mirror of https://github.com/YosysHQ/yosys.git
Cleanup SRL inference/make more consistent
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@ -56,7 +56,6 @@ module \$__XILINX_SHREG_ (input C, input D, input [31:0] L, input E, output Q, o
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localparam [DEPTH-1:0] INIT_R = brev(INIT);
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parameter _TECHMAP_CONSTMSK_L_ = 0;
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parameter _TECHMAP_CONSTVAL_L_ = 0;
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wire CE;
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generate
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@ -129,26 +128,33 @@ module \$__XILINX_SHREG_ (input C, input D, input [31:0] L, input E, output Q, o
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MUXF8 fpga_mux_2 (.O(Q), .I0(T7), .I1(T8), .S(L[6]));
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end
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end
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else if (DEPTH <= 129 && ~&_TECHMAP_CONSTMSK_L_) begin
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// Handle cases where fixed-length depth is
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// just 1 over a convenient value
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// For fixed length, if just 1 over a convenient value, decompose
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else if (DEPTH <= 129 && &_TECHMAP_CONSTMSK_L_) begin
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wire T;
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\$__XILINX_SHREG_ #(.DEPTH(DEPTH-1), .INIT(INIT[DEPTH-1:1]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl (.C(C), .D(D), .L({32{1'b1}}), .E(E), .Q(T));
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\$__XILINX_SHREG_ #(.DEPTH(1), .INIT(INIT[0]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl_last (.C(C), .D(T), .L(L), .E(E), .Q(Q));
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end
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// For variable length, if just 1 over a convenient value, then bump up one more
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else if (DEPTH < 129 && ~&_TECHMAP_CONSTMSK_L_)
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\$__XILINX_SHREG_ #(.DEPTH(DEPTH+1), .INIT({INIT,1'b0}), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) _TECHMAP_REPLACE_ (.C(C), .D(D), .L(L), .E(E), .Q(Q));
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end
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else begin
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localparam lower_clog2 = $clog2((DEPTH+1)/2);
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localparam lower_depth = 2 ** lower_clog2;
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wire T0, T1, T2, T3;
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if (&_TECHMAP_CONSTMSK_L_) begin
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\$__XILINX_SHREG_ #(.DEPTH(lower_depth), .INIT(INIT[DEPTH-1:DEPTH-lower_depth]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl_0 (.C(C), .D(D), .L(lower_depth-1), .E(E), .Q(T0));
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\$__XILINX_SHREG_ #(.DEPTH(DEPTH-lower_depth), .INIT(INIT[DEPTH-lower_depth-1:0]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl_1 (.C(C), .D(T0), .L(DEPTH-lower_depth-1), .E(E), .Q(Q), .SO(T3));
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end
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else begin
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\$__XILINX_SHREG_ #(.DEPTH(lower_depth), .INIT(INIT[DEPTH-1:DEPTH-lower_depth]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl_0 (.C(C), .D(D), .L(L[lower_clog2-1:0]), .E(E), .Q(T0), .SO(T1));
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\$__XILINX_SHREG_ #(.DEPTH(DEPTH-lower_depth), .INIT(INIT[DEPTH-lower_depth-1:0]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl_1 (.C(C), .D(T1), .L(L[lower_clog2-1:0]), .E(E), .Q(T2), .SO(T3));
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assign Q = L[lower_clog2] ? T2 : T0;
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end
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if (DEPTH == 2 * lower_depth)
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assign SO = T3;
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localparam depth0 = 128;
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localparam num_srl128 = DEPTH / depth0;
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localparam depthN = DEPTH % depth0;
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wire [num_srl128 + (depthN > 0 ? 1 : 0) - 1:0] T;
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wire [num_srl128 + (depthN > 0 ? 1 : 0) :0] S;
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assign S[0] = D;
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genvar i;
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for (i = 0; i < num_srl128; i++)
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\$__XILINX_SHREG_ #(.DEPTH(depth0), .INIT(INIT[DEPTH-1-i*depth0-:depth0]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl (.C(C), .D(S[i]), .L(L[$clog2(depth0)-1:0]), .E(E), .Q(T[i]), .SO(S[i+1]));
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if (depthN > 0)
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\$__XILINX_SHREG_ #(.DEPTH(depthN), .INIT(INIT[depthN-1:0]), .CLKPOL(CLKPOL), .ENPOL(ENPOL)) fpga_srl_last (.C(C), .D(S[num_srl128]), .L(L[$clog2(depth0)-1:0]), .E(E), .Q(T[num_srl128]));
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if (&_TECHMAP_CONSTMSK_L_)
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assign Q = T[num_srl128 + (depthN > 0 ? 1 : 0) - 1];
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else
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assign Q = T[L[DEPTH-1:$clog2(depth0)]];
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end
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endgenerate
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endmodule
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