[78] | 1 | /* |
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| 2 | * $Id: Return_Address_Stack_allocation.cpp 81 2008-04-15 18:40:01Z rosiere $ |
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| 3 | * |
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| 4 | * [ Description ] |
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| 5 | * |
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| 6 | */ |
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| 7 | |
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| 8 | #include "Behavioural/Core/Multi_Front_end/Front_end/Prediction_unit/Return_Address_Stack/include/Return_Address_Stack.h" |
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| 9 | #include "Behavioural/include/Allocation.h" |
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| 10 | |
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| 11 | namespace morpheo { |
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| 12 | namespace behavioural { |
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| 13 | namespace core { |
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| 14 | namespace multi_front_end { |
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| 15 | namespace front_end { |
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| 16 | namespace prediction_unit { |
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| 17 | namespace return_address_stack { |
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| 18 | |
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| 19 | |
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| 20 | |
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| 21 | #undef FUNCTION |
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| 22 | #define FUNCTION "Return_Address_Stack::allocation" |
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| 23 | void Return_Address_Stack::allocation ( |
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| 24 | #ifdef STATISTICS |
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| 25 | morpheo::behavioural::Parameters_Statistics * param_statistics |
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| 26 | #else |
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| 27 | void |
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| 28 | #endif |
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| 29 | ) |
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| 30 | { |
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| 31 | log_printf(FUNC,Return_Address_Stack,FUNCTION,"Begin"); |
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| 32 | |
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| 33 | _component = new Component (_usage); |
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| 34 | |
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| 35 | Entity * entity = _component->set_entity (_name |
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| 36 | ,"Return_Address_Stack" |
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| 37 | #ifdef POSITION |
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| 38 | ,COMBINATORY |
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| 39 | #endif |
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| 40 | ); |
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| 41 | |
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| 42 | _interfaces = entity->set_interfaces(); |
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| 43 | |
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| 44 | // ~~~~~[ Interface : "" ]~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 45 | { |
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| 46 | Interface * interface = _interfaces->set_interface("" |
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| 47 | #ifdef POSITION |
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| 48 | ,IN |
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| 49 | ,SOUTH, |
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| 50 | "Generalist interface" |
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| 51 | #endif |
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| 52 | ); |
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| 53 | |
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| 54 | in_CLOCK = interface->set_signal_clk ("clock" ,1, CLOCK_VHDL_YES); |
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| 55 | in_NRESET = interface->set_signal_in <Tcontrol_t> ("nreset",1, RESET_VHDL_YES); |
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| 56 | } |
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| 57 | |
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| 58 | // ~~~~~[ Interface : "predict" ]~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 59 | { |
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| 60 | ALLOC1_INTERFACE("predict", IN, SOUTH, "predict's interface", _param->_nb_inst_predict); |
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| 61 | |
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| 62 | ALLOC1_VALACK_IN ( in_PREDICT_VAL ,VAL); |
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| 63 | ALLOC1_VALACK_OUT(out_PREDICT_ACK ,ACK); |
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| 64 | ALLOC1_SIGNAL_IN ( in_PREDICT_CONTEXT_ID ,"context_id" ,Tcontext_t,_param->_size_context_id); |
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| 65 | ALLOC1_SIGNAL_OUT(out_PREDICT_HIT ,"hit" ,Tcontrol_t,1); |
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| 66 | ALLOC1_SIGNAL_IN ( in_PREDICT_PUSH ,"push" ,Tcontrol_t,1); |
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| 67 | ALLOC1_SIGNAL_IN ( in_PREDICT_ADDRESS_PUSH,"address_push",Taddress_t,_param->_size_address); |
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| 68 | ALLOC1_SIGNAL_OUT(out_PREDICT_ADDRESS_POP ,"address_pop" ,Taddress_t,_param->_size_address); |
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| 69 | ALLOC1_SIGNAL_OUT(out_PREDICT_INDEX ,"index" ,Tptr_t ,_param->_size_index); |
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| 70 | } |
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| 71 | |
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| 72 | // ~~~~~[ Interface : "decod" ]~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 73 | { |
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| 74 | ALLOC1_INTERFACE("decod", IN, SOUTH, "decod's interface", _param->_nb_inst_decod); |
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| 75 | |
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| 76 | ALLOC1_VALACK_IN ( in_DECOD_VAL ,VAL); |
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| 77 | ALLOC1_VALACK_OUT(out_DECOD_ACK ,ACK); |
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| 78 | ALLOC1_SIGNAL_IN ( in_DECOD_CONTEXT_ID ,"context_id" ,Tcontext_t,_param->_size_context_id); |
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| 79 | ALLOC1_SIGNAL_OUT(out_DECOD_HIT ,"hit" ,Tcontrol_t,1); |
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| 80 | ALLOC1_SIGNAL_IN ( in_DECOD_PUSH ,"push" ,Tcontrol_t,1); |
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| 81 | ALLOC1_SIGNAL_IN ( in_DECOD_ADDRESS_PUSH ,"address_push" ,Taddress_t,_param->_size_address); |
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| 82 | ALLOC1_SIGNAL_OUT(out_DECOD_ADDRESS_POP ,"address_pop" ,Taddress_t,_param->_size_address); |
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| 83 | ALLOC1_SIGNAL_OUT(out_DECOD_INDEX ,"index" ,Tptr_t ,_param->_size_index); |
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| 84 | ALLOC1_SIGNAL_IN ( in_DECOD_MISS_PREDICTION,"miss_prediction",Tcontrol_t,1); |
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| 85 | } |
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| 86 | |
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| 87 | // ~~~~~[ Interface : "update" ]~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 88 | { |
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| 89 | ALLOC1_INTERFACE("update", IN, SOUTH, "update's interface", _param->_nb_inst_update); |
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| 90 | |
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| 91 | ALLOC1_VALACK_IN ( in_UPDATE_VAL ,VAL); |
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| 92 | ALLOC1_VALACK_OUT(out_UPDATE_ACK ,ACK); |
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| 93 | ALLOC1_SIGNAL_IN ( in_UPDATE_CONTEXT_ID ,"context_id" ,Tcontext_t,_param->_size_context_id); |
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| 94 | ALLOC1_SIGNAL_IN ( in_UPDATE_PUSH ,"push" ,Tcontrol_t,1); |
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| 95 | ALLOC1_SIGNAL_IN ( in_UPDATE_ADDRESS ,"address" ,Taddress_t,_param->_size_address); |
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| 96 | ALLOC1_SIGNAL_IN ( in_UPDATE_INDEX ,"index" ,Tptr_t ,_param->_size_index); |
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| 97 | ALLOC1_SIGNAL_IN ( in_UPDATE_MISS_PREDICTION,"miss_prediction",Tcontrol_t,1); |
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[81] | 98 | ALLOC1_SIGNAL_IN ( in_UPDATE_PREDICTION_IFETCH,"prediction_ifetch",Tcontrol_t,1); |
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[78] | 99 | } |
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| 100 | |
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| 101 | // ~~~~~[ Internal ]~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 102 | |
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| 103 | reg_stack = new ras_entry_t * [_param->_nb_context]; |
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| 104 | for (uint32_t i=0; i<_param->_nb_context; i++) |
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| 105 | reg_stack [i] = new ras_entry_t [_param->_size_queue [i]]; |
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| 106 | |
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| 107 | reg_TOP = new Tptr_t [_param->_nb_context]; |
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| 108 | reg_BOTTOM = new Tptr_t [_param->_nb_context]; |
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[81] | 109 | reg_NB_ELT = new Tptr_t [_param->_nb_context]; |
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[78] | 110 | |
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| 111 | reg_PREDICT_TOP = new Tptr_t [_param->_nb_context]; |
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| 112 | reg_PREDICT_BOTTOM = new Tptr_t [_param->_nb_context]; |
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[81] | 113 | reg_PREDICT_NB_ELT = new Tptr_t [_param->_nb_context]; |
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[78] | 114 | |
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| 115 | internal_PREDICT_ACK = new Tcontrol_t [_param->_nb_inst_predict]; |
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| 116 | internal_PREDICT_HIT = new Tcontrol_t [_param->_nb_inst_predict]; |
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| 117 | internal_DECOD_ACK = new Tcontrol_t [_param->_nb_inst_decod ]; |
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| 118 | internal_DECOD_HIT = new Tcontrol_t [_param->_nb_inst_decod ]; |
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| 119 | internal_UPDATE_ACK = new Tcontrol_t [_param->_nb_inst_update ]; |
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| 120 | |
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| 121 | // ~~~~~[ Component ]~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
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| 122 | |
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| 123 | #ifdef POSITION |
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| 124 | _component->generate_file(); |
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| 125 | #endif |
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| 126 | |
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| 127 | log_printf(FUNC,Return_Address_Stack,FUNCTION,"End"); |
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| 128 | }; |
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| 129 | |
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| 130 | }; // end namespace return_address_stack |
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| 131 | }; // end namespace prediction_unit |
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| 132 | }; // end namespace front_end |
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| 133 | }; // end namespace multi_front_end |
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| 134 | }; // end namespace core |
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| 135 | }; // end namespace behavioural |
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| 136 | }; // end namespace morpheo |
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