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Ignore:
Timestamp:
Oct 2, 2009, 5:10:19 PM (17 years ago)
Author:
eugene
Message:

merge changes from trunk

Location:
branches/eam_branches/20090820
Files:
2 edited

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  • branches/eam_branches/20090820

  • branches/eam_branches/20090820/psModules/src/objects/models/pmModel_PGAUSS.c

    r20001 r25766  
    11/******************************************************************************
    22 * this file defines the PGAUSS source shape model.  Note that these model functions are loaded
    3  * by pmModelGroup.c using 'include', and thus need no 'include' statements of their own.  The
     3 * by pmModelClass.c using 'include', and thus need no 'include' statements of their own.  The
    44 * models use a psVector to represent the set of parameters, with the sequence used to specify
    55 * the meaning of the parameter.  The meaning of the parameters may thus vary depending on the
    6  * specifics of the model.  All models which are used a PSF representations share a few
     6 * specifics of the model.  All models which are used as a PSF representations share a few
    77 * parameters, for which # define names are listed in pmModel.h:
    88
     
    1919 *****************************************************************************/
    2020
     21#include <stdio.h>
     22#include <pslib.h>
     23
     24#include "pmMoments.h"
     25#include "pmPeaks.h"
     26#include "pmSource.h"
     27#include "pmModel.h"
     28#include "pmModel_PGAUSS.h"
     29
    2130# define PM_MODEL_FUNC            pmModelFunc_PGAUSS
    2231# define PM_MODEL_FLUX            pmModelFlux_PGAUSS
     
    2736# define PM_MODEL_PARAMS_FROM_PSF pmModelParamsFromPSF_PGAUSS
    2837# define PM_MODEL_FIT_STATUS      pmModelFitStatus_PGAUSS
     38# define PM_MODEL_SET_LIMITS      pmModelSetLimits_PGAUSS
     39
     40// Lax parameter limits
     41static float paramsMinLax[] = { -1.0e3, 1.0e-2, -100, -100, 0.5, 0.5, -1.0 };
     42static float paramsMaxLax[] = { 1.0e5, 1.0e8, 1.0e4, 1.0e4, 100, 100, 1.0 };
     43
     44// Strict parameter limits
     45static float *paramsMinStrict = paramsMinLax;
     46static float *paramsMaxStrict = paramsMaxLax;
     47
     48// Parameter limits to use
     49static float *paramsMinUse = paramsMinLax;
     50static float *paramsMaxUse = paramsMaxLax;
     51static float betaUse[] = { 1000, 3e6, 5, 5, 2.0, 2.0, 0.5 };
     52
     53static bool limitsApply = true;         // Apply limits?
    2954
    3055// the model is a function of the pixel coordinate (pixcoord[0,1] = x,y)
     56// 0.5 PIX: the parameters are defined in terms of pixel coords, so the incoming pixcoords
     57// values need to be pixel coords
    3158psF32 PM_MODEL_FUNC(psVector *deriv,
    3259                    const psVector *params,
     
    6996bool PM_MODEL_LIMITS (psMinConstraintMode mode, int nParam, float *params, float *beta)
    7097{
    71     float beta_lim = 0, params_min = 0, params_max = 0;
    72     float f1 = 0, f2 = 0, q1 = 0, q2 = 0;
     98    if (!limitsApply) {
     99        return true;
     100    }
     101    psAssert(nParam >= 0 && nParam <= PM_PAR_7, "Parameter index is out of bounds");
    73102
    74103    // we need to calculate the limits for SXY specially
     104    float q2 = NAN;
    75105    if (nParam == PM_PAR_SXY) {
    76         f1 = 1.0 / PS_SQR(params[PM_PAR_SYY]) + 1.0 / PS_SQR(params[PM_PAR_SXX]);
    77         f2 = 1.0 / PS_SQR(params[PM_PAR_SYY]) - 1.0 / PS_SQR(params[PM_PAR_SXX]);
    78         q1 = PS_SQR(f1)*AR_RATIO - PS_SQR(f2);
    79         q1 = PS_MAX (0.0, q1);
     106        float f1 = 1.0 / PS_SQR(params[PM_PAR_SYY]) + 1.0 / PS_SQR(params[PM_PAR_SXX]);
     107        float f2 = 1.0 / PS_SQR(params[PM_PAR_SYY]) - 1.0 / PS_SQR(params[PM_PAR_SXX]);
     108        float q1 = PS_SQR(f1)*AR_RATIO - PS_SQR(f2);
     109        q1 = (q1 < 0.0) ? 0.0 : q1;
    80110        // if q1 < 0.0, f2 ~ f1, we have a very large axis ratio near 45deg..  Saturate at that
    81111        // angle and let f2,f1 fight it out
    82         q2  = 0.5*sqrt (q1);
     112        q2 = 0.5*sqrtf(q1);
    83113    }
    84114
    85115    switch (mode) {
    86     case PS_MINIMIZE_BETA_LIMIT:
    87         switch (nParam) {
    88         case PM_PAR_SKY:
    89             beta_lim = 1000;
    90             break;
    91         case PM_PAR_I0:
    92             beta_lim = 3e6;
    93             break;
    94         case PM_PAR_XPOS:
    95             beta_lim = 5;
    96             break;
    97         case PM_PAR_YPOS:
    98             beta_lim = 5;
    99             break;
    100         case PM_PAR_SXX:
    101             beta_lim = 2.0;
    102             break;
    103         case PM_PAR_SYY:
    104             beta_lim = 2.0;
    105             break;
    106         case PM_PAR_SXY:
    107             beta_lim =  0.5*q2;
    108             break;
    109         default:
    110             psAbort("invalid parameter %d for beta test", nParam);
    111         }
    112         if (fabs(beta[nParam]) > fabs(beta_lim)) {
    113             beta[nParam] = (beta[nParam] > 0) ? fabs(beta_lim) : -fabs(beta_lim);
    114             psTrace ("psModules.objects", 5, "|beta[nParam==%d]| > |beta_lim|; %g v. %g",
    115                      nParam, beta[nParam], beta_lim);
    116             return false;
    117         }
    118         return true;
    119     case PS_MINIMIZE_PARAM_MIN:
    120         switch (nParam) {
    121         case PM_PAR_SKY:
    122             params_min = -1000;
    123             break;
    124         case PM_PAR_I0:
    125             params_min =  0.01;
    126             break;
    127         case PM_PAR_XPOS:
    128             params_min =  -100;
    129             break;
    130         case PM_PAR_YPOS:
    131             params_min =  -100;
    132             break;
    133         case PM_PAR_SXX:
    134             params_min =   0.5;
    135             break;
    136         case PM_PAR_SYY:
    137             params_min =   0.5;
    138             break;
    139         case PM_PAR_SXY:
    140             params_min =   -q2;
    141             break;
    142         default:
    143             psAbort("invalid parameter %d for param min test", nParam);
    144         }
    145         if (params[nParam] < params_min) {
    146             params[nParam] = params_min;
    147             psTrace ("psModules.objects", 5, "params[nParam==%d] < params_min; %g v. %g",
    148                      nParam, params[nParam], params_min);
    149             return false;
    150         }
    151         return true;
    152     case PS_MINIMIZE_PARAM_MAX:
    153         switch (nParam) {
    154         case PM_PAR_SKY:
    155             params_max =   1e5;
    156             break;
    157         case PM_PAR_I0:
    158             params_max =   1e8;
    159             break;
    160         case PM_PAR_XPOS:
    161             params_max =   1e4;
    162             break;
    163         case PM_PAR_YPOS:
    164             params_max =   1e4;
    165             break;
    166         case PM_PAR_SXX:
    167             params_max =   100;
    168             break;
    169         case PM_PAR_SYY:
    170             params_max =   100;
    171             break;
    172         case PM_PAR_SXY:
    173             params_max =   +q2;
    174             break;
    175         default:
    176             psAbort("invalid parameter %d for param max test", nParam);
    177         }
    178         if (params[nParam] > params_max) {
    179             params[nParam] = params_max;
    180             psTrace ("psModules.objects", 5, "params[nParam==%d] > params_max; %g v. %g",
    181                      nParam, params[nParam], params_max);
    182             return false;
    183         }
    184         return true;
    185     default:
     116      case PS_MINIMIZE_BETA_LIMIT: {
     117          psAssert(beta, "Require beta to limit beta");
     118          float limit = betaUse[nParam];
     119          if (nParam == PM_PAR_SXY) {
     120              limit *= q2;
     121          }
     122          if (fabs(beta[nParam]) > fabs(limit)) {
     123              beta[nParam] = (beta[nParam] > 0) ? fabs(limit) : -fabs(limit);
     124              psTrace("psModules.objects", 5, "|beta[nParam==%d]| > |beta_lim|; %g v. %g",
     125                      nParam, beta[nParam], limit);
     126              return false;
     127          }
     128          return true;
     129      }
     130      case PS_MINIMIZE_PARAM_MIN: {
     131          psAssert(params, "Require parameters to limit parameters");
     132          psAssert(paramsMinUse, "Require parameter limits to limit parameters");
     133          float limit = paramsMinUse[nParam];
     134          if (nParam == PM_PAR_SXY) {
     135              limit *= q2;
     136          }
     137          if (params[nParam] < limit) {
     138              params[nParam] = limit;
     139              psTrace("psModules.objects", 5, "params[nParam==%d] < params_min; %g v. %g",
     140                      nParam, params[nParam], limit);
     141              return false;
     142          }
     143          return true;
     144      }
     145      case PS_MINIMIZE_PARAM_MAX: {
     146          psAssert(params, "Require parameters to limit parameters");
     147          psAssert(paramsMaxUse, "Require parameter limits to limit parameters");
     148          float limit = paramsMaxUse[nParam];
     149          if (nParam == PM_PAR_SXY) {
     150              limit *= q2;
     151          }
     152          if (params[nParam] > limit) {
     153              params[nParam] = limit;
     154              psTrace("psModules.objects", 5, "params[nParam==%d] > params_max; %g v. %g",
     155                      nParam, params[nParam], limit);
     156              return false;
     157          }
     158          return true;
     159      }
     160      default:
    186161        psAbort("invalid choice for limits");
    187162    }
     
    190165}
    191166
     167
    192168// make an initial guess for parameters
     169// 0.5 PIX: moments and peaks are in pixel coords, thus so are model parameters
    193170bool PM_MODEL_GUESS (pmModel *model, pmSource *source)
    194171{
     
    205182    psEllipseShape shape = psEllipseAxesToShape (axes);
    206183
    207     PAR[PM_PAR_SKY]  = moments->Sky;
     184    PAR[PM_PAR_SKY]  = 0.0;
    208185    PAR[PM_PAR_I0]   = peak->flux;
    209186    PAR[PM_PAR_XPOS] = peak->xf;
     
    284261    // choose a z value guaranteed to be beyond our limit
    285262    float z0 = pow((1.0 / limit), (1.0 / 3.0));
     263    psAssert (isfinite(z0), "fix this code: z0 should not be nan for %f", PAR[PM_PAR_I0]);
    286264    float z1 = (1.0 / limit);
     265    psAssert (isfinite(z1), "fix this code: z1 should not be nan for %f", PAR[PM_PAR_I0]);
    287266    z1 = PS_MAX (z0, z1);
    288267    z0 = 0.0;
     
    415394bool PM_MODEL_FIT_STATUS (pmModel *model)
    416395{
    417     psF32 dP;
    418396    bool  status;
    419397
     
    421399    psF32 *dPAR = model->dparams->data.F32;
    422400
    423     dP = 0;
    424     dP += PS_SQR(dPAR[PM_PAR_SXX] / PAR[PM_PAR_SXX]);
    425     dP += PS_SQR(dPAR[PM_PAR_SYY] / PAR[PM_PAR_SYY]);
    426     dP = sqrt (dP);
    427 
    428401    status = true;
    429     status &= (dP < 0.5);
    430402    status &= (PAR[PM_PAR_I0] > 0);
    431403    status &= ((dPAR[PM_PAR_I0]/PAR[PM_PAR_I0]) < 0.5);
    432404
    433405    return status;
     406}
     407
     408
     409void PM_MODEL_SET_LIMITS(pmModelLimitsType type)
     410{
     411    switch (type) {
     412      case PM_MODEL_LIMITS_NONE:
     413        paramsMinUse = NULL;
     414        paramsMaxUse = NULL;
     415        limitsApply = true;
     416        break;
     417      case PM_MODEL_LIMITS_IGNORE:
     418        paramsMinUse = NULL;
     419        paramsMaxUse = NULL;
     420        limitsApply = false;
     421        break;
     422      case PM_MODEL_LIMITS_LAX:
     423        paramsMinUse = paramsMinLax;
     424        paramsMaxUse = paramsMaxLax;
     425        limitsApply = true;
     426        break;
     427      case PM_MODEL_LIMITS_STRICT:
     428        paramsMinUse = paramsMinStrict;
     429        paramsMaxUse = paramsMaxStrict;
     430        limitsApply = true;
     431        break;
     432      default:
     433        psAbort("Unrecognised model limits type: %x", type);
     434    }
     435    return;
    434436}
    435437
     
    442444# undef PM_MODEL_PARAMS_FROM_PSF
    443445# undef PM_MODEL_FIT_STATUS
     446# undef PM_MODEL_SET_LIMITS
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