112 lines
4.8 KiB
Plaintext
112 lines
4.8 KiB
Plaintext
import "RV64IBase.core_desc"
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import "RV32A.core_desc"
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InsructionSet RV64A extends RV64IBase {
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address_spaces {
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RES[8]
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}
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instructions{
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LR.D {
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encoding: b00010 | aq[0:0] | rl[0:0] | b00000 | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}";
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if(rd!=0){
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val offs[XLEN] <= X[rs1];
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X[rd]<= sext(MEM[offs]{64}, XLEN);
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RES[offs]{64}<=sext(-1, 64);
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}
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}
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SC.D {
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encoding: b00011 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)}";
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val offs[XLEN] <= X[rs1];
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val res[64] <= RES[offs];
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if(res!=0){
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MEM[offs]{64} <= X[rs2];
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if(rd!=0) X[rd]<=0;
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} else{
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if(rd!=0) X[rd]<= 1;
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}
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}
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AMOSWAP.D{
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encoding: b00001 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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if(rd!=0) X[rd] <= sext(MEM[offs]{64});
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MEM[offs]{64} <= X[rs2];
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}
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AMOADD.D{
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encoding: b00000 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= sext(MEM[offs]{64});
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if(rd!=0) X[rd]<=res;
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val res2[XLEN] <= res + X[rs2];
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MEM[offs]{64}<=res2;
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}
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AMOXOR.D{
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encoding: b00100 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= sext(MEM[offs]{64});
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if(rd!=0) X[rd] <= res;
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val res2[XLEN] <= res ^ X[rs2];
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MEM[offs]{64} <= res2;
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}
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AMOAND.D{
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encoding: b01100 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= sext(MEM[offs]{64});
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if(rd!=0) X[rd] <= res;
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val res2[XLEN] <= res & X[rs2];
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MEM[offs]{64} <= res2;
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}
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AMOOR.D {
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encoding: b01000 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= sext(MEM[offs]{64});
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if(rd!=0) X[rd] <= res;
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val res2[XLEN] <= res | X[rs2];
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MEM[offs]{64} <= res2;
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}
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AMOMIN.D{
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encoding: b10000 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= sext(MEM[offs]{64});
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if(rd!=0) X[rd] <= res;
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val res2[XLEN] <= choose(res s > X[rs2]s, X[rs2], res);
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MEM[offs]{64} <= res;
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}
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AMOMAX.D{
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encoding: b10100 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= sext(MEM[offs]{64});
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if(rd!=0) X[rd] <= res;
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val res2[XLEN] <= choose(res s < X[rs2]s, X[rs2], res);
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MEM[offs]{64} <= res2;
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}
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AMOMINU.D{
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encoding: b11000 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= zext(MEM[offs]{64});
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if(rd!=0) X[rd] <= res;
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val res2[XLEN] <= choose(res > X[rs2], X[rs2], res);
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MEM[offs]{64} <= res2;
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}
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AMOMAXU.D{
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encoding: b11100 | aq[0:0] | rl[0:0] | rs2[4:0] | rs1[4:0] | b011 | rd[4:0] | b0101111;
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args_disass: "{name(rd)}, {name(rs1)}, {name(rs2)} (aqu={aq},rel={rl})";
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val offs[XLEN] <= X[rs1];
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val res[XLEN] <= zext(MEM[offs]{64});
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if(rd!=0) X[rd] <= res;
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val res2[XLEN] <= choose(res < X[rs2], X[rs2], res);
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MEM[offs]{64} <= res2;
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}
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}
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} |