change exposure with Laplacian

This commit is contained in:
Desmis
2020-07-05 08:33:40 +02:00
parent b251b7318b
commit fd43ed28fe
5 changed files with 48 additions and 14 deletions

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@@ -2492,13 +2492,13 @@ TP_LOCALLAB_EXPLAP_TOOLTIP;The more you act on this threshold slider, the greate
TP_LOCALLAB_EXPMERGEFILE_TOOLTIP;Allows various possibilities to blend image (as layers in Photosshop) : difference, multiply, soft light, overlay...with opacity...\nOriginal Image : merge current RT-spot with Original.\nPrevious spot : merge current Rt-spot with previous - if there is only one spot previous = original.\nBackground : merge current RT-spot with a color and luminance background (less possibilties)
TP_LOCALLAB_EXPMETHOD_TOOLTIP;Standard : use an algorithm similar as main Exposure but in L*a*b* and taking account of deltaE.\n\nLaplacian & PDE : use another algorithm also with deltaE and with Poisson equation to solve Laplacian in Fourier space.\nPDE IPOL, PDE Fattal and Standard can be combined.\nFFTW Fourier Transform is optimized in size to reduce processing time.\nPDE reduce artifacts and noise.
TP_LOCALLAB_EXPNOISEMETHOD_TOOLTIP;Apply a median before Laplace transform to prevent artifacts (noise).\nYou can also use "Denoise" tool.
TP_LOCALLAB_EXPOSE;Exposure - PDE algorithms
TP_LOCALLAB_EXPOSE;PDE algorithms & Exposure
TP_LOCALLAB_EXPOSURE_TOOLTIP;In some cases (strong shadows ..) you can use others modules "Shadows Highlights", "Tone equalizer", "TRC", "Encoding Log"...
TP_LOCALLAB_EXPRETITOOLS;Advanced Retinex Tools
TP_LOCALLAB_EXPSHARP_TOOLTIP;RT-Spot minimum 39*39.\nUse low transition values and high decay transition values and scope to simulate small RT-spot.
TP_LOCALLAB_EXPTOOL;Tools exposure
TP_LOCALLAB_EXPTRC;Tone Response Curve - TRC
TP_LOCALLAB_EXP_TOOLNAME;Exposure - Dynamic Range Compression - 10
TP_LOCALLAB_EXP_TOOLNAME;Laplacian PDE -Dynamic Range Compression & Exposure- 10
TP_LOCALLAB_FATAMOUNT;Amount
TP_LOCALLAB_FATANCHOR;Anchor
TP_LOCALLAB_FATANCHORA;Offset