rfnoc: Update blocks to use autogenerated noc_shell

Original-commit: b746819769e6a960f8227981ea10c7ed9c3d826a
This commit is contained in:
Wade Fife
2020-02-06 14:50:33 -06:00
committed by Wade Fife
parent a69290143b
commit 59adae6252
23 changed files with 2411 additions and 1829 deletions
@@ -1,123 +1,110 @@
//
// Copyright 2019 Ettus Research, A National Instruments Company
// Copyright 2019 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: noc_shell_axi_ram_fifo
//
// Description: A NoC Shell for the RFNoC AXI RAM FIFO. This NoC Shell
// implements the control port interface but does nothing to the
// data path other than moving it to the requested clock domain.
// Description:
//
// This is a tool-generated NoC-shell for the axi_ram_fifo block.
// See the RFNoC specification for more information about NoC shells.
//
// Parameters:
//
// THIS_PORTID : Control crossbar port to which this block is connected
// CHDR_W : AXIS-CHDR data bus width
// MTU : Maximum transmission unit (i.e., maximum packet size in
//
`define MAX(X,Y) ((X) > (Y) ? (X) : (Y))
`default_nettype none
module noc_shell_axi_ram_fifo #(
parameter [31:0] NOC_ID = 32'h0,
parameter [ 9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter DATA_W = 64,
parameter [ 5:0] CTRL_FIFO_SIZE = 0,
parameter [ 0:0] CTRLPORT_MST_EN = 1,
parameter [ 0:0] CTRLPORT_SLV_EN = 1,
parameter [ 5:0] NUM_DATA_I = 1,
parameter [ 5:0] NUM_DATA_O = 1,
parameter [ 5:0] MTU = 10,
parameter SYNC_DATA_CLOCKS = 0
parameter [9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [5:0] MTU = 10,
parameter NUM_PORTS = 2,
parameter MEM_DATA_W = 64,
parameter MEM_ADDR_W = 30,
parameter FIFO_ADDR_BASE = {30'h02000000, 30'h00000000},
parameter FIFO_ADDR_MASK = {30'h01FFFFFF, 30'h01FFFFFF},
parameter MEM_CLK_RATE = 300e6
) (
//---------------------------------------------------------------------------
//---------------------
// Framework Interface
//---------------------------------------------------------------------------
//---------------------
// RFNoC Framework Clocks
input wire rfnoc_chdr_clk,
input wire rfnoc_ctrl_clk,
input wire mem_clk,
// NoC Shell Generated Resets
output wire rfnoc_chdr_rst,
output wire rfnoc_ctrl_rst,
output wire mem_rst,
// RFNoC Framework Clocks and Resets
input wire rfnoc_chdr_clk,
output wire rfnoc_chdr_rst,
input wire rfnoc_ctrl_clk,
output wire rfnoc_ctrl_rst,
// RFNoC Backend Interface
input wire [ 511:0] rfnoc_core_config,
output wire [ 511:0] rfnoc_core_status,
// CHDR Input Ports (from framework)
input wire [(CHDR_W*NUM_DATA_I)-1:0] s_rfnoc_chdr_tdata,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tlast,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tvalid,
output wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tready,
// CHDR Output Ports (to framework)
output wire [(CHDR_W*NUM_DATA_O)-1:0] m_rfnoc_chdr_tdata,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tlast,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tvalid,
input wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tready,
// AXIS-Ctrl Input Port (from framework)
input wire [ 31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Output Port (to framework)
output wire [ 31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
input wire [511:0] rfnoc_core_config,
output wire [511:0] rfnoc_core_status,
//---------------------------------------------------------------------------
// Client Control Port Interface
//---------------------------------------------------------------------------
// AXIS-CHDR Input Ports (from framework)
input wire [(0+NUM_PORTS)*CHDR_W-1:0] s_rfnoc_chdr_tdata,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tlast,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tvalid,
output wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tready,
// AXIS-CHDR Output Ports (to framework)
output wire [(0+NUM_PORTS)*CHDR_W-1:0] m_rfnoc_chdr_tdata,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tlast,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tvalid,
input wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tready,
// Clock
input wire ctrlport_clk,
input wire ctrlport_rst,
// Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire [ 3:0] m_ctrlport_req_byte_en,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [ 1:0] m_ctrlport_resp_status,
input wire [31:0] m_ctrlport_resp_data,
// Slave
input wire s_ctrlport_req_wr,
input wire s_ctrlport_req_rd,
input wire [19:0] s_ctrlport_req_addr,
input wire [ 9:0] s_ctrlport_req_portid,
input wire [15:0] s_ctrlport_req_rem_epid,
input wire [ 9:0] s_ctrlport_req_rem_portid,
input wire [31:0] s_ctrlport_req_data,
input wire [ 3:0] s_ctrlport_req_byte_en,
input wire s_ctrlport_req_has_time,
input wire [63:0] s_ctrlport_req_time,
output wire s_ctrlport_resp_ack,
output wire [ 1:0] s_ctrlport_resp_status,
output wire [31:0] s_ctrlport_resp_data,
// AXIS-Ctrl Control Input Port (from framework)
input wire [31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Control Output Port (to framework)
output wire [31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
//---------------------------------------------------------------------------
// Client Data Interface
//---------------------------------------------------------------------------
//---------------------
// Client Interface
//---------------------
// Clock
input wire axis_data_clk,
input wire axis_data_rst,
// CtrlPort Clock and Reset
output wire ctrlport_clk,
output wire ctrlport_rst,
// CtrlPort Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
input wire m_ctrlport_resp_ack,
input wire [31:0] m_ctrlport_resp_data,
// Output data stream (to user logic)
output wire [ (NUM_DATA_I*DATA_W)-1:0] m_axis_tdata,
output wire [(NUM_DATA_I*`MAX(DATA_W/CHDR_W, 1))-1:0] m_axis_tkeep,
output wire [ NUM_DATA_I-1:0] m_axis_tlast,
output wire [ NUM_DATA_I-1:0] m_axis_tvalid,
input wire [ NUM_DATA_I-1:0] m_axis_tready,
// Input data stream (from user logic)
input wire [ (NUM_DATA_O*DATA_W)-1:0] s_axis_tdata,
input wire [(NUM_DATA_O*`MAX(DATA_W/CHDR_W, 1))-1:0] s_axis_tkeep,
input wire [ NUM_DATA_O-1:0] s_axis_tlast,
input wire [ NUM_DATA_O-1:0] s_axis_tvalid,
output wire [ NUM_DATA_O-1:0] s_axis_tready
// AXIS-CHDR Clock and Reset
output wire axis_chdr_clk,
output wire axis_chdr_rst,
// Framework to User Logic: in
output wire [NUM_PORTS*CHDR_W-1:0] m_in_chdr_tdata,
output wire [NUM_PORTS-1:0] m_in_chdr_tlast,
output wire [NUM_PORTS-1:0] m_in_chdr_tvalid,
input wire [NUM_PORTS-1:0] m_in_chdr_tready,
// User Logic to Framework: out
input wire [NUM_PORTS*CHDR_W-1:0] s_out_chdr_tdata,
input wire [NUM_PORTS-1:0] s_out_chdr_tlast,
input wire [NUM_PORTS-1:0] s_out_chdr_tvalid,
output wire [NUM_PORTS-1:0] s_out_chdr_tready
);
//---------------------------------------------------------------------------
// Backend Interface
//---------------------------------------------------------------------------
wire data_i_flush_en;
wire [31:0] data_i_flush_timeout;
wire [63:0] data_i_flush_active;
@@ -128,18 +115,18 @@ module noc_shell_axi_ram_fifo #(
wire [63:0] data_o_flush_done;
backend_iface #(
.NOC_ID (NOC_ID),
.NUM_DATA_I (NUM_DATA_I),
.NUM_DATA_O (NUM_DATA_O),
.CTRL_FIFOSIZE (CTRL_FIFO_SIZE),
.NOC_ID (32'hF1F00000),
.NUM_DATA_I (0+NUM_PORTS),
.NUM_DATA_O (0+NUM_PORTS),
.CTRL_FIFOSIZE ($clog2(32)),
.MTU (MTU)
) backend_iface_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.data_i_flush_en (data_i_flush_en),
.data_i_flush_timeout (data_i_flush_timeout),
.data_i_flush_active (data_i_flush_active),
@@ -151,169 +138,132 @@ module noc_shell_axi_ram_fifo #(
);
//---------------------------------------------------------------------------
// Control Path
// Reset Generation
//---------------------------------------------------------------------------
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID ),
.SYNC_CLKS (0 ),
.AXIS_CTRL_MST_EN (CTRLPORT_SLV_EN),
.AXIS_CTRL_SLV_EN (CTRLPORT_MST_EN),
.SLAVE_FIFO_SIZE (CTRL_FIFO_SIZE )
) ctrlport_ep_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst ),
.ctrlport_clk (ctrlport_clk ),
.ctrlport_rst (ctrlport_rst ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.m_ctrlport_req_wr (m_ctrlport_req_wr ),
.m_ctrlport_req_rd (m_ctrlport_req_rd ),
.m_ctrlport_req_addr (m_ctrlport_req_addr ),
.m_ctrlport_req_data (m_ctrlport_req_data ),
.m_ctrlport_req_byte_en (m_ctrlport_req_byte_en ),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time ),
.m_ctrlport_req_time (m_ctrlport_req_time ),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack ),
.m_ctrlport_resp_status (m_ctrlport_resp_status ),
.m_ctrlport_resp_data (m_ctrlport_resp_data ),
.s_ctrlport_req_wr (s_ctrlport_req_wr ),
.s_ctrlport_req_rd (s_ctrlport_req_rd ),
.s_ctrlport_req_addr (s_ctrlport_req_addr ),
.s_ctrlport_req_portid (s_ctrlport_req_portid ),
.s_ctrlport_req_rem_epid (s_ctrlport_req_rem_epid ),
.s_ctrlport_req_rem_portid(s_ctrlport_req_rem_portid),
.s_ctrlport_req_data (s_ctrlport_req_data ),
.s_ctrlport_req_byte_en (s_ctrlport_req_byte_en ),
.s_ctrlport_req_has_time (s_ctrlport_req_has_time ),
.s_ctrlport_req_time (s_ctrlport_req_time ),
.s_ctrlport_resp_ack (s_ctrlport_resp_ack ),
.s_ctrlport_resp_status (s_ctrlport_resp_status ),
.s_ctrlport_resp_data (s_ctrlport_resp_data )
wire mem_rst_pulse;
pulse_synchronizer #(.MODE ("POSEDGE")) pulse_synchronizer_mem (
.clk_a(rfnoc_chdr_clk), .rst_a(1'b0), .pulse_a (rfnoc_chdr_rst), .busy_a (),
.clk_b(mem_clk), .pulse_b (mem_rst_pulse)
);
pulse_stretch_min #(.LENGTH(32)) pulse_stretch_min_mem (
.clk(mem_clk), .rst(1'b0),
.pulse_in(mem_rst_pulse), .pulse_out(mem_rst)
);
//---------------------------------------------------------------------------
// Data Path
// Control Path
//---------------------------------------------------------------------------
// Set WORD_W to the smaller of DATA_W and CHDR_W. This will be our common
// word size between the CHDR and user data ports.
localparam WORD_W = DATA_W < CHDR_W ? DATA_W : CHDR_W;
localparam KEEP_W = `MAX(DATA_W/CHDR_W, 1);
assign ctrlport_clk = mem_clk;
assign ctrlport_rst = mem_rst;
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID),
.SYNC_CLKS (0),
.AXIS_CTRL_MST_EN (0),
.AXIS_CTRL_SLV_EN (1),
.SLAVE_FIFO_SIZE ($clog2(32))
) ctrlport_endpoint_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.ctrlport_clk (ctrlport_clk),
.ctrlport_rst (ctrlport_rst),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
.m_ctrlport_req_addr (m_ctrlport_req_addr),
.m_ctrlport_req_data (m_ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (),
.m_ctrlport_req_time (),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack),
.m_ctrlport_resp_status (2'b0),
.m_ctrlport_resp_data (m_ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'hF),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data ()
);
//---------------------------------------------------------------------------
// Data Path
//---------------------------------------------------------------------------
genvar i;
for (i = 0; i < NUM_DATA_I; i = i + 1) begin : gen_in
wire [CHDR_W-1:0] temp_in_tdata;
wire temp_in_tlast;
wire temp_in_tvalid;
wire temp_in_tready;
assign axis_chdr_clk = rfnoc_chdr_clk;
assign axis_chdr_rst = rfnoc_chdr_rst;
//---------------------
// Input Data Paths
//---------------------
axis_packet_flush #(
.WIDTH (CHDR_W),
.FLUSH_PARTIAL_PKTS (0),
.TIMEOUT_W (32),
.PIPELINE ("IN")
) in_packet_flush_i (
.clk (rfnoc_chdr_clk),
.reset (rfnoc_chdr_rst),
.enable (data_i_flush_en),
.timeout (data_i_flush_timeout),
.flushing (data_i_flush_active[i]),
.done (data_i_flush_done[i]),
.s_axis_tdata (s_rfnoc_chdr_tdata[i*CHDR_W +: CHDR_W]),
.s_axis_tlast (s_rfnoc_chdr_tlast[i]),
.s_axis_tvalid (s_rfnoc_chdr_tvalid[i]),
.s_axis_tready (s_rfnoc_chdr_tready[i]),
.m_axis_tdata (temp_in_tdata),
.m_axis_tlast (temp_in_tlast),
.m_axis_tvalid (temp_in_tvalid),
.m_axis_tready (temp_in_tready)
);
axis_width_conv #(
.WORD_W (WORD_W),
.IN_WORDS (CHDR_W/WORD_W),
.OUT_WORDS (DATA_W/WORD_W),
.SYNC_CLKS (SYNC_DATA_CLOCKS),
.PIPELINE ("NONE")
) in_width_conv_i (
.s_axis_aclk (rfnoc_chdr_clk),
.s_axis_rst (rfnoc_chdr_rst),
.s_axis_tdata (temp_in_tdata),
.s_axis_tkeep ({CHDR_W/WORD_W{1'b1}}),
.s_axis_tlast (temp_in_tlast),
.s_axis_tvalid (temp_in_tvalid),
.s_axis_tready (temp_in_tready),
.m_axis_aclk (axis_data_clk),
.m_axis_rst (axis_data_rst),
.m_axis_tdata (m_axis_tdata[i*DATA_W +: DATA_W]),
.m_axis_tkeep (m_axis_tkeep[i*KEEP_W +: KEEP_W]),
.m_axis_tlast (m_axis_tlast[i]),
.m_axis_tvalid (m_axis_tvalid[i]),
.m_axis_tready (m_axis_tready[i])
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_input_in
chdr_to_chdr_data #(
.CHDR_W (CHDR_W)
) chdr_to_chdr_data_in_in (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[(0+i)*CHDR_W+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[0+i]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[0+i]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[0+i]),
.m_axis_chdr_tdata (m_in_chdr_tdata[i*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_in_chdr_tlast[i]),
.m_axis_chdr_tvalid (m_in_chdr_tvalid[i]),
.m_axis_chdr_tready (m_in_chdr_tready[i]),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[0+i]),
.flush_done (data_i_flush_done[0+i])
);
end
//---------------------
// Output Data Paths
//---------------------
for (i = 0; i < NUM_DATA_O; i = i + 1) begin : gen_out
wire [ CHDR_W-1:0] temp_out_tdata;
wire [CHDR_W/WORD_W-1:0] temp_out_tkeep;
wire temp_out_tlast;
wire temp_out_tvalid;
wire temp_out_tready;
axis_width_conv #(
.WORD_W (WORD_W),
.IN_WORDS (DATA_W/WORD_W),
.OUT_WORDS (CHDR_W/WORD_W),
.SYNC_CLKS (SYNC_DATA_CLOCKS),
.PIPELINE ("NONE")
) out_width_conv_i (
.s_axis_aclk (axis_data_clk),
.s_axis_rst (axis_data_rst),
.s_axis_tdata (s_axis_tdata[i*DATA_W +: DATA_W]),
.s_axis_tkeep (s_axis_tkeep[i*KEEP_W +: KEEP_W]),
.s_axis_tlast (s_axis_tlast[i]),
.s_axis_tvalid (s_axis_tvalid[i]),
.s_axis_tready (s_axis_tready[i]),
.m_axis_aclk (rfnoc_chdr_clk),
.m_axis_rst (rfnoc_chdr_rst),
.m_axis_tdata (temp_out_tdata),
.m_axis_tkeep (),
.m_axis_tlast (temp_out_tlast),
.m_axis_tvalid (temp_out_tvalid),
.m_axis_tready (temp_out_tready)
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_output_out
chdr_to_chdr_data #(
.CHDR_W (CHDR_W)
) chdr_to_chdr_data_out_out (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(0+i)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[0+i]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[0+i]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[0+i]),
.s_axis_chdr_tdata (s_out_chdr_tdata[i*CHDR_W+:CHDR_W]),
.s_axis_chdr_tlast (s_out_chdr_tlast[i]),
.s_axis_chdr_tvalid (s_out_chdr_tvalid[i]),
.s_axis_chdr_tready (s_out_chdr_tready[i]),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[0+i]),
.flush_done (data_o_flush_done[0+i])
);
axis_packet_flush #(
.WIDTH (CHDR_W),
.FLUSH_PARTIAL_PKTS (0),
.TIMEOUT_W (32),
.PIPELINE ("OUT")
) out_packet_flush_i (
.clk (rfnoc_chdr_clk),
.reset (rfnoc_chdr_rst),
.enable (data_o_flush_en),
.timeout (data_o_flush_timeout),
.flushing (data_o_flush_active[i]),
.done (data_o_flush_done[i]),
.s_axis_tdata (temp_out_tdata),
.s_axis_tlast (temp_out_tlast),
.s_axis_tvalid (temp_out_tvalid),
.s_axis_tready (temp_out_tready),
.m_axis_tdata (m_rfnoc_chdr_tdata[i*CHDR_W +: CHDR_W]),
.m_axis_tlast (m_rfnoc_chdr_tlast[i]),
.m_axis_tvalid (m_rfnoc_chdr_tvalid[i]),
.m_axis_tready (m_rfnoc_chdr_tready[i])
);
end
endmodule
endmodule // noc_shell_axi_ram_fifo
`default_nettype wire
@@ -182,13 +182,15 @@ module rfnoc_block_axi_ram_fifo #(
`include "axi_ram_fifo_regs.vh"
localparam NOC_ID = 'hF1F0_0000;
// If the memory width is larger than the CHDR width, then we need to use
// tkeep to track which CHDR words are valid as they go through the FIFO.
// Calculate the TKEEP width here. Set to 1 if it's not needed.
localparam KEEP_W = (MEM_DATA_W/CHDR_W) > 1 ? (MEM_DATA_W/CHDR_W) : 1;
// Set WORD_W to the smaller of MEM_DATA_W and CHDR_W. This will be our
// common word size when resizing between CHDR and memory words.
localparam WORD_W = (MEM_DATA_W < CHDR_W) ? MEM_DATA_W : CHDR_W;
//---------------------------------------------------------------------------
// Parameter Checks
@@ -205,7 +207,7 @@ module rfnoc_block_axi_ram_fifo #(
// NoC Shell
//---------------------------------------------------------------------------
wire rfnoc_chdr_rst;
wire mem_rst;
wire ctrlport_req_wr;
wire ctrlport_req_rd;
@@ -214,110 +216,74 @@ module rfnoc_block_axi_ram_fifo #(
wire ctrlport_resp_ack;
wire [31:0] ctrlport_resp_data;
wire [NUM_PORTS*MEM_DATA_W-1:0] m_axis_data_tdata;
wire [ NUM_PORTS*KEEP_W-1:0] m_axis_data_tkeep;
wire [ NUM_PORTS-1:0] m_axis_data_tlast;
wire [ NUM_PORTS-1:0] m_axis_data_tvalid;
wire [ NUM_PORTS-1:0] m_axis_data_tready;
wire axis_chdr_clk;
wire axis_chdr_rst;
wire [NUM_PORTS*MEM_DATA_W-1:0] s_axis_data_tdata;
wire [ NUM_PORTS*KEEP_W-1:0] s_axis_data_tkeep;
wire [ NUM_PORTS-1:0] s_axis_data_tlast;
wire [ NUM_PORTS-1:0] s_axis_data_tvalid;
wire [ NUM_PORTS-1:0] s_axis_data_tready;
wire [NUM_PORTS*CHDR_W-1:0] m_axis_chdr_tdata;
wire [ NUM_PORTS-1:0] m_axis_chdr_tlast;
wire [ NUM_PORTS-1:0] m_axis_chdr_tvalid;
wire [ NUM_PORTS-1:0] m_axis_chdr_tready;
wire [NUM_PORTS*CHDR_W-1:0] s_axis_chdr_tdata;
wire [ NUM_PORTS-1:0] s_axis_chdr_tlast;
wire [ NUM_PORTS-1:0] s_axis_chdr_tvalid;
wire [ NUM_PORTS-1:0] s_axis_chdr_tready;
noc_shell_axi_ram_fifo #(
.NOC_ID (NOC_ID),
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.DATA_W (MEM_DATA_W),
.CTRL_FIFO_SIZE (5),
.CTRLPORT_MST_EN (1),
.CTRLPORT_SLV_EN (0),
.NUM_DATA_I (NUM_PORTS),
.NUM_DATA_O (NUM_PORTS),
.MTU (MTU),
.SYNC_DATA_CLOCKS (0)
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.NUM_PORTS (NUM_PORTS),
.MTU (MTU)
) noc_shell_axi_ram_fifo_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (mem_clk),
.ctrlport_rst (axi_rst),
.m_ctrlport_req_wr (ctrlport_req_wr),
.m_ctrlport_req_rd (ctrlport_req_rd),
.m_ctrlport_req_addr (ctrlport_req_addr),
.m_ctrlport_req_data (ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (),
.m_ctrlport_req_time (),
.m_ctrlport_resp_ack (ctrlport_resp_ack),
.m_ctrlport_resp_status (2'b0),
.m_ctrlport_resp_data (ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'b0),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data (),
.axis_data_clk (mem_clk),
.axis_data_rst (axi_rst),
.m_axis_tdata (m_axis_data_tdata),
.m_axis_tkeep (m_axis_data_tkeep),
.m_axis_tlast (m_axis_data_tlast),
.m_axis_tvalid (m_axis_data_tvalid),
.m_axis_tready (m_axis_data_tready),
.s_axis_tdata (s_axis_data_tdata),
.s_axis_tkeep (s_axis_data_tkeep),
.s_axis_tlast (s_axis_data_tlast),
.s_axis_tvalid (s_axis_data_tvalid),
.s_axis_tready (s_axis_data_tready)
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.mem_clk (mem_clk),
.rfnoc_chdr_rst (),
.rfnoc_ctrl_rst (),
.mem_rst (mem_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (),
.ctrlport_rst (),
.m_ctrlport_req_wr (ctrlport_req_wr),
.m_ctrlport_req_rd (ctrlport_req_rd),
.m_ctrlport_req_addr (ctrlport_req_addr),
.m_ctrlport_req_data (ctrlport_req_data),
.m_ctrlport_resp_ack (ctrlport_resp_ack),
.m_ctrlport_resp_data (ctrlport_resp_data),
.axis_chdr_clk (axis_chdr_clk),
.axis_chdr_rst (axis_chdr_rst),
.m_in_chdr_tdata (m_axis_chdr_tdata),
.m_in_chdr_tlast (m_axis_chdr_tlast),
.m_in_chdr_tvalid (m_axis_chdr_tvalid),
.m_in_chdr_tready (m_axis_chdr_tready),
.s_out_chdr_tdata (s_axis_chdr_tdata),
.s_out_chdr_tlast (s_axis_chdr_tlast),
.s_out_chdr_tvalid (s_axis_chdr_tvalid),
.s_out_chdr_tready (s_axis_chdr_tready)
);
wire rfnoc_chdr_rst_mem_clk;
reg mem_rst_block;
// Cross the CHDR reset to the mem_clk domain
pulse_synchronizer #(
.MODE ("POSEDGE")
) ctrl_rst_sync_i (
.clk_a (rfnoc_chdr_clk),
.rst_a (1'b0),
.pulse_a (rfnoc_chdr_rst),
.busy_a (),
.clk_b (mem_clk),
.pulse_b (rfnoc_chdr_rst_mem_clk)
);
// Combine the resets in a glitch-free manner
always @(posedge mem_clk) begin
mem_rst_block <= axi_rst | rfnoc_chdr_rst_mem_clk;
mem_rst_block <= axi_rst | mem_rst;
end
@@ -363,12 +329,83 @@ module rfnoc_block_axi_ram_fifo #(
//---------------------------------------------------------------------------
// FIFO Instances
// AXI RAM Port Instances
//---------------------------------------------------------------------------
genvar i;
for (i = 0; i < NUM_PORTS; i = i + 1) begin : gen_ram_fifos
wire [MEM_DATA_W-1:0] m_axis_mem_tdata;
wire [ KEEP_W-1:0] m_axis_mem_tkeep;
wire m_axis_mem_tlast;
wire m_axis_mem_tvalid;
wire m_axis_mem_tready;
wire [MEM_DATA_W-1:0] s_axis_mem_tdata;
wire [ KEEP_W-1:0] s_axis_mem_tkeep;
wire s_axis_mem_tlast;
wire s_axis_mem_tvalid;
wire s_axis_mem_tready;
//-------------------------------------------------------------------------
// Width Conversion
//-------------------------------------------------------------------------
//
// Resize Data between CHDR_W and MEM_DATA_W. Cross between rfnoc_chdr_clk
// and mem_clk.
//
//-------------------------------------------------------------------------
axis_width_conv #(
.WORD_W (WORD_W),
.IN_WORDS (CHDR_W/WORD_W),
.OUT_WORDS (MEM_DATA_W/WORD_W),
.SYNC_CLKS (0),
.PIPELINE ("NONE")
) axis_width_conv_to_mem_i (
.s_axis_aclk (axis_chdr_clk),
.s_axis_rst (axis_chdr_rst),
.s_axis_tdata (m_axis_chdr_tdata[i*CHDR_W +: CHDR_W]),
.s_axis_tkeep ({CHDR_W/WORD_W{1'b1}}),
.s_axis_tlast (m_axis_chdr_tlast[i]),
.s_axis_tvalid (m_axis_chdr_tvalid[i]),
.s_axis_tready (m_axis_chdr_tready[i]),
.m_axis_aclk (mem_clk),
.m_axis_rst (mem_rst),
.m_axis_tdata (m_axis_mem_tdata),
.m_axis_tkeep (m_axis_mem_tkeep),
.m_axis_tlast (m_axis_mem_tlast),
.m_axis_tvalid (m_axis_mem_tvalid),
.m_axis_tready (m_axis_mem_tready)
);
axis_width_conv #(
.WORD_W (WORD_W),
.IN_WORDS (MEM_DATA_W/WORD_W),
.OUT_WORDS (CHDR_W/WORD_W),
.SYNC_CLKS (0),
.PIPELINE ("NONE")
) axis_width_conv_to_chdr_i (
.s_axis_aclk (mem_clk),
.s_axis_rst (mem_rst),
.s_axis_tdata (s_axis_mem_tdata),
.s_axis_tkeep (s_axis_mem_tkeep),
.s_axis_tlast (s_axis_mem_tlast),
.s_axis_tvalid (s_axis_mem_tvalid),
.s_axis_tready (s_axis_mem_tready),
.m_axis_aclk (axis_chdr_clk),
.m_axis_rst (axis_chdr_rst),
.m_axis_tdata (s_axis_chdr_tdata[i*CHDR_W +: CHDR_W]),
.m_axis_tkeep (),
.m_axis_tlast (s_axis_chdr_tlast[i]),
.m_axis_tvalid (s_axis_chdr_tvalid[i]),
.m_axis_tready (s_axis_chdr_tready[i])
);
//---------------------------------------------------------------------------
// AXI RAM FIFO Instance
//---------------------------------------------------------------------------
wire [MEM_ADDR_W-1:0] m_axi_awaddr_int;
wire [MEM_ADDR_W-1:0] m_axi_araddr_int;
@@ -408,18 +445,18 @@ module rfnoc_block_axi_ram_fifo #(
//-----------------------------------------------------------------------
// AXI-Stream Input
.s_tdata (m_axis_data_tdata[MEM_DATA_W*i +: MEM_DATA_W]),
.s_tkeep (m_axis_data_tkeep[KEEP_W*i +: KEEP_W]),
.s_tlast (m_axis_data_tlast[i]),
.s_tvalid (m_axis_data_tvalid[i]),
.s_tready (m_axis_data_tready[i]),
.s_tdata (m_axis_mem_tdata),
.s_tkeep (m_axis_mem_tkeep),
.s_tlast (m_axis_mem_tlast),
.s_tvalid (m_axis_mem_tvalid),
.s_tready (m_axis_mem_tready),
//
// AXI-Stream Output
.m_tdata (s_axis_data_tdata[MEM_DATA_W*i +: MEM_DATA_W]),
.m_tkeep (s_axis_data_tkeep[KEEP_W*i +: KEEP_W]),
.m_tlast (s_axis_data_tlast[i]),
.m_tvalid (s_axis_data_tvalid[i]),
.m_tready (s_axis_data_tready[i]),
.m_tdata (s_axis_mem_tdata),
.m_tkeep (s_axis_mem_tkeep),
.m_tlast (s_axis_mem_tlast),
.m_tvalid (s_axis_mem_tvalid),
.m_tready (s_axis_mem_tready),
//-----------------------------------------------------------------------
// AXI4 Memory Interface
@@ -45,6 +45,7 @@ module rfnoc_block_axi_ram_fifo_tb #(
localparam int STALL_PROB = 25; // BFM stall probability
// Block configuration
localparam int NOC_ID = 'hF1F0_0000;
localparam int THIS_PORTID = 'h123;
localparam int MTU = 12;
localparam int NUM_HB = 3;
@@ -74,7 +75,7 @@ module rfnoc_block_axi_ram_fifo_tb #(
rfnoc_chdr_clk_gen (.clk(rfnoc_chdr_clk), .rst());
sim_clock_gen #(.PERIOD(CTRL_CLK_PER), .AUTOSTART(0))
rfnoc_ctrl_clk_gen (.clk(rfnoc_ctrl_clk), .rst());
sim_clock_gen #(.PERIOD(MEM_CLK_PER), .AUOSTART(0))
sim_clock_gen #(.PERIOD(MEM_CLK_PER), .AUTOSTART(0))
mem_clk_gen (.clk(mem_clk), .rst(mem_rst));
@@ -379,7 +380,7 @@ module rfnoc_block_axi_ram_fifo_tb #(
task test_block_info();
test.start_test("Verify Block Info", 2us);
`ASSERT_ERROR(blk_ctrl.get_noc_id() == rfnoc_block_axi_ram_fifo_i.NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_noc_id() == NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_i() == NUM_PORTS, "Incorrect NUM_DATA_I Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_o() == NUM_PORTS, "Incorrect NUM_DATA_O Value");
`ASSERT_ERROR(blk_ctrl.get_mtu() == MTU, "Incorrect MTU Value");
+241 -227
View File
@@ -1,132 +1,115 @@
//
// Copyright 2019 Ettus Research, A National Instruments Company
// Copyright 2019 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: noc_shell_ddc
//
// Description: A NoC Shell for RFNoC. This should eventually be replaced
// by an auto-generated NoC Shell.
// Description:
//
// This is a tool-generated NoC-shell for the ddc block.
// See the RFNoC specification for more information about NoC shells.
//
// Parameters:
//
// THIS_PORTID : Control crossbar port to which this block is connected
// CHDR_W : AXIS-CHDR data bus width
// MTU : Maximum transmission unit (i.e., maximum packet size in
//
`default_nettype none
module noc_shell_ddc #(
parameter [31:0] NOC_ID = 32'h0,
parameter [ 9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [ 0:0] CTRLPORT_SLV_EN = 1,
parameter [ 0:0] CTRLPORT_MST_EN = 1,
parameter [ 5:0] CTRL_FIFO_SIZE = 6,
parameter [ 5:0] NUM_DATA_I = 1,
parameter [ 5:0] NUM_DATA_O = 1,
parameter ITEM_W = 32,
parameter NIPC = 2,
parameter PYLD_FIFO_SIZE = 10,
parameter MTU = 10
)(
//---------------------------------------------------------------------------
parameter [9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [5:0] MTU = 10,
parameter NUM_PORTS = 1,
parameter NUM_HB = 3,
parameter CIC_MAX_DECIM = 255
) (
//---------------------
// Framework Interface
//---------------------------------------------------------------------------
//---------------------
// RFNoC Framework Clocks
input wire rfnoc_chdr_clk,
input wire rfnoc_ctrl_clk,
input wire ce_clk,
// NoC Shell Generated Resets
output wire rfnoc_chdr_rst,
output wire rfnoc_ctrl_rst,
output wire ce_rst,
// RFNoC Framework Clocks and Resets
input wire rfnoc_chdr_clk,
output wire rfnoc_chdr_rst,
input wire rfnoc_ctrl_clk,
output wire rfnoc_ctrl_rst,
// RFNoC Backend Interface
input wire [ 511:0] rfnoc_core_config,
output wire [ 511:0] rfnoc_core_status,
// CHDR Input Ports (from framework)
input wire [(CHDR_W*NUM_DATA_I)-1:0] s_rfnoc_chdr_tdata,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tlast,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tvalid,
output wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tready,
// CHDR Output Ports (to framework)
output wire [(CHDR_W*NUM_DATA_O)-1:0] m_rfnoc_chdr_tdata,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tlast,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tvalid,
input wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tready,
// AXIS-Ctrl Input Port (from framework)
input wire [ 31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Output Port (to framework)
output wire [ 31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
input wire [511:0] rfnoc_core_config,
output wire [511:0] rfnoc_core_status,
//---------------------------------------------------------------------------
// Client Control Port Interface
//---------------------------------------------------------------------------
// AXIS-CHDR Input Ports (from framework)
input wire [(0+NUM_PORTS)*CHDR_W-1:0] s_rfnoc_chdr_tdata,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tlast,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tvalid,
output wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tready,
// AXIS-CHDR Output Ports (to framework)
output wire [(0+NUM_PORTS)*CHDR_W-1:0] m_rfnoc_chdr_tdata,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tlast,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tvalid,
input wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tready,
// Clock
input wire ctrlport_clk,
input wire ctrlport_rst,
// Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire [ 3:0] m_ctrlport_req_byte_en,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [ 1:0] m_ctrlport_resp_status,
input wire [31:0] m_ctrlport_resp_data,
// Slave
input wire s_ctrlport_req_wr,
input wire s_ctrlport_req_rd,
input wire [19:0] s_ctrlport_req_addr,
input wire [ 9:0] s_ctrlport_req_portid,
input wire [15:0] s_ctrlport_req_rem_epid,
input wire [ 9:0] s_ctrlport_req_rem_portid,
input wire [31:0] s_ctrlport_req_data,
input wire [ 3:0] s_ctrlport_req_byte_en,
input wire s_ctrlport_req_has_time,
input wire [63:0] s_ctrlport_req_time,
output wire s_ctrlport_resp_ack,
output wire [ 1:0] s_ctrlport_resp_status,
output wire [31:0] s_ctrlport_resp_data,
// AXIS-Ctrl Control Input Port (from framework)
input wire [31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Control Output Port (to framework)
output wire [31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
//---------------------------------------------------------------------------
// Client Data Interface
//---------------------------------------------------------------------------
//---------------------
// Client Interface
//---------------------
// Clock
input wire axis_data_clk,
input wire axis_data_rst,
// CtrlPort Clock and Reset
output wire ctrlport_clk,
output wire ctrlport_rst,
// CtrlPort Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [31:0] m_ctrlport_resp_data,
// Output data stream (to user logic)
output wire [(NUM_DATA_I*ITEM_W*NIPC)-1:0] m_axis_tdata,
output wire [ (NUM_DATA_I*NIPC)-1:0] m_axis_tkeep,
output wire [ NUM_DATA_I-1:0] m_axis_tlast,
output wire [ NUM_DATA_I-1:0] m_axis_tvalid,
input wire [ NUM_DATA_I-1:0] m_axis_tready,
// Sideband information
output wire [ (NUM_DATA_I*64)-1:0] m_axis_ttimestamp,
output wire [ NUM_DATA_I-1:0] m_axis_thas_time,
output wire [ (NUM_DATA_I*16)-1:0] m_axis_tlength,
output wire [ NUM_DATA_I-1:0] m_axis_teov,
output wire [ NUM_DATA_I-1:0] m_axis_teob,
// Input data stream (from user logic)
input wire [(NUM_DATA_O*ITEM_W*NIPC)-1:0] s_axis_tdata,
input wire [ (NUM_DATA_O*NIPC)-1:0] s_axis_tkeep,
input wire [ NUM_DATA_O-1:0] s_axis_tlast,
input wire [ NUM_DATA_O-1:0] s_axis_tvalid,
output wire [ NUM_DATA_O-1:0] s_axis_tready,
// Sideband info (sampled on the first cycle of the packet)
input wire [ (NUM_DATA_O*64)-1:0] s_axis_ttimestamp,
input wire [ NUM_DATA_O-1:0] s_axis_thas_time,
input wire [ NUM_DATA_O-1:0] s_axis_teov,
input wire [ NUM_DATA_O-1:0] s_axis_teob
// AXI-Stream Data Clock and Reset
output wire axis_data_clk,
output wire axis_data_rst,
// Data Stream to User Logic: in
output wire [NUM_PORTS*32*1-1:0] m_in_axis_tdata,
output wire [NUM_PORTS*1-1:0] m_in_axis_tkeep,
output wire [NUM_PORTS-1:0] m_in_axis_tlast,
output wire [NUM_PORTS-1:0] m_in_axis_tvalid,
input wire [NUM_PORTS-1:0] m_in_axis_tready,
output wire [NUM_PORTS*64-1:0] m_in_axis_ttimestamp,
output wire [NUM_PORTS-1:0] m_in_axis_thas_time,
output wire [NUM_PORTS*16-1:0] m_in_axis_tlength,
output wire [NUM_PORTS-1:0] m_in_axis_teov,
output wire [NUM_PORTS-1:0] m_in_axis_teob,
// Data Stream to User Logic: out
input wire [NUM_PORTS*32*1-1:0] s_out_axis_tdata,
input wire [NUM_PORTS*1-1:0] s_out_axis_tkeep,
input wire [NUM_PORTS-1:0] s_out_axis_tlast,
input wire [NUM_PORTS-1:0] s_out_axis_tvalid,
output wire [NUM_PORTS-1:0] s_out_axis_tready,
input wire [NUM_PORTS*64-1:0] s_out_axis_ttimestamp,
input wire [NUM_PORTS-1:0] s_out_axis_thas_time,
input wire [NUM_PORTS-1:0] s_out_axis_teov,
input wire [NUM_PORTS-1:0] s_out_axis_teob
);
localparam SNK_INFO_FIFO_SIZE = 4;
localparam SNK_PYLD_FIFO_SIZE = PYLD_FIFO_SIZE;
localparam SRC_INFO_FIFO_SIZE = 4;
localparam SRC_PYLD_FIFO_SIZE = (MTU > PYLD_FIFO_SIZE) ? MTU : PYLD_FIFO_SIZE;
//---------------------------------------------------------------------------
// Backend Interface
@@ -142,18 +125,18 @@ module noc_shell_ddc #(
wire [63:0] data_o_flush_done;
backend_iface #(
.NOC_ID (NOC_ID),
.NUM_DATA_I (NUM_DATA_I),
.NUM_DATA_O (NUM_DATA_O),
.CTRL_FIFOSIZE (CTRL_FIFO_SIZE),
.NOC_ID (32'hDDC00000),
.NUM_DATA_I (0+NUM_PORTS),
.NUM_DATA_O (0+NUM_PORTS),
.CTRL_FIFOSIZE ($clog2(64)),
.MTU (MTU)
) backend_iface_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.data_i_flush_en (data_i_flush_en),
.data_i_flush_timeout (data_i_flush_timeout),
.data_i_flush_active (data_i_flush_active),
@@ -164,52 +147,71 @@ module noc_shell_ddc #(
.data_o_flush_done (data_o_flush_done)
);
//---------------------------------------------------------------------------
// Reset Generation
//---------------------------------------------------------------------------
wire ce_rst_pulse;
pulse_synchronizer #(.MODE ("POSEDGE")) pulse_synchronizer_ce (
.clk_a(rfnoc_chdr_clk), .rst_a(1'b0), .pulse_a (rfnoc_chdr_rst), .busy_a (),
.clk_b(ce_clk), .pulse_b (ce_rst_pulse)
);
pulse_stretch_min #(.LENGTH(32)) pulse_stretch_min_ce (
.clk(ce_clk), .rst(1'b0),
.pulse_in(ce_rst_pulse), .pulse_out(ce_rst)
);
//---------------------------------------------------------------------------
// Control Path
//---------------------------------------------------------------------------
assign ctrlport_clk = ce_clk;
assign ctrlport_rst = ce_rst;
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID ),
.SYNC_CLKS (0 ),
.AXIS_CTRL_MST_EN (CTRLPORT_SLV_EN),
.AXIS_CTRL_SLV_EN (CTRLPORT_MST_EN),
.SLAVE_FIFO_SIZE (CTRL_FIFO_SIZE )
) ctrlport_ep_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst ),
.ctrlport_clk (ctrlport_clk ),
.ctrlport_rst (ctrlport_rst ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.m_ctrlport_req_wr (m_ctrlport_req_wr ),
.m_ctrlport_req_rd (m_ctrlport_req_rd ),
.m_ctrlport_req_addr (m_ctrlport_req_addr ),
.m_ctrlport_req_data (m_ctrlport_req_data ),
.m_ctrlport_req_byte_en (m_ctrlport_req_byte_en ),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time ),
.m_ctrlport_req_time (m_ctrlport_req_time ),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack ),
.m_ctrlport_resp_status (m_ctrlport_resp_status ),
.m_ctrlport_resp_data (m_ctrlport_resp_data ),
.s_ctrlport_req_wr (s_ctrlport_req_wr ),
.s_ctrlport_req_rd (s_ctrlport_req_rd ),
.s_ctrlport_req_addr (s_ctrlport_req_addr ),
.s_ctrlport_req_portid (s_ctrlport_req_portid ),
.s_ctrlport_req_rem_epid (s_ctrlport_req_rem_epid ),
.s_ctrlport_req_rem_portid(s_ctrlport_req_rem_portid),
.s_ctrlport_req_data (s_ctrlport_req_data ),
.s_ctrlport_req_byte_en (s_ctrlport_req_byte_en ),
.s_ctrlport_req_has_time (s_ctrlport_req_has_time ),
.s_ctrlport_req_time (s_ctrlport_req_time ),
.s_ctrlport_resp_ack (s_ctrlport_resp_ack ),
.s_ctrlport_resp_status (s_ctrlport_resp_status ),
.s_ctrlport_resp_data (s_ctrlport_resp_data )
.THIS_PORTID (THIS_PORTID),
.SYNC_CLKS (0),
.AXIS_CTRL_MST_EN (0),
.AXIS_CTRL_SLV_EN (1),
.SLAVE_FIFO_SIZE ($clog2(64))
) ctrlport_endpoint_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.ctrlport_clk (ctrlport_clk),
.ctrlport_rst (ctrlport_rst),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
.m_ctrlport_req_addr (m_ctrlport_req_addr),
.m_ctrlport_req_data (m_ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time),
.m_ctrlport_req_time (m_ctrlport_req_time),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack),
.m_ctrlport_resp_status (2'b0),
.m_ctrlport_resp_data (m_ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'hF),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data ()
);
//---------------------------------------------------------------------------
@@ -217,75 +219,87 @@ module noc_shell_ddc #(
//---------------------------------------------------------------------------
genvar i;
generate
for (i = 0; i < NUM_DATA_I; i = i + 1) begin: chdr_to_data
chdr_to_axis_data #(
.CHDR_W (CHDR_W),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE (SNK_INFO_FIFO_SIZE),
.PYLD_FIFO_SIZE (SNK_PYLD_FIFO_SIZE)
) chdr_to_axis_data_i (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata [(i*CHDR_W)+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast [i]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid [i]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready [i]),
.m_axis_tdata (m_axis_tdata [i*ITEM_W*NIPC +: ITEM_W*NIPC]),
.m_axis_tkeep (m_axis_tkeep [i*NIPC +: NIPC]),
.m_axis_tlast (m_axis_tlast [i]),
.m_axis_tvalid (m_axis_tvalid [i]),
.m_axis_tready (m_axis_tready [i]),
.m_axis_ttimestamp (m_axis_ttimestamp [i*64 +: 64]),
.m_axis_thas_time (m_axis_thas_time [i]),
.m_axis_tlength (m_axis_tlength [i*16 +: 16]),
.m_axis_teov (m_axis_teov [i]),
.m_axis_teob (m_axis_teob [i]),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active [i]),
.flush_done (data_i_flush_done [i])
);
end
assign axis_data_clk = ce_clk;
assign axis_data_rst = ce_rst;
//---------------------
// Input Data Paths
//---------------------
for (i = 0; i < NUM_DATA_O; i = i + 1) begin: data_to_chdr
axis_data_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE (4),
.PYLD_FIFO_SIZE (SRC_INFO_FIFO_SIZE),
.MTU (SRC_PYLD_FIFO_SIZE)
) axis_data_to_chdr_i (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata [i*CHDR_W +: CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast [i]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid [i]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready [i]),
.s_axis_tdata (s_axis_tdata [i*ITEM_W*NIPC +: ITEM_W*NIPC]),
.s_axis_tkeep (s_axis_tkeep [i*NIPC +: NIPC]),
.s_axis_tlast (s_axis_tlast [i]),
.s_axis_tvalid (s_axis_tvalid [i]),
.s_axis_tready (s_axis_tready [i]),
.s_axis_ttimestamp (s_axis_ttimestamp [i*64 +: 64]),
.s_axis_thas_time (s_axis_thas_time [i]),
.s_axis_teov (s_axis_teov [i]),
.s_axis_teob (s_axis_teob [i]),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active [i]),
.flush_done (data_o_flush_done [i])
);
end
endgenerate
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_input_in
chdr_to_axis_data #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE ($clog2(32)),
.PYLD_FIFO_SIZE ($clog2(MTU))
) chdr_to_axis_data_in_in (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[((0+i)*CHDR_W)+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[0+i]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[0+i]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[0+i]),
.m_axis_tdata (m_in_axis_tdata[(32*1)*i+:(32*1)]),
.m_axis_tkeep (m_in_axis_tkeep[1*i+:1]),
.m_axis_tlast (m_in_axis_tlast[i]),
.m_axis_tvalid (m_in_axis_tvalid[i]),
.m_axis_tready (m_in_axis_tready[i]),
.m_axis_ttimestamp (m_in_axis_ttimestamp[64*i+:64]),
.m_axis_thas_time (m_in_axis_thas_time[i]),
.m_axis_tlength (m_in_axis_tlength[i*16+:16]),
.m_axis_teov (m_in_axis_teov[i]),
.m_axis_teob (m_in_axis_teob[i]),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[0+i]),
.flush_done (data_i_flush_done[0+i])
);
end
endmodule
//---------------------
// Output Data Paths
//---------------------
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_output_out
axis_data_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE ($clog2(32)),
.PYLD_FIFO_SIZE ($clog2(MTU)),
.MTU (MTU)
) axis_data_to_chdr_out_out (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(0+i)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[0+i]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[0+i]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[0+i]),
.s_axis_tdata (s_out_axis_tdata[(32*1)*i+:(32*1)]),
.s_axis_tkeep (s_out_axis_tkeep[1*i+:1]),
.s_axis_tlast (s_out_axis_tlast[i]),
.s_axis_tvalid (s_out_axis_tvalid[i]),
.s_axis_tready (s_out_axis_tready[i]),
.s_axis_ttimestamp (s_out_axis_ttimestamp[64*i+:64]),
.s_axis_thas_time (s_out_axis_thas_time[i]),
.s_axis_teov (s_out_axis_teov[i]),
.s_axis_teob (s_out_axis_teob[i]),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[0+i]),
.flush_done (data_o_flush_done[0+i])
);
end
endmodule // noc_shell_ddc
`default_nettype wire
@@ -14,8 +14,6 @@
// NUM_PORTS : Number of DDCs to instantiate
// MTU : Maximum transmission unit (i.e., maximum packet size) in
// CHDR words is 2**MTU.
// CTRL_FIFO_SIZE : Size of the Control Port slave FIFO. This affects the
// number of outstanding commands that can be pending.
// NUM_HB : Number of half-band decimation blocks to include (0-3)
// CIC_MAX_DECIM : Maximum decimation to support in the CIC filter
//
@@ -25,7 +23,6 @@ module rfnoc_block_ddc #(
parameter CHDR_W = 64,
parameter NUM_PORTS = 2,
parameter MTU = 10,
parameter CTRL_FIFO_SIZE = 6,
parameter NUM_HB = 3,
parameter CIC_MAX_DECIM = 255
) (
@@ -75,8 +72,6 @@ module rfnoc_block_ddc #(
localparam ITEM_W = 32;
localparam NIPC = 1;
localparam NOC_ID = 'hDDC0_0000;
localparam COMPAT_MAJOR = 16'h0;
localparam COMPAT_MINOR = 16'h0;
@@ -88,8 +83,6 @@ module rfnoc_block_ddc #(
// Signal Declarations
//---------------------------------------------------------------------------
wire rfnoc_chdr_rst;
wire ctrlport_req_wr;
wire ctrlport_req_rd;
wire [19:0] ctrlport_req_addr;
@@ -118,103 +111,74 @@ module rfnoc_block_ddc #(
wire [ NUM_PORTS*64-1:0] s_axis_data_ttimestamp;
wire [ NUM_PORTS-1:0] s_axis_data_thas_time;
wire ddc_rst;
// Cross the CHDR reset to the ce_clk domain
synchronizer ddc_rst_sync_i (
.clk (ce_clk),
.rst (1'b0),
.in (rfnoc_chdr_rst),
.out (ddc_rst)
);
//---------------------------------------------------------------------------
// NoC Shell
//---------------------------------------------------------------------------
wire ce_rst;
noc_shell_ddc #(
.NOC_ID (NOC_ID),
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.CTRLPORT_SLV_EN (0),
.CTRLPORT_MST_EN (1),
.CTRL_FIFO_SIZE (CTRL_FIFO_SIZE),
.NUM_DATA_I (NUM_PORTS),
.NUM_DATA_O (NUM_PORTS),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.PYLD_FIFO_SIZE (MTU),
.MTU (MTU)
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.MTU (MTU),
.NUM_PORTS (NUM_PORTS)
) noc_shell_ddc_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (ce_clk),
.ctrlport_rst (ddc_rst),
.m_ctrlport_req_wr (ctrlport_req_wr),
.m_ctrlport_req_rd (ctrlport_req_rd),
.m_ctrlport_req_addr (ctrlport_req_addr),
.m_ctrlport_req_data (ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (ctrlport_req_has_time),
.m_ctrlport_req_time (ctrlport_req_time),
.m_ctrlport_resp_ack (ctrlport_resp_ack),
.m_ctrlport_resp_status (AXIS_CTRL_STS_OKAY),
.m_ctrlport_resp_data (ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'b0),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data (),
.axis_data_clk (ce_clk),
.axis_data_rst (ddc_rst),
.m_axis_tdata (m_axis_data_tdata),
.m_axis_tkeep (),
.m_axis_tlast (m_axis_data_tlast),
.m_axis_tvalid (m_axis_data_tvalid),
.m_axis_tready (m_axis_data_tready),
.m_axis_ttimestamp (m_axis_data_ttimestamp),
.m_axis_thas_time (m_axis_data_thas_time),
.m_axis_tlength (m_axis_data_tlength),
.m_axis_teov (),
.m_axis_teob (m_axis_data_teob),
.s_axis_tdata (s_axis_data_tdata),
.s_axis_tkeep ({NUM_PORTS*NIPC{1'b1}}),
.s_axis_tlast (s_axis_data_tlast),
.s_axis_tvalid (s_axis_data_tvalid),
.s_axis_tready (s_axis_data_tready),
.s_axis_ttimestamp (s_axis_data_ttimestamp),
.s_axis_thas_time (s_axis_data_thas_time),
.s_axis_teov ({NUM_PORTS{1'b0}}),
.s_axis_teob (s_axis_data_teob)
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.ce_clk (ce_clk),
.rfnoc_chdr_rst (),
.rfnoc_ctrl_rst (),
.ce_rst (ce_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (),
.ctrlport_rst (),
.m_ctrlport_req_wr (ctrlport_req_wr),
.m_ctrlport_req_rd (ctrlport_req_rd),
.m_ctrlport_req_addr (ctrlport_req_addr),
.m_ctrlport_req_data (ctrlport_req_data),
.m_ctrlport_req_has_time (ctrlport_req_has_time),
.m_ctrlport_req_time (ctrlport_req_time),
.m_ctrlport_resp_ack (ctrlport_resp_ack),
.m_ctrlport_resp_data (ctrlport_resp_data),
.axis_data_clk (),
.axis_data_rst (),
.m_in_axis_tdata (m_axis_data_tdata),
.m_in_axis_tkeep (),
.m_in_axis_tlast (m_axis_data_tlast),
.m_in_axis_tvalid (m_axis_data_tvalid),
.m_in_axis_tready (m_axis_data_tready),
.m_in_axis_ttimestamp (m_axis_data_ttimestamp),
.m_in_axis_thas_time (m_axis_data_thas_time),
.m_in_axis_tlength (m_axis_data_tlength),
.m_in_axis_teov (),
.m_in_axis_teob (m_axis_data_teob),
.s_out_axis_tdata (s_axis_data_tdata),
.s_out_axis_tkeep ({NUM_PORTS*NIPC{1'b1}}),
.s_out_axis_tlast (s_axis_data_tlast),
.s_out_axis_tvalid (s_axis_data_tvalid),
.s_out_axis_tready (s_axis_data_tready),
.s_out_axis_ttimestamp (s_axis_data_ttimestamp),
.s_out_axis_thas_time (s_axis_data_thas_time),
.s_out_axis_teov ({NUM_PORTS{1'b0}}),
.s_out_axis_teob (s_axis_data_teob)
);
@@ -240,7 +204,7 @@ module rfnoc_block_ddc #(
.NUM_PORTS (NUM_PORTS)
) ctrlport_to_settings_bus_i (
.ctrlport_clk (ce_clk),
.ctrlport_rst (ddc_rst),
.ctrlport_rst (ce_rst),
.s_ctrlport_req_wr (ctrlport_req_wr),
.s_ctrlport_req_rd (ctrlport_req_rd),
.s_ctrlport_req_addr (ctrlport_req_addr),
@@ -256,7 +220,9 @@ module rfnoc_block_ddc #(
.set_has_time (set_has_time),
.rb_stb (rb_stb),
.rb_addr (rb_addr),
.rb_data (rb_data));
.rb_data (rb_data),
.timestamp (64'b0)
);
//---------------------------------------------------------------------------
@@ -333,7 +299,7 @@ module rfnoc_block_ddc #(
.SR_TAG_ADDRS(SR_FREQ_ADDR))
axi_tag_time (
.clk(ce_clk),
.reset(ddc_rst),
.reset(ce_rst),
.clear(clear_tx_seqnum[i]),
.tick_rate(16'd1),
.timed_cmd_fifo_full(timed_cmd_fifo_full),
@@ -370,7 +336,7 @@ module rfnoc_block_ddc #(
.SR_M_ADDR(SR_M_ADDR),
.SR_CONFIG_ADDR(SR_CONFIG_ADDR))
axi_rate_change (
.clk(ce_clk), .reset(ddc_rst), .clear(clear_tx_seqnum[i]), .clear_user(clear_user),
.clk(ce_clk), .reset(ce_rst), .clear(clear_tx_seqnum[i]), .clear_user(clear_user),
.src_sid(src_sid[16*i+15:16*i]), .dst_sid(next_dst_sid[16*i+15:16*i]),
.set_stb(out_set_stb), .set_addr(out_set_addr), .set_data(out_set_data),
.i_tdata({m_axis_tagged_tag,m_axis_tagged_tdata}), .i_tlast(m_axis_tagged_tlast),
@@ -403,7 +369,7 @@ module rfnoc_block_ddc #(
.NUM_HB(NUM_HB),
.CIC_MAX_DECIM(CIC_MAX_DECIM))
ddc (
.clk(ce_clk), .reset(ddc_rst),
.clk(ce_clk), .reset(ce_rst),
.clear(clear_user | clear_tx_seqnum[i]), // Use AXI Rate Change's clear user to reset block to initial state after EOB
.set_stb(out_set_stb), .set_addr(out_set_addr), .set_data(out_set_data),
.timed_set_stb(timed_set_stb), .timed_set_addr(timed_set_addr), .timed_set_data(timed_set_data),
@@ -40,6 +40,7 @@ module rfnoc_block_ddc_tb();
localparam int NUM_PORTS = 1;
localparam int NUM_HB = 3;
localparam int CIC_MAX_DECIM = 255;
localparam int NOC_ID = 32'hDDC00000;
//---------------------------------------------------------------------------
@@ -297,7 +298,7 @@ module rfnoc_block_ddc_tb();
//-------------------------------------------------------------------------
test.start_test("Verify Block Info", 2us);
`ASSERT_ERROR(blk_ctrl.get_noc_id() == rfnoc_block_ddc_i.NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_noc_id() == NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_i() == NUM_PORTS, "Incorrect NUM_DATA_I Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_o() == NUM_PORTS, "Incorrect NUM_DATA_O Value");
`ASSERT_ERROR(blk_ctrl.get_mtu() == MTU, "Incorrect MTU Value");
@@ -5,7 +5,7 @@
#
RFNOC_BLOCK_DUC_SRCS = $(abspath $(addprefix $(BASE_DIR)/../lib/rfnoc/blocks/rfnoc_block_duc/, \
../rfnoc_block_ddc/noc_shell_ddc.v \
noc_shell_duc.v \
rfnoc_block_duc_regs.vh \
rfnoc_block_duc.v \
))
@@ -0,0 +1,305 @@
//
// Copyright 2019 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: noc_shell_duc
//
// Description:
//
// This is a tool-generated NoC-shell for the duc block.
// See the RFNoC specification for more information about NoC shells.
//
// Parameters:
//
// THIS_PORTID : Control crossbar port to which this block is connected
// CHDR_W : AXIS-CHDR data bus width
// MTU : Maximum transmission unit (i.e., maximum packet size in
//
`default_nettype none
module noc_shell_duc #(
parameter [9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [5:0] MTU = 10,
parameter NUM_PORTS = 1,
parameter NUM_HB = 3,
parameter CIC_MAX_INTERP = 255
) (
//---------------------
// Framework Interface
//---------------------
// RFNoC Framework Clocks
input wire rfnoc_chdr_clk,
input wire rfnoc_ctrl_clk,
input wire ce_clk,
// NoC Shell Generated Resets
output wire rfnoc_chdr_rst,
output wire rfnoc_ctrl_rst,
output wire ce_rst,
// RFNoC Backend Interface
input wire [511:0] rfnoc_core_config,
output wire [511:0] rfnoc_core_status,
// AXIS-CHDR Input Ports (from framework)
input wire [(0+NUM_PORTS)*CHDR_W-1:0] s_rfnoc_chdr_tdata,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tlast,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tvalid,
output wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tready,
// AXIS-CHDR Output Ports (to framework)
output wire [(0+NUM_PORTS)*CHDR_W-1:0] m_rfnoc_chdr_tdata,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tlast,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tvalid,
input wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tready,
// AXIS-Ctrl Control Input Port (from framework)
input wire [31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Control Output Port (to framework)
output wire [31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
//---------------------
// Client Interface
//---------------------
// CtrlPort Clock and Reset
output wire ctrlport_clk,
output wire ctrlport_rst,
// CtrlPort Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [31:0] m_ctrlport_resp_data,
// AXI-Stream Data Clock and Reset
output wire axis_data_clk,
output wire axis_data_rst,
// Data Stream to User Logic: in
output wire [NUM_PORTS*32*1-1:0] m_in_axis_tdata,
output wire [NUM_PORTS*1-1:0] m_in_axis_tkeep,
output wire [NUM_PORTS-1:0] m_in_axis_tlast,
output wire [NUM_PORTS-1:0] m_in_axis_tvalid,
input wire [NUM_PORTS-1:0] m_in_axis_tready,
output wire [NUM_PORTS*64-1:0] m_in_axis_ttimestamp,
output wire [NUM_PORTS-1:0] m_in_axis_thas_time,
output wire [NUM_PORTS*16-1:0] m_in_axis_tlength,
output wire [NUM_PORTS-1:0] m_in_axis_teov,
output wire [NUM_PORTS-1:0] m_in_axis_teob,
// Data Stream to User Logic: out
input wire [NUM_PORTS*32*1-1:0] s_out_axis_tdata,
input wire [NUM_PORTS*1-1:0] s_out_axis_tkeep,
input wire [NUM_PORTS-1:0] s_out_axis_tlast,
input wire [NUM_PORTS-1:0] s_out_axis_tvalid,
output wire [NUM_PORTS-1:0] s_out_axis_tready,
input wire [NUM_PORTS*64-1:0] s_out_axis_ttimestamp,
input wire [NUM_PORTS-1:0] s_out_axis_thas_time,
input wire [NUM_PORTS-1:0] s_out_axis_teov,
input wire [NUM_PORTS-1:0] s_out_axis_teob
);
//---------------------------------------------------------------------------
// Backend Interface
//---------------------------------------------------------------------------
wire data_i_flush_en;
wire [31:0] data_i_flush_timeout;
wire [63:0] data_i_flush_active;
wire [63:0] data_i_flush_done;
wire data_o_flush_en;
wire [31:0] data_o_flush_timeout;
wire [63:0] data_o_flush_active;
wire [63:0] data_o_flush_done;
backend_iface #(
.NOC_ID (32'hD0C00000),
.NUM_DATA_I (0+NUM_PORTS),
.NUM_DATA_O (0+NUM_PORTS),
.CTRL_FIFOSIZE ($clog2(64)),
.MTU (MTU)
) backend_iface_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.data_i_flush_en (data_i_flush_en),
.data_i_flush_timeout (data_i_flush_timeout),
.data_i_flush_active (data_i_flush_active),
.data_i_flush_done (data_i_flush_done),
.data_o_flush_en (data_o_flush_en),
.data_o_flush_timeout (data_o_flush_timeout),
.data_o_flush_active (data_o_flush_active),
.data_o_flush_done (data_o_flush_done)
);
//---------------------------------------------------------------------------
// Reset Generation
//---------------------------------------------------------------------------
wire ce_rst_pulse;
pulse_synchronizer #(.MODE ("POSEDGE")) pulse_synchronizer_ce (
.clk_a(rfnoc_chdr_clk), .rst_a(1'b0), .pulse_a (rfnoc_chdr_rst), .busy_a (),
.clk_b(ce_clk), .pulse_b (ce_rst_pulse)
);
pulse_stretch_min #(.LENGTH(32)) pulse_stretch_min_ce (
.clk(ce_clk), .rst(1'b0),
.pulse_in(ce_rst_pulse), .pulse_out(ce_rst)
);
//---------------------------------------------------------------------------
// Control Path
//---------------------------------------------------------------------------
assign ctrlport_clk = ce_clk;
assign ctrlport_rst = ce_rst;
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID),
.SYNC_CLKS (0),
.AXIS_CTRL_MST_EN (0),
.AXIS_CTRL_SLV_EN (1),
.SLAVE_FIFO_SIZE ($clog2(64))
) ctrlport_endpoint_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.ctrlport_clk (ctrlport_clk),
.ctrlport_rst (ctrlport_rst),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
.m_ctrlport_req_addr (m_ctrlport_req_addr),
.m_ctrlport_req_data (m_ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time),
.m_ctrlport_req_time (m_ctrlport_req_time),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack),
.m_ctrlport_resp_status (2'b0),
.m_ctrlport_resp_data (m_ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'hF),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data ()
);
//---------------------------------------------------------------------------
// Data Path
//---------------------------------------------------------------------------
genvar i;
assign axis_data_clk = ce_clk;
assign axis_data_rst = ce_rst;
//---------------------
// Input Data Paths
//---------------------
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_input_in
chdr_to_axis_data #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE ($clog2(32)),
.PYLD_FIFO_SIZE ($clog2(MTU))
) chdr_to_axis_data_in_in (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[((0+i)*CHDR_W)+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[0+i]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[0+i]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[0+i]),
.m_axis_tdata (m_in_axis_tdata[(32*1)*i+:(32*1)]),
.m_axis_tkeep (m_in_axis_tkeep[1*i+:1]),
.m_axis_tlast (m_in_axis_tlast[i]),
.m_axis_tvalid (m_in_axis_tvalid[i]),
.m_axis_tready (m_in_axis_tready[i]),
.m_axis_ttimestamp (m_in_axis_ttimestamp[64*i+:64]),
.m_axis_thas_time (m_in_axis_thas_time[i]),
.m_axis_tlength (m_in_axis_tlength[i*16+:16]),
.m_axis_teov (m_in_axis_teov[i]),
.m_axis_teob (m_in_axis_teob[i]),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[0+i]),
.flush_done (data_i_flush_done[0+i])
);
end
//---------------------
// Output Data Paths
//---------------------
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_output_out
axis_data_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE ($clog2(32)),
.PYLD_FIFO_SIZE ($clog2(MTU)),
.MTU (MTU)
) axis_data_to_chdr_out_out (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(0+i)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[0+i]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[0+i]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[0+i]),
.s_axis_tdata (s_out_axis_tdata[(32*1)*i+:(32*1)]),
.s_axis_tkeep (s_out_axis_tkeep[1*i+:1]),
.s_axis_tlast (s_out_axis_tlast[i]),
.s_axis_tvalid (s_out_axis_tvalid[i]),
.s_axis_tready (s_out_axis_tready[i]),
.s_axis_ttimestamp (s_out_axis_ttimestamp[64*i+:64]),
.s_axis_thas_time (s_out_axis_thas_time[i]),
.s_axis_teov (s_out_axis_teov[i]),
.s_axis_teob (s_out_axis_teob[i]),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[0+i]),
.flush_done (data_o_flush_done[0+i])
);
end
endmodule // noc_shell_duc
`default_nettype wire
@@ -14,8 +14,6 @@
// NUM_PORTS : Number of DUC signal processing chains
// MTU : Maximum transmission unit (i.e., maximum packet size) in
// CHDR words is 2**MTU.
// CTRL_FIFO_SIZE : Size of the Control Port slave FIFO. This affects the
// number of outstanding commands that can be pending.
// NUM_HB : Number of half-band filter blocks to include (0-3)
// CIC_MAX_INTERP : Maximum interpolation to support in the CIC filter
//
@@ -25,7 +23,6 @@ module rfnoc_block_duc #(
parameter CHDR_W = 64,
parameter NUM_PORTS = 2,
parameter MTU = 10,
parameter CTRL_FIFO_SIZE = 6,
parameter NUM_HB = 2,
parameter CIC_MAX_INTERP = 128
) (
@@ -75,8 +72,6 @@ module rfnoc_block_duc #(
localparam ITEM_W = 32;
localparam NIPC = 1;
localparam NOC_ID = 'hD0C0_0000;
localparam COMPAT_MAJOR = 16'h0;
localparam COMPAT_MINOR = 16'h0;
@@ -88,8 +83,6 @@ module rfnoc_block_duc #(
// Signal Declarations
//---------------------------------------------------------------------------
wire rfnoc_chdr_rst;
wire ctrlport_req_wr;
wire ctrlport_req_rd;
wire [19:0] ctrlport_req_addr;
@@ -118,104 +111,74 @@ module rfnoc_block_duc #(
wire [ NUM_PORTS*64-1:0] s_axis_data_ttimestamp;
wire [ NUM_PORTS-1:0] s_axis_data_thas_time;
wire duc_rst;
// Cross the CHDR reset to the ce_clk domain
synchronizer duc_rst_sync_i (
.clk (ce_clk),
.rst (1'b0),
.in (rfnoc_chdr_rst),
.out (duc_rst)
);
//---------------------------------------------------------------------------
// NoC Shell
//---------------------------------------------------------------------------
// TODO: Replace noc_shell_radio with a customized block
noc_shell_ddc #(
.NOC_ID (NOC_ID),
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.CTRLPORT_SLV_EN (0),
.CTRLPORT_MST_EN (1),
.CTRL_FIFO_SIZE (CTRL_FIFO_SIZE),
.NUM_DATA_I (NUM_PORTS),
.NUM_DATA_O (NUM_PORTS),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.PYLD_FIFO_SIZE (MTU),
.MTU (MTU)
) noc_shell_ddc_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (ce_clk),
.ctrlport_rst (duc_rst),
.m_ctrlport_req_wr (ctrlport_req_wr),
.m_ctrlport_req_rd (ctrlport_req_rd),
.m_ctrlport_req_addr (ctrlport_req_addr),
.m_ctrlport_req_data (ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (ctrlport_req_has_time),
.m_ctrlport_req_time (ctrlport_req_time),
.m_ctrlport_resp_ack (ctrlport_resp_ack),
.m_ctrlport_resp_status (AXIS_CTRL_STS_OKAY),
.m_ctrlport_resp_data (ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'b0),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data (),
.axis_data_clk (ce_clk),
.axis_data_rst (duc_rst),
.m_axis_tdata (m_axis_data_tdata),
.m_axis_tkeep (),
.m_axis_tlast (m_axis_data_tlast),
.m_axis_tvalid (m_axis_data_tvalid),
.m_axis_tready (m_axis_data_tready),
.m_axis_ttimestamp (m_axis_data_ttimestamp),
.m_axis_thas_time (m_axis_data_thas_time),
.m_axis_tlength (m_axis_data_tlength),
.m_axis_teov (),
.m_axis_teob (m_axis_data_teob),
.s_axis_tdata (s_axis_data_tdata),
.s_axis_tkeep ({NUM_PORTS*NIPC{1'b1}}),
.s_axis_tlast (s_axis_data_tlast),
.s_axis_tvalid (s_axis_data_tvalid),
.s_axis_tready (s_axis_data_tready),
.s_axis_ttimestamp (s_axis_data_ttimestamp),
.s_axis_thas_time (s_axis_data_thas_time),
.s_axis_teov ({NUM_PORTS{1'b0}}),
.s_axis_teob (s_axis_data_teob)
wire ce_rst;
noc_shell_duc #(
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.MTU (MTU),
.NUM_PORTS (NUM_PORTS)
) noc_shell_duc_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.ce_clk (ce_clk),
.rfnoc_chdr_rst (),
.rfnoc_ctrl_rst (),
.ce_rst (ce_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (),
.ctrlport_rst (),
.m_ctrlport_req_wr (ctrlport_req_wr),
.m_ctrlport_req_rd (ctrlport_req_rd),
.m_ctrlport_req_addr (ctrlport_req_addr),
.m_ctrlport_req_data (ctrlport_req_data),
.m_ctrlport_req_has_time (ctrlport_req_has_time),
.m_ctrlport_req_time (ctrlport_req_time),
.m_ctrlport_resp_ack (ctrlport_resp_ack),
.m_ctrlport_resp_data (ctrlport_resp_data),
.axis_data_clk (),
.axis_data_rst (),
.m_in_axis_tdata (m_axis_data_tdata),
.m_in_axis_tkeep (),
.m_in_axis_tlast (m_axis_data_tlast),
.m_in_axis_tvalid (m_axis_data_tvalid),
.m_in_axis_tready (m_axis_data_tready),
.m_in_axis_ttimestamp (m_axis_data_ttimestamp),
.m_in_axis_thas_time (m_axis_data_thas_time),
.m_in_axis_tlength (m_axis_data_tlength),
.m_in_axis_teov (),
.m_in_axis_teob (m_axis_data_teob),
.s_out_axis_tdata (s_axis_data_tdata),
.s_out_axis_tkeep ({NUM_PORTS*NIPC{1'b1}}),
.s_out_axis_tlast (s_axis_data_tlast),
.s_out_axis_tvalid (s_axis_data_tvalid),
.s_out_axis_tready (s_axis_data_tready),
.s_out_axis_ttimestamp (s_axis_data_ttimestamp),
.s_out_axis_thas_time (s_axis_data_thas_time),
.s_out_axis_teov ({NUM_PORTS{1'b0}}),
.s_out_axis_teob (s_axis_data_teob)
);
@@ -240,7 +203,7 @@ module rfnoc_block_duc #(
.NUM_PORTS (NUM_PORTS)
) ctrlport_to_settings_bus_i (
.ctrlport_clk (ce_clk),
.ctrlport_rst (duc_rst),
.ctrlport_rst (ce_rst),
.s_ctrlport_req_wr (ctrlport_req_wr),
.s_ctrlport_req_rd (ctrlport_req_rd),
.s_ctrlport_req_addr (ctrlport_req_addr),
@@ -256,7 +219,9 @@ module rfnoc_block_duc #(
.set_has_time (set_has_time),
.rb_stb ({NUM_PORTS{1'b1}}),
.rb_addr (rb_addr),
.rb_data (rb_data));
.rb_data (rb_data),
.timestamp (64'b0)
);
//---------------------------------------------------------------------------
@@ -328,7 +293,7 @@ module rfnoc_block_duc #(
.SR_FREQ_ADDR(SR_FREQ_ADDR),
.SR_SCALE_IQ_ADDR(SR_SCALE_IQ_ADDR))
dds_timed (
.clk(ce_clk), .reset(duc_rst), .clear(clear_tx_seqnum[i]),
.clk(ce_clk), .reset(ce_rst), .clear(clear_tx_seqnum[i]),
.timed_cmd_fifo_full(),
.set_stb(set_stb_int), .set_addr(set_addr_int), .set_data(set_data_int),
.set_time(set_time_int), .set_has_time(set_has_time_int),
@@ -353,7 +318,7 @@ module rfnoc_block_duc #(
.SR_M_ADDR(SR_M_ADDR),
.SR_CONFIG_ADDR(SR_CONFIG_ADDR))
axi_rate_change (
.clk(ce_clk), .reset(duc_rst), .clear(clear_tx_seqnum[i]), .clear_user(clear_user),
.clk(ce_clk), .reset(ce_rst), .clear(clear_tx_seqnum[i]), .clear_user(clear_user),
.src_sid(src_sid[16*i+15:16*i]), .dst_sid(next_dst_sid[16*i+15:16*i]),
.set_stb(set_stb_int), .set_addr(set_addr_int), .set_data(set_data_int),
.i_tdata(m_axis_data_tdata[ITEM_W*i+:ITEM_W]), .i_tlast(m_axis_data_tlast[i]), .i_tvalid(m_axis_data_tvalid[i]),
@@ -376,7 +341,7 @@ module rfnoc_block_duc #(
.NUM_HB(NUM_HB),
.CIC_MAX_INTERP(CIC_MAX_INTERP))
duc (
.clk(ce_clk), .reset(duc_rst), .clear(clear_duc),
.clk(ce_clk), .reset(ce_rst), .clear(clear_duc),
.set_stb(set_stb_int), .set_addr(set_addr_int), .set_data(set_data_int),
.i_tdata(sample_tdata), .i_tuser(128'b0), .i_tvalid(sample_tvalid), .i_tready(sample_tready),
.o_tdata(sample_duc_tdata), .o_tuser(), .o_tvalid(sample_duc_tvalid), .o_tready(sample_duc_tready));
@@ -40,6 +40,7 @@ module rfnoc_block_duc_tb();
localparam int NUM_PORTS = 1;
localparam int NUM_HB = 3;
localparam int CIC_MAX_INTERP = 128;
localparam int NOC_ID = 32'hD0C00000;
//---------------------------------------------------------------------------
@@ -304,7 +305,7 @@ module rfnoc_block_duc_tb();
//-------------------------------------------------------------------------
test.start_test("Verify Block Info", 2us);
`ASSERT_ERROR(blk_ctrl.get_noc_id() == rfnoc_block_duc_i.NOC_ID, "Incorrect NOC_ID value");
`ASSERT_ERROR(blk_ctrl.get_noc_id() == NOC_ID, "Incorrect NOC_ID value");
`ASSERT_ERROR(blk_ctrl.get_num_data_i() == NUM_PORTS, "Incorrect NUM_DATA_I value");
`ASSERT_ERROR(blk_ctrl.get_num_data_o() == NUM_PORTS, "Incorrect NUM_DATA_O value");
`ASSERT_ERROR(blk_ctrl.get_mtu() == MTU, "Incorrect MTU value");
+243 -230
View File
@@ -1,131 +1,117 @@
//
// Copyright 2019 Ettus Research, A National Instruments Company
// Copyright 2019 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: noc_shell_fft
//
// Description:
//
// This is a tool-generated NoC-shell for the fft block.
// See the RFNoC specification for more information about NoC shells.
//
// Parameters:
//
// THIS_PORTID : Control crossbar port to which this block is connected
// CHDR_W : AXIS-CHDR data bus width
// MTU : Maximum transmission unit (i.e., maximum packet size in
//
`default_nettype none
module noc_shell_fft #(
parameter [31:0] NOC_ID = 32 'h0,
parameter [ 9:0] THIS_PORTID = 10 'd0,
parameter CHDR_W = 64,
parameter [ 0:0] CTRLPORT_SLV_EN = 1,
parameter [ 0:0] CTRLPORT_MST_EN = 1,
parameter SYNC_CLKS = 0,
parameter [ 5:0] NUM_DATA_I = 1,
parameter [ 5:0] NUM_DATA_O = 1,
parameter ITEM_W = 32,
parameter NIPC = 2,
parameter PYLD_FIFO_SIZE = 5,
parameter CTXT_FIFO_SIZE = 5,
parameter MTU = 10
parameter [9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [5:0] MTU = 10,
parameter EN_MAGNITUDE_OUT = 0,
parameter EN_MAGNITUDE_APPROX_OUT = 1,
parameter EN_MAGNITUDE_SQ_OUT = 1,
parameter EN_FFT_SHIFT = 1
) (
//---------------------------------------------------------------------------
//---------------------
// Framework Interface
//---------------------------------------------------------------------------
//---------------------
// RFNoC Framework Clocks
input wire rfnoc_chdr_clk,
input wire rfnoc_ctrl_clk,
input wire ce_clk,
// NoC Shell Generated Resets
output wire rfnoc_chdr_rst,
output wire rfnoc_ctrl_rst,
output wire ce_rst,
// RFNoC Framework Clocks and Resets
input wire rfnoc_chdr_clk,
output wire rfnoc_chdr_rst,
input wire rfnoc_ctrl_clk,
output wire rfnoc_ctrl_rst,
// RFNoC Backend Interface
input wire [ 511:0] rfnoc_core_config,
output wire [ 511:0] rfnoc_core_status,
// CHDR Input Ports (from framework)
input wire [(CHDR_W*NUM_DATA_I)-1:0] s_rfnoc_chdr_tdata,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tlast,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tvalid,
output wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tready,
// CHDR Output Ports (to framework)
output wire [(CHDR_W*NUM_DATA_O)-1:0] m_rfnoc_chdr_tdata,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tlast,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tvalid,
input wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tready,
// AXIS-Ctrl Input Port (from framework)
input wire [ 31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Output Port (to framework)
output wire [ 31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
input wire [511:0] rfnoc_core_config,
output wire [511:0] rfnoc_core_status,
//---------------------------------------------------------------------------
// Client Control Port Interface
//---------------------------------------------------------------------------
// AXIS-CHDR Input Ports (from framework)
input wire [(1)*CHDR_W-1:0] s_rfnoc_chdr_tdata,
input wire [(1)-1:0] s_rfnoc_chdr_tlast,
input wire [(1)-1:0] s_rfnoc_chdr_tvalid,
output wire [(1)-1:0] s_rfnoc_chdr_tready,
// AXIS-CHDR Output Ports (to framework)
output wire [(1)*CHDR_W-1:0] m_rfnoc_chdr_tdata,
output wire [(1)-1:0] m_rfnoc_chdr_tlast,
output wire [(1)-1:0] m_rfnoc_chdr_tvalid,
input wire [(1)-1:0] m_rfnoc_chdr_tready,
// Clock
input wire ctrlport_clk,
input wire ctrlport_rst,
// Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire [ 3:0] m_ctrlport_req_byte_en,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [ 1:0] m_ctrlport_resp_status,
input wire [31:0] m_ctrlport_resp_data,
// Slave
input wire s_ctrlport_req_wr,
input wire s_ctrlport_req_rd,
input wire [19:0] s_ctrlport_req_addr,
input wire [ 9:0] s_ctrlport_req_portid,
input wire [15:0] s_ctrlport_req_rem_epid,
input wire [ 9:0] s_ctrlport_req_rem_portid,
input wire [31:0] s_ctrlport_req_data,
input wire [ 3:0] s_ctrlport_req_byte_en,
input wire s_ctrlport_req_has_time,
input wire [63:0] s_ctrlport_req_time,
output wire s_ctrlport_resp_ack,
output wire [ 1:0] s_ctrlport_resp_status,
output wire [31:0] s_ctrlport_resp_data,
// AXIS-Ctrl Control Input Port (from framework)
input wire [31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Control Output Port (to framework)
output wire [31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
//---------------------------------------------------------------------------
// Client Data Interface
//---------------------------------------------------------------------------
//---------------------
// Client Interface
//---------------------
// Clock
input wire axis_data_clk,
input wire axis_data_rst,
// CtrlPort Clock and Reset
output wire ctrlport_clk,
output wire ctrlport_rst,
// CtrlPort Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
input wire m_ctrlport_resp_ack,
input wire [31:0] m_ctrlport_resp_data,
// Output data stream (to user logic)
output wire [(NUM_DATA_I*ITEM_W*NIPC)-1:0] m_axis_payload_tdata,
output wire [ (NUM_DATA_I*NIPC)-1:0] m_axis_payload_tkeep,
output wire [ NUM_DATA_I-1:0] m_axis_payload_tlast,
output wire [ NUM_DATA_I-1:0] m_axis_payload_tvalid,
input wire [ NUM_DATA_I-1:0] m_axis_payload_tready,
// Input data stream (from user logic)
input wire [(NUM_DATA_O*ITEM_W*NIPC)-1:0] s_axis_payload_tdata,
input wire [ (NUM_DATA_O*NIPC)-1:0] s_axis_payload_tkeep,
input wire [ NUM_DATA_O-1:0] s_axis_payload_tlast,
input wire [ NUM_DATA_O-1:0] s_axis_payload_tvalid,
output wire [ NUM_DATA_O-1:0] s_axis_payload_tready,
// Output context stream (to user logic)
output wire [(NUM_DATA_I*CHDR_W)-1:0] m_axis_context_tdata,
output wire [ (4*NUM_DATA_I)-1:0] m_axis_context_tuser,
output wire [ NUM_DATA_I-1:0] m_axis_context_tlast,
output wire [ NUM_DATA_I-1:0] m_axis_context_tvalid,
input wire [ NUM_DATA_I-1:0] m_axis_context_tready,
// Input context stream (from user logic)
input wire [(NUM_DATA_O*CHDR_W)-1:0] s_axis_context_tdata,
input wire [ (4*NUM_DATA_O)-1:0] s_axis_context_tuser,
input wire [ NUM_DATA_O-1:0] s_axis_context_tlast,
input wire [ NUM_DATA_O-1:0] s_axis_context_tvalid,
output wire [ NUM_DATA_O-1:0] s_axis_context_tready
// AXI-Stream Payload Context Clock and Reset
output wire axis_data_clk,
output wire axis_data_rst,
// Payload Stream to User Logic: in_0
output wire [32*1-1:0] m_in_0_payload_tdata,
output wire [1-1:0] m_in_0_payload_tkeep,
output wire m_in_0_payload_tlast,
output wire m_in_0_payload_tvalid,
input wire m_in_0_payload_tready,
// Context Stream to User Logic: in_0
output wire [CHDR_W-1:0] m_in_0_context_tdata,
output wire [3:0] m_in_0_context_tuser,
output wire m_in_0_context_tlast,
output wire m_in_0_context_tvalid,
input wire m_in_0_context_tready,
// Payload Stream from User Logic: out_0
input wire [32*1-1:0] s_out_0_payload_tdata,
input wire [0:0] s_out_0_payload_tkeep,
input wire s_out_0_payload_tlast,
input wire s_out_0_payload_tvalid,
output wire s_out_0_payload_tready,
// Context Stream from User Logic: out_0
input wire [CHDR_W-1:0] s_out_0_context_tdata,
input wire [3:0] s_out_0_context_tuser,
input wire s_out_0_context_tlast,
input wire s_out_0_context_tvalid,
output wire s_out_0_context_tready
);
localparam CTRL_FIFO_SIZE = 5;
//---------------------------------------------------------------------------
// Backend Interface
@@ -141,18 +127,18 @@ module noc_shell_fft #(
wire [63:0] data_o_flush_done;
backend_iface #(
.NOC_ID (NOC_ID),
.NUM_DATA_I (NUM_DATA_I),
.NUM_DATA_O (NUM_DATA_O),
.CTRL_FIFOSIZE (CTRL_FIFO_SIZE),
.NOC_ID (32'hFF700000),
.NUM_DATA_I (1),
.NUM_DATA_O (1),
.CTRL_FIFOSIZE ($clog2(32)),
.MTU (MTU)
) backend_iface_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.data_i_flush_en (data_i_flush_en),
.data_i_flush_timeout (data_i_flush_timeout),
.data_i_flush_active (data_i_flush_active),
@@ -163,52 +149,71 @@ module noc_shell_fft #(
.data_o_flush_done (data_o_flush_done)
);
//---------------------------------------------------------------------------
// Reset Generation
//---------------------------------------------------------------------------
wire ce_rst_pulse;
pulse_synchronizer #(.MODE ("POSEDGE")) pulse_synchronizer_ce (
.clk_a(rfnoc_chdr_clk), .rst_a(1'b0), .pulse_a (rfnoc_chdr_rst), .busy_a (),
.clk_b(ce_clk), .pulse_b (ce_rst_pulse)
);
pulse_stretch_min #(.LENGTH(32)) pulse_stretch_min_ce (
.clk(ce_clk), .rst(1'b0),
.pulse_in(ce_rst_pulse), .pulse_out(ce_rst)
);
//---------------------------------------------------------------------------
// Control Path
//---------------------------------------------------------------------------
assign ctrlport_clk = ce_clk;
assign ctrlport_rst = ce_rst;
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID ),
.SYNC_CLKS (0 ),
.AXIS_CTRL_MST_EN (CTRLPORT_SLV_EN),
.AXIS_CTRL_SLV_EN (CTRLPORT_MST_EN),
.SLAVE_FIFO_SIZE (CTRL_FIFO_SIZE )
) ctrlport_ep_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst ),
.ctrlport_clk (ctrlport_clk ),
.ctrlport_rst (ctrlport_rst ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.m_ctrlport_req_wr (m_ctrlport_req_wr ),
.m_ctrlport_req_rd (m_ctrlport_req_rd ),
.m_ctrlport_req_addr (m_ctrlport_req_addr ),
.m_ctrlport_req_data (m_ctrlport_req_data ),
.m_ctrlport_req_byte_en (m_ctrlport_req_byte_en ),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time ),
.m_ctrlport_req_time (m_ctrlport_req_time ),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack ),
.m_ctrlport_resp_status (m_ctrlport_resp_status ),
.m_ctrlport_resp_data (m_ctrlport_resp_data ),
.s_ctrlport_req_wr (s_ctrlport_req_wr ),
.s_ctrlport_req_rd (s_ctrlport_req_rd ),
.s_ctrlport_req_addr (s_ctrlport_req_addr ),
.s_ctrlport_req_portid (s_ctrlport_req_portid ),
.s_ctrlport_req_rem_epid (s_ctrlport_req_rem_epid ),
.s_ctrlport_req_rem_portid(s_ctrlport_req_rem_portid),
.s_ctrlport_req_data (s_ctrlport_req_data ),
.s_ctrlport_req_byte_en (s_ctrlport_req_byte_en ),
.s_ctrlport_req_has_time (s_ctrlport_req_has_time ),
.s_ctrlport_req_time (s_ctrlport_req_time ),
.s_ctrlport_resp_ack (s_ctrlport_resp_ack ),
.s_ctrlport_resp_status (s_ctrlport_resp_status ),
.s_ctrlport_resp_data (s_ctrlport_resp_data )
.THIS_PORTID (THIS_PORTID),
.SYNC_CLKS (0),
.AXIS_CTRL_MST_EN (0),
.AXIS_CTRL_SLV_EN (1),
.SLAVE_FIFO_SIZE ($clog2(32))
) ctrlport_endpoint_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.ctrlport_clk (ctrlport_clk),
.ctrlport_rst (ctrlport_rst),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
.m_ctrlport_req_addr (m_ctrlport_req_addr),
.m_ctrlport_req_data (m_ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (),
.m_ctrlport_req_time (),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack),
.m_ctrlport_resp_status (2'b0),
.m_ctrlport_resp_data (m_ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'hF),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data ()
);
//---------------------------------------------------------------------------
@@ -216,79 +221,87 @@ module noc_shell_fft #(
//---------------------------------------------------------------------------
genvar i;
generate
for (i = 0; i < NUM_DATA_I; i = i + 1) begin: chdr_to_data
chdr_to_axis_pyld_ctxt #(
.CHDR_W (CHDR_W ),
.ITEM_W (ITEM_W ),
.NIPC (NIPC ),
.SYNC_CLKS (SYNC_CLKS ),
.CONTEXT_FIFO_SIZE (CTXT_FIFO_SIZE),
.PAYLOAD_FIFO_SIZE (PYLD_FIFO_SIZE),
.CONTEXT_PREFETCH_EN (1 )
) chdr_to_axis_pyld_ctxt_i (
.axis_chdr_clk (rfnoc_chdr_clk ),
.axis_chdr_rst (rfnoc_chdr_rst ),
.axis_data_clk (axis_data_clk ),
.axis_data_rst (axis_data_rst ),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata [(i*CHDR_W)+:CHDR_W] ),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast [i] ),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid [i] ),
.s_axis_chdr_tready (s_rfnoc_chdr_tready [i] ),
.m_axis_payload_tdata (m_axis_payload_tdata [(i*ITEM_W*NIPC)+:(ITEM_W*NIPC)]),
.m_axis_payload_tkeep (m_axis_payload_tkeep [(i*NIPC)+:NIPC] ),
.m_axis_payload_tlast (m_axis_payload_tlast [i] ),
.m_axis_payload_tvalid(m_axis_payload_tvalid[i] ),
.m_axis_payload_tready(m_axis_payload_tready[i] ),
.m_axis_context_tdata (m_axis_context_tdata [(i*CHDR_W)+:(CHDR_W)] ),
.m_axis_context_tuser (m_axis_context_tuser [(i*4)+:4] ),
.m_axis_context_tlast (m_axis_context_tlast [i] ),
.m_axis_context_tvalid(m_axis_context_tvalid[i] ),
.m_axis_context_tready(m_axis_context_tready[i] ),
.flush_en (data_i_flush_en ),
.flush_timeout (data_i_flush_timeout ),
.flush_active (data_i_flush_active [i] ),
.flush_done (data_i_flush_done [i] )
);
end
assign axis_data_clk = ce_clk;
assign axis_data_rst = ce_rst;
for (i = 0; i < NUM_DATA_O; i = i + 1) begin: data_to_chdr
axis_pyld_ctxt_to_chdr #(
.CHDR_W (CHDR_W ),
.ITEM_W (ITEM_W ),
.NIPC (NIPC ),
.SYNC_CLKS (SYNC_CLKS ),
.CONTEXT_FIFO_SIZE (CTXT_FIFO_SIZE),
.PAYLOAD_FIFO_SIZE (PYLD_FIFO_SIZE),
.CONTEXT_PREFETCH_EN (1 ),
.MTU (MTU )
) axis_pyld_ctxt_to_chdr_i (
.axis_chdr_clk (rfnoc_chdr_clk ),
.axis_chdr_rst (rfnoc_chdr_rst ),
.axis_data_clk (axis_data_clk ),
.axis_data_rst (axis_data_rst ),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata [(i*CHDR_W)+:CHDR_W] ),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast [i] ),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid [i] ),
.m_axis_chdr_tready (m_rfnoc_chdr_tready [i] ),
.s_axis_payload_tdata (s_axis_payload_tdata [(i*ITEM_W*NIPC)+:(ITEM_W*NIPC)]),
.s_axis_payload_tkeep (s_axis_payload_tkeep [(i*NIPC)+:NIPC] ),
.s_axis_payload_tlast (s_axis_payload_tlast [i] ),
.s_axis_payload_tvalid(s_axis_payload_tvalid[i] ),
.s_axis_payload_tready(s_axis_payload_tready[i] ),
.s_axis_context_tdata (s_axis_context_tdata [(i*CHDR_W)+:(CHDR_W)] ),
.s_axis_context_tuser (s_axis_context_tuser [(i*4)+:4] ),
.s_axis_context_tlast (s_axis_context_tlast [i] ),
.s_axis_context_tvalid(s_axis_context_tvalid[i] ),
.s_axis_context_tready(s_axis_context_tready[i] ),
.framer_errors ( ),
.flush_en (data_o_flush_en ),
.flush_timeout (data_o_flush_timeout ),
.flush_active (data_o_flush_active [i] ),
.flush_done (data_o_flush_done [i] )
);
end
endgenerate
//---------------------
// Input Data Paths
//---------------------
endmodule
chdr_to_axis_pyld_ctxt #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(32)),
.CONTEXT_PREFETCH_EN (1)
) chdr_to_axis_pyld_ctxt_in_in_0 (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[(0)*CHDR_W+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[0]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[0]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[0]),
.m_axis_payload_tdata (m_in_0_payload_tdata),
.m_axis_payload_tkeep (m_in_0_payload_tkeep),
.m_axis_payload_tlast (m_in_0_payload_tlast),
.m_axis_payload_tvalid (m_in_0_payload_tvalid),
.m_axis_payload_tready (m_in_0_payload_tready),
.m_axis_context_tdata (m_in_0_context_tdata),
.m_axis_context_tuser (m_in_0_context_tuser),
.m_axis_context_tlast (m_in_0_context_tlast),
.m_axis_context_tvalid (m_in_0_context_tvalid),
.m_axis_context_tready (m_in_0_context_tready),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[0]),
.flush_done (data_i_flush_done[0])
);
//---------------------
// Output Data Paths
//---------------------
axis_pyld_ctxt_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(32)),
.MTU (MTU),
.CONTEXT_PREFETCH_EN (1)
) axis_pyld_ctxt_to_chdr_out_out_0 (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(0)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[0]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[0]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[0]),
.s_axis_payload_tdata (s_out_0_payload_tdata),
.s_axis_payload_tkeep (s_out_0_payload_tkeep),
.s_axis_payload_tlast (s_out_0_payload_tlast),
.s_axis_payload_tvalid (s_out_0_payload_tvalid),
.s_axis_payload_tready (s_out_0_payload_tready),
.s_axis_context_tdata (s_out_0_context_tdata),
.s_axis_context_tuser (s_out_0_context_tuser),
.s_axis_context_tlast (s_out_0_context_tlast),
.s_axis_context_tvalid (s_out_0_context_tvalid),
.s_axis_context_tready (s_out_0_context_tready),
.framer_errors (),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[0]),
.flush_done (data_o_flush_done[0])
);
endmodule // noc_shell_fft
`default_nettype wire
@@ -76,22 +76,16 @@ module rfnoc_block_fft #(
localparam ITEM_W = 32;
localparam NIPC = 1;
localparam NOC_ID = 32'hFF70_0000;
`include "../../core/rfnoc_axis_ctrl_utils.vh"
//---------------------------------------------------------------------------
// Signal Declarations
//---------------------------------------------------------------------------
wire rfnoc_chdr_rst;
wire ctrlport_req_wr;
wire ctrlport_req_rd;
wire [19:0] ctrlport_req_addr;
wire [31:0] ctrlport_req_data;
wire ctrlport_req_has_time;
wire [63:0] ctrlport_req_time;
wire ctrlport_resp_ack;
wire [31:0] ctrlport_resp_data;
@@ -119,106 +113,70 @@ module rfnoc_block_fft #(
wire ce_rst;
// Cross the CHDR reset to the radio_clk domain
pulse_synchronizer #(
.MODE ("POSEDGE")
) ctrl_rst_sync_i (
.clk_a (rfnoc_chdr_clk),
.rst_a (1'b0),
.pulse_a (rfnoc_chdr_rst),
.busy_a (),
.clk_b (ce_clk),
.pulse_b (ce_rst)
);
//---------------------------------------------------------------------------
// NoC Shell
//---------------------------------------------------------------------------
noc_shell_fft #(
.NOC_ID (NOC_ID ),
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W ),
.CTRLPORT_SLV_EN(0 ),
.CTRLPORT_MST_EN(1 ),
.SYNC_CLKS (0 ),
.NUM_DATA_I (1 ),
.NUM_DATA_O (1 ),
.ITEM_W (ITEM_W ),
.NIPC (NIPC ),
.PYLD_FIFO_SIZE (MTU ),
.CTXT_FIFO_SIZE (1 ),
.MTU (MTU )
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W ),
.MTU (MTU )
) noc_shell_fft_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk ),
.rfnoc_chdr_rst (rfnoc_chdr_rst ),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.rfnoc_ctrl_rst ( ),
.rfnoc_core_config (rfnoc_core_config ),
.rfnoc_core_status (rfnoc_core_status ),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata ),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast ),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid ),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready ),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata ),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast ),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid ),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.ctrlport_clk (ce_clk ),
.ctrlport_rst (ce_rst ),
.m_ctrlport_req_wr (ctrlport_req_wr ),
.m_ctrlport_req_rd (ctrlport_req_rd ),
.m_ctrlport_req_addr (ctrlport_req_addr ),
.m_ctrlport_req_data (ctrlport_req_data ),
.m_ctrlport_req_byte_en ( ),
.m_ctrlport_req_has_time (ctrlport_req_has_time),
.m_ctrlport_req_time (ctrlport_req_time ),
.m_ctrlport_resp_ack (ctrlport_resp_ack ),
.m_ctrlport_resp_status (AXIS_CTRL_STS_OKAY ),
.m_ctrlport_resp_data (ctrlport_resp_data ),
.s_ctrlport_req_wr (1'b0 ),
.s_ctrlport_req_rd (1'b0 ),
.s_ctrlport_req_addr (20'b0 ),
.s_ctrlport_req_portid (10'b0 ),
.s_ctrlport_req_rem_epid (16'b0 ),
.s_ctrlport_req_rem_portid(10'b0 ),
.s_ctrlport_req_data (32'b0 ),
.s_ctrlport_req_byte_en (4'b0 ),
.s_ctrlport_req_has_time (1'b0 ),
.s_ctrlport_req_time (64'b0 ),
.s_ctrlport_resp_ack ( ),
.s_ctrlport_resp_status ( ),
.s_ctrlport_resp_data ( ),
.axis_data_clk (ce_clk ),
.axis_data_rst (ce_rst ),
.m_axis_payload_tdata (axis_to_fft_tdata ),
.m_axis_payload_tkeep ( ),
.m_axis_payload_tlast (axis_to_fft_tlast ),
.m_axis_payload_tvalid (axis_to_fft_tvalid ),
.m_axis_payload_tready (axis_to_fft_tready ),
.s_axis_payload_tdata (axis_from_fft_tdata ),
.s_axis_payload_tkeep ({1*NIPC{1'b1}} ),
.s_axis_payload_tlast (axis_from_fft_tlast ),
.s_axis_payload_tvalid (axis_from_fft_tvalid ),
.s_axis_payload_tready (axis_from_fft_tready ),
.m_axis_context_tdata (m_axis_context_tdata ),
.m_axis_context_tuser (m_axis_context_tuser ),
.m_axis_context_tlast (m_axis_context_tlast ),
.m_axis_context_tvalid (m_axis_context_tvalid),
.m_axis_context_tready (m_axis_context_tready),
.s_axis_context_tdata (s_axis_context_tdata ),
.s_axis_context_tuser (s_axis_context_tuser ),
.s_axis_context_tlast (s_axis_context_tlast ),
.s_axis_context_tvalid (s_axis_context_tvalid),
.s_axis_context_tready (s_axis_context_tready)
.rfnoc_chdr_clk (rfnoc_chdr_clk ),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.ce_clk (ce_clk ),
.rfnoc_chdr_rst ( ),
.rfnoc_ctrl_rst ( ),
.ce_rst (ce_rst ),
.rfnoc_core_config (rfnoc_core_config ),
.rfnoc_core_status (rfnoc_core_status ),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata ),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast ),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid ),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready ),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata ),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast ),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid ),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.ctrlport_clk ( ),
.ctrlport_rst ( ),
.m_ctrlport_req_wr (ctrlport_req_wr ),
.m_ctrlport_req_rd (ctrlport_req_rd ),
.m_ctrlport_req_addr (ctrlport_req_addr ),
.m_ctrlport_req_data (ctrlport_req_data ),
.m_ctrlport_resp_ack (ctrlport_resp_ack ),
.m_ctrlport_resp_data (ctrlport_resp_data ),
.axis_data_clk ( ),
.axis_data_rst ( ),
.m_in_0_payload_tdata (axis_to_fft_tdata ),
.m_in_0_payload_tkeep ( ),
.m_in_0_payload_tlast (axis_to_fft_tlast ),
.m_in_0_payload_tvalid (axis_to_fft_tvalid ),
.m_in_0_payload_tready (axis_to_fft_tready ),
.m_in_0_context_tdata (m_axis_context_tdata ),
.m_in_0_context_tuser (m_axis_context_tuser ),
.m_in_0_context_tlast (m_axis_context_tlast ),
.m_in_0_context_tvalid (m_axis_context_tvalid),
.m_in_0_context_tready (m_axis_context_tready),
.s_out_0_payload_tdata (axis_from_fft_tdata ),
.s_out_0_payload_tkeep ({1*NIPC{1'b1}} ),
.s_out_0_payload_tlast (axis_from_fft_tlast ),
.s_out_0_payload_tvalid (axis_from_fft_tvalid ),
.s_out_0_payload_tready (axis_from_fft_tready ),
.s_out_0_context_tdata (s_axis_context_tdata ),
.s_out_0_context_tuser (s_axis_context_tuser ),
.s_out_0_context_tlast (s_axis_context_tlast ),
.s_out_0_context_tvalid (s_axis_context_tvalid),
.s_out_0_context_tready (s_axis_context_tready)
);
// The input packets are the same configuration as the output packets, so
@@ -233,7 +191,6 @@ module rfnoc_block_fft #(
wire [ 8-1:0] set_addr;
wire [32-1:0] set_data;
wire set_has_time;
wire set_stb;
wire [ 8-1:0] rb_addr;
reg [64-1:0] rb_data;
@@ -247,15 +204,15 @@ module rfnoc_block_fft #(
.s_ctrlport_req_rd (ctrlport_req_rd),
.s_ctrlport_req_addr (ctrlport_req_addr),
.s_ctrlport_req_data (ctrlport_req_data),
.s_ctrlport_req_has_time (ctrlport_req_has_time),
.s_ctrlport_req_time (ctrlport_req_time),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (ctrlport_resp_ack),
.s_ctrlport_resp_data (ctrlport_resp_data),
.set_data (set_data),
.set_addr (set_addr),
.set_stb (set_stb),
.set_time (),
.set_has_time (set_has_time),
.set_has_time (),
.rb_stb (1'b1),
.rb_addr (rb_addr),
.rb_data (rb_data));
@@ -28,6 +28,7 @@ module rfnoc_block_fft_tb();
localparam int STALL_PROB = 25; // BFM stall probability
// Block configuration
localparam int NOC_ID = 32'hFF70_0000;
localparam int CHDR_W = 64;
localparam int THIS_PORTID = 'h123;
localparam int MTU = 10;
@@ -222,7 +223,7 @@ module rfnoc_block_fft_tb();
//-------------------------------------------------------------------------
test.start_test("Verify Block Info", 2us);
`ASSERT_ERROR(blk_ctrl.get_noc_id() == DUT.NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_noc_id() == NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_i() == NUM_PORTS, "Incorrect NUM_DATA_I Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_o() == NUM_PORTS, "Incorrect NUM_DATA_O Value");
`ASSERT_ERROR(blk_ctrl.get_mtu() == MTU, "Incorrect MTU Value");
@@ -1,134 +1,121 @@
//
// Copyright 2019 Ettus Research, A National Instruments Company
// Copyright 2019 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: noc_shell_fir_filter
//
// Description: A NoC Shell for RFNoC. This should eventually be replaced
// by an auto-generated NoC Shell.
// Description:
//
// This is a tool-generated NoC-shell for the fir_filter block.
// See the RFNoC specification for more information about NoC shells.
//
// Parameters:
//
// THIS_PORTID : Control crossbar port to which this block is connected
// CHDR_W : AXIS-CHDR data bus width
// MTU : Maximum transmission unit (i.e., maximum packet size in
//
`default_nettype none
module noc_shell_fir_filter #(
parameter [31:0] NOC_ID = 32 'h0,
parameter [ 9:0] THIS_PORTID = 10 'd0,
parameter CHDR_W = 64,
parameter [ 0:0] CTRLPORT_SLV_EN = 1,
parameter [ 0:0] CTRLPORT_MST_EN = 1,
parameter SYNC_CLKS = 0,
parameter [ 5:0] NUM_DATA_I = 1,
parameter [ 5:0] NUM_DATA_O = 1,
parameter ITEM_W = 32,
parameter NIPC = 2,
parameter PYLD_FIFO_SIZE = 5,
parameter CTXT_FIFO_SIZE = 5,
parameter MTU = 10
parameter [9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [5:0] MTU = 10,
parameter NUM_PORTS = 1,
parameter COEFF_WIDTH = 16,
parameter NUM_COEFFS = 41,
parameter COEFFS_VEC = { 16'h7FFF, {640{1'b0}} },
parameter RELOADABLE_COEFFS = 1,
parameter SYMMETRIC_COEFFS = 0,
parameter SKIP_ZERO_COEFFS = 0,
parameter USE_EMBEDDED_REGS_COEFFS = 1
) (
//---------------------------------------------------------------------------
//---------------------
// Framework Interface
//---------------------------------------------------------------------------
//---------------------
// RFNoC Framework Clocks
input wire rfnoc_chdr_clk,
input wire rfnoc_ctrl_clk,
input wire ce_clk,
// NoC Shell Generated Resets
output wire rfnoc_chdr_rst,
output wire rfnoc_ctrl_rst,
output wire ce_rst,
// RFNoC Framework Clocks and Resets
input wire rfnoc_chdr_clk,
output wire rfnoc_chdr_rst,
input wire rfnoc_ctrl_clk,
output wire rfnoc_ctrl_rst,
// RFNoC Backend Interface
input wire [ 511:0] rfnoc_core_config,
output wire [ 511:0] rfnoc_core_status,
// CHDR Input Ports (from framework)
input wire [(CHDR_W*NUM_DATA_I)-1:0] s_rfnoc_chdr_tdata,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tlast,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tvalid,
output wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tready,
// CHDR Output Ports (to framework)
output wire [(CHDR_W*NUM_DATA_O)-1:0] m_rfnoc_chdr_tdata,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tlast,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tvalid,
input wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tready,
// AXIS-Ctrl Input Port (from framework)
input wire [ 31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Output Port (to framework)
output wire [ 31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
input wire [511:0] rfnoc_core_config,
output wire [511:0] rfnoc_core_status,
//---------------------------------------------------------------------------
// Client Control Port Interface
//---------------------------------------------------------------------------
// AXIS-CHDR Input Ports (from framework)
input wire [(0+NUM_PORTS)*CHDR_W-1:0] s_rfnoc_chdr_tdata,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tlast,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tvalid,
output wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tready,
// AXIS-CHDR Output Ports (to framework)
output wire [(0+NUM_PORTS)*CHDR_W-1:0] m_rfnoc_chdr_tdata,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tlast,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tvalid,
input wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tready,
// Clock
input wire ctrlport_clk,
input wire ctrlport_rst,
// Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire [ 3:0] m_ctrlport_req_byte_en,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [ 1:0] m_ctrlport_resp_status,
input wire [31:0] m_ctrlport_resp_data,
// Slave
input wire s_ctrlport_req_wr,
input wire s_ctrlport_req_rd,
input wire [19:0] s_ctrlport_req_addr,
input wire [ 9:0] s_ctrlport_req_portid,
input wire [15:0] s_ctrlport_req_rem_epid,
input wire [ 9:0] s_ctrlport_req_rem_portid,
input wire [31:0] s_ctrlport_req_data,
input wire [ 3:0] s_ctrlport_req_byte_en,
input wire s_ctrlport_req_has_time,
input wire [63:0] s_ctrlport_req_time,
output wire s_ctrlport_resp_ack,
output wire [ 1:0] s_ctrlport_resp_status,
output wire [31:0] s_ctrlport_resp_data,
// AXIS-Ctrl Control Input Port (from framework)
input wire [31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Control Output Port (to framework)
output wire [31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
//---------------------------------------------------------------------------
// Client Data Interface
//---------------------------------------------------------------------------
//---------------------
// Client Interface
//---------------------
// Clock
input wire axis_data_clk,
input wire axis_data_rst,
// CtrlPort Clock and Reset
output wire ctrlport_clk,
output wire ctrlport_rst,
// CtrlPort Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
input wire m_ctrlport_resp_ack,
input wire [31:0] m_ctrlport_resp_data,
// Output data stream (to user logic)
output wire [(NUM_DATA_I*ITEM_W*NIPC)-1:0] m_axis_payload_tdata,
output wire [ (NUM_DATA_I*NIPC)-1:0] m_axis_payload_tkeep,
output wire [ NUM_DATA_I-1:0] m_axis_payload_tlast,
output wire [ NUM_DATA_I-1:0] m_axis_payload_tvalid,
input wire [ NUM_DATA_I-1:0] m_axis_payload_tready,
// Input data stream (from user logic)
input wire [(NUM_DATA_O*ITEM_W*NIPC)-1:0] s_axis_payload_tdata,
input wire [ (NUM_DATA_O*NIPC)-1:0] s_axis_payload_tkeep,
input wire [ NUM_DATA_O-1:0] s_axis_payload_tlast,
input wire [ NUM_DATA_O-1:0] s_axis_payload_tvalid,
output wire [ NUM_DATA_O-1:0] s_axis_payload_tready,
// Output context stream (to user logic)
output wire [(NUM_DATA_I*CHDR_W)-1:0] m_axis_context_tdata,
output wire [ (4*NUM_DATA_I)-1:0] m_axis_context_tuser,
output wire [ NUM_DATA_I-1:0] m_axis_context_tlast,
output wire [ NUM_DATA_I-1:0] m_axis_context_tvalid,
input wire [ NUM_DATA_I-1:0] m_axis_context_tready,
// Input context stream (from user logic)
input wire [(NUM_DATA_O*CHDR_W)-1:0] s_axis_context_tdata,
input wire [ (4*NUM_DATA_O)-1:0] s_axis_context_tuser,
input wire [ NUM_DATA_O-1:0] s_axis_context_tlast,
input wire [ NUM_DATA_O-1:0] s_axis_context_tvalid,
output wire [ NUM_DATA_O-1:0] s_axis_context_tready
// AXI-Stream Payload Context Clock and Reset
output wire axis_data_clk,
output wire axis_data_rst,
// Payload Stream to User Logic: in
output wire [NUM_PORTS*32*1-1:0] m_in_payload_tdata,
output wire [NUM_PORTS*1-1:0] m_in_payload_tkeep,
output wire [NUM_PORTS-1:0] m_in_payload_tlast,
output wire [NUM_PORTS-1:0] m_in_payload_tvalid,
input wire [NUM_PORTS-1:0] m_in_payload_tready,
// Context Stream to User Logic: in
output wire [NUM_PORTS*CHDR_W-1:0] m_in_context_tdata,
output wire [NUM_PORTS*4-1:0] m_in_context_tuser,
output wire [NUM_PORTS-1:0] m_in_context_tlast,
output wire [NUM_PORTS-1:0] m_in_context_tvalid,
input wire [NUM_PORTS-1:0] m_in_context_tready,
// Payload Stream to User Logic: out
input wire [NUM_PORTS*32*1-1:0] s_out_payload_tdata,
input wire [NUM_PORTS*1-1:0] s_out_payload_tkeep,
input wire [NUM_PORTS-1:0] s_out_payload_tlast,
input wire [NUM_PORTS-1:0] s_out_payload_tvalid,
output wire [NUM_PORTS-1:0] s_out_payload_tready,
// Context Stream to User Logic: out
input wire [NUM_PORTS*CHDR_W-1:0] s_out_context_tdata,
input wire [NUM_PORTS*4-1:0] s_out_context_tuser,
input wire [NUM_PORTS-1:0] s_out_context_tlast,
input wire [NUM_PORTS-1:0] s_out_context_tvalid,
output wire [NUM_PORTS-1:0] s_out_context_tready
);
localparam CTRL_FIFO_SIZE = 5;
//---------------------------------------------------------------------------
// Backend Interface
@@ -144,18 +131,18 @@ module noc_shell_fir_filter #(
wire [63:0] data_o_flush_done;
backend_iface #(
.NOC_ID (NOC_ID),
.NUM_DATA_I (NUM_DATA_I),
.NUM_DATA_O (NUM_DATA_O),
.CTRL_FIFOSIZE (CTRL_FIFO_SIZE),
.NOC_ID (32'hF1120000),
.NUM_DATA_I (0+NUM_PORTS),
.NUM_DATA_O (0+NUM_PORTS),
.CTRL_FIFOSIZE ($clog2(32)),
.MTU (MTU)
) backend_iface_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.data_i_flush_en (data_i_flush_en),
.data_i_flush_timeout (data_i_flush_timeout),
.data_i_flush_active (data_i_flush_active),
@@ -166,52 +153,71 @@ module noc_shell_fir_filter #(
.data_o_flush_done (data_o_flush_done)
);
//---------------------------------------------------------------------------
// Reset Generation
//---------------------------------------------------------------------------
wire ce_rst_pulse;
pulse_synchronizer #(.MODE ("POSEDGE")) pulse_synchronizer_ce (
.clk_a(rfnoc_chdr_clk), .rst_a(1'b0), .pulse_a (rfnoc_chdr_rst), .busy_a (),
.clk_b(ce_clk), .pulse_b (ce_rst_pulse)
);
pulse_stretch_min #(.LENGTH(32)) pulse_stretch_min_ce (
.clk(ce_clk), .rst(1'b0),
.pulse_in(ce_rst_pulse), .pulse_out(ce_rst)
);
//---------------------------------------------------------------------------
// Control Path
//---------------------------------------------------------------------------
assign ctrlport_clk = ce_clk;
assign ctrlport_rst = ce_rst;
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID ),
.SYNC_CLKS (0 ),
.AXIS_CTRL_MST_EN (CTRLPORT_SLV_EN),
.AXIS_CTRL_SLV_EN (CTRLPORT_MST_EN),
.SLAVE_FIFO_SIZE (CTRL_FIFO_SIZE )
) ctrlport_ep_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst ),
.ctrlport_clk (ctrlport_clk ),
.ctrlport_rst (ctrlport_rst ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.m_ctrlport_req_wr (m_ctrlport_req_wr ),
.m_ctrlport_req_rd (m_ctrlport_req_rd ),
.m_ctrlport_req_addr (m_ctrlport_req_addr ),
.m_ctrlport_req_data (m_ctrlport_req_data ),
.m_ctrlport_req_byte_en (m_ctrlport_req_byte_en ),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time ),
.m_ctrlport_req_time (m_ctrlport_req_time ),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack ),
.m_ctrlport_resp_status (m_ctrlport_resp_status ),
.m_ctrlport_resp_data (m_ctrlport_resp_data ),
.s_ctrlport_req_wr (s_ctrlport_req_wr ),
.s_ctrlport_req_rd (s_ctrlport_req_rd ),
.s_ctrlport_req_addr (s_ctrlport_req_addr ),
.s_ctrlport_req_portid (s_ctrlport_req_portid ),
.s_ctrlport_req_rem_epid (s_ctrlport_req_rem_epid ),
.s_ctrlport_req_rem_portid(s_ctrlport_req_rem_portid),
.s_ctrlport_req_data (s_ctrlport_req_data ),
.s_ctrlport_req_byte_en (s_ctrlport_req_byte_en ),
.s_ctrlport_req_has_time (s_ctrlport_req_has_time ),
.s_ctrlport_req_time (s_ctrlport_req_time ),
.s_ctrlport_resp_ack (s_ctrlport_resp_ack ),
.s_ctrlport_resp_status (s_ctrlport_resp_status ),
.s_ctrlport_resp_data (s_ctrlport_resp_data )
.THIS_PORTID (THIS_PORTID),
.SYNC_CLKS (0),
.AXIS_CTRL_MST_EN (0),
.AXIS_CTRL_SLV_EN (1),
.SLAVE_FIFO_SIZE ($clog2(32))
) ctrlport_endpoint_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.ctrlport_clk (ctrlport_clk),
.ctrlport_rst (ctrlport_rst),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
.m_ctrlport_req_addr (m_ctrlport_req_addr),
.m_ctrlport_req_data (m_ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (),
.m_ctrlport_req_time (),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack),
.m_ctrlport_resp_status (2'b0),
.m_ctrlport_resp_data (m_ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'hF),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data ()
);
//---------------------------------------------------------------------------
@@ -219,79 +225,91 @@ module noc_shell_fir_filter #(
//---------------------------------------------------------------------------
genvar i;
generate
for (i = 0; i < NUM_DATA_I; i = i + 1) begin: chdr_to_data
chdr_to_axis_pyld_ctxt #(
.CHDR_W (CHDR_W ),
.ITEM_W (ITEM_W ),
.NIPC (NIPC ),
.SYNC_CLKS (SYNC_CLKS ),
.CONTEXT_FIFO_SIZE (CTXT_FIFO_SIZE),
.PAYLOAD_FIFO_SIZE (PYLD_FIFO_SIZE),
.CONTEXT_PREFETCH_EN (1 )
) chdr_to_axis_pyld_ctxt_i (
.axis_chdr_clk (rfnoc_chdr_clk ),
.axis_chdr_rst (rfnoc_chdr_rst ),
.axis_data_clk (axis_data_clk ),
.axis_data_rst (axis_data_rst ),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata [(i*CHDR_W)+:CHDR_W] ),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast [i] ),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid [i] ),
.s_axis_chdr_tready (s_rfnoc_chdr_tready [i] ),
.m_axis_payload_tdata (m_axis_payload_tdata [(i*ITEM_W*NIPC)+:(ITEM_W*NIPC)]),
.m_axis_payload_tkeep (m_axis_payload_tkeep [(i*NIPC)+:NIPC] ),
.m_axis_payload_tlast (m_axis_payload_tlast [i] ),
.m_axis_payload_tvalid(m_axis_payload_tvalid[i] ),
.m_axis_payload_tready(m_axis_payload_tready[i] ),
.m_axis_context_tdata (m_axis_context_tdata [(i*CHDR_W)+:(CHDR_W)] ),
.m_axis_context_tuser (m_axis_context_tuser [(i*4)+:4] ),
.m_axis_context_tlast (m_axis_context_tlast [i] ),
.m_axis_context_tvalid(m_axis_context_tvalid[i] ),
.m_axis_context_tready(m_axis_context_tready[i] ),
.flush_en (data_i_flush_en ),
.flush_timeout (data_i_flush_timeout ),
.flush_active (data_i_flush_active [i] ),
.flush_done (data_i_flush_done [i] )
);
end
assign axis_data_clk = ce_clk;
assign axis_data_rst = ce_rst;
for (i = 0; i < NUM_DATA_O; i = i + 1) begin: data_to_chdr
axis_pyld_ctxt_to_chdr #(
.CHDR_W (CHDR_W ),
.ITEM_W (ITEM_W ),
.NIPC (NIPC ),
.SYNC_CLKS (SYNC_CLKS ),
.CONTEXT_FIFO_SIZE (CTXT_FIFO_SIZE),
.PAYLOAD_FIFO_SIZE (PYLD_FIFO_SIZE),
.CONTEXT_PREFETCH_EN (1 ),
.MTU (MTU )
) axis_pyld_ctxt_to_chdr_i (
.axis_chdr_clk (rfnoc_chdr_clk ),
.axis_chdr_rst (rfnoc_chdr_rst ),
.axis_data_clk (axis_data_clk ),
.axis_data_rst (axis_data_rst ),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata [(i*CHDR_W)+:CHDR_W] ),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast [i] ),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid [i] ),
.m_axis_chdr_tready (m_rfnoc_chdr_tready [i] ),
.s_axis_payload_tdata (s_axis_payload_tdata [(i*ITEM_W*NIPC)+:(ITEM_W*NIPC)]),
.s_axis_payload_tkeep (s_axis_payload_tkeep [(i*NIPC)+:NIPC] ),
.s_axis_payload_tlast (s_axis_payload_tlast [i] ),
.s_axis_payload_tvalid(s_axis_payload_tvalid[i] ),
.s_axis_payload_tready(s_axis_payload_tready[i] ),
.s_axis_context_tdata (s_axis_context_tdata [(i*CHDR_W)+:(CHDR_W)] ),
.s_axis_context_tuser (s_axis_context_tuser [(i*4)+:4] ),
.s_axis_context_tlast (s_axis_context_tlast [i] ),
.s_axis_context_tvalid(s_axis_context_tvalid[i] ),
.s_axis_context_tready(s_axis_context_tready[i] ),
.framer_errors ( ),
.flush_en (data_o_flush_en ),
.flush_timeout (data_o_flush_timeout ),
.flush_active (data_o_flush_active [i] ),
.flush_done (data_o_flush_done [i] )
);
end
endgenerate
//---------------------
// Input Data Paths
//---------------------
endmodule
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_input_in
chdr_to_axis_pyld_ctxt #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(32)),
.CONTEXT_PREFETCH_EN (1)
) chdr_to_axis_pyld_ctxt_in_in (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[((0+i)*CHDR_W)+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[0+i]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[0+i]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[0+i]),
.m_axis_payload_tdata (m_in_payload_tdata[(32*1)*i+:(32*1)]),
.m_axis_payload_tkeep (m_in_payload_tkeep[1*i+:1]),
.m_axis_payload_tlast (m_in_payload_tlast[i]),
.m_axis_payload_tvalid (m_in_payload_tvalid[i]),
.m_axis_payload_tready (m_in_payload_tready[i]),
.m_axis_context_tdata (m_in_context_tdata[CHDR_W*i+:CHDR_W]),
.m_axis_context_tuser (m_in_context_tuser[4*i+:4]),
.m_axis_context_tlast (m_in_context_tlast[i]),
.m_axis_context_tvalid (m_in_context_tvalid[i]),
.m_axis_context_tready (m_in_context_tready[i]),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[0+i]),
.flush_done (data_i_flush_done[0+i])
);
end
//---------------------
// Output Data Paths
//---------------------
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_output_out
axis_pyld_ctxt_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (1),
.SYNC_CLKS (0),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(32)),
.MTU (MTU),
.CONTEXT_PREFETCH_EN (1)
) axis_pyld_ctxt_to_chdr_out_out (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(0+i)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[0+i]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[0+i]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[0+i]),
.s_axis_payload_tdata (s_out_payload_tdata[(32*1)*i+:(32*1)]),
.s_axis_payload_tkeep (s_out_payload_tkeep[1*i+:1]),
.s_axis_payload_tlast (s_out_payload_tlast[i]),
.s_axis_payload_tvalid (s_out_payload_tvalid[i]),
.s_axis_payload_tready (s_out_payload_tready[i]),
.s_axis_context_tdata (s_out_context_tdata[CHDR_W*i+:CHDR_W]),
.s_axis_context_tuser (s_out_context_tuser[4*i+:4]),
.s_axis_context_tlast (s_out_context_tlast[i]),
.s_axis_context_tvalid (s_out_context_tvalid[i]),
.s_axis_context_tready (s_out_context_tready[i]),
.framer_errors (),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[0+i]),
.flush_done (data_o_flush_done[0+i])
);
end
endmodule // noc_shell_fir_filter
`default_nettype wire
@@ -127,7 +127,6 @@ module rfnoc_block_fir_filter #(
wire [19:0] ctrlport_reg_req_addr;
wire [31:0] ctrlport_reg_req_data;
wire ctrlport_reg_resp_ack;
wire [ 1:0] ctrlport_reg_resp_status;
wire [31:0] ctrlport_reg_resp_data;
wire [(NUM_PORTS*ITEM_W*NIPC)-1:0] axis_to_fir_tdata;
@@ -152,104 +151,68 @@ module rfnoc_block_fir_filter #(
wire [ NUM_PORTS-1:0] s_axis_context_tvalid;
wire [ NUM_PORTS-1:0] s_axis_context_tready;
wire rfnoc_chdr_rst;
wire ce_rst;
localparam NOC_ID = 32'hF112_0000;
// Cross the CHDR reset to the ddc_clk domain
synchronizer ce_rst_sync_i (
.clk (ce_clk),
.rst (1'b0),
.in (rfnoc_chdr_rst),
.out (ce_rst)
);
noc_shell_fir_filter #(
.NOC_ID (NOC_ID),
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.CTRLPORT_SLV_EN (0),
.CTRLPORT_MST_EN (1),
.NUM_DATA_I (NUM_PORTS),
.NUM_DATA_O (NUM_PORTS),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.PYLD_FIFO_SIZE (5),
.CTXT_FIFO_SIZE (5),
.MTU (MTU)
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.NUM_PORTS (NUM_PORTS),
.MTU (MTU)
) noc_shell_fir_filter_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (ce_clk),
.ctrlport_rst (ce_rst),
.m_ctrlport_req_wr (ctrlport_reg_req_wr),
.m_ctrlport_req_rd (ctrlport_reg_req_rd),
.m_ctrlport_req_addr (ctrlport_reg_req_addr),
.m_ctrlport_req_data (ctrlport_reg_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (),
.m_ctrlport_req_time (),
.m_ctrlport_resp_ack (ctrlport_reg_resp_ack),
.m_ctrlport_resp_status (ctrlport_reg_resp_status),
.m_ctrlport_resp_data (ctrlport_reg_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'hF),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data (),
.axis_data_clk (ce_clk),
.axis_data_rst (ce_rst),
.m_axis_payload_tdata (axis_to_fir_tdata),
.m_axis_payload_tkeep (),
.m_axis_payload_tlast (axis_to_fir_tlast),
.m_axis_payload_tvalid (axis_to_fir_tvalid),
.m_axis_payload_tready (axis_to_fir_tready),
.s_axis_payload_tdata (axis_from_fir_tdata),
.s_axis_payload_tkeep ({NUM_PORTS*NIPC{1'b1}}),
.s_axis_payload_tlast (axis_from_fir_tlast),
.s_axis_payload_tvalid (axis_from_fir_tvalid),
.s_axis_payload_tready (axis_from_fir_tready),
.m_axis_context_tdata (m_axis_context_tdata),
.m_axis_context_tuser (m_axis_context_tuser),
.m_axis_context_tlast (m_axis_context_tlast),
.m_axis_context_tvalid (m_axis_context_tvalid),
.m_axis_context_tready (m_axis_context_tready),
.s_axis_context_tdata (s_axis_context_tdata),
.s_axis_context_tuser (s_axis_context_tuser),
.s_axis_context_tlast (s_axis_context_tlast),
.s_axis_context_tvalid (s_axis_context_tvalid),
.s_axis_context_tready (s_axis_context_tready)
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.ce_clk (ce_clk),
.rfnoc_chdr_rst (),
.rfnoc_ctrl_rst (),
.ce_rst (ce_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (),
.ctrlport_rst (),
.m_ctrlport_req_wr (ctrlport_reg_req_wr),
.m_ctrlport_req_rd (ctrlport_reg_req_rd),
.m_ctrlport_req_addr (ctrlport_reg_req_addr),
.m_ctrlport_req_data (ctrlport_reg_req_data),
.m_ctrlport_resp_ack (ctrlport_reg_resp_ack),
.m_ctrlport_resp_data (ctrlport_reg_resp_data),
.axis_data_clk (),
.axis_data_rst (),
.m_in_payload_tdata (axis_to_fir_tdata),
.m_in_payload_tkeep (),
.m_in_payload_tlast (axis_to_fir_tlast),
.m_in_payload_tvalid (axis_to_fir_tvalid),
.m_in_payload_tready (axis_to_fir_tready),
.m_in_context_tdata (m_axis_context_tdata),
.m_in_context_tuser (m_axis_context_tuser),
.m_in_context_tlast (m_axis_context_tlast),
.m_in_context_tvalid (m_axis_context_tvalid),
.m_in_context_tready (m_axis_context_tready),
.s_out_payload_tdata (axis_from_fir_tdata),
.s_out_payload_tkeep ({NUM_PORTS*NIPC{1'b1}}),
.s_out_payload_tlast (axis_from_fir_tlast),
.s_out_payload_tvalid (axis_from_fir_tvalid),
.s_out_payload_tready (axis_from_fir_tready),
.s_out_context_tdata (s_axis_context_tdata),
.s_out_context_tuser (s_axis_context_tuser),
.s_out_context_tlast (s_axis_context_tlast),
.s_out_context_tvalid (s_axis_context_tvalid),
.s_out_context_tready (s_axis_context_tready)
);
@@ -290,7 +253,7 @@ module rfnoc_block_fir_filter #(
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (ctrlport_reg_resp_ack),
.s_ctrlport_resp_status (ctrlport_reg_resp_status),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data (ctrlport_reg_resp_data),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
@@ -27,6 +27,8 @@ module rfnoc_block_fir_filter_tb #(
// Local Parameters
//---------------------------------------------------------------------------
localparam int NOC_ID = 32'hF112_0000;
// Simulation parameters
localparam real CHDR_CLK_PER = 6.0; // 166 MHz
localparam real CE_CLK_PER = 5.0; // 200 MHz
@@ -218,7 +220,7 @@ module rfnoc_block_fir_filter_tb #(
//-------------------------------------------------------------------------
test.start_test("Verify Block Info", 2us);
`ASSERT_ERROR(blk_ctrl.get_noc_id() == rfnoc_block_fir_filter_i.NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_noc_id() == NOC_ID, "Incorrect NOC_ID Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_i() == NUM_PORTS, "Incorrect NUM_DATA_I Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_o() == NUM_PORTS, "Incorrect NUM_DATA_O Value");
`ASSERT_ERROR(blk_ctrl.get_mtu() == MTU, "Incorrect MTU Value");
@@ -8,5 +8,6 @@
# RFNoC Utility Sources
##################################################
RFNOC_OOT_SRCS += $(abspath $(addprefix $(BASE_DIR)/../lib/rfnoc/blocks/rfnoc_block_null_src_sink/, \
noc_shell_null_src_sink.v \
rfnoc_block_null_src_sink.v \
))
@@ -0,0 +1,377 @@
//
// Copyright 2019 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: noc_shell_null_src_sink
//
// Description:
//
// This is a tool-generated NoC-shell for the null_src_sink block.
// See the RFNoC specification for more information about NoC shells.
//
// Parameters:
//
// THIS_PORTID : Control crossbar port to which this block is connected
// CHDR_W : AXIS-CHDR data bus width
// MTU : Maximum transmission unit (i.e., maximum packet size in
//
`default_nettype none
module noc_shell_null_src_sink #(
parameter [9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [5:0] MTU = 10
) (
//---------------------
// Framework Interface
//---------------------
// RFNoC Framework Clocks
input wire rfnoc_chdr_clk,
input wire rfnoc_ctrl_clk,
// NoC Shell Generated Resets
output wire rfnoc_chdr_rst,
output wire rfnoc_ctrl_rst,
// RFNoC Backend Interface
input wire [511:0] rfnoc_core_config,
output wire [511:0] rfnoc_core_status,
// AXIS-CHDR Input Ports (from framework)
input wire [(2)*CHDR_W-1:0] s_rfnoc_chdr_tdata,
input wire [(2)-1:0] s_rfnoc_chdr_tlast,
input wire [(2)-1:0] s_rfnoc_chdr_tvalid,
output wire [(2)-1:0] s_rfnoc_chdr_tready,
// AXIS-CHDR Output Ports (to framework)
output wire [(2)*CHDR_W-1:0] m_rfnoc_chdr_tdata,
output wire [(2)-1:0] m_rfnoc_chdr_tlast,
output wire [(2)-1:0] m_rfnoc_chdr_tvalid,
input wire [(2)-1:0] m_rfnoc_chdr_tready,
// AXIS-Ctrl Control Input Port (from framework)
input wire [31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Control Output Port (to framework)
output wire [31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
//---------------------
// Client Interface
//---------------------
// CtrlPort Clock and Reset
output wire ctrlport_clk,
output wire ctrlport_rst,
// CtrlPort Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
input wire m_ctrlport_resp_ack,
input wire [31:0] m_ctrlport_resp_data,
// AXI-Stream Payload Context Clock and Reset
output wire axis_data_clk,
output wire axis_data_rst,
// Payload Stream to User Logic: sink
output wire [32*2-1:0] m_sink_payload_tdata,
output wire [2-1:0] m_sink_payload_tkeep,
output wire m_sink_payload_tlast,
output wire m_sink_payload_tvalid,
input wire m_sink_payload_tready,
// Context Stream to User Logic: sink
output wire [CHDR_W-1:0] m_sink_context_tdata,
output wire [3:0] m_sink_context_tuser,
output wire m_sink_context_tlast,
output wire m_sink_context_tvalid,
input wire m_sink_context_tready,
// Payload Stream to User Logic: loop
output wire [32*2-1:0] m_loop_payload_tdata,
output wire [2-1:0] m_loop_payload_tkeep,
output wire m_loop_payload_tlast,
output wire m_loop_payload_tvalid,
input wire m_loop_payload_tready,
// Context Stream to User Logic: loop
output wire [CHDR_W-1:0] m_loop_context_tdata,
output wire [3:0] m_loop_context_tuser,
output wire m_loop_context_tlast,
output wire m_loop_context_tvalid,
input wire m_loop_context_tready,
// Payload Stream from User Logic: source
input wire [32*2-1:0] s_source_payload_tdata,
input wire [1:0] s_source_payload_tkeep,
input wire s_source_payload_tlast,
input wire s_source_payload_tvalid,
output wire s_source_payload_tready,
// Context Stream from User Logic: source
input wire [CHDR_W-1:0] s_source_context_tdata,
input wire [3:0] s_source_context_tuser,
input wire s_source_context_tlast,
input wire s_source_context_tvalid,
output wire s_source_context_tready,
// Payload Stream from User Logic: loop
input wire [32*2-1:0] s_loop_payload_tdata,
input wire [1:0] s_loop_payload_tkeep,
input wire s_loop_payload_tlast,
input wire s_loop_payload_tvalid,
output wire s_loop_payload_tready,
// Context Stream from User Logic: loop
input wire [CHDR_W-1:0] s_loop_context_tdata,
input wire [3:0] s_loop_context_tuser,
input wire s_loop_context_tlast,
input wire s_loop_context_tvalid,
output wire s_loop_context_tready
);
//---------------------------------------------------------------------------
// Backend Interface
//---------------------------------------------------------------------------
wire data_i_flush_en;
wire [31:0] data_i_flush_timeout;
wire [63:0] data_i_flush_active;
wire [63:0] data_i_flush_done;
wire data_o_flush_en;
wire [31:0] data_o_flush_timeout;
wire [63:0] data_o_flush_active;
wire [63:0] data_o_flush_done;
backend_iface #(
.NOC_ID (32'h00000001),
.NUM_DATA_I (2),
.NUM_DATA_O (2),
.CTRL_FIFOSIZE ($clog2(32)),
.MTU (MTU)
) backend_iface_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.data_i_flush_en (data_i_flush_en),
.data_i_flush_timeout (data_i_flush_timeout),
.data_i_flush_active (data_i_flush_active),
.data_i_flush_done (data_i_flush_done),
.data_o_flush_en (data_o_flush_en),
.data_o_flush_timeout (data_o_flush_timeout),
.data_o_flush_active (data_o_flush_active),
.data_o_flush_done (data_o_flush_done)
);
//---------------------------------------------------------------------------
// Control Path
//---------------------------------------------------------------------------
assign ctrlport_clk = rfnoc_chdr_clk;
assign ctrlport_rst = rfnoc_chdr_rst;
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID),
.SYNC_CLKS (0),
.AXIS_CTRL_MST_EN (0),
.AXIS_CTRL_SLV_EN (1),
.SLAVE_FIFO_SIZE ($clog2(32))
) ctrlport_endpoint_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.ctrlport_clk (ctrlport_clk),
.ctrlport_rst (ctrlport_rst),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
.m_ctrlport_req_addr (m_ctrlport_req_addr),
.m_ctrlport_req_data (m_ctrlport_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_has_time (),
.m_ctrlport_req_time (),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack),
.m_ctrlport_resp_status (2'b0),
.m_ctrlport_resp_data (m_ctrlport_resp_data),
.s_ctrlport_req_wr (1'b0),
.s_ctrlport_req_rd (1'b0),
.s_ctrlport_req_addr (20'b0),
.s_ctrlport_req_portid (10'b0),
.s_ctrlport_req_rem_epid (16'b0),
.s_ctrlport_req_rem_portid (10'b0),
.s_ctrlport_req_data (32'b0),
.s_ctrlport_req_byte_en (4'hF),
.s_ctrlport_req_has_time (1'b0),
.s_ctrlport_req_time (64'b0),
.s_ctrlport_resp_ack (),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data ()
);
//---------------------------------------------------------------------------
// Data Path
//---------------------------------------------------------------------------
genvar i;
assign axis_data_clk = rfnoc_chdr_clk;
assign axis_data_rst = rfnoc_chdr_rst;
//---------------------
// Input Data Paths
//---------------------
chdr_to_axis_pyld_ctxt #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (2),
.SYNC_CLKS (1),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(2)),
.CONTEXT_PREFETCH_EN (1)
) chdr_to_axis_pyld_ctxt_in_sink (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[(0)*CHDR_W+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[0]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[0]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[0]),
.m_axis_payload_tdata (m_sink_payload_tdata),
.m_axis_payload_tkeep (m_sink_payload_tkeep),
.m_axis_payload_tlast (m_sink_payload_tlast),
.m_axis_payload_tvalid (m_sink_payload_tvalid),
.m_axis_payload_tready (m_sink_payload_tready),
.m_axis_context_tdata (m_sink_context_tdata),
.m_axis_context_tuser (m_sink_context_tuser),
.m_axis_context_tlast (m_sink_context_tlast),
.m_axis_context_tvalid (m_sink_context_tvalid),
.m_axis_context_tready (m_sink_context_tready),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[0]),
.flush_done (data_i_flush_done[0])
);
chdr_to_axis_pyld_ctxt #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (2),
.SYNC_CLKS (1),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(2)),
.CONTEXT_PREFETCH_EN (1)
) chdr_to_axis_pyld_ctxt_in_loop (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[(1)*CHDR_W+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[1]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[1]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[1]),
.m_axis_payload_tdata (m_loop_payload_tdata),
.m_axis_payload_tkeep (m_loop_payload_tkeep),
.m_axis_payload_tlast (m_loop_payload_tlast),
.m_axis_payload_tvalid (m_loop_payload_tvalid),
.m_axis_payload_tready (m_loop_payload_tready),
.m_axis_context_tdata (m_loop_context_tdata),
.m_axis_context_tuser (m_loop_context_tuser),
.m_axis_context_tlast (m_loop_context_tlast),
.m_axis_context_tvalid (m_loop_context_tvalid),
.m_axis_context_tready (m_loop_context_tready),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[1]),
.flush_done (data_i_flush_done[1])
);
//---------------------
// Output Data Paths
//---------------------
axis_pyld_ctxt_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (2),
.SYNC_CLKS (1),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(2)),
.MTU (MTU),
.CONTEXT_PREFETCH_EN (1)
) axis_pyld_ctxt_to_chdr_out_source (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(0)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[0]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[0]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[0]),
.s_axis_payload_tdata (s_source_payload_tdata),
.s_axis_payload_tkeep (s_source_payload_tkeep),
.s_axis_payload_tlast (s_source_payload_tlast),
.s_axis_payload_tvalid (s_source_payload_tvalid),
.s_axis_payload_tready (s_source_payload_tready),
.s_axis_context_tdata (s_source_context_tdata),
.s_axis_context_tuser (s_source_context_tuser),
.s_axis_context_tlast (s_source_context_tlast),
.s_axis_context_tvalid (s_source_context_tvalid),
.s_axis_context_tready (s_source_context_tready),
.framer_errors (),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[0]),
.flush_done (data_o_flush_done[0])
);
axis_pyld_ctxt_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (32),
.NIPC (2),
.SYNC_CLKS (1),
.CONTEXT_FIFO_SIZE ($clog2(2)),
.PAYLOAD_FIFO_SIZE ($clog2(2)),
.MTU (MTU),
.CONTEXT_PREFETCH_EN (1)
) axis_pyld_ctxt_to_chdr_out_loop (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(1)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[1]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[1]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[1]),
.s_axis_payload_tdata (s_loop_payload_tdata),
.s_axis_payload_tkeep (s_loop_payload_tkeep),
.s_axis_payload_tlast (s_loop_payload_tlast),
.s_axis_payload_tvalid (s_loop_payload_tvalid),
.s_axis_payload_tready (s_loop_payload_tready),
.s_axis_context_tdata (s_loop_context_tdata),
.s_axis_context_tuser (s_loop_context_tuser),
.s_axis_context_tlast (s_loop_context_tlast),
.s_axis_context_tvalid (s_loop_context_tvalid),
.s_axis_context_tready (s_loop_context_tready),
.framer_errors (),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[1]),
.flush_done (data_o_flush_done[1])
);
endmodule // noc_shell_null_src_sink
`default_nettype wire
@@ -64,7 +64,6 @@ module rfnoc_block_null_src_sink #(
localparam [19:0] REG_LOOP_PKT_CNT_HI = 20'h3C;
wire rfnoc_chdr_rst;
wire rfnoc_ctrl_rst;
wire ctrlport_req_wr;
wire ctrlport_req_rd;
@@ -73,99 +72,97 @@ module rfnoc_block_null_src_sink #(
reg ctrlport_resp_ack;
reg [31:0] ctrlport_resp_data;
wire [(32*NIPC)-1:0] src_pyld_tdata , snk_pyld_tdata , loop_pyld_tdata ;
wire [NIPC-1:0] src_pyld_tkeep , snk_pyld_tkeep , loop_pyld_tkeep ;
wire [(32*NIPC)-1:0] src_pyld_tdata , loop_pyld_tdata ;
wire [NIPC-1:0] src_pyld_tkeep , loop_pyld_tkeep ;
wire src_pyld_tlast , snk_pyld_tlast , loop_pyld_tlast ;
wire src_pyld_tvalid, snk_pyld_tvalid, loop_pyld_tvalid;
wire src_pyld_tready, snk_pyld_tready, loop_pyld_tready;
wire [CHDR_W-1:0] src_ctxt_tdata , snk_ctxt_tdata , loop_ctxt_tdata ;
wire [3:0] src_ctxt_tuser , snk_ctxt_tuser , loop_ctxt_tuser ;
wire src_ctxt_tlast , snk_ctxt_tlast , loop_ctxt_tlast ;
wire src_ctxt_tvalid, snk_ctxt_tvalid, loop_ctxt_tvalid;
wire [CHDR_W-1:0] src_ctxt_tdata , loop_ctxt_tdata ;
wire [3:0] src_ctxt_tuser , loop_ctxt_tuser ;
wire src_ctxt_tlast , loop_ctxt_tlast ;
wire src_ctxt_tvalid, loop_ctxt_tvalid;
wire src_ctxt_tready, snk_ctxt_tready, loop_ctxt_tready;
// NoC Shell
// ---------------------------
noc_shell_generic_ctrlport_pyld_chdr #(
.NOC_ID (32'h0000_0001),
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.CTRL_FIFOSIZE (5),
.CTRLPORT_SLV_EN (0),
.NUM_DATA_I (2),
.NUM_DATA_O (2),
.ITEM_W (32),
.NIPC (NIPC),
.MTU (MTU),
.CTXT_FIFOSIZE (1),
.PYLD_FIFOSIZE (1)
) noc_shell_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk ),
.rfnoc_chdr_rst (rfnoc_chdr_rst ),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst ),
.rfnoc_core_config (rfnoc_core_config ),
.rfnoc_core_status (rfnoc_core_status ),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata ),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast ),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid ),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready ),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata ),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast ),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid ),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.m_ctrlport_req_wr (ctrlport_req_wr ),
.m_ctrlport_req_rd (ctrlport_req_rd ),
.m_ctrlport_req_addr (ctrlport_req_addr ),
.m_ctrlport_req_data (ctrlport_req_data ),
.m_ctrlport_req_byte_en ( ),
.m_ctrlport_req_has_time ( ),
.m_ctrlport_req_time ( ),
.m_ctrlport_resp_ack (ctrlport_resp_ack ),
.m_ctrlport_resp_status (2'd0 ),
.m_ctrlport_resp_data (ctrlport_resp_data ),
.s_ctrlport_req_wr ('h0 ),
.s_ctrlport_req_rd ('h0 ),
.s_ctrlport_req_addr ('h0 ),
.s_ctrlport_req_portid ('h0 ),
.s_ctrlport_req_rem_epid ('h0 ),
.s_ctrlport_req_rem_portid('h0 ),
.s_ctrlport_req_data ('h0 ),
.s_ctrlport_req_byte_en ('h0 ),
.s_ctrlport_req_has_time ('h0 ),
.s_ctrlport_req_time ('h0 ),
.s_ctrlport_resp_ack ( ),
.s_ctrlport_resp_status ( ),
.s_ctrlport_resp_data ( ),
.m_axis_payload_tdata ({loop_pyld_tdata , snk_pyld_tdata }),
.m_axis_payload_tkeep ({loop_pyld_tkeep , snk_pyld_tkeep }),
.m_axis_payload_tlast ({loop_pyld_tlast , snk_pyld_tlast }),
.m_axis_payload_tvalid ({loop_pyld_tvalid, snk_pyld_tvalid}),
.m_axis_payload_tready ({loop_pyld_tready, snk_pyld_tready}),
.m_axis_context_tdata ({loop_ctxt_tdata , snk_ctxt_tdata }),
.m_axis_context_tuser ({loop_ctxt_tuser , snk_ctxt_tuser }),
.m_axis_context_tlast ({loop_ctxt_tlast , snk_ctxt_tlast }),
.m_axis_context_tvalid ({loop_ctxt_tvalid, snk_ctxt_tvalid}),
.m_axis_context_tready ({loop_ctxt_tready, snk_ctxt_tready}),
.s_axis_payload_tdata ({loop_pyld_tdata , src_pyld_tdata }),
.s_axis_payload_tkeep ({loop_pyld_tkeep , src_pyld_tkeep }),
.s_axis_payload_tlast ({loop_pyld_tlast , src_pyld_tlast }),
.s_axis_payload_tvalid ({loop_pyld_tvalid, src_pyld_tvalid}),
.s_axis_payload_tready ({loop_pyld_tready, src_pyld_tready}),
.s_axis_context_tdata ({loop_ctxt_tdata , src_ctxt_tdata }),
.s_axis_context_tuser ({loop_ctxt_tuser , src_ctxt_tuser }),
.s_axis_context_tlast ({loop_ctxt_tlast , src_ctxt_tlast }),
.s_axis_context_tvalid ({loop_ctxt_tvalid, src_ctxt_tvalid}),
.s_axis_context_tready ({loop_ctxt_tready, src_ctxt_tready})
noc_shell_null_src_sink #(
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.MTU (MTU)
) noc_shell_null_src_sink_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_rst (),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
.s_rfnoc_chdr_tlast (s_rfnoc_chdr_tlast),
.s_rfnoc_chdr_tvalid (s_rfnoc_chdr_tvalid),
.s_rfnoc_chdr_tready (s_rfnoc_chdr_tready),
.m_rfnoc_chdr_tdata (m_rfnoc_chdr_tdata),
.m_rfnoc_chdr_tlast (m_rfnoc_chdr_tlast),
.m_rfnoc_chdr_tvalid (m_rfnoc_chdr_tvalid),
.m_rfnoc_chdr_tready (m_rfnoc_chdr_tready),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (),
.ctrlport_rst (),
.m_ctrlport_req_wr (ctrlport_req_wr),
.m_ctrlport_req_rd (ctrlport_req_rd),
.m_ctrlport_req_addr (ctrlport_req_addr),
.m_ctrlport_req_data (ctrlport_req_data),
.m_ctrlport_resp_ack (ctrlport_resp_ack),
.m_ctrlport_resp_data (ctrlport_resp_data),
.axis_data_clk (),
.axis_data_rst (),
.m_sink_payload_tdata (), // Sink data is dropped and not used
.m_sink_payload_tkeep (),
.m_sink_payload_tlast (snk_pyld_tlast),
.m_sink_payload_tvalid (snk_pyld_tvalid),
.m_sink_payload_tready (snk_pyld_tready),
.m_sink_context_tdata (), // Sink context is dropped and not used
.m_sink_context_tuser (),
.m_sink_context_tlast (),
.m_sink_context_tvalid (),
.m_sink_context_tready (snk_ctxt_tready),
.m_loop_payload_tdata (loop_pyld_tdata),
.m_loop_payload_tkeep (loop_pyld_tkeep),
.m_loop_payload_tlast (loop_pyld_tlast),
.m_loop_payload_tvalid (loop_pyld_tvalid),
.m_loop_payload_tready (loop_pyld_tready),
.m_loop_context_tdata (loop_ctxt_tdata),
.m_loop_context_tuser (loop_ctxt_tuser),
.m_loop_context_tlast (loop_ctxt_tlast),
.m_loop_context_tvalid (loop_ctxt_tvalid),
.m_loop_context_tready (loop_ctxt_tready),
.s_source_payload_tdata (src_pyld_tdata),
.s_source_payload_tkeep (src_pyld_tkeep),
.s_source_payload_tlast (src_pyld_tlast),
.s_source_payload_tvalid (src_pyld_tvalid),
.s_source_payload_tready (src_pyld_tready),
.s_source_context_tdata (src_ctxt_tdata),
.s_source_context_tuser (src_ctxt_tuser),
.s_source_context_tlast (src_ctxt_tlast),
.s_source_context_tvalid (src_ctxt_tvalid),
.s_source_context_tready (src_ctxt_tready),
.s_loop_payload_tdata (loop_pyld_tdata),
.s_loop_payload_tkeep (loop_pyld_tkeep),
.s_loop_payload_tlast (loop_pyld_tlast),
.s_loop_payload_tvalid (loop_pyld_tvalid),
.s_loop_payload_tready (loop_pyld_tready),
.s_loop_context_tdata (loop_ctxt_tdata),
.s_loop_context_tuser (loop_ctxt_tuser),
.s_loop_context_tlast (loop_ctxt_tlast),
.s_loop_context_tvalid (loop_ctxt_tvalid),
.s_loop_context_tready (loop_ctxt_tready)
);
// Packet Counters
@@ -20,6 +20,7 @@ module rfnoc_block_null_src_sink_tb;
import PkgRfnocItemUtils::*;
// Parameters
localparam NOC_ID = 32'h0000_0001;
localparam [9:0] THIS_PORTID = 10'h17;
localparam [15:0] THIS_EPID = 16'hDEAD;
localparam int CHDR_W = 64;
@@ -87,7 +88,7 @@ module rfnoc_block_null_src_sink_tb;
// Shared Variables
// ----------------------------------------
timeout_t timeout;
ctrl_word_t rvalue = 0;
ctrl_word_t rvalue;
// Initialize
// ----------------------------------------
@@ -118,7 +119,7 @@ module rfnoc_block_null_src_sink_tb;
begin
test.start_timeout(timeout, 1us, "Waiting for block info response");
// Get static block info and validate it
`ASSERT_ERROR(blk_ctrl.get_noc_id() == 1, "Incorrect noc_id Value");
`ASSERT_ERROR(blk_ctrl.get_noc_id() == NOC_ID, "Incorrect noc_id Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_i() == 2, "Incorrect num_data_i Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_o() == 2, "Incorrect num_data_o Value");
`ASSERT_ERROR(blk_ctrl.get_ctrl_fifosize() == 5, "Incorrect ctrl_fifosize Value");
@@ -1,131 +1,131 @@
//
// Copyright 2019 Ettus Research, A National Instruments Company
// Copyright 2019 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: noc_shell_radio
//
// Description: A NoC Shell for RFNoC. This should eventually be replaced
// by an auto-generated NoC Shell.
// Description:
//
// This is a tool-generated NoC-shell for the radio block.
// See the RFNoC specification for more information about NoC shells.
//
// Parameters:
//
// THIS_PORTID : Control crossbar port to which this block is connected
// CHDR_W : AXIS-CHDR data bus width
// MTU : Maximum transmission unit (i.e., maximum packet size in
//
`default_nettype none
module noc_shell_radio #(
parameter [31:0] NOC_ID = 32'h0,
parameter [ 9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [ 0:0] CTRLPORT_SLV_EN = 1,
parameter [ 0:0] CTRLPORT_MST_EN = 1,
parameter [ 5:0] CTRL_FIFO_SIZE = 9,
parameter [ 5:0] NUM_DATA_I = 1,
parameter [ 5:0] NUM_DATA_O = 1,
parameter ITEM_W = 32,
parameter NIPC = 2,
parameter PYLD_FIFO_SIZE = 10,
parameter MTU = 10
)(
//---------------------------------------------------------------------------
parameter [9:0] THIS_PORTID = 10'd0,
parameter CHDR_W = 64,
parameter [5:0] MTU = 10,
parameter NUM_PORTS = 2,
parameter NIPC = 1,
parameter ITEM_W = 32
) (
//---------------------
// Framework Interface
//---------------------------------------------------------------------------
//---------------------
// RFNoC Framework Clocks
input wire rfnoc_chdr_clk,
input wire rfnoc_ctrl_clk,
input wire radio_clk,
// NoC Shell Generated Resets
output wire rfnoc_chdr_rst,
output wire rfnoc_ctrl_rst,
output wire radio_rst,
// RFNoC Framework Clocks and Resets
input wire rfnoc_chdr_clk,
output wire rfnoc_chdr_rst,
input wire rfnoc_ctrl_clk,
output wire rfnoc_ctrl_rst,
// RFNoC Backend Interface
input wire [ 511:0] rfnoc_core_config,
output wire [ 511:0] rfnoc_core_status,
// CHDR Input Ports (from framework)
input wire [(CHDR_W*NUM_DATA_I)-1:0] s_rfnoc_chdr_tdata,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tlast,
input wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tvalid,
output wire [ NUM_DATA_I-1:0] s_rfnoc_chdr_tready,
// CHDR Output Ports (to framework)
output wire [(CHDR_W*NUM_DATA_O)-1:0] m_rfnoc_chdr_tdata,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tlast,
output wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tvalid,
input wire [ NUM_DATA_O-1:0] m_rfnoc_chdr_tready,
// AXIS-Ctrl Input Port (from framework)
input wire [ 31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Output Port (to framework)
output wire [ 31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
input wire [511:0] rfnoc_core_config,
output wire [511:0] rfnoc_core_status,
//---------------------------------------------------------------------------
// Client Control Port Interface
//---------------------------------------------------------------------------
// AXIS-CHDR Input Ports (from framework)
input wire [(0+NUM_PORTS)*CHDR_W-1:0] s_rfnoc_chdr_tdata,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tlast,
input wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tvalid,
output wire [(0+NUM_PORTS)-1:0] s_rfnoc_chdr_tready,
// AXIS-CHDR Output Ports (to framework)
output wire [(0+NUM_PORTS)*CHDR_W-1:0] m_rfnoc_chdr_tdata,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tlast,
output wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tvalid,
input wire [(0+NUM_PORTS)-1:0] m_rfnoc_chdr_tready,
// Clock
input wire ctrlport_clk,
input wire ctrlport_rst,
// Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire [ 3:0] m_ctrlport_req_byte_en,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [ 1:0] m_ctrlport_resp_status,
input wire [31:0] m_ctrlport_resp_data,
// Slave
input wire s_ctrlport_req_wr,
input wire s_ctrlport_req_rd,
input wire [19:0] s_ctrlport_req_addr,
input wire [ 9:0] s_ctrlport_req_portid,
input wire [15:0] s_ctrlport_req_rem_epid,
input wire [ 9:0] s_ctrlport_req_rem_portid,
input wire [31:0] s_ctrlport_req_data,
input wire [ 3:0] s_ctrlport_req_byte_en,
input wire s_ctrlport_req_has_time,
input wire [63:0] s_ctrlport_req_time,
output wire s_ctrlport_resp_ack,
output wire [ 1:0] s_ctrlport_resp_status,
output wire [31:0] s_ctrlport_resp_data,
// AXIS-Ctrl Control Input Port (from framework)
input wire [31:0] s_rfnoc_ctrl_tdata,
input wire s_rfnoc_ctrl_tlast,
input wire s_rfnoc_ctrl_tvalid,
output wire s_rfnoc_ctrl_tready,
// AXIS-Ctrl Control Output Port (to framework)
output wire [31:0] m_rfnoc_ctrl_tdata,
output wire m_rfnoc_ctrl_tlast,
output wire m_rfnoc_ctrl_tvalid,
input wire m_rfnoc_ctrl_tready,
//---------------------------------------------------------------------------
// Client Data Interface
//---------------------------------------------------------------------------
//---------------------
// Client Interface
//---------------------
// Clock
input wire axis_data_clk,
input wire axis_data_rst,
// CtrlPort Clock and Reset
output wire ctrlport_clk,
output wire ctrlport_rst,
// CtrlPort Master
output wire m_ctrlport_req_wr,
output wire m_ctrlport_req_rd,
output wire [19:0] m_ctrlport_req_addr,
output wire [31:0] m_ctrlport_req_data,
output wire [3:0] m_ctrlport_req_byte_en,
output wire m_ctrlport_req_has_time,
output wire [63:0] m_ctrlport_req_time,
input wire m_ctrlport_resp_ack,
input wire [1:0] m_ctrlport_resp_status,
input wire [31:0] m_ctrlport_resp_data,
// CtrlPort Slave
input wire s_ctrlport_req_wr,
input wire s_ctrlport_req_rd,
input wire [19:0] s_ctrlport_req_addr,
input wire [9:0] s_ctrlport_req_portid,
input wire [15:0] s_ctrlport_req_rem_epid,
input wire [9:0] s_ctrlport_req_rem_portid,
input wire [31:0] s_ctrlport_req_data,
input wire [3:0] s_ctrlport_req_byte_en,
input wire s_ctrlport_req_has_time,
input wire [63:0] s_ctrlport_req_time,
output wire s_ctrlport_resp_ack,
output wire [1:0] s_ctrlport_resp_status,
output wire [31:0] s_ctrlport_resp_data,
// Output data stream (to user logic)
output wire [(NUM_DATA_I*ITEM_W*NIPC)-1:0] m_axis_tdata,
output wire [ (NUM_DATA_I*NIPC)-1:0] m_axis_tkeep,
output wire [ NUM_DATA_I-1:0] m_axis_tlast,
output wire [ NUM_DATA_I-1:0] m_axis_tvalid,
input wire [ NUM_DATA_I-1:0] m_axis_tready,
// Sideband information
output wire [ (NUM_DATA_I*64)-1:0] m_axis_ttimestamp,
output wire [ NUM_DATA_I-1:0] m_axis_thas_time,
output wire [ NUM_DATA_I-1:0] m_axis_teov,
output wire [ NUM_DATA_I-1:0] m_axis_teob,
// Input data stream (from user logic)
input wire [(NUM_DATA_O*ITEM_W*NIPC)-1:0] s_axis_tdata,
input wire [ (NUM_DATA_O*NIPC)-1:0] s_axis_tkeep,
input wire [ NUM_DATA_O-1:0] s_axis_tlast,
input wire [ NUM_DATA_O-1:0] s_axis_tvalid,
output wire [ NUM_DATA_O-1:0] s_axis_tready,
// Sideband info (sampled on the first cycle of the packet)
input wire [ (NUM_DATA_O*64)-1:0] s_axis_ttimestamp,
input wire [ NUM_DATA_O-1:0] s_axis_thas_time,
input wire [ NUM_DATA_O-1:0] s_axis_teov,
input wire [ NUM_DATA_O-1:0] s_axis_teob
// AXI-Stream Data Clock and Reset
output wire axis_data_clk,
output wire axis_data_rst,
// Data Stream to User Logic: in
output wire [NUM_PORTS*ITEM_W*NIPC-1:0] m_in_axis_tdata,
output wire [NUM_PORTS*NIPC-1:0] m_in_axis_tkeep,
output wire [NUM_PORTS-1:0] m_in_axis_tlast,
output wire [NUM_PORTS-1:0] m_in_axis_tvalid,
input wire [NUM_PORTS-1:0] m_in_axis_tready,
output wire [NUM_PORTS*64-1:0] m_in_axis_ttimestamp,
output wire [NUM_PORTS-1:0] m_in_axis_thas_time,
output wire [NUM_PORTS*16-1:0] m_in_axis_tlength,
output wire [NUM_PORTS-1:0] m_in_axis_teov,
output wire [NUM_PORTS-1:0] m_in_axis_teob,
// Data Stream to User Logic: out
input wire [NUM_PORTS*ITEM_W*NIPC-1:0] s_out_axis_tdata,
input wire [NUM_PORTS*NIPC-1:0] s_out_axis_tkeep,
input wire [NUM_PORTS-1:0] s_out_axis_tlast,
input wire [NUM_PORTS-1:0] s_out_axis_tvalid,
output wire [NUM_PORTS-1:0] s_out_axis_tready,
input wire [NUM_PORTS*64-1:0] s_out_axis_ttimestamp,
input wire [NUM_PORTS-1:0] s_out_axis_thas_time,
input wire [NUM_PORTS-1:0] s_out_axis_teov,
input wire [NUM_PORTS-1:0] s_out_axis_teob
);
localparam SNK_INFO_FIFO_SIZE = 4;
localparam SNK_PYLD_FIFO_SIZE = PYLD_FIFO_SIZE;
localparam SRC_INFO_FIFO_SIZE = 4;
localparam SRC_PYLD_FIFO_SIZE = MTU;
//---------------------------------------------------------------------------
// Backend Interface
@@ -141,18 +141,18 @@ module noc_shell_radio #(
wire [63:0] data_o_flush_done;
backend_iface #(
.NOC_ID (NOC_ID),
.NUM_DATA_I (NUM_DATA_I),
.NUM_DATA_O (NUM_DATA_O),
.CTRL_FIFOSIZE (CTRL_FIFO_SIZE),
.NOC_ID (32'h12AD1000),
.NUM_DATA_I (0+NUM_PORTS),
.NUM_DATA_O (0+NUM_PORTS),
.CTRL_FIFOSIZE ($clog2(512)),
.MTU (MTU)
) backend_iface_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.data_i_flush_en (data_i_flush_en),
.data_i_flush_timeout (data_i_flush_timeout),
.data_i_flush_active (data_i_flush_active),
@@ -163,52 +163,71 @@ module noc_shell_radio #(
.data_o_flush_done (data_o_flush_done)
);
//---------------------------------------------------------------------------
// Reset Generation
//---------------------------------------------------------------------------
wire radio_rst_pulse;
pulse_synchronizer #(.MODE ("POSEDGE")) pulse_synchronizer_radio (
.clk_a(rfnoc_chdr_clk), .rst_a(1'b0), .pulse_a (rfnoc_chdr_rst), .busy_a (),
.clk_b(radio_clk), .pulse_b (radio_rst_pulse)
);
pulse_stretch_min #(.LENGTH(32)) pulse_stretch_min_radio (
.clk(radio_clk), .rst(1'b0),
.pulse_in(radio_rst_pulse), .pulse_out(radio_rst)
);
//---------------------------------------------------------------------------
// Control Path
//---------------------------------------------------------------------------
assign ctrlport_clk = radio_clk;
assign ctrlport_rst = radio_rst;
ctrlport_endpoint #(
.THIS_PORTID (THIS_PORTID ),
.SYNC_CLKS (0 ),
.AXIS_CTRL_MST_EN (CTRLPORT_SLV_EN),
.AXIS_CTRL_SLV_EN (CTRLPORT_MST_EN),
.SLAVE_FIFO_SIZE (CTRL_FIFO_SIZE )
) ctrlport_ep_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk ),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst ),
.ctrlport_clk (ctrlport_clk ),
.ctrlport_rst (ctrlport_rst ),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid ),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready ),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid ),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready ),
.m_ctrlport_req_wr (m_ctrlport_req_wr ),
.m_ctrlport_req_rd (m_ctrlport_req_rd ),
.m_ctrlport_req_addr (m_ctrlport_req_addr ),
.m_ctrlport_req_data (m_ctrlport_req_data ),
.m_ctrlport_req_byte_en (m_ctrlport_req_byte_en ),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time ),
.m_ctrlport_req_time (m_ctrlport_req_time ),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack ),
.m_ctrlport_resp_status (m_ctrlport_resp_status ),
.m_ctrlport_resp_data (m_ctrlport_resp_data ),
.s_ctrlport_req_wr (s_ctrlport_req_wr ),
.s_ctrlport_req_rd (s_ctrlport_req_rd ),
.s_ctrlport_req_addr (s_ctrlport_req_addr ),
.s_ctrlport_req_portid (s_ctrlport_req_portid ),
.s_ctrlport_req_rem_epid (s_ctrlport_req_rem_epid ),
.s_ctrlport_req_rem_portid(s_ctrlport_req_rem_portid),
.s_ctrlport_req_data (s_ctrlport_req_data ),
.s_ctrlport_req_byte_en (s_ctrlport_req_byte_en ),
.s_ctrlport_req_has_time (s_ctrlport_req_has_time ),
.s_ctrlport_req_time (s_ctrlport_req_time ),
.s_ctrlport_resp_ack (s_ctrlport_resp_ack ),
.s_ctrlport_resp_status (s_ctrlport_resp_status ),
.s_ctrlport_resp_data (s_ctrlport_resp_data )
.THIS_PORTID (THIS_PORTID),
.SYNC_CLKS (0),
.AXIS_CTRL_MST_EN (1),
.AXIS_CTRL_SLV_EN (1),
.SLAVE_FIFO_SIZE ($clog2(512))
) ctrlport_endpoint_i (
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.rfnoc_ctrl_rst (rfnoc_ctrl_rst),
.ctrlport_clk (ctrlport_clk),
.ctrlport_rst (ctrlport_rst),
.s_rfnoc_ctrl_tdata (s_rfnoc_ctrl_tdata),
.s_rfnoc_ctrl_tlast (s_rfnoc_ctrl_tlast),
.s_rfnoc_ctrl_tvalid (s_rfnoc_ctrl_tvalid),
.s_rfnoc_ctrl_tready (s_rfnoc_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_rfnoc_ctrl_tdata),
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.m_ctrlport_req_wr (m_ctrlport_req_wr),
.m_ctrlport_req_rd (m_ctrlport_req_rd),
.m_ctrlport_req_addr (m_ctrlport_req_addr),
.m_ctrlport_req_data (m_ctrlport_req_data),
.m_ctrlport_req_byte_en (m_ctrlport_req_byte_en),
.m_ctrlport_req_has_time (m_ctrlport_req_has_time),
.m_ctrlport_req_time (m_ctrlport_req_time),
.m_ctrlport_resp_ack (m_ctrlport_resp_ack),
.m_ctrlport_resp_status (m_ctrlport_resp_status),
.m_ctrlport_resp_data (m_ctrlport_resp_data),
.s_ctrlport_req_wr (s_ctrlport_req_wr),
.s_ctrlport_req_rd (s_ctrlport_req_rd),
.s_ctrlport_req_addr (s_ctrlport_req_addr),
.s_ctrlport_req_portid (s_ctrlport_req_portid),
.s_ctrlport_req_rem_epid (s_ctrlport_req_rem_epid),
.s_ctrlport_req_rem_portid (s_ctrlport_req_rem_portid),
.s_ctrlport_req_data (s_ctrlport_req_data),
.s_ctrlport_req_byte_en (s_ctrlport_req_byte_en),
.s_ctrlport_req_has_time (s_ctrlport_req_has_time),
.s_ctrlport_req_time (s_ctrlport_req_time),
.s_ctrlport_resp_ack (s_ctrlport_resp_ack),
.s_ctrlport_resp_status (s_ctrlport_resp_status),
.s_ctrlport_resp_data (s_ctrlport_resp_data)
);
//---------------------------------------------------------------------------
@@ -216,75 +235,87 @@ module noc_shell_radio #(
//---------------------------------------------------------------------------
genvar i;
generate
for (i = 0; i < NUM_DATA_I; i = i + 1) begin: chdr_to_data
chdr_to_axis_data #(
.CHDR_W (CHDR_W),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE (SNK_INFO_FIFO_SIZE),
.PYLD_FIFO_SIZE (SNK_PYLD_FIFO_SIZE)
) chdr_to_axis_data_i (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata [(i*CHDR_W)+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast [i]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid [i]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready [i]),
.m_axis_tdata (m_axis_tdata [i*ITEM_W*NIPC +: ITEM_W*NIPC]),
.m_axis_tkeep (m_axis_tkeep [i*NIPC +: NIPC]),
.m_axis_tlast (m_axis_tlast [i]),
.m_axis_tvalid (m_axis_tvalid [i]),
.m_axis_tready (m_axis_tready [i]),
.m_axis_ttimestamp (m_axis_ttimestamp [i*64 +: 64]),
.m_axis_thas_time (m_axis_thas_time [i]),
.m_axis_tlength (),
.m_axis_teov (m_axis_teov [i]),
.m_axis_teob (m_axis_teob [i]),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active [i]),
.flush_done (data_i_flush_done [i])
);
end
assign axis_data_clk = radio_clk;
assign axis_data_rst = radio_rst;
//---------------------
// Input Data Paths
//---------------------
for (i = 0; i < NUM_DATA_O; i = i + 1) begin: data_to_chdr
axis_data_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE (4),
.PYLD_FIFO_SIZE (SRC_INFO_FIFO_SIZE),
.MTU (SRC_PYLD_FIFO_SIZE)
) axis_data_to_chdr_i (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata [i*CHDR_W +: CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast [i]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid [i]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready [i]),
.s_axis_tdata (s_axis_tdata [i*ITEM_W*NIPC +: ITEM_W*NIPC]),
.s_axis_tkeep (s_axis_tkeep [i*NIPC +: NIPC]),
.s_axis_tlast (s_axis_tlast [i]),
.s_axis_tvalid (s_axis_tvalid [i]),
.s_axis_tready (s_axis_tready [i]),
.s_axis_ttimestamp (s_axis_ttimestamp [i*64 +: 64]),
.s_axis_thas_time (s_axis_thas_time [i]),
.s_axis_teov (s_axis_teov [i]),
.s_axis_teob (s_axis_teob [i]),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active [i]),
.flush_done (data_o_flush_done [i])
);
end
endgenerate
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_input_in
chdr_to_axis_data #(
.CHDR_W (CHDR_W),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE ($clog2(32)),
.PYLD_FIFO_SIZE ($clog2(MTU))
) chdr_to_axis_data_in_in (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.s_axis_chdr_tdata (s_rfnoc_chdr_tdata[((0+i)*CHDR_W)+:CHDR_W]),
.s_axis_chdr_tlast (s_rfnoc_chdr_tlast[0+i]),
.s_axis_chdr_tvalid (s_rfnoc_chdr_tvalid[0+i]),
.s_axis_chdr_tready (s_rfnoc_chdr_tready[0+i]),
.m_axis_tdata (m_in_axis_tdata[(ITEM_W*NIPC)*i+:(ITEM_W*NIPC)]),
.m_axis_tkeep (m_in_axis_tkeep[NIPC*i+:NIPC]),
.m_axis_tlast (m_in_axis_tlast[i]),
.m_axis_tvalid (m_in_axis_tvalid[i]),
.m_axis_tready (m_in_axis_tready[i]),
.m_axis_ttimestamp (m_in_axis_ttimestamp[64*i+:64]),
.m_axis_thas_time (m_in_axis_thas_time[i]),
.m_axis_tlength (m_in_axis_tlength[i*16+:16]),
.m_axis_teov (m_in_axis_teov[i]),
.m_axis_teob (m_in_axis_teob[i]),
.flush_en (data_i_flush_en),
.flush_timeout (data_i_flush_timeout),
.flush_active (data_i_flush_active[0+i]),
.flush_done (data_i_flush_done[0+i])
);
end
endmodule
//---------------------
// Output Data Paths
//---------------------
for (i = 0; i < NUM_PORTS; i = i + 1) begin: gen_output_out
axis_data_to_chdr #(
.CHDR_W (CHDR_W),
.ITEM_W (ITEM_W),
.NIPC (NIPC),
.SYNC_CLKS (0),
.INFO_FIFO_SIZE ($clog2(32)),
.PYLD_FIFO_SIZE ($clog2(MTU)),
.MTU (MTU)
) axis_data_to_chdr_out_out (
.axis_chdr_clk (rfnoc_chdr_clk),
.axis_chdr_rst (rfnoc_chdr_rst),
.axis_data_clk (axis_data_clk),
.axis_data_rst (axis_data_rst),
.m_axis_chdr_tdata (m_rfnoc_chdr_tdata[(0+i)*CHDR_W+:CHDR_W]),
.m_axis_chdr_tlast (m_rfnoc_chdr_tlast[0+i]),
.m_axis_chdr_tvalid (m_rfnoc_chdr_tvalid[0+i]),
.m_axis_chdr_tready (m_rfnoc_chdr_tready[0+i]),
.s_axis_tdata (s_out_axis_tdata[(ITEM_W*NIPC)*i+:(ITEM_W*NIPC)]),
.s_axis_tkeep (s_out_axis_tkeep[NIPC*i+:NIPC]),
.s_axis_tlast (s_out_axis_tlast[i]),
.s_axis_tvalid (s_out_axis_tvalid[i]),
.s_axis_tready (s_out_axis_tready[i]),
.s_axis_ttimestamp (s_out_axis_ttimestamp[64*i+:64]),
.s_axis_thas_time (s_out_axis_thas_time[i]),
.s_axis_teov (s_out_axis_teov[i]),
.s_axis_teob (s_out_axis_teob[i]),
.flush_en (data_o_flush_en),
.flush_timeout (data_o_flush_timeout),
.flush_active (data_o_flush_active[0+i]),
.flush_done (data_o_flush_done[0+i])
);
end
endmodule // noc_shell_radio
`default_nettype wire
@@ -16,8 +16,6 @@
// NUM_PORTS : Number of radio channels (RX/TX pairs)
// MTU : Maximum transmission unit (i.e., maximum packet size)
// in CHDR words is 2**MTU.
// CTRL_FIFO_SIZE : Size of the Control Port slave FIFO. This affects the
// number of outstanding commands that can be pending.
// PERIPH_BASE_ADDR : CTRL port peripheral window base address
// PERIPH_ADDR_W : CTRL port peripheral address space = 2**PERIPH_ADDR_W
//
@@ -30,7 +28,6 @@ module rfnoc_block_radio #(
parameter ITEM_W = 32,
parameter NUM_PORTS = 2,
parameter MTU = 10,
parameter CTRL_FIFO_SIZE = 9,
parameter PERIPH_BASE_ADDR = 20'h80000,
parameter PERIPH_ADDR_W = 19
) (
@@ -115,7 +112,6 @@ module rfnoc_block_radio #(
`include "rfnoc_block_radio_regs.vh"
`include "../../core/rfnoc_axis_ctrl_utils.vh"
localparam NOC_ID = 32'h12AD1000;
localparam RADIO_W = NIPC*ITEM_W;
@@ -144,8 +140,10 @@ module rfnoc_block_radio #(
wire ctrlport_reg_has_time;
wire [63:0] ctrlport_reg_time;
wire [31:0] ctrlport_reg_req_data;
wire [ 3:0] ctrlport_reg_req_byte_en;
wire [31:0] ctrlport_reg_resp_data;
wire ctrlport_reg_resp_ack;
wire [ 1:0] ctrlport_reg_resp_status;
// Control port signals used for error reporting (user logic masters to NoC shell)
wire ctrlport_err_req_wr;
@@ -163,27 +161,22 @@ module rfnoc_block_radio #(
// NoC Shell
//---------------------------------------------------------------------------
wire rfnoc_chdr_rst;
wire radio_rst;
noc_shell_radio #(
.NOC_ID (NOC_ID),
.THIS_PORTID (THIS_PORTID),
.CHDR_W (CHDR_W),
.CTRLPORT_SLV_EN (1),
.CTRLPORT_MST_EN (1),
.CTRL_FIFO_SIZE (CTRL_FIFO_SIZE),
.NUM_DATA_I (NUM_PORTS),
.NUM_DATA_O (NUM_PORTS),
.ITEM_W (ITEM_W),
.MTU (MTU),
.NUM_PORTS (NUM_PORTS),
.NIPC (NIPC),
.PYLD_FIFO_SIZE (MTU),
.MTU (MTU)
.ITEM_W (ITEM_W)
) noc_shell_radio_i (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_chdr_rst (rfnoc_chdr_rst),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.radio_clk (radio_clk),
.rfnoc_chdr_rst (),
.rfnoc_ctrl_rst (),
.radio_rst (radio_rst),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status),
.s_rfnoc_chdr_tdata (s_rfnoc_chdr_tdata),
@@ -202,17 +195,17 @@ module rfnoc_block_radio #(
.m_rfnoc_ctrl_tlast (m_rfnoc_ctrl_tlast),
.m_rfnoc_ctrl_tvalid (m_rfnoc_ctrl_tvalid),
.m_rfnoc_ctrl_tready (m_rfnoc_ctrl_tready),
.ctrlport_clk (radio_clk),
.ctrlport_rst (radio_rst),
.ctrlport_clk (),
.ctrlport_rst (),
.m_ctrlport_req_wr (ctrlport_reg_req_wr),
.m_ctrlport_req_rd (ctrlport_reg_req_rd),
.m_ctrlport_req_addr (ctrlport_reg_req_addr),
.m_ctrlport_req_data (ctrlport_reg_req_data),
.m_ctrlport_req_byte_en (),
.m_ctrlport_req_byte_en (ctrlport_reg_req_byte_en),
.m_ctrlport_req_has_time (ctrlport_reg_has_time),
.m_ctrlport_req_time (ctrlport_reg_time),
.m_ctrlport_resp_ack (ctrlport_reg_resp_ack),
.m_ctrlport_resp_status (AXIS_CTRL_STS_OKAY),
.m_ctrlport_resp_status (ctrlport_reg_resp_status),
.m_ctrlport_resp_data (ctrlport_reg_resp_data),
.s_ctrlport_req_wr (ctrlport_err_req_wr),
.s_ctrlport_req_rd (1'b0),
@@ -227,38 +220,27 @@ module rfnoc_block_radio #(
.s_ctrlport_resp_ack (ctrlport_err_resp_ack),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_data (),
.axis_data_clk (radio_clk),
.axis_data_rst (radio_rst),
.m_axis_tdata (axis_tx_tdata),
.m_axis_tkeep (), // Radio only transmits full words
.m_axis_tlast (axis_tx_tlast),
.m_axis_tvalid (axis_tx_tvalid),
.m_axis_tready (axis_tx_tready),
.m_axis_ttimestamp (axis_tx_ttimestamp),
.m_axis_thas_time (axis_tx_thas_time),
.m_axis_teov (),
.m_axis_teob (axis_tx_teob),
.s_axis_tdata (axis_rx_tdata),
.s_axis_tkeep ({NUM_PORTS*NIPC{1'b1}}), // Radio only receives full words
.s_axis_tlast (axis_rx_tlast),
.s_axis_tvalid (axis_rx_tvalid),
.s_axis_tready (axis_rx_tready),
.s_axis_ttimestamp (axis_rx_ttimestamp),
.s_axis_thas_time (axis_rx_thas_time),
.s_axis_teov ({NUM_PORTS{1'b0}}),
.s_axis_teob (axis_rx_teob)
);
// Cross the CHDR reset to the radio_clk domain
pulse_synchronizer #(
.MODE ("POSEDGE")
) ctrl_rst_sync_i (
.clk_a (rfnoc_chdr_clk),
.rst_a (1'b0),
.pulse_a (rfnoc_chdr_rst),
.busy_a (),
.clk_b (radio_clk),
.pulse_b (radio_rst)
.axis_data_clk (),
.axis_data_rst (),
.m_in_axis_tdata (axis_tx_tdata),
.m_in_axis_tkeep (), // Radio only transmits full words
.m_in_axis_tlast (axis_tx_tlast),
.m_in_axis_tvalid (axis_tx_tvalid),
.m_in_axis_tready (axis_tx_tready),
.m_in_axis_ttimestamp (axis_tx_ttimestamp),
.m_in_axis_thas_time (axis_tx_thas_time),
.m_in_axis_tlength (),
.m_in_axis_teov (),
.m_in_axis_teob (axis_tx_teob),
.s_out_axis_tdata (axis_rx_tdata),
.s_out_axis_tkeep ({NUM_PORTS*NIPC{1'b1}}), // Radio only receives full words
.s_out_axis_tlast (axis_rx_tlast),
.s_out_axis_tvalid (axis_rx_tvalid),
.s_out_axis_tready (axis_rx_tready),
.s_out_axis_ttimestamp (axis_rx_ttimestamp),
.s_out_axis_thas_time (axis_rx_thas_time),
.s_out_axis_teov ({NUM_PORTS{1'b0}}),
.s_out_axis_teob (axis_rx_teob)
);
@@ -304,11 +286,11 @@ module rfnoc_block_radio #(
.s_ctrlport_req_rd (ctrlport_reg_req_rd),
.s_ctrlport_req_addr (ctrlport_reg_req_addr),
.s_ctrlport_req_data (ctrlport_reg_req_data),
.s_ctrlport_req_byte_en (4'b0),
.s_ctrlport_req_byte_en (ctrlport_reg_req_byte_en),
.s_ctrlport_req_has_time (ctrlport_reg_has_time),
.s_ctrlport_req_time (ctrlport_reg_time),
.s_ctrlport_resp_ack (ctrlport_reg_resp_ack),
.s_ctrlport_resp_status (),
.s_ctrlport_resp_status (ctrlport_reg_resp_status),
.s_ctrlport_resp_data (ctrlport_reg_resp_data),
.m_ctrlport_req_wr ({m_ctrlport_req_wr,
ctrlport_core_req_wr,
@@ -34,6 +34,7 @@ module rfnoc_block_radio_tb #(
// Simulation Parameters
localparam int NOC_ID = 32'h12AD1000;
localparam logic [ 9:0] THIS_PORTID = 10'h17;
localparam logic [15:0] THIS_EPID = 16'hDEAD;
localparam int MTU = 8;
@@ -555,11 +556,9 @@ module rfnoc_block_radio_tb #(
test.start_test("Verify Block Info", 2us);
// Get static block info and validate it
`ASSERT_ERROR(blk_ctrl.get_noc_id() == rfnoc_block_radio_i.NOC_ID, "Incorrect noc_id Value");
`ASSERT_ERROR(blk_ctrl.get_noc_id() == NOC_ID, "Incorrect noc_id Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_i() == NUM_PORTS, "Incorrect num_data_i Value");
`ASSERT_ERROR(blk_ctrl.get_num_data_o() == NUM_PORTS, "Incorrect num_data_o Value");
`ASSERT_ERROR(blk_ctrl.get_ctrl_fifosize() == rfnoc_block_radio_i.noc_shell_radio_i.CTRL_FIFO_SIZE,
"Incorrect ctrl_fifosize Value");
`ASSERT_ERROR(blk_ctrl.get_mtu() == MTU, "Incorrect mtu Value");
test.end_test();