503 lines
14 KiB
C++
503 lines
14 KiB
C++
/**
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* @file llstatbar.cpp
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* @brief A little map of the world with network information
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*
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* $LicenseInfo:firstyear=2001&license=viewerlgpl$
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* Second Life Viewer Source Code
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* Copyright (C) 2010, Linden Research, Inc.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation;
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* version 2.1 of the License only.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*
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* Linden Research, Inc., 945 Battery Street, San Francisco, CA 94111 USA
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* $/LicenseInfo$
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*/
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//#include "llviewerprecompiledheaders.h"
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#include "linden_common.h"
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#include "llstatbar.h"
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#include "llmath.h"
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#include "llui.h"
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#include "llgl.h"
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#include "llfontgl.h"
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#include "lluictrlfactory.h"
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#include "lltracerecording.h"
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#include "llcriticaldamp.h"
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///////////////////////////////////////////////////////////////////////////////////
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LLStatBar::LLStatBar(const Params& p)
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: LLView(p),
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mLabel(p.label),
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mUnitLabel(p.unit_label),
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mMinBar(p.bar_min),
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mMaxBar(p.bar_max),
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mCurMaxBar(p.bar_max),
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mCountFloatp(LLTrace::CountStatHandle<>::getInstance(p.stat)),
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mCountIntp(LLTrace::CountStatHandle<S64>::getInstance(p.stat)),
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mMeasurementFloatp(LLTrace::MeasurementStatHandle<>::getInstance(p.stat)),
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mMeasurementIntp(LLTrace::MeasurementStatHandle<S64>::getInstance(p.stat)),
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mTickSpacing(p.tick_spacing),
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mPrecision(p.precision),
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mUpdatesPerSec(p.update_rate),
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mUnitScale(p.unit_scale),
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mNumFrames(p.num_frames),
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mMaxHeight(p.max_height),
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mPerSec(p.show_per_sec),
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mDisplayBar(p.show_bar),
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mDisplayHistory(p.show_history),
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mDisplayMean(p.show_mean),
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mOrientation(p.orientation),
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mScaleRange(p.scale_range)
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{}
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BOOL LLStatBar::handleMouseDown(S32 x, S32 y, MASK mask)
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{
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BOOL handled = LLView::handleMouseDown(x, y, mask);
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if (!handled)
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{
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if (mDisplayBar)
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{
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if (mDisplayHistory || mOrientation == HORIZONTAL)
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{
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mDisplayBar = FALSE;
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mDisplayHistory = FALSE;
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}
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else
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{
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mDisplayHistory = TRUE;
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}
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}
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else
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{
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mDisplayBar = TRUE;
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if (mOrientation == HORIZONTAL)
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{
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mDisplayHistory = TRUE;
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}
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}
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LLView* parent = getParent();
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parent->reshape(parent->getRect().getWidth(), parent->getRect().getHeight(), FALSE);
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}
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return TRUE;
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}
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void LLStatBar::draw()
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{
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F32 current = 0.f,
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min = 0.f,
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max = 0.f,
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mean = 0.f;
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S32 num_samples = 0;
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LLTrace::PeriodicRecording& frame_recording = LLTrace::get_frame_recording();
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if (mCountFloatp)
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{
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LLTrace::Recording& last_frame_recording = frame_recording.getLastRecordingPeriod();
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if (mPerSec)
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{
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current = last_frame_recording.getPerSec(*mCountFloatp);
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min = frame_recording.getPeriodMinPerSec(*mCountFloatp);
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max = frame_recording.getPeriodMaxPerSec(*mCountFloatp);
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mean = frame_recording.getPeriodMeanPerSec(*mCountFloatp);
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num_samples = frame_recording.getTotalRecording().getSampleCount(*mCountFloatp);
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}
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else
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{
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current = last_frame_recording.getSum(*mCountFloatp);
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min = frame_recording.getPeriodMin(*mCountFloatp);
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max = frame_recording.getPeriodMax(*mCountFloatp);
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mean = frame_recording.getPeriodMean(*mCountFloatp);
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num_samples = frame_recording.getTotalRecording().getSampleCount(*mCountFloatp);
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}
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}
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else if (mCountIntp)
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{
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LLTrace::Recording& last_frame_recording = frame_recording.getLastRecordingPeriod();
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if (mPerSec)
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{
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current = last_frame_recording.getPerSec(*mCountIntp);
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min = frame_recording.getPeriodMinPerSec(*mCountIntp);
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max = frame_recording.getPeriodMaxPerSec(*mCountIntp);
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mean = frame_recording.getPeriodMeanPerSec(*mCountIntp);
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num_samples = frame_recording.getTotalRecording().getSampleCount(*mCountIntp);
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}
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else
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{
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current = last_frame_recording.getSum(*mCountIntp);
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min = frame_recording.getPeriodMin(*mCountIntp);
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max = frame_recording.getPeriodMax(*mCountIntp);
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mean = frame_recording.getPeriodMean(*mCountIntp);
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num_samples = frame_recording.getTotalRecording().getSampleCount(*mCountIntp);
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}
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}
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else if (mMeasurementFloatp)
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{
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LLTrace::Recording& recording = frame_recording.getTotalRecording();
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current = recording.getLastValue(*mMeasurementFloatp);
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min = recording.getMin(*mMeasurementFloatp);
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max = recording.getMax(*mMeasurementFloatp);
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mean = recording.getMean(*mMeasurementFloatp);
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num_samples = frame_recording.getTotalRecording().getSampleCount(*mMeasurementFloatp);
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}
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else if (mMeasurementIntp)
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{
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LLTrace::Recording& recording = frame_recording.getTotalRecording();
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current = recording.getLastValue(*mMeasurementIntp);
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min = recording.getMin(*mMeasurementIntp);
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max = recording.getMax(*mMeasurementIntp);
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mean = recording.getMean(*mMeasurementIntp);
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num_samples = frame_recording.getTotalRecording().getSampleCount(*mMeasurementIntp);
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}
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current *= mUnitScale;
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min *= mUnitScale;
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max *= mUnitScale;
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mean *= mUnitScale;
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if ((mUpdatesPerSec == 0.f) || (mUpdateTimer.getElapsedTimeF32() > 1.f/mUpdatesPerSec) || (mValue == 0.f))
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{
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if (mDisplayMean)
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{
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mValue = mean;
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}
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else
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{
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mValue = current;
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}
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mUpdateTimer.reset();
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}
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S32 bar_top, bar_left, bar_right, bar_bottom;
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if (mOrientation == HORIZONTAL)
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{
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bar_top = llmax(5, getRect().getHeight() - 15);
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bar_left = 0;
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bar_right = getRect().getWidth() - 40;
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bar_bottom = llmin(bar_top - 5, 0);
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}
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else // VERTICAL
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{
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bar_top = llmax(5, getRect().getHeight() - 15);
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bar_left = 0;
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bar_right = getRect().getWidth();
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bar_bottom = llmin(bar_top - 5, 20);
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}
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const S32 tick_length = 4;
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const S32 tick_width = 1;
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if (mScaleRange && num_samples)
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{
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F32 cur_max = mTickSpacing;
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while(max > cur_max && mMaxBar > cur_max)
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{
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cur_max += mTickSpacing;
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}
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mCurMaxBar = LLSmoothInterpolation::lerp(mCurMaxBar, cur_max, 0.05f);
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}
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else
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{
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mCurMaxBar = mMaxBar;
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}
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F32 value_scale = (mOrientation == HORIZONTAL)
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? (bar_top - bar_bottom)/(mCurMaxBar - mMinBar)
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: (bar_right - bar_left)/(mCurMaxBar - mMinBar);
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LLFontGL::getFontMonospace()->renderUTF8(mLabel, 0, 0, getRect().getHeight(), LLColor4(1.f, 1.f, 1.f, 1.f),
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LLFontGL::LEFT, LLFontGL::TOP);
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std::string value_format;
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std::string value_str;
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if (!mUnitLabel.empty())
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{
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value_format = llformat( "%%.%df%%s", mPrecision);
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value_str = llformat( value_format.c_str(), mValue, mUnitLabel.c_str());
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}
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else
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{
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value_format = llformat( "%%.%df", mPrecision);
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value_str = llformat( value_format.c_str(), mValue);
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}
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// Draw the value.
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if (mOrientation == HORIZONTAL)
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{
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LLFontGL::getFontMonospace()->renderUTF8(value_str, 0, bar_right, getRect().getHeight(),
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LLColor4(1.f, 1.f, 1.f, 0.5f),
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LLFontGL::RIGHT, LLFontGL::TOP);
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}
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else
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{
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LLFontGL::getFontMonospace()->renderUTF8(value_str, 0, bar_right, getRect().getHeight(),
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LLColor4(1.f, 1.f, 1.f, 0.5f),
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LLFontGL::RIGHT, LLFontGL::TOP);
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}
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value_format = llformat( "%%.%df", mPrecision);
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if (mDisplayBar && (mCountFloatp || mCountIntp || mMeasurementFloatp || mMeasurementIntp))
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{
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std::string tick_label;
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// Draw the tick marks.
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LLGLSUIDefault gls_ui;
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gGL.getTexUnit(0)->unbind(LLTexUnit::TT_TEXTURE);
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S32 last_tick = 0;
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S32 last_label = 0;
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const S32 MIN_TICK_SPACING = mOrientation == HORIZONTAL ? 20 : 30;
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const S32 MIN_LABEL_SPACING = mOrientation == HORIZONTAL ? 40 : 60;
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for (F32 tick_value = mMinBar + mTickSpacing; tick_value <= mCurMaxBar; tick_value += mTickSpacing)
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{
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const S32 begin = llfloor((tick_value - mMinBar)*value_scale);
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const S32 end = begin + tick_width;
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if (begin - last_tick < MIN_TICK_SPACING)
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{
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continue;
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}
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last_tick = begin;
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tick_label = llformat( value_format.c_str(), tick_value);
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if (mOrientation == HORIZONTAL)
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{
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if (begin - last_label > MIN_LABEL_SPACING)
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{
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gl_rect_2d(bar_left, end, bar_right - tick_length, begin, LLColor4(1.f, 1.f, 1.f, 0.25f));
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LLFontGL::getFontMonospace()->renderUTF8(tick_label, 0, bar_right, begin,
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LLColor4(1.f, 1.f, 1.f, 0.5f),
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LLFontGL::LEFT, LLFontGL::VCENTER);
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last_label = begin;
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}
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else
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{
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gl_rect_2d(bar_left, end, bar_right - tick_length/2, begin, LLColor4(1.f, 1.f, 1.f, 0.1f));
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}
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}
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else
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{
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if (begin - last_label > MIN_LABEL_SPACING)
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{
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gl_rect_2d(begin, bar_top, end, bar_bottom - tick_length, LLColor4(1.f, 1.f, 1.f, 0.25f));
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LLFontGL::getFontMonospace()->renderUTF8(tick_label, 0, begin - 1, bar_bottom - tick_length,
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LLColor4(1.f, 1.f, 1.f, 0.5f),
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LLFontGL::RIGHT, LLFontGL::TOP);
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last_label = begin;
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}
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else
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{
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gl_rect_2d(begin, bar_top, end, bar_bottom - tick_length/2, LLColor4(1.f, 1.f, 1.f, 0.1f));
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}
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}
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}
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// draw background bar.
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gl_rect_2d(bar_left, bar_top, bar_right, bar_bottom, LLColor4(0.f, 0.f, 0.f, 0.25f));
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if (frame_recording.getNumPeriods() == 0)
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{
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// No data, don't draw anything...
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return;
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}
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// draw min and max
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S32 begin = (S32) ((min - mMinBar) * value_scale);
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if (begin < 0)
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{
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begin = 0;
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llwarns << "Min:" << min << llendl;
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}
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S32 end = (S32) ((max - mMinBar) * value_scale);
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if (mOrientation == HORIZONTAL)
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{
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gl_rect_2d(bar_left, end, bar_right, begin, LLColor4(1.f, 0.f, 0.f, 0.25f));
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}
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else // VERTICAL
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{
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gl_rect_2d(begin, bar_top, end, bar_bottom, LLColor4(1.f, 0.f, 0.f, 0.25f));
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}
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F32 span = (mOrientation == HORIZONTAL)
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? (bar_right - bar_left)
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: (bar_top - bar_bottom);
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if (mDisplayHistory && (mCountFloatp || mCountIntp || mMeasurementFloatp || mMeasurementIntp))
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{
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const S32 num_values = frame_recording.getNumPeriods() - 1;
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F32 begin = 0;
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F32 end = 0;
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S32 i;
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gGL.color4f( 1.f, 0.f, 0.f, 1.f );
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gGL.begin( LLRender::QUADS );
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const S32 max_frame = llmin(mNumFrames, num_values);
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U32 num_samples = 0;
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for (i = 1; i <= max_frame; i++)
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{
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F32 offset = ((F32)i / (F32)mNumFrames) * span;
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LLTrace::Recording& recording = frame_recording.getPrevRecordingPeriod(i);
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if (mPerSec)
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{
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if (mCountFloatp)
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{
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begin = ((recording.getPerSec(*mCountFloatp) - mMinBar) * value_scale);
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end = ((recording.getPerSec(*mCountFloatp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mCountFloatp);
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}
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else if (mCountIntp)
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{
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begin = ((recording.getPerSec(*mCountIntp) - mMinBar) * value_scale);
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end = ((recording.getPerSec(*mCountIntp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mCountIntp);
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}
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else if (mMeasurementFloatp)
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{
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//rate isn't defined for measurement stats, so use mean
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begin = ((recording.getMean(*mMeasurementFloatp) - mMinBar) * value_scale);
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end = ((recording.getMean(*mMeasurementFloatp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mMeasurementFloatp);
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}
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else if (mMeasurementIntp)
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{
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//rate isn't defined for measurement stats, so use mean
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begin = ((recording.getMean(*mMeasurementIntp) - mMinBar) * value_scale);
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end = ((recording.getMean(*mMeasurementIntp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mMeasurementIntp);
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}
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}
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else
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{
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if (mCountFloatp)
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{
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begin = ((recording.getSum(*mCountFloatp) - mMinBar) * value_scale);
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end = ((recording.getSum(*mCountFloatp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mCountFloatp);
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}
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else if (mCountIntp)
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{
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begin = ((recording.getSum(*mCountIntp) - mMinBar) * value_scale);
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end = ((recording.getSum(*mCountIntp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mCountIntp);
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}
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else if (mMeasurementFloatp)
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{
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begin = ((recording.getMean(*mMeasurementFloatp) - mMinBar) * value_scale);
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end = ((recording.getMean(*mMeasurementFloatp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mMeasurementFloatp);
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}
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else if (mMeasurementIntp)
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{
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begin = ((recording.getMean(*mMeasurementIntp) - mMinBar) * value_scale);
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end = ((recording.getMean(*mMeasurementIntp) - mMinBar) * value_scale) + 1;
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num_samples = recording.getSampleCount(*mMeasurementIntp);
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}
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}
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if (!num_samples) continue;
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if (mOrientation == HORIZONTAL)
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{
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gGL.vertex2f((F32)bar_right - offset, end);
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gGL.vertex2f((F32)bar_right - offset, begin);
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gGL.vertex2f((F32)bar_right - offset - 1.f, begin);
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gGL.vertex2f((F32)bar_right - offset - 1.f, end);
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}
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else
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{
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gGL.vertex2f(begin, (F32)bar_bottom+offset+1.f);
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gGL.vertex2f(begin, (F32)bar_bottom+offset);
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gGL.vertex2f(end, (F32)bar_bottom+offset);
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gGL.vertex2f(end, (F32)bar_bottom+offset+1.f);
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}
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}
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gGL.end();
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}
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else
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{
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S32 begin = (S32) ((current - mMinBar) * value_scale) - 1;
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S32 end = (S32) ((current - mMinBar) * value_scale) + 1;
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// draw current
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if (mOrientation == HORIZONTAL)
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{
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gl_rect_2d(bar_left, end, bar_right, begin, LLColor4(1.f, 0.f, 0.f, 1.f));
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}
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else
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{
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gl_rect_2d(begin, bar_top, end, bar_bottom, LLColor4(1.f, 0.f, 0.f, 1.f));
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}
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}
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// draw mean bar
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{
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const S32 begin = (S32) ((mean - mMinBar) * value_scale) - 1;
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const S32 end = (S32) ((mean - mMinBar) * value_scale) + 1;
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if (mOrientation == HORIZONTAL)
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{
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gl_rect_2d(bar_left - 2, begin, bar_right + 2, end, LLColor4(0.f, 1.f, 0.f, 1.f));
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}
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else
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{
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gl_rect_2d(begin, bar_top + 2, end, bar_bottom - 2, LLColor4(0.f, 1.f, 0.f, 1.f));
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}
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}
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}
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LLView::draw();
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}
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void LLStatBar::setStat(const std::string& stat_name)
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{
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mCountFloatp = LLTrace::CountStatHandle<>::getInstance(stat_name);
|
|
mCountIntp = LLTrace::CountStatHandle<S64>::getInstance(stat_name);
|
|
mMeasurementFloatp = LLTrace::MeasurementStatHandle<>::getInstance(stat_name);
|
|
mMeasurementIntp = LLTrace::MeasurementStatHandle<S64>::getInstance(stat_name);
|
|
}
|
|
|
|
|
|
void LLStatBar::setRange(F32 bar_min, F32 bar_max, F32 tick_spacing)
|
|
{
|
|
mMinBar = bar_min;
|
|
mMaxBar = bar_max;
|
|
mTickSpacing = tick_spacing;
|
|
}
|
|
|
|
LLRect LLStatBar::getRequiredRect()
|
|
{
|
|
LLRect rect;
|
|
|
|
if (mDisplayBar)
|
|
{
|
|
if (mDisplayHistory)
|
|
{
|
|
rect.mTop = mMaxHeight;
|
|
}
|
|
else
|
|
{
|
|
rect.mTop = 40;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
rect.mTop = 14;
|
|
}
|
|
return rect;
|
|
}
|
|
|