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-rw-r--r--techlibs/xilinx/brams_bb.v16
-rw-r--r--techlibs/xilinx/cells_sim.v20
2 files changed, 18 insertions, 18 deletions
diff --git a/techlibs/xilinx/brams_bb.v b/techlibs/xilinx/brams_bb.v
index f540d299d..a682ba4a7 100644
--- a/techlibs/xilinx/brams_bb.v
+++ b/techlibs/xilinx/brams_bb.v
@@ -19,10 +19,10 @@ module RAMB18E1 (
input [1:0] WEA,
input [3:0] WEBWE,
- (* abc_flop_q *) output [15:0] DOADO,
- (* abc_flop_q *) output [15:0] DOBDO,
- (* abc_flop_q *) output [1:0] DOPADOP,
- (* abc_flop_q *) output [1:0] DOPBDOP
+ output [15:0] DOADO,
+ output [15:0] DOBDO,
+ output [1:0] DOPADOP,
+ output [1:0] DOPBDOP
);
parameter INITP_00 = 256'h0000000000000000000000000000000000000000000000000000000000000000;
parameter INITP_01 = 256'h0000000000000000000000000000000000000000000000000000000000000000;
@@ -143,10 +143,10 @@ module RAMB36E1 (
input [3:0] WEA,
input [7:0] WEBWE,
- (* abc_flop_q *) output [31:0] DOADO,
- (* abc_flop_q *) output [31:0] DOBDO,
- (* abc_flop_q *) output [3:0] DOPADOP,
- (* abc_flop_q *) output [3:0] DOPBDOP
+ output [31:0] DOADO,
+ output [31:0] DOBDO,
+ output [3:0] DOPADOP,
+ output [3:0] DOPBDOP
);
parameter INITP_00 = 256'h0000000000000000000000000000000000000000000000000000000000000000;
parameter INITP_01 = 256'h0000000000000000000000000000000000000000000000000000000000000000;
diff --git a/techlibs/xilinx/cells_sim.v b/techlibs/xilinx/cells_sim.v
index d9aa36666..bf7a0ed44 100644
--- a/techlibs/xilinx/cells_sim.v
+++ b/techlibs/xilinx/cells_sim.v
@@ -205,7 +205,7 @@ endmodule
`endif
-module FDRE ((* abc_flop_q *) output reg Q, input C, CE, D, R);
+module FDRE (output reg Q, input C, CE, D, R);
parameter [0:0] INIT = 1'b0;
parameter [0:0] IS_C_INVERTED = 1'b0;
parameter [0:0] IS_D_INVERTED = 1'b0;
@@ -217,7 +217,7 @@ module FDRE ((* abc_flop_q *) output reg Q, input C, CE, D, R);
endcase endgenerate
endmodule
-module FDSE ((* abc_flop_q *) output reg Q, input C, CE, D, S);
+module FDSE (output reg Q, input C, CE, D, S);
parameter [0:0] INIT = 1'b0;
parameter [0:0] IS_C_INVERTED = 1'b0;
parameter [0:0] IS_D_INVERTED = 1'b0;
@@ -229,7 +229,7 @@ module FDSE ((* abc_flop_q *) output reg Q, input C, CE, D, S);
endcase endgenerate
endmodule
-module FDCE ((* abc_flop_q *) output reg Q, input C, CE, D, CLR);
+module FDCE (output reg Q, input C, CE, D, CLR);
parameter [0:0] INIT = 1'b0;
parameter [0:0] IS_C_INVERTED = 1'b0;
parameter [0:0] IS_D_INVERTED = 1'b0;
@@ -243,7 +243,7 @@ module FDCE ((* abc_flop_q *) output reg Q, input C, CE, D, CLR);
endcase endgenerate
endmodule
-module FDPE ((* abc_flop_q *) output reg Q, input C, CE, D, PRE);
+module FDPE (output reg Q, input C, CE, D, PRE);
parameter [0:0] INIT = 1'b0;
parameter [0:0] IS_C_INVERTED = 1'b0;
parameter [0:0] IS_D_INVERTED = 1'b0;
@@ -257,25 +257,25 @@ module FDPE ((* abc_flop_q *) output reg Q, input C, CE, D, PRE);
endcase endgenerate
endmodule
-module FDRE_1 ((* abc_flop_q *) output reg Q, input C, CE, D, R);
+module FDRE_1 (output reg Q, input C, CE, D, R);
parameter [0:0] INIT = 1'b0;
initial Q <= INIT;
always @(negedge C) if (R) Q <= 1'b0; else if(CE) Q <= D;
endmodule
-module FDSE_1 ((* abc_flop_q *) output reg Q, input C, CE, D, S);
+module FDSE_1 (output reg Q, input C, CE, D, S);
parameter [0:0] INIT = 1'b1;
initial Q <= INIT;
always @(negedge C) if (S) Q <= 1'b1; else if(CE) Q <= D;
endmodule
-module FDCE_1 ((* abc_flop_q *) output reg Q, input C, CE, D, CLR);
+module FDCE_1 (output reg Q, input C, CE, D, CLR);
parameter [0:0] INIT = 1'b0;
initial Q <= INIT;
always @(negedge C, posedge CLR) if (CLR) Q <= 1'b0; else if (CE) Q <= D;
endmodule
-module FDPE_1 ((* abc_flop_q *) output reg Q, input C, CE, D, PRE);
+module FDPE_1 (output reg Q, input C, CE, D, PRE);
parameter [0:0] INIT = 1'b1;
initial Q <= INIT;
always @(negedge C, posedge PRE) if (PRE) Q <= 1'b1; else if (CE) Q <= D;
@@ -315,7 +315,7 @@ module RAM128X1D (
endmodule
module SRL16E (
- (* abc_flop_q *) output Q,
+ output Q,
input A0, A1, A2, A3, CE, CLK, D
);
parameter [15:0] INIT = 16'h0000;
@@ -333,7 +333,7 @@ module SRL16E (
endmodule
module SRLC32E (
- (* abc_flop_q *) output Q,
+ output Q,
output Q31,
input [4:0] A,
input CE, CLK, D