GPR back-end with mem
This commit is contained in:
121
rtl/VX_gpr.v
121
rtl/VX_gpr.v
@@ -15,24 +15,121 @@ module VX_gpr (
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assign write_enable = valid_write_request && ((VX_writeback_inter.wb != 0) && (VX_writeback_inter.rd != 5'h0));
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// <<<<<<< HEAD
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// always @(*) begin
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// if(write_enable) $display("Writing to %d: %d = %h",VX_writeback_inter.wb_warp_num, VX_writeback_inter.rd, VX_writeback_inter.write_data[0][31:0]);
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// end
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byte_enabled_simple_dual_port_ram first_ram(
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.we (write_enable),
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.clk (clk),
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.waddr (VX_writeback_inter.rd),
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.raddr1(VX_gpr_read.rs1),
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.raddr2(VX_gpr_read.rs2),
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.be (VX_writeback_inter.wb_valid),
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.wdata (VX_writeback_inter.write_data),
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.q1 (out_a_reg_data),
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.q2 (out_b_reg_data)
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);
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// byte_enabled_simple_dual_port_ram first_ram(
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// .we (write_enable),
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// .clk (clk),
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// .waddr (VX_writeback_inter.rd),
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// .raddr1(VX_gpr_read.rs1),
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// .raddr2(VX_gpr_read.rs2),
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// .be (VX_writeback_inter.wb_valid),
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// .wdata (VX_writeback_inter.write_data),
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// .q1 (out_a_reg_data),
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// .q2 (out_b_reg_data)
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// );
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// =======
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// byte_enabled_simple_dual_port_ram first_ram(
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// .we (write_enable),
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// .clk (clk),
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// .waddr (VX_writeback_inter.rd),
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// .raddr1(VX_gpr_read.rs1),
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// .be (VX_writeback_inter.wb_valid),
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// .wdata (VX_writeback_inter.write_data),
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// .q1 (out_a_reg_data)
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// );
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// byte_enabled_simple_dual_port_ram first_ram(
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// .we (write_enable),
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// .clk (clk),
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// .waddr (VX_writeback_inter.rd),
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// .raddr1(VX_gpr_read.rs2),
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// .be (VX_writeback_inter.wb_valid),
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// .wdata (VX_writeback_inter.write_data),
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// .q1 (out_b_reg_data)
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// );
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// Port A is a read port, Port B is a write port
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rf2_32x128_wm1 first_ram (
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.CENYA(),
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.AYA(),
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.CENYB(),
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.WENYB(),
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.AYB(),
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.QA(out_a_reg_data),
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.SOA(),
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.SOB(),
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.CLKA(clk),
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.CENA(1'b0),
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.AA(VX_gpr_read.rs1),
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.CLKB(clk),
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.CENB(1'b0),
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.WENB({32{~(VX_writeback_inter.wb_valid[3])}, 32{~(VX_writeback_inter.wb_valid[2])}, 32{~(VX_writeback_inter.wb_valid[1])}, 32{~(VX_writeback_inter.wb_valid[0])}}),
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.AB(VX_writeback_inter.rd),
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.DB(VX_writeback_inter.write_data),
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.EMAA(3'b011),
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.EMASA(1'b0),
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.EMAB(3'b011),
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.TENA(1'b1),
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.TCENA(1'b0),
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.TAA(5'b0),
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.TENB(1'b1),
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.TCENB(1'b0),
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.TWENB(128'b0),
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.TAB(5'b0),
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.TDB(128'b0),
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.RET1N(1'b1),
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.SIA(2'b0),
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.SEA(1'b0),
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.DFTRAMBYP(1'b0),
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.SIB(2'b0),
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.SEB(1'b0),
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.COLLDISN(1'b1)
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);
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rf2_32x128_wm1 second_ram (
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.CENYA(),
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.AYA(),
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.CENYB(),
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.WENYB(),
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.AYB(),
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.QA(out_b_reg_data),
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.SOA(),
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.SOB(),
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.CLKA(clk),
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.CENA(1'b0),
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.AA(VX_gpr_read.rs2),
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.CLKB(clk),
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.CENB(1'b0),
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.WENB({32{~(VX_writeback_inter.wb_valid[3])}, 32{~(VX_writeback_inter.wb_valid[2])}, 32{~(VX_writeback_inter.wb_valid[1])}, 32{~(VX_writeback_inter.wb_valid[0])}}),
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.AB(VX_writeback_inter.rd),
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.DB(VX_writeback_inter.write_data),
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.EMAA(3'b011),
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.EMASA(1'b0),
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.EMAB(3'b011),
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.TENA(1'b1),
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.TCENA(1'b0),
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.TAA(5'b0),
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.TENB(1'b1),
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.TCENB(1'b0),
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.TWENB(128'b0),
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.TAB(5'b0),
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.TDB(128'b0),
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.RET1N(1'b1),
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.SIA(2'b0),
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.SEA(1'b0),
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.DFTRAMBYP(1'b0),
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.SIB(2'b0),
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.SEB(1'b0),
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.COLLDISN(1'b1)
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);
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// >>>>>>> 5680b997b599ce2900997cab976681fe3881e880
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@@ -87,4 +184,4 @@ module VX_gpr (
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// end
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endmodule
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endmodule
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@@ -5,10 +5,10 @@
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module byte_enabled_simple_dual_port_ram
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(
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input we, clk,
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input wire[4:0] waddr, raddr1, raddr2,
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input wire[4:0] waddr, raddr1,
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input wire[`NT_M1:0] be,
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input wire[`NT_M1:0][31:0] wdata,
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output reg[`NT_M1:0][31:0] q1, q2
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output reg[`NT_M1:0][31:0] q1
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);
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// integer regi;
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@@ -42,10 +42,9 @@ module byte_enabled_simple_dual_port_ram
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end
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assign q1 = GPR[raddr1];
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assign q2 = GPR[raddr2];
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// assign q1 = (raddr1 == waddr && (we)) ? wdata : GPR[raddr1];
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// assign q2 = (raddr2 == waddr && (we)) ? wdata : GPR[raddr2];
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endmodule
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endmodule
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