xref: /freebsd-13-stable/sys/compat/ndis/pe_var.h (revision f8167e0404dab9ffeaca95853dd237ab7c587f82)
1 /*-
2  * SPDX-License-Identifier: BSD-4-Clause
3  *
4  * Copyright (c) 2003
5  *	Bill Paul <wpaul@windriver.com>.  All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  * 3. All advertising materials mentioning features or use of this software
16  *    must display the following acknowledgement:
17  *	This product includes software developed by Bill Paul.
18  * 4. Neither the name of the author nor the names of any co-contributors
19  *    may be used to endorse or promote products derived from this software
20  *    without specific prior written permission.
21  *
22  * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25  * ARE DISCLAIMED.  IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
26  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
27  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
28  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
29  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
30  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
31  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
32  * THE POSSIBILITY OF SUCH DAMAGE.
33  */
34 
35 #ifndef _PE_VAR_H_
36 #define	_PE_VAR_H_
37 
38 /*
39  *  Image Format
40  */
41 
42 #define	IMAGE_DOS_SIGNATURE			0x5A4D      /* MZ */
43 #define	IMAGE_OS2_SIGNATURE			0x454E      /* NE */
44 #define	IMAGE_OS2_SIGNATURE_LE			0x454C      /* LE */
45 #define	IMAGE_VXD_SIGNATURE			0x454C      /* LE */
46 #define	IMAGE_NT_SIGNATURE			0x00004550  /* PE00 */
47 
48 /*
49  * All PE files have one of these, just so if you attempt to
50  * run them, they'll print out a message telling you they can
51  * only be run in Windows.
52  */
53 
54 struct image_dos_header {
55 	uint16_t	idh_magic;	/* Magic number */
56 	uint16_t	idh_cblp;	/* Bytes on last page of file */
57 	uint16_t	idh_cp;		/* Pages in file */
58 	uint16_t	idh_crlc;	/* Relocations */
59 	uint16_t	idh_cparhdr;	/* Size of header in paragraphs */
60 	uint16_t	idh_minalloc;	/* Minimum extra paragraphs needed */
61 	uint16_t	idh_maxalloc;	/* Maximum extra paragraphs needed */
62 	uint16_t	idh_ss;		/* Initial (relative) SS value */
63 	uint16_t	idh_sp;		/* Initial SP value */
64 	uint16_t	idh_csum;	/* Checksum */
65 	uint16_t	idh_ip;		/* Initial IP value */
66 	uint16_t	idh_cs;		/* Initial (relative) CS value */
67 	uint16_t	idh_lfarlc;	/* File address of relocation table */
68 	uint16_t	idh_ovno;	/* Overlay number */
69 	uint16_t	idh_rsvd1[4];	/* Reserved words */
70 	uint16_t	idh_oemid;	/* OEM identifier (for idh_oeminfo) */
71 	uint16_t	idh_oeminfo;	/* OEM information; oemid specific */
72 	uint16_t	idh_rsvd2[10];	/* Reserved words */
73 	uint32_t	idh_lfanew;	/* File address of new exe header */
74 };
75 
76 typedef struct image_dos_header image_dos_header;
77 
78 /*
79  * File header format.
80  */
81 
82 struct image_file_header {
83 	uint16_t	ifh_machine;		/* Machine type */
84 	uint16_t	ifh_numsections;	/* # of sections */
85 	uint32_t	ifh_timestamp;		/* Date/time stamp */
86 	uint32_t	ifh_symtblptr;		/* Offset to symbol table */
87 	uint32_t	ifh_numsyms;		/* # of symbols */
88 	uint16_t	ifh_optionalhdrlen;	/* Size of optional header */
89 	uint16_t	ifh_characteristics;	/* Characteristics */
90 };
91 
92 typedef struct image_file_header image_file_header;
93 
94 /* Machine types */
95 
96 #define	IMAGE_FILE_MACHINE_UNKNOWN      0
97 #define	IMAGE_FILE_MACHINE_I860         0x014d
98 #define	IMAGE_FILE_MACHINE_I386         0x014c
99 #define	IMAGE_FILE_MACHINE_R3000        0x0162
100 #define	IMAGE_FILE_MACHINE_R4000        0x0166
101 #define	IMAGE_FILE_MACHINE_R10000       0x0168
102 #define	IMAGE_FILE_MACHINE_WCEMIPSV2    0x0169
103 #define	IMAGE_FILE_MACHINE_ALPHA        0x0184
104 #define	IMAGE_FILE_MACHINE_SH3          0x01a2
105 #define	IMAGE_FILE_MACHINE_SH3DSP       0x01a3
106 #define	IMAGE_FILE_MACHINE_SH3E         0x01a4
107 #define	IMAGE_FILE_MACHINE_SH4          0x01a6
108 #define	IMAGE_FILE_MACHINE_SH5          0x01a8
109 #define	IMAGE_FILE_MACHINE_ARM          0x01c0
110 #define	IMAGE_FILE_MACHINE_THUMB        0x01c2
111 #define	IMAGE_FILE_MACHINE_AM33         0x01d3
112 #define	IMAGE_FILE_MACHINE_POWERPC      0x01f0
113 #define	IMAGE_FILE_MACHINE_POWERPCFP    0x01f1
114 #define	IMAGE_FILE_MACHINE_MIPS16       0x0266
115 #define	IMAGE_FILE_MACHINE_ALPHA64      0x0284
116 #define	IMAGE_FILE_MACHINE_MIPSFPU      0x0366
117 #define	IMAGE_FILE_MACHINE_MIPSFPU16    0x0466
118 #define	IMAGE_FILE_MACHINE_AXP64        IMAGE_FILE_MACHINE_ALPHA64
119 #define	IMAGE_FILE_MACHINE_TRICORE      0x0520
120 #define	IMAGE_FILE_MACHINE_CEF          0x0cef
121 #define	IMAGE_FILE_MACHINE_EBC          0x0ebc
122 #define	IMAGE_FILE_MACHINE_AMD64        0x8664
123 #define	IMAGE_FILE_MACHINE_M32R         0x9041
124 #define	IMAGE_FILE_MACHINE_CEE          0xc0ee
125 
126 /* Characteristics */
127 
128 #define	IMAGE_FILE_RELOCS_STRIPPED      0x0001 /* No relocation info */
129 #define	IMAGE_FILE_EXECUTABLE_IMAGE     0x0002
130 #define	IMAGE_FILE_LINE_NUMS_STRIPPED   0x0004
131 #define	IMAGE_FILE_LOCAL_SYMS_STRIPPED  0x0008
132 #define	IMAGE_FILE_AGGRESIVE_WS_TRIM    0x0010
133 #define	IMAGE_FILE_LARGE_ADDRESS_AWARE  0x0020
134 #define	IMAGE_FILE_16BIT_MACHINE        0x0040
135 #define	IMAGE_FILE_BYTES_REVERSED_LO    0x0080
136 #define	IMAGE_FILE_32BIT_MACHINE        0x0100
137 #define	IMAGE_FILE_DEBUG_STRIPPED       0x0200
138 #define	IMAGE_FILE_REMOVABLE_RUN_FROM_SWAP      0x0400
139 #define	IMAGE_FILE_NET_RUN_FROM_SWAP    0x0800
140 #define	IMAGE_FILE_SYSTEM               0x1000
141 #define	IMAGE_FILE_DLL                  0x2000
142 #define	IMAGE_FILE_UP_SYSTEM_ONLY       0x4000
143 #define	IMAGE_FILE_BYTES_REVERSED_HI    0x8000
144 
145 #define	IMAGE_SIZEOF_FILE_HEADER             20
146 
147 /*
148  * Directory format.
149  */
150 
151 struct image_data_directory {
152 	uint32_t		idd_vaddr;	/* virtual address */
153 	uint32_t		idd_size;	/* size */
154 };
155 
156 typedef struct image_data_directory image_data_directory;
157 
158 #define	IMAGE_DIRECTORY_ENTRIES_MAX    16
159 
160 /*
161  * Optional header format.
162  */
163 
164 struct image_optional_header {
165 	/* Standard fields */
166 
167 	uint16_t	ioh_magic;
168 	uint8_t		ioh_linkerver_major;
169 	uint8_t		ioh_linkerver_minor;
170 	uint32_t	ioh_codesize;
171 	uint32_t	ioh_datasize;
172 	uint32_t	ioh_bsssize;
173 	uint32_t	ioh_entryaddr;
174 	uint32_t	ioh_codebaseaddr;
175 #ifndef __amd64__
176 	uint32_t	ioh_databaseaddr;
177 #endif
178 
179 	/* NT-specific fields */
180 
181 	uintptr_t	ioh_imagebase;
182 	uint32_t	ioh_sectalign;
183 	uint32_t	ioh_filealign;
184 	uint16_t	ioh_osver_major;
185 	uint16_t	ioh_osver_minor;
186 	uint16_t	ioh_imagever_major;
187 	uint16_t	ioh_imagever_minor;
188 	uint16_t	ioh_subsys_major;
189 	uint16_t	ioh_subsys_minor;
190 	uint32_t	ioh_win32ver;
191 	uint32_t	ioh_imagesize;
192 	uint32_t	ioh_headersize;
193 	uint32_t	ioh_csum;
194 	uint16_t	ioh_subsys;
195 	uint16_t	ioh_dll_characteristics;
196 	uintptr_t	ioh_stackreservesize;
197 	uintptr_t	ioh_stackcommitsize;
198 	uintptr_t	ioh_heapreservesize;
199 	uintptr_t	ioh_heapcommitsize;
200 	uint16_t	ioh_loaderflags;
201 	uint32_t	ioh_rva_size_cnt;
202 	image_data_directory	ioh_datadir[IMAGE_DIRECTORY_ENTRIES_MAX];
203 };
204 
205 typedef struct image_optional_header image_optional_header;
206 
207 struct image_nt_header {
208 	uint32_t		inh_signature;
209 	image_file_header	inh_filehdr;
210 	image_optional_header	inh_optionalhdr;
211 };
212 
213 typedef struct image_nt_header image_nt_header;
214 
215 #define	IMAGE_SIZEOF_NT_HEADER(nthdr)					\
216 	(offsetof(image_nt_header, inh_optionalhdr) +			\
217 	  ((image_nt_header *)(nthdr))->inh_filehdr.ifh_optionalhdrlen)
218 
219 /* Directory Entries */
220 
221 #define	IMAGE_DIRECTORY_ENTRY_EXPORT         0   /* Export Directory */
222 #define	IMAGE_DIRECTORY_ENTRY_IMPORT         1   /* Import Directory */
223 #define	IMAGE_DIRECTORY_ENTRY_RESOURCE       2   /* Resource Directory */
224 #define	IMAGE_DIRECTORY_ENTRY_EXCEPTION      3   /* Exception Directory */
225 #define	IMAGE_DIRECTORY_ENTRY_SECURITY       4   /* Security Directory */
226 #define	IMAGE_DIRECTORY_ENTRY_BASERELOC      5   /* Base Relocation Table */
227 #define	IMAGE_DIRECTORY_ENTRY_DEBUG          6   /* Debug Directory */
228 #define	IMAGE_DIRECTORY_ENTRY_COPYRIGHT      7   /* Description String */
229 #define	IMAGE_DIRECTORY_ENTRY_GLOBALPTR      8   /* Machine Value (MIPS GP) */
230 #define	IMAGE_DIRECTORY_ENTRY_TLS            9   /* TLS Directory */
231 #define	IMAGE_DIRECTORY_ENTRY_LOAD_CONFIG   10   /* Load Configuration Directory */
232 #define	IMAGE_DIRECTORY_ENTRY_BOUND_IMPORT  11   /* Bound Import Directory in headers */
233 #define	IMAGE_DIRECTORY_ENTRY_IAT           12   /* Import Address Table */
234 #define	IMAGE_DIRECTORY_ENTRY_DELAY_IMPORT      13
235 #define	IMAGE_DIRECTORY_ENTRY_COM_DESCRIPTOR    14
236 
237 /* Resource types */
238 
239 #define	RT_CURSOR	1
240 #define	RT_BITMAP	2
241 #define	RT_ICON		3
242 #define	RT_MENU		4
243 #define	RT_DIALOG	5
244 #define	RT_STRING	6
245 #define	RT_FONTDIR	7
246 #define	RT_FONT		8
247 #define	RT_ACCELERATOR	9
248 #define	RT_RCDATA	10
249 #define	RT_MESSAGETABLE	11
250 #define	RT_GROUP_CURSOR	12
251 #define	RT_GROUP_ICON	14
252 #define	RT_VERSION	16
253 #define	RT_DLGINCLUDE	17
254 #define	RT_PLUGPLAY	19
255 #define	RT_VXD		20
256 #define	RT_ANICURSOR	21
257 #define	RT_ANIICON	22
258 #define	RT_HTML		23
259 
260 /*
261  * Section header format.
262  */
263 
264 #define	IMAGE_SHORT_NAME_LEN			8
265 
266 struct image_section_header {
267 	uint8_t		ish_name[IMAGE_SHORT_NAME_LEN];
268 	union {
269 		uint32_t	ish_paddr;
270 		uint32_t	ish_vsize;
271 	} ish_misc;
272 	uint32_t	ish_vaddr;
273 	uint32_t	ish_rawdatasize;
274 	uint32_t	ish_rawdataaddr;
275 	uint32_t	ish_relocaddr;
276 	uint32_t	ish_linenumaddr;
277 	uint16_t	ish_numrelocs;
278 	uint16_t	ish_numlinenums;
279 	uint32_t	ish_characteristics;
280 };
281 
282 typedef struct image_section_header image_section_header;
283 
284 #define	IMAGE_SIZEOF_SECTION_HEADER          40
285 
286 #define	IMAGE_FIRST_SECTION(nthdr)					\
287 	((image_section_header *)((vm_offset_t)(nthdr) +		\
288 	  offsetof(image_nt_header, inh_optionalhdr) +			\
289 	  ((image_nt_header *)(nthdr))->inh_filehdr.ifh_optionalhdrlen))
290 
291 /*
292  * Import format
293  */
294 
295 struct image_import_by_name {
296 	uint16_t	iibn_hint;
297 	uint8_t		iibn_name[1];
298 };
299 
300 #define	IMAGE_ORDINAL_FLAG 0x80000000
301 #define	IMAGE_ORDINAL(Ordinal) (Ordinal & 0xffff)
302 
303 struct image_import_descriptor {
304 	uint32_t	iid_import_name_table_addr;
305 	uint32_t	iid_timestamp;
306 	uint32_t	iid_forwardchain;
307 	uint32_t	iid_nameaddr;
308 	uint32_t	iid_import_address_table_addr;
309 };
310 
311 typedef struct image_import_descriptor image_import_descriptor;
312 
313 struct image_base_reloc {
314 	uint32_t	ibr_vaddr;
315 	uint32_t	ibr_blocksize;
316 	uint16_t	ibr_rel[1];
317 };
318 
319 typedef struct image_base_reloc image_base_reloc;
320 
321 #define	IMR_RELTYPE(x)		((x >> 12) & 0xF)
322 #define	IMR_RELOFFSET(x)	(x & 0xFFF)
323 
324 /* generic relocation types */
325 #define	IMAGE_REL_BASED_ABSOLUTE		0
326 #define	IMAGE_REL_BASED_HIGH			1
327 #define	IMAGE_REL_BASED_LOW			2
328 #define	IMAGE_REL_BASED_HIGHLOW			3
329 #define	IMAGE_REL_BASED_HIGHADJ			4
330 #define	IMAGE_REL_BASED_MIPS_JMPADDR		5
331 #define	IMAGE_REL_BASED_SECTION			6
332 #define	IMAGE_REL_BASED_REL			7
333 #define	IMAGE_REL_BASED_MIPS_JMPADDR16		9
334 #define	IMAGE_REL_BASED_DIR64			10
335 #define	IMAGE_REL_BASED_HIGH3ADJ		11
336 
337 struct image_resource_directory_entry {
338 	uint32_t		irde_name;
339 	uint32_t		irde_dataoff;
340 };
341 
342 typedef struct image_resource_directory_entry image_resource_directory_entry;
343 
344 #define	RESOURCE_NAME_STR	0x80000000
345 #define	RESOURCE_DIR_FLAG	0x80000000
346 
347 struct image_resource_directory {
348 	uint32_t		ird_characteristics;
349 	uint32_t		ird_timestamp;
350 	uint16_t		ird_majorver;
351 	uint16_t		ird_minorver;
352 	uint16_t		ird_named_entries;
353 	uint16_t		ird_id_entries;
354 #ifdef notdef
355 	image_resource_directory_entry	ird_entries[1];
356 #endif
357 };
358 
359 typedef struct image_resource_directory image_resource_directory;
360 
361 struct image_resource_directory_string {
362 	uint16_t		irds_len;
363 	char			irds_name[1];
364 };
365 
366 typedef struct image_resource_directory_string image_resource_directory_string;
367 
368 struct image_resource_directory_string_u {
369 	uint16_t		irds_len;
370 	char			irds_name[1];
371 };
372 
373 typedef struct image_resource_directory_string_u
374 	image_resource_directory_string_u;
375 
376 struct image_resource_data_entry {
377 	uint32_t		irde_offset;
378 	uint32_t		irde_size;
379 	uint32_t		irde_codepage;
380 	uint32_t		irde_rsvd;
381 };
382 
383 typedef struct image_resource_data_entry image_resource_data_entry;
384 
385 struct message_resource_data {
386 	uint32_t		mrd_numblocks;
387 #ifdef notdef
388 	message_resource_block	mrd_blocks[1];
389 #endif
390 };
391 
392 typedef struct message_resource_data message_resource_data;
393 
394 struct message_resource_block {
395 	uint32_t		mrb_lowid;
396 	uint32_t		mrb_highid;
397 	uint32_t		mrb_entryoff;
398 };
399 
400 typedef struct message_resource_block message_resource_block;
401 
402 struct message_resource_entry {
403 	uint16_t		mre_len;
404 	uint16_t		mre_flags;
405 	char			mre_text[];
406 };
407 
408 typedef struct message_resource_entry message_resource_entry;
409 
410 #define	MESSAGE_RESOURCE_UNICODE	0x0001
411 
412 struct image_patch_table {
413 	char		*ipt_name;
414 	void		(*ipt_func)(void);
415 	void		(*ipt_wrap)(void);
416 	int		ipt_argcnt;
417 	int		ipt_ftype;
418 };
419 
420 typedef struct image_patch_table image_patch_table;
421 
422 /*
423  * AMD64 support. Microsoft uses a different calling convention
424  * than everyone else on the amd64 platform. Sadly, gcc has no
425  * built-in support for it (yet).
426  *
427  * The three major differences we're concerned with are:
428  *
429  * - The first 4 register-sized arguments are passed in the
430  *   %rcx, %rdx, %r8 and %r9 registers, and the rest are pushed
431  *   onto the stack. (The ELF ABI uses 6 registers, not 4).
432  *
433  * - The caller must reserve space on the stack for the 4
434  *   register arguments in case the callee has to spill them.
435  *
436  * - The stack myst be 16-byte aligned by the time the callee
437  *   executes. A call instruction implicitly pushes an 8 byte
438  *   return address onto the stack. We have to make sure that
439  *   the amount of space we consume, plus the return address,
440  *   is a multiple of 16 bytes in size. This means that in
441  *   some cases, we may need to chew up an extra 8 bytes on
442  *   the stack that will be unused.
443  *
444  * On the bright side, Microsoft seems to be using just the one
445  * calling convention for all functions on amd64, unlike x86 where
446  * they use a mix of _stdcall, _fastcall and _cdecl.
447  */
448 
449 #ifdef __amd64__
450 
451 extern uint64_t x86_64_call1(void *, uint64_t);
452 extern uint64_t x86_64_call2(void *, uint64_t, uint64_t);
453 extern uint64_t x86_64_call3(void *, uint64_t, uint64_t, uint64_t);
454 extern uint64_t x86_64_call4(void *, uint64_t, uint64_t, uint64_t, uint64_t);
455 extern uint64_t x86_64_call5(void *, uint64_t, uint64_t, uint64_t, uint64_t,
456 	uint64_t);
457 extern uint64_t x86_64_call6(void *, uint64_t, uint64_t, uint64_t, uint64_t,
458 	uint64_t, uint64_t);
459 
460 uint64_t _x86_64_call1(void *, uint64_t);
461 uint64_t _x86_64_call2(void *, uint64_t, uint64_t);
462 uint64_t _x86_64_call3(void *, uint64_t, uint64_t, uint64_t);
463 uint64_t _x86_64_call4(void *, uint64_t, uint64_t, uint64_t, uint64_t);
464 uint64_t _x86_64_call5(void *, uint64_t, uint64_t, uint64_t, uint64_t,
465     uint64_t);
466 uint64_t _x86_64_call6(void *, uint64_t, uint64_t, uint64_t, uint64_t,
467     uint64_t, uint64_t);
468 
469 #define	MSCALL1(fn, a)						\
470 	_x86_64_call1((fn), (uint64_t)(a))
471 #define	MSCALL2(fn, a, b)					\
472 	_x86_64_call2((fn), (uint64_t)(a), (uint64_t)(b))
473 #define	MSCALL3(fn, a, b, c)					\
474 	_x86_64_call3((fn), (uint64_t)(a), (uint64_t)(b),		\
475 	(uint64_t)(c))
476 #define	MSCALL4(fn, a, b, c, d)					\
477 	_x86_64_call4((fn), (uint64_t)(a), (uint64_t)(b),		\
478 	(uint64_t)(c), (uint64_t)(d))
479 #define	MSCALL5(fn, a, b, c, d, e)				\
480 	_x86_64_call5((fn), (uint64_t)(a), (uint64_t)(b),		\
481 	(uint64_t)(c), (uint64_t)(d), (uint64_t)(e))
482 #define	MSCALL6(fn, a, b, c, d, e, f)				\
483 	_x86_64_call6((fn), (uint64_t)(a), (uint64_t)(b),		\
484 	(uint64_t)(c), (uint64_t)(d), (uint64_t)(e), (uint64_t)(f))
485 
486 #endif /* __amd64__ */
487 
488 #ifdef __i386__
489 
490 extern uint32_t x86_stdcall_call(void *, int, ...);
491 
492 #define	MSCALL1(fn, a)		x86_stdcall_call(fn, 1, (a))
493 #define	MSCALL2(fn, a, b)	x86_stdcall_call(fn, 2, (a), (b))
494 #define	MSCALL3(fn, a, b, c)	x86_stdcall_call(fn, 3, (a), (b), (c))
495 #define	MSCALL4(fn, a, b, c, d)	x86_stdcall_call(fn, 4, (a), (b), (c), (d))
496 #define	MSCALL5(fn, a, b, c, d, e)	\
497 		x86_stdcall_call(fn, 5, (a), (b), (c), (d), (e))
498 #define	MSCALL6(fn, a, b, c, d, e, f)	\
499 		x86_stdcall_call(fn, 6, (a), (b), (c), (d), (e), (f))
500 
501 #endif /* __i386__ */
502 
503 #define	FUNC void(*)(void)
504 
505 #ifdef __i386__
506 #define	IMPORT_SFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_STDCALL }
507 #define	IMPORT_SFUNC_MAP(x, y, z)	\
508 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_STDCALL }
509 #define	IMPORT_FFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_FASTCALL }
510 #define	IMPORT_FFUNC_MAP(x, y, z)	\
511 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_FASTCALL }
512 #define	IMPORT_RFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_REGPARM }
513 #define	IMPORT_RFUNC_MAP(x, y, z)	\
514 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_REGPARM }
515 #define	IMPORT_CFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_CDECL }
516 #define	IMPORT_CFUNC_MAP(x, y, z)	\
517 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_CDECL }
518 #endif /* __i386__ */
519 
520 #ifdef __amd64__
521 #define	IMPORT_SFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_AMD64 }
522 #define	IMPORT_SFUNC_MAP(x, y, z)	\
523 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_AMD64 }
524 #define	IMPORT_FFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_AMD64 }
525 #define	IMPORT_FFUNC_MAP(x, y, z)	\
526 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_AMD64 }
527 #define	IMPORT_RFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_AMD64 }
528 #define	IMPORT_RFUNC_MAP(x, y, z)	\
529 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_AMD64 }
530 #define	IMPORT_CFUNC(x, y)	{ #x, (FUNC)x, NULL, y, WINDRV_WRAP_AMD64 }
531 #define	IMPORT_CFUNC_MAP(x, y, z)	\
532 				{ #x, (FUNC)y, NULL, z, WINDRV_WRAP_AMD64 }
533 #endif /* __amd64__ */
534 
535 __BEGIN_DECLS
536 extern int pe_get_dos_header(vm_offset_t, image_dos_header *);
537 extern int pe_is_nt_image(vm_offset_t);
538 extern int pe_get_optional_header(vm_offset_t, image_optional_header *);
539 extern int pe_get_file_header(vm_offset_t, image_file_header *);
540 extern int pe_get_section_header(vm_offset_t, image_section_header *);
541 extern int pe_numsections(vm_offset_t);
542 extern vm_offset_t pe_imagebase(vm_offset_t);
543 extern vm_offset_t pe_directory_offset(vm_offset_t, uint32_t);
544 extern vm_offset_t pe_translate_addr (vm_offset_t, vm_offset_t);
545 extern int pe_get_section(vm_offset_t, image_section_header *, const char *);
546 extern int pe_relocate(vm_offset_t);
547 extern int pe_get_import_descriptor(vm_offset_t, image_import_descriptor *, char *);
548 extern int pe_patch_imports(vm_offset_t, char *, image_patch_table *);
549 extern int pe_get_messagetable(vm_offset_t, message_resource_data **);
550 extern int pe_get_message(vm_offset_t, uint32_t, char **, int *, uint16_t *);
551 __END_DECLS
552 
553 #endif /* _PE_VAR_H_ */
554