else:
return Time(self.seconds - x.seconds, m)
+class EncoderThread:
+ def __init__(self, id):
+ self.id = id
+ self.events = []
+ self.server = None
+
+ def add_event(self, time, message, values):
+ self.events.append((time, message, values))
+
queue_size = []
general_events = []
encoder_threads = []
-encoder_thread_events = dict()
-def add_encoder_thread_event(thread, time, event):
+def find_encoder_thread(id):
global encoder_threads
- global encoder_thread_events
- if not thread in encoder_threads:
+ thread = None
+ for t in encoder_threads:
+ if t.id == id:
+ thread = t
+
+ if thread is None:
+ thread = EncoderThread(id)
encoder_threads.append(thread)
- encoder_thread_events[thread] = [(time, event)]
- else:
- encoder_thread_events[thread].append((time, event))
+
+ return thread
def add_general_event(time, event):
global general_events
# Not-so-human-readable log messages (LOG_TIMING)
if message == 'add-frame-to-queue':
queue_size.append((T, values['queue']))
- elif message in ['encoder-sleep', 'encoder-wake', 'start-local-encode', 'finish-local-encode', 'start-remote-send', 'start-remote-encode', 'start-remote-receive', 'finish-remote-receive']:
- add_encoder_thread_event(values['thread'], T, message)
+ elif message in ['encoder-sleep', 'encoder-wake', 'start-local-encode', 'finish-local-encode', 'start-remote-send', 'start-remote-encode', 'start-remote-receive', 'finish-remote-receive', 'start-encoder-thread']:
+ find_encoder_thread(values['thread']).add_event(T, message, values)
# Human-readable log message (other LOG_*)
elif message.startswith('Finished locally-encoded'):
add_general_event(T, 'end_local_encode')
plt.figure()
N = len(encoder_thread_events)
n = 1
- for thread, events in encoder_thread_events.iteritems():
+ for thread in encoder_threads:
plt.subplot(N, 1, n)
x = []
y = []
previous = 0
- for e in events:
+ for e in thread.events:
if args.from_time is not None and e[0].float_seconds() <= args.from_time:
continue
if args.to_time is not None and e[0].float_seconds() >= args.to_time:
elif args.plot_first_encoder:
plt.figure()
- N = len(encoder_thread_events)
+ N = len(encoder_threads)
n = 1
- events = encoder_thread_events.itervalues().next()
+ events = encoder_threads[0].events
N = 6
n = 1
remote_encoding = Time()
receiving = Time()
wakes = 0
- for e in encoder_thread_events[t]:
- if e[1] not in ['encoder-sleep', 'encoder-wake', 'start-remote-send', 'start-remote-encode', 'start-remote-receive', 'finish-remote-receive']:
- continue
-
+ for e in t.events:
if last is not None:
if last[1] == 'encoder-sleep':
asleep += e[0] - last[0]
elif last[1] == 'encoder-wake':
wakes += 1
+ elif last[1] == 'start-local-encode':
local_encoding += e[0] - last[0]
elif last[1] == 'start-remote-send':
sending += e[0] - last[0]
remote_encoding += e[0] - last[0]
elif last[1] == 'start-remote-receive':
receiving += e[0] - last[0]
+ elif last[1] == 'start-encoder-thread':
+ find_encoder_thread(last[2]['thread']).server = last[2]['server']
last = e
- print '-- Encoder thread %s' % t
+ print '-- Encoder thread %s (%s)' % (t.server, t.id)
print '\tAwoken %d times' % wakes
+
total = asleep.float_seconds() + local_encoding.float_seconds() + sending.float_seconds() + remote_encoding.float_seconds() + receiving.float_seconds()
if total == 0:
continue
- print '\tAsleep: %s (%.2f%%)' % (asleep, asleep.float_seconds() * 100 / total)
- if local_encoding.float_seconds() > 0:
- print '\tLocal encoding: %s (%.2f%%)' % (local_encoding, local_encoding.float_seconds() * 100 / total)
+
+ print '\t%s: %2.f%%' % ('Asleep'.ljust(16), asleep.float_seconds() * 100 / total)
+
+ def print_with_fps(v, name, total, frames):
+ if v.float_seconds() > 1:
+ print '\t%s: %2.f%% %.2ffps' % (name.ljust(16), v.float_seconds() * 100 / total, frames / v.float_seconds())
+
+ print_with_fps(local_encoding, 'Local encoding', total, wakes)
if sending.float_seconds() > 0:
- print '\tSending: %s (%.2f%%)' % (sending, sending.float_seconds() * 100 / total)
- if remote_encoding.float_seconds() > 0:
- print '\tRemote encoding: %s (%.2f%%)' % (remote_encoding, remote_encoding.float_seconds() * 100 / total)
+ print '\t%s: %2.f%%' % ('Sending'.ljust(16), sending.float_seconds() * 100 / total)
+ print_with_fps(remote_encoding, 'Remote encoding', total, wakes)
if receiving.float_seconds() > 0:
- print '\tReceiving: %s (%.2f%%)' % (receiving, receiving.float_seconds() * 100 / total)
+ print '\t%s: %2.f%%' % ('Receiving'.ljust(16), receiving.float_seconds() * 100 / total)
print ''