blob: 94f377146e71c30ce3a1e1434d7fe3e7f3ee54c9 [file] [log] [blame]
module W_IO (E1BEG, E2BEG, E2BEGb, EE4BEG, E6BEG, W1END, W2MID, W2END, WW4END, W6END, A_I_top, A_T_top, A_O_top, UserCLK, B_I_top, B_T_top, B_O_top, A_config_C_bit0, A_config_C_bit1, A_config_C_bit2, A_config_C_bit3, B_config_C_bit0, B_config_C_bit1, B_config_C_bit2, B_config_C_bit3, UserCLKo, FrameData, FrameData_O, FrameStrobe, FrameStrobe_O);
parameter MaxFramesPerCol = 20;
parameter FrameBitsPerRow = 32;
parameter NoConfigBits = 114;
// NORTH
// EAST
output [3:0] E1BEG; //wires:4 X_offset:1 Y_offset:0 source_name:E1BEG destination_name:NULL
output [7:0] E2BEG; //wires:8 X_offset:1 Y_offset:0 source_name:E2BEG destination_name:NULL
output [7:0] E2BEGb; //wires:8 X_offset:1 Y_offset:0 source_name:E2BEGb destination_name:NULL
output [15:0] EE4BEG; //wires:4 X_offset:4 Y_offset:0 source_name:EE4BEG destination_name:NULL
output [11:0] E6BEG; //wires:2 X_offset:6 Y_offset:0 source_name:E6BEG destination_name:NULL
// SOUTH
// WEST
input [3:0] W1END; //wires:4 X_offset:-1 Y_offset:0 source_name:NULL destination_name:W1END
input [7:0] W2MID; //wires:8 X_offset:-1 Y_offset:0 source_name:NULL destination_name:W2MID
input [7:0] W2END; //wires:8 X_offset:-1 Y_offset:0 source_name:NULL destination_name:W2END
input [15:0] WW4END; //wires:4 X_offset:-4 Y_offset:0 source_name:NULL destination_name:WW4END
input [11:0] W6END; //wires:2 X_offset:-6 Y_offset:0 source_name:NULL destination_name:W6END
// Tile IO ports from BELs
output A_I_top;
output A_T_top;
input A_O_top;
input UserCLK;
output B_I_top;
output B_T_top;
input B_O_top;
output A_config_C_bit0;
output A_config_C_bit1;
output A_config_C_bit2;
output A_config_C_bit3;
output B_config_C_bit0;
output B_config_C_bit1;
output B_config_C_bit2;
output B_config_C_bit3;
output UserCLKo;
input [FrameBitsPerRow-1:0] FrameData; //CONFIG_PORT this is a keyword needed to connect the tile to the bitstream frame register
output [FrameBitsPerRow-1:0] FrameData_O;
input [MaxFramesPerCol-1:0] FrameStrobe; //CONFIG_PORT this is a keyword needed to connect the tile to the bitstream frame register
output [MaxFramesPerCol-1:0] FrameStrobe_O;
//global
//signal declarations
//BEL ports (e.g., slices)
wire A_I;
wire A_T;
wire B_I;
wire B_T;
wire A_O;
wire A_Q;
wire B_O;
wire B_Q;
//jump wires
//internal configuration data signal to daisy-chain all BELs (if any and in the order they are listed in the fabric.csv)
wire [NoConfigBits-1:0] ConfigBits;
wire [NoConfigBits-1:0] ConfigBits_N;
// Cascading of routing for wires spanning more than one tile
wire [FrameBitsPerRow-1:0] FrameData_i;
wire [FrameBitsPerRow-1:0] FrameData_O_i;
assign FrameData_O_i = FrameData_i;
my_buf data_inbuf_0 (
.A(FrameData[0]),
.X(FrameData_i[0])
);
my_buf data_inbuf_1 (
.A(FrameData[1]),
.X(FrameData_i[1])
);
my_buf data_inbuf_2 (
.A(FrameData[2]),
.X(FrameData_i[2])
);
my_buf data_inbuf_3 (
.A(FrameData[3]),
.X(FrameData_i[3])
);
my_buf data_inbuf_4 (
.A(FrameData[4]),
.X(FrameData_i[4])
);
my_buf data_inbuf_5 (
.A(FrameData[5]),
.X(FrameData_i[5])
);
my_buf data_inbuf_6 (
.A(FrameData[6]),
.X(FrameData_i[6])
);
my_buf data_inbuf_7 (
.A(FrameData[7]),
.X(FrameData_i[7])
);
my_buf data_inbuf_8 (
.A(FrameData[8]),
.X(FrameData_i[8])
);
my_buf data_inbuf_9 (
.A(FrameData[9]),
.X(FrameData_i[9])
);
my_buf data_inbuf_10 (
.A(FrameData[10]),
.X(FrameData_i[10])
);
my_buf data_inbuf_11 (
.A(FrameData[11]),
.X(FrameData_i[11])
);
my_buf data_inbuf_12 (
.A(FrameData[12]),
.X(FrameData_i[12])
);
my_buf data_inbuf_13 (
.A(FrameData[13]),
.X(FrameData_i[13])
);
my_buf data_inbuf_14 (
.A(FrameData[14]),
.X(FrameData_i[14])
);
my_buf data_inbuf_15 (
.A(FrameData[15]),
.X(FrameData_i[15])
);
my_buf data_inbuf_16 (
.A(FrameData[16]),
.X(FrameData_i[16])
);
my_buf data_inbuf_17 (
.A(FrameData[17]),
.X(FrameData_i[17])
);
my_buf data_inbuf_18 (
.A(FrameData[18]),
.X(FrameData_i[18])
);
my_buf data_inbuf_19 (
.A(FrameData[19]),
.X(FrameData_i[19])
);
my_buf data_inbuf_20 (
.A(FrameData[20]),
.X(FrameData_i[20])
);
my_buf data_inbuf_21 (
.A(FrameData[21]),
.X(FrameData_i[21])
);
my_buf data_inbuf_22 (
.A(FrameData[22]),
.X(FrameData_i[22])
);
my_buf data_inbuf_23 (
.A(FrameData[23]),
.X(FrameData_i[23])
);
my_buf data_inbuf_24 (
.A(FrameData[24]),
.X(FrameData_i[24])
);
my_buf data_inbuf_25 (
.A(FrameData[25]),
.X(FrameData_i[25])
);
my_buf data_inbuf_26 (
.A(FrameData[26]),
.X(FrameData_i[26])
);
my_buf data_inbuf_27 (
.A(FrameData[27]),
.X(FrameData_i[27])
);
my_buf data_inbuf_28 (
.A(FrameData[28]),
.X(FrameData_i[28])
);
my_buf data_inbuf_29 (
.A(FrameData[29]),
.X(FrameData_i[29])
);
my_buf data_inbuf_30 (
.A(FrameData[30]),
.X(FrameData_i[30])
);
my_buf data_inbuf_31 (
.A(FrameData[31]),
.X(FrameData_i[31])
);
my_buf data_outbuf_0 (
.A(FrameData_O_i[0]),
.X(FrameData_O[0])
);
my_buf data_outbuf_1 (
.A(FrameData_O_i[1]),
.X(FrameData_O[1])
);
my_buf data_outbuf_2 (
.A(FrameData_O_i[2]),
.X(FrameData_O[2])
);
my_buf data_outbuf_3 (
.A(FrameData_O_i[3]),
.X(FrameData_O[3])
);
my_buf data_outbuf_4 (
.A(FrameData_O_i[4]),
.X(FrameData_O[4])
);
my_buf data_outbuf_5 (
.A(FrameData_O_i[5]),
.X(FrameData_O[5])
);
my_buf data_outbuf_6 (
.A(FrameData_O_i[6]),
.X(FrameData_O[6])
);
my_buf data_outbuf_7 (
.A(FrameData_O_i[7]),
.X(FrameData_O[7])
);
my_buf data_outbuf_8 (
.A(FrameData_O_i[8]),
.X(FrameData_O[8])
);
my_buf data_outbuf_9 (
.A(FrameData_O_i[9]),
.X(FrameData_O[9])
);
my_buf data_outbuf_10 (
.A(FrameData_O_i[10]),
.X(FrameData_O[10])
);
my_buf data_outbuf_11 (
.A(FrameData_O_i[11]),
.X(FrameData_O[11])
);
my_buf data_outbuf_12 (
.A(FrameData_O_i[12]),
.X(FrameData_O[12])
);
my_buf data_outbuf_13 (
.A(FrameData_O_i[13]),
.X(FrameData_O[13])
);
my_buf data_outbuf_14 (
.A(FrameData_O_i[14]),
.X(FrameData_O[14])
);
my_buf data_outbuf_15 (
.A(FrameData_O_i[15]),
.X(FrameData_O[15])
);
my_buf data_outbuf_16 (
.A(FrameData_O_i[16]),
.X(FrameData_O[16])
);
my_buf data_outbuf_17 (
.A(FrameData_O_i[17]),
.X(FrameData_O[17])
);
my_buf data_outbuf_18 (
.A(FrameData_O_i[18]),
.X(FrameData_O[18])
);
my_buf data_outbuf_19 (
.A(FrameData_O_i[19]),
.X(FrameData_O[19])
);
my_buf data_outbuf_20 (
.A(FrameData_O_i[20]),
.X(FrameData_O[20])
);
my_buf data_outbuf_21 (
.A(FrameData_O_i[21]),
.X(FrameData_O[21])
);
my_buf data_outbuf_22 (
.A(FrameData_O_i[22]),
.X(FrameData_O[22])
);
my_buf data_outbuf_23 (
.A(FrameData_O_i[23]),
.X(FrameData_O[23])
);
my_buf data_outbuf_24 (
.A(FrameData_O_i[24]),
.X(FrameData_O[24])
);
my_buf data_outbuf_25 (
.A(FrameData_O_i[25]),
.X(FrameData_O[25])
);
my_buf data_outbuf_26 (
.A(FrameData_O_i[26]),
.X(FrameData_O[26])
);
my_buf data_outbuf_27 (
.A(FrameData_O_i[27]),
.X(FrameData_O[27])
);
my_buf data_outbuf_28 (
.A(FrameData_O_i[28]),
.X(FrameData_O[28])
);
my_buf data_outbuf_29 (
.A(FrameData_O_i[29]),
.X(FrameData_O[29])
);
my_buf data_outbuf_30 (
.A(FrameData_O_i[30]),
.X(FrameData_O[30])
);
my_buf data_outbuf_31 (
.A(FrameData_O_i[31]),
.X(FrameData_O[31])
);
wire [MaxFramesPerCol-1:0] FrameStrobe_i;
wire [MaxFramesPerCol-1:0] FrameStrobe_O_i;
assign FrameStrobe_O_i = FrameStrobe_i;
my_buf strobe_inbuf_0 (
.A(FrameStrobe[0]),
.X(FrameStrobe_i[0])
)
;
my_buf strobe_inbuf_1 (
.A(FrameStrobe[1]),
.X(FrameStrobe_i[1])
)
;
my_buf strobe_inbuf_2 (
.A(FrameStrobe[2]),
.X(FrameStrobe_i[2])
)
;
my_buf strobe_inbuf_3 (
.A(FrameStrobe[3]),
.X(FrameStrobe_i[3])
)
;
my_buf strobe_inbuf_4 (
.A(FrameStrobe[4]),
.X(FrameStrobe_i[4])
)
;
my_buf strobe_inbuf_5 (
.A(FrameStrobe[5]),
.X(FrameStrobe_i[5])
)
;
my_buf strobe_inbuf_6 (
.A(FrameStrobe[6]),
.X(FrameStrobe_i[6])
)
;
my_buf strobe_inbuf_7 (
.A(FrameStrobe[7]),
.X(FrameStrobe_i[7])
)
;
my_buf strobe_inbuf_8 (
.A(FrameStrobe[8]),
.X(FrameStrobe_i[8])
)
;
my_buf strobe_inbuf_9 (
.A(FrameStrobe[9]),
.X(FrameStrobe_i[9])
)
;
my_buf strobe_inbuf_10 (
.A(FrameStrobe[10]),
.X(FrameStrobe_i[10])
)
;
my_buf strobe_inbuf_11 (
.A(FrameStrobe[11]),
.X(FrameStrobe_i[11])
)
;
my_buf strobe_inbuf_12 (
.A(FrameStrobe[12]),
.X(FrameStrobe_i[12])
)
;
my_buf strobe_inbuf_13 (
.A(FrameStrobe[13]),
.X(FrameStrobe_i[13])
)
;
my_buf strobe_inbuf_14 (
.A(FrameStrobe[14]),
.X(FrameStrobe_i[14])
)
;
my_buf strobe_inbuf_15 (
.A(FrameStrobe[15]),
.X(FrameStrobe_i[15])
)
;
my_buf strobe_inbuf_16 (
.A(FrameStrobe[16]),
.X(FrameStrobe_i[16])
)
;
my_buf strobe_inbuf_17 (
.A(FrameStrobe[17]),
.X(FrameStrobe_i[17])
)
;
my_buf strobe_inbuf_18 (
.A(FrameStrobe[18]),
.X(FrameStrobe_i[18])
)
;
my_buf strobe_inbuf_19 (
.A(FrameStrobe[19]),
.X(FrameStrobe_i[19])
)
;
my_buf strobe_outbuf_0 (
.A(FrameStrobe_O_i[0]),
.X(FrameStrobe_O[0])
)
;
my_buf strobe_outbuf_1 (
.A(FrameStrobe_O_i[1]),
.X(FrameStrobe_O[1])
)
;
my_buf strobe_outbuf_2 (
.A(FrameStrobe_O_i[2]),
.X(FrameStrobe_O[2])
)
;
my_buf strobe_outbuf_3 (
.A(FrameStrobe_O_i[3]),
.X(FrameStrobe_O[3])
)
;
my_buf strobe_outbuf_4 (
.A(FrameStrobe_O_i[4]),
.X(FrameStrobe_O[4])
)
;
my_buf strobe_outbuf_5 (
.A(FrameStrobe_O_i[5]),
.X(FrameStrobe_O[5])
)
;
my_buf strobe_outbuf_6 (
.A(FrameStrobe_O_i[6]),
.X(FrameStrobe_O[6])
)
;
my_buf strobe_outbuf_7 (
.A(FrameStrobe_O_i[7]),
.X(FrameStrobe_O[7])
)
;
my_buf strobe_outbuf_8 (
.A(FrameStrobe_O_i[8]),
.X(FrameStrobe_O[8])
)
;
my_buf strobe_outbuf_9 (
.A(FrameStrobe_O_i[9]),
.X(FrameStrobe_O[9])
)
;
my_buf strobe_outbuf_10 (
.A(FrameStrobe_O_i[10]),
.X(FrameStrobe_O[10])
)
;
my_buf strobe_outbuf_11 (
.A(FrameStrobe_O_i[11]),
.X(FrameStrobe_O[11])
)
;
my_buf strobe_outbuf_12 (
.A(FrameStrobe_O_i[12]),
.X(FrameStrobe_O[12])
)
;
my_buf strobe_outbuf_13 (
.A(FrameStrobe_O_i[13]),
.X(FrameStrobe_O[13])
)
;
my_buf strobe_outbuf_14 (
.A(FrameStrobe_O_i[14]),
.X(FrameStrobe_O[14])
)
;
my_buf strobe_outbuf_15 (
.A(FrameStrobe_O_i[15]),
.X(FrameStrobe_O[15])
)
;
my_buf strobe_outbuf_16 (
.A(FrameStrobe_O_i[16]),
.X(FrameStrobe_O[16])
)
;
my_buf strobe_outbuf_17 (
.A(FrameStrobe_O_i[17]),
.X(FrameStrobe_O[17])
)
;
my_buf strobe_outbuf_18 (
.A(FrameStrobe_O_i[18]),
.X(FrameStrobe_O[18])
)
;
my_buf strobe_outbuf_19 (
.A(FrameStrobe_O_i[19]),
.X(FrameStrobe_O[19])
)
;
clk_buf inst_clk_buf(.A(UserCLK), .X(UserCLKo));
// configuration storage latches
W_IO_ConfigMem Inst_W_IO_ConfigMem (
.FrameData(FrameData),
.FrameStrobe(FrameStrobe),
.ConfigBits(ConfigBits),
.ConfigBits_N(ConfigBits_N)
);
//BEL component instantiations
IO_1_bidirectional_frame_config_pass Inst_A_IO_1_bidirectional_frame_config_pass (
.I(A_I),
.T(A_T),
.O(A_O),
.Q(A_Q),
//I/O primitive pins go to tile top level module (not further parsed)
.I_top(A_I_top),
.T_top(A_T_top),
.O_top(A_O_top),
.UserCLK(UserCLK)
);
IO_1_bidirectional_frame_config_pass Inst_B_IO_1_bidirectional_frame_config_pass (
.I(B_I),
.T(B_T),
.O(B_O),
.Q(B_Q),
//I/O primitive pins go to tile top level module (not further parsed)
.I_top(B_I_top),
.T_top(B_T_top),
.O_top(B_O_top),
.UserCLK(UserCLK)
);
Config_access Inst_A_config_Config_access (
//I/O primitive pins go to tile top level module (not further parsed)
.C_bit0(A_config_C_bit0),
.C_bit1(A_config_C_bit1),
.C_bit2(A_config_C_bit2),
.C_bit3(A_config_C_bit3),
.ConfigBits(ConfigBits[4-1:0])
);
Config_access Inst_B_config_Config_access (
//I/O primitive pins go to tile top level module (not further parsed)
.C_bit0(B_config_C_bit0),
.C_bit1(B_config_C_bit1),
.C_bit2(B_config_C_bit2),
.C_bit3(B_config_C_bit3),
.ConfigBits(ConfigBits[8-1:4])
);
//switch matrix component instantiation
W_IO_switch_matrix Inst_W_IO_switch_matrix (
.W1END0(W1END[0]),
.W1END1(W1END[1]),
.W1END2(W1END[2]),
.W1END3(W1END[3]),
.W2MID0(W2MID[0]),
.W2MID1(W2MID[1]),
.W2MID2(W2MID[2]),
.W2MID3(W2MID[3]),
.W2MID4(W2MID[4]),
.W2MID5(W2MID[5]),
.W2MID6(W2MID[6]),
.W2MID7(W2MID[7]),
.W2END0(W2END[0]),
.W2END1(W2END[1]),
.W2END2(W2END[2]),
.W2END3(W2END[3]),
.W2END4(W2END[4]),
.W2END5(W2END[5]),
.W2END6(W2END[6]),
.W2END7(W2END[7]),
.WW4END0(WW4END[0]),
.WW4END1(WW4END[1]),
.WW4END2(WW4END[2]),
.WW4END3(WW4END[3]),
.WW4END4(WW4END[4]),
.WW4END5(WW4END[5]),
.WW4END6(WW4END[6]),
.WW4END7(WW4END[7]),
.WW4END8(WW4END[8]),
.WW4END9(WW4END[9]),
.WW4END10(WW4END[10]),
.WW4END11(WW4END[11]),
.WW4END12(WW4END[12]),
.WW4END13(WW4END[13]),
.WW4END14(WW4END[14]),
.WW4END15(WW4END[15]),
.W6END0(W6END[0]),
.W6END1(W6END[1]),
.W6END2(W6END[2]),
.W6END3(W6END[3]),
.W6END4(W6END[4]),
.W6END5(W6END[5]),
.W6END6(W6END[6]),
.W6END7(W6END[7]),
.W6END8(W6END[8]),
.W6END9(W6END[9]),
.W6END10(W6END[10]),
.W6END11(W6END[11]),
.A_O(A_O),
.A_Q(A_Q),
.B_O(B_O),
.B_Q(B_Q),
.E1BEG0(E1BEG[0]),
.E1BEG1(E1BEG[1]),
.E1BEG2(E1BEG[2]),
.E1BEG3(E1BEG[3]),
.E2BEG0(E2BEG[0]),
.E2BEG1(E2BEG[1]),
.E2BEG2(E2BEG[2]),
.E2BEG3(E2BEG[3]),
.E2BEG4(E2BEG[4]),
.E2BEG5(E2BEG[5]),
.E2BEG6(E2BEG[6]),
.E2BEG7(E2BEG[7]),
.E2BEGb0(E2BEGb[0]),
.E2BEGb1(E2BEGb[1]),
.E2BEGb2(E2BEGb[2]),
.E2BEGb3(E2BEGb[3]),
.E2BEGb4(E2BEGb[4]),
.E2BEGb5(E2BEGb[5]),
.E2BEGb6(E2BEGb[6]),
.E2BEGb7(E2BEGb[7]),
.EE4BEG0(EE4BEG[0]),
.EE4BEG1(EE4BEG[1]),
.EE4BEG2(EE4BEG[2]),
.EE4BEG3(EE4BEG[3]),
.EE4BEG4(EE4BEG[4]),
.EE4BEG5(EE4BEG[5]),
.EE4BEG6(EE4BEG[6]),
.EE4BEG7(EE4BEG[7]),
.EE4BEG8(EE4BEG[8]),
.EE4BEG9(EE4BEG[9]),
.EE4BEG10(EE4BEG[10]),
.EE4BEG11(EE4BEG[11]),
.EE4BEG12(EE4BEG[12]),
.EE4BEG13(EE4BEG[13]),
.EE4BEG14(EE4BEG[14]),
.EE4BEG15(EE4BEG[15]),
.E6BEG0(E6BEG[0]),
.E6BEG1(E6BEG[1]),
.E6BEG2(E6BEG[2]),
.E6BEG3(E6BEG[3]),
.E6BEG4(E6BEG[4]),
.E6BEG5(E6BEG[5]),
.E6BEG6(E6BEG[6]),
.E6BEG7(E6BEG[7]),
.E6BEG8(E6BEG[8]),
.E6BEG9(E6BEG[9]),
.E6BEG10(E6BEG[10]),
.E6BEG11(E6BEG[11]),
.A_I(A_I),
.A_T(A_T),
.B_I(B_I),
.B_T(B_T),
.ConfigBits(ConfigBits[114-1:8]),
.ConfigBits_N(ConfigBits_N[114-1:8])
);
endmodule