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[Commit-gnuradio] r10709 - in gnuradio/trunk/usrp2/fpga/control_lib: . n
From: |
matt |
Subject: |
[Commit-gnuradio] r10709 - in gnuradio/trunk/usrp2/fpga/control_lib: . newfifo |
Date: |
Sun, 29 Mar 2009 20:54:51 -0600 (MDT) |
Author: matt
Date: 2009-03-29 20:54:51 -0600 (Sun, 29 Mar 2009)
New Revision: 10709
Added:
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo18_to_ll8.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_fifo36.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_ll8.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo18.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo19.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_ll8.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock_casc.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_cascade.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_long.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.vcd
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_short.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_spec.txt
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_tb.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo19.v
gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo36.v
Log:
new fifos copied over from other project
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo18_to_ll8.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo18_to_ll8.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo18_to_ll8.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,58 @@
+
+module fifo18_to_ll8
+ (input clk, input reset, input clear,
+ input [35:0] f18_data,
+ input f18_src_rdy_i,
+ output f18_dst_rdy_o,
+
+ output reg [7:0] ll_data,
+ output ll_sof_n,
+ output ll_eof_n,
+ output ll_src_rdy_n,
+ input ll_dst_rdy_n);
+
+ wire ll_sof, ll_eof, ll_src_rdy;
+ assign ll_sof_n = ~ll_sof;
+ assign ll_eof_n = ~ll_eof;
+ assign ll_src_rdy_n = ~ll_src_rdy;
+ wire ll_dst_rdy = ~ll_dst_rdy_n;
+
+ wire f18_sof = f18_data[32];
+ wire f18_eof = f18_data[33];
+ wire f18_occ = f18_data[35:34];
+ wire advance, end_early;
+ reg [1:0] state;
+ assign debug = {29'b0,state};
+
+ always @(posedge clk)
+ if(reset)
+ state <= 0;
+ else
+ if(advance)
+ if(ll_eof)
+ state <= 0;
+ else
+ state <= state + 1;
+
+ always @*
+ case(state)
+ 0 : ll_data = f18_data[31:24];
+ 1 : ll_data = f18_data[23:16];
+ 2 : ll_data = f18_data[15:8];
+ 3 : ll_data = f18_data[7:0];
+ default : ll_data = f18_data[31:24];
+ endcase // case (state)
+
+ assign ll_sof = (state==0) & f18_sof;
+ assign ll_eof = f18_eof & (((state==0)&(f18_occ==1)) |
+ ((state==1)&(f18_occ==2)) |
+ ((state==2)&(f18_occ==3)) |
+ (state==3));
+
+ assign ll_src_rdy = f18_src_rdy_i;
+
+ assign advance = ll_src_rdy & ll_dst_rdy;
+ assign f18_dst_rdy_o = advance & ((state==3)|ll_eof);
+ assign debug = state;
+
+endmodule // ll8_to_fifo36
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_fifo36.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_fifo36.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_fifo36.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,71 @@
+
+module fifo19_to_fifo36
+ (input clk, input reset, input clear,
+ input [18:0] f19_datain,
+ input f19_src_rdy_i,
+ output f19_dst_rdy_o,
+
+ output [35:0] f36_dataout,
+ output f36_src_rdy_o,
+ input f36_dst_rdy_i
+ );
+
+ reg f36_sof, f36_eof, f36_occ;
+
+ reg [1:0] state;
+ reg [15:0] dat0, dat1;
+
+ wire f19_sof = f19_datain[16];
+ wire f19_eof = f19_datain[17];
+ wire f19_occ = f19_datain[18];
+
+ wire xfer_out = f36_src_rdy_o & f36_dst_rdy_i;
+
+ always @(posedge clk)
+ if(f19_src_rdy_i & ((state==0)|xfer_out))
+ f36_sof <= f19_sof;
+
+ always @(posedge clk)
+ if(f19_src_rdy_i & ((state != 2)|xfer_out))
+ f36_eof <= f19_eof;
+
+ always @(posedge clk) // FIXME check this
+ if(f19_eof)
+ f36_occ <= {state[0],f19_occ};
+ else
+ f36_occ <= 0;
+
+ always @(posedge clk)
+ if(reset)
+ state <= 0;
+ else
+ if(f19_src_rdy_i)
+ case(state)
+ 0 :
+ if(f19_eof)
+ state <= 2;
+ else
+ state <= 1;
+ 1 :
+ state <= 2;
+ 2 :
+ if(xfer_out)
+ state <= 1;
+ endcase // case(state)
+ else
+ if(xfer_out)
+ state <= 0;
+
+ always @(posedge clk)
+ if(f19_src_rdy_i & (state==1))
+ dat1 <= f19_datain;
+
+ always @(posedge clk)
+ if(f19_src_rdy_i & ((state==0) | xfer_out))
+ dat0 <= f19_datain;
+
+ assign f19_dst_rdy_o = xfer_out | (state != 2);
+ assign f36_dataout = {f36_occ,f36_eof,f36_sof,dat0,dat1};
+ assign f36_src_rdy_o = (state == 2);
+
+endmodule // fifo19_to_fifo36
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_ll8.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_ll8.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo19_to_ll8.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,53 @@
+
+module fifo19_to_ll8
+ (input clk, input reset, input clear,
+ input [18:0] f19_data,
+ input f19_src_rdy_i,
+ output f19_dst_rdy_o,
+
+ output reg [7:0] ll_data,
+ output ll_sof_n,
+ output ll_eof_n,
+ output ll_src_rdy_n,
+ input ll_dst_rdy_n);
+
+ wire ll_sof, ll_eof, ll_src_rdy;
+ assign ll_sof_n = ~ll_sof;
+ assign ll_eof_n = ~ll_eof;
+ assign ll_src_rdy_n = ~ll_src_rdy;
+ wire ll_dst_rdy = ~ll_dst_rdy_n;
+
+ wire f19_sof = f19_data[16];
+ wire f19_eof = f19_data[17];
+ wire f19_occ = f19_data[18];
+
+ wire advance, end_early;
+ reg state;
+
+ always @(posedge clk)
+ if(reset)
+ state <= 0;
+ else
+ if(advance)
+ if(ll_eof)
+ state <= 0;
+ else
+ state <= state + 1;
+
+ always @*
+ case(state)
+ 0 : ll_data = f19_data[15:8];
+ 1 : ll_data = f19_data[7:0];
+ default : ll_data = f19_data[15:8];
+ endcase // case (state)
+
+ assign ll_sof = (state==0) & f19_sof;
+ assign ll_eof = f19_eof & ((f19_occ==1)|(state==1));
+
+ assign ll_src_rdy = f19_src_rdy_i;
+
+ assign advance = ll_src_rdy & ll_dst_rdy;
+ assign f19_dst_rdy_o = advance & ((state==1)|ll_eof);
+
+endmodule // fifo19_to_ll8
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo18.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo18.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo18.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,40 @@
+
+module fifo36_to_fifo18
+ (input clk, input reset, input clear,
+ input [35:0] f36_datain,
+ input f36_src_rdy_i,
+ output f36_dst_rdy_o,
+
+ output [17:0] f18_dataout,
+ output f18_src_rdy_o,
+ input f18_dst_rdy_i );
+
+ wire f36_sof = f36_datain[32];
+ wire f36_eof = f36_datain[33];
+ wire f36_occ = f36_datain[35:34];
+
+ reg phase;
+
+ wire half_line = f36_eof & ((f36_occ==1)|(f36_occ==2));
+
+ assign f18_dataout[15:0] = phase ? f36_datain[15:0] : f36_datain[31:16];
+ assign f18_dataout[16] = phase ? 0 : f36_sof;
+ assign f18_dataout[17] = phase ? f36_eof : half_line;
+
+ assign f18_src_rdy_o = f36_src_rdy_i;
+ assign f36_dst_rdy_o = (phase | half_line) & f18_dst_rdy_i;
+
+ wire f18_xfer = f18_src_rdy_o & f18_dst_rdy_i;
+ wire f36_xfer = f36_src_rdy_i & f36_dst_rdy_o;
+
+ always @(posedge clk)
+ if(reset)
+ phase <= 0;
+ else if(f36_xfer)
+ phase <= 0;
+ else if(f18_xfer)
+ phase <= 1;
+
+
+endmodule // fifo36_to_fifo18
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo19.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo19.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_fifo19.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,41 @@
+
+module fifo36_to_fifo19
+ (input clk, input reset, input clear,
+ input [35:0] f36_datain,
+ input f36_src_rdy_i,
+ output f36_dst_rdy_o,
+
+ output [18:0] f19_dataout,
+ output f19_src_rdy_o,
+ input f19_dst_rdy_i );
+
+ wire f36_sof = f36_datain[32];
+ wire f36_eof = f36_datain[33];
+ wire f36_occ = f36_datain[35:34];
+
+ reg phase;
+
+ wire half_line = f36_eof & ((f36_occ==1)|(f36_occ==2));
+
+ assign f19_dataout[15:0] = phase ? f36_datain[15:0] : f36_datain[31:16];
+ assign f19_dataout[16] = phase ? 0 : f36_sof;
+ assign f19_dataout[17] = phase ? f36_eof : half_line;
+ assign f19_dataout[18] = f19_dataout[17] & ((f36_occ==1)|(f36_occ==3));
+
+ assign f19_src_rdy_o = f36_src_rdy_i;
+ assign f36_dst_rdy_o = (phase | half_line) & f19_dst_rdy_i;
+
+ wire f19_xfer = f19_src_rdy_o & f19_dst_rdy_i;
+ wire f36_xfer = f36_src_rdy_i & f36_dst_rdy_o;
+
+ always @(posedge clk)
+ if(reset)
+ phase <= 0;
+ else if(f36_xfer)
+ phase <= 0;
+ else if(f19_xfer)
+ phase <= 1;
+
+
+endmodule // fifo36_to_fifo19
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_ll8.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_ll8.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo36_to_ll8.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,60 @@
+
+module fifo36_to_ll8
+ (input clk, reset,
+ input [35:0] f36_data,
+ input f36_src_rdy_i,
+ output f36_dst_rdy_o,
+
+ output reg [7:0] ll_data,
+ output ll_sof_n,
+ output ll_eof_n,
+ output ll_src_rdy_n,
+ input ll_dst_rdy_n,
+
+ output [31:0] debug);
+
+ wire ll_sof, ll_eof, ll_src_rdy;
+ assign ll_sof_n = ~ll_sof;
+ assign ll_eof_n = ~ll_eof;
+ assign ll_src_rdy_n = ~ll_src_rdy;
+ wire ll_dst_rdy = ~ll_dst_rdy_n;
+
+ wire f36_sof = f36_data[32];
+ wire f36_eof = f36_data[33];
+ wire f36_occ = f36_data[35:34];
+ wire advance, end_early;
+ reg [1:0] state;
+ assign debug = {29'b0,state};
+
+ always @(posedge clk)
+ if(reset)
+ state <= 0;
+ else
+ if(advance)
+ if(ll_eof)
+ state <= 0;
+ else
+ state <= state + 1;
+
+ always @*
+ case(state)
+ 0 : ll_data = f36_data[31:24];
+ 1 : ll_data = f36_data[23:16];
+ 2 : ll_data = f36_data[15:8];
+ 3 : ll_data = f36_data[7:0];
+ default : ll_data = f36_data[31:24];
+ endcase // case (state)
+
+ assign ll_sof = (state==0) & f36_sof;
+ assign ll_eof = f36_eof & (((state==0)&(f36_occ==1)) |
+ ((state==1)&(f36_occ==2)) |
+ ((state==2)&(f36_occ==3)) |
+ (state==3));
+
+ assign ll_src_rdy = f36_src_rdy_i;
+
+ assign advance = ll_src_rdy & ll_dst_rdy;
+ assign f36_dst_rdy_o = advance & ((state==3)|ll_eof);
+ assign debug = state;
+
+endmodule // ll8_to_fifo36
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock.v 2009-03-30
02:54:51 UTC (rev 10709)
@@ -0,0 +1,66 @@
+
+module fifo_2clock
+ #(parameter DWIDTH=32, AWIDTH=9)
+ (input wclk, input [DWIDTH-1:0] datain, input write, output full, output
reg [AWIDTH-1:0] level_wclk,
+ input rclk, output [DWIDTH-1:0] dataout, input read, output empty, output
reg [AWIDTH-1:0] level_rclk,
+ input arst);
+
+ reg [AWIDTH-1:0] wr_addr, rd_addr;
+ wire [AWIDTH-1:0] wr_addr_rclk, rd_addr_wclk;
+ wire [AWIDTH-1:0] next_rd_addr;
+ wire enb_read;
+
+ // Write side management
+ wire [AWIDTH-1:0] next_wr_addr = wr_addr + 1;
+ always @(posedge wclk or posedge arst)
+ if(arst)
+ wr_addr <= 0;
+ else if(write)
+ wr_addr <= next_wr_addr;
+ assign full = (next_wr_addr == rd_addr_wclk);
+
+ // RAM for data storage. Data out is registered, complicating the
+ // read side logic
+ ram_2port #(.DWIDTH(DWIDTH),.AWIDTH(AWIDTH)) mac_rx_ff_ram
+ (.clka(wclk),.ena(1'b1),.wea(write),.addra(wr_addr),.dia(datain),.doa(),
+
.clkb(rclk),.enb(enb_read),.web(1'b0),.addrb(next_rd_addr),.dib(0),.dob(dataout)
);
+
+ // Read side management
+ reg data_valid;
+ assign empty = ~data_valid;
+ assign next_rd_addr = rd_addr + data_valid;
+ assign enb_read = read | ~data_valid;
+
+ always @(posedge rclk or posedge arst)
+ if(arst)
+ rd_addr <= 0;
+ else if(read)
+ rd_addr <= rd_addr + 1;
+
+ always @(posedge rclk or posedge arst)
+ if(arst)
+ data_valid <= 0;
+ else
+ if(read & (next_rd_addr == wr_addr_rclk))
+ data_valid <= 0;
+ else if(next_rd_addr != wr_addr_rclk)
+ data_valid <= 1;
+
+ // Send pointers across clock domains via gray code
+ gray_send #(.WIDTH(AWIDTH)) send_wr_addr
+ (.clk_in(wclk),.addr_in(wr_addr),
+ .clk_out(rclk),.addr_out(wr_addr_rclk) );
+
+ gray_send #(.WIDTH(AWIDTH)) send_rd_addr
+ (.clk_in(rclk),.addr_in(rd_addr),
+ .clk_out(wclk),.addr_out(rd_addr_wclk) );
+
+ // Generate fullness info, these are approximate and may be delayed
+ // and are only for higher-level flow control.
+ // Only full and empty are guaranteed exact.
+ always @(posedge wclk)
+ level_wclk <= wr_addr - rd_addr_wclk;
+ always @(posedge rclk)
+ level_rclk <= wr_addr_rclk - rd_addr;
+
+endmodule // fifo_2clock
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock_casc.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock_casc.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_2clock_casc.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,31 @@
+
+module fifo_2clock_casc
+ #(parameter DWIDTH=32, AWIDTH=9)
+ (input wclk, input [DWIDTH-1:0] datain, input write, output full, output
[AWIDTH-1:0] level_wclk,
+ input rclk, output [DWIDTH-1:0] dataout, input read, output empty, output
[AWIDTH-1:0] level_rclk,
+ input arst);
+
+ wire full_int, empty_int, full_int2, empty_int2, transfer, transfer2;
+ wire [DWIDTH-1:0] data_int, data_int2;
+
+ shortfifo #(.WIDTH(DWIDTH)) shortfifo
+ (.clk(wclk), .rst(arst), .clear(0),
+ .datain(datain), .write(write), .full(full),
+ .dataout(data_int), .read(transfer), .empty(empty_int) );
+
+ assign transfer = ~full_int & ~empty_int;
+
+ fifo_2clock #(.DWIDTH(DWIDTH),.AWIDTH(AWIDTH)) fifo_2clock
+ (.wclk(wclk), .datain(data_int), .write(transfer), .full(full_int),
.level_wclk(level_wclk),
+ .rclk(rclk), .dataout(data_int2), .read(transfer2), .empty(empty_int2),
.level_rclk(level_rclk),
+ .arst(arst) );
+
+ assign transfer2 = ~full_int2 & ~empty_int2;
+
+ shortfifo #(.WIDTH(DWIDTH)) shortfifo2
+ (.clk(rclk), .rst(arst), .clear(0),
+ .datain(data_int2), .write(transfer2), .full(full_int2),
+ .dataout(dataout), .read(read), .empty(empty) );
+
+endmodule // fifo_2clock_casc
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_cascade.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_cascade.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_cascade.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,52 @@
+
+
+// This FIFO exists to provide an intermediate point for the data on its
+// long trek from one RAM (in the buffer pool) to another (in the longfifo)
+// The shortfifo is more flexible in its placement since it is based on
+// distributed RAM
+
+// This one has the shortfifo on both the in and out sides.
+module fifo_cascade
+ #(parameter WIDTH=32, SIZE=9)
+ (input clk, input reset, input clear,
+ input [WIDTH-1:0] datain,
+ input src_rdy_i,
+ output dst_rdy_o,
+ output [WIDTH-1:0] dataout,
+ output src_rdy_o,
+ input dst_rdy_i,
+ output [15:0] space,
+ output [15:0] occupied);
+
+ wire [WIDTH-1:0] data_int, data_int2;
+ wire src_rdy_1, dst_rdy_1, src_rdy_2, dst_rdy_2;
+
+ wire [4:0] s1_space, s1_occupied, s2_space, s2_occupied;
+ wire [15:0] l_space, l_occupied;
+
+ fifo_short #(.WIDTH(WIDTH)) head_fifo
+ (.clk(clk),.reset(reset),.clear(clear),
+ .datain(datain), .src_rdy_i(src_rdy_i), .dst_rdy_o(dst_rdy_o),
+ .dataout(data_int), .src_rdy_o(src_rdy_1), .dst_rdy_i(dst_rdy_1),
+ .space(s1_space),.occupied(s1_occupied) );
+
+ fifo_long #(.WIDTH(WIDTH),.SIZE(SIZE)) middle_fifo
+ (.clk(clk),.reset(reset),.clear(clear),
+ .datain(data_int), .src_rdy_i(src_rdy_1), .dst_rdy_o(dst_rdy_1),
+ .dataout(data_int2), .src_rdy_o(src_rdy_2), .dst_rdy_i(dst_rdy_2),
+ .space(l_space),.occupied(l_occupied) );
+
+ fifo_short #(.WIDTH(WIDTH)) tail_fifo
+ (.clk(clk),.reset(reset),.clear(clear),
+ .datain(data_int2), .src_rdy_i(src_rdy_2), .dst_rdy_o(dst_rdy_2),
+ .dataout(dataout), .src_rdy_o(src_rdy_o), .dst_rdy_i(dst_rdy_i),
+ .space(s2_space),.occupied(s2_occupied) );
+
+ assign space = {11'b0,s1_space} + {11'b0,s2_space} + l_space;
+ assign occupied = {11'b0,s1_occupied} + {11'b0,s2_occupied} +
l_occupied;
+
+endmodule // cascadefifo2
+
+
+
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_long.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_long.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_long.v 2009-03-30
02:54:51 UTC (rev 10709)
@@ -0,0 +1,148 @@
+
+// FIFO intended to be interchangeable with shortfifo, but
+// based on block ram instead of SRL16's
+// only one clock domain
+
+// Port A is write port, Port B is read port
+
+module fifo_long
+ #(parameter WIDTH=32, SIZE=9)
+ (input clk, input reset, input clear,
+ input [WIDTH-1:0] datain,
+ input src_rdy_i,
+ output dst_rdy_o,
+ output [WIDTH-1:0] dataout,
+ output src_rdy_o,
+ input dst_rdy_i,
+
+ output reg [15:0] space,
+ output reg [15:0] occupied);
+
+ wire write = src_rdy_i & dst_rdy_o;
+ wire read = dst_rdy_i & src_rdy_o;
+ wire full, empty;
+
+ assign dst_rdy_o = ~full;
+ assign src_rdy_o = ~empty;
+
+ // Read side states
+ localparam EMPTY = 0;
+ localparam PRE_READ = 1;
+ localparam READING = 2;
+
+ reg [SIZE-1:0] wr_addr, rd_addr;
+ reg [1:0] read_state;
+
+ reg empty_reg, full_reg;
+ always @(posedge clk)
+ if(reset)
+ wr_addr <= 0;
+ else if(clear)
+ wr_addr <= 0;
+ else if(write)
+ wr_addr <= wr_addr + 1;
+
+ ram_2port #(.DWIDTH(WIDTH),.AWIDTH(SIZE))
+ ram (.clka(clk),
+ .ena(1'b1),
+ .wea(write),
+ .addra(wr_addr),
+ .dia(datain),
+ .doa(),
+
+ .clkb(clk),
+ .enb((read_state==PRE_READ)|read),
+ .web(0),
+ .addrb(rd_addr),
+ .dib(0),
+ .dob(dataout));
+
+ always @(posedge clk)
+ if(reset)
+ begin
+ read_state <= EMPTY;
+ rd_addr <= 0;
+ empty_reg <= 1;
+ end
+ else
+ if(clear)
+ begin
+ read_state <= EMPTY;
+ rd_addr <= 0;
+ empty_reg <= 1;
+ end
+ else
+ case(read_state)
+ EMPTY :
+ if(write)
+ begin
+ //rd_addr <= wr_addr;
+ read_state <= PRE_READ;
+ end
+ PRE_READ :
+ begin
+ read_state <= READING;
+ empty_reg <= 0;
+ rd_addr <= rd_addr + 1;
+ end
+
+ READING :
+ if(read)
+ if(rd_addr == wr_addr)
+ begin
+ empty_reg <= 1;
+ if(write)
+ read_state <= PRE_READ;
+ else
+ read_state <= EMPTY;
+ end
+ else
+ rd_addr <= rd_addr + 1;
+ endcase // case(read_state)
+
+ wire [SIZE-1:0] dont_write_past_me = rd_addr - 3;
+ wire becoming_full = wr_addr == dont_write_past_me;
+
+ always @(posedge clk)
+ if(reset)
+ full_reg <= 0;
+ else if(clear)
+ full_reg <= 0;
+ else if(read & ~write)
+ full_reg <= 0;
+ //else if(write & ~read & (wr_addr == (rd_addr-3)))
+ else if(write & ~read & becoming_full)
+ full_reg <= 1;
+
+ //assign empty = (read_state != READING);
+ assign empty = empty_reg;
+
+ // assign full = ((rd_addr - 1) == wr_addr);
+ assign full = full_reg;
+
+ //////////////////////////////////////////////
+ // space and occupied are for diagnostics only
+ // not guaranteed exact
+
+ localparam NUMLINES = (1<<SIZE)-2;
+ always @(posedge clk)
+ if(reset)
+ space <= NUMLINES;
+ else if(clear)
+ space <= NUMLINES;
+ else if(read & ~write)
+ space <= space + 1;
+ else if(write & ~read)
+ space <= space - 1;
+
+ always @(posedge clk)
+ if(reset)
+ occupied <= 0;
+ else if(clear)
+ occupied <= 0;
+ else if(read & ~write)
+ occupied <= occupied - 1;
+ else if(write & ~read)
+ occupied <= occupied + 1;
+
+endmodule // fifo_long
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.v 2009-03-30
02:54:51 UTC (rev 10709)
@@ -0,0 +1,158 @@
+module fifo_new_tb();
+
+ reg clk = 0;
+ reg rst = 1;
+ reg clear = 0;
+ initial #1000 rst = 0;
+ always #50 clk = ~clk;
+
+ reg [31:0] f36_data = 0;
+ reg [1:0] f36_occ = 0;
+ reg f36_sof = 0, f36_eof = 0;
+
+ wire [35:0] f36_in = {f36_occ,f36_eof,f36_sof,f36_data};
+ reg src_rdy_f36i = 0;
+ wire dst_rdy_f36i;
+
+ wire [35:0] f36_out, f36_out2;
+ wire src_rdy_f36o;
+ reg dst_rdy_f36o = 0;
+
+ //fifo_cascade #(.WIDTH(36), .SIZE(4)) fifo_cascade36
+ //fifo_long #(.WIDTH(36), .SIZE(4)) fifo_cascade36
+
+ wire i1_sr, i1_dr;
+ wire i2_sr, i2_dr;
+ wire i3_sr, i3_dr;
+ reg i4_dr = 0;
+ wire i4_sr;
+
+ wire [35:0] i1, i4;
+ wire [18:0] i2, i3;
+
+ wire [7:0] ll_data;
+ wire ll_src_rdy_n, ll_dst_rdy_n, ll_sof_n, ll_eof_n;
+
+ fifo_short #(.WIDTH(36)) fifo_short1
+ (.clk(clk),.reset(rst),.clear(clear),
+ .datain(f36_in),.src_rdy_i(src_rdy_f36i),.dst_rdy_o(dst_rdy_f36i),
+ .dataout(i1),.src_rdy_o(i1_sr),.dst_rdy_i(i1_dr) );
+
+ fifo36_to_fifo19 fifo36_to_fifo19
+ (.clk(clk),.reset(rst),.clear(clear),
+ .f36_datain(i1),.f36_src_rdy_i(i1_sr),.f36_dst_rdy_o(i1_dr),
+ .f19_dataout(i2),.f19_src_rdy_o(i2_sr),.f19_dst_rdy_i(i2_dr) );
+
+ fifo19_to_ll8 fifo19_to_ll8
+ (.clk(clk),.reset(rst),.clear(clear),
+ .f19_data(i2),.f19_src_rdy_i(i2_sr),.f19_dst_rdy_o(i2_dr),
+ .ll_data(ll_data),.ll_sof_n(ll_sof_n),.ll_eof_n(ll_eof_n),
+ .ll_src_rdy_n(ll_src_rdy_n),.ll_dst_rdy_n(ll_dst_rdy_n));
+
+ ll8_to_fifo19 ll8_to_fifo19
+ (.clk(clk),.reset(rst),.clear(clear),
+ .ll_data(ll_data),.ll_sof_n(ll_sof_n),.ll_eof_n(ll_eof_n),
+ .ll_src_rdy_n(ll_src_rdy_n),.ll_dst_rdy_n(ll_dst_rdy_n),
+ .f19_data(i3),.f19_src_rdy_o(i3_sr),.f19_dst_rdy_i(i3_dr) );
+
+ fifo19_to_fifo36 fifo19_to_fifo36
+ (.clk(clk),.reset(rst),.clear(clear),
+ .f19_datain(i3),.f19_src_rdy_i(i3_sr),.f19_dst_rdy_o(i3_dr),
+ .f36_dataout(i4),.f36_src_rdy_o(i4_sr),.f36_dst_rdy_i(i4_dr) );
+
+ task ReadFromFIFO36;
+ begin
+ $display("Read from FIFO36");
+ #1 i4_dr <= 1;
+ while(1)
+ begin
+ while(~i4_sr)
+ @(posedge clk);
+ $display("Read: %h",i4);
+ @(posedge clk);
+ end
+ end
+ endtask // ReadFromFIFO36
+
+ reg [15:0] count;
+ task PutPacketInFIFO36;
+ input [31:0] data_start;
+ input [31:0] data_len;
+ begin
+ count <= 4;
+ src_rdy_f36i <= 1;
+ f36_data <= data_start;
+ f36_sof <= 1;
+ f36_eof <= 0;
+ f36_occ <= 0;
+
+ $display("Put Packet in FIFO36");
+ while(~dst_rdy_f36i)
+ @(posedge clk);
+ @(posedge clk);
+ $display("PPI_FIFO36: Entered First Line");
+ f36_sof <= 0;
+ while(count+4 < data_len)
+ begin
+ f36_data <= f36_data + 32'h01010101;
+ count <= count + 4;
+ while(~dst_rdy_f36i)
+ @(posedge clk);
+ @(posedge clk);
+ $display("PPI_FIFO36: Entered New Line");
+ end
+ f36_data <= f36_data + 32'h01010101;
+ f36_eof <= 1;
+ if(count + 4 == data_len)
+ f36_occ <= 0;
+ else if(count + 3 == data_len)
+ f36_occ <= 3;
+ else if(count + 2 == data_len)
+ f36_occ <= 2;
+ else
+ f36_occ <= 1;
+ while(~dst_rdy_f36i)
+ @(posedge clk);
+ @(posedge clk);
+ f36_occ <= 0;
+ f36_eof <= 0;
+ f36_data <= 0;
+ src_rdy_f36i <= 0;
+ $display("PPI_FIFO36: Entered Last Line");
+ end
+ endtask // PutPacketInFIFO36
+
+ initial $dumpfile("fifo_new_tb.vcd");
+ initial $dumpvars(0,fifo_new_tb);
+
+ initial
+ begin
+ @(negedge rst);
+ //#10000;
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ ReadFromFIFO36;
+ end
+
+ initial
+ begin
+ @(negedge rst);
+ @(posedge clk);
+ @(posedge clk);
+ PutPacketInFIFO36(32'hA0B0C0D0,12);
+ @(posedge clk);
+ @(posedge clk);
+ #10000;
+ @(posedge clk);
+ PutPacketInFIFO36(32'hE0F0A0B0,36);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ end
+
+ initial #20000 $finish;
+endmodule // longfifo_tb
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.vcd
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.vcd
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_new_tb.vcd
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,5506 @@
+$date
+ Thu Mar 19 17:21:11 2009
+$end
+$version
+ Icarus Verilog
+$end
+$timescale
+ 1ps
+$end
+$scope module fifo_new_tb $end
+$var wire 1 ! dst_rdy_f36i $end
+$var wire 36 " f36_in [35:0] $end
+$var wire 36 # i1 [35:0] $end
+$var wire 1 $ i1_dr $end
+$var wire 1 % i1_sr $end
+$var wire 19 & i2 [18:0] $end
+$var wire 1 ' i2_dr $end
+$var wire 1 ( i2_sr $end
+$var wire 19 ) i3 [18:0] $end
+$var wire 1 * i3_dr $end
+$var wire 1 + i3_sr $end
+$var wire 36 , i4 [35:0] $end
+$var wire 1 - i4_sr $end
+$var wire 8 . ll_data [7:0] $end
+$var wire 1 / ll_dst_rdy_n $end
+$var wire 1 0 ll_eof_n $end
+$var wire 1 1 ll_sof_n $end
+$var wire 1 2 ll_src_rdy_n $end
+$var reg 1 3 clear $end
+$var reg 1 4 clk $end
+$var reg 16 5 count [15:0] $end
+$var reg 1 6 dst_rdy_f36o $end
+$var reg 32 7 f36_data [31:0] $end
+$var reg 1 8 f36_eof $end
+$var reg 2 9 f36_occ [1:0] $end
+$var reg 1 : f36_sof $end
+$var reg 1 ; i4_dr $end
+$var reg 1 < rst $end
+$var reg 1 = src_rdy_f36i $end
+$scope module fifo_short1 $end
+$var wire 1 > clear $end
+$var wire 1 ? clk $end
+$var wire 36 @ datain [35:0] $end
+$var wire 36 A dataout [35:0] $end
+$var wire 1 $ dst_rdy_i $end
+$var wire 1 ! dst_rdy_o $end
+$var wire 1 B read $end
+$var wire 1 C reset $end
+$var wire 1 D src_rdy_i $end
+$var wire 1 % src_rdy_o $end
+$var wire 1 E write $end
+$var reg 4 F a [3:0] $end
+$var reg 1 G empty $end
+$var reg 1 H full $end
+$var reg 5 I occupied [4:0] $end
+$var reg 5 J space [4:0] $end
+$scope begin gen_srl16[0] $end
+$scope module srl16e $end
+$var wire 1 K A0 $end
+$var wire 1 L A1 $end
+$var wire 1 M A2 $end
+$var wire 1 N A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 O D $end
+$var wire 1 P Q $end
+$var reg 16 Q data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[1] $end
+$scope module srl16e $end
+$var wire 1 R A0 $end
+$var wire 1 S A1 $end
+$var wire 1 T A2 $end
+$var wire 1 U A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 V D $end
+$var wire 1 W Q $end
+$var reg 16 X data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[2] $end
+$scope module srl16e $end
+$var wire 1 Y A0 $end
+$var wire 1 Z A1 $end
+$var wire 1 [ A2 $end
+$var wire 1 \ A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 ] D $end
+$var wire 1 ^ Q $end
+$var reg 16 _ data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[3] $end
+$scope module srl16e $end
+$var wire 1 ` A0 $end
+$var wire 1 a A1 $end
+$var wire 1 b A2 $end
+$var wire 1 c A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 d D $end
+$var wire 1 e Q $end
+$var reg 16 f data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[4] $end
+$scope module srl16e $end
+$var wire 1 g A0 $end
+$var wire 1 h A1 $end
+$var wire 1 i A2 $end
+$var wire 1 j A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 k D $end
+$var wire 1 l Q $end
+$var reg 16 m data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[5] $end
+$scope module srl16e $end
+$var wire 1 n A0 $end
+$var wire 1 o A1 $end
+$var wire 1 p A2 $end
+$var wire 1 q A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 r D $end
+$var wire 1 s Q $end
+$var reg 16 t data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[6] $end
+$scope module srl16e $end
+$var wire 1 u A0 $end
+$var wire 1 v A1 $end
+$var wire 1 w A2 $end
+$var wire 1 x A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 y D $end
+$var wire 1 z Q $end
+$var reg 16 { data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[7] $end
+$scope module srl16e $end
+$var wire 1 | A0 $end
+$var wire 1 } A1 $end
+$var wire 1 ~ A2 $end
+$var wire 1 !" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 "" D $end
+$var wire 1 #" Q $end
+$var reg 16 $" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[8] $end
+$scope module srl16e $end
+$var wire 1 %" A0 $end
+$var wire 1 &" A1 $end
+$var wire 1 '" A2 $end
+$var wire 1 (" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 )" D $end
+$var wire 1 *" Q $end
+$var reg 16 +" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[9] $end
+$scope module srl16e $end
+$var wire 1 ," A0 $end
+$var wire 1 -" A1 $end
+$var wire 1 ." A2 $end
+$var wire 1 /" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 0" D $end
+$var wire 1 1" Q $end
+$var reg 16 2" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[10] $end
+$scope module srl16e $end
+$var wire 1 3" A0 $end
+$var wire 1 4" A1 $end
+$var wire 1 5" A2 $end
+$var wire 1 6" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 7" D $end
+$var wire 1 8" Q $end
+$var reg 16 9" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[11] $end
+$scope module srl16e $end
+$var wire 1 :" A0 $end
+$var wire 1 ;" A1 $end
+$var wire 1 <" A2 $end
+$var wire 1 =" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 >" D $end
+$var wire 1 ?" Q $end
+$var reg 16 @" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[12] $end
+$scope module srl16e $end
+$var wire 1 A" A0 $end
+$var wire 1 B" A1 $end
+$var wire 1 C" A2 $end
+$var wire 1 D" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 E" D $end
+$var wire 1 F" Q $end
+$var reg 16 G" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[13] $end
+$scope module srl16e $end
+$var wire 1 H" A0 $end
+$var wire 1 I" A1 $end
+$var wire 1 J" A2 $end
+$var wire 1 K" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 L" D $end
+$var wire 1 M" Q $end
+$var reg 16 N" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[14] $end
+$scope module srl16e $end
+$var wire 1 O" A0 $end
+$var wire 1 P" A1 $end
+$var wire 1 Q" A2 $end
+$var wire 1 R" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 S" D $end
+$var wire 1 T" Q $end
+$var reg 16 U" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[15] $end
+$scope module srl16e $end
+$var wire 1 V" A0 $end
+$var wire 1 W" A1 $end
+$var wire 1 X" A2 $end
+$var wire 1 Y" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 Z" D $end
+$var wire 1 [" Q $end
+$var reg 16 \" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[16] $end
+$scope module srl16e $end
+$var wire 1 ]" A0 $end
+$var wire 1 ^" A1 $end
+$var wire 1 _" A2 $end
+$var wire 1 `" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 a" D $end
+$var wire 1 b" Q $end
+$var reg 16 c" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[17] $end
+$scope module srl16e $end
+$var wire 1 d" A0 $end
+$var wire 1 e" A1 $end
+$var wire 1 f" A2 $end
+$var wire 1 g" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 h" D $end
+$var wire 1 i" Q $end
+$var reg 16 j" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[18] $end
+$scope module srl16e $end
+$var wire 1 k" A0 $end
+$var wire 1 l" A1 $end
+$var wire 1 m" A2 $end
+$var wire 1 n" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 o" D $end
+$var wire 1 p" Q $end
+$var reg 16 q" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[19] $end
+$scope module srl16e $end
+$var wire 1 r" A0 $end
+$var wire 1 s" A1 $end
+$var wire 1 t" A2 $end
+$var wire 1 u" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 v" D $end
+$var wire 1 w" Q $end
+$var reg 16 x" data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[20] $end
+$scope module srl16e $end
+$var wire 1 y" A0 $end
+$var wire 1 z" A1 $end
+$var wire 1 {" A2 $end
+$var wire 1 |" A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 }" D $end
+$var wire 1 ~" Q $end
+$var reg 16 !# data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[21] $end
+$scope module srl16e $end
+$var wire 1 "# A0 $end
+$var wire 1 ## A1 $end
+$var wire 1 $# A2 $end
+$var wire 1 %# A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 &# D $end
+$var wire 1 '# Q $end
+$var reg 16 (# data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[22] $end
+$scope module srl16e $end
+$var wire 1 )# A0 $end
+$var wire 1 *# A1 $end
+$var wire 1 +# A2 $end
+$var wire 1 ,# A3 $end
+$var wire 1 E CE $end
+$var wire 1 ? CLK $end
+$var wire 1 -# D $end
+$var wire 1 .# Q $end
+$var reg 16 /# data [15:0] $end
+$upscope $end
+$upscope $end
+$scope begin gen_srl16[23] $end
+$scope module srl16e $end
+$var wire 1 0# A0 $end
+$var wire 1 1# A1 $end
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Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_short.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_short.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_short.v 2009-03-30
02:54:51 UTC (rev 10709)
@@ -0,0 +1,95 @@
+
+module fifo_short
+ #(parameter WIDTH=32)
+ (input clk, input reset, input clear,
+ input [WIDTH-1:0] datain,
+ input src_rdy_i,
+ output dst_rdy_o,
+ output [WIDTH-1:0] dataout,
+ output src_rdy_o,
+ input dst_rdy_i,
+
+ output reg [4:0] space,
+ output reg [4:0] occupied);
+
+ reg full, empty;
+ wire write = src_rdy_i & dst_rdy_o;
+ wire read = dst_rdy_i & src_rdy_o;
+
+ assign dst_rdy_o = ~full;
+ assign src_rdy_o = ~empty;
+
+ reg [3:0] a;
+ genvar i;
+
+ generate
+ for (i=0;i<WIDTH;i=i+1)
+ begin : gen_srl16
+ SRL16E
+ srl16e(.Q(dataout[i]),
+ .A0(a[0]),.A1(a[1]),.A2(a[2]),.A3(a[3]),
+ .CE(write),.CLK(clk),.D(datain[i]));
+ end
+ endgenerate
+
+ always @(posedge clk)
+ if(reset)
+ begin
+ a <= 0;
+ empty <= 1;
+ full <= 0;
+ end
+ else if(clear)
+ begin
+ a <= 0;
+ empty <= 1;
+ full<= 0;
+ end
+ else if(read & ~write)
+ begin
+ full <= 0;
+ if(a==0)
+ empty <= 1;
+ else
+ a <= a - 1;
+ end
+ else if(write & ~read)
+ begin
+ empty <= 0;
+ if(~empty)
+ a <= a + 1;
+ if(a == 14)
+ full <= 1;
+ end
+
+ // NOTE will fail if you write into a full fifo or read from an empty one
+
+ //////////////////////////////////////////////////////////////
+ // space and occupied are used for diagnostics, not
+ // guaranteed correct
+
+ //assign space = full ? 0 : empty ? 16 : 15-a;
+ //assign occupied = empty ? 0 : full ? 16 : a+1;
+
+ always @(posedge clk)
+ if(reset)
+ space <= 16;
+ else if(clear)
+ space <= 16;
+ else if(read & ~write)
+ space <= space + 1;
+ else if(write & ~read)
+ space <= space - 1;
+
+ always @(posedge clk)
+ if(reset)
+ occupied <= 0;
+ else if(clear)
+ occupied <= 0;
+ else if(read & ~write)
+ occupied <= occupied - 1;
+ else if(write & ~read)
+ occupied <= occupied + 1;
+
+endmodule // fifo_short
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_spec.txt
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_spec.txt
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_spec.txt 2009-03-30
02:54:51 UTC (rev 10709)
@@ -0,0 +1,36 @@
+
+
+FIFO and Buffer Interface Spec
+
+Buffer Interface Data Wires -- matches fifo36
+ DATA[31:0]
+ FLAGS[3:0]
+ Bit 0 SOP
+ Bit 1 EOP
+ If SOP=1 && EOP=1, OCC contains error flags
+ Bits 3:2 OCC[1:0] --> 00 = all 4 bytes
+ 01 = 1 byte
+ 10 = 2 bytes
+ 11 = 3 bytes
+
+fifo36 --> {OCC[1:0],EOP,SOP,DATA[31:0]}
+ OCC same as buffer interface
+
+fifo19 --> {OCC,EOP,SOP,DATA[15:0]}
+ Doesn't fit well into BRAM, dist RAM ok
+ OCC = 1 means last word is half full
+ = 0 means last word is full
+
+fifo18 --> {EOP,SOP,DATA[15:0]}
+ No half-word capability? Should we drop sop instead?
+
+Control Wires - Data into FIFO
+ SRC_RDY_i Upstream has data for me
+ DST_RDY_o I have space
+ Transfer occurs if SRC_RDI_i && DST_RDY_o
+
+Control Wires - Data out of FIFO
+ SRC_RDY_o I have data for downstream
+ DST_RDY_i Downstream has space
+ Transfer occurs if SRC_RDI_o && DST_RDY_i
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_tb.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_tb.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/fifo_tb.v 2009-03-30
02:54:51 UTC (rev 10709)
@@ -0,0 +1,155 @@
+module fifo_tb();
+
+ reg clk, rst;
+ wire short_full, short_empty, long_full, long_empty;
+ wire casc_full, casc_empty, casc2_full, casc2_empty;
+ reg read, write;
+
+ wire [7:0] short_do, long_do;
+ wire [7:0] casc_do, casc2_do;
+ reg [7:0] di;
+
+ reg clear = 0;
+
+ shortfifo #(.WIDTH(8)) shortfifo
+ (.clk(clk),.rst(rst),.datain(di),.dataout(short_do),.clear(clear),
+ .read(read),.write(write),.full(short_full),.empty(short_empty));
+
+ longfifo #(.WIDTH(8), .SIZE(4)) longfifo
+ (.clk(clk),.rst(rst),.datain(di),.dataout(long_do),.clear(clear),
+ .read(read),.write(write),.full(long_full),.empty(long_empty));
+
+ cascadefifo #(.WIDTH(8), .SIZE(4)) cascadefifo
+ (.clk(clk),.rst(rst),.datain(di),.dataout(casc_do),.clear(clear),
+ .read(read),.write(write),.full(casc_full),.empty(casc_empty));
+
+ cascadefifo2 #(.WIDTH(8), .SIZE(4)) cascadefifo2
+ (.clk(clk),.rst(rst),.datain(di),.dataout(casc2_do),.clear(clear),
+ .read(read),.write(write),.full(casc2_full),.empty(casc2_empty));
+
+ initial rst = 1;
+ initial #1000 rst = 0;
+ initial clk = 0;
+ always #50 clk = ~clk;
+
+ initial di = 8'hAE;
+ initial read = 0;
+ initial write = 0;
+
+ always @(posedge clk)
+ if(write)
+ di <= di + 1;
+
+ always @(posedge clk)
+ begin
+ if(short_full != long_full)
+ $display("Error: FULL mismatch");
+ if(short_empty != long_empty)
+ $display("Note: EMPTY mismatch, usually not a problem (longfifo has 2
cycle latency)");
+ if(read & (short_do != long_do))
+ $display("Error: DATA mismatch");
+ end
+
+ initial $dumpfile("fifo_tb.vcd");
+ initial $dumpvars(0,fifo_tb);
+
+ initial
+ begin
+ @(negedge rst);
+ @(posedge clk);
+ repeat (10)
+ @(posedge clk);
+ write <= 1;
+ @(posedge clk);
+ write <= 0;
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ read <= 1;
+ @(posedge clk);
+ read <= 0;
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+
+ repeat(10)
+ begin
+ write <= 1;
+ @(posedge clk);
+ write <= 0;
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ read <= 1;
+ @(posedge clk);
+ read <= 0;
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ end // repeat (10)
+
+ write <= 1;
+ repeat (4)
+ @(posedge clk);
+ write <= 0;
+ @(posedge clk);
+ read <= 1;
+ repeat (4)
+ @(posedge clk);
+ read <= 0;
+ @(posedge clk);
+
+
+ write <= 1;
+ repeat (4)
+ @(posedge clk);
+ write <= 0;
+ @(posedge clk);
+ repeat (4)
+ begin
+ read <= 1;
+ @(posedge clk);
+ read <= 0;
+ @(posedge clk);
+ end
+
+ write <= 1;
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ @(posedge clk);
+ read <= 1;
+ repeat (5)
+ @(posedge clk);
+ write <= 0;
+ @(posedge clk);
+ @(posedge clk);
+ read <= 0;
+ @(posedge clk);
+
+ write <= 1;
+ repeat (16)
+ @(posedge clk);
+ write <= 0;
+ @(posedge clk);
+
+ read <= 1;
+ repeat (16)
+ @(posedge clk);
+ read <= 0;
+ @(posedge clk);
+
+ repeat (10)
+ @(posedge clk);
+ $finish;
+ end
+endmodule // longfifo_tb
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo19.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo19.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo19.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,77 @@
+
+module ll8_to_fifo19
+ (input clk, input reset, input clear,
+ input [7:0] ll_data,
+ input ll_sof_n,
+ input ll_eof_n,
+ input ll_src_rdy_n,
+ output ll_dst_rdy_n,
+
+ output [18:0] f19_data,
+ output f19_src_rdy_o,
+ input f19_dst_rdy_i );
+
+ // Why anybody would use active low in an FPGA is beyond me...
+ wire ll_sof = ~ll_sof_n;
+ wire ll_eof = ~ll_eof_n;
+ wire ll_src_rdy = ~ll_src_rdy_n;
+ wire ll_dst_rdy;
+ assign ll_dst_rdy_n = ~ll_dst_rdy;
+
+ wire xfer_out = f19_src_rdy_o & f19_dst_rdy_i;
+ // wire xfer_in = ll_src_rdy & ll_dst_rdy; Not needed
+
+ reg f19_sof, f19_eof, f19_occ;
+
+ reg [1:0] state;
+ reg [7:0] dat0, dat1;
+
+ always @(posedge clk)
+ if(ll_src_rdy & ((state==0)|xfer_out))
+ f19_sof <= ll_sof;
+
+ always @(posedge clk)
+ if(ll_src_rdy & ((state != 2)|xfer_out))
+ f19_eof <= ll_eof;
+
+ always @(posedge clk)
+ if(ll_eof)
+ f19_occ <= ~state[0];
+ else
+ f19_occ <= 0;
+
+ always @(posedge clk)
+ if(reset)
+ state <= 0;
+ else
+ if(ll_src_rdy)
+ case(state)
+ 0 :
+ if(ll_eof)
+ state <= 2;
+ else
+ state <= 1;
+ 1 :
+ state <= 2;
+ 2 :
+ if(xfer_out)
+ state <= 1;
+ endcase // case(state)
+ else
+ if(xfer_out)
+ state <= 0;
+
+ always @(posedge clk)
+ if(ll_src_rdy & (state==1))
+ dat1 <= ll_data;
+
+ always @(posedge clk)
+ if(ll_src_rdy & ((state==0) | xfer_out))
+ dat0 <= ll_data;
+
+ assign ll_dst_rdy = xfer_out | (state != 2);
+ assign f19_data = {f19_occ,f19_eof,f19_sof,dat0,dat1};
+ assign f19_src_rdy_o = (state == 2);
+
+endmodule // ll8_to_fifo19
+
Added: gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo36.v
===================================================================
--- gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo36.v
(rev 0)
+++ gnuradio/trunk/usrp2/fpga/control_lib/newfifo/ll8_to_fifo36.v
2009-03-30 02:54:51 UTC (rev 10709)
@@ -0,0 +1,94 @@
+
+module ll8_to_fifo36
+ (input clk, reset,
+ input [7:0] ll_data,
+ input ll_sof_n,
+ input ll_eof_n,
+ input ll_src_rdy_n,
+ output ll_dst_rdy_n,
+
+ output [35:0] f36_data,
+ output f36_src_rdy_o,
+ input f36_dst_rdy_i );
+
+ wire f36_full = ~f36_dst_rdy_i;
+ wire f36_write = f36_src_rdy_o & f36_dst_rdy_i;
+
+ // Why anybody would use active low in an FPGA is beyond me...
+ wire ll_sof = ~ll_sof_n;
+ wire ll_eof = ~ll_eof_n;
+ wire ll_src_rdy = ~ll_src_rdy_n;
+ wire ll_dst_rdy;
+ assign ll_dst_rdy_n = ~ll_dst_rdy;
+
+ reg f36_sof, f36_eof;
+ reg [1:0] f36_occ;
+
+
+ reg [2:0] state;
+ reg [7:0] dat0, dat1, dat2, dat3;
+
+ always @(posedge clk)
+ if(ll_src_rdy & ((state==0)|f36_write))
+ f36_sof <= ll_sof;
+
+ always @(posedge clk)
+ if(ll_src_rdy & ((state !=4)|f36_write))
+ f36_eof <= ll_eof;
+
+ always @(posedge clk)
+ if(ll_eof)
+ f36_occ <= state[1:0];
+ else
+ f36_occ <= 0;
+
+ always @(posedge clk)
+ if(reset)
+ state <= 0;
+ else
+ if(ll_src_rdy)
+ case(state)
+ 0 :
+ if(ll_eof)
+ state <= 4;
+ else
+ state <= 1;
+ 1 :
+ if(ll_eof)
+ state <= 4;
+ else
+ state <= 2;
+ 2 :
+ if(ll_eof)
+ state <= 4;
+ else
+ state <= 3;
+ 3 : state <= 4;
+ 4 : if(~f36_full)
+ state <= 1;
+ endcase // case(state)
+ else
+ if(f36_write)
+ state <= 0;
+
+ always @(posedge clk)
+ if(ll_src_rdy & (state==3))
+ dat3 <= ll_data;
+
+ always @(posedge clk)
+ if(ll_src_rdy & (state==2))
+ dat2 <= ll_data;
+
+ always @(posedge clk)
+ if(ll_src_rdy & (state==1))
+ dat1 <= ll_data;
+
+ always @(posedge clk)
+ if(ll_src_rdy & ((state==0) | f36_write))
+ dat0 <= ll_data;
+
+ assign ll_dst_rdy = ~f36_full | (state != 4);
+ assign f36_data = {f36_occ,f36_eof,f36_sof,dat0,dat1,dat2,dat3};
// FIXME endianess
+ assign f36_src_rdy_o = (state == 4);
+
+endmodule // ll8_to_fifo36
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matt <=