriptors_count(midi_in_);
87 }
88
89 // Following API initializes pollfds for polling the device, and returns the
90 // number of descriptors they are initialized. It must be the same value with
91 // snd_rawmidi_poll_descriptors_count().
92 int SetupPollDescriptors(struct pollfd* pfds, unsigned int count) {
93 return snd_rawmidi_poll_descriptors(midi_in_, pfds, count);
94 }
95
96 unsigned short GetPollDescriptorsRevents(struct pollfd* pfds) {
97 unsigned short revents;
98 snd_rawmidi_poll_descriptors_revents(midi_in_,
99 pfds,
100 GetPollDescriptorsCount(),
101 &revents);
102 return revents;
103 }
104
105 bool IsOpened() const { return opened_; }
106
107 private:
108 friend class base::RefCounted<MidiDeviceInfo>;
109 virtual ~MidiDeviceInfo() {
110 if (opened_) {
111 snd_rawmidi_close(midi_in_);
112 snd_rawmidi_close(midi_out_);
113 }
114 }
115
116 bool opened_;
117 MidiPortInfo port_info_;
118 snd_rawmidi_t* midi_in_;
119 snd_rawmidi_t* midi_out_;
120
121 DISALLOW_COPY_AND_ASSIGN(MidiDeviceInfo);
122 };
123
124 MidiManagerAlsa::MidiManagerAlsa() 57 MidiManagerAlsa::MidiManagerAlsa()
125 : send_thread_("MidiSendThread"), 58 : in_client_(NULL),
126 event_thread_("MidiEventThread") { 59 out_client_(NULL),
127 for (size_t i = 0; i < arraysize(pipe_fd_); ++i) 60 out_client_id_(-1),
128 pipe_fd_[i] = -1; 61 in_port_(-1),
62 decoder_(NULL),
63 send_thread_("MidiSendThread"),
64 event_thread_("MidiEventThread"),
65 event_thread_shutdown_(false) {
66 // Initialize decoder.
67 snd_midi_event_new(0, &decoder_);
68 snd_midi_event_no_status(decoder_, 1);
129 } 69 }
130 70
131 void MidiManagerAlsa::StartInitialization() { 71 void MidiManagerAlsa::StartInitialization() {
132 // Enumerate only hardware MIDI devices because software MIDIs running in 72 // TODO(agoode): Move off I/O thread. See http://crbug.com/374341.
133 // the browser process is not secure. 73
74 // Create client handles.
75 int err = snd_seq_open(&in_client_, "hw", SND_SEQ_OPEN_INPUT, 0);
76 if (err != 0) {
77 VLOG(1) << "snd_seq_open fails: " << snd_strerror(err);
78 return CompleteInitialization(MIDI_INITIALIZATION_ERROR);
79 }
80 int in_client_id = snd_seq_client_id(in_client_);
81 err = snd_seq_open(&out_client_, "hw", SND_SEQ_OPEN_OUTPUT, 0);
82 if (err != 0) {
83 VLOG(1) << "snd_seq_open fails: " << snd_strerror(err);
84 return CompleteInitialization(MIDI_INITIALIZATION_ERROR);
85 }
86 out_client_id_ = snd_seq_client_id(out_client_);
87
88 // Name the clients.
89 err = snd_seq_set_client_name(in_client_, "Chrome (input)");
90 if (err != 0) {
91 VLOG(1) << "snd_seq_set_client_name fails: " << snd_strerror(err);
92 return CompleteInitialization(MIDI_INITIALIZATION_ERROR);
93 }
94 err = snd_seq_set_client_name(out_client_, "Chrome (output)");
95 if (err != 0) {
96 VLOG(1) << "snd_seq_set_client_name fails: " << snd_strerror(err);
97 return CompleteInitialization(MIDI_INITIALIZATION_ERROR);
98 }
99
100 // Create input port.
101 in_port_ = snd_seq_create_simple_port(in_client_, NULL,
102 SND_SEQ_PORT_CAP_WRITE |
103 SND_SEQ_PORT_CAP_NO_EXPORT,
104 SND_SEQ_PORT_TYPE_MIDI_GENERIC |
105 SND_SEQ_PORT_TYPE_APPLICATION);
106 if (in_port_ < 0) {
107 VLOG(1) << "snd_seq_create_simple_port fails: " << snd_strerror(in_port_);
108 return CompleteInitialization(MIDI_INITIALIZATION_ERROR);
109 }
110
111 // Subscribe to the announce port.
112 snd_seq_port_subscribe_t* subs;
113 snd_seq_port_subscribe_alloca(&subs);
114 snd_seq_addr_t announce_sender;
115 snd_seq_addr_t announce_dest;
116 announce_sender.client = SND_SEQ_CLIENT_SYSTEM;
117 announce_sender.port = SND_SEQ_PORT_SYSTEM_ANNOUNCE;
118 announce_dest.client = in_client_id;
119 announce_dest.port = in_port_;
120 snd_seq_port_subscribe_set_sender(subs, &announce_sender);
121 snd_seq_port_subscribe_set_dest(subs, &announce_dest);
122 err = snd_seq_subscribe_port(in_client_, subs);
123 if (err != 0) {
124 VLOG(1) << "snd_seq_subscribe_port on the announce port fails: "
125 << snd_strerror(err);
126 return CompleteInitialization(MIDI_INITIALIZATION_ERROR);
127 }
128
129 // Use a heuristic to extract the list of manufacturers for the hardware MIDI
130 // devices. This won't work for all devices. It is also brittle until
131 // hotplug is implemented. (See http://crbug.com/279097.)
132 // TODO(agoode): Make manufacturer extraction simple and reliable.
133 // http://crbug.com/377250.
134 ScopedVector<CardInfo> cards;
134 snd_ctl_card_info_t* card; 135 snd_ctl_card_info_t* card;
135 snd_rawmidi_info_t* midi_out; 136 snd_rawmidi_info_t* midi_out;
136 snd_rawmidi_info_t* midi_in; 137 snd_rawmidi_info_t* midi_in;
137 snd_ctl_card_info_alloca(&card); 138 snd_ctl_card_info_alloca(&card);
138 snd_rawmidi_info_alloca(&midi_out); 139 snd_rawmidi_info_alloca(&midi_out);
139 snd_rawmidi_info_alloca(&midi_in); 140 snd_rawmidi_info_alloca(&midi_in);
140 for (int index = -1; !snd_card_next(&index) && index >= 0; ) { 141 for (int index = -1; !snd_card_next(&index) && index >= 0; ) {
141 const std::string id = base::StringPrintf("hw:CARD=%i", index); 142 const std::string id = base::StringPrintf("hw:CARD=%i", index);
142 snd_ctl_t* handle; 143 snd_ctl_t* handle;
143 int err = snd_ctl_open(&handle, id.c_str(), 0); 144 int err = snd_ctl_open(&handle, id.c_str(), 0);
144 if (err != 0) { 145 if (err != 0) {
145 VLOG(1) << "snd_ctl_open fails: " << snd_strerror(err); 146 VLOG(1) << "snd_ctl_open fails: " << snd_strerror(err);
146 continue; 147 continue;
147 } 148 }
148 err = snd_ctl_card_info(handle, card); 149 err = snd_ctl_card_info(handle, card);
149 if (err != 0) { 150 if (err != 0) {
150 VLOG(1) << "snd_ctl_card_info fails: " << snd_strerror(err); 151 VLOG(1) << "snd_ctl_card_info fails: " << snd_strerror(err);
151 snd_ctl_close(handle); 152 snd_ctl_close(handle);
152 continue; 153 continue;
153 } 154 }
155 // Enumerate any rawmidi devices (not subdevices) and extract CardInfo.
154 for (int device = -1; 156 for (int device = -1;
155 !snd_ctl_rawmidi_next_device(handle, &device) && device >= 0; ) { 157 !snd_ctl_rawmidi_next_device(handle, &device) && device >= 0; ) {
156 bool output; 158 bool output;
157 bool input; 159 bool input;
158 snd_rawmidi_info_set_device(midi_out, device); 160 snd_rawmidi_info_set_device(midi_out, device);
159 snd_rawmidi_info_set_subdevice(midi_out, 0); 161 snd_rawmidi_info_set_subdevice(midi_out, 0);
160 snd_rawmidi_info_set_stream(midi_out, SND_RAWMIDI_STREAM_OUTPUT); 162 snd_rawmidi_info_set_stream(midi_out, SND_RAWMIDI_STREAM_OUTPUT);
161 output = snd_ctl_rawmidi_info(handle, midi_out) == 0; 163 output = snd_ctl_rawmidi_info(handle, midi_out) == 0;
162 snd_rawmidi_info_set_device(midi_in, device); 164 snd_rawmidi_info_set_device(midi_in, device);
163 snd_rawmidi_info_set_subdevice(midi_in, 0); 165 snd_rawmidi_info_set_subdevice(midi_in, 0);
164 snd_rawmidi_info_set_stream(midi_in, SND_RAWMIDI_STREAM_INPUT); 166 snd_rawmidi_info_set_stream(midi_in, SND_RAWMIDI_STREAM_INPUT);
165 input = snd_ctl_rawmidi_info(handle, midi_in) == 0; 167 input = snd_ctl_rawmidi_info(handle, midi_in) == 0;
166 if (!output && !input) 168 if (!output && !input)
167 continue; 169 continue;
168 scoped_refptr<MidiDeviceInfo> port = new MidiDeviceInfo( 170
169 this, id, card, output ? midi_out : midi_in, device); 171 snd_rawmidi_info_t* midi = midi_out ? midi_out : midi_in;
170 if (!port->IsOpened()) { 172 const std::string name = snd_rawmidi_info_get_name(midi);
171 VLOG(1) << "MidiDeviceInfo open fails"; 173 // We assume that card longname is in the format of
172 continue; 174 // "<manufacturer> <name> at <bus>". Otherwise, we give up to detect
175 // a manufacturer name here.
176 std::string manufacturer;
177 const std::string card_name = snd_ctl_card_info_get_longname(card);
178 size_t at_index = card_name.rfind(" at ");
179 if (std::string::npos != at_index) {
180 size_t name_index = card_name.rfind(name, at_index - 1);
181 if (std::string::npos != name_index)
182 manufacturer = card_name.substr(0, name_index - 1);
173 } 183 }
174 if (input) { 184 const std::string driver = snd_ctl_card_info_get_driver(card);
175 in_devices_.push_back(port); 185 cards.push_back(new CardInfo(name, manufacturer, driver));
176 AddInputPort(port->GetMidiPortInfo()); 186 }
187 }
188
189 // Enumerate all ports in all clients.
190 snd_seq_client_info_t* client_info;
191 snd_seq_client_info_alloca(&client_info);
192 snd_seq_port_info_t* port_info;
193 snd_seq_port_info_alloca(&port_info);
194
195 snd_seq_client_info_set_client(client_info, -1);
196 // Enumerate clients.
197 uint32 current_input = 0;
198 unsigned int current_card = 0;
199 while (!snd_seq_query_next_client(in_client_, client_info)) {
200 int client_id = snd_seq_client_info_get_client(client_info);
201 if ((client_id == in_client_id) || (client_id == out_client_id_)) {
202 // Skip our own clients.
203 continue;
204 }
205 const std::string client_name = snd_seq_client_info_get_name(client_info);
206 snd_seq_port_info_set_client(port_info, client_id);
207 snd_seq_port_info_set_port(port_info, -1);
208
209 std::string manufacturer;
210 std::string driver;
211 // In the current Alsa kernel implementation, hardware clients match the
212 // cards in the same order.
213 if ((snd_seq_client_info_get_type(client_info) == SND_SEQ_KERNEL_CLIENT) &&
214 (current_card < cards.size())) {
215 const CardInfo* info = cards[current_card];
216 if (info->name_ == client_name) {
217 manufacturer = info->manufacturer_;
218 driver = info->driver_;
219 current_card++;
177 } 220 }
178 if (output) { 221 }
179 out_devices_.push_back(port); 222 // Enumerate ports.
180 AddOutputPort(port->GetMidiPortInfo()); 223 while (!snd_seq_query_next_port(in_client_, port_info)) {
224 unsigned int port_type = snd_seq_port_info_get_type(port_info);
225 if (port_type & SND_SEQ_PORT_TYPE_MIDI_GENERIC) {
226 const snd_seq_addr_t* addr = snd_seq_port_info_get_addr(port_info);
227 const std::string name = snd_seq_port_info_get_name(port_info);
228 const std::string id = base::StringPrintf("%d:%d %s",
229 addr->client,
230 addr->port,
231 name.c_str());
232 std::string version;
233 if (driver != "") {
234 version = driver + " / ";
235 }
236 version += base::StringPrintf("ALSA library version %d.%d.%d",
237 SND_LIB_MAJOR,
238 SND_LIB_MINOR,
239 SND_LIB_SUBMINOR);
240 unsigned int caps = snd_seq_port_info_get_capability(port_info);
241 if ((caps & kRequiredInputPortCaps) == kRequiredInputPortCaps) {
242 // Subscribe to this port.
243 const snd_seq_addr_t* sender = snd_seq_port_info_get_addr(port_info);
244 snd_seq_addr_t dest;
245 dest.client = snd_seq_client_id(in_client_);
246 dest.port = in_port_;
247 snd_seq_port_subscribe_set_sender(subs, sender);
248 snd_seq_port_subscribe_set_dest(subs, &dest);
249 err = snd_seq_subscribe_port(in_client_, subs);
250 if (err != 0) {
251 VLOG(1) << "snd_seq_subscribe_port fails: " << snd_strerror(err);
252 } else {
253 source_map_[AddrToInt(sender)] = current_input++;
254 AddInputPort(MidiPortInfo(id, manufacturer, name, version));
255 }
256 }
257 if ((caps & kRequiredOutputPortCaps) == kRequiredOutputPortCaps) {
258 // Create a port for us to send on.
259 int out_port =
260 snd_seq_create_simple_port(out_client_, NULL,
261 SND_SEQ_PORT_CAP_READ |
262 SND_SEQ_PORT_CAP_NO_EXPORT,
263 SND_SEQ_PORT_TYPE_MIDI_GENERIC |
264 SND_SEQ_PORT_TYPE_APPLICATION);
265 if (out_port < 0) {
266 VLOG(1) << "snd_seq_create_simple_port fails: "
267 << snd_strerror(out_port);
268 // Skip this output port for now.
269 continue;
270 }
271
272 // Activate port subscription.
273 snd_seq_addr_t sender;
274 const snd_seq_addr_t* dest = snd_seq_port_info_get_addr(port_info);
275 sender.client = snd_seq_client_id(out_client_);
276 sender.port = out_port;
277 snd_seq_port_subscribe_set_sender(subs, &sender);
278 snd_seq_port_subscribe_set_dest(subs, dest);
279 err = snd_seq_subscribe_port(out_client_, subs);
280 if (err != 0) {
281 VLOG(1) << "snd_seq_subscribe_port fails: " << snd_strerror(err);
282 snd_seq_delete_simple_port(out_client_, out_port);
283 } else {
284 snd_midi_event_t* encoder;
285 snd_midi_event_new(kSendBufferSize, &encoder);
286 encoders_.push_back(encoder);
287 out_ports_.push_back(out_port);
288 AddOutputPort(MidiPortInfo(id, manufacturer, name, version));
289 }
290 }
181 } 291 }
182 } 292 }
183 snd_ctl_close(handle); 293 }
184 } 294
185 295 event_thread_.Start();
186 if (pipe(pipe_fd_) < 0) { 296 event_thread_.message_loop()->PostTask(
187 VPLOG(1) << "pipe() failed"; 297 FROM_HERE,
188 CompleteInitialization(MIDI_INITIALIZATION_ERROR); 298 base::Bind(&MidiManagerAlsa::EventReset, base::Unretained(this)));
189 } else { 299
190 event_thread_.Start(); 300 CompleteInitialization(MIDI_OK);
191 event_thread_.message_loop()->PostTask(
192 FROM_HERE,
193 base::Bind(&MidiManagerAlsa::EventReset, base::Unretained(this)));
194 CompleteInitialization(MIDI_OK);
195 }
196 } 301 }
197 302
198 MidiManagerAlsa::~MidiManagerAlsa() { 303 MidiManagerAlsa::~MidiManagerAlsa() {
199 // Send a shutdown message to awake |event_thread_| from poll(). 304 // Tell the event thread it will soon be time to shut down. This gives
200 if (pipe_fd_[1] >= 0) 305 // us assurance the thread will stop in case the SND_SEQ_EVENT_CLIENT_EXIT
201 HANDLE_EINTR(write(pipe_fd_[1], "Q", 1)); 306 // message is lost.
202 307 {
203 // Stop receiving messages. 308 base::AutoLock lock(shutdown_lock_);
309 event_thread_shutdown_ = true;
310 }
311
312 // Stop the send thread.
313 send_thread_.Stop();
314
315 // Close the out client. This will trigger the event thread to stop,
316 // because of SND_SEQ_EVENT_CLIENT_EXIT.
317 if (out_client_)
318 snd_seq_close(out_client_);
319
320 // Wait for the event thread to stop.
204 event_thread_.Stop(); 321 event_thread_.Stop();
205 322
206 for (int i = 0; i < 2; ++i) { 323 // Close the in client.
207 if (pipe_fd_[i] >= 0) 324 if (in_client_)
208 close(pipe_fd_[i]); 325 snd_seq_close(in_client_);
209 } 326
210 send_thread_.Stop(); 327 // Free the decoder.
328 snd_midi_event_free(decoder_);
329
330 // Free the encoders.
331 for (EncoderList::iterator i = encoders_.begin(); i != encoders_.end(); ++i)
332 snd_midi_event_free(*i);
333 }
334
335 void MidiManagerAlsa::SendMidiData(uint32 port_index,
336 const std::vector<uint8>& data) {
337 DCHECK(send_thread_.message_loop_proxy()->BelongsToCurrentThread());
338
339 snd_midi_event_t* encoder = encoders_[port_index];
340 for (unsigned int i = 0; i < data.size(); i++) {
341 snd_seq_event_t event;
342 int result = snd_midi_event_encode_byte(encoder, data[i], &event);
343 if (result == 1) {
344 // Full event, send it.
345 snd_seq_ev_set_source(&event, out_ports_[port_index]);
346 snd_seq_ev_set_subs(&event);
347 snd_seq_ev_set_direct(&event);
348 snd_seq_event_output_direct(out_client_, &event);
349 }
350 }
211 } 351 }
212 352
213 void MidiManagerAlsa::DispatchSendMidiData(MidiManagerClient* client, 353 void MidiManagerAlsa::DispatchSendMidiData(MidiManagerClient* client,
214 uint32 port_index, 354 uint32 port_index,
215 const std::vector<uint8>& data, 355 const std::vector<uint8>& data,
216 double timestamp) { 356 double timestamp) {
217 if (out_devices_.size() <= port_index) 357 if (out_ports_.size() <= port_index)
218 return; 358 return;
219 359
360 // Not correct right now. http://crbug.com/374341.
361 if (!send_thread_.IsRunning())
362 send_thread_.Start();
363
220 base::TimeDelta delay; 364 base::TimeDelta delay;
221 if (timestamp != 0.0) { 365 if (timestamp != 0.0) {
222 base::TimeTicks time_to_send = 366 base::TimeTicks time_to_send =
223 base::TimeTicks() + base::TimeDelta::FromMicroseconds( 367 base::TimeTicks() + base::TimeDelta::FromMicroseconds(
224 timestamp * base::Time::kMicrosecondsPerSecond); 368 timestamp * base::Time::kMicrosecondsPerSecond);
225 delay = std::max(time_to_send - base::TimeTicks::Now(), base::TimeDelta()); 369 delay = std::max(time_to_send - base::TimeTicks::Now(), base::TimeDelta());
226 } 370 }
227 371
228 if (!send_thread_.IsRunning())
229 send_thread_.Start();
230
231 scoped_refptr<MidiDeviceInfo> device = out_devices_[port_index];
232 send_thread_.message_loop()->PostDelayedTask( 372 send_thread_.message_loop()->PostDelayedTask(
233 FROM_HERE, 373 FROM_HERE,
234 base::Bind(&MidiDeviceInfo::Send, device, client, data), 374 base::Bind(&MidiManagerAlsa::SendMidiData, base::Unretained(this),
235 delay); 375 port_index, data), delay);
376
377 // Acknowledge send.
378 send_thread_.message_loop()->PostTask(
379 FROM_HERE,
380 base::Bind(&MidiManagerClient::AccumulateMidiBytesSent,
381 base::Unretained(client), data.size()));
236 } 382 }
237 383
238 void MidiManagerAlsa::EventReset() { 384 void MidiManagerAlsa::EventReset() {
239 CHECK_GE(pipe_fd_[0], 0);
240
241 // Sum up descriptors which are needed to poll input devices and a shutdown
242 // message.
243 // Keep the first one descriptor for a shutdown message.
244 size_t poll_fds_size = 1;
245 for (size_t i = 0; i < in_devices_.size(); ++i)
246 poll_fds_size += in_devices_[i]->GetPollDescriptorsCount();
247 poll_fds_.resize(poll_fds_size);
248
249 // Setup struct pollfd to poll input MIDI devices and a shutdown message.
250 // The first pollfd is for a shutdown message.
251 poll_fds_[0].fd = pipe_fd_[0];
252 poll_fds_[0].events = kPollEventMask;
253 int fds_index = 1;
254 for (size_t i = 0; i < in_devices_.size(); ++i) {
255 fds_index += in_devices_[i]->SetupPollDescriptors(
256 &poll_fds_[fds_index], poll_fds_.size() - fds_index);
257 }
258
259 event_thread_.message_loop()->PostTask( 385 event_thread_.message_loop()->PostTask(
260 FROM_HERE, 386 FROM_HERE,
261 base::Bind(&MidiManagerAlsa::EventLoop, base::Unretained(this))); 387 base::Bind(&MidiManagerAlsa::EventLoop, base::Unretained(this)));
262 } 388 }
263 389
264 void MidiManagerAlsa::EventLoop() { 390 void MidiManagerAlsa::EventLoop() {
265 if (HANDLE_EINTR(poll(&poll_fds_[0], poll_fds_.size(), -1)) < 0) { 391 // Read available incoming MIDI data.
266 VPLOG(1) << "Couldn't poll(). Stop to poll input MIDI devices."; 392 snd_seq_event_t* event;
267 // TODO(toyoshim): Handle device disconnection, and try to reconnect? 393 int err = snd_seq_event_input(in_client_, &event);
268 return; 394 double timestamp =
269 } 395 (base::TimeTicks::HighResNow() - base::TimeTicks()).InSecondsF();
396 if (err == -ENOSPC) {
397 VLOG(1) << "snd_seq_event_input detected buffer overrun";
270 398
271 // Check timestamp as soon as possible because the API requires accurate 399 // We've lost events: check another way to see if we need to shut down.
272 // timestamp as possible. It will be useful for recording MIDI events. 400 base::AutoLock lock(shutdown_lock_);
273 base::TimeTicks now = base::TimeTicks::HighResNow(); 401 if (event_thread_shutdown_) {
402 return;
403 }
404 } else if (err < 0) {
405 VLOG(1) << "snd_seq_event_input fails: " << snd_strerror(err);
406 return;
407 } else {
408 // Check for disconnection of out client. This means "shut down".
409 if (event->source.client == SND_SEQ_CLIENT_SYSTEM &&
410 event->source.port == SND_SEQ_PORT_SYSTEM_ANNOUNCE &&
411 event->type == SND_SEQ_EVENT_CLIENT_EXIT &&
412 event->data.addr.client == out_client_id_) {
413 return;
414 }
274 415
275 // Is this thread going to be shutdown? 416 std::map<int, uint32>::iterator source_it =
276 if (poll_fds_[0].revents & kPollEventMask) 417 source_map_.find(AddrToInt(&event->source));
277 return; 418 if (source_it != source_map_.end()) {
278 419 uint32 source = source_it->second;
279 // Read available incoming MIDI data. 420 if (event->type == SND_SEQ_EVENT_SYSEX) {
280 int fds_index = 1; 421 // Special! Variable-length sysex.
281 uint8 buffer[kReceiveBufferSize]; 422 ReceiveMidiData(source, static_cast<const uint8*>(event->data.ext.ptr),
282 423 event->data.ext.len,
283 for (size_t i = 0; i < in_devices_.size(); ++i) { 424 timestamp);
284 unsigned short revents = 425 } else {
285 in_devices_[i]->GetPollDescriptorsRevents(&poll_fds_[fds_index]); 426 // Otherwise, decode this and send that on.
286 if (revents & (POLLERR | POLLNVAL)) { 427 unsigned char buf[12];
287 // TODO(toyoshim): Handle device disconnection. 428 long count = snd_midi_event_decode(decoder_, buf, sizeof(buf), event);
288 VLOG(1) << "snd_rawmidi_descriptors_revents fails"; 429 if (count <= 0) {
289 poll_fds_[fds_index].events = 0; 430 if (count != -ENOENT) {
431 // ENOENT means that it's not a MIDI message, which is not an
432 // error, but other negative values are errors for us.
433 VLOG(1) << "snd_midi_event_decoder fails " << snd_strerror(count);
434 }
435 } else {
436 ReceiveMidiData(source, buf, count, timestamp);
437 }
438 }
290 } 439 }
291 if (revents & POLLIN) {
292 size_t read_size = in_devices_[i]->Receive(buffer, kReceiveBufferSize);
293 ReceiveMidiData(i, buffer, read_size, now);
294 }
295 fds_index += in_devices_[i]->GetPollDescriptorsCount();
296 } 440 }
297 441
298 // Do again. 442 // Do again.
299 event_thread_.message_loop()->PostTask( 443 event_thread_.message_loop()->PostTask(
300 FROM_HERE, 444 FROM_HERE,
301 base::Bind(&MidiManagerAlsa::EventLoop, base::Unretained(this))); 445 base::Bind(&MidiManagerAlsa::EventLoop, base::Unretained(this)));
302 } 446 }
303 447
304 MidiManager* MidiManager::Create() { 448 MidiManager* MidiManager::Create() {
305 return new MidiManagerAlsa(); 449 return new MidiManagerAlsa();
306 } 450 }
307 451
308 } // namespace media 452 } // namespace media
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