forked from Github_Repos/cvw
		
	
		
			
				
	
	
		
			176 lines
		
	
	
		
			5.9 KiB
		
	
	
	
		
			Systemverilog
		
	
	
	
	
	
			
		
		
	
	
			176 lines
		
	
	
		
			5.9 KiB
		
	
	
	
		
			Systemverilog
		
	
	
	
	
	
///////////////////////////////////////////
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// datapath.sv
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//
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// Written: Ross Thompson
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// email: ross1728@gmail.com
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// Created: November 9, 2019
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// Modified: March 04, 2021
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//
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// Purpose: Finds the current function or global assembly label based on PCE.
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// 
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// A component of the Wally configurable RISC-V project.
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// 
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// Copyright (C) 2021 Harvey Mudd College & Oklahoma State University
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//
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// MIT LICENSE
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// Permission is hereby granted, free of charge, to any person obtaining a copy of this 
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// software and associated documentation files (the "Software"), to deal in the Software 
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// without restriction, including without limitation the rights to use, copy, modify, merge, 
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// publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons 
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// to whom the Software is furnished to do so, subject to the following conditions:
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//
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//   The above copyright notice and this permission notice shall be included in all copies or 
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//   substantial portions of the Software.
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//
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//   THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, 
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//   INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR 
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//   PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS 
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//   BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, 
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//   TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE 
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//   OR OTHER DEALINGS IN THE SOFTWARE.
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////////////////////////////////////////////////////////////////////////////////////////////////
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`include "wally-config.vh"
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module FunctionName(reset, clk, ProgramAddrMapFile, ProgramLabelMapFile);
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  input logic reset;
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  input logic clk;
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  input string ProgramAddrMapFile;
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  input string ProgramLabelMapFile;
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  logic [`XLEN-1:0] ProgramAddrMapMemory [];
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  string 	    ProgramLabelMapMemory [integer];
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  string 	    FunctionName;
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  logic [`XLEN-1:0] PCF, PCD, PCE, FunctionAddr;
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  logic 	    StallD, StallE, FlushD, FlushE;
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  integer 	    ProgramAddrIndex, ProgramAddrIndexQ;
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  assign PCF = testbench.dut.core.PCF;
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  assign StallD = testbench.dut.core.StallD;
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  assign StallE = testbench.dut.core.StallE;  
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  assign FlushD = testbench.dut.core.FlushD;
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  assign FlushE = testbench.dut.core.FlushE;
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  // copy from ifu
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  // when the F and D stages are flushed we need to ensure the PCE is held so that the function name does not
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  // erroneously change.
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  flopenrc #(`XLEN) PCDReg(clk, reset, 1'b0, ~StallD, FlushE & FlushD ? PCE : PCF, PCD);
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  flopenr #(`XLEN) PCEReg(clk, reset, ~StallE, FlushE ? PCE : PCD, PCE);
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  task automatic bin_search_min;
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    input logic [`XLEN-1:0] pc;
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    input logic [`XLEN-1:0] length;
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    ref logic [`XLEN-1:0]   array [];
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    output logic [`XLEN-1:0] minval;
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    output     logic [`XLEN-1:0] mid;
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    logic [`XLEN-1:0] 	     left, right;
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    begin
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      if ( pc == 0 ) begin
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	// *** want to  keep the old value for mid and minval
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	mid = 0;
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	return;
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      end
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      left = 0;
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      right = length;
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      while (left <= right) begin
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	mid = left + ((right - left) / 2);
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	if (array[mid] == pc) begin
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	  minval = array[mid];
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	  return;
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        end
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	if (array[mid] < pc) begin
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	  left = mid + 1;
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	end else if( array[mid] > pc) begin
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	  right = mid -1;
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	end else begin
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	  //$display("Critical Error in FunctionName. PC, %x not found.", pc);
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	  return;
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	  //$stop();
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	end	  
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      end // while (left <= right)
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      // if the element pc is now found, right and left will be equal at this point.
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      // we need to check if pc is less than the array at left or greather.
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      // if it is less than pc, then we select left as the index.
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      // if it is greather we want 1 less than left.
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      if (array[left] < pc) begin
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	minval = array[left];
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	mid = left;      
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	return;	    
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      end else begin
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	minval = array[left-1];
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	mid = left - 1;	
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	return;
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      end
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    end
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  endtask // bin_search_min
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  integer ProgramAddrMapFP, ProgramLabelMapFP;
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  integer ProgramAddrMapLineCount, ProgramLabelMapLineCount;
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  longint ProgramAddrMapLine;
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  string  ProgramLabelMapLine;
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  integer status;
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  // preload
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//  initial begin
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  always @ (posedge reset) begin
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    $readmemh(ProgramAddrMapFile, ProgramAddrMapMemory);
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    // we need to count the number of lines in the file so we can set FunctionRadixLineCount.
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    ProgramAddrMapLineCount = 0;
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    ProgramAddrMapFP = $fopen(ProgramAddrMapFile, "r");
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    // read line by line to count lines
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    if (ProgramAddrMapFP) begin
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      while (! $feof(ProgramAddrMapFP)) begin
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	status = $fscanf(ProgramAddrMapFP, "%h\n", ProgramAddrMapLine);
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	ProgramAddrMapLineCount = ProgramAddrMapLineCount + 1;
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      end
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    end else begin
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      $display("Cannot open file %s for reading.", ProgramAddrMapFile);
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    end
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    $fclose(ProgramAddrMapFP);
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    // ProgramIndexFile maps the program name to the compile index.
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    // The compile index is then used to inditify the application
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    // in the custom radix.
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    // Build an associative array to convert the name to an index.
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    ProgramLabelMapLineCount = 0;
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    ProgramLabelMapFP = $fopen(ProgramLabelMapFile, "r");
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    if (ProgramLabelMapFP) begin
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      while (! $feof(ProgramLabelMapFP)) begin
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	status = $fscanf(ProgramLabelMapFP, "%s\n", ProgramLabelMapLine);
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	ProgramLabelMapMemory[ProgramLabelMapLineCount] = ProgramLabelMapLine;
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	ProgramLabelMapLineCount = ProgramLabelMapLineCount + 1;
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      end
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    end else begin
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      $display("Cannot open file %s for reading.", ProgramLabelMapFile);
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    end
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    $fclose(ProgramLabelMapFP);
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  end
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  always @(PCE) begin
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    bin_search_min(PCE, ProgramAddrMapLineCount, ProgramAddrMapMemory, FunctionAddr, ProgramAddrIndex);
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  end
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  logic OrReducedAdr, AnyUnknown;
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  assign OrReducedAdr = |ProgramAddrIndex;
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  assign AnyUnknown = (OrReducedAdr === 1'bx) ? 1'b1 : 1'b0;
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  initial ProgramAddrIndex = '0;
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  assign FunctionName = AnyUnknown ? "Unknown!" : ProgramLabelMapMemory[ProgramAddrIndex];
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endmodule // function_radix
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