Kramer Sierra Viper 6464CVR-64 [73/88] M set remote address
VIPER COMPOSITE SERIES
67
“M”: Set Remote Address
The command "M" is followed by a remote address value, and it sets the remote address
to be used by all remaining commands in the current command string. This command is
supported on larger routers. It would be used when a client/server software system on a
router control port permits multiple remote users to send commands to the router through
that control port. In such a system, the server software that talks to the control port can
insert an “M” command at the beginning of each command string it sends to the router on
behalf of its clients. The server would assign a different address to each of its clients. The
router uses the address to control access to and modification of protected resources. The
“M” command will typically work in conjunction with the “K” command, which allows a
password to be sent to the router. Some commands, such as those that allow
modification of router configuration settings, might require entry of an administrator
password before allowing the router configuration to be modified. The “K” command is
used to send the password, but the router must be able to record that password in
association with a particular remote user. The router would save the password as the one
established by the remote address specified in the “M” command. The examples below
show how this would work.
If the “M” command is not present in a control string received on a serial port, the address
assigned to the serial port itself is used as the address for all commands in that
command string.
The “M” command works on an honor system. There is nothing to keep a remote device
from forging a false address. This conforms with the philosophy of providing protection
mechanisms that are not designed to be totally hack-proof, but rather, are designed
under the assumption that controlling devices will honor the system. A dedicated hacker
can always hack into the system if he chooses. Note, however, that the server in a
client/server relationship can provide a great deal of added security for the system,
forcing the correct “M” command to be sent each time, and filtering out bogus “M”
commands received from clients.
When the router receives an “M” command in a command string, it echoes the same “M”
command in its response. This allows the server connected to the serial port to parse the
received response string and determine to which client it should route the response.
Normally the server will assign remote addresses to its clients. However, it should always
provide a way to send these addresses to the client, because the client needs to know its
address in order to know how to interpret some responses. By simply passing each “M”
response command received from the router back to the client, the server can let the
client know what its address is.
For example, the command:
** M139 K9664 !!
establishes password 9664 as the password for remote address 139. The response to
this command string would be:
** M139 OK !!
If remote address 13 later sends the command:
** M139 Y8,27 !!
to request that output 8 be connected to input 27, the router would check to see if output
8 has been locked. If so, the router compares the password of remote address 139
(which has previously been set to 96643) to the password that was used to lock output 8.
If they match, the connection request succeeds, but if they don’t match, output 8 is left
unchanged.
Содержание
- Sierra video 1
- User s manual 1
- User s manual 3
- Audio 29 5
- Communication protocol 59 5
- Installation 9 5
- Introduction 1 5
- Operation 41 5
- Specifications 55 5
- Table of contents 5
- Video module overview 45 5
- Warranty 81 5
- Before you begin 7
- Chapter 7
- Introduction 7
- Term acronym definition 7
- Cautions 8
- Regulatory warnings safety information 8
- Warnings 8
- Cautions continued 9
- Fcc notice 9
- Warning 9
- Delivery damage inspection 10
- Emc regulatory notices 10
- International power supply cords 10
- North american power supply cords 10
- Power supply cords 10
- Introduction 11
- Viper composite video routing switcher 11
- Frame front panel 12
- Frame rear panel 12
- Viper composite frame 12
- Factors affecting quality of results 13
- Chapter 15
- Important 15
- Installation 15
- Introduction 15
- Rack mounting 15
- Multi frame connections 16
- Connecting to video devices 17
- Reference sync 17
- Connecting peripherals 18
- Control panels sync inputs and power are all connected to the rear of the master frame the peripherals area may vary depending on the model size and type 18
- Master frame rear panel 18
- Ac power connections 19
- Control processor dip switches 20
- Dip switch settings cont 21
- Ethernet setup 22
- To set ip parameters using the ethernet port 22
- To set ip parameters using the serial port 23
- V18 and newer software 24
- Status 25
- Switching 25
- Switching 26
- Breakaway switching 27
- Status 27
- Programming allowable inputs and outputs 28
- Panel options 29
- Programming buttons 29
- Status 30
- Sierra video 32
- Suggested gpi circuitry 32
- Vdc max 250 ma max 32
- Software upgrades 33
- Chapter 35
- Control system overview 35
- Introduction 35
- Audio frame back panel 36
- Audio frame front panel 36
- Model 128128a 36
- Audio frame back panel 37
- Audio frame front panel 37
- Model 6464a 37
- Rear panel connections 38
- Frame configurations 39
- Mono configurations 39
- Stereo configurations 39
- Balanced unbalanced analog audio connections 40
- Connecting to audio devices 40
- Mono analog audio 40
- Stereo analog audio 40
- Analog audio signal path overview 41
- Input buffers 41
- Crosspoint output driver modules 43
- Frame analog mono 44
- Frame analog stereo 44
- Module layout 44
- Frame analog mono 45
- Frame analog stereo 45
- Front door fans 45
- Chapter 47
- Control system overview 47
- Introduction 47
- Operation 47
- Host mode 48
- Host terminal port 48
- Installation 48
- Serial control ports 48
- Terminal mode 48
- Control panel 49
- Chapter 51
- Introduction 51
- Video module overview 51
- Module layout 52
- Input module 53
- Input module leds 54
- Crosspoint module 55
- Crosspoint module leds 55
- Output module 56
- Output module leds 56
- Master 57
- Processor module 57
- Slave cpu 58
- Power supply module 59
- Chapter 61
- Specifications 61
- Video specifications 61
- Wideband video 61
- Analog audio 62
- Analog audio input characteristics 62
- Analog audio output characteristics 62
- Control 62
- General 62
- Analog audio 63
- Analog audio system performance 63
- Frame height 63
- Mechanical operational characteristics 63
- Chapter 65
- Communication protocol 65
- Introduction 65
- Generic protocol 66
- Leader and trailer 68
- Syntax example description 68
- I capabilities inquiry 69
- Q model name and software version inquiry 69
- R router reset 69
- L matrix size and level names inquiry 70
- O output status inquiry 70
- N input status inquiry 71
- S status inquiry 71
- C clear matrix 72
- K set password 72
- M set remote address 73
- U update request on off 74
- V connect levels 75
- W connect outputs 75
- X connect crosspoint 76
- Y connect afv 76
- Z connect afv 76
- D delay vertical sync intervals 77
- P preset a salvo 77
- T trigger a salvo 77
- B output lock inquiry or change 78
- F field delay 80
- Basic g command 82
- Var modify or query system variables 83
- Var1 modify or query single dimensional array variables 84
- Var2 modify or query two dimensional array variables 85
- Commonly used switching commands 86
- No source 86
- V command connect levels 86
- X command specify levels 86
- Y command all levels 86
- A general 87
- B limited warranty 87
- Chapter 87
- Warranty 87
- C cancellation 88
- D general 88
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