rad.h 23 KB

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  1. #ifndef __RAD__
  2. #define __RAD__
  3. #define RADCOPYRIGHT "Copyright (C) 1994-98 RAD Game Tools, Inc."
  4. #ifndef __RADRES__
  5. // __RADDOS__ means DOS code (16 or 32 bit)
  6. // __RAD16__ means 16 bit code (Win16)
  7. // __RAD32__ means 32 bit code (DOS, Win386, Win32s, Mac)
  8. // __RADWIN__ means Windows code (Win16, Win386, Win32s)
  9. // __RADWINEXT__ means Windows 386 extender (Win386)
  10. // __RADNT__ means Win32s code
  11. // __RADMAC__ means Macintosh
  12. // __RAD68K__ means 68K Macintosh
  13. // __RADPPC__ means PowerMac
  14. #if (defined(__MWERKS__) && !defined(__INTEL__)) || defined(THINK_C) || defined(powerc) || defined(macintosh) || defined(__powerc)
  15. #define __RADMAC__
  16. #if defined(powerc) || defined(__powerc)
  17. #define __RADPPC__
  18. #else
  19. #define __RAD68K__
  20. #endif
  21. #define __RAD32__
  22. #else
  23. #ifdef __DOS__
  24. #define __RADDOS__
  25. #endif
  26. #ifdef __386__
  27. #define __RAD32__
  28. #endif
  29. #ifdef _Windows //For Borland
  30. #ifdef __WIN32__
  31. #define WIN32
  32. #else
  33. #define __WINDOWS__
  34. #endif
  35. #endif
  36. #ifdef _WINDOWS //For MS
  37. #ifndef _WIN32
  38. #define __WINDOWS__
  39. #endif
  40. #endif
  41. #ifdef _WIN32
  42. #define __RADWIN__
  43. #define __RADNT__
  44. #define __RAD32__
  45. #else
  46. #ifdef __NT__
  47. #define __RADWIN__
  48. #define __RADNT__
  49. #define __RAD32__
  50. #else
  51. #ifdef __WINDOWS_386__
  52. #define __RADWIN__
  53. #define __RADWINEXT__
  54. #define __RAD32__
  55. #else
  56. #ifdef __WINDOWS__
  57. #define __RADWIN__
  58. #define __RAD16__
  59. #else
  60. #ifdef WIN32
  61. #define __RADWIN__
  62. #define __RADNT__
  63. #define __RAD32__
  64. #endif
  65. #endif
  66. #endif
  67. #endif
  68. #endif
  69. #endif
  70. #if (!defined(__RADDOS__) && !defined(__RADWIN__) && !defined(__RADMAC__))
  71. #error RAD.H did not detect your platform. Define __DOS__, __WINDOWS__, WIN32, macintosh, or powerc.
  72. #endif
  73. #ifdef __RADMAC__
  74. // this define is for CodeWarrior 11's stupid new libs (even though
  75. // we don't use longlong's).
  76. #define __MSL_LONGLONG_SUPPORT__
  77. #define RADLINK
  78. #define RADEXPLINK
  79. #ifdef __CFM68K__
  80. #ifdef __RADINDLL__
  81. #define RADEXPFUNC RADDEFFUNC __declspec(export)
  82. #else
  83. #define RADEXPFUNC RADDEFFUNC __declspec(import)
  84. #endif
  85. #else
  86. #define RADEXPFUNC RADDEFFUNC
  87. #endif
  88. #define RADASMLINK
  89. #else
  90. #ifdef __RADNT__
  91. #ifndef _WIN32
  92. #define _WIN32
  93. #endif
  94. #ifndef WIN32
  95. #define WIN32
  96. #endif
  97. #endif
  98. #ifdef __RADWIN__
  99. #ifdef __RAD32__
  100. #ifdef __RADNT__
  101. #define RADLINK __stdcall
  102. #define RADEXPLINK __stdcall
  103. #ifdef __RADINEXE__
  104. #define RADEXPFUNC RADDEFFUNC
  105. #else
  106. #ifndef __RADINDLL__
  107. #define RADEXPFUNC RADDEFFUNC __declspec(dllimport)
  108. #ifdef __BORLANDC__
  109. #if __BORLANDC__<=0x460
  110. #undef RADEXPFUNC
  111. #define RADEXPFUNC RADDEFFUNC
  112. #endif
  113. #endif
  114. #else
  115. #define RADEXPFUNC RADDEFFUNC __declspec(dllexport)
  116. #endif
  117. #endif
  118. #else
  119. #define RADLINK __pascal
  120. #define RADEXPLINK __far __pascal
  121. #define RADEXPFUNC RADDEFFUNC
  122. #endif
  123. #else
  124. #define RADLINK __pascal
  125. #define RADEXPLINK __far __pascal __export
  126. #define RADEXPFUNC RADDEFFUNC
  127. #endif
  128. #else
  129. #define RADLINK __pascal
  130. #define RADEXPLINK __pascal
  131. #define RADEXPFUNC RADDEFFUNC
  132. #endif
  133. #define RADASMLINK __cdecl
  134. #endif
  135. #ifdef __RADWIN__
  136. #ifndef _WINDOWS
  137. #define _WINDOWS
  138. #endif
  139. #endif
  140. #ifdef __cplusplus
  141. #define RADDEFFUNC extern "C"
  142. #define RADDEFSTART extern "C" {
  143. #define RADDEFEND }
  144. #else
  145. #define RADDEFFUNC
  146. #define RADDEFSTART
  147. #define RADDEFEND
  148. #endif
  149. RADDEFSTART
  150. #define s8 signed char
  151. #define u8 unsigned char
  152. #define u32 unsigned long
  153. #define s32 signed long
  154. #define u64 unsigned __int64
  155. #define s64 signed __int64
  156. #ifdef __RAD32__
  157. #define PTR4
  158. #define u16 unsigned short
  159. #define s16 signed short
  160. #ifdef __RADMAC__
  161. #include <string.h>
  162. #include <memory.h>
  163. #include <OSUtils.h>
  164. #define radstrlen strlen
  165. #define radmemset memset
  166. #define radmemcmp memcmp
  167. #define radmemcpy(dest,source,size) BlockMoveData((Ptr)(source),(Ptr)(dest),size)
  168. #define radmemcpydb(dest,source,size) BlockMoveData((Ptr)(source),(Ptr)(dest),size)
  169. #define radstrcat strcat
  170. #define radstrcpy strcpy
  171. static u32 inline radsqr(s32 a) { return(a*a); }
  172. #ifdef __RAD68K__
  173. #pragma parameter __D0 mult64anddiv(__D0,__D1,__D2)
  174. u32 mult64anddiv(u32 m1,u32 m2,u32 d) ={0x4C01,0x0C01,0x4C42,0x0C01};
  175. // muls.l d1,d1:d0 divs.l d2,d1:d0
  176. #pragma parameter radconv32a(__A0,__D0)
  177. void radconv32a(void* p,u32 n) ={0x4A80,0x600C,0x2210,0xE059,0x4841,0xE059,0x20C1,0x5380,0x6EF2};
  178. // tst.l d0 bra.s @loope @loop: move.l (a0),d1 ror.w #8,d1 swap d1 ror.w #8,d1 move.l d1,(a0)+ sub.l #1,d0 bgt.s @loop @loope:
  179. #else
  180. u32 mult64anddiv(u32 m1,u32 m2,u32 d);
  181. void radconv32a(void* p,u32 n);
  182. #endif
  183. #else
  184. #ifdef __WATCOMC__
  185. u32 radsqr(s32 a);
  186. #pragma aux radsqr = "mul eax" parm [eax] modify [EDX eax];
  187. u32 mult64anddiv(u32 m1,u32 m2,u32 d);
  188. #pragma aux mult64anddiv = "mul ecx" "div ebx" parm [eax] [ecx] [ebx] modify [EDX eax];
  189. s32 radabs(s32 ab);
  190. #pragma aux radabs = "test eax,eax" "jge skip" "neg eax" "skip:" parm [eax];
  191. #define radabs32 radabs
  192. u32 DOSOut(const char* str);
  193. #pragma aux DOSOut = "cld" "mov ecx,0xffffffff" "xor eax,eax" "mov edx,edi" "repne scasb" "not ecx" "dec ecx" "mov ebx,1" "mov ah,0x40" "int 0x21" parm [EDI] modify [EAX EBX ECX EDX EDI] value [ecx];
  194. void DOSOutNum(const char* str,u32 len);
  195. #pragma aux DOSOutNum = "mov ah,0x40" "mov ebx,1" "int 0x21" parm [edx] [ecx] modify [eax ebx];
  196. u32 ErrOut(const char* str);
  197. #pragma aux ErrOut = "cld" "mov ecx,0xffffffff" "xor eax,eax" "mov edx,edi" "repne scasb" "not ecx" "dec ecx" "xor ebx,ebx" "mov ah,0x40" "int 0x21" parm [EDI] modify [EAX EBX ECX EDX EDI] value [ecx];
  198. void ErrOutNum(const char* str,u32 len);
  199. #pragma aux ErrOutNum = "mov ah,0x40" "xor ebx,ebx" "int 0x21" parm [edx] [ecx] modify [eax ebx];
  200. void radmemset16(void* dest,u16 value,u32 size);
  201. #pragma aux radmemset16 = "cld" "mov bx,ax" "shl eax,16" "mov ax,bx" "mov bl,cl" "shr ecx,1" "rep stosd" "mov cl,bl" "and cl,1" "rep stosw" parm [EDI] [EAX] [ECX] modify [EAX EDX EBX ECX EDI];
  202. void radmemset(void* dest,u8 value,u32 size);
  203. #pragma aux radmemset = "cld" "mov ah,al" "mov bx,ax" "shl eax,16" "mov ax,bx" "mov bl,cl" "shr ecx,2" "and bl,3" "rep stosd" "mov cl,bl" "rep stosb" parm [EDI] [AL] [ECX] modify [EAX EDX EBX ECX EDI];
  204. void radmemset32(void* dest,u32 value,u32 size);
  205. #pragma aux radmemset32 = "cld" "rep stosd" parm [EDI] [EAX] [ECX] modify [EAX EDX EBX ECX EDI];
  206. void radmemcpy(void* dest,const void* source,u32 size);
  207. #pragma aux radmemcpy = "cld" "mov bl,cl" "shr ecx,2" "rep movsd" "mov cl,bl" "and cl,3" "rep movsb" parm [EDI] [ESI] [ECX] modify [EBX ECX EDI ESI];
  208. void __far *radfmemcpy(void __far* dest,const void __far* source,u32 size);
  209. #pragma aux radfmemcpy = "cld" "push es" "push ds" "mov es,cx" "mov ds,dx" "mov ecx,eax" "shr ecx,2" "rep movsd" "mov cl,al" "and cl,3" "rep movsb" "pop ds" "pop es" parm [CX EDI] [DX ESI] [EAX] modify [ECX EDI ESI] value [CX EDI];
  210. void radmemcpydb(void* dest,const void* source,u32 size); //Destination bigger
  211. #pragma aux radmemcpydb = "std" "mov bl,cl" "lea esi,[esi+ecx-4]" "lea edi,[edi+ecx-4]" "shr ecx,2" "rep movsd" "and bl,3" "jz dne" "add esi,3" "add edi,3" "mov cl,bl" "rep movsb" "dne:" "cld" parm [EDI] [ESI] [ECX] modify [EBX ECX EDI ESI];
  212. char* radstrcpy(void* dest,const void* source);
  213. #pragma aux radstrcpy = "cld" "mov edx,edi" "lp:" "mov al,[esi]" "inc esi" "mov [edi],al" "inc edi" "cmp al,0" "jne lp" parm [EDI] [ESI] modify [EAX EDX EDI ESI] value [EDX];
  214. char __far* radfstrcpy(void __far* dest,const void __far* source);
  215. #pragma aux radfstrcpy = "cld" "push es" "push ds" "mov es,cx" "mov ds,dx" "mov edx,edi" "lp:" "lodsb" "stosb" "test al,0xff" "jnz lp" "pop ds" "pop es" parm [CX EDI] [DX ESI] modify [EAX EDX EDI ESI] value [CX EDX];
  216. char* radstpcpy(void* dest,const void* source);
  217. #pragma aux radstpcpy = "cld" "lp:" "mov al,[esi]" "inc esi" "mov [edi],al" "inc edi" "cmp al,0" "jne lp" "dec edi" parm [EDI] [ESI] modify [EAX EDI ESI] value [EDI];
  218. char* radstpcpyrs(void* dest,const void* source);
  219. #pragma aux radstpcpyrs = "cld" "lp:" "mov al,[esi]" "inc esi" "mov [edi],al" "inc edi" "cmp al,0" "jne lp" "dec esi" parm [EDI] [ESI] modify [EAX EDI ESI] value [ESI];
  220. u32 radstrlen(const void* dest);
  221. #pragma aux radstrlen = "cld" "mov ecx,0xffffffff" "xor eax,eax" "repne scasb" "not ecx" "dec ecx" parm [EDI] modify [EAX ECX EDI] value [ECX];
  222. char* radstrcat(void* dest,const void* source);
  223. #pragma aux radstrcat = "cld" "mov ecx,0xffffffff" "mov edx,edi" "xor eax,eax" "repne scasb" "dec edi" "lp:" "lodsb" "stosb" "test al,0xff" "jnz lp" \
  224. parm [EDI] [ESI] modify [EAX ECX EDI ESI] value [EDX];
  225. char* radstrchr(const void* dest,char chr);
  226. #pragma aux radstrchr = "cld" "lp:" "lodsb" "cmp al,dl" "je fnd" "cmp al,0" "jnz lp" "mov esi,1" "fnd:" "dec esi" parm [ESI] [DL] modify [EAX ESI] value [esi];
  227. s8 radmemcmp(const void* s1,const void* s2,u32 len);
  228. #pragma aux radmemcmp = "cld" "rep cmpsb" "setne al" "jbe end" "neg al" "end:" parm [EDI] [ESI] [ECX] modify [ECX EDI ESI];
  229. s8 radstrcmp(const void* s1,const void* s2);
  230. #pragma aux radstrcmp = "lp:" "mov al,[esi]" "mov ah,[edi]" "cmp al,ah" "jne set" "cmp al,0" "je set" "inc esi" "inc edi" "jmp lp" "set:" "setne al" "jbe end" "neg al" "end:" \
  231. parm [EDI] [ESI] modify [EAX EDI ESI];
  232. s8 radstricmp(const void* s1,const void* s2);
  233. #pragma aux radstricmp = "lp:" "mov al,[esi]" "mov ah,[edi]" "cmp al,'a'" "jb c1" "cmp al,'z'" "ja c1" "sub al,32" "c1:" "cmp ah,'a'" "jb c2" "cmp ah,'z'" "ja c2" "sub ah,32" "c2:" "cmp al,ah" "jne set" "cmp al,0" "je set" \
  234. "inc esi" "inc edi" "jmp lp" "set:" "setne al" "jbe end" "neg al" "end:" \
  235. parm [EDI] [ESI] modify [EAX EDI ESI];
  236. s8 radstrnicmp(const void* s1,const void* s2,u32 len);
  237. #pragma aux radstrnicmp = "lp:" "mov al,[esi]" "mov ah,[edi]" "cmp al,'a'" "jb c1" "cmp al,'z'" "ja c1" "sub al,32" "c1:" "cmp ah,'a'" "jb c2" "cmp ah,'z'" "ja c2" "sub ah,32" "c2:" "cmp al,ah" "jne set" "cmp al,0" "je set" \
  238. "dec ecx" "jz set" "inc esi" "inc edi" "jmp lp" "set:" "setne al" "jbe end" "neg al" "end:" \
  239. parm [EDI] [ESI] [ECX] modify [EAX ECX EDI ESI];
  240. char* radstrupr(void* s1);
  241. #pragma aux radstrupr = "mov ecx,edi" "lp:" "mov al,[edi]" "cmp al,'a'" "jb c1" "cmp al,'z'" "ja c1" "sub [edi],32" "c1:" "inc edi" "cmp al,0" "jne lp" parm [EDI] modify [EAX EDI] value [ecx];
  242. char* radstrlwr(void* s1);
  243. #pragma aux radstrlwr = "mov ecx,edi" "lp:" "mov al,[edi]" "cmp al,'A'" "jb c1" "cmp al,'Z'" "ja c1" "add [edi],32" "c1:" "inc edi" "cmp al,0" "jne lp" parm [EDI] modify [EAX EDI] value [ecx];
  244. u32 radstru32(const void* dest);
  245. #pragma aux radstru32 = "cld" "xor ecx,ecx" "xor ebx,ebx" "xor edi,edi" "lodsb" "cmp al,45" "jne skip2" "mov edi,1" "jmp skip" "lp:" "mov eax,10" "mul ecx" "lea ecx,[eax+ebx]" \
  246. "skip:" "lodsb" "skip2:" "cmp al,0x39" "ja dne" "cmp al,0x30" "jb dne" "mov bl,al" "sub bl,0x30" "jmp lp" "dne:" "test edi,1" "jz pos" "neg ecx" "pos:" \
  247. parm [ESI] modify [EAX EBX EDX EDI ESI] value [ecx];
  248. u16 GetDS();
  249. #pragma aux GetDS = "mov ax,ds" value [ax];
  250. #ifdef __RADWINEXT__
  251. #define _16To32(ptr16) ((void*)(((GetSelectorBase((u16)(((u32)(ptr16))>>16))+((u16)(u32)(ptr16)))-GetSelectorBase(GetDS()))))
  252. #endif
  253. #ifndef __RADWIN__
  254. #define int86 int386
  255. #define int86x int386x
  256. #endif
  257. #define u32regs x
  258. #define u16regs w
  259. #else
  260. #define radstrcpy strcpy
  261. #define radstrcat strcat
  262. #define radmemcpy memcpy
  263. #define radmemcpydb memmove
  264. #define radmemcmp memcmp
  265. #define radmemset memset
  266. #define radstrlen strlen
  267. #define radstrchr strchr
  268. #define radtoupper toupper
  269. #define radstru32(s) ((u32)atol(s))
  270. #define radstricmp _stricmp
  271. #define radstrcmp strcmp
  272. #define radstrupr _strupr
  273. #define radstrlwr _strlwr
  274. #define BreakPoint() _asm {int 3}
  275. #ifdef _MSC_VER
  276. #pragma warning( disable : 4035)
  277. typedef char* RADPCHAR;
  278. u32 __inline radsqr(u32 m) {
  279. _asm {
  280. mov eax,[m]
  281. mul eax
  282. }
  283. }
  284. u32 __inline mult64anddiv(u32 m1,u32 m2, u32 d) {
  285. _asm {
  286. mov eax,[m1]
  287. mov ecx,[m2]
  288. mul ecx
  289. mov ecx,[d]
  290. div ecx
  291. }
  292. }
  293. s32 __inline radabs(s32 ab) {
  294. _asm {
  295. mov eax,[ab]
  296. test eax,eax
  297. jge skip
  298. neg eax
  299. skip:
  300. }
  301. }
  302. u8 __inline radinp(u16 p) {
  303. _asm {
  304. mov dx,[p]
  305. in al,dx
  306. }
  307. }
  308. void __inline radoutp(u16 p,u8 v) {
  309. _asm {
  310. mov dx,[p]
  311. mov al,[v]
  312. out dx,al
  313. }
  314. }
  315. RADPCHAR __inline radstpcpy(char* p1, char* p2) {
  316. _asm {
  317. mov edx,[p1]
  318. mov ecx,[p2]
  319. cld
  320. lp:
  321. mov al,[ecx]
  322. inc ecx
  323. mov [edx],al
  324. inc edx
  325. cmp al,0
  326. jne lp
  327. dec edx
  328. mov eax,edx
  329. }
  330. }
  331. RADPCHAR __inline radstpcpyrs(char* p1, char* p2) {
  332. _asm {
  333. mov edx,[p1]
  334. mov ecx,[p2]
  335. cld
  336. lp:
  337. mov al,[ecx]
  338. inc ecx
  339. mov [edx],al
  340. inc edx
  341. cmp al,0
  342. jne lp
  343. dec ecx
  344. mov eax,ecx
  345. }
  346. }
  347. void __inline radmemset16(void* dest,u16 value,u32 sizeb) {
  348. _asm {
  349. mov edi,[dest]
  350. mov ax,[value]
  351. mov ecx,[sizeb]
  352. shl eax,16
  353. cld
  354. mov ax,[value]
  355. mov bl,cl
  356. shr ecx,1
  357. rep stosd
  358. mov cl,bl
  359. and cl,1
  360. rep stosw
  361. }
  362. }
  363. void __inline radmemset32(void* dest,u32 value,u32 sizeb) {
  364. _asm {
  365. mov edi,[dest]
  366. mov eax,[value]
  367. mov ecx,[sizeb]
  368. cld
  369. rep stosd
  370. }
  371. }
  372. u32 __inline __stdcall RADsqrt(u32 sq) {
  373. _asm {
  374. fild dword ptr [sq]
  375. fsqrt
  376. fistp word ptr [sq]
  377. movzx eax,word ptr [sq]
  378. }
  379. }
  380. void __inline RADCycleTimerStartAddr(u32* addr)
  381. {
  382. _asm {
  383. mov ecx,[addr]
  384. __asm __emit 0fh __asm __emit 031h
  385. mov [ecx],eax
  386. }
  387. }
  388. u32 __inline RADCycleTimerDeltaAddr(u32* addr)
  389. {
  390. _asm {
  391. __asm __emit 0fh __asm __emit 031h
  392. mov ecx,[addr]
  393. sub eax,[ecx]
  394. }
  395. }
  396. #define RADCycleTimerStart(var) RADCycleTimerStartAddr(&var)
  397. #define RADCycleTimerDelta(var) RADCycleTimerDeltaAddr(&var)
  398. #pragma warning( default : 4035)
  399. #endif
  400. #endif
  401. #endif
  402. #else
  403. #define PTR4 __far
  404. #define u16 unsigned int
  405. #define s16 signed int
  406. #ifdef __WATCOMC__
  407. u32 radsqr(s32 a);
  408. #pragma aux radsqr = "shl edx,16" "mov dx,ax" "mov eax,edx" "xor edx,edx" "mul eax" "shld edx,eax,16" parm [dx ax] modify [DX ax] value [dx ax];
  409. s16 radabs(s16 ab);
  410. #pragma aux radabs = "test ax,ax" "jge skip" "neg ax" "skip:" parm [ax] value [ax];
  411. s32 radabs32(s32 ab);
  412. #pragma aux radabs32 = "test dx,dx" "jge skip" "neg dx" "neg ax" "sbb dx,0" "skip:" parm [dx ax] value [dx ax];
  413. u32 DOSOut(const char far* dest);
  414. #pragma aux DOSOut = "cld" "and edi,0xffff" "mov dx,di" "mov ecx,0xffffffff" "xor eax,eax" 0x67 "repne scasb" "not ecx" "dec ecx" "mov bx,1" "push ds" "push es" "pop ds" "mov ah,0x40" "int 0x21" "pop ds" "movzx eax,cx" "shr ecx,16" \
  415. parm [ES DI] modify [AX BX CX DX DI ES] value [CX AX];
  416. void DOSOutNum(const char far* str,u16 len);
  417. #pragma aux DOSOutNum = "push ds" "mov ds,cx" "mov cx,bx" "mov ah,0x40" "mov bx,1" "int 0x21" "pop ds" parm [cx dx] [bx] modify [ax bx cx];
  418. u32 ErrOut(const char far* dest);
  419. #pragma aux ErrOut = "cld" "and edi,0xffff" "mov dx,di" "mov ecx,0xffffffff" "xor eax,eax" 0x67 "repne scasb" "not ecx" "dec ecx" "xor bx,bx" "push ds" "push es" "pop ds" "mov ah,0x40" "int 0x21" "pop ds" "movzx eax,cx" "shr ecx,16" \
  420. parm [ES DI] modify [AX BX CX DX DI ES] value [CX AX];
  421. void ErrOutNum(const char far* str,u16 len);
  422. #pragma aux ErrOutNum = "push ds" "mov ds,cx" "mov cx,bx" "mov ah,0x40" "xor bx,bx" "int 0x21" "pop ds" parm [cx dx] [bx] modify [ax bx cx];
  423. void radmemset(void far *dest,u8 value,u32 size);
  424. #pragma aux radmemset = "cld" "and edi,0ffffh" "shl ecx,16" "mov cx,bx" "mov ah,al" "mov bx,ax" "shl eax,16" "mov ax,bx" "mov bl,cl" "shr ecx,2" 0x67 "rep stosd" "mov cl,bl" "and cl,3" "rep stosb" parm [ES DI] [AL] [CX BX];
  425. void radmemset16(void far* dest,u16 value,u32 size);
  426. #pragma aux radmemset16 = "cld" "and edi,0ffffh" "shl ecx,16" "mov cx,bx" "mov bx,ax" "shl eax,16" "mov ax,bx" "mov bl,cl" "shr ecx,1" "rep stosd" "mov cl,bl" "and cl,1" "rep stosw" parm [ES DI] [AX] [CX BX];
  427. void radmemcpy(void far* dest,const void far* source,u32 size);
  428. #pragma aux radmemcpy = "cld" "push ds" "mov ds,dx" "and esi,0ffffh" "and edi,0ffffh" "shl ecx,16" "mov cx,bx" "shr ecx,2" 0x67 "rep movsd" "mov cl,bl" "and cl,3" "rep movsb" "pop ds" parm [ES DI] [DX SI] [CX BX] modify [CX SI DI ES];
  429. s8 radmemcmp(const void far* s1,const void far* s2,u32 len);
  430. #pragma aux radmemcmp = "cld" "push ds" "mov ds,dx" "shl ecx,16" "mov cx,bx" "rep cmpsb" "setne al" "jbe end" "neg al" "end:" "pop ds" parm [ES DI] [DX SI] [CX BX] modify [CX SI DI ES];
  431. char far* radstrcpy(void far* dest,const void far* source);
  432. #pragma aux radstrcpy = "cld" "push ds" "mov ds,dx" "and esi,0xffff" "and edi,0xffff" "mov dx,di" "lp:" "lodsb" "stosb" "test al,0xff" "jnz lp" "pop ds" parm [ES DI] [DX SI] modify [AX DX DI SI ES] value [es dx];
  433. char far* radstpcpy(void far* dest,const void far* source);
  434. #pragma aux radstpcpy = "cld" "push ds" "mov ds,dx" "and esi,0xffff" "and edi,0xffff" "lp:" "lodsb" "stosb" "test al,0xff" "jnz lp" "dec di" "pop ds" parm [ES DI] [DX SI] modify [DI SI ES] value [es di];
  435. u32 radstrlen(const void far* dest);
  436. #pragma aux radstrlen = "cld" "and edi,0xffff" "mov ecx,0xffffffff" "xor eax,eax" 0x67 "repne scasb" "not ecx" "dec ecx" "movzx eax,cx" "shr ecx,16" parm [ES DI] modify [AX CX DI ES] value [CX AX];
  437. char far* radstrcat(void far* dest,const void far* source);
  438. #pragma aux radstrcat = "cld" "and edi,0xffff" "mov ecx,0xffffffff" "and esi,0xffff" "push ds" "mov ds,dx" "mov dx,di" "xor eax,eax" 0x67 "repne scasb" "dec edi" "lp:" "lodsb" "stosb" "test al,0xff" "jnz lp" "pop ds" \
  439. parm [ES DI] [DX SI] modify [AX CX DI SI ES] value [es dx];
  440. char far* radstrchr(const void far* dest,char chr);
  441. #pragma aux radstrchr = "cld" "lp:" 0x26 "lodsb" "cmp al,dl" "je fnd" "cmp al,0" "jnz lp" "xor ax,ax" "mov es,ax" "mov si,1" "fnd:" "dec si" parm [ES SI] [DL] modify [AX SI ES] value [es si];
  442. s8 radstricmp(const void far* s1,const void far* s2);
  443. #pragma aux radstricmp = "and edi,0xffff" "push ds" "mov ds,dx" "and esi,0xffff" "lp:" "mov al,[esi]" "mov ah,[edi]" "cmp al,'a'" "jb c1" "cmp al,'z'" "ja c1" "sub al,32" "c1:" \
  444. "cmp ah,'a'" "jb c2" "cmp ah,'z'" "ja c2" "sub ah,32" "c2:" "cmp al,ah" "jne set" "cmp al,0" "je set" \
  445. "inc esi" "inc edi" "jmp lp" "set:" "setne al" "jbe end" "neg al" "end:" "pop ds" \
  446. parm [ES DI] [DX SI] modify [AX DI SI];
  447. u32 radstru32(const void far* dest);
  448. #pragma aux radstru32 = "cld" "xor ecx,ecx" "xor ebx,ebx" "xor edi,edi" 0x26 "lodsb" "cmp al,45" "jne skip2" "mov edi,1" "jmp skip" "lp:" "mov eax,10" "mul ecx" "lea ecx,[eax+ebx]" \
  449. "skip:" 0x26 "lodsb" "skip2:" "cmp al,0x39" "ja dne" "cmp al,0x30" "jb dne" "mov bl,al" "sub bl,0x30" "jmp lp" "dne:" "test edi,1" "jz pos" "neg ecx" "pos:" \
  450. "movzx eax,cx" "shr ecx,16" parm [ES SI] modify [AX BX DX DI SI] value [cx ax];
  451. u32 mult64anddiv(u32 m1,u32 m2,u32 d);
  452. #pragma aux mult64anddiv = "shl ecx,16" "mov cx,ax" "shrd eax,edx,16" "mov ax,si" "mul ecx" "shl edi,16" "mov di,bx" "div edi" "shld edx,eax,16" "and edx,0xffff" "and eax,0xffff" parm [cx ax] [dx si] [di bx] \
  453. modify [ax bx cx dx si di] value [dx ax];
  454. #endif
  455. #endif
  456. RADDEFEND
  457. #define u32neg1 ((u32)(s32)-1)
  458. #define RAD_align(var) var; u8 junk##var[4-(sizeof(var)&3)];
  459. #define RAD_align_after(var) u8 junk##var[4-(sizeof(var)&3)]={0};
  460. #define RAD_align_init(var,val) var=val; u8 junk##var[4-(sizeof(var)&3)]={0};
  461. #define RAD_align_array(var,num) var[num]; u8 junk##var[4-(sizeof(var)&3)];
  462. #define RAD_align_string(var,str) char var[]=str; u8 junk##var[4-(sizeof(var)&3)]={0};
  463. RADEXPFUNC void PTR4* RADEXPLINK radmalloc(u32 numbytes);
  464. RADEXPFUNC void RADEXPLINK radfree(void PTR4* ptr);
  465. #ifdef __WATCOMC__
  466. char bkbhit();
  467. #pragma aux bkbhit = "mov ah,1" "int 0x16" "lahf" "shr eax,14" "and eax,1" "xor al,1" ;
  468. char bgetch();
  469. #pragma aux bgetch = "xor ah,ah" "int 0x16" "test al,0xff" "jnz done" "mov al,ah" "or al,0x80" "done:" modify [AX];
  470. void BreakPoint();
  471. #pragma aux BreakPoint = "int 3";
  472. u8 radinp(u16 p);
  473. #pragma aux radinp = "in al,dx" parm [DX];
  474. u8 radtoupper(u8 p);
  475. #pragma aux radtoupper = "cmp al,'a'" "jb c1" "cmp al,'z'" "ja c1" "sub al,32" "c1:" parm [al] value [al];
  476. void radoutp(u16 p,u8 v);
  477. #pragma aux radoutp = "out dx,al" parm [DX] [AL];
  478. #endif
  479. // for multi-processor machines
  480. #ifdef __RADNT__
  481. #define LockedIncrement(var) _asm { lock inc [var] }
  482. #define LockedDecrement(var) _asm { lock dec [var] }
  483. #else
  484. #define LockedIncrement(var) _asm { inc [var] }
  485. #define LockedDecrement(var) _asm { dec [var] }
  486. #endif
  487. #endif
  488. #endif