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Design Name is always "TE Series Name" + Design name, for example "TE0720 Test Board"
Date | Version | Changes | Author |
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2021-06-01 | 3.1.7 | | jh | 2021-05-04 | 3.1.6 | | ma | 2021-04-28 | 3.1.5 | | ma | 2021-04-27 | 3.1.4 | | ma |
| 3.1.3 | | ma |
| 3.1.2 | minor typing corrections replaced SDK by Vitis changed from / to \ for windows paths replaced <design name> by <project folder> added "" for path names added boot.src description added USB for programming
| ma |
| 3.1.1 | swapped order from prebuilt files minor typing corrections removed Win OS path length from Design flow, added as caution in Design flow
| ma |
| 3.1 | |
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| 3.0 | |
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Overview
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This TEC0330 reference design implements the SI5338 Configuration, DDR Configuration and PCIe Core Example Design.
Refer to http://trenz.org/tec0330-info for the current online version of this manual and other available documentation.
Key Features
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- MicroBlaze
- I2C
- Flash
- FMeter
- PCIe
- SI5338
- DDR3 ECC SODIMM (currently ECC disabled)
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Revision History
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Date | Vivado | Project Built | Authors | Description |
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2022-09-22 | 2021.2 | TEC0330-test_board_noprebuilt-vivado_2021.2-build_17_20220922155804.zip TEC0330-test_board-vivado_2021.2-build_17_20220922155804.zip | Waldemar Hanemann | | 2018-10-30 | 2018.2 | TEC0330-test_board_noprebuilt-vivado_2018.2-build_03_20181030122205.zip TEC0330-test_board-vivado_2018.2-build_03_20181030122147.zip | John Hartfiel | |
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Release Notes and Know Issues
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Issues | Description | Workaround | To be fixed version |
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DDR3 ECC SODIMM | DDR3 does not work with ECC enabled | Disable ECC: - for Block Design MIG with AXI Interface, create 64Bit MIG
- for RTL MIG with Native Interface, disable ECC on MIG configuration and use 72Bit for Data
| --- |
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Requirements
Software
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Software | Version | Note |
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Vitis | 2021.2 | needed, Vivado is included into Vitis installation | Clockbuilder Pro | 4.5(used in this design) | optional |
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Hardware
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Notes : - list of hardware which was used to generate the design
- mark the module and carrier board, which was used tested with an *
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Basic description of TE Board Part Files is available on TE Board Part Files.
Complete List is available on <design name>/board_files/*_board_files.csv
Design supports following modules:
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Module Model | Board Part Short Name | PCB Revision Support | DDR | QSPI Flash | Others | Notes |
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TEC0330-04-(330-2C) | 330_2 | REV04 | DDR3 ECC SODIMM | 32MB |
| - DDR configured for AW24P7228BLK0M (8GB)
| TEC0330-05 | 330_2 | REV05 | DDR3 ECC SODIMM | 32MB |
| - DDR configured for AW24P7228BLK0M (8GB)
| TEC0330-05-S | 330_2 | REV05 | DDR3 ECC SODIMM | 32MB |
| - DDR configured for AW24P7228BLK0M (8GB)
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Design supports following carriers:
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Carrier Model | Notes |
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PC with PCIe Card slot | Card need 3.3V from PCIe and 12V from ATX connector |
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Additional HW Requirements:
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Additional Hardware | Notes |
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JTAG Programmer | - TE0790 with TE0791 for CPLD or FPGA
- Xilinx compatible JTAG programmer for FPGA
| DDR3 (204 Pin with ECC) | - in this design used:
- AW24P7228BLK0M (max. 8GB)
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Content
For general structure and of the reference design, see Project Delivery - Xilinx devices
Design Sources
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Type | Location | Notes |
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Vivado | <project folder>\block_design <project folder>\constraints <project folder>\ip_lib <project folder>\board_files | Vivado Project will be generated by TE Scripts | Vitis | <project folder>\sw_lib | Additional Software Template for Vitis and apps_list.csv with settings automatically for Vitis app generation |
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Additional Sources
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Type | Location | Notes |
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SI5338 | <project folder>/misc/Si5338 | SI5338 Project with current PLL Configuration |
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Prebuilt
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Notes : - prebuilt files
- Template Table:
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File | File-Extension | Description |
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BIF-File | *.bif | File with description to generate Bin-File | BIN-File | *.bin | Flash Configuration File with Boot-Image (Zynq-FPGAs) | BIT-File | *.bit | FPGA (PL Part) Configuration File | DebugProbes-File | *.ltx | Definition File for Vivado/Vivado Labtools Debugging Interface | Debian SD-Image | *.img | Debian Image for SD-Card | Diverse Reports | --- | Report files in different formats | Hardware-Platform-Specification-Files | *.hdfxsa | Exported Vivado Hardware Specification for SDK/HSI hardware description file for Vitis and PetaLinux | LabTools Project-File | *.lpr | Vivado Labtools Project File | MCS-File | *.mcs | Flash Configuration File with Boot-Image (MicroBlaze or FPGA part only) | MMI-File | *.mmi | File with BRAM-Location to generate MCS or BIT-File with *.elf content (MicroBlaze only) | OS-Image | *.ub | Image with Linux Kernel (On Petalinux optional with Devicetree and RAM-Disk) | Software-Application-File | *.elf | Software Application for Zynq or MicroBlaze Processor Systems | SREC-File | *.srec | Converted Software Application for MicroBlaze Processor Systems |
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File | File-Extension | Description |
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BIT-File | *.bit | FPGA (PL Part) Configuration File | DebugProbes-File | *.ltx | Definition File for Vivado/Vivado Labtools Debugging Interface | Diverse Reports | --- | Report files in different formats | Hardware-Platform-Specification-Files | *.hdfxsa | Exported Vivado Hardware Specification for SDK/HSI hardware description file for Vitis and PetaLinux | LabTools Project-File | *.lpr | Vivado Labtools Project File | MCS-File | *.mcs | Flash Configuration File with Boot-Image (MicroBlaze or FPGA part only) | MMI-File | *.mmi | File with BRAM-Location to generate MCS or BIT-File with *.elf content (MicroBlaze only) | Software-Application-File | *.elf | Software Application for Zynq or MicroBlaze Processor Systems |
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Download
Reference Design is only usable with the specified Vivado/Vitis/PetaLinux version. Do never use different Versions of Xilinx Software for the same Project.
Reference Design is available on:
Design Flow
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Reference Design is available with and without prebuilt files. It's recommended to use TE prebuilt files for first lunch. |
Trenz Electronic provides a tcl based built environment based on Xilinx Design Flow.
See also: Xilinx Development Tools
The Trenz Electronic FPGA Reference Designs are TCL-script based project. Command files for execution will be generated with "_create_win_setup.cmd" on Windows OS and "_create_linux_setup.sh" on Linux OS.
TE Scripts are only needed to generate the vivado project, all other additional steps are optional and can also executed by Xilinx Vivado/Vitis GUI. For currently Scripts limitations on Win and Linux OS see: Project Delivery Currently limitations of functionality
Note |
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Caution! Win OS has a 260 character limit for path lengths which can affect the Vivado tools. To avoid this issue, use Virtual Drive or the shortest possible names and directory locations for the reference design (for example "x:\<project folder>") |
Run _create_win_setup.cmd/_create_linux_setup.sh and follow instructions on shell:
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language | bash |
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theme | Midnight |
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title | _create_win_setup.cmd/_create_linux_setup.sh |
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------------------------Set design paths----------------------------
-- Run Design with: _create_win_setup
-- Use Design Path: <absolute project path>
--------------------------------------------------------------------
-------------------------TE Reference Design---------------------------
--------------------------------------------------------------------
-- (0) Module selection guide, project creation...prebuilt export...
-- (1) Create minimum setup of CMD-Files and exit Batch
-- (2) Create maximum setup of CMD-Files and exit Batch
-- (3) (internal only) Dev
-- (4) (internal only) Prod
-- (c) Go to CMD-File Generation (Manual setup)
-- (d) Go to Documentation (Web Documentation)
-- (g) Install Board Files from Xilinx Board Store (beta)
-- (a) Start design with unsupported Vivado Version (beta)
-- (x) Exit Batch (nothing is done!)
----
Select (ex.:'0' for module selection guide): |
Press 0 and enter to start "Module Selection Guide"
- (optional Win OS) Generate Virtual Drive or use short directory for the reference design (for example x:\<design name>)
- Createproject and follow instructions of the product selection guide, settings file will be configured automatically during this process.
Create hardware description file (.xsa file) for PetaLinux project and export to prebuilt folder
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language | py |
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title | run on Vivado TCL (Script generates design and export files into "<project folder>\prebuilt\hardware\<short name>") |
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TE::hw_build_design -export_prebuilt |
Info |
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Using Vivado GUI is the same, except file export to prebuilt folder. |
Generate Programming Files with Vitis
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language | py |
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theme | Midnight |
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title | run on Vivado TCL (Script generates applications and bootable files, which are defined in "test_board\sw_lib\apps_list.csv") |
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TE::sw_run_vitis -all
TE::sw_run_vitis (optional; Start Vitis from Vivado GUI or start with TE Scripts on Vivado TCL) |
Note |
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TCL scripts generate also platform project, this must be done manually in case GUI is used. See Vitis |
(Optional) BlockRam Firmware Update
Copy "<project folder>\prebuilt\software\<short name>\spi_bootloader.elf" into "<project folder>\firmware\microblaze_0\"
Copy "<project folder>\workspace\sdk\scu\Release\scu.elf" into "\firmware\microblaze_mcs_0\"
Regenerate Vivado Project or Update Bitfile only with "spi_bootloader.elf" and "scu_te0712.elf"
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TE::hw_build_design -export_prebuilt
TE::sw_run_vitis -all |
Launch
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Programming
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Note: - Programming and Startup procedure
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Note |
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Check Module and Carrier TRMs for proper HW configuration before you try any design. Reference Design is also available with prebuilt files. It's recommended to use TE prebuilt files for first launch. |
Xilinx documentation for programming and debugging: Vivado/SDKVitis/SDSoC-Xilinx Software Programming and Debugging
Get prebuilt boot binaries
- Run _create_win_setup.cmd/_create_linux_setup.sh and follow instructions on shell
- Press 0 and enter to start "Module Selection Guide"
- Select assembly version
- Validate selection
Select create and open delivery binary folder
Info |
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Note: Folder "<project folder>\_binaries_<Article Name>" with subfolder "boot_<app name>" for different applications will be generate |
QSPI-Boot mode
- Connect JTAG and Power ON PC
- Open Vivado Project with "vivado_open_existing_project_guimode.cmd" or if not created, create with "vivado_create_project_guimode.cmd"
Type on Vivado TCL Console:
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title | run on Vivado TCL (Script programs u-boot.mcs onto QSPI flash) |
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TE::pr_program_flash -swapp hello_tec0330
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- Reboot PC
SD-Boot mode
Not used on this Example.
JTAG
- Connect Vivado HW Manager and program FPGA
Usage
- Prepare HW like described on section Programming
- Power On PCB
Note: 1. FPGA Load Bitfile into FPGA,MCS configure SI5338 and starts microblaze design, modified SPI Bootloader to load hello_tec0330 application from QSPI into DDR (Depends on linker script)
JTAG/UART Console:
- Launch XSCT or the XSDB console on Vitis:
- type: connect
- type: targets -set -filter {name =~ "MicroBlaze Debug*"} -index 0
- type: jtagterminal -start
- Separate console starts printing out four internal frequencies(can also be seen in the hardware manager) and "Hello Trenz Module" in a loop:
Vivado HW Manager:
- Open Vivado HW Manager
- Add VIO to Dashboard
- Set Radix to unsigned integer for FMeterCLKs (fm_*). Note measurement is not accurate
- Control:
- MCS Reset
- MIG Reset
- Read: SI5338 CLKs (Unit Hz), PCIe Core User Link Up signal, MIG MMCM Lock signal, MIG Init Calibration Done signal, PCB Revision ID
PC:
- Use for example PCI-Z (Win) or KInfoCenter (Linux) to detect PCIe Card
Image Removed
Image Added
System Design - Vivado
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Block Design
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ConstrainsConstraints
Basic module constrains
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#
# Default common settings that do not depend assembly variant
#
set_property BITSTREAM.GENERAL.COMPRESS TRUE [current_design]
set_property BITSTREAM.CONFIG.CONFIGRATE 66 [current_design]
set_property BITSTREAM.CONFIG.SPI_32BIT_ADDR YES [current_design]
set_property BITSTREAM.CONFIG.SPI_BUSWIDTH 4 [current_design]
set_property BITSTREAM.CONFIG.M1PIN PULLNONE [current_design]
set_property BITSTREAM.CONFIG.M2PIN PULLNONE [current_design]
set_property BITSTREAM.CONFIG.M0PIN PULLNONE [current_design]
set_property BITSTREAM.CONFIG.USR_ACCESS TIMESTAMP [current_design] |
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#
#
#
set_property BITSTREAM.CONFIG.UNUSEDPIN PULLDOWN [current_design] |
Design specific constrain
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#----------
#IIC to CPLD
set_property PACKAGE_PIN W29 [get_ports SCF_0_cpld_25_scl]
set_property PACKAGE_PIN W26 [get_ports SCF_0_cpld_19_oe]
set_property PACKAGE_PIN V29 [get_ports SCF_0_cpld_24_sda]
set_property IOSTANDARD LVCMOS18 [get_ports SCF_0_cpld_25_scl]
set_property IOSTANDARD LVCMOS18 [get_ports SCF_0_cpld_19_oe]
set_property IOSTANDARD LVCMOS18 [get_ports SCF_0_cpld_24_sda]
#----------
#PCIe
set_property PACKAGE_PIN E33 [get_ports FEX_4_N]
set_property IOSTANDARD LVCMOS18 [get_ports FEX_4_N]
set_property PACKAGE_PIN AD6 [get_ports {CLK_PCIe_100MHz_clk_p[0]}]
#todo check auto placement:
set_property CLOCK_DEDICATED_ROUTE FALSE [get_nets msys_i/axi_pcie3_0/inst/pcie3_ip_i/inst/gt_top_i/pipe_wrapper_i/pipe_lane[0].gt_wrapper_i/pipeCLK_txoutclk_outTXOUTCLK]
#----------
#Revision ID
set_property PACKAGE_PIN AP27 [get_ports {REV_ID[0]}]
set_property PACKAGE_PIN AN27 [get_ports {REV_ID[1]}]
set_property PACKAGE_PIN AP26 [get_ports {REV_ID[2]}]
set_property PACKAGE_PIN AP25 [get_ports {REV_ID[3]}]
set_property IOSTANDARD LVCMOS18 [get_ports {REV_ID[*]}]
#----------
#QSPI
set_property PACKAGE_PIN AL33 [get_ports {spi_rtl_ss_io[0]}]
set_property IOSTANDARD LVCMOS18 [get_ports {spi_rtl_ss_io[0]}]
set_property PACKAGE_PIN AN33 [get_ports spi_rtl_io0_io]
set_property PACKAGE_PIN AN34 [get_ports spi_rtl_io1_io]
set_property PACKAGE_PIN AK34 [get_ports spi_rtl_io2_io]
set_property PACKAGE_PIN AL34 [get_ports spi_rtl_io3_io]
set_property IOSTANDARD LVCMOS18 [get_ports spi_rtl_io0_io]
set_property IOSTANDARD LVCMOS18 [get_ports spi_rtl_io1_io]
set_property IOSTANDARD LVCMOS18 [get_ports spi_rtl_io2_io]
set_property IOSTANDARD LVCMOS18 [get_ports spi_rtl_io3_io]
#----------
#CLKS
##SI5338_0_DDR3_CLK #diff 1.5V AG17/AH17
set_property PACKAGE_PIN AG17 [get_ports {SI5338_0_DDR3_CLK_clk_p}]
set_property IOSTANDARD DIFF_SSTL15 [get_ports {SI5338_0_DDR3_CLK_clk_p}]
##SI5338_1_MGTCLK_5338_C #diff MGT 1.8V AB6/AB5
set_property PACKAGE_PIN AB6 [get_ports {SI5338_1_MGTCLK_5338_C_clk_p[0]}]
###SI5338_3_LMK_CLK #diff MGT 1.8V to LMK CLKin1
##SI5338_4_MGTCLK2_5338_C #diff MGT 1.8V H6/H5
set_property PACKAGE_PIN H6 [get_ports {SI5338_4_MGTCLK2_5338_C_clk_p[0]}]
##LMK_0_CLK_SYNTH_DCLKout0 #diff 1.8V AD29/AE29
set_property PACKAGE_PIN AD29 [get_ports {LMK_0_CLK_SYNTH_DCLKout0_clk_p[0]}]
set_property IOSTANDARD LVDS [get_ports {LMK_0_CLK_SYNTH_DCLKout0_clk_p[0]}]
set_property DIFF_TERM TRUE [get_ports {LMK_0_CLK_SYNTH_DCLKout0_clk_p[0]}]
##LMK_1_CLK_SYNTH_DCLKout1 #diff 1.8V AE31/AF31
set_property PACKAGE_PIN AE31 [get_ports {LMK_1_CLK_SYNTH_DCLKout1_clk_p[0]}]
set_property IOSTANDARD LVDS [get_ports {LMK_1_CLK_SYNTH_DCLKout1_clk_p[0]}]
set_property DIFF_TERM TRUE [get_ports {LMK_1_CLK_SYNTH_DCLKout1_clk_p[0]}]
###LMK_2_CLKIN_5338_P #diff 1.8Vto Si5338 IN1/IN2
###LMK_3_CLK_SYNTH_SDCLKout3 #diff 1.8Vto N.C.
###LMK_4_CLK_SYNTH_SDCLKout4 #diff MGT 1.8V T6/T5
###LMK_5_CLK_SYNTH_SDCLKout5 #diff 1.8Vto N.C.
###LMK_6_CLK_SYNTH_SDCLKout6 #diff 1.8Vto N.C.
###LMK_7_CLK_SYNTH_SDCLKout7 #diff MGT 1.8V F6/F5
###LMK_8_CLK_SYNTH_SDCLKout8 #diff 1.8Vto N.C.
###LMK_9_CLK_SYNTH_SDCLKout9 #diff 1.8Vto N.C.
###LMK_10_CLK_SYNTH_SDCLKout10 #diff 1.8Vto N.C.
###LMK_11_CLK_SYNTH_SDCLKout11 #diff 1.8Vto N.C.
###LMK_12_CLK_SYNTH_SDCLKout12 #diff 1.8Vto N.C.
###LMK_13_CLK_SYNTH_SDCLKout13 #diff 1.8Vto N.C.
#----------
|
Software Design -
SDK/HSIVitis
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Note: Note:
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For SDK project creation, follow instructions from:
SDK Projects
Application
Vitis project creation, follow instructions from:
Vitis
Application
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---------------------------------------------------------- FPGA Example scuMCS Firmware to configure SI5338 and Reset System. spi_bootloaderTE modified SPI Bootloader from Henrik Brix Andersen. Bootloader to load app or second bootloader from flash into DDR Descriptions: - Modified Files: bootloader.c
- Changes:
- Change the SPI defines in the header
- Add some reiteration in the frist spi read call
xilisf_v5_11TE modified 2020.2 xilisf_v5_11 - Changed default Flash type to 5.
---------------------------------------------------------- Zynq Example: fsblTE modified 2020.2 FSBL General: Module Specific: - Add Files: all TE Files start with te_*
- READ MAC from EEPROM and make Address accessible by UBOOT (need copy defines on uboot platform-top.h)
- CPLD access
- Read CPLD Firmware and SoC Type
- Configure Marvell PHY
fsbl_flashTE modified 2020.2 FSBL General: - Modified Files: main.c
- General Changes:
- Display FSBL Banner
- Set FSBL Boot Mode to JTAG
- Disable Memory initialisation
ZynqMP Example: ---------------------------------------------------------- zynqmp_fsblTE modified 2020.2 FSBL General: - Modified Files: xfsbl_main.c, xfsbl_hooks.h/.c, xfsbl_board.h/.c (search for 'TE Mod' on source code)
- Add Files: te_xfsbl_hooks.h/.c (for hooks and board)
- General Changes:
- Display FSBL Banner and Device Name
Module Specific: - Add Files: all TE Files start with te_*
- Si5338 Configuration
- ETH+OTG Reset over MIO
zynqmp_fsbl_flashTE modified 2020.2 FSBL General: - Modified Files: xfsbl_initialisation.c, xfsbl_hw.h, xfsbl_handoff.c, xfsbl_main.c
- General Changes:
- Display FSBL Banner
- Set FSBL Boot Mode to JTAG
- Disable Memory initialisation
zynqmp_pmufwXilinx default PMU firmware. ---------------------------------------------------------- General Example: hello_te0820Hello TE0820 is a Xilinx Hello World example as endless loop instead of one console output. u-bootU-Boot.elf is generated with PetaLinux. Vitis is used to generate Boot.bin. eepromeeprom is a petalinux application that executes on startup. It reads the unique 48-bit MAC from the onboard eeprom and uses it to set the system MAC address.
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Template location: ./sw_lib/sw_apps/
hello_tec0330
- Xiline Hello World as endless loop with output of four frequencies.
scu
- Si5338 I2C Configuration via MicroBlaze MCS.
srec_spi_bootloader
spi_bootloader
TE modified SPI Bootloader from Henrik Brix Andersen.
Bootloader to load app or second bootloader from flash into DDR.
Here it loads the u-boot.elf from QSPI-Flash to RAM. Hence u-boot.srec becomes redundant.
Descriptions:
- Modified Files: bootloader.c
- Changes:
- Change the SPI defines in the header
- Add some reiteration in the frist spi read call
modified Xilinx SREC Bootloade
Additional Software
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- Add description for other Software, for example SI CLK Builder ...
- SI5338 and SI5345 also Link to:
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SI5338
File location <design name>/misc/Si5338/RegisterMap.txt"<project folder>\misc\Si5338\Si5338-*.slabtimeproj"
General documentation how you work with these this project will be available on Si5338
Appx. A: Change History and Legal Notices
Document Change History
To get content of older revision got to "Change History" of this page and select older document revision number.
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- It's semi automatically, so do following
Add new row below first Copy "Page Information Macro(date)" Macro-Preview, Metadata Version number, Author Name and description to the empty row. Important Revision number must be the same as the Wiki document revision number Update Metadata = "Page Information Macro (current-version)" Preview+1 and add Author and change description. --> this point is will be deleted on newer pdf export template - Metadata is only used of compatibility of older exports
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dateFormat | yyyy-MM-dd |
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prefix | v. |
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| | 2018-10-32 | | John Hartfiel
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infoType | Modified users |
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dateFormat | yyyy-MM-dd |
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Legal Notices
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| IN:Legal Notices |
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