astrings.inc 27 KB

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  1. {
  2. This file is part of the Free Pascal run time library.
  3. Copyright (c) 1999-2000 by Michael Van Canneyt,
  4. member of the Free Pascal development team.
  5. This file implements AnsiStrings for FPC
  6. See the file COPYING.FPC, included in this distribution,
  7. for details about the copyright.
  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.
  11. **********************************************************************}
  12. { This will release some functions for special shortstring support }
  13. { define EXTRAANSISHORT}
  14. {
  15. This file contains the implementation of the AnsiString type,
  16. and all things that are needed for it.
  17. AnsiString is defined as a 'silent' pchar :
  18. a pchar that points to :
  19. @-8 : SizeInt for reference count;
  20. @-4 : SizeInt for size;
  21. @ : String + Terminating #0;
  22. Pchar(Ansistring) is a valid typecast.
  23. So AS[i] is converted to the address @AS+i-1.
  24. Constants should be assigned a reference count of -1
  25. Meaning that they can't be disposed of.
  26. }
  27. Type
  28. PAnsiRec = ^TAnsiRec;
  29. TAnsiRec = Packed Record
  30. Ref,
  31. Len : SizeInt;
  32. First : Char;
  33. end;
  34. Const
  35. AnsiRecLen = SizeOf(TAnsiRec);
  36. FirstOff = SizeOf(TAnsiRec)-1;
  37. {****************************************************************************
  38. Internal functions, not in interface.
  39. ****************************************************************************}
  40. Function NewAnsiString(Len : SizeInt) : Pointer;
  41. {
  42. Allocate a new AnsiString on the heap.
  43. initialize it to zero length and reference count 1.
  44. }
  45. Var
  46. P : Pointer;
  47. begin
  48. { request a multiple of 16 because the heap manager alloctes anyways chunks of 16 bytes }
  49. GetMem(P,Len+AnsiRecLen);
  50. If P<>Nil then
  51. begin
  52. PAnsiRec(P)^.Ref:=1; { Set reference count }
  53. PAnsiRec(P)^.Len:=0; { Initial length }
  54. PAnsiRec(P)^.First:=#0; { Terminating #0 }
  55. inc(p,firstoff); { Points to string now }
  56. end;
  57. NewAnsiString:=P;
  58. end;
  59. Procedure DisposeAnsiString(Var S : Pointer); {$IFNDEF VER2_0} Inline; {$ENDIF}
  60. {
  61. Deallocates a AnsiString From the heap.
  62. }
  63. begin
  64. If S=Nil then
  65. exit;
  66. Dec (S,FirstOff);
  67. FreeMem (S);
  68. S:=Nil;
  69. end;
  70. {$ifndef FPC_SYSTEM_HAS_ANSISTR_DECR_REF}
  71. Procedure fpc_ansistr_decr_ref (Var S : Pointer); [Public,Alias:'FPC_ANSISTR_DECR_REF']; compilerproc;
  72. {
  73. Decreases the ReferenceCount of a non constant ansistring;
  74. If the reference count is zero, deallocate the string;
  75. }
  76. Type
  77. pSizeInt = ^SizeInt;
  78. Var
  79. l : pSizeInt;
  80. Begin
  81. { Zero string }
  82. If S=Nil then exit;
  83. { check for constant strings ...}
  84. l:=@PAnsiRec(S-FirstOff)^.Ref;
  85. If l^<0 then exit;
  86. { declocked does a MT safe dec and returns true, if the counter is 0 }
  87. If declocked(l^) then
  88. { Ref count dropped to zero }
  89. DisposeAnsiString (S); { Remove...}
  90. end;
  91. {$endif FPC_SYSTEM_HAS_ANSISTR_DECR_REF}
  92. { also define alias for internal use in the system unit }
  93. Procedure fpc_ansistr_decr_ref (Var S : Pointer); [external name 'FPC_ANSISTR_DECR_REF'];
  94. Procedure fpc_AnsiStr_Incr_Ref (S : Pointer); [Public,Alias:'FPC_ANSISTR_INCR_REF']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  95. Begin
  96. If S=Nil then
  97. exit;
  98. { Let's be paranoid : Constant string ??}
  99. If PAnsiRec(S-FirstOff)^.Ref<0 then exit;
  100. inclocked(PAnsiRec(S-FirstOff)^.Ref);
  101. end;
  102. { also define alias which can be used inside the system unit }
  103. Procedure fpc_AnsiStr_Incr_Ref (S : Pointer); [external name 'FPC_ANSISTR_INCR_REF'];
  104. Procedure fpc_AnsiStr_Assign (Var DestS : Pointer;S2 : Pointer);[Public,Alias:'FPC_ANSISTR_ASSIGN']; compilerproc;
  105. {
  106. Assigns S2 to S1 (S1:=S2), taking in account reference counts.
  107. }
  108. begin
  109. if DestS=S2 then
  110. exit;
  111. If S2<>nil then
  112. If PAnsiRec(S2-FirstOff)^.Ref>0 then
  113. inclocked(PAnsiRec(S2-FirstOff)^.ref);
  114. { Decrease the reference count on the old S1 }
  115. fpc_ansistr_decr_ref (DestS);
  116. { And finally, have DestS pointing to S2 (or its copy) }
  117. DestS:=S2;
  118. end;
  119. { alias for internal use }
  120. Procedure fpc_AnsiStr_Assign (Var S1 : Pointer;S2 : Pointer);[external name 'FPC_ANSISTR_ASSIGN'];
  121. {$ifndef STR_CONCAT_PROCS}
  122. function fpc_AnsiStr_Concat (const S1,S2 : AnsiString): ansistring; compilerproc;
  123. Var
  124. Size,Location : SizeInt;
  125. pc : pchar;
  126. begin
  127. { only assign if s1 or s2 is empty }
  128. if (S1='') then
  129. begin
  130. result:=s2;
  131. exit;
  132. end;
  133. if (S2='') then
  134. begin
  135. result:=s1;
  136. exit;
  137. end;
  138. Location:=Length(S1);
  139. Size:=length(S2);
  140. SetLength(result,Size+Location);
  141. pc:=pchar(result);
  142. Move(S1[1],pc^,Location);
  143. inc(pc,location);
  144. Move(S2[1],pc^,Size+1);
  145. end;
  146. function fpc_AnsiStr_Concat_multi (const sarr:array of Ansistring): ansistring; compilerproc;
  147. Var
  148. i : Longint;
  149. p : pointer;
  150. pc : pchar;
  151. Size,NewLen : SizeInt;
  152. begin
  153. { First calculate size of the result so we can do
  154. a single call to SetLength() }
  155. NewLen:=0;
  156. for i:=low(sarr) to high(sarr) do
  157. inc(NewLen,length(sarr[i]));
  158. SetLength(result,NewLen);
  159. pc:=pchar(result);
  160. for i:=low(sarr) to high(sarr) do
  161. begin
  162. p:=pointer(sarr[i]);
  163. if assigned(p) then
  164. begin
  165. Size:=length(ansistring(p));
  166. Move(pchar(p)^,pc^,Size+1);
  167. inc(pc,size);
  168. end;
  169. end;
  170. end;
  171. {$else STR_CONCAT_PROCS}
  172. procedure fpc_AnsiStr_Concat (var DestS:ansistring;const S1,S2 : AnsiString); compilerproc;
  173. Var
  174. Size,Location : SizeInt;
  175. same : boolean;
  176. begin
  177. { only assign if s1 or s2 is empty }
  178. if (S1='') then
  179. begin
  180. DestS:=s2;
  181. exit;
  182. end;
  183. if (S2='') then
  184. begin
  185. DestS:=s1;
  186. exit;
  187. end;
  188. Location:=Length(S1);
  189. Size:=length(S2);
  190. { Use Pointer() typecasts to prevent extra conversion code }
  191. if Pointer(DestS)=Pointer(S1) then
  192. begin
  193. same:=Pointer(S1)=Pointer(S2);
  194. SetLength(DestS,Size+Location);
  195. if same then
  196. Move(Pointer(DestS)^,(Pointer(DestS)+Location)^,Size)
  197. else
  198. Move(Pointer(S2)^,(Pointer(DestS)+Location)^,Size+1);
  199. end
  200. else if Pointer(DestS)=Pointer(S2) then
  201. begin
  202. SetLength(DestS,Size+Location);
  203. Move(Pointer(DestS)^,(Pointer(DestS)+Location)^,Size+1);
  204. Move(Pointer(S1)^,Pointer(DestS)^,Location);
  205. end
  206. else
  207. begin
  208. DestS:='';
  209. SetLength(DestS,Size+Location);
  210. Move(Pointer(S1)^,Pointer(DestS)^,Location);
  211. Move(Pointer(S2)^,(Pointer(DestS)+Location)^,Size+1);
  212. end;
  213. end;
  214. procedure fpc_AnsiStr_Concat_multi (var DestS:ansistring;const sarr:array of Ansistring); compilerproc;
  215. Var
  216. lowstart,i : Longint;
  217. p,pc : pointer;
  218. Size,NewLen,
  219. OldDestLen : SizeInt;
  220. destcopy : pointer;
  221. begin
  222. if high(sarr)=0 then
  223. begin
  224. DestS:='';
  225. exit;
  226. end;
  227. destcopy:=nil;
  228. lowstart:=low(sarr);
  229. if Pointer(DestS)=Pointer(sarr[lowstart]) then
  230. inc(lowstart);
  231. { Check for another reuse, then we can't use
  232. the append optimization }
  233. for i:=lowstart to high(sarr) do
  234. begin
  235. if Pointer(DestS)=Pointer(sarr[i]) then
  236. begin
  237. { if DestS is used somewhere in the middle of the expression,
  238. we need to make sure the original string still exists after
  239. we empty/modify DestS }
  240. destcopy:=pointer(dests);
  241. fpc_AnsiStr_Incr_Ref(destcopy);
  242. lowstart:=low(sarr);
  243. break;
  244. end;
  245. end;
  246. { Start with empty DestS if we start with concatting
  247. the first array element }
  248. if lowstart=low(sarr) then
  249. DestS:='';
  250. OldDestLen:=length(DestS);
  251. { Calculate size of the result so we can do
  252. a single call to SetLength() }
  253. NewLen:=0;
  254. for i:=low(sarr) to high(sarr) do
  255. inc(NewLen,length(sarr[i]));
  256. SetLength(DestS,NewLen);
  257. { Concat all strings, except the string we already
  258. copied in DestS }
  259. pc:=Pointer(DestS)+OldDestLen;
  260. for i:=lowstart to high(sarr) do
  261. begin
  262. p:=pointer(sarr[i]);
  263. if assigned(p) then
  264. begin
  265. Size:=length(ansistring(p));
  266. Move(p^,pc^,Size+1);
  267. inc(pc,size);
  268. end;
  269. end;
  270. fpc_AnsiStr_Decr_Ref(destcopy);
  271. end;
  272. {$endif STR_CONCAT_PROCS}
  273. {$ifdef EXTRAANSISHORT}
  274. Procedure AnsiStr_ShortStr_Concat (Var S1: AnsiString; Var S2 : ShortString);
  275. {
  276. Concatenates a Ansi with a short string; : S2 + S2
  277. }
  278. Var
  279. Size,Location : SizeInt;
  280. begin
  281. Size:=Length(S2);
  282. Location:=Length(S1);
  283. If Size=0 then
  284. exit;
  285. { Setlength takes case of uniqueness
  286. and alllocated memory. We need to use length,
  287. to take into account possibility of S1=Nil }
  288. SetLength (S1,Size+Length(S1));
  289. Move (S2[1],Pointer(Pointer(S1)+Location)^,Size);
  290. PByte( Pointer(S1)+length(S1) )^:=0; { Terminating Zero }
  291. end;
  292. {$endif EXTRAANSISHORT}
  293. {$ifndef FPC_STRTOSHORTSTRINGPROC}
  294. { the following declaration has exactly the same effect as }
  295. { procedure fpc_AnsiStr_To_ShortStr (Var S1 : ShortString;S2 : Pointer); }
  296. { which is what the old helper was, so we don't need an extra implementation }
  297. { of the old helper (JM) }
  298. function fpc_AnsiStr_To_ShortStr (high_of_res: SizeInt;const S2 : Ansistring): shortstring;[Public, alias: 'FPC_ANSISTR_TO_SHORTSTR']; compilerproc;
  299. {
  300. Converts a AnsiString to a ShortString;
  301. }
  302. Var
  303. Size : SizeInt;
  304. begin
  305. if S2='' then
  306. fpc_AnsiStr_To_ShortStr:=''
  307. else
  308. begin
  309. Size:=Length(S2);
  310. If Size>high_of_res then
  311. Size:=high_of_res;
  312. Move (S2[1],fpc_AnsiStr_To_ShortStr[1],Size);
  313. byte(fpc_AnsiStr_To_ShortStr[0]):=byte(Size);
  314. end;
  315. end;
  316. {$else FPC_STRTOSHORTSTRINGPROC}
  317. procedure fpc_AnsiStr_To_ShortStr (out res: shortstring; const S2 : Ansistring);[Public, alias: 'FPC_ANSISTR_TO_SHORTSTR']; compilerproc;
  318. {
  319. Converts a AnsiString to a ShortString;
  320. }
  321. Var
  322. Size : SizeInt;
  323. begin
  324. if S2='' then
  325. res:=''
  326. else
  327. begin
  328. Size:=Length(S2);
  329. If Size>high(res) then
  330. Size:=high(res);
  331. Move (S2[1],res[1],Size);
  332. byte(res[0]):=byte(Size);
  333. end;
  334. end;
  335. {$endif FPC_STRTOSHORTSTRINGPROC}
  336. Function fpc_ShortStr_To_AnsiStr (Const S2 : ShortString): ansistring; compilerproc;
  337. {
  338. Converts a ShortString to a AnsiString;
  339. }
  340. Var
  341. Size : SizeInt;
  342. begin
  343. Size:=Length(S2);
  344. Setlength (fpc_ShortStr_To_AnsiStr,Size);
  345. if Size>0 then
  346. Move(S2[1],Pointer(fpc_ShortStr_To_AnsiStr)^,Size);
  347. end;
  348. Function fpc_Char_To_AnsiStr(const c : Char): AnsiString; compilerproc;
  349. {
  350. Converts a Char to a AnsiString;
  351. }
  352. begin
  353. Setlength (fpc_Char_To_AnsiStr,1);
  354. PByte(Pointer(fpc_Char_To_AnsiStr))^:=byte(c);
  355. { Terminating Zero }
  356. PByte(Pointer(fpc_Char_To_AnsiStr)+1)^:=0;
  357. end;
  358. Function fpc_PChar_To_AnsiStr(const p : pchar): ansistring; compilerproc;
  359. Var
  360. L : SizeInt;
  361. begin
  362. if (not assigned(p)) or (p[0]=#0) Then
  363. { result is automatically set to '' }
  364. exit;
  365. l:=IndexChar(p^,-1,#0);
  366. SetLength(fpc_PChar_To_AnsiStr,L);
  367. Move (P[0],Pointer(fpc_PChar_To_AnsiStr)^,L)
  368. end;
  369. Function fpc_CharArray_To_AnsiStr(const arr: array of char; zerobased: boolean = true): ansistring; compilerproc;
  370. var
  371. i : SizeInt;
  372. begin
  373. if (zerobased) then
  374. begin
  375. if (arr[0]=#0) Then
  376. { result is automatically set to '' }
  377. exit;
  378. i:=IndexChar(arr,high(arr)+1,#0);
  379. if i = -1 then
  380. i := high(arr)+1;
  381. end
  382. else
  383. i := high(arr)+1;
  384. SetLength(fpc_CharArray_To_AnsiStr,i);
  385. Move (arr[0],Pointer(fpc_CharArray_To_AnsiStr)^,i);
  386. end;
  387. {$ifndef FPC_STRTOCHARARRAYPROC}
  388. { note: inside the compiler, the resulttype is modified to be the length }
  389. { of the actual chararray to which we convert (JM) }
  390. function fpc_ansistr_to_chararray(arraysize: SizeInt; const src: ansistring): fpc_big_chararray; [public, alias: 'FPC_ANSISTR_TO_CHARARRAY']; compilerproc;
  391. var
  392. len: SizeInt;
  393. begin
  394. len := length(src);
  395. if len > arraysize then
  396. len := arraysize;
  397. {$r-}
  398. { make sure we don't try to access element 1 of the ansistring if it's nil }
  399. if len > 0 then
  400. move(src[1],fpc_ansistr_to_chararray[0],len);
  401. { fpc_big_chararray is defined as array[0..0], see compproc.inc why }
  402. fillchar(fpc_ansistr_to_chararray[len],arraysize-len,0);
  403. {$ifdef RangeCheckWasOn}
  404. {$r+}
  405. {$endif}
  406. end;
  407. {$else ndef FPC_STRTOCHARARRAYPROC}
  408. procedure fpc_ansistr_to_chararray(out res: array of char; const src: ansistring); compilerproc;
  409. var
  410. len: SizeInt;
  411. begin
  412. len := length(src);
  413. if len > length(res) then
  414. len := length(res);
  415. {$r-}
  416. { make sure we don't try to access element 1 of the ansistring if it's nil }
  417. if len > 0 then
  418. move(src[1],res[0],len);
  419. { fpc_big_chararray is defined as array[0..0], see compproc.inc why }
  420. fillchar(res[len],length(res)-len,0);
  421. {$ifdef RangeCheckWasOn}
  422. {$r+}
  423. {$endif}
  424. end;
  425. {$endif ndef FPC_STRTOCHARARRAYPROC}
  426. Function fpc_AnsiStr_Compare(const S1,S2 : AnsiString): SizeInt;[Public,Alias : 'FPC_ANSISTR_COMPARE']; compilerproc;
  427. {
  428. Compares 2 AnsiStrings;
  429. The result is
  430. <0 if S1<S2
  431. 0 if S1=S2
  432. >0 if S1>S2
  433. }
  434. Var
  435. MaxI,Temp : SizeInt;
  436. begin
  437. if pointer(S1)=pointer(S2) then
  438. begin
  439. result:=0;
  440. exit;
  441. end;
  442. Maxi:=Length(S1);
  443. temp:=Length(S2);
  444. If MaxI>Temp then
  445. MaxI:=Temp;
  446. if MaxI>0 then
  447. begin
  448. result:=CompareByte(S1[1],S2[1],MaxI);
  449. if result=0 then
  450. result:=Length(S1)-Length(S2);
  451. end
  452. else
  453. result:=Length(S1)-Length(S2);
  454. end;
  455. Function fpc_AnsiStr_Compare_equal(const S1,S2 : AnsiString): SizeInt;[Public,Alias : 'FPC_ANSISTR_COMPARE_EQUAL']; compilerproc;
  456. {
  457. Compares 2 AnsiStrings for equality/inequality only;
  458. The result is
  459. 0 if S1=S2
  460. <>0 if S1<>S2
  461. }
  462. Var
  463. MaxI,Temp : SizeInt;
  464. begin
  465. if pointer(S1)=pointer(S2) then
  466. begin
  467. result:=0;
  468. exit;
  469. end;
  470. Maxi:=Length(S1);
  471. temp:=Length(S2);
  472. Result := Maxi - temp;
  473. if Result = 0 then
  474. if MaxI>0 then
  475. result:=CompareByte(S1[1],S2[1],MaxI);
  476. end;
  477. Procedure fpc_AnsiStr_CheckZero(p : pointer);[Public,Alias : 'FPC_ANSISTR_CHECKZERO']; compilerproc;
  478. begin
  479. if p=nil then
  480. HandleErrorFrame(201,get_frame);
  481. end;
  482. Procedure fpc_AnsiStr_CheckRange(len,index : SizeInt);[Public,Alias : 'FPC_ANSISTR_RANGECHECK']; compilerproc;
  483. begin
  484. if (index>len) or (Index<1) then
  485. HandleErrorFrame(201,get_frame);
  486. end;
  487. Procedure fpc_AnsiStr_SetLength (Var S : AnsiString; l : SizeInt);[Public,Alias : 'FPC_ANSISTR_SETLENGTH']; compilerproc;
  488. {
  489. Sets The length of string S to L.
  490. Makes sure S is unique, and contains enough room.
  491. }
  492. Var
  493. Temp : Pointer;
  494. lens, lena,
  495. movelen : SizeInt;
  496. begin
  497. if (l>0) then
  498. begin
  499. if Pointer(S)=nil then
  500. begin
  501. GetMem(Pointer(S),AnsiRecLen+L);
  502. PAnsiRec(S)^.Ref:=1;
  503. inc(Pointer(S),firstoff);
  504. end
  505. else if PAnsiRec(Pointer(S)-FirstOff)^.Ref=1 then
  506. begin
  507. Dec(Pointer(S),FirstOff);
  508. lens:=MemSize(Pointer(s));
  509. lena:=AnsiRecLen+L;
  510. { allow shrinking string if that saves at least half of current size }
  511. if (lena>lens) or ((lens>32) and (lena<=(lens div 2))) then
  512. reallocmem(pointer(S),AnsiRecLen+L);
  513. Inc(Pointer(S),FirstOff);
  514. end
  515. else
  516. begin
  517. { Reallocation is needed... }
  518. Temp:=Pointer(NewAnsiString(L));
  519. { also move terminating null }
  520. lens:=succ(length(s));
  521. if l < lens then
  522. movelen := l
  523. else
  524. movelen := lens;
  525. Move(Pointer(S)^,Temp^,movelen);
  526. { ref count dropped to zero in the mean time? }
  527. If (PAnsiRec(Pointer(S)-FirstOff)^.Ref > 0) and
  528. declocked(PAnsiRec(Pointer(S)-FirstOff)^.Ref) then
  529. freemem(PAnsiRec(Pointer(s)-FirstOff));
  530. Pointer(S):=Temp;
  531. end;
  532. { Force nil termination in case it gets shorter }
  533. PByte(Pointer(S)+l)^:=0;
  534. PAnsiRec(Pointer(S)-FirstOff)^.Len:=l;
  535. end
  536. else
  537. begin
  538. { Length=0 }
  539. if Pointer(S)<>nil then
  540. fpc_ansistr_decr_ref (Pointer(S));
  541. Pointer(S):=Nil;
  542. end;
  543. end;
  544. {$ifdef EXTRAANSISHORT}
  545. Function fpc_AnsiStr_ShortStr_Compare (Var S1 : Pointer; Var S2 : ShortString): SizeInt; compilerproc;
  546. {
  547. Compares a AnsiString with a ShortString;
  548. The result is
  549. <0 if S1<S2
  550. 0 if S1=S2
  551. >0 if S1>S2
  552. }
  553. Var
  554. i,MaxI,Temp : SizeInt;
  555. begin
  556. Temp:=0;
  557. i:=0;
  558. MaxI:=Length(AnsiString(S1));
  559. if MaxI>byte(S2[0]) then
  560. MaxI:=Byte(S2[0]);
  561. While (i<MaxI) and (Temp=0) do
  562. begin
  563. Temp:= PByte(S1+I)^ - Byte(S2[i+1]);
  564. inc(i);
  565. end;
  566. AnsiStr_ShortStr_Compare:=Temp;
  567. end;
  568. {$endif EXTRAANSISHORT}
  569. {*****************************************************************************
  570. Public functions, In interface.
  571. *****************************************************************************}
  572. function fpc_truely_ansistr_unique(Var S : Pointer): Pointer;
  573. Var
  574. SNew : Pointer;
  575. L : SizeInt;
  576. begin
  577. L:=PAnsiRec(Pointer(S)-FirstOff)^.len;
  578. SNew:=NewAnsiString (L);
  579. Move (Pointer(S)^,SNew^,L+1);
  580. PAnsiRec(SNew-FirstOff)^.len:=L;
  581. fpc_ansistr_decr_ref (Pointer(S)); { Thread safe }
  582. pointer(S):=SNew;
  583. pointer(result):=SNew;
  584. end;
  585. {$ifndef FPC_SYSTEM_HAS_ANSISTR_UNIQUE}
  586. // MV: inline the basic checks for case that S is already unique.
  587. // Rest is too complex to inline, so factor that out as a call.
  588. Function fpc_ansistr_Unique(Var S : Pointer): Pointer; [Public,Alias : 'FPC_ANSISTR_UNIQUE']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  589. {
  590. Make sure reference count of S is 1,
  591. using copy-on-write semantics.
  592. }
  593. begin
  594. pointer(result) := pointer(s);
  595. If Pointer(S)=Nil then
  596. exit;
  597. if PAnsiRec(Pointer(S)-Firstoff)^.Ref<>1 then
  598. result:=fpc_truely_ansistr_unique(s);
  599. end;
  600. {$endif FPC_SYSTEM_HAS_ANSISTR_UNIQUE}
  601. Procedure fpc_ansistr_append_char(Var S : AnsiString;c : char); [Public,Alias : 'FPC_ANSISTR_APPEND_CHAR']; compilerproc;
  602. begin
  603. SetLength(S,length(S)+1);
  604. // avoid unique call
  605. PChar(Pointer(S)+length(S)-1)^:=c;
  606. PByte(Pointer(S)+length(S))^:=0; { Terminating Zero }
  607. end;
  608. Procedure fpc_ansistr_append_shortstring(Var S : AnsiString;const Str : ShortString); [Public,Alias : 'FPC_ANSISTR_APPEND_SHORTSTRING']; compilerproc;
  609. var
  610. ofs : SizeInt;
  611. begin
  612. if Str='' then
  613. exit;
  614. ofs:=Length(S);
  615. SetLength(S,ofs+length(Str));
  616. { the pbyte cast avoids an unique call which isn't necessary because SetLength was just called }
  617. move(Str[1],(pointer(S)+ofs)^,length(Str));
  618. PByte(Pointer(S)+length(S))^:=0; { Terminating Zero }
  619. end;
  620. Procedure fpc_ansistr_append_ansistring(Var S : AnsiString;const Str : AnsiString); [Public,Alias : 'FPC_ANSISTR_APPEND_ANSISTRING']; compilerproc;
  621. var
  622. ofs, strlength: SizeInt;
  623. samestring: boolean;
  624. begin
  625. if Str='' then
  626. exit;
  627. samestring := pointer(s) = pointer(str);
  628. { needed in case s and str are the same string }
  629. strlength := length(str);
  630. ofs:=Length(S);
  631. SetLength(S,ofs+strlength);
  632. { the pbyte cast avoids an unique call which isn't necessary because SetLength was just called }
  633. if not(samestring) then
  634. move(Str[1],(pointer(S)+ofs)^,strlength+1)
  635. else
  636. { the setlength may have relocated the string, so str may no longer be valid }
  637. move(S[1],(pointer(S)+ofs)^,strlength+1)
  638. end;
  639. Function Fpc_Ansistr_Copy (Const S : AnsiString; Index,Size : SizeInt) : AnsiString;compilerproc;
  640. var
  641. ResultAddress : Pointer;
  642. begin
  643. ResultAddress:=Nil;
  644. dec(index);
  645. if Index < 0 then
  646. Index := 0;
  647. { Check Size. Accounts for Zero-length S, the double check is needed because
  648. Size can be maxint and will get <0 when adding index }
  649. if (Size>Length(S)) or
  650. (Index+Size>Length(S)) then
  651. Size:=Length(S)-Index;
  652. If Size>0 then
  653. begin
  654. If Index<0 Then
  655. Index:=0;
  656. ResultAddress:=Pointer(NewAnsiString (Size));
  657. if ResultAddress<>Nil then
  658. begin
  659. Move (Pointer(Pointer(S)+index)^,ResultAddress^,Size);
  660. PAnsiRec(ResultAddress-FirstOff)^.Len:=Size;
  661. PByte(ResultAddress+Size)^:=0;
  662. end;
  663. end;
  664. fpc_ansistr_decr_ref(Pointer(fpc_ansistr_copy));
  665. Pointer(fpc_ansistr_Copy):=ResultAddress;
  666. end;
  667. Function Pos (Const Substr : ShortString; Const Source : AnsiString) : SizeInt;
  668. var
  669. i,MaxLen : SizeInt;
  670. pc : pchar;
  671. begin
  672. Pos:=0;
  673. if Length(SubStr)>0 then
  674. begin
  675. MaxLen:=Length(source)-Length(SubStr);
  676. i:=0;
  677. pc:=@source[1];
  678. while (i<=MaxLen) do
  679. begin
  680. inc(i);
  681. if (SubStr[1]=pc^) and
  682. (CompareByte(Substr[1],pc^,Length(SubStr))=0) then
  683. begin
  684. Pos:=i;
  685. exit;
  686. end;
  687. inc(pc);
  688. end;
  689. end;
  690. end;
  691. Function Pos (Const Substr : AnsiString; Const Source : AnsiString) : SizeInt;
  692. var
  693. i,MaxLen : SizeInt;
  694. pc : pchar;
  695. begin
  696. Pos:=0;
  697. if Length(SubStr)>0 then
  698. begin
  699. MaxLen:=Length(source)-Length(SubStr);
  700. i:=0;
  701. pc:=@source[1];
  702. while (i<=MaxLen) do
  703. begin
  704. inc(i);
  705. if (SubStr[1]=pc^) and
  706. (CompareByte(Substr[1],pc^,Length(SubStr))=0) then
  707. begin
  708. Pos:=i;
  709. exit;
  710. end;
  711. inc(pc);
  712. end;
  713. end;
  714. end;
  715. { Faster version for a char alone. Must be implemented because }
  716. { pos(c: char; const s: shortstring) also exists, so otherwise }
  717. { using pos(char,pchar) will always call the shortstring version }
  718. { (exact match for first argument), also with $h+ (JM) }
  719. Function Pos (c : Char; Const s : AnsiString) : SizeInt;
  720. var
  721. i: SizeInt;
  722. pc : pchar;
  723. begin
  724. pc:=@s[1];
  725. for i:=1 to length(s) do
  726. begin
  727. if pc^=c then
  728. begin
  729. pos:=i;
  730. exit;
  731. end;
  732. inc(pc);
  733. end;
  734. pos:=0;
  735. end;
  736. Function fpc_Val_Real_AnsiStr(Const S : AnsiString; out Code : ValSInt): ValReal; [public, alias:'FPC_VAL_REAL_ANSISTR']; compilerproc;
  737. Var
  738. SS : String;
  739. begin
  740. fpc_Val_Real_AnsiStr := 0;
  741. if length(S) > 255 then
  742. code := 256
  743. else
  744. begin
  745. SS := S;
  746. Val(SS,fpc_Val_Real_AnsiStr,code);
  747. end;
  748. end;
  749. Function fpc_Val_Currency_AnsiStr(Const S : AnsiString; out Code : ValSInt): Currency; [public, alias:'FPC_VAL_CURRENCY_ANSISTR']; compilerproc;
  750. Var
  751. SS : String;
  752. begin
  753. if length(S) > 255 then
  754. begin
  755. fpc_Val_Currency_AnsiStr := 0;
  756. code := 256;
  757. end
  758. else
  759. begin
  760. SS := S;
  761. Val(SS,fpc_Val_Currency_AnsiStr,code);
  762. end;
  763. end;
  764. Function fpc_Val_UInt_AnsiStr (Const S : AnsiString; out Code : ValSInt): ValUInt; [public, alias:'FPC_VAL_UINT_ANSISTR']; compilerproc;
  765. Var
  766. SS : ShortString;
  767. begin
  768. fpc_Val_UInt_AnsiStr := 0;
  769. if length(S) > 255 then
  770. code := 256
  771. else
  772. begin
  773. SS := S;
  774. Val(SS,fpc_Val_UInt_AnsiStr,code);
  775. end;
  776. end;
  777. Function fpc_Val_SInt_AnsiStr (DestSize: SizeInt; Const S : AnsiString; out Code : ValSInt): ValSInt; [public, alias:'FPC_VAL_SINT_ANSISTR']; compilerproc;
  778. Var
  779. SS : ShortString;
  780. begin
  781. fpc_Val_SInt_AnsiStr:=0;
  782. if length(S)>255 then
  783. code:=256
  784. else
  785. begin
  786. SS := S;
  787. fpc_Val_SInt_AnsiStr := int_Val_SInt_ShortStr(DestSize,SS,Code);
  788. end;
  789. end;
  790. {$ifndef CPU64}
  791. Function fpc_Val_qword_AnsiStr (Const S : AnsiString; out Code : ValSInt): qword; [public, alias:'FPC_VAL_QWORD_ANSISTR']; compilerproc;
  792. Var
  793. SS : ShortString;
  794. begin
  795. fpc_Val_qword_AnsiStr:=0;
  796. if length(S)>255 then
  797. code:=256
  798. else
  799. begin
  800. SS := S;
  801. Val(SS,fpc_Val_qword_AnsiStr,Code);
  802. end;
  803. end;
  804. Function fpc_Val_int64_AnsiStr (Const S : AnsiString; out Code : ValSInt): Int64; [public, alias:'FPC_VAL_INT64_ANSISTR']; compilerproc;
  805. Var
  806. SS : ShortString;
  807. begin
  808. fpc_Val_int64_AnsiStr:=0;
  809. if length(S)>255 then
  810. code:=256
  811. else
  812. begin
  813. SS := s;
  814. Val(SS,fpc_Val_int64_AnsiStr,Code);
  815. end;
  816. end;
  817. {$endif CPU64}
  818. procedure fpc_AnsiStr_Float(d : ValReal;len,fr,rt : SizeInt;out s : ansistring);[public,alias:'FPC_ANSISTR_FLOAT']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  819. var
  820. ss: ShortString;
  821. begin
  822. str_real(len,fr,d,treal_type(rt),ss);
  823. s:=ss;
  824. end;
  825. procedure fpc_ansistr_enum(ordinal,len:sizeint;typinfo,ord2strindex:pointer;out s:shortstring);[public,alias:'FPC_ANSISTR_ENUM'];compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  826. var ss:shortstring;
  827. begin
  828. fpc_shortstr_enum(ordinal,len,typinfo,ord2strindex,ss);
  829. s:=ss;
  830. end;
  831. {$ifdef FPC_HAS_STR_CURRENCY}
  832. procedure fpc_AnsiStr_Currency(c : currency;len,fr : SizeInt;out s : ansistring);[public,alias:'FPC_ANSISTR_CURRENCY']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  833. var
  834. ss: ShortString;
  835. begin
  836. str(c:len:fr,ss);
  837. s:=ss;
  838. end;
  839. {$endif FPC_HAS_STR_CURRENCY}
  840. Procedure fpc_AnsiStr_UInt(v : ValUInt;Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_VALUINT']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  841. Var
  842. SS : ShortString;
  843. begin
  844. str(v:Len,SS);
  845. S:=SS;
  846. end;
  847. Procedure fpc_AnsiStr_SInt(v : ValSInt;Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_VALSINT']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  848. Var
  849. SS : ShortString;
  850. begin
  851. str (v:Len,SS);
  852. S:=SS;
  853. end;
  854. {$ifndef CPU64}
  855. Procedure fpc_AnsiStr_QWord(v : QWord;Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_QWORD']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  856. Var
  857. SS : ShortString;
  858. begin
  859. str(v:Len,SS);
  860. S:=SS;
  861. end;
  862. Procedure fpc_AnsiStr_Int64(v : Int64; Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_INT64']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
  863. Var
  864. SS : ShortString;
  865. begin
  866. str (v:Len,SS);
  867. S:=SS;
  868. end;
  869. {$endif CPU64}
  870. Procedure Delete (Var S : AnsiString; Index,Size: SizeInt);
  871. Var
  872. LS : SizeInt;
  873. begin
  874. ls:=Length(S);
  875. If (Index>LS) or (Index<=0) or (Size<=0) then
  876. exit;
  877. UniqueString (S);
  878. If (Size>LS-Index) then // Size+Index gives overflow ??
  879. Size:=LS-Index+1;
  880. If (Size<=LS-Index) then
  881. begin
  882. Dec(Index);
  883. Move(PByte(Pointer(S))[Index+Size],PByte(Pointer(S))[Index],LS-Index-Size+1);
  884. end;
  885. Setlength(S,LS-Size);
  886. end;
  887. Procedure Insert (Const Source : AnsiString; Var S : AnsiString; Index : SizeInt);
  888. var
  889. Temp : AnsiString;
  890. LS : SizeInt;
  891. begin
  892. If Length(Source)=0 then
  893. exit;
  894. if index <= 0 then
  895. index := 1;
  896. Ls:=Length(S);
  897. if index > LS then
  898. index := LS+1;
  899. Dec(Index);
  900. Pointer(Temp) := NewAnsiString(Length(Source)+LS);
  901. SetLength(Temp,Length(Source)+LS);
  902. If Index>0 then
  903. move (Pointer(S)^,Pointer(Temp)^,Index);
  904. Move (Pointer(Source)^,PByte(Temp)[Index],Length(Source));
  905. If (LS-Index)>0 then
  906. Move(PByte(Pointer(S))[Index],PByte(temp)[Length(Source)+index],LS-Index);
  907. S:=Temp;
  908. end;
  909. Function StringOfChar(c : char;l : SizeInt) : AnsiString;
  910. begin
  911. SetLength(StringOfChar,l);
  912. FillChar(Pointer(StringOfChar)^,Length(StringOfChar),c);
  913. end;
  914. Procedure SetString (Out S : AnsiString; Buf : PChar; Len : SizeInt); {$IFNDEF VER2_0} Inline; {$ENDIF}
  915. begin
  916. SetLength(S,Len);
  917. If (Buf<>Nil) then
  918. Move (Buf^,Pointer(S)^,Len);
  919. end;
  920. function upcase(const s : ansistring) : ansistring;
  921. var
  922. i : SizeInt;
  923. begin
  924. Setlength(result,length(s));
  925. for i := 1 to length (s) do
  926. result[i] := upcase(s[i]);
  927. end;
  928. function lowercase(const s : ansistring) : ansistring;
  929. var
  930. i : SizeInt;
  931. begin
  932. Setlength(result,length(s));
  933. for i := 1 to length (s) do
  934. result[i] := lowercase(s[i]);
  935. end;