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TimecodeDisplay.h
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//
Super Timecode Converter
//
Copyright (c) 2026 Fiverecords -- MIT License
//
https://github.com/fiverecords/SuperTimecodeConverter
#
pragma
once
#
include
<
JuceHeader.h
>
#
include
"
TimecodeCore.h
"
#
include
"
CustomLookAndFeel.h
"
//
getMonoFontName(), measureStringWidth()
class
TimecodeDisplay
:
public
juce
::Component
{
public:
TimecodeDisplay
()
{
setOpaque
(
false
);
}
void
setTimecode
(
const
Timecode& tc)
{
if
(currentTimecode.
hours
!= tc.
hours
||
currentTimecode.
minutes
!= tc.
minutes
||
currentTimecode.
seconds
!= tc.
seconds
||
currentTimecode.
frames
!= tc.
frames
)
{
currentTimecode = tc;
repaint
();
}
}
void
setFrameRate
(FrameRate fps)
{
if
(currentFps != fps)
{
currentFps = fps;
repaint
();
}
}
void
setSourceName
(
const
juce::String& name)
{
if
(sourceName != name)
{
sourceName = name;
repaint
();
}
}
void
setRunning
(
bool
isRunning)
{
if
(running != isRunning)
{
running = isRunning;
repaint
();
}
}
//
FPS conversion display state
void
setFpsConvertEnabled
(
bool
enabled)
{
if
(fpsConvertActive != enabled)
{
fpsConvertActive = enabled;
repaint
();
}
}
void
setOutputTimecode
(
const
Timecode& tc)
{
if
(outTimecode.
hours
!= tc.
hours
||
outTimecode.
minutes
!= tc.
minutes
||
outTimecode.
seconds
!= tc.
seconds
||
outTimecode.
frames
!= tc.
frames
)
{
outTimecode = tc;
if
(fpsConvertActive)
repaint
();
}
}
void
setOutputFrameRate
(FrameRate fps)
{
if
(outFps != fps)
{
outFps = fps;
if
(fpsConvertActive)
repaint
();
}
}
void
paint
(juce::Graphics& g)
override
{
auto
bounds =
getLocalBounds
().
toFloat
();
//
--- Status indicator colour ---
auto
statusColour = running ?
juce::Colour
(
0xFF2E7D32
) :
juce::Colour
(
0xFF37474F
);
//
--- Main timecode display ---
juce::String tcText = currentTimecode.
toDisplayString
(currentFps);
//
Scale font to fit available width
//
When FPS convert is active, we need room for "/FF" suffix (~14 chars total)
float
maxFontSize =
72
.
0f
;
float
availW = bounds.
getWidth
() -
20
.
0f
;
float
totalChars = fpsConvertActive ?
14
.
0f
:
11
.
0f
;
//
Compute character width ratio dynamically from the actual font metrics
//
(avoids hardcoded values that only match a single platform's monospace font)
auto
measureFont =
juce::Font
(
juce::FontOptions
(
getMonoFontName
(), maxFontSize, juce::Font::bold));
float
charWidthRatio =
measureStringWidth
(measureFont,
"
0
"
) / maxFontSize;
if
(charWidthRatio <=
0
.
0f
) charWidthRatio =
0
.
6f
;
//
safe fallback
float
fittedSize = availW / (totalChars * charWidthRatio);
float
fontSize =
juce::jmin
(maxFontSize,
juce::jmax
(
24
.
0f
, fittedSize));
float
tcHeight = fontSize *
1
.
25f
;
float
labelSize =
juce::jmin
(
9
.
0f
, fontSize *
0
.
14f
);
float
labelH =
14
.
0f
;
float
statusH =
14
.
0f
;
float
gap1 =
8
.
0f
;
//
status -> tc
float
gap2 =
4
.
0f
;
//
tc -> labels
//
Total content block height
float
contentH = statusH + gap1 + tcHeight + gap2 + labelH;
//
Center vertically, but leave room for bottom info
float
usableH = bounds.
getHeight
() -
50
.
0f
;
//
reserve 50px for source/fps info
float
contentY = bounds.
getY
() + (usableH - contentH) /
2
.
0f
;
contentY =
juce::jmax
(bounds.
getY
() +
10
.
0f
, contentY);
//
don't go above top
//
--- Status indicator (dot + label, centred as a unit) ---
float
statusY = contentY;
juce::String statusText = running ?
"
RUNNING
"
:
"
STOPPED
"
;
juce::Font
statusFont
(
juce::FontOptions
(
getMonoFontName
(),
11
.
0f
, juce::Font::plain));
float
dotSize =
6
.
0f
;
float
dotGap =
6
.
0f
;
float
textW =
measureStringWidth
(statusFont, statusText);
float
groupW = dotSize + dotGap + textW;
float
groupX = bounds.
getCentreX
() - groupW /
2
.
0f
;
g.
setColour
(statusColour);
float
textMidY = statusY + statusH /
2
.
0f
;
g.
fillEllipse
(groupX, textMidY - dotSize /
2
.
0f
-
1
.
0f
, dotSize, dotSize);
g.
setColour
(running ?
juce::Colour
(
0xFF66BB6A
) :
juce::Colour
(
0xFF546E7A
));
g.
setFont
(statusFont);
g.
drawText
(statusText,
juce::Rectangle<
float
>(groupX + dotSize + dotGap, statusY, textW +
4
.
0f
, statusH),
juce::Justification::centredLeft);
//
--- Timecode text ---
float
tcY = statusY + statusH + gap1;
juce::Font
tcFont
(
juce::FontOptions
(
getMonoFontName
(), fontSize, juce::Font::bold));
g.
setFont
(tcFont);
//
Timecode colour: bright green when running, muted gray when stopped
auto
tcColour = running ?
juce::Colour
(
0xFF00E676
) :
juce::Colour
(
0xFF546E7A
);
if
(fpsConvertActive)
{
//
Split rendering: main TC in running colour, "/FF" suffix in cyan/dimmed
juce::String outFrameStr =
juce::String::formatted
(
"
%02d
"
,
juce::jlimit
(
0
,
29
, outTimecode.
frames
));
juce::String fullText = tcText +
"
/
"
+ outFrameStr;
//
Measure widths to position both parts
float
fullW =
measureStringWidth
(tcFont, fullText);
float
mainW =
measureStringWidth
(tcFont, tcText);
float
suffixW = fullW - mainW;
float
textStartX = bounds.
getCentreX
() - fullW /
2
.
0f
;
//
Draw main TC (input)
g.
setColour
(tcColour);
g.
drawText
(tcText,
juce::Rectangle<
float
>(textStartX, tcY, mainW, tcHeight),
juce::Justification::centredLeft);
//
Draw "/FF" suffix -- cyan when running, dimmer when stopped
g.
setColour
(running ?
juce::Colour
(
0xFF00ACC1
) :
juce::Colour
(
0xFF37474F
));
g.
drawText
(
"
/
"
+ outFrameStr,
juce::Rectangle<
float
>(textStartX + mainW, tcY, suffixW, tcHeight),
juce::Justification::centredLeft);
}
else
{
//
Standard display
g.
setColour
(tcColour);
g.
drawText
(tcText,
juce::Rectangle<
float
>(bounds.
getX
(), tcY, bounds.
getWidth
(), tcHeight),
juce::Justification::centred);
}
//
--- Labels under each pair ---
float
labelY = tcY + tcHeight + gap2;
g.
setFont
(
juce::Font
(
juce::FontOptions
(
getMonoFontName
(),
juce::jmax
(
7
.
0f
, labelSize), juce::Font::plain)));
//
Compute label positions based on the full displayed text width
float
centerX = bounds.
getCentreX
();
float
displayChars = fpsConvertActive ?
14
.
0f
:
11
.
0f
;
float
tcWidth = fontSize * displayChars * charWidthRatio;
float
startX = centerX - tcWidth /
2
.
0f
;
if
(fpsConvertActive)
{
//
Character layout: HH:MM:SS.FF/FF = 14 chars
//
Positions: 01 2 34 5 67 8 9A B CD
//
Centre of each group:
//
HRS = chars 0-1 -> centre at char 1.0
//
MIN = chars 3-4 -> centre at char 3.5
//
SEC = chars 6-7 -> centre at char 6.5
//
FRM = chars 9-10 -> centre at char 9.5
//
OUT = chars 12-13-> centre at char 12.5
float
charW = tcWidth / displayChars;
float
posHrs = startX +
1
.
0f
* charW;
float
posMn = startX +
3
.
5f
* charW;
float
posSec = startX +
6
.
5f
* charW;
float
posFrm = startX +
9
.
5f
* charW;
float
posOut = startX +
12
.
5f
* charW;
g.
setColour
(
juce::Colour
(
0xFF546E7A
));
g.
drawText
(
"
HRS
"
, juce::Rectangle<
float
>(posHrs -
15
.
0f
, labelY,
30
.
0f
,
14
.
0f
), juce::Justification::centred);
g.
drawText
(
"
MIN
"
, juce::Rectangle<
float
>(posMn -
15
.
0f
, labelY,
30
.
0f
,
14
.
0f
), juce::Justification::centred);
g.
drawText
(
"
SEC
"
, juce::Rectangle<
float
>(posSec -
15
.
0f
, labelY,
30
.
0f
,
14
.
0f
), juce::Justification::centred);
g.
drawText
(
"
FRM
"
, juce::Rectangle<
float
>(posFrm -
15
.
0f
, labelY,
30
.
0f
,
14
.
0f
), juce::Justification::centred);
//
"OUT" label in cyan under the converted frame digits
g.
setColour
(
juce::Colour
(
0xFF00838F
));
g.
drawText
(
"
OUT
"
, juce::Rectangle<
float
>(posOut -
15
.
0f
, labelY,
30
.
0f
,
14
.
0f
), juce::Justification::centred);
}
else
{
float
segW = tcWidth /
4
.
0f
;
float
positions[] = { startX + segW *
0
.
5f
, startX + segW *
1
.
5f
,
startX + segW *
2
.
5f
, startX + segW *
3
.
5f
};
const
char
* labels[] = {
"
HRS
"
,
"
MIN
"
,
"
SEC
"
,
"
FRM
"
};
g.
setColour
(
juce::Colour
(
0xFF546E7A
));
for
(
int
i =
0
; i <
4
; i++)
{
g.
drawText
(labels[i],
juce::Rectangle<
float
>(positions[i] -
15
.
0f
, labelY,
60
.
0f
,
14
.
0f
),
juce::Justification::centred);
}
}
//
--- Source + FPS info ---
float
infoY = bounds.
getBottom
() -
40
.
0f
;
g.
setFont
(
juce::Font
(
juce::FontOptions
(
getMonoFontName
(),
10
.
0f
, juce::Font::plain)));
if
(fpsConvertActive)
{
//
Show both input and output rates with arrow
juce::String inLabel =
"
SOURCE:
"
+ sourceName +
"
|
"
+
frameRateToString
(currentFps);
juce::String arrow =
"
->
"
;
juce::String outLabel =
frameRateToString
(outFps) +
"
FPS
"
;
//
Measure to centre the full composite string
juce::Font
infoFont
(
juce::FontOptions
(
getMonoFontName
(),
10
.
0f
, juce::Font::plain));
g.
setFont
(infoFont);
float
inW =
measureStringWidth
(infoFont, inLabel);
float
arW =
measureStringWidth
(infoFont, arrow);
float
outW =
measureStringWidth
(infoFont, outLabel);
float
totW = inW + arW + outW;
float
sx = bounds.
getCentreX
() - totW /
2
.
0f
;
g.
setColour
(
juce::Colour
(
0xFF37474F
));
g.
drawText
(inLabel, juce::Rectangle<
float
>(sx, infoY, inW,
14
.
0f
),
juce::Justification::centredLeft);
g.
setColour
(
juce::Colour
(
0xFF546E7A
));
g.
drawText
(arrow, juce::Rectangle<
float
>(sx + inW, infoY, arW,
14
.
0f
),
juce::Justification::centredLeft);
g.
setColour
(
juce::Colour
(
0xFF00ACC1
));
g.
drawText
(outLabel, juce::Rectangle<
float
>(sx + inW + arW, infoY, outW,
14
.
0f
),
juce::Justification::centredLeft);
}
else
{
g.
setColour
(
juce::Colour
(
0xFF37474F
));
juce::String infoText =
"
SOURCE:
"
+ sourceName +
"
|
"
+
frameRateToString
(currentFps) +
"
FPS
"
;
g.
drawText
(infoText,
juce::Rectangle<
float
>(
0
.
0f
, infoY, bounds.
getWidth
(),
14
.
0f
),
juce::Justification::centred);
}
}
private:
Timecode currentTimecode;
FrameRate currentFps = FrameRate::
FPS_30
;
juce::String sourceName =
"
SYSTEM
"
;
bool
running =
false
;
//
FPS conversion state
bool
fpsConvertActive =
false
;
Timecode outTimecode;
FrameRate outFps = FrameRate::
FPS_30
;
JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR
(TimecodeDisplay)
};
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