mirror of
https://github.com/moparisthebest/Simba
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511 lines
14 KiB
ObjectPascal
511 lines
14 KiB
ObjectPascal
{==============================================================================|
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| Project : Ararat Synapse | 001.004.004 |
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|==============================================================================|
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| Content: support for ASN.1 BER coding and decoding |
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|==============================================================================|
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| Copyright (c)1999-2003, Lukas Gebauer |
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| All rights reserved. |
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| |
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| Redistribution and use in source and binary forms, with or without |
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| modification, are permitted provided that the following conditions are met: |
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| Redistributions of source code must retain the above copyright notice, this |
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| list of conditions and the following disclaimer. |
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| Redistributions in binary form must reproduce the above copyright notice, |
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| this list of conditions and the following disclaimer in the documentation |
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| and/or other materials provided with the distribution. |
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| |
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| Neither the name of Lukas Gebauer nor the names of its contributors may |
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| be used to endorse or promote products derived from this software without |
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| specific prior written permission. |
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| |
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| THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" |
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| AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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| IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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| ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE FOR |
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| ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
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| DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR |
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| SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER |
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| CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
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| LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY |
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| OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH |
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| DAMAGE. |
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|==============================================================================|
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| The Initial Developer of the Original Code is Lukas Gebauer (Czech Republic).|
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| Portions created by Lukas Gebauer are Copyright (c) 1999-2003 |
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| Portions created by Hernan Sanchez are Copyright (c) 2000. |
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| All Rights Reserved. |
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|==============================================================================|
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| Contributor(s): |
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| Hernan Sanchez (hernan.sanchez@iname.com) |
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|==============================================================================|
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| History: see HISTORY.HTM from distribution package |
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| (Found at URL: http://www.ararat.cz/synapse/) |
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|==============================================================================}
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{: @abstract(Utilities for handling ASN.1 BER encoding)
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By this unit you can parse ASN.1 BER encoded data to elements or build back any
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elements to ASN.1 BER encoded buffer. You can dump ASN.1 BER encoded data to
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human readable form for easy debugging, too.
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Supported element types are: ASN1_BOOL, ASN1_INT, ASN1_OCTSTR, ASN1_NULL,
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ASN1_OBJID, ASN1_ENUM, ASN1_SEQ, ASN1_SETOF, ASN1_IPADDR, ASN1_COUNTER,
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ASN1_GAUGE, ASN1_TIMETICKS, ASN1_OPAQUE
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For sample of using, look to @link(TSnmpSend) or @link(TLdapSend)class.
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}
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{$Q-}
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{$H+}
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{$IFDEF FPC}
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{$MODE DELPHI}
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{$ENDIF}
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{$IFDEF UNICODE}
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{$WARN IMPLICIT_STRING_CAST OFF}
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{$WARN IMPLICIT_STRING_CAST_LOSS OFF}
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{$ENDIF}
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unit asn1util;
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interface
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uses
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SysUtils, Classes, synautil;
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const
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ASN1_BOOL = $01;
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ASN1_INT = $02;
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ASN1_OCTSTR = $04;
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ASN1_NULL = $05;
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ASN1_OBJID = $06;
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ASN1_ENUM = $0a;
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ASN1_SEQ = $30;
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ASN1_SETOF = $31;
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ASN1_IPADDR = $40;
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ASN1_COUNTER = $41;
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ASN1_GAUGE = $42;
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ASN1_TIMETICKS = $43;
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ASN1_OPAQUE = $44;
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{:Encodes OID item to binary form.}
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function ASNEncOIDItem(Value: Integer): AnsiString;
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{:Decodes an OID item of the next element in the "Buffer" from the "Start"
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position.}
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function ASNDecOIDItem(var Start: Integer; const Buffer: AnsiString): Integer;
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{:Encodes the length of ASN.1 element to binary.}
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function ASNEncLen(Len: Integer): AnsiString;
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{:Decodes length of next element in "Buffer" from the "Start" position.}
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function ASNDecLen(var Start: Integer; const Buffer: AnsiString): Integer;
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{:Encodes a signed integer to ASN.1 binary}
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function ASNEncInt(Value: Integer): AnsiString;
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{:Encodes unsigned integer into ASN.1 binary}
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function ASNEncUInt(Value: Integer): AnsiString;
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{:Encodes ASN.1 object to binary form.}
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function ASNObject(const Data: AnsiString; ASNType: Integer): AnsiString;
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{:Beginning with the "Start" position, decode the ASN.1 item of the next element
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in "Buffer". Type of item is stored in "ValueType."}
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function ASNItem(var Start: Integer; const Buffer: AnsiString;
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var ValueType: Integer): AnsiString;
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{:Encodes an MIB OID string to binary form.}
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function MibToId(Mib: String): AnsiString;
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{:Decodes MIB OID from binary form to string form.}
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function IdToMib(const Id: AnsiString): String;
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{:Encodes an one number from MIB OID to binary form. (used internally from
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@link(MibToId))}
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function IntMibToStr(const Value: AnsiString): AnsiString;
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{:Convert ASN.1 BER encoded buffer to human readable form for debugging.}
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function ASNdump(const Value: AnsiString): AnsiString;
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implementation
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{==============================================================================}
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function ASNEncOIDItem(Value: Integer): AnsiString;
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var
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x, xm: Integer;
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b: Boolean;
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begin
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x := Value;
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b := False;
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Result := '';
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repeat
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xm := x mod 128;
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x := x div 128;
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if b then
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xm := xm or $80;
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if x > 0 then
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b := True;
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Result := AnsiChar(xm) + Result;
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until x = 0;
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end;
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{==============================================================================}
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function ASNDecOIDItem(var Start: Integer; const Buffer: AnsiString): Integer;
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var
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x: Integer;
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b: Boolean;
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begin
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Result := 0;
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repeat
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Result := Result * 128;
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x := Ord(Buffer[Start]);
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Inc(Start);
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b := x > $7F;
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x := x and $7F;
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Result := Result + x;
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until not b;
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end;
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{==============================================================================}
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function ASNEncLen(Len: Integer): AnsiString;
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var
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x, y: Integer;
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begin
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if Len < $80 then
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Result := AnsiChar(Len)
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else
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begin
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x := Len;
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Result := '';
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repeat
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y := x mod 256;
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x := x div 256;
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Result := AnsiChar(y) + Result;
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until x = 0;
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y := Length(Result);
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y := y or $80;
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Result := AnsiChar(y) + Result;
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end;
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end;
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{==============================================================================}
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function ASNDecLen(var Start: Integer; const Buffer: AnsiString): Integer;
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var
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x, n: Integer;
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begin
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x := Ord(Buffer[Start]);
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Inc(Start);
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if x < $80 then
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Result := x
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else
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begin
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Result := 0;
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x := x and $7F;
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for n := 1 to x do
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begin
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Result := Result * 256;
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x := Ord(Buffer[Start]);
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Inc(Start);
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Result := Result + x;
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end;
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end;
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end;
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{==============================================================================}
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function ASNEncInt(Value: Integer): AnsiString;
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var
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x, y: Cardinal;
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neg: Boolean;
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begin
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neg := Value < 0;
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x := Abs(Value);
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if neg then
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x := not (x - 1);
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Result := '';
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repeat
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y := x mod 256;
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x := x div 256;
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Result := AnsiChar(y) + Result;
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until x = 0;
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if (not neg) and (Result[1] > #$7F) then
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Result := #0 + Result;
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end;
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{==============================================================================}
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function ASNEncUInt(Value: Integer): AnsiString;
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var
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x, y: Integer;
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neg: Boolean;
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begin
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neg := Value < 0;
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x := Value;
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if neg then
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x := x and $7FFFFFFF;
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Result := '';
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repeat
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y := x mod 256;
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x := x div 256;
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Result := AnsiChar(y) + Result;
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until x = 0;
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if neg then
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Result[1] := AnsiChar(Ord(Result[1]) or $80);
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end;
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{==============================================================================}
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function ASNObject(const Data: AnsiString; ASNType: Integer): AnsiString;
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begin
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Result := AnsiChar(ASNType) + ASNEncLen(Length(Data)) + Data;
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end;
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{==============================================================================}
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function ASNItem(var Start: Integer; const Buffer: AnsiString;
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var ValueType: Integer): AnsiString;
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var
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ASNType: Integer;
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ASNSize: Integer;
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y, n: Integer;
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x: byte;
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s: AnsiString;
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c: AnsiChar;
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neg: Boolean;
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l: Integer;
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begin
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Result := '';
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ValueType := ASN1_NULL;
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l := Length(Buffer);
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if l < (Start + 1) then
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Exit;
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ASNType := Ord(Buffer[Start]);
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ValueType := ASNType;
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Inc(Start);
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ASNSize := ASNDecLen(Start, Buffer);
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if (Start + ASNSize - 1) > l then
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Exit;
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if (ASNType and $20) > 0 then
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// Result := '$' + IntToHex(ASNType, 2)
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Result := Copy(Buffer, Start, ASNSize)
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else
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case ASNType of
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ASN1_INT, ASN1_ENUM, ASN1_BOOL:
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begin
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y := 0;
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neg := False;
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for n := 1 to ASNSize do
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begin
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x := Ord(Buffer[Start]);
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if (n = 1) and (x > $7F) then
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neg := True;
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if neg then
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x := not x;
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y := y * 256 + x;
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Inc(Start);
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end;
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if neg then
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y := -(y + 1);
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Result := IntToStr(y);
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end;
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ASN1_COUNTER, ASN1_GAUGE, ASN1_TIMETICKS:
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begin
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y := 0;
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for n := 1 to ASNSize do
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begin
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y := y * 256 + Ord(Buffer[Start]);
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Inc(Start);
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end;
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Result := IntToStr(y);
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end;
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ASN1_OCTSTR, ASN1_OPAQUE:
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begin
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for n := 1 to ASNSize do
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begin
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c := AnsiChar(Buffer[Start]);
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Inc(Start);
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s := s + c;
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end;
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Result := s;
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end;
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ASN1_OBJID:
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begin
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for n := 1 to ASNSize do
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begin
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c := AnsiChar(Buffer[Start]);
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Inc(Start);
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s := s + c;
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end;
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Result := IdToMib(s);
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end;
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ASN1_IPADDR:
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begin
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s := '';
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for n := 1 to ASNSize do
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begin
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if (n <> 1) then
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s := s + '.';
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y := Ord(Buffer[Start]);
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Inc(Start);
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s := s + IntToStr(y);
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end;
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Result := s;
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end;
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ASN1_NULL:
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begin
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Result := '';
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Start := Start + ASNSize;
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end;
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else // unknown
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begin
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for n := 1 to ASNSize do
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begin
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c := AnsiChar(Buffer[Start]);
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Inc(Start);
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s := s + c;
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end;
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Result := s;
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end;
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end;
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end;
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{==============================================================================}
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function MibToId(Mib: String): AnsiString;
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var
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x: Integer;
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function WalkInt(var s: String): Integer;
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var
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x: Integer;
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t: AnsiString;
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begin
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x := Pos('.', s);
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if x < 1 then
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begin
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t := s;
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s := '';
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end
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else
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begin
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t := Copy(s, 1, x - 1);
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s := Copy(s, x + 1, Length(s) - x);
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end;
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Result := StrToIntDef(t, 0);
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end;
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begin
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Result := '';
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x := WalkInt(Mib);
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x := x * 40 + WalkInt(Mib);
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Result := ASNEncOIDItem(x);
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while Mib <> '' do
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begin
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x := WalkInt(Mib);
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Result := Result + ASNEncOIDItem(x);
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end;
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end;
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{==============================================================================}
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function IdToMib(const Id: AnsiString): String;
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var
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x, y, n: Integer;
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begin
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Result := '';
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n := 1;
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while Length(Id) + 1 > n do
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begin
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x := ASNDecOIDItem(n, Id);
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if (n - 1) = 1 then
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begin
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y := x div 40;
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x := x mod 40;
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Result := IntToStr(y);
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end;
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Result := Result + '.' + IntToStr(x);
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end;
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end;
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{==============================================================================}
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function IntMibToStr(const Value: AnsiString): AnsiString;
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var
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n, y: Integer;
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begin
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y := 0;
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for n := 1 to Length(Value) - 1 do
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y := y * 256 + Ord(Value[n]);
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Result := IntToStr(y);
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end;
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{==============================================================================}
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function ASNdump(const Value: AnsiString): AnsiString;
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var
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i, at, x, n: integer;
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s, indent: AnsiString;
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il: TStringList;
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begin
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il := TStringList.Create;
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try
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Result := '';
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i := 1;
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indent := '';
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while i < Length(Value) do
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begin
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for n := il.Count - 1 downto 0 do
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begin
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x := StrToIntDef(il[n], 0);
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if x <= i then
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begin
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il.Delete(n);
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Delete(indent, 1, 2);
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end;
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end;
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s := ASNItem(i, Value, at);
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Result := Result + indent + '$' + IntToHex(at, 2);
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if (at and $20) > 0 then
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begin
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x := Length(s);
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Result := Result + ' constructed: length ' + IntToStr(x);
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indent := indent + ' ';
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il.Add(IntToStr(x + i - 1));
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end
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else
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begin
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case at of
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ASN1_BOOL:
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Result := Result + ' BOOL: ';
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ASN1_INT:
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Result := Result + ' INT: ';
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ASN1_ENUM:
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Result := Result + ' ENUM: ';
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ASN1_COUNTER:
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Result := Result + ' COUNTER: ';
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ASN1_GAUGE:
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Result := Result + ' GAUGE: ';
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ASN1_TIMETICKS:
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Result := Result + ' TIMETICKS: ';
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ASN1_OCTSTR:
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Result := Result + ' OCTSTR: ';
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ASN1_OPAQUE:
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Result := Result + ' OPAQUE: ';
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ASN1_OBJID:
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Result := Result + ' OBJID: ';
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ASN1_IPADDR:
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Result := Result + ' IPADDR: ';
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ASN1_NULL:
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Result := Result + ' NULL: ';
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else // other
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Result := Result + ' unknown: ';
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end;
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if IsBinaryString(s) then
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s := DumpExStr(s);
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Result := Result + s;
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end;
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Result := Result + #$0d + #$0a;
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end;
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finally
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il.Free;
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end;
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end;
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{==============================================================================}
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end.
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