FPGA: - Split up MB registers that control daughterboard specific settings so that daughterboards 0 and 1 could have different setings, in preparation for future devices that require different settings. This requires a compat number bump to 8.0. - Add registers for additional RFDC information, including the block/tile mapping of the individual channels, and information about resampling capabilities - Identify sections of code that would be specific to X410/ZBX and move them to their own headers, so it's trivial to add device-specific sections of code instead for other devices in the future. - This includes constraints for clocks and I/O pins. - Remove ability to do timed ctrlport transactions to the MB CPLD, this was unused and possibly broken. - Move daughterboard-specific code into its own code location (dboards/zbx) - Move X410-specific register documentation to its own location (doc/X410) - Refactor Makefiles to split out X410/ZBX specific components and allow switching between device types - Add 512-bit AXI interconnects - Make number of timekeepers configurable (X410 keeps the single timekeeper) MPM: - Required compat is bumped to 8.0 - Now supports new registers for detecting DSP capabilities and multi-rate settings for the daughterboards - Adds MMCM controls (currently unused) Co-authored-by: Wade Fife <wade.fife@ni.com> Co-authored-by: Ryan Marlow <ryan@lmarlow.com> Co-authored-by: Martin Braun <martin.braun@ettus.com> Co-authored-by: Humberto Jimenez <humberto.jimenez@ni.com> Original-commit: c1d268917ea65dd9c5a42366014cb96d3c025223
215 lines
8.4 KiB
Verilog
215 lines
8.4 KiB
Verilog
//
|
|
// Copyright 2021 Ettus Research, a National Instruments Brand
|
|
//
|
|
// SPDX-License-Identifier: LGPL-3.0-or-later
|
|
//
|
|
// Module: db_gpio_interface
|
|
//
|
|
// Description:
|
|
// Interface for GPIO interface towards daughterboards.
|
|
//
|
|
// A ControlPort interface is serialized into bytes along with a valid signal.
|
|
// The ControlPort supports write requests only. Byte enables are not supported.
|
|
// There is support for timed commands.
|
|
// Furthermore there are 4 state wires towards the DB. Ensure an appropriate
|
|
// hold time on the states as the transmission happens in pll_ref_clk, which is
|
|
// slower than radio_clk. Pulses of e.g. just a single clock cycle may not get
|
|
// transferred to the DB.
|
|
//
|
|
// The 20 available GPIO lines are assigned with
|
|
// - 5x empty
|
|
// - bytestream direction
|
|
// - bytestream valid
|
|
// - bytestream data (8 bits)
|
|
// - 1x empty
|
|
// - db_state (4 bits)
|
|
//
|
|
|
|
`default_nettype none
|
|
|
|
module db_gpio_interface (
|
|
// Clocks and reset
|
|
input wire radio_clk,
|
|
input wire pll_ref_clk,
|
|
|
|
// DB state lines (domain: radio_clk)
|
|
input wire [ 3:0] db_state,
|
|
// Request (domain: radio_clk)
|
|
input wire ctrlport_rst,
|
|
input wire s_ctrlport_req_wr,
|
|
input wire s_ctrlport_req_rd,
|
|
input wire [19:0] s_ctrlport_req_addr,
|
|
input wire [31:0] s_ctrlport_req_data,
|
|
|
|
// Response (domain: radio_clk)
|
|
output wire s_ctrlport_resp_ack,
|
|
output wire [ 1:0] s_ctrlport_resp_status,
|
|
output wire [31:0] s_ctrlport_resp_data,
|
|
|
|
// GPIO interface (domain: pll_ref_clk)
|
|
input wire [19:0] gpio_in,
|
|
output wire [19:0] gpio_out,
|
|
output wire [19:0] gpio_out_en,
|
|
|
|
// Version (Constant)
|
|
output wire [95:0] version_info
|
|
);
|
|
|
|
`include "../../regmap/x410/versioning_regs_regmap_utils.vh"
|
|
`include "../../regmap/versioning_utils.vh"
|
|
|
|
//----------------------------------------------------------------------------
|
|
// Clock domain crossing (radio_clk -> pll_ref_clk)
|
|
//----------------------------------------------------------------------------
|
|
// Radio_clk is derived from pll_ref_clk by an integer multiplier and
|
|
// originate from the same PLL.
|
|
// Therefore the clock crossing can be achieved by using simple registers.
|
|
// Static timing analysis will be able to meet setup and hold requirements on
|
|
// them.
|
|
|
|
wire ctrlport_rst_prc;
|
|
|
|
wire ctrlport_req_wr_prc;
|
|
wire ctrlport_req_rd_prc;
|
|
wire [19:0] ctrlport_req_addr_prc;
|
|
wire [31:0] ctrlport_req_data_prc;
|
|
|
|
wire ctrlport_resp_ack_prc;
|
|
wire [ 1:0] ctrlport_resp_status_prc;
|
|
wire [31:0] ctrlport_resp_data_prc;
|
|
|
|
ctrlport_clk_crossing_derived ctrlport_clk_crossing_derived_i(
|
|
.i_clk (radio_clk),
|
|
.o_clk (pll_ref_clk),
|
|
.i_ctrlport_rst (ctrlport_rst),
|
|
.i_ctrlport_req_wr (s_ctrlport_req_wr),
|
|
.i_ctrlport_req_rd (s_ctrlport_req_rd),
|
|
.i_ctrlport_req_addr (s_ctrlport_req_addr),
|
|
.i_ctrlport_req_data (s_ctrlport_req_data),
|
|
.i_ctrlport_resp_ack (s_ctrlport_resp_ack),
|
|
.i_ctrlport_resp_status (s_ctrlport_resp_status),
|
|
.i_ctrlport_resp_data (s_ctrlport_resp_data),
|
|
.o_ctrlport_rst (ctrlport_rst_prc),
|
|
.o_ctrlport_req_wr (ctrlport_req_wr_prc),
|
|
.o_ctrlport_req_rd (ctrlport_req_rd_prc),
|
|
.o_ctrlport_req_addr (ctrlport_req_addr_prc),
|
|
.o_ctrlport_req_data (ctrlport_req_data_prc),
|
|
.o_ctrlport_resp_ack (ctrlport_resp_ack_prc),
|
|
.o_ctrlport_resp_status (ctrlport_resp_status_prc),
|
|
.o_ctrlport_resp_data (ctrlport_resp_data_prc)
|
|
);
|
|
|
|
// transfer state lines
|
|
reg [3:0] db_state_prc = 4'b0;
|
|
reg [3:0] db_state_prc_fe = 4'b0;
|
|
always @(posedge pll_ref_clk) begin
|
|
db_state_prc <= db_state;
|
|
end
|
|
always @(negedge pll_ref_clk) begin
|
|
db_state_prc_fe <= db_state_prc;
|
|
end
|
|
|
|
//----------------------------------------------------------------------------
|
|
// Ctrlport serializer
|
|
//----------------------------------------------------------------------------
|
|
wire [7:0] bytestream_data_in;
|
|
wire [7:0] bytestream_data_out;
|
|
wire bytestream_direction;
|
|
wire bytestream_output_enable;
|
|
wire bytestream_valid_in;
|
|
wire bytestream_valid_out;
|
|
|
|
ctrlport_byte_serializer serializer_i (
|
|
.ctrlport_clk (pll_ref_clk),
|
|
.ctrlport_rst (ctrlport_rst_prc),
|
|
.s_ctrlport_req_wr (ctrlport_req_wr_prc),
|
|
.s_ctrlport_req_rd (ctrlport_req_rd_prc),
|
|
.s_ctrlport_req_addr (ctrlport_req_addr_prc),
|
|
.s_ctrlport_req_data (ctrlport_req_data_prc),
|
|
.s_ctrlport_resp_ack (ctrlport_resp_ack_prc),
|
|
.s_ctrlport_resp_status (ctrlport_resp_status_prc),
|
|
.s_ctrlport_resp_data (ctrlport_resp_data_prc),
|
|
.bytestream_data_in (bytestream_data_in),
|
|
.bytestream_valid_in (bytestream_valid_in),
|
|
.bytestream_data_out (bytestream_data_out),
|
|
.bytestream_valid_out (bytestream_valid_out),
|
|
.bytestream_direction (bytestream_direction),
|
|
.bytestream_output_enable (bytestream_output_enable)
|
|
);
|
|
|
|
// IOB registers to drive data on the falling edge
|
|
reg [7:0] bytestream_data_out_fe;
|
|
reg bytestream_direction_fe;
|
|
reg bytestream_output_enable_fe;
|
|
reg bytestream_valid_out_fe;
|
|
|
|
// Signals are shifted into a falling edge domain to help meet
|
|
// hold requirements at CPLD
|
|
always @(negedge pll_ref_clk) begin
|
|
if (ctrlport_rst_prc) begin
|
|
bytestream_data_out_fe <= 8'b0;
|
|
bytestream_valid_out_fe <= 1'b0;
|
|
bytestream_direction_fe <= 1'b0;
|
|
bytestream_output_enable_fe <= 1'b1;
|
|
end else begin
|
|
bytestream_data_out_fe <= bytestream_data_out;
|
|
bytestream_valid_out_fe <= bytestream_valid_out;
|
|
bytestream_direction_fe <= bytestream_direction;
|
|
bytestream_output_enable_fe <= bytestream_output_enable;
|
|
end
|
|
end
|
|
|
|
//----------------------------------------------------------------------------
|
|
// wire assignment
|
|
//----------------------------------------------------------------------------
|
|
// 5 unused, 10 used, 1 unused and 4 used signals
|
|
assign gpio_out = {5'b0, bytestream_direction_fe, bytestream_valid_out_fe, bytestream_data_out_fe, 1'b0, db_state_prc_fe};
|
|
assign gpio_out_en = {5'b0, 1'b1, {9 {bytestream_output_enable_fe}}, 1'b0, {4 {1'b1}} };
|
|
|
|
assign bytestream_valid_in = gpio_in[13];
|
|
assign bytestream_data_in = gpio_in[12:5];
|
|
|
|
//----------------------------------------------------------------------------
|
|
// version_info
|
|
//----------------------------------------------------------------------------
|
|
|
|
// Version metadata, constants come from auto-generated versioning_regs_regmap_utils.vh
|
|
assign version_info = build_component_versions(
|
|
DB_GPIO_IFC_VERSION_LAST_MODIFIED_TIME,
|
|
build_version(
|
|
DB_GPIO_IFC_OLDEST_COMPATIBLE_VERSION_MAJOR,
|
|
DB_GPIO_IFC_OLDEST_COMPATIBLE_VERSION_MINOR,
|
|
DB_GPIO_IFC_OLDEST_COMPATIBLE_VERSION_BUILD),
|
|
build_version(
|
|
DB_GPIO_IFC_CURRENT_VERSION_MAJOR,
|
|
DB_GPIO_IFC_CURRENT_VERSION_MINOR,
|
|
DB_GPIO_IFC_CURRENT_VERSION_BUILD));
|
|
|
|
endmodule
|
|
|
|
`default_nettype wire
|
|
|
|
//XmlParse xml_on
|
|
//<regmap name="VERSIONING_REGS_REGMAP">
|
|
// <group name="VERSIONING_CONSTANTS">
|
|
// <enumeratedtype name="DB_GPIO_IFC_VERSION" showhex="true">
|
|
// <info>
|
|
// Daughterboard GPIO interface.{BR/}
|
|
// For guidance on when to update these revision numbers,
|
|
// please refer to the register map documentation accordingly:
|
|
// <li> Current version: @.VERSIONING_REGS_REGMAP..CURRENT_VERSION
|
|
// <li> Oldest compatible version: @.VERSIONING_REGS_REGMAP..OLDEST_COMPATIBLE_VERSION
|
|
// <li> Version last modified: @.VERSIONING_REGS_REGMAP..VERSION_LAST_MODIFIED
|
|
// </info>
|
|
// <value name="DB_GPIO_IFC_CURRENT_VERSION_MAJOR" integer="1"/>
|
|
// <value name="DB_GPIO_IFC_CURRENT_VERSION_MINOR" integer="0"/>
|
|
// <value name="DB_GPIO_IFC_CURRENT_VERSION_BUILD" integer="0"/>
|
|
// <value name="DB_GPIO_IFC_OLDEST_COMPATIBLE_VERSION_MAJOR" integer="1"/>
|
|
// <value name="DB_GPIO_IFC_OLDEST_COMPATIBLE_VERSION_MINOR" integer="0"/>
|
|
// <value name="DB_GPIO_IFC_OLDEST_COMPATIBLE_VERSION_BUILD" integer="0"/>
|
|
// <value name="DB_GPIO_IFC_VERSION_LAST_MODIFIED_TIME" integer="0x20110616"/>
|
|
// </enumeratedtype>
|
|
// </group>
|
|
//</regmap>
|
|
//XmlParse xml_off
|