[286] | 1 | // This file is a part of Framsticks SDK. http://www.framsticks.com/ |
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[727] | 2 | // Copyright (C) 1999-2018 Maciej Komosinski and Szymon Ulatowski. |
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[286] | 3 | // See LICENSE.txt for details. |
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[109] | 4 | |
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| 5 | #include <ctype.h> |
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[129] | 6 | #include <frams/genetics/defgenoconv.h> |
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[109] | 7 | #include <frams/model/model.h> |
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| 8 | #include <frams/util/multimap.h> |
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[527] | 9 | #include <common/virtfile/stdiofile.h> |
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[109] | 10 | #include "printconvmap.h" |
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[391] | 11 | #include <common/loggers/loggertostdout.h> |
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[109] | 12 | |
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| 13 | /** |
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| 14 | @file |
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| 15 | Sample code: Genotype converter class |
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[727] | 16 | */ |
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[109] | 17 | |
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| 18 | /// Sample Geno converter not using Model class. |
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[727] | 19 | /// (This converter generates the same output for each input). |
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| 20 | /// Such a converter is responsible for doing valid f0 (or other format) output and storing temporary data. |
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| 21 | class GenoConv_Test : public GenoConverter |
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[109] | 22 | { |
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| 23 | public: |
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[727] | 24 | GenoConv_Test() |
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[109] | 25 | { |
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[727] | 26 | name = "Test Converter"; |
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| 27 | in_format = 'x'; |
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[109] | 28 | } |
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[732] | 29 | SString convert(SString &i, MultiMap *map, bool using_checkpoints) { return SString("after conversion..."); } |
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[727] | 30 | ~GenoConv_Test() {} |
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[109] | 31 | }; |
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| 32 | |
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| 33 | /// Sample Geno converter using Model class. |
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[727] | 34 | /// (This converter generates the same output for each input). |
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| 35 | class GenoConv_Test2 : public GenoConverter |
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[109] | 36 | { |
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| 37 | public: |
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[727] | 38 | GenoConv_Test2() |
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[109] | 39 | { |
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[727] | 40 | name = "Test Converter #2"; |
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| 41 | in_format = 'y'; |
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[109] | 42 | } |
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[727] | 43 | |
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[732] | 44 | SString convert(SString &i, MultiMap *map, bool using_checkpoints) |
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[727] | 45 | { |
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| 46 | Model mod; |
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| 47 | mod.open(); |
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| 48 | mod.addFromString(Model::PartType, "0,0,0"); |
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| 49 | mod.addFromString(Model::PartType, "0,0,-1"); |
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| 50 | mod.addFromString(Model::JointType, "0,1"); |
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| 51 | mod.getPart(1)->p.y += 0.2; //as an example, directly modify position of part #1 |
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| 52 | mod.close(); |
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| 53 | return mod.getF0Geno().getGenes(); |
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| 54 | } |
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[732] | 55 | |
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[727] | 56 | ~GenoConv_Test2() {} |
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[109] | 57 | }; |
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| 58 | |
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| 59 | /// Sample Geno converter supporting conversion mapping. |
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[727] | 60 | /// The conversion is very simple: any sequence of <digit><character> |
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| 61 | /// (but not inside neurons) is replaced by the repeated sequence of the character. |
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| 62 | class GenoConv_Test3 : public GenoConverter |
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[109] | 63 | { |
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| 64 | public: |
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[727] | 65 | GenoConv_Test3() |
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[109] | 66 | { |
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[727] | 67 | name = "Test Converter #3"; |
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| 68 | in_format = 'z'; |
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| 69 | out_format = '1'; |
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| 70 | mapsupport = 1; |
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[109] | 71 | } |
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[732] | 72 | SString convert(SString &in, MultiMap *map, bool using_checkpoints); |
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[727] | 73 | ~GenoConv_Test3() {} |
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[109] | 74 | }; |
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| 75 | |
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| 76 | /** main converting routine - most important: direct conversion map example */ |
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[732] | 77 | SString GenoConv_Test3::convert(SString &in, MultiMap *map, bool using_checkpoints) |
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[109] | 78 | { |
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[727] | 79 | SString dst; |
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| 80 | const char* src = in.c_str(); |
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| 81 | const char* t; |
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| 82 | int insideneuron = 0; |
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| 83 | int n; |
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| 84 | for (t = src; *t; t++) |
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[109] | 85 | { |
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[727] | 86 | if (insideneuron&&*t == ']') insideneuron = 0; |
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| 87 | if (*t == '[') insideneuron = 1; |
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| 88 | if ((!insideneuron) && isdigit(*t) && t[1]) |
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[109] | 89 | { // special sequence detected! |
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[727] | 90 | n = *t - '0'; |
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| 91 | t++; // *t will be repeated 'n' times |
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| 92 | for (int i = 0; i < n; i++) |
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| 93 | dst += *t; |
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| 94 | if (map) // fill in the map only if requested |
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| 95 | map->add(t - src, t - src, dst.len() - n, dst.len() - 1); |
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| 96 | // meaning: source character (t-src) becomes (dst.len()-n ... dst.len()-1) |
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[109] | 97 | } |
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[727] | 98 | else |
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[109] | 99 | { |
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[727] | 100 | dst += *t; |
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| 101 | if (map) |
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| 102 | map->add(t - src, t - src, dst.len() - 1, dst.len() - 1); |
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| 103 | // meaning: map single to single character: (t-src) into (dst.len()-1) |
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[109] | 104 | } |
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| 105 | } |
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[727] | 106 | return dst; |
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[109] | 107 | } |
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| 108 | |
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| 109 | |
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| 110 | /////////////////////////////////////////////// |
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| 111 | |
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| 112 | void printGen(Geno &g) |
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| 113 | { |
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[727] | 114 | printf("Genotype:\n%s\nFormat: %c\nValid: %s\nComment: %s\n", |
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| 115 | g.getGenes().c_str(), g.getFormat(), g.isValid() ? "yes" : "no", g.getComment().c_str()); |
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[109] | 116 | } |
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| 117 | |
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[739] | 118 | static int goodWidthForFormat(int genotype_format) |
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| 119 | { |
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| 120 | return genotype_format == '0' ? 45 : 15; // more space for long f0 lines |
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| 121 | } |
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| 122 | |
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[732] | 123 | // arguments: |
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| 124 | // genotype (or - meaning "read from stdin") [default: X] |
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| 125 | // target format [default: 0] |
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| 126 | // "checkpoints" (just write this exact word) [default: not using checkpoints] |
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[727] | 127 | int main(int argc, char *argv[]) |
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[109] | 128 | { |
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[727] | 129 | LoggerToStdout messages_to_stdout(LoggerBase::Enable); |
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[145] | 130 | |
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[727] | 131 | DefaultGenoConvManager gcm; |
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| 132 | gcm.addDefaultConverters(); |
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| 133 | gcm.addConverter(new GenoConv_Test()); |
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| 134 | gcm.addConverter(new GenoConv_Test2()); |
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| 135 | gcm.addConverter(new GenoConv_Test3()); |
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| 136 | Geno::useConverters(&gcm); |
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[109] | 137 | |
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[727] | 138 | Geno::Validators validators; |
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| 139 | ModelGenoValidator model_validator; |
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| 140 | validators += &model_validator; |
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| 141 | Geno::useValidators(&validators); |
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[145] | 142 | |
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[727] | 143 | SString src; |
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| 144 | if (argc > 1) |
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[527] | 145 | { |
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[727] | 146 | src = argv[1]; |
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| 147 | if (src == "-") |
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[527] | 148 | { |
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[727] | 149 | StdioFILEDontClose in(stdin); |
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| 150 | src = ""; |
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| 151 | loadSString(&in, src, false); |
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[527] | 152 | } |
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| 153 | } |
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[727] | 154 | else |
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| 155 | src = "X"; |
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| 156 | char dst = (argc > 2) ? *argv[2] : '0'; |
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[732] | 157 | bool using_checkpoints = (argc > 3) ? (strcmp(argv[3], "checkpoints") == 0) : false; |
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[109] | 158 | |
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[727] | 159 | printf("*** Source genotype:\n"); |
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| 160 | Geno g1(src); |
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| 161 | printGen(g1); |
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| 162 | MultiMap m; |
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[732] | 163 | Geno g2 = g1.getConverted(dst, &m, using_checkpoints); |
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[727] | 164 | printf("*** Converted to f%c:\n", dst); |
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| 165 | printGen(g2); |
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[732] | 166 | |
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| 167 | if (using_checkpoints) |
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| 168 | { // using Model with checkpoints |
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| 169 | Model m1(g2, false, true);//true=using_checkpoints |
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| 170 | printf("\nModel built from the converted f%c genotype has %d checkpoints\n", g2.getFormat(), m1.getCheckpointCount()); |
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| 171 | Model m2(g1, false, true);//true=using_checkpoints |
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| 172 | printf("Model built from the source f%c genotype has %d checkpoints\n", g1.getFormat(), m2.getCheckpointCount()); |
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| 173 | // accessing individual checkpoint models (if available) |
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| 174 | if (m1.getCheckpointCount() > 0) |
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| 175 | { |
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| 176 | int c = m1.getCheckpointCount() / 2; |
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| 177 | Model *cm = m1.getCheckpoint(c); |
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| 178 | printf("Checkpoint #%d (%d parts, %d joint, %d neurons)\n%s", c, cm->getPartCount(), cm->getJointCount(), cm->getNeuroCount(), cm->getF0Geno().getGenesAndFormat().c_str()); |
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| 179 | } |
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| 180 | } |
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[727] | 181 | else |
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[732] | 182 | { // there is no mapping for checkpoints so it's nothing interesting to see here in the checkpoints mode |
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| 183 | if (m.isEmpty()) |
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| 184 | printf("(conversion map not available)\n"); |
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| 185 | else |
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| 186 | { |
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| 187 | printf("Conversion map:\n"); |
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| 188 | m.print(); |
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[739] | 189 | printConvMap(g1.getGenes(), g2.getGenes(), m, goodWidthForFormat(g1.getFormat())); |
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[732] | 190 | printf("Reverse conversion map:\n"); |
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| 191 | MultiMap rm; |
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| 192 | rm.addReversed(m); |
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| 193 | rm.print(); |
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[739] | 194 | printConvMap(g2.getGenes(), g1.getGenes(), rm, goodWidthForFormat(g2.getFormat())); |
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[732] | 195 | } |
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| 196 | |
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| 197 | Model mod1(g1, 1); |
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| 198 | printf("\nModel map for f%c genotype:\n", g1.getFormat()); |
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[739] | 199 | ModelDisplayMap dm1(mod1); |
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| 200 | dm1.print(goodWidthForFormat(g1.getFormat())); |
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[732] | 201 | MultiMap mod1combined; |
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[739] | 202 | mod1combined.addCombined(mod1.getMap(), dm1.getMap()); |
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[732] | 203 | mod1combined.print(); |
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| 204 | Model mod2(g2, 1); |
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| 205 | printf("\nModel map for f%c genotype:\n", g2.getFormat()); |
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[739] | 206 | ModelDisplayMap dm2(mod2); |
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| 207 | dm2.print(goodWidthForFormat(g2.getFormat())); |
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[732] | 208 | MultiMap mod2combined; |
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[739] | 209 | mod2combined.addCombined(mod2.getMap(), dm2.getMap()); |
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[732] | 210 | mod2combined.print(); |
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[109] | 211 | } |
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[727] | 212 | return 0; |
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[109] | 213 | } |
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