122 lines
4.6 KiB
Plaintext
122 lines
4.6 KiB
Plaintext
// Copyright (C) 2010, Guy Barrand. All rights reserved.
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// See the file tools.license for terms.
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#ifndef tools_histo_sliced
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#define tools_histo_sliced
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#include "slice"
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#include "h1d"
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#include "h2d"
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/////////////////////////////////////////////////////////////////////////////////
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/// h2 -> h1 ////////////////////////////////////////////////////////////////////
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/////////////////////////////////////////////////////////////////////////////////
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namespace tools {
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namespace histo {
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inline h1d* slice_x(const h2d& a_from,int aJbeg,int aJend,const std::string& a_title) {
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h1d* slice_x = new h1d(a_title,
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a_from.axis_x().bins(),a_from.axis_x().lower_edge(),a_from.axis_x().upper_edge());
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if(!fill_slice_x(a_from,aJbeg,aJend,*slice_x)) {delete slice_x;return 0;}
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return slice_x;
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}
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inline h1d* projection_x(const h2d& a_from,const std::string& a_title) {
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return slice_x(a_from,axis_UNDERFLOW_BIN,axis_OVERFLOW_BIN,a_title);
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}
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inline h1d* slice_y(const h2d& a_from,int aIbeg,int aIend,const std::string& a_title) {
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h1d* slice_y = new h1d(a_title,
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a_from.axis_y().bins(),a_from.axis_y().lower_edge(),a_from.axis_y().upper_edge());
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if(!fill_slice_y(a_from,aIbeg,aIend,*slice_y)) {delete slice_y;return 0;}
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return slice_y;
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}
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inline h1d* projection_y(const h2d& a_from,const std::string& a_title) {
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return slice_y(a_from,axis_UNDERFLOW_BIN,axis_OVERFLOW_BIN,a_title);
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}
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}}
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/////////////////////////////////////////////////////////////////////////////////
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/// h2 -> p1 ////////////////////////////////////////////////////////////////////
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/////////////////////////////////////////////////////////////////////////////////
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#include "p1d"
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namespace tools {
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namespace histo {
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inline p1d* profile_x(const h2d& a_from,int aJbeg,int aJend,const std::string& a_title) {
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p1d* slice_x = new p1d(a_title,
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a_from.axis_x().bins(),a_from.axis_x().lower_edge(),a_from.axis_x().upper_edge());
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if(!fill_profile_x(a_from,aJbeg,aJend,*slice_x)) {delete slice_x;return 0;}
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return slice_x;
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}
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inline p1d* profile_x(const h2d& a_from,const std::string& a_title) {
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return profile_x(a_from,axis_UNDERFLOW_BIN,axis_OVERFLOW_BIN,a_title);
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}
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inline p1d* profile_y(const h2d& a_from,int aIbeg,int aIend,const std::string& a_title) {
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p1d* slice_y = new p1d(a_title,
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a_from.axis_y().bins(),a_from.axis_y().lower_edge(),a_from.axis_y().upper_edge());
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if(!fill_profile_y(a_from,aIbeg,aIend,*slice_y)) {delete slice_y;return 0;}
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return slice_y;
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}
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inline p1d* profile_y(const h2d& a_from,const std::string& a_title) {
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return profile_y(a_from,axis_UNDERFLOW_BIN,axis_OVERFLOW_BIN,a_title);
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}
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}}
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/////////////////////////////////////////////////////////////////////////////////
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/// h3 -> h2 ////////////////////////////////////////////////////////////////////
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/////////////////////////////////////////////////////////////////////////////////
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#include "h3d"
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namespace tools {
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namespace histo {
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inline h2d* slice_xy(const h3d& a_from,int aKbeg,int aKend,const std::string& a_title) {
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h2d* slice = new h2d(a_title,
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a_from.axis_x().bins(),a_from.axis_x().lower_edge(),a_from.axis_x().upper_edge(),
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a_from.axis_y().bins(),a_from.axis_y().lower_edge(),a_from.axis_y().upper_edge());
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if(!fill_slice_xy(a_from,aKbeg,aKend,*slice)) {delete slice;return 0;}
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return slice;
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}
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inline h2d* projection_xy(const h3d& a_from,const std::string& a_title) {
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return slice_xy(a_from,axis_UNDERFLOW_BIN,axis_OVERFLOW_BIN,a_title);
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}
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inline h2d* slice_yz(const h3d& a_from,int aIbeg,int aIend,const std::string& a_title) {
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h2d* slice = new h2d(a_title,
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a_from.axis_y().bins(),a_from.axis_y().lower_edge(),a_from.axis_y().upper_edge(),
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a_from.axis_z().bins(),a_from.axis_z().lower_edge(),a_from.axis_z().upper_edge());
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if(!fill_slice_yz(a_from,aIbeg,aIend,*slice)) {delete slice;return 0;}
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return slice;
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}
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inline h2d* projection_yz(const h3d& a_from,const std::string& a_title) {
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return slice_yz(a_from,axis_UNDERFLOW_BIN,axis_OVERFLOW_BIN,a_title);
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}
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inline h2d* slice_xz(const h3d& a_from,int aJbeg,int aJend,const std::string& a_title) {
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h2d* slice = new h2d(a_title,
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a_from.axis_x().bins(),a_from.axis_x().lower_edge(),a_from.axis_x().upper_edge(),
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a_from.axis_z().bins(),a_from.axis_z().lower_edge(),a_from.axis_z().upper_edge());
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if(!fill_slice_xz(a_from,aJbeg,aJend,*slice)) {delete slice;return 0;}
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return slice;
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}
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inline h2d* projection_xz(const h3d& a_from,const std::string& a_title) {
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return slice_xz(a_from,axis_UNDERFLOW_BIN,axis_OVERFLOW_BIN,a_title);
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}
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}}
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#endif
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