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[/] [async_sdm_noc/] [branches/] [init/] [sdm/] [src/] [input_buf.v] - Diff between revs 26 and 38

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Rev 26 Rev 38
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 History:
 History:
 05/05/2009  Initial version. <wsong83@gmail.com>
 05/05/2009  Initial version. <wsong83@gmail.com>
 20/09/2010  Supporting channel slicing and SDM using macro difinitions. <wsong83@gmail.com>
 20/09/2010  Supporting channel slicing and SDM using macro difinitions. <wsong83@gmail.com>
 24/05/2011  Clean up for opensource. <wsong83@gmail.com>
 24/05/2011  Clean up for opensource. <wsong83@gmail.com>
 
 01/06/2011  Use the comp4 common comparator rather than the chain_comparator defined in this module. <wsong83@gmail.com>
 
 
*/
*/
 
 
// the router structure definitions
// the router structure definitions
`include "define.v"
`include "define.v"
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   output [5:0]    decision;
   output [5:0]    decision;
 
 
   wire [2:0]       x_cmp [1:0];
   wire [2:0]       x_cmp [1:0];
   wire [2:0]       y_cmp [1:0];
   wire [2:0]       y_cmp [1:0];
 
 
   chain_comparator X0 ( .a(pipe_xd[3:0]), .b(addrx[3:0]), .q(x_cmp[0]));
   comp4 X0 ( .a(pipe_xd[3:0]), .b(addrx[3:0]), .q(x_cmp[0]));
   chain_comparator X1 ( .a(pipe_xd[7:4]), .b(addrx[7:4]), .q(x_cmp[1]));
   comp4 X1 ( .a(pipe_xd[7:4]), .b(addrx[7:4]), .q(x_cmp[1]));
   chain_comparator Y0 ( .a(pipe_yd[3:0]), .b(addry[3:0]), .q(y_cmp[0]));
   comp4 Y0 ( .a(pipe_yd[3:0]), .b(addry[3:0]), .q(y_cmp[0]));
   chain_comparator Y1 ( .a(pipe_yd[7:4]), .b(addry[7:4]), .q(y_cmp[1]));
   comp4 Y1 ( .a(pipe_yd[7:4]), .b(addry[7:4]), .q(y_cmp[1]));
 
 
   assign decision[0] = x_cmp[1][0] | (x_cmp[1][2]&x_cmp[0][0]);       // frame x > addr x
   assign decision[0] = x_cmp[1][0] | (x_cmp[1][2]&x_cmp[0][0]);       // frame x > addr x
   assign decision[1] = x_cmp[1][1] | (x_cmp[1][2]&x_cmp[0][1]);       // frame x < addr x
   assign decision[1] = x_cmp[1][1] | (x_cmp[1][2]&x_cmp[0][1]);       // frame x < addr x
   assign decision[2] = x_cmp[1][2] & x_cmp[0][2];                     // frame x = addr x
   assign decision[2] = x_cmp[1][2] & x_cmp[0][2];                     // frame x = addr x
   assign decision[3] = y_cmp[1][0] | (y_cmp[1][2]&y_cmp[0][0]);       // frame y > addr y
   assign decision[3] = y_cmp[1][0] | (y_cmp[1][2]&y_cmp[0][0]);       // frame y > addr y
   assign decision[4] = y_cmp[1][1] | (y_cmp[1][2]&y_cmp[0][1]);       // frame y < addr y
   assign decision[4] = y_cmp[1][1] | (y_cmp[1][2]&y_cmp[0][1]);       // frame y < addr y
   assign decision[5] = y_cmp[1][2] & y_cmp[0][2];                     // frame y = addr y
   assign decision[5] = y_cmp[1][2] & y_cmp[0][2];                     // frame y = addr y
 
 
endmodule // routing_decision
endmodule // routing_decision
 
 
 
 
// the 1-of-4 comparator
 
module chain_comparator (
 
     a
 
    ,b
 
    ,q
 
    );
 
 
 
   input   [3:0]   a;
 
   input [3:0]      b;
 
   output [2:0]    q;
 
 
 
   // a > b
 
   assign q[0] = (a[3]&(|b[2:0])) | (a[2]&(|b[1:0])) | (a[1]&(|b[0:0]));
 
 
 
   // a < b
 
   assign q[1] = (a[2]&(|b[3:3])) | (a[1]&(|b[3:2])) | (a[0]&(|b[3:1]));
 
 
 
   // a = b
 
   assign q[2] = (a[3]&b[3]) | (a[2]&b[2]) | (a[1]&b[1]) | (a[0]&b[0]);
 
 
 
endmodule // chain_comparator
 
 
 
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