sysstr.inc 55 KB

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  1. {
  2. *********************************************************************
  3. Copyright (C) 1997, 1998 Gertjan Schouten
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. *********************************************************************
  16. System Utilities For Free Pascal
  17. }
  18. { NewStr creates a new PString and assigns S to it
  19. if length(s) = 0 NewStr returns Nil }
  20. function NewStr(const S: string): PString;
  21. begin
  22. if (S='') then
  23. Result:=nil
  24. else
  25. begin
  26. new(result);
  27. if (Result<>nil) then
  28. Result^:=s;
  29. end;
  30. end;
  31. { DisposeStr frees the memory occupied by S }
  32. procedure DisposeStr(S: PString);
  33. begin
  34. if S <> Nil then
  35. begin
  36. dispose(s);
  37. S:=nil;
  38. end;
  39. end;
  40. { AssignStr assigns S to P^ }
  41. procedure AssignStr(var P: PString; const S: string);
  42. begin
  43. P^ := s;
  44. end ;
  45. { AppendStr appends S to Dest }
  46. procedure AppendStr(var Dest: String; const S: string);
  47. begin
  48. Dest := Dest + S;
  49. end ;
  50. { UpperCase returns a copy of S where all lowercase characters ( from a to z )
  51. have been converted to uppercase }
  52. Function UpperCase(Const S : String) : String;
  53. Var
  54. i : Integer;
  55. P : PChar;
  56. begin
  57. Result := S;
  58. UniqueString(Result);
  59. P:=Pchar(Result);
  60. for i := 1 to Length(Result) do
  61. begin
  62. if (P^ in ['a'..'z']) then P^ := char(byte(p^) - 32);
  63. Inc(P);
  64. end;
  65. end;
  66. { LowerCase returns a copy of S where all uppercase characters ( from A to Z )
  67. have been converted to lowercase }
  68. Function Lowercase(Const S : String) : String;
  69. Var
  70. i : Integer;
  71. P : PChar;
  72. begin
  73. Result := S;
  74. UniqueString(Result);
  75. P:=Pchar(Result);
  76. for i := 1 to Length(Result) do
  77. begin
  78. if (P^ in ['A'..'Z']) then P^ := char(byte(p^) + 32);
  79. Inc(P);
  80. end;
  81. end;
  82. function LowerCase(const V: variant): string; overload;{$ifdef SYSUTILSINLINE}inline;{$endif}
  83. begin
  84. result:=LowerCase(ansistring(V));
  85. end;
  86. { CompareStr compares S1 and S2, the result is the based on
  87. substraction of the ascii values of the characters in S1 and S2
  88. case result
  89. S1 < S2 < 0
  90. S1 > S2 > 0
  91. S1 = S2 = 0 }
  92. function CompareStr(const S1, S2: string): Integer;
  93. var count, count1, count2: integer;
  94. begin
  95. result := 0;
  96. Count1 := Length(S1);
  97. Count2 := Length(S2);
  98. if Count1>Count2 then
  99. Count:=Count2
  100. else
  101. Count:=Count1;
  102. result := CompareMemRange(Pointer(S1),Pointer(S2), Count);
  103. if result=0 then
  104. result:=Count1-Count2;
  105. end;
  106. { CompareMemRange returns the result of comparison of Length bytes at P1 and P2
  107. case result
  108. P1 < P2 < 0
  109. P1 > P2 > 0
  110. P1 = P2 = 0 }
  111. function CompareMemRange(P1, P2: Pointer; Length: cardinal): integer;
  112. var
  113. i: cardinal;
  114. begin
  115. i := 0;
  116. result := 0;
  117. while (result=0) and (I<length) do
  118. begin
  119. result:=byte(P1^)-byte(P2^);
  120. P1:=pchar(P1)+1; // VP compat.
  121. P2:=pchar(P2)+1;
  122. i := i + 1;
  123. end ;
  124. end ;
  125. function CompareMem(P1, P2: Pointer; Length: cardinal): Boolean;
  126. var
  127. i: cardinal;
  128. begin
  129. Result:=True;
  130. I:=0;
  131. If (P1)<>(P2) then
  132. While Result and (i<Length) do
  133. begin
  134. Result:=PByte(P1)^=PByte(P2)^;
  135. Inc(I);
  136. Inc(pchar(P1));
  137. Inc(pchar(P2));
  138. end;
  139. end;
  140. { CompareText compares S1 and S2, the result is the based on
  141. substraction of the ascii values of characters in S1 and S2
  142. comparison is case-insensitive
  143. case result
  144. S1 < S2 < 0
  145. S1 > S2 > 0
  146. S1 = S2 = 0 }
  147. function CompareText(const S1, S2: string): integer;
  148. var
  149. i, count, count1, count2: integer; Chr1, Chr2: byte;
  150. begin
  151. result := 0;
  152. Count1 := Length(S1);
  153. Count2 := Length(S2);
  154. if (Count1>Count2) then
  155. Count := Count2
  156. else
  157. Count := Count1;
  158. i := 0;
  159. while (result=0) and (i<count) do
  160. begin
  161. inc (i);
  162. Chr1 := byte(s1[i]);
  163. Chr2 := byte(s2[i]);
  164. if Chr1 in [97..122] then
  165. dec(Chr1,32);
  166. if Chr2 in [97..122] then
  167. dec(Chr2,32);
  168. result := Chr1 - Chr2;
  169. end ;
  170. if (result = 0) then
  171. result:=(count1-count2);
  172. end;
  173. function SameText(const s1,s2:String):Boolean;
  174. begin
  175. Result:=CompareText(S1,S2)=0;
  176. end;
  177. {==============================================================================}
  178. { Ansi string functions }
  179. { these functions rely on the character set loaded by the OS }
  180. {==============================================================================}
  181. function GenericAnsiUpperCase(const s: string): string;
  182. var
  183. len, i: integer;
  184. begin
  185. len := length(s);
  186. SetLength(result, len);
  187. for i := 1 to len do
  188. result[i] := UpperCaseTable[ord(s[i])];
  189. end;
  190. function GenericAnsiLowerCase(const s: string): string;
  191. var
  192. len, i: integer;
  193. begin
  194. len := length(s);
  195. SetLength(result, len);
  196. for i := 1 to len do
  197. result[i] := LowerCaseTable[ord(s[i])];
  198. end;
  199. function GenericAnsiCompareStr(const S1, S2: string): PtrInt;
  200. Var
  201. I,L1,L2 : SizeInt;
  202. begin
  203. Result:=0;
  204. L1:=Length(S1);
  205. L2:=Length(S2);
  206. I:=1;
  207. While (Result=0) and ((I<=L1) and (I<=L2)) do
  208. begin
  209. Result:=Ord(S1[I])-Ord(S2[I]); //!! Must be replaced by ansi characters !!
  210. Inc(I);
  211. end;
  212. If Result=0 Then
  213. Result:=L1-L2;
  214. end;
  215. function GenericAnsiCompareText(const S1, S2: string): PtrInt;
  216. Var
  217. I,L1,L2 : SizeInt;
  218. begin
  219. Result:=0;
  220. L1:=Length(S1);
  221. L2:=Length(S2);
  222. I:=1;
  223. While (Result=0) and ((I<=L1) and (I<=L2)) do
  224. begin
  225. Result:=Ord(LowerCaseTable[Ord(S1[I])])-Ord(LowerCaseTable[Ord(S2[I])]); //!! Must be replaced by ansi characters !!
  226. Inc(I);
  227. end;
  228. If Result=0 Then
  229. Result:=L1-L2;
  230. end;
  231. function AnsiSameText(const s1,s2:String):Boolean;{$ifdef SYSUTILSINLINE}inline;{$endif}
  232. begin
  233. AnsiSameText:=AnsiCompareText(S1,S2)=0;
  234. end;
  235. function AnsiSameStr(const s1,s2:String):Boolean;{$ifdef SYSUTILSINLINE}inline;{$endif}
  236. begin
  237. AnsiSameStr:=AnsiCompareStr(S1,S2)=0;
  238. end;
  239. function GenericAnsiStrComp(S1, S2: PChar): PtrInt;
  240. begin
  241. Result:=0;
  242. If S1=Nil then
  243. begin
  244. If S2=Nil Then Exit;
  245. result:=-1;
  246. exit;
  247. end;
  248. If S2=Nil then
  249. begin
  250. Result:=1;
  251. exit;
  252. end;
  253. Repeat
  254. Result:=Ord(S1^)-Ord(S2^); //!! Must be replaced by ansi characters !!
  255. Inc(S1);
  256. Inc(S2);
  257. Until (Result<>0) or (S1^=#0) or (S2^=#0);
  258. if (Result=0) and (S1^<>S2^) then // loop ended because exactly one has #0
  259. if S1^=#0 then // shorter string is smaller
  260. result:=-1
  261. else
  262. result:=1;
  263. end;
  264. function GenericAnsiStrIComp(S1, S2: PChar): PtrInt;
  265. begin
  266. Result:=0;
  267. If S1=Nil then
  268. begin
  269. If S2=Nil Then Exit;
  270. result:=-1;
  271. exit;
  272. end;
  273. If S2=Nil then
  274. begin
  275. Result:=1;
  276. exit;
  277. end;
  278. Repeat
  279. Result:=Ord(LowerCaseTable[Ord(S1[0])])-Ord(LowerCaseTable[Ord(S2[0])]); //!! Must be replaced by ansi characters !!
  280. Inc(S1);
  281. Inc(S2);
  282. Until (Result<>0) or ((S1[0]=#0) or (S2[0]=#0))
  283. end;
  284. function GenericAnsiStrLComp(S1, S2: PChar; MaxLen: PtrUInt): PtrInt;
  285. Var I : cardinal;
  286. begin
  287. Result:=0;
  288. If MaxLen=0 then exit;
  289. If S1=Nil then
  290. begin
  291. If S2=Nil Then Exit;
  292. result:=-1;
  293. exit;
  294. end;
  295. If S2=Nil then
  296. begin
  297. Result:=1;
  298. exit;
  299. end;
  300. I:=0;
  301. Repeat
  302. Result:=Ord(S1[0])-Ord(S2[0]); //!! Must be replaced by ansi characters !!
  303. Inc(S1);
  304. Inc(S2);
  305. Inc(I);
  306. Until (Result<>0) or ((S1[0]=#0) or (S2[0]=#0)) or (I=MaxLen)
  307. end;
  308. function GenericAnsiStrLIComp(S1, S2: PChar; MaxLen: PtrUInt): PtrInt;
  309. Var I : cardinal;
  310. begin
  311. Result:=0;
  312. If MaxLen=0 then exit;
  313. If S1=Nil then
  314. begin
  315. If S2=Nil Then Exit;
  316. result:=-1;
  317. exit;
  318. end;
  319. If S2=Nil then
  320. begin
  321. Result:=1;
  322. exit;
  323. end;
  324. I:=0;
  325. Repeat
  326. Result:=Ord(LowerCaseTable[Ord(S1[0])])-Ord(LowerCaseTable[Ord(S2[0])]); //!! Must be replaced by ansi characters !!
  327. Inc(S1);
  328. Inc(S2);
  329. Inc(I);
  330. Until (Result<>0) or ((S1[0]=#0) or (S2[0]=#0)) or (I=MaxLen)
  331. end;
  332. function GenericAnsiStrLower(Str: PChar): PChar;
  333. begin
  334. result := Str;
  335. if Str <> Nil then begin
  336. while Str^ <> #0 do begin
  337. Str^ := LowerCaseTable[byte(Str^)];
  338. Str := Str + 1;
  339. end;
  340. end;
  341. end;
  342. function GenericAnsiStrUpper(Str: PChar): PChar;
  343. begin
  344. result := Str;
  345. if Str <> Nil then begin
  346. while Str^ <> #0 do begin
  347. Str^ := UpperCaseTable[byte(Str^)];
  348. Str := Str + 1;
  349. end ;
  350. end ;
  351. end ;
  352. function AnsiLastChar(const S: string): PChar;
  353. begin
  354. //!! No multibyte yet, so we return the last one.
  355. result:=StrEnd(Pchar(S));
  356. Dec(Result);
  357. end ;
  358. function AnsiStrLastChar(Str: PChar): PChar;
  359. begin
  360. //!! No multibyte yet, so we return the last one.
  361. result:=StrEnd(Str);
  362. Dec(Result);
  363. end ;
  364. function AnsiUpperCase(const s: string): string;{$ifdef SYSUTILSINLINE}inline;{$endif}
  365. begin
  366. result:=widestringmanager.UpperAnsiStringProc(s);
  367. end;
  368. function AnsiLowerCase(const s: string): string;{$ifdef SYSUTILSINLINE}inline;{$endif}
  369. begin
  370. result:=widestringmanager.LowerAnsiStringProc(s);
  371. end;
  372. function AnsiCompareStr(const S1, S2: string): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  373. begin
  374. result:=widestringmanager.CompareStrAnsiStringProc(s1,s2);
  375. end;
  376. function AnsiCompareText(const S1, S2: string): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  377. begin
  378. result:=widestringmanager.CompareTextAnsiStringProc(s1,s2);
  379. end;
  380. function AnsiStrComp(S1, S2: PChar): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  381. begin
  382. result:=widestringmanager.StrCompAnsiStringProc(s1,s2);
  383. end;
  384. function AnsiStrIComp(S1, S2: PChar): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  385. begin
  386. result:=widestringmanager.StrICompAnsiStringProc(s1,s2);
  387. end;
  388. function AnsiStrLComp(S1, S2: PChar; MaxLen: cardinal): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  389. begin
  390. result:=widestringmanager.StrLCompAnsiStringProc(s1,s2,maxlen);
  391. end;
  392. function AnsiStrLIComp(S1, S2: PChar; MaxLen: cardinal): integer;{$ifdef SYSUTILSINLINE}inline;{$endif}
  393. begin
  394. result:=widestringmanager.StrLICompAnsiStringProc(s1,s2,maxlen);
  395. end;
  396. function AnsiStrLower(Str: PChar): PChar;{$ifdef SYSUTILSINLINE}inline;{$endif}
  397. begin
  398. result:=widestringmanager.StrLowerAnsiStringProc(Str);
  399. end;
  400. function AnsiStrUpper(Str: PChar): PChar;{$ifdef SYSUTILSINLINE}inline;{$endif}
  401. begin
  402. result:=widestringmanager.StrUpperAnsiStringProc(Str);
  403. end;
  404. {==============================================================================}
  405. { End of Ansi functions }
  406. {==============================================================================}
  407. { Trim returns a copy of S with blanks characters on the left and right stripped off }
  408. Const WhiteSpace = [#0..' '];
  409. function Trim(const S: string): string;
  410. var Ofs, Len: integer;
  411. begin
  412. len := Length(S);
  413. while (Len>0) and (S[Len] in WhiteSpace) do
  414. dec(Len);
  415. Ofs := 1;
  416. while (Ofs<=Len) and (S[Ofs] in WhiteSpace) do
  417. Inc(Ofs);
  418. result := Copy(S, Ofs, 1 + Len - Ofs);
  419. end ;
  420. { TrimLeft returns a copy of S with all blank characters on the left stripped off }
  421. function TrimLeft(const S: string): string;
  422. var i,l:integer;
  423. begin
  424. l := length(s);
  425. i := 1;
  426. while (i<=l) and (s[i] in whitespace) do
  427. inc(i);
  428. Result := copy(s, i, l);
  429. end ;
  430. { TrimRight returns a copy of S with all blank characters on the right stripped off }
  431. function TrimRight(const S: string): string;
  432. var l:integer;
  433. begin
  434. l := length(s);
  435. while (l>0) and (s[l] in whitespace) do
  436. dec(l);
  437. result := copy(s,1,l);
  438. end ;
  439. { QuotedStr returns S quoted left and right and every single quote in S
  440. replaced by two quotes }
  441. function QuotedStr(const S: string): string;
  442. begin
  443. result := AnsiQuotedStr(s, '''');
  444. end ;
  445. { AnsiQuotedStr returns S quoted left and right by Quote,
  446. and every single occurance of Quote replaced by two }
  447. function AnsiQuotedStr(const S: string; Quote: char): string;
  448. var i, j, count: integer;
  449. begin
  450. result := '' + Quote;
  451. count := length(s);
  452. i := 0;
  453. j := 0;
  454. while i < count do begin
  455. i := i + 1;
  456. if S[i] = Quote then begin
  457. result := result + copy(S, 1 + j, i - j) + Quote;
  458. j := i;
  459. end ;
  460. end ;
  461. if i <> j then
  462. result := result + copy(S, 1 + j, i - j);
  463. result := result + Quote;
  464. end ;
  465. { AnsiExtractQuotedStr returns a copy of Src with quote characters
  466. deleted to the left and right and double occurances
  467. of Quote replaced by a single Quote }
  468. function AnsiExtractQuotedStr(var Src: PChar; Quote: Char): string;
  469. var
  470. P,Q,R: PChar;
  471. begin
  472. P := Src;
  473. Q := StrEnd(P);
  474. result:='';
  475. if P=Q then exit;
  476. if P^<>quote then exit;
  477. inc(p);
  478. setlength(result,(Q-P)+1);
  479. R:=@Result[1];
  480. while P <> Q do
  481. begin
  482. R^:=P^;
  483. inc(R);
  484. if (P^ = Quote) then
  485. begin
  486. P := P + 1;
  487. if (p^ <> Quote) then
  488. begin
  489. dec(R);
  490. break;
  491. end;
  492. end;
  493. P := P + 1;
  494. end ;
  495. src:=p;
  496. SetLength(result, (R-pchar(@Result[1])));
  497. end ;
  498. { AdjustLineBreaks returns S with all CR characters not followed by LF
  499. replaced with CR/LF }
  500. // under Linux all CR characters or CR/LF combinations should be replaced with LF
  501. function AdjustLineBreaks(const S: string): string;
  502. begin
  503. Result:=AdjustLineBreaks(S,DefaultTextLineBreakStyle);
  504. end;
  505. function AdjustLineBreaks(const S: string; Style: TTextLineBreakStyle): string;
  506. var
  507. Source,Dest: PChar;
  508. DestLen: Integer;
  509. I,J,L: Longint;
  510. begin
  511. Source:=Pointer(S);
  512. L:=Length(S);
  513. DestLen:=L;
  514. I:=1;
  515. while (I<=L) do
  516. begin
  517. case S[i] of
  518. #10: if (Style=tlbsCRLF) then
  519. Inc(DestLen);
  520. #13: if (Style=tlbsCRLF) then
  521. if (I<L) and (S[i+1]=#10) then
  522. Inc(I)
  523. else
  524. Inc(DestLen)
  525. else if (I<L) and (S[I+1]=#10) then
  526. Dec(DestLen);
  527. end;
  528. Inc(I);
  529. end;
  530. if (DestLen=L) then
  531. Result:=S
  532. else
  533. begin
  534. SetLength(Result, DestLen);
  535. FillChar(Result[1],DestLen,0);
  536. Dest := Pointer(Result);
  537. J:=0;
  538. I:=0;
  539. While I<L do
  540. case Source[I] of
  541. #10: begin
  542. if Style=tlbsCRLF then
  543. begin
  544. Dest[j]:=#13;
  545. Inc(J);
  546. end;
  547. Dest[J] := #10;
  548. Inc(J);
  549. Inc(I);
  550. end;
  551. #13: begin
  552. if Style=tlbsCRLF then
  553. begin
  554. Dest[j] := #13;
  555. Inc(J);
  556. end;
  557. Dest[j]:=#10;
  558. Inc(J);
  559. Inc(I);
  560. if Source[I]=#10 then
  561. Inc(I);
  562. end;
  563. else
  564. Dest[j]:=Source[i];
  565. Inc(J);
  566. Inc(I);
  567. end;
  568. end;
  569. end;
  570. { IsValidIdent returns true if the first character of Ident is in:
  571. 'A' to 'Z', 'a' to 'z' or '_' and the following characters are
  572. on of: 'A' to 'Z', 'a' to 'z', '0'..'9' or '_' }
  573. function IsValidIdent(const Ident: string): boolean;
  574. var i, len: integer;
  575. begin
  576. result := false;
  577. len := length(Ident);
  578. if len <> 0 then begin
  579. result := Ident[1] in ['A'..'Z', 'a'..'z', '_'];
  580. i := 1;
  581. while (result) and (i < len) do begin
  582. i := i + 1;
  583. result := result and (Ident[i] in ['A'..'Z', 'a'..'z', '0'..'9', '_']);
  584. end ;
  585. end ;
  586. end ;
  587. { IntToStr returns a string representing the value of Value }
  588. function IntToStr(Value: integer): string;
  589. begin
  590. System.Str(Value, result);
  591. end ;
  592. function IntToStr(Value: int64): string;
  593. begin
  594. System.Str(Value, result);
  595. end ;
  596. function IntToStr(Value: QWord): string;
  597. begin
  598. System.Str(Value, result);
  599. end ;
  600. { IntToHex returns a string representing the hexadecimal value of Value }
  601. const
  602. HexDigits: array[0..15] of char = '0123456789ABCDEF';
  603. function IntToHex(Value: integer; Digits: integer): string;
  604. var i: integer;
  605. begin
  606. SetLength(result, digits);
  607. for i := 0 to digits - 1 do
  608. begin
  609. result[digits - i] := HexDigits[value and 15];
  610. value := value shr 4;
  611. end ;
  612. while value <> 0 do begin
  613. result := HexDigits[value and 15] + result;
  614. value := value shr 4;
  615. end;
  616. end ;
  617. function IntToHex(Value: int64; Digits: integer): string;
  618. var i: integer;
  619. begin
  620. SetLength(result, digits);
  621. for i := 0 to digits - 1 do
  622. begin
  623. result[digits - i] := HexDigits[value and 15];
  624. value := value shr 4;
  625. end ;
  626. while value <> 0 do begin
  627. result := HexDigits[value and 15] + result;
  628. value := value shr 4;
  629. end;
  630. end ;
  631. function TryStrToInt(const s: string; var i : integer) : boolean;
  632. var Error : word;
  633. begin
  634. Val(s, i, Error);
  635. TryStrToInt:=Error=0
  636. end;
  637. { StrToInt converts the string S to an integer value,
  638. if S does not represent a valid integer value EConvertError is raised }
  639. function StrToInt(const S: string): integer;
  640. var Error: word;
  641. begin
  642. Val(S, result, Error);
  643. if Error <> 0 then raise EConvertError.createfmt(SInvalidInteger,[S]);
  644. end ;
  645. function StrToInt64(const S: string): int64;
  646. var Error: word;
  647. begin
  648. Val(S, result, Error);
  649. if Error <> 0 then raise EConvertError.createfmt(SInvalidInteger,[S]);
  650. end;
  651. function TryStrToInt64(const s: string; var i : int64) : boolean;
  652. var Error : word;
  653. begin
  654. Val(s, i, Error);
  655. TryStrToInt64:=Error=0
  656. end;
  657. { StrToIntDef converts the string S to an integer value,
  658. Default is returned in case S does not represent a valid integer value }
  659. function StrToIntDef(const S: string; Default: integer): integer;
  660. var Error: word;
  661. begin
  662. Val(S, result, Error);
  663. if Error <> 0 then result := Default;
  664. end ;
  665. { StrToIntDef converts the string S to an integer value,
  666. Default is returned in case S does not represent a valid integer value }
  667. function StrToInt64Def(const S: string; Default: int64): int64;
  668. var Error: word;
  669. begin
  670. Val(S, result, Error);
  671. if Error <> 0 then result := Default;
  672. end ;
  673. { LoadStr returns the string resource Ident. }
  674. function LoadStr(Ident: integer): string;
  675. begin
  676. result:='';
  677. end ;
  678. { FmtLoadStr returns the string resource Ident and formats it accordingly }
  679. function FmtLoadStr(Ident: integer; const Args: array of const): string;
  680. begin
  681. result:='';
  682. end;
  683. Const
  684. feInvalidFormat = 1;
  685. feMissingArgument = 2;
  686. feInvalidArgIndex = 3;
  687. {$ifdef fmtdebug}
  688. Procedure Log (Const S: String);
  689. begin
  690. Writeln (S);
  691. end;
  692. {$endif}
  693. Procedure DoFormatError (ErrCode : Longint);
  694. Var
  695. S : String;
  696. begin
  697. //!! must be changed to contain format string...
  698. S:='';
  699. Case ErrCode of
  700. feInvalidFormat : raise EConvertError.Createfmt(SInvalidFormat,[s]);
  701. feMissingArgument : raise EConvertError.Createfmt(SArgumentMissing,[s]);
  702. feInvalidArgIndex : raise EConvertError.Createfmt(SInvalidArgIndex,[s]);
  703. end;
  704. end;
  705. { we've no templates, but with includes we can simulate this :) }
  706. {$macro on}
  707. {$define INFORMAT}
  708. {$define TFormatString:=ansistring}
  709. {$define TFormatChar:=char}
  710. Function Format (Const Fmt : AnsiString; const Args : Array of const) : AnsiString;
  711. {$i sysformt.inc}
  712. {$undef TFormatString}
  713. {$undef TFormatChar}
  714. {$undef INFORMAT}
  715. {$macro off}
  716. Function FormatBuf (Var Buffer; BufLen : Cardinal;
  717. Const Fmt; fmtLen : Cardinal;
  718. Const Args : Array of const) : Cardinal;
  719. Var S,F : String;
  720. begin
  721. Setlength(F,fmtlen);
  722. if fmtlen > 0 then
  723. Move(fmt,F[1],fmtlen);
  724. S:=Format (F,Args);
  725. If Cardinal(Length(S))<Buflen then
  726. Result:=Length(S)
  727. else
  728. Result:=Buflen;
  729. Move(S[1],Buffer,Result);
  730. end;
  731. Procedure FmtStr(Var Res: String; Const Fmt : String; Const args: Array of const);
  732. begin
  733. Res:=Format(fmt,Args);
  734. end;
  735. Function StrFmt(Buffer,Fmt : PChar; Const args: Array of const) : Pchar;
  736. begin
  737. Buffer[FormatBuf(Buffer^,Maxint,Fmt^,strlen(fmt),args)]:=#0;
  738. Result:=Buffer;
  739. end;
  740. Function StrLFmt(Buffer : PCHar; Maxlen : Cardinal;Fmt : PChar; Const args: Array of const) : Pchar;
  741. begin
  742. Buffer[FormatBuf(Buffer^,MaxLen,Fmt^,strlen(fmt),args)]:=#0;
  743. Result:=Buffer;
  744. end;
  745. Function StrToFloat(Const S: String): Extended;
  746. Begin
  747. If Not TextToFloat(Pchar(S),Result) then
  748. Raise EConvertError.createfmt(SInValidFLoat,[S]);
  749. End;
  750. function StrToFloatDef(const S: string; const Default: Extended): Extended;
  751. begin
  752. if not TextToFloat(PChar(S),Result,fvExtended) then
  753. Result:=Default;
  754. end;
  755. Function TextToFloat(Buffer: PChar; Var Value: Extended): Boolean;
  756. Var
  757. E,P : Integer;
  758. S : String;
  759. Begin
  760. S:=StrPas(Buffer);
  761. P:=Pos(DecimalSeparator,S);
  762. If (P<>0) Then
  763. S[P] := '.';
  764. Val(trim(S),Value,E);
  765. Result:=(E=0);
  766. End;
  767. Function TextToFloat(Buffer: PChar; Var Value; ValueType: TFloatValue): Boolean;
  768. Var
  769. E,P : Integer;
  770. S : String;
  771. TempValue: extended;
  772. Begin
  773. S:=StrPas(Buffer);
  774. P:=Pos(ThousandSeparator,S);
  775. While (P<>0) do
  776. begin
  777. Delete(S,P,1);
  778. P:=Pos(ThousandSeparator,S);
  779. end;
  780. P:=Pos(DecimalSeparator,S);
  781. If (P<>0) Then
  782. S[P] := '.';
  783. case ValueType of
  784. fvCurrency:
  785. begin
  786. // needed for platforms where Currency = Int64
  787. Val(S,TempValue,E);
  788. Currency(Value) := TempValue;
  789. end;
  790. fvExtended:
  791. Val(S,Extended(Value),E);
  792. fvDouble:
  793. Val(S,Double(Value),E);
  794. fvSingle:
  795. Val(S,Single(Value),E);
  796. fvComp:
  797. Val(S,Comp(Value),E);
  798. fvReal:
  799. Val(S,Real(Value),E);
  800. end;
  801. Result:=(E=0);
  802. End;
  803. Function TryStrToFloat(Const S : String; Var Value: Single): Boolean;
  804. Begin
  805. Result := TextToFloat(PChar(S), Value, fvSingle);
  806. End;
  807. Function TryStrToFloat(Const S : String; Var Value: Double): Boolean;
  808. Begin
  809. Result := TextToFloat(PChar(S), Value, fvDouble);
  810. End;
  811. {$ifdef FPC_HAS_TYPE_EXTENDED}
  812. Function TryStrToFloat(Const S : String; Var Value: Extended): Boolean;
  813. Begin
  814. Result := TextToFloat(PChar(S), Value);
  815. End;
  816. {$endif FPC_HAS_TYPE_EXTENDED}
  817. Function FloatToStr(Value: Extended): String;
  818. Begin
  819. Result := FloatToStrF(Value, ffGeneral, 15, 0);
  820. End;
  821. Function FloatToText(Buffer: PChar; Value: Extended; format: TFloatFormat; Precision, Digits: Integer): Longint;
  822. Var
  823. Tmp: String[40];
  824. Begin
  825. Tmp := FloatToStrF(Value, format, Precision, Digits);
  826. Result := Length(Tmp);
  827. Move(Tmp[1], Buffer[0], Result);
  828. End;
  829. Function FloatToStrF(Value: Extended; format: TFloatFormat; Precision, Digits: Integer): String;
  830. Var
  831. P: Integer;
  832. Negative, TooSmall, TooLarge: Boolean;
  833. Begin
  834. Case format Of
  835. ffGeneral:
  836. Begin
  837. If (Precision = -1) Or (Precision > 15) Then Precision := 15;
  838. TooSmall := (Abs(Value) < 0.00001) and (Value>0.0);
  839. If Not TooSmall Then
  840. Begin
  841. Str(Value:digits:precision, Result);
  842. P := Pos('.', Result);
  843. if P<>0 then
  844. Result[P] := DecimalSeparator;
  845. TooLarge :=(P > Precision + 1) or (Pos('E', Result)<>0);
  846. End;
  847. If TooSmall Or TooLarge Then
  848. begin
  849. Result := FloatToStrF(Value, ffExponent, Precision, Digits);
  850. // Strip unneeded zeroes.
  851. P:=Pos('E',result)-1;
  852. If P<>-1 then
  853. begin
  854. { delete superfluous +? }
  855. if result[p+2]='+' then
  856. system.Delete(Result,P+2,1);
  857. While (P>1) and (Result[P]='0') do
  858. begin
  859. system.Delete(Result,P,1);
  860. Dec(P);
  861. end;
  862. If (P>0) and (Result[P]=DecimalSeparator) Then
  863. begin
  864. system.Delete(Result,P,1);
  865. Dec(P);
  866. end;
  867. end;
  868. end
  869. else if (P<>0) then // we have a decimalseparator
  870. begin
  871. P := Length(Result);
  872. While (P>0) and (Result[P] = '0') Do
  873. Dec(P);
  874. If (P>0) and (Result[P]=DecimalSeparator) Then
  875. Dec(P);
  876. SetLength(Result, P);
  877. end;
  878. End;
  879. ffExponent:
  880. Begin
  881. If (Precision = -1) Or (Precision > 15) Then Precision := 15;
  882. Str(Value:Precision + 8, Result);
  883. Result[3] := DecimalSeparator;
  884. P:=4;
  885. While (P>0) and (Digits < P) And (Result[Precision + 5] = '0') do
  886. Begin
  887. If P<>1 then
  888. system.Delete(Result, Precision + 5, 1)
  889. else
  890. system.Delete(Result, Precision + 3, 3);
  891. Dec(P);
  892. end;
  893. If Result[1] = ' ' Then
  894. System.Delete(Result, 1, 1);
  895. End;
  896. ffFixed:
  897. Begin
  898. If Digits = -1 Then Digits := 2
  899. Else If Digits > 18 Then Digits := 18;
  900. Str(Value:0:Digits, Result);
  901. If Result[1] = ' ' Then
  902. System.Delete(Result, 1, 1);
  903. P := Pos('.', Result);
  904. If P <> 0 Then Result[P] := DecimalSeparator;
  905. End;
  906. ffNumber:
  907. Begin
  908. If Digits = -1 Then Digits := 2
  909. Else If Digits > 15 Then Digits := 15;
  910. Str(Value:0:Digits, Result);
  911. If Result[1] = ' ' Then System.Delete(Result, 1, 1);
  912. P := Pos('.', Result);
  913. If P <> 0 Then
  914. Result[P] := DecimalSeparator
  915. else
  916. P := Length(Result)+1;
  917. Dec(P, 3);
  918. While (P > 1) Do
  919. Begin
  920. If Result[P - 1] <> '-' Then Insert(ThousandSeparator, Result, P);
  921. Dec(P, 3);
  922. End;
  923. End;
  924. ffCurrency:
  925. Begin
  926. If Value < 0 Then
  927. Begin
  928. Negative := True;
  929. Value := -Value;
  930. End
  931. Else Negative := False;
  932. If Digits = -1 Then Digits := CurrencyDecimals
  933. Else If Digits > 18 Then Digits := 18;
  934. Str(Value:0:Digits, Result);
  935. If Result[1] = ' ' Then System.Delete(Result, 1, 1);
  936. P := Pos('.', Result);
  937. If P <> 0 Then Result[P] := DecimalSeparator;
  938. Dec(P, 3);
  939. While (P > 1) Do
  940. Begin
  941. Insert(ThousandSeparator, Result, P);
  942. Dec(P, 3);
  943. End;
  944. If Not Negative Then
  945. Begin
  946. Case CurrencyFormat Of
  947. 0: Result := CurrencyString + Result;
  948. 1: Result := Result + CurrencyString;
  949. 2: Result := CurrencyString + ' ' + Result;
  950. 3: Result := Result + ' ' + CurrencyString;
  951. End
  952. End
  953. Else
  954. Begin
  955. Case NegCurrFormat Of
  956. 0: Result := '(' + CurrencyString + Result + ')';
  957. 1: Result := '-' + CurrencyString + Result;
  958. 2: Result := CurrencyString + '-' + Result;
  959. 3: Result := CurrencyString + Result + '-';
  960. 4: Result := '(' + Result + CurrencyString + ')';
  961. 5: Result := '-' + Result + CurrencyString;
  962. 6: Result := Result + '-' + CurrencyString;
  963. 7: Result := Result + CurrencyString + '-';
  964. 8: Result := '-' + Result + ' ' + CurrencyString;
  965. 9: Result := '-' + CurrencyString + ' ' + Result;
  966. 10: Result := CurrencyString + ' ' + Result + '-';
  967. End;
  968. End;
  969. End;
  970. End;
  971. End;
  972. Function CurrToStrF(Value: Currency; Format: TFloatFormat; Digits: Integer): string;
  973. begin
  974. result:=FloatToStrF(Value,Format,19,Digits);
  975. end;
  976. Function FloatToDateTime (Const Value : Extended) : TDateTime;
  977. begin
  978. If (Value<MinDateTime) or (Value>MaxDateTime) then
  979. Raise EConvertError.CreateFmt (SInvalidDateTime,[Value]);
  980. Result:=Value;
  981. end;
  982. function TryFloatToCurr(const Value: Extended; var AResult: Currency): Boolean;
  983. begin
  984. Result:=(Value>=MinCurrency) and (Value<=MaxCurrency);
  985. if Result then
  986. AResult := Value;
  987. end;
  988. function FloatToCurr(const Value: Extended): Currency;
  989. begin
  990. if not TryFloatToCurr(Value, Result) then
  991. Raise EConvertError.CreateFmt(SInvalidCurrency, [FloatToStr(Value)]);
  992. end;
  993. Function CurrToStr(Value: Currency): string;
  994. begin
  995. Result:=FloatToStrF(Value,ffNumber,15,2);
  996. end;
  997. function StrToCurr(const S: string): Currency;
  998. begin
  999. if not TextToFloat(PChar(S), Result, fvCurrency) then
  1000. Raise EConvertError.createfmt(SInValidFLoat,[S]);
  1001. end;
  1002. Function TryStrToCurr(Const S : String; Var Value: Currency): Boolean;
  1003. Begin
  1004. Result := TextToFloat(PChar(S), Value, fvCurrency);
  1005. End;
  1006. function StrToCurrDef(const S: string; Default : Currency): Currency;
  1007. begin
  1008. if not TextToFloat(PChar(S), Result, fvCurrency) then
  1009. Result:=Default;
  1010. end;
  1011. function StrToBool(const S: string): Boolean;
  1012. Var
  1013. Temp : String;
  1014. D : Double;
  1015. Code: word;
  1016. begin
  1017. Temp:=upcase(S);
  1018. Val(temp,D,code);
  1019. If Code=0 then
  1020. Result:=(D<>0.0)
  1021. else If Temp='TRUE' then
  1022. result:=true
  1023. else if Temp='FALSE' then
  1024. result:=false
  1025. else
  1026. Raise EConvertError.CreateFmt(SInvalidBoolean,[S]);
  1027. end;
  1028. function BoolToStr(B: Boolean): string;
  1029. begin
  1030. If B then
  1031. Result:='TRUE'
  1032. else
  1033. Result:='FALSE';
  1034. end;
  1035. Function FloatToTextFmt(Buffer: PChar; Value: Extended; format: PChar): Integer;
  1036. Var
  1037. Digits: String[40]; { String Of Digits }
  1038. Exponent: String[8]; { Exponent strin }
  1039. FmtStart, FmtStop: PChar; { Start And End Of relevant part }
  1040. { Of format String }
  1041. ExpFmt, ExpSize: Integer; { Type And Length Of }
  1042. { exponential format chosen }
  1043. Placehold: Array[1..4] Of Integer; { Number Of placeholders In All }
  1044. { four Sections }
  1045. thousand: Boolean; { thousand separators? }
  1046. UnexpectedDigits: Integer; { Number Of unexpected Digits that }
  1047. { have To be inserted before the }
  1048. { First placeholder. }
  1049. DigitExponent: Integer; { Exponent Of First digit In }
  1050. { Digits Array. }
  1051. { Find end of format section starting at P. False, if empty }
  1052. Function GetSectionEnd(Var P: PChar): Boolean;
  1053. Var
  1054. C: Char;
  1055. SQ, DQ: Boolean;
  1056. Begin
  1057. Result := False;
  1058. SQ := False;
  1059. DQ := False;
  1060. C := P[0];
  1061. While (C<>#0) And ((C<>';') Or SQ Or DQ) Do
  1062. Begin
  1063. Result := True;
  1064. Case C Of
  1065. #34: If Not SQ Then DQ := Not DQ;
  1066. #39: If Not DQ Then SQ := Not SQ;
  1067. End;
  1068. Inc(P);
  1069. C := P[0];
  1070. End;
  1071. End;
  1072. { Find start and end of format section to apply. If section doesn't exist,
  1073. use section 1. If section 2 is used, the sign of value is ignored. }
  1074. Procedure GetSectionRange(section: Integer);
  1075. Var
  1076. Sec: Array[1..3] Of PChar;
  1077. SecOk: Array[1..3] Of Boolean;
  1078. Begin
  1079. Sec[1] := format;
  1080. SecOk[1] := GetSectionEnd(Sec[1]);
  1081. If section > 1 Then
  1082. Begin
  1083. Sec[2] := Sec[1];
  1084. If Sec[2][0] <> #0 Then
  1085. Inc(Sec[2]);
  1086. SecOk[2] := GetSectionEnd(Sec[2]);
  1087. If section > 2 Then
  1088. Begin
  1089. Sec[3] := Sec[2];
  1090. If Sec[3][0] <> #0 Then
  1091. Inc(Sec[3]);
  1092. SecOk[3] := GetSectionEnd(Sec[3]);
  1093. End;
  1094. End;
  1095. If Not SecOk[1] Then
  1096. FmtStart := Nil
  1097. Else
  1098. Begin
  1099. If Not SecOk[section] Then
  1100. section := 1
  1101. Else If section = 2 Then
  1102. Value := -Value; { Remove sign }
  1103. If section = 1 Then FmtStart := format Else
  1104. Begin
  1105. FmtStart := Sec[section - 1];
  1106. Inc(FmtStart);
  1107. End;
  1108. FmtStop := Sec[section];
  1109. End;
  1110. End;
  1111. { Find format section ranging from FmtStart to FmtStop. }
  1112. Procedure GetFormatOptions;
  1113. Var
  1114. Fmt: PChar;
  1115. SQ, DQ: Boolean;
  1116. area: Integer;
  1117. Begin
  1118. SQ := False;
  1119. DQ := False;
  1120. Fmt := FmtStart;
  1121. ExpFmt := 0;
  1122. area := 1;
  1123. thousand := False;
  1124. Placehold[1] := 0;
  1125. Placehold[2] := 0;
  1126. Placehold[3] := 0;
  1127. Placehold[4] := 0;
  1128. While Fmt < FmtStop Do
  1129. Begin
  1130. Case Fmt[0] Of
  1131. #34:
  1132. Begin
  1133. If Not SQ Then
  1134. DQ := Not DQ;
  1135. Inc(Fmt);
  1136. End;
  1137. #39:
  1138. Begin
  1139. If Not DQ Then
  1140. SQ := Not SQ;
  1141. Inc(Fmt);
  1142. End;
  1143. Else
  1144. { This was 'if not SQ or DQ'. Looked wrong... }
  1145. If Not SQ Or DQ Then
  1146. Begin
  1147. Case Fmt[0] Of
  1148. '0':
  1149. Begin
  1150. Case area Of
  1151. 1:
  1152. area := 2;
  1153. 4:
  1154. Begin
  1155. area := 3;
  1156. Inc(Placehold[3], Placehold[4]);
  1157. Placehold[4] := 0;
  1158. End;
  1159. End;
  1160. Inc(Placehold[area]);
  1161. Inc(Fmt);
  1162. End;
  1163. '#':
  1164. Begin
  1165. If area=3 Then
  1166. area:=4;
  1167. Inc(Placehold[area]);
  1168. Inc(Fmt);
  1169. End;
  1170. '.':
  1171. Begin
  1172. If area<3 Then
  1173. area:=3;
  1174. Inc(Fmt);
  1175. End;
  1176. ',':
  1177. Begin
  1178. thousand := True;
  1179. Inc(Fmt);
  1180. End;
  1181. 'e', 'E':
  1182. If ExpFmt = 0 Then
  1183. Begin
  1184. If (Fmt[0]='E') Then
  1185. ExpFmt:=1
  1186. Else
  1187. ExpFmt := 3;
  1188. Inc(Fmt);
  1189. If (Fmt<FmtStop) Then
  1190. Begin
  1191. Case Fmt[0] Of
  1192. '+':
  1193. Begin
  1194. End;
  1195. '-':
  1196. Inc(ExpFmt);
  1197. Else
  1198. ExpFmt := 0;
  1199. End;
  1200. If ExpFmt <> 0 Then
  1201. Begin
  1202. Inc(Fmt);
  1203. ExpSize := 0;
  1204. While (Fmt<FmtStop) And
  1205. (ExpSize<4) And
  1206. (Fmt[0] In ['0'..'9']) Do
  1207. Begin
  1208. Inc(ExpSize);
  1209. Inc(Fmt);
  1210. End;
  1211. End;
  1212. End;
  1213. End
  1214. Else
  1215. Inc(Fmt);
  1216. Else { Case }
  1217. Inc(Fmt);
  1218. End; { Case }
  1219. End; { Begin }
  1220. End; { Case }
  1221. End; { While .. Begin }
  1222. End;
  1223. Procedure FloatToStr;
  1224. Var
  1225. I, J, Exp, Width, Decimals, DecimalPoint, len: Integer;
  1226. Begin
  1227. If ExpFmt = 0 Then
  1228. Begin
  1229. { Fixpoint }
  1230. Decimals:=Placehold[3]+Placehold[4];
  1231. Width:=Placehold[1]+Placehold[2]+Decimals;
  1232. If (Decimals=0) Then
  1233. Str(Value:Width:0,Digits)
  1234. Else
  1235. Str(Value:Width+1:Decimals,Digits);
  1236. len:=Length(Digits);
  1237. { Find the decimal point }
  1238. If (Decimals=0) Then
  1239. DecimalPoint:=len+1
  1240. Else
  1241. DecimalPoint:=len-Decimals;
  1242. { If value is very small, and no decimal places
  1243. are desired, remove the leading 0. }
  1244. If (Abs(Value) < 1) And (Placehold[2] = 0) Then
  1245. Begin
  1246. If (Placehold[1]=0) Then
  1247. Delete(Digits,DecimalPoint-1,1)
  1248. Else
  1249. Digits[DecimalPoint-1]:=' ';
  1250. End;
  1251. { Convert optional zeroes to spaces. }
  1252. I:=len;
  1253. J:=DecimalPoint+Placehold[3];
  1254. While (I>J) And (Digits[I]='0') Do
  1255. Begin
  1256. Digits[I] := ' ';
  1257. Dec(I);
  1258. End;
  1259. { If integer value and no obligatory decimal
  1260. places, remove decimal point. }
  1261. If (DecimalPoint < len) And (Digits[DecimalPoint + 1] = ' ') Then
  1262. Digits[DecimalPoint] := ' ';
  1263. { Convert spaces left from obligatory decimal point to zeroes. }
  1264. I:=DecimalPoint-Placehold[2];
  1265. While (I<DecimalPoint) And (Digits[I]=' ') Do
  1266. Begin
  1267. Digits[I] := '0';
  1268. Inc(I);
  1269. End;
  1270. Exp := 0;
  1271. End
  1272. Else
  1273. Begin
  1274. { Scientific: exactly <Width> Digits With <Precision> Decimals
  1275. And adjusted Exponent. }
  1276. If Placehold[1]+Placehold[2]=0 Then
  1277. Placehold[1]:=1;
  1278. Decimals := Placehold[3] + Placehold[4];
  1279. Width:=Placehold[1]+Placehold[2]+Decimals;
  1280. Str(Value:Width+8,Digits);
  1281. { Find and cut out exponent. Always the
  1282. last 6 characters in the string.
  1283. -> 0000E+0000 }
  1284. I:=Length(Digits)-5;
  1285. Val(Copy(Digits,I+1,5),Exp,J);
  1286. Exp:=Exp+1-(Placehold[1]+Placehold[2]);
  1287. Delete(Digits, I, 6);
  1288. { Str() always returns at least one digit after the decimal point.
  1289. If we don't want it, we have to remove it. }
  1290. If (Decimals=0) And (Placehold[1]+Placehold[2]<= 1) Then
  1291. Begin
  1292. If (Digits[4]>='5') Then
  1293. Begin
  1294. Inc(Digits[2]);
  1295. If (Digits[2]>'9') Then
  1296. Begin
  1297. Digits[2] := '1';
  1298. Inc(Exp);
  1299. End;
  1300. End;
  1301. Delete(Digits, 3, 2);
  1302. DecimalPoint := Length(Digits) + 1;
  1303. End
  1304. Else
  1305. Begin
  1306. { Move decimal point at the desired position }
  1307. Delete(Digits, 3, 1);
  1308. DecimalPoint:=2+Placehold[1]+Placehold[2];
  1309. If (Decimals<>0) Then
  1310. Insert('.',Digits,DecimalPoint);
  1311. End;
  1312. { Convert optional zeroes to spaces. }
  1313. I := Length(Digits);
  1314. J := DecimalPoint + Placehold[3];
  1315. While (I > J) And (Digits[I] = '0') Do
  1316. Begin
  1317. Digits[I] := ' ';
  1318. Dec(I);
  1319. End;
  1320. { If integer number and no obligatory decimal paces, remove decimal point }
  1321. If (DecimalPoint<Length(Digits)) And
  1322. (Digits[DecimalPoint+1]=' ') Then
  1323. Digits[DecimalPoint]:=' ';
  1324. If (Digits[1]=' ') Then
  1325. Begin
  1326. Delete(Digits, 1, 1);
  1327. Dec(DecimalPoint);
  1328. End;
  1329. { Calculate exponent string }
  1330. Str(Abs(Exp), Exponent);
  1331. While Length(Exponent)<ExpSize Do
  1332. Insert('0',Exponent,1);
  1333. If Exp >= 0 Then
  1334. Begin
  1335. If (ExpFmt In [1,3]) Then
  1336. Insert('+', Exponent, 1);
  1337. End
  1338. Else
  1339. Insert('-',Exponent,1);
  1340. If (ExpFmt<3) Then
  1341. Insert('E',Exponent,1)
  1342. Else
  1343. Insert('e',Exponent,1);
  1344. End;
  1345. DigitExponent:=DecimalPoint-2;
  1346. If (Digits[1]='-') Then
  1347. Dec(DigitExponent);
  1348. UnexpectedDigits:=DecimalPoint-1-(Placehold[1]+Placehold[2]);
  1349. End;
  1350. Function PutResult: LongInt;
  1351. Var
  1352. SQ, DQ: Boolean;
  1353. Fmt, Buf: PChar;
  1354. Dig, N: Integer;
  1355. Begin
  1356. SQ := False;
  1357. DQ := False;
  1358. Fmt := FmtStart;
  1359. Buf := Buffer;
  1360. Dig := 1;
  1361. While (Fmt<FmtStop) Do
  1362. Begin
  1363. //Write(Fmt[0]);
  1364. Case Fmt[0] Of
  1365. #34:
  1366. Begin
  1367. If Not SQ Then
  1368. DQ := Not DQ;
  1369. Inc(Fmt);
  1370. End;
  1371. #39:
  1372. Begin
  1373. If Not DQ Then
  1374. SQ := Not SQ;
  1375. Inc(Fmt);
  1376. End;
  1377. Else
  1378. If Not (SQ Or DQ) Then
  1379. Begin
  1380. Case Fmt[0] Of
  1381. '0', '#', '.':
  1382. Begin
  1383. If (Dig=1) And (UnexpectedDigits>0) Then
  1384. Begin
  1385. { Everything unexpected is written before the first digit }
  1386. For N := 1 To UnexpectedDigits Do
  1387. Begin
  1388. Buf[0] := Digits[N];
  1389. Inc(Buf);
  1390. If thousand And (Digits[N]<>'-') Then
  1391. Begin
  1392. If (DigitExponent Mod 3 = 0) And (DigitExponent>0) Then
  1393. Begin
  1394. Buf[0] := ThousandSeparator;
  1395. Inc(Buf);
  1396. End;
  1397. Dec(DigitExponent);
  1398. End;
  1399. End;
  1400. Inc(Dig, UnexpectedDigits);
  1401. End;
  1402. If (Digits[Dig]<>' ') Then
  1403. Begin
  1404. If (Digits[Dig]='.') Then
  1405. Buf[0] := DecimalSeparator
  1406. Else
  1407. Buf[0] := Digits[Dig];
  1408. Inc(Buf);
  1409. If thousand And (DigitExponent Mod 3 = 0) And (DigitExponent > 0) Then
  1410. Begin
  1411. Buf[0] := ThousandSeparator;
  1412. Inc(Buf);
  1413. End;
  1414. End;
  1415. Inc(Dig);
  1416. Dec(DigitExponent);
  1417. Inc(Fmt);
  1418. End;
  1419. 'e', 'E':
  1420. Begin
  1421. If ExpFmt <> 0 Then
  1422. Begin
  1423. Inc(Fmt);
  1424. If Fmt < FmtStop Then
  1425. Begin
  1426. If Fmt[0] In ['+', '-'] Then
  1427. Begin
  1428. Inc(Fmt, ExpSize);
  1429. For N:=1 To Length(Exponent) Do
  1430. Buf[N-1] := Exponent[N];
  1431. Inc(Buf,Length(Exponent));
  1432. ExpFmt:=0;
  1433. End;
  1434. Inc(Fmt);
  1435. End;
  1436. End
  1437. Else
  1438. Begin
  1439. { No legal exponential format.
  1440. Simply write the 'E' to the result. }
  1441. Buf[0] := Fmt[0];
  1442. Inc(Buf);
  1443. Inc(Fmt);
  1444. End;
  1445. End;
  1446. Else { Case }
  1447. { Usual character }
  1448. If (Fmt[0]<>',') Then
  1449. Begin
  1450. Buf[0] := Fmt[0];
  1451. Inc(Buf);
  1452. End;
  1453. Inc(Fmt);
  1454. End; { Case }
  1455. End
  1456. Else { IF }
  1457. Begin
  1458. { Character inside single or double quotes }
  1459. Buf[0] := Fmt[0];
  1460. Inc(Buf);
  1461. Inc(Fmt);
  1462. End;
  1463. End; { Case }
  1464. End; { While .. Begin }
  1465. Result:=PtrInt(Buf)-PtrInt(Buffer);
  1466. End;
  1467. Begin
  1468. If (Value>0) Then
  1469. GetSectionRange(1)
  1470. Else If (Value<0) Then
  1471. GetSectionRange(2)
  1472. Else
  1473. GetSectionRange(3);
  1474. If FmtStart = Nil Then
  1475. Begin
  1476. Result := FloatToText(Buffer, Value, ffGeneral, 15, 4);
  1477. End
  1478. Else
  1479. Begin
  1480. GetFormatOptions;
  1481. If (ExpFmt = 0) And (Abs(Value) >= 1E18) Then
  1482. Result := FloatToText(Buffer, Value, ffGeneral, 15, 4)
  1483. Else
  1484. Begin
  1485. FloatToStr;
  1486. Result := PutResult;
  1487. End;
  1488. End;
  1489. End;
  1490. Procedure FloatToDecimal(Var Result: TFloatRec; Value: Extended; Precision, Decimals : integer);
  1491. Var
  1492. Buffer: String[24];
  1493. Error, N: Integer;
  1494. Begin
  1495. Str(Value:23, Buffer);
  1496. Result.Negative := (Buffer[1] = '-');
  1497. Val(Copy(Buffer, 19, 5), Result.Exponent, Error);
  1498. Inc(Result. Exponent);
  1499. Result.Digits[0] := Buffer[2];
  1500. Move(Buffer[4], Result.Digits[1], 14);
  1501. If Decimals + Result.Exponent < Precision Then
  1502. N := Decimals + Result.Exponent
  1503. Else
  1504. N := Precision;
  1505. If N > 15 Then
  1506. N := 15;
  1507. If N = 0 Then
  1508. Begin
  1509. If Result.Digits[0] >= '5' Then
  1510. Begin
  1511. Result.Digits[0] := '1';
  1512. Result.Digits[1] := #0;
  1513. Inc(Result.Exponent);
  1514. End
  1515. Else
  1516. Result.Digits[0] := #0;
  1517. End
  1518. Else If N > 0 Then
  1519. Begin
  1520. If Result.Digits[N] >= '5' Then
  1521. Begin
  1522. Repeat
  1523. Result.Digits[N] := #0;
  1524. Dec(N);
  1525. Inc(Result.Digits[N]);
  1526. Until (N = 0) Or (Result.Digits[N] < ':');
  1527. If Result.Digits[0] = ':' Then
  1528. Begin
  1529. Result.Digits[0] := '1';
  1530. Inc(Result.Exponent);
  1531. End;
  1532. End
  1533. Else
  1534. Begin
  1535. Result.Digits[N] := '0';
  1536. While (Result.Digits[N] = '0') And (N > -1) Do
  1537. Begin
  1538. Result.Digits[N] := #0;
  1539. Dec(N);
  1540. End;
  1541. End;
  1542. End
  1543. Else
  1544. Result.Digits[0] := #0;
  1545. If Result.Digits[0] = #0 Then
  1546. Begin
  1547. Result.Exponent := 0;
  1548. Result.Negative := False;
  1549. End;
  1550. End;
  1551. Function FormatFloat(Const format: String; Value: Extended): String;
  1552. Var
  1553. buf : Array[0..1024] of char;
  1554. Begin
  1555. Buf[FloatToTextFmt(@Buf[0],Value,Pchar(Format))]:=#0;
  1556. Result:=StrPas(@Buf);
  1557. End;
  1558. function FormatCurr(const Format: string; Value: Currency): string;
  1559. begin
  1560. Result := FormatFloat(Format, Value);
  1561. end;
  1562. {==============================================================================}
  1563. { extra functions }
  1564. {==============================================================================}
  1565. { LeftStr returns Count left-most characters from S }
  1566. function LeftStr(const S: string; Count: integer): string;
  1567. begin
  1568. result := Copy(S, 1, Count);
  1569. end ;
  1570. { RightStr returns Count right-most characters from S }
  1571. function RightStr(const S: string; Count: integer): string;
  1572. begin
  1573. If Count>Length(S) then
  1574. Count:=Length(S);
  1575. result := Copy(S, 1 + Length(S) - Count, Count);
  1576. end;
  1577. { BCDToInt converts the BCD value Value to an integer }
  1578. function BCDToInt(Value: integer): integer;
  1579. var i, j: integer;
  1580. begin
  1581. result := 0;
  1582. j := 1;
  1583. for i := 0 to SizeOf(Value) shr 1 - 1 do begin
  1584. result := result + j * (Value and 15);
  1585. j := j * 10;
  1586. Value := Value shr 4;
  1587. end ;
  1588. end ;
  1589. Function LastDelimiter(const Delimiters, S: string): Integer;
  1590. begin
  1591. Result:=Length(S);
  1592. While (Result>0) and (Pos(S[Result],Delimiters)=0) do
  1593. Dec(Result);
  1594. end;
  1595. Function StringReplace(const S, OldPattern, NewPattern: string; Flags: TReplaceFlags): string;
  1596. var
  1597. Srch,OldP,RemS: string; // Srch and Oldp can contain uppercase versions of S,OldPattern
  1598. P : Integer;
  1599. begin
  1600. Srch:=S;
  1601. OldP:=OldPattern;
  1602. if rfIgnoreCase in Flags then
  1603. begin
  1604. Srch:=AnsiUpperCase(Srch);
  1605. OldP:=AnsiUpperCase(OldP);
  1606. end;
  1607. RemS:=S;
  1608. Result:='';
  1609. while (Length(Srch)<>0) do
  1610. begin
  1611. P:=AnsiPos(OldP, Srch);
  1612. if P=0 then
  1613. begin
  1614. Result:=Result+RemS;
  1615. Srch:='';
  1616. end
  1617. else
  1618. begin
  1619. Result:=Result+Copy(RemS,1,P-1)+NewPattern;
  1620. P:=P+Length(OldP);
  1621. RemS:=Copy(RemS,P,Length(RemS)-P+1);
  1622. if not (rfReplaceAll in Flags) then
  1623. begin
  1624. Result:=Result+RemS;
  1625. Srch:='';
  1626. end
  1627. else
  1628. Srch:=Copy(Srch,P,Length(Srch)-P+1);
  1629. end;
  1630. end;
  1631. end;
  1632. Function IsDelimiter(const Delimiters, S: string; Index: Integer): Boolean;
  1633. begin
  1634. Result:=False;
  1635. If (Index>0) and (Index<=Length(S)) then
  1636. Result:=Pos(S[Index],Delimiters)<>0; // Note we don't do MBCS yet
  1637. end;
  1638. Function ByteToCharLen(const S: string; MaxLen: Integer): Integer;
  1639. begin
  1640. Result:=Length(S);
  1641. If Result>MaxLen then
  1642. Result:=MaxLen;
  1643. end;
  1644. Function ByteToCharIndex(const S: string; Index: Integer): Integer;
  1645. begin
  1646. Result:=Index;
  1647. end;
  1648. Function CharToByteLen(const S: string; MaxLen: Integer): Integer;
  1649. begin
  1650. Result:=Length(S);
  1651. If Result>MaxLen then
  1652. Result:=MaxLen;
  1653. end;
  1654. Function CharToByteIndex(const S: string; Index: Integer): Integer;
  1655. begin
  1656. Result:=Index;
  1657. end;
  1658. Function ByteType(const S: string; Index: Integer): TMbcsByteType;
  1659. begin
  1660. Result:=mbSingleByte;
  1661. end;
  1662. Function StrByteType(Str: PChar; Index: Cardinal): TMbcsByteType;
  1663. begin
  1664. Result:=mbSingleByte;
  1665. end;
  1666. Function StrCharLength(const Str: PChar): Integer;
  1667. begin
  1668. result:=widestringmanager.CharLengthPCharProc(Str);
  1669. end;
  1670. Function FindCmdLineSwitch(const Switch: string; const Chars: TSysCharSet;IgnoreCase: Boolean): Boolean;
  1671. Var
  1672. I,L : Integer;
  1673. S,T : String;
  1674. begin
  1675. Result:=False;
  1676. S:=Switch;
  1677. If IgnoreCase then
  1678. S:=UpperCase(S);
  1679. I:=ParamCount;
  1680. While (Not Result) and (I>0) do
  1681. begin
  1682. L:=Length(Paramstr(I));
  1683. If (L>0) and (ParamStr(I)[1] in Chars) then
  1684. begin
  1685. T:=Copy(ParamStr(I),2,L-1);
  1686. If IgnoreCase then
  1687. T:=UpperCase(T);
  1688. Result:=S=T;
  1689. end;
  1690. Dec(i);
  1691. end;
  1692. end;
  1693. Function FindCmdLineSwitch(const Switch: string; IgnoreCase: Boolean): Boolean;
  1694. begin
  1695. Result:=FindCmdLineSwitch(Switch,SwitchChars,IgnoreCase);
  1696. end;
  1697. Function FindCmdLineSwitch(const Switch: string): Boolean;
  1698. begin
  1699. Result:=FindCmdLineSwitch(Switch,SwitchChars,False);
  1700. end;
  1701. function WrapText(const Line, BreakStr: string; const BreakChars: TSysCharSet; MaxCol: Integer): string;
  1702. const
  1703. Quotes = ['''', '"'];
  1704. Var
  1705. L : String;
  1706. C,LQ,BC : Char;
  1707. P,BLen,Len : Integer;
  1708. HB,IBC : Boolean;
  1709. begin
  1710. Result:='';
  1711. L:=Line;
  1712. Blen:=Length(BreakStr);
  1713. If (BLen>0) then
  1714. BC:=BreakStr[1]
  1715. else
  1716. BC:=#0;
  1717. Len:=Length(L);
  1718. While (Len>0) do
  1719. begin
  1720. P:=1;
  1721. LQ:=#0;
  1722. HB:=False;
  1723. IBC:=False;
  1724. While ((P<=Len) and ((P<=MaxCol) or not IBC)) and ((LQ<>#0) or Not HB) do
  1725. begin
  1726. C:=L[P];
  1727. If (C=LQ) then
  1728. LQ:=#0
  1729. else If (C in Quotes) then
  1730. LQ:=C;
  1731. If (LQ<>#0) then
  1732. Inc(P)
  1733. else
  1734. begin
  1735. HB:=((C=BC) and (BreakStr=Copy(L,P,BLen)));
  1736. If HB then
  1737. Inc(P,Blen)
  1738. else
  1739. begin
  1740. If (P>MaxCol) then
  1741. IBC:=C in BreakChars;
  1742. Inc(P);
  1743. end;
  1744. end;
  1745. // Writeln('"',C,'" : IBC : ',IBC,' HB : ',HB,' LQ : ',LQ,' P>MaxCol : ',P>MaxCol);
  1746. end;
  1747. Result:=Result+Copy(L,1,P-1);
  1748. If Not HB then
  1749. Result:=Result+BreakStr;
  1750. Delete(L,1,P-1);
  1751. Len:=Length(L);
  1752. end;
  1753. end;
  1754. function WrapText(const Line: string; MaxCol: Integer): string;
  1755. begin
  1756. Result:=WrapText(Line,sLineBreak, [' ', '-', #9], MaxCol);
  1757. end;
  1758. {
  1759. Case Translation Tables
  1760. Can be used in internationalization support.
  1761. Although these tables can be obtained through system calls
  1762. it is better to not use those, since most implementation are not 100%
  1763. WARNING:
  1764. before modifying a translation table make sure that the current codepage
  1765. of the OS corresponds to the one you make changes to
  1766. }
  1767. const
  1768. { upper case translation table for character set 850 }
  1769. CP850UCT: array[128..255] of char =
  1770. ('€', 'š', '�', '¶', 'Ž', '¶', '�', '€', 'Ò', 'Ó', 'Ô', 'Ø', '×', 'Þ', 'Ž', '�',
  1771. '�', '’', '’', 'â', '™', 'ã', 'ê', 'ë', 'Y', '™', 'š', '�', 'œ', '�', 'ž', 'Ÿ',
  1772. 'µ', 'Ö', 'à', 'é', '¥', '¥', '¦', '§', '¨', '©', 'ª', '«', '¬', '­', '®', '¯',
  1773. '°', '±', '²', '³', '´', 'µ', '¶', '·', '¸', '¹', 'º', '»', '¼', '½', '¾', '¿',
  1774. 'À', 'Á', 'Â', 'Ã', 'Ä', 'Å', 'Ç', 'Ç', 'È', 'É', 'Ê', 'Ë', 'Ì', 'Í', 'Î', 'Ï',
  1775. 'Ð', 'Ñ', 'Ò', 'Ó', 'Ô', 'Õ', 'Ö', '×', 'Ø', 'Ù', 'Ú', 'Û', 'Ü', 'Ý', 'Þ', 'ß',
  1776. 'à', 'á', 'â', 'ã', 'å', 'å', 'æ', 'í', 'è', 'é', 'ê', 'ë', 'í', 'í', 'î', 'ï',
  1777. 'ð', 'ñ', 'ò', 'ó', 'ô', 'õ', 'ö', '÷', 'ø', 'ù', 'ú', 'û', 'ü', 'ý', 'þ', 'ÿ');
  1778. { lower case translation table for character set 850 }
  1779. CP850LCT: array[128..255] of char =
  1780. ('‡', '�', '‚', 'ƒ', '„', '…', '†', '‡', 'ˆ', '‰', 'Š', '‹', 'Œ', '�', '„', '†',
  1781. '‚', '‘', '‘', '“', '”', '•', '–', '—', '˜', '”', '�', '›', 'œ', '›', 'ž', 'Ÿ',
  1782. ' ', '¡', '¢', '£', '¤', '¤', '¦', '§', '¨', '©', 'ª', '«', '¬', '­', '®', '¯',
  1783. '°', '±', '²', '³', '´', ' ', 'ƒ', '…', '¸', '¹', 'º', '»', '¼', '½', '¾', '¿',
  1784. 'À', 'Á', 'Â', 'Ã', 'Ä', 'Å', 'Æ', 'Æ', 'È', 'É', 'Ê', 'Ë', 'Ì', 'Í', 'Î', 'Ï',
  1785. 'Ð', 'Ñ', 'ˆ', '‰', 'Š', 'Õ', '¡', 'Œ', '‹', 'Ù', 'Ú', 'Û', 'Ü', 'Ý', '�', 'ß',
  1786. '¢', 'á', '“', '•', 'ä', 'ä', 'æ', 'í', 'è', '£', '–', '—', 'ì', 'ì', 'î', 'ï',
  1787. 'ð', 'ñ', 'ò', 'ó', 'ô', 'õ', 'ö', '÷', 'ø', 'ù', 'ú', 'û', 'ü', 'ý', 'þ', 'ÿ');
  1788. { upper case translation table for character set ISO 8859/1 Latin 1 }
  1789. CPISO88591UCT: array[192..255] of char =
  1790. ( #192, #193, #194, #195, #196, #197, #198, #199,
  1791. #200, #201, #202, #203, #204, #205, #206, #207,
  1792. #208, #209, #210, #211, #212, #213, #214, #215,
  1793. #216, #217, #218, #219, #220, #221, #222, #223,
  1794. #192, #193, #194, #195, #196, #197, #198, #199,
  1795. #200, #201, #202, #203, #204, #205, #206, #207,
  1796. #208, #209, #210, #211, #212, #213, #214, #247,
  1797. #216, #217, #218, #219, #220, #221, #222, #89 );
  1798. { lower case translation table for character set ISO 8859/1 Latin 1 }
  1799. CPISO88591LCT: array[192..255] of char =
  1800. ( #224, #225, #226, #227, #228, #229, #230, #231,
  1801. #232, #233, #234, #235, #236, #237, #238, #239,
  1802. #240, #241, #242, #243, #244, #245, #246, #215,
  1803. #248, #249, #250, #251, #252, #253, #254, #223,
  1804. #224, #225, #226, #227, #228, #229, #230, #231,
  1805. #232, #233, #234, #235, #236, #237, #238, #239,
  1806. #240, #241, #242, #243, #244, #245, #246, #247,
  1807. #248, #249, #250, #251, #252, #253, #254, #255 );
  1808. function sscanf(const s: string; const fmt : string;const Pointers : array of Pointer) : Integer;
  1809. var
  1810. i,j,n,m : SizeInt;
  1811. s1 : string;
  1812. function GetInt(unsigned : boolean=false) : Integer;
  1813. begin
  1814. s1 := '';
  1815. while (s[n] = ' ') and (Length(s) > n) do
  1816. inc(n);
  1817. { read sign }
  1818. if (Length(s)>= n) and (s[n] in ['+', '-']) then
  1819. begin
  1820. { don't accept - when reading unsigned }
  1821. if unsigned and (s[n]='-') then
  1822. begin
  1823. result:=length(s1);
  1824. exit;
  1825. end
  1826. else
  1827. begin
  1828. s1:=s1+s[n];
  1829. inc(n);
  1830. end;
  1831. end;
  1832. { read numbers }
  1833. while (s[n] in ['0'..'9'])
  1834. and (Length(s) >= n) do
  1835. begin
  1836. s1 := s1+s[n];
  1837. inc(n);
  1838. end;
  1839. Result := Length(s1);
  1840. end;
  1841. function GetFloat : Integer;
  1842. begin
  1843. s1 := '';
  1844. while (s[n] = ' ') and (Length(s) > n) do
  1845. inc(n);
  1846. while (s[n] in ['0'..'9', '+', '-', '.', 'e', 'E'])
  1847. and (Length(s) >= n) do
  1848. begin
  1849. s1 := s1+s[n];
  1850. inc(n);
  1851. end;
  1852. Result := Length(s1);
  1853. end;
  1854. function GetString : Integer;
  1855. begin
  1856. s1 := '';
  1857. while (s[n] = ' ') and (Length(s) > n) do
  1858. inc(n);
  1859. while (s[n] <> ' ') and (Length(s) >= n) do
  1860. begin
  1861. s1 := s1+s[n];
  1862. inc(n);
  1863. end;
  1864. Result := Length(s1);
  1865. end;
  1866. function ScanStr(c : Char) : Boolean;
  1867. begin
  1868. while (s[n] <> c) and (Length(s) > n) do
  1869. inc(n);
  1870. inc(n);
  1871. If (n <= Length(s)) then
  1872. Result := True
  1873. else
  1874. Result := False;
  1875. end;
  1876. function GetFmt : Integer;
  1877. begin
  1878. Result := -1;
  1879. while true do
  1880. begin
  1881. while (fmt[m] = ' ') and (Length(fmt) > m) do
  1882. inc(m);
  1883. if (m >= Length(fmt)) then
  1884. break;
  1885. if (fmt[m] = '%') then
  1886. begin
  1887. inc(m);
  1888. case fmt[m] of
  1889. 'd':
  1890. Result:=vtInteger;
  1891. 'f':
  1892. Result:=vtExtended;
  1893. 's':
  1894. Result:=vtString;
  1895. 'c':
  1896. Result:=vtChar;
  1897. else
  1898. raise EFormatError.CreateFmt(SInvalidFormat,[fmt]);
  1899. end;
  1900. inc(m);
  1901. break;
  1902. end;
  1903. if not(ScanStr(fmt[m])) then
  1904. break;
  1905. inc(m);
  1906. end;
  1907. end;
  1908. begin
  1909. n := 1;
  1910. m := 1;
  1911. Result := 0;
  1912. for i:=0 to High(Pointers) do
  1913. begin
  1914. j := GetFmt;
  1915. case j of
  1916. vtInteger :
  1917. begin
  1918. if GetInt>0 then
  1919. begin
  1920. pLongint(Pointers[i])^:=StrToInt(s1);
  1921. inc(Result);
  1922. end
  1923. else
  1924. break;
  1925. end;
  1926. vtchar :
  1927. begin
  1928. if Length(s)>n then
  1929. begin
  1930. pchar(Pointers[i])^:=s[n];
  1931. inc(n);
  1932. inc(Result);
  1933. end
  1934. else
  1935. break;
  1936. end;
  1937. vtExtended :
  1938. begin
  1939. if GetFloat>0 then
  1940. begin
  1941. pextended(Pointers[i])^:=StrToFloat(s1);
  1942. inc(Result);
  1943. end
  1944. else
  1945. break;
  1946. end;
  1947. vtString :
  1948. begin
  1949. if GetString > 0 then
  1950. begin
  1951. pansistring(Pointers[i])^:=s1;
  1952. inc(Result);
  1953. end
  1954. else
  1955. break;
  1956. end;
  1957. else
  1958. break;
  1959. end;
  1960. end;
  1961. end;