Optimize code for exposure-vibrance and denoise-impulse

This commit is contained in:
Desmis 2018-02-09 11:12:54 +01:00
parent f8987c0cb6
commit 74ffd741f9
2 changed files with 53 additions and 34 deletions

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@ -255,9 +255,9 @@ public:
void transform(Imagefloat* original, Imagefloat* transformed, int cx, int cy, int sx, int sy, int oW, int oH, int fW, int fH, const FramesMetaData *metadata, int rawRotationDeg, bool fullImage); void transform(Imagefloat* original, Imagefloat* transformed, int cx, int cy, int sx, int sy, int oW, int oH, int fW, int fH, const FramesMetaData *metadata, int rawRotationDeg, bool fullImage);
float resizeScale(const ProcParams* params, int fw, int fh, int &imw, int &imh); float resizeScale(const ProcParams* params, int fw, int fh, int &imw, int &imh);
void lab2monitorRgb(LabImage* lab, Image8* image); void lab2monitorRgb(LabImage* lab, Image8* image);
void resize (Imagefloat* src, Imagefloat* dst, float dScale); void resize(Imagefloat* src, Imagefloat* dst, float dScale);
void Lanczos(const LabImage* src, LabImage* dst, float scale); void Lanczos(const LabImage* src, LabImage* dst, float scale);
void Lanczos (const Imagefloat* src, Imagefloat* dst, float scale); void Lanczos(const Imagefloat* src, Imagefloat* dst, float scale);
void deconvsharpening(float** luminance, float** buffer, int W, int H, const SharpeningParams &sharpenParam); void deconvsharpening(float** luminance, float** buffer, int W, int H, const SharpeningParams &sharpenParam);
void deconvsharpeningloc(float** luminance, float** buffer, int W, int H, float** loctemp, int damp, double radi, int ite, int amo); void deconvsharpeningloc(float** luminance, float** buffer, int W, int H, float** loctemp, int damp, double radi, int ite, int amo);
@ -311,15 +311,14 @@ public:
void InverseContrast_Local(float ave, struct local_contra & lco, const struct local_params & lp, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, LabImage * original, LabImage * transformed, int cx, int cy, int sk); void InverseContrast_Local(float ave, struct local_contra & lco, const struct local_params & lp, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, LabImage * original, LabImage * transformed, int cx, int cy, int sk);
void vibrancelocal(int bfw, int bfh, LabImage* lab, LabImage* dest, bool & localskutili, LUTf & sklocalcurve); void vibrancelocal(int bfw, int bfh, LabImage* lab, LabImage* dest, bool & localskutili, LUTf & sklocalcurve);
void Expose_Local(float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk); void Expo_vibr_Local(int senstype, float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk);
void exlabLocal(const local_params& lp, int bfh, int bfw, LabImage* bufexporig, LabImage* lab, LUTf & hltonecurve, LUTf & shtonecurve, LUTf & tonecurve); void exlabLocal(const local_params& lp, int bfh, int bfw, LabImage* bufexporig, LabImage* lab, LUTf & hltonecurve, LUTf & shtonecurve, LUTf & tonecurve);
void Exclude_Local(int sen, float **deltaso, float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, LabImage * rsv, int cx, int cy, int sk); void Exclude_Local(int sen, float **deltaso, float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, LabImage * rsv, int cx, int cy, int sk);
void vibrance_Local(float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk); // void vibrance_Local(float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk);
//void DeNoise_Local(int call, const struct local_params& lp, LabImage* original, LabImage* transformed, const LabImage &tmp1, int cx, int cy);
// void ColorLight_Local(int call, LabImage * bufcolorig, float **buflight, float **bufchro, float **bufchroslid, float ** bufhh, float ** buflightslid, bool &LHutili, bool &HHutili, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, LUTf & lllocalcurve, const LocLHCurve & loclhCurve, const LocHHCurve & lochhCurve, const local_params& lp, LabImage* original, LabImage* transformed, int cx, int cy); // void ColorLight_Local(int call, LabImage * bufcolorig, float **buflight, float **bufchro, float **bufchroslid, float ** bufhh, float ** buflightslid, bool &LHutili, bool &HHutili, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, LUTf & lllocalcurve, const LocLHCurve & loclhCurve, const LocHHCurve & lochhCurve, const local_params& lp, LabImage* original, LabImage* transformed, int cx, int cy);
void DeNoise_Local(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, const LabImage &tmp1, int cx, int cy, int sk); void DeNoise_Local(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, LabImage &tmp1, int cx, int cy, int sk);
void DeNoise_Local_imp(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, LabImage* tmp1, int cx, int cy, int sk); // void DeNoise_Local_imp(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, LabImage* tmp1, int cx, int cy, int sk);
void fftw_denoise(int GW, int GH, int max_numblox_W, int min_numblox_W, float **tmp1, array2D<float> *Lin, int numThreads, const struct local_params & lp, int chrom); void fftw_denoise(int GW, int GH, int max_numblox_W, int min_numblox_W, float **tmp1, array2D<float> *Lin, int numThreads, const struct local_params & lp, int chrom);
@ -409,8 +408,8 @@ public:
void localContrast(LabImage *lab); void localContrast(LabImage *lab);
void colorToningLabGrid(LabImage *lab, int xstart, int xend, int ystart, int yend, bool MultiThread); void colorToningLabGrid(LabImage *lab, int xstart, int xend, int ystart, int yend, bool MultiThread);
Image8* lab2rgb (LabImage* lab, int cx, int cy, int cw, int ch, const procparams::ColorManagementParams &icm, bool consider_histogram_settings=true); Image8* lab2rgb(LabImage* lab, int cx, int cy, int cw, int ch, const procparams::ColorManagementParams &icm, bool consider_histogram_settings = true);
Imagefloat* lab2rgbOut (LabImage* lab, int cx, int cy, int cw, int ch, const procparams::ColorManagementParams &icm, GammaValues *ga = nullptr); Imagefloat* lab2rgbOut(LabImage* lab, int cx, int cy, int cw, int ch, const procparams::ColorManagementParams &icm, GammaValues *ga = nullptr);
// CieImage *ciec; // CieImage *ciec;
bool transCoord(int W, int H, int x, int y, int w, int h, int& xv, int& yv, int& wv, int& hv, double ascaleDef = -1, const LensCorrection *pLCPMap = nullptr); bool transCoord(int W, int H, int x, int y, int w, int h, int& xv, int& yv, int& wv, int& hv, double ascaleDef = -1, const LensCorrection *pLCPMap = nullptr);

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@ -1873,7 +1873,7 @@ void ImProcFunctions::addGaNoise(LabImage *lab, LabImage *dst, const float mean,
} }
} }
} }
/*
void ImProcFunctions::DeNoise_Local_imp(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, LabImage* tmp1, int cx, int cy, int sk) void ImProcFunctions::DeNoise_Local_imp(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, LabImage* tmp1, int cx, int cy, int sk)
{ {
// local denoise // local denoise
@ -2053,7 +2053,7 @@ void ImProcFunctions::DeNoise_Local_imp(int call, const struct local_params& lp,
float factorx = localFactor; float factorx = localFactor;
float difL, difa, difb; float difL, difa, difb;
if (call == 2 /*|| call == 1 || call == 3 */) { //simpleprocess if (call == 2 ) { //simpleprocess
difL = tmp1->L[loy - begy][lox - begx] - original->L[y][x]; difL = tmp1->L[loy - begy][lox - begx] - original->L[y][x];
difa = tmp1->a[loy - begy][lox - begx] - original->a[y][x]; difa = tmp1->a[loy - begy][lox - begx] - original->a[y][x];
difb = tmp1->b[loy - begy][lox - begx] - original->b[y][x]; difb = tmp1->b[loy - begy][lox - begx] - original->b[y][x];
@ -2076,7 +2076,7 @@ void ImProcFunctions::DeNoise_Local_imp(int call, const struct local_params& lp,
case 2: { // inside selection => full effect, no transition case 2: { // inside selection => full effect, no transition
float difL, difa, difb; float difL, difa, difb;
if (call == 2 /*|| call == 1 || call == 3 */) { //simpleprocess if (call == 2 ) { //simpleprocess
difL = tmp1->L[loy - begy][lox - begx] - original->L[y][x]; difL = tmp1->L[loy - begy][lox - begx] - original->L[y][x];
difa = tmp1->a[loy - begy][lox - begx] - original->a[y][x]; difa = tmp1->a[loy - begy][lox - begx] - original->a[y][x];
difb = tmp1->b[loy - begy][lox - begx] - original->b[y][x]; difb = tmp1->b[loy - begy][lox - begx] - original->b[y][x];
@ -2104,12 +2104,12 @@ void ImProcFunctions::DeNoise_Local_imp(int call, const struct local_params& lp,
} }
*/
void ImProcFunctions::DeNoise_Local(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, LabImage &tmp1, int cx, int cy, int sk)
void ImProcFunctions::DeNoise_Local(int call, const struct local_params& lp, int levred, float hueplus, float huemoins, float hueref, float dhueden, LabImage* original, LabImage* transformed, const LabImage &tmp1, int cx, int cy, int sk)
{ {
// local denoise // local denoise and impulse
//simple algo , perhaps we can improve as the others, but noise is here and not good for hue detection //simple algo , perhaps we can improve as the others, but noise is here and not good for hue detection
// BENCHFUN // BENCHFUN
const float ach = (float)lp.trans / 100.f; const float ach = (float)lp.trans / 100.f;
@ -5616,6 +5616,7 @@ void ImProcFunctions::Sharp_Local(int call, float **loctemp, const float hueplus
void ImProcFunctions::Exclude_Local(int sen, float **deltaso, float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, LabImage * rsv, int cx, int cy, int sk) void ImProcFunctions::Exclude_Local(int sen, float **deltaso, float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, LabImage * rsv, int cx, int cy, int sk)
{ {
//perhaps we can group with expo_vib_Local ?? but I prefer keep as that for now
BENCHFUN { BENCHFUN {
const float ach = (float)lp.trans / 100.f; const float ach = (float)lp.trans / 100.f;
@ -6052,11 +6053,11 @@ void ImProcFunctions::Exclude_Local(int sen, float **deltaso, float **buflight,
} }
} }
/*
void ImProcFunctions::vibrance_Local(float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk) void ImProcFunctions::vibrance_Local(float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk)
{ {
//local exposure //local vibran
BENCHFUN { BENCHFUN {
const float ach = (float)lp.trans / 100.f; const float ach = (float)lp.trans / 100.f;
float varsens = lp.sensv; float varsens = lp.sensv;
@ -6317,16 +6318,6 @@ void ImProcFunctions::vibrance_Local(float **buflight, float **bufchro, const fl
kzon = true; kzon = true;
} }
/*
//printf("re=%f", realstrch);
if (realstrch > maxc) {
maxc = realstrch;
}
if (realstrch < minc) {
minc = realstrch;
}
*/
//shape detection for hue chroma and luma //shape detection for hue chroma and luma
if (varsens <= 20.f) { //to try... if (varsens <= 20.f) { //to try...
@ -6461,16 +6452,26 @@ void ImProcFunctions::vibrance_Local(float **buflight, float **bufchro, const fl
} }
} }
*/
void ImProcFunctions::Expo_vibr_Local(int senstype, float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk)
void ImProcFunctions::Expose_Local(float **buflight, float **bufchro, const float hueplus, const float huemoins, const float hueref, const float dhue, const float chromaref, const float lumaref, const struct local_params & lp, LabImage * original, LabImage * transformed, const LabImage * const tmp1, int cx, int cy, int sk)
{ {
//local exposure //local exposure and vibrance
BENCHFUN { BENCHFUN {
const float ach = (float)lp.trans / 100.f; const float ach = (float)lp.trans / 100.f;
float varsens = lp.sensex; float varsens = lp.sensex;
if (senstype == 1) //exposure
{
varsens = lp.sensex;
}
if (senstype == 2) //vibrance
{
varsens = lp.sensv;
}
//chroma //chroma
constexpr float amplchsens = 2.5f; constexpr float amplchsens = 2.5f;
constexpr float achsens = (amplchsens - 1.f) / (100.f - 20.f); //20. default locallab.sensih constexpr float achsens = (amplchsens - 1.f) / (100.f - 20.f); //20. default locallab.sensih
@ -9872,7 +9873,25 @@ void ImProcFunctions::Lab_Local(int call, int maxspot, int sp, LUTf & huerefs, L
ImProcFunctions::impulse_nr(bufwv, thr); ImProcFunctions::impulse_nr(bufwv, thr);
} }
DeNoise_Local_imp(call, lp, levred, hueplus, huemoins, huerefblur, dhueden, original, transformed, bufwv, cx, cy, sk); LabImage tmp1(bufwv->W, bufwv->H);
//copy bufwv to tmp1 to use same algo for Denoise_local and DeNoise_Local_imp
#ifdef _OPENMP
#pragma omp parallel for schedule(dynamic,16)
#endif
for (int ir = 0; ir < bufwv->H; ir++)
for (int jr = 0; jr < bufwv->W; jr++) {
tmp1.L[ir][jr] = bufwv->L[ir][jr];
tmp1.a[ir][jr] = bufwv->a[ir][jr];
tmp1.b[ir][jr] = bufwv->b[ir][jr];
}
// DeNoise_Local_imp(call, lp, levred, hueplus, huemoins, huerefblur, dhueden, original, transformed, bufwv, cx, cy, sk);
DeNoise_Local(call, lp, levred, hueplus, huemoins, huerefblur, dhueden, original, transformed, tmp1, cx, cy, sk);
delete bufwv; delete bufwv;
} }
@ -11609,8 +11628,8 @@ void ImProcFunctions::Lab_Local(int call, int maxspot, int sp, LUTf & huerefs, L
} }
} }
Expose_Local(buflight, bufl_ab, hueplus, huemoins, hueref, dhueex, chromaref, lumaref, lp, original, transformed, bufexpfin, cx, cy, sk); Expo_vibr_Local(1, buflight, bufl_ab, hueplus, huemoins, hueref, dhueex, chromaref, lumaref, lp, original, transformed, bufexpfin, cx, cy, sk);
//call Expo_vibr_Local with first parameter = 1 for exposure
} }
if (call <= 3) { if (call <= 3) {
@ -11728,7 +11747,8 @@ void ImProcFunctions::Lab_Local(int call, int maxspot, int sp, LUTf & huerefs, L
} }
} }
vibrance_Local(buflight, bufl_ab, hueplus, huemoins, hueref, dhuev, chromaref, lumaref, lp, original, transformed, bufexpfin, cx, cy, sk); Expo_vibr_Local(2, buflight, bufl_ab, hueplus, huemoins, hueref, dhuev, chromaref, lumaref, lp, original, transformed, bufexpfin, cx, cy, sk);
//call Expo_vibr_Local with first parameter = 2 for vibrance
} }