source: experiments/frams/foraminifera/data/scripts/foraminifera.inc @ 554

Last change on this file since 554 was 554, checked in by oriona, 8 years ago

Refactoring, change of foraminifera direction at world boundary added.

File size: 10.2 KB
RevLine 
[401]1//size versus energy
2//real proportions
3
[422]4function init_chambers()
5{
6        colors = ["1.0,1.0,0.0","1.0,0.5,0.0"];
[552]7        retColors = ["1.0,1.0,1.0", "1.0,1.0,0.0"];
[496]8        chambers = [ ["p:sh=1, sx=0.2, sy=0.2, sz=0.2, rz=3.14159265358979,",
9"p:0.18421219587326, 0.13, sh=1, sx=0.21, sy=0.21, sz=0.21,",
10"p:0.323935478925705, 0.195192575454712, -0.0246672090142965, sh=1, sx=0.2205, sy=0.2205, sz=0.2205,",
11"p:0.467822402715683, 0.258204102516174, -0.0246672090142965, sh=1, sx=0.231525, sy=0.231525, sz=0.231525,",
12"p:0.664101362228394, 0.309014827013016, -0.0246672090142965, sh=1, sx=0.24310125, sy=0.24310125, sz=0.24310125,",
13"p:0.860512733459473, 0.274790525436401, -0.0246672090142965, sh=1, sx=0.2552563125, sy=0.2552563125, sz=0.2552563125,",
14"p:1.0273220539093, 0.1655353307724, -0.0246672090142965, sh=1, sx=0.268019128125, sy=0.268019128125, sz=0.268019128125,",
15"p:1.13825333118439, -0.000509921927005053, -0.0246672090142965, sh=1, sx=0.28142008453125, sy=0.28142008453125, sz=0.28142008453125,",
16"p:1.17569863796234, -0.196833491325378, -0.0246672090142965, sh=1, sx=0.295491088757813, sy=0.295491088757813, sz=0.295491088757813,",
17"p:1.13369226455688, -0.392314255237579, -0.0246672090142965, sh=1, sx=0.310265643195703, sy=0.310265643195703, sz=0.310265643195703,"],
18        ["p:sh=1, sx=0.1, sy=0.1, sz=0.1, rz=3.14159265358979,",
19"p:0.110527315735817, -0.0167302016913891, sh=1, sx=0.105, sy=0.105, sz=0.105, rx=3.63519277003091e-33,",
20"p:0.207026958465576, -0.080698736011982, 1.17627548103266e-17, sh=1, sx=0.11025, sy=0.11025, sz=0.11025,",
21"p:0.271191358566284, -0.169948443770409, 1.17627548103266e-17, sh=1, sx=0.1157625, sy=0.1157625, sz=0.1157625,",
22"p:0.291628688573837, -0.286643952131271, 1.17627548103266e-17, sh=1, sx=0.121550625, sy=0.121550625, sz=0.121550625,",
23"p:0.264833927154541, -0.403534322977066, 1.17627548103266e-17, sh=1, sx=0.12762815625, sy=0.12762815625, sz=0.12762815625,",
24"p:0.194418027997017, -0.500668346881866, 1.17627548103266e-17, sh=1, sx=0.1340095640625, sy=0.1340095640625, sz=0.1340095640625,",
25"p:0.091719962656498, -0.562735974788666, 1.17627548103266e-17, sh=1, sx=0.140710042265625, sy=0.140710042265625, sz=0.140710042265625,",
26"p:-0.0270438715815544, -0.57991486787796, 1.17627548103266e-17, sh=1, sx=0.147745544378906, sy=0.147745544378906, sz=0.147745544378906,",
27"p:-0.143122747540474, -0.549489378929138, 1.17627548103266e-17, sh=1, sx=0.155132821597852, sy=0.155132821597852, sz=0.155132821597852,"]];
[422]28}
[401]29
[487]30function createForamMorphology(morphotype, gen, chamber_num)
[401]31{
[496]32        var geno = "//0\nm:Vstyle=foram\n" + chambers[morphotype][0] + "vr=" + colors[gen];
[401]33
[487]34        chamber_num = Math.min(chamber_num, chambers[morphotype].size - 1);
[422]35
36        for (var i = 0; i < chamber_num; i++)
37        {
[496]38                geno += "\n" + chambers[morphotype][i+1]  + "vr=" +  colors[gen];
[422]39        }
40
41        for (var i = 0; i < chamber_num; i++)
42        {
43                geno += "\n" +  "j:"+ i +", "+ (i+1) +", sh=1";
44        }
[430]45
[422]46        return geno;
47}
48
49function setGenotype(mode)
50{
[554]51        if (mode->opt == "growth")
[422]52        {
[554]53                mode->cr.data->genes = mode->parent_genes;
54                mode->cr.data->lifeparams = mode->parent_lifeparams;
[422]55        }
[554]56
57        else if (mode->opt == "birth")
[422]58        {
[554]59                mode->cr.data->genes = String.deserialize(String.serialize(mode->genes));
60                mode->cr.data->lifeparams = {"max_energy_level" : mode->energy0, "gen" : mode->gen,  "hibernated" : 0, "species" : mode->species, "reproduce" : 0, "dir" : randomDir(), "dir_counter" : Math.random(int(secToSimSteps(ExpProperties.dir_change_sec))), "chamber_growth" : -1, "division_time" : -1};                   
61
[422]62        }
63}
64
[479]65function gametsDivision(parent_energy, energy0)
66{
67        var number = 1;
68        var result = parent_energy;
[486]69        while ((result-ExpProperties.divisionCost) >= energy0)
[479]70        {
[486]71                result = (result-ExpProperties.divisionCost)/2;
[479]72                number *= 2;
73        }
74        //Simulator.print("parent: " + parent_energy + " result: " + result + " number " + number);
75        return {"energy" : result, "number" : number};
76}
77
[487]78function getEnergy0(radius)
79{
80        return energyFromVolume(micronsToFrams(radius),1);
81}
82
[422]83function reproduce_haploid(parent, parent2, clone)
84{       
[476]85        var number, energy0, new_genes, gen;
[422]86        if (clone == 1)
87        {
[487]88                var offspring = gametsDivision(parent.energy,getEnergy0(getGene(parent,"energies0",0)[0]));
[479]89                energy0 = offspring->energy;
90                number = offspring->number;
[476]91                new_genes = parent.data->genes;
92                parent.data->lifeparams->gen = 1 - parent.data->lifeparams->gen; //because of reversal of "gen" in createOffspring function
93                gen = parent.data->lifeparams->gen;
[422]94        }
95        else
96        {
[487]97                var offspring1 = gametsDivision(parent.energy,getEnergy0(getGene(parent,"energies0", 0)[1]));
98                var offspring2 = gametsDivision(parent2.energy,getEnergy0(getGene(parent2,"energies0", 0)[1]));
[479]99                energy0 = (offspring1->energy+offspring2->energy);
[486]100                number = ExpProperties.gametSuccessRate*(offspring1->number+offspring2->number)/2;
[476]101                new_genes = [parent.data->genes, parent2.data->genes];
102                gen = 1 - parent.data->lifeparams->gen;
[493]103
104                if (ExpProperties.logging == 1)
105                {
106                                log(createLogVector(parent, parent.energy),ExpProperties.logPref+"repro_energies_log.txt");
107                                log(createLogVector(parent2, parent2.energy),ExpProperties.logPref+"repro_energies_log.txt");
108                                log(createLogVector(parent, number),ExpProperties.logPref+"repro_num_log.txt");
[552]109                                log(createLogVector(parent, parent.lifespan),ExpProperties.logPref+"lifespan_log.txt");
110                                log(createLogVector(parent2, parent2.lifespan),ExpProperties.logPref+"lifespan_log.txt");
[493]111                }       
[422]112        }
113
[430]114        Simulator.print("haploid number of offspring: " + number + " energ0: " + energy0);
[422]115
[418]116        for (var j = 0; j < number; j++)
[401]117        {
[496]118                createOffspring(createForamMorphology(gen, gen, 0), energy0, new_genes, parent.data->lifeparams);
[401]119        }
120}
121
[418]122function reproduce_diploid(parent)
[401]123{
[510]124        var offspring = gametsDivision(parent.energy,getEnergy0(getGene(parent,"energies0", 0)[0]));
125        var energy0 = offspring->energy;
126        var number = offspring->number;
[422]127
[493]128                if (ExpProperties.logging == 1)
129                {
130                        log(createLogVector(parent, parent.energy),ExpProperties.logPref+"repro_energies_log.txt");
131                        log(createLogVector(parent, number),ExpProperties.logPref+"repro_num_log.txt");
[552]132                        log(createLogVector(parent, parent.lifespan),ExpProperties.logPref+"lifespan_log.txt");
[493]133                }       
134
[430]135        Simulator.print("diploid number of offspring: " + number+ " energ0: " + energy0);
[422]136
[418]137        for (var j = 0; j < number / 2; j++)
[401]138        {
[418]139                var crossed = 0;
140                //crossover
[486]141                if (Math.rnd01 < ExpProperties.crossprob)
[418]142                {
[422]143                        crossover(parent, "min_repro_energies");
[418]144                        crossed = 1;
145                }
[401]146
[418]147                for (var k = 0; k < 2; k++)
[404]148                {
[496]149                        createOffspring(createForamMorphology(1 - parent.data->lifeparams->gen, 1 - parent.data->lifeparams->gen, 0), energy0, parent.data->genes[0], parent.data->lifeparams);
[404]150                }
151
[418]152                //reverse of crossover for fossilization
153                if (crossed == 1)
[401]154                {
[422]155                        crossover(parent, "min_repro_energies");
[418]156                        crossed = 0;
[401]157                }
[418]158                       
[401]159        }
[404]160}
161
[422]162function reproduce_parents(species)
[404]163{
[418]164                var parent1 = null;
165                var parent2 = null;
166                var pop = Populations[0];
167                for (var i = pop.size-1; i >= 0; i--)
[401]168                {
[476]169                        if (pop[i].data->lifeparams->reproduce == 1 && pop[i].data->lifeparams->species == species)
[418]170                        {
[486]171                                if ((pop[i].data->lifeparams->gen==1) || ((pop[i].data->lifeparams->gen==0) && ExpProperties.stress == 0))
[401]172                                {
[422]173                                        continue;
[401]174                                }
[418]175                                else if (parent1 == null)
[401]176                                {
[418]177                                        parent1 = pop[i];
[401]178                                }
[418]179                                else if (parent2 == null)
180                                {
181                                        parent2 = pop[i];
182                                } 
[430]183                                if (parent1 != null && parent2 != null)
[418]184                                {
[479]185                                        //when parents are ready for reproduction start gametogenesis
186                                        if (parent1.data->lifeparams->division_time == -1 && parent2.data->lifeparams->division_time == -1)
187                                        {
[554]188                                                var time = int(secToSimSteps(ExpProperties.gametoPeriodSec));
[479]189                                                parent1.data->lifeparams->division_time = time;
190                                                parent2.data->lifeparams->division_time = time;
191                                                parent1.idleen = 0;
192                                                parent2.idleen = 0;
193                                                //Simulator.print("parents "+parent1.uid + " " + parent2.uid + " ready to repro: "+Simulator.stepNumber);
194                                        }
195                                        //when gametogenesis is finished fuse gamets
196                                        else if (parent1.data->lifeparams->division_time == 0 && parent2.data->lifeparams->division_time == 0)
197                                        {
198                                                reproduce_haploid(parent1, parent2, 0);
199                                                print_repro_info(parent1);
200                                                print_repro_info(parent2);
201                                                pop.kill(parent1);
202                                                pop.kill(parent2);
203                                                parent1 = null;
204                                                parent2 = null;
205                                        }
[430]206                                }       
[418]207                        }
[401]208                }
[422]209}
210
211function readyToRepro(cr)
212{
213        var reproduced = 1;
214       
215       
[476]216        if (cr.data->lifeparams->gen == 1)
[422]217        {
218                reproduce_diploid(cr);
[401]219        }
220
[486]221        else if (ExpProperties.stress == 0)
[401]222        {
[422]223                reproduce_haploid(cr, null, 1);
224        }
225
226        else
227        {
228                if (cr.signals.size == 0)
[401]229                {
[476]230                        cr.signals.add("repro"+cr.data->lifeparams->species);
[422]231                        cr.signals[0].power = 1;
[401]232                }
[422]233                reproduced = 0;
[476]234                cr.data->lifeparams->reproduce = 1;
[401]235        }
[422]236
237        if (reproduced == 1)
238        {
239                print_repro_info(cr);
240                Populations[0].kill(cr);
241        }
242
243        return reproduced;
[401]244}
245
[422]246function print_repro_info(cr)
[421]247{
[476]248        Simulator.print("Reproduced " + cr.data->lifeparams->gen + " of species " + cr.data->lifeparams->species + " energy: " + cr.energy);
[422]249}
[421]250
[422]251function foramReproduce(cr)
252{
[488]253        var properEnergy = cr.energy >= energyFromVolume(max_chamber_volume[cr.data->lifeparams->gen][getGene(cr, "min_repro_energies",0)[cr.data->lifeparams->gen]],0);
[487]254        var reproduced = 0;     
[422]255
256        //if creature has proper energy
257        if ( properEnergy && cr.signals.size == 0)
258        {
259                //reproduce with probability repro_prob
[486]260                if (Math.rnd01 <= ExpProperties.repro_prob) //TODO env trigger
[421]261                {
[422]262                        reproduced = readyToRepro(cr);
[421]263                }
[476]264                else if (cr.signals.receive("repro"+cr.data->lifeparams->species) > 0)
[421]265                {
[422]266                        reproduced = readyToRepro(cr);
[421]267                }
[422]268                if (reproduced == 1)
[430]269                                return 1;
[421]270        }
271
[422]272        else if (!properEnergy)
[421]273        {
[422]274                cr.signals.clear();
[476]275                cr.data->lifeparams->reproduce = 0;
[421]276        }
[430]277
278        return 0;
[422]279}
[421]280
[422]281function crossover(parent, gene)
282{
[476]283        var tmp = parent.data->genes[0][gene];
284        parent.data->genes[0][gene] = parent.data->genes[1][gene];
285        parent.data->genes[1][gene] = tmp;
[422]286}
[421]287
[476]288function createOffspring(geno, energy, parent_genes, parent_lifeparams)
[422]289{
[493]290        curColor = retColors[1-parent_lifeparams->gen];
[422]291        var cr = Populations[0].add(geno);
292        cr.energy0 = energy;
293        cr.energy = cr.energy0;
[554]294        setGenotype({"opt" : "birth", "cr" : cr, "gen" : 1 - parent_lifeparams->gen, "species" : parent_lifeparams->species, "energy0" : cr.energy0, "genes" : parent_genes});
[422]295        placeRandomlyNotColliding(cr);
[421]296}
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