| Index: tools/perf/metrics/gpu_timeline.py
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| diff --git a/tools/perf/metrics/gpu_timeline.py b/tools/perf/metrics/gpu_timeline.py
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| new file mode 100644
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| index 0000000000000000000000000000000000000000..84050336a1f255c8c9acbdf7ca359c1349859c3f
|
| --- /dev/null
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| +++ b/tools/perf/metrics/gpu_timeline.py
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| @@ -0,0 +1,195 @@
|
| +# Copyright 2015 The Chromium Authors. All rights reserved.
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| +# Use of this source code is governed by a BSD-style license that can be
|
| +# found in the LICENSE file.
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| +import collections
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| +import math
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| +import sys
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| +
|
| +from telemetry.timeline import model as model_module
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| +from telemetry.timeline import async_slice as async_slice_module
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| +from telemetry.value import scalar
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| +from telemetry.web_perf.metrics import timeline_based_metric
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| +
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| +TOPLEVEL_GL_CATEGORY = 'gpu_toplevel'
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| +TOPLEVEL_SERVICE_CATEGORY = 'disabled-by-default-gpu.service'
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| +TOPLEVEL_DEVICE_CATEGORY = 'disabled-by-default-gpu.device'
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| +
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| +SERVICE_FRAME_END_MARKER = (TOPLEVEL_SERVICE_CATEGORY, 'SwapBuffer')
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| +DEVICE_FRAME_END_MARKER = (TOPLEVEL_DEVICE_CATEGORY, 'SwapBuffer')
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| +
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| +TRACKED_NAMES = { 'RenderCompositor': 'render_compositor',
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| + 'Compositor': 'compositor' }
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| +
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| +GPU_SERVICE_DEVICE_VARIANCE = 5
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| +
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| +
|
| +def GetTrackedServiceName(name):
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| + return name + '_service-cpu'
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| +
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| +
|
| +def GetTrackedDeviceName(name):
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| + return name + '_device-gpu'
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| +
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| +
|
| +def CalculateFrameTimes(events_per_frame):
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| + """Given a list of events per frame, returns a list of frame times."""
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| + times_per_frame = []
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| + for event_list in events_per_frame:
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| + # Prefer to use thread_duration but use duration as fallback.
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| + event_times = [(event.thread_duration or event.duration)
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| + for event in event_list]
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| + times_per_frame.append(sum(event_times))
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| + return times_per_frame
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| +
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| +
|
| +class GPUTimelineMetric(timeline_based_metric.TimelineBasedMetric):
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| + """Computes GPU based metrics."""
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| +
|
| + def __init__(self):
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| + super(GPUTimelineMetric, self).__init__()
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| +
|
| + def AddResults(self, model, _, interaction_records, results):
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| + service_times = self._CalculateGPUTimelineData(model)
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| + for name, durations in service_times.iteritems():
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| + count = len(durations)
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| + avg = 0.0
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| + stddev = 0.0
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| + maximum = 0.0
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| + if count:
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| + avg = sum(durations) / count
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| + stddev = math.sqrt(sum((d - avg) ** 2 for d in durations) / count)
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| + maximum = max(durations)
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| +
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| + results.AddValue(scalar.ScalarValue(results.current_page,
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| + name + '_max', 'ms', maximum))
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| + results.AddValue(scalar.ScalarValue(results.current_page,
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| + name + '_avg', 'ms', avg))
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| + results.AddValue(scalar.ScalarValue(results.current_page,
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| + name + '_stddev', 'ms', stddev))
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| +
|
| + def _CalculateGPUTimelineData(self, model):
|
| + """Uses the model and calculates the times for various values for each
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| + frame. The return value will be a dictionary of the following format:
|
| + {
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| + EVENT_NAME1: [FRAME0_TIME, FRAME1_TIME...etc.],
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| + EVENT_NAME2: [FRAME0_TIME, FRAME1_TIME...etc.],
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| + }
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| +
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| + Event Names:
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| + mean_frame - Mean time each frame is calculated to be.
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| + mean_gpu_service-cpu: Mean time the GPU service took per frame.
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| + mean_gpu_device-gpu: Mean time the GPU device took per frame.
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| + TRACKED_NAMES_service-cpu: Using the TRACKED_NAMES dictionary, we
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| + include service traces per frame for the
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| + tracked name.
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| + TRACKED_NAMES_device-gpu: Using the TRACKED_NAMES dictionary, we
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| + include device traces per frame for the
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| + tracked name.
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| + """
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| + all_service_events = []
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| + current_service_frame_end = sys.maxint
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| + current_service_events = []
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| +
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| + all_device_events = []
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| + current_device_frame_end = sys.maxint
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| + current_device_events = []
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| +
|
| + tracked_events = {}
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| + tracked_events.update(dict([(GetTrackedServiceName(value), [])
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| + for value in TRACKED_NAMES.itervalues()]))
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| + tracked_events.update(dict([(GetTrackedDeviceName(value), [])
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| + for value in TRACKED_NAMES.itervalues()]))
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| +
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| + current_tracked_service_events = collections.defaultdict(list)
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| + current_tracked_device_events = collections.defaultdict(list)
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| +
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| + event_iter = model.IterAllEvents(
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| + event_type_predicate=model_module.IsSliceOrAsyncSlice)
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| + for event in event_iter:
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| + # Look for frame end markers
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| + if (event.category, event.name) == SERVICE_FRAME_END_MARKER:
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| + current_service_frame_end = event.end
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| + elif (event.category, event.name) == DEVICE_FRAME_END_MARKER:
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| + current_device_frame_end = event.end
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| +
|
| + # Track all other toplevel gl category markers
|
| + elif event.args.get('gl_category', None) == TOPLEVEL_GL_CATEGORY:
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| + base_name = event.name
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| + dash_index = base_name.rfind('-')
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| + if dash_index != -1:
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| + base_name = base_name[:dash_index]
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| + tracked_name = TRACKED_NAMES.get(base_name, None)
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| +
|
| + if event.category == TOPLEVEL_SERVICE_CATEGORY:
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| + # Check if frame has ended.
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| + if event.start >= current_service_frame_end:
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| + if current_service_events:
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| + all_service_events.append(current_service_events)
|
| + for value in TRACKED_NAMES.itervalues():
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| + tracked_events[GetTrackedServiceName(value)].append(
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| + current_tracked_service_events[value])
|
| + current_service_events = []
|
| + current_service_frame_end = sys.maxint
|
| + current_tracked_service_events.clear()
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| +
|
| + current_service_events.append(event)
|
| + if tracked_name:
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| + current_tracked_service_events[tracked_name].append(event)
|
| +
|
| + elif event.category == TOPLEVEL_DEVICE_CATEGORY:
|
| + # Check if frame has ended.
|
| + if event.start >= current_device_frame_end:
|
| + if current_device_events:
|
| + all_device_events.append(current_device_events)
|
| + for value in TRACKED_NAMES.itervalues():
|
| + tracked_events[GetTrackedDeviceName(value)].append(
|
| + current_tracked_device_events[value])
|
| + current_device_events = []
|
| + current_device_frame_end = sys.maxint
|
| + current_tracked_device_events.clear()
|
| +
|
| + current_device_events.append(event)
|
| + if tracked_name:
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| + current_tracked_device_events[tracked_name].append(event)
|
| +
|
| + # Append Data for Last Frame.
|
| + if current_service_events:
|
| + all_service_events.append(current_service_events)
|
| + for value in TRACKED_NAMES.itervalues():
|
| + tracked_events[GetTrackedServiceName(value)].append(
|
| + current_tracked_service_events[value])
|
| + if current_device_events:
|
| + all_device_events.append(current_device_events)
|
| + for value in TRACKED_NAMES.itervalues():
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| + tracked_events[GetTrackedDeviceName(value)].append(
|
| + current_tracked_device_events[value])
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| +
|
| + # Calculate Mean Frame Time for the CPU side.
|
| + frame_times = []
|
| + if all_service_events:
|
| + prev_frame_end = all_service_events[0][0].start
|
| + for event_list in all_service_events:
|
| + last_service_event_in_frame = event_list[-1]
|
| + frame_times.append(last_service_event_in_frame.end - prev_frame_end)
|
| + prev_frame_end = last_service_event_in_frame.end
|
| +
|
| + # Create the timeline data dictionary for service side traces.
|
| + gpu_service_name = GetTrackedServiceName('mean_gpu')
|
| +
|
| + timeline_data = {}
|
| + timeline_data['mean_frame'] = frame_times
|
| + timeline_data[gpu_service_name] = CalculateFrameTimes(all_service_events)
|
| + for value in TRACKED_NAMES.itervalues():
|
| + name = GetTrackedServiceName(value)
|
| + timeline_data[name] = CalculateFrameTimes(tracked_events[name])
|
| +
|
| + # Add in GPU side traces if it was supported (IE. device traces exist).
|
| + if all_device_events:
|
| + gpu_device_name = GetTrackedDeviceName('mean_gpu')
|
| +
|
| + timeline_data[gpu_device_name] = CalculateFrameTimes(all_device_events)
|
| + for value in TRACKED_NAMES.itervalues():
|
| + name = GetTrackedDeviceName(value)
|
| + timeline_data[name] = CalculateFrameTimes(tracked_events[name])
|
| +
|
| + return timeline_data
|
|
|