sysstr.inc 79 KB

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  1. {
  2. *********************************************************************
  3. Copyright (C) 1997, 1998 Gertjan Schouten
  4. See the file COPYING.FPC, included in this distribution,
  5. for details about the copyright.
  6. This program is distributed in the hope that it will be useful,
  7. but WITHOUT ANY WARRANTY; without even the implied warranty of
  8. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  9. **********************************************************************
  10. System Utilities For Free Pascal
  11. }
  12. { NewStr creates a new PString and assigns S to it
  13. if length(s) = 0 NewStr returns Nil }
  14. function NewStr(const S: string): PString;
  15. begin
  16. if (S='') then
  17. Result:=nil
  18. else
  19. begin
  20. new(result);
  21. if (Result<>nil) then
  22. Result^:=s;
  23. end;
  24. end;
  25. {$ifdef dummy}
  26. { declaring this breaks delphi compatibility and e.g. tw3721.pp }
  27. FUNCTION NewStr (Const S: ShortString): PShortString;
  28. VAR P: PShortString;
  29. BEGIN
  30. If (S = '') Then
  31. P := Nil
  32. Else
  33. Begin { Return nil }
  34. GetMem(P, Length(S) + 1); { Allocate memory }
  35. If (P<>Nil) Then P^ := S; { Hold string }
  36. End;
  37. NewStr := P; { Return result }
  38. END;
  39. {$endif dummy}
  40. { DisposeStr frees the memory occupied by S }
  41. procedure DisposeStr(S: PString);
  42. begin
  43. if S <> Nil then
  44. begin
  45. dispose(s);
  46. S:=nil;
  47. end;
  48. end;
  49. PROCEDURE DisposeStr (S: PShortString);
  50. BEGIN
  51. If (S <> Nil) Then FreeMem(S, Length(S^) + 1); { Release memory }
  52. END;
  53. { AssignStr assigns S to P^ }
  54. procedure AssignStr(var P: PString; const S: string);
  55. begin
  56. P^ := s;
  57. end ;
  58. { AppendStr appends S to Dest }
  59. procedure AppendStr(var Dest: String; const S: string);
  60. begin
  61. Dest := Dest + S;
  62. end ;
  63. Function InternalChangeCase(Const S : AnsiString; const Chars: TSysCharSet; const Adjustment: Longint): AnsiString;
  64. var
  65. i : Integer;
  66. P : PChar;
  67. Unique : Boolean;
  68. begin
  69. Result := S;
  70. if Result='' then
  71. exit;
  72. Unique:=false;
  73. P:=PChar(Result);
  74. for i:=1 to Length(Result) do
  75. begin
  76. if CharInSet(P^,Chars) then
  77. begin
  78. if not Unique then
  79. begin
  80. UniqueString(Result);
  81. p:=@Result[i];
  82. Unique:=true;
  83. end;
  84. P^:=Char(Ord(P^)+Adjustment);
  85. end;
  86. Inc(P);
  87. end;
  88. end;
  89. { UpperCase returns a copy of S where all lowercase characters ( from a to z )
  90. have been converted to uppercase }
  91. Function UpperCase(Const S : AnsiString) : AnsiString;
  92. begin
  93. Result:=InternalChangeCase(S,['a'..'z'],-32);
  94. end;
  95. { LowerCase returns a copy of S where all uppercase characters ( from A to Z )
  96. have been converted to lowercase }
  97. Function Lowercase(Const S : AnsiString) : AnsiString;
  98. begin
  99. Result:=InternalChangeCase(S,['A'..'Z'],32);
  100. end;
  101. function LowerCase(const V: variant): string; overload;{$ifdef SYSUTILSINLINE}inline;{$endif}
  102. begin
  103. result:=LowerCase(ansistring(V));
  104. end;
  105. { CompareStr compares S1 and S2, the result is the based on
  106. substraction of the ascii values of the characters in S1 and S2
  107. case result
  108. S1 < S2 < 0
  109. S1 > S2 > 0
  110. S1 = S2 = 0 }
  111. function CompareStr(const S1, S2: string): Integer;
  112. var count, count1, count2: integer;
  113. begin
  114. result := 0;
  115. Count1 := Length(S1);
  116. Count2 := Length(S2);
  117. if Count1>Count2 then
  118. Count:=Count2
  119. else
  120. Count:=Count1;
  121. result := CompareMemRange(Pointer(S1),Pointer(S2), Count);
  122. if result=0 then
  123. result:=Count1-Count2;
  124. end;
  125. { CompareMemRange returns the result of comparison of Length bytes at P1 and P2
  126. case result
  127. P1 < P2 < 0
  128. P1 > P2 > 0
  129. P1 = P2 = 0 }
  130. function CompareMemRange(P1, P2: Pointer; Length: PtrUInt): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  131. begin
  132. Result:=CompareByte(P1^,P2^,Length);
  133. end;
  134. function CompareMem(P1, P2: Pointer; Length: PtrUInt): Boolean;{$ifdef SYSUTILSINLINE}inline;{$endif}
  135. begin
  136. Result:=CompareByte(P1^,P2^,Length)=0;
  137. end;
  138. { CompareText compares S1 and S2, the result is the based on
  139. substraction of the ascii values of characters in S1 and S2
  140. comparison is case-insensitive
  141. case result
  142. S1 < S2 < 0
  143. S1 > S2 > 0
  144. S1 = S2 = 0 }
  145. function CompareText(const S1, S2: string): integer;
  146. var
  147. i, count, count1, count2: integer; Chr1, Chr2: byte;
  148. P1, P2: PChar;
  149. begin
  150. Count1 := Length(S1);
  151. Count2 := Length(S2);
  152. if (Count1>Count2) then
  153. Count := Count2
  154. else
  155. Count := Count1;
  156. i := 0;
  157. if count>0 then
  158. begin
  159. P1 := @S1[1];
  160. P2 := @S2[1];
  161. while i < Count do
  162. begin
  163. Chr1 := byte(p1^);
  164. Chr2 := byte(p2^);
  165. if Chr1 <> Chr2 then
  166. begin
  167. if Chr1 in [97..122] then
  168. dec(Chr1,32);
  169. if Chr2 in [97..122] then
  170. dec(Chr2,32);
  171. if Chr1 <> Chr2 then
  172. Break;
  173. end;
  174. Inc(P1); Inc(P2); Inc(I);
  175. end;
  176. end;
  177. if i < Count then
  178. result := Chr1-Chr2
  179. else
  180. result := count1-count2;
  181. end;
  182. function SameText(const s1,s2:String):Boolean;
  183. begin
  184. Result:=CompareText(S1,S2)=0;
  185. end;
  186. {$ifndef FPC_NOGENERICANSIROUTINES}
  187. {==============================================================================}
  188. { Ansi string functions }
  189. { these functions rely on the character set loaded by the OS }
  190. {==============================================================================}
  191. type
  192. TCaseTranslationTable = array[0..255] of char;
  193. var
  194. { Tables with upper and lowercase forms of character sets.
  195. MUST be initialized with the correct code-pages }
  196. UpperCaseTable: TCaseTranslationTable;
  197. LowerCaseTable: TCaseTranslationTable;
  198. function GenericAnsiUpperCase(const s: string): string;
  199. var
  200. len, i: integer;
  201. begin
  202. len := length(s);
  203. SetLength(result, len);
  204. for i := 1 to len do
  205. result[i] := UpperCaseTable[ord(s[i])];
  206. end;
  207. function GenericAnsiLowerCase(const s: string): string;
  208. var
  209. len, i: integer;
  210. begin
  211. len := length(s);
  212. SetLength(result, len);
  213. for i := 1 to len do
  214. result[i] := LowerCaseTable[ord(s[i])];
  215. end;
  216. function GenericAnsiCompareStr(const S1, S2: string): PtrInt;
  217. Var
  218. I,L1,L2 : SizeInt;
  219. begin
  220. Result:=0;
  221. L1:=Length(S1);
  222. L2:=Length(S2);
  223. I:=1;
  224. While (Result=0) and ((I<=L1) and (I<=L2)) do
  225. begin
  226. Result:=Ord(S1[I])-Ord(S2[I]); //!! Must be replaced by ansi characters !!
  227. Inc(I);
  228. end;
  229. If Result=0 Then
  230. Result:=L1-L2;
  231. end;
  232. function GenericAnsiCompareText(const S1, S2: string): PtrInt;
  233. Var
  234. I,L1,L2 : SizeInt;
  235. begin
  236. Result:=0;
  237. L1:=Length(S1);
  238. L2:=Length(S2);
  239. I:=1;
  240. While (Result=0) and ((I<=L1) and (I<=L2)) do
  241. begin
  242. Result:=Ord(LowerCaseTable[Ord(S1[I])])-Ord(LowerCaseTable[Ord(S2[I])]); //!! Must be replaced by ansi characters !!
  243. Inc(I);
  244. end;
  245. If Result=0 Then
  246. Result:=L1-L2;
  247. end;
  248. function GenericAnsiStrComp(S1, S2: PChar): PtrInt;
  249. begin
  250. Result:=0;
  251. If S1=Nil then
  252. begin
  253. If S2=Nil Then Exit;
  254. result:=-1;
  255. exit;
  256. end;
  257. If S2=Nil then
  258. begin
  259. Result:=1;
  260. exit;
  261. end;
  262. While (Result=0) and (S1^<>#0) and (S2^<>#0) do begin
  263. Result:=Ord(S1^)-Ord(S2^); //!! Must be replaced by ansi characters !!
  264. Inc(S1);
  265. Inc(S2);
  266. end;
  267. if (Result=0) and (S1^<>S2^) then // loop ended because exactly one has #0
  268. if S1^=#0 then // shorter string is smaller
  269. result:=-1
  270. else
  271. result:=1;
  272. end;
  273. function GenericAnsiStrIComp(S1, S2: PChar): PtrInt;
  274. begin
  275. Result:=0;
  276. If S1=Nil then
  277. begin
  278. If S2=Nil Then Exit;
  279. result:=-1;
  280. exit;
  281. end;
  282. If S2=Nil then
  283. begin
  284. Result:=1;
  285. exit;
  286. end;
  287. While (Result=0) and (S1^<>#0) and (S2^<>#0) do begin
  288. Result:=Ord(LowerCaseTable[Ord(S1[0])])-Ord(LowerCaseTable[Ord(S2[0])]); //!! Must be replaced by ansi characters !!
  289. Inc(S1);
  290. Inc(S2);
  291. end;
  292. if (Result=0) and (s1[0]<>s2[0]) then //length(s1)<>length(s2)
  293. if s1[0]=#0 then
  294. Result:=-1 //s1 shorter than s2
  295. else
  296. Result:=1; //s1 longer than s2
  297. end;
  298. function GenericAnsiStrLComp(S1, S2: PChar; MaxLen: PtrUInt): PtrInt;
  299. Var I : cardinal;
  300. begin
  301. Result:=0;
  302. If MaxLen=0 then exit;
  303. If S1=Nil then
  304. begin
  305. If S2=Nil Then Exit;
  306. result:=-1;
  307. exit;
  308. end;
  309. If S2=Nil then
  310. begin
  311. Result:=1;
  312. exit;
  313. end;
  314. I:=0;
  315. Repeat
  316. Result:=Ord(S1[0])-Ord(S2[0]); //!! Must be replaced by ansi characters !!
  317. Inc(S1);
  318. Inc(S2);
  319. Inc(I);
  320. Until (Result<>0) or (I=MaxLen)
  321. end;
  322. function GenericAnsiStrLIComp(S1, S2: PChar; MaxLen: PtrUInt): PtrInt;
  323. Var I : cardinal;
  324. begin
  325. Result:=0;
  326. If MaxLen=0 then exit;
  327. If S1=Nil then
  328. begin
  329. If S2=Nil Then Exit;
  330. result:=-1;
  331. exit;
  332. end;
  333. If S2=Nil then
  334. begin
  335. Result:=1;
  336. exit;
  337. end;
  338. I:=0;
  339. Repeat
  340. Result:=Ord(LowerCaseTable[Ord(S1[0])])-Ord(LowerCaseTable[Ord(S2[0])]); //!! Must be replaced by ansi characters !!
  341. Inc(S1);
  342. Inc(S2);
  343. Inc(I);
  344. Until (Result<>0) or (I=MaxLen)
  345. end;
  346. function GenericAnsiStrLower(Str: PChar): PChar;
  347. begin
  348. result := Str;
  349. if Str <> Nil then begin
  350. while Str^ <> #0 do begin
  351. Str^ := LowerCaseTable[byte(Str^)];
  352. Str := Str + 1;
  353. end;
  354. end;
  355. end;
  356. function GenericAnsiStrUpper(Str: PChar): PChar;
  357. begin
  358. result := Str;
  359. if Str <> Nil then begin
  360. while Str^ <> #0 do begin
  361. Str^ := UpperCaseTable[byte(Str^)];
  362. Str := Str + 1;
  363. end ;
  364. end ;
  365. end ;
  366. {$endif FPC_NOGENERICANSIROUTINES}
  367. function AnsiSameText(const s1,s2:String):Boolean;{$ifdef SYSUTILSINLINE}inline;{$endif}
  368. begin
  369. AnsiSameText:=AnsiCompareText(S1,S2)=0;
  370. end;
  371. function AnsiSameStr(const s1,s2:String):Boolean;{$ifdef SYSUTILSINLINE}inline;{$endif}
  372. begin
  373. AnsiSameStr:=AnsiCompareStr(S1,S2)=0;
  374. end;
  375. function AnsiLastChar(const S: string): PChar;
  376. begin
  377. //!! No multibyte yet, so we return the last one.
  378. result:=StrEnd(Pchar(pointer(S))); // strend checks for nil
  379. Dec(Result);
  380. end ;
  381. function AnsiStrLastChar(Str: PChar): PChar;
  382. begin
  383. //!! No multibyte yet, so we return the last one.
  384. result:=StrEnd(Str);
  385. Dec(Result);
  386. end ;
  387. function AnsiUpperCase(const s: string): string;{$ifdef SYSUTILSINLINE}inline;{$endif}
  388. begin
  389. result:=widestringmanager.UpperAnsiStringProc(s);
  390. end;
  391. function AnsiLowerCase(const s: string): string;{$ifdef SYSUTILSINLINE}inline;{$endif}
  392. begin
  393. result:=widestringmanager.LowerAnsiStringProc(s);
  394. end;
  395. function AnsiCompareStr(const S1, S2: string): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  396. begin
  397. result:=widestringmanager.CompareStrAnsiStringProc(s1,s2);
  398. end;
  399. function AnsiCompareText(const S1, S2: string): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  400. begin
  401. result:=widestringmanager.CompareTextAnsiStringProc(s1,s2);
  402. end;
  403. function AnsiStrComp(S1, S2: PChar): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  404. begin
  405. result:=widestringmanager.StrCompAnsiStringProc(s1,s2);
  406. end;
  407. function AnsiStrIComp(S1, S2: PChar): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  408. begin
  409. result:=widestringmanager.StrICompAnsiStringProc(s1,s2);
  410. end;
  411. function AnsiStrLComp(S1, S2: PChar; MaxLen: cardinal): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  412. begin
  413. result:=widestringmanager.StrLCompAnsiStringProc(s1,s2,maxlen);
  414. end;
  415. function AnsiStrLIComp(S1, S2: PChar; MaxLen: cardinal): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  416. begin
  417. result:=widestringmanager.StrLICompAnsiStringProc(s1,s2,maxlen);
  418. end;
  419. function AnsiStrLower(Str: PChar): PChar;{$ifdef SYSUTILSINLINE}inline;{$endif}
  420. begin
  421. result:=widestringmanager.StrLowerAnsiStringProc(Str);
  422. end;
  423. function AnsiStrUpper(Str: PChar): PChar;{$ifdef SYSUTILSINLINE}inline;{$endif}
  424. begin
  425. result:=widestringmanager.StrUpperAnsiStringProc(Str);
  426. end;
  427. {==============================================================================}
  428. { End of Ansi functions }
  429. {==============================================================================}
  430. { Trim returns a copy of S with blanks characters on the left and right stripped off }
  431. Const WhiteSpace = [#0..' '];
  432. function Trim(const S: string): string;
  433. var Ofs, Len: integer;
  434. begin
  435. len := Length(S);
  436. while (Len>0) and (S[Len] in WhiteSpace) do
  437. dec(Len);
  438. Ofs := 1;
  439. while (Ofs<=Len) and (S[Ofs] in WhiteSpace) do
  440. Inc(Ofs);
  441. result := Copy(S, Ofs, 1 + Len - Ofs);
  442. end ;
  443. { TrimLeft returns a copy of S with all blank characters on the left stripped off }
  444. function TrimLeft(const S: string): string;
  445. var i,l:integer;
  446. begin
  447. l := length(s);
  448. i := 1;
  449. while (i<=l) and (s[i] in whitespace) do
  450. inc(i);
  451. Result := copy(s, i, l);
  452. end ;
  453. { TrimRight returns a copy of S with all blank characters on the right stripped off }
  454. function TrimRight(const S: string): string;
  455. var l:integer;
  456. begin
  457. l := length(s);
  458. while (l>0) and (s[l] in whitespace) do
  459. dec(l);
  460. result := copy(s,1,l);
  461. end ;
  462. { QuotedStr returns S quoted left and right and every single quote in S
  463. replaced by two quotes }
  464. function QuotedStr(const S: string): string;
  465. begin
  466. result := AnsiQuotedStr(s, '''');
  467. end ;
  468. { AnsiQuotedStr returns S quoted left and right by Quote,
  469. and every single occurance of Quote replaced by two }
  470. function AnsiQuotedStr(const S: string; Quote: char): string;
  471. var i, j, count: integer;
  472. begin
  473. result := '' + Quote;
  474. count := length(s);
  475. i := 0;
  476. j := 0;
  477. while i < count do begin
  478. i := i + 1;
  479. if S[i] = Quote then begin
  480. result := result + copy(S, 1 + j, i - j) + Quote;
  481. j := i;
  482. end ;
  483. end ;
  484. if i <> j then
  485. result := result + copy(S, 1 + j, i - j);
  486. result := result + Quote;
  487. end ;
  488. { AnsiExtractQuotedStr returns a copy of Src with quote characters
  489. deleted to the left and right and double occurances
  490. of Quote replaced by a single Quote }
  491. function AnsiExtractQuotedStr(var Src: PChar; Quote: Char): string;
  492. var
  493. P,Q,R: PChar;
  494. begin
  495. P := Src;
  496. Q := StrEnd(P);
  497. result:='';
  498. if P=Q then exit;
  499. if P^<>quote then exit;
  500. inc(p);
  501. setlength(result,(Q-P)+1);
  502. R:=@Result[1];
  503. while P <> Q do
  504. begin
  505. R^:=P^;
  506. inc(R);
  507. if (P^ = Quote) then
  508. begin
  509. P := P + 1;
  510. if (p^ <> Quote) then
  511. begin
  512. dec(R);
  513. break;
  514. end;
  515. end;
  516. P := P + 1;
  517. end ;
  518. src:=p;
  519. SetLength(result, (R-pchar(@Result[1])));
  520. end ;
  521. { AdjustLineBreaks returns S with all CR characters not followed by LF
  522. replaced with CR/LF }
  523. // under Linux all CR characters or CR/LF combinations should be replaced with LF
  524. function AdjustLineBreaks(const S: string): string;
  525. begin
  526. Result:=AdjustLineBreaks(S,DefaultTextLineBreakStyle);
  527. end;
  528. function AdjustLineBreaks(const S: string; Style: TTextLineBreakStyle): string;
  529. var
  530. Source,Dest: PChar;
  531. DestLen: Integer;
  532. I,J,L: Longint;
  533. begin
  534. Source:=Pointer(S);
  535. L:=Length(S);
  536. DestLen:=L;
  537. I:=1;
  538. while (I<=L) do
  539. begin
  540. case S[i] of
  541. #10: if (Style=tlbsCRLF) then
  542. Inc(DestLen);
  543. #13: if (Style=tlbsCRLF) then
  544. if (I<L) and (S[i+1]=#10) then
  545. Inc(I)
  546. else
  547. Inc(DestLen)
  548. else if (I<L) and (S[I+1]=#10) then
  549. Dec(DestLen);
  550. end;
  551. Inc(I);
  552. end;
  553. if (DestLen=L) then
  554. Result:=S
  555. else
  556. begin
  557. SetLength(Result, DestLen);
  558. FillChar(Result[1],DestLen,0);
  559. Dest := Pointer(Result);
  560. J:=0;
  561. I:=0;
  562. While I<L do
  563. case Source[I] of
  564. #10: begin
  565. if Style=tlbsCRLF then
  566. begin
  567. Dest[j]:=#13;
  568. Inc(J);
  569. end;
  570. Dest[J] := #10;
  571. Inc(J);
  572. Inc(I);
  573. end;
  574. #13: begin
  575. if Style=tlbsCRLF then
  576. begin
  577. Dest[j] := #13;
  578. Inc(J);
  579. end;
  580. Dest[j]:=#10;
  581. Inc(J);
  582. Inc(I);
  583. if Source[I]=#10 then
  584. Inc(I);
  585. end;
  586. else
  587. Dest[j]:=Source[i];
  588. Inc(J);
  589. Inc(I);
  590. end;
  591. end;
  592. end;
  593. { IsValidIdent returns true if the first character of Ident is in:
  594. 'A' to 'Z', 'a' to 'z' or '_' and the following characters are
  595. on of: 'A' to 'Z', 'a' to 'z', '0'..'9' or '_' }
  596. function IsValidIdent(const Ident: string; AllowDots: Boolean = False; StrictDots: Boolean = False): Boolean;
  597. const
  598. Alpha = ['A'..'Z', 'a'..'z', '_'];
  599. AlphaNum = Alpha + ['0'..'9'];
  600. Dot = '.';
  601. var
  602. First: Boolean;
  603. I, Len: Integer;
  604. begin
  605. Len := Length(Ident);
  606. if Len < 1 then
  607. Exit(False);
  608. First := True;
  609. for I := 1 to Len do
  610. begin
  611. if First then
  612. begin
  613. Result := Ident[I] in Alpha;
  614. First := False;
  615. end
  616. else if AllowDots and (Ident[I] = Dot) then
  617. begin
  618. if StrictDots then
  619. begin
  620. Result := I < Len;
  621. First := True;
  622. end;
  623. end
  624. else
  625. Result := Ident[I] in AlphaNum;
  626. if not Result then
  627. Break;
  628. end;
  629. end;
  630. { IntToStr returns a string representing the value of Value }
  631. function IntToStr(Value: Longint): string;
  632. begin
  633. System.Str(Value, result);
  634. end ;
  635. function IntToStr(Value: int64): string;
  636. begin
  637. System.Str(Value, result);
  638. end ;
  639. function IntToStr(Value: QWord): string;
  640. begin
  641. System.Str(Value, result);
  642. end ;
  643. { IntToHex returns a string representing the hexadecimal value of Value }
  644. const
  645. HexDigits: array[0..15] of char = '0123456789ABCDEF';
  646. function IntToHex(Value: Longint; Digits: integer): string;
  647. var i: integer;
  648. begin
  649. If Digits=0 then
  650. Digits:=1;
  651. SetLength(result, digits);
  652. for i := 0 to digits - 1 do
  653. begin
  654. result[digits - i] := HexDigits[value and 15];
  655. value := value shr 4;
  656. end ;
  657. while value <> 0 do begin
  658. result := HexDigits[value and 15] + result;
  659. value := value shr 4;
  660. end;
  661. end ;
  662. function IntToHex(Value: int64; Digits: integer): string;
  663. var i: integer;
  664. begin
  665. If Digits=0 then
  666. Digits:=1;
  667. SetLength(result, digits);
  668. for i := 0 to digits - 1 do
  669. begin
  670. result[digits - i] := HexDigits[value and 15];
  671. value := value shr 4;
  672. end ;
  673. while value <> 0 do begin
  674. result := HexDigits[value and 15] + result;
  675. value := value shr 4;
  676. end;
  677. end ;
  678. function IntToHex(Value: QWord; Digits: integer): string;
  679. begin
  680. result:=IntToHex(Int64(Value),Digits);
  681. end;
  682. function TryStrToInt(const s: string; out i : Longint) : boolean;
  683. var Error : word;
  684. begin
  685. Val(s, i, Error);
  686. TryStrToInt:=Error=0
  687. end;
  688. { StrToInt converts the string S to an integer value,
  689. if S does not represent a valid integer value EConvertError is raised }
  690. function StrToInt(const S: string): Longint;
  691. var Error: word;
  692. begin
  693. Val(S, result, Error);
  694. if Error <> 0 then raise EConvertError.createfmt(SInvalidInteger,[S]);
  695. end ;
  696. function StrToInt64(const S: string): int64;
  697. var Error: word;
  698. begin
  699. Val(S, result, Error);
  700. if Error <> 0 then raise EConvertError.createfmt(SInvalidInteger,[S]);
  701. end;
  702. function TryStrToInt64(const s: string; Out i : int64) : boolean;
  703. var Error : word;
  704. begin
  705. Val(s, i, Error);
  706. TryStrToInt64:=Error=0
  707. end;
  708. function StrToQWord(const s: string): QWord;
  709. var Error: word;
  710. begin
  711. Val(S, result, Error);
  712. if Error <> 0 then raise EConvertError.createfmt(SInvalidInteger,[S]);
  713. end;
  714. function TryStrToQWord(const s: string; Out Q: QWord): boolean;
  715. var Error : word;
  716. begin
  717. Val(s, Q, Error);
  718. TryStrToQWord:=Error=0
  719. end;
  720. { StrToIntDef converts the string S to an integer value,
  721. Default is returned in case S does not represent a valid integer value }
  722. function StrToIntDef(const S: string; Default: Longint): Longint;
  723. var Error: word;
  724. begin
  725. Val(S, result, Error);
  726. if Error <> 0 then result := Default;
  727. end ;
  728. { StrToInt64Def converts the string S to an int64 value,
  729. Default is returned in case S does not represent a valid int64 value }
  730. function StrToInt64Def(const S: string; Default: int64): int64;
  731. var Error: word;
  732. begin
  733. Val(S, result, Error);
  734. if Error <> 0 then result := Default;
  735. end ;
  736. { StrToQWordDef converts the string S to an QWord value,
  737. Default is returned in case S does not represent a valid QWord value }
  738. function StrToQWordDef(const S: string; Default: QWord): QWord;
  739. var Error: word;
  740. begin
  741. Val(S, result, Error);
  742. if Error <> 0 then result := Default;
  743. end;
  744. { LoadStr returns the string resource Ident. }
  745. function LoadStr(Ident: integer): string;
  746. begin
  747. result:='';
  748. end ;
  749. { FmtLoadStr returns the string resource Ident and formats it accordingly }
  750. function FmtLoadStr(Ident: integer; const Args: array of const): string;
  751. begin
  752. result:='';
  753. end;
  754. Const
  755. feInvalidFormat = 1;
  756. feMissingArgument = 2;
  757. feInvalidArgIndex = 3;
  758. {$ifdef fmtdebug}
  759. Procedure Log (Const S: String);
  760. begin
  761. Writeln (S);
  762. end;
  763. {$endif}
  764. Procedure DoFormatError (ErrCode : Longint;const fmt:ansistring);
  765. Var
  766. S : String;
  767. begin
  768. //!! must be changed to contain format string...
  769. S:=fmt;
  770. Case ErrCode of
  771. feInvalidFormat : raise EConvertError.Createfmt(SInvalidFormat,[s]);
  772. feMissingArgument : raise EConvertError.Createfmt(SArgumentMissing,[s]);
  773. feInvalidArgIndex : raise EConvertError.Createfmt(SInvalidArgIndex,[s]);
  774. end;
  775. end;
  776. { we've no templates, but with includes we can simulate this :) }
  777. {$macro on}
  778. {$define INFORMAT}
  779. {$define TFormatString:=ansistring}
  780. {$define TFormatChar:=char}
  781. Function Format (Const Fmt : AnsiString; const Args : Array of const; const FormatSettings: TFormatSettings) : AnsiString;
  782. {$i sysformt.inc}
  783. {$undef TFormatString}
  784. {$undef TFormatChar}
  785. {$undef INFORMAT}
  786. {$macro off}
  787. Function Format (Const Fmt : AnsiString; const Args : Array of const) : AnsiString;
  788. begin
  789. Result:=Format(Fmt,Args,DefaultFormatSettings);
  790. end;
  791. Function FormatBuf (Var Buffer; BufLen : Cardinal; Const Fmt; fmtLen : Cardinal; Const Args : Array of const; Const FormatSettings: TFormatSettings) : Cardinal;
  792. Var S,F : String;
  793. begin
  794. Setlength(F,fmtlen);
  795. if fmtlen > 0 then
  796. Move(fmt,F[1],fmtlen);
  797. S:=Format (F,Args,FormatSettings);
  798. If Cardinal(Length(S))<Buflen then
  799. Result:=Length(S)
  800. else
  801. Result:=Buflen;
  802. Move(S[1],Buffer,Result);
  803. end;
  804. Function FormatBuf (Var Buffer; BufLen : Cardinal;
  805. Const Fmt; fmtLen : Cardinal;
  806. Const Args : Array of const) : Cardinal;
  807. begin
  808. Result:=FormatBuf(Buffer,BufLen,Fmt,FmtLen,Args,DefaultFormatSettings);
  809. end;
  810. Procedure FmtStr(Var Res: string; const Fmt : string; Const args: Array of const; Const FormatSettings: TFormatSettings);
  811. begin
  812. Res:=Format(fmt,Args,FormatSettings);
  813. end;
  814. Procedure FmtStr(Var Res: String; Const Fmt : String; Const args: Array of const);
  815. begin
  816. FmtStr(Res,Fmt,Args,DefaultFormatSettings);
  817. end;
  818. Function StrFmt(Buffer,Fmt : PChar; Const args: Array of const) : Pchar;
  819. begin
  820. Result:=StrFmt(Buffer,Fmt,Args,DefaultFormatSettings);
  821. end;
  822. Function StrFmt(Buffer,Fmt : PChar; Const Args: Array of const; Const FormatSettings: TFormatSettings): PChar;
  823. begin
  824. Buffer[FormatBuf(Buffer^,Maxint,Fmt^,strlen(fmt),args,FormatSettings)]:=#0;
  825. Result:=Buffer;
  826. end;
  827. Function StrLFmt(Buffer : PCHar; Maxlen : Cardinal;Fmt : PChar; Const args: Array of const) : Pchar;
  828. begin
  829. Result:=StrLFmt(Buffer,MaxLen,Fmt,Args,DefaultFormatSettings);
  830. end;
  831. Function StrLFmt(Buffer : PCHar; Maxlen : Cardinal;Fmt : PChar; Const args: Array of const; Const FormatSettings: TFormatSettings) : Pchar;
  832. begin
  833. Buffer[FormatBuf(Buffer^,MaxLen,Fmt^,strlen(fmt),args,FormatSettings)]:=#0;
  834. Result:=Buffer;
  835. end;
  836. {$ifndef FPUNONE}
  837. Function StrToFloat(Const S: String): Extended;
  838. begin
  839. Result:=StrToFloat(S,DefaultFormatSettings);
  840. end;
  841. Function StrToFloat(Const S : String; Const FormatSettings: TFormatSettings) : Extended;
  842. Begin // texttofloat handles NIL properly
  843. If Not TextToFloat(Pchar(pointer(S)),Result,FormatSettings) then
  844. Raise EConvertError.createfmt(SInValidFLoat,[S]);
  845. End;
  846. function StrToFloatDef(const S: string; const Default: Extended): Extended;
  847. begin
  848. Result:=StrToFloatDef(S,Default,DefaultFormatSettings);
  849. end;
  850. Function StrToFloatDef(Const S: String; Const Default: Extended; Const FormatSettings: TFormatSettings): Extended;
  851. begin
  852. if not TextToFloat(PChar(pointer(S)),Result,fvExtended,FormatSettings) then
  853. Result:=Default;
  854. end;
  855. Function TextToFloat(Buffer: PChar; Out Value: Extended; Const FormatSettings: TFormatSettings): Boolean;
  856. Var
  857. E,P : Integer;
  858. S : String;
  859. Begin
  860. S:=StrPas(Buffer);
  861. //ThousandSeparator not allowed as by Delphi specs
  862. if (FormatSettings.ThousandSeparator <> FormatSettings.DecimalSeparator) and
  863. (Pos(FormatSettings.ThousandSeparator, S) <> 0) then
  864. begin
  865. Result := False;
  866. Exit;
  867. end;
  868. if (FormatSettings.DecimalSeparator <> '.') and
  869. (Pos('.', S) <>0) then
  870. begin
  871. Result := False;
  872. Exit;
  873. end;
  874. P:=Pos(FormatSettings.DecimalSeparator,S);
  875. If (P<>0) Then
  876. S[P] := '.';
  877. Val(trim(S),Value,E);
  878. Result:=(E=0);
  879. End;
  880. Function TextToFloat(Buffer: PChar; Out Value: Extended): Boolean;
  881. begin
  882. Result:=TextToFloat(Buffer,Value,DefaultFormatSettings);
  883. end;
  884. Function TextToFloat(Buffer: PChar; Out Value; ValueType: TFloatValue): Boolean;
  885. begin
  886. Result:=TextToFloat(Buffer,Value,ValueType,DefaultFormatSettings);
  887. end;
  888. Function TextToFloat(Buffer: PChar; Out Value; ValueType: TFloatValue; Const FormatSettings: TFormatSettings): Boolean;
  889. Var
  890. E,P : Integer;
  891. S : String;
  892. {$ifndef FPC_HAS_STR_CURRENCY}
  893. TempValue: extended;
  894. {$endif FPC_HAS_STR_CURRENCY}
  895. Begin
  896. S:=StrPas(Buffer);
  897. //ThousandSeparator not allowed as by Delphi specs
  898. if (FormatSettings.ThousandSeparator <> FormatSettings.DecimalSeparator) and
  899. (Pos(FormatSettings.ThousandSeparator, S) <> 0) then
  900. begin
  901. Result := False;
  902. Exit;
  903. end;
  904. if (FormatSettings.DecimalSeparator <> '.') and
  905. (Pos('.', S) <>0) then
  906. begin
  907. Result := False;
  908. Exit;
  909. end;
  910. P:=Pos(FormatSettings.DecimalSeparator,S);
  911. If (P<>0) Then
  912. S[P] := '.';
  913. try
  914. case ValueType of
  915. fvCurrency:
  916. {$ifdef FPC_HAS_STR_CURRENCY}
  917. Val(S,Currency(Value),E);
  918. {$else FPC_HAS_STR_CURRENCY}
  919. begin
  920. // needed for platforms where Currency = Int64
  921. Val(S,TempValue,E);
  922. Currency(Value) := TempValue;
  923. end;
  924. {$endif FPC_HAS_STR_CURRENCY}
  925. fvExtended:
  926. Val(S,Extended(Value),E);
  927. fvDouble:
  928. Val(S,Double(Value),E);
  929. fvSingle:
  930. Val(S,Single(Value),E);
  931. fvComp:
  932. Val(S,Comp(Value),E);
  933. fvReal:
  934. Val(S,Real(Value),E);
  935. end;
  936. { on x87, a floating point exception may be pending in case of an invalid
  937. input value -> trigger it now }
  938. {$ifdef cpux86}
  939. asm
  940. fwait
  941. end;
  942. {$endif}
  943. except
  944. E:=1;
  945. end;
  946. Result:=(E=0);
  947. End;
  948. Function TryStrToFloat(Const S : String; Out Value: Single): Boolean;
  949. begin
  950. Result:=TryStrToFloat(S,Value,DefaultFormatSettings);
  951. end;
  952. Function TryStrToFloat(Const S : String; Out Value: Single; Const FormatSettings: TFormatSettings): Boolean;
  953. Begin
  954. Result := TextToFloat(PChar(pointer(S)), Value, fvSingle,FormatSettings);
  955. End;
  956. Function TryStrToFloat(Const S : String; Out Value: Double): Boolean;
  957. begin
  958. Result:=TryStrToFloat(S,Value,DefaultFormatSettings);
  959. end;
  960. Function TryStrToFloat(Const S : String; Out Value: Double; Const FormatSettings: TFormatSettings): Boolean;
  961. Begin
  962. Result := TextToFloat(PChar(pointer(S)), Value, fvDouble,FormatSettings);
  963. End;
  964. {$ifdef FPC_HAS_TYPE_EXTENDED}
  965. Function TryStrToFloat(Const S : String; Out Value: Extended): Boolean;
  966. begin
  967. Result:=TryStrToFloat(S,Value,DefaultFormatSettings);
  968. end;
  969. Function TryStrToFloat(Const S : String; Out Value: Extended; Const FormatSettings: TFormatSettings): Boolean;
  970. Begin
  971. Result := TextToFloat(PChar(pointer(S)), Value,FormatSettings);
  972. End;
  973. {$endif FPC_HAS_TYPE_EXTENDED}
  974. const
  975. {$ifdef FPC_HAS_TYPE_EXTENDED}
  976. maxdigits = 17;
  977. {$else}
  978. maxdigits = 15;
  979. {$endif}
  980. { deactive aligned function for 2.6 }
  981. {$ifdef VER2_6}
  982. {$macro on}
  983. {$define aligned:= }
  984. {$endif VER2_6}
  985. Function FloatToStrFIntl(const Value; format: TFloatFormat; Precision, Digits: Integer; ValueType: TFloatValue; Const FormatSettings: TFormatSettings): String;
  986. Var
  987. P, PE, Q, Exponent: Integer;
  988. Negative: Boolean;
  989. DS: Char;
  990. function RemoveLeadingNegativeSign(var AValue: String): Boolean;
  991. // removes negative sign in case when result is zero eg. -0.00
  992. var
  993. i: PtrInt;
  994. TS: Char;
  995. StartPos: PtrInt;
  996. begin
  997. Result := False;
  998. if Format = ffCurrency then
  999. StartPos := 1
  1000. else
  1001. StartPos := 2;
  1002. TS := FormatSettings.ThousandSeparator;
  1003. for i := StartPos to length(AValue) do
  1004. begin
  1005. Result := (AValue[i] in ['0', DS, 'E', '+', TS]);
  1006. if not Result then
  1007. break;
  1008. end;
  1009. if (Result) and (Format <> ffCurrency) then
  1010. Delete(AValue, 1, 1);
  1011. end;
  1012. Begin
  1013. DS:=FormatSettings.DecimalSeparator;
  1014. Case format Of
  1015. ffGeneral:
  1016. Begin
  1017. case ValueType of
  1018. fvCurrency:
  1019. If (Precision = -1) Or (Precision > 19) Then Precision := 19;
  1020. else
  1021. If (Precision = -1) Or (Precision > maxdigits) Then Precision := maxdigits;
  1022. end;
  1023. { First convert to scientific format, with correct precision }
  1024. case ValueType of
  1025. fvDouble:
  1026. Str(Double(Extended(Aligned(Value))):precision+7, Result);
  1027. fvSingle:
  1028. Str(Single(Extended(Aligned(Value))):precision+6, Result);
  1029. fvCurrency:
  1030. {$ifdef FPC_HAS_STR_CURRENCY}
  1031. Str(Currency(Aligned(Value)):precision+6, Result);
  1032. {$else}
  1033. Str(Extended(Currency(Aligned(Value))):precision+8, Result);
  1034. {$endif FPC_HAS_STR_CURRENCY}
  1035. else
  1036. Str(Extended(Aligned(Value)):precision+8, Result);
  1037. end;
  1038. { Delete leading spaces }
  1039. while Result[1] = ' ' do
  1040. System.Delete(Result, 1, 1);
  1041. P := Pos('.', Result);
  1042. if P<>0 then
  1043. Result[P] := DS
  1044. else
  1045. Exit; { NAN or other special case }
  1046. { Consider removing exponent }
  1047. PE:=Pos('E',Result);
  1048. if PE > 0 then begin
  1049. { Read exponent }
  1050. Q := PE+2;
  1051. Exponent := 0;
  1052. while (Q <= Length(Result)) do begin
  1053. Exponent := Exponent*10 + Ord(Result[Q])-Ord('0');
  1054. Inc(Q);
  1055. end;
  1056. if Result[PE+1] = '-' then
  1057. Exponent := -Exponent;
  1058. if (P+Exponent < PE) and (Exponent > -6) then begin
  1059. { OK to remove exponent }
  1060. SetLength(Result,PE-1); { Trim exponent }
  1061. if Exponent >= 0 then begin
  1062. { Shift point to right }
  1063. for Q := 0 to Exponent-1 do begin
  1064. Result[P] := Result[P+1];
  1065. Inc(P);
  1066. end;
  1067. Result[P] := DS;
  1068. P := 1;
  1069. if Result[P] = '-' then
  1070. Inc(P);
  1071. while (Result[P] = '0') and (P < Length(Result)) and (Result[P+1] <> DS) do
  1072. { Trim leading zeros; conversion above should not give any, but occasionally does
  1073. because of rounding }
  1074. System.Delete(Result,P,1);
  1075. end else begin
  1076. { Add zeros at start }
  1077. Insert(Copy('00000',1,-Exponent),Result,P-1);
  1078. Result[P-Exponent] := Result[P-Exponent-1]; { Copy leading digit }
  1079. Result[P] := DS;
  1080. if Exponent <> -1 then
  1081. Result[P-Exponent-1] := '0';
  1082. end;
  1083. { Remove trailing zeros }
  1084. Q := Length(Result);
  1085. while (Q > 0) and (Result[Q] = '0') do
  1086. Dec(Q);
  1087. if Result[Q] = DS then
  1088. Dec(Q); { Remove trailing decimal point }
  1089. if (Q = 0) or ((Q=1) and (Result[1] = '-')) then
  1090. Result := '0'
  1091. else
  1092. SetLength(Result,Q);
  1093. end else begin
  1094. { Need exponent, but remove superfluous characters }
  1095. { Delete trailing zeros }
  1096. while Result[PE-1] = '0' do begin
  1097. System.Delete(Result,PE-1,1);
  1098. Dec(PE);
  1099. end;
  1100. { If number ends in decimal point, remove it }
  1101. if Result[PE-1] = DS then begin
  1102. System.Delete(Result,PE-1,1);
  1103. Dec(PE);
  1104. end;
  1105. { delete superfluous + in exponent }
  1106. if Result[PE+1]='+' then
  1107. System.Delete(Result,PE+1,1)
  1108. else
  1109. Inc(PE);
  1110. while Result[PE+1] = '0' do
  1111. { Delete leading zeros in exponent }
  1112. System.Delete(Result,PE+1,1)
  1113. end;
  1114. end;
  1115. End;
  1116. ffExponent:
  1117. Begin
  1118. If (Precision = -1) Or (Precision > maxdigits) Then Precision := maxdigits;
  1119. case ValueType of
  1120. fvDouble:
  1121. Str(Double(Extended(Aligned(Value))):Precision+7, Result);
  1122. fvSingle:
  1123. Str(Single(Extended(Aligned(Value))):Precision+6, Result);
  1124. fvCurrency:
  1125. {$ifdef FPC_HAS_STR_CURRENCY}
  1126. Str(Currency(Aligned(Value)):Precision+6, Result);
  1127. {$else}
  1128. Str(Extended(Currency(Aligned(Value))):Precision+8, Result);
  1129. {$endif FPC_HAS_STR_CURRENCY}
  1130. else
  1131. Str(Extended(Aligned(Value)):Precision+8, Result);
  1132. end;
  1133. { Delete leading spaces }
  1134. while Result[1] = ' ' do
  1135. System.Delete(Result, 1, 1);
  1136. if (Result[1]='-') and
  1137. { not Nan etc.? }
  1138. (Result[3]='.') then
  1139. Result[3] := DS
  1140. else if Result[2]='.' then
  1141. Result[2] := DS;
  1142. P:=Pos('E',Result);
  1143. if P <> 0 then
  1144. begin
  1145. Inc(P, 2);
  1146. if Digits > 4 then
  1147. Digits:=4;
  1148. Digits:=Length(Result) - P - Digits + 1;
  1149. if Digits < 0 then
  1150. insert(copy('0000',1,-Digits),Result,P)
  1151. else
  1152. while (Digits > 0) and (Result[P] = '0') do
  1153. begin
  1154. System.Delete(Result, P, 1);
  1155. if P > Length(Result) then
  1156. begin
  1157. System.Delete(Result, P - 2, 2);
  1158. break;
  1159. end;
  1160. Dec(Digits);
  1161. end;
  1162. end;
  1163. End;
  1164. ffFixed:
  1165. Begin
  1166. If Digits = -1 Then Digits := 2
  1167. Else If Digits > 18 Then Digits := 18;
  1168. case ValueType of
  1169. fvDouble:
  1170. Str(Double(Extended(Aligned(Value))):0:Digits, Result);
  1171. fvSingle:
  1172. Str(Single(Extended(Aligned(Value))):0:Digits, Result);
  1173. fvCurrency:
  1174. {$ifdef FPC_HAS_STR_CURRENCY}
  1175. Str(Currency(Aligned(Value)):0:Digits, Result);
  1176. {$else}
  1177. Str(Extended(Currency(Aligned(Value))):0:Digits, Result);
  1178. {$endif FPC_HAS_STR_CURRENCY}
  1179. else
  1180. Str(Extended(Aligned(Value)):0:Digits, Result);
  1181. end;
  1182. If Result[1] = ' ' Then
  1183. System.Delete(Result, 1, 1);
  1184. P := Pos('.', Result);
  1185. If P <> 0 Then Result[P] := DS;
  1186. End;
  1187. ffNumber:
  1188. Begin
  1189. If Digits = -1 Then Digits := 2
  1190. Else If Digits > maxdigits Then Digits := maxdigits;
  1191. case ValueType of
  1192. fvDouble:
  1193. Str(Double(Extended(Aligned(Value))):0:Digits, Result);
  1194. fvSingle:
  1195. Str(Single(Extended(Aligned(Value))):0:Digits, Result);
  1196. fvCurrency:
  1197. {$ifdef FPC_HAS_STR_CURRENCY}
  1198. Str(Currency(Aligned(Value)):0:Digits, Result);
  1199. {$else}
  1200. Str(Extended(Currency(Aligned(Value))):0:Digits, Result);
  1201. {$endif FPC_HAS_STR_CURRENCY}
  1202. else
  1203. Str(Extended(Aligned(Value)):0:Digits, Result);
  1204. end;
  1205. If Result[1] = ' ' Then System.Delete(Result, 1, 1);
  1206. P := Pos('.', Result);
  1207. If P <> 0 Then
  1208. Result[P] := DS
  1209. else
  1210. P := Length(Result)+1;
  1211. Dec(P, 3);
  1212. While (P > 1) Do
  1213. Begin
  1214. If (Result[P - 1] <> '-') And (FormatSettings.ThousandSeparator <> #0) Then
  1215. Insert(FormatSettings.ThousandSeparator, Result, P);
  1216. Dec(P, 3);
  1217. End;
  1218. End;
  1219. ffCurrency:
  1220. Begin
  1221. If Digits = -1 Then Digits := FormatSettings.CurrencyDecimals
  1222. Else If Digits > 18 Then Digits := 18;
  1223. case ValueType of
  1224. fvDouble:
  1225. Str(Double(Extended(Aligned(Value))):0:Digits, Result);
  1226. fvSingle:
  1227. Str(Single(Extended(Aligned(Value))):0:Digits, Result);
  1228. fvCurrency:
  1229. {$ifdef FPC_HAS_STR_CURRENCY}
  1230. Str(Currency(Aligned(Value)):0:Digits, Result);
  1231. {$else}
  1232. Str(Extended(Currency(Aligned(Value))):0:Digits, Result);
  1233. {$endif FPC_HAS_STR_CURRENCY}
  1234. else
  1235. Str(Extended(Aligned(Value)):0:Digits, Result);
  1236. end;
  1237. Negative:=Result[1] = '-';
  1238. if Negative then
  1239. System.Delete(Result, 1, 1);
  1240. P := Pos('.', Result);
  1241. If P <> 0 Then Result[P] := DS else P := Length(Result)+1;
  1242. Dec(P, 3);
  1243. While (P > 1) Do
  1244. Begin
  1245. If FormatSettings.ThousandSeparator<>#0 Then
  1246. Insert(FormatSettings.ThousandSeparator, Result, P);
  1247. Dec(P, 3);
  1248. End;
  1249. if (length(Result) > 1) and Negative then
  1250. Negative := not RemoveLeadingNegativeSign(Result);
  1251. If Not Negative Then
  1252. Begin
  1253. Case FormatSettings.CurrencyFormat Of
  1254. 0: Result := FormatSettings.CurrencyString + Result;
  1255. 1: Result := Result + FormatSettings.CurrencyString;
  1256. 2: Result := FormatSettings.CurrencyString + ' ' + Result;
  1257. 3: Result := Result + ' ' + FormatSettings.CurrencyString;
  1258. End
  1259. End
  1260. Else
  1261. Begin
  1262. Case FormatSettings.NegCurrFormat Of
  1263. 0: Result := '(' + FormatSettings.CurrencyString + Result + ')';
  1264. 1: Result := '-' + FormatSettings.CurrencyString + Result;
  1265. 2: Result := FormatSettings.CurrencyString + '-' + Result;
  1266. 3: Result := FormatSettings.CurrencyString + Result + '-';
  1267. 4: Result := '(' + Result + FormatSettings.CurrencyString + ')';
  1268. 5: Result := '-' + Result + FormatSettings.CurrencyString;
  1269. 6: Result := Result + '-' + FormatSettings.CurrencyString;
  1270. 7: Result := Result + FormatSettings.CurrencyString + '-';
  1271. 8: Result := '-' + Result + ' ' + FormatSettings.CurrencyString;
  1272. 9: Result := '-' + FormatSettings.CurrencyString + ' ' + Result;
  1273. 10: Result := Result + ' ' + FormatSettings.CurrencyString + '-';
  1274. 11: Result := FormatSettings.CurrencyString + ' ' + Result + '-';
  1275. 12: Result := FormatSettings.CurrencyString + ' ' + '-' + Result;
  1276. 13: Result := Result + '-' + ' ' + FormatSettings.CurrencyString;
  1277. 14: Result := '(' + FormatSettings.CurrencyString + ' ' + Result + ')';
  1278. 15: Result := '(' + Result + ' ' + FormatSettings.CurrencyString + ')';
  1279. End;
  1280. End;
  1281. End;
  1282. End;
  1283. if not (format in [ffCurrency]) and (length(Result) > 1) and (Result[1] = '-') then
  1284. RemoveLeadingNegativeSign(Result);
  1285. End;
  1286. {$macro off}
  1287. {$ifdef FPC_HAS_TYPE_EXTENDED}
  1288. Function FloatToStr(Value: Extended; Const FormatSettings: TFormatSettings): String;
  1289. Begin
  1290. Result := FloatToStrFIntl(Value, ffGeneral, 15, 0, fvExtended,FormatSettings);
  1291. End;
  1292. Function FloatToStr(Value: Extended): String;
  1293. begin
  1294. Result:=FloatToStr(Value,DefaultFormatSettings);
  1295. end;
  1296. {$endif FPC_HAS_TYPE_EXTENDED}
  1297. Function FloatToStr(Value: Currency; Const FormatSettings: TFormatSettings): String;
  1298. Begin
  1299. Result := FloatToStrFIntl(Value, ffGeneral, 15, 0, fvCurrency,FormatSettings);
  1300. End;
  1301. Function FloatToStr(Value: Currency): String;
  1302. begin
  1303. Result:=FloatToStr(Value,DefaultFormatSettings);
  1304. end;
  1305. Function FloatToStr(Value: Double; Const FormatSettings: TFormatSettings): String;
  1306. var
  1307. e: Extended;
  1308. Begin
  1309. e := Value;
  1310. Result := FloatToStrFIntl(e, ffGeneral, 15, 0, fvDouble,FormatSettings);
  1311. End;
  1312. Function FloatToStr(Value: Double): String;
  1313. begin
  1314. Result:=FloatToStr(Value,DefaultFormatSettings);
  1315. end;
  1316. Function FloatToStr(Value: Single; Const FormatSettings: TFormatSettings): String;
  1317. var
  1318. e: Extended;
  1319. Begin
  1320. e := Value;
  1321. Result := FloatToStrFIntl(e, ffGeneral, 15, 0, fvSingle,FormatSettings);
  1322. End;
  1323. Function FloatToStr(Value: Single): String;
  1324. begin
  1325. Result:=FloatToStr(Value,DefaultFormatSettings);
  1326. end;
  1327. Function FloatToStr(Value: Comp; Const FormatSettings: TFormatSettings): String;
  1328. var
  1329. e: Extended;
  1330. Begin
  1331. e := Value;
  1332. Result := FloatToStrFIntl(e, ffGeneral, 15, 0, fvComp,FormatSettings);
  1333. End;
  1334. Function FloatToStr(Value: Comp): String;
  1335. begin
  1336. Result:=FloatToStr(Value,DefaultFormatSettings);
  1337. end;
  1338. {$ifndef FPC_COMP_IS_INT64}
  1339. Function FloatToStr(Value: Int64): String;
  1340. begin
  1341. Result:=FloatToStr(Value,DefaultFormatSettings);
  1342. end;
  1343. Function FloatToStr(Value: Int64; Const FormatSettings: TFormatSettings): String;
  1344. var
  1345. e: Extended;
  1346. Begin
  1347. e := Comp(Value);
  1348. Result := FloatToStrFIntl(e, ffGeneral, 15, 0, fvComp,FormatSettings);
  1349. End;
  1350. {$endif FPC_COMP_IS_INT64}
  1351. Function FloatToText(Buffer: PChar; Value: Extended; format: TFloatFormat; Precision, Digits: Integer; Const FormatSettings: TFormatSettings): Longint;
  1352. Var
  1353. Tmp: String[40];
  1354. Begin
  1355. Tmp := FloatToStrF(Value, format, Precision, Digits,FormatSettings);
  1356. Result := Length(Tmp);
  1357. Move(Tmp[1], Buffer[0], Result);
  1358. End;
  1359. Function FloatToText(Buffer: PChar; Value: Extended; format: TFloatFormat; Precision, Digits: Integer): Longint;
  1360. begin
  1361. Result:=FloatToText(Buffer,Value,Format,Precision,Digits,DefaultFormatSettings);
  1362. end;
  1363. {$ifdef FPC_HAS_TYPE_EXTENDED}
  1364. Function FloatToStrF(Value: Extended; format: TFloatFormat; Precision, Digits: Integer; Const FormatSettings: TFormatSettings): String;
  1365. begin
  1366. Result := FloatToStrFIntl(value,format,precision,digits,fvExtended,FormatSettings);
  1367. end;
  1368. Function FloatToStrF(Value: Extended; format: TFloatFormat; Precision, Digits: Integer): String;
  1369. begin
  1370. Result:=FloatToStrF(Value,Format,Precision,Digits,DefaultFormatSettings);
  1371. end;
  1372. {$endif}
  1373. Function FloatToStrF(Value: Currency; format: TFloatFormat; Precision, Digits: Integer; Const FormatSettings: TFormatSettings): String;
  1374. begin
  1375. Result := FloatToStrFIntl(value,format,precision,digits,fvCurrency,FormatSettings);
  1376. end;
  1377. Function FloatToStrF(Value: Currency; format: TFloatFormat; Precision, Digits: Integer): String;
  1378. begin
  1379. Result:=FloatToStrF(Value,format,Precision,Digits,DefaultFormatSettings);
  1380. end;
  1381. Function FloatToStrF(Value: Double; format: TFloatFormat; Precision, Digits: Integer; Const FormatSettings: TFormatSettings): String;
  1382. var
  1383. e: Extended;
  1384. begin
  1385. e := Value;
  1386. result := FloatToStrFIntl(e,format,precision,digits,fvDouble,FormatSettings);
  1387. end;
  1388. Function FloatToStrF(Value: Double; format: TFloatFormat; Precision, Digits: Integer): String;
  1389. begin
  1390. Result:= FloatToStrF(Value,Format,Precision,Digits,DefaultFormatSettings);
  1391. end;
  1392. Function FloatToStrF(Value: Single; format: TFloatFormat; Precision, Digits: Integer; Const FormatSettings: TFormatSettings): String;
  1393. var
  1394. e: Extended;
  1395. begin
  1396. e:=Value;
  1397. result := FloatToStrFIntl(e,format,precision,digits,fvSingle,FormatSettings);
  1398. end;
  1399. Function FloatToStrF(Value: Single; format: TFloatFormat; Precision, Digits: Integer): String;
  1400. begin
  1401. Result:= FloatToStrF(Value,Format,Precision,Digits,DefaultFormatSettings);
  1402. end;
  1403. Function FloatToStrF(Value: Comp; format: TFloatFormat; Precision, Digits: Integer; Const FormatSettings: TFormatSettings): String;
  1404. var
  1405. e: Extended;
  1406. begin
  1407. e := Value;
  1408. Result := FloatToStrFIntl(e,format,precision,digits,fvComp,FormatSettings);
  1409. end;
  1410. Function FloatToStrF(Value: Comp; format: TFloatFormat; Precision, Digits: Integer): String;
  1411. begin
  1412. Result:=FloatToStrF(Value,Format,Precision,Digits,DefaultFormatSettings);
  1413. end;
  1414. {$ifndef FPC_COMP_IS_INT64}
  1415. Function FloatToStrF(Value: Int64; format: TFloatFormat; Precision, Digits: Integer; Const FormatSettings: TFormatSettings): String;
  1416. var
  1417. e: Extended;
  1418. begin
  1419. e := Comp(Value);
  1420. result := FloatToStrFIntl(e,format,precision,digits,fvComp,FormatSettings);
  1421. end;
  1422. Function FloatToStrF(Value: Int64; format: TFloatFormat; Precision, Digits: Integer): String;
  1423. begin
  1424. Result:=FloatToStrF(Value,Format,Precision,Digits,DefaultFormatSettings);
  1425. end;
  1426. {$endif FPC_COMP_IS_INT64}
  1427. Function CurrToStrF(Value: Currency; Format: TFloatFormat; Digits: Integer; Const FormatSettings: TFormatSettings): string;
  1428. begin
  1429. result:=FloatToStrF(Value,Format,19,Digits,FormatSettings);
  1430. end;
  1431. Function CurrToStrF(Value: Currency; Format: TFloatFormat; Digits: Integer): string;
  1432. begin
  1433. Result:=CurrToStrF(Value,Format,Digits,DefaultFormatSettings);
  1434. end;
  1435. Function FloatToDateTime (Const Value : Extended) : TDateTime;
  1436. begin
  1437. If (Value<MinDateTime) or (Value>MaxDateTime) then
  1438. Raise EConvertError.CreateFmt (SInvalidDateTime,[Value]);
  1439. Result:=Value;
  1440. end;
  1441. function TryFloatToCurr(const Value: Extended; var AResult: Currency): Boolean;
  1442. begin
  1443. Result:=(Value>=MinCurrency) and (Value<=MaxCurrency);
  1444. if Result then
  1445. AResult := Value;
  1446. end;
  1447. function FloatToCurr(const Value: Extended): Currency;
  1448. begin
  1449. if not TryFloatToCurr(Value, Result) then
  1450. Raise EConvertError.CreateFmt(SInvalidCurrency, [FloatToStr(Value)]);
  1451. end;
  1452. Function CurrToStr(Value: Currency): string;
  1453. begin
  1454. Result:=FloatToStrF(Value,ffGeneral,-1,0);
  1455. end;
  1456. Function CurrToStr(Value: Currency; Const FormatSettings: TFormatSettings): string;
  1457. begin
  1458. Result:=FloatToStrF(Value,ffGeneral,-1,0,FormatSettings);
  1459. end;
  1460. function StrToCurr(const S: string): Currency;
  1461. begin
  1462. if not TextToFloat(PChar(pointer(S)), Result, fvCurrency) then
  1463. Raise EConvertError.createfmt(SInValidFLoat,[S]);
  1464. end;
  1465. function StrToCurr(const S: string; Const FormatSettings: TFormatSettings): Currency;
  1466. begin
  1467. if not TextToFloat(PChar(pointer(S)), Result, fvCurrency,FormatSettings) then
  1468. Raise EConvertError.createfmt(SInValidFLoat,[S]);
  1469. end;
  1470. Function TryStrToCurr(Const S : String; Out Value: Currency): Boolean;
  1471. Begin
  1472. Result := TextToFloat(PChar(pointer(S)), Value, fvCurrency);
  1473. End;
  1474. function TryStrToCurr(const S: string;Out Value : Currency; Const FormatSettings: TFormatSettings): Boolean;
  1475. Begin
  1476. Result := TextToFloat(PChar(pointer(S)), Value, fvCurrency,FormatSettings);
  1477. End;
  1478. function StrToCurrDef(const S: string; Default : Currency): Currency;
  1479. begin
  1480. if not TextToFloat(PChar(pointer(S)), Result, fvCurrency) then
  1481. Result:=Default;
  1482. end;
  1483. function StrToCurrDef(const S: string; Default : Currency; Const FormatSettings: TFormatSettings): Currency;
  1484. begin
  1485. if not TextToFloat(PChar(pointer(S)), Result, fvCurrency,FormatSettings) then
  1486. Result:=Default;
  1487. end;
  1488. {$endif FPUNONE}
  1489. function AnsiDequotedStr(const S: string; AQuote: Char): string;
  1490. var p : pchar;
  1491. begin
  1492. p:=pchar(pointer(s)); // work around CONST. Ansiextract is safe for nil
  1493. result:=AnsiExtractquotedStr(p,AQuote);
  1494. if result='' Then
  1495. result:=s;
  1496. end;
  1497. function StrToBool(const S: string): Boolean;
  1498. begin
  1499. if not(TryStrToBool(S,Result)) then
  1500. Raise EConvertError.CreateFmt(SInvalidBoolean,[S]);
  1501. end;
  1502. procedure CheckBoolStrs;
  1503. begin
  1504. If Length(TrueBoolStrs)=0 then
  1505. begin
  1506. SetLength(TrueBoolStrs,1);
  1507. TrueBoolStrs[0]:='True';
  1508. end;
  1509. If Length(FalseBoolStrs)=0 then
  1510. begin
  1511. SetLength(FalseBoolStrs,1);
  1512. FalseBoolStrs[0]:='False';
  1513. end;
  1514. end;
  1515. function BoolToStr(B: Boolean;UseBoolStrs:Boolean=False): string;
  1516. begin
  1517. if UseBoolStrs Then
  1518. begin
  1519. CheckBoolStrs;
  1520. if B then
  1521. Result:=TrueBoolStrs[0]
  1522. else
  1523. Result:=FalseBoolStrs[0];
  1524. end
  1525. else
  1526. If B then
  1527. Result:='-1'
  1528. else
  1529. Result:='0';
  1530. end;
  1531. // from textmode IDE util funcs.
  1532. function BoolToStr(B: boolean; const TrueS, FalseS: string): string;
  1533. begin
  1534. if B then Result:=TrueS else BoolToStr:=FalseS;
  1535. end;
  1536. function StrToBoolDef(const S: string; Default: Boolean): Boolean;
  1537. begin
  1538. if not(TryStrToBool(S,Result)) then
  1539. Result:=Default;
  1540. end;
  1541. function TryStrToBool(const S: string; out Value: Boolean): Boolean;
  1542. Var
  1543. Temp : String;
  1544. I : Longint;
  1545. {$ifdef FPUNONE}
  1546. D : Longint;
  1547. {$else}
  1548. D : Double;
  1549. {$endif}
  1550. Code: word;
  1551. begin
  1552. Temp:=upcase(S);
  1553. Val(temp,D,code);
  1554. Result:=true;
  1555. If Code=0 then
  1556. {$ifdef FPUNONE}
  1557. Value:=(D<>0)
  1558. {$else}
  1559. Value:=(D<>0.0)
  1560. {$endif}
  1561. else
  1562. begin
  1563. CheckBoolStrs;
  1564. for I:=low(TrueBoolStrs) to High(TrueBoolStrs) do
  1565. if Temp=upcase(TrueBoolStrs[I]) then
  1566. begin
  1567. Value:=true;
  1568. exit;
  1569. end;
  1570. for I:=low(FalseBoolStrs) to High(FalseBoolStrs) do
  1571. if Temp=upcase(FalseBoolStrs[I]) then
  1572. begin
  1573. Value:=false;
  1574. exit;
  1575. end;
  1576. Result:=false;
  1577. end;
  1578. end;
  1579. {$ifndef FPUNONE}
  1580. Function FloatToTextFmt(Buffer: PChar; Value: Extended; format: PChar): Integer;
  1581. begin
  1582. Result:=FloatToTextFmt(Buffer,Value,Format,DefaultFormatSettings);
  1583. end;
  1584. Function FloatToTextFmt(Buffer: PChar; Value: Extended; format: PChar;FormatSettings : TFormatSettings): Integer;
  1585. Var
  1586. Digits: String[40]; { String Of Digits }
  1587. Exponent: String[8]; { Exponent strin }
  1588. FmtStart, FmtStop: PChar; { Start And End Of relevant part }
  1589. { Of format String }
  1590. ExpFmt, ExpSize: Integer; { Type And Length Of }
  1591. { exponential format chosen }
  1592. Placehold: Array[1..4] Of Integer; { Number Of placeholders In All }
  1593. { four Sections }
  1594. thousand: Boolean; { thousand separators? }
  1595. UnexpectedDigits: Integer; { Number Of unexpected Digits that }
  1596. { have To be inserted before the }
  1597. { First placeholder. }
  1598. UnexpectedDigitsStart: Integer; { Location in Digits where first unexpected Digit is located }
  1599. DigitExponent: Integer; { Exponent Of First digit In }
  1600. { Digits Array. }
  1601. { Find end of format section starting at P. False, if empty }
  1602. Function GetSectionEnd(Var P: PChar): Boolean;
  1603. Var
  1604. C: Char;
  1605. SQ, DQ: Boolean;
  1606. Begin
  1607. Result := False;
  1608. SQ := False;
  1609. DQ := False;
  1610. C := P[0];
  1611. While (C<>#0) And ((C<>';') Or SQ Or DQ) Do
  1612. Begin
  1613. Result := True;
  1614. Case C Of
  1615. #34: If Not SQ Then DQ := Not DQ;
  1616. #39: If Not DQ Then SQ := Not SQ;
  1617. End;
  1618. Inc(P);
  1619. C := P[0];
  1620. End;
  1621. End;
  1622. { Find start and end of format section to apply. If section doesn't exist,
  1623. use section 1. If section 2 is used, the sign of value is ignored. }
  1624. Procedure GetSectionRange(section: Integer);
  1625. Var
  1626. Sec: Array[1..3] Of PChar;
  1627. SecOk: Array[1..3] Of Boolean;
  1628. Begin
  1629. Sec[1] := format;
  1630. SecOk[1] := GetSectionEnd(Sec[1]);
  1631. If section > 1 Then
  1632. Begin
  1633. Sec[2] := Sec[1];
  1634. If Sec[2][0] <> #0 Then
  1635. Inc(Sec[2]);
  1636. SecOk[2] := GetSectionEnd(Sec[2]);
  1637. If section > 2 Then
  1638. Begin
  1639. Sec[3] := Sec[2];
  1640. If Sec[3][0] <> #0 Then
  1641. Inc(Sec[3]);
  1642. SecOk[3] := GetSectionEnd(Sec[3]);
  1643. End;
  1644. End;
  1645. If Not SecOk[1] Then
  1646. FmtStart := Nil
  1647. Else
  1648. Begin
  1649. If Not SecOk[section] Then
  1650. section := 1
  1651. Else If section = 2 Then
  1652. Value := -Value; { Remove sign }
  1653. If section = 1 Then FmtStart := format Else
  1654. Begin
  1655. FmtStart := Sec[section - 1];
  1656. Inc(FmtStart);
  1657. End;
  1658. FmtStop := Sec[section];
  1659. End;
  1660. End;
  1661. { Find format section ranging from FmtStart to FmtStop. }
  1662. Procedure GetFormatOptions;
  1663. Var
  1664. Fmt: PChar;
  1665. SQ, DQ: Boolean;
  1666. area: Integer;
  1667. Begin
  1668. SQ := False;
  1669. DQ := False;
  1670. Fmt := FmtStart;
  1671. ExpFmt := 0;
  1672. area := 1;
  1673. thousand := False;
  1674. Placehold[1] := 0;
  1675. Placehold[2] := 0;
  1676. Placehold[3] := 0;
  1677. Placehold[4] := 0;
  1678. While Fmt < FmtStop Do
  1679. Begin
  1680. Case Fmt[0] Of
  1681. #34:
  1682. Begin
  1683. If Not SQ Then
  1684. DQ := Not DQ;
  1685. Inc(Fmt);
  1686. End;
  1687. #39:
  1688. Begin
  1689. If Not DQ Then
  1690. SQ := Not SQ;
  1691. Inc(Fmt);
  1692. End;
  1693. Else
  1694. { if not in quotes, then interpret}
  1695. If Not (SQ Or DQ) Then
  1696. Begin
  1697. Case Fmt[0] Of
  1698. '0':
  1699. Begin
  1700. Case area Of
  1701. 1:
  1702. area := 2;
  1703. 4:
  1704. Begin
  1705. area := 3;
  1706. Inc(Placehold[3], Placehold[4]);
  1707. Placehold[4] := 0;
  1708. End;
  1709. End;
  1710. Inc(Placehold[area]);
  1711. Inc(Fmt);
  1712. End;
  1713. '#':
  1714. Begin
  1715. If area=3 Then
  1716. area:=4;
  1717. Inc(Placehold[area]);
  1718. Inc(Fmt);
  1719. End;
  1720. '.':
  1721. Begin
  1722. If area<3 Then
  1723. area:=3;
  1724. Inc(Fmt);
  1725. End;
  1726. ',':
  1727. Begin
  1728. thousand := DefaultFormatSettings.ThousandSeparator<>#0;
  1729. Inc(Fmt);
  1730. End;
  1731. 'e', 'E':
  1732. If ExpFmt = 0 Then
  1733. Begin
  1734. If (Fmt[0]='E') Then
  1735. ExpFmt:=1
  1736. Else
  1737. ExpFmt := 3;
  1738. Inc(Fmt);
  1739. If (Fmt<FmtStop) Then
  1740. Begin
  1741. Case Fmt[0] Of
  1742. '+':
  1743. Begin
  1744. End;
  1745. '-':
  1746. Inc(ExpFmt);
  1747. Else
  1748. ExpFmt := 0;
  1749. End;
  1750. If ExpFmt <> 0 Then
  1751. Begin
  1752. Inc(Fmt);
  1753. ExpSize := 0;
  1754. While (Fmt<FmtStop) And
  1755. (ExpSize<4) And
  1756. (Fmt[0] In ['0'..'9']) Do
  1757. Begin
  1758. Inc(ExpSize);
  1759. Inc(Fmt);
  1760. End;
  1761. End;
  1762. End
  1763. Else
  1764. { just e/E without subsequent +/- -> not exponential format,
  1765. but we have to simply print e/E literally }
  1766. ExpFmt:=0;
  1767. End
  1768. Else
  1769. Inc(Fmt);
  1770. Else { Case }
  1771. Inc(Fmt);
  1772. End; { Case }
  1773. End { Begin }
  1774. Else
  1775. Inc(Fmt);
  1776. End; { Case }
  1777. End; { While .. Begin }
  1778. End;
  1779. Procedure FloatToStr;
  1780. Var
  1781. I, J, Exp, Width, Decimals, DecimalPoint, len: Integer;
  1782. Begin
  1783. If ExpFmt = 0 Then
  1784. Begin
  1785. { Fixpoint }
  1786. Decimals:=Placehold[3]+Placehold[4];
  1787. Width:=Placehold[1]+Placehold[2]+Decimals;
  1788. If (Decimals=0) Then
  1789. Str(Value:Width:0,Digits)
  1790. Else if Value>=0 then
  1791. Str(Value:Width+1:Decimals,Digits)
  1792. else
  1793. Str(Value:Width+2:Decimals,Digits);
  1794. len:=Length(Digits);
  1795. { Find the decimal point }
  1796. If (Decimals=0) Then
  1797. DecimalPoint:=len+1
  1798. Else
  1799. DecimalPoint:=len-Decimals;
  1800. { If value is very small, and no decimal places
  1801. are desired, remove the leading 0. }
  1802. If (Abs(Value) < 1) And (Placehold[2] = 0) Then
  1803. Begin
  1804. If (Placehold[1]=0) Then
  1805. Delete(Digits,DecimalPoint-1,1)
  1806. Else
  1807. Digits[DecimalPoint-1]:=' ';
  1808. End;
  1809. { Convert optional zeroes to spaces. }
  1810. I:=len;
  1811. J:=DecimalPoint+Placehold[3];
  1812. While (I>J) And (Digits[I]='0') Do
  1813. Begin
  1814. Digits[I] := ' ';
  1815. Dec(I);
  1816. End;
  1817. { If integer value and no obligatory decimal
  1818. places, remove decimal point. }
  1819. If (DecimalPoint < len) And (Digits[DecimalPoint + 1] = ' ') Then
  1820. Digits[DecimalPoint] := ' ';
  1821. { Convert spaces left from obligatory decimal point to zeroes.
  1822. MVC : If - sign is encountered, replace it too, and put at position 1}
  1823. I:=DecimalPoint-Placehold[2];
  1824. J:=0;
  1825. While (I<DecimalPoint) And (Digits[I] in [' ','-']) Do
  1826. Begin
  1827. If Digits[i]='-' then
  1828. J:=I;
  1829. Digits[I] := '0';
  1830. Inc(I);
  1831. End;
  1832. If (J<>0) then
  1833. Digits[1]:='-';
  1834. Exp := 0;
  1835. End
  1836. Else
  1837. Begin
  1838. { Scientific: exactly <Width> Digits With <Precision> Decimals
  1839. And adjusted Exponent. }
  1840. If Placehold[1]+Placehold[2]=0 Then
  1841. Placehold[1]:=1;
  1842. Decimals := Placehold[3] + Placehold[4];
  1843. Width:=Placehold[1]+Placehold[2]+Decimals;
  1844. { depending on the maximally supported precision, the exponent field }
  1845. { is longer/shorter }
  1846. {$ifdef FPC_HAS_TYPE_EXTENDED}
  1847. Str(Value:Width+8,Digits);
  1848. {$else FPC_HAS_TYPE_EXTENDED}
  1849. {$ifdef FPC_HAS_TYPE_DOUBLE}
  1850. Str(Value:Width+7,Digits);
  1851. {$else FPC_HAS_TYPE_DOUBLE}
  1852. Str(Value:Width+6,Digits);
  1853. {$endif FPC_HAS_TYPE_DOUBLE}
  1854. {$endif FPC_HAS_TYPE_EXTENDED}
  1855. { Find and cut out exponent. Always the
  1856. last 6 characters in the string.
  1857. -> 0000E+0000
  1858. *** No, not always the last 6 characters, this depends on
  1859. the maximally supported precision (JM)}
  1860. I:=Pos('E',Digits);
  1861. Val(Copy(Digits,I+1,255),Exp,J);
  1862. Exp:=Exp+1-(Placehold[1]+Placehold[2]);
  1863. Delete(Digits, I, 255);
  1864. { Str() always returns at least one digit after the decimal point.
  1865. If we don't want it, we have to remove it. }
  1866. If (Decimals=0) And (Placehold[1]+Placehold[2]<= 1) Then
  1867. Begin
  1868. If (Digits[4]>='5') Then
  1869. Begin
  1870. Inc(Digits[2]);
  1871. If (Digits[2]>'9') Then
  1872. Begin
  1873. Digits[2] := '1';
  1874. Inc(Exp);
  1875. End;
  1876. End;
  1877. Delete(Digits, 3, 2);
  1878. DecimalPoint := Length(Digits) + 1;
  1879. End
  1880. Else
  1881. Begin
  1882. { Move decimal point at the desired position }
  1883. Delete(Digits, 3, 1);
  1884. DecimalPoint:=2+Placehold[1]+Placehold[2];
  1885. If (Decimals<>0) Then
  1886. Insert('.',Digits,DecimalPoint);
  1887. End;
  1888. { Convert optional zeroes to spaces. }
  1889. I := Length(Digits);
  1890. J := DecimalPoint + Placehold[3];
  1891. While (I > J) And (Digits[I] = '0') Do
  1892. Begin
  1893. Digits[I] := ' ';
  1894. Dec(I);
  1895. End;
  1896. { If integer number and no obligatory decimal paces, remove decimal point }
  1897. If (DecimalPoint<Length(Digits)) And
  1898. (Digits[DecimalPoint+1]=' ') Then
  1899. Digits[DecimalPoint]:=' ';
  1900. If (Digits[1]=' ') Then
  1901. Begin
  1902. Delete(Digits, 1, 1);
  1903. Dec(DecimalPoint);
  1904. End;
  1905. { Calculate exponent string }
  1906. Str(Abs(Exp), Exponent);
  1907. While Length(Exponent)<ExpSize Do
  1908. Insert('0',Exponent,1);
  1909. If Exp >= 0 Then
  1910. Begin
  1911. If (ExpFmt In [1,3]) Then
  1912. Insert('+', Exponent, 1);
  1913. End
  1914. Else
  1915. Insert('-',Exponent,1);
  1916. If (ExpFmt<3) Then
  1917. Insert('E',Exponent,1)
  1918. Else
  1919. Insert('e',Exponent,1);
  1920. End;
  1921. DigitExponent:=DecimalPoint-2;
  1922. I:=1;
  1923. While (I<=Length(Digits)) and (Digits[i] in [' ','-']) do
  1924. begin
  1925. Dec(DigitExponent);
  1926. Inc(i);
  1927. end;
  1928. UnexpectedDigits:=DecimalPoint-1-(Placehold[1]+Placehold[2]);
  1929. End;
  1930. Function PutResult: LongInt;
  1931. Var
  1932. SQ, DQ: Boolean;
  1933. Fmt, Buf: PChar;
  1934. Dig, N: Integer;
  1935. Begin
  1936. SQ := False;
  1937. DQ := False;
  1938. Fmt := FmtStart;
  1939. Buf := Buffer;
  1940. Dig := 1;
  1941. While (Fmt<FmtStop) Do
  1942. Begin
  1943. // WriteLn('Treating : "',Fmt[0],'"');
  1944. Case Fmt[0] Of
  1945. #34:
  1946. Begin
  1947. If Not SQ Then
  1948. DQ := Not DQ;
  1949. Inc(Fmt);
  1950. End;
  1951. #39:
  1952. Begin
  1953. If Not DQ Then
  1954. SQ := Not SQ;
  1955. Inc(Fmt);
  1956. End;
  1957. Else
  1958. If Not (SQ Or DQ) Then
  1959. Begin
  1960. Case Fmt[0] Of
  1961. '0', '#', '.':
  1962. Begin
  1963. If (Dig=1) And (UnexpectedDigits>0) Then
  1964. Begin
  1965. { Everything unexpected is written before the first digit }
  1966. For N := 1 To UnexpectedDigits Do
  1967. Begin
  1968. if (Digits[N]<>' ') Then
  1969. begin
  1970. Buf[0] := Digits[N];
  1971. Inc(Buf);
  1972. end;
  1973. If thousand And (Not (Digits[N] in [' ','-'])) Then
  1974. Begin
  1975. If (DigitExponent Mod 3 = 0) And (DigitExponent>0) Then
  1976. Begin
  1977. Buf[0] := FormatSettings.ThousandSeparator;
  1978. Inc(Buf);
  1979. End;
  1980. Dec(DigitExponent);
  1981. End;
  1982. End;
  1983. Inc(Dig, UnexpectedDigits);
  1984. End;
  1985. If (Digits[Dig]<>' ') Then
  1986. Begin
  1987. If (Digits[Dig]='.') Then
  1988. Buf[0] := FormatSettings.DecimalSeparator
  1989. Else
  1990. Buf[0] := Digits[Dig];
  1991. Inc(Buf);
  1992. If thousand And (DigitExponent Mod 3 = 0) And (DigitExponent > 0) and (Digits[Dig]<>'-') Then
  1993. Begin
  1994. Buf[0] := FormatSettings.ThousandSeparator;
  1995. Inc(Buf);
  1996. End;
  1997. End;
  1998. if Digits[Dig]<>'-' then
  1999. Dec(DigitExponent);
  2000. Inc(Dig);
  2001. Inc(Fmt);
  2002. End;
  2003. 'e', 'E':
  2004. Begin
  2005. If ExpFmt <> 0 Then
  2006. Begin
  2007. Inc(Fmt);
  2008. If Fmt < FmtStop Then
  2009. Begin
  2010. If Fmt[0] In ['+', '-'] Then
  2011. Begin
  2012. Inc(Fmt, ExpSize);
  2013. For N:=1 To Length(Exponent) Do
  2014. Buf[N-1] := Exponent[N];
  2015. Inc(Buf,Length(Exponent));
  2016. ExpFmt:=0;
  2017. End;
  2018. Inc(Fmt);
  2019. End;
  2020. End
  2021. Else
  2022. Begin
  2023. { No legal exponential format.
  2024. Simply write the 'E' to the result. }
  2025. Buf[0] := Fmt[0];
  2026. Inc(Buf);
  2027. Inc(Fmt);
  2028. End;
  2029. End;
  2030. Else { Case }
  2031. { Usual character }
  2032. If (Fmt[0]<>',') Then
  2033. Begin
  2034. Buf[0] := Fmt[0];
  2035. Inc(Buf);
  2036. End;
  2037. Inc(Fmt);
  2038. End; { Case }
  2039. End
  2040. Else { IF }
  2041. Begin
  2042. { Character inside single or double quotes }
  2043. Buf[0] := Fmt[0];
  2044. Inc(Buf);
  2045. Inc(Fmt);
  2046. End;
  2047. End; { Case }
  2048. End; { While .. Begin }
  2049. Result:=PtrUInt(Buf)-PtrUInt(Buffer);
  2050. End;
  2051. Begin
  2052. If (Value>0) Then
  2053. GetSectionRange(1)
  2054. Else If (Value<0) Then
  2055. GetSectionRange(2)
  2056. Else
  2057. GetSectionRange(3);
  2058. If FmtStart = Nil Then
  2059. Begin
  2060. Result := FloatToText(Buffer, Value, ffGeneral, 15, 4, FormatSettings);
  2061. End
  2062. Else
  2063. Begin
  2064. GetFormatOptions;
  2065. If (ExpFmt = 0) And (Abs(Value) >= 1E18) Then
  2066. Result := FloatToText(Buffer, Value, ffGeneral, 15, 4, FormatSettings)
  2067. Else
  2068. Begin
  2069. FloatToStr;
  2070. Result := PutResult;
  2071. End;
  2072. End;
  2073. End;
  2074. Procedure FloatToDecimal(Out Result: TFloatRec; const Value; ValueType: TFloatValue; Precision, Decimals : integer);
  2075. var
  2076. Buffer: String[254]; //Though str func returns only 25 chars, this might change in the future
  2077. InfNan: string[3];
  2078. Error, N, L, Start, C: Integer;
  2079. GotNonZeroBeforeDot, BeforeDot : boolean;
  2080. begin
  2081. case ValueType of
  2082. fvExtended:
  2083. Str(Extended(Value):25, Buffer);
  2084. fvDouble,
  2085. fvReal:
  2086. Str(Double(Value):23, Buffer);
  2087. fvSingle:
  2088. Str(Single(Value):16, Buffer);
  2089. fvCurrency:
  2090. Str(Currency(Value):25, Buffer);
  2091. fvComp:
  2092. Str(Currency(Value):23, Buffer);
  2093. end;
  2094. N := 1;
  2095. L := Byte(Buffer[0]);
  2096. while Buffer[N]=' ' do
  2097. Inc(N);
  2098. Result.Negative := (Buffer[N] = '-');
  2099. if Result.Negative then
  2100. Inc(N)
  2101. else if (Buffer[N] = '+') then
  2102. inc(N);
  2103. { special cases for Inf and Nan }
  2104. if (L>=N+2) then
  2105. begin
  2106. InfNan:=copy(Buffer,N,3);
  2107. if (InfNan='Inf') then
  2108. begin
  2109. Result.Digits[0]:=#0;
  2110. Result.Exponent:=32767;
  2111. exit
  2112. end;
  2113. if (InfNan='Nan') then
  2114. begin
  2115. Result.Digits[0]:=#0;
  2116. Result.Exponent:=-32768;
  2117. exit
  2118. end;
  2119. end;
  2120. Start := N; //Start of digits
  2121. Result.Exponent := 0; BeforeDot := true;
  2122. GotNonZeroBeforeDot := false;
  2123. while (L>=N) and (Buffer[N]<>'E') do
  2124. begin
  2125. if Buffer[N]='.' then
  2126. BeforeDot := false
  2127. else
  2128. begin
  2129. if BeforeDot then
  2130. begin // Currently this is always 1 char
  2131. Inc(Result.Exponent);
  2132. Result.Digits[N-Start] := Buffer[N];
  2133. if Buffer[N] <> '0' then
  2134. GotNonZeroBeforeDot := true;
  2135. end
  2136. else
  2137. Result.Digits[N-Start-1] := Buffer[N]
  2138. end;
  2139. Inc(N);
  2140. end;
  2141. Inc(N); // Pass through 'E'
  2142. if N<=L then
  2143. begin
  2144. Val(Copy(Buffer, N, L-N+1), C, Error); // Get exponent after 'E'
  2145. Inc(Result.Exponent, C);
  2146. end;
  2147. // Calculate number of digits we have from str
  2148. if BeforeDot then
  2149. N := N - Start - 1
  2150. else
  2151. N := N - Start - 2;
  2152. L := SizeOf(Result.Digits);
  2153. if N<L then
  2154. FillChar(Result.Digits[N], L-N, '0'); //Zero remaining space
  2155. if Decimals + Result.Exponent < Precision Then //After this it is the same as in FloatToDecimal
  2156. N := Decimals + Result.Exponent
  2157. Else
  2158. N := Precision;
  2159. if N >= L Then
  2160. N := L-1;
  2161. if N = 0 Then
  2162. begin
  2163. if Result.Digits[0] >= '5' Then
  2164. begin
  2165. Result.Digits[0] := '1';
  2166. Result.Digits[1] := #0;
  2167. Inc(Result.Exponent);
  2168. end
  2169. Else
  2170. Result.Digits[0] := #0;
  2171. end //N=0
  2172. Else if N > 0 Then
  2173. begin
  2174. if Result.Digits[N] >= '5' Then
  2175. begin
  2176. Repeat
  2177. Result.Digits[N] := #0;
  2178. Dec(N);
  2179. Inc(Result.Digits[N]);
  2180. Until (N = 0) Or (Result.Digits[N] < ':');
  2181. If Result.Digits[0] = ':' Then
  2182. begin
  2183. Result.Digits[0] := '1';
  2184. Inc(Result.Exponent);
  2185. end;
  2186. end
  2187. Else
  2188. begin
  2189. Result.Digits[N] := '0';
  2190. While (N > -1) And (Result.Digits[N] = '0') Do
  2191. begin
  2192. Result.Digits[N] := #0;
  2193. Dec(N);
  2194. end;
  2195. end;
  2196. end //N>0
  2197. Else
  2198. Result.Digits[0] := #0;
  2199. if (Result.Digits[0] = #0) and
  2200. not GotNonZeroBeforeDot then
  2201. begin
  2202. Result.Exponent := 0;
  2203. Result.Negative := False;
  2204. end;
  2205. end;
  2206. Procedure FloatToDecimal(Out Result: TFloatRec; Value: Extended; Precision, Decimals : integer);
  2207. begin
  2208. FloatToDecimal(Result,Value,fvExtended,Precision,Decimals);
  2209. end;
  2210. Function FormatFloat(Const Format : String; Value : Extended; Const FormatSettings: TFormatSettings) : String;
  2211. Var
  2212. buf : Array[0..1024] of char;
  2213. Begin // not changed to pchar(pointer(). Possibly not safe
  2214. Buf[FloatToTextFmt(@Buf[0],Value,Pchar(Format),FormatSettings)]:=#0;
  2215. Result:=StrPas(@Buf[0]);
  2216. End;
  2217. Function FormatFloat(Const format: String; Value: Extended): String;
  2218. begin
  2219. Result:=FormatFloat(Format,Value,DefaultFormatSettings);
  2220. end;
  2221. Function FormatCurr(const Format: string; Value: Currency; Const FormatSettings: TFormatSettings): string;
  2222. begin
  2223. Result := FormatFloat(Format, Value,FormatSettings);
  2224. end;
  2225. function FormatCurr(const Format: string; Value: Currency): string;
  2226. begin
  2227. Result:=FormatCurr(Format,Value,DefaultFormatSettings);
  2228. end;
  2229. {$endif}
  2230. {==============================================================================}
  2231. { extra functions }
  2232. {==============================================================================}
  2233. { LeftStr returns Count left-most characters from S }
  2234. function LeftStr(const S: string; Count: integer): string;
  2235. begin
  2236. result := Copy(S, 1, Count);
  2237. end ;
  2238. { RightStr returns Count right-most characters from S }
  2239. function RightStr(const S: string; Count: integer): string;
  2240. begin
  2241. If Count>Length(S) then
  2242. Count:=Length(S);
  2243. result := Copy(S, 1 + Length(S) - Count, Count);
  2244. end;
  2245. { BCDToInt converts the BCD value Value to an integer }
  2246. function BCDToInt(Value: integer): integer;
  2247. var i, j, digit: integer;
  2248. begin
  2249. result := 0;
  2250. j := 1;
  2251. for i := 0 to SizeOf(Value) shl 1 - 1 do begin
  2252. digit := Value and 15;
  2253. if digit > $9 then
  2254. begin
  2255. if i = 0 then
  2256. begin
  2257. if digit in [$B, $D] then j := -1
  2258. end
  2259. else raise EConvertError.createfmt(SInvalidBCD,[Value]);
  2260. end
  2261. else
  2262. begin
  2263. result := result + j * digit;
  2264. j := j * 10;
  2265. end ;
  2266. Value := Value shr 4;
  2267. end ;
  2268. end ;
  2269. Function LastDelimiter(const Delimiters, S: string): Integer;
  2270. var
  2271. chs: TSysCharSet;
  2272. I: LongInt;
  2273. begin
  2274. chs := [];
  2275. for I := 1 to Length(Delimiters) do
  2276. Include(chs, Delimiters[I]);
  2277. Result:=Length(S);
  2278. While (Result>0) and not (S[Result] in chs) do
  2279. Dec(Result);
  2280. end;
  2281. {$macro on}
  2282. {$define INSTRINGREPLACE}
  2283. {$define SRString:=String}
  2284. {$define SRUpperCase:=AnsiUppercase}
  2285. {$define SRPCHAR:=PChar}
  2286. {$define SRCHAR:=Char}
  2287. Function StringReplace(const S, OldPattern, NewPattern: string; Flags: TReplaceFlags): string;
  2288. {$i syssr.inc}
  2289. {$undef INSTRINGREPLACE}
  2290. {$undef SRString}
  2291. {$undef SRUpperCase}
  2292. {$undef SRPCHAR}
  2293. {$undef SRCHAR}
  2294. Function IsDelimiter(const Delimiters, S: string; Index: Integer): Boolean;
  2295. begin
  2296. Result:=False;
  2297. If (Index>0) and (Index<=Length(S)) then
  2298. Result:=Pos(S[Index],Delimiters)<>0; // Note we don't do MBCS yet
  2299. end;
  2300. Function ByteToCharLen(const S: string; MaxLen: Integer): Integer;
  2301. begin
  2302. Result:=Length(S);
  2303. If Result>MaxLen then
  2304. Result:=MaxLen;
  2305. end;
  2306. Function ByteToCharIndex(const S: string; Index: Integer): Integer;
  2307. begin
  2308. Result:=Index;
  2309. end;
  2310. Function CharToByteLen(const S: string; MaxLen: Integer): Integer;
  2311. begin
  2312. Result:=Length(S);
  2313. If Result>MaxLen then
  2314. Result:=MaxLen;
  2315. end;
  2316. Function CharToByteIndex(const S: string; Index: Integer): Integer;
  2317. begin
  2318. Result:=Index;
  2319. end;
  2320. Function ByteType(const S: string; Index: Integer): TMbcsByteType;
  2321. begin
  2322. Result:=mbSingleByte;
  2323. end;
  2324. Function StrByteType(Str: PChar; Index: Cardinal): TMbcsByteType;
  2325. begin
  2326. Result:=mbSingleByte;
  2327. end;
  2328. Function StrCharLength(const Str: PChar): Integer;
  2329. begin
  2330. result:=widestringmanager.CharLengthPCharProc(Str);
  2331. end;
  2332. function StrNextChar(const Str: PChar): PChar;
  2333. begin
  2334. result:=Str+StrCharLength(Str);
  2335. end;
  2336. Function FindCmdLineSwitch(const Switch: string; const Chars: TSysCharSet;IgnoreCase: Boolean): Boolean;
  2337. Var
  2338. I,L : Integer;
  2339. S,T : String;
  2340. begin
  2341. Result:=False;
  2342. S:=Switch;
  2343. If IgnoreCase then
  2344. S:=UpperCase(S);
  2345. I:=ParamCount;
  2346. While (Not Result) and (I>0) do
  2347. begin
  2348. L:=Length(Paramstr(I));
  2349. If (L>0) and (ParamStr(I)[1] in Chars) then
  2350. begin
  2351. T:=Copy(ParamStr(I),2,L-1);
  2352. If IgnoreCase then
  2353. T:=UpperCase(T);
  2354. Result:=S=T;
  2355. end;
  2356. Dec(i);
  2357. end;
  2358. end;
  2359. Function FindCmdLineSwitch(const Switch: string; IgnoreCase: Boolean): Boolean;
  2360. begin
  2361. Result:=FindCmdLineSwitch(Switch,SwitchChars,IgnoreCase);
  2362. end;
  2363. Function FindCmdLineSwitch(const Switch: string): Boolean;
  2364. begin
  2365. Result:=FindCmdLineSwitch(Switch,SwitchChars,False);
  2366. end;
  2367. function WrapText(const Line, BreakStr: string; const BreakChars: TSysCharSet; MaxCol: Integer): string;
  2368. const
  2369. Quotes = ['''', '"'];
  2370. Var
  2371. L : String;
  2372. C,LQ,BC : Char;
  2373. P,BLen,Len : Integer;
  2374. HB,IBC : Boolean;
  2375. begin
  2376. Result:='';
  2377. L:=Line;
  2378. Blen:=Length(BreakStr);
  2379. If (BLen>0) then
  2380. BC:=BreakStr[1]
  2381. else
  2382. BC:=#0;
  2383. Len:=Length(L);
  2384. While (Len>0) do
  2385. begin
  2386. P:=1;
  2387. LQ:=#0;
  2388. HB:=False;
  2389. IBC:=False;
  2390. While ((P<=Len) and ((P<=MaxCol) or not IBC)) and ((LQ<>#0) or Not HB) do
  2391. begin
  2392. C:=L[P];
  2393. If (C=LQ) then
  2394. LQ:=#0
  2395. else If (C in Quotes) then
  2396. LQ:=C;
  2397. If (LQ<>#0) then
  2398. Inc(P)
  2399. else
  2400. begin
  2401. HB:=((C=BC) and (BreakStr=Copy(L,P,BLen)));
  2402. If HB then
  2403. Inc(P,Blen)
  2404. else
  2405. begin
  2406. If (P>MaxCol) then
  2407. IBC:=C in BreakChars;
  2408. Inc(P);
  2409. end;
  2410. end;
  2411. // Writeln('"',C,'" : IBC : ',IBC,' HB : ',HB,' LQ : ',LQ,' P>MaxCol : ',P>MaxCol);
  2412. end;
  2413. Result:=Result+Copy(L,1,P-1);
  2414. If Not HB then
  2415. Result:=Result+BreakStr;
  2416. Delete(L,1,P-1);
  2417. Len:=Length(L);
  2418. end;
  2419. end;
  2420. function WrapText(const Line: string; MaxCol: Integer): string;
  2421. begin
  2422. Result:=WrapText(Line,sLineBreak, [' ', '-', #9], MaxCol);
  2423. end;
  2424. {$ifndef FPC_NOGENERICANSIROUTINES}
  2425. {
  2426. Case Translation Tables
  2427. Can be used in internationalization support.
  2428. Although these tables can be obtained through system calls
  2429. cd it is better to not use those, since most implementation are not 100%
  2430. WARNING:
  2431. before modifying a translation table make sure that the current codepage
  2432. of the OS corresponds to the one you make changes to
  2433. }
  2434. const
  2435. { upper case translation table for character set 850 }
  2436. CP850UCT: array[128..255] of char =
  2437. (#128,#154,#144,#182,#142,#182,#143,#128,#210,#211,#212,#216,#215,#222,#142,#143,
  2438. #144,#146,#146,#226,#153,#227,#234,#235,'Y',#153,#154,#157,#156,#157,#158,#159,
  2439. #181,#214,#224,#233,#165,#165,#166,#167,#168,#169,#170,#171,#172,#173,#174,#175,
  2440. #176,#177,#178,#179,#180,#181,#182,#183,#184,#185,#186,#187,#188,#189,#190,#191,
  2441. #192,#193,#194,#195,#196,#197,#199,#199,#200,#201,#202,#203,#204,#205,#206,#207,
  2442. #208,#209,#210,#211,#212,#213,#214,#215,#216,#217,#218,#219,#220,#221,#222,#223,
  2443. #224,#225,#226,#227,#229,#229,#230,#237,#232,#233,#234,#235,#237,#237,#238,#239,
  2444. #240,#241,#242,#243,#244,#245,#246,#247,#248,#249,#250,#251,#252,#253,#254,#255);
  2445. { lower case translation table for character set 850 }
  2446. CP850LCT: array[128..255] of char =
  2447. (#135,#129,#130,#131,#132,#133,#134,#135,#136,#137,#138,#139,#140,#141,#132,#134,
  2448. #130,#145,#145,#147,#148,#149,#150,#151,#152,#148,#129,#155,#156,#155,#158,#159,
  2449. #160,#161,#162,#163,#164,#164,#166,#167,#168,#169,#170,#171,#172,#173,#174,#175,
  2450. #176,#177,#178,#179,#180,#160,#131,#133,#184,#185,#186,#187,#188,#189,#190,#191,
  2451. #192,#193,#194,#195,#196,#197,#198,#198,#200,#201,#202,#203,#204,#205,#206,#207,
  2452. #208,#209,#136,#137,#138,#213,#161,#140,#139,#217,#218,#219,#220,#221,#141,#223,
  2453. #162,#225,#147,#149,#228,#228,#230,#237,#232,#163,#150,#151,#236,#236,#238,#239,
  2454. #240,#241,#242,#243,#244,#245,#246,#247,#248,#249,#250,#251,#252,#253,#254,#255);
  2455. { upper case translation table for character set ISO 8859/1 Latin 1 }
  2456. CPISO88591UCT: array[192..255] of char =
  2457. ( #192, #193, #194, #195, #196, #197, #198, #199,
  2458. #200, #201, #202, #203, #204, #205, #206, #207,
  2459. #208, #209, #210, #211, #212, #213, #214, #215,
  2460. #216, #217, #218, #219, #220, #221, #222, #223,
  2461. #192, #193, #194, #195, #196, #197, #198, #199,
  2462. #200, #201, #202, #203, #204, #205, #206, #207,
  2463. #208, #209, #210, #211, #212, #213, #214, #247,
  2464. #216, #217, #218, #219, #220, #221, #222, #89 );
  2465. { lower case translation table for character set ISO 8859/1 Latin 1 }
  2466. CPISO88591LCT: array[192..255] of char =
  2467. ( #224, #225, #226, #227, #228, #229, #230, #231,
  2468. #232, #233, #234, #235, #236, #237, #238, #239,
  2469. #240, #241, #242, #243, #244, #245, #246, #215,
  2470. #248, #249, #250, #251, #252, #253, #254, #223,
  2471. #224, #225, #226, #227, #228, #229, #230, #231,
  2472. #232, #233, #234, #235, #236, #237, #238, #239,
  2473. #240, #241, #242, #243, #244, #245, #246, #247,
  2474. #248, #249, #250, #251, #252, #253, #254, #255 );
  2475. {$endif FPC_NOGENERICANSIROUTINES}
  2476. function sscanf(const s: string; const fmt : string;const Pointers : array of Pointer) : Integer;
  2477. var
  2478. i,j,n,m : SizeInt;
  2479. s1 : string;
  2480. function GetInt(unsigned : boolean=false) : Integer;
  2481. begin
  2482. s1 := '';
  2483. while (Length(s) > n) and (s[n] = ' ') do
  2484. inc(n);
  2485. { read sign }
  2486. if (Length(s)>= n) and (s[n] in ['+', '-']) then
  2487. begin
  2488. { don't accept - when reading unsigned }
  2489. if unsigned and (s[n]='-') then
  2490. begin
  2491. result:=length(s1);
  2492. exit;
  2493. end
  2494. else
  2495. begin
  2496. s1:=s1+s[n];
  2497. inc(n);
  2498. end;
  2499. end;
  2500. { read numbers }
  2501. while (Length(s) >= n) and
  2502. (s[n] in ['0'..'9']) do
  2503. begin
  2504. s1 := s1+s[n];
  2505. inc(n);
  2506. end;
  2507. Result := Length(s1);
  2508. end;
  2509. function GetFloat : Integer;
  2510. begin
  2511. s1 := '';
  2512. while (Length(s) > n) and (s[n] = ' ') do
  2513. inc(n);
  2514. while (Length(s) >= n) and
  2515. (s[n] in ['0'..'9', '+', '-', FormatSettings.DecimalSeparator, 'e', 'E']) do
  2516. begin
  2517. s1 := s1+s[n];
  2518. inc(n);
  2519. end;
  2520. Result := Length(s1);
  2521. end;
  2522. function GetString : Integer;
  2523. begin
  2524. s1 := '';
  2525. while (Length(s) > n) and (s[n] = ' ') do
  2526. inc(n);
  2527. while (Length(s) >= n) and (s[n] <> ' ')do
  2528. begin
  2529. s1 := s1+s[n];
  2530. inc(n);
  2531. end;
  2532. Result := Length(s1);
  2533. end;
  2534. function ScanStr(c : Char) : Boolean;
  2535. begin
  2536. while (Length(s) > n) and (s[n] <> c) do
  2537. inc(n);
  2538. inc(n);
  2539. If (n <= Length(s)) then
  2540. Result := True
  2541. else
  2542. Result := False;
  2543. end;
  2544. function GetFmt : Integer;
  2545. begin
  2546. Result := -1;
  2547. while true do
  2548. begin
  2549. while (Length(fmt) > m) and (fmt[m] = ' ') do
  2550. inc(m);
  2551. if (m >= Length(fmt)) then
  2552. break;
  2553. if (fmt[m] = '%') then
  2554. begin
  2555. inc(m);
  2556. case fmt[m] of
  2557. 'd':
  2558. Result:=vtInteger;
  2559. {$ifndef FPUNONE}
  2560. 'f':
  2561. Result:=vtExtended;
  2562. {$endif}
  2563. 's':
  2564. Result:=vtString;
  2565. 'c':
  2566. Result:=vtChar;
  2567. else
  2568. raise EFormatError.CreateFmt(SInvalidFormat,[fmt]);
  2569. end;
  2570. inc(m);
  2571. break;
  2572. end;
  2573. if not(ScanStr(fmt[m])) then
  2574. break;
  2575. inc(m);
  2576. end;
  2577. end;
  2578. begin
  2579. n := 1;
  2580. m := 1;
  2581. Result := 0;
  2582. for i:=0 to High(Pointers) do
  2583. begin
  2584. j := GetFmt;
  2585. case j of
  2586. vtInteger :
  2587. begin
  2588. if GetInt>0 then
  2589. begin
  2590. pLongint(Pointers[i])^:=StrToInt(s1);
  2591. inc(Result);
  2592. end
  2593. else
  2594. break;
  2595. end;
  2596. vtchar :
  2597. begin
  2598. if Length(s)>n then
  2599. begin
  2600. pchar(Pointers[i])^:=s[n];
  2601. inc(n);
  2602. inc(Result);
  2603. end
  2604. else
  2605. break;
  2606. end;
  2607. {$ifndef FPUNONE}
  2608. vtExtended :
  2609. begin
  2610. if GetFloat>0 then
  2611. begin
  2612. pextended(Pointers[i])^:=StrToFloat(s1);
  2613. inc(Result);
  2614. end
  2615. else
  2616. break;
  2617. end;
  2618. {$endif}
  2619. vtString :
  2620. begin
  2621. if GetString > 0 then
  2622. begin
  2623. pansistring(Pointers[i])^:=s1;
  2624. inc(Result);
  2625. end
  2626. else
  2627. break;
  2628. end;
  2629. else
  2630. break;
  2631. end;
  2632. end;
  2633. end;