2017-12-04 21:26:26 +00:00
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`ifndef RV32_HAZARD
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`define RV32_HAZARD
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2017-12-12 21:04:33 +00:00
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module rv32_hazard_unit (
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2017-12-04 21:47:09 +00:00
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/* control in */
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2017-12-04 22:41:47 +00:00
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input [4:0] decode_rs1_in,
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input [4:0] decode_rs2_in,
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2017-12-06 14:51:55 +00:00
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input decode_mem_read_in,
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2017-12-05 18:33:25 +00:00
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input [4:0] decode_rd_in,
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2017-12-06 14:53:42 +00:00
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input decode_rd_write_in,
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2017-12-05 18:33:25 +00:00
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2017-12-04 21:48:39 +00:00
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input mem_branch_taken_in,
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2017-12-04 21:32:05 +00:00
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2017-12-04 21:47:09 +00:00
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/* control out */
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2017-12-09 21:03:45 +00:00
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output logic fetch_stall_out,
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output logic fetch_flush_out,
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2017-12-04 21:26:26 +00:00
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2017-12-09 21:03:45 +00:00
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output logic decode_stall_out,
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output logic decode_flush_out,
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2017-12-04 21:26:26 +00:00
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2017-12-09 21:03:45 +00:00
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output logic execute_stall_out,
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output logic execute_flush_out,
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2017-12-04 21:26:26 +00:00
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2017-12-09 21:03:45 +00:00
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output logic mem_stall_out,
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output logic mem_flush_out
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2017-12-04 21:26:26 +00:00
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);
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2017-12-09 21:03:45 +00:00
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logic fetch_wait_for_mem_read;
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assign fetch_wait_for_mem_read = (decode_rs1_in == decode_rd_in || decode_rs2_in == decode_rd_in) && |decode_rd_in && decode_mem_read_in && decode_rd_write_in;
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2017-12-04 22:41:47 +00:00
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2017-12-05 18:33:25 +00:00
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assign fetch_stall_out = decode_stall_out || fetch_wait_for_mem_read;
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2017-12-04 21:26:26 +00:00
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assign fetch_flush_out = 0;
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2017-12-05 18:33:25 +00:00
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assign decode_stall_out = execute_stall_out;
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2017-12-04 21:48:39 +00:00
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assign decode_flush_out = fetch_stall_out || mem_branch_taken_in;
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2017-12-04 21:26:26 +00:00
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assign execute_stall_out = mem_stall_out;
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2017-12-04 21:48:39 +00:00
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assign execute_flush_out = decode_stall_out || mem_branch_taken_in;
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2017-12-04 21:26:26 +00:00
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assign mem_stall_out = 0;
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assign mem_flush_out = execute_stall_out;
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endmodule
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`endif
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