203 lines
5.4 KiB
Text
203 lines
5.4 KiB
Text
/**
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* PANDA 3D SOFTWARE
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* Copyright (c) Carnegie Mellon University. All rights reserved.
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*
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* All use of this software is subject to the terms of the revised BSD
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* license. You should have received a copy of this license along
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* with this source code in a file named "LICENSE."
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*
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* @file pfmVizzer.I
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* @author drose
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* @date 2012-09-30
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*/
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/**
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* Returns the reference to the PfmFile manipulated by this PfmVizzer.
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*/
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INLINE PfmFile &PfmVizzer::
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get_pfm() {
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return _pfm;
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}
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INLINE PfmVizzer::
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~PfmVizzer() {
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}
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/**
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* Returns the reference to the PfmFile manipulated by this PfmVizzer.
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*/
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INLINE const PfmFile &PfmVizzer::
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get_pfm() const {
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return _pfm;
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}
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/**
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* Sets the vis_inverse flag. When this flag is true, vis meshes and point
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* clouds are generated with the 3-d depth value in the texture coordinates,
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* and the 2-d index value in the vertex position. When it is false, meshes
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* are generated normally, with the 3-d depth value in the vertex position and
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* the 2-d index value in the texture coordinates.
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*
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* This may be used in lieu of the lower-level add_vis_column().
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*/
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INLINE void PfmVizzer::
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set_vis_inverse(bool vis_inverse) {
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_vis_inverse = vis_inverse;
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clear_vis_columns();
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}
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/**
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* Returns the vis_inverse flag. See set_vis_inverse().
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*/
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INLINE bool PfmVizzer::
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get_vis_inverse() const {
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return _vis_inverse;
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}
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/**
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* If the flat_texcoord_name is specified, it is the name of an additional
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* vertex column that will be created for the "flat" texture coordinates, i.e.
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* the original 0..1 values that correspond to the 2-D index position of each
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* point in the original pfm file.
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*
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* These are the same values that will be assigned to the default texture
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* coordinates if the vis_inverse flag is *not* true.
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*
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* This may be used in lieu of the lower-level add_vis_column().
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*/
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INLINE void PfmVizzer::
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set_flat_texcoord_name(InternalName *flat_texcoord_name) {
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_flat_texcoord_name = flat_texcoord_name;
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clear_vis_columns();
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}
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/**
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* Resets the flat_texcoord_name to empty, so that additional texture
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* coordinates are not created.
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*
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* This may be used in lieu of the lower-level add_vis_column().
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*/
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INLINE void PfmVizzer::
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clear_flat_texcoord_name() {
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_flat_texcoord_name = nullptr;
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}
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/**
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* Returns the flat_texcoord_name. See set_flat_texcoord_name().
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*/
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INLINE InternalName *PfmVizzer::
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get_flat_texcoord_name() const {
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return _flat_texcoord_name;
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}
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/**
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* Sets the vis_2d flag. When this flag is true, only the first two (x, y)
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* value of each depth point is considered meaningful; the z component is
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* ignored. This is only relevant for generating visualizations.
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*
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* This may be used in lieu of the lower-level add_vis_column().
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*/
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INLINE void PfmVizzer::
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set_vis_2d(bool vis_2d) {
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_vis_2d = vis_2d;
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clear_vis_columns();
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}
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/**
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* Returns the vis_2d flag. See set_vis_2d().
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*/
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INLINE bool PfmVizzer::
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get_vis_2d() const {
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return _vis_2d;
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}
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/**
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* Sets the keep_beyond_lens flag. When this flag is true, points that fall
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* outside of the normal lens range in project() or in add_vis_column() will
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* be retained anyway; when it is false, these points will be discarded.
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*/
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INLINE void PfmVizzer::
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set_keep_beyond_lens(bool keep_beyond_lens) {
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_keep_beyond_lens = keep_beyond_lens;
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}
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/**
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* Returns the keep_beyond_lens flag. See set_keep_beyond_lens().
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*/
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INLINE bool PfmVizzer::
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get_keep_beyond_lens() const {
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return _keep_beyond_lens;
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}
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/**
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* Specifies a blending map--a grayscale image--that will be applied to the
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* vertex color during generate_vis_mesh() and generate_vis_points(). The
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* image size must exactly match the mesh size of the PfmVizzer.
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*
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* Ownership of the pointer is not kept by the PfmVizzer; it is your
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* responsibility to ensure it does not destruct during the lifetime of the
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* PfmVizzer (or at least not before your subsequent call to
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* generate_vis_mesh()).
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*/
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INLINE void PfmVizzer::
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set_vis_blend(const PNMImage *vis_blend) {
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_vis_blend = vis_blend;
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}
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/**
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* Removes the blending map set by a prior call to set_vis_blend().
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*/
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INLINE void PfmVizzer::
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clear_vis_blend() {
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_vis_blend = nullptr;
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}
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/**
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* Returns the blending map set by the most recent call to set_vis_blend(), or
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* NULL if there is no blending map in effect.
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*/
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INLINE const PNMImage *PfmVizzer::
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get_vis_blend() const {
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return _vis_blend;
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}
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/**
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* Assigns an auxiliary PfmFile to this PfmVizzer. This file will be queried
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* by column types CT_aux_vertex1/2/3, but has no other meaning to the vizzer.
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* This size of this PfmFile should exactly match the base PfmFile. No
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* reference count is held and no copy is made; the caller is responsible for
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* ensuring that the auxiliary PfmFile will persist throughout the lifetime of
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* the PfmVizzer it is assigned to.
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*/
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INLINE void PfmVizzer::
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set_aux_pfm(const PfmFile *pfm) {
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assert(pfm == nullptr || (pfm->get_x_size() == _pfm.get_x_size() &&
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pfm->get_y_size() == _pfm.get_y_size()));
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_aux_pfm = pfm;
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}
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/**
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* Removes the auxiliary PfmFile from this PfmVizzer.
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*/
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INLINE void PfmVizzer::
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clear_aux_pfm() {
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_aux_pfm = nullptr;
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}
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/**
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* Returns the reference to the auxiliary PfmFile queried by this PfmVizzer.
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* This contains the values that will be reflected in CT_aux_vertex3 etc. See
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* set_aux_pfm().
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*/
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INLINE const PfmFile *PfmVizzer::
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get_aux_pfm() const {
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return _aux_pfm;
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}
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/**
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*
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*/
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INLINE PfmVizzer::VisColumn::
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VisColumn() {
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_undist_lut = nullptr;
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}
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