Compare commits
63 Commits
dev/ax7102
...
dev/contro
| Author | SHA1 | Date | |
|---|---|---|---|
| ee83bcbb9e | |||
| 8648747380 | |||
| e06ef3a16b | |||
| c121c2c103 | |||
| 56c33d2769 | |||
| fc33aa6862 | |||
| 490d3dcfd0 | |||
| 1c2eccaf1d | |||
| 076ad542b2 | |||
| e685a6a9fc | |||
| c057890007 | |||
| 42df57be7d | |||
| 606d1d7f1c | |||
| 8aefa4f3f6 | |||
| 7cf727883f | |||
| cec4c84fd9 | |||
| 691e69693a | |||
| e467700368 | |||
| 984461afc0 | |||
| 6c171c55d7 | |||
| c1031f6a26 | |||
| d0f48ba513 | |||
| 19bade1c8c | |||
| 0866b5da8d | |||
| 126b66e4f5 | |||
| 1ba94690d5 | |||
| c0a2f0e403 | |||
| 7bd1aa68da | |||
| 061f8fe12b | |||
| 99a344d534 | |||
| e7c45101d1 | |||
| fc3134f2d8 | |||
| a82140feda | |||
| bafd084f0d | |||
| d71655885c | |||
| 56e31a6cc6 | |||
| 14a1df8bae | |||
| a6ade44b4d | |||
| 14f4a5eb2a | |||
| 1eb21b5087 | |||
| 9285ce42e1 | |||
| 8f342eebd7 | |||
| 646cbb4c31 | |||
| 4938b80af6 | |||
| c7216e4e8e | |||
| 4ecb3f5ea5 | |||
| 9b5e39f3df | |||
| 99d4eb976f | |||
| d925a4ffaa | |||
| 07ffb31651 | |||
| 0486e16484 | |||
| 10dc60b54f | |||
| 4f82a27cb7 | |||
| fc36390cfe | |||
| ba9dee9275 | |||
| 5b9469560a | |||
| 966704a4de | |||
| d8d89b3566 | |||
| 1504569fb6 | |||
| b2c92070a2 | |||
| 51d715a728 | |||
| 9efbd6586f | |||
| eacffd44b3 |
3
.gitmodules
vendored
Normal file
3
.gitmodules
vendored
Normal file
@ -0,0 +1,3 @@
|
||||
[submodule "external/rtl_libs"]
|
||||
path = external/rtl_libs
|
||||
url = https://git.radiophotonics.ru/baulin.fa/rtl_libs.git
|
||||
@ -1,3 +1,10 @@
|
||||
# reflectometer_fpga_project
|
||||
|
||||
Проект по разработке аппаратной вычислительной части для отпического рефлектометра для обнаружения утечек.
|
||||
Проект по разработке аппаратной вычислительной части для оптического рефлектометра для обнаружения утечек.
|
||||
|
||||
## Структура
|
||||
- constaints: констрейны под ПЛИСы
|
||||
- designs: разные сборные дизайны, включая полный проект
|
||||
- rtl: код блоков, в каждой папке есть src и tests
|
||||
- scripts: скрипты для сборки
|
||||
- software: программные скрипты
|
||||
@ -1,5 +1,5 @@
|
||||
# Директория с тестовыми проектами под ПЛИСу
|
||||
|
||||
- eth_ctrl_debug: проект с ethernet и контроллером. Позволяет через ILA проверить, что пакет правильно принимается и что значения правильно выставляются.
|
||||
|
||||
- eth_generator: проект на базе eth_ctrl_debug, в который включен генератор импульсов. В паре с ЦАП можно через консольку по Ethernet запускать генерацию разных импульсов.
|
||||
- adc_dac_synchronizer: проект для тестирования и отладки связки сэмплер + контроллер + генератор, проверки синхронизации между импульсами.
|
||||
- reflectometer_base: базовый проект рефлектометра без внешних интерфейсов, только I/O через AXI Stream.
|
||||
- reflectometer_prototype: тестовый проект под AX7102 с управлением и отправкой данных по ethernet.
|
||||
@ -7,7 +7,7 @@
|
||||
#
|
||||
|
||||
# FPGA settings
|
||||
FPGA_PART = xc7a35tfgg484-1
|
||||
FPGA_PART = xc7a100tfgg484-2
|
||||
FPGA_TOP = sync_top
|
||||
FPGA_ARCH = artix7
|
||||
|
||||
@ -16,13 +16,19 @@ RTL_DIR = ../../rtl
|
||||
|
||||
include ../../scripts/vivado.mk
|
||||
|
||||
|
||||
SYN_FILES += $(sort $(shell find ../../rtl/sampler/src -type f -name '*.sv'))
|
||||
SYN_FILES += $(sort $(shell find ../../rtl/generator/src -type f -name '*.sv'))
|
||||
SYN_FILES += sync_top.sv
|
||||
SYN_FILES += $(sort $(shell find ../../rtl -type f \( -name '*.v' -o -name '*.sv' \)))
|
||||
|
||||
XCI_FILES += $(sort $(shell find ip/ -type f -name '*.xci'))
|
||||
|
||||
XDC_FILES += ../../constraints/ax7a035b.xdc
|
||||
XDC_FILES += ../../constraints/ax7102.xdc
|
||||
XDC_FILES += debug.xdc
|
||||
|
||||
SYN_FILES += tb_sync_top.sv
|
||||
SIM_TOP = tb_top
|
||||
|
||||
|
||||
|
||||
program: $(PROJECT).bit
|
||||
|
||||
189
designs/controller_dma_connective/src/axi_dma_wrapper_if.sv
Normal file
189
designs/controller_dma_connective/src/axi_dma_wrapper_if.sv
Normal file
@ -0,0 +1,189 @@
|
||||
// SPDX-License-Identifier: MIT
|
||||
//
|
||||
// SystemVerilog interface wrapper around alexforencich/verilog-axi axi_dma.v.
|
||||
//
|
||||
// AXI memory, AXI-Stream data, DMA descriptor, and DMA status channels are all
|
||||
// exposed through compact interfaces. The original Forencich core remains
|
||||
// untouched and is connected through local flat wires.
|
||||
|
||||
`default_nettype none
|
||||
import dma_reg_pkg::*;
|
||||
|
||||
// DMA Specific wrappers & converters
|
||||
module axi_dma_wrapper #(
|
||||
parameter int unsigned AXI_DATA_WIDTH = 32,
|
||||
|
||||
parameter int unsigned AXI_STRB_WIDTH = AXI_DATA_WIDTH / 8,
|
||||
parameter int unsigned AXI_ID_WIDTH = 8,
|
||||
parameter int unsigned AXI_USER_WIDTH = 1,
|
||||
parameter int unsigned AXI_MAX_BURST_LEN = 16,
|
||||
|
||||
parameter int unsigned AXIS_DATA_WIDTH = AXI_DATA_WIDTH,
|
||||
parameter int unsigned AXIS_KEEP_ENABLE = AXIS_DATA_WIDTH > 8,
|
||||
parameter int unsigned AXIS_KEEP_WIDTH = AXIS_DATA_WIDTH / 8,
|
||||
parameter int unsigned AXIS_LAST_ENABLE = 1,
|
||||
parameter int unsigned AXIS_ID_ENABLE = 1,
|
||||
parameter int unsigned AXIS_DEST_ENABLE = 0,
|
||||
parameter int unsigned AXIS_USER_ENABLE = 1,
|
||||
|
||||
parameter int unsigned ENABLE_SG = 0,
|
||||
parameter int unsigned ENABLE_UNALIGNED = 0
|
||||
)(
|
||||
input logic clk,
|
||||
input logic rst,
|
||||
|
||||
axis_if.slave s_axis_read_desc,
|
||||
|
||||
axis_if.master m_axis_read_desc_status,
|
||||
|
||||
axis_if.master m_axis_read_data,
|
||||
|
||||
axis_if.slave s_axis_write_desc,
|
||||
|
||||
axis_if.master m_axis_write_desc_status,
|
||||
|
||||
axis_if.slave s_axis_write_data,
|
||||
|
||||
axi4_if.master m_axi
|
||||
);
|
||||
|
||||
dma_read_desc_t read_desc;
|
||||
assign read_desc = dma_read_desc_t'(s_axis_read_desc.req.t.data);
|
||||
|
||||
|
||||
dma_write_desc_t write_desc;
|
||||
assign write_desc = dma_write_desc_t'(s_axis_write_desc.req.t.data);
|
||||
|
||||
|
||||
dma_read_status_t read_status;
|
||||
assign m_axis_read_desc_status.req.t.data = read_status;
|
||||
logic m_axis_read_desc_status_valid;
|
||||
assign m_axis_read_desc_status.req.t.valid = m_axis_read_desc_status_valid;
|
||||
|
||||
|
||||
|
||||
dma_write_status_t write_status;
|
||||
assign m_axis_write_desc_status.req.t.data = write_status;
|
||||
logic m_axis_write_desc_status_valid;
|
||||
assign m_axis_write_desc_status.req.t.valid = m_axis_write_desc_status_valid;
|
||||
|
||||
|
||||
// Original DMA: flat ports only.
|
||||
axi_dma #(
|
||||
.AXI_DATA_WIDTH (AXI_DATA_WIDTH),
|
||||
.AXI_ADDR_WIDTH (dma_reg_pkg::AXI_ADDR_WIDTH),
|
||||
.AXI_STRB_WIDTH (AXI_STRB_WIDTH),
|
||||
.AXI_ID_WIDTH (AXI_ID_WIDTH),
|
||||
.AXI_MAX_BURST_LEN (AXI_MAX_BURST_LEN),
|
||||
.AXIS_DATA_WIDTH (AXIS_DATA_WIDTH),
|
||||
.AXIS_KEEP_ENABLE (AXIS_KEEP_ENABLE),
|
||||
.AXIS_KEEP_WIDTH (AXIS_KEEP_WIDTH),
|
||||
.AXIS_LAST_ENABLE (AXIS_LAST_ENABLE),
|
||||
.AXIS_ID_ENABLE (AXIS_ID_ENABLE),
|
||||
.AXIS_ID_WIDTH (dma_reg_pkg::AXIS_ID_WIDTH),
|
||||
.AXIS_DEST_ENABLE (AXIS_DEST_ENABLE),
|
||||
.AXIS_DEST_WIDTH (dma_reg_pkg::AXIS_DEST_WIDTH),
|
||||
.AXIS_USER_ENABLE (AXIS_USER_ENABLE),
|
||||
.AXIS_USER_WIDTH (dma_reg_pkg::AXIS_USER_WIDTH),
|
||||
.LEN_WIDTH (dma_reg_pkg::LEN_WIDTH),
|
||||
.TAG_WIDTH (dma_reg_pkg::TAG_WIDTH),
|
||||
.ENABLE_SG (ENABLE_SG),
|
||||
.ENABLE_UNALIGNED (ENABLE_UNALIGNED)
|
||||
) i_axi_dma (
|
||||
.clk (clk),
|
||||
.rst (rst),
|
||||
|
||||
.s_axis_read_desc_addr (read_desc.addr),
|
||||
.s_axis_read_desc_len (read_desc.len),
|
||||
.s_axis_read_desc_tag (read_desc.tag),
|
||||
.s_axis_read_desc_id (read_desc.id),
|
||||
.s_axis_read_desc_dest (read_desc.dest),
|
||||
.s_axis_read_desc_user (read_desc.user),
|
||||
.s_axis_read_desc_valid (s_axis_read_desc.req.t.valid),
|
||||
.s_axis_read_desc_ready (s_axis_read_desc.resp.ready),
|
||||
|
||||
.m_axis_read_desc_status_tag (read_status.tag),
|
||||
.m_axis_read_desc_status_error (read_status.error),
|
||||
.m_axis_read_desc_status_valid (m_axis_read_desc_status_valid),
|
||||
|
||||
.m_axis_read_data_tdata (m_axis_read_data.req.t.data),
|
||||
.m_axis_read_data_tkeep (m_axis_read_data.req.t.keep),
|
||||
.m_axis_read_data_tvalid (m_axis_read_data.req.t.valid),
|
||||
.m_axis_read_data_tready (m_axis_read_data.resp.ready),
|
||||
.m_axis_read_data_tlast (m_axis_read_data.req.t.last),
|
||||
.m_axis_read_data_tid (m_axis_read_data.req.t.id),
|
||||
.m_axis_read_data_tdest (m_axis_read_data.req.t.dest),
|
||||
.m_axis_read_data_tuser (m_axis_read_data.req.t.user),
|
||||
|
||||
.s_axis_write_desc_addr (write_desc.addr),
|
||||
.s_axis_write_desc_len (write_desc.len),
|
||||
.s_axis_write_desc_tag (write_desc.tag),
|
||||
.s_axis_write_desc_valid (s_axis_write_desc.req.t.valid),
|
||||
.s_axis_write_desc_ready (s_axis_write_desc.resp.ready),
|
||||
|
||||
.m_axis_write_desc_status_len (write_status.len),
|
||||
.m_axis_write_desc_status_tag (write_status.tag),
|
||||
.m_axis_write_desc_status_id (write_status.id),
|
||||
.m_axis_write_desc_status_dest (write_status.dest),
|
||||
.m_axis_write_desc_status_user (write_status.user),
|
||||
.m_axis_write_desc_status_error (write_status.error),
|
||||
.m_axis_write_desc_status_valid (m_axis_write_desc_status_valid),
|
||||
|
||||
.s_axis_write_data_tdata (s_axis_write_data.req.t.data),
|
||||
.s_axis_write_data_tkeep (s_axis_write_data.req.t.keep),
|
||||
.s_axis_write_data_tvalid (s_axis_write_data.req.t.valid),
|
||||
.s_axis_write_data_tready (s_axis_write_data.resp.ready),
|
||||
.s_axis_write_data_tlast (s_axis_write_data.req.t.last),
|
||||
.s_axis_write_data_tid (s_axis_write_data.req.t.id),
|
||||
.s_axis_write_data_tdest (s_axis_write_data.req.t.dest),
|
||||
.s_axis_write_data_tuser (s_axis_write_data.req.t.user),
|
||||
|
||||
.m_axi_awid (m_axi.req.aw.id),
|
||||
.m_axi_awaddr (m_axi.req.aw.addr),
|
||||
.m_axi_awlen (m_axi.req.aw.len),
|
||||
.m_axi_awsize (m_axi.req.aw.size),
|
||||
.m_axi_awburst (m_axi.req.aw.burst),
|
||||
.m_axi_awlock (m_axi.req.aw.lock),
|
||||
.m_axi_awcache (m_axi.req.aw.cache),
|
||||
.m_axi_awprot (m_axi.req.aw.prot),
|
||||
.m_axi_awvalid (m_axi.req.aw.valid),
|
||||
.m_axi_awready (m_axi.resp.aw_ready),
|
||||
|
||||
.m_axi_wdata (m_axi.req.w.data),
|
||||
.m_axi_wstrb (m_axi.req.w.strb),
|
||||
.m_axi_wlast ( m_axi.req.w.last),
|
||||
.m_axi_wvalid (m_axi.req.w.valid),
|
||||
.m_axi_wready (m_axi.resp.w_ready),
|
||||
|
||||
.m_axi_bid (m_axi.resp.b.id),
|
||||
.m_axi_bresp (m_axi.resp.b.resp),
|
||||
.m_axi_bvalid (m_axi.resp.b.valid),
|
||||
.m_axi_bready (m_axi.req.b_ready),
|
||||
|
||||
.m_axi_arid (m_axi.req.ar.id),
|
||||
.m_axi_araddr (m_axi.req.ar.addr),
|
||||
.m_axi_arlen (m_axi.req.ar.len),
|
||||
.m_axi_arsize (m_axi.req.ar.size),
|
||||
.m_axi_arburst (m_axi.req.ar.burst),
|
||||
.m_axi_arlock (m_axi.req.ar.lock),
|
||||
.m_axi_arcache (m_axi.req.ar.cache),
|
||||
.m_axi_arprot (m_axi.req.ar.prot),
|
||||
.m_axi_arvalid (m_axi.req.ar.valid),
|
||||
.m_axi_arready (m_axi.resp.ar_ready),
|
||||
|
||||
.m_axi_rid (m_axi.resp.r.id),
|
||||
.m_axi_rdata (m_axi.resp.r.data),
|
||||
.m_axi_rresp (m_axi.resp.r.resp),
|
||||
.m_axi_rlast (m_axi.resp.r.last),
|
||||
.m_axi_rvalid (m_axi.resp.r.valid),
|
||||
.m_axi_rready (m_axi.req.r_ready),
|
||||
|
||||
.read_enable (1'b1),
|
||||
.write_enable (1'b1),
|
||||
.write_abort (1'b0)
|
||||
);
|
||||
|
||||
|
||||
endmodule : axi_dma_wrapper
|
||||
|
||||
`default_nettype wire
|
||||
169
designs/controller_dma_connective/src/wrapper_controller_dma.sv
Normal file
169
designs/controller_dma_connective/src/wrapper_controller_dma.sv
Normal file
@ -0,0 +1,169 @@
|
||||
import dma_reg_pkg::*;
|
||||
|
||||
module wrapper_controller_dma
|
||||
#(
|
||||
parameter int unsigned ADDR_W = 16,
|
||||
parameter int unsigned DATA_W = 32,
|
||||
parameter int unsigned USER_W = 1,
|
||||
|
||||
parameter int unsigned DAC_DATA_WIDTH = 12,
|
||||
|
||||
parameter int unsigned AXI_DATA_WIDTH = 32,
|
||||
|
||||
parameter int unsigned AXI_STRB_WIDTH = AXI_DATA_WIDTH / 8,
|
||||
parameter int unsigned AXI_ID_WIDTH = 8,
|
||||
parameter int unsigned AXI_USER_WIDTH = 1,
|
||||
parameter int unsigned AXI_MAX_BURST_LEN = 16,
|
||||
|
||||
parameter int unsigned AXIS_DATA_WIDTH = AXI_DATA_WIDTH,
|
||||
parameter int unsigned AXIS_KEEP_ENABLE = AXIS_DATA_WIDTH > 8,
|
||||
parameter int unsigned AXIS_KEEP_WIDTH = AXIS_DATA_WIDTH / 8,
|
||||
parameter int unsigned AXIS_LAST_ENABLE = 1,
|
||||
parameter int unsigned AXIS_ID_ENABLE = 1,
|
||||
parameter int unsigned AXIS_DEST_ENABLE = 0,
|
||||
parameter int unsigned AXIS_USER_ENABLE = 1,
|
||||
|
||||
parameter int unsigned ENABLE_SG = 0,
|
||||
parameter int unsigned ENABLE_UNALIGNED = 0
|
||||
)
|
||||
(
|
||||
input logic ctrl_clk,
|
||||
input logic dac_clk_in,
|
||||
input logic adc_clk_in,
|
||||
input logic rst_n,
|
||||
axi4l_if.slave s_axil,
|
||||
|
||||
// adc_clk_in domain
|
||||
input logic finish,
|
||||
output logic [31:0] adc_window_size,
|
||||
|
||||
// dac_clk_in domain outputs
|
||||
output logic [31:0] dac_pulse_width,
|
||||
output logic [31:0] dac_pulse_period,
|
||||
output logic [DAC_DATA_WIDTH-1:0] dac_pulse_height,
|
||||
output logic [15:0] dac_pulse_num,
|
||||
|
||||
// adc_clk_in domain outputs
|
||||
output logic [31:0] adc_pulse_period,
|
||||
output logic [15:0] adc_pulse_num,
|
||||
|
||||
// pulse outputs
|
||||
output logic dac_start,
|
||||
output logic adc_start,
|
||||
output logic dac_rst,
|
||||
output logic adc_rst,
|
||||
|
||||
axis_if.master m_axis_read_data,
|
||||
axis_if.slave s_axis_write_data,
|
||||
|
||||
axi4_if.master m_axi
|
||||
);
|
||||
|
||||
axis_if #(
|
||||
.DATA_W($bits(dma_read_status_t)),
|
||||
.KEEP_W(($bits(dma_read_status_t)+7)/8),
|
||||
.ID_W(dma_reg_pkg::AXIS_ID_WIDTH),
|
||||
.DEST_W(dma_reg_pkg::AXIS_DEST_WIDTH),
|
||||
.USER_W(dma_reg_pkg::AXIS_USER_WIDTH)
|
||||
) s_axis_status_read (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axis_if #(
|
||||
.DATA_W($bits(dma_write_status_t)),
|
||||
.KEEP_W(($bits(dma_write_status_t)+7)/8),
|
||||
.ID_W(dma_reg_pkg::AXIS_ID_WIDTH),
|
||||
.DEST_W(dma_reg_pkg::AXIS_DEST_WIDTH),
|
||||
.USER_W(dma_reg_pkg::AXIS_USER_WIDTH)
|
||||
) s_axis_status_write (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axis_if #(
|
||||
.DATA_W($bits(dma_read_desc_t)),
|
||||
.KEEP_W(($bits(dma_read_desc_t)+7)/8),
|
||||
.ID_W(dma_reg_pkg::AXIS_ID_WIDTH),
|
||||
.DEST_W(dma_reg_pkg::AXIS_DEST_WIDTH),
|
||||
.USER_W(dma_reg_pkg::AXIS_USER_WIDTH)
|
||||
) m_axis_desc_read (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axis_if #(
|
||||
.DATA_W($bits(dma_write_desc_t)),
|
||||
.KEEP_W(($bits(dma_write_desc_t)+7)/8),
|
||||
.ID_W(dma_reg_pkg::AXIS_ID_WIDTH),
|
||||
.DEST_W(dma_reg_pkg::AXIS_DEST_WIDTH),
|
||||
.USER_W(dma_reg_pkg::AXIS_USER_WIDTH)
|
||||
) m_axis_desc_write (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
controller_wrapper_axil
|
||||
#(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W),
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
)
|
||||
controller_wrapper_axil_inst
|
||||
(
|
||||
.ctrl_clk(ctrl_clk),
|
||||
.dac_clk_in(dac_clk_in),
|
||||
.adc_clk_in(adc_clk_in),
|
||||
.rst_n(rst_n),
|
||||
|
||||
.s_axil(s_axil),
|
||||
|
||||
.finish(finish),
|
||||
.adc_window_size(adc_window_size),
|
||||
.dac_pulse_width(dac_pulse_width),
|
||||
.dac_pulse_period(dac_pulse_period),
|
||||
.dac_pulse_height(dac_pulse_height),
|
||||
.dac_pulse_num(dac_pulse_num),
|
||||
.adc_pulse_period(adc_pulse_period),
|
||||
.adc_pulse_num(adc_pulse_num),
|
||||
.dac_start(dac_start),
|
||||
.adc_start(adc_start),
|
||||
.dac_rst(dac_rst),
|
||||
.adc_rst(adc_rst),
|
||||
|
||||
.s_axis_status_read(s_axis_status_read),
|
||||
.s_axis_status_write(s_axis_status_write),
|
||||
.m_axis_desc_read(m_axis_desc_read),
|
||||
.m_axis_desc_write(m_axis_desc_write)
|
||||
);
|
||||
|
||||
axi_dma_wrapper
|
||||
#(
|
||||
.AXI_DATA_WIDTH(AXI_DATA_WIDTH),
|
||||
.AXI_STRB_WIDTH(AXI_STRB_WIDTH),
|
||||
.AXI_USER_WIDTH(AXI_USER_WIDTH),
|
||||
.AXI_MAX_BURST_LEN(AXI_MAX_BURST_LEN),
|
||||
.AXIS_DATA_WIDTH(AXIS_DATA_WIDTH),
|
||||
.AXIS_KEEP_ENABLE(AXIS_KEEP_ENABLE),
|
||||
.AXIS_KEEP_WIDTH(AXIS_KEEP_WIDTH),
|
||||
.AXIS_LAST_ENABLE(AXIS_LAST_ENABLE),
|
||||
.AXIS_ID_ENABLE(AXIS_ID_ENABLE),
|
||||
.AXIS_DEST_ENABLE(AXIS_DEST_ENABLE),
|
||||
.AXIS_USER_ENABLE(AXIS_USER_ENABLE),
|
||||
.ENABLE_SG(ENABLE_SG),
|
||||
.ENABLE_UNALIGNED(ENABLE_UNALIGNED)
|
||||
)
|
||||
axi_dma_wrapper_inst
|
||||
(
|
||||
.clk(ctrl_clk),
|
||||
.rst(!rst_n),
|
||||
.s_axis_read_desc(m_axis_desc_read),
|
||||
.m_axis_read_desc_status(s_axis_status_read),
|
||||
.m_axis_read_data(m_axis_read_data),
|
||||
.s_axis_write_desc(m_axis_desc_write),
|
||||
.m_axis_write_desc_status(s_axis_status_write),
|
||||
.s_axis_write_data(s_axis_write_data),
|
||||
.m_axi(m_axi)
|
||||
);
|
||||
endmodule
|
||||
46
designs/controller_dma_connective/tests/Makefile
Normal file
46
designs/controller_dma_connective/tests/Makefile
Normal file
@ -0,0 +1,46 @@
|
||||
TOPLEVEL_LANG = verilog
|
||||
SIM ?= verilator
|
||||
|
||||
PWD := $(shell pwd)
|
||||
|
||||
WRAP_DIR = $(PWD)/../src
|
||||
RTL_DIR = $(PWD)/../../controller/src
|
||||
LIBS_DIR = $(PWD)/../../../external/rtl_libs
|
||||
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/rtl/axi_pkg.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/dma_reg_pkg.sv
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/rtl/axi_if.sv
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/axi_reg/axi4l_reg_map.sv
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/external/verilog-axi/rtl/axi_dma_rd.v
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/external/verilog-axi/rtl/axi_dma_wr.v
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/external/verilog-axi/rtl/axi_dma.v
|
||||
VERILOG_SOURCES += $(RTL_DIR)/controller.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/dma_controller.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/shaper_axis_desc.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/shaper_axis_status.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/controller_wrapper_axil.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/axi4l_reg_map_controller_pkg.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/axis_defaults_helper.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/axi4l_reg_map_controller.sv
|
||||
VERILOG_SOURCES += $(WRAP_DIR)/wrapper_controller_dma.sv
|
||||
VERILOG_SOURCES += $(WRAP_DIR)/axi_dma_wrapper_if.sv
|
||||
VERILOG_SOURCES += $(PWD)/tb_controller_dma_wrapper_axil.sv
|
||||
|
||||
TOPLEVEL = tb_controller_dma_wrapper_axil
|
||||
MODULE = test_controller_and_dma
|
||||
|
||||
|
||||
ifeq ($(SIM),verilator)
|
||||
EXTRA_ARGS += --trace --trace-structs
|
||||
EXTRA_ARGS += -I$(LIBS_DIR)/axi/rtl/
|
||||
COMPILE_ARGS += -Wno-fatal
|
||||
COMPILE_ARGS += -I$(LIBS_DIR)/axi/rtl/
|
||||
EXTRA_ARGS += --trace
|
||||
EXTRA_ARGS += --trace-structs
|
||||
EXTRA_ARGS += --public-flat-rw
|
||||
EXTRA_ARGS += -Wno-fatal
|
||||
EXTRA_ARGS += --timing
|
||||
endif
|
||||
|
||||
|
||||
include $(shell cocotb-config --makefiles)/Makefile.sim
|
||||
@ -0,0 +1,236 @@
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<wave_config>
|
||||
<wave_state>
|
||||
</wave_state>
|
||||
<db_ref_list>
|
||||
<db_ref path="tb_control_behav.wdb" id="1">
|
||||
<top_modules>
|
||||
<top_module name="glbl" />
|
||||
<top_module name="tb_control" />
|
||||
</top_modules>
|
||||
</db_ref>
|
||||
</db_ref_list>
|
||||
<zoom_setting>
|
||||
<ZoomStartTime time="160.614 ns"></ZoomStartTime>
|
||||
<ZoomEndTime time="1,564.737 ns"></ZoomEndTime>
|
||||
<Cursor1Time time="1,330.716 ns"></Cursor1Time>
|
||||
</zoom_setting>
|
||||
<column_width_setting>
|
||||
<NameColumnWidth column_width="479"></NameColumnWidth>
|
||||
<ValueColumnWidth column_width="116"></ValueColumnWidth>
|
||||
</column_width_setting>
|
||||
<WVObjectSize size="34" />
|
||||
<wvobject fp_name="/tb_control/dac_clk_in" type="logic">
|
||||
<obj_property name="ElementShortName">dac_clk_in</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_clk_in</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_clk_in" type="logic">
|
||||
<obj_property name="ElementShortName">adc_clk_in</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_clk_in</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/rst_n" type="logic">
|
||||
<obj_property name="ElementShortName">rst_n</obj_property>
|
||||
<obj_property name="ObjectShortName">rst_n</obj_property>
|
||||
<obj_property name="CustomSignalColor">#800080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/rst_soft" type="logic">
|
||||
<obj_property name="ElementShortName">rst_soft</obj_property>
|
||||
<obj_property name="ObjectShortName">rst_soft</obj_property>
|
||||
<obj_property name="CustomSignalColor">#008080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/start" type="logic">
|
||||
<obj_property name="ElementShortName">start</obj_property>
|
||||
<obj_property name="ObjectShortName">start</obj_property>
|
||||
<obj_property name="CustomSignalColor">#E0FFFF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/adc_start_pulse" type="logic">
|
||||
<obj_property name="ElementShortName">adc_start_pulse</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_start_pulse</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/dac_start_pulse" type="logic">
|
||||
<obj_property name="ElementShortName">dac_start_pulse</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_start_pulse</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/busy" type="logic">
|
||||
<obj_property name="ElementShortName">busy</obj_property>
|
||||
<obj_property name="ObjectShortName">busy</obj_property>
|
||||
<obj_property name="CustomSignalColor">#E0FFFF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/finish" type="logic">
|
||||
<obj_property name="ElementShortName">finish</obj_property>
|
||||
<obj_property name="ObjectShortName">finish</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FAAFBE</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/finish_pulse" type="logic">
|
||||
<obj_property name="ElementShortName">finish_pulse</obj_property>
|
||||
<obj_property name="ObjectShortName">finish_pulse</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/cfg_bus_valid" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_bus_valid</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_bus_valid</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF0080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/cfg_bus_input" type="array">
|
||||
<obj_property name="ElementShortName">cfg_bus_input[159:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_bus_input[159:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF0080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_width" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_width[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_width[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_period" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_height" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_height[11:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_height[11:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
<obj_property name="Radix">HEXRADIX</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_num" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_pulse_period" type="array">
|
||||
<obj_property name="ElementShortName">adc_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_pulse_num" type="array">
|
||||
<obj_property name="ElementShortName">adc_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_window_size" type="array">
|
||||
<obj_property name="ElementShortName">adc_window_size[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_window_size[31:0]</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_start" type="logic">
|
||||
<obj_property name="ElementShortName">dac_start</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_start</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_start" type="logic">
|
||||
<obj_property name="ElementShortName">adc_start</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_start</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_rst" type="logic">
|
||||
<obj_property name="ElementShortName">dac_rst</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_rst</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_rst" type="logic">
|
||||
<obj_property name="ElementShortName">adc_rst</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_rst</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="group499" type="group">
|
||||
<obj_property name="label">tb signals</obj_property>
|
||||
<obj_property name="DisplayName">label</obj_property>
|
||||
<wvobject fp_name="/tb_control/dac_rst_count" type="array">
|
||||
<obj_property name="ElementShortName">dac_rst_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_rst_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_rst_count" type="array">
|
||||
<obj_property name="ElementShortName">adc_rst_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_rst_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_start_count" type="array">
|
||||
<obj_property name="ElementShortName">dac_start_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_start_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_start_count" type="array">
|
||||
<obj_property name="ElementShortName">adc_start_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_start_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_toggle_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_toggle_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_toggle_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFFF00</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_toggle_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_toggle_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_toggle_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFFF00</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_toggle_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_toggle_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_toggle_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF00FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_toggle_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_toggle_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_toggle_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF00FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_wait_adc_ack" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_wait_adc_ack</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_wait_adc_ack</obj_property>
|
||||
<obj_property name="CustomSignalColor">#0000FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_wait_dac_ack" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_wait_dac_ack</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_wait_dac_ack</obj_property>
|
||||
<obj_property name="CustomSignalColor">#0000FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_pulse_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_pulse_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_pulse_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#808000</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_pulse_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_pulse_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_pulse_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#808000</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_pulse_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_pulse_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_pulse_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#DCDCDC</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_pulse_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_pulse_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_pulse_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#DCDCDC</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
</wave_config>
|
||||
@ -0,0 +1,373 @@
|
||||
|
||||
import dma_reg_pkg::*;
|
||||
|
||||
module tb_controller_wrapper_axil #(
|
||||
parameter int unsigned ADDR_W = 16,
|
||||
parameter int unsigned DATA_W = 32,
|
||||
parameter int unsigned USER_W = 1,
|
||||
|
||||
parameter int unsigned DAC_DATA_WIDTH = 12,
|
||||
|
||||
parameter int unsigned AXI_DATA_WIDTH = 32,
|
||||
|
||||
parameter int unsigned AXI_STRB_WIDTH = AXI_DATA_WIDTH / 8,
|
||||
parameter int unsigned AXI_ID_WIDTH = 8,
|
||||
parameter int unsigned AXI_USER_WIDTH = 1,
|
||||
parameter int unsigned AXI_MAX_BURST_LEN = 16,
|
||||
|
||||
parameter int unsigned AXIS_DATA_WIDTH = AXI_DATA_WIDTH,
|
||||
parameter int unsigned AXIS_KEEP_ENABLE = AXIS_DATA_WIDTH > 8,
|
||||
parameter int unsigned AXIS_KEEP_WIDTH = AXIS_DATA_WIDTH / 8,
|
||||
parameter int unsigned AXIS_LAST_ENABLE = 1,
|
||||
parameter int unsigned AXIS_ID_ENABLE = 1,
|
||||
parameter int unsigned AXIS_DEST_ENABLE = 0,
|
||||
parameter int unsigned AXIS_USER_ENABLE = 1,
|
||||
|
||||
parameter int unsigned ENABLE_SG = 0,
|
||||
parameter int unsigned ENABLE_UNALIGNED = 0
|
||||
)(
|
||||
input logic ctrl_clk,
|
||||
input logic rst,
|
||||
|
||||
input logic [ADDR_W-1:0] s_axil_awaddr,
|
||||
input logic [2:0] s_axil_awprot,
|
||||
input logic s_axil_awvalid,
|
||||
output logic s_axil_awready,
|
||||
|
||||
input logic [DATA_W-1:0] s_axil_wdata,
|
||||
input logic [DATA_W/8-1:0] s_axil_wstrb,
|
||||
input logic s_axil_wvalid,
|
||||
output logic s_axil_wready,
|
||||
|
||||
output logic [1:0] s_axil_bresp,
|
||||
output logic s_axil_bvalid,
|
||||
input logic s_axil_bready,
|
||||
|
||||
input logic [ADDR_W-1:0] s_axil_araddr,
|
||||
input logic [2:0] s_axil_arprot,
|
||||
input logic s_axil_arvalid,
|
||||
output logic s_axil_arready,
|
||||
|
||||
output logic [DATA_W-1:0] s_axil_rdata,
|
||||
output logic [1:0] s_axil_rresp,
|
||||
output logic s_axil_rvalid,
|
||||
input logic s_axil_rready,
|
||||
|
||||
input wire [AXIS_DATA_WIDTH-1:0] s_axis_write_data_tdata,
|
||||
input wire [AXIS_KEEP_WIDTH-1:0] s_axis_write_data_tkeep,
|
||||
input wire s_axis_write_data_tvalid,
|
||||
output wire s_axis_write_data_tready,
|
||||
input wire s_axis_write_data_tlast,
|
||||
input wire [AXIS_ID_WIDTH-1:0] s_axis_write_data_tid,
|
||||
input wire [AXIS_DEST_WIDTH-1:0] s_axis_write_data_tdest,
|
||||
input wire [AXIS_USER_WIDTH-1:0] s_axis_write_data_tuser,
|
||||
|
||||
output wire [AXIS_DATA_WIDTH-1:0] m_axis_read_data_tdata,
|
||||
output wire [AXIS_KEEP_WIDTH-1:0] m_axis_read_data_tkeep,
|
||||
output wire m_axis_read_data_tvalid,
|
||||
input wire m_axis_read_data_tready,
|
||||
output wire m_axis_read_data_tlast,
|
||||
output wire [AXIS_ID_WIDTH-1:0] m_axis_read_data_tid,
|
||||
output wire [AXIS_DEST_WIDTH-1:0] m_axis_read_data_tdest,
|
||||
output wire [AXIS_USER_WIDTH-1:0] m_axis_read_data_tuser,
|
||||
|
||||
output wire [AXI_ID_WIDTH-1:0] m_axi_awid,
|
||||
output wire [AXI_ADDR_WIDTH-1:0] m_axi_awaddr,
|
||||
output wire [7:0] m_axi_awlen,
|
||||
output wire [2:0] m_axi_awsize,
|
||||
output wire [1:0] m_axi_awburst,
|
||||
output wire m_axi_awlock,
|
||||
output wire [3:0] m_axi_awcache,
|
||||
output wire [2:0] m_axi_awprot,
|
||||
output wire m_axi_awvalid,
|
||||
input wire m_axi_awready,
|
||||
output wire [AXI_DATA_WIDTH-1:0] m_axi_wdata,
|
||||
output wire [AXI_STRB_WIDTH-1:0] m_axi_wstrb,
|
||||
output wire m_axi_wlast,
|
||||
output wire m_axi_wvalid,
|
||||
input wire m_axi_wready,
|
||||
input wire [AXI_ID_WIDTH-1:0] m_axi_bid,
|
||||
input wire [1:0] m_axi_bresp,
|
||||
input wire m_axi_bvalid,
|
||||
output wire m_axi_bready,
|
||||
output wire [AXI_ID_WIDTH-1:0] m_axi_arid,
|
||||
output wire [AXI_ADDR_WIDTH-1:0] m_axi_araddr,
|
||||
output wire [7:0] m_axi_arlen,
|
||||
output wire [2:0] m_axi_arsize,
|
||||
output wire [1:0] m_axi_arburst,
|
||||
output wire m_axi_arlock,
|
||||
output wire [3:0] m_axi_arcache,
|
||||
output wire [2:0] m_axi_arprot,
|
||||
output wire m_axi_arvalid,
|
||||
input wire m_axi_arready,
|
||||
input wire [AXI_ID_WIDTH-1:0] m_axi_rid,
|
||||
input wire [AXI_DATA_WIDTH-1:0] m_axi_rdata,
|
||||
input wire [1:0] m_axi_rresp,
|
||||
input wire m_axi_rlast,
|
||||
input wire m_axi_rvalid,
|
||||
output wire m_axi_rready
|
||||
|
||||
|
||||
);
|
||||
|
||||
logic rst_n;
|
||||
assign rst_n = ~rst;
|
||||
|
||||
// Для минимального теста держим все clock domain-ы на одном clock.
|
||||
logic dac_clk_in;
|
||||
logic adc_clk_in;
|
||||
assign dac_clk_in = ctrl_clk;
|
||||
assign adc_clk_in = ctrl_clk;
|
||||
|
||||
logic finish;
|
||||
assign finish = 1'b0;
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// AXI-Lite flat -> axi4l_if
|
||||
// ---------------------------------------------------------------------------
|
||||
|
||||
axi4l_if #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W)
|
||||
) axil_bus (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axi4l_flat_to_if #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W)
|
||||
) u_axil_flat_to_if (
|
||||
.s_axil_awaddr (s_axil_awaddr),
|
||||
.s_axil_awprot (s_axil_awprot),
|
||||
.s_axil_awvalid(s_axil_awvalid),
|
||||
.s_axil_awready(s_axil_awready),
|
||||
|
||||
.s_axil_wdata (s_axil_wdata),
|
||||
.s_axil_wstrb (s_axil_wstrb),
|
||||
.s_axil_wvalid (s_axil_wvalid),
|
||||
.s_axil_wready (s_axil_wready),
|
||||
|
||||
.s_axil_bresp (s_axil_bresp),
|
||||
.s_axil_bvalid (s_axil_bvalid),
|
||||
.s_axil_bready (s_axil_bready),
|
||||
|
||||
.s_axil_araddr (s_axil_araddr),
|
||||
.s_axil_arprot (s_axil_arprot),
|
||||
.s_axil_arvalid(s_axil_arvalid),
|
||||
.s_axil_arready(s_axil_arready),
|
||||
|
||||
.s_axil_rdata (s_axil_rdata),
|
||||
.s_axil_rresp (s_axil_rresp),
|
||||
.s_axil_rvalid (s_axil_rvalid),
|
||||
.s_axil_rready (s_axil_rready),
|
||||
|
||||
.m_axil(axil_bus)
|
||||
);
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// AXIS interfaces for the updated controller_wrapper_axil
|
||||
// ---------------------------------------------------------------------------
|
||||
|
||||
// AXIS READ DMA MASTER output
|
||||
axis_if #(
|
||||
.DATA_W (AXIS_DATA_WIDTH),
|
||||
.KEEP_W (AXIS_KEEP_WIDTH),
|
||||
.ID_W (AXIS_ID_WIDTH),
|
||||
.DEST_W (AXIS_DEST_WIDTH),
|
||||
.USER_W (AXIS_USER_WIDTH)
|
||||
) dma_read_data (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
logic [AXIS_KEEP_WIDTH-1:0] unused_read_tstrb;
|
||||
|
||||
axis_if_to_flat #(
|
||||
.DATA_W (AXIS_DATA_WIDTH),
|
||||
.KEEP_W (AXIS_KEEP_WIDTH),
|
||||
.ID_W (AXIS_ID_WIDTH),
|
||||
.DEST_W (AXIS_DEST_WIDTH),
|
||||
.USER_W (AXIS_USER_WIDTH)
|
||||
) u_read_data_if_to_flat (
|
||||
.s_axis(dma_read_data),
|
||||
|
||||
.m_axis_tdata (m_axis_read_data_tdata),
|
||||
.m_axis_tkeep (m_axis_read_data_tkeep),
|
||||
.m_axis_tstrb (unused_read_tstrb),
|
||||
.m_axis_tlast (m_axis_read_data_tlast),
|
||||
.m_axis_tid (m_axis_read_data_tid),
|
||||
.m_axis_tdest (m_axis_read_data_tdest),
|
||||
.m_axis_tuser (m_axis_read_data_tuser),
|
||||
.m_axis_tvalid(m_axis_read_data_tvalid),
|
||||
.m_axis_tready(m_axis_read_data_tready)
|
||||
);
|
||||
|
||||
// AXIS WRITE DMA SLAVE input
|
||||
axis_if #(
|
||||
.DATA_W (AXIS_DATA_WIDTH),
|
||||
.KEEP_W (AXIS_KEEP_WIDTH),
|
||||
.ID_W (AXIS_ID_WIDTH),
|
||||
.DEST_W (AXIS_DEST_WIDTH),
|
||||
.USER_W (AXIS_USER_WIDTH)
|
||||
) dma_write_data (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
|
||||
axis_flat_to_if #(
|
||||
.DATA_W (AXIS_DATA_WIDTH),
|
||||
.KEEP_W (AXIS_KEEP_WIDTH),
|
||||
.ID_W (AXIS_ID_WIDTH),
|
||||
.DEST_W (AXIS_DEST_WIDTH),
|
||||
.USER_W (AXIS_USER_WIDTH)
|
||||
) u_write_data_flat_to_if (
|
||||
.s_axis_tdata (s_axis_write_data_tdata),
|
||||
.s_axis_tkeep (s_axis_write_data_tkeep),
|
||||
.s_axis_tstrb (s_axis_write_data_tkeep),
|
||||
.s_axis_tlast (s_axis_write_data_tlast),
|
||||
.s_axis_tid (s_axis_write_data_tid),
|
||||
.s_axis_tdest (s_axis_write_data_tdest),
|
||||
.s_axis_tuser (s_axis_write_data_tuser),
|
||||
.s_axis_tvalid(s_axis_write_data_tvalid),
|
||||
.s_axis_tready(s_axis_write_data_tready),
|
||||
|
||||
.m_axis(dma_write_data)
|
||||
);
|
||||
|
||||
// AXI4 MASTER DMA
|
||||
|
||||
axi4_if #(
|
||||
.ADDR_W(dma_reg_pkg::AXI_ADDR_WIDTH),
|
||||
.DATA_W(AXI_DATA_WIDTH),
|
||||
.ID_W (AXI_ID_WIDTH),
|
||||
.USER_W(AXI_USER_WIDTH)
|
||||
) m_axi (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
logic [AXI_USER_WIDTH-1:0] unused_awuser;
|
||||
logic [AXI_USER_WIDTH-1:0] unused_wuser;
|
||||
logic [AXI_USER_WIDTH-1:0] unused_aruser;
|
||||
|
||||
axi4_if_to_flat #(
|
||||
.ADDR_W (dma_reg_pkg::AXI_ADDR_WIDTH),
|
||||
.DATA_W (AXI_DATA_WIDTH),
|
||||
.ID_W (AXI_ID_WIDTH),
|
||||
.USER_W (AXI_USER_WIDTH)
|
||||
) u_axi_if_to_flat (
|
||||
.s_axi(m_axi),
|
||||
|
||||
.m_axi_awid (m_axi_awid),
|
||||
.m_axi_awaddr (m_axi_awaddr),
|
||||
.m_axi_awlen (m_axi_awlen),
|
||||
.m_axi_awsize (m_axi_awsize),
|
||||
.m_axi_awburst (m_axi_awburst),
|
||||
.m_axi_awlock (m_axi_awlock),
|
||||
.m_axi_awcache (m_axi_awcache),
|
||||
.m_axi_awprot (m_axi_awprot),
|
||||
.m_axi_awqos (),
|
||||
.m_axi_awregion(),
|
||||
.m_axi_awuser (unused_awuser),
|
||||
.m_axi_awvalid (m_axi_awvalid),
|
||||
.m_axi_awready (m_axi_awready),
|
||||
|
||||
.m_axi_wdata (m_axi_wdata),
|
||||
.m_axi_wstrb (m_axi_wstrb),
|
||||
.m_axi_wlast (m_axi_wlast),
|
||||
.m_axi_wuser (unused_wuser),
|
||||
.m_axi_wvalid (m_axi_wvalid),
|
||||
.m_axi_wready (m_axi_wready),
|
||||
|
||||
.m_axi_bid (m_axi_bid),
|
||||
.m_axi_bresp (m_axi_bresp),
|
||||
.m_axi_buser ({AXI_USER_WIDTH{1'b0}}),
|
||||
.m_axi_bvalid (m_axi_bvalid),
|
||||
.m_axi_bready (m_axi_bready),
|
||||
|
||||
.m_axi_arid (m_axi_arid),
|
||||
.m_axi_araddr (m_axi_araddr),
|
||||
.m_axi_arlen (m_axi_arlen),
|
||||
.m_axi_arsize (m_axi_arsize),
|
||||
.m_axi_arburst (m_axi_arburst),
|
||||
.m_axi_arlock (m_axi_arlock),
|
||||
.m_axi_arcache (m_axi_arcache),
|
||||
.m_axi_arprot (m_axi_arprot),
|
||||
.m_axi_arqos (),
|
||||
.m_axi_arregion(),
|
||||
.m_axi_aruser (unused_aruser),
|
||||
.m_axi_arvalid (m_axi_arvalid),
|
||||
.m_axi_arready (m_axi_arready),
|
||||
|
||||
.m_axi_rid (m_axi_rid),
|
||||
.m_axi_rdata (m_axi_rdata),
|
||||
.m_axi_rresp (m_axi_rresp),
|
||||
.m_axi_rlast (m_axi_rlast),
|
||||
.m_axi_ruser ({AXI_USER_WIDTH{1'b0}}),
|
||||
.m_axi_rvalid (m_axi_rvalid),
|
||||
.m_axi_rready (m_axi_rready)
|
||||
);
|
||||
|
||||
|
||||
// Controller ADC/DAC outputs.
|
||||
logic [31:0] adc_window_size;
|
||||
logic [31:0] dac_pulse_width;
|
||||
logic [31:0] dac_pulse_period;
|
||||
logic [DAC_DATA_WIDTH-1:0] dac_pulse_height;
|
||||
logic [15:0] dac_pulse_num;
|
||||
logic [31:0] adc_pulse_period;
|
||||
logic [15:0] adc_pulse_num;
|
||||
logic dac_start;
|
||||
logic adc_start;
|
||||
logic dac_rst;
|
||||
logic adc_rst;
|
||||
|
||||
wrapper_controller_dma #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W),
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH),
|
||||
.AXI_DATA_WIDTH(AXI_DATA_WIDTH),
|
||||
.AXI_ID_WIDTH(AXI_ID_WIDTH),
|
||||
.AXI_USER_WIDTH(AXI_USER_WIDTH),
|
||||
.AXI_MAX_BURST_LEN(AXI_MAX_BURST_LEN),
|
||||
.AXIS_LAST_ENABLE(AXIS_LAST_ENABLE),
|
||||
.AXIS_ID_ENABLE(AXIS_ID_ENABLE),
|
||||
.AXIS_DEST_ENABLE(AXIS_DEST_ENABLE),
|
||||
.AXIS_USER_ENABLE(AXIS_USER_ENABLE),
|
||||
.ENABLE_SG(ENABLE_SG),
|
||||
.ENABLE_UNALIGNED(ENABLE_UNALIGNED)
|
||||
) dut (
|
||||
.ctrl_clk(ctrl_clk),
|
||||
.dac_clk_in(dac_clk_in),
|
||||
.adc_clk_in(adc_clk_in),
|
||||
.rst_n(rst_n),
|
||||
.s_axil(axil_bus),
|
||||
|
||||
.finish(finish),
|
||||
.adc_window_size(adc_window_size),
|
||||
|
||||
.dac_pulse_width(dac_pulse_width),
|
||||
.dac_pulse_period(dac_pulse_period),
|
||||
.dac_pulse_height(dac_pulse_height),
|
||||
.dac_pulse_num(dac_pulse_num),
|
||||
|
||||
.adc_pulse_period(adc_pulse_period),
|
||||
.adc_pulse_num(adc_pulse_num),
|
||||
|
||||
.dac_start(dac_start),
|
||||
.adc_start(adc_start),
|
||||
.dac_rst(dac_rst),
|
||||
.adc_rst(adc_rst),
|
||||
|
||||
.m_axis_read_data(dma_read_data),
|
||||
.s_axis_write_data(dma_write_data),
|
||||
|
||||
.m_axi(m_axi)
|
||||
);
|
||||
|
||||
endmodule : tb_controller_wrapper_axil
|
||||
@ -0,0 +1,216 @@
|
||||
import cocotb
|
||||
from cocotb.clock import Clock
|
||||
from cocotb.handle import Immediate
|
||||
from cocotb.triggers import RisingEdge
|
||||
from cocotbext.axi import AxiLiteBus, AxiLiteMaster
|
||||
from cocotbext.axi import AxiBus, AxiRam, AxiStreamBus, AxiStreamSource, AxiStreamSink
|
||||
|
||||
|
||||
# Register indexes from axi4l_reg_map_controller_pkg.sv
|
||||
REG_CONTROL = 0
|
||||
REG_STATUS = 1
|
||||
REG_DAC_WIDTH = 2
|
||||
REG_DAC_PERIOD = 3
|
||||
REG_DAC_PULSE_NUM = 4
|
||||
REG_DAC_PULSE_HEIGHT = 5
|
||||
REG_ADC_PERIOD = 6
|
||||
REG_WINDOW_SIZE = 7
|
||||
REG_ERROR = 8
|
||||
REG_DESC_READ_ADDR = 9
|
||||
REG_DESC_READ_LEN = 10
|
||||
REG_DESC_READ_CONFIG = 11
|
||||
REG_READ_STATUS = 12
|
||||
REG_DESC_WRITE_ADDR = 13
|
||||
REG_DESC_WRITE_LEN_AND_TAG = 14
|
||||
REG_STATUS_WRITE_LEN = 15
|
||||
REG_STATUS_WRITE_CONFIG = 16
|
||||
|
||||
|
||||
# REG_CONTROL pulse bits
|
||||
CTRL_START = 0
|
||||
CTRL_RST_SOFT = 1
|
||||
CTRL_CFG_BUS_VALID = 2
|
||||
CTRL_SEND_DESC_READ = 3
|
||||
CTRL_SEND_DESC_WRITE = 4
|
||||
CTRL_TAKE_STATUS_READ = 5
|
||||
CTRL_TAKE_STATUS_WRITE = 6
|
||||
|
||||
|
||||
def reg_addr(reg_index: int) -> int:
|
||||
# AXI-Lite uses byte addresses, 32-bit registers are spaced by 4 bytes.
|
||||
return reg_index * 4
|
||||
|
||||
|
||||
def u32(value: int) -> bytes:
|
||||
return int(value & 0xFFFFFFFF).to_bytes(4, "little")
|
||||
|
||||
|
||||
class TB:
|
||||
def __init__(self, dut):
|
||||
self.dut = dut
|
||||
|
||||
cocotb.start_soon(Clock(dut.ctrl_clk, 10, units="ns").start())
|
||||
|
||||
self.axil = AxiLiteMaster(
|
||||
AxiLiteBus.from_prefix(dut, "s_axil"),
|
||||
dut.ctrl_clk,
|
||||
dut.rst
|
||||
)
|
||||
|
||||
|
||||
self.axis_source = AxiStreamSource(
|
||||
AxiStreamBus.from_prefix(dut, "s_axis_write_data"),
|
||||
dut.ctrl_clk,
|
||||
dut.rst
|
||||
)
|
||||
|
||||
self.axis_sink = AxiStreamSink(
|
||||
AxiStreamBus.from_prefix(dut, "m_axis_read_data"),
|
||||
dut.ctrl_clk,
|
||||
dut.rst
|
||||
)
|
||||
|
||||
async def reset(self):
|
||||
self.dut.rst.value = 1
|
||||
for _ in range(5):
|
||||
await RisingEdge(self.dut.ctrl_clk)
|
||||
|
||||
self.dut.rst.value = 0
|
||||
for _ in range(5):
|
||||
await RisingEdge(self.dut.ctrl_clk)
|
||||
|
||||
async def write_reg(self, reg_index: int, value: int):
|
||||
await self.axil.write(reg_addr(reg_index), u32(value))
|
||||
|
||||
async def read_reg(self, reg_index: int) -> int:
|
||||
resp = await self.axil.read(reg_addr(reg_index), 4)
|
||||
return int.from_bytes(bytes(resp.data), "little")
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def simple_axil_write_read(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
await tb.write_reg(REG_DAC_WIDTH, 0x0000_0123)
|
||||
|
||||
value = await tb.read_reg(REG_DAC_WIDTH)
|
||||
assert value == 0x0000_0123
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def simple_controller_config_write(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
await tb.write_reg(REG_DAC_WIDTH, 0x10)
|
||||
await tb.write_reg(REG_DAC_PERIOD, 0x40)
|
||||
await tb.write_reg(REG_DAC_PULSE_NUM, 3)
|
||||
await tb.write_reg(REG_DAC_PULSE_HEIGHT, 0x7FF)
|
||||
await tb.write_reg(REG_ADC_PERIOD, 0x80)
|
||||
await tb.write_reg(REG_WINDOW_SIZE, 16)
|
||||
|
||||
assert await tb.read_reg(REG_DAC_WIDTH) == 0x10
|
||||
assert await tb.read_reg(REG_WINDOW_SIZE) == 16
|
||||
|
||||
# write data: set cfg_bus_valid signal
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_CFG_BUS_VALID)
|
||||
|
||||
# wait
|
||||
for _ in range(30):
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
# check config
|
||||
assert int(dut.dac_pulse_width) == 0x10
|
||||
assert int(dut.dac_pulse_period) == 0x40
|
||||
assert int(dut.dac_pulse_num) == 3
|
||||
assert int(dut.dac_pulse_height) == 0x7FF
|
||||
assert int(dut.adc_pulse_period) == 0x80
|
||||
assert int(dut.adc_window_size) == 16
|
||||
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def simple_controller_start_check(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_START)
|
||||
|
||||
await RisingEdge(dut.dac_start)
|
||||
|
||||
@cocotb.test()
|
||||
async def test_dma_write(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
data = bytes(range(64))
|
||||
|
||||
#write data into memory
|
||||
|
||||
await tb.write_reg(REG_DESC_WRITE_ADDR, 0x1000)
|
||||
await tb.write_reg(REG_DESC_WRITE_LEN_AND_TAG, 64)
|
||||
|
||||
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_SEND_DESC_WRITE)
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
cocotb.start_soon(tb.axis_source.send(data))
|
||||
|
||||
for _ in range(200):
|
||||
await tb.write_reg( REG_CONTROL, 1 << CTRL_TAKE_STATUS_WRITE)
|
||||
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
status = await tb.read_reg( REG_STATUS_WRITE_LEN)
|
||||
if status == 64:
|
||||
break
|
||||
|
||||
else:
|
||||
assert False, "DMA timeout"
|
||||
|
||||
|
||||
mem = await tb.mem.read( 0x1000, 64)
|
||||
assert mem == data
|
||||
|
||||
@cocotb.test()
|
||||
async def test_dma_read(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
data = bytes(range(64))
|
||||
|
||||
#read data from memory
|
||||
|
||||
await tb.mem.write( 0x2000, data)
|
||||
|
||||
await tb.write_reg( REG_DESC_READ_ADDR, 0x2000)
|
||||
await tb.write_reg( REG_DESC_READ_LEN, 64)
|
||||
await tb.write_reg( REG_DESC_READ_CONFIG, 1)
|
||||
|
||||
await tb.write_reg( REG_CONTROL, 1 << CTRL_SEND_DESC_READ)
|
||||
|
||||
frame = await tb.axis_sink.recv()
|
||||
assert frame.data == data
|
||||
|
||||
await tb.write_reg(
|
||||
REG_CONTROL,
|
||||
1 << CTRL_TAKE_STATUS_READ
|
||||
)
|
||||
|
||||
for _ in range(100):
|
||||
|
||||
status = await tb.read_reg(
|
||||
REG_READ_STATUS
|
||||
)
|
||||
|
||||
if status != 0:
|
||||
break
|
||||
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
else:
|
||||
assert False, "DMA read status timeout"
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
13
designs/controller_dma_connective/tests/test_timing.xdc
Normal file
13
designs/controller_dma_connective/tests/test_timing.xdc
Normal file
@ -0,0 +1,13 @@
|
||||
# Primary clocks
|
||||
create_clock -name eth_clk -period 8.000 [get_ports eth_clk_in]
|
||||
create_clock -name dac_clk -period 7.692 [get_ports dac_clk_in]
|
||||
create_clock -name adc_clk -period 15.385 [get_ports adc_clk_in]
|
||||
|
||||
|
||||
# Asynchronous clock groups
|
||||
# eth, dac, adc are independent domains
|
||||
|
||||
set_clock_groups -name ASYNC_ETH_DAC_ADC -asynchronous \
|
||||
-group [get_clocks eth_clk] \
|
||||
-group [get_clocks dac_clk] \
|
||||
-group [get_clocks adc_clk]
|
||||
@ -1,52 +0,0 @@
|
||||
# SPDX-License-Identifier: MIT
|
||||
#
|
||||
# Copyright (c) 2025 FPGA Ninja, LLC
|
||||
#
|
||||
# Authors:
|
||||
# - Alex Forencich
|
||||
#
|
||||
|
||||
# FPGA settings
|
||||
FPGA_PART = xc7a35tfgg484-1
|
||||
FPGA_TOP = eth_ctrl_debug_top
|
||||
FPGA_ARCH = artix7
|
||||
|
||||
RTL_DIR = ../../rtl
|
||||
|
||||
|
||||
include ../../scripts/vivado.mk
|
||||
|
||||
SYN_FILES += eth_ctrl_debug.sv
|
||||
SYN_FILES += $(sort $(shell find ../../rtl -type f \( -name '*.v' -o -name '*.sv' \)))
|
||||
|
||||
XCI_FILES = $(sort $(shell find ../../rtl/ethernet-udp/src -type f -name '*.xci'))
|
||||
XCI_FILES += $(sort $(shell find ip/ -type f -name '*.xci'))
|
||||
|
||||
XDC_FILES += ../../constraints/ax7a035b.xdc
|
||||
XDC_FILES += debug.xdc
|
||||
|
||||
|
||||
|
||||
program: $(PROJECT).bit
|
||||
echo "open_hw_manager" > program.tcl
|
||||
echo "connect_hw_server" >> program.tcl
|
||||
echo "open_hw_target" >> program.tcl
|
||||
echo "current_hw_device [lindex [get_hw_devices] 0]" >> program.tcl
|
||||
echo "refresh_hw_device -update_hw_probes false [current_hw_device]" >> program.tcl
|
||||
echo "set_property PROGRAM.FILE {$(PROJECT).bit} [current_hw_device]" >> program.tcl
|
||||
echo "program_hw_devices [current_hw_device]" >> program.tcl
|
||||
echo "exit" >> program.tcl
|
||||
vivado -nojournal -nolog -mode batch -source program.tcl
|
||||
|
||||
$(PROJECT).mcs $(PROJECT).prm: $(PROJECT).bit
|
||||
echo "write_cfgmem -force -format mcs -size 16 -interface SPIx4 -loadbit {up 0x0000000 $*.bit} -checksum -file $*.mcs" > generate_mcs.tcl
|
||||
echo "exit" >> generate_mcs.tcl
|
||||
vivado -nojournal -nolog -mode batch -source generate_mcs.tcl
|
||||
mkdir -p rev
|
||||
COUNT=100; \
|
||||
while [ -e rev/$*_rev$$COUNT.bit ]; \
|
||||
do COUNT=$$((COUNT+1)); done; \
|
||||
COUNT=$$((COUNT-1)); \
|
||||
for x in .mcs .prm; \
|
||||
do cp $*$$x rev/$*_rev$$COUNT$$x; \
|
||||
echo "Output: rev/$*_rev$$COUNT$$x"; done;
|
||||
@ -1,7 +0,0 @@
|
||||
# Тестовый проект Eth + CTRL
|
||||
Проект состоит из AXIS Ethernet и контроллера. Для тестирования сделано три разных частотных домена: ethernet 125MHz, DAC 130MHz, ADC 65MHz для тестирования сихронизации. Есть ILA на все выходы контроллера и на шину AXIS eth -> ctrl. Для отправки пакетов используйте скрипт ```console.py --debug```.
|
||||
|
||||
## Сборка
|
||||
```make all``` - собрать все до битстрима
|
||||
|
||||
```make vivado``` - открыть проект в Vivado
|
||||
@ -1,147 +0,0 @@
|
||||
set_clock_groups -name ASYNC_UDP_CTRL -asynchronous -group [get_clocks rgmii_rxc] -group [get_clocks clk_out1_clk_wiz_ctrl_inst] -group [get_clocks clk_out2_clk_wiz_ctrl_inst]
|
||||
|
||||
|
||||
|
||||
|
||||
create_debug_core u_ila_0 ila
|
||||
set_property ALL_PROBE_SAME_MU true [get_debug_cores u_ila_0]
|
||||
set_property ALL_PROBE_SAME_MU_CNT 1 [get_debug_cores u_ila_0]
|
||||
set_property C_ADV_TRIGGER false [get_debug_cores u_ila_0]
|
||||
set_property C_DATA_DEPTH 1024 [get_debug_cores u_ila_0]
|
||||
set_property C_EN_STRG_QUAL false [get_debug_cores u_ila_0]
|
||||
set_property C_INPUT_PIPE_STAGES 0 [get_debug_cores u_ila_0]
|
||||
set_property C_TRIGIN_EN false [get_debug_cores u_ila_0]
|
||||
set_property C_TRIGOUT_EN false [get_debug_cores u_ila_0]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/clk]
|
||||
connect_debug_port u_ila_0/clk [get_nets [list clk_wiz_ctrl_inst/inst/clk_out2]]
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe0]
|
||||
set_property port_width 32 [get_debug_ports u_ila_0/probe0]
|
||||
connect_debug_port u_ila_0/probe0 [get_nets [list {adc_pulse_period_dbg[0]} {adc_pulse_period_dbg[1]} {adc_pulse_period_dbg[2]} {adc_pulse_period_dbg[3]} {adc_pulse_period_dbg[4]} {adc_pulse_period_dbg[5]} {adc_pulse_period_dbg[6]} {adc_pulse_period_dbg[7]} {adc_pulse_period_dbg[8]} {adc_pulse_period_dbg[9]} {adc_pulse_period_dbg[10]} {adc_pulse_period_dbg[11]} {adc_pulse_period_dbg[12]} {adc_pulse_period_dbg[13]} {adc_pulse_period_dbg[14]} {adc_pulse_period_dbg[15]} {adc_pulse_period_dbg[16]} {adc_pulse_period_dbg[17]} {adc_pulse_period_dbg[18]} {adc_pulse_period_dbg[19]} {adc_pulse_period_dbg[20]} {adc_pulse_period_dbg[21]} {adc_pulse_period_dbg[22]} {adc_pulse_period_dbg[23]} {adc_pulse_period_dbg[24]} {adc_pulse_period_dbg[25]} {adc_pulse_period_dbg[26]} {adc_pulse_period_dbg[27]} {adc_pulse_period_dbg[28]} {adc_pulse_period_dbg[29]} {adc_pulse_period_dbg[30]} {adc_pulse_period_dbg[31]}]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe1]
|
||||
set_property port_width 8 [get_debug_ports u_ila_0/probe1]
|
||||
connect_debug_port u_ila_0/probe1 [get_nets [list {finish_cnt[0]} {finish_cnt[1]} {finish_cnt[2]} {finish_cnt[3]} {finish_cnt[4]} {finish_cnt[5]} {finish_cnt[6]} {finish_cnt[7]}]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe2]
|
||||
set_property port_width 16 [get_debug_ports u_ila_0/probe2]
|
||||
connect_debug_port u_ila_0/probe2 [get_nets [list {adc_pulse_num_dbg[0]} {adc_pulse_num_dbg[1]} {adc_pulse_num_dbg[2]} {adc_pulse_num_dbg[3]} {adc_pulse_num_dbg[4]} {adc_pulse_num_dbg[5]} {adc_pulse_num_dbg[6]} {adc_pulse_num_dbg[7]} {adc_pulse_num_dbg[8]} {adc_pulse_num_dbg[9]} {adc_pulse_num_dbg[10]} {adc_pulse_num_dbg[11]} {adc_pulse_num_dbg[12]} {adc_pulse_num_dbg[13]} {adc_pulse_num_dbg[14]} {adc_pulse_num_dbg[15]}]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe3]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe3]
|
||||
connect_debug_port u_ila_0/probe3 [get_nets [list adc_rst_dbg]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe4]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe4]
|
||||
connect_debug_port u_ila_0/probe4 [get_nets [list adc_start_dbg]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe5]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe5]
|
||||
connect_debug_port u_ila_0/probe5 [get_nets [list finish_dbg]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe6]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe6]
|
||||
connect_debug_port u_ila_0/probe6 [get_nets [list finish_pending]]
|
||||
create_debug_core u_ila_1 ila
|
||||
set_property ALL_PROBE_SAME_MU true [get_debug_cores u_ila_1]
|
||||
set_property ALL_PROBE_SAME_MU_CNT 1 [get_debug_cores u_ila_1]
|
||||
set_property C_ADV_TRIGGER false [get_debug_cores u_ila_1]
|
||||
set_property C_DATA_DEPTH 1024 [get_debug_cores u_ila_1]
|
||||
set_property C_EN_STRG_QUAL false [get_debug_cores u_ila_1]
|
||||
set_property C_INPUT_PIPE_STAGES 0 [get_debug_cores u_ila_1]
|
||||
set_property C_TRIGIN_EN false [get_debug_cores u_ila_1]
|
||||
set_property C_TRIGOUT_EN false [get_debug_cores u_ila_1]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/clk]
|
||||
connect_debug_port u_ila_1/clk [get_nets [list rgmii_rxc_IBUF_BUFG]]
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe0]
|
||||
set_property port_width 2 [get_debug_ports u_ila_1/probe0]
|
||||
connect_debug_port u_ila_1/probe0 [get_nets [list {axis_mac0/rx_state[0]} {axis_mac0/rx_state[1]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe1]
|
||||
set_property port_width 16 [get_debug_ports u_ila_1/probe1]
|
||||
connect_debug_port u_ila_1/probe1 [get_nets [list {axis_mac0/udp_rec_data_length[0]} {axis_mac0/udp_rec_data_length[1]} {axis_mac0/udp_rec_data_length[2]} {axis_mac0/udp_rec_data_length[3]} {axis_mac0/udp_rec_data_length[4]} {axis_mac0/udp_rec_data_length[5]} {axis_mac0/udp_rec_data_length[6]} {axis_mac0/udp_rec_data_length[7]} {axis_mac0/udp_rec_data_length[8]} {axis_mac0/udp_rec_data_length[9]} {axis_mac0/udp_rec_data_length[10]} {axis_mac0/udp_rec_data_length[11]} {axis_mac0/udp_rec_data_length[12]} {axis_mac0/udp_rec_data_length[13]} {axis_mac0/udp_rec_data_length[14]} {axis_mac0/udp_rec_data_length[15]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe2]
|
||||
set_property port_width 96 [get_debug_ports u_ila_1/probe2]
|
||||
connect_debug_port u_ila_1/probe2 [get_nets [list {udp_ctrl_inst/cfg_bus_eth[0]} {udp_ctrl_inst/cfg_bus_eth[1]} {udp_ctrl_inst/cfg_bus_eth[2]} {udp_ctrl_inst/cfg_bus_eth[3]} {udp_ctrl_inst/cfg_bus_eth[4]} {udp_ctrl_inst/cfg_bus_eth[5]} {udp_ctrl_inst/cfg_bus_eth[6]} {udp_ctrl_inst/cfg_bus_eth[7]} {udp_ctrl_inst/cfg_bus_eth[8]} {udp_ctrl_inst/cfg_bus_eth[9]} {udp_ctrl_inst/cfg_bus_eth[10]} {udp_ctrl_inst/cfg_bus_eth[11]} {udp_ctrl_inst/cfg_bus_eth[12]} {udp_ctrl_inst/cfg_bus_eth[13]} {udp_ctrl_inst/cfg_bus_eth[14]} {udp_ctrl_inst/cfg_bus_eth[15]} {udp_ctrl_inst/cfg_bus_eth[16]} {udp_ctrl_inst/cfg_bus_eth[17]} {udp_ctrl_inst/cfg_bus_eth[18]} {udp_ctrl_inst/cfg_bus_eth[19]} {udp_ctrl_inst/cfg_bus_eth[20]} {udp_ctrl_inst/cfg_bus_eth[21]} {udp_ctrl_inst/cfg_bus_eth[22]} {udp_ctrl_inst/cfg_bus_eth[23]} {udp_ctrl_inst/cfg_bus_eth[24]} {udp_ctrl_inst/cfg_bus_eth[25]} {udp_ctrl_inst/cfg_bus_eth[26]} {udp_ctrl_inst/cfg_bus_eth[27]} {udp_ctrl_inst/cfg_bus_eth[28]} {udp_ctrl_inst/cfg_bus_eth[29]} {udp_ctrl_inst/cfg_bus_eth[30]} {udp_ctrl_inst/cfg_bus_eth[31]} {udp_ctrl_inst/cfg_bus_eth[32]} {udp_ctrl_inst/cfg_bus_eth[33]} {udp_ctrl_inst/cfg_bus_eth[34]} {udp_ctrl_inst/cfg_bus_eth[35]} {udp_ctrl_inst/cfg_bus_eth[36]} {udp_ctrl_inst/cfg_bus_eth[37]} {udp_ctrl_inst/cfg_bus_eth[38]} {udp_ctrl_inst/cfg_bus_eth[39]} {udp_ctrl_inst/cfg_bus_eth[40]} {udp_ctrl_inst/cfg_bus_eth[41]} {udp_ctrl_inst/cfg_bus_eth[42]} {udp_ctrl_inst/cfg_bus_eth[43]} {udp_ctrl_inst/cfg_bus_eth[44]} {udp_ctrl_inst/cfg_bus_eth[45]} {udp_ctrl_inst/cfg_bus_eth[46]} {udp_ctrl_inst/cfg_bus_eth[47]} {udp_ctrl_inst/cfg_bus_eth[48]} {udp_ctrl_inst/cfg_bus_eth[49]} {udp_ctrl_inst/cfg_bus_eth[50]} {udp_ctrl_inst/cfg_bus_eth[51]} {udp_ctrl_inst/cfg_bus_eth[52]} {udp_ctrl_inst/cfg_bus_eth[53]} {udp_ctrl_inst/cfg_bus_eth[54]} {udp_ctrl_inst/cfg_bus_eth[55]} {udp_ctrl_inst/cfg_bus_eth[56]} {udp_ctrl_inst/cfg_bus_eth[57]} {udp_ctrl_inst/cfg_bus_eth[58]} {udp_ctrl_inst/cfg_bus_eth[59]} {udp_ctrl_inst/cfg_bus_eth[60]} {udp_ctrl_inst/cfg_bus_eth[61]} {udp_ctrl_inst/cfg_bus_eth[62]} {udp_ctrl_inst/cfg_bus_eth[63]} {udp_ctrl_inst/cfg_bus_eth[64]} {udp_ctrl_inst/cfg_bus_eth[65]} {udp_ctrl_inst/cfg_bus_eth[66]} {udp_ctrl_inst/cfg_bus_eth[67]} {udp_ctrl_inst/cfg_bus_eth[68]} {udp_ctrl_inst/cfg_bus_eth[69]} {udp_ctrl_inst/cfg_bus_eth[70]} {udp_ctrl_inst/cfg_bus_eth[71]} {udp_ctrl_inst/cfg_bus_eth[72]} {udp_ctrl_inst/cfg_bus_eth[73]} {udp_ctrl_inst/cfg_bus_eth[74]} {udp_ctrl_inst/cfg_bus_eth[75]} {udp_ctrl_inst/cfg_bus_eth[76]} {udp_ctrl_inst/cfg_bus_eth[77]} {udp_ctrl_inst/cfg_bus_eth[78]} {udp_ctrl_inst/cfg_bus_eth[79]} {udp_ctrl_inst/cfg_bus_eth[80]} {udp_ctrl_inst/cfg_bus_eth[81]} {udp_ctrl_inst/cfg_bus_eth[82]} {udp_ctrl_inst/cfg_bus_eth[83]} {udp_ctrl_inst/cfg_bus_eth[84]} {udp_ctrl_inst/cfg_bus_eth[85]} {udp_ctrl_inst/cfg_bus_eth[86]} {udp_ctrl_inst/cfg_bus_eth[87]} {udp_ctrl_inst/cfg_bus_eth[88]} {udp_ctrl_inst/cfg_bus_eth[89]} {udp_ctrl_inst/cfg_bus_eth[90]} {udp_ctrl_inst/cfg_bus_eth[91]} {udp_ctrl_inst/cfg_bus_eth[92]} {udp_ctrl_inst/cfg_bus_eth[93]} {udp_ctrl_inst/cfg_bus_eth[94]} {udp_ctrl_inst/cfg_bus_eth[95]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe3]
|
||||
set_property port_width 16 [get_debug_ports u_ila_1/probe3]
|
||||
connect_debug_port u_ila_1/probe3 [get_nets [list {axis_mac0/rx_payload_len[0]} {axis_mac0/rx_payload_len[1]} {axis_mac0/rx_payload_len[2]} {axis_mac0/rx_payload_len[3]} {axis_mac0/rx_payload_len[4]} {axis_mac0/rx_payload_len[5]} {axis_mac0/rx_payload_len[6]} {axis_mac0/rx_payload_len[7]} {axis_mac0/rx_payload_len[8]} {axis_mac0/rx_payload_len[9]} {axis_mac0/rx_payload_len[10]} {axis_mac0/rx_payload_len[11]} {axis_mac0/rx_payload_len[12]} {axis_mac0/rx_payload_len[13]} {axis_mac0/rx_payload_len[14]} {axis_mac0/rx_payload_len[15]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe4]
|
||||
set_property port_width 8 [get_debug_ports u_ila_1/probe4]
|
||||
connect_debug_port u_ila_1/probe4 [get_nets [list {m_axis_rx_tdata[0]} {m_axis_rx_tdata[1]} {m_axis_rx_tdata[2]} {m_axis_rx_tdata[3]} {m_axis_rx_tdata[4]} {m_axis_rx_tdata[5]} {m_axis_rx_tdata[6]} {m_axis_rx_tdata[7]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe5]
|
||||
set_property port_width 3 [get_debug_ports u_ila_1/probe5]
|
||||
connect_debug_port u_ila_1/probe5 [get_nets [list {udp_ctrl_inst/eth_state[0]} {udp_ctrl_inst/eth_state[1]} {udp_ctrl_inst/eth_state[2]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe6]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe6]
|
||||
connect_debug_port u_ila_1/probe6 [get_nets [list axis_mac0/arp_found]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe7]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe7]
|
||||
connect_debug_port u_ila_1/probe7 [get_nets [list udp_ctrl_inst/axis_hs]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe8]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe8]
|
||||
connect_debug_port u_ila_1/probe8 [get_nets [list udp_ctrl_inst/busy_flag_eth]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe9]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe9]
|
||||
connect_debug_port u_ila_1/probe9 [get_nets [list axis_mac0/m_axis_rx_tlast]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe10]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe10]
|
||||
connect_debug_port u_ila_1/probe10 [get_nets [list m_axis_rx_tlast]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe11]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe11]
|
||||
connect_debug_port u_ila_1/probe11 [get_nets [list axis_mac0/m_axis_rx_tready]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe12]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe12]
|
||||
connect_debug_port u_ila_1/probe12 [get_nets [list m_axis_rx_tready]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe13]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe13]
|
||||
connect_debug_port u_ila_1/probe13 [get_nets [list axis_mac0/req_ready]]
|
||||
create_debug_core u_ila_2 ila
|
||||
set_property ALL_PROBE_SAME_MU true [get_debug_cores u_ila_2]
|
||||
set_property ALL_PROBE_SAME_MU_CNT 1 [get_debug_cores u_ila_2]
|
||||
set_property C_ADV_TRIGGER false [get_debug_cores u_ila_2]
|
||||
set_property C_DATA_DEPTH 1024 [get_debug_cores u_ila_2]
|
||||
set_property C_EN_STRG_QUAL false [get_debug_cores u_ila_2]
|
||||
set_property C_INPUT_PIPE_STAGES 0 [get_debug_cores u_ila_2]
|
||||
set_property C_TRIGIN_EN false [get_debug_cores u_ila_2]
|
||||
set_property C_TRIGOUT_EN false [get_debug_cores u_ila_2]
|
||||
set_property port_width 1 [get_debug_ports u_ila_2/clk]
|
||||
connect_debug_port u_ila_2/clk [get_nets [list clk_wiz_ctrl_inst/inst/clk_out1]]
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe0]
|
||||
set_property port_width 12 [get_debug_ports u_ila_2/probe0]
|
||||
connect_debug_port u_ila_2/probe0 [get_nets [list {dac_pulse_height_dbg[0]} {dac_pulse_height_dbg[1]} {dac_pulse_height_dbg[2]} {dac_pulse_height_dbg[3]} {dac_pulse_height_dbg[4]} {dac_pulse_height_dbg[5]} {dac_pulse_height_dbg[6]} {dac_pulse_height_dbg[7]} {dac_pulse_height_dbg[8]} {dac_pulse_height_dbg[9]} {dac_pulse_height_dbg[10]} {dac_pulse_height_dbg[11]}]]
|
||||
create_debug_port u_ila_2 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe1]
|
||||
set_property port_width 16 [get_debug_ports u_ila_2/probe1]
|
||||
connect_debug_port u_ila_2/probe1 [get_nets [list {dac_pulse_num_dbg[0]} {dac_pulse_num_dbg[1]} {dac_pulse_num_dbg[2]} {dac_pulse_num_dbg[3]} {dac_pulse_num_dbg[4]} {dac_pulse_num_dbg[5]} {dac_pulse_num_dbg[6]} {dac_pulse_num_dbg[7]} {dac_pulse_num_dbg[8]} {dac_pulse_num_dbg[9]} {dac_pulse_num_dbg[10]} {dac_pulse_num_dbg[11]} {dac_pulse_num_dbg[12]} {dac_pulse_num_dbg[13]} {dac_pulse_num_dbg[14]} {dac_pulse_num_dbg[15]}]]
|
||||
create_debug_port u_ila_2 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe2]
|
||||
set_property port_width 32 [get_debug_ports u_ila_2/probe2]
|
||||
connect_debug_port u_ila_2/probe2 [get_nets [list {dac_pulse_period_dbg[0]} {dac_pulse_period_dbg[1]} {dac_pulse_period_dbg[2]} {dac_pulse_period_dbg[3]} {dac_pulse_period_dbg[4]} {dac_pulse_period_dbg[5]} {dac_pulse_period_dbg[6]} {dac_pulse_period_dbg[7]} {dac_pulse_period_dbg[8]} {dac_pulse_period_dbg[9]} {dac_pulse_period_dbg[10]} {dac_pulse_period_dbg[11]} {dac_pulse_period_dbg[12]} {dac_pulse_period_dbg[13]} {dac_pulse_period_dbg[14]} {dac_pulse_period_dbg[15]} {dac_pulse_period_dbg[16]} {dac_pulse_period_dbg[17]} {dac_pulse_period_dbg[18]} {dac_pulse_period_dbg[19]} {dac_pulse_period_dbg[20]} {dac_pulse_period_dbg[21]} {dac_pulse_period_dbg[22]} {dac_pulse_period_dbg[23]} {dac_pulse_period_dbg[24]} {dac_pulse_period_dbg[25]} {dac_pulse_period_dbg[26]} {dac_pulse_period_dbg[27]} {dac_pulse_period_dbg[28]} {dac_pulse_period_dbg[29]} {dac_pulse_period_dbg[30]} {dac_pulse_period_dbg[31]}]]
|
||||
create_debug_port u_ila_2 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe3]
|
||||
set_property port_width 32 [get_debug_ports u_ila_2/probe3]
|
||||
connect_debug_port u_ila_2/probe3 [get_nets [list {dac_pulse_width_dbg[0]} {dac_pulse_width_dbg[1]} {dac_pulse_width_dbg[2]} {dac_pulse_width_dbg[3]} {dac_pulse_width_dbg[4]} {dac_pulse_width_dbg[5]} {dac_pulse_width_dbg[6]} {dac_pulse_width_dbg[7]} {dac_pulse_width_dbg[8]} {dac_pulse_width_dbg[9]} {dac_pulse_width_dbg[10]} {dac_pulse_width_dbg[11]} {dac_pulse_width_dbg[12]} {dac_pulse_width_dbg[13]} {dac_pulse_width_dbg[14]} {dac_pulse_width_dbg[15]} {dac_pulse_width_dbg[16]} {dac_pulse_width_dbg[17]} {dac_pulse_width_dbg[18]} {dac_pulse_width_dbg[19]} {dac_pulse_width_dbg[20]} {dac_pulse_width_dbg[21]} {dac_pulse_width_dbg[22]} {dac_pulse_width_dbg[23]} {dac_pulse_width_dbg[24]} {dac_pulse_width_dbg[25]} {dac_pulse_width_dbg[26]} {dac_pulse_width_dbg[27]} {dac_pulse_width_dbg[28]} {dac_pulse_width_dbg[29]} {dac_pulse_width_dbg[30]} {dac_pulse_width_dbg[31]}]]
|
||||
create_debug_port u_ila_2 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe4]
|
||||
set_property port_width 1 [get_debug_ports u_ila_2/probe4]
|
||||
connect_debug_port u_ila_2/probe4 [get_nets [list dac_rst_dbg]]
|
||||
create_debug_port u_ila_2 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe5]
|
||||
set_property port_width 1 [get_debug_ports u_ila_2/probe5]
|
||||
connect_debug_port u_ila_2/probe5 [get_nets [list dac_start_dbg]]
|
||||
set_property C_CLK_INPUT_FREQ_HZ 300000000 [get_debug_cores dbg_hub]
|
||||
set_property C_ENABLE_CLK_DIVIDER false [get_debug_cores dbg_hub]
|
||||
set_property C_USER_SCAN_CHAIN 1 [get_debug_cores dbg_hub]
|
||||
connect_debug_port dbg_hub/clk [get_nets dac_clk]
|
||||
@ -1,298 +0,0 @@
|
||||
`timescale 1 ns / 1 ns
|
||||
|
||||
module eth_ctrl_debug_top #(
|
||||
parameter int unsigned DAC_DATA_WIDTH = 12
|
||||
)(
|
||||
input sys_clk_p,
|
||||
input sys_clk_n,
|
||||
input rst_n,
|
||||
|
||||
output [3:0] led,
|
||||
|
||||
output e_reset,
|
||||
output e_mdc,
|
||||
inout e_mdio,
|
||||
|
||||
output [3:0] rgmii_txd,
|
||||
output rgmii_txctl,
|
||||
output rgmii_txc,
|
||||
input [3:0] rgmii_rxd,
|
||||
input rgmii_rxctl,
|
||||
input rgmii_rxc
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Internal GMII-side signals
|
||||
// -------------------------------------------------------------------------
|
||||
wire [7:0] gmii_txd;
|
||||
wire gmii_tx_en;
|
||||
wire gmii_tx_er;
|
||||
wire gmii_tx_clk;
|
||||
wire gmii_crs;
|
||||
wire gmii_col;
|
||||
wire [7:0] gmii_rxd_i;
|
||||
wire gmii_rx_dv;
|
||||
wire gmii_rx_er;
|
||||
wire gmii_rx_clk;
|
||||
|
||||
wire [31:0] pack_total_len;
|
||||
|
||||
wire e_rx_dv;
|
||||
wire [7:0] e_rxd;
|
||||
wire e_tx_en;
|
||||
wire [7:0] e_txd;
|
||||
wire e_rst_n;
|
||||
wire sys_clk;
|
||||
|
||||
wire duplex_mode;
|
||||
|
||||
assign duplex_mode = 1'b1;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// System clock buffer (200 MHz differential input)
|
||||
// -------------------------------------------------------------------------
|
||||
IBUFDS sys_clk_ibufgds (
|
||||
.O (sys_clk),
|
||||
.I (sys_clk_p),
|
||||
.IB (sys_clk_n)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// IDELAYCTRL
|
||||
// -------------------------------------------------------------------------
|
||||
(* IODELAY_GROUP = "rgmii_idelay_group" *)
|
||||
IDELAYCTRL IDELAYCTRL_inst (
|
||||
.RDY (),
|
||||
.REFCLK (sys_clk),
|
||||
.RST (1'b0)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Generated clocks for controller
|
||||
// Need to create this IP in Vivado:
|
||||
// input : 200 MHz
|
||||
// output0: 130 MHz
|
||||
// output1: 65 MHz
|
||||
// -------------------------------------------------------------------------
|
||||
wire dac_clk;
|
||||
wire adc_clk;
|
||||
wire clk_wiz_locked;
|
||||
|
||||
clk_wiz_ctrl_inst clk_wiz_ctrl_inst (
|
||||
.clk_in1 (sys_clk),
|
||||
.reset (~rst_n),
|
||||
.clk_out1 (dac_clk), // 130 MHz
|
||||
.clk_out2 (adc_clk), // 65 MHz
|
||||
.locked (clk_wiz_locked)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// GMII <-> RGMII conversion
|
||||
// -------------------------------------------------------------------------
|
||||
util_gmii_to_rgmii util_gmii_to_rgmii_m0 (
|
||||
.reset (1'b0),
|
||||
.rgmii_td (rgmii_txd),
|
||||
.rgmii_tx_ctl (rgmii_txctl),
|
||||
.rgmii_txc (rgmii_txc),
|
||||
.rgmii_rd (rgmii_rxd),
|
||||
.rgmii_rx_ctl (rgmii_rxctl),
|
||||
.gmii_rx_clk (gmii_rx_clk),
|
||||
.gmii_txd (e_txd),
|
||||
.gmii_tx_en (e_tx_en),
|
||||
.gmii_tx_er (1'b0),
|
||||
.gmii_tx_clk (gmii_tx_clk),
|
||||
.gmii_crs (gmii_crs),
|
||||
.gmii_col (gmii_col),
|
||||
.gmii_rxd (gmii_rxd_i),
|
||||
.rgmii_rxc (rgmii_rxc),
|
||||
.gmii_rx_dv (gmii_rx_dv),
|
||||
.gmii_rx_er (gmii_rx_er),
|
||||
.speed_selection (2'b10),
|
||||
.duplex_mode (duplex_mode)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// GMII arbitration / adaptation
|
||||
// -------------------------------------------------------------------------
|
||||
gmii_arbi arbi_inst (
|
||||
.clk (gmii_tx_clk),
|
||||
.rst_n (rst_n),
|
||||
.speed (2'b10),
|
||||
.link (1'b1),
|
||||
.pack_total_len (pack_total_len),
|
||||
.e_rst_n (e_rst_n),
|
||||
.gmii_rx_dv (gmii_rx_dv),
|
||||
.gmii_rxd (gmii_rxd_i),
|
||||
.gmii_tx_en (gmii_tx_en),
|
||||
.gmii_txd (gmii_txd),
|
||||
.e_rx_dv (e_rx_dv),
|
||||
.e_rxd (e_rxd),
|
||||
.e_tx_en (e_tx_en),
|
||||
.e_txd (e_txd)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// axis_mac interface
|
||||
// RX stream from Ethernet goes into controller
|
||||
// TX stream is unused for now
|
||||
// -------------------------------------------------------------------------
|
||||
wire req_ready;
|
||||
|
||||
reg send_req;
|
||||
reg [15:0] data_length;
|
||||
|
||||
reg [7:0] s_axis_tx_tdata;
|
||||
reg s_axis_tx_tvalid;
|
||||
wire s_axis_tx_tready;
|
||||
reg s_axis_tx_tlast;
|
||||
|
||||
(* MARK_DEBUG="true" *) wire [7:0] m_axis_rx_tdata;
|
||||
(* MARK_DEBUG="true" *) wire m_axis_rx_tvalid;
|
||||
(* MARK_DEBUG="true" *) wire m_axis_rx_tlast;
|
||||
(* MARK_DEBUG="true" *) wire m_axis_rx_tready;
|
||||
|
||||
// Always ready to accept RX payload bytes
|
||||
assign m_axis_rx_tready = 1'b1;
|
||||
|
||||
// TX disabled
|
||||
always @(*) begin
|
||||
send_req = 1'b0;
|
||||
data_length = 16'd0;
|
||||
s_axis_tx_tdata = 8'd0;
|
||||
s_axis_tx_tvalid= 1'b0;
|
||||
s_axis_tx_tlast = 1'b0;
|
||||
end
|
||||
|
||||
axis_mac axis_mac0 (
|
||||
.gmii_tx_clk (gmii_tx_clk),
|
||||
.gmii_rx_clk (gmii_rx_clk),
|
||||
.rst_n (e_rst_n),
|
||||
|
||||
.gmii_rx_dv (e_rx_dv),
|
||||
.gmii_rxd (e_rxd),
|
||||
.gmii_tx_en (gmii_tx_en),
|
||||
.gmii_txd (gmii_txd),
|
||||
|
||||
.send_req (send_req),
|
||||
.data_length (data_length),
|
||||
.req_ready (req_ready),
|
||||
|
||||
.s_axis_tx_tdata (s_axis_tx_tdata),
|
||||
.s_axis_tx_tvalid (s_axis_tx_tvalid),
|
||||
.s_axis_tx_tready (s_axis_tx_tready),
|
||||
.s_axis_tx_tlast (s_axis_tx_tlast),
|
||||
|
||||
.m_axis_rx_tdata (m_axis_rx_tdata),
|
||||
.m_axis_rx_tvalid (m_axis_rx_tvalid),
|
||||
.m_axis_rx_tready (m_axis_rx_tready),
|
||||
.m_axis_rx_tlast (m_axis_rx_tlast)
|
||||
);
|
||||
|
||||
// PHY reset helper from your original example
|
||||
reset reset_m0 (
|
||||
.clk (sys_clk),
|
||||
.key1 (rst_n),
|
||||
.rst_n (e_reset)
|
||||
);
|
||||
|
||||
// MDIO lines are not driven here yet
|
||||
assign e_mdc = 1'b0;
|
||||
assign e_mdio = 1'bz;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Controller reset
|
||||
// Use both external reset and clk_wiz lock
|
||||
// -------------------------------------------------------------------------
|
||||
wire ctrl_rst_n = rst_n & clk_wiz_locked;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Debug finish generator
|
||||
//
|
||||
// After each adc_start pulse generates one finish pulse after some delay.
|
||||
// This is just for first bring-up so the controller can leave busy state
|
||||
// If you don't want this, replace with:
|
||||
// wire finish_dbg = 1'b0;
|
||||
// -------------------------------------------------------------------------
|
||||
(* MARK_DEBUG="true" *) logic finish_dbg;
|
||||
(* MARK_DEBUG="true" *) logic [7:0] finish_cnt;
|
||||
(* MARK_DEBUG="true" *) logic finish_pending;
|
||||
|
||||
// Controller outputs to debug
|
||||
(* MARK_DEBUG="true" *) wire [31:0] dac_pulse_width_dbg;
|
||||
(* MARK_DEBUG="true" *) wire [31:0] dac_pulse_period_dbg;
|
||||
(* MARK_DEBUG="true" *) wire [DAC_DATA_WIDTH-1:0] dac_pulse_height_dbg;
|
||||
(* MARK_DEBUG="true" *) wire [15:0] dac_pulse_num_dbg;
|
||||
|
||||
(* MARK_DEBUG="true" *) wire [31:0] adc_pulse_period_dbg;
|
||||
(* MARK_DEBUG="true" *) wire [15:0] adc_pulse_num_dbg;
|
||||
|
||||
(* MARK_DEBUG="true" *) wire dac_start_dbg;
|
||||
(* MARK_DEBUG="true" *) wire adc_start_dbg;
|
||||
(* MARK_DEBUG="true" *) wire dac_rst_dbg;
|
||||
(* MARK_DEBUG="true" *) wire adc_rst_dbg;
|
||||
|
||||
always_ff @(posedge adc_clk or negedge ctrl_rst_n) begin
|
||||
if (!ctrl_rst_n) begin
|
||||
finish_dbg <= 1'b0;
|
||||
finish_cnt <= 8'd0;
|
||||
finish_pending <= 1'b0;
|
||||
end else begin
|
||||
finish_dbg <= 1'b0;
|
||||
|
||||
if (adc_start_dbg) begin
|
||||
finish_pending <= 1'b1;
|
||||
finish_cnt <= 8'd80;
|
||||
end else if (finish_pending) begin
|
||||
if (finish_cnt == 8'd0) begin
|
||||
finish_dbg <= 1'b1;
|
||||
finish_pending <= 1'b0;
|
||||
end else begin
|
||||
finish_cnt <= finish_cnt - 8'd1;
|
||||
end
|
||||
end
|
||||
end
|
||||
end
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Controller
|
||||
// ETH domain = gmii_rx_clk, because RX AXI master comes from axis_mac RX side
|
||||
// -------------------------------------------------------------------------
|
||||
control #(
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
) udp_ctrl_inst (
|
||||
.eth_clk_in (gmii_rx_clk),
|
||||
.dac_clk_in (dac_clk),
|
||||
.adc_clk_in (adc_clk),
|
||||
.rst_n (ctrl_rst_n),
|
||||
|
||||
.s_axis_tdata (m_axis_rx_tdata),
|
||||
.s_axis_tvalid (m_axis_rx_tvalid),
|
||||
.s_axis_tready (), // controller internally always ready in current version
|
||||
.s_axis_tlast (m_axis_rx_tlast),
|
||||
|
||||
.finish (finish_dbg),
|
||||
|
||||
.dac_pulse_width (dac_pulse_width_dbg),
|
||||
.dac_pulse_period (dac_pulse_period_dbg),
|
||||
.dac_pulse_height (dac_pulse_height_dbg),
|
||||
.dac_pulse_num (dac_pulse_num_dbg),
|
||||
|
||||
.adc_pulse_period (adc_pulse_period_dbg),
|
||||
.adc_pulse_num (adc_pulse_num_dbg),
|
||||
|
||||
.dac_start (dac_start_dbg),
|
||||
.adc_start (adc_start_dbg),
|
||||
|
||||
.dac_rst (dac_rst_dbg),
|
||||
.adc_rst (adc_rst_dbg)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Simple LED status
|
||||
// -------------------------------------------------------------------------
|
||||
assign led[0] = clk_wiz_locked;
|
||||
assign led[1] = m_axis_rx_tvalid;
|
||||
assign led[2] = dac_start_dbg;
|
||||
assign led[3] = adc_rst_dbg;
|
||||
|
||||
endmodule
|
||||
@ -1,689 +0,0 @@
|
||||
{
|
||||
"schema": "xilinx.com:schema:json_instance:1.0",
|
||||
"ip_inst": {
|
||||
"xci_name": "clk_wiz_ctrl_inst",
|
||||
"component_reference": "xilinx.com:ip:clk_wiz:6.0",
|
||||
"ip_revision": "16",
|
||||
"gen_directory": "../../../../eth_ctrl_debug_top.gen/sources_1/ip/clk_wiz_ctrl_inst",
|
||||
"parameters": {
|
||||
"component_parameters": {
|
||||
"Component_Name": [ { "value": "clk_wiz_ctrl_inst", "resolve_type": "user", "usage": "all" } ],
|
||||
"USER_CLK_FREQ0": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USER_CLK_FREQ1": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USER_CLK_FREQ2": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USER_CLK_FREQ3": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"ENABLE_CLOCK_MONITOR": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"OPTIMIZE_CLOCKING_STRUCTURE_EN": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK0": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK1": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK2": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK3": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"Enable_PLL0": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"Enable_PLL1": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"REF_CLK_FREQ": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRECISION": [ { "value": "1", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRIMITIVE": [ { "value": "MMCM", "resolve_type": "user", "usage": "all" } ],
|
||||
"PRIMTYPE_SEL": [ { "value": "mmcm_adv", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLOCK_MGR_TYPE": [ { "value": "auto", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_FREQ_SYNTH": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_SPREAD_SPECTRUM": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_PHASE_ALIGNMENT": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_MIN_POWER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_DYN_PHASE_SHIFT": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_DYN_RECONFIG": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"JITTER_SEL": [ { "value": "No_Jitter", "resolve_type": "user", "usage": "all" } ],
|
||||
"PRIM_IN_FREQ": [ { "value": "200.000", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRIM_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"IN_FREQ_UNITS": [ { "value": "Units_MHz", "resolve_type": "user", "usage": "all" } ],
|
||||
"PHASESHIFT_MODE": [ { "value": "WAVEFORM", "resolve_type": "user", "usage": "all" } ],
|
||||
"IN_JITTER_UNITS": [ { "value": "Units_UI", "resolve_type": "user", "usage": "all" } ],
|
||||
"RELATIVE_INCLK": [ { "value": "REL_PRIMARY", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_INCLK_SWITCHOVER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"SECONDARY_IN_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SECONDARY_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SECONDARY_PORT": [ { "value": "clk_in2", "resolve_type": "user", "usage": "all" } ],
|
||||
"SECONDARY_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "user", "usage": "all" } ],
|
||||
"JITTER_OPTIONS": [ { "value": "UI", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKIN1_UI_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKIN2_UI_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRIM_IN_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SECONDARY_IN_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKIN1_JITTER_PS": [ { "value": "50.0", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKIN2_JITTER_PS": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_USED": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT2_USED": [ { "value": "true", "value_src": "user", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT3_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT4_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT5_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT6_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT7_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"NUM_OUT_CLKS": [ { "value": "2", "value_src": "user", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLK_OUT1_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT2_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT3_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT4_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT5_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT6_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT7_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PRIMARY_PORT": [ { "value": "clk_in1", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT1_PORT": [ { "value": "clk_out1", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT2_PORT": [ { "value": "clk_out2", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT3_PORT": [ { "value": "clk_out3", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT4_PORT": [ { "value": "clk_out4", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT5_PORT": [ { "value": "clk_out5", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT6_PORT": [ { "value": "clk_out6", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT7_PORT": [ { "value": "clk_out7", "resolve_type": "user", "usage": "all" } ],
|
||||
"DADDR_PORT": [ { "value": "daddr", "resolve_type": "user", "usage": "all" } ],
|
||||
"DCLK_PORT": [ { "value": "dclk", "resolve_type": "user", "usage": "all" } ],
|
||||
"DRDY_PORT": [ { "value": "drdy", "resolve_type": "user", "usage": "all" } ],
|
||||
"DWE_PORT": [ { "value": "dwe", "resolve_type": "user", "usage": "all" } ],
|
||||
"DIN_PORT": [ { "value": "din", "resolve_type": "user", "usage": "all" } ],
|
||||
"DOUT_PORT": [ { "value": "dout", "resolve_type": "user", "usage": "all" } ],
|
||||
"DEN_PORT": [ { "value": "den", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSCLK_PORT": [ { "value": "psclk", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSEN_PORT": [ { "value": "psen", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSINCDEC_PORT": [ { "value": "psincdec", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSDONE_PORT": [ { "value": "psdone", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT1_REQUESTED_OUT_FREQ": [ { "value": "130.000", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_REQUESTED_OUT_FREQ": [ { "value": "65.000", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USE_MAX_I_JITTER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_MIN_O_JITTER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT1_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT2_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT3_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT4_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT5_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT6_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT7_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PRIM_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT1_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT2_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT3_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT4_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT5_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT6_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT7_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"FEEDBACK_SOURCE": [ { "value": "FDBK_AUTO", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_SIGNALING": [ { "value": "SINGLE", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_PORT": [ { "value": "clkfb_in", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_P_PORT": [ { "value": "clkfb_in_p", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_N_PORT": [ { "value": "clkfb_in_n", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_OUT_PORT": [ { "value": "clkfb_out", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_OUT_P_PORT": [ { "value": "clkfb_out_p", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_OUT_N_PORT": [ { "value": "clkfb_out_n", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLATFORM": [ { "value": "UNKNOWN", "resolve_type": "user", "usage": "all" } ],
|
||||
"SUMMARY_STRINGS": [ { "value": "empty", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_LOCKED": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CALC_DONE": [ { "value": "empty", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_RESET": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_POWER_DOWN": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_STATUS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_FREEZE": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_CLK_VALID": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_INCLK_STOPPED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_CLKFB_STOPPED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"RESET_PORT": [ { "value": "reset", "resolve_type": "user", "usage": "all" } ],
|
||||
"LOCKED_PORT": [ { "value": "locked", "resolve_type": "user", "usage": "all" } ],
|
||||
"POWER_DOWN_PORT": [ { "value": "power_down", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_VALID_PORT": [ { "value": "CLK_VALID", "resolve_type": "user", "usage": "all" } ],
|
||||
"STATUS_PORT": [ { "value": "STATUS", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_IN_SEL_PORT": [ { "value": "clk_in_sel", "resolve_type": "user", "usage": "all" } ],
|
||||
"INPUT_CLK_STOPPED_PORT": [ { "value": "input_clk_stopped", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_STOPPED_PORT": [ { "value": "clkfb_stopped", "resolve_type": "user", "usage": "all" } ],
|
||||
"SS_MODE": [ { "value": "CENTER_HIGH", "resolve_type": "user", "usage": "all" } ],
|
||||
"SS_MOD_FREQ": [ { "value": "250", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SS_MOD_TIME": [ { "value": "0.004", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"OVERRIDE_MMCM": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_NOTES": [ { "value": "None", "resolve_type": "user", "usage": "all" } ],
|
||||
"MMCM_DIVCLK_DIVIDE": [ { "value": "1", "value_src": "user", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "user", "usage": "all" } ],
|
||||
"MMCM_CLKFBOUT_MULT_F": [ { "value": "4.875", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKFBOUT_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKIN1_PERIOD": [ { "value": "5.000", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKIN2_PERIOD": [ { "value": "10.0", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_CASCADE": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLOCK_HOLD": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_COMPENSATION": [ { "value": "ZHOLD", "resolve_type": "user", "usage": "all" } ],
|
||||
"MMCM_REF_JITTER1": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_REF_JITTER2": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_STARTUP_WAIT": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_DIVIDE_F": [ { "value": "7.500", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_DIVIDE": [ { "value": "15", "value_src": "user", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"OVERRIDE_PLL": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PLL_NOTES": [ { "value": "None", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_CLKFBOUT_MULT": [ { "value": "4", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLK_FEEDBACK": [ { "value": "CLKFBOUT", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_DIVCLK_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKIN_PERIOD": [ { "value": "10.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_COMPENSATION": [ { "value": "SYSTEM_SYNCHRONOUS", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_REF_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT0_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT1_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"RESET_TYPE": [ { "value": "ACTIVE_HIGH", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_SAFE_CLOCK_STARTUP": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_CLOCK_SEQUENCING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT1_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT2_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT3_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT4_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT5_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT6_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT7_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"USE_BOARD_FLOW": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_IN1_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_IN2_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"DIFF_CLK_IN1_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"DIFF_CLK_IN2_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"AUTO_PRIMITIVE": [ { "value": "MMCM", "resolve_type": "user", "usage": "all" } ],
|
||||
"RESET_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"ENABLE_CDDC": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CDDCDONE_PORT": [ { "value": "cddcdone", "resolve_type": "user", "usage": "all" } ],
|
||||
"CDDCREQ_PORT": [ { "value": "cddcreq", "resolve_type": "user", "usage": "all" } ],
|
||||
"ENABLE_CLKOUTPHY": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUTPHY_REQUESTED_FREQ": [ { "value": "600.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_JITTER": [ { "value": "102.676", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_PHASE_ERROR": [ { "value": "87.159", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_JITTER": [ { "value": "117.878", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_PHASE_ERROR": [ { "value": "87.159", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"INPUT_MODE": [ { "value": "frequency", "resolve_type": "user", "usage": "all" } ],
|
||||
"INTERFACE_SELECTION": [ { "value": "Enable_AXI", "resolve_type": "user", "usage": "all" } ],
|
||||
"AXI_DRP": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PHASE_DUTY_CONFIG": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ]
|
||||
},
|
||||
"model_parameters": {
|
||||
"C_CLKOUT2_USED": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ0": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_AUTO_PRIMITIVE": [ { "value": "MMCM", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ1": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ2": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ3": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_ENABLE_CLOCK_MONITOR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK0": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK1": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK2": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK3": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_Enable_PLL0": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_Enable_PLL1": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_REF_CLK_FREQ": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PRECISION": [ { "value": "1", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT4_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT5_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT6_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT7_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT1_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT2_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT3_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT4_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"c_component_name": [ { "value": "clk_wiz_ctrl_inst", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLATFORM": [ { "value": "UNKNOWN", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_FREQ_SYNTH": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_PHASE_ALIGNMENT": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIM_IN_JITTER": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_SECONDARY_IN_JITTER": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_JITTER_SEL": [ { "value": "No_Jitter", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_MIN_POWER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_MIN_O_JITTER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_MAX_I_JITTER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_DYN_PHASE_SHIFT": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_OPTIMIZE_CLOCKING_STRUCTURE_EN": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_INCLK_SWITCHOVER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_DYN_RECONFIG": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_SPREAD_SPECTRUM": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_FAST_SIMULATION": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIMTYPE_SEL": [ { "value": "AUTO", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_CLK_VALID": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIM_IN_FREQ": [ { "value": "200.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PRIM_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_IN_FREQ_UNITS": [ { "value": "Units_MHz", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SECONDARY_IN_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_SECONDARY_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_FEEDBACK_SOURCE": [ { "value": "FDBK_AUTO", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PRIM_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PHASESHIFT_MODE": [ { "value": "WAVEFORM", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SECONDARY_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_SIGNALING": [ { "value": "SINGLE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_RESET": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_RESET_LOW": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_LOCKED": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_INCLK_STOPPED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKFB_STOPPED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_POWER_DOWN": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_STATUS": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_FREEZE": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_NUM_OUT_CLKS": [ { "value": "2", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT1_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT7_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INCLK_SUM_ROW0": [ { "value": "Input Clock Freq (MHz) Input Jitter (UI)", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INCLK_SUM_ROW1": [ { "value": "__primary_________200.000____________0.010", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INCLK_SUM_ROW2": [ { "value": "no_secondary_input_clock ", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW0A": [ { "value": " Output Output Phase Duty Cycle Pk-to-Pk Phase", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW0B": [ { "value": " Clock Freq (MHz) (degrees) (%) Jitter (ps) Error (ps)", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW1": [ { "value": "clk_out1__130.00000______0.000______50.0______102.676_____87.159", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW2": [ { "value": "clk_out2__65.00000______0.000______50.0______117.878_____87.159", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW3": [ { "value": "no_CLK_OUT3_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW4": [ { "value": "no_CLK_OUT4_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW5": [ { "value": "no_CLK_OUT5_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW6": [ { "value": "no_CLK_OUT6_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW7": [ { "value": "no_CLK_OUT7_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_REQUESTED_OUT_FREQ": [ { "value": "130.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_REQUESTED_OUT_FREQ": [ { "value": "65.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_OUT_FREQ": [ { "value": "130.00000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_OUT_FREQ": [ { "value": "65.00000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_DUTY_CYCLE": [ { "value": "50.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_DUTY_CYCLE": [ { "value": "50.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_USE_SAFE_CLOCK_STARTUP": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLOCK_SEQUENCING": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT1_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT2_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT3_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT4_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT5_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT6_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT7_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_NOTES": [ { "value": "None", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKFBOUT_MULT_F": [ { "value": "4.875", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKIN1_PERIOD": [ { "value": "5.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKIN2_PERIOD": [ { "value": "10.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_CASCADE": [ { "value": "FALSE", "resolve_type": "generated", "format": "bool", "usage": "all" } ],
|
||||
"C_MMCM_CLOCK_HOLD": [ { "value": "FALSE", "resolve_type": "generated", "format": "bool", "usage": "all" } ],
|
||||
"C_MMCM_COMPENSATION": [ { "value": "ZHOLD", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_DIVCLK_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_REF_JITTER1": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_REF_JITTER2": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_STARTUP_WAIT": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_DIVIDE_F": [ { "value": "7.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_DIVIDE": [ { "value": "15", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKFBOUT_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_NOTES": [ { "value": "No notes", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_CLK_FEEDBACK": [ { "value": "CLKFBOUT", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_CLKFBOUT_MULT": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKIN_PERIOD": [ { "value": "1.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_COMPENSATION": [ { "value": "SYSTEM_SYNCHRONOUS", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_DIVCLK_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_REF_JITTER": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT0_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT1_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLOCK_MGR_TYPE": [ { "value": "NA", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OVERRIDE_MMCM": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_OVERRIDE_PLL": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIMARY_PORT": [ { "value": "clk_in1", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SECONDARY_PORT": [ { "value": "clk_in2", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT1_PORT": [ { "value": "clk_out1", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT2_PORT": [ { "value": "clk_out2", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT3_PORT": [ { "value": "clk_out3", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT4_PORT": [ { "value": "clk_out4", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT5_PORT": [ { "value": "clk_out5", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT6_PORT": [ { "value": "clk_out6", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT7_PORT": [ { "value": "clk_out7", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_RESET_PORT": [ { "value": "reset", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCKED_PORT": [ { "value": "locked", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_PORT": [ { "value": "clkfb_in", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_P_PORT": [ { "value": "clkfb_in_p", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_N_PORT": [ { "value": "clkfb_in_n", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_OUT_PORT": [ { "value": "clkfb_out", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_OUT_P_PORT": [ { "value": "clkfb_out_p", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_OUT_N_PORT": [ { "value": "clkfb_out_n", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_POWER_DOWN_PORT": [ { "value": "power_down", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DADDR_PORT": [ { "value": "daddr", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DCLK_PORT": [ { "value": "dclk", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DRDY_PORT": [ { "value": "drdy", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DWE_PORT": [ { "value": "dwe", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIN_PORT": [ { "value": "din", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DOUT_PORT": [ { "value": "dout", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DEN_PORT": [ { "value": "den", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSCLK_PORT": [ { "value": "psclk", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSEN_PORT": [ { "value": "psen", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSINCDEC_PORT": [ { "value": "psincdec", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSDONE_PORT": [ { "value": "psdone", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_VALID_PORT": [ { "value": "CLK_VALID", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_STATUS_PORT": [ { "value": "STATUS", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_IN_SEL_PORT": [ { "value": "clk_in_sel", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INPUT_CLK_STOPPED_PORT": [ { "value": "input_clk_stopped", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_STOPPED_PORT": [ { "value": "clkfb_stopped", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKIN1_JITTER_PS": [ { "value": "50.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKIN2_JITTER_PS": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PRIMITIVE": [ { "value": "MMCM", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SS_MODE": [ { "value": "CENTER_HIGH", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SS_MOD_PERIOD": [ { "value": "4000", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_SS_MOD_TIME": [ { "value": "0.004", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_HAS_CDDC": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CDDCDONE_PORT": [ { "value": "cddcdone", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CDDCREQ_PORT": [ { "value": "cddcreq", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUTPHY_MODE": [ { "value": "VCO", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_ENABLE_CLKOUTPHY": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_INTERFACE_SELECTION": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_S_AXI_ADDR_WIDTH": [ { "value": "11", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_S_AXI_DATA_WIDTH": [ { "value": "32", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_POWER_REG": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT0_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT0_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFBOUT_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFBOUT_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVCLK": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCK_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCK_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCK_3": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_FILTER_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_FILTER_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE1_AUTO": [ { "value": "1", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE2_AUTO": [ { "value": "2.0", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE3_AUTO": [ { "value": "0.13333333333333333", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE4_AUTO": [ { "value": "0.13333333333333333", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE5_AUTO": [ { "value": "0.13333333333333333", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE6_AUTO": [ { "value": "0.13333333333333333", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE7_AUTO": [ { "value": "0.13333333333333333", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV1": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV2": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV3": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV4": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV1": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV2": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV3": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV4": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV5": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV6": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV7": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT7_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT0_ACTUAL_FREQ": [ { "value": "130.00000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_ACTUAL_FREQ": [ { "value": "65.00000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_M_MAX": [ { "value": "64.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_M_MIN": [ { "value": "2.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_D_MAX": [ { "value": "80.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_D_MIN": [ { "value": "1.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_O_MAX": [ { "value": "128.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_O_MIN": [ { "value": "1.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_VCO_MIN": [ { "value": "600.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_VCO_MAX": [ { "value": "1200.000", "resolve_type": "generated", "format": "float", "usage": "all" } ]
|
||||
},
|
||||
"project_parameters": {
|
||||
"ARCHITECTURE": [ { "value": "artix7" } ],
|
||||
"BASE_BOARD_PART": [ { "value": "" } ],
|
||||
"BOARD_CONNECTIONS": [ { "value": "" } ],
|
||||
"DEVICE": [ { "value": "xc7a35t" } ],
|
||||
"PACKAGE": [ { "value": "fgg484" } ],
|
||||
"PREFHDL": [ { "value": "VERILOG" } ],
|
||||
"SILICON_REVISION": [ { "value": "" } ],
|
||||
"SIMULATOR_LANGUAGE": [ { "value": "MIXED" } ],
|
||||
"SPEEDGRADE": [ { "value": "-1" } ],
|
||||
"STATIC_POWER": [ { "value": "" } ],
|
||||
"TEMPERATURE_GRADE": [ { "value": "" } ]
|
||||
},
|
||||
"runtime_parameters": {
|
||||
"IPCONTEXT": [ { "value": "IP_Flow" } ],
|
||||
"IPREVISION": [ { "value": "16" } ],
|
||||
"MANAGED": [ { "value": "TRUE" } ],
|
||||
"OUTPUTDIR": [ { "value": "../../../../eth_ctrl_debug_top.gen/sources_1/ip/clk_wiz_ctrl_inst" } ],
|
||||
"SELECTEDSIMMODEL": [ { "value": "" } ],
|
||||
"SHAREDDIR": [ { "value": "." } ],
|
||||
"SWVERSION": [ { "value": "2025.1" } ],
|
||||
"SYNTHESISFLOW": [ { "value": "OUT_OF_CONTEXT" } ]
|
||||
}
|
||||
},
|
||||
"boundary": {
|
||||
"ports": {
|
||||
"reset": [ { "direction": "in", "driver_value": "0" } ],
|
||||
"clk_in1": [ { "direction": "in" } ],
|
||||
"clk_out1": [ { "direction": "out" } ],
|
||||
"clk_out2": [ { "direction": "out" } ],
|
||||
"locked": [ { "direction": "out" } ]
|
||||
},
|
||||
"interfaces": {
|
||||
"reset": {
|
||||
"vlnv": "xilinx.com:signal:reset:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:reset_rtl:1.0",
|
||||
"mode": "slave",
|
||||
"parameters": {
|
||||
"POLARITY": [ { "value": "ACTIVE_HIGH", "value_src": "constant", "usage": "all" } ],
|
||||
"BOARD.ASSOCIATED_PARAM": [ { "value": "RESET_BOARD_INTERFACE", "value_src": "constant", "usage": "all" } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"RST": [ { "physical_name": "reset" } ]
|
||||
}
|
||||
},
|
||||
"clock_CLK_IN1": {
|
||||
"vlnv": "xilinx.com:signal:clock:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:clock_rtl:1.0",
|
||||
"mode": "slave",
|
||||
"parameters": {
|
||||
"FREQ_HZ": [ { "value": "100000000", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"FREQ_TOLERANCE_HZ": [ { "value": "0", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"PHASE": [ { "value": "0.0", "resolve_type": "generated", "format": "float", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"CLK_DOMAIN": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_BUSIF": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_PORT": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_RESET": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"BOARD.ASSOCIATED_PARAM": [ { "value": "CLK_IN1_BOARD_INTERFACE", "usage": "all", "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"CLK_IN1": [ { "physical_name": "clk_in1" } ]
|
||||
}
|
||||
},
|
||||
"clock_CLK_OUT1": {
|
||||
"vlnv": "xilinx.com:signal:clock:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:clock_rtl:1.0",
|
||||
"mode": "master",
|
||||
"parameters": {
|
||||
"FREQ_HZ": [ { "value": "100000000", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"FREQ_TOLERANCE_HZ": [ { "value": "0", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"PHASE": [ { "value": "0.0", "resolve_type": "generated", "format": "float", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"CLK_DOMAIN": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_BUSIF": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_PORT": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_RESET": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"CLK_OUT1": [ { "physical_name": "clk_out1" } ]
|
||||
}
|
||||
},
|
||||
"clock_CLK_OUT2": {
|
||||
"vlnv": "xilinx.com:signal:clock:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:clock_rtl:1.0",
|
||||
"mode": "master",
|
||||
"parameters": {
|
||||
"FREQ_HZ": [ { "value": "100000000", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"FREQ_TOLERANCE_HZ": [ { "value": "0", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"PHASE": [ { "value": "0.0", "resolve_type": "generated", "format": "float", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"CLK_DOMAIN": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_BUSIF": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_PORT": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_RESET": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"CLK_OUT2": [ { "physical_name": "clk_out2" } ]
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
@ -1,52 +0,0 @@
|
||||
# SPDX-License-Identifier: MIT
|
||||
#
|
||||
# Copyright (c) 2025 FPGA Ninja, LLC
|
||||
#
|
||||
# Authors:
|
||||
# - Alex Forencich
|
||||
#
|
||||
|
||||
# FPGA settings
|
||||
FPGA_PART = xc7a35tfgg484-1
|
||||
FPGA_TOP = eth_generator_top
|
||||
FPGA_ARCH = artix7
|
||||
|
||||
RTL_DIR = ../../rtl
|
||||
|
||||
|
||||
include ../../scripts/vivado.mk
|
||||
|
||||
SYN_FILES += eth_generator.sv
|
||||
SYN_FILES += $(sort $(shell find ../../rtl -type f \( -name '*.v' -o -name '*.sv' \)))
|
||||
|
||||
XCI_FILES = $(sort $(shell find ../../rtl/ethernet-udp/src -type f -name '*.xci'))
|
||||
XCI_FILES += $(sort $(shell find ip/ -type f -name '*.xci'))
|
||||
|
||||
XDC_FILES += ../../constraints/ax7a035b.xdc
|
||||
XDC_FILES += debug.xdc
|
||||
|
||||
|
||||
|
||||
program: $(PROJECT).bit
|
||||
echo "open_hw_manager" > program.tcl
|
||||
echo "connect_hw_server" >> program.tcl
|
||||
echo "open_hw_target" >> program.tcl
|
||||
echo "current_hw_device [lindex [get_hw_devices] 0]" >> program.tcl
|
||||
echo "refresh_hw_device -update_hw_probes false [current_hw_device]" >> program.tcl
|
||||
echo "set_property PROGRAM.FILE {$(PROJECT).bit} [current_hw_device]" >> program.tcl
|
||||
echo "program_hw_devices [current_hw_device]" >> program.tcl
|
||||
echo "exit" >> program.tcl
|
||||
vivado -nojournal -nolog -mode batch -source program.tcl
|
||||
|
||||
$(PROJECT).mcs $(PROJECT).prm: $(PROJECT).bit
|
||||
echo "write_cfgmem -force -format mcs -size 16 -interface SPIx4 -loadbit {up 0x0000000 $*.bit} -checksum -file $*.mcs" > generate_mcs.tcl
|
||||
echo "exit" >> generate_mcs.tcl
|
||||
vivado -nojournal -nolog -mode batch -source generate_mcs.tcl
|
||||
mkdir -p rev
|
||||
COUNT=100; \
|
||||
while [ -e rev/$*_rev$$COUNT.bit ]; \
|
||||
do COUNT=$$((COUNT+1)); done; \
|
||||
COUNT=$$((COUNT-1)); \
|
||||
for x in .mcs .prm; \
|
||||
do cp $*$$x rev/$*_rev$$COUNT$$x; \
|
||||
echo "Output: rev/$*_rev$$COUNT$$x"; done;
|
||||
@ -1,11 +0,0 @@
|
||||
# Тестовый проект Generator + ETH + CTRL
|
||||
Проект состоит из AXIS Ethernet, контроллера и генератора. Позволяет генерировать сигналы, задав параметры через Ethernet.
|
||||
## Сборка
|
||||
```make all``` - собрать все до битстрима
|
||||
|
||||
```make vivado``` - открыть проект в Vivado
|
||||
|
||||
## Управление
|
||||
Используйте software/console.py. Пример:
|
||||
|
||||
```python3 console.py --pulse_width 3_500_000 --pulse_period 20_000_000 --pulse_height 10000 --pulse_num 5500 --dac-bits 14```
|
||||
@ -1,117 +0,0 @@
|
||||
set_clock_groups -name ASYNC_UDP_CTRL -asynchronous -group [get_clocks rgmii_rxc] -group [get_clocks clk_out1_clk_wiz_ctrl_inst] -group [get_clocks clk_out2_clk_wiz_ctrl_inst]
|
||||
|
||||
|
||||
|
||||
|
||||
connect_debug_port u_ila_2/probe0 [get_nets [list {dac_pulse_height_dbg[0]} {dac_pulse_height_dbg[1]} {dac_pulse_height_dbg[2]} {dac_pulse_height_dbg[3]} {dac_pulse_height_dbg[4]} {dac_pulse_height_dbg[5]} {dac_pulse_height_dbg[6]} {dac_pulse_height_dbg[7]} {dac_pulse_height_dbg[8]} {dac_pulse_height_dbg[9]} {dac_pulse_height_dbg[10]} {dac_pulse_height_dbg[11]}]]
|
||||
connect_debug_port u_ila_2/probe1 [get_nets [list {dac_pulse_num_dbg[0]} {dac_pulse_num_dbg[1]} {dac_pulse_num_dbg[2]} {dac_pulse_num_dbg[3]} {dac_pulse_num_dbg[4]} {dac_pulse_num_dbg[5]} {dac_pulse_num_dbg[6]} {dac_pulse_num_dbg[7]} {dac_pulse_num_dbg[8]} {dac_pulse_num_dbg[9]} {dac_pulse_num_dbg[10]} {dac_pulse_num_dbg[11]} {dac_pulse_num_dbg[12]} {dac_pulse_num_dbg[13]} {dac_pulse_num_dbg[14]} {dac_pulse_num_dbg[15]}]]
|
||||
connect_debug_port u_ila_2/probe2 [get_nets [list {dac_pulse_period_dbg[0]} {dac_pulse_period_dbg[1]} {dac_pulse_period_dbg[2]} {dac_pulse_period_dbg[3]} {dac_pulse_period_dbg[4]} {dac_pulse_period_dbg[5]} {dac_pulse_period_dbg[6]} {dac_pulse_period_dbg[7]} {dac_pulse_period_dbg[8]} {dac_pulse_period_dbg[9]} {dac_pulse_period_dbg[10]} {dac_pulse_period_dbg[11]} {dac_pulse_period_dbg[12]} {dac_pulse_period_dbg[13]} {dac_pulse_period_dbg[14]} {dac_pulse_period_dbg[15]} {dac_pulse_period_dbg[16]} {dac_pulse_period_dbg[17]} {dac_pulse_period_dbg[18]} {dac_pulse_period_dbg[19]} {dac_pulse_period_dbg[20]} {dac_pulse_period_dbg[21]} {dac_pulse_period_dbg[22]} {dac_pulse_period_dbg[23]} {dac_pulse_period_dbg[24]} {dac_pulse_period_dbg[25]} {dac_pulse_period_dbg[26]} {dac_pulse_period_dbg[27]} {dac_pulse_period_dbg[28]} {dac_pulse_period_dbg[29]} {dac_pulse_period_dbg[30]} {dac_pulse_period_dbg[31]}]]
|
||||
connect_debug_port u_ila_2/probe3 [get_nets [list {dac_pulse_width_dbg[0]} {dac_pulse_width_dbg[1]} {dac_pulse_width_dbg[2]} {dac_pulse_width_dbg[3]} {dac_pulse_width_dbg[4]} {dac_pulse_width_dbg[5]} {dac_pulse_width_dbg[6]} {dac_pulse_width_dbg[7]} {dac_pulse_width_dbg[8]} {dac_pulse_width_dbg[9]} {dac_pulse_width_dbg[10]} {dac_pulse_width_dbg[11]} {dac_pulse_width_dbg[12]} {dac_pulse_width_dbg[13]} {dac_pulse_width_dbg[14]} {dac_pulse_width_dbg[15]} {dac_pulse_width_dbg[16]} {dac_pulse_width_dbg[17]} {dac_pulse_width_dbg[18]} {dac_pulse_width_dbg[19]} {dac_pulse_width_dbg[20]} {dac_pulse_width_dbg[21]} {dac_pulse_width_dbg[22]} {dac_pulse_width_dbg[23]} {dac_pulse_width_dbg[24]} {dac_pulse_width_dbg[25]} {dac_pulse_width_dbg[26]} {dac_pulse_width_dbg[27]} {dac_pulse_width_dbg[28]} {dac_pulse_width_dbg[29]} {dac_pulse_width_dbg[30]} {dac_pulse_width_dbg[31]}]]
|
||||
connect_debug_port u_ila_2/probe4 [get_nets [list dac_rst_dbg]]
|
||||
connect_debug_port u_ila_2/probe5 [get_nets [list dac_start_dbg]]
|
||||
|
||||
|
||||
connect_debug_port u_ila_1/probe7 [get_nets [list p2_wrt_OBUF]]
|
||||
|
||||
create_debug_core u_ila_0 ila
|
||||
set_property ALL_PROBE_SAME_MU true [get_debug_cores u_ila_0]
|
||||
set_property ALL_PROBE_SAME_MU_CNT 1 [get_debug_cores u_ila_0]
|
||||
set_property C_ADV_TRIGGER false [get_debug_cores u_ila_0]
|
||||
set_property C_DATA_DEPTH 1024 [get_debug_cores u_ila_0]
|
||||
set_property C_EN_STRG_QUAL false [get_debug_cores u_ila_0]
|
||||
set_property C_INPUT_PIPE_STAGES 0 [get_debug_cores u_ila_0]
|
||||
set_property C_TRIGIN_EN false [get_debug_cores u_ila_0]
|
||||
set_property C_TRIGOUT_EN false [get_debug_cores u_ila_0]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/clk]
|
||||
connect_debug_port u_ila_0/clk [get_nets [list rgmii_rxc_IBUF_BUFG]]
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe0]
|
||||
set_property port_width 3 [get_debug_ports u_ila_0/probe0]
|
||||
connect_debug_port u_ila_0/probe0 [get_nets [list {udp_ctrl_inst/eth_state[0]} {udp_ctrl_inst/eth_state[1]} {udp_ctrl_inst/eth_state[2]}]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe1]
|
||||
set_property port_width 96 [get_debug_ports u_ila_0/probe1]
|
||||
connect_debug_port u_ila_0/probe1 [get_nets [list {udp_ctrl_inst/cfg_bus_eth[0]} {udp_ctrl_inst/cfg_bus_eth[1]} {udp_ctrl_inst/cfg_bus_eth[2]} {udp_ctrl_inst/cfg_bus_eth[3]} {udp_ctrl_inst/cfg_bus_eth[4]} {udp_ctrl_inst/cfg_bus_eth[5]} {udp_ctrl_inst/cfg_bus_eth[6]} {udp_ctrl_inst/cfg_bus_eth[7]} {udp_ctrl_inst/cfg_bus_eth[8]} {udp_ctrl_inst/cfg_bus_eth[9]} {udp_ctrl_inst/cfg_bus_eth[10]} {udp_ctrl_inst/cfg_bus_eth[11]} {udp_ctrl_inst/cfg_bus_eth[12]} {udp_ctrl_inst/cfg_bus_eth[13]} {udp_ctrl_inst/cfg_bus_eth[14]} {udp_ctrl_inst/cfg_bus_eth[15]} {udp_ctrl_inst/cfg_bus_eth[16]} {udp_ctrl_inst/cfg_bus_eth[17]} {udp_ctrl_inst/cfg_bus_eth[18]} {udp_ctrl_inst/cfg_bus_eth[19]} {udp_ctrl_inst/cfg_bus_eth[20]} {udp_ctrl_inst/cfg_bus_eth[21]} {udp_ctrl_inst/cfg_bus_eth[22]} {udp_ctrl_inst/cfg_bus_eth[23]} {udp_ctrl_inst/cfg_bus_eth[24]} {udp_ctrl_inst/cfg_bus_eth[25]} {udp_ctrl_inst/cfg_bus_eth[26]} {udp_ctrl_inst/cfg_bus_eth[27]} {udp_ctrl_inst/cfg_bus_eth[28]} {udp_ctrl_inst/cfg_bus_eth[29]} {udp_ctrl_inst/cfg_bus_eth[30]} {udp_ctrl_inst/cfg_bus_eth[31]} {udp_ctrl_inst/cfg_bus_eth[32]} {udp_ctrl_inst/cfg_bus_eth[33]} {udp_ctrl_inst/cfg_bus_eth[34]} {udp_ctrl_inst/cfg_bus_eth[35]} {udp_ctrl_inst/cfg_bus_eth[36]} {udp_ctrl_inst/cfg_bus_eth[37]} {udp_ctrl_inst/cfg_bus_eth[38]} {udp_ctrl_inst/cfg_bus_eth[39]} {udp_ctrl_inst/cfg_bus_eth[40]} {udp_ctrl_inst/cfg_bus_eth[41]} {udp_ctrl_inst/cfg_bus_eth[42]} {udp_ctrl_inst/cfg_bus_eth[43]} {udp_ctrl_inst/cfg_bus_eth[44]} {udp_ctrl_inst/cfg_bus_eth[45]} {udp_ctrl_inst/cfg_bus_eth[46]} {udp_ctrl_inst/cfg_bus_eth[47]} {udp_ctrl_inst/cfg_bus_eth[48]} {udp_ctrl_inst/cfg_bus_eth[49]} {udp_ctrl_inst/cfg_bus_eth[50]} {udp_ctrl_inst/cfg_bus_eth[51]} {udp_ctrl_inst/cfg_bus_eth[52]} {udp_ctrl_inst/cfg_bus_eth[53]} {udp_ctrl_inst/cfg_bus_eth[54]} {udp_ctrl_inst/cfg_bus_eth[55]} {udp_ctrl_inst/cfg_bus_eth[56]} {udp_ctrl_inst/cfg_bus_eth[57]} {udp_ctrl_inst/cfg_bus_eth[58]} {udp_ctrl_inst/cfg_bus_eth[59]} {udp_ctrl_inst/cfg_bus_eth[60]} {udp_ctrl_inst/cfg_bus_eth[61]} {udp_ctrl_inst/cfg_bus_eth[62]} {udp_ctrl_inst/cfg_bus_eth[63]} {udp_ctrl_inst/cfg_bus_eth[64]} {udp_ctrl_inst/cfg_bus_eth[65]} {udp_ctrl_inst/cfg_bus_eth[66]} {udp_ctrl_inst/cfg_bus_eth[67]} {udp_ctrl_inst/cfg_bus_eth[68]} {udp_ctrl_inst/cfg_bus_eth[69]} {udp_ctrl_inst/cfg_bus_eth[70]} {udp_ctrl_inst/cfg_bus_eth[71]} {udp_ctrl_inst/cfg_bus_eth[72]} {udp_ctrl_inst/cfg_bus_eth[73]} {udp_ctrl_inst/cfg_bus_eth[74]} {udp_ctrl_inst/cfg_bus_eth[75]} {udp_ctrl_inst/cfg_bus_eth[76]} {udp_ctrl_inst/cfg_bus_eth[77]} {udp_ctrl_inst/cfg_bus_eth[78]} {udp_ctrl_inst/cfg_bus_eth[79]} {udp_ctrl_inst/cfg_bus_eth[80]} {udp_ctrl_inst/cfg_bus_eth[81]} {udp_ctrl_inst/cfg_bus_eth[82]} {udp_ctrl_inst/cfg_bus_eth[83]} {udp_ctrl_inst/cfg_bus_eth[84]} {udp_ctrl_inst/cfg_bus_eth[85]} {udp_ctrl_inst/cfg_bus_eth[86]} {udp_ctrl_inst/cfg_bus_eth[87]} {udp_ctrl_inst/cfg_bus_eth[88]} {udp_ctrl_inst/cfg_bus_eth[89]} {udp_ctrl_inst/cfg_bus_eth[90]} {udp_ctrl_inst/cfg_bus_eth[91]} {udp_ctrl_inst/cfg_bus_eth[92]} {udp_ctrl_inst/cfg_bus_eth[93]} {udp_ctrl_inst/cfg_bus_eth[94]} {udp_ctrl_inst/cfg_bus_eth[95]}]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe2]
|
||||
set_property port_width 8 [get_debug_ports u_ila_0/probe2]
|
||||
connect_debug_port u_ila_0/probe2 [get_nets [list {m_axis_rx_tdata[0]} {m_axis_rx_tdata[1]} {m_axis_rx_tdata[2]} {m_axis_rx_tdata[3]} {m_axis_rx_tdata[4]} {m_axis_rx_tdata[5]} {m_axis_rx_tdata[6]} {m_axis_rx_tdata[7]}]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe3]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe3]
|
||||
connect_debug_port u_ila_0/probe3 [get_nets [list udp_ctrl_inst/axis_hs]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe4]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe4]
|
||||
connect_debug_port u_ila_0/probe4 [get_nets [list udp_ctrl_inst/busy_flag_eth]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe5]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe5]
|
||||
connect_debug_port u_ila_0/probe5 [get_nets [list m_axis_rx_tlast]]
|
||||
create_debug_port u_ila_0 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_0/probe6]
|
||||
set_property port_width 1 [get_debug_ports u_ila_0/probe6]
|
||||
connect_debug_port u_ila_0/probe6 [get_nets [list m_axis_rx_tready]]
|
||||
create_debug_core u_ila_1 ila
|
||||
set_property ALL_PROBE_SAME_MU true [get_debug_cores u_ila_1]
|
||||
set_property ALL_PROBE_SAME_MU_CNT 1 [get_debug_cores u_ila_1]
|
||||
set_property C_ADV_TRIGGER false [get_debug_cores u_ila_1]
|
||||
set_property C_DATA_DEPTH 1024 [get_debug_cores u_ila_1]
|
||||
set_property C_EN_STRG_QUAL false [get_debug_cores u_ila_1]
|
||||
set_property C_INPUT_PIPE_STAGES 0 [get_debug_cores u_ila_1]
|
||||
set_property C_TRIGIN_EN false [get_debug_cores u_ila_1]
|
||||
set_property C_TRIGOUT_EN false [get_debug_cores u_ila_1]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/clk]
|
||||
connect_debug_port u_ila_1/clk [get_nets [list clk_wiz_ctrl_inst/inst/clk_out1]]
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe0]
|
||||
set_property port_width 14 [get_debug_ports u_ila_1/probe0]
|
||||
connect_debug_port u_ila_1/probe0 [get_nets [list {p2_data_OBUF[0]} {p2_data_OBUF[1]} {p2_data_OBUF[2]} {p2_data_OBUF[3]} {p2_data_OBUF[4]} {p2_data_OBUF[5]} {p2_data_OBUF[6]} {p2_data_OBUF[7]} {p2_data_OBUF[8]} {p2_data_OBUF[9]} {p2_data_OBUF[10]} {p2_data_OBUF[11]} {p2_data_OBUF[12]} {p2_data_OBUF[13]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe1]
|
||||
set_property port_width 16 [get_debug_ports u_ila_1/probe1]
|
||||
connect_debug_port u_ila_1/probe1 [get_nets [list {dac_pulse_num[0]} {dac_pulse_num[1]} {dac_pulse_num[2]} {dac_pulse_num[3]} {dac_pulse_num[4]} {dac_pulse_num[5]} {dac_pulse_num[6]} {dac_pulse_num[7]} {dac_pulse_num[8]} {dac_pulse_num[9]} {dac_pulse_num[10]} {dac_pulse_num[11]} {dac_pulse_num[12]} {dac_pulse_num[13]} {dac_pulse_num[14]} {dac_pulse_num[15]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe2]
|
||||
set_property port_width 14 [get_debug_ports u_ila_1/probe2]
|
||||
connect_debug_port u_ila_1/probe2 [get_nets [list {dac_pulse_height[0]} {dac_pulse_height[1]} {dac_pulse_height[2]} {dac_pulse_height[3]} {dac_pulse_height[4]} {dac_pulse_height[5]} {dac_pulse_height[6]} {dac_pulse_height[7]} {dac_pulse_height[8]} {dac_pulse_height[9]} {dac_pulse_height[10]} {dac_pulse_height[11]} {dac_pulse_height[12]} {dac_pulse_height[13]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe3]
|
||||
set_property port_width 32 [get_debug_ports u_ila_1/probe3]
|
||||
connect_debug_port u_ila_1/probe3 [get_nets [list {dac_pulse_period[0]} {dac_pulse_period[1]} {dac_pulse_period[2]} {dac_pulse_period[3]} {dac_pulse_period[4]} {dac_pulse_period[5]} {dac_pulse_period[6]} {dac_pulse_period[7]} {dac_pulse_period[8]} {dac_pulse_period[9]} {dac_pulse_period[10]} {dac_pulse_period[11]} {dac_pulse_period[12]} {dac_pulse_period[13]} {dac_pulse_period[14]} {dac_pulse_period[15]} {dac_pulse_period[16]} {dac_pulse_period[17]} {dac_pulse_period[18]} {dac_pulse_period[19]} {dac_pulse_period[20]} {dac_pulse_period[21]} {dac_pulse_period[22]} {dac_pulse_period[23]} {dac_pulse_period[24]} {dac_pulse_period[25]} {dac_pulse_period[26]} {dac_pulse_period[27]} {dac_pulse_period[28]} {dac_pulse_period[29]} {dac_pulse_period[30]} {dac_pulse_period[31]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe4]
|
||||
set_property port_width 32 [get_debug_ports u_ila_1/probe4]
|
||||
connect_debug_port u_ila_1/probe4 [get_nets [list {dac_pulse_width[0]} {dac_pulse_width[1]} {dac_pulse_width[2]} {dac_pulse_width[3]} {dac_pulse_width[4]} {dac_pulse_width[5]} {dac_pulse_width[6]} {dac_pulse_width[7]} {dac_pulse_width[8]} {dac_pulse_width[9]} {dac_pulse_width[10]} {dac_pulse_width[11]} {dac_pulse_width[12]} {dac_pulse_width[13]} {dac_pulse_width[14]} {dac_pulse_width[15]} {dac_pulse_width[16]} {dac_pulse_width[17]} {dac_pulse_width[18]} {dac_pulse_width[19]} {dac_pulse_width[20]} {dac_pulse_width[21]} {dac_pulse_width[22]} {dac_pulse_width[23]} {dac_pulse_width[24]} {dac_pulse_width[25]} {dac_pulse_width[26]} {dac_pulse_width[27]} {dac_pulse_width[28]} {dac_pulse_width[29]} {dac_pulse_width[30]} {dac_pulse_width[31]}]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe5]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe5]
|
||||
connect_debug_port u_ila_1/probe5 [get_nets [list dac_rst]]
|
||||
create_debug_port u_ila_1 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_1/probe6]
|
||||
set_property port_width 1 [get_debug_ports u_ila_1/probe6]
|
||||
connect_debug_port u_ila_1/probe6 [get_nets [list dac_start]]
|
||||
create_debug_core u_ila_2 ila
|
||||
set_property ALL_PROBE_SAME_MU true [get_debug_cores u_ila_2]
|
||||
set_property ALL_PROBE_SAME_MU_CNT 1 [get_debug_cores u_ila_2]
|
||||
set_property C_ADV_TRIGGER false [get_debug_cores u_ila_2]
|
||||
set_property C_DATA_DEPTH 1024 [get_debug_cores u_ila_2]
|
||||
set_property C_EN_STRG_QUAL false [get_debug_cores u_ila_2]
|
||||
set_property C_INPUT_PIPE_STAGES 0 [get_debug_cores u_ila_2]
|
||||
set_property C_TRIGIN_EN false [get_debug_cores u_ila_2]
|
||||
set_property C_TRIGOUT_EN false [get_debug_cores u_ila_2]
|
||||
set_property port_width 1 [get_debug_ports u_ila_2/clk]
|
||||
connect_debug_port u_ila_2/clk [get_nets [list clk_wiz_ctrl_inst/inst/clk_out2]]
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe0]
|
||||
set_property port_width 8 [get_debug_ports u_ila_2/probe0]
|
||||
connect_debug_port u_ila_2/probe0 [get_nets [list {finish_cnt[0]} {finish_cnt[1]} {finish_cnt[2]} {finish_cnt[3]} {finish_cnt[4]} {finish_cnt[5]} {finish_cnt[6]} {finish_cnt[7]}]]
|
||||
create_debug_port u_ila_2 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe1]
|
||||
set_property port_width 1 [get_debug_ports u_ila_2/probe1]
|
||||
connect_debug_port u_ila_2/probe1 [get_nets [list finish_dbg]]
|
||||
create_debug_port u_ila_2 probe
|
||||
set_property PROBE_TYPE DATA_AND_TRIGGER [get_debug_ports u_ila_2/probe2]
|
||||
set_property port_width 1 [get_debug_ports u_ila_2/probe2]
|
||||
connect_debug_port u_ila_2/probe2 [get_nets [list finish_pending]]
|
||||
set_property C_CLK_INPUT_FREQ_HZ 300000000 [get_debug_cores dbg_hub]
|
||||
set_property C_ENABLE_CLK_DIVIDER false [get_debug_cores dbg_hub]
|
||||
set_property C_USER_SCAN_CHAIN 1 [get_debug_cores dbg_hub]
|
||||
connect_debug_port dbg_hub/clk [get_nets adc_clk]
|
||||
@ -1,345 +0,0 @@
|
||||
`timescale 1 ns / 1 ns
|
||||
|
||||
module eth_generator_top #(
|
||||
parameter int unsigned DAC_DATA_WIDTH = 14
|
||||
)(
|
||||
input sys_clk_p,
|
||||
input sys_clk_n,
|
||||
input rst_n,
|
||||
|
||||
output [3:0] led,
|
||||
|
||||
output e_reset,
|
||||
output e_mdc,
|
||||
inout e_mdio,
|
||||
|
||||
output [3:0] rgmii_txd,
|
||||
output rgmii_txctl,
|
||||
output rgmii_txc,
|
||||
input [3:0] rgmii_rxd,
|
||||
input rgmii_rxctl,
|
||||
input rgmii_rxc,
|
||||
|
||||
// DAC
|
||||
output p2_clk,
|
||||
output p2_wrt,
|
||||
(* MARK_DEBUG="true" *) output [13:0] p2_data
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Internal GMII-side signals
|
||||
// -------------------------------------------------------------------------
|
||||
wire [7:0] gmii_txd;
|
||||
wire gmii_tx_en;
|
||||
wire gmii_tx_er;
|
||||
wire gmii_tx_clk;
|
||||
wire gmii_crs;
|
||||
wire gmii_col;
|
||||
wire [7:0] gmii_rxd_i;
|
||||
wire gmii_rx_dv;
|
||||
wire gmii_rx_er;
|
||||
wire gmii_rx_clk;
|
||||
|
||||
wire [31:0] pack_total_len;
|
||||
|
||||
wire e_rx_dv;
|
||||
wire [7:0] e_rxd;
|
||||
wire e_tx_en;
|
||||
wire [7:0] e_txd;
|
||||
wire e_rst_n;
|
||||
wire sys_clk;
|
||||
|
||||
wire duplex_mode;
|
||||
|
||||
|
||||
assign duplex_mode = 1'b1;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// System clock buffer (200 MHz differential input)
|
||||
// -------------------------------------------------------------------------
|
||||
IBUFDS sys_clk_ibufgds (
|
||||
.O (sys_clk),
|
||||
.I (sys_clk_p),
|
||||
.IB (sys_clk_n)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// IDELAYCTRL
|
||||
// -------------------------------------------------------------------------
|
||||
(* IODELAY_GROUP = "rgmii_idelay_group" *)
|
||||
IDELAYCTRL IDELAYCTRL_inst (
|
||||
.RDY (),
|
||||
.REFCLK (sys_clk),
|
||||
.RST (1'b0)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Generated clocks for controller
|
||||
// Need to create this IP in Vivado:
|
||||
// input : 200 MHz
|
||||
// output0: 130 MHz
|
||||
// output1: 65 MHz
|
||||
// -------------------------------------------------------------------------
|
||||
wire dac_clk;
|
||||
wire adc_clk;
|
||||
wire clk_wiz_locked;
|
||||
|
||||
clk_wiz_ctrl_inst clk_wiz_ctrl_inst (
|
||||
.clk_in1 (sys_clk),
|
||||
.reset (~rst_n),
|
||||
.clk_out1 (dac_clk), // 130 MHz
|
||||
.clk_out2 (adc_clk), // 65 MHz
|
||||
.locked (clk_wiz_locked)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// GMII <-> RGMII conversion
|
||||
// -------------------------------------------------------------------------
|
||||
util_gmii_to_rgmii util_gmii_to_rgmii_m0 (
|
||||
.reset (1'b0),
|
||||
.rgmii_td (rgmii_txd),
|
||||
.rgmii_tx_ctl (rgmii_txctl),
|
||||
.rgmii_txc (rgmii_txc),
|
||||
.rgmii_rd (rgmii_rxd),
|
||||
.rgmii_rx_ctl (rgmii_rxctl),
|
||||
.gmii_rx_clk (gmii_rx_clk),
|
||||
.gmii_txd (e_txd),
|
||||
.gmii_tx_en (e_tx_en),
|
||||
.gmii_tx_er (1'b0),
|
||||
.gmii_tx_clk (gmii_tx_clk),
|
||||
.gmii_crs (gmii_crs),
|
||||
.gmii_col (gmii_col),
|
||||
.gmii_rxd (gmii_rxd_i),
|
||||
.rgmii_rxc (rgmii_rxc),
|
||||
.gmii_rx_dv (gmii_rx_dv),
|
||||
.gmii_rx_er (gmii_rx_er),
|
||||
.speed_selection (2'b10),
|
||||
.duplex_mode (duplex_mode)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// GMII arbitration / adaptation
|
||||
// -------------------------------------------------------------------------
|
||||
gmii_arbi arbi_inst (
|
||||
.clk (gmii_tx_clk),
|
||||
.rst_n (rst_n),
|
||||
.speed (2'b10),
|
||||
.link (1'b1),
|
||||
.pack_total_len (pack_total_len),
|
||||
.e_rst_n (e_rst_n),
|
||||
.gmii_rx_dv (gmii_rx_dv),
|
||||
.gmii_rxd (gmii_rxd_i),
|
||||
.gmii_tx_en (gmii_tx_en),
|
||||
.gmii_txd (gmii_txd),
|
||||
.e_rx_dv (e_rx_dv),
|
||||
.e_rxd (e_rxd),
|
||||
.e_tx_en (e_tx_en),
|
||||
.e_txd (e_txd)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// axis_mac interface
|
||||
// RX stream from Ethernet goes into controller
|
||||
// TX stream is unused for now
|
||||
// -------------------------------------------------------------------------
|
||||
wire req_ready;
|
||||
|
||||
reg send_req;
|
||||
reg [15:0] data_length;
|
||||
|
||||
reg [7:0] s_axis_tx_tdata;
|
||||
reg s_axis_tx_tvalid;
|
||||
wire s_axis_tx_tready;
|
||||
reg s_axis_tx_tlast;
|
||||
|
||||
(* MARK_DEBUG="true" *) wire [7:0] m_axis_rx_tdata;
|
||||
(* MARK_DEBUG="true" *) wire m_axis_rx_tvalid;
|
||||
(* MARK_DEBUG="true" *) wire m_axis_rx_tlast;
|
||||
(* MARK_DEBUG="true" *) wire m_axis_rx_tready;
|
||||
|
||||
// Always ready to accept RX payload bytes
|
||||
assign m_axis_rx_tready = 1'b1;
|
||||
|
||||
// TX disabled
|
||||
always @(*) begin
|
||||
send_req = 1'b0;
|
||||
data_length = 16'd0;
|
||||
s_axis_tx_tdata = 8'd0;
|
||||
s_axis_tx_tvalid= 1'b0;
|
||||
s_axis_tx_tlast = 1'b0;
|
||||
end
|
||||
|
||||
axis_mac axis_mac0 (
|
||||
.gmii_tx_clk (gmii_tx_clk),
|
||||
.gmii_rx_clk (gmii_rx_clk),
|
||||
.rst_n (e_rst_n),
|
||||
|
||||
.gmii_rx_dv (e_rx_dv),
|
||||
.gmii_rxd (e_rxd),
|
||||
.gmii_tx_en (gmii_tx_en),
|
||||
.gmii_txd (gmii_txd),
|
||||
|
||||
.send_req (send_req),
|
||||
.data_length (data_length),
|
||||
.req_ready (req_ready),
|
||||
|
||||
.s_axis_tx_tdata (s_axis_tx_tdata),
|
||||
.s_axis_tx_tvalid (s_axis_tx_tvalid),
|
||||
.s_axis_tx_tready (s_axis_tx_tready),
|
||||
.s_axis_tx_tlast (s_axis_tx_tlast),
|
||||
|
||||
.m_axis_rx_tdata (m_axis_rx_tdata),
|
||||
.m_axis_rx_tvalid (m_axis_rx_tvalid),
|
||||
.m_axis_rx_tready (m_axis_rx_tready),
|
||||
.m_axis_rx_tlast (m_axis_rx_tlast)
|
||||
);
|
||||
|
||||
// PHY reset helper from your original example
|
||||
reset reset_m0 (
|
||||
.clk (sys_clk),
|
||||
.key1 (rst_n),
|
||||
.rst_n (e_reset)
|
||||
);
|
||||
|
||||
// MDIO lines are not driven here yet
|
||||
assign e_mdc = 1'b0;
|
||||
assign e_mdio = 1'bz;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Controller reset
|
||||
// Use both external reset and clk_wiz lock
|
||||
// -------------------------------------------------------------------------
|
||||
wire ctrl_rst_n = rst_n & clk_wiz_locked;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Debug finish generator (still used here, since generator doesn't have finish signal)
|
||||
//
|
||||
// After each adc_start pulse generates one finish pulse after some delay.
|
||||
// This is just for first bring-up so the controller can leave busy state
|
||||
// If you don't want this, replace with:
|
||||
// wire finish_dbg = 1'b0;
|
||||
// -------------------------------------------------------------------------
|
||||
(* MARK_DEBUG="true" *) logic finish_dbg;
|
||||
(* MARK_DEBUG="true" *) logic [7:0] finish_cnt;
|
||||
(* MARK_DEBUG="true" *) logic finish_pending;
|
||||
|
||||
// Controller outputs to debug
|
||||
(* MARK_DEBUG="true" *) wire [31:0] dac_pulse_width;
|
||||
(* MARK_DEBUG="true" *) wire [31:0] dac_pulse_period;
|
||||
(* MARK_DEBUG="true" *) wire [DAC_DATA_WIDTH-1:0] dac_pulse_height;
|
||||
(* MARK_DEBUG="true" *) wire [15:0] dac_pulse_num;
|
||||
|
||||
(* MARK_DEBUG="true" *) wire [31:0] adc_pulse_period_dbg;
|
||||
(* MARK_DEBUG="true" *) wire [15:0] adc_pulse_num_dbg;
|
||||
|
||||
(* MARK_DEBUG="true" *) wire dac_start;
|
||||
(* MARK_DEBUG="true" *) wire adc_start_dbg;
|
||||
(* MARK_DEBUG="true" *) wire dac_rst;
|
||||
(* MARK_DEBUG="true" *) wire adc_rst_dbg;
|
||||
|
||||
always_ff @(posedge adc_clk or negedge ctrl_rst_n) begin
|
||||
if (!ctrl_rst_n) begin
|
||||
finish_dbg <= 1'b0;
|
||||
finish_cnt <= 8'd0;
|
||||
finish_pending <= 1'b0;
|
||||
end else begin
|
||||
finish_dbg <= 1'b0;
|
||||
|
||||
if (adc_start_dbg) begin
|
||||
finish_pending <= 1'b1;
|
||||
finish_cnt <= 8'd80;
|
||||
end else if (finish_pending) begin
|
||||
if (finish_cnt == 8'd0) begin
|
||||
finish_dbg <= 1'b1;
|
||||
finish_pending <= 1'b0;
|
||||
end else begin
|
||||
finish_cnt <= finish_cnt - 8'd1;
|
||||
end
|
||||
end
|
||||
end
|
||||
end
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Controller
|
||||
// ETH domain = gmii_rx_clk, because RX AXI master comes from axis_mac RX side
|
||||
// -------------------------------------------------------------------------
|
||||
control #(
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
) udp_ctrl_inst (
|
||||
.eth_clk_in (gmii_rx_clk),
|
||||
.dac_clk_in (dac_clk),
|
||||
.adc_clk_in (adc_clk),
|
||||
.rst_n (ctrl_rst_n),
|
||||
|
||||
.s_axis_tdata (m_axis_rx_tdata),
|
||||
.s_axis_tvalid (m_axis_rx_tvalid),
|
||||
.s_axis_tready (), // controller internally always ready in current version
|
||||
.s_axis_tlast (m_axis_rx_tlast),
|
||||
|
||||
.finish (finish_dbg),
|
||||
|
||||
.dac_pulse_width (dac_pulse_width),
|
||||
.dac_pulse_period (dac_pulse_period),
|
||||
.dac_pulse_height (dac_pulse_height),
|
||||
.dac_pulse_num (dac_pulse_num),
|
||||
|
||||
.adc_pulse_period (adc_pulse_period_dbg),
|
||||
.adc_pulse_num (adc_pulse_num_dbg),
|
||||
|
||||
.dac_start (dac_start),
|
||||
.adc_start (adc_start_dbg),
|
||||
|
||||
.dac_rst (dac_rst),
|
||||
.adc_rst (adc_rst_dbg)
|
||||
);
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// DAC
|
||||
// -------------------------------------------------------------------------
|
||||
generator #(
|
||||
.DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
) generator_inst (
|
||||
.clk_in(dac_clk),
|
||||
.rst(dac_rst),
|
||||
.start(dac_start),
|
||||
.pulse_width(dac_pulse_width),
|
||||
.pulse_period(dac_pulse_period),
|
||||
.pulse_height(dac_pulse_height),
|
||||
.pulse_num(dac_pulse_num),
|
||||
.pulse(p2_wrt ),
|
||||
.pulse_height_out(p2_data)
|
||||
);
|
||||
|
||||
// dac clk mgt
|
||||
wire p2_clk_oddr;
|
||||
|
||||
ODDR #(
|
||||
.DDR_CLK_EDGE("SAME_EDGE"),
|
||||
.INIT(1'b0),
|
||||
.SRTYPE("SYNC")
|
||||
) ODDR_p2_clk (
|
||||
.Q (p2_clk_oddr),
|
||||
.C (dac_clk),
|
||||
.CE(1'b1),
|
||||
.D1(1'b1),
|
||||
.D2(1'b0),
|
||||
.R (1'b0),
|
||||
.S (1'b0)
|
||||
);
|
||||
|
||||
OBUF OBUF_p2_clk (
|
||||
.I(p2_clk_oddr),
|
||||
.O(p2_clk)
|
||||
);
|
||||
|
||||
//assign p2_wrt = p2_clk;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Simple LED status
|
||||
// -------------------------------------------------------------------------
|
||||
assign led[0] = clk_wiz_locked;
|
||||
assign led[1] = m_axis_rx_tvalid;
|
||||
assign led[2] = dac_start;
|
||||
assign led[3] = adc_rst_dbg;
|
||||
|
||||
endmodule
|
||||
@ -1,689 +0,0 @@
|
||||
{
|
||||
"schema": "xilinx.com:schema:json_instance:1.0",
|
||||
"ip_inst": {
|
||||
"xci_name": "clk_wiz_ctrl_inst",
|
||||
"component_reference": "xilinx.com:ip:clk_wiz:6.0",
|
||||
"ip_revision": "16",
|
||||
"gen_directory": "../../../../eth_generator_top.gen/sources_1/ip/clk_wiz_ctrl_inst",
|
||||
"parameters": {
|
||||
"component_parameters": {
|
||||
"Component_Name": [ { "value": "clk_wiz_ctrl_inst", "resolve_type": "user", "usage": "all" } ],
|
||||
"USER_CLK_FREQ0": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USER_CLK_FREQ1": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USER_CLK_FREQ2": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USER_CLK_FREQ3": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"ENABLE_CLOCK_MONITOR": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"OPTIMIZE_CLOCKING_STRUCTURE_EN": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK0": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK1": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK2": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"ENABLE_USER_CLOCK3": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"Enable_PLL0": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"Enable_PLL1": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"REF_CLK_FREQ": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRECISION": [ { "value": "1", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRIMITIVE": [ { "value": "MMCM", "resolve_type": "user", "usage": "all" } ],
|
||||
"PRIMTYPE_SEL": [ { "value": "mmcm_adv", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLOCK_MGR_TYPE": [ { "value": "auto", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_FREQ_SYNTH": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_SPREAD_SPECTRUM": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_PHASE_ALIGNMENT": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_MIN_POWER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_DYN_PHASE_SHIFT": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_DYN_RECONFIG": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"JITTER_SEL": [ { "value": "No_Jitter", "resolve_type": "user", "usage": "all" } ],
|
||||
"PRIM_IN_FREQ": [ { "value": "200.000", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRIM_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"IN_FREQ_UNITS": [ { "value": "Units_MHz", "resolve_type": "user", "usage": "all" } ],
|
||||
"PHASESHIFT_MODE": [ { "value": "WAVEFORM", "resolve_type": "user", "usage": "all" } ],
|
||||
"IN_JITTER_UNITS": [ { "value": "Units_UI", "resolve_type": "user", "usage": "all" } ],
|
||||
"RELATIVE_INCLK": [ { "value": "REL_PRIMARY", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_INCLK_SWITCHOVER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"SECONDARY_IN_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SECONDARY_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SECONDARY_PORT": [ { "value": "clk_in2", "resolve_type": "user", "usage": "all" } ],
|
||||
"SECONDARY_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "user", "usage": "all" } ],
|
||||
"JITTER_OPTIONS": [ { "value": "UI", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKIN1_UI_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKIN2_UI_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PRIM_IN_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SECONDARY_IN_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKIN1_JITTER_PS": [ { "value": "50.0", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKIN2_JITTER_PS": [ { "value": "100.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_USED": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT2_USED": [ { "value": "true", "value_src": "user", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT3_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT4_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT5_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT6_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT7_USED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"NUM_OUT_CLKS": [ { "value": "2", "value_src": "user", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLK_OUT1_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT2_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT3_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT4_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT5_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT6_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_OUT7_USE_FINE_PS_GUI": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PRIMARY_PORT": [ { "value": "clk_in1", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT1_PORT": [ { "value": "clk_out1", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT2_PORT": [ { "value": "clk_out2", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT3_PORT": [ { "value": "clk_out3", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT4_PORT": [ { "value": "clk_out4", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT5_PORT": [ { "value": "clk_out5", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT6_PORT": [ { "value": "clk_out6", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_OUT7_PORT": [ { "value": "clk_out7", "resolve_type": "user", "usage": "all" } ],
|
||||
"DADDR_PORT": [ { "value": "daddr", "resolve_type": "user", "usage": "all" } ],
|
||||
"DCLK_PORT": [ { "value": "dclk", "resolve_type": "user", "usage": "all" } ],
|
||||
"DRDY_PORT": [ { "value": "drdy", "resolve_type": "user", "usage": "all" } ],
|
||||
"DWE_PORT": [ { "value": "dwe", "resolve_type": "user", "usage": "all" } ],
|
||||
"DIN_PORT": [ { "value": "din", "resolve_type": "user", "usage": "all" } ],
|
||||
"DOUT_PORT": [ { "value": "dout", "resolve_type": "user", "usage": "all" } ],
|
||||
"DEN_PORT": [ { "value": "den", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSCLK_PORT": [ { "value": "psclk", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSEN_PORT": [ { "value": "psen", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSINCDEC_PORT": [ { "value": "psincdec", "resolve_type": "user", "usage": "all" } ],
|
||||
"PSDONE_PORT": [ { "value": "psdone", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT1_REQUESTED_OUT_FREQ": [ { "value": "125", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_REQUESTED_OUT_FREQ": [ { "value": "65.000", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"USE_MAX_I_JITTER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_MIN_O_JITTER": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT1_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT2_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT3_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT4_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT5_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT6_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT7_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PRIM_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT1_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT2_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT3_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT4_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT5_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT6_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKOUT7_DRIVES": [ { "value": "BUFG", "resolve_type": "user", "usage": "all" } ],
|
||||
"FEEDBACK_SOURCE": [ { "value": "FDBK_AUTO", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_SIGNALING": [ { "value": "SINGLE", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_PORT": [ { "value": "clkfb_in", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_P_PORT": [ { "value": "clkfb_in_p", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_IN_N_PORT": [ { "value": "clkfb_in_n", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_OUT_PORT": [ { "value": "clkfb_out", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_OUT_P_PORT": [ { "value": "clkfb_out_p", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_OUT_N_PORT": [ { "value": "clkfb_out_n", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLATFORM": [ { "value": "UNKNOWN", "resolve_type": "user", "usage": "all" } ],
|
||||
"SUMMARY_STRINGS": [ { "value": "empty", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_LOCKED": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CALC_DONE": [ { "value": "empty", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_RESET": [ { "value": "true", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_POWER_DOWN": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_STATUS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_FREEZE": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_CLK_VALID": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_INCLK_STOPPED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_CLKFB_STOPPED": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"RESET_PORT": [ { "value": "reset", "resolve_type": "user", "usage": "all" } ],
|
||||
"LOCKED_PORT": [ { "value": "locked", "resolve_type": "user", "usage": "all" } ],
|
||||
"POWER_DOWN_PORT": [ { "value": "power_down", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_VALID_PORT": [ { "value": "CLK_VALID", "resolve_type": "user", "usage": "all" } ],
|
||||
"STATUS_PORT": [ { "value": "STATUS", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_IN_SEL_PORT": [ { "value": "clk_in_sel", "resolve_type": "user", "usage": "all" } ],
|
||||
"INPUT_CLK_STOPPED_PORT": [ { "value": "input_clk_stopped", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLKFB_STOPPED_PORT": [ { "value": "clkfb_stopped", "resolve_type": "user", "usage": "all" } ],
|
||||
"SS_MODE": [ { "value": "CENTER_HIGH", "resolve_type": "user", "usage": "all" } ],
|
||||
"SS_MOD_FREQ": [ { "value": "250", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"SS_MOD_TIME": [ { "value": "0.004", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"OVERRIDE_MMCM": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_NOTES": [ { "value": "None", "resolve_type": "user", "usage": "all" } ],
|
||||
"MMCM_DIVCLK_DIVIDE": [ { "value": "4", "value_src": "user", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "user", "usage": "all" } ],
|
||||
"MMCM_CLKFBOUT_MULT_F": [ { "value": "16.875", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKFBOUT_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKIN1_PERIOD": [ { "value": "5.000", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKIN2_PERIOD": [ { "value": "10.0", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_CASCADE": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLOCK_HOLD": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_COMPENSATION": [ { "value": "ZHOLD", "resolve_type": "user", "usage": "all" } ],
|
||||
"MMCM_REF_JITTER1": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_REF_JITTER2": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_STARTUP_WAIT": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_DIVIDE_F": [ { "value": "6.750", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT0_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_DIVIDE": [ { "value": "13", "value_src": "user", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT1_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT2_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT3_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT4_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT5_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"MMCM_CLKOUT6_USE_FINE_PS": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"OVERRIDE_PLL": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PLL_NOTES": [ { "value": "None", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_CLKFBOUT_MULT": [ { "value": "4", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLK_FEEDBACK": [ { "value": "CLKFBOUT", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_DIVCLK_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKIN_PERIOD": [ { "value": "10.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_COMPENSATION": [ { "value": "SYSTEM_SYNCHRONOUS", "resolve_type": "user", "usage": "all" } ],
|
||||
"PLL_REF_JITTER": [ { "value": "0.010", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT0_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT1_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"PLL_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"PLL_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"RESET_TYPE": [ { "value": "ACTIVE_HIGH", "resolve_type": "user", "usage": "all" } ],
|
||||
"USE_SAFE_CLOCK_STARTUP": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"USE_CLOCK_SEQUENCING": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUT1_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT2_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT3_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT4_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT5_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT6_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"CLKOUT7_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "user", "format": "long", "usage": "all" } ],
|
||||
"USE_BOARD_FLOW": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLK_IN1_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"CLK_IN2_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"DIFF_CLK_IN1_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"DIFF_CLK_IN2_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"AUTO_PRIMITIVE": [ { "value": "MMCM", "resolve_type": "user", "usage": "all" } ],
|
||||
"RESET_BOARD_INTERFACE": [ { "value": "Custom", "resolve_type": "user", "usage": "all" } ],
|
||||
"ENABLE_CDDC": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CDDCDONE_PORT": [ { "value": "cddcdone", "resolve_type": "user", "usage": "all" } ],
|
||||
"CDDCREQ_PORT": [ { "value": "cddcreq", "resolve_type": "user", "usage": "all" } ],
|
||||
"ENABLE_CLKOUTPHY": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"CLKOUTPHY_REQUESTED_FREQ": [ { "value": "600.000", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_JITTER": [ { "value": "162.582", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT1_PHASE_ERROR": [ { "value": "137.238", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_JITTER": [ { "value": "185.296", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT2_PHASE_ERROR": [ { "value": "137.238", "value_src": "user", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT3_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT4_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT5_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT6_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_JITTER": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"CLKOUT7_PHASE_ERROR": [ { "value": "0.0", "resolve_type": "user", "format": "float", "usage": "all" } ],
|
||||
"INPUT_MODE": [ { "value": "frequency", "resolve_type": "user", "usage": "all" } ],
|
||||
"INTERFACE_SELECTION": [ { "value": "Enable_AXI", "resolve_type": "user", "usage": "all" } ],
|
||||
"AXI_DRP": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ],
|
||||
"PHASE_DUTY_CONFIG": [ { "value": "false", "resolve_type": "user", "format": "bool", "usage": "all" } ]
|
||||
},
|
||||
"model_parameters": {
|
||||
"C_CLKOUT2_USED": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ0": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_AUTO_PRIMITIVE": [ { "value": "MMCM", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ1": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ2": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_USER_CLK_FREQ3": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_ENABLE_CLOCK_MONITOR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK0": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK1": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK2": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_ENABLE_USER_CLOCK3": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_Enable_PLL0": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_Enable_PLL1": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_REF_CLK_FREQ": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PRECISION": [ { "value": "1", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT4_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT5_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT6_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT7_USED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT1_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT2_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT3_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKOUT4_BAR": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"c_component_name": [ { "value": "clk_wiz_ctrl_inst", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLATFORM": [ { "value": "UNKNOWN", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_FREQ_SYNTH": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_PHASE_ALIGNMENT": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIM_IN_JITTER": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_SECONDARY_IN_JITTER": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_JITTER_SEL": [ { "value": "No_Jitter", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_MIN_POWER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_MIN_O_JITTER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_MAX_I_JITTER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_DYN_PHASE_SHIFT": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_OPTIMIZE_CLOCKING_STRUCTURE_EN": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_INCLK_SWITCHOVER": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_DYN_RECONFIG": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_SPREAD_SPECTRUM": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_FAST_SIMULATION": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIMTYPE_SEL": [ { "value": "AUTO", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_CLK_VALID": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIM_IN_FREQ": [ { "value": "200.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PRIM_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_IN_FREQ_UNITS": [ { "value": "Units_MHz", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SECONDARY_IN_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_SECONDARY_IN_TIMEPERIOD": [ { "value": "10.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_FEEDBACK_SOURCE": [ { "value": "FDBK_AUTO", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PRIM_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PHASESHIFT_MODE": [ { "value": "WAVEFORM", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SECONDARY_SOURCE": [ { "value": "Single_ended_clock_capable_pin", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_SIGNALING": [ { "value": "SINGLE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_USE_RESET": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_RESET_LOW": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_LOCKED": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_INCLK_STOPPED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLKFB_STOPPED": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_POWER_DOWN": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_STATUS": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_FREEZE": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_NUM_OUT_CLKS": [ { "value": "2", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT1_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT7_DRIVES": [ { "value": "BUFG", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INCLK_SUM_ROW0": [ { "value": "Input Clock Freq (MHz) Input Jitter (UI)", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INCLK_SUM_ROW1": [ { "value": "__primary_________200.000____________0.010", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INCLK_SUM_ROW2": [ { "value": "no_secondary_input_clock ", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW0A": [ { "value": " Output Output Phase Duty Cycle Pk-to-Pk Phase", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW0B": [ { "value": " Clock Freq (MHz) (degrees) (%) Jitter (ps) Error (ps)", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW1": [ { "value": "clk_out1__125.00000______0.000______50.0______162.582____137.238", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW2": [ { "value": "clk_out2__64.90385______0.000______50.0______185.296____137.238", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW3": [ { "value": "no_CLK_OUT3_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW4": [ { "value": "no_CLK_OUT4_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW5": [ { "value": "no_CLK_OUT5_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW6": [ { "value": "no_CLK_OUT6_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OUTCLK_SUM_ROW7": [ { "value": "no_CLK_OUT7_output", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_REQUESTED_OUT_FREQ": [ { "value": "125", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_REQUESTED_OUT_FREQ": [ { "value": "65.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_REQUESTED_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_REQUESTED_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_REQUESTED_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_OUT_FREQ": [ { "value": "125.00000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_OUT_FREQ": [ { "value": "64.90385", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_OUT_FREQ": [ { "value": "100.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT1_DUTY_CYCLE": [ { "value": "50.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT2_DUTY_CYCLE": [ { "value": "50.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT3_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT4_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT5_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT6_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKOUT7_DUTY_CYCLE": [ { "value": "50.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_USE_SAFE_CLOCK_STARTUP": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_USE_CLOCK_SEQUENCING": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT1_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT2_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT3_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT4_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT5_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT6_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CLKOUT7_SEQUENCE_NUMBER": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_NOTES": [ { "value": "None", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKFBOUT_MULT_F": [ { "value": "16.875", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKIN1_PERIOD": [ { "value": "5.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKIN2_PERIOD": [ { "value": "10.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_CASCADE": [ { "value": "FALSE", "resolve_type": "generated", "format": "bool", "usage": "all" } ],
|
||||
"C_MMCM_CLOCK_HOLD": [ { "value": "FALSE", "resolve_type": "generated", "format": "bool", "usage": "all" } ],
|
||||
"C_MMCM_COMPENSATION": [ { "value": "ZHOLD", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_DIVCLK_DIVIDE": [ { "value": "4", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_REF_JITTER1": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_REF_JITTER2": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_STARTUP_WAIT": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_DIVIDE_F": [ { "value": "6.750", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_DIVIDE": [ { "value": "13", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_MMCM_CLKFBOUT_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT0_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT1_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT2_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT3_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT4_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT5_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCM_CLKOUT6_USE_FINE_PS": [ { "value": "FALSE", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_NOTES": [ { "value": "No notes", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_BANDWIDTH": [ { "value": "OPTIMIZED", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_CLK_FEEDBACK": [ { "value": "CLKFBOUT", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_CLKFBOUT_MULT": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKIN_PERIOD": [ { "value": "1.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_COMPENSATION": [ { "value": "SYSTEM_SYNCHRONOUS", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLL_DIVCLK_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_REF_JITTER": [ { "value": "0.010", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT0_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT1_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT2_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT3_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT4_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT5_DIVIDE": [ { "value": "1", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT0_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT1_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT2_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT3_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT4_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT5_DUTY_CYCLE": [ { "value": "0.500", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKFBOUT_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT0_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT1_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT2_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT3_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT4_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PLL_CLKOUT5_PHASE": [ { "value": "0.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLOCK_MGR_TYPE": [ { "value": "NA", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_OVERRIDE_MMCM": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_OVERRIDE_PLL": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_PRIMARY_PORT": [ { "value": "clk_in1", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SECONDARY_PORT": [ { "value": "clk_in2", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT1_PORT": [ { "value": "clk_out1", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT2_PORT": [ { "value": "clk_out2", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT3_PORT": [ { "value": "clk_out3", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT4_PORT": [ { "value": "clk_out4", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT5_PORT": [ { "value": "clk_out5", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT6_PORT": [ { "value": "clk_out6", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_OUT7_PORT": [ { "value": "clk_out7", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_RESET_PORT": [ { "value": "reset", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCKED_PORT": [ { "value": "locked", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_PORT": [ { "value": "clkfb_in", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_P_PORT": [ { "value": "clkfb_in_p", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_IN_N_PORT": [ { "value": "clkfb_in_n", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_OUT_PORT": [ { "value": "clkfb_out", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_OUT_P_PORT": [ { "value": "clkfb_out_p", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_OUT_N_PORT": [ { "value": "clkfb_out_n", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_POWER_DOWN_PORT": [ { "value": "power_down", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DADDR_PORT": [ { "value": "daddr", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DCLK_PORT": [ { "value": "dclk", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DRDY_PORT": [ { "value": "drdy", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DWE_PORT": [ { "value": "dwe", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIN_PORT": [ { "value": "din", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DOUT_PORT": [ { "value": "dout", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DEN_PORT": [ { "value": "den", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSCLK_PORT": [ { "value": "psclk", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSEN_PORT": [ { "value": "psen", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSINCDEC_PORT": [ { "value": "psincdec", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PSDONE_PORT": [ { "value": "psdone", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_VALID_PORT": [ { "value": "CLK_VALID", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_STATUS_PORT": [ { "value": "STATUS", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLK_IN_SEL_PORT": [ { "value": "clk_in_sel", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_INPUT_CLK_STOPPED_PORT": [ { "value": "input_clk_stopped", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFB_STOPPED_PORT": [ { "value": "clkfb_stopped", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKIN1_JITTER_PS": [ { "value": "50.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_CLKIN2_JITTER_PS": [ { "value": "100.0", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_PRIMITIVE": [ { "value": "MMCM", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SS_MODE": [ { "value": "CENTER_HIGH", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_SS_MOD_PERIOD": [ { "value": "4000", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_SS_MOD_TIME": [ { "value": "0.004", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_HAS_CDDC": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_CDDCDONE_PORT": [ { "value": "cddcdone", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CDDCREQ_PORT": [ { "value": "cddcreq", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUTPHY_MODE": [ { "value": "VCO", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_ENABLE_CLKOUTPHY": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_INTERFACE_SELECTION": [ { "value": "0", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_S_AXI_ADDR_WIDTH": [ { "value": "11", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_S_AXI_DATA_WIDTH": [ { "value": "32", "resolve_type": "generated", "format": "long", "usage": "all" } ],
|
||||
"C_POWER_REG": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT0_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT0_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFBOUT_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKFBOUT_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVCLK": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCK_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCK_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_LOCK_3": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_FILTER_1": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_FILTER_2": [ { "value": "0000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE1_AUTO": [ { "value": "1", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE2_AUTO": [ { "value": "1.9259259259259258", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE3_AUTO": [ { "value": "0.14814814814814814", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE4_AUTO": [ { "value": "0.14814814814814814", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE5_AUTO": [ { "value": "0.14814814814814814", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE6_AUTO": [ { "value": "0.14814814814814814", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_DIVIDE7_AUTO": [ { "value": "0.14814814814814814", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV1": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV2": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV3": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_PLLBUFGCEDIV4": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV1": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV2": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV3": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV4": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV5": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV6": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_MMCMBUFGCEDIV7": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT7_MATCHED_ROUTING": [ { "value": "false", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT0_ACTUAL_FREQ": [ { "value": "125.00000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT1_ACTUAL_FREQ": [ { "value": "64.90385", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT2_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT3_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT4_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT5_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_CLKOUT6_ACTUAL_FREQ": [ { "value": "100.000", "resolve_type": "generated", "usage": "all" } ],
|
||||
"C_M_MAX": [ { "value": "64.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_M_MIN": [ { "value": "2.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_D_MAX": [ { "value": "80.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_D_MIN": [ { "value": "1.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_O_MAX": [ { "value": "128.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_O_MIN": [ { "value": "1.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_VCO_MIN": [ { "value": "600.000", "resolve_type": "generated", "format": "float", "usage": "all" } ],
|
||||
"C_VCO_MAX": [ { "value": "1200.000", "resolve_type": "generated", "format": "float", "usage": "all" } ]
|
||||
},
|
||||
"project_parameters": {
|
||||
"ARCHITECTURE": [ { "value": "artix7" } ],
|
||||
"BASE_BOARD_PART": [ { "value": "" } ],
|
||||
"BOARD_CONNECTIONS": [ { "value": "" } ],
|
||||
"DEVICE": [ { "value": "xc7a35t" } ],
|
||||
"PACKAGE": [ { "value": "fgg484" } ],
|
||||
"PREFHDL": [ { "value": "VERILOG" } ],
|
||||
"SILICON_REVISION": [ { "value": "" } ],
|
||||
"SIMULATOR_LANGUAGE": [ { "value": "MIXED" } ],
|
||||
"SPEEDGRADE": [ { "value": "-1" } ],
|
||||
"STATIC_POWER": [ { "value": "" } ],
|
||||
"TEMPERATURE_GRADE": [ { "value": "" } ]
|
||||
},
|
||||
"runtime_parameters": {
|
||||
"IPCONTEXT": [ { "value": "IP_Flow" } ],
|
||||
"IPREVISION": [ { "value": "16" } ],
|
||||
"MANAGED": [ { "value": "TRUE" } ],
|
||||
"OUTPUTDIR": [ { "value": "../../../../eth_generator_top.gen/sources_1/ip/clk_wiz_ctrl_inst" } ],
|
||||
"SELECTEDSIMMODEL": [ { "value": "" } ],
|
||||
"SHAREDDIR": [ { "value": "." } ],
|
||||
"SWVERSION": [ { "value": "2025.1" } ],
|
||||
"SYNTHESISFLOW": [ { "value": "OUT_OF_CONTEXT" } ]
|
||||
}
|
||||
},
|
||||
"boundary": {
|
||||
"ports": {
|
||||
"reset": [ { "direction": "in", "driver_value": "0" } ],
|
||||
"clk_in1": [ { "direction": "in" } ],
|
||||
"clk_out1": [ { "direction": "out" } ],
|
||||
"clk_out2": [ { "direction": "out" } ],
|
||||
"locked": [ { "direction": "out" } ]
|
||||
},
|
||||
"interfaces": {
|
||||
"reset": {
|
||||
"vlnv": "xilinx.com:signal:reset:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:reset_rtl:1.0",
|
||||
"mode": "slave",
|
||||
"parameters": {
|
||||
"POLARITY": [ { "value": "ACTIVE_HIGH", "value_src": "constant", "usage": "all" } ],
|
||||
"BOARD.ASSOCIATED_PARAM": [ { "value": "RESET_BOARD_INTERFACE", "value_src": "constant", "usage": "all" } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"RST": [ { "physical_name": "reset" } ]
|
||||
}
|
||||
},
|
||||
"clock_CLK_IN1": {
|
||||
"vlnv": "xilinx.com:signal:clock:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:clock_rtl:1.0",
|
||||
"mode": "slave",
|
||||
"parameters": {
|
||||
"FREQ_HZ": [ { "value": "100000000", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"FREQ_TOLERANCE_HZ": [ { "value": "0", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"PHASE": [ { "value": "0.0", "resolve_type": "generated", "format": "float", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"CLK_DOMAIN": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_BUSIF": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_PORT": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_RESET": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"BOARD.ASSOCIATED_PARAM": [ { "value": "CLK_IN1_BOARD_INTERFACE", "usage": "all", "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"CLK_IN1": [ { "physical_name": "clk_in1" } ]
|
||||
}
|
||||
},
|
||||
"clock_CLK_OUT1": {
|
||||
"vlnv": "xilinx.com:signal:clock:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:clock_rtl:1.0",
|
||||
"mode": "master",
|
||||
"parameters": {
|
||||
"FREQ_HZ": [ { "value": "100000000", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"FREQ_TOLERANCE_HZ": [ { "value": "0", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"PHASE": [ { "value": "0.0", "resolve_type": "generated", "format": "float", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"CLK_DOMAIN": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_BUSIF": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_PORT": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_RESET": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"CLK_OUT1": [ { "physical_name": "clk_out1" } ]
|
||||
}
|
||||
},
|
||||
"clock_CLK_OUT2": {
|
||||
"vlnv": "xilinx.com:signal:clock:1.0",
|
||||
"abstraction_type": "xilinx.com:signal:clock_rtl:1.0",
|
||||
"mode": "master",
|
||||
"parameters": {
|
||||
"FREQ_HZ": [ { "value": "100000000", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"FREQ_TOLERANCE_HZ": [ { "value": "0", "resolve_type": "generated", "format": "long", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"PHASE": [ { "value": "0.0", "resolve_type": "generated", "format": "float", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"CLK_DOMAIN": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_BUSIF": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_PORT": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"ASSOCIATED_RESET": [ { "value": "", "resolve_type": "generated", "is_ips_inferred": true, "is_static_object": false } ],
|
||||
"INSERT_VIP": [ { "value": "0", "resolve_type": "user", "format": "long", "usage": "simulation.rtl", "is_ips_inferred": true, "is_static_object": false } ]
|
||||
},
|
||||
"port_maps": {
|
||||
"CLK_OUT2": [ { "physical_name": "clk_out2" } ]
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
145
designs/reflectometer_base/README.md
Normal file
145
designs/reflectometer_base/README.md
Normal file
@ -0,0 +1,145 @@
|
||||
# Рефлектометр
|
||||
|
||||
Модуль представляет собой законченную встраиваемую систему рефлектометра, объединяющую:
|
||||
|
||||
- контроллер управления
|
||||
- генератор импульсов (DAC path)
|
||||
- сэмплер данных (ADC path)
|
||||
- аккумулятор и обработчик данных
|
||||
|
||||
Система предназначена для формирования импульсов, синхронного сбора отраженного сигнала, накопления результатов и передачи обработанных данных во внешнюю систему.
|
||||
|
||||
Данный модуль является полноценным интегрируемым блоком, который может использоваться как самостоятельная аппаратная подсистема внутри более крупного проекта.
|
||||
|
||||
---
|
||||
|
||||
## Назначение системы
|
||||
|
||||
Основная задача системы:
|
||||
|
||||
1. Получить параметры измерения через AXI Stream
|
||||
2. Сформировать последовательность импульсов на DAC
|
||||
3. Выполнить синходную выборку данных с ADC
|
||||
4. Накопить и обработать результаты
|
||||
5. Передать итоговые данные обратно через AXI Stream
|
||||
|
||||
Таким образом реализуется полный цикл измерения без необходимости внешнего управления отдельными блоками.
|
||||
|
||||
---
|
||||
|
||||
## Состав системы
|
||||
|
||||
### Controller
|
||||
|
||||
Принимает входные команды по AXI Stream (Ethernet RX), декодирует параметры измерения и управляет всеми внутренними модулями системы.
|
||||
|
||||
Формирует:
|
||||
|
||||
- запуск генератора (`dac_start`)
|
||||
- запуск аккумулятора (`adc_start`)
|
||||
- параметры импульсов DAC
|
||||
- параметры выборки ADC
|
||||
- локальные reset-сигналы
|
||||
|
||||
---
|
||||
|
||||
### Generator
|
||||
|
||||
Формирует последовательность импульсов на DAC с заданными:
|
||||
|
||||
- амплитудой
|
||||
- длительностью
|
||||
- периодом
|
||||
- количеством повторений
|
||||
|
||||
Для каждого импульса инициирует запуск выборки в сэмплере.
|
||||
|
||||
---
|
||||
|
||||
### Sampler
|
||||
|
||||
Выполняет синхронный сбор данных с ADC по запросу генератора.
|
||||
|
||||
Поддерживает:
|
||||
|
||||
- фильтрацию `out_of_range`
|
||||
- упаковку данных
|
||||
- преобразование типа кода ( прямой или дополнительный)
|
||||
|
||||
---
|
||||
|
||||
### Accumulator
|
||||
|
||||
Получает поток данных от сэмплера, выполняет накопление, усреднение и оконную обработку, после чего формирует пакеты для передачи результата.
|
||||
|
||||
---
|
||||
|
||||
## Управление системой
|
||||
|
||||
Пользователь взаимодействует только с контроллером через AXI Stream-интерфейс.
|
||||
|
||||
Прямое управление генератором, сэмплером и аккумулятором не требуется.
|
||||
|
||||
---
|
||||
|
||||
## Clock Domain Crossing (CDC)
|
||||
|
||||
Система работает в нескольких тактовых доменах:
|
||||
|
||||
- Ethernet RX (`gmii_rx_clk`)
|
||||
- Ethernet TX (`gmii_tx_clk`)
|
||||
- DAC (`dac_clk`)
|
||||
- ADC (`adc_clk`)
|
||||
|
||||
Для корректной синхронизации между DAC и ADC используются специальные CDC-регистры для сигналов:
|
||||
|
||||
- `sample_req`
|
||||
- `sample_done`
|
||||
|
||||
Это обеспечивает безопасную передачу handshake-сигналов между тактовыми доменами.
|
||||
|
||||
---
|
||||
|
||||
## Список параметров
|
||||
|
||||
### DAC_DATA_WIDTH
|
||||
Ширина выходных данных отправляемых на ЦАП.
|
||||
|
||||
### ZERO_LEVEL
|
||||
Уровень сигнала в состоянии отсутствия импульса (базовый уровень сигнала).
|
||||
|
||||
Типовые значения:
|
||||
|
||||
- `8192` — середина диапазона ЦАП
|
||||
- `0` — нулевой уровень
|
||||
|
||||
### ADC_DATA_WIDTH
|
||||
Ширина входных данных, получаемых с АЦП.
|
||||
|
||||
### PACK_FACTOR
|
||||
Количество отсчетов, собираемых в один выходной пакет.
|
||||
|
||||
### PROCESS_MODE
|
||||
Режим интерпретации входного кода:
|
||||
|
||||
- `0` — прямой код
|
||||
- `1` — дополнительный код
|
||||
|
||||
### ACCUM_WIDTH
|
||||
Размер данных для аккумуляции, должен быть степенью числа 2. По умолчанию - 32
|
||||
|
||||
### N_MAX
|
||||
Максимальное число окон в последовательности. Должно быть степенью числа 2. Влияет на размер используемой памяти.
|
||||
|
||||
### WINDOW_SIZE
|
||||
Размер окна усреднения
|
||||
|
||||
### PACKET_SIZE
|
||||
Размер выходного пакета
|
||||
|
||||
---
|
||||
|
||||
## Сборка
|
||||
```make all``` - собрать все до битстрима
|
||||
|
||||
```make vivado``` - открыть проект в Vivado
|
||||
@ -5,6 +5,7 @@ module reflectometer_top #(
|
||||
parameter int unsigned ADC_DATA_WIDTH = 12,
|
||||
parameter PACK_FACTOR = 1,
|
||||
parameter PROCESS_MODE = 0,
|
||||
parameter ZERO_LEVEL = 8192,
|
||||
parameter ACCUM_WIDTH = 32,
|
||||
parameter N_MAX = 4096,
|
||||
parameter WINDOW_SIZE = 65,
|
||||
@ -191,7 +192,8 @@ module reflectometer_top #(
|
||||
//------------------------------------------------------------
|
||||
|
||||
generator #(
|
||||
.DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
.DATA_WIDTH(DAC_DATA_WIDTH),
|
||||
.ZERO_LEVEL(ZERO_LEVEL)
|
||||
) generator_inst (
|
||||
.clk_in(dac_clk),
|
||||
.rst(dac_rst),
|
||||
|
||||
@ -1,11 +1,13 @@
|
||||
# Тестовый проект Generator + ETH + CTRL
|
||||
Проект состоит из AXIS Ethernet, контроллера и генератора. Позволяет генерировать сигналы, задав параметры через Ethernet.
|
||||
# Тестовый проект рефлектометра
|
||||
Проект состоит из AXIS Ethernet и основной части рефлектометра - генератора, сэмплера, контроллера и синхронизирующей логики. Разработан для AX7102, АЦП AN9238, ЦАП AD9767. Плата подключается по ethernet к компьютеру, IP должен быть 192.168.0.3 у компьютера, в ПЛИС установлен IP 192.168.0.2, после подключения должен пройти ARP и после этого можно начнить коммуникацию через консольку.
|
||||
## Сборка
|
||||
```make all``` - собрать все до битстрима
|
||||
|
||||
```make vivado``` - открыть проект в Vivado
|
||||
|
||||
## Управление
|
||||
Используйте software/console.py. Пример:
|
||||
Используйте software/console.py. Примеры:
|
||||
|
||||
```python3 console.py --pulse_width 3_500_000 --pulse_period 20_000_000 --pulse_height 10000 --pulse_num 5500 --dac-bits 14```
|
||||
```python3 console.py --pulse_width 3500 --pulse_period 20000 --pulse_height 15000 --pulse_num 550 --dac-bits 14```
|
||||
|
||||
```python3 console.py --pulse_width 15000 --pulse_period 20000 --pulse_height 1500 --pulse_num 550 --dac-bits 14```
|
||||
@ -5,6 +5,7 @@ module prototype_top #(
|
||||
parameter int unsigned ADC_DATA_WIDTH = 12,
|
||||
parameter PACK_FACTOR = 1,
|
||||
parameter PROCESS_MODE = 0,
|
||||
parameter ZERO_LEVEL = 8192,
|
||||
parameter ACCUM_WIDTH = 32,
|
||||
parameter N_MAX = 4096,
|
||||
parameter WINDOW_SIZE = 65,
|
||||
@ -131,6 +132,7 @@ module prototype_top #(
|
||||
.PACK_FACTOR(PACK_FACTOR),
|
||||
.ACCUM_WIDTH(ACCUM_WIDTH),
|
||||
.N_MAX(N_MAX),
|
||||
.ZERO_LEVEL(ZERO_LEVEL),
|
||||
.WINDOW_SIZE(WINDOW_SIZE),
|
||||
.PACKET_SIZE(PACKET_SIZE),
|
||||
.ADC_DATA_WIDTH(ADC_DATA_WIDTH),
|
||||
|
||||
@ -1 +0,0 @@
|
||||
# Блок Sampler
|
||||
1
external/rtl_libs
vendored
Submodule
1
external/rtl_libs
vendored
Submodule
Submodule external/rtl_libs added at e4311214eb
@ -11,13 +11,13 @@
|
||||
</db_ref>
|
||||
</db_ref_list>
|
||||
<zoom_setting>
|
||||
<ZoomStartTime time="0.000000 us"></ZoomStartTime>
|
||||
<ZoomEndTime time="16.740001 us"></ZoomEndTime>
|
||||
<Cursor1Time time="6.500000 us"></Cursor1Time>
|
||||
<ZoomStartTime time="2,748,541.000 ns"></ZoomStartTime>
|
||||
<ZoomEndTime time="2,749,382.001 ns"></ZoomEndTime>
|
||||
<Cursor1Time time="2,749,045.000 ns"></Cursor1Time>
|
||||
</zoom_setting>
|
||||
<column_width_setting>
|
||||
<NameColumnWidth column_width="556"></NameColumnWidth>
|
||||
<ValueColumnWidth column_width="111"></ValueColumnWidth>
|
||||
<ValueColumnWidth column_width="107"></ValueColumnWidth>
|
||||
</column_width_setting>
|
||||
<WVObjectSize size="18" />
|
||||
<wvobject type="logic" fp_name="/tb_accumulator_top/clk_in">
|
||||
@ -116,6 +116,10 @@
|
||||
<obj_property name="ElementShortName">addrb[15:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">addrb[15:0]</obj_property>
|
||||
</wvobject>
|
||||
<wvobject type="array" fp_name="/tb_accumulator_top/dut/accum_main/wr_state">
|
||||
<obj_property name="ElementShortName">wr_state[3:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">wr_state[3:0]</obj_property>
|
||||
</wvobject>
|
||||
</wvobject>
|
||||
<wvobject type="group" fp_name="group27">
|
||||
<obj_property name="label">fifo</obj_property>
|
||||
@ -166,13 +170,13 @@
|
||||
<obj_property name="ObjectShortName">PROG_FULL_THRESH[31:0]</obj_property>
|
||||
</wvobject>
|
||||
<wvobject type="array" fp_name="/tb_accumulator_top/dut/output_async_fifo/xpm_fifo_async_inst/wr_data_count">
|
||||
<obj_property name="ElementShortName">wr_data_count[4:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">wr_data_count[4:0]</obj_property>
|
||||
<obj_property name="ElementShortName">wr_data_count[9:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">wr_data_count[9:0]</obj_property>
|
||||
<obj_property name="Radix">UNSIGNEDDECRADIX</obj_property>
|
||||
</wvobject>
|
||||
<wvobject type="array" fp_name="/tb_accumulator_top/dut/output_async_fifo/xpm_fifo_async_inst/rd_data_count">
|
||||
<obj_property name="ElementShortName">rd_data_count[6:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">rd_data_count[6:0]</obj_property>
|
||||
<obj_property name="ElementShortName">rd_data_count[11:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">rd_data_count[11:0]</obj_property>
|
||||
<obj_property name="Radix">UNSIGNEDDECRADIX</obj_property>
|
||||
</wvobject>
|
||||
</wvobject>
|
||||
|
||||
@ -41,14 +41,15 @@
|
||||
|
||||
*start* отправляет пульс start на dac_start и adc_start в их доменах. при этом после этого блок перестает быть ready и ждет, пока не придет пульс finish, после этого он возвращается снова в *idle* состояние
|
||||
|
||||
*set_data* значит, что следующие 96 бит = 12*8 байт, пришедшии по axis - это конфигурационная информация и ее нужно записать в внутренний регистр на 96 бит.
|
||||
*set_data* значит, что следующие 128 бит = 16*8 байт, пришедшии по axis - это конфигурационная информация и ее нужно записать в внутренний регистр на 128 бит.
|
||||
|
||||
конфигурационный регистр на 96 бит делится так:
|
||||
конфигурационный регистр на 128 бит делится так:
|
||||
```
|
||||
reg[31:0] - pulse_width
|
||||
reg[63:32] - pulse_period
|
||||
reg[79:64] - pulse_num
|
||||
reg[79+dac_data_width:80] - pulse_height
|
||||
reg[127:96] - pulse_period_adc
|
||||
```
|
||||
|
||||
соотвественно эти записанные значения выставляются на соотвествующие выходные сигналы в доменах dac_clk и adc_clk. выходы обновляются каждый раз, когда происходит set_data, и сигналы сохраняют своё значение до следующего set_data.
|
||||
|
||||
122
rtl/controller/src/axi4l_reg_map_controller.sv
Normal file
122
rtl/controller/src/axi4l_reg_map_controller.sv
Normal file
@ -0,0 +1,122 @@
|
||||
module axi4l_reg_map_controller #(
|
||||
parameter int unsigned ADDR_W = 16,
|
||||
parameter int unsigned DATA_W = 32,
|
||||
parameter int unsigned USER_W = 1
|
||||
)(
|
||||
input logic clk,
|
||||
input logic rst_n,
|
||||
axi4l_if.slave s_axil,
|
||||
// dac adc registers
|
||||
output logic start_o,
|
||||
output logic cfg_bus_valid_o,
|
||||
output logic [31:0] pulse_width_o,
|
||||
output logic [31:0] pulse_period_o,
|
||||
output logic [31:0] pulse_num_o,
|
||||
output logic [31:0] pulse_height_raw_o,
|
||||
output logic [31:0] pulse_period_ADC_o,
|
||||
output logic [31:0] window_size_o,
|
||||
|
||||
// DMA CONTROL SIGNALS
|
||||
output logic send_desc_read_o,
|
||||
output logic send_desc_write_o,
|
||||
output logic take_status_read_o,
|
||||
output logic take_status_write_o,
|
||||
|
||||
input logic desc_read_dma_busy_i,
|
||||
input logic desc_write_dma_busy_i,
|
||||
input logic status_read_dma_busy_i,
|
||||
input logic status_write_dma_busy_i,
|
||||
|
||||
input logic desc_read_dma_hs_i,
|
||||
input logic desc_write_dma_hs_i,
|
||||
input logic status_read_dma_hs_i,
|
||||
input logic status_write_dma_hs_i,
|
||||
|
||||
// DMA read descriptors and status register
|
||||
|
||||
output logic [31:0] desc_read_addr_o,
|
||||
output logic [31:0] desc_read_len_o,
|
||||
output logic [31:0] desc_read_config_o,
|
||||
|
||||
input logic [31:0] status_read_i,
|
||||
|
||||
// DMA write descriptors and status register
|
||||
output logic [31:0] desc_write_addr_o,
|
||||
output logic [31:0] desc_write_len_and_tag_o,
|
||||
|
||||
input logic [31:0] status_write_len_i,
|
||||
input logic [31:0] status_write_config_i,
|
||||
|
||||
output logic rst_soft_o,
|
||||
input logic busy_i,
|
||||
input logic [7:0] error_code_i
|
||||
);
|
||||
import axi4l_reg_map_controller_pkg::*;
|
||||
localparam int unsigned N_REGS = CTRL_REG_MAP_N_REGS;
|
||||
|
||||
logic [N_REGS-1:0][31:0] reg_i;
|
||||
logic [N_REGS-1:0][31:0] reg_o;
|
||||
logic [N_REGS-1:0][31:0] reg_pulse;
|
||||
|
||||
axi4l_reg_map #(
|
||||
.ADDR_W (ADDR_W),
|
||||
.DATA_W (DATA_W),
|
||||
.USER_W (USER_W),
|
||||
.N_REGS (N_REGS),
|
||||
.REG_MODE (CTRL_REG_MAP_REG_MODE),
|
||||
.REG_RST (CTRL_REG_MAP_REG_RST)
|
||||
) u_reg_map (
|
||||
.clk (clk),
|
||||
.rst_n (rst_n),
|
||||
.s_axil (s_axil),
|
||||
.reg_i (reg_i),
|
||||
.reg_o (reg_o),
|
||||
.reg_pulse(reg_pulse)
|
||||
);
|
||||
|
||||
always_comb begin
|
||||
reg_i = '0;
|
||||
|
||||
reg_i[REG_STATUS][0] = busy_i;
|
||||
|
||||
reg_i[REG_STATUS][1] = desc_read_dma_busy_i;
|
||||
reg_i[REG_STATUS][2] = desc_write_dma_busy_i;
|
||||
reg_i[REG_STATUS][3] = status_read_dma_busy_i;
|
||||
reg_i[REG_STATUS][4] = status_write_dma_busy_i;
|
||||
|
||||
reg_i[REG_STATUS][5] = desc_read_dma_hs_i;
|
||||
reg_i[REG_STATUS][6] = desc_write_dma_hs_i;
|
||||
reg_i[REG_STATUS][7] = status_read_dma_hs_i;
|
||||
reg_i[REG_STATUS][8] = status_write_dma_hs_i;
|
||||
|
||||
reg_i[REG_ERROR][7:0] = error_code_i;
|
||||
|
||||
reg_i[REG_READ_STATUS] = status_read_i;
|
||||
reg_i[REG_STATUS_WRITE_LEN] = status_write_len_i;
|
||||
reg_i[REG_STATUS_WRITE_CONFIG] = status_write_config_i;
|
||||
|
||||
end
|
||||
|
||||
assign start_o = reg_pulse[REG_CONTROL][0];
|
||||
assign rst_soft_o = reg_pulse[REG_CONTROL][1];
|
||||
assign cfg_bus_valid_o = reg_pulse[REG_CONTROL][2];
|
||||
|
||||
assign send_desc_read_o = reg_pulse[REG_CONTROL][3];
|
||||
assign send_desc_write_o = reg_pulse[REG_CONTROL][4];
|
||||
assign take_status_read_o = reg_pulse[REG_CONTROL][5];
|
||||
assign take_status_write_o = reg_pulse[REG_CONTROL][6];
|
||||
|
||||
assign pulse_width_o = reg_o[REG_DAC_WIDTH];
|
||||
assign pulse_period_o = reg_o[REG_DAC_PERIOD];
|
||||
assign pulse_num_o = reg_o[REG_DAC_PULSE_NUM];
|
||||
assign pulse_height_raw_o = reg_o[REG_DAC_PULSE_HEIGHT];
|
||||
assign pulse_period_ADC_o = reg_o[REG_ADC_PERIOD];
|
||||
assign window_size_o = reg_o[REG_WINDOW_SIZE];
|
||||
|
||||
assign desc_read_addr_o = reg_o[REG_DESC_READ_ADDR];
|
||||
assign desc_read_len_o = reg_o[REG_DESC_READ_LEN];
|
||||
assign desc_read_config_o = reg_o[REG_DESC_READ_CONFIG];
|
||||
assign desc_write_addr_o = reg_o[REG_DESC_WRITE_ADDR];
|
||||
assign desc_write_len_and_tag_o = reg_o[REG_DESC_WRITE_LEN_AND_TAG];
|
||||
|
||||
endmodule
|
||||
109
rtl/controller/src/axi4l_reg_map_controller_pkg.sv
Normal file
109
rtl/controller/src/axi4l_reg_map_controller_pkg.sv
Normal file
@ -0,0 +1,109 @@
|
||||
package axi4l_reg_map_controller_pkg;
|
||||
|
||||
localparam int unsigned CTRL_REG_MAP_N_REGS = 17;
|
||||
|
||||
/*
|
||||
dac adc configuration registers
|
||||
*/
|
||||
localparam logic [31:0] REG_CONTROL = 32'd0;
|
||||
localparam logic [31:0] REG_STATUS = 32'd1;
|
||||
localparam logic [31:0] REG_DAC_WIDTH = 32'd2;
|
||||
localparam logic [31:0] REG_DAC_PERIOD = 32'd3;
|
||||
localparam logic [31:0] REG_DAC_PULSE_NUM = 32'd4;
|
||||
localparam logic [31:0] REG_DAC_PULSE_HEIGHT = 32'd5;
|
||||
localparam logic [31:0] REG_ADC_PERIOD = 32'd6;
|
||||
localparam logic [31:0] REG_WINDOW_SIZE = 32'd7;
|
||||
localparam logic [31:0] REG_ERROR = 32'd8;
|
||||
|
||||
/*
|
||||
AXI read descriptor input and AXI read descriptor status output configuration registers
|
||||
*/
|
||||
localparam logic [31:0] REG_DESC_READ_ADDR = 32'd9;
|
||||
localparam logic [31:0] REG_DESC_READ_LEN = 32'd10;
|
||||
localparam logic [31:0] REG_DESC_READ_CONFIG = 32'd11;
|
||||
|
||||
localparam logic [31:0] REG_READ_STATUS = 32'd12;
|
||||
|
||||
/*
|
||||
AXI write descriptor input and AXI write descriptor status output configuration registers
|
||||
*/
|
||||
localparam logic [31:0] REG_DESC_WRITE_ADDR = 32'd13;
|
||||
localparam logic [31:0] REG_DESC_WRITE_LEN_AND_TAG = 32'd14;
|
||||
|
||||
localparam logic [31:0] REG_STATUS_WRITE_LEN = 32'd15;
|
||||
localparam logic [31:0] REG_STATUS_WRITE_CONFIG = 32'd16;
|
||||
|
||||
|
||||
localparam logic [2:0] REG_BIT_RSVD = 3'd0;
|
||||
localparam logic [2:0] REG_BIT_RO = 3'd1;
|
||||
localparam logic [2:0] REG_BIT_RW = 3'd2;
|
||||
localparam logic [2:0] REG_BIT_W1S = 3'd3;
|
||||
|
||||
localparam logic [CTRL_REG_MAP_N_REGS-1:0][31:0][2:0] CTRL_REG_MAP_REG_MODE = '{
|
||||
default: '{default: REG_BIT_RSVD},
|
||||
|
||||
REG_CONTROL: '{
|
||||
0 : REG_BIT_W1S,
|
||||
1 : REG_BIT_W1S,
|
||||
2 : REG_BIT_W1S,
|
||||
3 : REG_BIT_W1S,
|
||||
4 : REG_BIT_W1S,
|
||||
5 : REG_BIT_W1S,
|
||||
6 : REG_BIT_W1S,
|
||||
default: REG_BIT_RSVD
|
||||
},
|
||||
|
||||
REG_STATUS: '{
|
||||
0 : REG_BIT_RO,
|
||||
1 : REG_BIT_RO,
|
||||
2 : REG_BIT_RO,
|
||||
3 : REG_BIT_RO,
|
||||
4 : REG_BIT_RO,
|
||||
5 : REG_BIT_RO,
|
||||
6 : REG_BIT_RO,
|
||||
7 : REG_BIT_RO,
|
||||
8 : REG_BIT_RO,
|
||||
default: REG_BIT_RSVD
|
||||
},
|
||||
|
||||
REG_DAC_WIDTH: '{default: REG_BIT_RW},
|
||||
REG_DAC_PERIOD: '{default: REG_BIT_RW},
|
||||
REG_DAC_PULSE_NUM: '{default: REG_BIT_RW},
|
||||
REG_DAC_PULSE_HEIGHT: '{default: REG_BIT_RW},
|
||||
REG_ADC_PERIOD: '{default: REG_BIT_RW},
|
||||
REG_WINDOW_SIZE: '{default: REG_BIT_RW},
|
||||
|
||||
REG_ERROR: '{default: REG_BIT_RO},
|
||||
|
||||
REG_DESC_READ_ADDR: '{default: REG_BIT_RW},
|
||||
REG_DESC_READ_LEN: '{default: REG_BIT_RW},
|
||||
REG_DESC_READ_CONFIG: '{default: REG_BIT_RW},
|
||||
REG_READ_STATUS: '{default: REG_BIT_RO},
|
||||
|
||||
REG_DESC_WRITE_ADDR: '{default: REG_BIT_RW},
|
||||
REG_DESC_WRITE_LEN_AND_TAG: '{default: REG_BIT_RW},
|
||||
REG_STATUS_WRITE_LEN: '{default: REG_BIT_RO},
|
||||
REG_STATUS_WRITE_CONFIG: '{default: REG_BIT_RO}
|
||||
};
|
||||
|
||||
localparam logic [CTRL_REG_MAP_N_REGS-1:0][31:0] CTRL_REG_MAP_REG_RST = '{
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000,
|
||||
32'h0000_0000
|
||||
};
|
||||
|
||||
endpackage
|
||||
13
rtl/controller/src/axis_defaults_helper.sv
Normal file
13
rtl/controller/src/axis_defaults_helper.sv
Normal file
@ -0,0 +1,13 @@
|
||||
module axis_defaults_master
|
||||
(
|
||||
axis_if.master axis
|
||||
);
|
||||
|
||||
assign axis.req.t.keep = '1;
|
||||
assign axis.req.t.strb = '1;
|
||||
assign axis.req.t.last = 1'b1;
|
||||
assign axis.req.t.id = '0;
|
||||
assign axis.req.t.dest = '0;
|
||||
assign axis.req.t.user = '0;
|
||||
|
||||
endmodule
|
||||
@ -1,19 +1,21 @@
|
||||
module control #(
|
||||
parameter int unsigned DAC_DATA_WIDTH = 12
|
||||
) (
|
||||
input logic eth_clk_in,
|
||||
input logic ctrl_clk,
|
||||
input logic dac_clk_in,
|
||||
input logic adc_clk_in,
|
||||
input logic rst_n,
|
||||
|
||||
// AXI stream slave, eth_clk_in domain
|
||||
input logic [7:0] s_axis_tdata,
|
||||
input logic s_axis_tvalid,
|
||||
output logic s_axis_tready,
|
||||
input logic s_axis_tlast,
|
||||
input logic rst_n,
|
||||
input logic rst_soft,
|
||||
|
||||
// adc_clk_in domain
|
||||
input logic finish,
|
||||
input logic [159:0] cfg_bus_input,
|
||||
input logic cfg_bus_valid,
|
||||
input logic start,
|
||||
|
||||
// status signals
|
||||
output logic busy,
|
||||
|
||||
// dac_clk_in domain outputs
|
||||
output logic [31:0] dac_pulse_width,
|
||||
@ -24,6 +26,7 @@ module control #(
|
||||
// adc_clk_in domain outputs
|
||||
output logic [31:0] adc_pulse_period,
|
||||
output logic [15:0] adc_pulse_num,
|
||||
output logic [31:0] adc_window_size,
|
||||
|
||||
// pulse outputs
|
||||
output logic dac_start,
|
||||
@ -42,27 +45,22 @@ module control #(
|
||||
end
|
||||
end
|
||||
|
||||
// command constants
|
||||
localparam logic [7:0] CMD_SOFT_RESET = 8'h0F;
|
||||
localparam logic [7:0] CMD_START = 8'hF0;
|
||||
localparam logic [7:0] CMD_SET_DATA = 8'h88;
|
||||
|
||||
// reset synchronizers: async assert, sync deassert in each domain
|
||||
logic eth_rst_ff1, eth_rst_ff2;
|
||||
logic rst_ff1, rst_ff2;
|
||||
logic dac_rst_ff1, dac_rst_ff2;
|
||||
logic adc_rst_ff1, adc_rst_ff2;
|
||||
|
||||
logic eth_rst;
|
||||
logic ctrl_rst;
|
||||
logic dac_rst_int;
|
||||
logic adc_rst_int;
|
||||
|
||||
always_ff @(posedge eth_clk_in or negedge rst_n) begin
|
||||
always_ff @(posedge ctrl_clk or negedge rst_n) begin
|
||||
if (!rst_n) begin
|
||||
eth_rst_ff1 <= 1'b1;
|
||||
eth_rst_ff2 <= 1'b1;
|
||||
rst_ff1 <= 1'b1;
|
||||
rst_ff2 <= 1'b1;
|
||||
end else begin
|
||||
eth_rst_ff1 <= 1'b0;
|
||||
eth_rst_ff2 <= eth_rst_ff1;
|
||||
rst_ff1 <= 1'b0;
|
||||
rst_ff2 <= rst_ff1;
|
||||
end
|
||||
end
|
||||
|
||||
@ -86,74 +84,34 @@ module control #(
|
||||
end
|
||||
end
|
||||
|
||||
assign eth_rst = eth_rst_ff2;
|
||||
assign ctrl_rst = rst_ff2;
|
||||
assign dac_rst_int = dac_rst_ff2;
|
||||
assign adc_rst_int = adc_rst_ff2;
|
||||
|
||||
// axi stream is always accepted. If packet is not needed, it is discarded.
|
||||
assign s_axis_tready = 1'b1;
|
||||
|
||||
(* MARK_DEBUG="true" *) wire axis_hs = s_axis_tvalid & s_axis_tready;
|
||||
|
||||
// -------------------------------------------------------------------------
|
||||
// Shared 96-bit config bus in ETH domain
|
||||
//
|
||||
// Byte order for SET_DATA payload, little-endian:
|
||||
// payload byte 0 -> cfg_bus_eth[7:0]
|
||||
// payload byte 1 -> cfg_bus_eth[15:8]
|
||||
// ...etc...
|
||||
// payload byte 11 -> cfg_bus_eth[95:88]
|
||||
//
|
||||
// Field layout inside cfg_bus_eth:
|
||||
// [31:0] pulse_width
|
||||
// [63:32] pulse_period
|
||||
// [79:64] pulse_num
|
||||
// [95:80] pulse_height_raw[15:0]
|
||||
// [127:96] pulse_period_ADC
|
||||
//
|
||||
// -------------------------------------------------------------------------
|
||||
(* MARK_DEBUG="true" *) logic [127:0] cfg_bus_eth;
|
||||
logic [127:0] cfg_shift_eth;
|
||||
|
||||
// ETH-domain parser and control
|
||||
typedef enum logic [2:0] {
|
||||
ST_IDLE = 3'd0,
|
||||
ST_RECV_CFG = 3'd1,
|
||||
ST_WAIT_CFG_ACK = 3'd2,
|
||||
ST_DISCARD = 3'd3
|
||||
} eth_state_t;
|
||||
|
||||
(* MARK_DEBUG="true" *) eth_state_t eth_state;
|
||||
|
||||
logic [3:0] cfg_byte_cnt;
|
||||
|
||||
// Busy flag: set by START command, cleared by finish event from ADC domain
|
||||
(* MARK_DEBUG="true" *) logic busy_flag_eth;
|
||||
|
||||
// Pending ACKs for config delivery
|
||||
logic cfg_wait_dac_ack;
|
||||
logic cfg_wait_adc_ack;
|
||||
|
||||
// Event toggles ETH -> DAC/ADC
|
||||
logic start_toggle_eth;
|
||||
logic rst_toggle_eth;
|
||||
// Event toggles cntrl -> DAC/ADC
|
||||
logic start_toggle;
|
||||
logic rst_toggle;
|
||||
|
||||
// Config request toggles ETH -> DAC/ADC
|
||||
logic cfg_req_toggle_dac_eth;
|
||||
logic cfg_req_toggle_adc_eth;
|
||||
// Config request toggles cntrl -> DAC/ADC
|
||||
logic cfg_req_toggle_dac;
|
||||
logic cfg_req_toggle_adc;
|
||||
|
||||
// ACK toggles DAC/ADC -> ETH
|
||||
// ACK toggles DAC/ADC -> cntrl
|
||||
logic cfg_ack_toggle_dac;
|
||||
logic cfg_ack_toggle_adc;
|
||||
|
||||
(* ASYNC_REG = "TRUE" *) logic cfg_ack_toggle_dac_meta, cfg_ack_toggle_dac_sync, cfg_ack_toggle_dac_sync_d;
|
||||
(* ASYNC_REG = "TRUE" *) logic cfg_ack_toggle_adc_meta, cfg_ack_toggle_adc_sync, cfg_ack_toggle_adc_sync_d;
|
||||
|
||||
wire cfg_ack_pulse_dac_eth = cfg_ack_toggle_dac_sync ^ cfg_ack_toggle_dac_sync_d;
|
||||
wire cfg_ack_pulse_adc_eth = cfg_ack_toggle_adc_sync ^ cfg_ack_toggle_adc_sync_d;
|
||||
wire cfg_ack_pulse_dac = cfg_ack_toggle_dac_sync ^ cfg_ack_toggle_dac_sync_d;
|
||||
wire cfg_ack_pulse_adc = cfg_ack_toggle_adc_sync ^ cfg_ack_toggle_adc_sync_d;
|
||||
|
||||
always_ff @(posedge eth_clk_in or posedge eth_rst) begin
|
||||
if (eth_rst) begin
|
||||
always_ff @(posedge ctrl_clk or posedge ctrl_rst) begin
|
||||
if (ctrl_rst) begin
|
||||
cfg_ack_toggle_dac_meta <= 1'b0;
|
||||
cfg_ack_toggle_dac_sync <= 1'b0;
|
||||
cfg_ack_toggle_dac_sync_d <= 1'b0;
|
||||
@ -172,11 +130,11 @@ module control #(
|
||||
end
|
||||
end
|
||||
|
||||
// finish event: ADC -> ETH via toggle CDC
|
||||
// finish event: ADC -> cntrl via toggle CDC
|
||||
logic finish_toggle_adc;
|
||||
logic finish_meta_eth, finish_sync_eth, finish_sync_eth_d;
|
||||
logic finish_meta, finish_sync, finish_sync_d;
|
||||
|
||||
wire finish_pulse_eth = finish_sync_eth ^ finish_sync_eth_d;
|
||||
wire finish_pulse = finish_sync ^ finish_sync_d;
|
||||
|
||||
always_ff @(posedge adc_clk_in or posedge adc_rst_int) begin
|
||||
if (adc_rst_int) begin
|
||||
@ -186,152 +144,66 @@ module control #(
|
||||
end
|
||||
end
|
||||
|
||||
always_ff @(posedge eth_clk_in or posedge eth_rst) begin
|
||||
if (eth_rst) begin
|
||||
finish_meta_eth <= 1'b0;
|
||||
finish_sync_eth <= 1'b0;
|
||||
finish_sync_eth_d <= 1'b0;
|
||||
always_ff @(posedge ctrl_clk or posedge ctrl_rst) begin
|
||||
if (ctrl_rst) begin
|
||||
finish_meta <= 1'b0;
|
||||
finish_sync <= 1'b0;
|
||||
finish_sync_d <= 1'b0;
|
||||
end else begin
|
||||
finish_meta_eth <= finish_toggle_adc;
|
||||
finish_sync_eth <= finish_meta_eth;
|
||||
finish_sync_eth_d <= finish_sync_eth;
|
||||
finish_meta <= finish_toggle_adc;
|
||||
finish_sync <= finish_meta;
|
||||
finish_sync_d <= finish_sync;
|
||||
end
|
||||
end
|
||||
|
||||
// ETH FSM
|
||||
always_ff @(posedge eth_clk_in or posedge eth_rst) begin
|
||||
if (eth_rst) begin
|
||||
eth_state <= ST_IDLE;
|
||||
cfg_byte_cnt <= '0;
|
||||
cfg_shift_eth <= '0;
|
||||
cfg_bus_eth <= '0;
|
||||
logic [159:0] cfg_bus;
|
||||
|
||||
busy_flag_eth <= 1'b0;
|
||||
always_ff @(posedge ctrl_clk or posedge ctrl_rst) begin
|
||||
if (ctrl_rst) begin
|
||||
cfg_bus <= '0;
|
||||
busy <= 0;
|
||||
|
||||
start_toggle_eth <= 1'b0;
|
||||
rst_toggle_eth <= 1'b0;
|
||||
start_toggle <= 0;
|
||||
rst_toggle <= 0;
|
||||
|
||||
cfg_req_toggle_dac_eth <= 1'b0;
|
||||
cfg_req_toggle_adc_eth <= 1'b0;
|
||||
cfg_req_toggle_dac <= 0;
|
||||
cfg_req_toggle_adc <= 0;
|
||||
|
||||
cfg_wait_dac_ack <= 1'b0;
|
||||
cfg_wait_adc_ack <= 1'b0;
|
||||
cfg_wait_dac_ack <= 0;
|
||||
cfg_wait_adc_ack <= 0;
|
||||
end else begin
|
||||
// finish always clears busy
|
||||
if (finish_pulse_eth) begin
|
||||
busy_flag_eth <= 1'b0;
|
||||
if (finish_pulse) begin
|
||||
busy <= 0;
|
||||
end
|
||||
|
||||
// config acks
|
||||
if (cfg_ack_pulse_dac_eth) begin
|
||||
if (cfg_ack_pulse_dac) begin
|
||||
cfg_wait_dac_ack <= 1'b0;
|
||||
end
|
||||
if (cfg_ack_pulse_adc_eth) begin
|
||||
if (cfg_ack_pulse_adc) begin
|
||||
cfg_wait_adc_ack <= 1'b0;
|
||||
end
|
||||
|
||||
case (eth_state)
|
||||
ST_IDLE: begin
|
||||
cfg_byte_cnt <= '0;
|
||||
cfg_shift_eth <= cfg_shift_eth;
|
||||
if (cfg_bus_valid && !busy && !cfg_wait_dac_ack && !cfg_wait_adc_ack) begin
|
||||
cfg_bus <= cfg_bus_input;
|
||||
|
||||
if (axis_hs) begin
|
||||
// if busy, drop the whole packet
|
||||
if (busy_flag_eth) begin
|
||||
if (!s_axis_tlast) begin
|
||||
eth_state <= ST_DISCARD;
|
||||
end
|
||||
end else begin
|
||||
unique case (s_axis_tdata)
|
||||
CMD_SOFT_RESET: begin
|
||||
rst_toggle_eth <= ~rst_toggle_eth;
|
||||
end
|
||||
cfg_req_toggle_dac <= ~cfg_req_toggle_dac;
|
||||
cfg_req_toggle_adc <= ~cfg_req_toggle_adc;
|
||||
|
||||
CMD_START: begin
|
||||
start_toggle_eth <= ~start_toggle_eth;
|
||||
busy_flag_eth <= 1'b1;
|
||||
end
|
||||
cfg_wait_dac_ack <= 1;
|
||||
cfg_wait_adc_ack <= 1;
|
||||
end
|
||||
|
||||
CMD_SET_DATA: begin
|
||||
// expect exactly 12 bytes after command
|
||||
if (s_axis_tlast) begin
|
||||
// no payload, invalid packet
|
||||
eth_state <= ST_IDLE;
|
||||
end else begin
|
||||
cfg_byte_cnt <= 4'd0;
|
||||
cfg_shift_eth <= '0;
|
||||
eth_state <= ST_RECV_CFG;
|
||||
end
|
||||
end
|
||||
|
||||
default: begin
|
||||
// unknown command: discard packet remainder if any
|
||||
if (!s_axis_tlast) begin
|
||||
eth_state <= ST_DISCARD;
|
||||
end
|
||||
end
|
||||
endcase
|
||||
end
|
||||
end
|
||||
end
|
||||
|
||||
ST_RECV_CFG: begin
|
||||
if (axis_hs) begin
|
||||
// little endian packing
|
||||
cfg_shift_eth[cfg_byte_cnt*8 +: 8] <= s_axis_tdata;
|
||||
|
||||
if (cfg_byte_cnt == 4'd15) begin
|
||||
// this must be the final payload byte
|
||||
if (s_axis_tlast) begin
|
||||
cfg_bus_eth <= {s_axis_tdata, cfg_shift_eth[119:0]};
|
||||
cfg_req_toggle_dac_eth <= ~cfg_req_toggle_dac_eth;
|
||||
cfg_req_toggle_adc_eth <= ~cfg_req_toggle_adc_eth;
|
||||
cfg_wait_dac_ack <= 1'b1;
|
||||
cfg_wait_adc_ack <= 1'b1;
|
||||
eth_state <= ST_WAIT_CFG_ACK;
|
||||
end else begin
|
||||
// too many bytes in packet
|
||||
eth_state <= ST_DISCARD;
|
||||
end
|
||||
end else begin
|
||||
// early tlast means packet too short!!
|
||||
if (s_axis_tlast) begin
|
||||
eth_state <= ST_IDLE;
|
||||
end else begin
|
||||
cfg_byte_cnt <= cfg_byte_cnt + 4'd1;
|
||||
end
|
||||
end
|
||||
end
|
||||
end
|
||||
|
||||
ST_WAIT_CFG_ACK: begin
|
||||
// any incoming packet while waiting ack is discarded
|
||||
if (cfg_ack_pulse_dac_eth || cfg_ack_pulse_adc_eth) begin
|
||||
if ((~cfg_wait_dac_ack || cfg_ack_pulse_dac_eth) &&
|
||||
(~cfg_wait_adc_ack || cfg_ack_pulse_adc_eth)) begin
|
||||
eth_state <= ST_IDLE;
|
||||
end
|
||||
end
|
||||
|
||||
if (axis_hs && !s_axis_tlast) begin
|
||||
eth_state <= ST_DISCARD;
|
||||
end
|
||||
end
|
||||
|
||||
ST_DISCARD: begin
|
||||
if (axis_hs && s_axis_tlast) begin
|
||||
eth_state <= ST_IDLE;
|
||||
end
|
||||
end
|
||||
|
||||
default: begin
|
||||
eth_state <= ST_IDLE;
|
||||
end
|
||||
endcase
|
||||
if (start && !busy && !cfg_wait_dac_ack && !cfg_wait_adc_ack) begin
|
||||
start_toggle <= ~start_toggle;
|
||||
busy <= 1;
|
||||
end
|
||||
if (rst_soft) begin
|
||||
rst_toggle <= ~rst_toggle;
|
||||
end
|
||||
|
||||
end
|
||||
end
|
||||
|
||||
// ETH -> DAC: start/reset event sync
|
||||
// cntrl -> DAC: start/reset event sync
|
||||
(* ASYNC_REG = "TRUE" *) logic start_meta_dac, start_sync_dac;
|
||||
logic start_sync_dac_d;
|
||||
(* ASYNC_REG = "TRUE" *) logic rst_meta_dac, rst_sync_dac;
|
||||
@ -353,11 +225,11 @@ module control #(
|
||||
dac_start <= 1'b0;
|
||||
dac_rst <= 1'b0;
|
||||
end else begin
|
||||
start_meta_dac <= start_toggle_eth;
|
||||
start_meta_dac <= start_toggle;
|
||||
start_sync_dac <= start_meta_dac;
|
||||
start_sync_dac_d <= start_sync_dac;
|
||||
|
||||
rst_meta_dac <= rst_toggle_eth;
|
||||
rst_meta_dac <= rst_toggle;
|
||||
rst_sync_dac <= rst_meta_dac;
|
||||
rst_sync_dac_d <= rst_sync_dac;
|
||||
|
||||
@ -366,7 +238,7 @@ module control #(
|
||||
end
|
||||
end
|
||||
|
||||
// ETH -> ADC: start/reset event sync
|
||||
// cntrl -> ADC: start/reset event sync
|
||||
(* ASYNC_REG = "TRUE" *) logic start_meta_adc, start_sync_adc;
|
||||
logic start_sync_adc_d;
|
||||
(* ASYNC_REG = "TRUE" *) logic rst_meta_adc, rst_sync_adc;
|
||||
@ -388,11 +260,11 @@ module control #(
|
||||
adc_start <= 1'b0;
|
||||
adc_rst <= 1'b0;
|
||||
end else begin
|
||||
start_meta_adc <= start_toggle_eth;
|
||||
start_meta_adc <= start_toggle;
|
||||
start_sync_adc <= start_meta_adc;
|
||||
start_sync_adc_d <= start_sync_adc;
|
||||
|
||||
rst_meta_adc <= rst_toggle_eth;
|
||||
rst_meta_adc <= rst_toggle;
|
||||
rst_sync_adc <= rst_meta_adc;
|
||||
rst_sync_adc_d <= rst_sync_adc;
|
||||
|
||||
@ -401,8 +273,8 @@ module control #(
|
||||
end
|
||||
end
|
||||
|
||||
// ETH -> DAC config CDC
|
||||
// cfg_bus_eth is kept stable in ETH domain until DAC and ADC both ACK.
|
||||
// contrl -> DAC config CDC
|
||||
// cfg_bus is kept stable in contrl domain until DAC and ADC both ACK.
|
||||
(* ASYNC_REG = "TRUE" *) logic cfg_req_meta_dac, cfg_req_sync_dac;
|
||||
logic cfg_req_sync_dac_d;
|
||||
wire cfg_req_pulse_dac = cfg_req_sync_dac ^ cfg_req_sync_dac_d;
|
||||
@ -419,22 +291,22 @@ module control #(
|
||||
dac_pulse_num <= '0;
|
||||
dac_pulse_height <= '0;
|
||||
end else begin
|
||||
cfg_req_meta_dac <= cfg_req_toggle_dac_eth;
|
||||
cfg_req_meta_dac <= cfg_req_toggle_dac;
|
||||
cfg_req_sync_dac <= cfg_req_meta_dac;
|
||||
cfg_req_sync_dac_d <= cfg_req_sync_dac;
|
||||
|
||||
if (cfg_req_pulse_dac) begin
|
||||
dac_pulse_width <= cfg_bus_eth[31:0];
|
||||
dac_pulse_period <= cfg_bus_eth[63:32];
|
||||
dac_pulse_num <= cfg_bus_eth[79:64];
|
||||
dac_pulse_height <= cfg_bus_eth[80 +: DAC_DATA_WIDTH];
|
||||
dac_pulse_width <= cfg_bus[31:0];
|
||||
dac_pulse_period <= cfg_bus[63:32];
|
||||
dac_pulse_num <= cfg_bus[79:64];
|
||||
dac_pulse_height <= cfg_bus[80 +: DAC_DATA_WIDTH];
|
||||
|
||||
cfg_ack_toggle_dac <= ~cfg_ack_toggle_dac;
|
||||
end
|
||||
end
|
||||
end
|
||||
|
||||
// ETH -> ADC config CDC
|
||||
// cntrl -> ADC config CDC
|
||||
logic cfg_req_meta_adc, cfg_req_sync_adc, cfg_req_sync_adc_d;
|
||||
wire cfg_req_pulse_adc = cfg_req_sync_adc ^ cfg_req_sync_adc_d;
|
||||
|
||||
@ -445,16 +317,18 @@ module control #(
|
||||
cfg_req_sync_adc_d <= 1'b0;
|
||||
cfg_ack_toggle_adc <= 1'b0;
|
||||
|
||||
adc_pulse_period <= '0;
|
||||
adc_pulse_num <= '0;
|
||||
adc_pulse_period <= '0;
|
||||
adc_pulse_num <= '0;
|
||||
adc_window_size <= '0;
|
||||
end else begin
|
||||
cfg_req_meta_adc <= cfg_req_toggle_adc_eth;
|
||||
cfg_req_meta_adc <= cfg_req_toggle_adc;
|
||||
cfg_req_sync_adc <= cfg_req_meta_adc;
|
||||
cfg_req_sync_adc_d <= cfg_req_sync_adc;
|
||||
|
||||
if (cfg_req_pulse_adc) begin
|
||||
adc_pulse_period <= cfg_bus_eth[127:96];
|
||||
adc_pulse_num <= cfg_bus_eth[79:64];
|
||||
adc_pulse_period <= cfg_bus[127:96];
|
||||
adc_pulse_num <= cfg_bus[79:64];
|
||||
adc_window_size <= cfg_bus[159:128];
|
||||
|
||||
cfg_ack_toggle_adc <= ~cfg_ack_toggle_adc;
|
||||
end
|
||||
|
||||
221
rtl/controller/src/controller_wrapper_axil.sv
Normal file
221
rtl/controller/src/controller_wrapper_axil.sv
Normal file
@ -0,0 +1,221 @@
|
||||
import dma_reg_pkg::*;
|
||||
|
||||
module controller_wrapper_axil #(
|
||||
|
||||
parameter int unsigned ADDR_W = 16,
|
||||
parameter int unsigned DATA_W = 32,
|
||||
parameter int unsigned USER_W = 1,
|
||||
|
||||
parameter int unsigned DAC_DATA_WIDTH = 12
|
||||
)
|
||||
(
|
||||
input logic ctrl_clk,
|
||||
input logic dac_clk_in,
|
||||
input logic adc_clk_in,
|
||||
input logic rst_n,
|
||||
axi4l_if.slave s_axil,
|
||||
|
||||
// adc_clk_in domain
|
||||
input logic finish,
|
||||
output logic [31:0] adc_window_size,
|
||||
|
||||
// dac_clk_in domain outputs
|
||||
output logic [31:0] dac_pulse_width,
|
||||
output logic [31:0] dac_pulse_period,
|
||||
output logic [DAC_DATA_WIDTH-1:0] dac_pulse_height,
|
||||
output logic [15:0] dac_pulse_num,
|
||||
|
||||
// adc_clk_in domain outputs
|
||||
output logic [31:0] adc_pulse_period,
|
||||
output logic [15:0] adc_pulse_num,
|
||||
|
||||
// pulse outputs
|
||||
output logic dac_start,
|
||||
output logic adc_start,
|
||||
output logic dac_rst,
|
||||
output logic adc_rst,
|
||||
|
||||
// AXIS DMA
|
||||
axis_if.slave s_axis_status_read,
|
||||
axis_if.slave s_axis_status_write,
|
||||
|
||||
axis_if.master m_axis_desc_read,
|
||||
axis_if.master m_axis_desc_write
|
||||
);
|
||||
|
||||
logic start, rst_soft, send_desc_read, send_desc_write, take_status_read, take_status_write, cfg_bus_valid, busy;
|
||||
logic [31:0] pulse_width, pulse_period, pulse_num, pulse_height_raw, pulse_period_ADC, window_size;
|
||||
logic [7:0] error_code;
|
||||
logic [31:0] desc_read_addr, desc_read_len, desc_read_config, status_read;
|
||||
logic [31:0] desc_write_addr, desc_write_len_and_tag, status_write_len, status_write_config;
|
||||
|
||||
logic desc_read_dma_busy, desc_write_dma_busy, status_read_dma_busy, status_write_dma_busy;
|
||||
logic desc_read_dma_hs, desc_write_dma_hs, status_read_dma_hs, status_write_dma_hs;
|
||||
|
||||
axi4l_reg_map_controller #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W)
|
||||
) axi4l_reg_map_controller_inst (
|
||||
.clk(ctrl_clk),
|
||||
.rst_n(rst_n),
|
||||
.s_axil(s_axil),
|
||||
// CONTROLLER ADC/ DAC
|
||||
.start_o(start),
|
||||
.cfg_bus_valid_o(cfg_bus_valid),
|
||||
|
||||
.pulse_width_o(pulse_width),
|
||||
.pulse_period_o(pulse_period),
|
||||
.pulse_num_o(pulse_num),
|
||||
.pulse_height_raw_o(pulse_height_raw),
|
||||
.pulse_period_ADC_o(pulse_period_ADC),
|
||||
.window_size_o(window_size),
|
||||
|
||||
.rst_soft_o(rst_soft),
|
||||
.busy_i(busy),
|
||||
.error_code_i(error_code),
|
||||
|
||||
// CONTROLLER DMA
|
||||
.send_desc_read_o(send_desc_read),
|
||||
.send_desc_write_o(send_desc_write),
|
||||
.take_status_read_o(take_status_read),
|
||||
.take_status_write_o(take_status_write),
|
||||
|
||||
.desc_read_addr_o(desc_read_addr),
|
||||
.desc_read_len_o(desc_read_len),
|
||||
.desc_read_config_o(desc_read_config),
|
||||
|
||||
.status_read_i(status_read),
|
||||
|
||||
.desc_write_addr_o(desc_write_addr),
|
||||
.desc_write_len_and_tag_o(desc_write_len_and_tag),
|
||||
|
||||
.status_write_len_i(status_write_len),
|
||||
.status_write_config_i(status_write_config),
|
||||
|
||||
.desc_read_dma_busy_i(desc_read_dma_busy),
|
||||
.desc_write_dma_busy_i(desc_write_dma_busy),
|
||||
.status_read_dma_busy_i(status_read_dma_busy),
|
||||
.status_write_dma_busy_i(status_write_dma_busy),
|
||||
|
||||
.desc_read_dma_hs_i(desc_read_dma_hs),
|
||||
.desc_write_dma_hs_i(desc_write_dma_hs),
|
||||
.status_read_dma_hs_i(status_read_dma_hs),
|
||||
.status_write_dma_hs_i(status_write_dma_hs)
|
||||
);
|
||||
|
||||
// CONTROLLER DAC ADC
|
||||
// -------------------------------------------------------------------------
|
||||
// Field layout inside cfg_bus:
|
||||
// [31:0] pulse_width
|
||||
// [63:32] pulse_period
|
||||
// [79:64] pulse_num
|
||||
// [95:80] pulse_height_raw[15:0]
|
||||
// [127:96] pulse_period_ADC
|
||||
// [159:128] window_size
|
||||
// -------------------------------------------------------------------------
|
||||
(* MARK_DEBUG="true" *) logic [159:0] cfg_bus;
|
||||
assign cfg_bus = {window_size, pulse_period_ADC, pulse_height_raw[15:0], pulse_num[15:0], pulse_period, pulse_width};
|
||||
|
||||
control #(
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
)
|
||||
controller (
|
||||
.ctrl_clk(ctrl_clk),
|
||||
.dac_clk_in(dac_clk_in),
|
||||
.adc_clk_in(adc_clk_in),
|
||||
.rst_n(rst_n),
|
||||
.rst_soft(rst_soft),
|
||||
.finish(finish),
|
||||
.cfg_bus_input(cfg_bus),
|
||||
.cfg_bus_valid(cfg_bus_valid),
|
||||
.start(start),
|
||||
|
||||
.busy(busy),
|
||||
|
||||
.dac_pulse_width(dac_pulse_width),
|
||||
.dac_pulse_period(dac_pulse_period),
|
||||
.dac_pulse_height(dac_pulse_height),
|
||||
.dac_pulse_num(dac_pulse_num),
|
||||
.adc_pulse_period(adc_pulse_period),
|
||||
.adc_pulse_num(adc_pulse_num),
|
||||
.adc_window_size(adc_window_size),
|
||||
.dac_start(dac_start),
|
||||
.adc_start(adc_start),
|
||||
.dac_rst(dac_rst),
|
||||
.adc_rst(adc_rst)
|
||||
);
|
||||
|
||||
// CONTROLLER DMA
|
||||
|
||||
dma_read_desc_t desc_read_cmd, desc_read_cmd_out;
|
||||
assign desc_read_cmd.addr = desc_read_addr;
|
||||
assign desc_read_cmd.len = desc_read_len;
|
||||
assign desc_read_cmd.tag = desc_read_config[TAG_WIDTH-1:0];
|
||||
assign desc_read_cmd.id = desc_read_config[TAG_WIDTH +: AXIS_ID_WIDTH];
|
||||
assign desc_read_cmd.dest = desc_read_config[TAG_WIDTH+AXIS_ID_WIDTH +: AXIS_DEST_WIDTH];
|
||||
assign desc_read_cmd.user = desc_read_config[TAG_WIDTH+AXIS_ID_WIDTH+AXIS_DEST_WIDTH +: AXIS_USER_WIDTH];
|
||||
|
||||
dma_write_desc_t desc_write_cmd, desc_write_cmd_out;
|
||||
assign desc_write_cmd.addr = desc_write_addr;
|
||||
assign desc_write_cmd.len = desc_write_len_and_tag[LEN_WIDTH-1:0];
|
||||
assign desc_write_cmd.tag = desc_write_len_and_tag[LEN_WIDTH +: TAG_WIDTH];
|
||||
|
||||
dma_read_status_t status_read_cmd, status_read_cmd_in;
|
||||
assign status_read = { status_read_cmd.error, status_read_cmd.tag};
|
||||
|
||||
dma_write_status_t status_write_cmd, status_write_cmd_in;
|
||||
assign status_write_len = status_write_cmd.len;
|
||||
assign status_write_config = { status_write_cmd.error, status_write_cmd.user,
|
||||
status_write_cmd.dest, status_write_cmd.id, status_write_cmd.tag};
|
||||
|
||||
dma_controller dma_controller_inst
|
||||
(
|
||||
.dma_clk(ctrl_clk),
|
||||
.rst_n(rst_n),
|
||||
|
||||
.send_desc_read(send_desc_read),
|
||||
.send_desc_write(send_desc_write),
|
||||
.take_status_read(take_status_read),
|
||||
.take_status_write(take_status_write),
|
||||
|
||||
.desc_read_cmd(desc_read_cmd),
|
||||
.desc_write_cmd(desc_write_cmd),
|
||||
.status_read_cmd(status_read_cmd),
|
||||
.status_write_cmd(status_write_cmd),
|
||||
|
||||
.desc_read_cmd_out(desc_read_cmd_out),
|
||||
.desc_write_cmd_out(desc_write_cmd_out),
|
||||
.status_read_cmd_in(status_read_cmd_in),
|
||||
.status_write_cmd_in(status_write_cmd_in),
|
||||
|
||||
.ready_desc_read(m_axis_desc_read.resp.ready),
|
||||
.ready_desc_write(m_axis_desc_write.resp.ready),
|
||||
.ready_status_read(s_axis_status_read.resp.ready),
|
||||
.ready_status_write(s_axis_status_write.resp.ready),
|
||||
|
||||
.valid_desc_read(m_axis_desc_read.req.t.valid),
|
||||
.valid_desc_write(m_axis_desc_write.req.t.valid),
|
||||
.valid_status_read(s_axis_status_read.req.t.valid),
|
||||
.valid_status_write(s_axis_status_write.req.t.valid),
|
||||
|
||||
.desc_read_dma_busy(desc_read_dma_busy),
|
||||
.desc_write_dma_busy(desc_write_dma_busy),
|
||||
.status_read_dma_busy(status_read_dma_busy),
|
||||
.status_write_dma_busy(status_write_dma_busy),
|
||||
|
||||
.desc_read_dma_hs(desc_read_dma_hs),
|
||||
.desc_write_dma_hs(desc_write_dma_hs),
|
||||
.status_read_dma_hs(status_read_dma_hs),
|
||||
.status_write_dma_hs(status_write_dma_hs)
|
||||
);
|
||||
|
||||
axis_defaults_master defaults_rd (.axis(m_axis_desc_read));
|
||||
axis_defaults_master defaults_wr (.axis(m_axis_desc_write));
|
||||
|
||||
assign m_axis_desc_read.req.t.data = desc_read_cmd_out;
|
||||
assign m_axis_desc_write.req.t.data = desc_write_cmd_out;
|
||||
assign status_read_cmd_in = s_axis_status_read.req.t.data;
|
||||
assign status_write_cmd_in = s_axis_status_write.req.t.data;
|
||||
|
||||
endmodule
|
||||
111
rtl/controller/src/dma_controller.sv
Normal file
111
rtl/controller/src/dma_controller.sv
Normal file
@ -0,0 +1,111 @@
|
||||
import dma_reg_pkg::*;
|
||||
|
||||
module dma_controller
|
||||
(
|
||||
input dma_clk,
|
||||
input rst_n,
|
||||
input logic send_desc_read,
|
||||
input logic send_desc_write,
|
||||
input logic take_status_read,
|
||||
input logic take_status_write,
|
||||
|
||||
input logic ready_desc_read,
|
||||
input logic ready_desc_write,
|
||||
|
||||
output logic ready_status_read,
|
||||
output logic ready_status_write,
|
||||
|
||||
input dma_read_desc_t desc_read_cmd,
|
||||
input dma_write_desc_t desc_write_cmd,
|
||||
|
||||
output dma_read_status_t status_read_cmd,
|
||||
output dma_write_status_t status_write_cmd,
|
||||
|
||||
input dma_read_status_t status_read_cmd_in,
|
||||
input dma_write_status_t status_write_cmd_in,
|
||||
|
||||
output logic desc_read_dma_busy,
|
||||
output logic desc_write_dma_busy,
|
||||
output logic status_read_dma_busy,
|
||||
output logic status_write_dma_busy,
|
||||
|
||||
output logic desc_read_dma_hs,
|
||||
output logic desc_write_dma_hs,
|
||||
output logic status_read_dma_hs,
|
||||
output logic status_write_dma_hs,
|
||||
|
||||
output logic valid_desc_read,
|
||||
output logic valid_desc_write,
|
||||
|
||||
input logic valid_status_read,
|
||||
input logic valid_status_write,
|
||||
|
||||
output dma_read_desc_t desc_read_cmd_out,
|
||||
output dma_write_desc_t desc_write_cmd_out
|
||||
);
|
||||
|
||||
shaper_axis_desc
|
||||
#(
|
||||
.DATA_WIDTH($bits(dma_read_desc_t))
|
||||
) shaper_axis_desc_read
|
||||
(
|
||||
.clk(dma_clk),
|
||||
.rst_n(rst_n),
|
||||
.data_in(desc_read_cmd),
|
||||
.send(send_desc_read),
|
||||
.ready(ready_desc_read),
|
||||
.busy(desc_read_dma_busy),
|
||||
.handshake(desc_read_dma_hs),
|
||||
.data_out(desc_read_cmd_out),
|
||||
.valid(valid_desc_read)
|
||||
);
|
||||
|
||||
shaper_axis_desc
|
||||
#(
|
||||
.DATA_WIDTH($bits(dma_write_desc_t))
|
||||
) shaper_axis_desc_write
|
||||
(
|
||||
.clk(dma_clk),
|
||||
.rst_n(rst_n),
|
||||
.data_in(desc_write_cmd),
|
||||
.send(send_desc_write),
|
||||
.ready(ready_desc_write),
|
||||
.busy(desc_write_dma_busy),
|
||||
.handshake(desc_write_dma_hs),
|
||||
.data_out(desc_write_cmd_out),
|
||||
.valid(valid_desc_write)
|
||||
);
|
||||
|
||||
shaper_axis_status
|
||||
#(
|
||||
.DATA_WIDTH($bits(dma_read_status_t))
|
||||
) shaper_axis_status_read
|
||||
(
|
||||
.clk(dma_clk),
|
||||
.rst_n(rst_n),
|
||||
.data_in(status_read_cmd_in),
|
||||
.take(take_status_read),
|
||||
.valid(valid_status_read),
|
||||
.ready(ready_status_read),
|
||||
.busy(status_read_dma_busy),
|
||||
.handshake(status_read_dma_hs),
|
||||
.data_out(status_read_cmd)
|
||||
);
|
||||
|
||||
shaper_axis_status
|
||||
#(
|
||||
.DATA_WIDTH($bits(dma_write_status_t))
|
||||
) shaper_axis_status_write
|
||||
(
|
||||
.clk(dma_clk),
|
||||
.rst_n(rst_n),
|
||||
.data_in(status_write_cmd_in),
|
||||
.take(take_status_write),
|
||||
.valid(valid_status_write),
|
||||
.ready(ready_status_write),
|
||||
.busy(status_write_dma_busy),
|
||||
.handshake(status_write_dma_hs),
|
||||
.data_out(status_write_cmd)
|
||||
);
|
||||
|
||||
endmodule
|
||||
42
rtl/controller/src/dma_reg_pkg.sv
Normal file
42
rtl/controller/src/dma_reg_pkg.sv
Normal file
@ -0,0 +1,42 @@
|
||||
package dma_reg_pkg;
|
||||
parameter int unsigned AXI_ADDR_WIDTH = 16;
|
||||
parameter int unsigned LEN_WIDTH = 20;
|
||||
parameter int unsigned TAG_WIDTH = 8;
|
||||
parameter int unsigned AXIS_ID_WIDTH = 8;
|
||||
parameter int unsigned AXIS_DEST_WIDTH = 8;
|
||||
parameter int unsigned AXIS_USER_WIDTH = 1;
|
||||
|
||||
typedef struct packed {
|
||||
logic [AXIS_USER_WIDTH-1:0] user;
|
||||
logic [AXIS_DEST_WIDTH-1:0] dest;
|
||||
logic [AXIS_ID_WIDTH-1:0] id;
|
||||
logic [TAG_WIDTH-1:0] tag;
|
||||
logic [LEN_WIDTH-1:0] len;
|
||||
logic [AXI_ADDR_WIDTH-1:0] addr;
|
||||
|
||||
} dma_read_desc_t;
|
||||
|
||||
typedef struct packed {
|
||||
logic [TAG_WIDTH-1:0] tag;
|
||||
logic [LEN_WIDTH-1:0] len;
|
||||
logic [AXI_ADDR_WIDTH-1:0] addr;
|
||||
|
||||
} dma_write_desc_t;
|
||||
|
||||
typedef struct packed {
|
||||
logic [3:0] error;
|
||||
logic [TAG_WIDTH-1:0] tag;
|
||||
|
||||
} dma_read_status_t;
|
||||
|
||||
typedef struct packed {
|
||||
logic [3:0] error;
|
||||
logic [AXIS_USER_WIDTH-1:0] user;
|
||||
logic [AXIS_DEST_WIDTH-1:0] dest;
|
||||
logic [AXIS_ID_WIDTH-1:0] id;
|
||||
logic [TAG_WIDTH-1:0] tag;
|
||||
logic [LEN_WIDTH-1:0] len;
|
||||
|
||||
} dma_write_status_t;
|
||||
|
||||
endpackage
|
||||
54
rtl/controller/src/shaper_axis_desc.sv
Normal file
54
rtl/controller/src/shaper_axis_desc.sv
Normal file
@ -0,0 +1,54 @@
|
||||
module shaper_axis_desc #(
|
||||
parameter DATA_WIDTH = 128
|
||||
) (
|
||||
input clk,
|
||||
input rst_n,
|
||||
input logic [DATA_WIDTH-1:0] data_in,
|
||||
input logic send,
|
||||
input logic ready,
|
||||
|
||||
output logic busy,
|
||||
output logic handshake,
|
||||
output logic [DATA_WIDTH-1:0] data_out,
|
||||
output logic valid
|
||||
);
|
||||
|
||||
typedef enum logic [0:0] {
|
||||
IDLE,
|
||||
WAIT_READY
|
||||
} wr_state;
|
||||
|
||||
wr_state state;
|
||||
|
||||
always @(posedge clk) begin
|
||||
if (!rst_n) begin
|
||||
state <= IDLE;
|
||||
busy <= 1'b0;
|
||||
handshake <= 1'b0;
|
||||
data_out <= 1'b0;
|
||||
valid <= 1'b0;
|
||||
end else begin
|
||||
case (state)
|
||||
IDLE: begin
|
||||
handshake <= 1'b0;
|
||||
if (send) begin
|
||||
valid <= 1'b1;
|
||||
data_out <= data_in;
|
||||
busy <= 1'b1;
|
||||
state <= WAIT_READY;
|
||||
end
|
||||
end
|
||||
WAIT_READY: begin
|
||||
if (ready) begin
|
||||
valid <= 1'b0;
|
||||
handshake <= 1'b1;
|
||||
busy <= 1'b0;
|
||||
state <= IDLE;
|
||||
end
|
||||
end
|
||||
default: state <= IDLE;
|
||||
endcase
|
||||
end
|
||||
end
|
||||
|
||||
endmodule
|
||||
55
rtl/controller/src/shaper_axis_status.sv
Normal file
55
rtl/controller/src/shaper_axis_status.sv
Normal file
@ -0,0 +1,55 @@
|
||||
module shaper_axis_status #(
|
||||
parameter int unsigned DATA_WIDTH = 128
|
||||
)(
|
||||
input logic clk,
|
||||
input logic rst_n,
|
||||
|
||||
input logic [DATA_WIDTH-1:0] data_in,
|
||||
input logic take,
|
||||
input logic valid,
|
||||
output logic ready,
|
||||
|
||||
output logic busy,
|
||||
output logic handshake,
|
||||
output logic [DATA_WIDTH-1:0] data_out
|
||||
);
|
||||
|
||||
typedef enum logic [0:0] {
|
||||
IDLE,
|
||||
WAIT_VALID
|
||||
} wr_state;
|
||||
|
||||
wr_state state;
|
||||
|
||||
always @(posedge clk) begin
|
||||
if (!rst_n) begin
|
||||
state <= IDLE;
|
||||
ready <= 1'b0;
|
||||
busy <= 1'b0;
|
||||
handshake <= 1'b0;
|
||||
data_out <= '0;
|
||||
end else begin
|
||||
case (state)
|
||||
IDLE: begin
|
||||
handshake <= 1'b0;
|
||||
if (take) begin
|
||||
ready <= 1'b1;
|
||||
busy <= 1'b1;
|
||||
state <= WAIT_VALID;
|
||||
end
|
||||
end
|
||||
WAIT_VALID: begin
|
||||
if (valid) begin
|
||||
data_out <= data_in;
|
||||
ready <= 1'b0;
|
||||
handshake <= 1'b1;
|
||||
busy <= 1'b0;
|
||||
state <= IDLE;
|
||||
end
|
||||
end
|
||||
endcase
|
||||
end
|
||||
end
|
||||
|
||||
|
||||
endmodule
|
||||
@ -1,52 +1,40 @@
|
||||
# SPDX-License-Identifier: MIT
|
||||
#
|
||||
# Copyright (c) 2025 FPGA Ninja, LLC
|
||||
#
|
||||
# Authors:
|
||||
# - Alex Forencich
|
||||
#
|
||||
TOPLEVEL_LANG = verilog
|
||||
SIM ?= verilator
|
||||
|
||||
# FPGA settings
|
||||
FPGA_PART = xc7a35tfgg484-1
|
||||
FPGA_TOP = control
|
||||
FPGA_ARCH = artix7
|
||||
PWD := $(shell pwd)
|
||||
|
||||
RTL_DIR = ../src
|
||||
RTL_DIR = $(PWD)/../src
|
||||
LIBS_DIR = $(PWD)/../../../external/rtl_libs
|
||||
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/rtl/axi_pkg.sv
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/rtl/axi_if.sv
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/rtl/axi4l_flat_to_if.sv
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/rtl/axi4l_if_to_flat.sv
|
||||
VERILOG_SOURCES += $(LIBS_DIR)/axi/axi_reg/axi4l_reg_map.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/controller.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/dma_controller.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/shaper_axis_desc.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/shaper_axis_status.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/controller_wrapper_axil.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/axi4l_reg_map_controller_pkg.sv
|
||||
VERILOG_SOURCES += $(RTL_DIR)/axi4l_reg_map_controller.sv
|
||||
VERILOG_SOURCES += $(PWD)/tb_controller_wrapper_axil.sv
|
||||
|
||||
TOPLEVEL = tb_controller_wrapper_axil
|
||||
MODULE = test_controller
|
||||
|
||||
|
||||
include ../../../scripts/vivado.mk
|
||||
|
||||
SYN_FILES += $(sort $(shell find ../src -type f \( -name '*.v' -o -name '*.sv' \)))
|
||||
|
||||
XCI_FILES = $(sort $(shell find ../src -type f -name '*.xci'))
|
||||
|
||||
XDC_FILES += ../../../constraints/ax7a035b.xdc
|
||||
XDC_FILES += test_timing.xdc
|
||||
|
||||
SYN_FILES += controller_tb.sv
|
||||
SIM_TOP = control_tb
|
||||
ifeq ($(SIM),verilator)
|
||||
EXTRA_ARGS += --trace --trace-structs
|
||||
EXTRA_ARGS += -I$(LIBS_DIR)/axi/rtl/
|
||||
COMPILE_ARGS += -Wno-fatal
|
||||
COMPILE_ARGS += -I$(LIBS_DIR)/axi/rtl/
|
||||
EXTRA_ARGS += --trace
|
||||
EXTRA_ARGS += --trace-structs
|
||||
EXTRA_ARGS += --public-flat-rw
|
||||
EXTRA_ARGS += -Wno-fatal
|
||||
EXTRA_ARGS += --timing
|
||||
endif
|
||||
|
||||
|
||||
program: $(PROJECT).bit
|
||||
echo "open_hw_manager" > program.tcl
|
||||
echo "connect_hw_server" >> program.tcl
|
||||
echo "open_hw_target" >> program.tcl
|
||||
echo "current_hw_device [lindex [get_hw_devices] 0]" >> program.tcl
|
||||
echo "refresh_hw_device -update_hw_probes false [current_hw_device]" >> program.tcl
|
||||
echo "set_property PROGRAM.FILE {$(PROJECT).bit} [current_hw_device]" >> program.tcl
|
||||
echo "program_hw_devices [current_hw_device]" >> program.tcl
|
||||
echo "exit" >> program.tcl
|
||||
vivado -nojournal -nolog -mode batch -source program.tcl
|
||||
|
||||
$(PROJECT).mcs $(PROJECT).prm: $(PROJECT).bit
|
||||
echo "write_cfgmem -force -format mcs -size 16 -interface SPIx4 -loadbit {up 0x0000000 $*.bit} -checksum -file $*.mcs" > generate_mcs.tcl
|
||||
echo "exit" >> generate_mcs.tcl
|
||||
vivado -nojournal -nolog -mode batch -source generate_mcs.tcl
|
||||
mkdir -p rev
|
||||
COUNT=100; \
|
||||
while [ -e rev/$*_rev$$COUNT.bit ]; \
|
||||
do COUNT=$$((COUNT+1)); done; \
|
||||
COUNT=$$((COUNT-1)); \
|
||||
for x in .mcs .prm; \
|
||||
do cp $*$$x rev/$*_rev$$COUNT$$x; \
|
||||
echo "Output: rev/$*_rev$$COUNT$$x"; done;
|
||||
include $(shell cocotb-config --makefiles)/Makefile.sim
|
||||
|
||||
@ -4,72 +4,17 @@ module tb_control;
|
||||
|
||||
localparam int unsigned DAC_DATA_WIDTH = 12;
|
||||
|
||||
|
||||
//------------------------------------------------------------
|
||||
// Clocks / reset
|
||||
logic eth_clk_in;
|
||||
//------------------------------------------------------------
|
||||
logic ctrl_clk;
|
||||
logic dac_clk_in;
|
||||
logic adc_clk_in;
|
||||
logic rst_n;
|
||||
|
||||
// axi stream (input)
|
||||
logic [7:0] s_axis_tdata;
|
||||
logic s_axis_tvalid;
|
||||
logic s_axis_tready;
|
||||
logic s_axis_tlast;
|
||||
|
||||
// ADC side input
|
||||
logic finish;
|
||||
|
||||
// DUT outputs
|
||||
logic [31:0] dac_pulse_width;
|
||||
logic [31:0] dac_pulse_period;
|
||||
logic [DAC_DATA_WIDTH-1:0] dac_pulse_height;
|
||||
logic [15:0] dac_pulse_num;
|
||||
|
||||
logic [31:0] adc_pulse_period;
|
||||
logic [15:0] adc_pulse_num;
|
||||
|
||||
logic dac_start;
|
||||
logic adc_start;
|
||||
logic dac_rst;
|
||||
logic adc_rst;
|
||||
|
||||
|
||||
// DUT
|
||||
control #(
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
) dut (
|
||||
.eth_clk_in (eth_clk_in),
|
||||
.dac_clk_in (dac_clk_in),
|
||||
.adc_clk_in (adc_clk_in),
|
||||
.rst_n (rst_n),
|
||||
|
||||
.s_axis_tdata (s_axis_tdata),
|
||||
.s_axis_tvalid (s_axis_tvalid),
|
||||
.s_axis_tready (s_axis_tready),
|
||||
.s_axis_tlast (s_axis_tlast),
|
||||
|
||||
.finish (finish),
|
||||
|
||||
.dac_pulse_width (dac_pulse_width),
|
||||
.dac_pulse_period (dac_pulse_period),
|
||||
.dac_pulse_height (dac_pulse_height),
|
||||
.dac_pulse_num (dac_pulse_num),
|
||||
|
||||
.adc_pulse_period (adc_pulse_period),
|
||||
.adc_pulse_num (adc_pulse_num),
|
||||
|
||||
.dac_start (dac_start),
|
||||
.adc_start (adc_start),
|
||||
.dac_rst (dac_rst),
|
||||
.adc_rst (adc_rst)
|
||||
);
|
||||
|
||||
|
||||
// Clock generation
|
||||
initial begin
|
||||
eth_clk_in = 1'b0;
|
||||
forever #(1 * 4.000) eth_clk_in = ~eth_clk_in; // 125 MHz
|
||||
ctrl_clk = 1'b0;
|
||||
forever #(1 * 4.000) ctrl_clk = ~ctrl_clk; // 125 MHz
|
||||
end
|
||||
|
||||
initial begin
|
||||
@ -82,8 +27,81 @@ module tb_control;
|
||||
forever #(1 * 7.692307692) adc_clk_in = ~adc_clk_in; // ~65 MHz
|
||||
end
|
||||
|
||||
|
||||
//------------------------------------------------------------
|
||||
// DUT inputs
|
||||
//------------------------------------------------------------
|
||||
|
||||
logic rst_soft;
|
||||
|
||||
logic finish;
|
||||
|
||||
logic [159:0] cfg_bus_input;
|
||||
logic cfg_bus_valid;
|
||||
|
||||
logic start;
|
||||
|
||||
//------------------------------------------------------------
|
||||
// DUT outputs
|
||||
//------------------------------------------------------------
|
||||
|
||||
logic busy;
|
||||
|
||||
logic [31:0] dac_pulse_width;
|
||||
logic [31:0] dac_pulse_period;
|
||||
logic [DAC_DATA_WIDTH-1:0] dac_pulse_height;
|
||||
logic [15:0] dac_pulse_num;
|
||||
|
||||
logic [31:0] adc_pulse_period;
|
||||
logic [15:0] adc_pulse_num;
|
||||
logic [31:0] adc_window_size;
|
||||
|
||||
logic dac_start;
|
||||
logic adc_start;
|
||||
logic dac_rst;
|
||||
logic adc_rst;
|
||||
|
||||
//------------------------------------------------------------
|
||||
// DUT
|
||||
//------------------------------------------------------------
|
||||
|
||||
control #(
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH)
|
||||
) dut (
|
||||
.ctrl_clk (ctrl_clk),
|
||||
.dac_clk_in (dac_clk_in),
|
||||
.adc_clk_in (adc_clk_in),
|
||||
|
||||
.rst_n (rst_n),
|
||||
.rst_soft (rst_soft),
|
||||
|
||||
.finish (finish),
|
||||
|
||||
.cfg_bus_input (cfg_bus_input),
|
||||
.cfg_bus_valid (cfg_bus_valid),
|
||||
|
||||
.start (start),
|
||||
|
||||
.busy (busy),
|
||||
|
||||
.dac_pulse_width (dac_pulse_width),
|
||||
.dac_pulse_period (dac_pulse_period),
|
||||
.dac_pulse_height (dac_pulse_height),
|
||||
.dac_pulse_num (dac_pulse_num),
|
||||
|
||||
.adc_pulse_period (adc_pulse_period),
|
||||
.adc_pulse_num (adc_pulse_num),
|
||||
.adc_window_size (adc_window_size),
|
||||
|
||||
.dac_start (dac_start),
|
||||
.adc_start (adc_start),
|
||||
.dac_rst (dac_rst),
|
||||
.adc_rst (adc_rst)
|
||||
);
|
||||
|
||||
//------------------------------------------------------------
|
||||
// pulse counters and monitors for testing
|
||||
//------------------------------------------------------------
|
||||
|
||||
int dac_rst_count;
|
||||
int adc_rst_count;
|
||||
int dac_start_count;
|
||||
@ -93,9 +111,13 @@ module tb_control;
|
||||
if (!rst_n) begin
|
||||
dac_rst_count <= 0;
|
||||
dac_start_count <= 0;
|
||||
end else begin
|
||||
if (dac_rst) dac_rst_count <= dac_rst_count + 1;
|
||||
if (dac_start) dac_start_count <= dac_start_count + 1;
|
||||
end
|
||||
else begin
|
||||
if (dac_rst)
|
||||
dac_rst_count <= dac_rst_count + 1;
|
||||
|
||||
if (dac_start)
|
||||
dac_start_count <= dac_start_count + 1;
|
||||
end
|
||||
end
|
||||
|
||||
@ -103,84 +125,113 @@ module tb_control;
|
||||
if (!rst_n) begin
|
||||
adc_rst_count <= 0;
|
||||
adc_start_count <= 0;
|
||||
end else begin
|
||||
if (adc_rst) adc_rst_count <= adc_rst_count + 1;
|
||||
if (adc_start) adc_start_count <= adc_start_count + 1;
|
||||
end
|
||||
else begin
|
||||
if (adc_rst)
|
||||
adc_rst_count <= adc_rst_count + 1;
|
||||
|
||||
if (adc_start)
|
||||
adc_start_count <= adc_start_count + 1;
|
||||
end
|
||||
end
|
||||
|
||||
|
||||
// some helpers for axi
|
||||
task automatic axis_send_byte(input logic [7:0] data, input logic last);
|
||||
begin
|
||||
@(negedge eth_clk_in);
|
||||
s_axis_tdata <= data;
|
||||
s_axis_tvalid <= 1'b1;
|
||||
s_axis_tlast <= last;
|
||||
|
||||
@(posedge eth_clk_in);
|
||||
while (!s_axis_tready) begin
|
||||
@(posedge eth_clk_in);
|
||||
end
|
||||
|
||||
s_axis_tvalid <= 1'b0;
|
||||
s_axis_tlast <= 1'b0;
|
||||
s_axis_tdata <= '0;
|
||||
end
|
||||
endtask
|
||||
//------------------------------------------------------------
|
||||
// helpers
|
||||
//------------------------------------------------------------
|
||||
|
||||
task automatic send_cmd(input logic [7:0] cmd);
|
||||
begin
|
||||
axis_send_byte(cmd, 1'b1);
|
||||
end
|
||||
begin
|
||||
@(negedge ctrl_clk);
|
||||
|
||||
case (cmd)
|
||||
|
||||
8'h0F: begin
|
||||
rst_soft <= 1'b1;
|
||||
|
||||
@(posedge ctrl_clk);
|
||||
|
||||
rst_soft <= 1'b0;
|
||||
end
|
||||
|
||||
8'hF0: begin
|
||||
start <= 1'b1;
|
||||
|
||||
@(posedge ctrl_clk);
|
||||
|
||||
start <= 1'b0;
|
||||
end
|
||||
|
||||
default:
|
||||
$fatal(1, "Unsupported command %h", cmd);
|
||||
|
||||
endcase
|
||||
end
|
||||
endtask
|
||||
|
||||
task automatic send_set_data(
|
||||
input logic [31:0] pulse_width,
|
||||
input logic [31:0] pulse_period,
|
||||
input logic [15:0] pulse_num,
|
||||
input logic [15:0] pulse_height_raw,
|
||||
input logic [31:0] pulse_period_adc
|
||||
);
|
||||
logic [127:0] payload;
|
||||
int i;
|
||||
begin
|
||||
// little-endian payload layout:
|
||||
// [31:0] pulse_width
|
||||
// [63:32] pulse_period
|
||||
// [79:64] pulse_num
|
||||
// [95:80] pulse_height_raw
|
||||
// [127:96] pulse_period_ADC
|
||||
|
||||
payload = {pulse_period_adc, pulse_height_raw, pulse_num, pulse_period, pulse_width};
|
||||
input logic [31:0] pulse_width,
|
||||
input logic [31:0] pulse_period,
|
||||
input logic [15:0] pulse_num,
|
||||
input logic [15:0] pulse_height_raw,
|
||||
input logic [31:0] pulse_period_adc,
|
||||
input logic [31:0] window_size
|
||||
);
|
||||
|
||||
axis_send_byte(8'h88, 1'b0); // CMD_SET_DATA
|
||||
logic [159:0] payload;
|
||||
|
||||
for (i = 0; i < 16; i++) begin
|
||||
axis_send_byte(payload[i*8 +: 8], (i == 15));
|
||||
end
|
||||
end
|
||||
endtask
|
||||
begin
|
||||
|
||||
payload = {
|
||||
window_size,
|
||||
pulse_period_adc,
|
||||
pulse_height_raw,
|
||||
pulse_num,
|
||||
pulse_period,
|
||||
pulse_width
|
||||
};
|
||||
|
||||
@(negedge ctrl_clk);
|
||||
|
||||
cfg_bus_input <= payload;
|
||||
cfg_bus_valid <= 1'b1;
|
||||
|
||||
@(posedge ctrl_clk);
|
||||
|
||||
cfg_bus_valid <= 1'b0;
|
||||
cfg_bus_input <= '0;
|
||||
|
||||
end
|
||||
endtask
|
||||
|
||||
task automatic pulse_finish;
|
||||
begin
|
||||
@(posedge adc_clk_in);
|
||||
finish <= 1'b1;
|
||||
|
||||
@(posedge adc_clk_in);
|
||||
finish <= 1'b0;
|
||||
end
|
||||
endtask
|
||||
|
||||
|
||||
//------------------------------------------------------------
|
||||
// waiters
|
||||
//------------------------------------------------------------
|
||||
|
||||
task automatic wait_dac_rst_count(input int expected, input int max_cycles = 100);
|
||||
int i;
|
||||
begin
|
||||
for (i = 0; i < max_cycles; i++) begin
|
||||
@(posedge dac_clk_in);
|
||||
if (dac_rst_count >= expected) return;
|
||||
|
||||
if (dac_rst_count >= expected)
|
||||
return;
|
||||
end
|
||||
$fatal(1, "Timeout waiting for dac_rst_count >= %0d, current=%0d", expected, dac_rst_count);
|
||||
|
||||
$fatal(1,
|
||||
"Timeout waiting for dac_rst_count >= %0d, current=%0d",
|
||||
expected,
|
||||
dac_rst_count
|
||||
);
|
||||
end
|
||||
endtask
|
||||
|
||||
@ -189,9 +240,16 @@ module tb_control;
|
||||
begin
|
||||
for (i = 0; i < max_cycles; i++) begin
|
||||
@(posedge adc_clk_in);
|
||||
if (adc_rst_count >= expected) return;
|
||||
|
||||
if (adc_rst_count >= expected)
|
||||
return;
|
||||
end
|
||||
$fatal(1, "Timeout waiting for adc_rst_count >= %0d, current=%0d", expected, adc_rst_count);
|
||||
|
||||
$fatal(1,
|
||||
"Timeout waiting for adc_rst_count >= %0d, current=%0d",
|
||||
expected,
|
||||
adc_rst_count
|
||||
);
|
||||
end
|
||||
endtask
|
||||
|
||||
@ -200,9 +258,16 @@ module tb_control;
|
||||
begin
|
||||
for (i = 0; i < max_cycles; i++) begin
|
||||
@(posedge dac_clk_in);
|
||||
if (dac_start_count >= expected) return;
|
||||
|
||||
if (dac_start_count >= expected)
|
||||
return;
|
||||
end
|
||||
$fatal(1, "Timeout waiting for dac_start_count >= %0d, current=%0d", expected, dac_start_count);
|
||||
|
||||
$fatal(1,
|
||||
"Timeout waiting for dac_start_count >= %0d, current=%0d",
|
||||
expected,
|
||||
dac_start_count
|
||||
);
|
||||
end
|
||||
endtask
|
||||
|
||||
@ -211,165 +276,290 @@ module tb_control;
|
||||
begin
|
||||
for (i = 0; i < max_cycles; i++) begin
|
||||
@(posedge adc_clk_in);
|
||||
if (adc_start_count >= expected) return;
|
||||
end
|
||||
$fatal(1, "Timeout waiting for adc_start_count >= %0d, current=%0d", expected, adc_start_count);
|
||||
end
|
||||
endtask
|
||||
|
||||
task automatic wait_cfg_applied(
|
||||
input logic [31:0] exp_pulse_width,
|
||||
input logic [31:0] exp_pulse_period,
|
||||
input logic [15:0] exp_pulse_num,
|
||||
input logic [15:0] exp_pulse_height_raw,
|
||||
input logic [31:0] exp_pulse_period_adc,
|
||||
input int max_cycles = 200
|
||||
);
|
||||
logic [DAC_DATA_WIDTH-1:0] exp_dac_height;
|
||||
int i;
|
||||
begin
|
||||
exp_dac_height = exp_pulse_height_raw[DAC_DATA_WIDTH-1:0];
|
||||
|
||||
for (i = 0; i < max_cycles; i++) begin
|
||||
@(posedge eth_clk_in);
|
||||
if ((dac_pulse_width === exp_pulse_width ) &&
|
||||
(dac_pulse_period === exp_pulse_period) &&
|
||||
(dac_pulse_num === exp_pulse_num ) &&
|
||||
(dac_pulse_height === exp_dac_height ) &&
|
||||
(adc_pulse_period === exp_pulse_period_adc) &&
|
||||
(adc_pulse_num === exp_pulse_num )) begin
|
||||
if (adc_start_count >= expected)
|
||||
return;
|
||||
end
|
||||
end
|
||||
|
||||
$fatal(1,
|
||||
"Timeout waiting config outputs. Got: dac_width=%h dac_period=%h dac_num=%h dac_height=%h adc_period=%h adc_num=%h",
|
||||
dac_pulse_width, dac_pulse_period, dac_pulse_num, dac_pulse_height,
|
||||
adc_pulse_period, adc_pulse_num
|
||||
"Timeout waiting for adc_start_count >= %0d, current=%0d",
|
||||
expected,
|
||||
adc_start_count
|
||||
);
|
||||
end
|
||||
endtask
|
||||
|
||||
task automatic wait_cfg_applied(
|
||||
|
||||
input logic [31:0] exp_pulse_width,
|
||||
input logic [31:0] exp_pulse_period,
|
||||
input logic [15:0] exp_pulse_num,
|
||||
input logic [15:0] exp_pulse_height_raw,
|
||||
input logic [31:0] exp_pulse_period_adc,
|
||||
input logic [31:0] exp_window_size,
|
||||
input int max_cycles = 200
|
||||
);
|
||||
|
||||
logic [DAC_DATA_WIDTH-1:0] exp_height;
|
||||
|
||||
int i;
|
||||
|
||||
begin
|
||||
|
||||
exp_height = exp_pulse_height_raw[DAC_DATA_WIDTH-1:0];
|
||||
|
||||
for(i=0;i<max_cycles;i++) begin
|
||||
|
||||
@(posedge ctrl_clk);
|
||||
|
||||
if(
|
||||
|
||||
dac_pulse_width == exp_pulse_width &&
|
||||
dac_pulse_period == exp_pulse_period &&
|
||||
dac_pulse_num == exp_pulse_num &&
|
||||
dac_pulse_height == exp_height &&
|
||||
|
||||
adc_pulse_period == exp_pulse_period_adc &&
|
||||
adc_pulse_num == exp_pulse_num &&
|
||||
adc_window_size == exp_window_size
|
||||
|
||||
)
|
||||
return;
|
||||
|
||||
end
|
||||
|
||||
$fatal("Configuration timeout");
|
||||
|
||||
end
|
||||
endtask
|
||||
|
||||
//------------------------------------------------------------
|
||||
// Test sequence
|
||||
//------------------------------------------------------------
|
||||
|
||||
logic [31:0] test_pulse_width;
|
||||
logic [31:0] test_pulse_period;
|
||||
logic [15:0] test_pulse_num;
|
||||
logic [15:0] test_pulse_height_raw;
|
||||
logic [31:0] test_pulse_period_adc;
|
||||
logic [31:0] test_window_size;
|
||||
|
||||
initial begin
|
||||
// defaults
|
||||
rst_n = 1'b0;
|
||||
s_axis_tdata = '0;
|
||||
s_axis_tvalid = 1'b0;
|
||||
s_axis_tlast = 1'b0;
|
||||
rst_soft = 1'b0;
|
||||
|
||||
start = 1'b0;
|
||||
finish = 1'b0;
|
||||
|
||||
cfg_bus_input = '0;
|
||||
cfg_bus_valid = 1'b0;
|
||||
|
||||
test_pulse_width = 32'h11223344;
|
||||
test_pulse_period = 32'h55667788;
|
||||
test_pulse_num = 16'hA1B2;
|
||||
test_pulse_height_raw = 16'h0CDE; // for DAC_DATA_WIDTH=12 => 12'hCDE
|
||||
test_pulse_period_adc = 32'h50607080;
|
||||
test_window_size = 32'hABCDEF55;
|
||||
|
||||
repeat (10) @(posedge eth_clk_in);
|
||||
repeat (10) @(posedge ctrl_clk);
|
||||
rst_n = 1'b1;
|
||||
|
||||
repeat (10) @(posedge eth_clk_in);
|
||||
repeat (10) @(posedge ctrl_clk);
|
||||
|
||||
//--------------------------------------------------------
|
||||
// TEST 1: soft_reset
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] TEST 1: soft_reset", $time);
|
||||
|
||||
send_cmd(8'h0F);
|
||||
|
||||
wait_dac_rst_count(1);
|
||||
wait_adc_rst_count(1);
|
||||
|
||||
if (dac_rst_count != 1) begin
|
||||
$fatal(1, "Expected exactly one dac_rst pulse after first soft_reset, got %0d", dac_rst_count);
|
||||
$fatal(1,
|
||||
"Expected exactly one dac_rst pulse after first soft_reset, got %0d",
|
||||
dac_rst_count
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_rst_count != 1) begin
|
||||
$fatal(1, "Expected exactly one adc_rst pulse after first soft_reset, got %0d", adc_rst_count);
|
||||
$fatal(1,
|
||||
"Expected exactly one adc_rst pulse after first soft_reset, got %0d",
|
||||
adc_rst_count
|
||||
);
|
||||
end
|
||||
|
||||
$display("[%0t] TEST 1 passed", $time);
|
||||
|
||||
//--------------------------------------------------------
|
||||
// TEST 2: set_data
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] TEST 2: set_data", $time);
|
||||
|
||||
send_set_data(
|
||||
test_pulse_width,
|
||||
test_pulse_period,
|
||||
test_pulse_num,
|
||||
test_pulse_height_raw,
|
||||
test_pulse_period_adc
|
||||
);
|
||||
|
||||
test_pulse_width,
|
||||
test_pulse_period,
|
||||
test_pulse_num,
|
||||
test_pulse_height_raw,
|
||||
test_pulse_period_adc,
|
||||
test_window_size
|
||||
|
||||
);
|
||||
|
||||
wait_cfg_applied(
|
||||
test_pulse_width,
|
||||
test_pulse_period,
|
||||
test_pulse_num,
|
||||
test_pulse_height_raw,
|
||||
test_pulse_period_adc
|
||||
);
|
||||
|
||||
test_pulse_width,
|
||||
test_pulse_period,
|
||||
test_pulse_num,
|
||||
test_pulse_height_raw,
|
||||
test_pulse_period_adc,
|
||||
test_window_size
|
||||
|
||||
);
|
||||
|
||||
if (dac_pulse_width !== 32'h11223344) begin
|
||||
$fatal(1, "dac_pulse_width mismatch: got %h expected %h", dac_pulse_width, 32'h11223344);
|
||||
$fatal(1,
|
||||
"dac_pulse_width mismatch: got %h expected %h",
|
||||
dac_pulse_width,
|
||||
32'h11223344
|
||||
);
|
||||
end
|
||||
|
||||
if (dac_pulse_period !== 32'h55667788) begin
|
||||
$fatal(1, "dac_pulse_period mismatch: got %h expected %h", dac_pulse_period, 32'h55667788);
|
||||
$fatal(1,
|
||||
"dac_pulse_period mismatch: got %h expected %h",
|
||||
dac_pulse_period,
|
||||
32'h55667788
|
||||
);
|
||||
end
|
||||
|
||||
if (dac_pulse_num !== 16'hA1B2) begin
|
||||
$fatal(1, "dac_pulse_num mismatch: got %h expected %h", dac_pulse_num, 16'hA1B2);
|
||||
$fatal(1,
|
||||
"dac_pulse_num mismatch: got %h expected %h",
|
||||
dac_pulse_num,
|
||||
16'hA1B2
|
||||
);
|
||||
end
|
||||
|
||||
if (dac_pulse_height !== 12'hCDE) begin
|
||||
$fatal(1, "dac_pulse_height mismatch: got %h expected %h", dac_pulse_height, 12'hCDE);
|
||||
$fatal(1,
|
||||
"dac_pulse_height mismatch: got %h expected %h",
|
||||
dac_pulse_height,
|
||||
12'hCDE
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_pulse_period !== 32'h50607080) begin
|
||||
$fatal(1, "adc_pulse_period mismatch: got %h expected %h", adc_pulse_period, 32'h50607080);
|
||||
$fatal(1,
|
||||
"adc_pulse_period mismatch: got %h expected %h",
|
||||
adc_pulse_period,
|
||||
32'h50607080
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_pulse_num !== 16'hA1B2) begin
|
||||
$fatal(1, "adc_pulse_num mismatch: got %h expected %h", adc_pulse_num, 16'hA1B2);
|
||||
$fatal(1,
|
||||
"adc_pulse_num mismatch: got %h expected %h",
|
||||
adc_pulse_num,
|
||||
16'hA1B2
|
||||
);
|
||||
end
|
||||
|
||||
if(adc_window_size != test_window_size)
|
||||
|
||||
$fatal(
|
||||
"adc_window_size mismatch. got=%h expected=%h",
|
||||
adc_window_size,
|
||||
test_window_size
|
||||
);
|
||||
|
||||
$display("[%0t] TEST 2 passed", $time);
|
||||
|
||||
repeat (20) @(posedge eth_clk_in);
|
||||
|
||||
repeat (20) @(posedge ctrl_clk);
|
||||
|
||||
//--------------------------------------------------------
|
||||
// TEST 3: start
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] TEST 3: start", $time);
|
||||
|
||||
send_cmd(8'hF0);
|
||||
|
||||
wait_dac_start_count(1);
|
||||
wait_adc_start_count(1);
|
||||
|
||||
if (dac_start_count != 1) begin
|
||||
$fatal(1, "Expected exactly one dac_start pulse after first start, got %0d", dac_start_count);
|
||||
$fatal(1,
|
||||
"Expected exactly one dac_start pulse after first start, got %0d",
|
||||
dac_start_count
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_start_count != 1) begin
|
||||
$fatal(1, "Expected exactly one adc_start pulse after first start, got %0d", adc_start_count);
|
||||
$fatal(1,
|
||||
"Expected exactly one adc_start pulse after first start, got %0d",
|
||||
adc_start_count
|
||||
);
|
||||
end
|
||||
|
||||
if (!busy) begin
|
||||
$fatal(1,
|
||||
"busy must be asserted after start"
|
||||
);
|
||||
end
|
||||
|
||||
$display("[%0t] TEST 3 start pulses passed", $time);
|
||||
|
||||
//--------------------------------------------------------
|
||||
// release busy by finish pulse from ADC domain
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] Sending finish pulse", $time);
|
||||
|
||||
pulse_finish();
|
||||
|
||||
// a bit of wait for finish CDC back to ETH
|
||||
repeat (20) @(posedge eth_clk_in);
|
||||
repeat (20) @(posedge ctrl_clk);
|
||||
|
||||
if (busy) begin
|
||||
$fatal(1,
|
||||
"busy was not cleared after finish pulse"
|
||||
);
|
||||
end
|
||||
|
||||
//--------------------------------------------------------
|
||||
// sanity check that commands are accepted again after finish
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] TEST 4: soft_reset after finish", $time);
|
||||
|
||||
send_cmd(8'h0F);
|
||||
|
||||
wait_dac_rst_count(2);
|
||||
wait_adc_rst_count(2);
|
||||
|
||||
if (dac_rst_count != 2) begin
|
||||
$fatal(1, "Expected exactly two dac_rst pulses total, got %0d", dac_rst_count);
|
||||
$fatal(1,
|
||||
"Expected exactly two dac_rst pulses total, got %0d",
|
||||
dac_rst_count
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_rst_count != 2) begin
|
||||
$fatal(1, "Expected exactly two adc_rst pulses total, got %0d", adc_rst_count);
|
||||
$fatal(1,
|
||||
"Expected exactly two adc_rst pulses total, got %0d",
|
||||
adc_rst_count
|
||||
);
|
||||
end
|
||||
|
||||
$display("[%0t] TEST 4 passed", $time);
|
||||
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("==============================================");
|
||||
$display("ALL BASIC TESTS PASSED");
|
||||
$display("dac_rst_count = %0d", dac_rst_count);
|
||||
@ -378,8 +568,170 @@ module tb_control;
|
||||
$display("adc_start_count = %0d", adc_start_count);
|
||||
$display("==============================================");
|
||||
|
||||
#100;
|
||||
#50;
|
||||
|
||||
//--------------------------------------------------------
|
||||
// TEST 2.1: set_data
|
||||
//--------------------------------------------------------
|
||||
|
||||
test_pulse_width = 32'h12121212;
|
||||
test_pulse_period = 32'h34343434;
|
||||
test_pulse_num = 16'h1A2B;
|
||||
test_pulse_height_raw = 16'hC0ED; // for DAC_DATA_WIDTH=12 => 12'hCDE
|
||||
test_pulse_period_adc = 32'h56565656;
|
||||
test_window_size = 32'h01020304;
|
||||
|
||||
$display("[%0t] TEST 2.1: set_data", $time);
|
||||
|
||||
send_set_data(
|
||||
test_pulse_width,
|
||||
test_pulse_period,
|
||||
test_pulse_num,
|
||||
test_pulse_height_raw,
|
||||
test_pulse_period_adc,
|
||||
test_window_size
|
||||
);
|
||||
|
||||
wait_cfg_applied(
|
||||
test_pulse_width,
|
||||
test_pulse_period,
|
||||
test_pulse_num,
|
||||
test_pulse_height_raw,
|
||||
test_pulse_period_adc,
|
||||
test_window_size
|
||||
);
|
||||
|
||||
if (dac_pulse_width !== 32'h12121212) begin
|
||||
$fatal(1,
|
||||
"dac_pulse_width mismatch: got %h expected %h",
|
||||
dac_pulse_width,
|
||||
32'h12121212
|
||||
);
|
||||
end
|
||||
|
||||
if (dac_pulse_period !== 32'h34343434) begin
|
||||
$fatal(1,
|
||||
"dac_pulse_period mismatch: got %h expected %h",
|
||||
dac_pulse_period,
|
||||
32'h34343434
|
||||
);
|
||||
end
|
||||
|
||||
if (dac_pulse_num !== 16'h1A2B) begin
|
||||
$fatal(1,
|
||||
"dac_pulse_num mismatch: got %h expected %h",
|
||||
dac_pulse_num,
|
||||
16'h1A2B
|
||||
);
|
||||
end
|
||||
|
||||
if (dac_pulse_height !== 12'hC0ED) begin
|
||||
$fatal(1,
|
||||
"dac_pulse_height mismatch: got %h expected %h",
|
||||
dac_pulse_height,
|
||||
12'hC0ED
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_pulse_period !== 32'h56565656) begin
|
||||
$fatal(1,
|
||||
"adc_pulse_period mismatch: got %h expected %h",
|
||||
adc_pulse_period,
|
||||
32'h56565656
|
||||
);
|
||||
end
|
||||
|
||||
$display("[%0t] TEST 2.1 passed", $time);
|
||||
|
||||
repeat (20) @(posedge ctrl_clk);
|
||||
|
||||
//--------------------------------------------------------
|
||||
// TEST 3.1: start
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] TEST 3.1: start", $time);
|
||||
|
||||
send_cmd(8'hF0);
|
||||
|
||||
wait_dac_start_count(2);
|
||||
wait_adc_start_count(2);
|
||||
|
||||
if (dac_start_count != 2) begin
|
||||
$fatal(1,
|
||||
"Expected exactly one dac_start pulse after first start, got %0d",
|
||||
dac_start_count
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_start_count != 2) begin
|
||||
$fatal(1,
|
||||
"Expected exactly one adc_start pulse after first start, got %0d",
|
||||
adc_start_count
|
||||
);
|
||||
end
|
||||
|
||||
if (!busy) begin
|
||||
$fatal(1,
|
||||
"busy must be asserted after start"
|
||||
);
|
||||
end
|
||||
|
||||
$display("[%0t] TEST 3.1 start pulses passed", $time);
|
||||
|
||||
//--------------------------------------------------------
|
||||
// release busy by finish pulse from ADC domain
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] Sending finish pulse", $time);
|
||||
|
||||
pulse_finish();
|
||||
|
||||
repeat (20) @(posedge ctrl_clk);
|
||||
|
||||
if (busy) begin
|
||||
$fatal(1,
|
||||
"busy was not cleared after finish pulse"
|
||||
);
|
||||
end
|
||||
|
||||
//--------------------------------------------------------
|
||||
// sanity check that commands are accepted again after finish
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("[%0t] TEST 4.1: soft_reset after finish", $time);
|
||||
|
||||
send_cmd(8'h0F);
|
||||
|
||||
wait_dac_rst_count(2);
|
||||
wait_adc_rst_count(2);
|
||||
|
||||
if (dac_rst_count != 2) begin
|
||||
$fatal(1,
|
||||
"Expected exactly two dac_rst pulses total, got %0d",
|
||||
dac_rst_count
|
||||
);
|
||||
end
|
||||
|
||||
if (adc_rst_count != 2) begin
|
||||
$fatal(1,
|
||||
"Expected exactly two adc_rst pulses total, got %0d",
|
||||
adc_rst_count
|
||||
);
|
||||
end
|
||||
|
||||
$display("[%0t] TEST 4.1 passed", $time);
|
||||
|
||||
//--------------------------------------------------------
|
||||
|
||||
$display("==============================================");
|
||||
$display("ALL BASIC TESTS PASSED");
|
||||
$display("dac_rst_count = %0d", dac_rst_count);
|
||||
$display("adc_rst_count = %0d", adc_rst_count);
|
||||
$display("dac_start_count = %0d", dac_start_count);
|
||||
$display("adc_start_count = %0d", adc_start_count);
|
||||
$display("==============================================");
|
||||
$finish;
|
||||
|
||||
end
|
||||
|
||||
endmodule
|
||||
236
rtl/controller/tests/tb_control_behav.wcfg
Normal file
236
rtl/controller/tests/tb_control_behav.wcfg
Normal file
@ -0,0 +1,236 @@
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<wave_config>
|
||||
<wave_state>
|
||||
</wave_state>
|
||||
<db_ref_list>
|
||||
<db_ref path="tb_control_behav.wdb" id="1">
|
||||
<top_modules>
|
||||
<top_module name="glbl" />
|
||||
<top_module name="tb_control" />
|
||||
</top_modules>
|
||||
</db_ref>
|
||||
</db_ref_list>
|
||||
<zoom_setting>
|
||||
<ZoomStartTime time="160.614 ns"></ZoomStartTime>
|
||||
<ZoomEndTime time="1,564.737 ns"></ZoomEndTime>
|
||||
<Cursor1Time time="1,330.716 ns"></Cursor1Time>
|
||||
</zoom_setting>
|
||||
<column_width_setting>
|
||||
<NameColumnWidth column_width="479"></NameColumnWidth>
|
||||
<ValueColumnWidth column_width="116"></ValueColumnWidth>
|
||||
</column_width_setting>
|
||||
<WVObjectSize size="34" />
|
||||
<wvobject fp_name="/tb_control/dac_clk_in" type="logic">
|
||||
<obj_property name="ElementShortName">dac_clk_in</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_clk_in</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_clk_in" type="logic">
|
||||
<obj_property name="ElementShortName">adc_clk_in</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_clk_in</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/rst_n" type="logic">
|
||||
<obj_property name="ElementShortName">rst_n</obj_property>
|
||||
<obj_property name="ObjectShortName">rst_n</obj_property>
|
||||
<obj_property name="CustomSignalColor">#800080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/rst_soft" type="logic">
|
||||
<obj_property name="ElementShortName">rst_soft</obj_property>
|
||||
<obj_property name="ObjectShortName">rst_soft</obj_property>
|
||||
<obj_property name="CustomSignalColor">#008080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/start" type="logic">
|
||||
<obj_property name="ElementShortName">start</obj_property>
|
||||
<obj_property name="ObjectShortName">start</obj_property>
|
||||
<obj_property name="CustomSignalColor">#E0FFFF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/adc_start_pulse" type="logic">
|
||||
<obj_property name="ElementShortName">adc_start_pulse</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_start_pulse</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/dac_start_pulse" type="logic">
|
||||
<obj_property name="ElementShortName">dac_start_pulse</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_start_pulse</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/busy" type="logic">
|
||||
<obj_property name="ElementShortName">busy</obj_property>
|
||||
<obj_property name="ObjectShortName">busy</obj_property>
|
||||
<obj_property name="CustomSignalColor">#E0FFFF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/finish" type="logic">
|
||||
<obj_property name="ElementShortName">finish</obj_property>
|
||||
<obj_property name="ObjectShortName">finish</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FAAFBE</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/finish_pulse" type="logic">
|
||||
<obj_property name="ElementShortName">finish_pulse</obj_property>
|
||||
<obj_property name="ObjectShortName">finish_pulse</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/cfg_bus_valid" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_bus_valid</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_bus_valid</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF0080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/cfg_bus_input" type="array">
|
||||
<obj_property name="ElementShortName">cfg_bus_input[159:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_bus_input[159:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF0080</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_width" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_width[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_width[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_period" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_height" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_height[11:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_height[11:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
<obj_property name="Radix">HEXRADIX</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_pulse_num" type="array">
|
||||
<obj_property name="ElementShortName">dac_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_pulse_period" type="array">
|
||||
<obj_property name="ElementShortName">adc_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_pulse_period[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_pulse_num" type="array">
|
||||
<obj_property name="ElementShortName">adc_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_pulse_num[15:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_window_size" type="array">
|
||||
<obj_property name="ElementShortName">adc_window_size[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_window_size[31:0]</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_start" type="logic">
|
||||
<obj_property name="ElementShortName">dac_start</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_start</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_start" type="logic">
|
||||
<obj_property name="ElementShortName">adc_start</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_start</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_rst" type="logic">
|
||||
<obj_property name="ElementShortName">dac_rst</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_rst</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFA500</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_rst" type="logic">
|
||||
<obj_property name="ElementShortName">adc_rst</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_rst</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="group499" type="group">
|
||||
<obj_property name="label">tb signals</obj_property>
|
||||
<obj_property name="DisplayName">label</obj_property>
|
||||
<wvobject fp_name="/tb_control/dac_rst_count" type="array">
|
||||
<obj_property name="ElementShortName">dac_rst_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_rst_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_rst_count" type="array">
|
||||
<obj_property name="ElementShortName">adc_rst_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_rst_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dac_start_count" type="array">
|
||||
<obj_property name="ElementShortName">dac_start_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">dac_start_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/adc_start_count" type="array">
|
||||
<obj_property name="ElementShortName">adc_start_count[31:0]</obj_property>
|
||||
<obj_property name="ObjectShortName">adc_start_count[31:0]</obj_property>
|
||||
<obj_property name="CustomSignalColor">#F0E68C</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_toggle_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_toggle_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_toggle_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFFF00</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_toggle_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_toggle_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_toggle_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FFFF00</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_toggle_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_toggle_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_toggle_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF00FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_toggle_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_toggle_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_toggle_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#FF00FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_wait_adc_ack" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_wait_adc_ack</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_wait_adc_ack</obj_property>
|
||||
<obj_property name="CustomSignalColor">#0000FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_wait_dac_ack" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_wait_dac_ack</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_wait_dac_ack</obj_property>
|
||||
<obj_property name="CustomSignalColor">#0000FF</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_pulse_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_pulse_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_pulse_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#808000</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_req_pulse_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_req_pulse_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_req_pulse_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#808000</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_pulse_adc" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_pulse_adc</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_pulse_adc</obj_property>
|
||||
<obj_property name="CustomSignalColor">#DCDCDC</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
<wvobject fp_name="/tb_control/dut/cfg_ack_pulse_dac" type="logic">
|
||||
<obj_property name="ElementShortName">cfg_ack_pulse_dac</obj_property>
|
||||
<obj_property name="ObjectShortName">cfg_ack_pulse_dac</obj_property>
|
||||
<obj_property name="CustomSignalColor">#DCDCDC</obj_property>
|
||||
<obj_property name="UseCustomSignalColor">true</obj_property>
|
||||
</wvobject>
|
||||
</wave_config>
|
||||
338
rtl/controller/tests/tb_controller_wrapper_axil.sv
Normal file
338
rtl/controller/tests/tb_controller_wrapper_axil.sv
Normal file
@ -0,0 +1,338 @@
|
||||
module tb_controller_wrapper_axil #(
|
||||
parameter int unsigned ADDR_W = 16,
|
||||
parameter int unsigned DATA_W = 32,
|
||||
parameter int unsigned USER_W = 1,
|
||||
|
||||
parameter int unsigned DAC_DATA_WIDTH = 12,
|
||||
|
||||
parameter int unsigned AXI_ADDR_WIDTH = 16,
|
||||
parameter int unsigned AXIS_ID_WIDTH = 8,
|
||||
parameter int unsigned LEN_WIDTH = 20,
|
||||
parameter int unsigned AXIS_USER_WIDTH = 1,
|
||||
parameter int unsigned AXIS_DEST_WIDTH = 8,
|
||||
parameter int unsigned TAG_WIDTH = 8,
|
||||
|
||||
parameter int unsigned READ_DESC_WIDTH = AXI_ADDR_WIDTH + LEN_WIDTH + TAG_WIDTH + AXIS_ID_WIDTH + AXIS_DEST_WIDTH + AXIS_USER_WIDTH,
|
||||
parameter int unsigned WRITE_DESC_WIDTH = AXI_ADDR_WIDTH + LEN_WIDTH + TAG_WIDTH,
|
||||
|
||||
parameter int unsigned READ_STATUS_WIDTH = TAG_WIDTH + 4,
|
||||
parameter int unsigned WRITE_STATUS_WIDTH = LEN_WIDTH + TAG_WIDTH + AXIS_ID_WIDTH + AXIS_DEST_WIDTH + AXIS_USER_WIDTH + 4,
|
||||
|
||||
// ceil(width / 8), чтобы keep/strb не стали слишком узкими для нестандартных ширин типа 12/49/61.
|
||||
parameter int unsigned READ_DESC_KEEP_W = (READ_DESC_WIDTH + 7) / 8,
|
||||
parameter int unsigned WRITE_DESC_KEEP_W = (WRITE_DESC_WIDTH + 7) / 8,
|
||||
parameter int unsigned READ_STATUS_KEEP_W = (READ_STATUS_WIDTH + 7) / 8,
|
||||
parameter int unsigned WRITE_STATUS_KEEP_W = (WRITE_STATUS_WIDTH + 7) / 8
|
||||
)(
|
||||
input logic ctrl_clk,
|
||||
input logic rst,
|
||||
|
||||
input logic [ADDR_W-1:0] s_axil_awaddr,
|
||||
input logic [2:0] s_axil_awprot,
|
||||
input logic s_axil_awvalid,
|
||||
output logic s_axil_awready,
|
||||
|
||||
input logic [DATA_W-1:0] s_axil_wdata,
|
||||
input logic [DATA_W/8-1:0] s_axil_wstrb,
|
||||
input logic s_axil_wvalid,
|
||||
output logic s_axil_wready,
|
||||
|
||||
output logic [1:0] s_axil_bresp,
|
||||
output logic s_axil_bvalid,
|
||||
input logic s_axil_bready,
|
||||
|
||||
input logic [ADDR_W-1:0] s_axil_araddr,
|
||||
input logic [2:0] s_axil_arprot,
|
||||
input logic s_axil_arvalid,
|
||||
output logic s_axil_arready,
|
||||
|
||||
output logic [DATA_W-1:0] s_axil_rdata,
|
||||
output logic [1:0] s_axil_rresp,
|
||||
output logic s_axil_rvalid,
|
||||
input logic s_axil_rready,
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// Минимальный flat-view для DMA AXIS портов.
|
||||
// Наружу оставлены только tdata/tvalid/tready в старом стиле.
|
||||
// Все остальные AXIS поля внутри обёртки завязаны на безопасные значения.
|
||||
// ---------------------------------------------------------------------------
|
||||
|
||||
// DUT master -> testbench: descriptor commands.
|
||||
output logic [READ_DESC_WIDTH-1:0] desc_read_cmd_out,
|
||||
output logic valid_desc_read,
|
||||
input logic ready_desc_read,
|
||||
|
||||
output logic [WRITE_DESC_WIDTH-1:0] desc_write_cmd_out,
|
||||
output logic valid_desc_write,
|
||||
input logic ready_desc_write,
|
||||
|
||||
// testbench -> DUT slave: status commands.
|
||||
input logic [READ_STATUS_WIDTH-1:0] status_read_cmd_in,
|
||||
input logic valid_status_read,
|
||||
output logic ready_status_read,
|
||||
|
||||
input logic [WRITE_STATUS_WIDTH-1:0] status_write_cmd_in,
|
||||
input logic valid_status_write,
|
||||
output logic ready_status_write
|
||||
);
|
||||
|
||||
logic rst_n;
|
||||
assign rst_n = ~rst;
|
||||
|
||||
// Для минимального теста держим все clock domain-ы на одном clock.
|
||||
logic dac_clk_in;
|
||||
logic adc_clk_in;
|
||||
assign dac_clk_in = ctrl_clk;
|
||||
assign adc_clk_in = ctrl_clk;
|
||||
|
||||
logic finish;
|
||||
assign finish = 1'b0;
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// AXI-Lite flat -> axi4l_if
|
||||
// ---------------------------------------------------------------------------
|
||||
|
||||
axi4l_if #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W)
|
||||
) axil_bus (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axi4l_flat_to_if #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W)
|
||||
) u_axil_flat_to_if (
|
||||
.s_axil_awaddr (s_axil_awaddr),
|
||||
.s_axil_awprot (s_axil_awprot),
|
||||
.s_axil_awvalid(s_axil_awvalid),
|
||||
.s_axil_awready(s_axil_awready),
|
||||
|
||||
.s_axil_wdata (s_axil_wdata),
|
||||
.s_axil_wstrb (s_axil_wstrb),
|
||||
.s_axil_wvalid (s_axil_wvalid),
|
||||
.s_axil_wready (s_axil_wready),
|
||||
|
||||
.s_axil_bresp (s_axil_bresp),
|
||||
.s_axil_bvalid (s_axil_bvalid),
|
||||
.s_axil_bready (s_axil_bready),
|
||||
|
||||
.s_axil_araddr (s_axil_araddr),
|
||||
.s_axil_arprot (s_axil_arprot),
|
||||
.s_axil_arvalid(s_axil_arvalid),
|
||||
.s_axil_arready(s_axil_arready),
|
||||
|
||||
.s_axil_rdata (s_axil_rdata),
|
||||
.s_axil_rresp (s_axil_rresp),
|
||||
.s_axil_rvalid (s_axil_rvalid),
|
||||
.s_axil_rready (s_axil_rready),
|
||||
|
||||
.m_axil(axil_bus)
|
||||
);
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// AXIS interfaces for the updated controller_wrapper_axil
|
||||
// ---------------------------------------------------------------------------
|
||||
|
||||
axis_if #(
|
||||
.DATA_W(READ_STATUS_WIDTH),
|
||||
.KEEP_W(READ_STATUS_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) axis_status_read (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axis_if #(
|
||||
.DATA_W(WRITE_STATUS_WIDTH),
|
||||
.KEEP_W(WRITE_STATUS_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) axis_status_write (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axis_if #(
|
||||
.DATA_W(READ_DESC_WIDTH),
|
||||
.KEEP_W(READ_DESC_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) axis_desc_read (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
axis_if #(
|
||||
.DATA_W(WRITE_DESC_WIDTH),
|
||||
.KEEP_W(WRITE_DESC_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) axis_desc_write (
|
||||
.aclk(ctrl_clk),
|
||||
.aresetn(rst_n)
|
||||
);
|
||||
|
||||
// testbench flat status -> DUT AXIS slave ports
|
||||
axis_flat_to_if #(
|
||||
.DATA_W(READ_STATUS_WIDTH),
|
||||
.KEEP_W(READ_STATUS_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) u_status_read_flat_to_if (
|
||||
.s_axis_tdata (status_read_cmd_in),
|
||||
.s_axis_tkeep ({READ_STATUS_KEEP_W{1'b1}}),
|
||||
.s_axis_tstrb ({READ_STATUS_KEEP_W{1'b1}}),
|
||||
.s_axis_tlast (1'b1),
|
||||
.s_axis_tid ('0),
|
||||
.s_axis_tdest ('0),
|
||||
.s_axis_tuser ('0),
|
||||
.s_axis_tvalid(valid_status_read),
|
||||
.s_axis_tready(ready_status_read),
|
||||
|
||||
.m_axis(axis_status_read)
|
||||
);
|
||||
|
||||
axis_flat_to_if #(
|
||||
.DATA_W(WRITE_STATUS_WIDTH),
|
||||
.KEEP_W(WRITE_STATUS_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) u_status_write_flat_to_if (
|
||||
.s_axis_tdata (status_write_cmd_in),
|
||||
.s_axis_tkeep ({WRITE_STATUS_KEEP_W{1'b1}}),
|
||||
.s_axis_tstrb ({WRITE_STATUS_KEEP_W{1'b1}}),
|
||||
.s_axis_tlast (1'b1),
|
||||
.s_axis_tid ('0),
|
||||
.s_axis_tdest ('0),
|
||||
.s_axis_tuser ('0),
|
||||
.s_axis_tvalid(valid_status_write),
|
||||
.s_axis_tready(ready_status_write),
|
||||
|
||||
.m_axis(axis_status_write)
|
||||
);
|
||||
|
||||
// DUT AXIS master ports -> testbench flat descriptor outputs
|
||||
logic [READ_DESC_KEEP_W-1:0] unused_desc_read_tkeep;
|
||||
logic [READ_DESC_KEEP_W-1:0] unused_desc_read_tstrb;
|
||||
logic unused_desc_read_tlast;
|
||||
logic [AXIS_ID_WIDTH-1:0] unused_desc_read_tid;
|
||||
logic [AXIS_DEST_WIDTH-1:0] unused_desc_read_tdest;
|
||||
logic [AXIS_USER_WIDTH-1:0] unused_desc_read_tuser;
|
||||
|
||||
axis_if_to_flat #(
|
||||
.DATA_W(READ_DESC_WIDTH),
|
||||
.KEEP_W(READ_DESC_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) u_desc_read_if_to_flat (
|
||||
.s_axis(axis_desc_read),
|
||||
|
||||
.m_axis_tdata (desc_read_cmd_out),
|
||||
.m_axis_tkeep (unused_desc_read_tkeep),
|
||||
.m_axis_tstrb (unused_desc_read_tstrb),
|
||||
.m_axis_tlast (unused_desc_read_tlast),
|
||||
.m_axis_tid (unused_desc_read_tid),
|
||||
.m_axis_tdest (unused_desc_read_tdest),
|
||||
.m_axis_tuser (unused_desc_read_tuser),
|
||||
.m_axis_tvalid(valid_desc_read),
|
||||
.m_axis_tready(ready_desc_read)
|
||||
);
|
||||
|
||||
logic [WRITE_DESC_KEEP_W-1:0] unused_desc_write_tkeep;
|
||||
logic [WRITE_DESC_KEEP_W-1:0] unused_desc_write_tstrb;
|
||||
logic unused_desc_write_tlast;
|
||||
logic [AXIS_ID_WIDTH-1:0] unused_desc_write_tid;
|
||||
logic [AXIS_DEST_WIDTH-1:0] unused_desc_write_tdest;
|
||||
logic [AXIS_USER_WIDTH-1:0] unused_desc_write_tuser;
|
||||
|
||||
axis_if_to_flat #(
|
||||
.DATA_W(WRITE_DESC_WIDTH),
|
||||
.KEEP_W(WRITE_DESC_KEEP_W),
|
||||
.ID_W(AXIS_ID_WIDTH),
|
||||
.DEST_W(AXIS_DEST_WIDTH),
|
||||
.USER_W(AXIS_USER_WIDTH)
|
||||
) u_desc_write_if_to_flat (
|
||||
.s_axis(axis_desc_write),
|
||||
|
||||
.m_axis_tdata (desc_write_cmd_out),
|
||||
.m_axis_tkeep (unused_desc_write_tkeep),
|
||||
.m_axis_tstrb (unused_desc_write_tstrb),
|
||||
.m_axis_tlast (unused_desc_write_tlast),
|
||||
.m_axis_tid (unused_desc_write_tid),
|
||||
.m_axis_tdest (unused_desc_write_tdest),
|
||||
.m_axis_tuser (unused_desc_write_tuser),
|
||||
.m_axis_tvalid(valid_desc_write),
|
||||
.m_axis_tready(ready_desc_write)
|
||||
);
|
||||
|
||||
// Controller ADC/DAC outputs.
|
||||
logic [31:0] adc_window_size;
|
||||
logic [31:0] dac_pulse_width;
|
||||
logic [31:0] dac_pulse_period;
|
||||
logic [DAC_DATA_WIDTH-1:0] dac_pulse_height;
|
||||
logic [15:0] dac_pulse_num;
|
||||
logic [31:0] adc_pulse_period;
|
||||
logic [15:0] adc_pulse_num;
|
||||
logic dac_start;
|
||||
logic adc_start;
|
||||
logic dac_rst;
|
||||
logic adc_rst;
|
||||
|
||||
controller_wrapper_axil #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.USER_W(USER_W),
|
||||
.DAC_DATA_WIDTH(DAC_DATA_WIDTH),
|
||||
.AXI_ADDR_WIDTH(AXI_ADDR_WIDTH),
|
||||
.AXIS_ID_WIDTH(AXIS_ID_WIDTH),
|
||||
.LEN_WIDTH(LEN_WIDTH),
|
||||
.AXIS_USER_WIDTH(AXIS_USER_WIDTH),
|
||||
.AXIS_DEST_WIDTH(AXIS_DEST_WIDTH),
|
||||
.TAG_WIDTH(TAG_WIDTH),
|
||||
.READ_DESC_WIDTH(READ_DESC_WIDTH),
|
||||
.WRITE_DESC_WIDTH(WRITE_DESC_WIDTH),
|
||||
.READ_STATUS_WIDTH(READ_STATUS_WIDTH),
|
||||
.WRITE_STATUS_WIDTH(WRITE_STATUS_WIDTH)
|
||||
) dut (
|
||||
.ctrl_clk(ctrl_clk),
|
||||
.dac_clk_in(dac_clk_in),
|
||||
.adc_clk_in(adc_clk_in),
|
||||
.rst_n(rst_n),
|
||||
.s_axil(axil_bus),
|
||||
|
||||
.finish(finish),
|
||||
.adc_window_size(adc_window_size),
|
||||
|
||||
.dac_pulse_width(dac_pulse_width),
|
||||
.dac_pulse_period(dac_pulse_period),
|
||||
.dac_pulse_height(dac_pulse_height),
|
||||
.dac_pulse_num(dac_pulse_num),
|
||||
|
||||
.adc_pulse_period(adc_pulse_period),
|
||||
.adc_pulse_num(adc_pulse_num),
|
||||
|
||||
.dac_start(dac_start),
|
||||
.adc_start(adc_start),
|
||||
.dac_rst(dac_rst),
|
||||
.adc_rst(adc_rst),
|
||||
|
||||
.s_axis_status_read(axis_status_read),
|
||||
.s_axis_status_write(axis_status_write),
|
||||
|
||||
.m_axis_desc_read(axis_desc_read),
|
||||
.m_axis_desc_write(axis_desc_write)
|
||||
);
|
||||
|
||||
endmodule : tb_controller_wrapper_axil
|
||||
170
rtl/controller/tests/test_controller.py
Normal file
170
rtl/controller/tests/test_controller.py
Normal file
@ -0,0 +1,170 @@
|
||||
import cocotb
|
||||
from cocotb.clock import Clock
|
||||
from cocotb.handle import Immediate
|
||||
from cocotb.triggers import RisingEdge
|
||||
from cocotbext.axi import AxiLiteBus, AxiLiteMaster
|
||||
|
||||
|
||||
# Register indexes from axi4l_reg_map_controller_pkg.sv
|
||||
REG_CONTROL = 0
|
||||
REG_STATUS = 1
|
||||
REG_DAC_WIDTH = 2
|
||||
REG_DAC_PERIOD = 3
|
||||
REG_DAC_PULSE_NUM = 4
|
||||
REG_DAC_PULSE_HEIGHT = 5
|
||||
REG_ADC_PERIOD = 6
|
||||
REG_WINDOW_SIZE = 7
|
||||
REG_ERROR = 8
|
||||
REG_DESC_READ_ADDR = 9
|
||||
REG_DESC_READ_LEN = 10
|
||||
REG_DESC_READ_CONFIG = 11
|
||||
REG_READ_STATUS = 12
|
||||
REG_DESC_WRITE_ADDR = 13
|
||||
REG_DESC_WRITE_LEN_AND_TAG = 14
|
||||
REG_STATUS_WRITE_LEN = 15
|
||||
REG_STATUS_WRITE_CONFIG = 16
|
||||
|
||||
|
||||
# REG_CONTROL pulse bits
|
||||
CTRL_START = 0
|
||||
CTRL_RST_SOFT = 1
|
||||
CTRL_CFG_BUS_VALID = 2
|
||||
CTRL_SEND_DESC_READ = 3
|
||||
CTRL_SEND_DESC_WRITE = 4
|
||||
CTRL_TAKE_STATUS_READ = 5
|
||||
CTRL_TAKE_STATUS_WRITE = 6
|
||||
|
||||
|
||||
def reg_addr(reg_index: int) -> int:
|
||||
# AXI-Lite uses byte addresses, 32-bit registers are spaced by 4 bytes.
|
||||
return reg_index * 4
|
||||
|
||||
|
||||
def u32(value: int) -> bytes:
|
||||
return int(value & 0xFFFFFFFF).to_bytes(4, "little")
|
||||
|
||||
|
||||
class TB:
|
||||
def __init__(self, dut):
|
||||
self.dut = dut
|
||||
|
||||
cocotb.start_soon(Clock(dut.ctrl_clk, 10, units="ns").start())
|
||||
|
||||
self.axil = AxiLiteMaster(
|
||||
AxiLiteBus.from_prefix(dut, "s_axil"),
|
||||
dut.ctrl_clk,
|
||||
dut.rst,
|
||||
)
|
||||
|
||||
async def reset(self):
|
||||
self.dut.rst.value = 1
|
||||
for _ in range(5):
|
||||
await RisingEdge(self.dut.ctrl_clk)
|
||||
|
||||
self.dut.rst.value = 0
|
||||
for _ in range(5):
|
||||
await RisingEdge(self.dut.ctrl_clk)
|
||||
|
||||
async def write_reg(self, reg_index: int, value: int):
|
||||
await self.axil.write(reg_addr(reg_index), u32(value))
|
||||
|
||||
async def read_reg(self, reg_index: int) -> int:
|
||||
resp = await self.axil.read(reg_addr(reg_index), 4)
|
||||
return int.from_bytes(bytes(resp.data), "little")
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def simple_axil_write_read(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
await tb.write_reg(REG_DAC_WIDTH, 0x0000_0123)
|
||||
|
||||
value = await tb.read_reg(REG_DAC_WIDTH)
|
||||
assert value == 0x0000_0123
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def simple_controller_config_write(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
await tb.write_reg(REG_DAC_WIDTH, 0x10)
|
||||
await tb.write_reg(REG_DAC_PERIOD, 0x40)
|
||||
await tb.write_reg(REG_DAC_PULSE_NUM, 3)
|
||||
await tb.write_reg(REG_DAC_PULSE_HEIGHT, 0x7FF)
|
||||
await tb.write_reg(REG_ADC_PERIOD, 0x80)
|
||||
await tb.write_reg(REG_WINDOW_SIZE, 16)
|
||||
|
||||
assert await tb.read_reg(REG_DAC_WIDTH) == 0x10
|
||||
assert await tb.read_reg(REG_WINDOW_SIZE) == 16
|
||||
|
||||
# write data: set cfg_bus_valid signal
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_CFG_BUS_VALID)
|
||||
|
||||
# wait
|
||||
for _ in range(30):
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
# check config
|
||||
assert int(dut.dac_pulse_width) == 0x10
|
||||
assert int(dut.dac_pulse_period) == 0x40
|
||||
assert int(dut.dac_pulse_num) == 3
|
||||
assert int(dut.dac_pulse_height) == 0x7FF
|
||||
assert int(dut.adc_pulse_period) == 0x80
|
||||
assert int(dut.adc_window_size) == 16
|
||||
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def simple_controller_start_check(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_START)
|
||||
|
||||
await RisingEdge(dut.dac_start)
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def simple_dma_desc_status(dut):
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
await tb.write_reg(REG_DESC_READ_ADDR, 0xdead)
|
||||
await tb.write_reg(REG_DESC_READ_LEN, 64)
|
||||
await tb.write_reg(REG_DESC_READ_CONFIG, 0x0000_0001)
|
||||
|
||||
await tb.write_reg(REG_DESC_WRITE_ADDR, 0xbeef)
|
||||
await tb.write_reg(REG_DESC_WRITE_LEN_AND_TAG, 0x0005555)
|
||||
|
||||
# W1S pulse: bit 3 = send_desc_read_o.
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_SEND_DESC_READ)
|
||||
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_SEND_DESC_WRITE)
|
||||
|
||||
for _ in range(20):
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
assert int(dut.desc_read_cmd_out.value) == 0x000000100040DEAD
|
||||
assert int(dut.desc_write_cmd_out.value) == 0x0005555BEEF
|
||||
|
||||
# test status
|
||||
dut.status_read_cmd_in.value = Immediate(123)
|
||||
dut.status_write_cmd_in.value = Immediate(0xabcd90012345)
|
||||
dut.valid_status_read.value = Immediate(1)
|
||||
dut.valid_status_write.value = Immediate(1)
|
||||
|
||||
for _ in range(10):
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
# read status
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_TAKE_STATUS_READ)
|
||||
await tb.write_reg(REG_CONTROL, 1 << CTRL_TAKE_STATUS_WRITE)
|
||||
|
||||
for _ in range(10):
|
||||
await RisingEdge(dut.ctrl_clk)
|
||||
|
||||
assert await tb.read_reg(REG_READ_STATUS) == 123
|
||||
assert await tb.read_reg(REG_STATUS_WRITE_CONFIG) == 0xABCD900
|
||||
assert await tb.read_reg(REG_STATUS_WRITE_LEN) == 0x12345
|
||||
91
rtl/generator/README.md
Normal file
91
rtl/generator/README.md
Normal file
@ -0,0 +1,91 @@
|
||||
# Генератор
|
||||
|
||||
Модуль выполняет задачу формирования последовательности импульсов заданной амплитуды, длительности и периода.
|
||||
Дополнительно реализован механизм синхронизации с модулем сэмплера через сигналы `sample_req` и `sample_done`, позволяющий запускать сбор данных для каждого импульса и ожидать подтверждения завершения выборки перед переходом к следующему импульсу.
|
||||
|
||||
---
|
||||
|
||||
## Список параметров
|
||||
|
||||
### DATA_WIDTH
|
||||
Ширина выходных данных генератора.
|
||||
|
||||
### ZERO_LEVEL
|
||||
Уровень сигнала в состоянии отсутствия импульса (базовый уровень сигнала).
|
||||
|
||||
Типовые значения:
|
||||
|
||||
- `8192` — середина диапазона ЦАП
|
||||
- `0` — нулевой уровень
|
||||
|
||||
---
|
||||
|
||||
## Список входных портов
|
||||
|
||||
### clk_in
|
||||
Сигнал тактирования модуля.
|
||||
|
||||
### rst
|
||||
Сброс модуля и остановка генерации.
|
||||
|
||||
### start
|
||||
Сигнал запуска последовательности импульсов.
|
||||
|
||||
При его активации модуль фиксирует все входные параметры и начинает генерацию.
|
||||
|
||||
Повторный запуск во время активной генерации блокируется с помощью внутреннего сигнала `enable`.
|
||||
|
||||
### [31:0] pulse_width
|
||||
Длительность активной части импульса (в тактах).
|
||||
|
||||
### [31:0] pulse_period
|
||||
Полный период импульса (в тактах).
|
||||
|
||||
### [DATA_WIDTH-1:0] pulse_height
|
||||
Амплитуда импульса.
|
||||
|
||||
### [15:0] pulse_num
|
||||
Количество импульсов, которое необходимо сгенерировать.
|
||||
|
||||
### sample_done
|
||||
Сигнал подтверждения от сэмплера о завершении выборки данных для текущего импульса.
|
||||
|
||||
---
|
||||
|
||||
## Список выходных портов
|
||||
|
||||
pulse
|
||||
Выходной сигнал разрешения записи сигнала
|
||||
|
||||
[DATA_WIDTH-1:0] pulse_height_out
|
||||
Выходное значение амплитуды сигнала.
|
||||
|
||||
Во время активной части импульса равно `pulse_height`, вне импульса — `ZERO_LEVEL`.
|
||||
|
||||
sample_req
|
||||
Сигнал запроса на запуск выборки в модуле сэмплера.
|
||||
|
||||
Поднимается в начале каждого нового импульса и снимается после получения `sample_done`.
|
||||
|
||||
---
|
||||
|
||||
## Логика работы
|
||||
|
||||
После прихода сигнала `start` модуль:
|
||||
|
||||
- фиксирует входные параметры генерации
|
||||
- сбрасывает внутренние счетчики
|
||||
- поднимает `enable = 1`
|
||||
- формирует первый `sample_req`
|
||||
|
||||
После этого начинается последовательная генерация импульсов.
|
||||
|
||||
---
|
||||
|
||||
## Симуляция
|
||||
Тесты запускаются автоматически через make.
|
||||
```
|
||||
cd tests
|
||||
make sim
|
||||
```
|
||||
При успешном завершении теста высвечивается "ALL PASSED".
|
||||
@ -3,7 +3,8 @@
|
||||
|
||||
module generator
|
||||
#(
|
||||
parameter DATA_WIDTH = 14
|
||||
parameter DATA_WIDTH = 14,
|
||||
parameter ZERO_LEVEL = 8192 // 8192 or 0
|
||||
)
|
||||
(
|
||||
input clk_in,
|
||||
@ -33,8 +34,8 @@ module generator
|
||||
|
||||
always @(posedge clk_in) begin
|
||||
if (rst) begin
|
||||
pulse_height_reg <= 0;
|
||||
pulse_height_out_reg <= '0;
|
||||
pulse_height_reg <= ZERO_LEVEL;
|
||||
pulse_height_out_reg <= ZERO_LEVEL;
|
||||
pulse_width_reg <= '0;
|
||||
pulse_period_reg <= '0;
|
||||
pulse_num_reg <= '0;
|
||||
@ -43,21 +44,22 @@ module generator
|
||||
cnt_period <= '0;
|
||||
sample_req <= 0;
|
||||
end else begin
|
||||
if (start) begin
|
||||
if (start & !enable) begin
|
||||
enable <= 1'b1;
|
||||
cnt_pulse_num <= '0;
|
||||
cnt_period <= '0;
|
||||
|
||||
|
||||
sample_req <= 1;
|
||||
|
||||
pulse_width_reg <= pulse_width;
|
||||
pulse_period_reg <= pulse_period;
|
||||
pulse_num_reg <= pulse_num;
|
||||
pulse_height_reg <= pulse_height;
|
||||
end
|
||||
end
|
||||
if (enable) begin
|
||||
|
||||
if (!sample_req && (cnt_period == 0)) begin
|
||||
pulse_height_out_reg <= '0;
|
||||
pulse_height_out_reg <= ZERO_LEVEL;
|
||||
if (sample_done) begin
|
||||
sample_req <= 1'b0;
|
||||
end
|
||||
@ -78,7 +80,7 @@ module generator
|
||||
if (cnt_period <= pulse_width_reg) begin
|
||||
pulse_height_out_reg <= pulse_height_reg;
|
||||
end else begin
|
||||
pulse_height_out_reg <= '0;
|
||||
pulse_height_out_reg <= ZERO_LEVEL;
|
||||
end
|
||||
if (cnt_period == pulse_period_reg) begin
|
||||
cnt_period <= 0;
|
||||
|
||||
@ -3,6 +3,7 @@
|
||||
module generator_tb;
|
||||
|
||||
parameter DATA_WIDTH = 14;
|
||||
parameter ZERO_LEVEL = 8192;
|
||||
parameter CLK_PERIOD = 16;
|
||||
|
||||
logic clk;
|
||||
@ -81,7 +82,7 @@ module generator_tb;
|
||||
|
||||
repeat(40) @(posedge clk);
|
||||
|
||||
pulse_width = 3;
|
||||
pulse_width = 3;
|
||||
pulse_period = 8;
|
||||
pulse_num = 4;
|
||||
pulse_height = 14'h3FF;
|
||||
@ -89,9 +90,17 @@ module generator_tb;
|
||||
|
||||
repeat(1) @(posedge clk);
|
||||
start = 0;
|
||||
|
||||
repeat(5) @(posedge clk);
|
||||
start = 1;
|
||||
pulse_height = 14'h155;
|
||||
|
||||
repeat(1) @(posedge clk);
|
||||
start = 0;
|
||||
|
||||
repeat(50) @(posedge clk);
|
||||
|
||||
|
||||
$display("\n=== TEST FINISHED ===");
|
||||
$finish;
|
||||
end
|
||||
|
||||
@ -1,23 +1,139 @@
|
||||
# Сэмплер
|
||||
Модуль выполняет задачу сбора данных с выхода АЦП, их обработку, упаковку, и передачу дальше с помощью AXI Stream интерфейса.
|
||||
|
||||
## Cписок параметров
|
||||
DATA_WIDTH - ширина входных данных, получаемых с АЦП.
|
||||
PACK_FACTOR - количество отсчетов, собираемых в один выходной пакет.
|
||||
PROCESS_MODE - режим интерпретации входного кода. 0 - прямой код, 1 - дополнительный код.
|
||||
Модуль выполняет задачу сбора данных с выхода АЦП, их обработки, упаковки и передачи дальше с помощью AXI Stream интерфейса.
|
||||
Дополнительно реализован механизм синхронизации с внешним генератором через сигналы `sample_req` и `sample_done`, позволяющий запускать сбор строго по запросу и подтверждать завершение выборки.
|
||||
|
||||
---
|
||||
|
||||
## Список параметров
|
||||
|
||||
DATA_WIDTH
|
||||
Ширина входных данных, получаемых с АЦП.
|
||||
|
||||
PACK_FACTOR
|
||||
Количество отсчетов, собираемых в один выходной пакет.
|
||||
|
||||
PROCESS_MODE
|
||||
Режим интерпретации входного кода:
|
||||
|
||||
- `0` — прямой код
|
||||
- `1` — дополнительный код
|
||||
|
||||
---
|
||||
|
||||
## Список входных портов
|
||||
clk_in - сигнал тактирования выходного интерфейса.
|
||||
rst - сброс модуля и остановка подачи импульсов.
|
||||
[DATA_WIDTH-1:0] data_in - входной сигнал с АЦП.
|
||||
out_of_range - флаг выхода значений данных за допустимый диапазон. 0 - валидны, 1 - не валидны.
|
||||
|
||||
clk_in
|
||||
Сигнал тактирования выходного интерфейса.
|
||||
|
||||
rst
|
||||
Сброс модуля и остановка работы.
|
||||
|
||||
[DATA_WIDTH-1:0] data_in
|
||||
Входной сигнал с АЦП.
|
||||
|
||||
out_of_range
|
||||
Флаг выхода значений данных за допустимый диапазон:
|
||||
|
||||
- `0` — данные валидны
|
||||
- `1` — данные невалидны и игнорируются
|
||||
|
||||
[31:0] smp_num
|
||||
Количество валидных отсчетов, которое необходимо собрать после получения запроса на выборку.
|
||||
|
||||
sample_req
|
||||
Сигнал запроса на запуск выборки.
|
||||
При его активации модуль начинает сбор данных и переходит в активное состояние (`enable = 1`).
|
||||
|
||||
---
|
||||
|
||||
## Список выходных портов
|
||||
[DATA_WIDTH*PACK_FACTOR-1:0] m_axis_tdata - урезанный axis формат, выходные данные. Ширина шины считается исходя из битности данных и фактора упаковки.
|
||||
m_axis_tvalid - урезанный axis формат, валидность выходных данных.
|
||||
|
||||
[DATA_WIDTH*PACK_FACTOR-1:0] m_axis_tdata
|
||||
Урезанный AXI Stream формат, выходные данные.
|
||||
Ширина шины определяется как произведение битности данных и фактора упаковки.
|
||||
|
||||
m_axis_tvalid
|
||||
Урезанный AXI Stream формат, сигнал валидности выходных данных.
|
||||
Формируется при готовности очередного пакета.
|
||||
|
||||
sample_done
|
||||
Сигнал завершения выборки.
|
||||
Поднимается после того, как модуль собрал количество валидных отсчетов, равное `smp_num`.
|
||||
|
||||
---
|
||||
|
||||
## Логика работы
|
||||
На каждом такте принимаются data_in (значение АЦП) и out_of_range (флаг выхода значений данных за допустимый диапазон). Если out_of_range = 1, то данные игнорируются и не попадают во внутренний буффер. В противном случае, модуль накапливает данные во внутреннем буффере, идет его заполнение до количества данных, равное PACK_FACTOR. Когда буффер оказывается заполненным, он выдает пакет упакованных данных, сопровождая их импульсом m_axis_tvalid (готовность пакета). Если PROCESS_MODE = 1, данные выдаются в дополнительном коде, если PROCESS_MODE = 0 - в прямом.
|
||||
|
||||
На каждом такте принимаются:
|
||||
|
||||
- `data_in` — значение АЦП
|
||||
- `out_of_range` — флаг допустимости значения
|
||||
|
||||
Если `out_of_range = 1`, данные считаются невалидными, игнорируются и не попадают во внутренний буфер.
|
||||
|
||||
Если `out_of_range = 0`, данные считаются корректными и используются для дальнейшей обработки.
|
||||
|
||||
---
|
||||
|
||||
### Преобразование данных
|
||||
|
||||
Если `PROCESS_MODE = 1`, входные данные интерпретируются как дополнительный код и преобразуются перед упаковкой.
|
||||
|
||||
Если `PROCESS_MODE = 0`, данные передаются без преобразования (прямой код).
|
||||
|
||||
---
|
||||
|
||||
### Запуск выборки
|
||||
|
||||
Сбор данных начинается только после прихода сигнала `sample_req`.
|
||||
|
||||
При этом:
|
||||
|
||||
- фиксируется значение `smp_num`
|
||||
- внутренний счетчик собранных отсчетов обнуляется
|
||||
- модуль переходит в активное состояние (`enable = 1`)
|
||||
|
||||
Пока `enable = 1`, модуль принимает только валидные отсчеты и считает их.
|
||||
|
||||
---
|
||||
|
||||
### Упаковка данных
|
||||
|
||||
Внутренний буфер заполняется до количества данных, равного `PACK_FACTOR`.
|
||||
|
||||
#### Если `PACK_FACTOR = 1`
|
||||
|
||||
Каждый валидный отсчет сразу формирует выходной пакет:
|
||||
|
||||
- данные передаются в `m_axis_tdata`
|
||||
- формируется импульс `m_axis_tvalid`
|
||||
|
||||
#### Если `PACK_FACTOR > 1`
|
||||
|
||||
Данные последовательно накапливаются во внутреннем сдвиговом буфере.
|
||||
|
||||
Когда буфер полностью заполнен:
|
||||
|
||||
- формируется пакет упакованных данных
|
||||
- поднимается `m_axis_tvalid`
|
||||
|
||||
После этого начинается сбор следующего пакета.
|
||||
|
||||
---
|
||||
|
||||
### Завершение выборки
|
||||
|
||||
Когда количество собранных валидных отсчетов достигает значения `smp_num`:
|
||||
|
||||
- поднимается сигнал `sample_done`
|
||||
- внутренние счетчики сбрасываются
|
||||
- буфер очищается
|
||||
- `enable` сбрасывается в `0`
|
||||
|
||||
Это означает полное завершение текущего цикла выборки.
|
||||
|
||||
---
|
||||
|
||||
## Симуляция
|
||||
Тесты запускаются автоматически через make.
|
||||
|
||||
@ -1 +0,0 @@
|
||||
# mock
|
||||
20
software/README.md
Normal file
20
software/README.md
Normal file
@ -0,0 +1,20 @@
|
||||
# Software
|
||||
|
||||
Просто скрипт на питоне, для отправки команд через ethernet и для приема и простой визуализации данных.
|
||||
|
||||
## Использование
|
||||
Справка:
|
||||
|
||||
```python3 --help```
|
||||
|
||||
Положительный импульс:
|
||||
|
||||
```python3 console.py --pulse_width 3500 --pulse_period 20000 --pulse_height 15000 --pulse_num 550 --dac-bits 14```
|
||||
|
||||
Отрицательный импульс:
|
||||
|
||||
```python3 console.py --pulse_width 15000 --pulse_period 20000 --pulse_height 1500 --pulse_num 550 --dac-bits 14```
|
||||
|
||||
## Ограничения
|
||||
Максимальный pulse_period считается как аппаратный N_MAX * WINDOW_SIZE * adc_dac_ratio, в базовой конфигурации это 512000. Максимальный pulse_num зависит от подаваемых значений и от битности аккумулятора (по умолчанию - 32), с учетом усреднений по WINDOW_SIZE это получается что-то около 2^14 накоплений.
|
||||
|
||||
736
software/gui.py
Normal file
736
software/gui.py
Normal file
@ -0,0 +1,736 @@
|
||||
# shitpost
|
||||
|
||||
import sys
|
||||
import math
|
||||
import socket
|
||||
import platform
|
||||
|
||||
from PyQt6 import uic
|
||||
from dataclasses import dataclass
|
||||
from PyQt6.QtCore import QProcess, QTimer
|
||||
from PyQt6.QtCore import QObject, QThread, pyqtSignal
|
||||
|
||||
from PyQt6.QtCore import Qt
|
||||
import pyqtgraph as pg
|
||||
from PyQt6.QtWidgets import QApplication, QMainWindow
|
||||
|
||||
|
||||
@dataclass
|
||||
class ReflectometerConfig:
|
||||
ip: str
|
||||
send_port: int
|
||||
recv_port: int
|
||||
|
||||
dac_bits: int
|
||||
data_width: int
|
||||
window_size: int
|
||||
packet_size: int
|
||||
|
||||
pulse_width: int
|
||||
pulse_period: int
|
||||
pulse_height: int
|
||||
pulse_num: int
|
||||
|
||||
adc_dac_ratio: float = 0.52
|
||||
socket_timeout_sec: float = 2.0
|
||||
|
||||
|
||||
class ReflectometerWorker(QObject):
|
||||
data_ready = pyqtSignal(list)
|
||||
status = pyqtSignal(str)
|
||||
error = pyqtSignal(str)
|
||||
finished = pyqtSignal()
|
||||
|
||||
def __init__(self, config: ReflectometerConfig):
|
||||
super().__init__()
|
||||
self.config = config
|
||||
self._stop_requested = False
|
||||
self._sock = None
|
||||
|
||||
def stop(self):
|
||||
self._stop_requested = True
|
||||
|
||||
if self._sock is not None:
|
||||
try:
|
||||
self._sock.close()
|
||||
except OSError:
|
||||
pass
|
||||
|
||||
def run(self):
|
||||
try:
|
||||
self._validate_config()
|
||||
|
||||
self.status.emit("Открытие UDP-сокета...")
|
||||
|
||||
self._sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
|
||||
self._sock.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
|
||||
self._sock.settimeout(self.config.socket_timeout_sec)
|
||||
self._sock.bind(("0.0.0.0", self.config.recv_port))
|
||||
|
||||
dest = (self.config.ip, self.config.send_port)
|
||||
|
||||
self.status.emit("Отправка soft reset...")
|
||||
self._sock.sendto((0x0F00).to_bytes(2, "big"), dest)
|
||||
|
||||
self.status.emit("Отправка параметров...")
|
||||
ctrl_data = self._format_ctrl_data()
|
||||
self._sock.sendto(ctrl_data, dest)
|
||||
|
||||
self.status.emit("Отправка start...")
|
||||
self._sock.sendto((0xF000).to_bytes(2, "big"), dest)
|
||||
|
||||
self.status.emit("Приём данных...")
|
||||
data = self._recv_data()
|
||||
|
||||
if self._stop_requested:
|
||||
self.status.emit("Операция остановлена")
|
||||
return
|
||||
|
||||
self.data_ready.emit(data)
|
||||
self.status.emit(f"Получено samples: {len(data)}")
|
||||
|
||||
except Exception as e:
|
||||
if not self._stop_requested:
|
||||
self.error.emit(str(e))
|
||||
|
||||
finally:
|
||||
if self._sock is not None:
|
||||
try:
|
||||
self._sock.close()
|
||||
except OSError:
|
||||
pass
|
||||
|
||||
self.finished.emit()
|
||||
|
||||
def _format_ctrl_data(self) -> bytes:
|
||||
output = bytearray()
|
||||
|
||||
output += 0b10001000.to_bytes(1, "little")
|
||||
|
||||
pulse_period_adc = (
|
||||
int(self.config.pulse_period * self.config.adc_dac_ratio)
|
||||
// self.config.window_size
|
||||
) * self.config.window_size
|
||||
|
||||
output += self.config.pulse_width.to_bytes(4, "little")
|
||||
output += self.config.pulse_period.to_bytes(4, "little")
|
||||
output += self.config.pulse_num.to_bytes(2, "little")
|
||||
output += self.config.pulse_height.to_bytes(2, "little")
|
||||
output += pulse_period_adc.to_bytes(4, "little")
|
||||
|
||||
if len(output) != 17:
|
||||
raise ValueError("Config data should be 128 bits + 8 bit header")
|
||||
|
||||
return bytes(output)
|
||||
|
||||
def _recv_data(self) -> list[int]:
|
||||
packet_count = math.ceil(
|
||||
(
|
||||
self.config.adc_dac_ratio
|
||||
* self.config.pulse_period
|
||||
/ self.config.window_size
|
||||
* self.config.data_width
|
||||
)
|
||||
/ self.config.packet_size
|
||||
)
|
||||
|
||||
expected_length = math.ceil(
|
||||
self.config.adc_dac_ratio
|
||||
* self.config.pulse_period
|
||||
/ self.config.window_size
|
||||
)
|
||||
|
||||
recv_buf = []
|
||||
|
||||
for pkt_cnt in range(packet_count):
|
||||
if self._stop_requested:
|
||||
break
|
||||
|
||||
try:
|
||||
packet, _ = self._sock.recvfrom(65536)
|
||||
except socket.timeout:
|
||||
raise TimeoutError(f"Таймаут приёма UDP-пакета #{pkt_cnt + 1}")
|
||||
|
||||
if len(packet) % self.config.data_width != 0:
|
||||
raise ValueError(
|
||||
f"Некорректный размер UDP-пакета: {len(packet)} байт"
|
||||
)
|
||||
|
||||
for i in range(0, len(packet), self.config.data_width):
|
||||
sample = int.from_bytes(
|
||||
packet[i:i + self.config.data_width],
|
||||
"little",
|
||||
)
|
||||
recv_buf.append(sample)
|
||||
|
||||
if len(recv_buf) < expected_length:
|
||||
raise ValueError(
|
||||
f"Data underflow: получено {len(recv_buf)}, ожидалось {expected_length}"
|
||||
)
|
||||
|
||||
return recv_buf[:expected_length - 1]
|
||||
|
||||
def _validate_config(self):
|
||||
if self.config.pulse_period <= 0:
|
||||
raise ValueError("pulse_period должен быть больше 0")
|
||||
|
||||
if self.config.pulse_num <= 0:
|
||||
raise ValueError("pulse_num должен быть больше 0")
|
||||
|
||||
if self.config.window_size <= 0:
|
||||
raise ValueError("window_size должен быть больше 0")
|
||||
|
||||
if self.config.packet_size <= 0:
|
||||
raise ValueError("packet_size должен быть больше 0")
|
||||
|
||||
if self.config.data_width <= 0:
|
||||
raise ValueError("data_width должен быть больше 0")
|
||||
|
||||
if self.config.pulse_period % self.config.window_size != 0:
|
||||
raise ValueError("pulse_period должен быть кратен window_size")
|
||||
|
||||
if self.config.pulse_width >= 2**32 - 1:
|
||||
raise ValueError("pulse_width слишком большой")
|
||||
|
||||
if self.config.pulse_period >= 2**32 - 1:
|
||||
raise ValueError("pulse_period слишком большой")
|
||||
|
||||
if self.config.pulse_num >= 2**16 - 1:
|
||||
raise ValueError("pulse_num слишком большой")
|
||||
|
||||
if self.config.pulse_height > 2**self.config.dac_bits - 1:
|
||||
raise ValueError("pulse_height слишком большой")
|
||||
|
||||
|
||||
class MainWindow(QMainWindow):
|
||||
def __init__(self):
|
||||
super().__init__()
|
||||
|
||||
uic.loadUi("reflectometer.ui", self)
|
||||
|
||||
self.ping_process = None
|
||||
|
||||
self.ping_timeout_timer = QTimer(self)
|
||||
self.ping_timeout_timer.setSingleShot(True)
|
||||
self.ping_timeout_timer.timeout.connect(self.on_ping_timeout)
|
||||
|
||||
self.button_ping.clicked.connect(self.check_ping)
|
||||
|
||||
# settings
|
||||
self.pulse_period = 0
|
||||
self.pulse_height = 0
|
||||
self.pulse_width = 0
|
||||
self.pulse_num = 0
|
||||
|
||||
self.dac_dw = 14
|
||||
self.adc_dw = 12
|
||||
self.nmax = 4096
|
||||
self.packet_size = 1024
|
||||
self.window_size = 65
|
||||
self.adc_dac_ration = 0.52
|
||||
self.accum_width = 32
|
||||
|
||||
# setup
|
||||
|
||||
self.setup_pulse_controls()
|
||||
self.setup_global_settings()
|
||||
|
||||
self.update_pulse_limits()
|
||||
|
||||
self.data = []
|
||||
|
||||
self.adc_dac_ratio = 0.52
|
||||
|
||||
self.measurement_thread = None
|
||||
self.measurement_worker = None
|
||||
|
||||
self.setup_graph()
|
||||
self.setup_network_settings()
|
||||
|
||||
self.button_start.clicked.connect(self.run_measurement)
|
||||
self.button_graph_autoscale.clicked.connect(self.reset_graph_autoscale)
|
||||
|
||||
# ping utils
|
||||
|
||||
def check_ping(self):
|
||||
ip = self.line_ip.text().strip()
|
||||
|
||||
if not ip:
|
||||
self.label_ping_status.setText("set ip!!")
|
||||
return
|
||||
|
||||
if "_" in self.line_ip.displayText():
|
||||
self.label_ping_status.setText("IP invalid")
|
||||
return
|
||||
|
||||
if self.ping_process is not None:
|
||||
if self.ping_process.state() != QProcess.ProcessState.NotRunning:
|
||||
self.label_ping_status.setText("Ping inflight")
|
||||
return
|
||||
|
||||
self.label_ping_status.setText("ping...")
|
||||
self.button_ping.setEnabled(False)
|
||||
|
||||
self.ping_process = QProcess(self)
|
||||
|
||||
self.ping_process.finished.connect(self.on_ping_finished)
|
||||
self.ping_process.errorOccurred.connect(self.on_ping_error)
|
||||
|
||||
system_name = platform.system().lower()
|
||||
|
||||
if system_name == "windows":
|
||||
program = "ping"
|
||||
arguments = ["-n", "1", "-w", "2000", ip]
|
||||
else:
|
||||
program = "ping"
|
||||
arguments = ["-c", "1", "-W", "2", ip]
|
||||
|
||||
self.ping_process.start(program, arguments)
|
||||
# fallback
|
||||
self.ping_timeout_timer.start(2000)
|
||||
|
||||
def on_ping_finished(self, exit_code, exit_status):
|
||||
self.ping_timeout_timer.stop()
|
||||
self.button_ping.setEnabled(True)
|
||||
|
||||
if exit_code == 0:
|
||||
self.label_ping_status.setText("алё✅")
|
||||
else:
|
||||
self.label_ping_status.setText("не алё❌")
|
||||
|
||||
def on_ping_error(self):
|
||||
self.ping_timeout_timer.stop()
|
||||
self.button_ping.setEnabled(True)
|
||||
self.label_ping_status.setText("ping unavail")
|
||||
|
||||
def on_ping_timeout(self):
|
||||
if self.ping_process is not None:
|
||||
if self.ping_process.state() != QProcess.ProcessState.NotRunning:
|
||||
self.ping_process.kill()
|
||||
|
||||
self.button_ping.setEnabled(True)
|
||||
|
||||
# pulse controls
|
||||
def setup_pulse_controls(self):
|
||||
self._bind_slider_and_spinbox(
|
||||
name="pulse_period",
|
||||
slider=self.slider_pulse_period,
|
||||
box=self.box_pulse_period,
|
||||
normalize_value=self.normalize_pulse_period,
|
||||
)
|
||||
|
||||
self._bind_slider_and_spinbox(
|
||||
name="pulse_height",
|
||||
slider=self.slider_pulse_height,
|
||||
box=self.box_pulse_height,
|
||||
)
|
||||
|
||||
self._bind_slider_and_spinbox(
|
||||
name="pulse_width",
|
||||
slider=self.slider_pulse_width,
|
||||
box=self.box_pulse_width,
|
||||
)
|
||||
|
||||
self._bind_slider_and_spinbox(
|
||||
name="pulse_num",
|
||||
slider=self.slider_pulse_num,
|
||||
box=self.box_pulse_num,
|
||||
)
|
||||
|
||||
def _bind_slider_and_spinbox(self, name, slider, box, normalize_value=None):
|
||||
"""
|
||||
Связывает QSlider и QSpinBox по значению.
|
||||
Значение автоматически записывается в self.<name>.
|
||||
"""
|
||||
|
||||
minimum = min(slider.minimum(), box.minimum())
|
||||
maximum = max(slider.maximum(), box.maximum())
|
||||
|
||||
slider.setRange(minimum, maximum)
|
||||
box.setRange(minimum, maximum)
|
||||
|
||||
def normalize(value):
|
||||
if normalize_value is None:
|
||||
return value
|
||||
|
||||
return normalize_value(value)
|
||||
|
||||
value = normalize(box.value())
|
||||
|
||||
slider.setValue(value)
|
||||
box.setValue(value)
|
||||
setattr(self, name, value)
|
||||
|
||||
def update_value(new_value):
|
||||
new_value = normalize(new_value)
|
||||
|
||||
if slider.value() != new_value:
|
||||
slider.setValue(new_value)
|
||||
|
||||
if box.value() != new_value:
|
||||
box.setValue(new_value)
|
||||
|
||||
setattr(self, name, new_value)
|
||||
|
||||
slider.valueChanged.connect(update_value)
|
||||
box.valueChanged.connect(update_value)
|
||||
|
||||
def normalize_pulse_period(self, value):
|
||||
step = max(1, getattr(self, "window_size",
|
||||
self.box_window_size.value()))
|
||||
|
||||
snapped_value = round(value / step) * step
|
||||
|
||||
minimum = self.box_pulse_period.minimum()
|
||||
maximum = self.box_pulse_period.maximum()
|
||||
|
||||
return max(minimum, min(snapped_value, maximum))
|
||||
|
||||
def _set_max_for_pair(self, slider, box, maximum):
|
||||
slider.setMaximum(maximum)
|
||||
box.setMaximum(maximum)
|
||||
|
||||
value = min(box.value(), maximum)
|
||||
box.setValue(value)
|
||||
slider.setValue(value)
|
||||
|
||||
def set_max_pulse_period(self, maximum):
|
||||
self._set_max_for_pair(
|
||||
slider=self.slider_pulse_period,
|
||||
box=self.box_pulse_period,
|
||||
maximum=maximum,
|
||||
)
|
||||
self.pulse_period = self.box_pulse_period.value()
|
||||
|
||||
def set_max_pulse_height(self, maximum):
|
||||
self._set_max_for_pair(
|
||||
slider=self.slider_pulse_height,
|
||||
box=self.box_pulse_height,
|
||||
maximum=maximum,
|
||||
)
|
||||
self.pulse_height = self.box_pulse_height.value()
|
||||
|
||||
def set_max_pulse_width(self, maximum):
|
||||
self._set_max_for_pair(
|
||||
slider=self.slider_pulse_width,
|
||||
box=self.box_pulse_width,
|
||||
maximum=maximum,
|
||||
)
|
||||
self.pulse_width = self.box_pulse_width.value()
|
||||
|
||||
def set_max_pulse_num(self, maximum):
|
||||
self._set_max_for_pair(
|
||||
slider=self.slider_pulse_num,
|
||||
box=self.box_pulse_num,
|
||||
maximum=maximum,
|
||||
)
|
||||
self.pulse_num = self.box_pulse_num.value()
|
||||
|
||||
# settings
|
||||
|
||||
def setup_global_settings(self):
|
||||
self._bind_spinbox_setting(
|
||||
name="dac_dw",
|
||||
box=self.box_dac_dw,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="adc_dw",
|
||||
box=self.box_adc_dw,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="nmax",
|
||||
box=self.box_nmax,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="window_size",
|
||||
box=self.box_window_size,
|
||||
after_change=self.on_window_size_changed,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="packet_size",
|
||||
box=self.box_packet_size,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="adc_dac_ratio",
|
||||
box=self.box_adc_dac_ratio,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="accum_width",
|
||||
box=self.box_accum_width,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="recv_port",
|
||||
box=self.box_recv_port,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="send_port",
|
||||
box=self.box_send_port,
|
||||
)
|
||||
|
||||
# применяем шаг для pulse_period сразу при старте
|
||||
self.update_pulse_period_step()
|
||||
|
||||
def _bind_spinbox_setting(self, name, box, after_change=None):
|
||||
"""
|
||||
Связывает QSpinBox с полем self.<name>.
|
||||
Например:
|
||||
box_dac_dw -> self.dac_dw
|
||||
box_window_size -> self.window_size
|
||||
"""
|
||||
|
||||
value = box.value()
|
||||
setattr(self, name, value)
|
||||
|
||||
def on_value_changed(new_value):
|
||||
setattr(self, name, new_value)
|
||||
|
||||
self.update_pulse_limits()
|
||||
|
||||
if after_change is not None:
|
||||
after_change(new_value)
|
||||
|
||||
box.valueChanged.connect(on_value_changed)
|
||||
|
||||
def update_pulse_limits(self):
|
||||
# re-calc limits
|
||||
|
||||
# nmax -> pulse_period limit
|
||||
self.set_max_pulse_period(self.nmax * self.window_size)
|
||||
self.set_max_pulse_width(self.nmax * self.window_size)
|
||||
# accum_width + adc_width -> max pulse num
|
||||
|
||||
self.set_max_pulse_num(
|
||||
2 ** (self.accum_width - self.adc_dw - math.ceil(math.log2(self.window_size))) - 1)
|
||||
# dac_width -> max pulse height
|
||||
self.set_max_pulse_height(2 ** self.dac_dw - 1)
|
||||
|
||||
self.slider_pulse_period.setMinimum(self.window_size)
|
||||
self.box_pulse_period.setMinimum(self.window_size)
|
||||
|
||||
def on_window_size_changed(self, new_value):
|
||||
self.update_pulse_period_step()
|
||||
|
||||
def update_pulse_period_step(self):
|
||||
# set window_size step
|
||||
|
||||
step = max(1, self.window_size)
|
||||
|
||||
self.box_pulse_period.setSingleStep(step)
|
||||
self.slider_pulse_period.setSingleStep(step)
|
||||
self.slider_pulse_period.setPageStep(step)
|
||||
|
||||
self.snap_pulse_period_to_step(step)
|
||||
|
||||
def snap_pulse_period_to_step(self, step):
|
||||
"""
|
||||
Подгоняет текущее значение pulse_period к ближайшему кратному window_size.
|
||||
|
||||
Это нужно потому, что QSlider при перетаскивании мышкой
|
||||
всё равно может дать любое промежуточное значение.
|
||||
"""
|
||||
|
||||
current_value = self.box_pulse_period.value()
|
||||
|
||||
snapped_value = round(current_value / step) * step
|
||||
|
||||
minimum = self.box_pulse_period.minimum()
|
||||
maximum = self.box_pulse_period.maximum()
|
||||
|
||||
snapped_value = max(minimum, min(snapped_value, maximum))
|
||||
|
||||
self.box_pulse_period.setValue(snapped_value)
|
||||
self.slider_pulse_period.setValue(snapped_value)
|
||||
self.pulse_period = snapped_value
|
||||
|
||||
# graph
|
||||
def setup_graph(self):
|
||||
self.graph_widget = pg.PlotWidget()
|
||||
self.graph_widget.setLabel("left", "ADC value")
|
||||
self.graph_widget.setLabel("bottom", "Sample")
|
||||
self.graph_widget.showGrid(x=True, y=True)
|
||||
|
||||
self.graph_curve = self.graph_widget.plot(
|
||||
[],
|
||||
name="Data",
|
||||
)
|
||||
|
||||
self.reference_curve = self.graph_widget.plot(
|
||||
[],
|
||||
name="Reference",
|
||||
)
|
||||
|
||||
self.graph_layout.addWidget(self.graph_widget)
|
||||
self.graph_curve = self.graph_widget.plot(
|
||||
[], pen=pg.mkPen(width=2, color="b"))
|
||||
self.reference_curve = self.graph_widget.plot(
|
||||
[], pen=pg.mkPen(style=Qt.PenStyle.DashLine, color="g"))
|
||||
|
||||
self.checkbox_draw_reference.stateChanged.connect(
|
||||
self.update_reference_graph)
|
||||
|
||||
def setup_network_settings(self):
|
||||
self._bind_spinbox_setting(
|
||||
name="recv_port",
|
||||
box=self.box_recv_port,
|
||||
)
|
||||
|
||||
self._bind_spinbox_setting(
|
||||
name="send_port",
|
||||
box=self.box_send_port,
|
||||
)
|
||||
|
||||
def run_measurement(self):
|
||||
if self.measurement_thread is not None:
|
||||
if self.measurement_thread.isRunning():
|
||||
self.set_measurement_status("Измерение выполняется")
|
||||
return
|
||||
|
||||
config = self.build_reflectometer_config()
|
||||
|
||||
self.data = []
|
||||
self.graph_curve.setData([])
|
||||
|
||||
self.measurement_thread = QThread(self)
|
||||
self.measurement_worker = ReflectometerWorker(config)
|
||||
|
||||
self.measurement_worker.moveToThread(self.measurement_thread)
|
||||
|
||||
self.measurement_thread.started.connect(self.measurement_worker.run)
|
||||
|
||||
self.measurement_worker.status.connect(self.set_measurement_status)
|
||||
self.measurement_worker.error.connect(self.on_measurement_error)
|
||||
self.measurement_worker.data_ready.connect(self.on_data_received)
|
||||
|
||||
self.measurement_worker.finished.connect(self.measurement_thread.quit)
|
||||
self.measurement_worker.finished.connect(
|
||||
self.measurement_worker.deleteLater)
|
||||
|
||||
self.measurement_thread.finished.connect(
|
||||
self.measurement_thread.deleteLater)
|
||||
self.measurement_thread.finished.connect(self.on_measurement_finished)
|
||||
|
||||
self.measurement_thread.start()
|
||||
|
||||
def build_reflectometer_config(self) -> ReflectometerConfig:
|
||||
ip = self.line_ip.text().strip()
|
||||
|
||||
if not ip:
|
||||
raise ValueError("IP адрес не задан")
|
||||
|
||||
data_width = self.accum_width // 8
|
||||
|
||||
return ReflectometerConfig(
|
||||
ip=ip,
|
||||
send_port=self.send_port,
|
||||
recv_port=self.recv_port,
|
||||
|
||||
dac_bits=self.dac_dw,
|
||||
data_width=data_width,
|
||||
window_size=self.window_size,
|
||||
packet_size=self.packet_size,
|
||||
|
||||
pulse_width=self.pulse_width,
|
||||
pulse_period=self.pulse_period,
|
||||
pulse_height=self.pulse_height,
|
||||
pulse_num=self.pulse_num,
|
||||
|
||||
adc_dac_ratio=self.adc_dac_ratio,
|
||||
)
|
||||
|
||||
def on_data_received(self, data: list[int]):
|
||||
self.data = data
|
||||
# normalize
|
||||
for i in range(len(data)):
|
||||
self.data[i] /= (self.window_size * self.pulse_num)
|
||||
self.data[i] -= 2 ** (self.adc_dw - 1) + 1
|
||||
|
||||
self.draw_main_graph()
|
||||
self.update_reference_graph()
|
||||
|
||||
if data:
|
||||
self.set_measurement_status(
|
||||
f"Готово. smp: {len(data)}, min: {min(data)}, max: {max(data)}"
|
||||
)
|
||||
else:
|
||||
self.set_measurement_status("Данные пустые")
|
||||
|
||||
def on_measurement_error(self, message: str):
|
||||
self.set_measurement_status(f"Ошибка: {message}")
|
||||
|
||||
def on_measurement_finished(self):
|
||||
self.measurement_worker = None
|
||||
self.measurement_thread = None
|
||||
|
||||
def stop_measurement(self):
|
||||
if self.measurement_worker is not None:
|
||||
self.measurement_worker.stop()
|
||||
|
||||
def set_measurement_status(self, text: str):
|
||||
self.label_status.setText(text)
|
||||
|
||||
def draw_main_graph(self):
|
||||
if not self.data:
|
||||
self.graph_curve.setData([])
|
||||
return
|
||||
|
||||
x = list(range(len(self.data)))
|
||||
self.graph_curve.setData(x, self.data)
|
||||
|
||||
def update_reference_graph(self):
|
||||
"""
|
||||
Рисует или очищает эталонный график.
|
||||
Вызывается после получения данных и при переключении checkbox_draw_reference.
|
||||
"""
|
||||
|
||||
if not self.checkbox_draw_reference.isChecked():
|
||||
self.reference_curve.setData([])
|
||||
return
|
||||
|
||||
if not self.data:
|
||||
self.reference_curve.setData([])
|
||||
return
|
||||
|
||||
reference_data = self.build_reference_data(len(self.data))
|
||||
|
||||
if not reference_data:
|
||||
self.reference_curve.setData([])
|
||||
return
|
||||
|
||||
x = list(range(len(reference_data)))
|
||||
self.reference_curve.setData(x, reference_data)
|
||||
|
||||
def build_reference_data(self, length: int) -> list[int]:
|
||||
reference = [0] * length
|
||||
|
||||
actual_pulse_width = round(
|
||||
(self.pulse_width * self.adc_dac_ratio) / self.window_size)
|
||||
|
||||
reference[0:actual_pulse_width] = [
|
||||
(self.pulse_height / 2 ** (self.dac_dw - self.adc_dw)) - 2 ** (self.adc_dw - 1), ] * (actual_pulse_width - 1)
|
||||
|
||||
return reference
|
||||
|
||||
def reset_graph_autoscale(self):
|
||||
self.graph_widget.enableAutoRange(axis="xy", enable=True)
|
||||
self.graph_widget.autoRange()
|
||||
|
||||
|
||||
def main():
|
||||
app = QApplication(sys.argv)
|
||||
|
||||
window = MainWindow()
|
||||
window.show()
|
||||
|
||||
sys.exit(app.exec())
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
505
software/reflectometer.ui
Normal file
505
software/reflectometer.ui
Normal file
@ -0,0 +1,505 @@
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<ui version="4.0">
|
||||
<class>MainWindow</class>
|
||||
<widget class="QMainWindow" name="MainWindow">
|
||||
<property name="geometry">
|
||||
<rect>
|
||||
<x>0</x>
|
||||
<y>0</y>
|
||||
<width>1023</width>
|
||||
<height>708</height>
|
||||
</rect>
|
||||
</property>
|
||||
<property name="windowTitle">
|
||||
<string>Reflectometer PREMIUM</string>
|
||||
</property>
|
||||
<widget class="QWidget" name="centralwidget">
|
||||
<layout class="QHBoxLayout" name="horizontalLayout" stretch="4,2">
|
||||
<item>
|
||||
<layout class="QVBoxLayout" name="graph_layout"/>
|
||||
</item>
|
||||
<item>
|
||||
<layout class="QVBoxLayout" name="settings_layout">
|
||||
<item>
|
||||
<widget class="QTabWidget" name="tabWidget">
|
||||
<property name="currentIndex">
|
||||
<number>1</number>
|
||||
</property>
|
||||
<widget class="QWidget" name="tab">
|
||||
<attribute name="title">
|
||||
<string>Настройки</string>
|
||||
</attribute>
|
||||
<layout class="QVBoxLayout" name="verticalLayout_2">
|
||||
<item>
|
||||
<widget class="QScrollArea" name="scrollArea">
|
||||
<property name="widgetResizable">
|
||||
<bool>true</bool>
|
||||
</property>
|
||||
<widget class="QWidget" name="scrollAreaWidgetContents">
|
||||
<property name="geometry">
|
||||
<rect>
|
||||
<x>0</x>
|
||||
<y>0</y>
|
||||
<width>294</width>
|
||||
<height>621</height>
|
||||
</rect>
|
||||
</property>
|
||||
<layout class="QVBoxLayout" name="verticalLayout">
|
||||
<item>
|
||||
<widget class="QLabel" name="label_2">
|
||||
<property name="font">
|
||||
<font>
|
||||
<pointsize>12</pointsize>
|
||||
</font>
|
||||
</property>
|
||||
<property name="text">
|
||||
<string>Аппаратные параметры</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_dac_dw">
|
||||
<property name="suffix">
|
||||
<string> bits</string>
|
||||
</property>
|
||||
<property name="prefix">
|
||||
<string>DAC data width: </string>
|
||||
</property>
|
||||
<property name="minimum">
|
||||
<number>8</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>32</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>14</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_adc_dw">
|
||||
<property name="suffix">
|
||||
<string> bits</string>
|
||||
</property>
|
||||
<property name="prefix">
|
||||
<string>ADC data width: </string>
|
||||
</property>
|
||||
<property name="minimum">
|
||||
<number>8</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>32</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>12</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_accum_width">
|
||||
<property name="suffix">
|
||||
<string> bits</string>
|
||||
</property>
|
||||
<property name="prefix">
|
||||
<string>Accum width: </string>
|
||||
</property>
|
||||
<property name="minimum">
|
||||
<number>16</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>64</number>
|
||||
</property>
|
||||
<property name="singleStep">
|
||||
<number>8</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>32</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QDoubleSpinBox" name="box_adc_dac_ratio">
|
||||
<property name="prefix">
|
||||
<string>ADC:DAC clk ratio: </string>
|
||||
</property>
|
||||
<property name="minimum">
|
||||
<double>0.200000000000000</double>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<double>3.000000000000000</double>
|
||||
</property>
|
||||
<property name="singleStep">
|
||||
<double>0.010000000000000</double>
|
||||
</property>
|
||||
<property name="value">
|
||||
<double>0.520000000000000</double>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_nmax">
|
||||
<property name="prefix">
|
||||
<string>N Max: </string>
|
||||
</property>
|
||||
<property name="minimum">
|
||||
<number>512</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>65536</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>4096</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_window_size">
|
||||
<property name="prefix">
|
||||
<string>Window size: </string>
|
||||
</property>
|
||||
<property name="minimum">
|
||||
<number>1</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>1024</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>65</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_packet_size">
|
||||
<property name="suffix">
|
||||
<string> bytes</string>
|
||||
</property>
|
||||
<property name="prefix">
|
||||
<string>Packet size: </string>
|
||||
</property>
|
||||
<property name="minimum">
|
||||
<number>1</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>1572</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>1024</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="Line" name="line_2">
|
||||
<property name="orientation">
|
||||
<enum>Qt::Orientation::Horizontal</enum>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLabel" name="label">
|
||||
<property name="font">
|
||||
<font>
|
||||
<pointsize>12</pointsize>
|
||||
</font>
|
||||
</property>
|
||||
<property name="text">
|
||||
<string>Подключение</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLabel" name="label_3">
|
||||
<property name="text">
|
||||
<string>IP устройства:</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLineEdit" name="line_ip">
|
||||
<property name="inputMask">
|
||||
<string>999.999.999.999</string>
|
||||
</property>
|
||||
<property name="text">
|
||||
<string>192.168.0.2</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLabel" name="label_4">
|
||||
<property name="text">
|
||||
<string>Порт отправки:</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_send_port">
|
||||
<property name="minimum">
|
||||
<number>80</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>65536</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>8080</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLabel" name="label_5">
|
||||
<property name="text">
|
||||
<string>Порт приёма:</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_recv_port">
|
||||
<property name="minimum">
|
||||
<number>80</number>
|
||||
</property>
|
||||
<property name="maximum">
|
||||
<number>65536</number>
|
||||
</property>
|
||||
<property name="value">
|
||||
<number>8080</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLabel" name="label_6">
|
||||
<property name="font">
|
||||
<font>
|
||||
<pointsize>12</pointsize>
|
||||
</font>
|
||||
</property>
|
||||
<property name="text">
|
||||
<string>Тест</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QPushButton" name="button_ping">
|
||||
<property name="text">
|
||||
<string>алё</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLabel" name="label_ping_status">
|
||||
<property name="text">
|
||||
<string>...</string>
|
||||
</property>
|
||||
<property name="alignment">
|
||||
<set>Qt::AlignmentFlag::AlignCenter</set>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<spacer name="verticalSpacer">
|
||||
<property name="orientation">
|
||||
<enum>Qt::Orientation::Vertical</enum>
|
||||
</property>
|
||||
<property name="sizeHint" stdset="0">
|
||||
<size>
|
||||
<width>20</width>
|
||||
<height>40</height>
|
||||
</size>
|
||||
</property>
|
||||
</spacer>
|
||||
</item>
|
||||
</layout>
|
||||
</widget>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</widget>
|
||||
<widget class="QWidget" name="tab_2">
|
||||
<attribute name="title">
|
||||
<string>Управление</string>
|
||||
</attribute>
|
||||
<layout class="QVBoxLayout" name="verticalLayout_3">
|
||||
<item>
|
||||
<widget class="QLabel" name="label_7">
|
||||
<property name="font">
|
||||
<font>
|
||||
<pointsize>12</pointsize>
|
||||
</font>
|
||||
</property>
|
||||
<property name="text">
|
||||
<string>Импульс</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<layout class="QHBoxLayout" name="horizontalLayout_2" stretch="1,1,2">
|
||||
<item>
|
||||
<widget class="QLabel" name="label_8">
|
||||
<property name="text">
|
||||
<string>Период</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_pulse_period">
|
||||
<property name="minimum">
|
||||
<number>1</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSlider" name="slider_pulse_period">
|
||||
<property name="orientation">
|
||||
<enum>Qt::Orientation::Horizontal</enum>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</item>
|
||||
<item>
|
||||
<layout class="QHBoxLayout" name="horizontalLayout_3" stretch="1,1,2">
|
||||
<item>
|
||||
<widget class="QLabel" name="label_9">
|
||||
<property name="text">
|
||||
<string>Ширина</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_pulse_width"/>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSlider" name="slider_pulse_width">
|
||||
<property name="orientation">
|
||||
<enum>Qt::Orientation::Horizontal</enum>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</item>
|
||||
<item>
|
||||
<layout class="QHBoxLayout" name="horizontalLayout_4" stretch="1,1,2">
|
||||
<item>
|
||||
<widget class="QLabel" name="label_10">
|
||||
<property name="text">
|
||||
<string>Высота</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_pulse_height"/>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSlider" name="slider_pulse_height">
|
||||
<property name="orientation">
|
||||
<enum>Qt::Orientation::Horizontal</enum>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</item>
|
||||
<item>
|
||||
<layout class="QHBoxLayout" name="horizontalLayout_5" stretch="1,1,2">
|
||||
<item>
|
||||
<widget class="QLabel" name="label_11">
|
||||
<property name="text">
|
||||
<string>Количество</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSpinBox" name="box_pulse_num">
|
||||
<property name="minimum">
|
||||
<number>1</number>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QSlider" name="slider_pulse_num">
|
||||
<property name="minimum">
|
||||
<number>1</number>
|
||||
</property>
|
||||
<property name="orientation">
|
||||
<enum>Qt::Orientation::Horizontal</enum>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QPushButton" name="button_start">
|
||||
<property name="text">
|
||||
<string>start!</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<layout class="QHBoxLayout" name="horizontalLayout_6" stretch="1,3">
|
||||
<item>
|
||||
<widget class="QLabel" name="label_13">
|
||||
<property name="font">
|
||||
<font>
|
||||
<bold>true</bold>
|
||||
</font>
|
||||
</property>
|
||||
<property name="text">
|
||||
<string>Статус:</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QLabel" name="label_status">
|
||||
<property name="text">
|
||||
<string>-</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QCheckBox" name="checkbox_draw_reference">
|
||||
<property name="text">
|
||||
<string>Отрисовка эталона</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
<item>
|
||||
<spacer name="verticalSpacer_2">
|
||||
<property name="orientation">
|
||||
<enum>Qt::Orientation::Vertical</enum>
|
||||
</property>
|
||||
<property name="sizeHint" stdset="0">
|
||||
<size>
|
||||
<width>20</width>
|
||||
<height>40</height>
|
||||
</size>
|
||||
</property>
|
||||
</spacer>
|
||||
</item>
|
||||
<item>
|
||||
<widget class="QPushButton" name="button_graph_autoscale">
|
||||
<property name="text">
|
||||
<string>Сброс масштаба</string>
|
||||
</property>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</widget>
|
||||
</widget>
|
||||
</item>
|
||||
</layout>
|
||||
</item>
|
||||
</layout>
|
||||
</widget>
|
||||
<widget class="QMenuBar" name="menubar">
|
||||
<property name="geometry">
|
||||
<rect>
|
||||
<x>0</x>
|
||||
<y>0</y>
|
||||
<width>1023</width>
|
||||
<height>30</height>
|
||||
</rect>
|
||||
</property>
|
||||
</widget>
|
||||
<widget class="QStatusBar" name="statusbar"/>
|
||||
</widget>
|
||||
<resources/>
|
||||
<connections/>
|
||||
</ui>
|
||||
Reference in New Issue
Block a user