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.\" DO NOT MODIFY THIS FILE!  It was generated by help2man 1.43.3.
.TH CREATE "1" "August 2013" "Create ICC profile, Version 1.5.1" "User Commands"
.SH NAME
Create \- Create ICC profile.
.SH DESCRIPTION
Create ICC profile, Version 1.5.1
Author: Graeme W. Gill, licensed under the AGPL Version 3
.IP
Diagnostic: Unknown flag '\-'
.PP
usage: debian/tmp/usr/bin/colprof [\-options] inoutfile
.TP
\fB\-v\fR
Verbose mode
.HP
\fB\-A\fR manufacturer Manufacturer description string
.TP
\fB\-M\fR model
Model description string
.TP
\fB\-D\fR description
Profile Description string (Default "inoutfile")
.TP
\fB\-C\fR copyright
Copyright string
.TP
\fB\-Z\fR tmnb
Attributes: Transparency, Matte, Negative, BlackAndWhite
.TP
\fB\-Z\fR prsa
Default intent: Perceptual, Rel. Colorimetric, Saturation, Abs. Colorimetric
.TP
\fB\-q\fR lmhu
Quality \- Low, Medium (def), High, Ultra
.TP
\fB\-b\fR [lmhun]
Low quality B2A table \- or specific B2A quality or none for input device
.TP
\fB\-y\fR
Verify A2B profile
.TP
\fB\-ni\fR
Don't create input (Device) shaper curves
.TP
\fB\-np\fR
Don't create input (Device) grid position curves
.TP
\fB\-no\fR
Don't create output (PCS) shaper curves
.TP
\fB\-nc\fR
Don't put the input .ti3 data in the profile
.TP
\fB\-k\fR zhxr
Black value target: z = zero K,
h = 0.5 K, x = max K, r = ramp K (def.)
.HP
\fB\-k\fR p stle stpo enpo enle shape
.IP
stle: K level at White 0.0 \- 1.0
stpo: start point of transition Wh 0.0 \- Bk 1.0
enpo: End point of transition Wh 0.0 \- Bk 1.0
enle: K level at Black 0.0 \- 1.0
shape: 1.0 = straight, 0.0\-1.0 concave, 1.0\-2.0 convex
.TP
\fB\-K\fR parameters
Same as \fB\-k\fR, but target is K locus rather than K value itself
.TP
\fB\-l\fR tlimit
override total ink limit, 0 \- 400% (default from .ti3)
.TP
\fB\-L\fR klimit
override black ink limit, 0 \- 100% (default from .ti3)
.TP
\fB\-a\fR lxXgsmGS
Algorithm type override
l = Lab cLUT (def.), x = XYZ cLUT, X = display XYZ cLUT + matrix
g = gamma+matrix, s = shaper+matrix, m = matrix only,
G = single gamma+matrix, S = single shaper+matrix
.TP
\fB\-u\fR
If input profile, auto scale WP to allow extrapolation
.TP
\fB\-uc\fR
If input profile, clip cLUT values above WP
.TP
\fB\-U\fR scale
If input profile, scale media white point by scale
.TP
\fB\-R\fR
Restrict white <= 1.0, black and primaries to be +ve
.TP
\fB\-f\fR [illum]
Use Fluorescent Whitening Agent compensation [opt. simulated inst. illum.:
.IP
M0, M1, M2, A, C, D50 (def.), D50M2, D65, F5, F8, F10 or file.sp]
.TP
\fB\-i\fR illum
Choose illuminant for computation of CIE XYZ from spectral data & FWA:
.IP
A, C, D50 (def.), D50M2, D65, F5, F8, F10 or file.sp
.TP
\fB\-o\fR observ
Choose CIE Observer for spectral data:
.IP
1931_2 (def), 1964_10, S&B 1955_2, shaw, J&V 1978_2
.TP
\fB\-r\fR avgdev
Average deviation of device+instrument readings as a percentage (default 0.50%)
.TP
\fB\-s\fR src.icc
Apply gamut mapping to output profile perceptual B2A table for given source space
.TP
\fB\-S\fR src.icc
Apply gamut mapping to output profile perceptual and saturation B2A table
.TP
\fB\-nP\fR
Use colormetric source gamut to make output profile perceptual table
.TP
\fB\-nS\fR
Use colormetric source gamut to make output profile saturation table
.TP
\fB\-g\fR src.gam
Use source image gamut as well for output profile gamut mapping
.TP
\fB\-p\fR absprof,...
Incorporate abstract profile(s) into output tables
.TP
\fB\-t\fR intent
Override gamut mapping intent for output profile perceptual table:
.TP
\fB\-T\fR intent
Override gamut mapping intent for output profile saturation table:
.IP
a \- Absolute Colorimetric (in Jab) [ICC Absolute Colorimetric]
.IP
aw \- Absolute Colorimetric (in Jab) with scaling to fit white point
aa \- Absolute Appearance
.IP
r \- White Point Matched Appearance [ICC Relative Colorimetric]
.IP
la \- Luminance axis matched Appearance
.IP
p \- Perceptual (Preferred) (Default) [ICC Perceptual]
.IP
pa \- Perceptual Apperance
ms \- Saturation
.IP
s \- Enhanced Saturation [ICC Saturation]
.IP
al \- Absolute Colorimetric (Lab)
rl \- White Point Matched Appearance (Lab)
.TP
\fB\-c\fR viewcond
set input viewing conditions for output profile CIECAM02 gamut mapping,
.IP
either an enumerated choice, or a parameter
.TP
\fB\-d\fR viewcond
set output viewing conditions for output profile CIECAM02 gamut mapping
.IP
either an enumerated choice, or a parameter
Also sets out of gamut clipping CAM space.
either an enumerated choice, or a series of parameters:value changes
.IP
pp \- Practical Reflection Print (ISO\-3664 P2)
pe \- Print evaluation environment (CIE 116\-1995)
pc \- Critical print evaluation environment (ISO\-3664 P1)
mt \- Monitor in typical work environment
mb \- Bright monitor in bright work environment
md \- Monitor in darkened work environment
jm \- Projector in dim environment
jd \- Projector in dark environment
.IP
pcd \- Photo CD \- original scene outdoors
.IP
ob \- Original scene \- Bright Outdoors
cx \- Cut Sheet Transparencies on a viewing box
.TP
\fB\-P\fR
Create gamut gammap_p.wrl and gammap_s.wrl diagostics
.TP
\fB\-O\fR outputfile
Override the default output filename.
.TP
inoutfile
Base name for input.ti3/output.icc file
.PP
Author: Graeme W. Gill, licensed under the AGPL Version 3
.IP
Diagnostic: Unknown flag '\-'
.PP
usage: debian/tmp/usr/bin/colprof [\-options] inoutfile
.TP
\fB\-v\fR
Verbose mode
.HP
\fB\-A\fR manufacturer Manufacturer description string
.TP
\fB\-M\fR model
Model description string
.TP
\fB\-D\fR description
Profile Description string (Default "inoutfile")
.TP
\fB\-C\fR copyright
Copyright string
.TP
\fB\-Z\fR tmnb
Attributes: Transparency, Matte, Negative, BlackAndWhite
.TP
\fB\-Z\fR prsa
Default intent: Perceptual, Rel. Colorimetric, Saturation, Abs. Colorimetric
.TP
\fB\-q\fR lmhu
Quality \- Low, Medium (def), High, Ultra
.TP
\fB\-b\fR [lmhun]
Low quality B2A table \- or specific B2A quality or none for input device
.TP
\fB\-y\fR
Verify A2B profile
.TP
\fB\-ni\fR
Don't create input (Device) shaper curves
.TP
\fB\-np\fR
Don't create input (Device) grid position curves
.TP
\fB\-no\fR
Don't create output (PCS) shaper curves
.TP
\fB\-nc\fR
Don't put the input .ti3 data in the profile
.TP
\fB\-k\fR zhxr
Black value target: z = zero K,
h = 0.5 K, x = max K, r = ramp K (def.)
.HP
\fB\-k\fR p stle stpo enpo enle shape
.IP
stle: K level at White 0.0 \- 1.0
stpo: start point of transition Wh 0.0 \- Bk 1.0
enpo: End point of transition Wh 0.0 \- Bk 1.0
enle: K level at Black 0.0 \- 1.0
shape: 1.0 = straight, 0.0\-1.0 concave, 1.0\-2.0 convex
.TP
\fB\-K\fR parameters
Same as \fB\-k\fR, but target is K locus rather than K value itself
.TP
\fB\-l\fR tlimit
override total ink limit, 0 \- 400% (default from .ti3)
.TP
\fB\-L\fR klimit
override black ink limit, 0 \- 100% (default from .ti3)
.TP
\fB\-a\fR lxXgsmGS
Algorithm type override
l = Lab cLUT (def.), x = XYZ cLUT, X = display XYZ cLUT + matrix
g = gamma+matrix, s = shaper+matrix, m = matrix only,
G = single gamma+matrix, S = single shaper+matrix
.TP
\fB\-u\fR
If input profile, auto scale WP to allow extrapolation
.TP
\fB\-uc\fR
If input profile, clip cLUT values above WP
.TP
\fB\-U\fR scale
If input profile, scale media white point by scale
.TP
\fB\-R\fR
Restrict white <= 1.0, black and primaries to be +ve
.TP
\fB\-f\fR [illum]
Use Fluorescent Whitening Agent compensation [opt. simulated inst. illum.:
.IP
M0, M1, M2, A, C, D50 (def.), D50M2, D65, F5, F8, F10 or file.sp]
.TP
\fB\-i\fR illum
Choose illuminant for computation of CIE XYZ from spectral data & FWA:
.IP
A, C, D50 (def.), D50M2, D65, F5, F8, F10 or file.sp
.TP
\fB\-o\fR observ
Choose CIE Observer for spectral data:
.IP
1931_2 (def), 1964_10, S&B 1955_2, shaw, J&V 1978_2
.TP
\fB\-r\fR avgdev
Average deviation of device+instrument readings as a percentage (default 0.50%)
.TP
\fB\-s\fR src.icc
Apply gamut mapping to output profile perceptual B2A table for given source space
.TP
\fB\-S\fR src.icc
Apply gamut mapping to output profile perceptual and saturation B2A table
.TP
\fB\-nP\fR
Use colormetric source gamut to make output profile perceptual table
.TP
\fB\-nS\fR
Use colormetric source gamut to make output profile saturation table
.TP
\fB\-g\fR src.gam
Use source image gamut as well for output profile gamut mapping
.TP
\fB\-p\fR absprof,...
Incorporate abstract profile(s) into output tables
.TP
\fB\-t\fR intent
Override gamut mapping intent for output profile perceptual table:
.TP
\fB\-T\fR intent
Override gamut mapping intent for output profile saturation table:
.IP
a \- Absolute Colorimetric (in Jab) [ICC Absolute Colorimetric]
.IP
aw \- Absolute Colorimetric (in Jab) with scaling to fit white point
aa \- Absolute Appearance
.IP
r \- White Point Matched Appearance [ICC Relative Colorimetric]
.IP
la \- Luminance axis matched Appearance
.IP
p \- Perceptual (Preferred) (Default) [ICC Perceptual]
.IP
pa \- Perceptual Apperance
ms \- Saturation
.IP
s \- Enhanced Saturation [ICC Saturation]
.IP
al \- Absolute Colorimetric (Lab)
rl \- White Point Matched Appearance (Lab)
.TP
\fB\-c\fR viewcond
set input viewing conditions for output profile CIECAM02 gamut mapping,
.IP
either an enumerated choice, or a parameter
.TP
\fB\-d\fR viewcond
set output viewing conditions for output profile CIECAM02 gamut mapping
.IP
either an enumerated choice, or a parameter
Also sets out of gamut clipping CAM space.
either an enumerated choice, or a series of parameters:value changes
.IP
pp \- Practical Reflection Print (ISO\-3664 P2)
pe \- Print evaluation environment (CIE 116\-1995)
pc \- Critical print evaluation environment (ISO\-3664 P1)
mt \- Monitor in typical work environment
mb \- Bright monitor in bright work environment
md \- Monitor in darkened work environment
jm \- Projector in dim environment
jd \- Projector in dark environment
.IP
pcd \- Photo CD \- original scene outdoors
.IP
ob \- Original scene \- Bright Outdoors
cx \- Cut Sheet Transparencies on a viewing box
.TP
\fB\-P\fR
Create gamut gammap_p.wrl and gammap_s.wrl diagostics
.TP
\fB\-O\fR outputfile
Override the default output filename.
.TP
inoutfile
Base name for input.ti3/output.icc file