The Conley-Morse Graphs Software
p_pop2demo.h
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1/////////////////////////////////////////////////////////////////////////////
2///
3/// @file p_pop2demo.h
4///
5/// Parameters for a sample Leslie population model in R^2
6/// with 2 varying parameters.
7/// This is a configuration file for the program "cmgraphs.cpp"
8/// which defines the ranges of parameters to scan
9/// and the details of the phase space.
10///
11/// @author Pawel Pilarczyk
12///
13/////////////////////////////////////////////////////////////////////////////
14
15// Copyright (C) 1997-2022 by Pawel Pilarczyk.
16//
17// This file is part of my research software package. This is free software:
18// you can redistribute it and/or modify it under the terms of the GNU
19// General Public License as published by the Free Software Foundation,
20// either version 3 of the License, or (at your option) any later version.
21//
22// This software is distributed in the hope that it will be useful,
23// but WITHOUT ANY WARRANTY; without even the implied warranty of
24// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
25// GNU General Public License for more details.
26//
27// You should have received a copy of the GNU General Public License
28// along with this software; see the file "license.txt". If not,
29// please, see <https://www.gnu.org/licenses/>.
30
31// Started on February 9, 2008. Last revision: June 28, 2022.
32
33
34#ifndef _CMGRAPHS_P_H_
35#define _CMGRAPHS_P_H_
36
37
38namespace custom {
39
40/// Parameters for sample computations for the 2-dimensional Leslie
41/// population model with 2 varying parameters.
42namespace pop2demo {
43
44
45// --------------------------------------------------
46// --------- the phase space configuration ----------
47// --------------------------------------------------
48
49/// The dimension of the phase space.
50const int spaceDim = 2;
51
52/// Is space wrapping (a.k.a. periodic boundary conditions)
53/// in effect in the given directions?
54const bool spaceWrapping [spaceDim] = {false, false};
55
56/// The initial depth of subdivisions in the phase space.
57const int initialDepth = 6;
58
59/// The final depth of subdivisions in the phase space.
60const int finalDepth = 12;
61
62
63// --------------------------------------------------
64// ------------ the parameter selection -------------
65// --------------------------------------------------
66
67/// The dimension of the parameter space to iterate. Only those parameters
68/// which are varying are taken into consideration here.
69const int paramDim = 2;
70
71/// The numbers of subintervals in each direction of the parameter space.
72/// The type of these numbers must match "parCoord" in "typedefs.h".
73const short int paramSubdiv [paramDim] = {5, 5};
74
75/// The numbers of parameters to subdivide.
76const int paramSelect [paramDim] = {0, 1};
77
78
79// --------------------------------------------------
80// ---------- the parameter space settings ----------
81// --------------------------------------------------
82
83/// The number of all the parameters, both varying and fixed.
84const int paramCount = 2 * spaceDim;
85
86/// The left bounds on the parameters.
87const double paramLeft [paramCount] = {19.6, 45.3, 0.7, 0.1};
88
89/// The right bounds on the parameters.
90const double paramRight [paramCount] = {22.5, 50, 0.7, 0.1};
91
92
93// --------------------------------------------------
94// -------------- the phase space size --------------
95// --------------------------------------------------
96
97/// An array with the offset of the rectangular area
98/// in the phase space which contains the invariant sets of interest.
99const double spaceOffset [2] = {-0.001, -0.001};
100
101/// An array with the width of the rectangular area
102/// in the phase space which contains the invariant sets of interest.
103const double spaceWidth [2] = {320.056, 224.04};
104
105
106// --------------------------------------------------
107// ------------------ refinements -------------------
108// --------------------------------------------------
109
110/// The number of refinements that should be done if a Morse set
111/// with the trivial index is encountered or if the image of a Morse set
112/// sticks out of the rectangular region to which the computations
113/// are restricted. Set to zero for no refinements.
114const int refineDepth = 3;
115
116/// The maximal allowed size of a set of cubes in the phase space
117/// which can be refined at the initial subdivision level.
118/// Set to zero to suppress any refinements.
119const int maxRefineSize0 = 200000;
120
121/// The maximal allowed size of a set of cubes in the phase space
122/// which can be refined at the subsequent subdivision levels.
123/// Set to zero to suppress any refinements.
124const int maxRefineSize1 = 20000;
125
126
127// --------------------------------------------------
128// ------------------- map images -------------------
129// --------------------------------------------------
130
131/// The maximal allowed diameter of the cubical image of a signle box.
132/// This limit is set up in order to prevent a blow-up of the program
133/// in the memory because of accumulating huge images of boxes.
134const int maxImageDiameter = 2000;
135
136/// The maximal allowed volume of the cubical image of a single box.
137/// This limit is set up in order to prevent a blow-up of the program
138/// in the memory because of accumulating huge images of boxes.
139const int maxImageVolume = 4000;
140
141
142// --------------------------------------------------
143// -------------- max index pair size ---------------
144// --------------------------------------------------
145
146/// The maximal allowed size of the index pair. This size is measured
147/// as the total number of cubes in the index pair and its forward image.
148const int maxIndexPairSize = 1200000;
149
150
151// --------------------------------------------------
152// --------------- joining Morse sets ---------------
153// --------------------------------------------------
154
155/// The maximal number of cubes in a trivial Morse set for which an attempt
156/// is made to join this set with another near-by Morse set.
157/// Set to zero to suppress joining.
158const int maxJoinSize = 0;
159
160/// The maximal size of a connecting orbit between two Morse sets
161/// which can be considered for joining.
162const int maxJoinConnection = 1000;
163
164/// The maximal allowed distance between two Morse sets which can be
165/// considered for joining. Note: It doesn't work with space wrapping.
166const int maxJoinDistance = 100;
167
168
169// --------------------------------------------------
170// ----------------- other settings -----------------
171// --------------------------------------------------
172
173/// Should the ordering between the Morse sets be taken into consideration
174/// while determining whether two Morse decompositions
175/// computed for adjacent parameter boxes are in the same class?
176const bool compareMorseOrdering = true;
177
178/// Ignoring the isolation problem while matching Morse decompositions.
179/// If this constant is set to "true" then Morse sets are matched
180/// with each other indepent of whether the Conley index could be computed
181/// for them or not. Otherwise, 'correct' and 'wrong' Morse sets
182/// are matched with their counterparts in the same category only.
184
185/// Ignoring the isolation problem while computing the Conley index.
186/// If the constant is set to "true" then the index pair constructed on the
187/// basis of a combinatorial Morse set with respect to the dynamics
188/// restricted to the rectangular area of interest is also restricted
189/// to that area by means of projecting all the boxes that stick out
190/// of the region onto a single layer of boxes around the boundary.
192
193
194} // namespace pop2demo
195} // namespace custom
196
197
198#endif // _CMGRAPHS_P_H_
199
const bool ignoreIsolationForContinuation
Ignoring the isolation problem while matching Morse decompositions.
Definition: p_pop2demo.h:183
const int maxImageDiameter
The maximal allowed diameter of the cubical image of a signle box.
Definition: p_pop2demo.h:134
const int maxJoinConnection
The maximal size of a connecting orbit between two Morse sets which can be considered for joining.
Definition: p_pop2demo.h:162
const double paramRight[paramCount]
The right bounds on the parameters.
Definition: p_pop2demo.h:90
const int maxJoinDistance
The maximal allowed distance between two Morse sets which can be considered for joining.
Definition: p_pop2demo.h:166
const int spaceDim
The dimension of the phase space.
Definition: p_pop2demo.h:50
const int paramCount
The number of all the parameters, both varying and fixed.
Definition: p_pop2demo.h:84
const int finalDepth
The final depth of subdivisions in the phase space.
Definition: p_pop2demo.h:60
const double paramLeft[paramCount]
The left bounds on the parameters.
Definition: p_pop2demo.h:87
const int maxJoinSize
The maximal number of cubes in a trivial Morse set for which an attempt is made to join this set with...
Definition: p_pop2demo.h:158
const int maxImageVolume
The maximal allowed volume of the cubical image of a single box.
Definition: p_pop2demo.h:139
const int initialDepth
The initial depth of subdivisions in the phase space.
Definition: p_pop2demo.h:57
const bool ignoreIsolationForConleyIndex
Ignoring the isolation problem while computing the Conley index.
Definition: p_pop2demo.h:191
const int paramSelect[paramDim]
The numbers of parameters to subdivide.
Definition: p_pop2demo.h:76
const int maxRefineSize1
The maximal allowed size of a set of cubes in the phase space which can be refined at the subsequent ...
Definition: p_pop2demo.h:124
const double spaceWidth[2]
An array with the width of the rectangular area in the phase space which contains the invariant sets ...
Definition: p_pop2demo.h:103
const int refineDepth
The number of refinements that should be done if a Morse set with the trivial index is encountered or...
Definition: p_pop2demo.h:114
const bool compareMorseOrdering
Should the ordering between the Morse sets be taken into consideration while determining whether two ...
Definition: p_pop2demo.h:176
const int paramDim
The dimension of the parameter space to iterate.
Definition: p_pop2demo.h:69
const short int paramSubdiv[paramDim]
The numbers of subintervals in each direction of the parameter space.
Definition: p_pop2demo.h:73
const double spaceOffset[2]
An array with the offset of the rectangular area in the phase space which contains the invariant sets...
Definition: p_pop2demo.h:99
const int maxRefineSize0
The maximal allowed size of a set of cubes in the phase space which can be refined at the initial sub...
Definition: p_pop2demo.h:119
const bool spaceWrapping[spaceDim]
Is space wrapping (a.k.a.
Definition: p_pop2demo.h:54
const int maxIndexPairSize
The maximal allowed size of the index pair.
Definition: p_pop2demo.h:148
Customizable settings that are supposed to be modified and/or chosen by the user of the software.