wire [47:0] iC;
wire [24:0] iD;
- wire pA, pB, pC, pD, pAD, pM, pP;
+ wire pAP, pBP, pCP, pDP, pADP, pMP, pPP;
+ wire pAPCOUT, pBPCOUT, pCPCOUT, pDPCOUT, pADPCOUT, pMPCOUT, pPPCOUT;
wire [47:0] oP, oPCOUT;
- // Disconnect the A-input if MREG is enabled, since
- // combinatorial path is broken
+ // Disconnect the A-input if MREG is enabled, since
+ // combinatorial path is broken
if (AREG == 0 && MREG == 0 && PREG == 0)
- assign iA = A, pA = 1'bx;
+ assign iA = A, pAP = 1'bx, pAPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rA (.I(A), .O(iA), .Q(pA));
+ \$__ABC_DSP48E1_MULT_AREG rA (.I(A), .O(iA), .P(pAP), .PCOUT(pAPCOUT));
if (BREG == 0 && MREG == 0 && PREG == 0)
- assign iB = B, pB = 1'bx;
+ assign iB = B, pBP = 1'bx, pBPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rB (.I(B), .O(iB), .Q(pB));
+ \$__ABC_DSP48E1_MULT_BREG rB (.I(B), .O(iB), .P(pBP), .PCOUT(pBPCOUT));
if (CREG == 0 && PREG == 0)
- assign iC = C, pC = 1'bx;
+ assign iC = C, pCP = 1'bx, pCPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rC (.I(C), .O(iC), .Q(pC));
+ \$__ABC_DSP48E1_MULT_CREG rC (.I(C), .O(iC), .P(pCP), .PCOUT(pCPCOUT));
if (DREG == 0)
assign iD = D;
else if (techmap_guard)
- $error("Invalid DSP48E1 configuration: DREG enabled but USE_DPORT == \"FALSE\"");
- assign pD = 1'bx;
+ $error("Invalid DSP48E1 configuration: DREG enabled but USE_DPORT == \"FALSE\"");
+ assign pDP = 1'bx, pDPCOUT = 1'bx;
if (ADREG == 1 && techmap_guard)
$error("Invalid DSP48E1 configuration: ADREG enabled but USE_DPORT == \"FALSE\"");
- assign pAD = 1'bx;
+ assign pADP = 1'bx, pADPCOUT = 1'bx;
if (PREG == 0) begin
- assign pP = 1'bx;
if (MREG == 1)
- \$__ABC_DSP48E1_REG rM (.Q(pM));
+ \$__ABC_DSP48E1_MULT_MREG rM (.P(pMP), .PCOUT(pMPCOUT));
else
- assign pM = 1'bx;
+ assign pMP = 1'bx, pMPCOUT = 1'bx;
+ assign pPP = 1'bx, pPPCOUT = 1'bx;
end
else begin
- \$__ABC_DSP48E1_REG rP (.Q(pP));
- assign pM = 1'bx;
+ assign pMP = 1'bx, pMPCOUT = 1'bx;
+ \$__ABC_DSP48E1_MULT_PREG rP (.P(pPP), .PCOUT(pPPCOUT));
end
- \$__ABC_DSP48E1_MULT_P_MUX muxP (
- .Aq(pA), .Bq(pB), .Cq(pC), .Dq(pD), .ADq(pAD), .Mq(pM), .P(oP), .Pq(pP), .O(P)
- );
- \$__ABC_DSP48E1_MULT_PCOUT_MUX muxPCOUT (
- .Aq(pA), .Bq(pB), .Cq(pC), .Dq(pD), .ADq(pAD), .Mq(pM), .P(oPCOUT), .Pq(pP), .O(PCOUT)
- );
+ if (MREG == 0 && PREG == 0) begin
+ \$__ABC_DSP48E1_MUX muxP (
+ .Aq(pAP), .Bq(pBP), .Cq(pCP), .Dq(pDP), .ADq(pADP), .Mq(pMP), .P(oP), .Pq(pPP), .O(P)
+ );
+ \$__ABC_DSP48E1_MUX muxPCOUT (
+ .Aq(pAPCOUT), .Bq(pBPCOUT), .Cq(pCPCOUT), .Dq(pDPCOUT), .ADq(pADPCOUT), .Mq(pMPCOUT), .P(oPCOUT), .Pq(pPPCOUT), .O(PCOUT)
+ );
+ end
+ else begin
+ \$__ABC_DSP48E1_MUX muxP (
+ .Aq(pAP), .Bq(pBP), .Cq(pCP), .Dq(pDP), .ADq(pADP), .Mq(pMP), .P(1'bx), .Pq(pPP), .O(P)
+ );
+ \$__ABC_DSP48E1_MUX muxPCOUT (
+ .Aq(pAPCOUT), .Bq(pBPCOUT), .Cq(pCPCOUT), .Dq(pDPCOUT), .ADq(pADPCOUT), .Mq(pMPCOUT), .P(1'bx), .Pq(pPPCOUT), .O(PCOUT)
+ );
+ end
`DSP48E1_INST(\$__ABC_DSP48E1_MULT )
end
wire [47:0] iC;
wire [24:0] iD;
- wire pA, pB, pC, pD, pAD, pM, pP;
+ wire pAP, pBP, pCP, pDP, pADP, pMP, pPP;
+ wire pAPCOUT, pBPCOUT, pCPCOUT, pDPCOUT, pADPCOUT, pMPCOUT, pPPCOUT;
wire [47:0] oP, oPCOUT;
// Disconnect the A-input if MREG is enabled, since
// combinatorial path is broken
if (AREG == 0 && ADREG == 0 && MREG == 0 && PREG == 0)
- assign iA = A, pA = 1'bx;
+ assign iA = A, pAP = 1'bx, pAPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rA (.I(A), .O(iA), .Q(pA));
+ \$__ABC_DSP48E1_MULT_DPORT_AREG rA (.I(A), .O(iA), .P(pAP), .PCOUT(pAPCOUT));
if (BREG == 0 && MREG == 0 && PREG == 0)
- assign iB = B, pB = 1'bx;
+ assign iB = B, pBP = 1'bx, pBPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rB (.I(B), .O(iB), .Q(pB));
+ \$__ABC_DSP48E1_MULT_DPORT_BREG rB (.I(B), .O(iB), .P(pBP), .PCOUT(pBPCOUT));
if (CREG == 0 && PREG == 0)
- assign iC = C, pC = 1'bx;
+ assign iC = C, pCP = 1'bx, pCPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rC (.I(C), .O(iC), .Q(pC));
+ \$__ABC_DSP48E1_MULT_DPORT_CREG rC (.I(C), .O(iC), .P(pCP), .PCOUT(pCPCOUT));
if (DREG == 0 && ADREG == 0)
- assign iD = D, pD = 1'bx;
+ assign iD = D, pDP = 1'bx, pDPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rD (.I(D), .O(iD), .Q(pD));
+ \$__ABC_DSP48E1_MULT_DPORT_DREG rD (.I(D), .O(iD), .P(pDP), .PCOUT(pDPCOUT));
if (PREG == 0) begin
- if (MREG == 1)
- \$__ABC_DSP48E1_REG rM (.Q(pM));
+ if (MREG == 1) begin
+ assign pADP = 1'bx, pADPCOUT = 1'bx;
+ \$__ABC_DSP48E1_MULT_DPORT_MREG rM (.P(pMP), .PCOUT(pMPCOUT));
+ end
else begin
- assign pM = 1'bx;
if (ADREG == 1)
- \$__ABC_DSP48E1_REG rAD (.Q(pAD));
+ \$__ABC_DSP48E1_MULT_DPORT_ADPREG rAD (.P(pADP), .PCOUT(pADPCOUT));
else
- assign pAD = 1'bx;
+ assign pADP = 1'bx, pADPCOUT = 1'bx;
+ assign pMP = 1'bx, pMPCOUT = 1'bx;
end
+ assign pPP = 1'bx, pPPCOUT = 1'bx;
end
- else
- \$__ABC_DSP48E1_REG rP (.Q(pP));
+ else begin
+ assign pADP = 1'bx, pADPCOUT = 1'bx;
+ assign pMP = 1'bx, pMPCOUT = 1'bx;
+ \$__ABC_DSP48E1_MULT_DPORT_PREG rP (.P(pPP), .PCOUT(pPPCOUT));
+ end
- \$__ABC_DSP48E1_MULT_DPORT_P_MUX muxP (
- .Aq(pA), .Bq(pB), .Cq(pC), .Dq(pD), .ADq(pAD), .Mq(pM), .P(oP), .Pq(pP), .O(P)
+ \$__ABC_DSP48E1_MUX muxP (
+ .Aq(pAP), .Bq(pBP), .Cq(pCP), .Dq(pDP), .ADq(pADP), .Mq(pMP), .P(oP), .Pq(pPP), .O(P)
);
- \$__ABC_DSP48E1_MULT_DPORT_PCOUT_MUX muxPCOUT (
- .Aq(pA), .Bq(pB), .Cq(pC), .Dq(pD), .ADq(pAD), .Mq(pM), .P(oPCOUT), .Pq(pP), .O(PCOUT)
+ \$__ABC_DSP48E1_MUX muxPCOUT (
+ .Aq(pAPCOUT), .Bq(pBPCOUT), .Cq(pCPCOUT), .Dq(pDPCOUT), .ADq(pADPCOUT), .Mq(pMPCOUT), .P(oPCOUT), .Pq(pPPCOUT), .O(PCOUT)
);
`DSP48E1_INST(\$__ABC_DSP48E1_MULT_DPORT )
wire [47:0] iC;
wire [24:0] iD;
- wire pA, pB, pC, pD, pAD, pM, pP;
+ wire pAP, pBP, pCP, pDP, pADP, pMP, pPP;
+ wire pAPCOUT, pBPCOUT, pCPCOUT, pDPCOUT, pADPCOUT, pMPCOUT, pPPCOUT;
wire [47:0] oP, oPCOUT;
// Disconnect the A-input if MREG is enabled, since
// combinatorial path is broken
if (AREG == 0 && PREG == 0)
- assign iA = A, pA = 1'bx;
+ assign iA = A, pAP = 1'bx, pAPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rA (.I(A), .O(iA), .Q(pA));
+ \$__ABC_DSP48E1_AREG rA (.I(A), .O(iA), .P(pAP), .PCOUT(pAPCOUT));
if (BREG == 0 && PREG == 0)
- assign iB = B, pB = 1'bx;
+ assign iB = B, pBP = 1'bx, pBPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rB (.I(B), .O(iB), .Q(pB));
+ \$__ABC_DSP48E1_BREG rB (.I(B), .O(iB), .P(pB), .PCOUT(pBPCOUT));
if (CREG == 0 && PREG == 0)
- assign iC = C, pC = 1'bx;
+ assign iC = C, pCP = 1'bx, pCPCOUT = 1'bx;
else
- \$__ABC_DSP48E1_REG rC (.I(C), .O(iC), .Q(pC));
- if (MREG == 1 && techmap_guard)
- $error("Invalid DSP48E1 configuration: MREG enabled but USE_MULT == \"NONE\"");
- assign pM = 1'bx;
+ \$__ABC_DSP48E1_CREG rC (.I(C), .O(iC), .P(pC), .PCOUT(pCPCOUT));
if (DREG == 1 && techmap_guard)
$error("Invalid DSP48E1 configuration: DREG enabled but USE_DPORT == \"FALSE\"");
- assign pD = 1'bx;
+ assign iD = 25'bx, pDP = 1'bx, pDPCOUT = 1'bx;
if (ADREG == 1 && techmap_guard)
$error("Invalid DSP48E1 configuration: ADREG enabled but USE_DPORT == \"FALSE\"");
- assign pAD = 1'bx;
+ assign pADP = 1'bx, pADPCOUT = 1'bx;
+ if (MREG == 1 && techmap_guard)
+ $error("Invalid DSP48E1 configuration: MREG enabled but USE_MULT == \"NONE\"");
+ assign pMP = 1'bx, pMPCOUT = 1'bx;
if (PREG == 1)
- \$__ABC_DSP48E1_REG rP (.Q(pP));
+ \$__ABC_DSP48E1_PREG rP (.P(pPP), .P(pPCOUT));
else
- assign pP = 1'bx;
+ assign pPP = 1'bx, pPPCOUT = 1'bx;
- \$__ABC_DSP48E1_P_MUX muxP (
- .Aq(pA), .Bq(pB), .Cq(pC), .Dq(pD), .ADq(pAD), .Mq(pM), .P(oP), .Pq(pP), .O(P)
+ \$__ABC_DSP48E1_MUX muxP (
+ .Aq(pAP), .Bq(pBP), .Cq(pCP), .Dq(pDP), .ADq(pADP), .Mq(pMP), .P(oP), .Pq(pPP), .O(P)
);
- \$__ABC_DSP48E1_PCOUT_MUX muxPCOUT (
- .Aq(pA), .Bq(pB), .Cq(pC), .Dq(pD), .ADq(pAD), .Mq(pM), .P(oPCOUT), .Pq(pP), .O(PCOUT)
+ \$__ABC_DSP48E1_MUX muxPCOUT (
+ .Aq(pAPCOUT), .Bq(pBPCOUT), .Cq(pCPCOUT), .Dq(pDPCOUT), .ADq(pADPCOUT), .Mq(pMPCOUT), .P(oPCOUT), .Pq(pPPCOUT), .O(PCOUT)
);
`DSP48E1_INST(\$__ABC_DSP48E1 )
module \$__ABC_LUT7 (input A, input [6:0] S, output Y);
endmodule
-// Boxes used to represent the comb/seq behaviour of DSP48E1
-// With abc_map.v responsible for disconnecting inputs to
-// the combinatorial DSP48E1 model by a register (e.g.
-// disconnecting A when AREG, MREG or PREG is enabled)
-// this blackbox captures the existence of a replacement
-// path between AREG/BREG/CREG/etc. and P/PCOUT.
-// Since the Aq/ADq/Bq/etc. inputs are assumed to arrive at
-// the box at zero time, the combinatorial delay through
-// these boxes thus represents the clock-to-q delay
-// (arrival time) at P/PCOUT.
-// Doing so should means that ABC is able to analyse the
-// worst-case delay through to P, regardless of if it was
-// through any combinatorial paths (e.g. B, below) or an
-// internal register (A2REG).
-// However, the true value of being as complete as this is
-// questionable since if AREG=1 and BREG=0 (as below)
-// then the worse-case path would very likely be through B
-// and very unlikely to be through AREG.Q...?
-//
-// In graphical form:
-//
-// NEW "PI" >>---+
-// for AREG.Q |
-// |
-// +---------+ | __
-// A >>--X X-| | +--| \
-// | DSP48E1 |P | |--->> P
-// | AREG=1 |-------|__/
-// B >>------| |
-// +---------+
-//
-`define ABC_DSP48E1_MUX(__NAME__) """
-module __NAME__ (input Aq, ADq, Bq, Cq, Dq, Mq, input [47:0] P, input Pq, output [47:0] O);
-endmodule
-"""
-(* abc_box_id=2100 *) `ABC_DSP48E1_MUX(\$__ABC_DSP48E1_MULT_P_MUX )
-(* abc_box_id=2101 *) `ABC_DSP48E1_MUX(\$__ABC_DSP48E1_MULT_PCOUT_MUX )
-(* abc_box_id=2102 *) `ABC_DSP48E1_MUX(\$__ABC_DSP48E1_MULT_DPORT_P_MUX )
-(* abc_box_id=2103 *) `ABC_DSP48E1_MUX(\$__ABC_DSP48E1_MULT_DPORT_PCOUT_MUX )
-(* abc_box_id=2104 *) `ABC_DSP48E1_MUX(\$__ABC_DSP48E1_P_MUX )
-(* abc_box_id=2105 *) `ABC_DSP48E1_MUX(\$__ABC_DSP48E1_PCOUT_MUX )
-
`define ABC_DSP48E1(__NAME__) """
module \$__ABC_DSP48E1_MULT (
output [29:0] ACOUT,
(* abc_box_id=3000 *) `ABC_DSP48E1(\$__ABC_DSP48E1_MULT )
(* abc_box_id=3001 *) `ABC_DSP48E1(\$__ABC_DSP48E1_MULT_DPORT )
(* abc_box_id=3002 *) `ABC_DSP48E1(\$__ABC_DSP48E1 )
+
+
+// Modules used to model the comb/seq behaviour of DSP48E1
+// With abc_map.v responsible for splicing the below modules
+// into between the combinatorial DSP48E1 box (e.g. disconnecting
+// A when AREG, MREG or PREG is enabled and splicing in the
+// "$__ABC_DSP48E1_MULT_AREG" blackbox as "REG" in the diagram
+// below) this acts to first disables the combinatorial path
+// (as there is no connectivity through REG), and secondly,
+// since this is blackbox a new PI will be introduced, one which
+// will have the relevant arrival time (corresponding to delay from
+// AREG to P) attached.
+// Note: Since these "$__ABC_DSP48E1*_*REG" modules are of a
+// sequential nature, they are not passed as a box to ABC./
+//
+// On the other hand, the "$__ABC_DSP48E1_MUX" is a combinatorial
+// blackbox that is passed to ABC, with zero delay.
+//
+// Doing so should means that ABC is able to analyse the
+// worst-case delay through to P, regardless of if it was
+// through any combinatorial paths (e.g. B, below) or an
+// internal register (A2REG).
+// However, the true value of being as complete as this is
+// questionable since if AREG=1 and BREG=0 (as below)
+// then the worse-case path would very likely be through B
+// and very unlikely to be through AREG.Q...?
+//
+// In graphical form:
+//
+// +-----+
+// +-------| REG |-----+
+// | +-----+ |
+// | |
+// | +---------+ | __
+// A >>-+X X-| | +--| \
+// | DSP48E1 |P | M |--->> P
+// | AREG=1 |-------|__/
+// B >>------| |
+// +---------+
+//
+
+(* abc_box_id=2100 *)
+module \$__ABC_DSP48E1_MUX (input Aq, ADq, Bq, Cq, Dq, Mq, input [47:0] P, input Pq, output [47:0] O);
+endmodule
+
+module $__ABC_DSP48E1_MULT_AREG (input [29:0] I, output [29:0] O, (* abc_arrival=2952 *) output P, (* abc_arrival=3098 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_BREG (input [17:0] I, output [17:0] O, (* abc_arrival=2813 *) output P, (* abc_arrival=2960 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_CREG (input [47:0] I, output [47:0] O, (* abc_arrival=1687 *) output P, (* abc_arrival=1835 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_MREG (input [47:0] I, output [47:0] O, (* abc_arrival=1671 *) output P, (* abc_arrival=1819 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_PREG (input [47:0] I, output [47:0] O, (* abc_arrival= 329 *) output P, (* abc_arrival= 435 *) output PCOUT); endmodule
+
+module $__ABC_DSP48E1_MULT_DPORT_AREG (input [29:0] I, output [29:0] O, (* abc_arrival=3935 *) output P, (* abc_arrival=4083 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_DPORT_BREG (input [17:0] I, output [17:0] O, (* abc_arrival=2813 *) output P, (* abc_arrival=2960 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_DPORT_CREG (input [47:0] I, output [47:0] O, (* abc_arrival=1687 *) output P, (* abc_arrival=1835 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_DPORT_DREG (input [47:0] I, output [47:0] O, (* abc_arrival=3908 *) output P, (* abc_arrival=4056 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_DPORT_ADREG (input [47:0] I, output [47:0] O, (* abc_arrival=2958 *) output P, (* abc_arrival=2859 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_DPORT_MREG (input [47:0] I, output [47:0] O, (* abc_arrival=1671 *) output P, (* abc_arrival=1819 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_MULT_DPORT_PREG (input [47:0] I, output [47:0] O, (* abc_arrival= 329 *) output P, (* abc_arrival= 435 *) output PCOUT); endmodule
+
+module $__ABC_DSP48E1_AREG (input [29:0] I, output [29:0] O, (* abc_arrival=1632 *) output P, (* abc_arrival=1780 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_BREG (input [17:0] I, output [17:0] O, (* abc_arrival=1616 *) output P, (* abc_arrival=1765 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_CREG (input [47:0] I, output [47:0] O, (* abc_arrival=1687 *) output P, (* abc_arrival=1835 *) output PCOUT); endmodule
+module $__ABC_DSP48E1_PREG (input [47:0] I, output [47:0] O, (* abc_arrival= 329 *) output P, (* abc_arrival= 435 *) output PCOUT); endmodule
# the mux at zero time, the combinatorial delay through
# these muxes thus represents the clock-to-q delay at
# P/PCOUT.
-$__ABC_DSP48E1_MULT_P_MUX 2100 0 55 48
-# A AD B C D M P Pq
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
-2952 - 2813 1687 - 1671 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 329
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