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doc: Moving M68K BSP Content to User Manual (#3905)
Fixed trailing spaces.
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@ -53,7 +53,19 @@ TODO.
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mcf5329
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=======
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TODO.
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Overview
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--------
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This BSP is heavily based on the MCF5235 BSP. The MCF5329EVB is a Motorola
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evaluation board (Zoom) with a LogicPD MCF5329-10 SODIMM-144 card. The
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development kit features the MCF5329 based Fire Engine, as well as a plug-in
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system-on-module containing 32 MB of DDR-SDRAM. The board also includes 2 MB of
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boot flash, 16 MB of NAND flash, a core frequency of 240MHz, an onboard 800x600
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LCD controller, FEC, USB, uarts, CAN bus, QSPI, I2C, and 10/100 Ethernet.
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You can find the link to MCF5329 Reference Manual below:
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* `MCF5329 Reference Manual <https://www.nxp.com/docs/en/reference-manual/MCF5329RM.pdf>`_
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mrm332
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======
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@ -73,7 +85,181 @@ TODO.
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mvme162
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=======
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TODO.
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Overview
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--------
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The MVME162 family provides OEMs and solution developers an ideal platform for
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embedded monitoring and control apllications it allows an OEM to minimize
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engineering expenses while integrating value-added hardware and software
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applications onto an off-the-shelf product. In order to provide the wide range
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of solutions, the MVME162 allows a variety of MPU, memory, and interface
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options such as floating-point, Ethernet, SCSI, and VME. The result is a
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variation of the MVME162 which most closely fits the application requirement.
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There are a large number of model variations on this board. This was the first
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user submitted BSP and continues to be a fairly popular simply because at one
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point it was the highest selling VMEBus board of all time.
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Board Setup
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-----------
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We will setup the RTEMS Lab Board initally to proceed further for the setup
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of TFTP transfer.
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The env settings are:
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.. code-block:: none
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MPU Clock Speed =25Mhz
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162-Bug>env
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Bug or System environment [B/S] = B?
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Field Service Menu Enable [Y/N] = N?
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Remote Start Method Switch [G/M/B/N] = B?
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Probe System for Supported I/O Controllers [Y/N] = Y?
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Negate VMEbus SYSFAIL* Always [Y/N] = N?
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Local SCSI Bus Reset on Debugger Startup [Y/N] = N?
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Local SCSI Bus Negotiations Type [A/S/N] = A?
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Industry Pack Reset on Debugger Startup [Y/N] = Y?
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Ignore CFGA Block on a Hard Disk Boot [Y/N] = Y?
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Auto Boot Enable [Y/N] = N?
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Auto Boot at power-up only [Y/N] = Y?
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Auto Boot Controller LUN = 00?
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Auto Boot Device LUN = 00?
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Auto Boot Abort Delay = 15?
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Auto Boot Default String [NULL for a empty string] = ?
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ROM Boot Enable [Y/N] = N?
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ROM Boot at power-up only [Y/N] = Y?
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ROM Boot Enable search of VMEbus [Y/N] = N?
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ROM Boot Abort Delay = 0?
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ROM Boot Direct Starting Address = FF800000?
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ROM Boot Direct Ending Address = FFDFFFFC?
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Network Auto Boot Enable [Y/N] = N?
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Network Auto Boot at power-up only [Y/N] = Y?
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Network Auto Boot Controller LUN = 00?
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Network Auto Boot Device LUN = 00?
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Network Auto Boot Abort Delay = 5?
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Network Auto Boot Configuration Parameters Pointer (NVRAM) = FFE0FF00?
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Memory Search Starting Address = 00000000?
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Memory Search Ending Address = 01000000?
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Memory Search Increment Size = 00010000?
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Memory Search Delay Enable [Y/N] = N?
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Memory Search Delay Address = FFFFD20F?
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Memory Size Enable [Y/N] = Y?
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Memory Size Starting Address = 00000000?
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Memory Size Ending Address = 01000000?
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Base Address of Dynamic Memory = 00000000?
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Size of Parity Memory = 00000000?
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Size of ECC Memory Board #0 = 01000000?
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Size of ECC Memory Board #1 = 00000000?
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Base Address of Static Memory = FFE00000?
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Size of Static Memory = 00020000?
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Slave Enable #1 [Y/N] = Y?
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Slave Starting Address #1 = 00000000?
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Slave Ending Address #1 = 00FFFFFF?
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Slave Address Translation Address #1 = 00000000?
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Slave Address Translation Select #1 = 00000000?
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Slave Control #1 = 03FF?
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Slave Enable #2 [Y/N] = N?
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Slave Starting Address #2 = 00000000?
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Slave Ending Address #2 = 00000000?
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Slave Address Translation Address #2 = 00000000?
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Slave Address Translation Select #2 = 00000000?
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Slave Control #2 = 0000?
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Master Enable #1 [Y/N] = Y?
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Master Starting Address #1 = 01000000?
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Master Ending Address #1 = EFFFFFFF?
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Master Control #1 = 0D?
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Master Enable #2 [Y/N] = N?
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Master Starting Address #2 = 00000000?
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Master Ending Address #2 = 00000000?
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Master Control #2 = 00?
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Master Enable #3 [Y/N] = N?
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Master Starting Address #3 = 00000000?
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Master Ending Address #3 = 00000000?
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Master Control #3 = 00?
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Master Enable #4 [Y/N] = N?
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Master Starting Address #4 = 00000000?
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Master Ending Address #4 = 00000000?
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Master Address Translation Address #4 = 00000000?
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Master Address Translation Select #4 = 00000000?
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Master Control #4 = 00?
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Short I/O (VMEbus A16) Enable [Y/N] = Y?
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Short I/O (VMEbus A16) Control = 01?
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F-Page (VMEbus A24) Enable [Y/N] = Y?
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F-Page (VMEbus A24) Control = 02?
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ROM Access Time Code = 03?
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FLASH Access Time Code = 02?
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MCC Vector Base = 05?
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VMEC2 Vector Base #1 = 06?
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VMEC2 Vector Base #2 = 07?
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VMEC2 GCSR Group Base Address = D2?
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VMEC2 GCSR Board Base Address = 00?
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VMEbus Global Time Out Code = 01?
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Local Bus Time Out Code = 02?
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VMEbus Access Time Out Code = 02?
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IP A Base Address = 00000000?
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IP B Base Address = 00000000?
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IP C Base Address = 00000000?
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IP D Base Address = 00000000?
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IP D/C/B/A Memory Size = 00000000?
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IP D/C/B/A General Control = 00000000?
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IP D/C/B/A Interrupt 0 Control = 00000000?
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IP D/C/B/A Interrupt 1 Control = 00000000?
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To setup the Server/Client IP Addresses for the TFTP Transfer, we will use the
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NIOT command. NIOT (Network I/O Teach) is a 162-Bug's debugger command commonly
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used to setup the Server/Client IP Addresses for the TFTP Transfer.
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The NIOT command goes something like this:
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.. code-block:: none
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162-Bug>niot
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Controller LUN =00?
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Device LUN =00?
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Node Control Memory Address =FFE10000?
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Client IP Address =192.168.1.245?
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Server IP Address =192.168.1.92?
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Subnet IP Address Mask =255.255.255.0?
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Broadcast IP Address =192.168.1.255?
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Gateway IP Address =0.0.0.0?
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Boot File Name ("NULL" for None) =/mvme162.img?
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Argument File Name ("NULL" for None) =?
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Boot File Load Address =00020000?
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Boot File Execution Address =00020000?
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Boot File Execution Delay =00000000?
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Boot File Length =00000000?
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Boot File Byte Offset =00000000?
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BOOTP/RARP Request Retry =00?
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TFTP/ARP Request Retry =00?
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Trace Character Buffer Address =00000000?
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BOOTP/RARP Request Control: Always/When-Needed (A/W)=A?
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BOOTP/RARP Reply Update Control: Yes/No (Y/N) =Y?
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Downloading and Executing
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--------------------------
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Download from the TFTP server using the 162-Bug's "NBO"
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(Network Boot Operating System) command:
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.. code-block:: none
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162-Bug>nbo
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Network Booting from: VME162, Controller 0, Device 0
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Loading: /mvme162.img
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Client IP Address = 192.168.1.245
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Server IP Address = 192.168.1.92
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Gateway IP Address = 0.0.0.0
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Subnet IP Address Mask = 255.255.255.0
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Boot File Name = /mvme162.img
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Argument File Name =
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Network Boot File load in progress... To abort hit <BREAK>
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Bytes Received =&356528, Bytes Loaded =&356528
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Bytes/Second =&89132, Elapsed Time =4 Second(s)
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The program will automatically run when download is complete.
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mvme167
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=======
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