Files
b210-k7-fpga/top/n3xx/n320_rfnoc_image_core.v
T
mattprost c91315d857 n320: Double radio ingress buffer size
This increases the size of the ingress buffers for the N320 radio to
support 250MHz TX streaming rates.

Signed-off-by: mattprost <matt.prost@ni.com>


Original-commit: e8db6fa4301ce471bf41ef14d5d38e5727199007
2020-08-12 15:17:48 -05:00

885 lines
35 KiB
Verilog

//
// Copyright 2020 Ettus Research, A National Instruments Brand
//
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Module: rfnoc_image_core (for n320)
// This file was autogenerated by UHD's image builder tool (rfnoc_image_builder)
// Re-running that tool will overwrite this file!
// File generated on: 2020-08-10T16:16:40.486292
// Source: ./n320_rfnoc_image_core.yml
// Source SHA256: dd1cf12171ae4b9c0e66dca548a881337bb27815a1ed9c18cd151459939de6bf
module rfnoc_image_core #(
parameter [15:0] PROTOVER = {8'd1, 8'd0}
)(
// Clocks
input wire chdr_aclk,
input wire ctrl_aclk,
input wire core_arst,
input wire radio_clk,
input wire dram_clk,
// Basic
input wire [15:0] device_id,
//// IO ports //////////////////////////////////
// ctrlport_radio0
output wire [ 1-1:0] m_ctrlport_radio0_req_wr,
output wire [ 1-1:0] m_ctrlport_radio0_req_rd,
output wire [ 20-1:0] m_ctrlport_radio0_req_addr,
output wire [ 32-1:0] m_ctrlport_radio0_req_data,
output wire [ 4-1:0] m_ctrlport_radio0_req_byte_en,
output wire [ 1-1:0] m_ctrlport_radio0_req_has_time,
output wire [ 64-1:0] m_ctrlport_radio0_req_time,
input wire [ 1-1:0] m_ctrlport_radio0_resp_ack,
input wire [ 2-1:0] m_ctrlport_radio0_resp_status,
input wire [ 32-1:0] m_ctrlport_radio0_resp_data,
// ctrlport_radio1
output wire [ 1-1:0] m_ctrlport_radio1_req_wr,
output wire [ 1-1:0] m_ctrlport_radio1_req_rd,
output wire [ 20-1:0] m_ctrlport_radio1_req_addr,
output wire [ 32-1:0] m_ctrlport_radio1_req_data,
output wire [ 4-1:0] m_ctrlport_radio1_req_byte_en,
output wire [ 1-1:0] m_ctrlport_radio1_req_has_time,
output wire [ 64-1:0] m_ctrlport_radio1_req_time,
input wire [ 1-1:0] m_ctrlport_radio1_resp_ack,
input wire [ 2-1:0] m_ctrlport_radio1_resp_status,
input wire [ 32-1:0] m_ctrlport_radio1_resp_data,
// time_keeper
input wire [ 64-1:0] radio_time,
// radio_ch0
input wire [ 32-1:0] radio_rx_data_radio0,
input wire [ 1-1:0] radio_rx_stb_radio0,
output wire [ 1-1:0] radio_rx_running_radio0,
output wire [ 32-1:0] radio_tx_data_radio0,
input wire [ 1-1:0] radio_tx_stb_radio0,
output wire [ 1-1:0] radio_tx_running_radio0,
// radio_ch1
input wire [ 32-1:0] radio_rx_data_radio1,
input wire [ 1-1:0] radio_rx_stb_radio1,
output wire [ 1-1:0] radio_rx_running_radio1,
output wire [ 32-1:0] radio_tx_data_radio1,
input wire [ 1-1:0] radio_tx_stb_radio1,
output wire [ 1-1:0] radio_tx_running_radio1,
// dram
input wire [ 1-1:0] axi_rst,
output wire [ 4-1:0] m_axi_awid,
output wire [128-1:0] m_axi_awaddr,
output wire [ 32-1:0] m_axi_awlen,
output wire [ 12-1:0] m_axi_awsize,
output wire [ 8-1:0] m_axi_awburst,
output wire [ 4-1:0] m_axi_awlock,
output wire [ 16-1:0] m_axi_awcache,
output wire [ 12-1:0] m_axi_awprot,
output wire [ 16-1:0] m_axi_awqos,
output wire [ 16-1:0] m_axi_awregion,
output wire [ 4-1:0] m_axi_awuser,
output wire [ 4-1:0] m_axi_awvalid,
input wire [ 4-1:0] m_axi_awready,
output wire [256-1:0] m_axi_wdata,
output wire [ 32-1:0] m_axi_wstrb,
output wire [ 4-1:0] m_axi_wlast,
output wire [ 4-1:0] m_axi_wuser,
output wire [ 4-1:0] m_axi_wvalid,
input wire [ 4-1:0] m_axi_wready,
input wire [ 4-1:0] m_axi_bid,
input wire [ 8-1:0] m_axi_bresp,
input wire [ 4-1:0] m_axi_buser,
input wire [ 4-1:0] m_axi_bvalid,
output wire [ 4-1:0] m_axi_bready,
output wire [ 4-1:0] m_axi_arid,
output wire [128-1:0] m_axi_araddr,
output wire [ 32-1:0] m_axi_arlen,
output wire [ 12-1:0] m_axi_arsize,
output wire [ 8-1:0] m_axi_arburst,
output wire [ 4-1:0] m_axi_arlock,
output wire [ 16-1:0] m_axi_arcache,
output wire [ 12-1:0] m_axi_arprot,
output wire [ 16-1:0] m_axi_arqos,
output wire [ 16-1:0] m_axi_arregion,
output wire [ 4-1:0] m_axi_aruser,
output wire [ 4-1:0] m_axi_arvalid,
input wire [ 4-1:0] m_axi_arready,
input wire [ 4-1:0] m_axi_rid,
input wire [256-1:0] m_axi_rdata,
input wire [ 8-1:0] m_axi_rresp,
input wire [ 4-1:0] m_axi_rlast,
input wire [ 4-1:0] m_axi_ruser,
input wire [ 4-1:0] m_axi_rvalid,
output wire [ 4-1:0] m_axi_rready,
// Transport 0 (eth0 1G)
input wire [64-1:0] s_eth0_tdata,
input wire s_eth0_tlast,
input wire s_eth0_tvalid,
output wire s_eth0_tready,
output wire [64-1:0] m_eth0_tdata,
output wire m_eth0_tlast,
output wire m_eth0_tvalid,
input wire m_eth0_tready,
// Transport 1 (eth1 10G)
input wire [64-1:0] s_eth1_tdata,
input wire s_eth1_tlast,
input wire s_eth1_tvalid,
output wire s_eth1_tready,
output wire [64-1:0] m_eth1_tdata,
output wire m_eth1_tlast,
output wire m_eth1_tvalid,
input wire m_eth1_tready,
// Transport 2 (dma dma)
input wire [64-1:0] s_dma_tdata,
input wire s_dma_tlast,
input wire s_dma_tvalid,
output wire s_dma_tready,
output wire [64-1:0] m_dma_tdata,
output wire m_dma_tlast,
output wire m_dma_tvalid,
input wire m_dma_tready
);
localparam CHDR_W = 64;
localparam MTU = 10;
localparam EDGE_TBL_FILE = `"`RFNOC_EDGE_TBL_FILE`";
wire rfnoc_chdr_clk, rfnoc_chdr_rst;
wire rfnoc_ctrl_clk, rfnoc_ctrl_rst;
// ----------------------------------------------------
// CHDR Crossbar
// ----------------------------------------------------
wire [CHDR_W-1:0] xb_to_ep0_tdata ;
wire xb_to_ep0_tlast ;
wire xb_to_ep0_tvalid;
wire xb_to_ep0_tready;
wire [CHDR_W-1:0] ep0_to_xb_tdata ;
wire ep0_to_xb_tlast ;
wire ep0_to_xb_tvalid;
wire ep0_to_xb_tready;
wire [CHDR_W-1:0] xb_to_ep1_tdata ;
wire xb_to_ep1_tlast ;
wire xb_to_ep1_tvalid;
wire xb_to_ep1_tready;
wire [CHDR_W-1:0] ep1_to_xb_tdata ;
wire ep1_to_xb_tlast ;
wire ep1_to_xb_tvalid;
wire ep1_to_xb_tready;
chdr_crossbar_nxn #(
.CHDR_W (CHDR_W),
.NPORTS (5),
.DEFAULT_PORT (0),
.MTU (MTU),
.ROUTE_TBL_SIZE (6),
.MUX_ALLOC ("ROUND-ROBIN"),
.OPTIMIZE ("AREA"),
.NPORTS_MGMT (3),
.EXT_RTCFG_PORT (0),
.PROTOVER (PROTOVER)
) chdr_xb_i (
.clk (rfnoc_chdr_clk),
.reset (rfnoc_chdr_rst),
.device_id (device_id),
.s_axis_tdata ({ep1_to_xb_tdata, ep0_to_xb_tdata, s_dma_tdata, s_eth1_tdata, s_eth0_tdata}),
.s_axis_tlast ({ep1_to_xb_tlast, ep0_to_xb_tlast, s_dma_tlast, s_eth1_tlast, s_eth0_tlast}),
.s_axis_tvalid ({ep1_to_xb_tvalid, ep0_to_xb_tvalid, s_dma_tvalid, s_eth1_tvalid, s_eth0_tvalid}),
.s_axis_tready ({ep1_to_xb_tready, ep0_to_xb_tready, s_dma_tready, s_eth1_tready, s_eth0_tready}),
.m_axis_tdata ({xb_to_ep1_tdata, xb_to_ep0_tdata, m_dma_tdata, m_eth1_tdata, m_eth0_tdata}),
.m_axis_tlast ({xb_to_ep1_tlast, xb_to_ep0_tlast, m_dma_tlast, m_eth1_tlast, m_eth0_tlast}),
.m_axis_tvalid ({xb_to_ep1_tvalid, xb_to_ep0_tvalid, m_dma_tvalid, m_eth1_tvalid, m_eth0_tvalid}),
.m_axis_tready ({xb_to_ep1_tready, xb_to_ep0_tready, m_dma_tready, m_eth1_tready, m_eth0_tready}),
.ext_rtcfg_stb (1'h0),
.ext_rtcfg_addr (16'h0),
.ext_rtcfg_data (32'h0),
.ext_rtcfg_ack ()
);
// ----------------------------------------------------
// Stream Endpoints
// ----------------------------------------------------
wire [CHDR_W-1:0] m_ep0_out0_tdata;
wire m_ep0_out0_tlast;
wire m_ep0_out0_tvalid;
wire m_ep0_out0_tready;
wire [CHDR_W-1:0] s_ep0_in0_tdata;
wire s_ep0_in0_tlast;
wire s_ep0_in0_tvalid;
wire s_ep0_in0_tready;
wire [31:0] m_ep0_ctrl_tdata , s_ep0_ctrl_tdata ;
wire m_ep0_ctrl_tlast , s_ep0_ctrl_tlast ;
wire m_ep0_ctrl_tvalid, s_ep0_ctrl_tvalid;
wire m_ep0_ctrl_tready, s_ep0_ctrl_tready;
chdr_stream_endpoint #(
.PROTOVER (PROTOVER),
.CHDR_W (CHDR_W),
.AXIS_CTRL_EN (1),
.AXIS_DATA_EN (1),
.NUM_DATA_I (1),
.NUM_DATA_O (1),
.INST_NUM (0),
.CTRL_XBAR_PORT (1),
.INGRESS_BUFF_SIZE (16),
.MTU (MTU),
.REPORT_STRM_ERRS (1)
) ep0_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 ),
.device_id (device_id ),
.s_axis_chdr_tdata (xb_to_ep0_tdata ),
.s_axis_chdr_tlast (xb_to_ep0_tlast ),
.s_axis_chdr_tvalid (xb_to_ep0_tvalid ),
.s_axis_chdr_tready (xb_to_ep0_tready ),
.m_axis_chdr_tdata (ep0_to_xb_tdata ),
.m_axis_chdr_tlast (ep0_to_xb_tlast ),
.m_axis_chdr_tvalid (ep0_to_xb_tvalid ),
.m_axis_chdr_tready (ep0_to_xb_tready ),
.s_axis_data_tdata ({s_ep0_in0_tdata}),
.s_axis_data_tlast ({s_ep0_in0_tlast}),
.s_axis_data_tvalid ({s_ep0_in0_tvalid}),
.s_axis_data_tready ({s_ep0_in0_tready}),
.m_axis_data_tdata ({m_ep0_out0_tdata}),
.m_axis_data_tlast ({m_ep0_out0_tlast}),
.m_axis_data_tvalid ({m_ep0_out0_tvalid}),
.m_axis_data_tready ({m_ep0_out0_tready}),
.s_axis_ctrl_tdata (s_ep0_ctrl_tdata ),
.s_axis_ctrl_tlast (s_ep0_ctrl_tlast ),
.s_axis_ctrl_tvalid (s_ep0_ctrl_tvalid),
.s_axis_ctrl_tready (s_ep0_ctrl_tready),
.m_axis_ctrl_tdata (m_ep0_ctrl_tdata ),
.m_axis_ctrl_tlast (m_ep0_ctrl_tlast ),
.m_axis_ctrl_tvalid (m_ep0_ctrl_tvalid),
.m_axis_ctrl_tready (m_ep0_ctrl_tready),
.strm_seq_err_stb ( ),
.strm_data_err_stb ( ),
.strm_route_err_stb ( ),
.signal_data_err (1'b0 )
);
wire [CHDR_W-1:0] m_ep1_out0_tdata;
wire m_ep1_out0_tlast;
wire m_ep1_out0_tvalid;
wire m_ep1_out0_tready;
wire [CHDR_W-1:0] s_ep1_in0_tdata;
wire s_ep1_in0_tlast;
wire s_ep1_in0_tvalid;
wire s_ep1_in0_tready;
wire [31:0] m_ep1_ctrl_tdata , s_ep1_ctrl_tdata ;
wire m_ep1_ctrl_tlast , s_ep1_ctrl_tlast ;
wire m_ep1_ctrl_tvalid, s_ep1_ctrl_tvalid;
wire m_ep1_ctrl_tready, s_ep1_ctrl_tready;
chdr_stream_endpoint #(
.PROTOVER (PROTOVER),
.CHDR_W (CHDR_W),
.AXIS_CTRL_EN (0),
.AXIS_DATA_EN (1),
.NUM_DATA_I (1),
.NUM_DATA_O (1),
.INST_NUM (1),
.CTRL_XBAR_PORT (2),
.INGRESS_BUFF_SIZE (16),
.MTU (MTU),
.REPORT_STRM_ERRS (1)
) ep1_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 ),
.device_id (device_id ),
.s_axis_chdr_tdata (xb_to_ep1_tdata ),
.s_axis_chdr_tlast (xb_to_ep1_tlast ),
.s_axis_chdr_tvalid (xb_to_ep1_tvalid ),
.s_axis_chdr_tready (xb_to_ep1_tready ),
.m_axis_chdr_tdata (ep1_to_xb_tdata ),
.m_axis_chdr_tlast (ep1_to_xb_tlast ),
.m_axis_chdr_tvalid (ep1_to_xb_tvalid ),
.m_axis_chdr_tready (ep1_to_xb_tready ),
.s_axis_data_tdata ({s_ep1_in0_tdata}),
.s_axis_data_tlast ({s_ep1_in0_tlast}),
.s_axis_data_tvalid ({s_ep1_in0_tvalid}),
.s_axis_data_tready ({s_ep1_in0_tready}),
.m_axis_data_tdata ({m_ep1_out0_tdata}),
.m_axis_data_tlast ({m_ep1_out0_tlast}),
.m_axis_data_tvalid ({m_ep1_out0_tvalid}),
.m_axis_data_tready ({m_ep1_out0_tready}),
.s_axis_ctrl_tdata (s_ep1_ctrl_tdata ),
.s_axis_ctrl_tlast (s_ep1_ctrl_tlast ),
.s_axis_ctrl_tvalid (s_ep1_ctrl_tvalid),
.s_axis_ctrl_tready (s_ep1_ctrl_tready),
.m_axis_ctrl_tdata (m_ep1_ctrl_tdata ),
.m_axis_ctrl_tlast (m_ep1_ctrl_tlast ),
.m_axis_ctrl_tvalid (m_ep1_ctrl_tvalid),
.m_axis_ctrl_tready (m_ep1_ctrl_tready),
.strm_seq_err_stb ( ),
.strm_data_err_stb ( ),
.strm_route_err_stb ( ),
.signal_data_err (1'b0 )
);
// ----------------------------------------------------
// Control Crossbar
// ----------------------------------------------------
wire [31:0] m_core_ctrl_tdata , s_core_ctrl_tdata ;
wire m_core_ctrl_tlast , s_core_ctrl_tlast ;
wire m_core_ctrl_tvalid, s_core_ctrl_tvalid;
wire m_core_ctrl_tready, s_core_ctrl_tready;
wire [31:0] m_duc0_ctrl_tdata , s_duc0_ctrl_tdata ;
wire m_duc0_ctrl_tlast , s_duc0_ctrl_tlast ;
wire m_duc0_ctrl_tvalid, s_duc0_ctrl_tvalid;
wire m_duc0_ctrl_tready, s_duc0_ctrl_tready;
wire [31:0] m_ddc0_ctrl_tdata , s_ddc0_ctrl_tdata ;
wire m_ddc0_ctrl_tlast , s_ddc0_ctrl_tlast ;
wire m_ddc0_ctrl_tvalid, s_ddc0_ctrl_tvalid;
wire m_ddc0_ctrl_tready, s_ddc0_ctrl_tready;
wire [31:0] m_radio0_ctrl_tdata , s_radio0_ctrl_tdata ;
wire m_radio0_ctrl_tlast , s_radio0_ctrl_tlast ;
wire m_radio0_ctrl_tvalid, s_radio0_ctrl_tvalid;
wire m_radio0_ctrl_tready, s_radio0_ctrl_tready;
wire [31:0] m_duc1_ctrl_tdata , s_duc1_ctrl_tdata ;
wire m_duc1_ctrl_tlast , s_duc1_ctrl_tlast ;
wire m_duc1_ctrl_tvalid, s_duc1_ctrl_tvalid;
wire m_duc1_ctrl_tready, s_duc1_ctrl_tready;
wire [31:0] m_ddc1_ctrl_tdata , s_ddc1_ctrl_tdata ;
wire m_ddc1_ctrl_tlast , s_ddc1_ctrl_tlast ;
wire m_ddc1_ctrl_tvalid, s_ddc1_ctrl_tvalid;
wire m_ddc1_ctrl_tready, s_ddc1_ctrl_tready;
wire [31:0] m_radio1_ctrl_tdata , s_radio1_ctrl_tdata ;
wire m_radio1_ctrl_tlast , s_radio1_ctrl_tlast ;
wire m_radio1_ctrl_tvalid, s_radio1_ctrl_tvalid;
wire m_radio1_ctrl_tready, s_radio1_ctrl_tready;
axis_ctrl_crossbar_nxn #(
.WIDTH (32),
.NPORTS (8),
.TOPOLOGY ("TORUS"),
.INGRESS_BUFF_SIZE(5),
.ROUTER_BUFF_SIZE (5),
.ROUTING_ALLOC ("WORMHOLE"),
.SWITCH_ALLOC ("PRIO")
) ctrl_xb_i (
.clk (rfnoc_ctrl_clk),
.reset (rfnoc_ctrl_rst),
.s_axis_tdata ({m_radio1_ctrl_tdata , m_ddc1_ctrl_tdata , m_duc1_ctrl_tdata , m_radio0_ctrl_tdata , m_ddc0_ctrl_tdata , m_duc0_ctrl_tdata , m_ep0_ctrl_tdata , m_core_ctrl_tdata }),
.s_axis_tvalid ({m_radio1_ctrl_tvalid, m_ddc1_ctrl_tvalid, m_duc1_ctrl_tvalid, m_radio0_ctrl_tvalid, m_ddc0_ctrl_tvalid, m_duc0_ctrl_tvalid, m_ep0_ctrl_tvalid, m_core_ctrl_tvalid}),
.s_axis_tlast ({m_radio1_ctrl_tlast , m_ddc1_ctrl_tlast , m_duc1_ctrl_tlast , m_radio0_ctrl_tlast , m_ddc0_ctrl_tlast , m_duc0_ctrl_tlast , m_ep0_ctrl_tlast , m_core_ctrl_tlast }),
.s_axis_tready ({m_radio1_ctrl_tready, m_ddc1_ctrl_tready, m_duc1_ctrl_tready, m_radio0_ctrl_tready, m_ddc0_ctrl_tready, m_duc0_ctrl_tready, m_ep0_ctrl_tready, m_core_ctrl_tready}),
.m_axis_tdata ({s_radio1_ctrl_tdata , s_ddc1_ctrl_tdata , s_duc1_ctrl_tdata , s_radio0_ctrl_tdata , s_ddc0_ctrl_tdata , s_duc0_ctrl_tdata , s_ep0_ctrl_tdata , s_core_ctrl_tdata }),
.m_axis_tvalid ({s_radio1_ctrl_tvalid, s_ddc1_ctrl_tvalid, s_duc1_ctrl_tvalid, s_radio0_ctrl_tvalid, s_ddc0_ctrl_tvalid, s_duc0_ctrl_tvalid, s_ep0_ctrl_tvalid, s_core_ctrl_tvalid}),
.m_axis_tlast ({s_radio1_ctrl_tlast , s_ddc1_ctrl_tlast , s_duc1_ctrl_tlast , s_radio0_ctrl_tlast , s_ddc0_ctrl_tlast , s_duc0_ctrl_tlast , s_ep0_ctrl_tlast , s_core_ctrl_tlast }),
.m_axis_tready ({s_radio1_ctrl_tready, s_ddc1_ctrl_tready, s_duc1_ctrl_tready, s_radio0_ctrl_tready, s_ddc0_ctrl_tready, s_duc0_ctrl_tready, s_ep0_ctrl_tready, s_core_ctrl_tready}),
.deadlock_detected()
);
// ----------------------------------------------------
// RFNoC Core Kernel
// ----------------------------------------------------
wire [(512*6)-1:0] rfnoc_core_config, rfnoc_core_status;
rfnoc_core_kernel #(
.PROTOVER (PROTOVER),
.DEVICE_TYPE (16'h1320),
.DEVICE_FAMILY ("7SERIES"),
.SAFE_START_CLKS (0),
.NUM_BLOCKS (6),
.NUM_STREAM_ENDPOINTS(2),
.NUM_ENDPOINTS_CTRL (1),
.NUM_TRANSPORTS (3),
.NUM_EDGES (8),
.CHDR_XBAR_PRESENT (1),
.EDGE_TBL_FILE (EDGE_TBL_FILE)
) core_kernel_i (
.chdr_aclk (chdr_aclk),
.chdr_aclk_locked (1'b1),
.ctrl_aclk (ctrl_aclk),
.ctrl_aclk_locked (1'b1),
.core_arst (core_arst),
.core_chdr_clk (rfnoc_chdr_clk),
.core_chdr_rst (rfnoc_chdr_rst),
.core_ctrl_clk (rfnoc_ctrl_clk),
.core_ctrl_rst (rfnoc_ctrl_rst),
.s_axis_ctrl_tdata (s_core_ctrl_tdata ),
.s_axis_ctrl_tlast (s_core_ctrl_tlast ),
.s_axis_ctrl_tvalid (s_core_ctrl_tvalid),
.s_axis_ctrl_tready (s_core_ctrl_tready),
.m_axis_ctrl_tdata (m_core_ctrl_tdata ),
.m_axis_ctrl_tlast (m_core_ctrl_tlast ),
.m_axis_ctrl_tvalid (m_core_ctrl_tvalid),
.m_axis_ctrl_tready (m_core_ctrl_tready),
.device_id (device_id),
.rfnoc_core_config (rfnoc_core_config),
.rfnoc_core_status (rfnoc_core_status)
);
// ----------------------------------------------------
// Blocks
// ----------------------------------------------------
// ----------------------------------------------------
// duc0
// ----------------------------------------------------
wire duc0_ce_clk;
wire [CHDR_W-1:0] s_duc0_in_0_tdata ;
wire s_duc0_in_0_tlast ;
wire s_duc0_in_0_tvalid;
wire s_duc0_in_0_tready;
wire [CHDR_W-1:0] m_duc0_out_0_tdata ;
wire m_duc0_out_0_tlast ;
wire m_duc0_out_0_tvalid;
wire m_duc0_out_0_tready;
rfnoc_block_duc #(
.THIS_PORTID(2),
.CHDR_W(CHDR_W),
.NUM_PORTS(1),
.NUM_HB(3),
.CIC_MAX_INTERP(255),
.MTU(MTU)
) b_duc0_0 (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.ce_clk(duc0_ce_clk),
.rfnoc_core_config (rfnoc_core_config[512*1-1:512*0]),
.rfnoc_core_status (rfnoc_core_status[512*1-1:512*0]),
.s_rfnoc_chdr_tdata ({s_duc0_in_0_tdata }),
.s_rfnoc_chdr_tlast ({s_duc0_in_0_tlast }),
.s_rfnoc_chdr_tvalid({s_duc0_in_0_tvalid}),
.s_rfnoc_chdr_tready({s_duc0_in_0_tready}),
.m_rfnoc_chdr_tdata ({m_duc0_out_0_tdata }),
.m_rfnoc_chdr_tlast ({m_duc0_out_0_tlast }),
.m_rfnoc_chdr_tvalid({m_duc0_out_0_tvalid}),
.m_rfnoc_chdr_tready({m_duc0_out_0_tready}),
.s_rfnoc_ctrl_tdata (s_duc0_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_duc0_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid(s_duc0_ctrl_tvalid),
.s_rfnoc_ctrl_tready(s_duc0_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_duc0_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_duc0_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid(m_duc0_ctrl_tvalid),
.m_rfnoc_ctrl_tready(m_duc0_ctrl_tready)
);
// ----------------------------------------------------
// ddc0
// ----------------------------------------------------
wire ddc0_ce_clk;
wire [CHDR_W-1:0] s_ddc0_in_0_tdata ;
wire s_ddc0_in_0_tlast ;
wire s_ddc0_in_0_tvalid;
wire s_ddc0_in_0_tready;
wire [CHDR_W-1:0] m_ddc0_out_0_tdata ;
wire m_ddc0_out_0_tlast ;
wire m_ddc0_out_0_tvalid;
wire m_ddc0_out_0_tready;
rfnoc_block_ddc #(
.THIS_PORTID(3),
.CHDR_W(CHDR_W),
.NUM_PORTS(1),
.NUM_HB(3),
.CIC_MAX_DECIM(255),
.MTU(MTU)
) b_ddc0_1 (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.ce_clk(ddc0_ce_clk),
.rfnoc_core_config (rfnoc_core_config[512*2-1:512*1]),
.rfnoc_core_status (rfnoc_core_status[512*2-1:512*1]),
.s_rfnoc_chdr_tdata ({s_ddc0_in_0_tdata }),
.s_rfnoc_chdr_tlast ({s_ddc0_in_0_tlast }),
.s_rfnoc_chdr_tvalid({s_ddc0_in_0_tvalid}),
.s_rfnoc_chdr_tready({s_ddc0_in_0_tready}),
.m_rfnoc_chdr_tdata ({m_ddc0_out_0_tdata }),
.m_rfnoc_chdr_tlast ({m_ddc0_out_0_tlast }),
.m_rfnoc_chdr_tvalid({m_ddc0_out_0_tvalid}),
.m_rfnoc_chdr_tready({m_ddc0_out_0_tready}),
.s_rfnoc_ctrl_tdata (s_ddc0_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_ddc0_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid(s_ddc0_ctrl_tvalid),
.s_rfnoc_ctrl_tready(s_ddc0_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_ddc0_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_ddc0_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid(m_ddc0_ctrl_tvalid),
.m_rfnoc_ctrl_tready(m_ddc0_ctrl_tready)
);
// ----------------------------------------------------
// radio0
// ----------------------------------------------------
wire radio0_radio_clk;
wire [CHDR_W-1:0] s_radio0_in_0_tdata ;
wire s_radio0_in_0_tlast ;
wire s_radio0_in_0_tvalid;
wire s_radio0_in_0_tready;
wire [CHDR_W-1:0] m_radio0_out_0_tdata ;
wire m_radio0_out_0_tlast ;
wire m_radio0_out_0_tvalid;
wire m_radio0_out_0_tready;
// ctrl_port
wire [ 1-1:0] radio0_m_ctrlport_req_wr;
wire [ 1-1:0] radio0_m_ctrlport_req_rd;
wire [ 20-1:0] radio0_m_ctrlport_req_addr;
wire [ 32-1:0] radio0_m_ctrlport_req_data;
wire [ 4-1:0] radio0_m_ctrlport_req_byte_en;
wire [ 1-1:0] radio0_m_ctrlport_req_has_time;
wire [ 64-1:0] radio0_m_ctrlport_req_time;
wire [ 1-1:0] radio0_m_ctrlport_resp_ack;
wire [ 2-1:0] radio0_m_ctrlport_resp_status;
wire [ 32-1:0] radio0_m_ctrlport_resp_data;
// time_keeper
wire [ 64-1:0] radio0_radio_time;
// radio_iface
wire [ 32-1:0] radio0_radio_rx_data;
wire [ 1-1:0] radio0_radio_rx_stb;
wire [ 1-1:0] radio0_radio_rx_running;
wire [ 32-1:0] radio0_radio_tx_data;
wire [ 1-1:0] radio0_radio_tx_stb;
wire [ 1-1:0] radio0_radio_tx_running;
rfnoc_block_radio #(
.THIS_PORTID(4),
.CHDR_W(CHDR_W),
.NUM_PORTS(1),
.MTU(MTU)
) b_radio0_2 (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.radio_clk(radio0_radio_clk),
.rfnoc_core_config (rfnoc_core_config[512*3-1:512*2]),
.rfnoc_core_status (rfnoc_core_status[512*3-1:512*2]),
.m_ctrlport_req_wr(radio0_m_ctrlport_req_wr),
.m_ctrlport_req_rd(radio0_m_ctrlport_req_rd),
.m_ctrlport_req_addr(radio0_m_ctrlport_req_addr),
.m_ctrlport_req_data(radio0_m_ctrlport_req_data),
.m_ctrlport_req_byte_en(radio0_m_ctrlport_req_byte_en),
.m_ctrlport_req_has_time(radio0_m_ctrlport_req_has_time),
.m_ctrlport_req_time(radio0_m_ctrlport_req_time),
.m_ctrlport_resp_ack(radio0_m_ctrlport_resp_ack),
.m_ctrlport_resp_status(radio0_m_ctrlport_resp_status),
.m_ctrlport_resp_data(radio0_m_ctrlport_resp_data),
.radio_time(radio0_radio_time),
.radio_rx_data(radio0_radio_rx_data),
.radio_rx_stb(radio0_radio_rx_stb),
.radio_rx_running(radio0_radio_rx_running),
.radio_tx_data(radio0_radio_tx_data),
.radio_tx_stb(radio0_radio_tx_stb),
.radio_tx_running(radio0_radio_tx_running),
.s_rfnoc_chdr_tdata ({s_radio0_in_0_tdata }),
.s_rfnoc_chdr_tlast ({s_radio0_in_0_tlast }),
.s_rfnoc_chdr_tvalid({s_radio0_in_0_tvalid}),
.s_rfnoc_chdr_tready({s_radio0_in_0_tready}),
.m_rfnoc_chdr_tdata ({m_radio0_out_0_tdata }),
.m_rfnoc_chdr_tlast ({m_radio0_out_0_tlast }),
.m_rfnoc_chdr_tvalid({m_radio0_out_0_tvalid}),
.m_rfnoc_chdr_tready({m_radio0_out_0_tready}),
.s_rfnoc_ctrl_tdata (s_radio0_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_radio0_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid(s_radio0_ctrl_tvalid),
.s_rfnoc_ctrl_tready(s_radio0_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_radio0_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_radio0_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid(m_radio0_ctrl_tvalid),
.m_rfnoc_ctrl_tready(m_radio0_ctrl_tready)
);
// ----------------------------------------------------
// duc1
// ----------------------------------------------------
wire duc1_ce_clk;
wire [CHDR_W-1:0] s_duc1_in_0_tdata ;
wire s_duc1_in_0_tlast ;
wire s_duc1_in_0_tvalid;
wire s_duc1_in_0_tready;
wire [CHDR_W-1:0] m_duc1_out_0_tdata ;
wire m_duc1_out_0_tlast ;
wire m_duc1_out_0_tvalid;
wire m_duc1_out_0_tready;
rfnoc_block_duc #(
.THIS_PORTID(5),
.CHDR_W(CHDR_W),
.NUM_PORTS(1),
.NUM_HB(3),
.CIC_MAX_INTERP(255),
.MTU(MTU)
) b_duc1_3 (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.ce_clk(duc1_ce_clk),
.rfnoc_core_config (rfnoc_core_config[512*4-1:512*3]),
.rfnoc_core_status (rfnoc_core_status[512*4-1:512*3]),
.s_rfnoc_chdr_tdata ({s_duc1_in_0_tdata }),
.s_rfnoc_chdr_tlast ({s_duc1_in_0_tlast }),
.s_rfnoc_chdr_tvalid({s_duc1_in_0_tvalid}),
.s_rfnoc_chdr_tready({s_duc1_in_0_tready}),
.m_rfnoc_chdr_tdata ({m_duc1_out_0_tdata }),
.m_rfnoc_chdr_tlast ({m_duc1_out_0_tlast }),
.m_rfnoc_chdr_tvalid({m_duc1_out_0_tvalid}),
.m_rfnoc_chdr_tready({m_duc1_out_0_tready}),
.s_rfnoc_ctrl_tdata (s_duc1_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_duc1_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid(s_duc1_ctrl_tvalid),
.s_rfnoc_ctrl_tready(s_duc1_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_duc1_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_duc1_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid(m_duc1_ctrl_tvalid),
.m_rfnoc_ctrl_tready(m_duc1_ctrl_tready)
);
// ----------------------------------------------------
// ddc1
// ----------------------------------------------------
wire ddc1_ce_clk;
wire [CHDR_W-1:0] s_ddc1_in_0_tdata ;
wire s_ddc1_in_0_tlast ;
wire s_ddc1_in_0_tvalid;
wire s_ddc1_in_0_tready;
wire [CHDR_W-1:0] m_ddc1_out_0_tdata ;
wire m_ddc1_out_0_tlast ;
wire m_ddc1_out_0_tvalid;
wire m_ddc1_out_0_tready;
rfnoc_block_ddc #(
.THIS_PORTID(6),
.CHDR_W(CHDR_W),
.NUM_PORTS(1),
.NUM_HB(3),
.CIC_MAX_DECIM(255),
.MTU(MTU)
) b_ddc1_4 (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.ce_clk(ddc1_ce_clk),
.rfnoc_core_config (rfnoc_core_config[512*5-1:512*4]),
.rfnoc_core_status (rfnoc_core_status[512*5-1:512*4]),
.s_rfnoc_chdr_tdata ({s_ddc1_in_0_tdata }),
.s_rfnoc_chdr_tlast ({s_ddc1_in_0_tlast }),
.s_rfnoc_chdr_tvalid({s_ddc1_in_0_tvalid}),
.s_rfnoc_chdr_tready({s_ddc1_in_0_tready}),
.m_rfnoc_chdr_tdata ({m_ddc1_out_0_tdata }),
.m_rfnoc_chdr_tlast ({m_ddc1_out_0_tlast }),
.m_rfnoc_chdr_tvalid({m_ddc1_out_0_tvalid}),
.m_rfnoc_chdr_tready({m_ddc1_out_0_tready}),
.s_rfnoc_ctrl_tdata (s_ddc1_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_ddc1_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid(s_ddc1_ctrl_tvalid),
.s_rfnoc_ctrl_tready(s_ddc1_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_ddc1_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_ddc1_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid(m_ddc1_ctrl_tvalid),
.m_rfnoc_ctrl_tready(m_ddc1_ctrl_tready)
);
// ----------------------------------------------------
// radio1
// ----------------------------------------------------
wire radio1_radio_clk;
wire [CHDR_W-1:0] s_radio1_in_0_tdata ;
wire s_radio1_in_0_tlast ;
wire s_radio1_in_0_tvalid;
wire s_radio1_in_0_tready;
wire [CHDR_W-1:0] m_radio1_out_0_tdata ;
wire m_radio1_out_0_tlast ;
wire m_radio1_out_0_tvalid;
wire m_radio1_out_0_tready;
// ctrl_port
wire [ 1-1:0] radio1_m_ctrlport_req_wr;
wire [ 1-1:0] radio1_m_ctrlport_req_rd;
wire [ 20-1:0] radio1_m_ctrlport_req_addr;
wire [ 32-1:0] radio1_m_ctrlport_req_data;
wire [ 4-1:0] radio1_m_ctrlport_req_byte_en;
wire [ 1-1:0] radio1_m_ctrlport_req_has_time;
wire [ 64-1:0] radio1_m_ctrlport_req_time;
wire [ 1-1:0] radio1_m_ctrlport_resp_ack;
wire [ 2-1:0] radio1_m_ctrlport_resp_status;
wire [ 32-1:0] radio1_m_ctrlport_resp_data;
// time_keeper
wire [ 64-1:0] radio1_radio_time;
// radio_iface
wire [ 32-1:0] radio1_radio_rx_data;
wire [ 1-1:0] radio1_radio_rx_stb;
wire [ 1-1:0] radio1_radio_rx_running;
wire [ 32-1:0] radio1_radio_tx_data;
wire [ 1-1:0] radio1_radio_tx_stb;
wire [ 1-1:0] radio1_radio_tx_running;
rfnoc_block_radio #(
.THIS_PORTID(7),
.CHDR_W(CHDR_W),
.NUM_PORTS(1),
.MTU(MTU)
) b_radio1_5 (
.rfnoc_chdr_clk (rfnoc_chdr_clk),
.rfnoc_ctrl_clk (rfnoc_ctrl_clk),
.radio_clk(radio1_radio_clk),
.rfnoc_core_config (rfnoc_core_config[512*6-1:512*5]),
.rfnoc_core_status (rfnoc_core_status[512*6-1:512*5]),
.m_ctrlport_req_wr(radio1_m_ctrlport_req_wr),
.m_ctrlport_req_rd(radio1_m_ctrlport_req_rd),
.m_ctrlport_req_addr(radio1_m_ctrlport_req_addr),
.m_ctrlport_req_data(radio1_m_ctrlport_req_data),
.m_ctrlport_req_byte_en(radio1_m_ctrlport_req_byte_en),
.m_ctrlport_req_has_time(radio1_m_ctrlport_req_has_time),
.m_ctrlport_req_time(radio1_m_ctrlport_req_time),
.m_ctrlport_resp_ack(radio1_m_ctrlport_resp_ack),
.m_ctrlport_resp_status(radio1_m_ctrlport_resp_status),
.m_ctrlport_resp_data(radio1_m_ctrlport_resp_data),
.radio_time(radio1_radio_time),
.radio_rx_data(radio1_radio_rx_data),
.radio_rx_stb(radio1_radio_rx_stb),
.radio_rx_running(radio1_radio_rx_running),
.radio_tx_data(radio1_radio_tx_data),
.radio_tx_stb(radio1_radio_tx_stb),
.radio_tx_running(radio1_radio_tx_running),
.s_rfnoc_chdr_tdata ({s_radio1_in_0_tdata }),
.s_rfnoc_chdr_tlast ({s_radio1_in_0_tlast }),
.s_rfnoc_chdr_tvalid({s_radio1_in_0_tvalid}),
.s_rfnoc_chdr_tready({s_radio1_in_0_tready}),
.m_rfnoc_chdr_tdata ({m_radio1_out_0_tdata }),
.m_rfnoc_chdr_tlast ({m_radio1_out_0_tlast }),
.m_rfnoc_chdr_tvalid({m_radio1_out_0_tvalid}),
.m_rfnoc_chdr_tready({m_radio1_out_0_tready}),
.s_rfnoc_ctrl_tdata (s_radio1_ctrl_tdata ),
.s_rfnoc_ctrl_tlast (s_radio1_ctrl_tlast ),
.s_rfnoc_ctrl_tvalid(s_radio1_ctrl_tvalid),
.s_rfnoc_ctrl_tready(s_radio1_ctrl_tready),
.m_rfnoc_ctrl_tdata (m_radio1_ctrl_tdata ),
.m_rfnoc_ctrl_tlast (m_radio1_ctrl_tlast ),
.m_rfnoc_ctrl_tvalid(m_radio1_ctrl_tvalid),
.m_rfnoc_ctrl_tready(m_radio1_ctrl_tready)
);
// ----------------------------------------------------
// Static Router
// ----------------------------------------------------
assign s_duc0_in_0_tdata = m_ep0_out0_tdata ;
assign s_duc0_in_0_tlast = m_ep0_out0_tlast ;
assign s_duc0_in_0_tvalid = m_ep0_out0_tvalid;
assign m_ep0_out0_tready = s_duc0_in_0_tready;
assign s_radio0_in_0_tdata = m_duc0_out_0_tdata ;
assign s_radio0_in_0_tlast = m_duc0_out_0_tlast ;
assign s_radio0_in_0_tvalid = m_duc0_out_0_tvalid;
assign m_duc0_out_0_tready = s_radio0_in_0_tready;
assign s_ddc0_in_0_tdata = m_radio0_out_0_tdata ;
assign s_ddc0_in_0_tlast = m_radio0_out_0_tlast ;
assign s_ddc0_in_0_tvalid = m_radio0_out_0_tvalid;
assign m_radio0_out_0_tready = s_ddc0_in_0_tready;
assign s_ep0_in0_tdata = m_ddc0_out_0_tdata ;
assign s_ep0_in0_tlast = m_ddc0_out_0_tlast ;
assign s_ep0_in0_tvalid = m_ddc0_out_0_tvalid;
assign m_ddc0_out_0_tready = s_ep0_in0_tready;
assign s_duc1_in_0_tdata = m_ep1_out0_tdata ;
assign s_duc1_in_0_tlast = m_ep1_out0_tlast ;
assign s_duc1_in_0_tvalid = m_ep1_out0_tvalid;
assign m_ep1_out0_tready = s_duc1_in_0_tready;
assign s_radio1_in_0_tdata = m_duc1_out_0_tdata ;
assign s_radio1_in_0_tlast = m_duc1_out_0_tlast ;
assign s_radio1_in_0_tvalid = m_duc1_out_0_tvalid;
assign m_duc1_out_0_tready = s_radio1_in_0_tready;
assign s_ddc1_in_0_tdata = m_radio1_out_0_tdata ;
assign s_ddc1_in_0_tlast = m_radio1_out_0_tlast ;
assign s_ddc1_in_0_tvalid = m_radio1_out_0_tvalid;
assign m_radio1_out_0_tready = s_ddc1_in_0_tready;
assign s_ep1_in0_tdata = m_ddc1_out_0_tdata ;
assign s_ep1_in0_tlast = m_ddc1_out_0_tlast ;
assign s_ep1_in0_tvalid = m_ddc1_out_0_tvalid;
assign m_ddc1_out_0_tready = s_ep1_in0_tready;
// ----------------------------------------------------
// Unused Ports
// ----------------------------------------------------
// ----------------------------------------------------
// Clock Domains
// ----------------------------------------------------
assign radio0_radio_clk = radio_clk;
assign ddc0_ce_clk = radio_clk;
assign duc0_ce_clk = radio_clk;
assign radio1_radio_clk = radio_clk;
assign ddc1_ce_clk = radio_clk;
assign duc1_ce_clk = radio_clk;
// ----------------------------------------------------
// IO Port Connection
// ----------------------------------------------------
// Master/Slave Connections:
assign m_ctrlport_radio0_req_wr = radio0_m_ctrlport_req_wr;
assign m_ctrlport_radio0_req_rd = radio0_m_ctrlport_req_rd;
assign m_ctrlport_radio0_req_addr = radio0_m_ctrlport_req_addr;
assign m_ctrlport_radio0_req_data = radio0_m_ctrlport_req_data;
assign m_ctrlport_radio0_req_byte_en = radio0_m_ctrlport_req_byte_en;
assign m_ctrlport_radio0_req_has_time = radio0_m_ctrlport_req_has_time;
assign m_ctrlport_radio0_req_time = radio0_m_ctrlport_req_time;
assign radio0_m_ctrlport_resp_ack = m_ctrlport_radio0_resp_ack;
assign radio0_m_ctrlport_resp_status = m_ctrlport_radio0_resp_status;
assign radio0_m_ctrlport_resp_data = m_ctrlport_radio0_resp_data;
assign m_ctrlport_radio1_req_wr = radio1_m_ctrlport_req_wr;
assign m_ctrlport_radio1_req_rd = radio1_m_ctrlport_req_rd;
assign m_ctrlport_radio1_req_addr = radio1_m_ctrlport_req_addr;
assign m_ctrlport_radio1_req_data = radio1_m_ctrlport_req_data;
assign m_ctrlport_radio1_req_byte_en = radio1_m_ctrlport_req_byte_en;
assign m_ctrlport_radio1_req_has_time = radio1_m_ctrlport_req_has_time;
assign m_ctrlport_radio1_req_time = radio1_m_ctrlport_req_time;
assign radio1_m_ctrlport_resp_ack = m_ctrlport_radio1_resp_ack;
assign radio1_m_ctrlport_resp_status = m_ctrlport_radio1_resp_status;
assign radio1_m_ctrlport_resp_data = m_ctrlport_radio1_resp_data;
assign radio0_radio_rx_data = radio_rx_data_radio0;
assign radio0_radio_rx_stb = radio_rx_stb_radio0;
assign radio_rx_running_radio0 = radio0_radio_rx_running;
assign radio_tx_data_radio0 = radio0_radio_tx_data;
assign radio0_radio_tx_stb = radio_tx_stb_radio0;
assign radio_tx_running_radio0 = radio0_radio_tx_running;
assign radio1_radio_rx_data = radio_rx_data_radio1;
assign radio1_radio_rx_stb = radio_rx_stb_radio1;
assign radio_rx_running_radio1 = radio1_radio_rx_running;
assign radio_tx_data_radio1 = radio1_radio_tx_data;
assign radio1_radio_tx_stb = radio_tx_stb_radio1;
assign radio_tx_running_radio1 = radio1_radio_tx_running;
// Broadcaster/Listener Connections:
assign radio0_radio_time = radio_time;
assign radio1_radio_time = radio_time;
endmodule