RTFormwork/项目代码/RTBasicsV1/E03梭织坯布检验/DbPanel/.svn/text-base/dsr.pas.svn-base
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unit dsr;
interface
uses
SysUtils, StrUtils, Forms, Classes, DB, ADODB, Grids, DBGrids, Messages;
var
CanLCCL :Boolean;
V_User,V_UserID :string;
TmpHandle :THandle;
cnn_Base :TAdoConnection;
function SplitString(STR_Source :string; STR_Split:string):TStringList;
procedure DoAbnormalC(H: THandle;AConn: TADOConnection;UID: String;
UName: String;TRCarNo: String);stdcall;external 'frabnml.dll';
{
procedure DoRinseprt(H: THandle;//调用窗口句柄
AConn: TADOConnection;//ADO连接
UID: String;//操作员号
UName: String;//操作员名
Machine: String;//机台编号
Task: String//任务序次
);stdcall;
}
procedure DoRinseprt(H: THandle;AConn: TADOConnection;UID:String;
UName :String; Machine:String; Task:String); stdcall; external 'rinsepf.dll';
procedure Set_NextControl( Pass_Form: TCustomForm;var Key:Char);
function checkfunc(handle: Integer; DogFlag: String): Integer; stdcall; external 'FUTONG.DLL';
//检查硬件狗函数
// handle为主窗口句柄
// DogFlag为从数据库中查询到的硬件狗信息
// DLL自动检查硬件狗和DogFlag的信息是否相符不符时将在3分钟左右自动重启计算机
function GetParm(flag: Integer; out len: Integer; outHex: PAnsiChar): Integer; stdcall; external 'FUTONG.DLL';
//硬件狗中获取特定信息如IP地址数据库名称用户名、口令等
//自定义参数flag取值范围为0--4存储空间一共为20个字节为连续的地址空间
//也即参数0最大可用长度为20这时其他参数将覆盖这个区域
// 参数4最大可用长度为4
//DogFlag为字符串信息
function SetParm(flag, len: Integer; inHex: PAnsiChar): Integer; stdcall; external 'FUTONG.DLL';
//flag=5IP,=6User,=7Pass,=8DB
//硬件狗中设置参数传入IP时须设置为 “C8A00164”等形式传入192.168.1.100
//自定义参数用法同上
function InfoFunc(order: Integer; info: PAnsiChar): Integer; stdcall; external 'FUTONG.DLL';
//读取本机硬件信息,返回值为机器网卡个数
//考虑到某些可移动的网卡,要查询固定的网卡信息
//软件安装时要求移除可移动网卡
//order为第几块网卡从0开始
function GetHostIpAddr(DogParm, HostName, IPAddr: PAnsiChar): Integer; stdcall; external 'FUTONG.DLL';
//获取硬件狗标识,本机IP地址仅参考因为机器有多个IP地址获取的只是其中之一
//以及机器名称
function PBEncode(Inbuf: PAnsiChar; out Outbuf: AnsiString; nInLen: Word; nOutLen: Word): Integer;
function PBEncode1(Inbuf: PAnsiChar; out Outbuf: AnsiString; nInLen: Word; nOutLen: Word): Integer;
function PBDecode(Inbuf: PAnsiChar; out Outbuf: AnsiString; nInLen: Word; nOutLen: Word): Integer;
implementation
function SplitString(STR_Source :string; STR_Split:string):TStringList;
var
temp:String;
i:Integer;
begin
Result:=TStringList.Create;
//如果是空自符串则返回空列表
if trim(STR_Source) = '' then exit;
temp:=STR_Source;
i:=pos(STR_Split,STR_Source);
while i <> 0 do
begin
Result.add(copy(temp,0,i-1));
Delete(temp,1,i+length(STR_Split)-1); //如果STR_Split长度大于1的话,原来的只删除STR_Split字符的第一个.
i:=pos(STR_Split,temp);
end;
Result.add(temp);
end;
procedure Set_NextControl( Pass_Form: TCustomForm;var Key:Char);
label
labe_A;
begin
if key=#13 then
if not (Pass_Form.ActiveControl is TDbgrid) Then
Begin
key:=#0;
Pass_Form.perform(WM_NEXTDLGCTL,0,0);
end
else
if (Pass_Form.ActiveControl is TDbgrid) Then
begin
With TDbgrid(Pass_Form.ActiveControl) Do
begin
labe_A:
if Selectedindex<(FieldCount-1) then
Selectedindex:=Selectedindex+1
else Selectedindex:=0;
if not Columns[Selectedindex].Visible then
goto labe_A;
end;
end;
end;
function PBEncode(Inbuf: PAnsiChar; out Outbuf: AnsiString; nInLen: Word; nOutLen: Word): Integer;
var
table: array[0..63] of AnsiChar;
c80, c81, c82, c6: AnsiChar;
i, k, len: Integer;
Tmpbuf: array[0..255] of AnsiChar;
begin
table := 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/';
if (nInLen*4)>(nOutLen*3+3) then Result := 1;
k := nInLen div 3;
len := k*4;
for i:=0 to k-1 do
begin
c80 := Inbuf[i*3];
c6 := Char(Integer(c80) shr 2);
Tmpbuf[i*4] := table[Integer(c6) and $3f];
c80 := Char((Integer(c80) shl 4) and $30);
c81 := Inbuf[i*3+1];
c6 := Char((Integer(c81) shr 4) and $0f);
Tmpbuf[i*4+1] := table[Integer(c80) or Integer(c6)];
c81 := Char((Integer(c81) shl 2) and $3c);
c82 := Inbuf[i*3+2];
c6 := Char((Integer(c82) shr 6) and $03);
Tmpbuf[i*4+2] := table[Integer(c81) or Integer(c6)];
Tmpbuf[i*4+3] := table[Integer(c82) and $3f];
end;
i := nInLen mod 3;
k := nInLen div 3;
if i<>0 then
begin
len := len+4;
c80 := Inbuf[k*3];
c6 := Char(Integer(c80) shr 2);
Tmpbuf[k*4] := table[Integer(c6) and $3f];
if k=1 then
begin
c80 := Char((Integer(c80) shl 4) and $30);
Tmpbuf[k*4+1] := table[Integer(c80)];
Tmpbuf[k*4+2] := '=';
end
else
begin
c80 := Char((Integer(c80) shl 4) and $30);
c81 := Inbuf[k*3+1];
c6 := Char((Integer(c81) shr 4) and $0f);
Tmpbuf[k*4+1] := table[Integer(c80) or Integer(c6)];
c81 := Char((Integer(c81) shl 2) and $3c);
Tmpbuf[k*4+2] := table[Integer(c81)];
end;
Tmpbuf[k*4+3] := '=';
end;
Tmpbuf[len] := #0;
Outbuf := Tmpbuf;
Result := len;
end;
function PBEncode1(Inbuf: PAnsiChar; out Outbuf: AnsiString; nInLen: Word; nOutLen: Word): Integer;
var
table: array[0..63] of AnsiChar;
c80, c81, c82, c6: AnsiChar;
i, k, len: Integer;
Tmpbuf: array[0..255] of AnsiChar;
begin
table := 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/';
if (nInLen*4)>(nOutLen*3+3) then Result := 1;
k := nInLen div 3;
len := k*4;
for i:=0 to k-1 do
begin
c80 := Inbuf[i*3];
c6 := Char(Integer(c80) shr 2);
Tmpbuf[i*4] := table[Integer(c6) and $3f];
c80 := Char((Integer(c80) shl 4) and $30);
c81 := Inbuf[i*3+1];
c6 := Char((Integer(c81) shr 4) and $0f);
Tmpbuf[i*4+1] := table[Integer(c80) or Integer(c6)];
c81 := Char((Integer(c81) shl 2) and $3c);
c82 := Inbuf[i*3+2];
c6 := Char((Integer(c82) shr 6) and $03);
Tmpbuf[i*4+2] := table[Integer(c81) or Integer(c6)];
Tmpbuf[i*4+3] := table[Integer(c82) and $3f];
end;
i := nInLen mod 3;
k := nInLen div 3;
if i<>0 then
begin
len := len+4;
c80 := Inbuf[k*3];
c6 := Char(Integer(c80) shr 2);
Tmpbuf[k*4] := table[Integer(c6) and $3f];
if i=1 then
begin
c80 := Char((Integer(c80) shl 4) and $30);
Tmpbuf[k*4+1] := table[Integer(c80)];
Tmpbuf[k*4+2] := '=';
end
else
begin
c80 := Char((Integer(c80) shl 4) and $30);
c81 := Inbuf[k*3+1];
c6 := Char((Integer(c81) shr 4) and $0f);
Tmpbuf[k*4+1] := table[Integer(c80) or Integer(c6)];
c81 := Char((Integer(c81) shl 2) and $3c);
Tmpbuf[k*4+2] := table[Integer(c81)];
end;
Tmpbuf[k*4+3] := '=';
end;
Tmpbuf[len] := #0;
Outbuf := Tmpbuf;
Result := len;
end;
function PBDecode(Inbuf: PAnsiChar; out Outbuf: AnsiString; nInLen: Word; nOutLen: Word): Integer;
var
pBufIn: PAnsiChar;
szBufTmp: array[0..255] of AnsiChar;
i, dwCoded, nprbytes, nbytesdecoded: Integer;
pszCoded: PAnsiChar;
szBufout: array[0..255] of AnsiChar;
pszBufout: PAnsiChar;
pr2six: array[0..255] of Word;
begin
for i := 0 to 42 do
pr2six[i] := 64;
pr2six[43] := 62;
for i := 44 to 46 do
pr2six[i] := 64;
pr2six[47] := 63;
for i := 48 to 57 do
pr2six[i] := i+4;
for i := 58 to 64 do
pr2six[i] := 64;
for i := 65 to 90 do
pr2six[i] := i-65;
for i := 91 to 96 do
pr2six[i] := 64;
for i := 97 to 122 do
pr2six[i] := i-71;
for i := 123 to 255 do
pr2six[i] := 64;
dwCoded := nInlen;
pszCoded := Inbuf;
while (dwCoded>0) and (pszCoded=' ') do
begin
Inc(pszCoded);
Dec(dwCoded);
end;
if dwCoded>(350-4) then result := 1;
StrLCopy(szBufTmp, pszCoded, dwCoded);
szBufTmp[dwCoded] := #0;
szBufTmp[dwCoded+1] := #0;
szBufTmp[dwCoded+2] := #0;
szBufTmp[dwCoded+3] := #0;
pBufIn := szBufTmp;
repeat
i := pr2six[Integer(pBufIn^)];
Inc(pBufIn);
until i>63;
nprbytes := pBufin-szBufTmp-1;
nbytesdecoded := ((nprbytes+3) div 4)*3;
if nOutLen<nbytesdecoded then result := 2;
if nbytesdecoded>(256-4) then result := 2;
pszBufout := szBufout;
pBufin := szBufTmp;
while nprbytes>0 do
begin
pszBufout^ := Char((pr2six[Integer(pBufin[0])] shl 2) or ((pr2six[Integer(pBufin[1])] shr 4)));
Inc(pszBufout);
pszBufout^ := Char((pr2six[Integer(pBufin[1])] shl 4) or ((pr2six[Integer(pBufin[2])] shr 2)));
Inc(pszBufout);
pszBufout^ := Char((pr2six[Integer(pBufin[2])] shl 6) or (pr2six[Integer(pBufin[3])]));
Inc(pszBufout);
Inc(pBufin, 4);
Dec(nprbytes, 4);
end;
if (nprbytes and $03) <> 0 then
begin
if pr2six[Integer(pBufin[-2])]>63 then Dec(nbytesdecoded, 2)
else Dec(nbytesdecoded);
end;
szBufout[nbytesdecoded] := #0;
Outbuf := szBufout;
result := nbytesdecoded;
end;
end.