cvw/src/ieu/shifter.sv

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///////////////////////////////////////////
// shifter.sv
//
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// Written: David_Harris@hmc.edu, Sarah.Harris@unlv.edu, Kevin Kim <kekim@hmc.edu>
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// Created: 9 January 2021
// Modified: 6 February 2023
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//
// Purpose: RISC-V 32/64 bit shifter
//
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// Documentation: RISC-V System on Chip Design Chapter 4 (Figure 4.5, Table 4.3)
//
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// A component of the CORE-V-WALLY configurable RISC-V project.
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//
// Copyright (C) 2021-23 Harvey Mudd College & Oklahoma State University
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//
// SPDX-License-Identifier: Apache-2.0 WITH SHL-2.1
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//
// Licensed under the Solderpad Hardware License v 2.1 (the “License”); you may not use this file
// except in compliance with the License, or, at your option, the Apache License version 2.0. You
// may obtain a copy of the License at
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//
// https://solderpad.org/licenses/SHL-2.1/
//
// Unless required by applicable law or agreed to in writing, any work distributed under the
// License is distributed on an “AS IS” BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND,
// either express or implied. See the License for the specific language governing permissions
// and limitations under the License.
////////////////////////////////////////////////////////////////////////////////////////////////
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`include "wally-config.vh"
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module shifter (
input logic [`XLEN-1:0] A, // shift Source
input logic [`LOG_XLEN-1:0] Amt, // Shift amount
input logic Right, Rotate, W64, SubArith, // Shift right, rotate, W64-type operation, arithmetic shift
output logic [`XLEN-1:0] Y); // Shifted result
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logic [2*`XLEN-2:0] z, zshift; // Input to funnel shifter, shifted amount before truncated to 32 or 64 bits
logic [`LOG_XLEN-1:0] amttrunc, Offset; // Shift amount adjusted for RV64, right-shift amount
logic Sign; // Sign bit for sign extension
assign Sign = A[`XLEN-1] & SubArith; // sign bit for sign extension
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if (`ZBB_SUPPORTED) begin: rotfunnel
if (`XLEN==32) begin // rv32 with rotates
always_comb // funnel mux
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case({Right, Rotate})
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2'b00: z = {A[31:0], 31'b0};
2'b01: z = {A[31:0], A[31:1]};
2'b10: z = {{31{Sign}}, A[31:0]};
2'b11: z = {A[30:0], A};
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endcase
assign amttrunc = Amt; // shift amount
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end else begin // rv64 with rotates
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// shifter rotate source select mux
logic [`XLEN-1:0] RotA; // rotate source
mux2 #(`XLEN) rotmux(A, {A[31:0], A[31:0]}, W64, RotA); // W64 rotatons
always_comb // funnel mux
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case ({Right, Rotate})
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2'b00: z = {A[63:0],{63'b0}};
2'b01: z = {RotA, RotA[63:1]};
2'b10: z = {{63{Sign}}, A[63:0]};
2'b11: z = {RotA[62:0], RotA};
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endcase
assign amttrunc = W64 ? {1'b0, Amt[4:0]} : Amt; // 32- or 64-bit shift
end
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end else begin: norotfunnel
if (`XLEN==32) begin:shifter // RV32
always_comb // funnel mux
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if (Right) z = {{31{Sign}}, A[31:0]};
else z = {A[31:0], 31'b0};
assign amttrunc = Amt; // shift amount
end else begin:shifter // RV64
always_comb // funnel mux
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if (Right) z = {{63{Sign}}, A[63:0]};
else z = {A[63:0], {63'b0}};
assign amttrunc = W64 ? {1'b0, Amt[4:0]} : Amt; // 32- or 64-bit shift
end
end
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// Opposite offset for right shifts
assign Offset = Right ? amttrunc : ~amttrunc;
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// Funnel operation
assign zshift = z >> Offset;
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assign Y = zshift[`XLEN-1:0];
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endmodule