2021-01-15 04:37:51 +00:00
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///////////////////////////////////////////
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2021-01-29 04:21:12 +00:00
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// privdec.sv
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//
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// Written: David_Harris@hmc.edu 9 January 2021
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// Modified:
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//
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// Purpose: Decode Privileged & related instructions
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// See RISC-V Privileged Mode Specification 20190608 3.1.10-11
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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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2022-01-07 12:58:40 +00:00
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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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2021-01-23 15:48:12 +00:00
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`include "wally-config.vh"
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module privdec (
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input logic clk, reset,
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input logic StallM,
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input logic [31:20] InstrM,
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input logic PrivilegedM, IllegalIEUInstrFaultM, IllegalCSRAccessM, IllegalFPUInstrM,
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input logic [1:0] PrivilegeModeW,
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input logic STATUS_TSR, STATUS_TVM, STATUS_TW,
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input logic [1:0] STATUS_FS,
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output logic IllegalInstrFaultM,
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output logic EcallFaultM, BreakpointFaultM,
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output logic sretM, mretM, wfiM, sfencevmaM);
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logic IllegalPrivilegedInstrM;
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logic WFITimeoutM;
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logic StallMQ;
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logic ebreakM, ecallM;
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///////////////////////////////////////////
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// Decode privileged instructions
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///////////////////////////////////////////
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assign sretM = PrivilegedM & (InstrM[31:20] == 12'b000100000010) & `S_SUPPORTED &
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(PrivilegeModeW == `M_MODE || PrivilegeModeW == `S_MODE & ~STATUS_TSR);
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assign mretM = PrivilegedM & (InstrM[31:20] == 12'b001100000010) & (PrivilegeModeW == `M_MODE);
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assign ecallM = PrivilegedM & (InstrM[31:20] == 12'b000000000000);
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assign ebreakM = PrivilegedM & (InstrM[31:20] == 12'b000000000001);
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assign wfiM = PrivilegedM & (InstrM[31:20] == 12'b000100000101);
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assign sfencevmaM = PrivilegedM & (InstrM[31:25] == 7'b0001001) &
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(PrivilegeModeW == `M_MODE | (PrivilegeModeW == `S_MODE & ~STATUS_TVM));
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///////////////////////////////////////////
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// WFI timeout Privileged Spec 3.1.6.5
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///////////////////////////////////////////
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if (`U_SUPPORTED) begin:wfi
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logic [`WFI_TIMEOUT_BIT:0] WFICount, WFICountPlus1;
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assign WFICountPlus1 = WFICount + 1;
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floprc #(`WFI_TIMEOUT_BIT+1) wficountreg(clk, reset, ~wfiM, WFICountPlus1, WFICount); // count while in WFI
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assign WFITimeoutM = ((STATUS_TW & PrivilegeModeW != `M_MODE) | (`S_SUPPORTED & PrivilegeModeW == `U_MODE)) & WFICount[`WFI_TIMEOUT_BIT];
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end else assign WFITimeoutM = 0;
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///////////////////////////////////////////
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// Extract exceptions by name and handle them
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///////////////////////////////////////////
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assign BreakpointFaultM = ebreakM; // could have other causes from a debugger
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assign EcallFaultM = ecallM;
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///////////////////////////////////////////
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// sfence.vma causes TLB flushes
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///////////////////////////////////////////
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// sets ITLBFlush to pulse for one cycle of the sfence.vma instruction
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// In this instr we want to flush the tlb and then do a pagetable walk to update the itlb and continue the program.
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// But we're still in the stalled sfence instruction, so if itlbflushf == sfencevmaM, tlbflush would never drop and
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// the tlbwrite would never take place after the pagetable walk. by adding in ~StallMQ, we are able to drop itlbflush
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// after a cycle AND pulse it for another cycle on any further back-to-back sfences.
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// flopr #(1) StallMReg(.clk, .reset, .d(StallM), .q(StallMQ));
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// assign ITLBFlushF = sfencevmaM & ~StallMQ;
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// assign DTLBFlushM = sfencevmaM;
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///////////////////////////////////////////
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// Fault on illegal instructions
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///////////////////////////////////////////
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assign IllegalPrivilegedInstrM = PrivilegedM & ~(sretM|mretM|ecallM|ebreakM|wfiM|sfencevmaM);
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assign IllegalInstrFaultM = (IllegalIEUInstrFaultM & IllegalFPUInstrM) | IllegalPrivilegedInstrM | IllegalCSRAccessM |
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WFITimeoutM;
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endmodule
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