** This is part of the CTSim program
** Copyright (C) 1983-2000 Kevin Rosenberg
**
-** $Id: backprojectors.cpp,v 1.1 2000/06/19 02:59:34 kevin Exp $
+** $Id: backprojectors.cpp,v 1.4 2000/06/25 17:32:24 kevin Exp $
**
** This program is free software; you can redistribute it and/or modify
** it under the terms of the GNU General Public License (version 2) as
#include "ct.h"
+Backprojector::Backprojector (const Projections& proj, ImageFile& im, const char* const backprojName, const char* const interpName)
+{
+ m_fail = false;
+ m_pBackprojectImplem = NULL;
+
+ initBackprojector (proj, im, backprojName, interpName);
+}
+
+void
+Backprojector::BackprojectView (const double* const viewData, const double viewAngle)
+{
+ if (m_pBackprojectImplem)
+ m_pBackprojectImplem->BackprojectView (viewData, viewAngle);
+}
+
+Backprojector::~Backprojector (void)
+{
+ delete m_pBackprojectImplem;
+}
// FUNCTION IDENTIFICATION
// Backproject* projector = selectBackprojector (...)
// Selects a backprojector based on BackprojType
// and initializes the backprojector
-Backproject* selectBackprojector (BackprojType bjType, const Projections& proj, ImageFile& im, InterpolationType interpType)
+bool
+Backprojector::initBackprojector (const Projections& proj, ImageFile& im, const char* const backprojName, const char* const interpName)
{
- Backproject* bj = NULL;
-
- if (bjType == O_BPROJ_TRIG)
- bj = static_cast<Backproject*>(new BackprojectTrig (proj, im, interpType));
- else if (bjType == O_BPROJ_TABLE)
- bj = static_cast<Backproject*>(new BackprojectTable (proj, im, interpType));
- else if (bjType == O_BPROJ_DIFF)
- bj = static_cast<Backproject*>(new BackprojectDiff (proj, im, interpType));
- else if (bjType == O_BPROJ_DIFF2)
- bj = static_cast<Backproject*>(new BackprojectDiff2 (proj, im, interpType));
- else if (bjType == O_BPROJ_IDIFF2)
- bj = static_cast<Backproject*>(new BackprojectIntDiff2 (proj, im, interpType));
- else
- sys_error (ERR_WARNING, "Illegal backproject type %d [selectBackprojector]");
-
- return (bj);
+ m_nameBackproject = backprojName;
+ m_nameInterpolation = interpName;
+ m_pBackprojectImplem = NULL;
+ m_idBackproject = convertBackprojectNameToID (backprojName);
+ if (m_idBackproject == BPROJ_INVALID) {
+ m_fail = true;
+ m_failMessage = "Invalid backprojection name ";
+ m_failMessage += backprojName;
+ }
+ m_idInterpolation = convertInterpolationNameToID (interpName);
+ if (m_idInterpolation == INTERP_INVALID) {
+ m_fail = true;
+ m_failMessage = "Invalid interpolation name ";
+ m_failMessage += interpName;
+ }
+
+ if (m_fail || m_idBackproject == BPROJ_INVALID || m_idInterpolation == INTERP_INVALID) {
+ m_fail = true;
+ return false;
+ }
+
+ if (m_idBackproject == BPROJ_TRIG)
+ m_pBackprojectImplem = static_cast<Backproject*>(new BackprojectTrig (proj, im, m_idInterpolation));
+ else if (m_idBackproject == BPROJ_TABLE)
+ m_pBackprojectImplem = static_cast<Backproject*>(new BackprojectTable (proj, im, m_idInterpolation));
+ else if (m_idBackproject == BPROJ_DIFF)
+ m_pBackprojectImplem = static_cast<Backproject*>(new BackprojectDiff (proj, im, m_idInterpolation));
+ else if (m_idBackproject == BPROJ_DIFF2)
+ m_pBackprojectImplem = static_cast<Backproject*>(new BackprojectDiff2 (proj, im, m_idInterpolation));
+ else if (m_idBackproject == BPROJ_IDIFF2)
+ m_pBackprojectImplem = static_cast<Backproject*>(new BackprojectIntDiff2 (proj, im, m_idInterpolation));
+ else {
+ m_fail = true;
+ m_failMessage = "Unable to select a backprojection method [Backprojector::initBackprojector]";
+ return false;
+ }
+
+ return true;
+}
+
+
+const Backprojector::BackprojectID
+Backprojector::convertBackprojectNameToID (const char* const backprojName)
+{
+ BackprojectID backprojID = BPROJ_INVALID;
+
+ if (strcasecmp (backprojName, BPROJ_TRIG_STR) == 0)
+ backprojID = BPROJ_TRIG;
+ else if (strcasecmp (backprojName, BPROJ_TABLE_STR) == 0)
+ backprojID = BPROJ_TABLE;
+ else if (strcasecmp (backprojName, BPROJ_DIFF_STR) == 0)
+ backprojID = BPROJ_DIFF;
+ else if (strcasecmp (backprojName, BPROJ_DIFF2_STR) == 0)
+ backprojID = BPROJ_DIFF2;
+ else if (strcasecmp (backprojName, BPROJ_IDIFF2_STR) == 0)
+ backprojID = BPROJ_IDIFF2;
+
+ return (backprojID);
+}
+
+const char*
+Backprojector::convertBackprojectIDToName (const BackprojectID bprojID)
+{
+ const char *bprojName = "";
+
+ if (bprojID == BPROJ_TRIG)
+ bprojName = BPROJ_TRIG_STR;
+ else if (bprojID == BPROJ_TABLE)
+ bprojName = BPROJ_TABLE_STR;
+ else if (bprojID == BPROJ_DIFF)
+ bprojName = BPROJ_DIFF_STR;
+ else if (bprojID == BPROJ_DIFF2)
+ bprojName = BPROJ_DIFF2_STR;
+ else if (bprojID == BPROJ_IDIFF2)
+ bprojName = BPROJ_IDIFF2_STR;
+
+ return (bprojName);
+}
+
+
+
+const Backprojector::InterpolationID
+Backprojector::convertInterpolationNameToID (const char* const interpName)
+{
+ InterpolationID interpID = INTERP_INVALID;
+
+ if (strcasecmp (interpName, INTERP_NEAREST_STR) == 0)
+ interpID = INTERP_NEAREST;
+ else if (strcasecmp (interpName, INTERP_LINEAR_STR) == 0)
+ interpID = INTERP_LINEAR;
+#if HAVE_BSPLINE_INTERP
+ else if (strcasecmp (interpName, INTERP_BSPLINE_STR) == 0)
+ interpID = INTERP_BSPLINE;
+#endif
+
+ return (interpID);
+}
+
+
+/* NAME
+ * name_of_interp Return name of interpolation method
+ *
+ * SYNOPSIS
+ * name = name_of_interp (interp_type)
+ * char *name Name of interpolation method
+ * int interp_type Method of interpolation
+ *
+ * NOTES
+ * Returns NULL if interp_type is invalid
+ */
+
+const char*
+Backprojector::convertInterpolationIDToName (const InterpolationID interpID)
+{
+ if (interpID == INTERP_NEAREST)
+ return (INTERP_NEAREST_STR);
+ else if (interpID == INTERP_LINEAR)
+ return (INTERP_LINEAR_STR);
+#if HAVE_BSPLINE_INTERP
+ else if (interpID == INTERP_BSPLINE)
+ return (INTERP_BSPLINE_STR);
+#endif
+ else
+ return ("");
}
// PURPOSE
// Pure virtual base class for all backprojectors.
-Backproject::Backproject (const Projections& proj, ImageFile& im, const InterpolationType interpType)
+Backproject::Backproject (const Projections& proj, ImageFile& im, const Backprojector::InterpolationID interpType)
: proj(proj), im(im), interpType(interpType)
{
detInc = proj.detInc();
xInc = (xMax - xMin) / nx; // size of cells
yInc = (yMax - yMin) / ny;
- if (interpType != I_NEAREST && interpType != I_LINEAR)
+ if (interpType != Backprojector::INTERP_NEAREST && interpType != Backprojector::INTERP_LINEAR)
sys_error (ERR_WARNING, "Illegal interpType %d [selectBackprojector]", interpType);
}
double phi = atan2 (y, x); // angle of cell from center
double L = r * cos (theta - phi); // position on detector
- if (interpType == I_NEAREST) {
+ if (interpType == Backprojector::INTERP_NEAREST) {
int iDetPos = iDetCenter + nearest<int> (L / detInc); // calc'd index in the filter raysum array
if (iDetPos < 0 || iDetPos >= nDet) // check for impossible: index outside of raysum pos
errorIndexOutsideDetector (ix, iy, theta, r, phi, L, iDetPos);
else
v[ix][iy] += rotInc * filteredProj[iDetPos];
- } else if (interpType == I_LINEAR) {
+ } else if (interpType == Backprojector::INTERP_LINEAR) {
double p = L / detInc; // position along detector
double pFloor = floor (p);
int iDetPos = iDetCenter + static_cast<int>(pFloor);
// PURPOSE
// Precalculates trigometric function value for each point in image for backprojection.
-BackprojectTable::BackprojectTable (const Projections& proj, ImageFile& im, InterpolationType interpType)
+BackprojectTable::BackprojectTable (const Projections& proj, ImageFile& im, Backprojector::InterpolationID interpType)
: Backproject::Backproject (proj, im, interpType)
{
arrayR.initSetSize (nx, ny);
for (int iy = 0; iy < ny; iy++) {
double L = r[ix][iy] * cos (theta - phi[ix][iy]);
- if (interpType == I_NEAREST) {
+ if (interpType == Backprojector::INTERP_NEAREST) {
int iDetPos = iDetCenter + nearest<int>(L / detInc); // calc index in the filtered raysum vector
if (iDetPos < 0 || iDetPos >= nDet) // check for impossible: index outside of raysum pos
errorIndexOutsideDetector (ix, iy, theta, r[ix][iy], phi[ix][iy], L, iDetPos);
else
pImCol[iy] += filteredProj[iDetPos];
- } else if (interpType == I_LINEAR) {
+ } else if (interpType == Backprojector::INTERP_LINEAR) {
double dPos = L / detInc; // position along detector
double dPosFloor = floor (dPos);
int iDetPos = iDetCenter + static_cast<int>(dPosFloor);
// Backprojects by precalculating the change in L position for each x & y step in the image.
// Iterates in x & y direction by adding difference in L position
-BackprojectDiff::BackprojectDiff (const Projections& proj, ImageFile& im, InterpolationType interpType)
+BackprojectDiff::BackprojectDiff (const Projections& proj, ImageFile& im, Backprojector::InterpolationID interpType)
: Backproject::Backproject (proj, im, interpType)
{
// calculate center of first pixel v[0][0]
#ifdef DEBUG
printf ("[%2d,%2d]: %8.5lf ", ix, iy, curDetPos);
#endif
- if (interpType == I_NEAREST) {
+ if (interpType == Backprojector::INTERP_NEAREST) {
int iDetPos = iDetCenter + nearest<int>(curDetPos / detInc); // calc index in the filtered raysum vector
if (iDetPos < 0 || iDetPos >= nDet) // check for impossible: index outside of raysum pos
errorIndexOutsideDetector (ix, iy, theta, curDetPos, iDetPos);
else
pImCol[iy] += filteredProj[iDetPos];
- } else if (interpType == I_LINEAR) {
+ } else if (interpType == Backprojector::INTERP_LINEAR) {
double detPos = curDetPos / detInc; // position along detector
double detPosFloor = floor (detPos);
int iDetPos = iDetCenter + static_cast<int>(detPosFloor);
#ifdef DEBUG
printf ("[%2d,%2d]: %8.5f %8.5f\n", ix, iy, curDetPos, filteredProj[iDetCenter + nearest<int>(L))]);
#endif
- if (interpType == I_NEAREST) {
+ if (interpType == Backprojector::INTERP_NEAREST) {
int iDetPos = iDetCenter + nearest<int> (curDetPos); // calc index in the filtered raysum vector
if (iDetPos < 0 || iDetPos >= nDet) // check for impossible: index outside of raysum pos
errorIndexOutsideDetector (ix, iy, theta, curDetPos, iDetPos);
else
*pImCol++ += filteredProj[iDetPos];
- } else if (interpType == I_LINEAR) {
+ } else if (interpType == Backprojector::INTERP_LINEAR) {
double detPosFloor = floor (curDetPos);
int iDetPos = iDetCenter + static_cast<int>(detPosFloor);
double frac = curDetPos - detPosFloor; // fraction distance from det
{
double theta = - view_angle; // add half PI to view angle to get perpendicular theta angle
-#if SIZEOF_LONG == 8
- long int scale = 1 << 32;
-#else
- long int scale = 1 << 16;
-#endif
+ kint32 scale = 1 << 16;
double dScale = scale;
- long int halfScale = scale / 2;
+ kint32 halfScale = scale / 2;
- long int det_dx = nearest<long int> (xInc * sin (theta) / detInc * scale);
- long int det_dy = nearest<long int> (yInc * cos (theta) / detInc * scale);
+ kint32 det_dx = nearest<kint32> (xInc * sin (theta) / detInc * scale);
+ kint32 det_dy = nearest<kint32> (yInc * cos (theta) / detInc * scale);
// calculate L for first point in image (0, 0)
- long int detPosColStart = nearest<long int> (start_r * cos (theta - start_phi) / detInc * scale);
+ kint32 detPosColStart = nearest<kint32> (start_r * cos (theta - start_phi) / detInc * scale);
for (int ix = 0; ix < nx; ix++, detPosColStart += det_dx) {
- long int curDetPos = detPosColStart;
+ kint32 curDetPos = detPosColStart;
ImageFileColumn pImCol = v[ix];
for (int iy = 0; iy < ny; iy++, curDetPos += det_dy) {
- if (interpType == I_NEAREST) {
+ if (interpType == Backprojector::INTERP_NEAREST) {
int detPosNearest = (curDetPos >= 0 ? ((curDetPos + halfScale) / scale) : ((curDetPos - halfScale) / scale));
int iDetPos = iDetCenter + detPosNearest; // calc index in the filtered raysum vector
errorIndexOutsideDetector (ix, iy, theta, curDetPos, iDetPos);
else
*pImCol++ += filteredProj[iDetPos];
- } else if (interpType == I_LINEAR) {
- long int detPosFloor = curDetPos / scale;
- long int detPosRemainder = curDetPos % scale;
+ } else if (interpType == Backprojector::INTERP_LINEAR) {
+ kint32 detPosFloor = curDetPos / scale;
+ kint32 detPosRemainder = curDetPos % scale;
if (detPosRemainder < 0) {
detPosFloor--;
detPosRemainder += scale;