1 | /*------------------------------------------------------------\ |
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2 | | | |
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3 | | Tool : systemcass | |
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4 | | | |
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5 | | File : schedulers.cc | |
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6 | | | |
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7 | | Author : Buchmann Richard | |
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8 | | Nicolas Pouillon | |
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9 | | | |
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10 | | Date : 23_03_2007 | |
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11 | | | |
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12 | \------------------------------------------------------------*/ |
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13 | |
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14 | /* |
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15 | * This file is part of the Disydent Project |
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16 | * Copyright (C) Laboratoire LIP6 - Département ASIM |
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17 | * Universite Pierre et Marie Curie |
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18 | * |
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19 | * Home page : http://www-asim.lip6.fr/disydent |
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20 | * E-mail : mailto:richard.buchmann@lip6.fr |
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21 | * |
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22 | * This library is free software; you can redistribute it and/or modify it |
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23 | * under the terms of the GNU Library General Public License as published |
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24 | * by the Free Software Foundation; either version 2 of the License, or (at |
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25 | * your option) any later version. |
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26 | * |
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27 | * Disydent is distributed in the hope that it will be |
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28 | * useful, but WITHOUT ANY WARRANTY; without even the implied warranty of |
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29 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General |
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30 | * Public License for more details. |
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31 | * |
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32 | * You should have received a copy of the GNU General Public License along |
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33 | * with the GNU C Library; see the file COPYING. If not, write to the Free |
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34 | * Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. |
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35 | */ |
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36 | |
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37 | #include "sc_module.h" // method_process_t |
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38 | #include "gen_code.h" // gen_scheduling_code_for_dynamic_link & gen_scheduling_code_for_static_func |
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39 | #include "internal.h" // dump_all_graph |
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40 | #include "graph_cass.h" // makegraph |
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41 | #include "process_dependency.h" // MakeProcessDependencyList |
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42 | #include "signal_dependency.h" // MakeSignalDependencyGraph |
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43 | #include "mouchard_scheduling.h" // MakeMouchardScheduling |
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44 | #include "graph_signals.h" // makegraph |
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45 | //#include "module_hierarchy2dot.h" |
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46 | |
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47 | #include <cstdio> |
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48 | #include <cassert> |
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49 | #include <iostream> |
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50 | #include <algorithm> //std::sort |
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51 | |
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52 | #ifdef HAVE_CONFIG_H |
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53 | #include "config.h" |
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54 | #endif |
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55 | |
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56 | using namespace std; |
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57 | |
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58 | namespace sc_core { |
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59 | |
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60 | /* ***************************** */ |
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61 | /* Dumping functions (for debug) */ |
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62 | /* ***************************** */ |
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63 | |
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64 | template <typename T> |
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65 | ostream& operator << (ostream &o, const vector<T*> &v) |
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66 | { |
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67 | typename vector<T*>::const_iterator i; |
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68 | for (i = v.begin(); i != v.end(); ++i) { |
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69 | o << **i << " "; |
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70 | } |
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71 | return o; |
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72 | } |
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73 | |
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74 | /* ************ */ |
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75 | /* functions */ |
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76 | /****************/ |
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77 | |
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78 | // |
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79 | // sort_functions splits and sorts instances_list into three functions lists : |
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80 | method_process_list_t transition_func_list; |
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81 | method_process_list_t moore_func_list; |
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82 | method_process_list_t combinational_func_list; |
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83 | |
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84 | #if 0 |
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85 | static |
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86 | bool |
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87 | isCostly (const char *n) |
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88 | { |
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89 | const char *costly[] = {/*"vgmn", */"mips", "cache", NULL}; |
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90 | int i = 0; |
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91 | do { |
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92 | if (strstr (n, costly[i]) != NULL) |
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93 | return true; |
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94 | } while (costly[++i] != NULL); |
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95 | return false; |
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96 | } |
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97 | |
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98 | static |
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99 | bool |
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100 | only_sort_by_module_ptr (const method_process_t *a1, |
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101 | const method_process_t *a2) |
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102 | { |
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103 | assert(a1 != NULL); |
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104 | assert(a2 != NULL); |
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105 | sc_module *m1 = a1->module; |
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106 | sc_module *m2 = a2->module; |
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107 | const char* n1 = m1->basename (); |
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108 | const char* n2 = m2->basename (); |
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109 | bool h1 = isCostly (n1); |
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110 | bool h2 = isCostly (n2); |
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111 | if ((h1 ^ h2) == true) |
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112 | return h1 > h2; |
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113 | if (a1->module == a2->module) |
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114 | { |
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115 | union { |
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116 | SC_ENTRY_FUNC func; |
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117 | unsigned long addr_l; |
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118 | unsigned long long addr_ll; |
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119 | } addr1, addr2; |
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120 | addr1.func = a1->func; |
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121 | addr2.func = a2->func; |
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122 | assert(addr1.addr_ll != addr2.addr_ll); |
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123 | if ( sizeof(SC_ENTRY_FUNC) == 4 ) { |
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124 | return (addr1.addr_l < addr2.addr_l); |
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125 | } else { |
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126 | return (addr1.addr_ll < addr2.addr_ll); |
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127 | } |
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128 | } |
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129 | return (a1->module < a2->module); |
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130 | } |
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131 | #endif |
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132 | #if 1 |
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133 | static |
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134 | bool |
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135 | sort_by_module_ptr (const method_process_t *a1, |
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136 | const method_process_t *a2) |
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137 | { |
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138 | assert(a1 != NULL); |
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139 | assert(a2 != NULL); |
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140 | return (a1->module < a2->module); |
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141 | } |
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142 | |
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143 | static |
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144 | bool |
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145 | sort_by_fct_ptr (const method_process_t *a1, |
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146 | const method_process_t *a2) |
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147 | { |
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148 | assert(a1 != NULL); |
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149 | assert(a2 != NULL); |
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150 | union { |
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151 | SC_ENTRY_FUNC func; |
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152 | unsigned long addr_l; |
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153 | unsigned long long addr_ll; |
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154 | } addr1, addr2; |
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155 | addr1.func = a1->func; |
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156 | addr2.func = a2->func; |
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157 | if (a1->func == a2->func) |
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158 | return sort_by_module_ptr (a1,a2); |
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159 | if ( sizeof(SC_ENTRY_FUNC) == 4 ) { |
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160 | return (addr1.addr_l < addr2.addr_l); |
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161 | } else { |
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162 | return (addr1.addr_ll < addr2.addr_ll); |
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163 | } |
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164 | } |
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165 | #endif |
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166 | void |
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167 | sort_functions () |
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168 | { |
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169 | #if 0 |
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170 | cerr << method_process_list << endl; |
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171 | #endif |
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172 | method_process_list_t::const_iterator m; |
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173 | for (m = method_process_list.begin(); m != method_process_list.end(); ++m) { |
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174 | if ((*m)->is_combinational()) combinational_func_list.push_back(*m); |
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175 | else if ((*m)->is_transition ()) transition_func_list.push_back(*m); |
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176 | else if ((*m)->is_genmoore ()) moore_func_list.push_back(*m); |
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177 | } |
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178 | #if 1 |
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179 | // Sort transition functions by method pointer (1) and by module pointer (2) |
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180 | std::sort (transition_func_list.begin(), transition_func_list.end(), sort_by_fct_ptr); |
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181 | // Sort generation functions by method pointer (1) and by module pointer (2) |
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182 | std::sort (moore_func_list.begin(), moore_func_list.end(), sort_by_fct_ptr); |
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183 | #endif |
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184 | #if 0 |
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185 | std::sort (transition_func_list.begin(), transition_func_list.end(), only_sort_by_module_ptr); |
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186 | std::sort (moore_func_list.begin(), moore_func_list.end(), only_sort_by_module_ptr); |
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187 | #endif |
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188 | } |
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189 | |
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190 | /* ****************** */ |
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191 | /* process dependency */ |
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192 | /* ****************** */ |
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193 | |
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194 | static |
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195 | SignalDependencyGraph* |
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196 | MakeAcyclicSignalDependencyGraph () |
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197 | { |
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198 | if (dump_all_graph) { |
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199 | const PortDependencyGraph &port_graph = get_port_dependency_graph (); |
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200 | PortDependencyGraph2dot ("port_graph", port_graph); |
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201 | } |
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202 | |
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203 | SignalDependencyGraph* sig_graph = MakeSignalDependencyGraph (); |
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204 | |
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205 | if (dump_all_graph) |
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206 | SignalDependencyGraph2dot ("signal_graph",*sig_graph); |
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207 | |
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208 | if (!Check (*sig_graph)) |
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209 | { |
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210 | cerr << "The signal dependency graph is not valid.\n"; |
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211 | exit (29092004); |
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212 | } |
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213 | |
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214 | #if 1 |
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215 | if (!Check (method_process_list,*sig_graph)) |
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216 | { |
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217 | cerr << "Sensitivity list is not valid.\n"; |
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218 | exit (30092004); |
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219 | } |
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220 | #endif |
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221 | |
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222 | // There is a cycle in the signal dependency graph ? |
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223 | Graph *sig_knuth = makegraph (*sig_graph); |
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224 | strong_component_list_t *s = strong_component(sig_knuth); |
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225 | |
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226 | if (dump_all_graph) |
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227 | SignalDependencyOrder2txt ("signal_order",*s); |
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228 | |
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229 | if (has_cycle (*s)) |
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230 | { |
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231 | cerr << "Error : There is a cycle in the signal dependency graph.\n"; |
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232 | #if 0 |
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233 | print_cycle (cerr, get_cycle (*s)); |
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234 | #endif |
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235 | exit (24092004); |
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236 | } |
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237 | return sig_graph; |
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238 | } |
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239 | |
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240 | static |
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241 | ProcessDependencyList* |
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242 | MouchardScheduling () |
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243 | { |
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244 | SignalDependencyGraph *sig_graph = MakeAcyclicSignalDependencyGraph (); |
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245 | assert(sig_graph != NULL); |
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246 | // Create the process evaluation list |
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247 | ProcessDependencyList* process_list = MakeMouchardScheduling (*sig_graph); |
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248 | assert(process_list != NULL); |
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249 | |
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250 | if (dump_all_graph) |
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251 | ProcessDependencyList2dot ("process_order",*process_list); |
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252 | |
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253 | return process_list; |
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254 | } |
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255 | |
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256 | static |
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257 | ProcessDependencyList* |
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258 | BuchmannScheduling () |
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259 | { |
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260 | SignalDependencyGraph *sig_graph = MakeAcyclicSignalDependencyGraph (); |
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261 | // Create the process evaluation list |
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262 | ProcessDependencyList* process_list = MakeProcessDependencyList (*sig_graph); |
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263 | |
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264 | if (dump_all_graph) |
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265 | ProcessDependencyList2dot ("process_order",*process_list); |
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266 | |
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267 | return process_list; |
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268 | } |
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269 | |
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270 | string |
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271 | get_scheduling (int scheduling_method) |
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272 | { |
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273 | /* marque les fonctions comme fonction de mealy ou non */ |
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274 | if (dump_funclist_info) |
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275 | cerr << "method process list : " << method_process_list << "\n"; |
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276 | sort_functions (); |
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277 | if (dump_funclist_info) |
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278 | { |
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279 | cerr << "Transition functions : " << transition_func_list << "\n"; |
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280 | cerr << "Moore generation functions : " << moore_func_list << "\n"; |
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281 | cerr << "Mealy generation functions : " << combinational_func_list << "\n"; |
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282 | } |
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283 | |
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284 | /* Schedule */ |
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285 | string base_name; |
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286 | switch (scheduling_method) { |
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287 | case BUCHMANN_SCHEDULING : { |
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288 | // Generate the scheduled code, compile and link. |
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289 | // Buchmann's thesis explains this scheduling method. |
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290 | // Uses port dependancies like Dr. Mouchard. |
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291 | ProcessDependencyList* process_list = BuchmannScheduling (); |
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292 | if (dynamic_link_of_scheduling_code) |
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293 | base_name = gen_scheduling_code_for_dynamic_link (transition_func_list, moore_func_list,*process_list); |
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294 | else |
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295 | gen_scheduling_code_for_static_func (transition_func_list, moore_func_list, *process_list); |
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296 | break; |
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297 | } |
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298 | case MOUCHARD_SCHEDULING : { |
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299 | // Generate the scheduled code, compile and link. |
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300 | // Mouchard's thesis explains this scheduling method. |
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301 | // Uses port dependancies like Dr. Mouchard. |
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302 | // CAUTION : unlike FastSysC, this scheduling is totally static |
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303 | // and does not use an event-driven scheduler. |
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304 | ProcessDependencyList* process_list = MouchardScheduling (); |
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305 | if (dynamic_link_of_scheduling_code) |
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306 | base_name = gen_scheduling_code_for_dynamic_link(transition_func_list, moore_func_list,*process_list); |
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307 | else |
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308 | gen_scheduling_code_for_static_func (transition_func_list, moore_func_list, *process_list); |
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309 | break; |
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310 | } |
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311 | case CASS_SCHEDULING : { |
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312 | // Generate the scheduled code, compile and link |
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313 | // Hommais's thesis explains this scheduling method (like CASS strategy) |
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314 | // Doesn't use port dependancies |
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315 | Graph *g = makegraph (&combinational_func_list); |
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316 | if (dump_all_graph && g) |
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317 | graph2dot("module_graph", *g); |
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318 | strong_component_list_t *strong_list = strong_component (g); |
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319 | if (dynamic_link_of_scheduling_code) |
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320 | base_name = gen_scheduling_code_for_dynamic_link(transition_func_list, moore_func_list,*strong_list); |
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321 | else |
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322 | gen_scheduling_code_for_quasistatic_func (transition_func_list, moore_func_list, *strong_list); |
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323 | break; |
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324 | } |
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325 | default : |
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326 | cerr << "Error : Unable to schedule SystemC process." |
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327 | "Please select a scheduling method.\n"; |
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328 | exit (35); |
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329 | } |
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330 | return base_name; |
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331 | } |
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332 | |
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333 | bool |
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334 | run_schedule_editor (const char *schedule) |
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335 | { |
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336 | char buf[128]; |
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337 | const char *editor = getenv ("EDITOR"); |
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338 | if (editor == NULL) |
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339 | editor = "vim"; |
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340 | sprintf (buf, "(cd '%s' ; %s '%s')", temporary_dir, editor, schedule); |
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341 | if (dump_stage) |
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342 | cerr << "Executing : " << buf << endl; |
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343 | return (system(buf) == 0); |
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344 | } |
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345 | |
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346 | ///////////////////////// |
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347 | |
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348 | } // end of sc_core namespace |
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349 | |
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