#ifdef SYSTEMC /* * $Id$ * * [ Description ] * */ #include "Behavioural/Stage_1_Ifetch/Predictor/Meta_Predictor/Two_Level_Branch_Predictor/Two_Level_Branch_Predictor_Glue/include/Two_Level_Branch_Predictor_Glue.h" namespace morpheo { namespace behavioural { namespace stage_1_ifetch { namespace predictor { namespace meta_predictor { namespace two_level_branch_predictor { namespace two_level_branch_predictor_glue { void Two_Level_Branch_Predictor_Glue::allocation (void) { string rename; log_printf(FUNC,Two_Level_Branch_Predictor_Glue,"allocation","Begin"); #if defined(STATISTICS) or defined(VHDL_TESTBENCH) in_CLOCK = new SC_CLOCK ("in_CLOCK"); #endif if (_param._have_bht) { in_PREDICT_BHT_ACK = new SC_IN (Tcontrol_t) * [_param._nb_prediction]; out_PREDICT_BHT_ADDRESS = new SC_OUT(Taddress_t) * [_param._nb_prediction]; } if (_param._have_pht) { in_PREDICT_PHT_ACK = new SC_IN (Tcontrol_t) * [_param._nb_prediction]; out_PREDICT_PHT_ADDRESS = new SC_OUT(Taddress_t) * [_param._nb_prediction]; } if (_param._have_bht and _param._have_pht) in_PREDICT_BHT_HISTORY = new SC_IN (Tbht_history_t) * [_param._nb_prediction]; out_PREDICT_ACK = new SC_OUT(Tcontrol_t) * [_param._nb_prediction]; in_PREDICT_ADDRESS = new SC_IN (Taddress_t) * [_param._nb_prediction]; for (uint32_t i=0; i<_param._nb_prediction; i++) { if (_param._have_bht) { rename = " in_PREDICT_BHT_ACK_" +toString(i); in_PREDICT_BHT_ACK [i] = new SC_IN (Tcontrol_t) (rename.c_str()); rename = "out_PREDICT_BHT_ADDRESS_"+toString(i); out_PREDICT_BHT_ADDRESS [i] = new SC_OUT(Taddress_t) (rename.c_str()); } if (_param._have_pht) { rename = " in_PREDICT_PHT_ACK_" +toString(i); in_PREDICT_PHT_ACK [i] = new SC_IN (Tcontrol_t) (rename.c_str()); rename = "out_PREDICT_PHT_ADDRESS_"+toString(i); out_PREDICT_PHT_ADDRESS [i] = new SC_OUT(Taddress_t) (rename.c_str()); } if (_param._have_bht and _param._have_pht) { rename = " in_PREDICT_BHT_HISTORY_"+toString(i); in_PREDICT_BHT_HISTORY [i] = new SC_IN (Tbht_history_t) (rename.c_str()); } rename = "out_PREDICT_ACK_" +toString(i); out_PREDICT_ACK [i] = new SC_OUT(Tcontrol_t) (rename.c_str()); rename = " in_PREDICT_ADDRESS_" +toString(i); in_PREDICT_ADDRESS [i] = new SC_IN (Taddress_t) (rename.c_str()); } if (_param._have_bht) { in_BRANCH_COMPLETE_BHT_ACK = new SC_IN (Tcontrol_t) * [_param._nb_branch_complete]; out_BRANCH_COMPLETE_BHT_ADDRESS = new SC_OUT(Taddress_t) * [_param._nb_branch_complete]; } if (_param._have_pht) { in_BRANCH_COMPLETE_PHT_ACK = new SC_IN (Tcontrol_t) * [_param._nb_branch_complete]; out_BRANCH_COMPLETE_PHT_ADDRESS = new SC_OUT(Taddress_t) * [_param._nb_branch_complete]; } if (_param._have_bht and _param._have_pht) in_BRANCH_COMPLETE_BHT_HISTORY = new SC_IN (Tbht_history_t) * [_param._nb_branch_complete]; out_BRANCH_COMPLETE_ACK = new SC_OUT(Tcontrol_t) * [_param._nb_branch_complete]; in_BRANCH_COMPLETE_ADDRESS = new SC_IN (Taddress_t) * [_param._nb_branch_complete]; for (uint32_t i=0; i<_param._nb_branch_complete; i++) { if (_param._have_bht) { rename = " in_BRANCH_COMPLETE_BHT_ACK_" +toString(i); in_BRANCH_COMPLETE_BHT_ACK [i] = new SC_IN (Tcontrol_t) (rename.c_str()); rename = "out_BRANCH_COMPLETE_BHT_ADDRESS_"+toString(i); out_BRANCH_COMPLETE_BHT_ADDRESS [i] = new SC_OUT(Taddress_t) (rename.c_str()); } if (_param._have_pht) { rename = " in_BRANCH_COMPLETE_PHT_ACK_" +toString(i); in_BRANCH_COMPLETE_PHT_ACK [i] = new SC_IN (Tcontrol_t) (rename.c_str()); rename = "out_BRANCH_COMPLETE_PHT_ADDRESS_"+toString(i); out_BRANCH_COMPLETE_PHT_ADDRESS [i] = new SC_OUT(Taddress_t) (rename.c_str()); } if (_param._have_bht and _param._have_pht) { rename = " in_BRANCH_COMPLETE_BHT_HISTORY_"+toString(i); in_BRANCH_COMPLETE_BHT_HISTORY [i] = new SC_IN (Tbht_history_t) (rename.c_str()); } rename = "out_BRANCH_COMPLETE_ACK_" +toString(i); out_BRANCH_COMPLETE_ACK [i] = new SC_OUT(Tcontrol_t) (rename.c_str()); rename = " in_BRANCH_COMPLETE_ADDRESS_" +toString(i); in_BRANCH_COMPLETE_ADDRESS [i] = new SC_IN (Taddress_t) (rename.c_str()); } // ~~~~~[ Component ]~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ log_printf(FUNC,Two_Level_Branch_Predictor_Glue,"allocation","End"); }; }; // end namespace two_level_branch_predictor_glue }; // end namespace two_level_branch_predictor }; // end namespace meta_predictor }; // end namespace predictor }; // end namespace stage_1_ifetch }; // end namespace behavioural }; // end namespace morpheo #endif