2 * Relay calls helper routines
4 * Copyright 1993 Robert J. Amstadt
5 * Copyright 1995 Martin von Loewis
6 * Copyright 1995, 1996, 1997 Alexandre Julliard
7 * Copyright 1997 Eric Youngdale
8 * Copyright 1999 Ulrich Weigand
10 * This library is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU Lesser General Public
12 * License as published by the Free Software Foundation; either
13 * version 2.1 of the License, or (at your option) any later version.
15 * This library is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * Lesser General Public License for more details.
20 * You should have received a copy of the GNU Lesser General Public
21 * License along with this library; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
30 #include "stackframe.h"
34 #if defined(__GNUC__) && !defined(__svr4__)
35 static const int use_stabs
= 1;
37 static const int use_stabs
= 0;
42 static void function_header( FILE *outfile
, const char *name
)
44 fprintf( outfile
, "\n\t.align %d\n", get_alignment(4) );
45 if (use_stabs
) fprintf( outfile
, "\t.stabs \"%s:F1\",36,0,0," PREFIX
"%s\n", name
, name
);
46 #ifdef NEED_TYPE_IN_DEF
47 fprintf( outfile
, "\t.def " PREFIX
"%s; .scl 2; .type 32; .endef\n", name
);
49 fprintf( outfile
, "\t.type " PREFIX
"%s,@function\n", name
);
51 fprintf( outfile
, "\t.globl " PREFIX
"%s\n", name
);
52 fprintf( outfile
, PREFIX
"%s:\n", name
);
56 /*******************************************************************
59 * This routine builds the core routines used in 16->32 thunks:
60 * CallFrom16Word, CallFrom16Long, CallFrom16Register, and CallFrom16Thunk.
62 * These routines are intended to be called via a far call (with 32-bit
63 * operand size) from 16-bit code. The 16-bit code stub must push %bp,
64 * the 32-bit entry point to be called, and the argument conversion
65 * routine to be used (see stack layout below).
67 * The core routine completes the STACK16FRAME on the 16-bit stack and
68 * switches to the 32-bit stack. Then, the argument conversion routine
69 * is called; it gets passed the 32-bit entry point and a pointer to the
70 * 16-bit arguments (on the 16-bit stack) as parameters. (You can either
71 * use conversion routines automatically generated by BuildCallFrom16,
72 * or write your own for special purposes.)
74 * The conversion routine must call the 32-bit entry point, passing it
75 * the converted arguments, and return its return value to the core.
76 * After the conversion routine has returned, the core switches back
77 * to the 16-bit stack, converts the return value to the DX:AX format
78 * (CallFrom16Long), and returns to the 16-bit call stub. All parameters,
79 * including %bp, are popped off the stack.
81 * The 16-bit call stub now returns to the caller, popping the 16-bit
82 * arguments if necessary (pascal calling convention).
84 * In the case of a 'register' function, CallFrom16Register fills a
85 * CONTEXT86 structure with the values all registers had at the point
86 * the first instruction of the 16-bit call stub was about to be
87 * executed. A pointer to this CONTEXT86 is passed as third parameter
88 * to the argument conversion routine, which typically passes it on
89 * to the called 32-bit entry point.
91 * CallFrom16Thunk is a special variant used by the implementation of
92 * the Win95 16->32 thunk functions C16ThkSL and C16ThkSL01 and is
93 * implemented as follows:
94 * On entry, the EBX register is set up to contain a flat pointer to the
95 * 16-bit stack such that EBX+22 points to the first argument.
96 * Then, the entry point is called, while EBP is set up to point
97 * to the return address (on the 32-bit stack).
98 * The called function returns with CX set to the number of bytes
99 * to be popped of the caller's stack.
101 * Stack layout upon entry to the core routine (STACK16FRAME):
103 * (sp+24) word first 16-bit arg
107 * (sp+14) long 32-bit entry point (reused for Win16 mutex recursion count)
108 * (sp+12) word ip of actual entry point (necessary for relay debugging)
109 * (sp+8) long relay (argument conversion) function entry point
110 * (sp+4) long cs of 16-bit entry point
111 * (sp) long ip of 16-bit entry point
113 * Added on the stack:
114 * (sp-2) word saved gs
115 * (sp-4) word saved fs
116 * (sp-6) word saved es
117 * (sp-8) word saved ds
118 * (sp-12) long saved ebp
119 * (sp-16) long saved ecx
120 * (sp-20) long saved edx
121 * (sp-24) long saved previous stack
123 static void BuildCallFrom16Core( FILE *outfile
, int reg_func
, int thunk
, int short_ret
)
125 char *name
= thunk
? "thunk" : reg_func
? "regs" : short_ret
? "word" : "long";
127 /* Function header */
128 if (thunk
) function_header( outfile
, "__wine_call_from_16_thunk" );
129 else if (reg_func
) function_header( outfile
, "__wine_call_from_16_regs" );
130 else if (short_ret
) function_header( outfile
, "__wine_call_from_16_word" );
131 else function_header( outfile
, "__wine_call_from_16_long" );
133 /* Create STACK16FRAME (except STACK32FRAME link) */
134 fprintf( outfile
, "\tpushw %%gs\n" );
135 fprintf( outfile
, "\tpushw %%fs\n" );
136 fprintf( outfile
, "\tpushw %%es\n" );
137 fprintf( outfile
, "\tpushw %%ds\n" );
138 fprintf( outfile
, "\tpushl %%ebp\n" );
139 fprintf( outfile
, "\tpushl %%ecx\n" );
140 fprintf( outfile
, "\tpushl %%edx\n" );
142 /* Save original EFlags register */
143 fprintf( outfile
, "\tpushfl\n" );
147 /* Get Global Offset Table into %ecx */
148 fprintf( outfile
, "\tcall .L__wine_call_from_16_%s.getgot1\n", name
);
149 fprintf( outfile
, ".L__wine_call_from_16_%s.getgot1:\n", name
);
150 fprintf( outfile
, "\tpopl %%ecx\n" );
151 fprintf( outfile
, "\taddl $_GLOBAL_OFFSET_TABLE_+[.-.L__wine_call_from_16_%s.getgot1], %%ecx\n", name
);
156 fprintf( outfile
, "\t.byte 0x2e\n\tmovl " PREFIX
"CallTo16_DataSelector@GOT(%%ecx), %%edx\n" );
157 fprintf( outfile
, "\t.byte 0x2e\n\tmovl (%%edx), %%edx\n" );
160 fprintf( outfile
, "\t.byte 0x2e\n\tmovl " PREFIX
"CallTo16_DataSelector,%%edx\n" );
162 /* Load 32-bit segment registers */
164 fprintf( outfile
, "\tdata16\n");
166 fprintf( outfile
, "\tmovw %%dx, %%ds\n" );
168 fprintf( outfile
, "\tdata16\n");
170 fprintf( outfile
, "\tmovw %%dx, %%es\n" );
174 fprintf( outfile
, "\tmovl " PREFIX
"SYSLEVEL_Win16CurrentTeb@GOT(%%ecx), %%edx\n" );
175 fprintf( outfile
, "\tmovw (%%edx), %%fs\n" );
178 fprintf( outfile
, "\tmovw " PREFIX
"SYSLEVEL_Win16CurrentTeb, %%fs\n" );
180 /* Get address of wine_ldt_copy array into %ecx */
182 fprintf( outfile
, "\tmovl " PREFIX
"wine_ldt_copy@GOT(%%ecx), %%ecx\n" );
184 fprintf( outfile
, "\tmovl $" PREFIX
"wine_ldt_copy, %%ecx\n" );
186 /* Translate STACK16FRAME base to flat offset in %edx */
187 fprintf( outfile
, "\tmovw %%ss, %%dx\n" );
188 fprintf( outfile
, "\tandl $0xfff8, %%edx\n" );
189 fprintf( outfile
, "\tshrl $1, %%edx\n" );
190 fprintf( outfile
, "\tmovl (%%ecx,%%edx), %%edx\n" );
191 fprintf( outfile
, "\tmovzwl %%sp, %%ebp\n" );
192 fprintf( outfile
, "\tleal (%%ebp,%%edx), %%edx\n" );
194 /* Get saved flags into %ecx */
195 fprintf( outfile
, "\tpopl %%ecx\n" );
197 /* Get the 32-bit stack pointer from the TEB and complete STACK16FRAME */
198 fprintf( outfile
, "\t.byte 0x64\n\tmovl (%d), %%ebp\n", STACKOFFSET
);
199 fprintf( outfile
, "\tpushl %%ebp\n" );
203 fprintf( outfile
,"\tdata16\n");
205 fprintf( outfile
, "\t.byte 0x64\n\tmovw %%ss, (%d)\n", STACKOFFSET
+ 2 );
206 fprintf( outfile
, "\t.byte 0x64\n\tmovw %%sp, (%d)\n", STACKOFFSET
);
207 fprintf( outfile
, "\tpushl %%ds\n" );
208 fprintf( outfile
, "\tpopl %%ss\n" );
209 fprintf( outfile
, "\tmovl %%ebp, %%esp\n" );
210 fprintf( outfile
, "\taddl $%d, %%ebp\n", STRUCTOFFSET(STACK32FRAME
, ebp
) );
214 STACK16FRAME is completely set up
215 DS, ES, SS: flat data segment
217 ESP: points to last STACK32FRAME
218 EBP: points to ebp member of last STACK32FRAME
219 EDX: points to current STACK16FRAME
220 ECX: contains saved flags
221 all other registers: unchanged */
223 /* Special case: C16ThkSL stub */
226 /* Set up registers as expected and call thunk */
227 fprintf( outfile
, "\tleal %d(%%edx), %%ebx\n", sizeof(STACK16FRAME
)-22 );
228 fprintf( outfile
, "\tleal -4(%%esp), %%ebp\n" );
230 fprintf( outfile
, "\tcall *%d(%%edx)\n", STACK16OFFSET(entry_point
) );
232 /* Switch stack back */
233 fprintf( outfile
, "\t.byte 0x64\n\tmovw (%d), %%ss\n", STACKOFFSET
+2 );
234 fprintf( outfile
, "\t.byte 0x64\n\tmovzwl (%d), %%esp\n", STACKOFFSET
);
235 fprintf( outfile
, "\t.byte 0x64\n\tpopl (%d)\n", STACKOFFSET
);
237 /* Restore registers and return directly to caller */
238 fprintf( outfile
, "\taddl $8, %%esp\n" );
239 fprintf( outfile
, "\tpopl %%ebp\n" );
240 fprintf( outfile
, "\tpopw %%ds\n" );
241 fprintf( outfile
, "\tpopw %%es\n" );
242 fprintf( outfile
, "\tpopw %%fs\n" );
243 fprintf( outfile
, "\tpopw %%gs\n" );
244 fprintf( outfile
, "\taddl $20, %%esp\n" );
246 fprintf( outfile
, "\txorb %%ch, %%ch\n" );
247 fprintf( outfile
, "\tpopl %%ebx\n" );
248 fprintf( outfile
, "\taddw %%cx, %%sp\n" );
249 fprintf( outfile
, "\tpush %%ebx\n" );
251 fprintf( outfile
, "\t.byte 0x66\n" );
252 fprintf( outfile
, "\tlret\n" );
258 /* Build register CONTEXT */
261 fprintf( outfile
, "\tsubl $%d, %%esp\n", sizeof(CONTEXT86
) );
263 fprintf( outfile
, "\tmovl %%ecx, %d(%%esp)\n", CONTEXTOFFSET(EFlags
) );
265 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(Eax
) );
266 fprintf( outfile
, "\tmovl %%ebx, %d(%%esp)\n", CONTEXTOFFSET(Ebx
) );
267 fprintf( outfile
, "\tmovl %%esi, %d(%%esp)\n", CONTEXTOFFSET(Esi
) );
268 fprintf( outfile
, "\tmovl %%edi, %d(%%esp)\n", CONTEXTOFFSET(Edi
) );
270 fprintf( outfile
, "\tmovl %d(%%edx), %%eax\n", STACK16OFFSET(ebp
) );
271 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(Ebp
) );
272 fprintf( outfile
, "\tmovl %d(%%edx), %%eax\n", STACK16OFFSET(ecx
) );
273 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(Ecx
) );
274 fprintf( outfile
, "\tmovl %d(%%edx), %%eax\n", STACK16OFFSET(edx
) );
275 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(Edx
) );
277 fprintf( outfile
, "\tmovzwl %d(%%edx), %%eax\n", STACK16OFFSET(ds
) );
278 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(SegDs
) );
279 fprintf( outfile
, "\tmovzwl %d(%%edx), %%eax\n", STACK16OFFSET(es
) );
280 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(SegEs
) );
281 fprintf( outfile
, "\tmovzwl %d(%%edx), %%eax\n", STACK16OFFSET(fs
) );
282 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(SegFs
) );
283 fprintf( outfile
, "\tmovzwl %d(%%edx), %%eax\n", STACK16OFFSET(gs
) );
284 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(SegGs
) );
286 fprintf( outfile
, "\tmovzwl %d(%%edx), %%eax\n", STACK16OFFSET(cs
) );
287 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(SegCs
) );
288 fprintf( outfile
, "\tmovzwl %d(%%edx), %%eax\n", STACK16OFFSET(ip
) );
289 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(Eip
) );
291 fprintf( outfile
, "\t.byte 0x64\n\tmovzwl (%d), %%eax\n", STACKOFFSET
+2 );
292 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(SegSs
) );
293 fprintf( outfile
, "\t.byte 0x64\n\tmovzwl (%d), %%eax\n", STACKOFFSET
);
294 fprintf( outfile
, "\taddl $%d, %%eax\n", STACK16OFFSET(ip
) );
295 fprintf( outfile
, "\tmovl %%eax, %d(%%esp)\n", CONTEXTOFFSET(Esp
) );
297 fprintf( outfile
, "\tfsave %d(%%esp)\n", CONTEXTOFFSET(FloatSave
) );
300 /* Push address of CONTEXT86 structure -- popped by the relay routine */
301 fprintf( outfile
, "\tpushl %%esp\n" );
305 /* Print debug info before call */
310 fprintf( outfile
, "\tpushl %%ebx\n" );
312 /* Get Global Offset Table into %ebx (for PLT call) */
313 fprintf( outfile
, "\tcall .L__wine_call_from_16_%s.getgot2\n", name
);
314 fprintf( outfile
, ".L__wine_call_from_16_%s.getgot2:\n", name
);
315 fprintf( outfile
, "\tpopl %%ebx\n" );
316 fprintf( outfile
, "\taddl $_GLOBAL_OFFSET_TABLE_+[.-.L__wine_call_from_16_%s.getgot2], %%ebx\n", name
);
319 fprintf( outfile
, "\tpushl %%edx\n" );
321 fprintf( outfile
, "\tleal -%d(%%ebp), %%eax\n\tpushl %%eax\n",
322 sizeof(CONTEXT
) + STRUCTOFFSET(STACK32FRAME
, ebp
) );
324 fprintf( outfile
, "\tpushl $0\n" );
327 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallFrom16@PLT\n ");
329 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallFrom16\n ");
331 fprintf( outfile
, "\tpopl %%edx\n" );
332 fprintf( outfile
, "\tpopl %%edx\n" );
335 fprintf( outfile
, "\tpopl %%ebx\n" );
338 /* Call relay routine (which will call the API entry point) */
339 fprintf( outfile
, "\tleal %d(%%edx), %%eax\n", sizeof(STACK16FRAME
) );
340 fprintf( outfile
, "\tpushl %%eax\n" );
341 fprintf( outfile
, "\tpushl %d(%%edx)\n", STACK16OFFSET(entry_point
) );
342 fprintf( outfile
, "\tcall *%d(%%edx)\n", STACK16OFFSET(relay
) );
344 /* Print debug info after call */
349 fprintf( outfile
, "\tpushl %%ebx\n" );
351 /* Get Global Offset Table into %ebx (for PLT call) */
352 fprintf( outfile
, "\tcall .L__wine_call_from_16_%s.getgot3\n", name
);
353 fprintf( outfile
, ".L__wine_call_from_16_%s.getgot3:\n", name
);
354 fprintf( outfile
, "\tpopl %%ebx\n" );
355 fprintf( outfile
, "\taddl $_GLOBAL_OFFSET_TABLE_+[.-.L__wine_call_from_16_%s.getgot3], %%ebx\n", name
);
358 fprintf( outfile
, "\tpushl %%eax\n" );
360 fprintf( outfile
, "\tleal -%d(%%ebp), %%eax\n\tpushl %%eax\n",
361 sizeof(CONTEXT
) + STRUCTOFFSET(STACK32FRAME
, ebp
) );
363 fprintf( outfile
, "\tpushl $0\n" );
366 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallFrom16Ret@PLT\n ");
368 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallFrom16Ret\n ");
370 fprintf( outfile
, "\tpopl %%eax\n" );
371 fprintf( outfile
, "\tpopl %%eax\n" );
374 fprintf( outfile
, "\tpopl %%ebx\n" );
380 fprintf( outfile
, "\tmovl %%esp, %%ebx\n" );
382 /* Switch stack back */
383 fprintf( outfile
, "\t.byte 0x64\n\tmovw (%d), %%ss\n", STACKOFFSET
+2 );
384 fprintf( outfile
, "\t.byte 0x64\n\tmovzwl (%d), %%esp\n", STACKOFFSET
);
385 fprintf( outfile
, "\t.byte 0x64\n\tpopl (%d)\n", STACKOFFSET
);
387 /* Get return address to CallFrom16 stub */
388 fprintf( outfile
, "\taddw $%d, %%sp\n", STACK16OFFSET(callfrom_ip
)-4 );
389 fprintf( outfile
, "\tpopl %%eax\n" );
390 fprintf( outfile
, "\tpopl %%edx\n" );
392 /* Restore all registers from CONTEXT */
393 fprintf( outfile
, "\tmovw %d(%%ebx), %%ss\n", CONTEXTOFFSET(SegSs
) );
394 fprintf( outfile
, "\tmovl %d(%%ebx), %%esp\n", CONTEXTOFFSET(Esp
) );
395 fprintf( outfile
, "\taddl $4, %%esp\n" ); /* room for final return address */
397 fprintf( outfile
, "\tpushw %d(%%ebx)\n", CONTEXTOFFSET(SegCs
) );
398 fprintf( outfile
, "\tpushw %d(%%ebx)\n", CONTEXTOFFSET(Eip
) );
399 fprintf( outfile
, "\tpushl %%edx\n" );
400 fprintf( outfile
, "\tpushl %%eax\n" );
401 fprintf( outfile
, "\tpushl %d(%%ebx)\n", CONTEXTOFFSET(EFlags
) );
402 fprintf( outfile
, "\tpushl %d(%%ebx)\n", CONTEXTOFFSET(SegDs
) );
404 fprintf( outfile
, "\tmovw %d(%%ebx), %%es\n", CONTEXTOFFSET(SegEs
) );
405 fprintf( outfile
, "\tmovw %d(%%ebx), %%fs\n", CONTEXTOFFSET(SegFs
) );
406 fprintf( outfile
, "\tmovw %d(%%ebx), %%gs\n", CONTEXTOFFSET(SegGs
) );
408 fprintf( outfile
, "\tmovl %d(%%ebx), %%ebp\n", CONTEXTOFFSET(Ebp
) );
409 fprintf( outfile
, "\tmovl %d(%%ebx), %%esi\n", CONTEXTOFFSET(Esi
) );
410 fprintf( outfile
, "\tmovl %d(%%ebx), %%edi\n", CONTEXTOFFSET(Edi
) );
411 fprintf( outfile
, "\tmovl %d(%%ebx), %%eax\n", CONTEXTOFFSET(Eax
) );
412 fprintf( outfile
, "\tmovl %d(%%ebx), %%edx\n", CONTEXTOFFSET(Edx
) );
413 fprintf( outfile
, "\tmovl %d(%%ebx), %%ecx\n", CONTEXTOFFSET(Ecx
) );
414 fprintf( outfile
, "\tmovl %d(%%ebx), %%ebx\n", CONTEXTOFFSET(Ebx
) );
416 fprintf( outfile
, "\tpopl %%ds\n" );
417 fprintf( outfile
, "\tpopfl\n" );
418 fprintf( outfile
, "\tlret\n" );
422 /* Switch stack back */
423 fprintf( outfile
, "\t.byte 0x64\n\tmovw (%d), %%ss\n", STACKOFFSET
+2 );
424 fprintf( outfile
, "\t.byte 0x64\n\tmovzwl (%d), %%esp\n", STACKOFFSET
);
425 fprintf( outfile
, "\t.byte 0x64\n\tpopl (%d)\n", STACKOFFSET
);
427 /* Restore registers */
428 fprintf( outfile
, "\tpopl %%edx\n" );
429 fprintf( outfile
, "\tpopl %%ecx\n" );
430 fprintf( outfile
, "\tpopl %%ebp\n" );
431 fprintf( outfile
, "\tpopw %%ds\n" );
432 fprintf( outfile
, "\tpopw %%es\n" );
433 fprintf( outfile
, "\tpopw %%fs\n" );
434 fprintf( outfile
, "\tpopw %%gs\n" );
436 /* Prepare return value and set flags accordingly */
438 fprintf( outfile
, "\tshldl $16, %%eax, %%edx\n" );
439 fprintf( outfile
, "\torl %%eax, %%eax\n" );
441 /* Return to return stub which will return to caller */
442 fprintf( outfile
, "\tlret $12\n" );
447 /*******************************************************************
450 * This routine builds the core routines used in 32->16 thunks:
452 * extern void WINAPI wine_call_to_16_word( SEGPTR target, int nb_args );
453 * extern void WINAPI wine_call_to_16_long( SEGPTR target, int nb_args );
454 * extern void WINAPI wine_call_to_16_regs_short( const CONTEXT86 *context, int nb_args );
455 * extern void WINAPI wine_call_to_16_regs_long ( const CONTEXT86 *context, int nb_args );
457 * These routines can be called directly from 32-bit code.
459 * All routines expect that the 16-bit stack contents (arguments) were
460 * already set up by the caller; nb_args must contain the number of bytes
461 * to be conserved. The 16-bit SS:SP will be set accordinly.
463 * All other registers are either taken from the CONTEXT86 structure
464 * or else set to default values. The target routine address is either
465 * given directly or taken from the CONTEXT86.
467 * If you want to call a 16-bit routine taking only standard argument types
468 * (WORD and LONG), you can also have an appropriate argument conversion
469 * stub automatically generated (see BuildCallTo16); you'd then call this
470 * stub, which in turn would prepare the 16-bit stack and call the appropiate
474 static void BuildCallTo16Core( FILE *outfile
, int short_ret
, int reg_func
)
476 char *name
= reg_func
== 2 ? "regs_long" :
477 reg_func
== 1 ? "regs_short" :
478 short_ret
? "word" : "long";
480 /* Function header */
481 if (reg_func
== 2) function_header( outfile
, "wine_call_to_16_regs_long" );
482 else if (reg_func
== 1) function_header( outfile
, "wine_call_to_16_regs_short" );
483 else if (short_ret
) function_header( outfile
, "wine_call_to_16_word" );
484 else function_header( outfile
, "wine_call_to_16_long" );
486 /* Function entry sequence */
487 fprintf( outfile
, "\tpushl %%ebp\n" );
488 fprintf( outfile
, "\tmovl %%esp, %%ebp\n" );
490 /* Save the 32-bit registers */
491 fprintf( outfile
, "\tpushl %%ebx\n" );
492 fprintf( outfile
, "\tpushl %%ecx\n" );
493 fprintf( outfile
, "\tpushl %%edx\n" );
494 fprintf( outfile
, "\tpushl %%esi\n" );
495 fprintf( outfile
, "\tpushl %%edi\n" );
499 /* Get Global Offset Table into %ebx */
500 fprintf( outfile
, "\tcall .Lwine_call_to_16_%s.getgot1\n", name
);
501 fprintf( outfile
, ".Lwine_call_to_16_%s.getgot1:\n", name
);
502 fprintf( outfile
, "\tpopl %%ebx\n" );
503 fprintf( outfile
, "\taddl $_GLOBAL_OFFSET_TABLE_+[.-.Lwine_call_to_16_%s.getgot1], %%ebx\n", name
);
506 /* Enter Win16 Mutex */
508 fprintf( outfile
, "\tcall " PREFIX
"_EnterWin16Lock@PLT\n" );
510 fprintf( outfile
, "\tcall " PREFIX
"_EnterWin16Lock\n" );
512 /* Print debugging info */
515 /* Push flags, number of arguments, and target */
516 fprintf( outfile
, "\tpushl $%d\n", reg_func
);
517 fprintf( outfile
, "\tpushl 12(%%ebp)\n" );
518 fprintf( outfile
, "\tpushl 8(%%ebp)\n" );
521 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallTo16@PLT\n" );
523 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallTo16\n" );
525 fprintf( outfile
, "\taddl $12, %%esp\n" );
528 /* Get return address */
531 fprintf( outfile
, "\tmovl " PREFIX
"CallTo16_RetAddr@GOT(%%ebx), %%ecx\n" );
532 fprintf( outfile
, "\tmovl " PREFIX
"(%%ecx), %%ecx\n" );
535 fprintf( outfile
, "\tmovl " PREFIX
"CallTo16_RetAddr, %%ecx\n" );
537 /* Call the actual CallTo16 routine (simulate a lcall) */
538 fprintf( outfile
, "\tpushl %%cs\n" );
539 fprintf( outfile
, "\tcall .Lwine_call_to_16_%s\n", name
);
543 /* Convert and push return value */
546 fprintf( outfile
, "\tmovzwl %%ax, %%eax\n" );
547 fprintf( outfile
, "\tpushl %%eax\n" );
551 fprintf( outfile
, "\tshll $16,%%edx\n" );
552 fprintf( outfile
, "\tmovw %%ax,%%dx\n" );
553 fprintf( outfile
, "\tpushl %%edx\n" );
559 * Modify CONTEXT86 structure to contain new values
561 * NOTE: We restore only EAX, EBX, EDX, EDX, EBP, and ESP.
562 * The segment registers as well as ESI and EDI should
563 * not be modified by a well-behaved 16-bit routine in
564 * any case. [If necessary, we could restore them as well,
565 * at the cost of a somewhat less efficient return path.]
568 fprintf( outfile
, "\tmovl %d(%%esp), %%edi\n", STACK32OFFSET(target
)-12 );
569 fprintf( outfile
, "\tmovl %%eax, %d(%%edi)\n", CONTEXTOFFSET(Eax
) );
570 fprintf( outfile
, "\tmovl %%ebx, %d(%%edi)\n", CONTEXTOFFSET(Ebx
) );
571 fprintf( outfile
, "\tmovl %%ecx, %d(%%edi)\n", CONTEXTOFFSET(Ecx
) );
572 fprintf( outfile
, "\tmovl %%edx, %d(%%edi)\n", CONTEXTOFFSET(Edx
) );
573 fprintf( outfile
, "\tmovl %%ebp, %d(%%edi)\n", CONTEXTOFFSET(Ebp
) );
574 fprintf( outfile
, "\tmovl %%esi, %d(%%edi)\n", CONTEXTOFFSET(Esp
) );
575 /* The return glue code saved %esp into %esi */
577 fprintf( outfile
, "\tpushl %%edi\n" );
582 /* Get Global Offset Table into %ebx (might have been overwritten) */
583 fprintf( outfile
, "\tcall .Lwine_call_to_16_%s.getgot2\n", name
);
584 fprintf( outfile
, ".Lwine_call_to_16_%s.getgot2:\n", name
);
585 fprintf( outfile
, "\tpopl %%ebx\n" );
586 fprintf( outfile
, "\taddl $_GLOBAL_OFFSET_TABLE_+[.-.Lwine_call_to_16_%s.getgot2], %%ebx\n", name
);
589 /* Print debugging info */
592 fprintf( outfile
, "\tpushl $%d\n", reg_func
);
595 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallTo16Ret@PLT\n" );
597 fprintf( outfile
, "\tcall " PREFIX
"RELAY_DebugCallTo16Ret\n" );
599 fprintf( outfile
, "\taddl $4, %%esp\n" );
602 /* Leave Win16 Mutex */
604 fprintf( outfile
, "\tcall " PREFIX
"_LeaveWin16Lock@PLT\n" );
606 fprintf( outfile
, "\tcall " PREFIX
"_LeaveWin16Lock\n" );
608 /* Get return value */
609 fprintf( outfile
, "\tpopl %%eax\n" );
611 /* Restore the 32-bit registers */
612 fprintf( outfile
, "\tpopl %%edi\n" );
613 fprintf( outfile
, "\tpopl %%esi\n" );
614 fprintf( outfile
, "\tpopl %%edx\n" );
615 fprintf( outfile
, "\tpopl %%ecx\n" );
616 fprintf( outfile
, "\tpopl %%ebx\n" );
618 /* Function exit sequence */
619 fprintf( outfile
, "\tpopl %%ebp\n" );
620 fprintf( outfile
, "\tret $8\n" );
623 /* Start of the actual CallTo16 routine */
625 fprintf( outfile
, ".Lwine_call_to_16_%s:\n", name
);
627 /* Complete STACK32FRAME */
628 fprintf( outfile
, "\t.byte 0x64\n\tpushl (%d)\n", STACKOFFSET
);
629 fprintf( outfile
, "\tmovl %%esp,%%edx\n" );
631 /* Switch to the 16-bit stack */
633 fprintf( outfile
,"\tdata16\n");
635 fprintf( outfile
, "\t.byte 0x64\n\tmovw (%d),%%ss\n", STACKOFFSET
+ 2);
636 fprintf( outfile
, "\t.byte 0x64\n\tmovw (%d),%%sp\n", STACKOFFSET
);
637 fprintf( outfile
, "\t.byte 0x64\n\tmovl %%edx,(%d)\n", STACKOFFSET
);
639 /* Make %bp point to the previous stackframe (built by CallFrom16) */
640 fprintf( outfile
, "\tmovzwl %%sp,%%ebp\n" );
641 fprintf( outfile
, "\tleal %d(%%ebp),%%ebp\n", STACK16OFFSET(bp
) );
643 /* Add the specified offset to the new sp */
644 fprintf( outfile
, "\tsubw %d(%%edx), %%sp\n", STACK32OFFSET(nb_args
) );
646 /* Push the return address
647 * With sreg suffix, we push 16:16 address (normal lret)
648 * With lreg suffix, we push 16:32 address (0x66 lret, for KERNEL32_45)
651 fprintf( outfile
, "\tpushl %%ecx\n" );
654 fprintf( outfile
, "\tshldl $16, %%ecx, %%eax\n" );
655 fprintf( outfile
, "\tpushw $0\n" );
656 fprintf( outfile
, "\tpushw %%ax\n" );
657 fprintf( outfile
, "\tpushw $0\n" );
658 fprintf( outfile
, "\tpushw %%cx\n" );
663 /* Push the called routine address */
664 fprintf( outfile
, "\tmovl %d(%%edx),%%edx\n", STACK32OFFSET(target
) );
665 fprintf( outfile
, "\tpushw %d(%%edx)\n", CONTEXTOFFSET(SegCs
) );
666 fprintf( outfile
, "\tpushw %d(%%edx)\n", CONTEXTOFFSET(Eip
) );
668 /* Get the registers */
669 fprintf( outfile
, "\tpushw %d(%%edx)\n", CONTEXTOFFSET(SegDs
) );
670 fprintf( outfile
, "\tmovl %d(%%edx),%%eax\n", CONTEXTOFFSET(SegEs
) );
671 fprintf( outfile
, "\tmovw %%ax,%%es\n" );
672 fprintf( outfile
, "\tmovl %d(%%edx),%%eax\n", CONTEXTOFFSET(SegFs
) );
673 fprintf( outfile
, "\tmovw %%ax,%%fs\n" );
674 fprintf( outfile
, "\tmovl %d(%%edx),%%ebp\n", CONTEXTOFFSET(Ebp
) );
675 fprintf( outfile
, "\tmovl %d(%%edx),%%esi\n", CONTEXTOFFSET(Esi
) );
676 fprintf( outfile
, "\tmovl %d(%%edx),%%edi\n", CONTEXTOFFSET(Edi
) );
677 fprintf( outfile
, "\tmovl %d(%%edx),%%eax\n", CONTEXTOFFSET(Eax
) );
678 fprintf( outfile
, "\tmovl %d(%%edx),%%ebx\n", CONTEXTOFFSET(Ebx
) );
679 fprintf( outfile
, "\tmovl %d(%%edx),%%ecx\n", CONTEXTOFFSET(Ecx
) );
680 fprintf( outfile
, "\tmovl %d(%%edx),%%edx\n", CONTEXTOFFSET(Edx
) );
682 /* Get the 16-bit ds */
683 fprintf( outfile
, "\tpopw %%ds\n" );
685 else /* not a register function */
687 /* Push the called routine address */
688 fprintf( outfile
, "\tpushl %d(%%edx)\n", STACK32OFFSET(target
) );
690 /* Set %fs to the value saved by the last CallFrom16 */
691 fprintf( outfile
, "\tmovw %d(%%ebp),%%ax\n", STACK16OFFSET(fs
)-STACK16OFFSET(bp
) );
692 fprintf( outfile
, "\tmovw %%ax,%%fs\n" );
694 /* Set %ds and %es (and %ax just in case) equal to %ss */
695 fprintf( outfile
, "\tmovw %%ss,%%ax\n" );
696 fprintf( outfile
, "\tmovw %%ax,%%ds\n" );
697 fprintf( outfile
, "\tmovw %%ax,%%es\n" );
700 /* Jump to the called routine */
701 fprintf( outfile
, "\t.byte 0x66\n" );
702 fprintf( outfile
, "\tlret\n" );
706 /*******************************************************************
709 * Build the return code for 16-bit callbacks
711 static void BuildRet16Func( FILE *outfile
)
714 * Note: This must reside in the .data section to allow
715 * run-time relocation of the SYSLEVEL_Win16CurrentTeb symbol
718 function_header( outfile
, "CallTo16_Ret" );
720 /* Save %esp into %esi */
721 fprintf( outfile
, "\tmovl %%esp,%%esi\n" );
723 /* Restore 32-bit segment registers */
725 fprintf( outfile
, "\t.byte 0x2e\n\tmovl " PREFIX
"CallTo16_DataSelector-" PREFIX
"Call16_Ret_Start,%%edi\n" );
727 fprintf( outfile
, "\tdata16\n");
729 fprintf( outfile
, "\tmovw %%di,%%ds\n" );
731 fprintf( outfile
, "\tdata16\n");
733 fprintf( outfile
, "\tmovw %%di,%%es\n" );
735 fprintf( outfile
, "\tmovw " PREFIX
"SYSLEVEL_Win16CurrentTeb,%%fs\n" );
737 /* Restore the 32-bit stack */
740 fprintf( outfile
, "\tdata16\n");
742 fprintf( outfile
, "\tmovw %%di,%%ss\n" );
743 fprintf( outfile
, "\t.byte 0x64\n\tmovl (%d),%%esp\n", STACKOFFSET
);
744 fprintf( outfile
, "\t.byte 0x64\n\tpopl (%d)\n", STACKOFFSET
);
746 /* Return to caller */
748 fprintf( outfile
, "\tlret\n" );
750 /* Declare the return address and data selector variables */
752 fprintf( outfile
, "\n\t.align %d\n", get_alignment(4) );
753 fprintf( outfile
, "\t.globl " PREFIX
"CallTo16_DataSelector\n" );
754 fprintf( outfile
, PREFIX
"CallTo16_DataSelector:\t.long 0\n" );
755 fprintf( outfile
, "\t.globl " PREFIX
"CallTo16_RetAddr\n" );
756 fprintf( outfile
, PREFIX
"CallTo16_RetAddr:\t.long 0\n" );
760 /*******************************************************************
761 * BuildCallTo32CBClient
763 * Call a CBClient relay stub from 32-bit code (KERNEL.620).
765 * Since the relay stub is itself 32-bit, this should not be a problem;
766 * unfortunately, the relay stubs are expected to switch back to a
767 * 16-bit stack (and 16-bit code) after completion :-(
769 * This would conflict with our 16- vs. 32-bit stack handling, so
770 * we simply switch *back* to our 32-bit stack before returning to
773 * The CBClient relay stub expects to be called with the following
774 * 16-bit stack layout, and with ebp and ebx pointing into the 16-bit
775 * stack at the designated places:
778 * (ebp+14) original arguments to the callback routine
779 * (ebp+10) far return address to original caller
780 * (ebp+6) Thunklet target address
781 * (ebp+2) Thunklet relay ID code
782 * (ebp) BP (saved by CBClientGlueSL)
783 * (ebp-2) SI (saved by CBClientGlueSL)
784 * (ebp-4) DI (saved by CBClientGlueSL)
785 * (ebp-6) DS (saved by CBClientGlueSL)
787 * ... buffer space used by the 16-bit side glue for temp copies
789 * (ebx+4) far return address to 16-bit side glue code
790 * (ebx) saved 16-bit ss:sp (pointing to ebx+4)
792 * The 32-bit side glue code accesses both the original arguments (via ebp)
793 * and the temporary copies prepared by the 16-bit side glue (via ebx).
794 * After completion, the stub will load ss:sp from the buffer at ebx
795 * and perform a far return to 16-bit code.
797 * To trick the relay stub into returning to us, we replace the 16-bit
798 * return address to the glue code by a cs:ip pair pointing to our
799 * return entry point (the original return address is saved first).
800 * Our return stub thus called will then reload the 32-bit ss:esp and
801 * return to 32-bit code (by using and ss:esp value that we have also
802 * pushed onto the 16-bit stack before and a cs:eip values found at
803 * that position on the 32-bit stack). The ss:esp to be restored is
804 * found relative to the 16-bit stack pointer at:
807 * (ebx-8) sp (32-bit stack pointer)
809 * The second variant of this routine, CALL32_CBClientEx, which is used
810 * to implement KERNEL.621, has to cope with yet another problem: Here,
811 * the 32-bit side directly returns to the caller of the CBClient thunklet,
812 * restoring registers saved by CBClientGlueSL and cleaning up the stack.
813 * As we have to return to our 32-bit code first, we have to adapt the
814 * layout of our temporary area so as to include values for the registers
815 * that are to be restored, and later (in the implementation of KERNEL.621)
816 * we *really* restore them. The return stub restores DS, DI, SI, and BP
817 * from the stack, skips the next 8 bytes (CBClient relay code / target),
818 * and then performs a lret NN, where NN is the number of arguments to be
819 * removed. Thus, we prepare our temporary area as follows:
821 * (ebx+22) 16-bit cs (this segment)
822 * (ebx+20) 16-bit ip ('16-bit' return entry point)
823 * (ebx+16) 32-bit ss (flat)
824 * (ebx+12) 32-bit sp (32-bit stack pointer)
825 * (ebx+10) 16-bit bp (points to ebx+24)
826 * (ebx+8) 16-bit si (ignored)
827 * (ebx+6) 16-bit di (ignored)
828 * (ebx+4) 16-bit ds (we actually use the flat DS here)
829 * (ebx+2) 16-bit ss (16-bit stack segment)
830 * (ebx+0) 16-bit sp (points to ebx+4)
832 * Note that we ensure that DS is not changed and remains the flat segment,
833 * and the 32-bit stack pointer our own return stub needs fits just
834 * perfectly into the 8 bytes that are skipped by the Windows stub.
835 * One problem is that we have to determine the number of removed arguments,
836 * as these have to be really removed in KERNEL.621. Thus, the BP value
837 * that we place in the temporary area to be restored, contains the value
838 * that SP would have if no arguments were removed. By comparing the actual
839 * value of SP with this value in our return stub we can compute the number
840 * of removed arguments. This is then returned to KERNEL.621.
842 * The stack layout of this function:
843 * (ebp+20) nArgs pointer to variable receiving nr. of args (Ex only)
844 * (ebp+16) esi pointer to caller's esi value
845 * (ebp+12) arg ebp value to be set for relay stub
846 * (ebp+8) func CBClient relay stub address
850 static void BuildCallTo32CBClient( FILE *outfile
, BOOL isEx
)
852 char *name
= isEx
? "CBClientEx" : "CBClient";
853 int size
= isEx
? 24 : 12;
855 /* Function header */
857 fprintf( outfile
, "\n\t.align %d\n", get_alignment(4) );
859 fprintf( outfile
, ".stabs \"CALL32_%s:F1\",36,0,0," PREFIX
"CALL32_%s\n", name
, name
);
860 fprintf( outfile
, "\t.globl " PREFIX
"CALL32_%s\n", name
);
861 fprintf( outfile
, PREFIX
"CALL32_%s:\n", name
);
865 fprintf( outfile
, "\tpushl %%ebp\n" );
866 fprintf( outfile
, "\tmovl %%esp,%%ebp\n" );
867 fprintf( outfile
, "\tpushl %%edi\n" );
868 fprintf( outfile
, "\tpushl %%esi\n" );
869 fprintf( outfile
, "\tpushl %%ebx\n" );
871 /* Get the 16-bit stack */
873 fprintf( outfile
, "\t.byte 0x64\n\tmovl (%d),%%ebx\n", STACKOFFSET
);
875 /* Convert it to a flat address */
877 fprintf( outfile
, "\tshldl $16,%%ebx,%%eax\n" );
878 fprintf( outfile
, "\tandl $0xfff8,%%eax\n" );
879 fprintf( outfile
, "\tshrl $1,%%eax\n" );
880 fprintf( outfile
, "\tmovl " PREFIX
"wine_ldt_copy(%%eax),%%esi\n" );
881 fprintf( outfile
, "\tmovw %%bx,%%ax\n" );
882 fprintf( outfile
, "\taddl %%eax,%%esi\n" );
884 /* Allocate temporary area (simulate STACK16_PUSH) */
886 fprintf( outfile
, "\tpushf\n" );
887 fprintf( outfile
, "\tcld\n" );
888 fprintf( outfile
, "\tleal -%d(%%esi), %%edi\n", size
);
889 fprintf( outfile
, "\tmovl $%d, %%ecx\n", sizeof(STACK16FRAME
) );
890 fprintf( outfile
, "\trep\n\tmovsb\n" );
891 fprintf( outfile
, "\tpopf\n" );
893 fprintf( outfile
, "\t.byte 0x64\n\tsubw $%d,(%d)\n", size
, STACKOFFSET
);
895 fprintf( outfile
, "\tpushl %%edi\n" ); /* remember address */
897 /* Set up temporary area */
901 fprintf( outfile
, "\tleal 4(%%edi), %%edi\n" );
903 fprintf( outfile
, "\tleal -8(%%esp), %%eax\n" );
904 fprintf( outfile
, "\tmovl %%eax, -8(%%edi)\n" ); /* 32-bit sp */
906 fprintf( outfile
, "\tmovw %%ss, %%ax\n" );
907 fprintf( outfile
, "\tandl $0x0000ffff, %%eax\n" );
908 fprintf( outfile
, "\tmovl %%eax, -4(%%edi)\n" ); /* 32-bit ss */
910 fprintf( outfile
, "\taddl $%d, %%ebx\n", sizeof(STACK16FRAME
)-size
+4 + 4 );
911 fprintf( outfile
, "\tmovl %%ebx, 0(%%edi)\n" ); /* 16-bit ss:sp */
913 fprintf( outfile
, "\tmovl " PREFIX
"CALL32_%s_RetAddr, %%eax\n", name
);
914 fprintf( outfile
, "\tmovl %%eax, 4(%%edi)\n" ); /* overwrite return address */
918 fprintf( outfile
, "\taddl $%d, %%ebx\n", sizeof(STACK16FRAME
)-size
+4 );
919 fprintf( outfile
, "\tmovl %%ebx, 0(%%edi)\n" );
921 fprintf( outfile
, "\tmovw %%ds, %%ax\n" );
922 fprintf( outfile
, "\tmovw %%ax, 4(%%edi)\n" );
924 fprintf( outfile
, "\taddl $20, %%ebx\n" );
925 fprintf( outfile
, "\tmovw %%bx, 10(%%edi)\n" );
927 fprintf( outfile
, "\tleal -8(%%esp), %%eax\n" );
928 fprintf( outfile
, "\tmovl %%eax, 12(%%edi)\n" );
930 fprintf( outfile
, "\tmovw %%ss, %%ax\n" );
931 fprintf( outfile
, "\tandl $0x0000ffff, %%eax\n" );
932 fprintf( outfile
, "\tmovl %%eax, 16(%%edi)\n" );
934 fprintf( outfile
, "\tmovl " PREFIX
"CALL32_%s_RetAddr, %%eax\n", name
);
935 fprintf( outfile
, "\tmovl %%eax, 20(%%edi)\n" );
938 /* Set up registers and call CBClient relay stub (simulating a far call) */
940 fprintf( outfile
, "\tmovl 16(%%ebp), %%esi\n" );
941 fprintf( outfile
, "\tmovl (%%esi), %%esi\n" );
943 fprintf( outfile
, "\tmovl %%edi, %%ebx\n" );
944 fprintf( outfile
, "\tmovl 8(%%ebp), %%eax\n" );
945 fprintf( outfile
, "\tmovl 12(%%ebp), %%ebp\n" );
947 fprintf( outfile
, "\tpushl %%cs\n" );
948 fprintf( outfile
, "\tcall *%%eax\n" );
950 /* Return new esi value to caller */
952 fprintf( outfile
, "\tmovl 32(%%esp), %%edi\n" );
953 fprintf( outfile
, "\tmovl %%esi, (%%edi)\n" );
955 /* Cleanup temporary area (simulate STACK16_POP) */
957 fprintf( outfile
, "\tpop %%esi\n" );
959 fprintf( outfile
, "\tpushf\n" );
960 fprintf( outfile
, "\tstd\n" );
961 fprintf( outfile
, "\tdec %%esi\n" );
962 fprintf( outfile
, "\tleal %d(%%esi), %%edi\n", size
);
963 fprintf( outfile
, "\tmovl $%d, %%ecx\n", sizeof(STACK16FRAME
) );
964 fprintf( outfile
, "\trep\n\tmovsb\n" );
965 fprintf( outfile
, "\tpopf\n" );
967 fprintf( outfile
, "\t.byte 0x64\n\taddw $%d,(%d)\n", size
, STACKOFFSET
);
969 /* Return argument size to caller */
972 fprintf( outfile
, "\tmovl 32(%%esp), %%ebx\n" );
973 fprintf( outfile
, "\tmovl %%ebp, (%%ebx)\n" );
976 /* Restore registers and return */
978 fprintf( outfile
, "\tpopl %%ebx\n" );
979 fprintf( outfile
, "\tpopl %%esi\n" );
980 fprintf( outfile
, "\tpopl %%edi\n" );
981 fprintf( outfile
, "\tpopl %%ebp\n" );
982 fprintf( outfile
, "\tret\n" );
985 static void BuildCallTo32CBClientRet( FILE *outfile
, BOOL isEx
)
987 char *name
= isEx
? "CBClientEx" : "CBClient";
989 /* '16-bit' return stub */
991 fprintf( outfile
, "\n\t.globl " PREFIX
"CALL32_%s_Ret\n", name
);
992 fprintf( outfile
, PREFIX
"CALL32_%s_Ret:\n", name
);
996 fprintf( outfile
, "\tmovzwl %%sp, %%ebx\n" );
997 fprintf( outfile
, "\tlssl %%ss:-16(%%ebx), %%esp\n" );
1001 fprintf( outfile
, "\tmovzwl %%bp, %%ebx\n" );
1002 fprintf( outfile
, "\tsubw %%bp, %%sp\n" );
1003 fprintf( outfile
, "\tmovzwl %%sp, %%ebp\n" );
1004 fprintf( outfile
, "\tlssl %%ss:-12(%%ebx), %%esp\n" );
1006 fprintf( outfile
, "\tlret\n" );
1008 /* Declare the return address variable */
1010 fprintf( outfile
, "\n\t.globl " PREFIX
"CALL32_%s_RetAddr\n", name
);
1011 fprintf( outfile
, PREFIX
"CALL32_%s_RetAddr:\t.long 0\n", name
);
1015 /*******************************************************************
1016 * BuildCallFrom32Regs
1018 * Build a 32-bit-to-Wine call-back function for a 'register' function.
1019 * 'args' is the number of dword arguments.
1023 * (ebp+12) first arg
1024 * (ebp+8) ret addr to user code
1025 * (ebp+4) ret addr to relay code
1027 * (ebp-128) buffer area to allow stack frame manipulation
1028 * (ebp-332) CONTEXT86 struct
1029 * (ebp-336) CONTEXT86 *argument
1030 * .... other arguments copied from (ebp+12)
1032 * The entry point routine is called with a CONTEXT* extra argument,
1033 * following the normal args. In this context structure, EIP_reg
1034 * contains the return address to user code, and ESP_reg the stack
1035 * pointer on return (with the return address and arguments already
1038 static void BuildCallFrom32Regs( FILE *outfile
)
1040 static const int STACK_SPACE
= 128 + sizeof(CONTEXT86
);
1042 /* Function header */
1044 function_header( outfile
, "__wine_call_from_32_regs" );
1046 /* Allocate some buffer space on the stack */
1048 fprintf( outfile
, "\tpushl %%ebp\n" );
1049 fprintf( outfile
, "\tmovl %%esp,%%ebp\n ");
1050 fprintf( outfile
, "\tleal -%d(%%esp), %%esp\n", STACK_SPACE
);
1052 /* Build the context structure */
1054 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(Eax
) - STACK_SPACE
);
1055 fprintf( outfile
, "\tpushfl\n" );
1056 fprintf( outfile
, "\tpopl %%eax\n" );
1057 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(EFlags
) - STACK_SPACE
);
1058 fprintf( outfile
, "\tmovl 0(%%ebp),%%eax\n" );
1059 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(Ebp
) - STACK_SPACE
);
1060 fprintf( outfile
, "\tmovl %%ebx,%d(%%ebp)\n", CONTEXTOFFSET(Ebx
) - STACK_SPACE
);
1061 fprintf( outfile
, "\tmovl %%ecx,%d(%%ebp)\n", CONTEXTOFFSET(Ecx
) - STACK_SPACE
);
1062 fprintf( outfile
, "\tmovl %%edx,%d(%%ebp)\n", CONTEXTOFFSET(Edx
) - STACK_SPACE
);
1063 fprintf( outfile
, "\tmovl %%esi,%d(%%ebp)\n", CONTEXTOFFSET(Esi
) - STACK_SPACE
);
1064 fprintf( outfile
, "\tmovl %%edi,%d(%%ebp)\n", CONTEXTOFFSET(Edi
) - STACK_SPACE
);
1066 fprintf( outfile
, "\txorl %%eax,%%eax\n" );
1067 fprintf( outfile
, "\tmovw %%cs,%%ax\n" );
1068 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(SegCs
) - STACK_SPACE
);
1069 fprintf( outfile
, "\tmovw %%es,%%ax\n" );
1070 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(SegEs
) - STACK_SPACE
);
1071 fprintf( outfile
, "\tmovw %%fs,%%ax\n" );
1072 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(SegFs
) - STACK_SPACE
);
1073 fprintf( outfile
, "\tmovw %%gs,%%ax\n" );
1074 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(SegGs
) - STACK_SPACE
);
1075 fprintf( outfile
, "\tmovw %%ss,%%ax\n" );
1076 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(SegSs
) - STACK_SPACE
);
1077 fprintf( outfile
, "\tmovw %%ds,%%ax\n" );
1078 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(SegDs
) - STACK_SPACE
);
1079 fprintf( outfile
, "\tmovw %%ax,%%es\n" ); /* set %es equal to %ds just in case */
1081 fprintf( outfile
, "\tmovl $0x%x,%%eax\n", CONTEXT86_FULL
);
1082 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(ContextFlags
) - STACK_SPACE
);
1084 fprintf( outfile
, "\tmovl 8(%%ebp),%%eax\n" ); /* Get %eip at time of call */
1085 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(Eip
) - STACK_SPACE
);
1087 /* Transfer the arguments */
1089 fprintf( outfile
, "\tmovl 4(%%ebp),%%ebx\n" ); /* get relay code addr */
1090 fprintf( outfile
, "\tpushl %%esp\n" ); /* push ptr to context struct */
1091 fprintf( outfile
, "\tmovzbl 4(%%ebx),%%ecx\n" ); /* fetch number of args to copy */
1092 fprintf( outfile
, "\tjecxz 1f\n" );
1093 fprintf( outfile
, "\tsubl %%ecx,%%esp\n" );
1094 fprintf( outfile
, "\tleal 12(%%ebp),%%esi\n" ); /* get %esp at time of call */
1095 fprintf( outfile
, "\tmovl %%esp,%%edi\n" );
1096 fprintf( outfile
, "\tshrl $2,%%ecx\n" );
1097 fprintf( outfile
, "\tcld\n" );
1098 fprintf( outfile
, "\trep\n\tmovsl\n" ); /* copy args */
1100 fprintf( outfile
, "1:\tmovzbl 5(%%ebx),%%eax\n" ); /* fetch number of args to remove */
1101 fprintf( outfile
, "\tleal 12(%%ebp,%%eax),%%eax\n" );
1102 fprintf( outfile
, "\tmovl %%eax,%d(%%ebp)\n", CONTEXTOFFSET(Esp
) - STACK_SPACE
);
1104 /* Call the entry point */
1106 fprintf( outfile
, "\tcall *0(%%ebx)\n" );
1108 /* Store %eip and %ebp onto the new stack */
1110 fprintf( outfile
, "\tmovl %d(%%ebp),%%edx\n", CONTEXTOFFSET(Esp
) - STACK_SPACE
);
1111 fprintf( outfile
, "\tmovl %d(%%ebp),%%eax\n", CONTEXTOFFSET(Eip
) - STACK_SPACE
);
1112 fprintf( outfile
, "\tmovl %%eax,-4(%%edx)\n" );
1113 fprintf( outfile
, "\tmovl %d(%%ebp),%%eax\n", CONTEXTOFFSET(Ebp
) - STACK_SPACE
);
1114 fprintf( outfile
, "\tmovl %%eax,-8(%%edx)\n" );
1116 /* Restore the context structure */
1118 /* Note: we don't bother to restore %cs, %ds and %ss
1119 * changing them in 32-bit code is a recipe for disaster anyway
1121 fprintf( outfile
, "\tmovl %d(%%ebp),%%eax\n", CONTEXTOFFSET(SegEs
) - STACK_SPACE
);
1122 fprintf( outfile
, "\tmovw %%ax,%%es\n" );
1123 fprintf( outfile
, "\tmovl %d(%%ebp),%%eax\n", CONTEXTOFFSET(SegFs
) - STACK_SPACE
);
1124 fprintf( outfile
, "\tmovw %%ax,%%fs\n" );
1125 fprintf( outfile
, "\tmovl %d(%%ebp),%%eax\n", CONTEXTOFFSET(SegGs
) - STACK_SPACE
);
1126 fprintf( outfile
, "\tmovw %%ax,%%gs\n" );
1128 fprintf( outfile
, "\tmovl %d(%%ebp),%%edi\n", CONTEXTOFFSET(Edi
) - STACK_SPACE
);
1129 fprintf( outfile
, "\tmovl %d(%%ebp),%%esi\n", CONTEXTOFFSET(Esi
) - STACK_SPACE
);
1130 fprintf( outfile
, "\tmovl %d(%%ebp),%%edx\n", CONTEXTOFFSET(Edx
) - STACK_SPACE
);
1131 fprintf( outfile
, "\tmovl %d(%%ebp),%%ecx\n", CONTEXTOFFSET(Ecx
) - STACK_SPACE
);
1132 fprintf( outfile
, "\tmovl %d(%%ebp),%%ebx\n", CONTEXTOFFSET(Ebx
) - STACK_SPACE
);
1134 fprintf( outfile
, "\tmovl %d(%%ebp),%%eax\n", CONTEXTOFFSET(EFlags
) - STACK_SPACE
);
1135 fprintf( outfile
, "\tpushl %%eax\n" );
1136 fprintf( outfile
, "\tpopfl\n" );
1137 fprintf( outfile
, "\tmovl %d(%%ebp),%%eax\n", CONTEXTOFFSET(Eax
) - STACK_SPACE
);
1139 fprintf( outfile
, "\tmovl %d(%%ebp),%%ebp\n", CONTEXTOFFSET(Esp
) - STACK_SPACE
);
1140 fprintf( outfile
, "\tleal -8(%%ebp),%%esp\n" );
1141 fprintf( outfile
, "\tpopl %%ebp\n" );
1142 fprintf( outfile
, "\tret\n" );
1146 /*******************************************************************
1149 * Build all the 16-bit relay callbacks
1151 void BuildRelays16( FILE *outfile
)
1157 fprintf( outfile
, "/* File generated automatically. Do not edit! */\n\n" );
1158 fprintf( outfile
, "\t.text\n" );
1160 if (output_file_name
&& use_stabs
)
1162 getcwd(buffer
, sizeof(buffer
));
1163 fprintf( outfile
, "\t.file\t\"%s\"\n", output_file_name
);
1166 * The stabs help the internal debugger as they are an indication that it
1167 * is sensible to step into a thunk/trampoline.
1169 fprintf( outfile
, ".stabs \"%s/\",100,0,0,Code_Start\n", buffer
);
1170 fprintf( outfile
, ".stabs \"%s\",100,0,0,Code_Start\n", output_file_name
);
1171 fprintf( outfile
, "Code_Start:\n\n" );
1174 fprintf( outfile
, PREFIX
"Call16_Start:\n" );
1175 fprintf( outfile
, "\t.globl "PREFIX
"Call16_Start\n" );
1176 fprintf( outfile
, "\t.byte 0\n\n" );
1178 /* Standard CallFrom16 routine (WORD return) */
1179 BuildCallFrom16Core( outfile
, FALSE
, FALSE
, TRUE
);
1181 /* Standard CallFrom16 routine (DWORD return) */
1182 BuildCallFrom16Core( outfile
, FALSE
, FALSE
, FALSE
);
1184 /* Register CallFrom16 routine */
1185 BuildCallFrom16Core( outfile
, TRUE
, FALSE
, FALSE
);
1187 /* C16ThkSL CallFrom16 routine */
1188 BuildCallFrom16Core( outfile
, FALSE
, TRUE
, FALSE
);
1190 /* Standard CallTo16 routine (WORD return) */
1191 BuildCallTo16Core( outfile
, TRUE
, FALSE
);
1193 /* Standard CallTo16 routine (DWORD return) */
1194 BuildCallTo16Core( outfile
, FALSE
, FALSE
);
1196 /* Register CallTo16 routine (16:16 retf) */
1197 BuildCallTo16Core( outfile
, FALSE
, 1 );
1199 /* Register CallTo16 routine (16:32 retf) */
1200 BuildCallTo16Core( outfile
, FALSE
, 2 );
1202 /* CBClientThunkSL routine */
1203 BuildCallTo32CBClient( outfile
, FALSE
);
1205 /* CBClientThunkSLEx routine */
1206 BuildCallTo32CBClient( outfile
, TRUE
);
1208 fprintf( outfile
, PREFIX
"Call16_End:\n" );
1209 fprintf( outfile
, "\t.globl "PREFIX
"Call16_End\n" );
1213 fprintf( outfile
, "\t.stabs \"\",100,0,0,.Letext\n");
1214 fprintf( outfile
, ".Letext:\n");
1216 /* Some versions of gdb need to have the filename data for
1217 each section, so output it again for the data section. */
1218 if (output_file_name
)
1220 fprintf( outfile
, ".stabs \"%s/\",100,0,0,Data_Start\n", buffer
);
1221 fprintf( outfile
, ".stabs \"%s\",100,0,0,Data_Start\n", output_file_name
);
1222 fprintf( outfile
, "Data_Start:\n\n" );
1226 /* The whole Call16_Ret segment must lie within the .data section */
1227 fprintf( outfile
, "\n\t.data\n" );
1228 fprintf( outfile
, "\t.globl " PREFIX
"Call16_Ret_Start\n" );
1229 fprintf( outfile
, PREFIX
"Call16_Ret_Start:\n" );
1231 /* Standard CallTo16 return stub */
1232 BuildRet16Func( outfile
);
1234 /* CBClientThunkSL return stub */
1235 BuildCallTo32CBClientRet( outfile
, FALSE
);
1237 /* CBClientThunkSLEx return stub */
1238 BuildCallTo32CBClientRet( outfile
, TRUE
);
1240 /* End of Call16_Ret segment */
1241 fprintf( outfile
, "\n\t.globl " PREFIX
"Call16_Ret_End\n" );
1242 fprintf( outfile
, PREFIX
"Call16_Ret_End:\n" );
1245 /*******************************************************************
1248 * Build all the 32-bit relay callbacks
1250 void BuildRelays32( FILE *outfile
)
1254 fprintf( outfile
, "/* File generated automatically. Do not edit! */\n\n" );
1255 fprintf( outfile
, "\t.text\n" );
1257 if (output_file_name
&& use_stabs
)
1260 getcwd(buffer
, sizeof(buffer
));
1261 fprintf( outfile
, "\t.file\t\"%s\"\n", output_file_name
);
1264 * The stabs help the internal debugger as they are an indication that it
1265 * is sensible to step into a thunk/trampoline.
1267 fprintf( outfile
, ".stabs \"%s/\",100,0,0,Code_Start\n", buffer
);
1268 fprintf( outfile
, ".stabs \"%s\",100,0,0,Code_Start\n", output_file_name
);
1269 fprintf( outfile
, "Code_Start:\n\n" );
1272 /* 32-bit register entry point */
1273 BuildCallFrom32Regs( outfile
);
1277 fprintf( outfile
, "\t.stabs \"\",100,0,0,.Letext\n");
1278 fprintf( outfile
, ".Letext:\n");
1282 #else /* __i386__ */
1284 void BuildRelays16( FILE *outfile
)
1286 fprintf( outfile
, "/* File not used with this architecture. Do not edit! */\n\n" );
1289 void BuildRelays32( FILE *outfile
)
1291 fprintf( outfile
, "/* File not used with this architecture. Do not edit! */\n\n" );
1294 #endif /* __i386__ */