[82] | 1 | #ifdef SYSTEMC |
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| 2 | /* |
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| 3 | * $Id: Decod_queue_genMoore.cpp 82 2008-05-01 16:48:45Z rosiere $ |
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| 4 | * |
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| 5 | * [ Description ] |
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| 6 | * |
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| 7 | */ |
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| 8 | |
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| 9 | #include "Behavioural/Core/Multi_Front_end/Front_end/Decod_unit/Decod_queue/include/Decod_queue.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 decod_unit { |
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| 17 | namespace decod_queue { |
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| 18 | |
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| 19 | |
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| 20 | #undef FUNCTION |
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| 21 | #define FUNCTION "Decod_queue::genMoore" |
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| 22 | void Decod_queue::genMoore (void) |
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| 23 | { |
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| 24 | log_begin(Decod_queue,FUNCTION); |
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| 25 | |
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| 26 | //-------------------------------------------------------------------- |
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| 27 | //-----[ DECOD_IN ]--------------------------------------------------- |
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| 28 | //-------------------------------------------------------------------- |
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| 29 | { |
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| 30 | Tcontrol_t ack = reg_QUEUE->size() < _param->_size_bank; |
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| 31 | |
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| 32 | for (uint32_t i=0; i<_param->_nb_inst_decod; i++) |
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| 33 | { |
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| 34 | internal_DECOD_IN_ACK [i] = ack; |
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| 35 | PORT_WRITE(out_DECOD_IN_ACK [i],ack); |
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| 36 | } |
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| 37 | } |
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| 38 | |
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| 39 | //-------------------------------------------------------------------- |
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| 40 | //-----[ DECOD_OUT ]-------------------------------------------------- |
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| 41 | //-------------------------------------------------------------------- |
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| 42 | if (not reg_QUEUE->empty()) |
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| 43 | for (uint32_t i=0; i<_param->_nb_inst_decod; i++) |
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| 44 | { |
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| 45 | if (_param->_have_port_context_id) |
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| 46 | PORT_WRITE(out_DECOD_OUT_CONTEXT_ID [i],reg_QUEUE->front()->_context_id [i]); |
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| 47 | if (_param->_have_port_depth) |
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| 48 | PORT_WRITE(out_DECOD_OUT_DEPTH [i],reg_QUEUE->front()->_depth [i]); |
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| 49 | PORT_WRITE(out_DECOD_OUT_TYPE [i],reg_QUEUE->front()->_type [i]); |
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| 50 | PORT_WRITE(out_DECOD_OUT_OPERATION [i],reg_QUEUE->front()->_operation [i]); |
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| 51 | PORT_WRITE(out_DECOD_OUT_IS_DELAY_SLOT [i],reg_QUEUE->front()->_is_delay_slot [i]); |
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| 52 | PORT_WRITE(out_DECOD_OUT_ADDRESS [i],reg_QUEUE->front()->_address [i]); |
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| 53 | PORT_WRITE(out_DECOD_OUT_HAS_IMMEDIAT [i],reg_QUEUE->front()->_has_immediat [i]); |
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| 54 | PORT_WRITE(out_DECOD_OUT_IMMEDIAT [i],reg_QUEUE->front()->_immediat [i]); |
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| 55 | PORT_WRITE(out_DECOD_OUT_READ_RA [i],reg_QUEUE->front()->_read_ra [i]); |
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| 56 | PORT_WRITE(out_DECOD_OUT_NUM_REG_RA [i],reg_QUEUE->front()->_num_reg_ra [i]); |
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| 57 | PORT_WRITE(out_DECOD_OUT_READ_RB [i],reg_QUEUE->front()->_read_rb [i]); |
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| 58 | PORT_WRITE(out_DECOD_OUT_NUM_REG_RB [i],reg_QUEUE->front()->_num_reg_rb [i]); |
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| 59 | PORT_WRITE(out_DECOD_OUT_READ_RC [i],reg_QUEUE->front()->_read_rc [i]); |
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| 60 | PORT_WRITE(out_DECOD_OUT_NUM_REG_RC [i],reg_QUEUE->front()->_num_reg_rc [i]); |
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| 61 | PORT_WRITE(out_DECOD_OUT_WRITE_RD [i],reg_QUEUE->front()->_write_rd [i]); |
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| 62 | PORT_WRITE(out_DECOD_OUT_NUM_REG_RD [i],reg_QUEUE->front()->_num_reg_rd [i]); |
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| 63 | PORT_WRITE(out_DECOD_OUT_WRITE_RE [i],reg_QUEUE->front()->_write_re [i]); |
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| 64 | PORT_WRITE(out_DECOD_OUT_NUM_REG_RE [i],reg_QUEUE->front()->_num_reg_re [i]); |
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| 65 | PORT_WRITE(out_DECOD_OUT_EXCEPTION_USE [i],reg_QUEUE->front()->_exception_use [i]); |
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| 66 | } |
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| 67 | |
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| 68 | //-------------------------------------------------------------------- |
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| 69 | //-----[ NB_INST ]---------------------------------------------------- |
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| 70 | //-------------------------------------------------------------------- |
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| 71 | for (uint32_t i=0; i<_param->_nb_context; i++) |
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| 72 | PORT_WRITE(out_NB_INST_ALL [i], reg_NB_INST [i]); |
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| 73 | |
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| 74 | log_end(Decod_queue,FUNCTION); |
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| 75 | }; |
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| 76 | |
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| 77 | }; // end namespace decod_queue |
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| 78 | }; // end namespace decod_unit |
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| 79 | }; // end namespace front_end |
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| 80 | }; // end namespace multi_front_end |
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| 81 | }; // end namespace core |
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| 82 | |
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| 83 | }; // end namespace behavioural |
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| 84 | }; // end namespace morpheo |
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| 85 | #endif |
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