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module PE(
// interface to system
input wire CLK, // CLK = 200MHz
input wire RESET, // RESET, Negedge is active
input wire EN, // enable signal for the accelerator, high for active
input wire SELECTOR, // weight select read or use
input wire W_EN, // enable weight to flow
// interface to PE row .....
input wire signed[7:0]active_left,
output reg signed[7:0]active_right,
input wire signed[15:0]in_sum,
output reg signed[15:0]out_sum,
input wire signed[7:0]in_weight_above,
output wire signed[7:0]out_weight_below
);
reg signed[7:0] weight_1;
reg signed[7:0] weight_2;
// multiplier
// accumulator (here use register to calculate and accumulate in one cycle)
// registers for systolic dataflow
always @(negedge RESET or posedge CLK )begin
if(~RESET)
begin
out_sum <= 0;
active_right <= 0;
//out_weight_below <= 0;
weight_1 <= 0;
weight_2 <= 0;
end
else
begin
if(EN)
begin
active_right <= active_left;
if(SELECTOR)
begin
out_sum <= weight_2*active_left+in_sum;
if(W_EN)
begin
weight_1 = in_weight_above;
//out_weight_below = weight_1;
end
end
else
begin
out_sum <= weight_1*active_left+in_sum;
if(W_EN)
begin
weight_2 = in_weight_above;
//out_weight_below = weight_2;
end
end
end
end
end
assign out_weight_below = (SELECTOR)?weight_1 :weight_2;
endmodule