VirtualBox

source: vbox/trunk/include/iprt/cdefs.h@ 105352

Last change on this file since 105352 was 105352, checked in by vboxsync, 2 months ago

VMM/VMR3Req,iprt/cdefs.h: Adjustments of VMR3ReqCallUV family to fit darwin/arm64 restrictions. bugref:10725

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1/** @file
2 * IPRT - Common C and C++ definitions.
3 */
4
5/*
6 * Copyright (C) 2006-2023 Oracle and/or its affiliates.
7 *
8 * This file is part of VirtualBox base platform packages, as
9 * available from https://www.virtualbox.org.
10 *
11 * This program is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License
13 * as published by the Free Software Foundation, in version 3 of the
14 * License.
15 *
16 * This program is distributed in the hope that it will be useful, but
17 * WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
19 * General Public License for more details.
20 *
21 * You should have received a copy of the GNU General Public License
22 * along with this program; if not, see <https://www.gnu.org/licenses>.
23 *
24 * The contents of this file may alternatively be used under the terms
25 * of the Common Development and Distribution License Version 1.0
26 * (CDDL), a copy of it is provided in the "COPYING.CDDL" file included
27 * in the VirtualBox distribution, in which case the provisions of the
28 * CDDL are applicable instead of those of the GPL.
29 *
30 * You may elect to license modified versions of this file under the
31 * terms and conditions of either the GPL or the CDDL or both.
32 *
33 * SPDX-License-Identifier: GPL-3.0-only OR CDDL-1.0
34 */
35
36#ifndef IPRT_INCLUDED_cdefs_h
37#define IPRT_INCLUDED_cdefs_h
38#ifndef RT_WITHOUT_PRAGMA_ONCE
39# pragma once
40#endif
41
42
43/** @defgroup grp_rt_cdefs IPRT Common Definitions and Macros
44 * @{
45 */
46
47/** @def RT_C_DECLS_BEGIN
48 * Used to start a block of function declarations which are shared
49 * between C and C++ program.
50 */
51
52/** @def RT_C_DECLS_END
53 * Used to end a block of function declarations which are shared
54 * between C and C++ program.
55 */
56
57#if defined(__cplusplus)
58# define RT_C_DECLS_BEGIN extern "C" {
59# define RT_C_DECLS_END }
60#else
61# define RT_C_DECLS_BEGIN
62# define RT_C_DECLS_END
63#endif
64
65
66/*
67 * Shut up DOXYGEN warnings and guide it properly thru the code.
68 */
69#ifdef DOXYGEN_RUNNING
70# define __AMD64__
71# define __X86__
72# define RT_ARCH_AMD64
73# define RT_ARCH_X86
74# define RT_ARCH_SPARC
75# define RT_ARCH_SPARC64
76# define RT_ARCH_ARM32
77# define RT_ARCH_ARM64
78# define IN_RING0
79# define IN_RING3
80# define IN_RC
81# define IN_RT_RC
82# define IN_RT_R0
83# define IN_RT_R3
84# define IN_RT_STATIC
85# define RT_STRICT
86# define RT_NO_STRICT
87# define RT_LOCK_STRICT
88# define RT_LOCK_NO_STRICT
89# define RT_LOCK_STRICT_ORDER
90# define RT_LOCK_NO_STRICT_ORDER
91# define RT_BREAKPOINT
92# define RT_NO_DEPRECATED_MACROS
93# define RT_EXCEPTIONS_ENABLED
94# define RT_BIG_ENDIAN
95# define RT_LITTLE_ENDIAN
96# define RT_COMPILER_GROKS_64BIT_BITFIELDS
97# define RT_COMPILER_WITH_80BIT_LONG_DOUBLE
98# define RT_COMPILER_WITH_128BIT_LONG_DOUBLE
99# define RT_COMPILER_WITH_128BIT_INT_TYPES
100# define RT_NO_VISIBILITY_HIDDEN
101# define RT_GCC_SUPPORTS_VISIBILITY_HIDDEN
102# define RT_COMPILER_SUPPORTS_VA_ARGS
103# define RT_COMPILER_SUPPORTS_LAMBDA
104# define RT_IN_ASSEMBLER
105#endif /* DOXYGEN_RUNNING */
106
107/** @def RT_ARCH_X86
108 * Indicates that we're compiling for the X86 architecture.
109 */
110
111/** @def RT_ARCH_AMD64
112 * Indicates that we're compiling for the AMD64 architecture.
113 */
114
115/** @def RT_ARCH_SPARC
116 * Indicates that we're compiling for the SPARC V8 architecture (32-bit).
117 */
118
119/** @def RT_ARCH_SPARC64
120 * Indicates that we're compiling for the SPARC V9 architecture (64-bit).
121 */
122
123/** @def RT_ARCH_ARM32
124 * Indicates that we're compiling for the 32-bit ARM architecture, the value
125 * is the version (i.e. 6 for ARMv6).
126 */
127
128/** @def RT_ARCH_ARM64
129 * Indicates that we're compiling for the 64-bit ARM architecture.
130 */
131
132#if !defined(RT_ARCH_X86) \
133 && !defined(RT_ARCH_AMD64) \
134 && !defined(RT_ARCH_SPARC) \
135 && !defined(RT_ARCH_SPARC64) \
136 && !defined(RT_ARCH_ARM32) \
137 && !defined(RT_ARCH_ARM64)
138# if defined(__amd64__) || defined(__x86_64__) || defined(_M_X64) || defined(__AMD64__)
139# define RT_ARCH_AMD64
140# elif defined(__i386__) || defined(_M_IX86) || defined(__X86__)
141# define RT_ARCH_X86
142# elif defined(__sparcv9)
143# define RT_ARCH_SPARC64
144# elif defined(__sparc__)
145# define RT_ARCH_SPARC
146# elif defined(__arm64__) || defined(__aarch64__)
147# define RT_ARCH_ARM64 __ARM_ARCH
148# elif defined(__arm__)
149# define RT_ARCH_ARM32 __ARM_ARCH
150# elif defined(__arm32__)
151# define RT_ARCH_ARM32 __ARM_ARCH
152# else /* PORTME: append test for new archs. */
153# error "Check what predefined macros your compiler uses to indicate architecture."
154# endif
155/* PORTME: append new archs checks. */
156#elif defined(RT_ARCH_X86) && defined(RT_ARCH_AMD64)
157# error "Both RT_ARCH_X86 and RT_ARCH_AMD64 cannot be defined at the same time!"
158#elif defined(RT_ARCH_X86) && defined(RT_ARCH_SPARC)
159# error "Both RT_ARCH_X86 and RT_ARCH_SPARC cannot be defined at the same time!"
160#elif defined(RT_ARCH_X86) && defined(RT_ARCH_SPARC64)
161# error "Both RT_ARCH_X86 and RT_ARCH_SPARC64 cannot be defined at the same time!"
162#elif defined(RT_ARCH_AMD64) && defined(RT_ARCH_SPARC)
163# error "Both RT_ARCH_AMD64 and RT_ARCH_SPARC cannot be defined at the same time!"
164#elif defined(RT_ARCH_AMD64) && defined(RT_ARCH_SPARC64)
165# error "Both RT_ARCH_AMD64 and RT_ARCH_SPARC64 cannot be defined at the same time!"
166#elif defined(RT_ARCH_SPARC) && defined(RT_ARCH_SPARC64)
167# error "Both RT_ARCH_SPARC and RT_ARCH_SPARC64 cannot be defined at the same time!"
168#elif defined(RT_ARCH_ARM32) && defined(RT_ARCH_AMD64)
169# error "Both RT_ARCH_ARM32 and RT_ARCH_AMD64 cannot be defined at the same time!"
170#elif defined(RT_ARCH_ARM32) && defined(RT_ARCH_X86)
171# error "Both RT_ARCH_ARM32 and RT_ARCH_X86 cannot be defined at the same time!"
172#elif defined(RT_ARCH_ARM32) && defined(RT_ARCH_SPARC64)
173# error "Both RT_ARCH_ARM32 and RT_ARCH_SPARC64 cannot be defined at the same time!"
174#elif defined(RT_ARCH_ARM32) && defined(RT_ARCH_SPARC)
175# error "Both RT_ARCH_ARM32 and RT_ARCH_SPARC cannot be defined at the same time!"
176#elif defined(RT_ARCH_ARM64) && defined(RT_ARCH_AMD64)
177# error "Both RT_ARCH_ARM64 and RT_ARCH_AMD64 cannot be defined at the same time!"
178#elif defined(RT_ARCH_ARM64) && defined(RT_ARCH_X86)
179# error "Both RT_ARCH_ARM64 and RT_ARCH_X86 cannot be defined at the same time!"
180#elif defined(RT_ARCH_ARM64) && defined(RT_ARCH_SPARC64)
181# error "Both RT_ARCH_ARM64 and RT_ARCH_SPARC64 cannot be defined at the same time!"
182#elif defined(RT_ARCH_ARM64) && defined(RT_ARCH_SPARC)
183# error "Both RT_ARCH_ARM64 and RT_ARCH_SPARC cannot be defined at the same time!"
184#elif defined(RT_ARCH_ARM64) && defined(RT_ARCH_ARM32)
185# error "Both RT_ARCH_ARM64 and RT_ARCH_ARM32 cannot be defined at the same time!"
186#endif
187#ifdef RT_ARCH_ARM
188# error "RT_ARCH_ARM is now RT_ARCH_ARM32!"
189#endif
190
191/* Final check (PORTME). */
192#if (defined(RT_ARCH_X86) != 0) \
193 + (defined(RT_ARCH_AMD64) != 0) \
194 + (defined(RT_ARCH_SPARC) != 0) \
195 + (defined(RT_ARCH_SPARC64) != 0) \
196 + (defined(RT_ARCH_ARM32) != 0) \
197 + (defined(RT_ARCH_ARM64) != 0) \
198 != 1
199# error "Exactly one RT_ARCH_XXX macro shall be defined"
200#endif
201
202/** @name RT_ARCH_VAL_XXX - Architectures.
203 *
204 * These are values used by RT_ARCH_VAL among others as an alternative to
205 * RT_ARCH_X86, RT_ARCH_AMD64 and friends for identifying the compiler target
206 * architecture. Each value is a power of two (single bit), so they can be
207 * combined together to form an architecture mask if desirable.
208 *
209 * @{ */
210/** */
211#define RT_ARCH_VAL_X86_16 0x00000001
212#define RT_ARCH_VAL_X86 0x00000002
213#define RT_ARCH_VAL_AMD64 0x00000004
214#define RT_ARCH_VAL_ARM32 0x00000010
215#define RT_ARCH_VAL_ARM64 0x00000020
216#define RT_ARCH_VAL_SPARC32 0x00000100
217#define RT_ARCH_VAL_SPARC64 0x00000200
218/** @} */
219
220
221/** @def RT_ARCH_VAL
222 * The RT_ARCH_VAL_XXX for the compiler target architecture. */
223#if defined(RT_ARCH_AMD64)
224# define RT_ARCH_VAL RT_ARCH_VAL_AMD64
225#elif defined(RT_ARCH_ARM64)
226# define RT_ARCH_VAL RT_ARCH_VAL_ARM64
227#elif defined(RT_ARCH_X86)
228# define RT_ARCH_VAL RT_ARCH_VAL_X86
229#elif defined(RT_ARCH_ARM32)
230# define RT_ARCH_VAL RT_ARCH_VAL_ARM32
231#elif defined(RT_ARCH_SPARC)
232# define RT_ARCH_VAL RT_ARCH_VAL_SPARC32
233#elif defined(RT_ARCH_SPARC64)
234# define RT_ARCH_VAL RT_ARCH_VAL_SPARC64
235#else
236# error "RT_ARCH_VAL: port me"
237#endif
238
239/** @def RT_IN_ASSEMBLER
240 * Define when the source is being preprocessed for the assembler rather than
241 * the C, C++, Objective-C, or Objective-C++ compilers. */
242#ifdef __ASSEMBLER__
243# define RT_IN_ASSEMBLER
244#endif
245
246/** @def RT_CPLUSPLUS_PREREQ
247 * Require a minimum __cplusplus value, simplifying dealing with non-C++ code.
248 *
249 * @param a_Min The minimum version, e.g. 201100.
250 */
251#ifdef __cplusplus
252# define RT_CPLUSPLUS_PREREQ(a_Min) (__cplusplus >= (a_Min))
253#else
254# define RT_CPLUSPLUS_PREREQ(a_Min) (0)
255#endif
256
257/** @def RT_GNUC_PREREQ
258 * Shorter than fiddling with __GNUC__ and __GNUC_MINOR__.
259 *
260 * @param a_MinMajor Minimum major version
261 * @param a_MinMinor The minor version number part.
262 */
263#define RT_GNUC_PREREQ(a_MinMajor, a_MinMinor) RT_GNUC_PREREQ_EX(a_MinMajor, a_MinMinor, 0)
264/** @def RT_GNUC_PREREQ_EX
265 * Simplified way of checking __GNUC__ and __GNUC_MINOR__ regardless of actual
266 * compiler used, returns @a a_OtherRet for other compilers.
267 *
268 * @param a_MinMajor Minimum major version
269 * @param a_MinMinor The minor version number part.
270 * @param a_OtherRet What to return for non-GCC compilers.
271 */
272#if defined(__GNUC__) && defined(__GNUC_MINOR__)
273# define RT_GNUC_PREREQ_EX(a_MinMajor, a_MinMinor, a_OtherRet) \
274 ((__GNUC__ << 16) + __GNUC_MINOR__ >= ((a_MinMajor) << 16) + (a_MinMinor))
275#else
276# define RT_GNUC_PREREQ_EX(a_MinMajor, a_MinMinor, a_OtherRet) (a_OtherRet)
277#endif
278
279/** @def RT_MSC_PREREQ
280 * Convenient way of checking _MSC_VER regardless of actual compiler used
281 * (returns false if not MSC).
282 *
283 * @param a_MinVer Preferably a RT_MSC_VER_XXX value.
284 */
285#define RT_MSC_PREREQ(a_MinVer) RT_MSC_PREREQ_EX(a_MinVer, 0)
286/** @def RT_MSC_PREREQ_EX
287 * Convenient way of checking _MSC_VER regardless of actual compiler used,
288 * returns @a a_OtherRet for other compilers.
289 *
290 * @param a_MinVer Preferably a RT_MSC_VER_XXX value.
291 * @param a_OtherRet What to return for non-MSC compilers.
292 */
293#if defined(_MSC_VER)
294# define RT_MSC_PREREQ_EX(a_MinVer, a_OtherRet) ( (_MSC_VER) >= (a_MinVer) )
295#else
296# define RT_MSC_PREREQ_EX(a_MinVer, a_OtherRet) (a_OtherRet)
297#endif
298/** @name RT_MSC_VER_XXX - _MSC_VER values to use with RT_MSC_PREREQ.
299 * @remarks The VCxxx values are derived from the CRT DLLs shipping with the
300 * compilers.
301 * @{ */
302#define RT_MSC_VER_VC50 (1100) /**< Visual C++ 5.0. */
303#define RT_MSC_VER_VC60 (1200) /**< Visual C++ 6.0. */
304#define RT_MSC_VER_VC70 (1300) /**< Visual C++ 7.0. */
305#define RT_MSC_VER_VC70 (1300) /**< Visual C++ 7.0. */
306#define RT_MSC_VER_VS2003 (1310) /**< Visual Studio 2003, aka Visual C++ 7.1. */
307#define RT_MSC_VER_VC71 RT_MSC_VER_VS2003 /**< Visual C++ 7.1, aka Visual Studio 2003. */
308#define RT_MSC_VER_VS2005 (1400) /**< Visual Studio 2005. */
309#define RT_MSC_VER_VC80 RT_MSC_VER_VS2005 /**< Visual C++ 8.0, aka Visual Studio 2008. */
310#define RT_MSC_VER_VS2008 (1500) /**< Visual Studio 2008. */
311#define RT_MSC_VER_VC90 RT_MSC_VER_VS2008 /**< Visual C++ 9.0, aka Visual Studio 2008. */
312#define RT_MSC_VER_VS2010 (1600) /**< Visual Studio 2010. */
313#define RT_MSC_VER_VC100 RT_MSC_VER_VS2010 /**< Visual C++ 10.0, aka Visual Studio 2010. */
314#define RT_MSC_VER_VS2012 (1700) /**< Visual Studio 2012. */
315#define RT_MSC_VER_VC110 RT_MSC_VER_VS2012 /**< Visual C++ 11.0, aka Visual Studio 2012. */
316#define RT_MSC_VER_VS2013 (1800) /**< Visual Studio 2013. */
317#define RT_MSC_VER_VC120 RT_MSC_VER_VS2013 /**< Visual C++ 12.0, aka Visual Studio 2013. */
318#define RT_MSC_VER_VS2015 (1900) /**< Visual Studio 2015. */
319#define RT_MSC_VER_VC140 RT_MSC_VER_VS2015 /**< Visual C++ 14.0, aka Visual Studio 2015. */
320#define RT_MSC_VER_VS2017 (1910) /**< Visual Studio 2017. */
321#define RT_MSC_VER_VC141 RT_MSC_VER_VS2017 /**< Visual C++ 14.1, aka Visual Studio 2017. */
322#define RT_MSC_VER_VS2019 (1920) /**< Visual Studio 2019. */
323#define RT_MSC_VER_VC142 RT_MSC_VER_VS2019 /**< Visual C++ 14.2, aka Visual Studio 2019. */
324#define RT_MSC_VER_VS2019_U6 (1926) /**< Visual Studio 2019, update 6. */
325#define RT_MSC_VER_VC142_U6 RT_MSC_VER_VS2019_U6 /**< Visual C++ 14.2 update 6. */
326#define RT_MSC_VER_VS2019_U8 (1928) /**< Visual Studio 2019, update 8. */
327#define RT_MSC_VER_VC142_U8 RT_MSC_VER_VS2019_U8 /**< Visual C++ 14.2 update 8. */
328#define RT_MSC_VER_VS2019_U11 (1929) /**< Visual Studio 2019, update 11. */
329#define RT_MSC_VER_VC142_U11 RT_MSC_VER_VS2019_U11 /**< Visual C++ 14.2 update 11. */
330/** @} */
331
332/** @def RT_CLANG_PREREQ
333 * Shorter than fiddling with __clang_major__ and __clang_minor__.
334 *
335 * @param a_MinMajor Minimum major version
336 * @param a_MinMinor The minor version number part.
337 */
338#define RT_CLANG_PREREQ(a_MinMajor, a_MinMinor) RT_CLANG_PREREQ_EX(a_MinMajor, a_MinMinor, 0)
339/** @def RT_CLANG_PREREQ_EX
340 * Simplified way of checking __clang_major__ and __clang_minor__ regardless of
341 * actual compiler used, returns @a a_OtherRet for other compilers.
342 *
343 * @param a_MinMajor Minimum major version
344 * @param a_MinMinor The minor version number part.
345 * @param a_OtherRet What to return for non-GCC compilers.
346 */
347#if defined(__clang_major__) && defined(__clang_minor__)
348# define RT_CLANG_PREREQ_EX(a_MinMajor, a_MinMinor, a_OtherRet) \
349 ((__clang_major__ << 16) + __clang_minor__ >= ((a_MinMajor) << 16) + (a_MinMinor))
350#else
351# define RT_CLANG_PREREQ_EX(a_MinMajor, a_MinMinor, a_OtherRet) (a_OtherRet)
352#endif
353/** @def RT_CLANG_HAS_FEATURE
354 * Wrapper around clang's __has_feature().
355 *
356 * @param a_Feature The feature to check for.
357 */
358#if defined(__clang_major__) && defined(__clang_minor__) && defined(__has_feature)
359# define RT_CLANG_HAS_FEATURE(a_Feature) (__has_feature(a_Feature))
360#else
361# define RT_CLANG_HAS_FEATURE(a_Feature) (0)
362#endif
363
364
365#if !defined(__X86__) && !defined(__AMD64__) && (defined(RT_ARCH_AMD64) || defined(RT_ARCH_X86))
366# if defined(RT_ARCH_AMD64)
367/** Indicates that we're compiling for the AMD64 architecture.
368 * @deprecated
369 */
370# define __AMD64__
371# elif defined(RT_ARCH_X86)
372/** Indicates that we're compiling for the X86 architecture.
373 * @deprecated
374 */
375# define __X86__
376# else
377# error "Check what predefined macros your compiler uses to indicate architecture."
378# endif
379#elif defined(__X86__) && defined(__AMD64__)
380# error "Both __X86__ and __AMD64__ cannot be defined at the same time!"
381#elif defined(__X86__) && !defined(RT_ARCH_X86)
382# error "__X86__ without RT_ARCH_X86!"
383#elif defined(__AMD64__) && !defined(RT_ARCH_AMD64)
384# error "__AMD64__ without RT_ARCH_AMD64!"
385#endif
386
387/** @def RT_BIG_ENDIAN
388 * Defined if the architecture is big endian. */
389/** @def RT_LITTLE_ENDIAN
390 * Defined if the architecture is little endian. */
391#if defined(RT_ARCH_AMD64) || defined(RT_ARCH_X86) || defined(RT_ARCH_ARM32) || defined(RT_ARCH_ARM64)
392# define RT_LITTLE_ENDIAN
393#elif defined(RT_ARCH_SPARC) || defined(RT_ARCH_SPARC64)
394# define RT_BIG_ENDIAN
395#else
396# error "PORTME: architecture endianess"
397#endif
398#if defined(RT_BIG_ENDIAN) && defined(RT_LITTLE_ENDIAN)
399# error "Both RT_BIG_ENDIAN and RT_LITTLE_ENDIAN are defined"
400#endif
401
402
403/** @def IN_RING0
404 * Used to indicate that we're compiling code which is running
405 * in Ring-0 Host Context.
406 */
407
408/** @def IN_RING3
409 * Used to indicate that we're compiling code which is running
410 * in Ring-3 Host Context.
411 */
412
413/** @def IN_RC
414 * Used to indicate that we're compiling code which is running
415 * in the Raw-mode Context (implies R0).
416 */
417#if !defined(IN_RING3) && !defined(IN_RING0) && !defined(IN_RC)
418# error "You must define which context the compiled code should run in; IN_RING3, IN_RING0 or IN_RC"
419#endif
420#if (defined(IN_RING3) && (defined(IN_RING0) || defined(IN_RC)) ) \
421 || (defined(IN_RING0) && (defined(IN_RING3) || defined(IN_RC)) ) \
422 || (defined(IN_RC) && (defined(IN_RING3) || defined(IN_RING0)) )
423# error "Only one of the IN_RING3, IN_RING0, IN_RC defines should be defined."
424#endif
425
426
427/** @def ARCH_BITS
428 * Defines the bit count of the current context.
429 */
430#if !defined(ARCH_BITS) || defined(DOXYGEN_RUNNING)
431# if defined(RT_ARCH_AMD64) || defined(RT_ARCH_SPARC64) || defined(RT_ARCH_ARM64) || defined(DOXYGEN_RUNNING)
432# define ARCH_BITS 64
433# elif !defined(__I86__) || !defined(__WATCOMC__)
434# define ARCH_BITS 32
435# else
436# define ARCH_BITS 16
437# endif
438#endif
439
440/* ARCH_BITS validation (PORTME). */
441#if ARCH_BITS == 64
442 #if defined(RT_ARCH_X86) || defined(RT_ARCH_SPARC) || defined(RT_ARCH_ARM32)
443 # error "ARCH_BITS=64 but non-64-bit RT_ARCH_XXX defined."
444 #endif
445 #if !defined(RT_ARCH_AMD64) && !defined(RT_ARCH_SPARC64) && !defined(RT_ARCH_ARM64)
446 # error "ARCH_BITS=64 but no 64-bit RT_ARCH_XXX defined."
447 #endif
448
449#elif ARCH_BITS == 32
450 #if defined(RT_ARCH_AMD64) || defined(RT_ARCH_SPARC64) || defined(RT_ARCH_ARM64)
451 # error "ARCH_BITS=32 but non-32-bit RT_ARCH_XXX defined."
452 #endif
453 #if !defined(RT_ARCH_X86) && !defined(RT_ARCH_SPARC) && !defined(RT_ARCH_ARM32)
454 # error "ARCH_BITS=32 but no 32-bit RT_ARCH_XXX defined."
455 #endif
456
457#elif ARCH_BITS == 16
458 #if defined(RT_ARCH_AMD64) || defined(RT_ARCH_SPARC) || defined(RT_ARCH_SPARC64) || defined(RT_ARCH_ARM32) || defined(RT_ARCH_ARM64)
459 # error "ARCH_BITS=16 but non-16-bit RT_ARCH_XX defined."
460 #endif
461 #if !defined(RT_ARCH_X86)
462 # error "ARCH_BITS=16 but RT_ARCH_X86 isn't defined."
463 #endif
464
465#else
466# error "Unsupported ARCH_BITS value!"
467#endif
468
469/** @def HC_ARCH_BITS
470 * Defines the host architecture bit count.
471 */
472#if !defined(HC_ARCH_BITS) || defined(DOXYGEN_RUNNING)
473# if !defined(IN_RC) || defined(DOXYGEN_RUNNING)
474# define HC_ARCH_BITS ARCH_BITS
475# else
476# define HC_ARCH_BITS 32
477# endif
478#endif
479
480/** @def GC_ARCH_BITS
481 * Defines the guest architecture bit count.
482 */
483#if !defined(GC_ARCH_BITS) || defined(DOXYGEN_RUNNING)
484# if defined(VBOX_WITH_64_BITS_GUESTS) || defined(DOXYGEN_RUNNING)
485# define GC_ARCH_BITS 64
486# else
487# define GC_ARCH_BITS 32
488# endif
489#endif
490
491/** @def R3_ARCH_BITS
492 * Defines the host ring-3 architecture bit count.
493 */
494#if !defined(R3_ARCH_BITS) || defined(DOXYGEN_RUNNING)
495# ifdef IN_RING3
496# define R3_ARCH_BITS ARCH_BITS
497# else
498# define R3_ARCH_BITS HC_ARCH_BITS
499# endif
500#endif
501
502/** @def R0_ARCH_BITS
503 * Defines the host ring-0 architecture bit count.
504 */
505#if !defined(R0_ARCH_BITS) || defined(DOXYGEN_RUNNING)
506# ifdef IN_RING0
507# define R0_ARCH_BITS ARCH_BITS
508# else
509# define R0_ARCH_BITS HC_ARCH_BITS
510# endif
511#endif
512
513
514
515/** @name RT_OPSYS_XXX - Operative System Identifiers.
516 * These are the value that the RT_OPSYS \#define can take. @{
517 */
518/** Unknown OS. */
519#define RT_OPSYS_UNKNOWN 0
520/** OS Agnostic. */
521#define RT_OPSYS_AGNOSTIC 1
522/** Darwin - aka Mac OS X. */
523#define RT_OPSYS_DARWIN 2
524/** DragonFly BSD. */
525#define RT_OPSYS_DRAGONFLY 3
526/** DOS. */
527#define RT_OPSYS_DOS 4
528/** FreeBSD. */
529#define RT_OPSYS_FREEBSD 5
530/** Haiku. */
531#define RT_OPSYS_HAIKU 6
532/** Linux. */
533#define RT_OPSYS_LINUX 7
534/** L4. */
535#define RT_OPSYS_L4 8
536/** Minix. */
537#define RT_OPSYS_MINIX 9
538/** NetBSD. */
539#define RT_OPSYS_NETBSD 11
540/** Netware. */
541#define RT_OPSYS_NETWARE 12
542/** NT (native). */
543#define RT_OPSYS_NT 13
544/** OpenBSD. */
545#define RT_OPSYS_OPENBSD 14
546/** OS/2. */
547#define RT_OPSYS_OS2 15
548/** Plan 9. */
549#define RT_OPSYS_PLAN9 16
550/** QNX. */
551#define RT_OPSYS_QNX 17
552/** Solaris. */
553#define RT_OPSYS_SOLARIS 18
554/** UEFI. */
555#define RT_OPSYS_UEFI 19
556/** Windows. */
557#define RT_OPSYS_WINDOWS 20
558/** The max RT_OPSYS_XXX value (exclusive). */
559#define RT_OPSYS_MAX 21
560/** @} */
561
562/** @def RT_OPSYS
563 * Indicates which OS we're targeting. It's a \#define with is
564 * assigned one of the RT_OPSYS_XXX defines above.
565 *
566 * So to test if we're on FreeBSD do the following:
567 * @code
568 * #if RT_OPSYS == RT_OPSYS_FREEBSD
569 * some_funky_freebsd_specific_stuff();
570 * #endif
571 * @endcode
572 */
573
574/*
575 * Set RT_OPSYS_XXX according to RT_OS_XXX.
576 *
577 * Search: #define RT_OPSYS_([A-Z0-9]+) .*
578 * Replace: # elif defined(RT_OS_\1)\n# define RT_OPSYS RT_OPSYS_\1
579 */
580#ifndef RT_OPSYS
581# if defined(RT_OS_UNKNOWN) || defined(DOXYGEN_RUNNING)
582# define RT_OPSYS RT_OPSYS_UNKNOWN
583# elif defined(RT_OS_AGNOSTIC)
584# define RT_OPSYS RT_OPSYS_AGNOSTIC
585# elif defined(RT_OS_DARWIN)
586# define RT_OPSYS RT_OPSYS_DARWIN
587# elif defined(RT_OS_DRAGONFLY)
588# define RT_OPSYS RT_OPSYS_DRAGONFLY
589# elif defined(RT_OS_DOS)
590# define RT_OPSYS RT_OPSYS_DOS
591# elif defined(RT_OS_FREEBSD)
592# define RT_OPSYS RT_OPSYS_FREEBSD
593# elif defined(RT_OS_HAIKU)
594# define RT_OPSYS RT_OPSYS_HAIKU
595# elif defined(RT_OS_LINUX)
596# define RT_OPSYS RT_OPSYS_LINUX
597# elif defined(RT_OS_L4)
598# define RT_OPSYS RT_OPSYS_L4
599# elif defined(RT_OS_MINIX)
600# define RT_OPSYS RT_OPSYS_MINIX
601# elif defined(RT_OS_NETBSD)
602# define RT_OPSYS RT_OPSYS_NETBSD
603# elif defined(RT_OS_NETWARE)
604# define RT_OPSYS RT_OPSYS_NETWARE
605# elif defined(RT_OS_NT)
606# define RT_OPSYS RT_OPSYS_NT
607# elif defined(RT_OS_OPENBSD)
608# define RT_OPSYS RT_OPSYS_OPENBSD
609# elif defined(RT_OS_OS2)
610# define RT_OPSYS RT_OPSYS_OS2
611# elif defined(RT_OS_PLAN9)
612# define RT_OPSYS RT_OPSYS_PLAN9
613# elif defined(RT_OS_QNX)
614# define RT_OPSYS RT_OPSYS_QNX
615# elif defined(RT_OS_SOLARIS)
616# define RT_OPSYS RT_OPSYS_SOLARIS
617# elif defined(RT_OS_UEFI)
618# define RT_OPSYS RT_OPSYS_UEFI
619# elif defined(RT_OS_WINDOWS)
620# define RT_OPSYS RT_OPSYS_WINDOWS
621# endif
622#endif
623
624/*
625 * Guess RT_OPSYS based on compiler predefined macros.
626 */
627#ifndef RT_OPSYS
628# if defined(__APPLE__)
629# define RT_OPSYS RT_OPSYS_DARWIN
630# elif defined(__DragonFly__)
631# define RT_OPSYS RT_OPSYS_DRAGONFLY
632# elif defined(__FreeBSD__) /*??*/
633# define RT_OPSYS RT_OPSYS_FREEBSD
634# elif defined(__gnu_linux__)
635# define RT_OPSYS RT_OPSYS_LINUX
636# elif defined(__NetBSD__) /*??*/
637# define RT_OPSYS RT_OPSYS_NETBSD
638# elif defined(__OpenBSD__) /*??*/
639# define RT_OPSYS RT_OPSYS_OPENBSD
640# elif defined(__OS2__)
641# define RT_OPSYS RT_OPSYS_OS2
642# elif defined(__sun__) || defined(__SunOS__) || defined(__sun) || defined(__SunOS)
643# define RT_OPSYS RT_OPSYS_SOLARIS
644# elif defined(_WIN32) || defined(_WIN64)
645# define RT_OPSYS RT_OPSYS_WINDOWS
646# elif defined(MSDOS) || defined(_MSDOS) || defined(DOS16RM) /* OW+MSC || MSC || DMC */
647# define RT_OPSYS RT_OPSYS_DOS
648# else
649# error "Port Me"
650# endif
651#endif
652
653#if RT_OPSYS < RT_OPSYS_UNKNOWN || RT_OPSYS >= RT_OPSYS_MAX
654# error "Invalid RT_OPSYS value."
655#endif
656
657/*
658 * Do some consistency checks.
659 *
660 * Search: #define RT_OPSYS_([A-Z0-9]+) .*
661 * Replace: #if defined(RT_OS_\1) && RT_OPSYS != RT_OPSYS_\1\n# error RT_OPSYS vs RT_OS_\1\n#endif
662 */
663#if defined(RT_OS_UNKNOWN) && RT_OPSYS != RT_OPSYS_UNKNOWN
664# error RT_OPSYS vs RT_OS_UNKNOWN
665#endif
666#if defined(RT_OS_AGNOSTIC) && RT_OPSYS != RT_OPSYS_AGNOSTIC
667# error RT_OPSYS vs RT_OS_AGNOSTIC
668#endif
669#if defined(RT_OS_DARWIN) && RT_OPSYS != RT_OPSYS_DARWIN
670# error RT_OPSYS vs RT_OS_DARWIN
671#endif
672#if defined(RT_OS_DRAGONFLY) && RT_OPSYS != RT_OPSYS_DRAGONFLY
673# error RT_OPSYS vs RT_OS_DRAGONFLY
674#endif
675#if defined(RT_OS_DOS) && RT_OPSYS != RT_OPSYS_DOS
676# error RT_OPSYS vs RT_OS_DOS
677#endif
678#if defined(RT_OS_FREEBSD) && RT_OPSYS != RT_OPSYS_FREEBSD
679# error RT_OPSYS vs RT_OS_FREEBSD
680#endif
681#if defined(RT_OS_HAIKU) && RT_OPSYS != RT_OPSYS_HAIKU
682# error RT_OPSYS vs RT_OS_HAIKU
683#endif
684#if defined(RT_OS_LINUX) && RT_OPSYS != RT_OPSYS_LINUX
685# error RT_OPSYS vs RT_OS_LINUX
686#endif
687#if defined(RT_OS_L4) && RT_OPSYS != RT_OPSYS_L4
688# error RT_OPSYS vs RT_OS_L4
689#endif
690#if defined(RT_OS_MINIX) && RT_OPSYS != RT_OPSYS_MINIX
691# error RT_OPSYS vs RT_OS_MINIX
692#endif
693#if defined(RT_OS_NETBSD) && RT_OPSYS != RT_OPSYS_NETBSD
694# error RT_OPSYS vs RT_OS_NETBSD
695#endif
696#if defined(RT_OS_NETWARE) && RT_OPSYS != RT_OPSYS_NETWARE
697# error RT_OPSYS vs RT_OS_NETWARE
698#endif
699#if defined(RT_OS_NT) && RT_OPSYS != RT_OPSYS_NT
700# error RT_OPSYS vs RT_OS_NT
701#endif
702#if defined(RT_OS_OPENBSD) && RT_OPSYS != RT_OPSYS_OPENBSD
703# error RT_OPSYS vs RT_OS_OPENBSD
704#endif
705#if defined(RT_OS_OS2) && RT_OPSYS != RT_OPSYS_OS2
706# error RT_OPSYS vs RT_OS_OS2
707#endif
708#if defined(RT_OS_PLAN9) && RT_OPSYS != RT_OPSYS_PLAN9
709# error RT_OPSYS vs RT_OS_PLAN9
710#endif
711#if defined(RT_OS_QNX) && RT_OPSYS != RT_OPSYS_QNX
712# error RT_OPSYS vs RT_OS_QNX
713#endif
714#if defined(RT_OS_SOLARIS) && RT_OPSYS != RT_OPSYS_SOLARIS
715# error RT_OPSYS vs RT_OS_SOLARIS
716#endif
717#if defined(RT_OS_UEFI) && RT_OPSYS != RT_OPSYS_UEFI
718# error RT_OPSYS vs RT_OS_UEFI
719#endif
720#if defined(RT_OS_WINDOWS) && RT_OPSYS != RT_OPSYS_WINDOWS
721# error RT_OPSYS vs RT_OS_WINDOWS
722#endif
723
724/*
725 * Make sure the RT_OS_XXX macro is defined.
726 *
727 * Search: #define RT_OPSYS_([A-Z0-9]+) .*
728 * Replace: #elif RT_OPSYS == RT_OPSYS_\1\n# ifndef RT_OS_\1\n# define RT_OS_\1\n# endif
729 */
730#if RT_OPSYS == RT_OPSYS_UNKNOWN
731# ifndef RT_OS_UNKNOWN
732# define RT_OS_UNKNOWN
733# endif
734#elif RT_OPSYS == RT_OPSYS_AGNOSTIC
735# ifndef RT_OS_AGNOSTIC
736# define RT_OS_AGNOSTIC
737# endif
738#elif RT_OPSYS == RT_OPSYS_DARWIN
739# ifndef RT_OS_DARWIN
740# define RT_OS_DARWIN
741# endif
742#elif RT_OPSYS == RT_OPSYS_DRAGONFLY
743# ifndef RT_OS_DRAGONFLY
744# define RT_OS_DRAGONFLY
745# endif
746#elif RT_OPSYS == RT_OPSYS_DOS
747# ifndef RT_OS_DOS
748# define RT_OS_DOS
749# endif
750#elif RT_OPSYS == RT_OPSYS_FREEBSD
751# ifndef RT_OS_FREEBSD
752# define RT_OS_FREEBSD
753# endif
754#elif RT_OPSYS == RT_OPSYS_HAIKU
755# ifndef RT_OS_HAIKU
756# define RT_OS_HAIKU
757# endif
758#elif RT_OPSYS == RT_OPSYS_LINUX
759# ifndef RT_OS_LINUX
760# define RT_OS_LINUX
761# endif
762#elif RT_OPSYS == RT_OPSYS_L4
763# ifndef RT_OS_L4
764# define RT_OS_L4
765# endif
766#elif RT_OPSYS == RT_OPSYS_MINIX
767# ifndef RT_OS_MINIX
768# define RT_OS_MINIX
769# endif
770#elif RT_OPSYS == RT_OPSYS_NETBSD
771# ifndef RT_OS_NETBSD
772# define RT_OS_NETBSD
773# endif
774#elif RT_OPSYS == RT_OPSYS_NETWARE
775# ifndef RT_OS_NETWARE
776# define RT_OS_NETWARE
777# endif
778#elif RT_OPSYS == RT_OPSYS_NT
779# ifndef RT_OS_NT
780# define RT_OS_NT
781# endif
782#elif RT_OPSYS == RT_OPSYS_OPENBSD
783# ifndef RT_OS_OPENBSD
784# define RT_OS_OPENBSD
785# endif
786#elif RT_OPSYS == RT_OPSYS_OS2
787# ifndef RT_OS_OS2
788# define RT_OS_OS2
789# endif
790#elif RT_OPSYS == RT_OPSYS_PLAN9
791# ifndef RT_OS_PLAN9
792# define RT_OS_PLAN9
793# endif
794#elif RT_OPSYS == RT_OPSYS_QNX
795# ifndef RT_OS_QNX
796# define RT_OS_QNX
797# endif
798#elif RT_OPSYS == RT_OPSYS_SOLARIS
799# ifndef RT_OS_SOLARIS
800# define RT_OS_SOLARIS
801# endif
802#elif RT_OPSYS == RT_OPSYS_UEFI
803# ifndef RT_OS_UEFI
804# define RT_OS_UEFI
805# endif
806#elif RT_OPSYS == RT_OPSYS_WINDOWS
807# ifndef RT_OS_WINDOWS
808# define RT_OS_WINDOWS
809# endif
810#else
811# error "Bad RT_OPSYS value."
812#endif
813
814
815/**
816 * Checks whether the given OpSys uses DOS-style paths or not.
817 *
818 * By DOS-style paths we include drive lettering and UNC paths.
819 *
820 * @returns true / false
821 * @param a_OpSys The RT_OPSYS_XXX value to check, will be reference
822 * multiple times.
823 */
824#define RT_OPSYS_USES_DOS_PATHS(a_OpSys) \
825 ( (a_OpSys) == RT_OPSYS_WINDOWS \
826 || (a_OpSys) == RT_OPSYS_OS2 \
827 || (a_OpSys) == RT_OPSYS_DOS )
828
829
830
831/** @def CTXTYPE
832 * Declare a type differently in GC, R3 and R0.
833 *
834 * @param a_GCType The GC type.
835 * @param a_R3Type The R3 type.
836 * @param a_R0Type The R0 type.
837 * @remark For pointers used only in one context use RCPTRTYPE(), R3R0PTRTYPE(), R3PTRTYPE() or R0PTRTYPE().
838 */
839#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
840# define CTXTYPE(a_GCType, a_R3Type, a_R0Type) a_GCType
841#elif defined(IN_RING3) || defined(DOXYGEN_RUNNING)
842# define CTXTYPE(a_GCType, a_R3Type, a_R0Type) a_R3Type
843#else
844# define CTXTYPE(a_GCType, a_R3Type, a_R0Type) a_R0Type
845#endif
846
847/** @def CTX_EXPR
848 * Expression selector for avoiding \#ifdef's.
849 *
850 * @param a_R3Expr The R3 expression.
851 * @param a_R0Expr The R0 expression.
852 * @param a_RCExpr The RC expression.
853 */
854#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
855# define CTX_EXPR(a_R3Expr, a_R0Expr, a_RCExpr) a_RCExpr
856#elif defined(IN_RING0) && !defined(DOXYGEN_RUNNING)
857# define CTX_EXPR(a_R3Expr, a_R0Expr, a_RCExpr) a_R0Expr
858#else
859# define CTX_EXPR(a_R3Expr, a_R0Expr, a_RCExpr) a_R3Expr
860#endif
861
862/** @def RCPTRTYPE
863 * Declare a pointer which is used in the raw mode context but appears in structure(s) used by
864 * both HC and RC. The main purpose is to make sure structures have the same
865 * size when built for different architectures.
866 *
867 * @param a_RCType The RC type.
868 */
869#define RCPTRTYPE(a_RCType) CTXTYPE(a_RCType, RTRCPTR, RTRCPTR)
870
871/** @def RGPTRTYPE
872 * This will become RCPTRTYPE once we've converted all uses of RCPTRTYPE to this.
873 *
874 * @param a_RCType The RC type.
875 */
876#define RGPTRTYPE(a_RCType) CTXTYPE(a_RCType, RTGCPTR, RTGCPTR)
877
878/** @def R3R0PTRTYPE
879 * Declare a pointer which is used in HC, is explicitly valid in ring 3 and 0,
880 * but appears in structure(s) used by both HC and GC. The main purpose is to
881 * make sure structures have the same size when built for different architectures.
882 *
883 * @param a_R3R0Type The R3R0 type.
884 * @remarks This used to be called HCPTRTYPE.
885 */
886#define R3R0PTRTYPE(a_R3R0Type) CTXTYPE(RTHCPTR, a_R3R0Type, a_R3R0Type)
887
888/** @def R3PTRTYPE
889 * Declare a pointer which is used in R3 but appears in structure(s) used by
890 * both HC and GC. The main purpose is to make sure structures have the same
891 * size when built for different architectures.
892 *
893 * @param a_R3Type The R3 type.
894 */
895#define R3PTRTYPE(a_R3Type) CTXTYPE(RTHCUINTPTR, a_R3Type, RTHCUINTPTR)
896
897/** @def R0PTRTYPE
898 * Declare a pointer which is used in R0 but appears in structure(s) used by
899 * both HC and GC. The main purpose is to make sure structures have the same
900 * size when built for different architectures.
901 *
902 * @param a_R0Type The R0 type.
903 */
904#define R0PTRTYPE(a_R0Type) CTXTYPE(RTHCUINTPTR, RTHCUINTPTR, a_R0Type)
905
906/** @def CTXSUFF
907 * Adds the suffix of the current context to the passed in
908 * identifier name. The suffix is HC or GC.
909 *
910 * This is macro should only be used in shared code to avoid a forest of ifdefs.
911 * @param a_Var Identifier name.
912 * @deprecated Use CTX_SUFF. Do NOT use this for new code.
913 */
914/** @def OTHERCTXSUFF
915 * Adds the suffix of the other context to the passed in
916 * identifier name. The suffix is HC or GC.
917 *
918 * This is macro should only be used in shared code to avoid a forest of ifdefs.
919 * @param a_Var Identifier name.
920 * @deprecated Use CTX_SUFF. Do NOT use this for new code.
921 */
922#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
923# define CTXSUFF(a_Var) a_Var##GC
924# define OTHERCTXSUFF(a_Var) a_Var##HC
925#else
926# define CTXSUFF(a_Var) a_Var##HC
927# define OTHERCTXSUFF(a_Var) a_Var##GC
928#endif
929
930/** @def CTXALLSUFF
931 * Adds the suffix of the current context to the passed in
932 * identifier name. The suffix is R3, R0 or GC.
933 *
934 * This is macro should only be used in shared code to avoid a forest of ifdefs.
935 * @param a_Var Identifier name.
936 * @deprecated Use CTX_SUFF. Do NOT use this for new code.
937 */
938#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
939# define CTXALLSUFF(a_Var) a_Var##GC
940#elif defined(IN_RING0) && !defined(DOXYGEN_RUNNING)
941# define CTXALLSUFF(a_Var) a_Var##R0
942#else
943# define CTXALLSUFF(a_Var) a_Var##R3
944#endif
945
946/** @def CTX_SUFF
947 * Adds the suffix of the current context to the passed in
948 * identifier name. The suffix is R3, R0 or RC.
949 *
950 * This is macro should only be used in shared code to avoid a forest of ifdefs.
951 * @param a_Var Identifier name.
952 *
953 * @remark This will replace CTXALLSUFF and CTXSUFF before long.
954 */
955#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
956# define CTX_SUFF(a_Var) a_Var##RC
957#elif defined(IN_RING0) && !defined(DOXYGEN_RUNNING)
958# define CTX_SUFF(a_Var) a_Var##R0
959#else
960# define CTX_SUFF(a_Var) a_Var##R3
961#endif
962
963/** @def CTX_SUFF_Z
964 * Adds the suffix of the current context to the passed in
965 * identifier name, combining RC and R0 into RZ.
966 * The suffix thus is R3 or RZ.
967 *
968 * This is macro should only be used in shared code to avoid a forest of ifdefs.
969 * @param a_Var Identifier name.
970 *
971 * @remark This will replace CTXALLSUFF and CTXSUFF before long.
972 */
973#if defined(IN_RING3) || defined(DOXYGEN_RUNNING)
974# define CTX_SUFF_Z(a_Var) a_Var##R3
975#else
976# define CTX_SUFF_Z(a_Var) a_Var##RZ
977#endif
978
979
980/** @def CTXMID
981 * Adds the current context as a middle name of an identifier name
982 * The middle name is HC or GC.
983 *
984 * This is macro should only be used in shared code to avoid a forest of ifdefs.
985 * @param a_First First name.
986 * @param a_Last Surname.
987 */
988/** @def OTHERCTXMID
989 * Adds the other context as a middle name of an identifier name
990 * The middle name is HC or GC.
991 *
992 * This is macro should only be used in shared code to avoid a forest of ifdefs.
993 * @param a_First First name.
994 * @param a_Last Surname.
995 * @deprecated use CTX_MID or CTX_MID_Z
996 */
997#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
998# define CTXMID(a_First, a_Last) a_First##GC##a_Last
999# define OTHERCTXMID(a_First, a_Last) a_First##HC##a_Last
1000#else
1001# define CTXMID(a_First, a_Last) a_First##HC##a_Last
1002# define OTHERCTXMID(a_First, a_Last) a_First##GC##a_Last
1003#endif
1004
1005/** @def CTXALLMID
1006 * Adds the current context as a middle name of an identifier name.
1007 * The middle name is R3, R0 or GC.
1008 *
1009 * This is macro should only be used in shared code to avoid a forest of ifdefs.
1010 * @param a_First First name.
1011 * @param a_Last Surname.
1012 * @deprecated use CTX_MID or CTX_MID_Z
1013 */
1014#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
1015# define CTXALLMID(a_First, a_Last) a_First##GC##a_Last
1016#elif defined(IN_RING0) && !defined(DOXYGEN_RUNNING)
1017# define CTXALLMID(a_First, a_Last) a_First##R0##a_Last
1018#else
1019# define CTXALLMID(a_First, a_Last) a_First##R3##a_Last
1020#endif
1021
1022/** @def CTX_MID
1023 * Adds the current context as a middle name of an identifier name.
1024 * The middle name is R3, R0 or RC.
1025 *
1026 * This is macro should only be used in shared code to avoid a forest of ifdefs.
1027 * @param a_First First name.
1028 * @param a_Last Surname.
1029 */
1030#if defined(IN_RC) && !defined(DOXYGEN_RUNNING)
1031# define CTX_MID(a_First, a_Last) a_First##RC##a_Last
1032#elif defined(IN_RING0) && !defined(DOXYGEN_RUNNING)
1033# define CTX_MID(a_First, a_Last) a_First##R0##a_Last
1034#else
1035# define CTX_MID(a_First, a_Last) a_First##R3##a_Last
1036#endif
1037
1038/** @def CTX_MID_Z
1039 * Adds the current context as a middle name of an identifier name, combining RC
1040 * and R0 into RZ.
1041 * The middle name thus is either R3 or RZ.
1042 *
1043 * This is macro should only be used in shared code to avoid a forest of ifdefs.
1044 * @param a_First First name.
1045 * @param a_Last Surname.
1046 */
1047#ifdef IN_RING3
1048# define CTX_MID_Z(a_First, a_Last) a_First##R3##a_Last
1049#else
1050# define CTX_MID_Z(a_First, a_Last) a_First##RZ##a_Last
1051#endif
1052
1053
1054/** @def R3STRING
1055 * A macro which in GC and R0 will return a dummy string while in R3 it will return
1056 * the parameter.
1057 *
1058 * This is typically used to wrap description strings in structures shared
1059 * between R3, R0 and/or GC. The intention is to avoid the \#ifdef IN_RING3 mess.
1060 *
1061 * @param a_pR3String The R3 string. Only referenced in R3.
1062 * @see R0STRING and GCSTRING
1063 */
1064#ifdef IN_RING3
1065# define R3STRING(a_pR3String) (a_pR3String)
1066#else
1067# define R3STRING(a_pR3String) ("<R3_STRING>")
1068#endif
1069
1070/** @def R0STRING
1071 * A macro which in GC and R3 will return a dummy string while in R0 it will return
1072 * the parameter.
1073 *
1074 * This is typically used to wrap description strings in structures shared
1075 * between R3, R0 and/or GC. The intention is to avoid the \#ifdef IN_RING0 mess.
1076 *
1077 * @param a_pR0String The R0 string. Only referenced in R0.
1078 * @see R3STRING and GCSTRING
1079 */
1080#ifdef IN_RING0
1081# define R0STRING(a_pR0String) (a_pR0String)
1082#else
1083# define R0STRING(a_pR0String) ("<R0_STRING>")
1084#endif
1085
1086/** @def RCSTRING
1087 * A macro which in R3 and R0 will return a dummy string while in RC it will return
1088 * the parameter.
1089 *
1090 * This is typically used to wrap description strings in structures shared
1091 * between R3, R0 and/or RC. The intention is to avoid the \#ifdef IN_RC mess.
1092 *
1093 * @param a_pRCString The RC string. Only referenced in RC.
1094 * @see R3STRING, R0STRING
1095 */
1096#ifdef IN_RC
1097# define RCSTRING(a_pRCString) (a_pRCString)
1098#else
1099# define RCSTRING(a_pRCString) ("<RC_STRING>")
1100#endif
1101
1102
1103/** @def RT_NOTHING
1104 * A macro that expands to nothing.
1105 * This is primarily intended as a dummy argument for macros to avoid the
1106 * undefined behavior passing empty arguments to an macro (ISO C90 and C++98,
1107 * gcc v4.4 warns about it).
1108 */
1109#define RT_NOTHING
1110
1111/** @def RT_GCC_EXTENSION
1112 * Macro for shutting up GCC warnings about using language extensions. */
1113#ifdef __GNUC__
1114# define RT_GCC_EXTENSION __extension__
1115#else
1116# define RT_GCC_EXTENSION
1117#endif
1118
1119/** @def RT_GCC_NO_WARN_DEPRECATED_BEGIN
1120 * Used to start a block of code where GCC and Clang should not warn about
1121 * deprecated declarations. */
1122/** @def RT_GCC_NO_WARN_DEPRECATED_END
1123 * Used to end a block of code where GCC and Clang should not warn about
1124 * deprecated declarations. */
1125#if RT_CLANG_PREREQ(4, 0)
1126# define RT_GCC_NO_WARN_DEPRECATED_BEGIN \
1127 _Pragma("clang diagnostic push") \
1128 _Pragma("GCC diagnostic ignored \"-Wdeprecated-declarations\"")
1129# define RT_GCC_NO_WARN_DEPRECATED_END \
1130 _Pragma("clang diagnostic pop")
1131
1132#elif RT_GNUC_PREREQ(4, 6)
1133# define RT_GCC_NO_WARN_DEPRECATED_BEGIN \
1134 _Pragma("GCC diagnostic push") \
1135 _Pragma("GCC diagnostic ignored \"-Wdeprecated-declarations\"")
1136# define RT_GCC_NO_WARN_DEPRECATED_END \
1137 _Pragma("GCC diagnostic pop")
1138#else
1139# define RT_GCC_NO_WARN_DEPRECATED_BEGIN
1140# define RT_GCC_NO_WARN_DEPRECATED_END
1141#endif
1142
1143/** @def RT_GCC_NO_WARN_CONVERSION_BEGIN
1144 * Used to start a block of code where GCC should not warn about implicit
1145 * conversions that may alter a value. */
1146#if RT_GNUC_PREREQ(4, 6)
1147# define RT_GCC_NO_WARN_CONVERSION_BEGIN \
1148 _Pragma("GCC diagnostic push") \
1149 _Pragma("GCC diagnostic ignored \"-Wconversion\"")
1150/** @def RT_GCC_NO_WARN_CONVERSION_END
1151 * Used to end a block of code where GCC should not warn about implicit
1152 * conversions that may alter a value. */
1153# define RT_GCC_NO_WARN_CONVERSION_END \
1154 _Pragma("GCC diagnostic pop")
1155#else
1156# define RT_GCC_NO_WARN_CONVERSION_BEGIN
1157# define RT_GCC_NO_WARN_CONVERSION_END
1158#endif
1159
1160/** @def RT_COMPILER_GROKS_64BIT_BITFIELDS
1161 * Macro that is defined if the compiler understands 64-bit bitfields. */
1162#if !defined(RT_OS_OS2) || (!defined(__IBMC__) && !defined(__IBMCPP__))
1163# if !defined(__WATCOMC__) /* watcom compiler doesn't grok it either. */
1164# define RT_COMPILER_GROKS_64BIT_BITFIELDS
1165# endif
1166#endif
1167
1168/** @def RT_COMPILER_LONG_DOUBLE_BITS
1169 * Number of relevant bits in the long double type: 64, 80 or 128 */
1170/** @def RT_COMPILER_WITH_64BIT_LONG_DOUBLE
1171 * Macro that is defined if the compiler implements long double as the
1172 * IEEE precision floating. */
1173/** @def RT_COMPILER_WITH_80BIT_LONG_DOUBLE
1174 * Macro that is defined if the compiler implements long double as the
1175 * IEEE extended precision floating. */
1176/** @def RT_COMPILER_WITH_128BIT_LONG_DOUBLE
1177* Macro that is defined if the compiler implements long double as the
1178* IEEE quadruple precision floating (128-bit).
1179* @note Currently not able to detect this, so must be explicitly defined. */
1180#if defined(__LDBL_MANT_DIG__) /* GCC & clang have this defined and should be more reliable. */
1181# if __LDBL_MANT_DIG__ == 53
1182# define RT_COMPILER_LONG_DOUBLE_BITS 64
1183# define RT_COMPILER_WITH_64BIT_LONG_DOUBLE
1184# undef RT_COMPILER_WITH_80BIT_LONG_DOUBLE
1185# undef RT_COMPILER_WITH_128BIT_LONG_DOUBLE
1186# elif __LDBL_MANT_DIG__ == 64
1187# define RT_COMPILER_LONG_DOUBLE_BITS 80
1188# undef RT_COMPILER_WITH_64BIT_LONG_DOUBLE
1189# define RT_COMPILER_WITH_80BIT_LONG_DOUBLE
1190# undef RT_COMPILER_WITH_128BIT_LONG_DOUBLE
1191# elif __LDBL_MANT_DIG__ == 113
1192# define RT_COMPILER_LONG_DOUBLE_BITS 128
1193# undef RT_COMPILER_WITH_64BIT_LONG_DOUBLE
1194# undef RT_COMPILER_WITH_80BIT_LONG_DOUBLE
1195# define RT_COMPILER_WITH_128BIT_LONG_DOUBLE
1196# else
1197# error "Port me!"
1198# endif
1199#elif defined(RT_OS_WINDOWS) || defined(RT_ARCH_ARM64) || defined(RT_ARCH_ARM32) /* the M1 arm64 at least */
1200# define RT_COMPILER_LONG_DOUBLE_BITS 64
1201# define RT_COMPILER_WITH_64BIT_LONG_DOUBLE
1202# undef RT_COMPILER_WITH_80BIT_LONG_DOUBLE
1203# undef RT_COMPILER_WITH_128BIT_LONG_DOUBLE
1204#elif defined(RT_ARCH_AMD64) || defined(RT_ARCH_X86)
1205# define RT_COMPILER_LONG_DOUBLE_BITS 80
1206# undef RT_COMPILER_WITH_64BIT_LONG_DOUBLE
1207# define RT_COMPILER_WITH_80BIT_LONG_DOUBLE
1208# undef RT_COMPILER_WITH_128BIT_LONG_DOUBLE
1209#elif defined(RT_ARCH_SPARC) || defined(RT_ARCH_SPARC64)
1210# define RT_COMPILER_LONG_DOUBLE_BITS 128
1211# undef RT_COMPILER_WITH_64BIT_LONG_DOUBLE
1212# undef RT_COMPILER_WITH_80BIT_LONG_DOUBLE
1213# define RT_COMPILER_WITH_128BIT_LONG_DOUBLE
1214#else
1215# error "Port me!"
1216#endif
1217
1218
1219/*
1220 * The cl.exe frontend emulation of parfait is incorrect and
1221 * it still defines __SIZEOF_INT128__ despite msvc not supporting this
1222 * type and our code relying on the uint18_t type being a struct
1223 * in inline assembler code.
1224 */
1225#if defined(_MSC_VER) && defined(VBOX_WITH_PARFAIT)
1226# undef __SIZEOF_INT128__
1227#endif
1228
1229
1230/** @def RT_COMPILER_WITH_128BIT_INT_TYPES
1231 * Defined when uint128_t and int128_t are native integer types. If
1232 * undefined, they are structure with Hi & Lo members. */
1233#if defined(__SIZEOF_INT128__) || (defined(__GNUC__) && (defined(RT_ARCH_AMD64) || defined(RT_ARCH_ARM64)))
1234# define RT_COMPILER_WITH_128BIT_INT_TYPES
1235#endif
1236
1237/** @def RT_EXCEPTIONS_ENABLED
1238 * Defined when C++ exceptions are enabled.
1239 */
1240#if !defined(RT_EXCEPTIONS_ENABLED) \
1241 && defined(__cplusplus) \
1242 && ( (defined(_MSC_VER) && defined(_CPPUNWIND)) \
1243 || (defined(__GNUC__) && defined(__EXCEPTIONS)))
1244# define RT_EXCEPTIONS_ENABLED
1245#endif
1246
1247/** @def DECL_NOTHROW
1248 * How to declare a function which does not throw C++ exceptions.
1249 *
1250 * @param a_Type The return type.
1251 *
1252 * @note This macro can be combined with other macros, for example
1253 * @code
1254 * RTR3DECL(DECL_NOTHROW(void)) foo(void);
1255 * @endcode
1256 *
1257 * @note GCC is currently restricted to 4.2+ given the ominous comments on
1258 * RT_NOTHROW_PROTO.
1259 */
1260#ifdef __cplusplus
1261# if RT_MSC_PREREQ(RT_MSC_VER_VS2015) /*?*/
1262# define DECL_NOTHROW(a_Type) __declspec(nothrow) a_Type
1263# elif RT_CLANG_PREREQ(6,0) || RT_GNUC_PREREQ(4,2)
1264# define DECL_NOTHROW(a_Type) __attribute__((__nothrow__)) a_Type
1265# else
1266# define DECL_NOTHROW(a_Type) a_Type
1267# endif
1268#else
1269# define DECL_NOTHROW(a_Type) a_Type
1270#endif
1271
1272/** @def RT_NOTHROW_PROTO
1273 * Function does not throw any C++ exceptions, prototype edition.
1274 *
1275 * How to express that a function doesn't throw C++ exceptions and the compiler
1276 * can thus save itself the bother of trying to catch any of them and generate
1277 * unwind info. Put this between the closing parenthesis and the semicolon in
1278 * function prototypes (and implementation if C++).
1279 *
1280 * @note This translates to 'noexcept' when compiling in newer C++ mode.
1281 *
1282 * @remarks The use of the nothrow attribute with GCC is because old compilers
1283 * (4.1.1, 32-bit) leaking the nothrow into global space or something
1284 * when used with RTDECL or similar. Using this forces us to have two
1285 * macros, as the nothrow attribute is not for the function definition.
1286 */
1287/** @def RT_NOTHROW_DEF
1288 * Function does not throw any C++ exceptions, definition edition.
1289 *
1290 * The counter part to RT_NOTHROW_PROTO that is added to the function
1291 * definition.
1292 */
1293#ifdef RT_EXCEPTIONS_ENABLED
1294# if RT_MSC_PREREQ_EX(RT_MSC_VER_VS2015, 0) \
1295 || RT_CLANG_HAS_FEATURE(cxx_noexcept) \
1296 || (RT_GNUC_PREREQ(7, 0) && __cplusplus >= 201100)
1297# define RT_NOTHROW_PROTO noexcept
1298# define RT_NOTHROW_DEF noexcept
1299# elif defined(__GNUC__)
1300# if RT_GNUC_PREREQ(3, 3)
1301# define RT_NOTHROW_PROTO __attribute__((__nothrow__))
1302# else
1303# define RT_NOTHROW_PROTO
1304# endif
1305# define RT_NOTHROW_DEF /* Would need a DECL_NO_THROW like __declspec(nothrow), which we wont do at this point. */
1306# else
1307# define RT_NOTHROW_PROTO throw()
1308# define RT_NOTHROW_DEF throw()
1309# endif
1310#else
1311# define RT_NOTHROW_PROTO
1312# define RT_NOTHROW_DEF
1313#endif
1314/** @def RT_NOTHROW_PROTO
1315 * @deprecated Use RT_NOTHROW_PROTO. */
1316#define RT_NO_THROW_PROTO RT_NOTHROW_PROTO
1317/** @def RT_NOTHROW_DEF
1318 * @deprecated Use RT_NOTHROW_DEF. */
1319#define RT_NO_THROW_DEF RT_NOTHROW_DEF
1320
1321/** @def RT_THROW
1322 * How to express that a method or function throws a type of exceptions. Some
1323 * compilers does not want this kind of information and will warning about it.
1324 *
1325 * @param a_Type The type exception.
1326 *
1327 * @remarks If the actual throwing is done from the header, enclose it by
1328 * \#ifdef RT_EXCEPTIONS_ENABLED ... \#else ... \#endif so the header
1329 * compiles cleanly without exceptions enabled.
1330 *
1331 * Do NOT use this for the actual throwing of exceptions!
1332 */
1333#ifdef RT_EXCEPTIONS_ENABLED
1334# if (__cplusplus + 0) >= 201700
1335# define RT_THROW(a_Type) noexcept(false)
1336# elif RT_MSC_PREREQ_EX(RT_MSC_VER_VC71, 0)
1337# define RT_THROW(a_Type)
1338# elif RT_GNUC_PREREQ(7, 0)
1339# define RT_THROW(a_Type)
1340# else
1341# define RT_THROW(a_Type) throw(a_Type)
1342# endif
1343#else
1344# define RT_THROW(a_Type)
1345#endif
1346
1347
1348/** @def RT_OVERRIDE
1349 * Wrapper for the C++11 override keyword.
1350 *
1351 * @remarks Recognized by g++ starting 4.7, however causes pedantic warnings
1352 * when used without officially enabling the C++11 features.
1353 */
1354#ifdef __cplusplus
1355# if RT_MSC_PREREQ_EX(RT_MSC_VER_VS2012, 0) || RT_CLANG_HAS_FEATURE(cxx_override_control)
1356# define RT_OVERRIDE override
1357# elif RT_GNUC_PREREQ(4, 7) || RT_CLANG_PREREQ(7, 1) /** @todo possibly clang supports this earlier. found no __has_feature check. */
1358# if __cplusplus >= 201100
1359# define RT_OVERRIDE override
1360# else
1361# define RT_OVERRIDE
1362# endif
1363# else
1364# define RT_OVERRIDE
1365# endif
1366#else
1367# define RT_OVERRIDE
1368#endif
1369
1370/** @def RT_FINAL
1371 * Wrapper for the C++11 final keyword.
1372 *
1373 * @remarks Recognized by g++ starting 4.7. Assumes it triggers warnings just
1374 * like override does when C++11 isn't officially enabled.
1375 */
1376#ifdef __cplusplus
1377# if RT_MSC_PREREQ_EX(RT_MSC_VER_VS2015, 0) /** @todo not sure since when this is supported, probably 2012 like override. */
1378# define RT_FINAL final
1379# elif RT_GNUC_PREREQ(4, 7) /** @todo clang and final */
1380# if __cplusplus >= 201100
1381# define RT_FINAL final
1382# else
1383# define RT_FINAL
1384# endif
1385# else
1386# define RT_FINAL
1387# endif
1388#else
1389# define RT_FINAL
1390#endif
1391
1392/** @def RT_NOEXCEPT
1393 * Wrapper for the C++11 noexcept keyword (only true form).
1394 * @note use RT_NOTHROW instead.
1395 */
1396/** @def RT_NOEXCEPT_EX
1397 * Wrapper for the C++11 noexcept keyword with expression.
1398 * @param a_Expr The expression.
1399 */
1400#ifdef __cplusplus
1401# if (RT_MSC_PREREQ_EX(RT_MSC_VER_VS2015, 0) && defined(RT_EXCEPTIONS_ENABLED)) \
1402 || RT_CLANG_HAS_FEATURE(cxx_noexcept) \
1403 || (RT_GNUC_PREREQ(7, 0) && __cplusplus >= 201100)
1404# define RT_NOEXCEPT noexcept
1405# define RT_NOEXCEPT_EX(a_Expr) noexcept(a_Expr)
1406# else
1407# define RT_NOEXCEPT
1408# define RT_NOEXCEPT_EX(a_Expr)
1409# endif
1410#else
1411# define RT_NOEXCEPT
1412# define RT_NOEXCEPT_EX(a_Expr)
1413#endif
1414
1415/** @def RT_ALIGNAS_VAR
1416 * Wrapper for the C++ alignas keyword when used on variables.
1417 *
1418 * This must be put before the storage class and type.
1419 *
1420 * @param a_cbAlign The alignment. Must be power of two.
1421 * @note If C++11 is not enabled/detectable, alternatives will be used where
1422 * available. */
1423/** @def RT_ALIGNAS_TYPE
1424 * Wrapper for the C++ alignas keyword when used on types.
1425 *
1426 * When using struct, this must follow the struct keyword.
1427 *
1428 * @param a_cbAlign The alignment. Must be power of two.
1429 * @note If C++11 is not enabled/detectable, alternatives will be used where
1430 * available. */
1431/** @def RT_ALIGNAS_MEMB
1432 * Wrapper for the C++ alignas keyword when used on structure members.
1433 *
1434 * This must be put before the variable type.
1435 *
1436 * @param a_cbAlign The alignment. Must be power of two.
1437 * @note If C++11 is not enabled/detectable, alternatives will be used where
1438 * available. */
1439#ifdef __cplusplus
1440# if __cplusplus >= 201100 || defined(DOXYGEN_RUNNING)
1441# define RT_ALIGNAS_VAR(a_cbAlign) alignas(a_cbAlign)
1442# define RT_ALIGNAS_TYPE(a_cbAlign) alignas(a_cbAlign)
1443# define RT_ALIGNAS_MEMB(a_cbAlign) alignas(a_cbAlign)
1444# endif
1445#endif
1446#ifndef RT_ALIGNAS_VAR
1447# ifdef _MSC_VER
1448# define RT_ALIGNAS_VAR(a_cbAlign) __declspec(align(a_cbAlign))
1449# define RT_ALIGNAS_TYPE(a_cbAlign) __declspec(align(a_cbAlign))
1450# define RT_ALIGNAS_MEMB(a_cbAlign) __declspec(align(a_cbAlign))
1451# elif defined(__GNUC__)
1452# define RT_ALIGNAS_VAR(a_cbAlign) __attribute__((__aligned__(a_cbAlign)))
1453# define RT_ALIGNAS_TYPE(a_cbAlign) __attribute__((__aligned__(a_cbAlign)))
1454# define RT_ALIGNAS_MEMB(a_cbAlign) __attribute__((__aligned__(a_cbAlign)))
1455# else
1456# define RT_ALIGNAS_VAR(a_cbAlign)
1457# define RT_ALIGNAS_TYPE(a_cbAlign)
1458# define RT_ALIGNAS_MEMB(a_cbAlign)
1459# endif
1460#endif
1461
1462/** @def RT_CACHELINE_SIZE
1463 * The typical cache line size for the target architecture.
1464 * @see RT_ALIGNAS_VAR, RT_ALIGNAS_TYPE, RT_ALIGNAS_MEMB
1465 */
1466#if defined(RT_ARCH_X86) || defined(RT_ARCH_AMD64) \
1467 || defined(RT_ARCH_ARM32) || defined(RT_ARCH_ARM64) \
1468 || defined(RT_ARCH_SPARC32) || defined(RT_ARCH_SPARC64) \
1469 || defined(DOXYGEN_RUNNING)
1470# define RT_CACHELINE_SIZE 64
1471#else
1472# define RT_CACHELINE_SIZE 128 /* better overdo it */
1473#endif
1474
1475/** @def RT_FALL_THROUGH
1476 * Tell the compiler that we're falling through to the next case in a switch.
1477 * @sa RT_FALL_THRU */
1478#if RT_CLANG_PREREQ(4, 0) && RT_CPLUSPLUS_PREREQ(201100)
1479# define RT_FALL_THROUGH() [[clang::fallthrough]]
1480#elif RT_CLANG_PREREQ(12, 0) || RT_GNUC_PREREQ(7, 0)
1481# define RT_FALL_THROUGH() __attribute__((__fallthrough__))
1482#else
1483# define RT_FALL_THROUGH() (void)0
1484#endif
1485/** @def RT_FALL_THRU
1486 * Tell the compiler that we're falling thru to the next case in a switch.
1487 * @sa RT_FALL_THROUGH */
1488#define RT_FALL_THRU() RT_FALL_THROUGH()
1489
1490
1491/** @def RT_IPRT_FORMAT_ATTR
1492 * Identifies a function taking an IPRT format string.
1493 * @param a_iFmt The index (1-based) of the format string argument.
1494 * @param a_iArgs The index (1-based) of the first format argument, use 0 for
1495 * va_list.
1496 */
1497#if defined(__GNUC__) && defined(WITH_IPRT_FORMAT_ATTRIBUTE)
1498# define RT_IPRT_FORMAT_ATTR(a_iFmt, a_iArgs) __attribute__((__iprt_format__(a_iFmt, a_iArgs)))
1499#else
1500# define RT_IPRT_FORMAT_ATTR(a_iFmt, a_iArgs)
1501#endif
1502
1503/** @def RT_IPRT_FORMAT_ATTR_MAYBE_NULL
1504 * Identifies a function taking an IPRT format string, NULL is allowed.
1505 * @param a_iFmt The index (1-based) of the format string argument.
1506 * @param a_iArgs The index (1-based) of the first format argument, use 0 for
1507 * va_list.
1508 */
1509#if defined(__GNUC__) && defined(WITH_IPRT_FORMAT_ATTRIBUTE)
1510# define RT_IPRT_FORMAT_ATTR_MAYBE_NULL(a_iFmt, a_iArgs) __attribute__((__iprt_format_maybe_null__(a_iFmt, a_iArgs)))
1511#else
1512# define RT_IPRT_FORMAT_ATTR_MAYBE_NULL(a_iFmt, a_iArgs)
1513#endif
1514
1515/** @def RT_IPRT_CALL_ATTR
1516 * Identifies a function taking an IPRT format string.
1517 * @param a_iFn The index (1-based) of the function pointer argument.
1518 * @param a_iArgc The index (1-based) of the argument count.
1519 * @param a_iArgs The index (1-based) of the first argument, use 0 for
1520 * va_list.
1521 */
1522#if defined(__GNUC__) && defined(WITH_IPRT_CALL_ATTRIBUTE)
1523# define RT_IPRT_CALL_ATTR(a_iFn, a_iArgc, a_iArgs) __attribute__((__iprt_call__(a_iFn, a_iArgc, a_iArgs)))
1524#else
1525# define RT_IPRT_CALL_ATTR(a_iFn, a_iArgc, a_iArgs)
1526#endif
1527
1528
1529/** @def RT_GCC_SUPPORTS_VISIBILITY_HIDDEN
1530 * Indicates that the "hidden" visibility attribute can be used (GCC) */
1531#if defined(__GNUC__)
1532# if __GNUC__ >= 4 && !defined(RT_OS_OS2) && !defined(RT_OS_WINDOWS)
1533# define RT_GCC_SUPPORTS_VISIBILITY_HIDDEN
1534# endif
1535#endif
1536
1537/** @def RT_COMPILER_SUPPORTS_VA_ARGS
1538 * If the defined, the compiler supports the variadic macro feature (..., __VA_ARGS__). */
1539#if defined(_MSC_VER)
1540# if _MSC_VER >= 1600 /* Visual C++ v10.0 / 2010 */
1541# define RT_COMPILER_SUPPORTS_VA_ARGS
1542# endif
1543#elif defined(__GNUC__)
1544# if __GNUC__ >= 3 /* not entirely sure when this was added */
1545# define RT_COMPILER_SUPPORTS_VA_ARGS
1546# endif
1547#elif defined(__WATCOMC__)
1548# define RT_COMPILER_SUPPORTS_VA_ARGS
1549#endif
1550
1551/** @def RT_CB_LOG_CAST
1552 * Helper for logging function pointers to function may throw stuff.
1553 *
1554 * Not needed for function pointer types declared using our DECLCALLBACK
1555 * macros, only external types. */
1556#if defined(_MSC_VER) && defined(RT_EXCEPTIONS_ENABLED)
1557# define RT_CB_LOG_CAST(a_pfnCallback) ((uintptr_t)(a_pfnCallback) + 1 - 1)
1558#else
1559# define RT_CB_LOG_CAST(a_pfnCallback) (a_pfnCallback)
1560#endif
1561
1562
1563
1564/** @def RTCALL
1565 * The standard calling convention for the Runtime interfaces.
1566 *
1567 * @remarks The regparm(0) in the X86/GNUC variant deals with -mregparm=x use in
1568 * the linux kernel and potentially elsewhere (3rd party).
1569 */
1570#if defined(_MSC_VER) || defined(__WATCOMC__)
1571# define RTCALL __cdecl
1572#elif defined(RT_OS_OS2)
1573# define RTCALL __cdecl
1574#elif defined(__GNUC__) && defined(RT_ARCH_X86)
1575# define RTCALL __attribute__((__cdecl__,__regparm__(0)))
1576#else
1577# define RTCALL
1578#endif
1579
1580/** @def DECLEXPORT
1581 * How to declare an exported function.
1582 * @param a_RetType The return type of the function declaration.
1583 */
1584#if defined(_MSC_VER) || defined(RT_OS_OS2)
1585# define DECLEXPORT(a_RetType) __declspec(dllexport) a_RetType
1586#elif defined(RT_USE_VISIBILITY_DEFAULT)
1587# define DECLEXPORT(a_RetType) __attribute__((visibility("default"))) a_RetType
1588#else
1589# define DECLEXPORT(a_RetType) a_RetType
1590#endif
1591
1592/** @def DECL_EXPORT_NOTHROW
1593 * How to declare an exported function that does not throw C++ exceptions.
1594 * @param a_RetType The return type of the function declaration.
1595 */
1596#define DECL_EXPORT_NOTHROW(a_RetType) DECL_NOTHROW(DECLEXPORT(a_RetType))
1597
1598/** @def DECLIMPORT
1599 * How to declare an imported function.
1600 * @param a_RetType The return type of the function declaration.
1601 */
1602#if defined(_MSC_VER) || (defined(RT_OS_OS2) && !defined(__IBMC__) && !defined(__IBMCPP__))
1603# define DECLIMPORT(a_RetType) __declspec(dllimport) a_RetType
1604#else
1605# define DECLIMPORT(a_RetType) a_RetType
1606#endif
1607
1608/** @def DECL_IMPORT_NOTHROW
1609 * How to declare an imported function that does not throw C++ exceptions.
1610 * @param a_RetType The return type of the function declaration.
1611 */
1612#define DECL_IMPORT_NOTHROW(a_RetType) DECL_NOTHROW(DECLIMPORT(a_RetType))
1613
1614/** @def DECL_HIDDEN_ONLY
1615 * How to declare a non-exported function or variable.
1616 * @param a_Type The return type of the function or the data type of the variable.
1617 * @sa DECL_HIDDEN, DECL_HIDDEN_DATA, DECL_HIDDEN_CONST
1618 * @internal Considered more or less internal.
1619 */
1620#if !defined(RT_GCC_SUPPORTS_VISIBILITY_HIDDEN) || defined(RT_NO_VISIBILITY_HIDDEN)
1621# define DECL_HIDDEN_ONLY(a_Type) a_Type
1622#else
1623# define DECL_HIDDEN_ONLY(a_Type) __attribute__((visibility("hidden"))) a_Type
1624#endif
1625
1626/** @def DECLHIDDEN
1627 * How to declare a non-exported function or variable.
1628 * @param a_Type The return type of the function or the data type of the variable.
1629 * @sa DECL_HIDDEN_THROW, DECL_HIDDEN_DATA, DECL_HIDDEN_CONST
1630 * @todo split up into data and non-data.
1631 */
1632#define DECLHIDDEN(a_Type) DECL_NOTHROW(DECL_HIDDEN_ONLY(a_Type))
1633
1634/** @def DECL_HIDDEN_NOTHROW
1635 * How to declare a non-exported function that does not throw C++ exceptions.
1636 * @param a_RetType The return type of the function.
1637 * @note Same as DECLHIDDEN but provided to go along with DECL_IMPORT_NOTHROW
1638 * and DECL_EXPORT_NOTHROW.
1639 */
1640#define DECL_HIDDEN_NOTHROW(a_RetType) DECL_NOTHROW(DECL_HIDDEN_ONLY(a_RetType))
1641
1642/** @def DECL_HIDDEN_THROW
1643 * How to declare a non-exported function that may throw C++ exceptions.
1644 * @param a_RetType The return type of the function.
1645 */
1646#define DECL_HIDDEN_THROW(a_RetType) DECL_HIDDEN_ONLY(a_RetType)
1647
1648/** @def DECL_HIDDEN_DATA
1649 * How to declare a non-exported variable.
1650 * @param a_Type The data type of the variable.
1651 * @sa DECL_HIDDEN_CONST
1652 */
1653#if !defined(RT_GCC_SUPPORTS_VISIBILITY_HIDDEN) || defined(RT_NO_VISIBILITY_HIDDEN)
1654# define DECL_HIDDEN_DATA(a_Type) a_Type
1655#else
1656# define DECL_HIDDEN_DATA(a_Type) __attribute__((visibility("hidden"))) a_Type
1657#endif
1658
1659/** @def DECL_HIDDEN_CONST
1660 * Workaround for g++ warnings when applying the hidden attribute to a const
1661 * definition. Use DECL_HIDDEN_DATA for the declaration.
1662 * @param a_Type The data type of the variable.
1663 * @sa DECL_HIDDEN_DATA
1664 */
1665#if defined(__cplusplus) && defined(__GNUC__)
1666# define DECL_HIDDEN_CONST(a_Type) a_Type
1667#else
1668# define DECL_HIDDEN_CONST(a_Type) DECL_HIDDEN_DATA(a_Type)
1669#endif
1670
1671/** @def DECL_INVALID
1672 * How to declare a function not available for linking in the current context.
1673 * The purpose is to create compile or like time errors when used. This isn't
1674 * possible on all platforms.
1675 * @param a_RetType The return type of the function.
1676 */
1677#if defined(_MSC_VER)
1678# define DECL_INVALID(a_RetType) __declspec(dllimport) a_RetType __stdcall
1679#elif defined(__GNUC__) && defined(__cplusplus)
1680# define DECL_INVALID(a_RetType) extern "C++" a_RetType
1681#else
1682# define DECL_INVALID(a_RetType) a_RetType
1683#endif
1684
1685/** @def DECLASM
1686 * How to declare an internal assembly function.
1687 * @param a_RetType The return type of the function declaration.
1688 * @note DECL_NOTHROW is implied.
1689 */
1690#ifdef __cplusplus
1691# define DECLASM(a_RetType) extern "C" DECL_NOTHROW(a_RetType RTCALL)
1692#else
1693# define DECLASM(a_RetType) DECL_NOTHROW(a_RetType RTCALL)
1694#endif
1695
1696/** @def RT_ASM_DECL_PRAGMA_WATCOM
1697 * How to declare a assembly method prototype with watcom \#pragma aux definition. */
1698/** @def RT_ASM_DECL_PRAGMA_WATCOM_386
1699 * Same as RT_ASM_DECL_PRAGMA_WATCOM, but there is no 16-bit version when
1700 * 8086, 80186 or 80286 is selected as the target CPU. */
1701#if defined(__WATCOMC__) && ARCH_BITS == 16 && defined(RT_ARCH_X86)
1702# define RT_ASM_DECL_PRAGMA_WATCOM(a_RetType) a_RetType
1703# if defined(__SW_0) || defined(__SW_1) || defined(__SW_2)
1704# define RT_ASM_DECL_PRAGMA_WATCOM_386(a_RetType) DECLASM(a_RetType)
1705# else
1706# define RT_ASM_DECL_PRAGMA_WATCOM_386(a_RetType) a_RetType
1707# endif
1708#elif defined(__WATCOMC__) && ARCH_BITS == 32 && defined(RT_ARCH_X86)
1709# define RT_ASM_DECL_PRAGMA_WATCOM(a_RetType) a_RetType
1710# define RT_ASM_DECL_PRAGMA_WATCOM_386(a_RetType) a_RetType
1711#else
1712# define RT_ASM_DECL_PRAGMA_WATCOM(a_RetType) DECLASM(a_RetType)
1713# define RT_ASM_DECL_PRAGMA_WATCOM_386(a_RetType) DECLASM(a_RetType)
1714#endif
1715
1716/** @def DECL_NO_RETURN
1717 * How to declare a function which does not return.
1718 * @note This macro can be combined with other macros, for example
1719 * @code
1720 * RTR3DECL(DECL_NO_RETURN(void)) foo(void);
1721 * @endcode
1722 */
1723#ifdef _MSC_VER
1724# define DECL_NO_RETURN(a_RetType) __declspec(noreturn) a_RetType
1725#elif defined(__GNUC__)
1726# define DECL_NO_RETURN(a_RetType) __attribute__((noreturn)) a_RetType
1727#else
1728# define DECL_NO_RETURN(a_RetType) a_RetType
1729#endif
1730
1731/** @def DECL_RETURNS_TWICE
1732 * How to declare a function which may return more than once.
1733 * @note This macro can be combined with other macros, for example
1734 * @code
1735 * RTR3DECL(DECL_RETURNS_TWICE(void)) MySetJmp(void);
1736 * @endcode
1737 */
1738#if RT_GNUC_PREREQ(4, 1)
1739# define DECL_RETURNS_TWICE(a_RetType) __attribute__((returns_twice)) a_RetType
1740#else
1741# define DECL_RETURNS_TWICE(a_RetType) a_RetType
1742#endif
1743
1744/** @def DECL_CHECK_RETURN
1745 * Require a return value to be checked.
1746 * @note This macro can be combined with other macros, for example
1747 * @code
1748 * RTR3DECL(DECL_CHECK_RETURN(int)) MayReturnInfoStatus(void);
1749 * @endcode
1750 */
1751#if RT_GNUC_PREREQ(3, 4)
1752# define DECL_CHECK_RETURN(a_RetType) __attribute__((warn_unused_result)) a_RetType
1753#elif defined(_MSC_VER)
1754# define DECL_CHECK_RETURN(a_RetType) __declspec("SAL_checkReturn") a_RetType
1755#else
1756# define DECL_CHECK_RETURN(a_RetType) a_RetType
1757#endif
1758
1759/** @def DECL_CHECK_RETURN_NOT_R3
1760 * Variation of DECL_CHECK_RETURN that only applies the required to non-ring-3
1761 * code.
1762 */
1763#ifndef IN_RING3
1764# define DECL_CHECK_RETURN_NOT_R3(a_RetType) DECL_CHECK_RETURN(a_RetType)
1765#else
1766# define DECL_CHECK_RETURN_NOT_R3(a_RetType) a_RetType
1767#endif
1768
1769/** @def DECLWEAK
1770 * How to declare a variable which is not necessarily resolved at
1771 * runtime.
1772 * @note This macro can be combined with other macros, for example
1773 * @code
1774 * RTR3DECL(DECLWEAK(int)) foo;
1775 * @endcode
1776 */
1777#if defined(__GNUC__)
1778# define DECLWEAK(a_Type) a_Type __attribute__((weak))
1779#else
1780# define DECLWEAK(a_Type) a_Type
1781#endif
1782
1783/** @def DECLCALLBACK
1784 * How to declare an call back function.
1785 * @param a_RetType The return type of the function declaration.
1786 * @note DECL_NOTHROW is implied.
1787 * @note Use DECLCALLBACKTYPE for typedefs.
1788 */
1789#define DECLCALLBACK(a_RetType) DECL_NOTHROW(a_RetType RT_FAR_CODE RTCALL)
1790
1791/** @def DECL_HIDDEN_CALLBACK
1792 * How to declare an call back function with hidden visibility.
1793 * @param a_RetType The return type of the function declaration.
1794 * @note DECL_NOTHROW is implied.
1795 * @note Use DECLCALLBACKTYPE for typedefs.
1796 */
1797#define DECL_HIDDEN_CALLBACK(a_RetType) DECL_HIDDEN_ONLY(DECLCALLBACK(a_RetType))
1798
1799/** @def DECLCALLBACKTYPE_EX
1800 * How to declare an call back function type.
1801 * @param a_RetType The return type of the function declaration.
1802 * @param a_CallConv Calling convention.
1803 * @param a_Name The name of the typedef
1804 * @param a_Args The argument list enclosed in parentheses.
1805 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1806 */
1807#if RT_CLANG_PREREQ(6,0) && !defined(RT_RELAXED_CALLBACKS_TYPES)
1808# define DECLCALLBACKTYPE_EX(a_RetType, a_CallConv, a_Name, a_Args) __attribute__((__nothrow__)) a_RetType a_CallConv a_Name a_Args
1809#elif RT_MSC_PREREQ(RT_MSC_VER_VS2015) /*?*/ && defined(__cplusplus) && defined(_MSC_EXTENSIONS) && !defined(RT_RELAXED_CALLBACKS_TYPES)
1810# define DECLCALLBACKTYPE_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType a_CallConv a_Name a_Args throw()
1811#else
1812# define DECLCALLBACKTYPE_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType a_CallConv a_Name a_Args
1813#endif
1814/** @def DECLCALLBACKTYPE
1815 * How to declare an call back function type.
1816 * @param a_RetType The return type of the function declaration.
1817 * @param a_Name The name of the typedef
1818 * @param a_Args The argument list enclosed in parentheses.
1819 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1820 */
1821#define DECLCALLBACKTYPE(a_RetType, a_Name, a_Args) DECLCALLBACKTYPE_EX(a_RetType, RT_FAR_CODE RTCALL, a_Name, a_Args)
1822
1823/** @def DECLCALLBACKPTR_EX
1824 * How to declare an call back function pointer.
1825 * @param a_RetType The return type of the function declaration.
1826 * @param a_CallConv Calling convention.
1827 * @param a_Name The name of the variable member.
1828 * @param a_Args The argument list enclosed in parentheses.
1829 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1830 */
1831#if defined(__IBMC__) || defined(__IBMCPP__)
1832# define DECLCALLBACKPTR_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType (* a_CallConv a_Name) a_Args
1833#elif RT_CLANG_PREREQ(6,0) && !defined(RT_RELAXED_CALLBACKS_TYPES)
1834# define DECLCALLBACKPTR_EX(a_RetType, a_CallConv, a_Name, a_Args) __attribute__((__nothrow__)) a_RetType (a_CallConv * a_Name) a_Args
1835#elif RT_MSC_PREREQ(RT_MSC_VER_VS2015) /*?*/ && defined(__cplusplus) && defined(_MSC_EXTENSIONS) && !defined(RT_RELAXED_CALLBACKS_TYPES)
1836# define DECLCALLBACKPTR_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType (a_CallConv * a_Name) a_Args throw()
1837#else
1838# define DECLCALLBACKPTR_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType (a_CallConv * a_Name) a_Args
1839#endif
1840/** @def DECLCALLBACKPTR
1841 * How to declare an call back function pointer.
1842 * @param a_RetType The return type of the function declaration.
1843 * @param a_Name The name of the variable member.
1844 * @param a_Args The argument list enclosed in parentheses.
1845 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1846 */
1847#define DECLCALLBACKPTR(a_RetType, a_Name, a_Args) DECLCALLBACKPTR_EX(a_RetType, RT_FAR_CODE RTCALL, a_Name, a_Args)
1848
1849/** @def DECLCALLBACKMEMBER_EX
1850 * How to declare an call back function pointer member.
1851 * @param a_RetType The return type of the function declaration.
1852 * @param a_CallConv Calling convention.
1853 * @param a_Name The name of the struct/union/class member.
1854 * @param a_Args The argument list enclosed in parentheses.
1855 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1856 */
1857#if defined(__IBMC__) || defined(__IBMCPP__)
1858# define DECLCALLBACKMEMBER_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType (* a_CallConv a_Name) a_Args
1859#elif RT_CLANG_PREREQ(6,0) && !defined(RT_RELAXED_CALLBACKS_TYPES)
1860# define DECLCALLBACKMEMBER_EX(a_RetType, a_CallConv, a_Name, a_Args) __attribute__((__nothrow__)) a_RetType (a_CallConv *a_Name) a_Args
1861#elif RT_MSC_PREREQ(RT_MSC_VER_VS2015) /*?*/ && defined(__cplusplus) && defined(_MSC_EXTENSIONS) && !defined(RT_RELAXED_CALLBACKS_TYPES)
1862# define DECLCALLBACKMEMBER_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType (a_CallConv *a_Name) a_Args throw()
1863#else
1864# define DECLCALLBACKMEMBER_EX(a_RetType, a_CallConv, a_Name, a_Args) a_RetType (a_CallConv *a_Name) a_Args
1865#endif
1866/** @def DECLCALLBACKMEMBER
1867 * How to declare an call back function pointer member.
1868 * @param a_RetType The return type of the function declaration.
1869 * @param a_Name The name of the struct/union/class member.
1870 * @param a_Args The argument list enclosed in parentheses.
1871 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1872 */
1873#define DECLCALLBACKMEMBER(a_RetType, a_Name, a_Args) DECLCALLBACKMEMBER_EX(a_RetType, RT_FAR_CODE RTCALL, a_Name, a_Args)
1874
1875/** @def DECLR3CALLBACKMEMBER
1876 * How to declare an call back function pointer member - R3 Ptr.
1877 * @param a_RetType The return type of the function declaration.
1878 * @param a_Name The name of the struct/union/class member.
1879 * @param a_Args The argument list enclosed in parentheses.
1880 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1881 */
1882#if defined(IN_RING3) || defined(DOXYGEN_RUNNING)
1883# define DECLR3CALLBACKMEMBER(a_RetType, a_Name, a_Args) DECLCALLBACKMEMBER(a_RetType, a_Name, a_Args)
1884#else
1885# define DECLR3CALLBACKMEMBER(a_RetType, a_Name, a_Args) RTR3PTR a_Name
1886#endif
1887
1888/** @def DECLRCCALLBACKMEMBER
1889 * How to declare an call back function pointer member - RC Ptr.
1890 * @param a_RetType The return type of the function declaration.
1891 * @param a_Name The name of the struct/union/class member.
1892 * @param a_Args The argument list enclosed in parentheses.
1893 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1894 */
1895#if defined(IN_RC) || defined(DOXYGEN_RUNNING)
1896# define DECLRCCALLBACKMEMBER(a_RetType, a_Name, a_Args) DECLCALLBACKMEMBER(a_RetType, a_Name, a_Args)
1897#else
1898# define DECLRCCALLBACKMEMBER(a_RetType, a_Name, a_Args) RTRCPTR a_Name
1899#endif
1900#if defined(IN_RC) || defined(DOXYGEN_RUNNING)
1901# define DECLRGCALLBACKMEMBER(a_RetType, a_Name, a_Args) DECLCALLBACKMEMBER(a_RetType, a_Name, a_Args)
1902#else
1903# define DECLRGCALLBACKMEMBER(a_RetType, a_Name, a_Args) RTRGPTR a_Name
1904#endif
1905
1906/** @def DECLR0CALLBACKMEMBER
1907 * How to declare an call back function pointer member - R0 Ptr.
1908 * @param a_RetType The return type of the function declaration.
1909 * @param a_Name The name of the struct/union/class member.
1910 * @param a_Args The argument list enclosed in parentheses.
1911 * @note DECL_NOTHROW is implied, but not supported by all compilers yet.
1912 */
1913#if defined(IN_RING0) || defined(DOXYGEN_RUNNING)
1914# define DECLR0CALLBACKMEMBER(a_RetType, a_Name, a_Args) DECLCALLBACKMEMBER(a_RetType, a_Name, a_Args)
1915#else
1916# define DECLR0CALLBACKMEMBER(a_RetType, a_Name, a_Args) RTR0PTR a_Name
1917#endif
1918
1919/** @def DECLINLINE
1920 * How to declare a function as inline that does not throw any C++ exceptions.
1921 * @param a_RetType The return type of the function declaration.
1922 * @remarks Don't use this macro on C++ methods.
1923 * @sa DECL_INLINE_THROW
1924 */
1925#if defined(__GNUC__) && !defined(DOXYGEN_RUNNING)
1926# define DECLINLINE(a_RetType) DECL_NOTHROW(static __inline__ a_RetType)
1927#elif defined(__cplusplus) || defined(DOXYGEN_RUNNING)
1928# define DECLINLINE(a_RetType) DECL_NOTHROW(static inline a_RetType)
1929#elif defined(_MSC_VER)
1930# define DECLINLINE(a_RetType) DECL_NOTHROW(static _inline a_RetType)
1931#elif defined(__IBMC__)
1932# define DECLINLINE(a_RetType) DECL_NOTHROW(_Inline a_RetType)
1933#else
1934# define DECLINLINE(a_RetType) DECL_NOTHROW(inline a_RetType)
1935#endif
1936
1937/** @def DECL_INLINE_THROW
1938 * How to declare a function as inline that throws C++ exceptions.
1939 * @param a_RetType The return type of the function declaration.
1940 * @remarks Don't use this macro on C++ methods.
1941 */
1942#if defined(__GNUC__) && !defined(DOXYGEN_RUNNING)
1943# define DECL_INLINE_THROW(a_RetType) static __inline__ a_RetType
1944#elif defined(__cplusplus) || defined(DOXYGEN_RUNNING)
1945# define DECL_INLINE_THROW(a_RetType) static inline a_RetType
1946#elif defined(_MSC_VER)
1947# define DECL_INLINE_THROW(a_RetType) static _inline a_RetType
1948#elif defined(__IBMC__)
1949# define DECL_INLINE_THROW(a_RetType) _Inline a_RetType
1950#else
1951# define DECL_INLINE_THROW(a_RetType) inline a_RetType
1952#endif
1953
1954/** @def DECL_FORCE_INLINE
1955 * How to declare a function that does not throw any C++ exceptions as inline
1956 * and try convince the compiler to always inline it regardless of optimization
1957 * switches.
1958 * @param a_RetType The return type of the function declaration.
1959 * @remarks Use sparsely and with care. Don't use this macro on C++ methods.
1960 * @sa DECL_FORCE_INLINE_THROW
1961 */
1962#ifdef __GNUC__
1963# define DECL_FORCE_INLINE(a_RetType) __attribute__((__always_inline__)) DECLINLINE(a_RetType)
1964#elif defined(_MSC_VER)
1965# define DECL_FORCE_INLINE(a_RetType) DECL_NOTHROW(__forceinline a_RetType)
1966#else
1967# define DECL_FORCE_INLINE(a_RetType) DECLINLINE(a_RetType)
1968#endif
1969
1970/** @def DECL_FORCE_INLINE_THROW
1971 * How to declare a function throwing C++ exceptions as inline and try convince
1972 * the compiler to always inline it regardless of optimization switches.
1973 * @param a_RetType The return type of the function declaration.
1974 * @remarks Use sparsely and with care. Don't use this macro on C++ methods.
1975 */
1976#ifdef __GNUC__
1977# define DECL_FORCE_INLINE_THROW(a_RetType) __attribute__((__always_inline__)) DECL_INLINE_THROW(a_RetType)
1978#elif defined(_MSC_VER)
1979# define DECL_FORCE_INLINE_THROW(a_RetType) __forceinline a_RetType
1980#else
1981# define DECL_FORCE_INLINE_THROW(a_RetType) DECL_INLINE_THROW(a_RetType)
1982#endif
1983
1984
1985/** @def DECL_NO_INLINE
1986 * How to declare a function telling the compiler not to inline it.
1987 * @param scope The function scope, static or RT_NOTHING.
1988 * @param a_RetType The return type of the function declaration.
1989 * @remarks Don't use this macro on C++ methods.
1990 */
1991#ifdef __GNUC__
1992# define DECL_NO_INLINE(scope, a_RetType) __attribute__((__noinline__)) scope a_RetType
1993#elif defined(_MSC_VER)
1994# define DECL_NO_INLINE(scope, a_RetType) __declspec(noinline) scope a_RetType
1995#else
1996# define DECL_NO_INLINE(scope,a_RetType) scope a_RetType
1997#endif
1998
1999
2000/** @def IN_RT_STATIC
2001 * Used to indicate whether we're linking against a static IPRT
2002 * or not.
2003 *
2004 * The IPRT symbols will be declared as hidden (if supported). Note that this
2005 * define has no effect without also setting one of the IN_RT_R0, IN_RT_R3 or
2006 * IN_RT_RC indicators.
2007 */
2008
2009/** @def IN_RT_R0
2010 * Used to indicate whether we're inside the same link module as the host
2011 * context ring-0 Runtime Library.
2012 */
2013/** @def RTR0DECL(a_RetType)
2014 * Runtime Library host context ring-0 export or import declaration.
2015 * @param a_RetType The return a_RetType of the function declaration.
2016 * @remarks This is only used inside IPRT. Other APIs need to define their own
2017 * XXXX_DECL macros for dealing with import/export/static visibility.
2018 * @note DECL_NOTHROW is implied.
2019 */
2020#ifdef IN_RT_R0
2021# ifdef IN_RT_STATIC
2022# define RTR0DECL(a_RetType) DECL_HIDDEN_NOTHROW(a_RetType) RTCALL
2023# else
2024# define RTR0DECL(a_RetType) DECL_EXPORT_NOTHROW(a_RetType) RTCALL
2025# endif
2026#else
2027# define RTR0DECL(a_RetType) DECL_IMPORT_NOTHROW(a_RetType) RTCALL
2028#endif
2029
2030/** @def IN_RT_R3
2031 * Used to indicate whether we're inside the same link module as the host
2032 * context ring-3 Runtime Library.
2033 */
2034/** @def RTR3DECL(a_RetType)
2035 * Runtime Library host context ring-3 export or import declaration.
2036 * @param a_RetType The return type of the function declaration.
2037 * @remarks This is only used inside IPRT. Other APIs need to define their own
2038 * XXXX_DECL macros for dealing with import/export/static visibility.
2039 * @note DECL_NOTHROW is implied.
2040 */
2041#ifdef IN_RT_R3
2042# ifdef IN_RT_STATIC
2043# define RTR3DECL(a_RetType) DECL_HIDDEN_NOTHROW(a_RetType) RTCALL
2044# else
2045# define RTR3DECL(a_RetType) DECL_EXPORT_NOTHROW(a_RetType) RTCALL
2046# endif
2047#else
2048# define RTR3DECL(a_RetType) DECL_IMPORT_NOTHROW(a_RetType) RTCALL
2049#endif
2050
2051/** @def IN_RT_RC
2052 * Used to indicate whether we're inside the same link module as the raw-mode
2053 * context (RC) runtime library.
2054 */
2055/** @def RTRCDECL(a_RetType)
2056 * Runtime Library raw-mode context export or import declaration.
2057 * @param a_RetType The return type of the function declaration.
2058 * @remarks This is only used inside IPRT. Other APIs need to define their own
2059 * XXXX_DECL macros for dealing with import/export/static visibility.
2060 * @note DECL_NOTHROW is implied.
2061 */
2062#ifdef IN_RT_RC
2063# ifdef IN_RT_STATIC
2064# define RTRCDECL(a_RetType) DECL_HIDDEN_NOTHROW(a_RetType) RTCALL
2065# else
2066# define RTRCDECL(a_RetType) DECL_EXPORT_NOTHROW(a_RetType) RTCALL
2067# endif
2068#else
2069# define RTRCDECL(a_RetType) DECL_IMPORT_NOTHROW(a_RetType) RTCALL
2070#endif
2071
2072/** @def RTDECL(a_RetType)
2073 * Runtime Library export or import declaration.
2074 * Functions declared using this macro exists in all contexts.
2075 * @param a_RetType The return type of the function declaration.
2076 * @remarks This is only used inside IPRT. Other APIs need to define their own
2077 * XXXX_DECL macros for dealing with import/export/static visibility.
2078 * @note DECL_NOTHROW is implied.
2079 */
2080#if defined(IN_RT_R3) || defined(IN_RT_RC) || defined(IN_RT_R0)
2081# ifdef IN_RT_STATIC
2082# define RTDECL(a_RetType) DECL_HIDDEN_NOTHROW(a_RetType) RTCALL
2083# else
2084# define RTDECL(a_RetType) DECL_EXPORT_NOTHROW(a_RetType) RTCALL
2085# endif
2086#else
2087# define RTDECL(a_RetType) DECL_IMPORT_NOTHROW(a_RetType) RTCALL
2088#endif
2089
2090/** @def RTDATADECL(a_Type)
2091 * Runtime Library export or import declaration.
2092 * Data declared using this macro exists in all contexts.
2093 * @param a_Type The data type.
2094 * @remarks This is only used inside IPRT. Other APIs need to define their own
2095 * XXXX_DECL macros for dealing with import/export/static visibility.
2096 */
2097/** @def RT_DECL_DATA_CONST(a_Type)
2098 * Definition of a const variable. See DECL_HIDDEN_CONST.
2099 * @param a_Type The const data type.
2100 * @remarks This is only used inside IPRT. Other APIs need to define their own
2101 * XXXX_DECL macros for dealing with import/export/static visibility.
2102 */
2103#if defined(IN_RT_R3) || defined(IN_RT_RC) || defined(IN_RT_R0)
2104# ifdef IN_RT_STATIC
2105# define RTDATADECL(a_Type) DECL_HIDDEN_DATA(a_Type)
2106# define RT_DECL_DATA_CONST(a_Type) DECL_HIDDEN_CONST(a_Type)
2107# else
2108# define RTDATADECL(a_Type) DECLEXPORT(a_Type)
2109# if defined(__cplusplus) && defined(__GNUC__)
2110# define RT_DECL_DATA_CONST(a_Type) a_Type
2111# else
2112# define RT_DECL_DATA_CONST(a_Type) DECLEXPORT(a_Type)
2113# endif
2114# endif
2115#else
2116# define RTDATADECL(a_Type) DECLIMPORT(a_Type)
2117# define RT_DECL_DATA_CONST(a_Type) DECLIMPORT(a_Type)
2118#endif
2119
2120/** @def RT_DECL_CLASS
2121 * Declares an class living in the runtime.
2122 * @remarks This is only used inside IPRT. Other APIs need to define their own
2123 * XXXX_DECL macros for dealing with import/export/static visibility.
2124 */
2125#if defined(IN_RT_R3) || defined(IN_RT_RC) || defined(IN_RT_R0)
2126# ifdef IN_RT_STATIC
2127# define RT_DECL_CLASS
2128# else
2129# define RT_DECL_CLASS DECLEXPORT_CLASS
2130# endif
2131#else
2132# define RT_DECL_CLASS DECLIMPORT_CLASS
2133#endif
2134
2135
2136/** @def RT_NOCRT
2137 * Symbol name wrapper for the No-CRT bits.
2138 *
2139 * In order to coexist in the same process as other CRTs, we need to
2140 * decorate the symbols such that they don't conflict the ones in the
2141 * other CRTs. The result of such conflicts / duplicate symbols can
2142 * confuse the dynamic loader on Unix like systems.
2143 *
2144 * Define RT_WITHOUT_NOCRT_WRAPPERS to drop the wrapping.
2145 * Define RT_WITHOUT_NOCRT_WRAPPER_ALIASES to drop the aliases to the
2146 * wrapped names.
2147 */
2148/** @def RT_NOCRT_STR
2149 * Same as RT_NOCRT only it'll return a double quoted string of the result.
2150 */
2151#if !defined(RT_WITHOUT_NOCRT_WRAPPERS) || defined(RT_FORCE_NOCRT_WRAPPERS)
2152# define RT_NOCRT(name) nocrt_ ## name
2153# define RT_NOCRT_STR(name) "nocrt_" # name
2154#else
2155# define RT_NOCRT(name) name
2156# define RT_NOCRT_STR(name) #name
2157#endif
2158
2159
2160/** @name Untrusted data classifications.
2161 * @{ */
2162/** @def RT_UNTRUSTED_USER
2163 * For marking non-volatile (race free) data from user mode as untrusted.
2164 * This is just for visible documentation. */
2165#define RT_UNTRUSTED_USER
2166/** @def RT_UNTRUSTED_VOLATILE_USER
2167 * For marking volatile data shared with user mode as untrusted.
2168 * This is more than just documentation as it specifies the 'volatile' keyword,
2169 * because the guest could modify the data at any time. */
2170#define RT_UNTRUSTED_VOLATILE_USER volatile
2171
2172/** @def RT_UNTRUSTED_GUEST
2173 * For marking non-volatile (race free) data from the guest as untrusted.
2174 * This is just for visible documentation. */
2175#define RT_UNTRUSTED_GUEST
2176/** @def RT_UNTRUSTED_VOLATILE_GUEST
2177 * For marking volatile data shared with the guest as untrusted.
2178 * This is more than just documentation as it specifies the 'volatile' keyword,
2179 * because the guest could modify the data at any time. */
2180#define RT_UNTRUSTED_VOLATILE_GUEST volatile
2181
2182/** @def RT_UNTRUSTED_HOST
2183 * For marking non-volatile (race free) data from the host as untrusted.
2184 * This is just for visible documentation. */
2185#define RT_UNTRUSTED_HOST
2186/** @def RT_UNTRUSTED_VOLATILE_HOST
2187 * For marking volatile data shared with the host as untrusted.
2188 * This is more than just documentation as it specifies the 'volatile' keyword,
2189 * because the host could modify the data at any time. */
2190#define RT_UNTRUSTED_VOLATILE_HOST volatile
2191
2192/** @def RT_UNTRUSTED_HSTGST
2193 * For marking non-volatile (race free) data from the host/gust as untrusted.
2194 * This is just for visible documentation. */
2195#define RT_UNTRUSTED_HSTGST
2196/** @def RT_UNTRUSTED_VOLATILE_HSTGST
2197 * For marking volatile data shared with the host/guest as untrusted.
2198 * This is more than just documentation as it specifies the 'volatile' keyword,
2199 * because the host could modify the data at any time. */
2200#define RT_UNTRUSTED_VOLATILE_HSTGST volatile
2201/** @} */
2202
2203/** @name Fences for use when handling untrusted data.
2204 * @{ */
2205/** For use after copying untruated volatile data to a non-volatile location.
2206 * This translates to a compiler memory barrier and will help ensure that the
2207 * compiler uses the non-volatile copy of the data. */
2208#define RT_UNTRUSTED_NONVOLATILE_COPY_FENCE() ASMCompilerBarrier()
2209/** For use after finished validating guest input.
2210 * What this translates to is architecture dependent. On intel it will
2211 * translate to a CPU load+store fence as well as a compiler memory barrier. */
2212#if defined(RT_ARCH_AMD64) || (defined(RT_ARCH_X86) && !defined(RT_WITH_OLD_CPU_SUPPORT))
2213# define RT_UNTRUSTED_VALIDATED_FENCE() do { ASMCompilerBarrier(); ASMReadFence(); } while (0)
2214#elif defined(RT_ARCH_X86)
2215# define RT_UNTRUSTED_VALIDATED_FENCE() do { ASMCompilerBarrier(); ASMMemoryFence(); } while (0)
2216#else
2217# define RT_UNTRUSTED_VALIDATED_FENCE() do { ASMCompilerBarrier(); } while (0)
2218#endif
2219/** @} */
2220
2221
2222/** @def RT_LIKELY
2223 * Give the compiler a hint that an expression is very likely to hold true.
2224 *
2225 * Some compilers support explicit branch prediction so that the CPU backend
2226 * can hint the processor and also so that code blocks can be reordered such
2227 * that the predicted path sees a more linear flow, thus improving cache
2228 * behaviour, etc.
2229 *
2230 * IPRT provides the macros RT_LIKELY() and RT_UNLIKELY() as a way to utilize
2231 * this compiler feature when present.
2232 *
2233 * A few notes about the usage:
2234 *
2235 * - Generally, order your code use RT_LIKELY() instead of RT_UNLIKELY().
2236 *
2237 * - Generally, use RT_UNLIKELY() with error condition checks (unless you
2238 * have some _strong_ reason to do otherwise, in which case document it),
2239 * and/or RT_LIKELY() with success condition checks, assuming you want
2240 * to optimize for the success path.
2241 *
2242 * - Other than that, if you don't know the likelihood of a test succeeding
2243 * from empirical or other 'hard' evidence, don't make predictions unless
2244 * you happen to be a Dirk Gently character.
2245 *
2246 * - These macros are meant to be used in places that get executed a lot. It
2247 * is wasteful to make predictions in code that is executed rarely (e.g.
2248 * at subsystem initialization time) as the basic block reordering that this
2249 * affects can often generate larger code.
2250 *
2251 * - Note that RT_SUCCESS() and RT_FAILURE() already makes use of RT_LIKELY()
2252 * and RT_UNLIKELY(). Should you wish for prediction free status checks,
2253 * use the RT_SUCCESS_NP() and RT_FAILURE_NP() macros instead.
2254 *
2255 *
2256 * @returns the boolean result of the expression.
2257 * @param expr The expression that's very likely to be true.
2258 * @see RT_UNLIKELY
2259 */
2260/** @def RT_UNLIKELY
2261 * Give the compiler a hint that an expression is highly unlikely to hold true.
2262 *
2263 * See the usage instructions give in the RT_LIKELY() docs.
2264 *
2265 * @returns the boolean result of the expression.
2266 * @param expr The expression that's very unlikely to be true.
2267 * @see RT_LIKELY
2268 *
2269 * @deprecated Please use RT_LIKELY() instead wherever possible! That gives us
2270 * a better chance of the windows compilers to generate favorable code
2271 * too. The belief is that the compiler will by default assume the
2272 * if-case is more likely than the else-case.
2273 */
2274#if defined(__GNUC__)
2275# if __GNUC__ >= 3 && !defined(FORTIFY_RUNNING)
2276# define RT_LIKELY(expr) __builtin_expect(!!(expr), 1)
2277# define RT_UNLIKELY(expr) __builtin_expect(!!(expr), 0)
2278# else
2279# define RT_LIKELY(expr) (expr)
2280# define RT_UNLIKELY(expr) (expr)
2281# endif
2282#else
2283# define RT_LIKELY(expr) (expr)
2284# define RT_UNLIKELY(expr) (expr)
2285#endif
2286
2287/** @def RT_EXPAND_2
2288 * Helper for RT_EXPAND. */
2289#define RT_EXPAND_2(a_Expr) a_Expr
2290/** @def RT_EXPAND
2291 * Returns the expanded expression.
2292 * @param a_Expr The expression to expand. */
2293#define RT_EXPAND(a_Expr) RT_EXPAND_2(a_Expr)
2294
2295/** @def RT_STR
2296 * Returns the argument as a string constant.
2297 * @param str Argument to stringify. */
2298#define RT_STR(str) #str
2299/** @def RT_XSTR
2300 * Returns the expanded argument as a string.
2301 * @param str Argument to expand and stringify. */
2302#define RT_XSTR(str) RT_STR(str)
2303
2304/** @def RT_LSTR_2
2305 * Helper for RT_WSTR that gets the expanded @a str.
2306 * @param str String litteral to prefix with 'L'. */
2307#define RT_LSTR_2(str) L##str
2308/** @def RT_LSTR
2309 * Returns the expanded argument with a L string prefix.
2310 *
2311 * Intended for converting ASCII string \#defines into wide char string
2312 * litterals on Windows.
2313 *
2314 * @param str String litteral to . */
2315#define RT_LSTR(str) RT_LSTR_2(str)
2316
2317/** @def RT_UNPACK_CALL
2318 * Unpacks the an argument list inside an extra set of parenthesis and turns it
2319 * into a call to @a a_Fn.
2320 *
2321 * @param a_Fn Function/macro to call.
2322 * @param a_Args Parameter list in parenthesis.
2323 */
2324#define RT_UNPACK_CALL(a_Fn, a_Args) a_Fn a_Args
2325
2326#if defined(RT_COMPILER_SUPPORTS_VA_ARGS) || defined(DOXYGEN_RUNNING)
2327
2328/** @def RT_UNPACK_ARGS
2329 * Returns the arguments without parenthesis.
2330 *
2331 * @param ... Parameter list in parenthesis.
2332 * @remarks Requires RT_COMPILER_SUPPORTS_VA_ARGS.
2333 */
2334# define RT_UNPACK_ARGS(...) __VA_ARGS__
2335
2336/** @def RT_COUNT_VA_ARGS_HLP
2337 * Helper for RT_COUNT_VA_ARGS that picks out the argument count from
2338 * RT_COUNT_VA_ARGS_REV_SEQ. */
2339# define RT_COUNT_VA_ARGS_HLP( \
2340 c69, c68, c67, c66, c65, c64, c63, c62, c61, c60, \
2341 c59, c58, c57, c56, c55, c54, c53, c52, c51, c50, \
2342 c49, c48, c47, c46, c45, c44, c43, c42, c41, c40, \
2343 c39, c38, c37, c36, c35, c34, c33, c32, c31, c30, \
2344 c29, c28, c27, c26, c25, c24, c23, c22, c21, c20, \
2345 c19, c18, c17, c16, c15, c14, c13, c12, c11, c10, \
2346 c9, c8, c7, c6, c5, c4, c3, c2, c1, cArgs, ...) cArgs
2347/** Argument count sequence. */
2348# define RT_COUNT_VA_ARGS_REV_SEQ \
2349 69, 68, 67, 66, 65, 64, 63, 62, 61, 60, \
2350 59, 58, 57, 56, 55, 54, 53, 52, 51, 50, \
2351 49, 48, 47, 46, 45, 44, 43, 42, 41, 40, \
2352 39, 38, 37, 36, 35, 34, 33, 32, 31, 30, \
2353 29, 28, 27, 26, 25, 24, 23, 22, 21, 20, \
2354 19, 18, 17, 16, 15, 14, 13, 12, 11, 10, \
2355 9, 8, 7, 6, 5, 4, 3, 2, 1, 0
2356/** This is for zero arguments. At least Visual C++ requires it. */
2357# define RT_COUNT_VA_ARGS_PREFIX_RT_NOTHING RT_COUNT_VA_ARGS_REV_SEQ
2358/**
2359 * Counts the number of arguments given to the variadic macro.
2360 *
2361 * Max is 69.
2362 *
2363 * @returns Number of arguments in the ellipsis
2364 * @param ... Arguments to count.
2365 * @remarks Requires RT_COMPILER_SUPPORTS_VA_ARGS.
2366 */
2367# define RT_COUNT_VA_ARGS(...) \
2368 RT_UNPACK_CALL(RT_COUNT_VA_ARGS_HLP, (RT_COUNT_VA_ARGS_PREFIX_ ## __VA_ARGS__ ## RT_NOTHING, \
2369 RT_COUNT_VA_ARGS_REV_SEQ))
2370
2371#endif /* RT_COMPILER_SUPPORTS_VA_ARGS */
2372
2373
2374/** @def RT_CONCAT
2375 * Concatenate the expanded arguments without any extra spaces in between.
2376 *
2377 * @param a The first part.
2378 * @param b The second part.
2379 */
2380#define RT_CONCAT(a,b) RT_CONCAT_HLP(a,b)
2381/** RT_CONCAT helper, don't use. */
2382#define RT_CONCAT_HLP(a,b) a##b
2383
2384/** @def RT_CONCAT3
2385 * Concatenate the expanded arguments without any extra spaces in between.
2386 *
2387 * @param a The 1st part.
2388 * @param b The 2nd part.
2389 * @param c The 3rd part.
2390 */
2391#define RT_CONCAT3(a,b,c) RT_CONCAT3_HLP(a,b,c)
2392/** RT_CONCAT3 helper, don't use. */
2393#define RT_CONCAT3_HLP(a,b,c) a##b##c
2394
2395/** @def RT_CONCAT4
2396 * Concatenate the expanded arguments without any extra spaces in between.
2397 *
2398 * @param a The 1st part.
2399 * @param b The 2nd part.
2400 * @param c The 3rd part.
2401 * @param d The 4th part.
2402 */
2403#define RT_CONCAT4(a,b,c,d) RT_CONCAT4_HLP(a,b,c,d)
2404/** RT_CONCAT4 helper, don't use. */
2405#define RT_CONCAT4_HLP(a,b,c,d) a##b##c##d
2406
2407/** @def RT_CONCAT5
2408 * Concatenate the expanded arguments without any extra spaces in between.
2409 *
2410 * @param a The 1st part.
2411 * @param b The 2nd part.
2412 * @param c The 3rd part.
2413 * @param d The 4th part.
2414 * @param e The 5th part.
2415 */
2416#define RT_CONCAT5(a,b,c,d,e) RT_CONCAT5_HLP(a,b,c,d,e)
2417/** RT_CONCAT5 helper, don't use. */
2418#define RT_CONCAT5_HLP(a,b,c,d,e) a##b##c##d##e
2419
2420/** @def RT_CONCAT6
2421 * Concatenate the expanded arguments without any extra spaces in between.
2422 *
2423 * @param a The 1st part.
2424 * @param b The 2nd part.
2425 * @param c The 3rd part.
2426 * @param d The 4th part.
2427 * @param e The 5th part.
2428 * @param f The 6th part.
2429 */
2430#define RT_CONCAT6(a,b,c,d,e,f) RT_CONCAT6_HLP(a,b,c,d,e,f)
2431/** RT_CONCAT6 helper, don't use. */
2432#define RT_CONCAT6_HLP(a,b,c,d,e,f) a##b##c##d##e##f
2433
2434/** @def RT_CONCAT7
2435 * Concatenate the expanded arguments without any extra spaces in between.
2436 *
2437 * @param a The 1st part.
2438 * @param b The 2nd part.
2439 * @param c The 3rd part.
2440 * @param d The 4th part.
2441 * @param e The 5th part.
2442 * @param f The 6th part.
2443 * @param g The 7th part.
2444 */
2445#define RT_CONCAT7(a,b,c,d,e,f,g) RT_CONCAT7_HLP(a,b,c,d,e,f,g)
2446/** RT_CONCAT7 helper, don't use. */
2447#define RT_CONCAT7_HLP(a,b,c,d,e,f,g) a##b##c##d##e##f##g
2448
2449/** @def RT_CONCAT8
2450 * Concatenate the expanded arguments without any extra spaces in between.
2451 *
2452 * @param a The 1st part.
2453 * @param b The 2nd part.
2454 * @param c The 3rd part.
2455 * @param d The 4th part.
2456 * @param e The 5th part.
2457 * @param f The 6th part.
2458 * @param g The 7th part.
2459 * @param h The 8th part.
2460 */
2461#define RT_CONCAT8(a,b,c,d,e,f,g,h) RT_CONCAT8_HLP(a,b,c,d,e,f,g,h)
2462/** RT_CONCAT8 helper, don't use. */
2463#define RT_CONCAT8_HLP(a,b,c,d,e,f,g,h) a##b##c##d##e##f##g##h
2464
2465/** @def RT_CONCAT9
2466 * Concatenate the expanded arguments without any extra spaces in between.
2467 *
2468 * @param a The 1st part.
2469 * @param b The 2nd part.
2470 * @param c The 3rd part.
2471 * @param d The 4th part.
2472 * @param e The 5th part.
2473 * @param f The 6th part.
2474 * @param g The 7th part.
2475 * @param h The 8th part.
2476 * @param i The 9th part.
2477 */
2478#define RT_CONCAT9(a,b,c,d,e,f,g,h,i) RT_CONCAT9_HLP(a,b,c,d,e,f,g,h,i)
2479/** RT_CONCAT9 helper, don't use. */
2480#define RT_CONCAT9_HLP(a,b,c,d,e,f,g,h,i) a##b##c##d##e##f##g##h##i
2481
2482/**
2483 * String constant tuple - string constant, strlen(string constant).
2484 *
2485 * @param a_szConst String constant.
2486 * @sa RTSTRTUPLE
2487 */
2488#define RT_STR_TUPLE(a_szConst) a_szConst, (sizeof(a_szConst) - 1)
2489
2490
2491/**
2492 * Macro for using in switch statements that turns constants into strings.
2493 *
2494 * @param a_Const The constant (not string).
2495 */
2496#define RT_CASE_RET_STR(a_Const) case a_Const: return #a_Const
2497
2498
2499/** @def RT_BIT
2500 * Convert a bit number into an integer bitmask (unsigned).
2501 * @param bit The bit number.
2502 */
2503#define RT_BIT(bit) ( 1U << (bit) )
2504
2505/** @def RT_BIT_32
2506 * Convert a bit number into a 32-bit bitmask (unsigned).
2507 * @param bit The bit number.
2508 */
2509#define RT_BIT_32(bit) ( UINT32_C(1) << (bit) )
2510
2511/** @def RT_BIT_64
2512 * Convert a bit number into a 64-bit bitmask (unsigned).
2513 * @param bit The bit number.
2514 */
2515#define RT_BIT_64(bit) ( UINT64_C(1) << (bit) )
2516
2517/** @def RT_BIT_Z
2518 * Convert a bit number into a size_t bitmask (for avoid MSC warnings).
2519 * @param a_iBit The bit number.
2520 */
2521#define RT_BIT_Z(a_iBit) ( (size_t)(1) << (a_iBit) )
2522
2523
2524/** @def RT_BF_GET
2525 * Gets the value of a bit field in an integer value.
2526 *
2527 * This requires a couple of macros to be defined for the field:
2528 * - \<a_FieldNm\>_SHIFT: The shift count to get to the field.
2529 * - \<a_FieldNm\>_MASK: The field mask.
2530 *
2531 * @returns The bit field value.
2532 * @param a_uValue The integer value containing the field.
2533 * @param a_FieldNm The field name prefix for getting at the _SHIFT and
2534 * _MASK macros.
2535 * @sa #RT_BF_CLEAR, #RT_BF_SET, #RT_BF_MAKE, #RT_BF_ZMASK
2536 */
2537#define RT_BF_GET(a_uValue, a_FieldNm) ( ((a_uValue) >> RT_CONCAT(a_FieldNm,_SHIFT)) & RT_BF_ZMASK(a_FieldNm) )
2538
2539/** @def RT_BF_SET
2540 * Sets the given bit field in the integer value.
2541 *
2542 * This requires a couple of macros to be defined for the field:
2543 * - \<a_FieldNm\>_SHIFT: The shift count to get to the field.
2544 * - \<a_FieldNm\>_MASK: The field mask. Must have the same type as the
2545 * integer value!!
2546 *
2547 * @returns Integer value with bit field set to @a a_uFieldValue.
2548 * @param a_uValue The integer value containing the field.
2549 * @param a_FieldNm The field name prefix for getting at the _SHIFT and
2550 * _MASK macros.
2551 * @param a_uFieldValue The new field value.
2552 * @sa #RT_BF_GET, #RT_BF_CLEAR, #RT_BF_MAKE, #RT_BF_ZMASK
2553 */
2554#define RT_BF_SET(a_uValue, a_FieldNm, a_uFieldValue) ( RT_BF_CLEAR(a_uValue, a_FieldNm) | RT_BF_MAKE(a_FieldNm, a_uFieldValue) )
2555
2556/** @def RT_BF_CLEAR
2557 * Clears the given bit field in the integer value.
2558 *
2559 * This requires a couple of macros to be defined for the field:
2560 * - \<a_FieldNm\>_SHIFT: The shift count to get to the field.
2561 * - \<a_FieldNm\>_MASK: The field mask. Must have the same type as the
2562 * integer value!!
2563 *
2564 * @returns Integer value with bit field set to zero.
2565 * @param a_uValue The integer value containing the field.
2566 * @param a_FieldNm The field name prefix for getting at the _SHIFT and
2567 * _MASK macros.
2568 * @sa #RT_BF_GET, #RT_BF_SET, #RT_BF_MAKE, #RT_BF_ZMASK
2569 */
2570#define RT_BF_CLEAR(a_uValue, a_FieldNm) ( (a_uValue) & ~RT_CONCAT(a_FieldNm,_MASK) )
2571
2572/** @def RT_BF_MAKE
2573 * Shifts and masks a bit field value into position in the integer value.
2574 *
2575 * This requires a couple of macros to be defined for the field:
2576 * - \<a_FieldNm\>_SHIFT: The shift count to get to the field.
2577 * - \<a_FieldNm\>_MASK: The field mask.
2578 *
2579 * @param a_FieldNm The field name prefix for getting at the _SHIFT and
2580 * _MASK macros.
2581 * @param a_uFieldValue The field value that should be masked and shifted
2582 * into position.
2583 * @sa #RT_BF_GET, #RT_BF_SET, #RT_BF_CLEAR, #RT_BF_ZMASK
2584 */
2585#define RT_BF_MAKE(a_FieldNm, a_uFieldValue) ( ((a_uFieldValue) & RT_BF_ZMASK(a_FieldNm) ) << RT_CONCAT(a_FieldNm,_SHIFT) )
2586
2587/** @def RT_BF_ZMASK
2588 * Helper for getting the field mask shifted to bit position zero.
2589 *
2590 * @param a_FieldNm The field name prefix for getting at the _SHIFT and
2591 * _MASK macros.
2592 * @sa #RT_BF_GET, #RT_BF_SET, #RT_BF_CLEAR, #RT_BF_MAKE
2593 */
2594#define RT_BF_ZMASK(a_FieldNm) ( RT_CONCAT(a_FieldNm,_MASK) >> RT_CONCAT(a_FieldNm,_SHIFT) )
2595
2596/** Bit field compile time check helper
2597 * @internal */
2598#define RT_BF_CHECK_DO_XOR_MASK(a_uLeft, a_RightPrefix, a_FieldNm) ((a_uLeft) ^ RT_CONCAT3(a_RightPrefix, a_FieldNm, _MASK))
2599/** Bit field compile time check helper
2600 * @internal */
2601#define RT_BF_CHECK_DO_OR_MASK(a_uLeft, a_RightPrefix, a_FieldNm) ((a_uLeft) | RT_CONCAT3(a_RightPrefix, a_FieldNm, _MASK))
2602/** Bit field compile time check helper
2603 * @internal */
2604#define RT_BF_CHECK_DO_1ST_MASK_BIT(a_uLeft, a_RightPrefix, a_FieldNm) \
2605 ((a_uLeft) && ( (RT_CONCAT3(a_RightPrefix, a_FieldNm, _MASK) >> RT_CONCAT3(a_RightPrefix, a_FieldNm, _SHIFT)) & 1U ) )
2606/** Used to check that a bit field mask does not start too early.
2607 * @internal */
2608#define RT_BF_CHECK_DO_MASK_START(a_uLeft, a_RightPrefix, a_FieldNm) \
2609 ( (a_uLeft) \
2610 && ( RT_CONCAT3(a_RightPrefix, a_FieldNm, _SHIFT) == 0 \
2611 || ( ( ( ((RT_CONCAT3(a_RightPrefix, a_FieldNm, _MASK) >> RT_CONCAT3(a_RightPrefix, a_FieldNm, _SHIFT)) & 1U) \
2612 << RT_CONCAT3(a_RightPrefix, a_FieldNm, _SHIFT)) /* => single bit mask, correct type */ \
2613 - 1U) /* => mask of all bits below the field */ \
2614 & RT_CONCAT3(a_RightPrefix, a_FieldNm, _MASK)) == 0 ) )
2615/** @name Bit field compile time check recursion workers.
2616 * @internal
2617 * @{ */
2618#define RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix, f1) \
2619 a_DoThis(a_uLeft, a_RightPrefix, f1)
2620#define RT_BF_CHECK_DO_2(a_DoThis, a_uLeft, a_RightPrefix, f1, f2) \
2621 RT_BF_CHECK_DO_1(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2)
2622#define RT_BF_CHECK_DO_3(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3) \
2623 RT_BF_CHECK_DO_2(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3)
2624#define RT_BF_CHECK_DO_4(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4) \
2625 RT_BF_CHECK_DO_3(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4)
2626#define RT_BF_CHECK_DO_5(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5) \
2627 RT_BF_CHECK_DO_4(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5)
2628#define RT_BF_CHECK_DO_6(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6) \
2629 RT_BF_CHECK_DO_5(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6)
2630#define RT_BF_CHECK_DO_7(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7) \
2631 RT_BF_CHECK_DO_6(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7)
2632#define RT_BF_CHECK_DO_8(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8) \
2633 RT_BF_CHECK_DO_7(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8)
2634#define RT_BF_CHECK_DO_9(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9) \
2635 RT_BF_CHECK_DO_8(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9)
2636#define RT_BF_CHECK_DO_10(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10) \
2637 RT_BF_CHECK_DO_9(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10)
2638#define RT_BF_CHECK_DO_11(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11) \
2639 RT_BF_CHECK_DO_10(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11)
2640#define RT_BF_CHECK_DO_12(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12) \
2641 RT_BF_CHECK_DO_11(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12)
2642#define RT_BF_CHECK_DO_13(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13) \
2643 RT_BF_CHECK_DO_12(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13)
2644#define RT_BF_CHECK_DO_14(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14) \
2645 RT_BF_CHECK_DO_13(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14)
2646#define RT_BF_CHECK_DO_15(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15) \
2647 RT_BF_CHECK_DO_14(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15)
2648#define RT_BF_CHECK_DO_16(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16) \
2649 RT_BF_CHECK_DO_15(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16)
2650#define RT_BF_CHECK_DO_17(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17) \
2651 RT_BF_CHECK_DO_16(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17)
2652#define RT_BF_CHECK_DO_18(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18) \
2653 RT_BF_CHECK_DO_17(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18)
2654#define RT_BF_CHECK_DO_19(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19) \
2655 RT_BF_CHECK_DO_18(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19)
2656#define RT_BF_CHECK_DO_20(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20) \
2657 RT_BF_CHECK_DO_19(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20)
2658#define RT_BF_CHECK_DO_21(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21) \
2659 RT_BF_CHECK_DO_20(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21)
2660#define RT_BF_CHECK_DO_22(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22) \
2661 RT_BF_CHECK_DO_21(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22)
2662#define RT_BF_CHECK_DO_23(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23) \
2663 RT_BF_CHECK_DO_22(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23)
2664#define RT_BF_CHECK_DO_24(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24) \
2665 RT_BF_CHECK_DO_23(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24)
2666#define RT_BF_CHECK_DO_25(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25) \
2667 RT_BF_CHECK_DO_24(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25)
2668#define RT_BF_CHECK_DO_26(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26) \
2669 RT_BF_CHECK_DO_25(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26)
2670#define RT_BF_CHECK_DO_27(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27) \
2671 RT_BF_CHECK_DO_26(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27)
2672#define RT_BF_CHECK_DO_28(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28) \
2673 RT_BF_CHECK_DO_27(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28)
2674#define RT_BF_CHECK_DO_29(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29) \
2675 RT_BF_CHECK_DO_28(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29)
2676#define RT_BF_CHECK_DO_30(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30) \
2677 RT_BF_CHECK_DO_29(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30)
2678#define RT_BF_CHECK_DO_31(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31) \
2679 RT_BF_CHECK_DO_30(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31)
2680#define RT_BF_CHECK_DO_32(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32) \
2681 RT_BF_CHECK_DO_31(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32)
2682#define RT_BF_CHECK_DO_33(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33) \
2683 RT_BF_CHECK_DO_32(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33)
2684#define RT_BF_CHECK_DO_34(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34) \
2685 RT_BF_CHECK_DO_33(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34)
2686#define RT_BF_CHECK_DO_35(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35) \
2687 RT_BF_CHECK_DO_34(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35)
2688#define RT_BF_CHECK_DO_36(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36) \
2689 RT_BF_CHECK_DO_35(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36)
2690#define RT_BF_CHECK_DO_37(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37) \
2691 RT_BF_CHECK_DO_36(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37)
2692#define RT_BF_CHECK_DO_38(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38) \
2693 RT_BF_CHECK_DO_37(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38)
2694#define RT_BF_CHECK_DO_39(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39) \
2695 RT_BF_CHECK_DO_38(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39)
2696#define RT_BF_CHECK_DO_40(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40) \
2697 RT_BF_CHECK_DO_39(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40)
2698#define RT_BF_CHECK_DO_41(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41) \
2699 RT_BF_CHECK_DO_40(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41)
2700#define RT_BF_CHECK_DO_42(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42) \
2701 RT_BF_CHECK_DO_41(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42)
2702#define RT_BF_CHECK_DO_43(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43) \
2703 RT_BF_CHECK_DO_42(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43)
2704#define RT_BF_CHECK_DO_44(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44) \
2705 RT_BF_CHECK_DO_43(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44)
2706#define RT_BF_CHECK_DO_45(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45) \
2707 RT_BF_CHECK_DO_44(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45)
2708#define RT_BF_CHECK_DO_46(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46) \
2709 RT_BF_CHECK_DO_45(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46)
2710#define RT_BF_CHECK_DO_47(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47) \
2711 RT_BF_CHECK_DO_46(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47)
2712#define RT_BF_CHECK_DO_48(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48) \
2713 RT_BF_CHECK_DO_47(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48)
2714#define RT_BF_CHECK_DO_49(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49) \
2715 RT_BF_CHECK_DO_48(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49)
2716#define RT_BF_CHECK_DO_50(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50) \
2717 RT_BF_CHECK_DO_49(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50)
2718#define RT_BF_CHECK_DO_51(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51) \
2719 RT_BF_CHECK_DO_40(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51)
2720#define RT_BF_CHECK_DO_52(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52) \
2721 RT_BF_CHECK_DO_51(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52)
2722#define RT_BF_CHECK_DO_53(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53) \
2723 RT_BF_CHECK_DO_52(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53)
2724#define RT_BF_CHECK_DO_54(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54) \
2725 RT_BF_CHECK_DO_53(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54)
2726#define RT_BF_CHECK_DO_55(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55) \
2727 RT_BF_CHECK_DO_54(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55)
2728#define RT_BF_CHECK_DO_56(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56) \
2729 RT_BF_CHECK_DO_55(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56)
2730#define RT_BF_CHECK_DO_57(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57) \
2731 RT_BF_CHECK_DO_56(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57)
2732#define RT_BF_CHECK_DO_58(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58) \
2733 RT_BF_CHECK_DO_57(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58)
2734#define RT_BF_CHECK_DO_59(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59) \
2735 RT_BF_CHECK_DO_58(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59)
2736#define RT_BF_CHECK_DO_60(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60) \
2737 RT_BF_CHECK_DO_59(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60)
2738#define RT_BF_CHECK_DO_61(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61) \
2739 RT_BF_CHECK_DO_60(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61)
2740#define RT_BF_CHECK_DO_62(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61, f62) \
2741 RT_BF_CHECK_DO_61(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61, f62)
2742#define RT_BF_CHECK_DO_63(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61, f62, f63) \
2743 RT_BF_CHECK_DO_62(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61, f62, f63)
2744#define RT_BF_CHECK_DO_64(a_DoThis, a_uLeft, a_RightPrefix, f1, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61, f62, f63, f64) \
2745 RT_BF_CHECK_DO_63(a_DoThis, RT_BF_CHECK_DO_1(a_DoThis, a_uLeft, a_RightPrefix,f1), a_RightPrefix, f2, f3, f4, f5, f6, f7, f8, f9, f10, f11, f12, f13, f14, f15, f16, f17, f18, f19, f20, f21, f22, f23, f24, f25, f26, f27, f28, f29, f30, f31, f32, f33, f34, f35, f36, f37, f38, f39, f40, f41, f42, f43, f44, f45, f46, f47, f48, f49, f50, f51, f52, f53, f54, f55, f56, f57, f58, f59, f60, f61, f62, f63, f64)
2746/** @} */
2747
2748/** @def RT_BF_ASSERT_COMPILE_CHECKS
2749 * Emits a series of AssertCompile statements checking that the bit-field
2750 * declarations doesn't overlap, has holes, and generally makes some sense.
2751 *
2752 * This requires variadic macros because its too much to type otherwise.
2753 */
2754#if defined(RT_COMPILER_SUPPORTS_VA_ARGS) || defined(DOXYGEN_RUNNING)
2755# define RT_BF_ASSERT_COMPILE_CHECKS(a_Prefix, a_uZero, a_uCovered, a_Fields) \
2756 AssertCompile(RT_BF_CHECK_DO_N(RT_BF_CHECK_DO_OR_MASK, a_uZero, a_Prefix, RT_UNPACK_ARGS a_Fields ) == a_uCovered); \
2757 AssertCompile(RT_BF_CHECK_DO_N(RT_BF_CHECK_DO_XOR_MASK, a_uCovered, a_Prefix, RT_UNPACK_ARGS a_Fields ) == 0); \
2758 AssertCompile(RT_BF_CHECK_DO_N(RT_BF_CHECK_DO_1ST_MASK_BIT, true, a_Prefix, RT_UNPACK_ARGS a_Fields ) == true); \
2759 AssertCompile(RT_BF_CHECK_DO_N(RT_BF_CHECK_DO_MASK_START, true, a_Prefix, RT_UNPACK_ARGS a_Fields ) == true)
2760/** Bit field compile time check helper
2761 * @internal */
2762# define RT_BF_CHECK_DO_N(a_DoThis, a_uLeft, a_RightPrefix, ...) \
2763 RT_UNPACK_CALL(RT_CONCAT(RT_BF_CHECK_DO_, RT_EXPAND(RT_COUNT_VA_ARGS(__VA_ARGS__))), (a_DoThis, a_uLeft, a_RightPrefix, __VA_ARGS__))
2764#else
2765# define RT_BF_ASSERT_COMPILE_CHECKS(a_Prefix, a_uZero, a_uCovered, a_Fields) AssertCompile(true)
2766#endif
2767
2768
2769/** @def RT_ALIGN
2770 * Align macro.
2771 * @param u Value to align.
2772 * @param uAlignment The alignment. Power of two!
2773 *
2774 * @remark Be extremely careful when using this macro with type which sizeof != sizeof int.
2775 * When possible use any of the other RT_ALIGN_* macros. And when that's not
2776 * possible, make 101% sure that uAlignment is specified with a right sized type.
2777 *
2778 * Specifying an unsigned 32-bit alignment constant with a 64-bit value will give
2779 * you a 32-bit return value!
2780 *
2781 * In short: Don't use this macro. Use RT_ALIGN_T() instead.
2782 */
2783#define RT_ALIGN(u, uAlignment) ( ((u) + ((uAlignment) - 1)) & ~((uAlignment) - 1) )
2784
2785/** @def RT_ALIGN_T
2786 * Align macro.
2787 * @param u Value to align.
2788 * @param uAlignment The alignment. Power of two!
2789 * @param type Integer type to use while aligning.
2790 * @remark This macro is the preferred alignment macro, it doesn't have any of the pitfalls RT_ALIGN has.
2791 */
2792#define RT_ALIGN_T(u, uAlignment, type) ( ((type)(u) + ((uAlignment) - 1)) & ~(type)((uAlignment) - 1) )
2793
2794/** @def RT_ALIGN_32
2795 * Align macro for a 32-bit value.
2796 * @param u32 Value to align.
2797 * @param uAlignment The alignment. Power of two!
2798 */
2799#define RT_ALIGN_32(u32, uAlignment) RT_ALIGN_T(u32, uAlignment, uint32_t)
2800
2801/** @def RT_ALIGN_64
2802 * Align macro for a 64-bit value.
2803 * @param u64 Value to align.
2804 * @param uAlignment The alignment. Power of two!
2805 */
2806#define RT_ALIGN_64(u64, uAlignment) RT_ALIGN_T(u64, uAlignment, uint64_t)
2807
2808/** @def RT_ALIGN_Z
2809 * Align macro for size_t.
2810 * @param cb Value to align.
2811 * @param uAlignment The alignment. Power of two!
2812 */
2813#define RT_ALIGN_Z(cb, uAlignment) RT_ALIGN_T(cb, uAlignment, size_t)
2814
2815/** @def RT_ALIGN_P
2816 * Align macro for pointers.
2817 * @param pv Value to align.
2818 * @param uAlignment The alignment. Power of two!
2819 */
2820#define RT_ALIGN_P(pv, uAlignment) RT_ALIGN_PT(pv, uAlignment, void *)
2821
2822/** @def RT_ALIGN_PT
2823 * Align macro for pointers with type cast.
2824 * @param u Value to align.
2825 * @param uAlignment The alignment. Power of two!
2826 * @param CastType The type to cast the result to.
2827 */
2828#define RT_ALIGN_PT(u, uAlignment, CastType) ( (CastType)RT_ALIGN_T(u, uAlignment, uintptr_t) )
2829
2830/** @def RT_ALIGN_R3PT
2831 * Align macro for ring-3 pointers with type cast.
2832 * @param u Value to align.
2833 * @param uAlignment The alignment. Power of two!
2834 * @param CastType The type to cast the result to.
2835 */
2836#define RT_ALIGN_R3PT(u, uAlignment, CastType) ( (CastType)RT_ALIGN_T(u, uAlignment, RTR3UINTPTR) )
2837
2838/** @def RT_ALIGN_R0PT
2839 * Align macro for ring-0 pointers with type cast.
2840 * @param u Value to align.
2841 * @param uAlignment The alignment. Power of two!
2842 * @param CastType The type to cast the result to.
2843 */
2844#define RT_ALIGN_R0PT(u, uAlignment, CastType) ( (CastType)RT_ALIGN_T(u, uAlignment, RTR0UINTPTR) )
2845
2846/** @def RT_ALIGN_GCPT
2847 * Align macro for GC pointers with type cast.
2848 * @param u Value to align.
2849 * @param uAlignment The alignment. Power of two!
2850 * @param CastType The type to cast the result to.
2851 */
2852#define RT_ALIGN_GCPT(u, uAlignment, CastType) ( (CastType)RT_ALIGN_T(u, uAlignment, RTGCUINTPTR) )
2853
2854
2855/** @def RT_OFFSETOF
2856 * Our own special offsetof() variant, returns a signed result.
2857 *
2858 * @returns offset into the structure of the specified member. signed.
2859 * @param type Structure type.
2860 * @param member Member.
2861 *
2862 * @remarks Only use this for static offset calculations. Please
2863 * use RT_UOFFSETOF_DYN for dynamic ones (i.e. involves
2864 * non-constant array indexing).
2865 *
2866 */
2867#if RT_GNUC_PREREQ(4, 0)
2868# define RT_OFFSETOF(type, member) ( (int)__builtin_offsetof(type, member) )
2869#else
2870# define RT_OFFSETOF(type, member) ( (int)(intptr_t)&( ((type *)(void *)0)->member) )
2871#endif
2872
2873/** @def RT_UOFFSETOF
2874 * Our own offsetof() variant, returns an unsigned result.
2875 *
2876 * @returns offset into the structure of the specified member. unsigned.
2877 * @param type Structure type.
2878 * @param member Member.
2879 *
2880 * @remarks Only use this for static offset calculations. Please
2881 * use RT_UOFFSETOF_DYN for dynamic ones (i.e. involves
2882 * non-constant array indexing).
2883 */
2884#if RT_GNUC_PREREQ(4, 0)
2885# define RT_UOFFSETOF(type, member) ( (uintptr_t)__builtin_offsetof(type, member) )
2886#else
2887# define RT_UOFFSETOF(type, member) ( (uintptr_t)&( ((type *)(void *)0)->member) )
2888#endif
2889
2890/** @def RT_OFFSETOF_ADD
2891 * RT_OFFSETOF with an addend.
2892 *
2893 * @returns offset into the structure of the specified member. signed.
2894 * @param type Structure type.
2895 * @param member Member.
2896 * @param addend The addend to add to the offset.
2897 *
2898 * @remarks Only use this for static offset calculations.
2899 */
2900#define RT_OFFSETOF_ADD(type, member, addend) ( (int)RT_UOFFSETOF_ADD(type, member, addend) )
2901
2902/** @def RT_UOFFSETOF_ADD
2903 * RT_UOFFSETOF with an addend.
2904 *
2905 * @returns offset into the structure of the specified member. signed.
2906 * @param type Structure type.
2907 * @param member Member.
2908 * @param addend The addend to add to the offset.
2909 *
2910 * @remarks Only use this for static offset calculations.
2911 */
2912#if RT_GNUC_PREREQ(4, 0)
2913# define RT_UOFFSETOF_ADD(type, member, addend) ( (uintptr_t)(__builtin_offsetof(type, member) + (addend)))
2914#else
2915# define RT_UOFFSETOF_ADD(type, member, addend) ( (uintptr_t)&( ((type *)(void *)(uintptr_t)(addend))->member) )
2916#endif
2917
2918/** @def RT_UOFFSETOF_DYN
2919 * Dynamic (runtime) structure offset calculations, involving
2920 * indexing of array members via variable.
2921 *
2922 * @returns offset into the structure of the specified member. signed.
2923 * @param type Structure type.
2924 * @param memberarray Member.
2925 */
2926#if defined(__cplusplus) && RT_GNUC_PREREQ(4, 4)
2927# define RT_UOFFSETOF_DYN(type, memberarray) ( (uintptr_t)&( ((type *)(void *)0x1000)->memberarray) - 0x1000 )
2928#else
2929# define RT_UOFFSETOF_DYN(type, memberarray) ( (uintptr_t)&( ((type *)(void *)0)->memberarray) )
2930#endif
2931
2932
2933/** @def RT_SIZEOFMEMB
2934 * Get the size of a structure member.
2935 *
2936 * @returns size of the structure member.
2937 * @param type Structure type.
2938 * @param member Member.
2939 */
2940#define RT_SIZEOFMEMB(type, member) ( sizeof(((type *)(void *)0)->member) )
2941
2942/** @def RT_UOFFSET_AFTER
2943 * Returns the offset of the first byte following a structure/union member.
2944 *
2945 * @return byte offset into the struct.
2946 * @param a_Type Structure type.
2947 * @param a_Member The member name.
2948 */
2949#define RT_UOFFSET_AFTER(a_Type, a_Member) ( RT_UOFFSETOF(a_Type, a_Member) + RT_SIZEOFMEMB(a_Type, a_Member) )
2950
2951/** @def RT_FROM_MEMBER
2952 * Convert a pointer to a structure member into a pointer to the structure.
2953 *
2954 * @returns pointer to the structure.
2955 * @param pMem Pointer to the member.
2956 * @param Type Structure type.
2957 * @param Member Member name.
2958 */
2959#define RT_FROM_MEMBER(pMem, Type, Member) ( (Type *) ((uint8_t *)(void *)(pMem) - RT_UOFFSETOF(Type, Member)) )
2960
2961/** @def RT_FROM_CPP_MEMBER
2962 * Same as RT_FROM_MEMBER except it avoids the annoying g++ warnings about
2963 * invalid access to non-static data member of NULL object.
2964 *
2965 * @returns pointer to the structure.
2966 * @param pMem Pointer to the member.
2967 * @param Type Structure type.
2968 * @param Member Member name.
2969 *
2970 * @remarks Using the __builtin_offsetof does not shut up the compiler.
2971 */
2972#if defined(__GNUC__) && defined(__cplusplus)
2973# define RT_FROM_CPP_MEMBER(pMem, Type, Member) \
2974 ( (Type *) ((uintptr_t)(pMem) - (uintptr_t)&((Type *)0x1000)->Member + 0x1000U) )
2975#else
2976# define RT_FROM_CPP_MEMBER(pMem, Type, Member) RT_FROM_MEMBER(pMem, Type, Member)
2977#endif
2978
2979/** @def RT_FROM_MEMBER_DYN
2980 * Convert a pointer to a structure member into a pointer to the structure.
2981 *
2982 * @returns pointer to the structure.
2983 * @param pMem Pointer to the member.
2984 * @param Type Structure type.
2985 * @param Member Member name dynamic size (some array is index by
2986 * non-constant value).
2987 */
2988#define RT_FROM_MEMBER_DYN(pMem, Type, Member) ( (Type *) ((uint8_t *)(void *)(pMem) - RT_UOFFSETOF_DYN(Type, Member)) )
2989
2990/** @def RT_ELEMENTS
2991 * Calculates the number of elements in a statically sized array.
2992 * @returns Element count.
2993 * @param aArray Array in question.
2994 */
2995#define RT_ELEMENTS(aArray) ( sizeof(aArray) / sizeof((aArray)[0]) )
2996
2997/** @def RT_SAFE_SUBSCRIPT
2998 * Safe array subscript using modulo and size_t cast.
2999 * @param a_Array The array.
3000 * @param a_idx The array index, cast to size_t to ensure unsigned.
3001 */
3002#define RT_SAFE_SUBSCRIPT(a_Array, a_idx) (a_Array)[(size_t)(a_idx) % RT_ELEMENTS(a_Array)]
3003
3004/** @def RT_SAFE_SUBSCRIPT32
3005 * Safe array subscript using modulo and uint32_t cast.
3006 * @param a_Array The array.
3007 * @param a_idx The array index, cast to size_t to ensure unsigned.
3008 * @note Only consider using this if array size is not power of two.
3009 */
3010#define RT_SAFE_SUBSCRIPT32(a_Array, a_idx) (a_Array)[(uint32_t)(a_idx) % RT_ELEMENTS(a_Array)]
3011
3012/** @def RT_SAFE_SUBSCRIPT16
3013 * Safe array subscript using modulo and uint16_t cast.
3014 * @param a_Array The array.
3015 * @param a_idx The array index, cast to size_t to ensure unsigned.
3016 * @note Only consider using this if array size is not power of two.
3017 */
3018#define RT_SAFE_SUBSCRIPT16(a_Array, a_idx) (a_Array)[(uint16_t)(a_idx) % RT_ELEMENTS(a_Array)]
3019
3020/** @def RT_SAFE_SUBSCRIPT8
3021 * Safe array subscript using modulo and uint8_t cast.
3022 * @param a_Array The array.
3023 * @param a_idx The array index, cast to size_t to ensure unsigned.
3024 * @note Only consider using this if array size is not power of two.
3025 */
3026#define RT_SAFE_SUBSCRIPT8(a_Array, a_idx) (a_Array)[(uint8_t)(a_idx) % RT_ELEMENTS(a_Array)]
3027
3028/** @def RT_SAFE_SUBSCRIPT_NC
3029 * Safe array subscript using modulo but no cast.
3030 * @param a_Array The array.
3031 * @param a_idx The array index - assumes unsigned type.
3032 * @note Only consider using this if array size is not power of two.
3033 */
3034#define RT_SAFE_SUBSCRIPT_NC(a_Array, a_idx) (a_Array)[(a_idx) % RT_ELEMENTS(a_Array)]
3035
3036/** @def RT_FLEXIBLE_ARRAY
3037 * What to up inside the square brackets when declaring a structure member
3038 * with a flexible size.
3039 *
3040 * @note RT_FLEXIBLE_ARRAY_EXTENSION must always preceed the type, unless
3041 * it's C-only code.
3042 *
3043 * @note Use RT_UOFFSETOF() to calculate the structure size.
3044 *
3045 * @note Never do a sizeof() on the structure or member!
3046 *
3047 * @note The member must be the last one.
3048 *
3049 * @note GCC does not permit using this in a union. So, for unions you must
3050 * use RT_FLEXIBLE_ARRAY_IN_UNION instead.
3051 *
3052 * @note GCC does not permit using this in nested structures, where as MSC
3053 * does. So, use RT_FLEXIBLE_ARRAY_NESTED for that.
3054 *
3055 * @sa RT_FLEXIBLE_ARRAY_NESTED, RT_FLEXIBLE_ARRAY_IN_UNION
3056 */
3057#if RT_MSC_PREREQ(RT_MSC_VER_VS2005) /** @todo Probably much much earlier. */ \
3058 || (defined(__cplusplus) && RT_GNUC_PREREQ(6, 1)) /* not tested 7.x, but hope it works with __extension__ too. */ \
3059 || defined(__WATCOMC__) /* openwatcom 1.9 supports it, we don't care about older atm. */ \
3060 || RT_CLANG_PREREQ_EX(3, 4, 0) /* Only tested clang v3.4, support is probably older. */
3061# define RT_FLEXIBLE_ARRAY
3062# if defined(__cplusplus) && defined(_MSC_VER)
3063# pragma warning(disable:4200) /* -wd4200 does not work with VS2010 */
3064# pragma warning(disable:4815) /* -wd4815 does not work with VS2019 */
3065# endif
3066#elif defined(__STDC_VERSION__)
3067# if __STDC_VERSION__ >= 199901L
3068# define RT_FLEXIBLE_ARRAY
3069# else /* __STDC_VERSION__ < 199901L */
3070# define RT_FLEXIBLE_ARRAY 1
3071# endif /* __STDC_VERSION__ < 199901L */
3072#else
3073# define RT_FLEXIBLE_ARRAY 1
3074#endif
3075
3076/** @def RT_FLEXIBLE_ARRAY_EXTENSION
3077 * A trick to make GNU C++ quietly accept flexible arrays in C++ code when
3078 * pedantic warnings are enabled. Put this on the line before the flexible
3079 * array. */
3080#if (RT_GNUC_PREREQ(7, 0) && defined(__cplusplus)) || defined(DOXGYEN_RUNNING)
3081# define RT_FLEXIBLE_ARRAY_EXTENSION RT_GCC_EXTENSION
3082#else
3083# define RT_FLEXIBLE_ARRAY_EXTENSION
3084#endif
3085
3086/** @def RT_FLEXIBLE_ARRAY_NESTED
3087 * Variant of RT_FLEXIBLE_ARRAY for use in structures that are nested.
3088 *
3089 * GCC only allow the use of flexible array member in the top structure, whereas
3090 * MSC is less strict and let you do struct { struct { char szName[]; } s; };
3091 *
3092 * @note See notes for RT_FLEXIBLE_ARRAY.
3093 *
3094 * @note GCC does not permit using this in a union. So, for unions you must
3095 * use RT_FLEXIBLE_ARRAY_IN_NESTED_UNION instead.
3096 *
3097 * @sa RT_FLEXIBLE_ARRAY, RT_FLEXIBLE_ARRAY_IN_NESTED_UNION
3098 */
3099#ifdef _MSC_VER
3100# define RT_FLEXIBLE_ARRAY_NESTED RT_FLEXIBLE_ARRAY
3101#else
3102# define RT_FLEXIBLE_ARRAY_NESTED 1
3103#endif
3104
3105/** @def RT_FLEXIBLE_ARRAY_IN_UNION
3106 * The union version of RT_FLEXIBLE_ARRAY.
3107 *
3108 * @remarks GCC does not support flexible array members in unions, 6.1.x
3109 * actively checks for this. Visual C++ 2010 seems happy with it.
3110 *
3111 * @note See notes for RT_FLEXIBLE_ARRAY.
3112 *
3113 * @sa RT_FLEXIBLE_ARRAY, RT_FLEXIBLE_ARRAY_IN_NESTED_UNION
3114 */
3115#ifdef _MSC_VER
3116# define RT_FLEXIBLE_ARRAY_IN_UNION RT_FLEXIBLE_ARRAY
3117#else
3118# define RT_FLEXIBLE_ARRAY_IN_UNION 1
3119#endif
3120
3121/** @def RT_FLEXIBLE_ARRAY_IN_NESTED_UNION
3122 * The union version of RT_FLEXIBLE_ARRAY_NESTED.
3123 *
3124 * @note See notes for RT_FLEXIBLE_ARRAY.
3125 *
3126 * @sa RT_FLEXIBLE_ARRAY, RT_FLEXIBLE_ARRAY_IN_NESTED_UNION
3127 */
3128#ifdef _MSC_VER
3129# define RT_FLEXIBLE_ARRAY_IN_NESTED_UNION RT_FLEXIBLE_ARRAY_NESTED
3130#else
3131# define RT_FLEXIBLE_ARRAY_IN_NESTED_UNION 1
3132#endif
3133
3134/** @def RT_UNION_NM
3135 * For compilers (like DTrace) that does not grok nameless unions, we have a
3136 * little hack to make them palatable.
3137 */
3138/** @def RT_STRUCT_NM
3139 * For compilers (like DTrace) that does not grok nameless structs (it is
3140 * non-standard C++), we have a little hack to make them palatable.
3141 */
3142#ifdef IPRT_WITHOUT_NAMED_UNIONS_AND_STRUCTS
3143# define RT_UNION_NM(a_Nm) a_Nm
3144# define RT_STRUCT_NM(a_Nm) a_Nm
3145#else
3146# define RT_UNION_NM(a_Nm)
3147# define RT_STRUCT_NM(a_Nm)
3148#endif
3149
3150/**
3151 * Checks if the value is a power of two.
3152 *
3153 * @returns true if power of two, false if not.
3154 * @param uVal The value to test.
3155 * @remarks 0 is a power of two.
3156 * @see VERR_NOT_POWER_OF_TWO
3157 */
3158#define RT_IS_POWER_OF_TWO(uVal) ( ((uVal) & ((uVal) - 1)) == 0)
3159
3160#ifdef RT_OS_OS2
3161/* Undefine RT_MAX since there is an unfortunate clash with the max
3162 resource type define in os2.h. */
3163# undef RT_MAX
3164#endif
3165
3166/** @def RT_MAX
3167 * Finds the maximum value.
3168 * @returns The higher of the two.
3169 * @param Value1 Value 1
3170 * @param Value2 Value 2
3171 */
3172#define RT_MAX(Value1, Value2) ( (Value1) >= (Value2) ? (Value1) : (Value2) )
3173
3174/** @def RT_MIN
3175 * Finds the minimum value.
3176 * @returns The lower of the two.
3177 * @param Value1 Value 1
3178 * @param Value2 Value 2
3179 */
3180#define RT_MIN(Value1, Value2) ( (Value1) <= (Value2) ? (Value1) : (Value2) )
3181
3182/** @def RT_CLAMP
3183 * Clamps the value to minimum and maximum values.
3184 * @returns The clamped value.
3185 * @param Value The value to check.
3186 * @param Min Minimum value.
3187 * @param Max Maximum value.
3188 */
3189#define RT_CLAMP(Value, Min, Max) ( (Value) > (Max) ? (Max) : (Value) < (Min) ? (Min) : (Value) )
3190
3191/** @def RT_ABS
3192 * Get the absolute (non-negative) value.
3193 * @returns The absolute value of Value.
3194 * @param Value The value.
3195 */
3196#define RT_ABS(Value) ( (Value) >= 0 ? (Value) : -(Value) )
3197
3198/** @def RT_BOOL
3199 * Turn non-zero/zero into true/false
3200 * @returns The resulting boolean value.
3201 * @param Value The value.
3202 */
3203#define RT_BOOL(Value) ( !!(Value) )
3204
3205/** @def RT_LO_U8
3206 * Gets the low uint8_t of a uint16_t or something equivalent. */
3207#ifdef __GNUC__
3208# define RT_LO_U8(a) __extension__ ({ AssertCompile(sizeof((a)) == sizeof(uint16_t)); (uint8_t)(a); })
3209#elif defined(_MSC_VER) /* shut up cast truncates constant value warnings */
3210# define RT_LO_U8(a) ( (uint8_t)(UINT8_MAX & (a)) )
3211#else
3212# define RT_LO_U8(a) ( (uint8_t)(a) )
3213#endif
3214/** @def RT_HI_U8
3215 * Gets the high uint8_t of a uint16_t or something equivalent. */
3216#ifdef __GNUC__
3217# define RT_HI_U8(a) __extension__ ({ AssertCompile(sizeof((a)) == sizeof(uint16_t)); (uint8_t)((a) >> 8); })
3218#else
3219# define RT_HI_U8(a) ( (uint8_t)((a) >> 8) )
3220#endif
3221
3222/** @def RT_LO_U16
3223 * Gets the low uint16_t of a uint32_t or something equivalent. */
3224#ifdef __GNUC__
3225# define RT_LO_U16(a) __extension__ ({ AssertCompile(sizeof((a)) == sizeof(uint32_t)); (uint16_t)(a); })
3226#elif defined(_MSC_VER) /* shut up cast truncates constant value warnings */
3227# define RT_LO_U16(a) ( (uint16_t)(UINT16_MAX & (a)) )
3228#else
3229# define RT_LO_U16(a) ( (uint16_t)(a) )
3230#endif
3231/** @def RT_HI_U16
3232 * Gets the high uint16_t of a uint32_t or something equivalent. */
3233#ifdef __GNUC__
3234# define RT_HI_U16(a) __extension__ ({ AssertCompile(sizeof((a)) == sizeof(uint32_t)); (uint16_t)((a) >> 16); })
3235#else
3236# define RT_HI_U16(a) ( (uint16_t)((a) >> 16) )
3237#endif
3238
3239/** @def RT_LO_U32
3240 * Gets the low uint32_t of a uint64_t or something equivalent. */
3241#ifdef __GNUC__
3242# define RT_LO_U32(a) __extension__ ({ AssertCompile(sizeof((a)) == sizeof(uint64_t)); (uint32_t)(a); })
3243#elif defined(_MSC_VER) /* shut up cast truncates constant value warnings */
3244# define RT_LO_U32(a) ( (uint32_t)(UINT32_MAX & (a)) )
3245#else
3246# define RT_LO_U32(a) ( (uint32_t)(a) )
3247#endif
3248/** @def RT_HI_U32
3249 * Gets the high uint32_t of a uint64_t or something equivalent. */
3250#ifdef __GNUC__
3251# define RT_HI_U32(a) __extension__ ({ AssertCompile(sizeof((a)) == sizeof(uint64_t)); (uint32_t)((a) >> 32); })
3252#else
3253# define RT_HI_U32(a) ( (uint32_t)((a) >> 32) )
3254#endif
3255
3256/** @def RT_BYTE1
3257 * Gets the first byte of something. */
3258#define RT_BYTE1(a) ( (uint8_t)((a) & 0xff) )
3259/** @def RT_BYTE2
3260 * Gets the second byte of something. */
3261#define RT_BYTE2(a) ( (uint8_t)(((a) >> 8) & 0xff) )
3262/** @def RT_BYTE3
3263 * Gets the second byte of something. */
3264#define RT_BYTE3(a) ( (uint8_t)(((a) >> 16) & 0xff) )
3265/** @def RT_BYTE4
3266 * Gets the fourth byte of something. */
3267#define RT_BYTE4(a) ( (uint8_t)(((a) >> 24) & 0xff) )
3268/** @def RT_BYTE5
3269 * Gets the fifth byte of something. */
3270#define RT_BYTE5(a) ( (uint8_t)(((a) >> 32) & 0xff) )
3271/** @def RT_BYTE6
3272 * Gets the sixth byte of something. */
3273#define RT_BYTE6(a) ( (uint8_t)(((a) >> 40) & 0xff) )
3274/** @def RT_BYTE7
3275 * Gets the seventh byte of something. */
3276#define RT_BYTE7(a) ( (uint8_t)(((a) >> 48) & 0xff) )
3277/** @def RT_BYTE8
3278 * Gets the eight byte of something. */
3279#define RT_BYTE8(a) ( (uint8_t)(((a) >> 56) & 0xff) )
3280
3281
3282/** @def RT_LODWORD
3283 * Gets the low dword (=uint32_t) of something.
3284 * @deprecated Use RT_LO_U32. */
3285#define RT_LODWORD(a) ( (uint32_t)(a) )
3286/** @def RT_HIDWORD
3287 * Gets the high dword (=uint32_t) of a 64-bit of something.
3288 * @deprecated Use RT_HI_U32. */
3289#define RT_HIDWORD(a) ( (uint32_t)((a) >> 32) )
3290
3291/** @def RT_LOWORD
3292 * Gets the low word (=uint16_t) of something.
3293 * @deprecated Use RT_LO_U16. */
3294#define RT_LOWORD(a) ( (a) & 0xffff )
3295/** @def RT_HIWORD
3296 * Gets the high word (=uint16_t) of a 32-bit something.
3297 * @deprecated Use RT_HI_U16. */
3298#define RT_HIWORD(a) ( (a) >> 16 )
3299
3300/** @def RT_LOBYTE
3301 * Gets the low byte of something.
3302 * @deprecated Use RT_LO_U8. */
3303#define RT_LOBYTE(a) ( (a) & 0xff )
3304/** @def RT_HIBYTE
3305 * Gets the high byte of a 16-bit something.
3306 * @deprecated Use RT_HI_U8. */
3307#define RT_HIBYTE(a) ( (a) >> 8 )
3308
3309
3310/** @def RT_MAKE_U64
3311 * Constructs a uint64_t value from two uint32_t values.
3312 */
3313#define RT_MAKE_U64(Lo, Hi) ( (uint64_t)((uint32_t)(Hi)) << 32 | (uint32_t)(Lo) )
3314
3315/** @def RT_MAKE_U64_FROM_U16
3316 * Constructs a uint64_t value from four uint16_t values, with parameters in
3317 * least significant word first order.
3318 * @see RT_MAKE_U64_FROM_MSW_U16
3319 */
3320#define RT_MAKE_U64_FROM_U16(w0, w1, w2, w3) \
3321 ((uint64_t)( (uint64_t)((uint16_t)(w3)) << 48 \
3322 | (uint64_t)((uint16_t)(w2)) << 32 \
3323 | (uint32_t)((uint16_t)(w1)) << 16 \
3324 | (uint16_t)(w0) ))
3325
3326/** @def RT_MAKE_U64_FROM_U16
3327 * Constructs a uint64_t value from four uint16_t values, with parameters in
3328 * most significant word first order.
3329 * @see RT_MAKE_U64_FROM_U16
3330 */
3331#define RT_MAKE_U64_FROM_MSW_U16(w3, w2, w1, w0) RT_MAKE_U64_FROM_U16(w0, w1, w2, w3)
3332
3333/** @def RT_MAKE_U64_FROM_U8
3334 * Constructs a uint64_t value from eight uint8_t values, with parameters in
3335 * least significant byte first order.
3336 * @see RT_MAKE_U64_FROM_MSB_U8
3337 */
3338#define RT_MAKE_U64_FROM_U8(b0, b1, b2, b3, b4, b5, b6, b7) \
3339 ((uint64_t)( (uint64_t)((uint8_t)(b7)) << 56 \
3340 | (uint64_t)((uint8_t)(b6)) << 48 \
3341 | (uint64_t)((uint8_t)(b5)) << 40 \
3342 | (uint64_t)((uint8_t)(b4)) << 32 \
3343 | (uint64_t)((uint8_t)(b3)) << 24 \
3344 | (uint64_t)((uint8_t)(b2)) << 16 \
3345 | (uint64_t)((uint8_t)(b1)) << 8 \
3346 | (uint64_t) (uint8_t)(b0) ))
3347
3348/** @def RT_MAKE_U64_FROM_MSB_U8
3349 * Constructs a uint64_t value from eight uint8_t values, with parameters in
3350 * most significant byte first order.
3351 * @see RT_MAKE_U64_FROM_U8
3352 */
3353#define RT_MAKE_U64_FROM_MSB_U8(b7, b6, b5, b4, b3, b2, b1, b0) RT_MAKE_U64_FROM_U8(b0, b1, b2, b3, b4, b5, b6, b7)
3354
3355/** @def RT_MAKE_U32
3356 * Constructs a uint32_t value from two uint16_t values.
3357 */
3358#define RT_MAKE_U32(Lo, Hi) \
3359 ((uint32_t)( (uint32_t)((uint16_t)(Hi)) << 16 \
3360 | (uint16_t)(Lo) ))
3361
3362/** @def RT_MAKE_U32_FROM_U8
3363 * Constructs a uint32_t value from four uint8_t values, with parameters in
3364 * least significant byte first order.
3365 * @see RT_MAKE_U32_FROM_MSB_U8
3366 */
3367#define RT_MAKE_U32_FROM_U8(b0, b1, b2, b3) \
3368 ((uint32_t)( (uint32_t)((uint8_t)(b3)) << 24 \
3369 | (uint32_t)((uint8_t)(b2)) << 16 \
3370 | (uint32_t)((uint8_t)(b1)) << 8 \
3371 | (uint8_t)(b0) ))
3372
3373/** @def RT_MAKE_U32_FROM_MSB_U8
3374 * Constructs a uint32_t value from four uint8_t values, with parameters in most
3375 * significant byte first order.
3376 * @see RT_MAKE_U32_FROM_8
3377 */
3378#define RT_MAKE_U32_FROM_MSB_U8(b3, b2, b1, b0) RT_MAKE_U32_FROM_U8(b0, b1, b2, b3)
3379
3380/** @def RT_MAKE_U16
3381 * Constructs a uint16_t value from two uint8_t values.
3382 */
3383#define RT_MAKE_U16(Lo, Hi) \
3384 ((uint16_t)( (uint16_t)((uint8_t)(Hi)) << 8 \
3385 | (uint8_t)(Lo) ))
3386
3387
3388/** @def RT_BSWAP_U64
3389 * Reverses the byte order of an uint64_t value. */
3390#if defined(__GNUC__)
3391# define RT_BSWAP_U64(u64) (__builtin_constant_p((u64)) ? RT_BSWAP_U64_C(u64) : ASMByteSwapU64(u64))
3392#else
3393# define RT_BSWAP_U64(u64) ASMByteSwapU64(u64)
3394#endif
3395
3396/** @def RT_BSWAP_U32
3397 * Reverses the byte order of an uint32_t value. */
3398#if defined(__GNUC__)
3399# define RT_BSWAP_U32(u32) (__builtin_constant_p((u32)) ? RT_BSWAP_U32_C(u32) : ASMByteSwapU32(u32))
3400#else
3401# define RT_BSWAP_U32(u32) ASMByteSwapU32(u32)
3402#endif
3403
3404/** @def RT_BSWAP_U16
3405 * Reverses the byte order of an uint16_t value. */
3406#if defined(__GNUC__)
3407# define RT_BSWAP_U16(u16) (__builtin_constant_p((u16)) ? RT_BSWAP_U16_C(u16) : ASMByteSwapU16(u16))
3408#else
3409# define RT_BSWAP_U16(u16) ASMByteSwapU16(u16)
3410#endif
3411
3412/** @def RT_BSWAP_S64
3413 * Reverses the byte order of an int64_t value. */
3414#define RT_BSWAP_S64(i64) ((int64_t)RT_BSWAP_U64((uint64_t)i64))
3415
3416/** @def RT_BSWAP_S32
3417 * Reverses the byte order of an int32_t value. */
3418#define RT_BSWAP_S32(i32) ((int32_t)RT_BSWAP_U32((uint32_t)i32))
3419
3420/** @def RT_BSWAP_S16
3421 * Reverses the byte order of an int16_t value. */
3422#define RT_BSWAP_S16(i16) ((int16_t)RT_BSWAP_U16((uint16_t)i16))
3423
3424
3425/** @def RT_BSWAP_U64_C
3426 * Reverses the byte order of an uint64_t constant. */
3427#define RT_BSWAP_U64_C(u64) RT_MAKE_U64(RT_BSWAP_U32_C((u64) >> 32), RT_BSWAP_U32_C((u64) & 0xffffffff))
3428
3429/** @def RT_BSWAP_U32_C
3430 * Reverses the byte order of an uint32_t constant. */
3431#define RT_BSWAP_U32_C(u32) RT_MAKE_U32_FROM_U8(RT_BYTE4(u32), RT_BYTE3(u32), RT_BYTE2(u32), RT_BYTE1(u32))
3432
3433/** @def RT_BSWAP_U16_C
3434 * Reverses the byte order of an uint16_t constant. */
3435#define RT_BSWAP_U16_C(u16) RT_MAKE_U16(RT_HIBYTE(u16), RT_LOBYTE(u16))
3436
3437/** @def RT_BSWAP_S64_C
3438 * Reverses the byte order of an int64_t constant. */
3439#define RT_BSWAP_S64_C(i64) ((int64_t)RT_MAKE_U64(RT_BSWAP_U32_C((uint64_t)(i64) >> 32), RT_BSWAP_U32_C((uint32_t)(i64))))
3440
3441/** @def RT_BSWAP_S32_C
3442 * Reverses the byte order of an int32_t constant. */
3443#define RT_BSWAP_S32_C(i32) ((int32_t)RT_MAKE_U32_FROM_U8(RT_BYTE4(i32), RT_BYTE3(i32), RT_BYTE2(i32), RT_BYTE1(i)))
3444
3445/** @def RT_BSWAP_S16_C
3446 * Reverses the byte order of an uint16_t constant. */
3447#define RT_BSWAP_S16_C(i16) ((int16_t)RT_MAKE_U16(RT_HIBYTE(i16), RT_LOBYTE(i16)))
3448
3449
3450
3451/** @name Host to/from little endian.
3452 * @note Typically requires iprt/asm.h to be included.
3453 * @{ */
3454
3455/** @def RT_H2LE_U64
3456 * Converts an uint64_t value from host to little endian byte order. */
3457#ifdef RT_BIG_ENDIAN
3458# define RT_H2LE_U64(u64) RT_BSWAP_U64(u64)
3459#else
3460# define RT_H2LE_U64(u64) (u64)
3461#endif
3462
3463/** @def RT_H2LE_U64_C
3464 * Converts an uint64_t constant from host to little endian byte order. */
3465#ifdef RT_BIG_ENDIAN
3466# define RT_H2LE_U64_C(u64) RT_BSWAP_U64_C(u64)
3467#else
3468# define RT_H2LE_U64_C(u64) (u64)
3469#endif
3470
3471/** @def RT_H2LE_U32
3472 * Converts an uint32_t value from host to little endian byte order. */
3473#ifdef RT_BIG_ENDIAN
3474# define RT_H2LE_U32(u32) RT_BSWAP_U32(u32)
3475#else
3476# define RT_H2LE_U32(u32) (u32)
3477#endif
3478
3479/** @def RT_H2LE_U32_C
3480 * Converts an uint32_t constant from host to little endian byte order. */
3481#ifdef RT_BIG_ENDIAN
3482# define RT_H2LE_U32_C(u32) RT_BSWAP_U32_C(u32)
3483#else
3484# define RT_H2LE_U32_C(u32) (u32)
3485#endif
3486
3487/** @def RT_H2LE_U16
3488 * Converts an uint16_t value from host to little endian byte order. */
3489#ifdef RT_BIG_ENDIAN
3490# define RT_H2LE_U16(u16) RT_BSWAP_U16(u16)
3491#else
3492# define RT_H2LE_U16(u16) (u16)
3493#endif
3494
3495/** @def RT_H2LE_U16_C
3496 * Converts an uint16_t constant from host to little endian byte order. */
3497#ifdef RT_BIG_ENDIAN
3498# define RT_H2LE_U16_C(u16) RT_BSWAP_U16_C(u16)
3499#else
3500# define RT_H2LE_U16_C(u16) (u16)
3501#endif
3502
3503
3504/** @def RT_LE2H_U64
3505 * Converts an uint64_t value from little endian to host byte order. */
3506#ifdef RT_BIG_ENDIAN
3507# define RT_LE2H_U64(u64) RT_BSWAP_U64(u64)
3508#else
3509# define RT_LE2H_U64(u64) (u64)
3510#endif
3511
3512/** @def RT_LE2H_U64_C
3513 * Converts an uint64_t constant from little endian to host byte order. */
3514#ifdef RT_BIG_ENDIAN
3515# define RT_LE2H_U64_C(u64) RT_BSWAP_U64_C(u64)
3516#else
3517# define RT_LE2H_U64_C(u64) (u64)
3518#endif
3519
3520/** @def RT_LE2H_U32
3521 * Converts an uint32_t value from little endian to host byte order. */
3522#ifdef RT_BIG_ENDIAN
3523# define RT_LE2H_U32(u32) RT_BSWAP_U32(u32)
3524#else
3525# define RT_LE2H_U32(u32) (u32)
3526#endif
3527
3528/** @def RT_LE2H_U32_C
3529 * Converts an uint32_t constant from little endian to host byte order. */
3530#ifdef RT_BIG_ENDIAN
3531# define RT_LE2H_U32_C(u32) RT_BSWAP_U32_C(u32)
3532#else
3533# define RT_LE2H_U32_C(u32) (u32)
3534#endif
3535
3536/** @def RT_LE2H_U16
3537 * Converts an uint16_t value from little endian to host byte order. */
3538#ifdef RT_BIG_ENDIAN
3539# define RT_LE2H_U16(u16) RT_BSWAP_U16(u16)
3540#else
3541# define RT_LE2H_U16(u16) (u16)
3542#endif
3543
3544/** @def RT_LE2H_U16_C
3545 * Converts an uint16_t constant from little endian to host byte order. */
3546#ifdef RT_BIG_ENDIAN
3547# define RT_LE2H_U16_C(u16) RT_BSWAP_U16_C(u16)
3548#else
3549# define RT_LE2H_U16_C(u16) (u16)
3550#endif
3551
3552/** @def RT_H2LE_S64
3553 * Converts an int64_t value from host to little endian byte order. */
3554#ifdef RT_BIG_ENDIAN
3555# define RT_H2LE_S64(i64) RT_BSWAP_S64(i64)
3556#else
3557# define RT_H2LE_S64(i64) (i64)
3558#endif
3559
3560/** @def RT_H2LE_S64_C
3561 * Converts an int64_t constant from host to little endian byte order. */
3562#ifdef RT_BIG_ENDIAN
3563# define RT_H2LE_S64_C(i64) RT_BSWAP_S64_C(i64)
3564#else
3565# define RT_H2LE_S64_C(i64) (i64)
3566#endif
3567
3568/** @def RT_H2LE_S32
3569 * Converts an int32_t value from host to little endian byte order. */
3570#ifdef RT_BIG_ENDIAN
3571# define RT_H2LE_S32(i32) RT_BSWAP_S32(i32)
3572#else
3573# define RT_H2LE_S32(i32) (i32)
3574#endif
3575
3576/** @def RT_H2LE_S32_C
3577 * Converts an int32_t constant from host to little endian byte order. */
3578#ifdef RT_BIG_ENDIAN
3579# define RT_H2LE_S32_C(i32) RT_BSWAP_S32_C(i32)
3580#else
3581# define RT_H2LE_S32_C(i32) (i32)
3582#endif
3583
3584/** @def RT_H2LE_S16
3585 * Converts an int16_t value from host to little endian byte order. */
3586#ifdef RT_BIG_ENDIAN
3587# define RT_H2LE_S16(i16) RT_BSWAP_S16(i16)
3588#else
3589# define RT_H2LE_S16(i16) (i16)
3590#endif
3591
3592/** @def RT_H2LE_S16_C
3593 * Converts an int16_t constant from host to little endian byte order. */
3594#ifdef RT_BIG_ENDIAN
3595# define RT_H2LE_S16_C(i16) RT_BSWAP_S16_C(i16)
3596#else
3597# define RT_H2LE_S16_C(i16) (i16)
3598#endif
3599
3600/** @def RT_LE2H_S64
3601 * Converts an int64_t value from little endian to host byte order. */
3602#ifdef RT_BIG_ENDIAN
3603# define RT_LE2H_S64(i64) RT_BSWAP_S64(i64)
3604#else
3605# define RT_LE2H_S64(i64) (i64)
3606#endif
3607
3608/** @def RT_LE2H_S64_C
3609 * Converts an int64_t constant from little endian to host byte order. */
3610#ifdef RT_BIG_ENDIAN
3611# define RT_LE2H_S64_C(i64) RT_BSWAP_S64_C(i64)
3612#else
3613# define RT_LE2H_S64_C(i64) (i64)
3614#endif
3615
3616/** @def RT_LE2H_S32
3617 * Converts an int32_t value from little endian to host byte order. */
3618#ifdef RT_BIG_ENDIAN
3619# define RT_LE2H_S32(i32) RT_BSWAP_S32(i32)
3620#else
3621# define RT_LE2H_S32(i32) (i32)
3622#endif
3623
3624/** @def RT_LE2H_S32_C
3625 * Converts an int32_t constant from little endian to host byte order. */
3626#ifdef RT_BIG_ENDIAN
3627# define RT_LE2H_S32_C(i32) RT_BSWAP_S32_C(i32)
3628#else
3629# define RT_LE2H_S32_C(i32) (i32)
3630#endif
3631
3632/** @def RT_LE2H_S16
3633 * Converts an int16_t value from little endian to host byte order. */
3634#ifdef RT_BIG_ENDIAN
3635# define RT_LE2H_S16(i16) RT_BSWAP_S16(i16)
3636#else
3637# define RT_LE2H_S16(i16) (i16)
3638#endif
3639
3640/** @def RT_LE2H_S16_C
3641 * Converts an int16_t constant from little endian to host byte order. */
3642#ifdef RT_BIG_ENDIAN
3643# define RT_LE2H_S16_C(i16) RT_BSWAP_S16_C(i16)
3644#else
3645# define RT_LE2H_S16_C(i16) (i16)
3646#endif
3647
3648/** @} */
3649
3650/** @name Host to/from big endian.
3651 * @note Typically requires iprt/asm.h to be included.
3652 * @{ */
3653
3654/** @def RT_H2BE_U64
3655 * Converts an uint64_t value from host to big endian byte order. */
3656#ifdef RT_BIG_ENDIAN
3657# define RT_H2BE_U64(u64) (u64)
3658#else
3659# define RT_H2BE_U64(u64) RT_BSWAP_U64(u64)
3660#endif
3661
3662/** @def RT_H2BE_U64_C
3663 * Converts an uint64_t constant from host to big endian byte order. */
3664#ifdef RT_BIG_ENDIAN
3665# define RT_H2BE_U64_C(u64) (u64)
3666#else
3667# define RT_H2BE_U64_C(u64) RT_BSWAP_U64_C(u64)
3668#endif
3669
3670/** @def RT_H2BE_U32
3671 * Converts an uint32_t value from host to big endian byte order. */
3672#ifdef RT_BIG_ENDIAN
3673# define RT_H2BE_U32(u32) (u32)
3674#else
3675# define RT_H2BE_U32(u32) RT_BSWAP_U32(u32)
3676#endif
3677
3678/** @def RT_H2BE_U32_C
3679 * Converts an uint32_t constant from host to big endian byte order. */
3680#ifdef RT_BIG_ENDIAN
3681# define RT_H2BE_U32_C(u32) (u32)
3682#else
3683# define RT_H2BE_U32_C(u32) RT_BSWAP_U32_C(u32)
3684#endif
3685
3686/** @def RT_H2BE_U16
3687 * Converts an uint16_t value from host to big endian byte order. */
3688#ifdef RT_BIG_ENDIAN
3689# define RT_H2BE_U16(u16) (u16)
3690#else
3691# define RT_H2BE_U16(u16) RT_BSWAP_U16(u16)
3692#endif
3693
3694/** @def RT_H2BE_U16_C
3695 * Converts an uint16_t constant from host to big endian byte order. */
3696#ifdef RT_BIG_ENDIAN
3697# define RT_H2BE_U16_C(u16) (u16)
3698#else
3699# define RT_H2BE_U16_C(u16) RT_BSWAP_U16_C(u16)
3700#endif
3701
3702/** @def RT_BE2H_U64
3703 * Converts an uint64_t value from big endian to host byte order. */
3704#ifdef RT_BIG_ENDIAN
3705# define RT_BE2H_U64(u64) (u64)
3706#else
3707# define RT_BE2H_U64(u64) RT_BSWAP_U64(u64)
3708#endif
3709
3710/** @def RT_BE2H_U64
3711 * Converts an uint64_t constant from big endian to host byte order. */
3712#ifdef RT_BIG_ENDIAN
3713# define RT_BE2H_U64_C(u64) (u64)
3714#else
3715# define RT_BE2H_U64_C(u64) RT_BSWAP_U64_C(u64)
3716#endif
3717
3718/** @def RT_BE2H_U32
3719 * Converts an uint32_t value from big endian to host byte order. */
3720#ifdef RT_BIG_ENDIAN
3721# define RT_BE2H_U32(u32) (u32)
3722#else
3723# define RT_BE2H_U32(u32) RT_BSWAP_U32(u32)
3724#endif
3725
3726/** @def RT_BE2H_U32_C
3727 * Converts an uint32_t value from big endian to host byte order. */
3728#ifdef RT_BIG_ENDIAN
3729# define RT_BE2H_U32_C(u32) (u32)
3730#else
3731# define RT_BE2H_U32_C(u32) RT_BSWAP_U32_C(u32)
3732#endif
3733
3734/** @def RT_BE2H_U16
3735 * Converts an uint16_t value from big endian to host byte order. */
3736#ifdef RT_BIG_ENDIAN
3737# define RT_BE2H_U16(u16) (u16)
3738#else
3739# define RT_BE2H_U16(u16) RT_BSWAP_U16(u16)
3740#endif
3741
3742/** @def RT_BE2H_U16_C
3743 * Converts an uint16_t constant from big endian to host byte order. */
3744#ifdef RT_BIG_ENDIAN
3745# define RT_BE2H_U16_C(u16) (u16)
3746#else
3747# define RT_BE2H_U16_C(u16) RT_BSWAP_U16_C(u16)
3748#endif
3749
3750/** @def RT_H2BE_S64
3751 * Converts an int64_t value from host to big endian byte order. */
3752#ifdef RT_BIG_ENDIAN
3753# define RT_H2BE_S64(i64) (i64)
3754#else
3755# define RT_H2BE_S64(i64) RT_BSWAP_S64(i64)
3756#endif
3757
3758/** @def RT_H2BE_S64_C
3759 * Converts an int64_t constant from host to big endian byte order. */
3760#ifdef RT_BIG_ENDIAN
3761# define RT_H2BE_S64_C(i64) (i64)
3762#else
3763# define RT_H2BE_S64_C(i64) RT_BSWAP_S64_C(i64)
3764#endif
3765
3766/** @def RT_H2BE_S32
3767 * Converts an int32_t value from host to big endian byte order. */
3768#ifdef RT_BIG_ENDIAN
3769# define RT_H2BE_S32(i32) (i32)
3770#else
3771# define RT_H2BE_S32(i32) RT_BSWAP_S32(i32)
3772#endif
3773
3774/** @def RT_H2BE_S32_C
3775 * Converts an int32_t constant from host to big endian byte order. */
3776#ifdef RT_BIG_ENDIAN
3777# define RT_H2BE_S32_C(i32) (i32)
3778#else
3779# define RT_H2BE_S32_C(i32) RT_BSWAP_S32_C(i32)
3780#endif
3781
3782/** @def RT_H2BE_S16
3783 * Converts an int16_t value from host to big endian byte order. */
3784#ifdef RT_BIG_ENDIAN
3785# define RT_H2BE_S16(i16) (i16)
3786#else
3787# define RT_H2BE_S16(i16) RT_BSWAP_S16(i16)
3788#endif
3789
3790/** @def RT_H2BE_S16_C
3791 * Converts an int16_t constant from host to big endian byte order. */
3792#ifdef RT_BIG_ENDIAN
3793# define RT_H2BE_S16_C(i16) (i16)
3794#else
3795# define RT_H2BE_S16_C(i16) RT_BSWAP_S16_C(i16)
3796#endif
3797
3798/** @def RT_BE2H_S64
3799 * Converts an int64_t value from big endian to host byte order. */
3800#ifdef RT_BIG_ENDIAN
3801# define RT_BE2H_S64(i64) (i64)
3802#else
3803# define RT_BE2H_S64(i64) RT_BSWAP_S64(i64)
3804#endif
3805
3806/** @def RT_BE2H_S64
3807 * Converts an int64_t constant from big endian to host byte order. */
3808#ifdef RT_BIG_ENDIAN
3809# define RT_BE2H_S64_C(i64) (i64)
3810#else
3811# define RT_BE2H_S64_C(i64) RT_BSWAP_S64_C(i64)
3812#endif
3813
3814/** @def RT_BE2H_S32
3815 * Converts an int32_t value from big endian to host byte order. */
3816#ifdef RT_BIG_ENDIAN
3817# define RT_BE2H_S32(i32) (i32)
3818#else
3819# define RT_BE2H_S32(i32) RT_BSWAP_S32(i32)
3820#endif
3821
3822/** @def RT_BE2H_S32_C
3823 * Converts an int32_t value from big endian to host byte order. */
3824#ifdef RT_BIG_ENDIAN
3825# define RT_BE2H_S32_C(i32) (i32)
3826#else
3827# define RT_BE2H_S32_C(i32) RT_BSWAP_S32_C(i32)
3828#endif
3829
3830/** @def RT_BE2H_S16
3831 * Converts an int16_t value from big endian to host byte order. */
3832#ifdef RT_BIG_ENDIAN
3833# define RT_BE2H_S16(i16) (i16)
3834#else
3835# define RT_BE2H_S16(i16) RT_BSWAP_S16(i16)
3836#endif
3837
3838/** @def RT_BE2H_S16_C
3839 * Converts an int16_t constant from big endian to host byte order. */
3840#ifdef RT_BIG_ENDIAN
3841# define RT_BE2H_S16_C(i16) (i16)
3842#else
3843# define RT_BE2H_S16_C(i16) RT_BSWAP_S16_C(i16)
3844#endif
3845/** @} */
3846
3847/** @name Host to/from network byte order.
3848 * @note Typically requires iprt/asm.h to be included.
3849 * @{ */
3850
3851/** @def RT_H2N_U64
3852 * Converts an uint64_t value from host to network byte order. */
3853#define RT_H2N_U64(u64) RT_H2BE_U64(u64)
3854
3855/** @def RT_H2N_U64_C
3856 * Converts an uint64_t constant from host to network byte order. */
3857#define RT_H2N_U64_C(u64) RT_H2BE_U64_C(u64)
3858
3859/** @def RT_H2N_U32
3860 * Converts an uint32_t value from host to network byte order. */
3861#define RT_H2N_U32(u32) RT_H2BE_U32(u32)
3862
3863/** @def RT_H2N_U32_C
3864 * Converts an uint32_t constant from host to network byte order. */
3865#define RT_H2N_U32_C(u32) RT_H2BE_U32_C(u32)
3866
3867/** @def RT_H2N_U16
3868 * Converts an uint16_t value from host to network byte order. */
3869#define RT_H2N_U16(u16) RT_H2BE_U16(u16)
3870
3871/** @def RT_H2N_U16_C
3872 * Converts an uint16_t constant from host to network byte order. */
3873#define RT_H2N_U16_C(u16) RT_H2BE_U16_C(u16)
3874
3875/** @def RT_N2H_U64
3876 * Converts an uint64_t value from network to host byte order. */
3877#define RT_N2H_U64(u64) RT_BE2H_U64(u64)
3878
3879/** @def RT_N2H_U64_C
3880 * Converts an uint64_t constant from network to host byte order. */
3881#define RT_N2H_U64_C(u64) RT_BE2H_U64_C(u64)
3882
3883/** @def RT_N2H_U32
3884 * Converts an uint32_t value from network to host byte order. */
3885#define RT_N2H_U32(u32) RT_BE2H_U32(u32)
3886
3887/** @def RT_N2H_U32_C
3888 * Converts an uint32_t constant from network to host byte order. */
3889#define RT_N2H_U32_C(u32) RT_BE2H_U32_C(u32)
3890
3891/** @def RT_N2H_U16
3892 * Converts an uint16_t value from network to host byte order. */
3893#define RT_N2H_U16(u16) RT_BE2H_U16(u16)
3894
3895/** @def RT_N2H_U16_C
3896 * Converts an uint16_t value from network to host byte order. */
3897#define RT_N2H_U16_C(u16) RT_BE2H_U16_C(u16)
3898
3899/** @def RT_H2N_S64
3900 * Converts an int64_t value from host to network byte order. */
3901#define RT_H2N_S64(i64) RT_H2BE_S64(i64)
3902
3903/** @def RT_H2N_S64_C
3904 * Converts an int64_t constant from host to network byte order. */
3905#define RT_H2N_S64_C(i64) RT_H2BE_S64_C(i64)
3906
3907/** @def RT_H2N_S32
3908 * Converts an int32_t value from host to network byte order. */
3909#define RT_H2N_S32(i32) RT_H2BE_S32(i32)
3910
3911/** @def RT_H2N_S32_C
3912 * Converts an int32_t constant from host to network byte order. */
3913#define RT_H2N_S32_C(i32) RT_H2BE_S32_C(i32)
3914
3915/** @def RT_H2N_S16
3916 * Converts an int16_t value from host to network byte order. */
3917#define RT_H2N_S16(i16) RT_H2BE_S16(i16)
3918
3919/** @def RT_H2N_S16_C
3920 * Converts an int16_t constant from host to network byte order. */
3921#define RT_H2N_S16_C(i16) RT_H2BE_S16_C(i16)
3922
3923/** @def RT_N2H_S64
3924 * Converts an int64_t value from network to host byte order. */
3925#define RT_N2H_S64(i64) RT_BE2H_S64(i64)
3926
3927/** @def RT_N2H_S64_C
3928 * Converts an int64_t constant from network to host byte order. */
3929#define RT_N2H_S64_C(i64) RT_BE2H_S64_C(i64)
3930
3931/** @def RT_N2H_S32
3932 * Converts an int32_t value from network to host byte order. */
3933#define RT_N2H_S32(i32) RT_BE2H_S32(i32)
3934
3935/** @def RT_N2H_S32_C
3936 * Converts an int32_t constant from network to host byte order. */
3937#define RT_N2H_S32_C(i32) RT_BE2H_S32_C(i32)
3938
3939/** @def RT_N2H_S16
3940 * Converts an int16_t value from network to host byte order. */
3941#define RT_N2H_S16(i16) RT_BE2H_S16(i16)
3942
3943/** @def RT_N2H_S16_C
3944 * Converts an int16_t value from network to host byte order. */
3945#define RT_N2H_S16_C(i16) RT_BE2H_S16_C(i16)
3946
3947/** @} */
3948
3949
3950/*
3951 * The BSD sys/param.h + machine/param.h file is a major source of
3952 * namespace pollution. Kill off some of the worse ones unless we're
3953 * compiling kernel code.
3954 */
3955#if defined(RT_OS_DARWIN) \
3956 && !defined(KERNEL) \
3957 && !defined(RT_NO_BSD_PARAM_H_UNDEFING) \
3958 && ( defined(_SYS_PARAM_H_) || defined(_I386_PARAM_H_) )
3959/* sys/param.h: */
3960# undef PSWP
3961# undef PVM
3962# undef PINOD
3963# undef PRIBO
3964# undef PVFS
3965# undef PZERO
3966# undef PSOCK
3967# undef PWAIT
3968# undef PLOCK
3969# undef PPAUSE
3970# undef PUSER
3971# undef PRIMASK
3972# undef MINBUCKET
3973# undef MAXALLOCSAVE
3974# undef FSHIFT
3975# undef FSCALE
3976
3977/* i386/machine.h: */
3978# undef ALIGN
3979# undef ALIGNBYTES
3980# undef DELAY
3981# undef STATUS_WORD
3982# undef USERMODE
3983# undef BASEPRI
3984# undef MSIZE
3985# undef CLSIZE
3986# undef CLSIZELOG2
3987#endif
3988
3989/** @def NIL_OFFSET
3990 * NIL offset.
3991 * Whenever we use offsets instead of pointers to save space and relocation effort
3992 * NIL_OFFSET shall be used as the equivalent to NULL.
3993 */
3994#define NIL_OFFSET (~0U)
3995
3996
3997/** @def NOREF
3998 * Keeps the compiler from bitching about an unused parameter, local variable,
3999 * or other stuff, will never use _Pragma are is thus more flexible.
4000 */
4001#define NOREF(var) (void)(var)
4002
4003/** @def RT_NOREF_PV
4004 * Keeps the compiler from bitching about an unused parameter or local variable.
4005 * This one cannot be used with structure members and such, like for instance
4006 * AssertRC may end up doing due to its generic nature.
4007 */
4008#if defined(__cplusplus) && RT_CLANG_PREREQ(6, 0)
4009# define RT_NOREF_PV(var) _Pragma(RT_STR(unused(var)))
4010#else
4011# define RT_NOREF_PV(var) (void)(var)
4012#endif
4013
4014/** @def RT_NOREF1
4015 * RT_NOREF_PV shorthand taking on parameter. */
4016#define RT_NOREF1(var1) RT_NOREF_PV(var1)
4017/** @def RT_NOREF2
4018 * RT_NOREF_PV shorthand taking two parameters. */
4019#define RT_NOREF2(var1, var2) RT_NOREF_PV(var1); RT_NOREF1(var2)
4020/** @def RT_NOREF3
4021 * RT_NOREF_PV shorthand taking three parameters. */
4022#define RT_NOREF3(var1, var2, var3) RT_NOREF_PV(var1); RT_NOREF2(var2, var3)
4023/** @def RT_NOREF4
4024 * RT_NOREF_PV shorthand taking four parameters. */
4025#define RT_NOREF4(var1, var2, var3, var4) RT_NOREF_PV(var1); RT_NOREF3(var2, var3, var4)
4026/** @def RT_NOREF5
4027 * RT_NOREF_PV shorthand taking five parameters. */
4028#define RT_NOREF5(var1, var2, var3, var4, var5) RT_NOREF_PV(var1); RT_NOREF4(var2, var3, var4, var5)
4029/** @def RT_NOREF6
4030 * RT_NOREF_PV shorthand taking six parameters. */
4031#define RT_NOREF6(var1, var2, var3, var4, var5, var6) RT_NOREF_PV(var1); RT_NOREF5(var2, var3, var4, var5, var6)
4032/** @def RT_NOREF7
4033 * RT_NOREF_PV shorthand taking seven parameters. */
4034#define RT_NOREF7(var1, var2, var3, var4, var5, var6, var7) \
4035 RT_NOREF_PV(var1); RT_NOREF6(var2, var3, var4, var5, var6, var7)
4036/** @def RT_NOREF8
4037 * RT_NOREF_PV shorthand taking eight parameters. */
4038#define RT_NOREF8(var1, var2, var3, var4, var5, var6, var7, var8) \
4039 RT_NOREF_PV(var1); RT_NOREF7(var2, var3, var4, var5, var6, var7, var8)
4040/** @def RT_NOREF9
4041 * RT_NOREF_PV shorthand taking nine parameters. */
4042#define RT_NOREF9(var1, var2, var3, var4, var5, var6, var7, var8, var9) \
4043 RT_NOREF_PV(var1); RT_NOREF8(var2, var3, var4, var5, var6, var7, var8, var9)
4044/** @def RT_NOREF10
4045 * RT_NOREF_PV shorthand taking ten parameters. */
4046#define RT_NOREF10(var1, var2, var3, var4, var5, var6, var7, var8, var9, var10) \
4047 RT_NOREF_PV(var1); RT_NOREF_PV(var2); RT_NOREF_PV(var3); RT_NOREF_PV(var4); RT_NOREF_PV(var5); RT_NOREF_PV(var6); \
4048 RT_NOREF_PV(var7); RT_NOREF_PV(var8); RT_NOREF_PV(var9); RT_NOREF_PV(var10)
4049/** @def RT_NOREF11
4050 * RT_NOREF_PV shorthand taking eleven parameters. */
4051#define RT_NOREF11(var1, var2, var3, var4, var5, var6, var7, var8, var9, var10, var11) \
4052 RT_NOREF_PV(var1); RT_NOREF10(var2, var3, var4, var5, var6, var7, var8, var9, var10, var11)
4053/** @def RT_NOREF12
4054 * RT_NOREF_PV shorthand taking twelve parameters. */
4055#define RT_NOREF12(var1, var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12) \
4056 RT_NOREF_PV(var1); RT_NOREF11(var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12)
4057/** @def RT_NOREF13
4058 * RT_NOREF_PV shorthand taking thirteen parameters. */
4059#define RT_NOREF13(var1, var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13) \
4060 RT_NOREF_PV(var1); RT_NOREF12(var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13)
4061/** @def RT_NOREF14
4062 * RT_NOREF_PV shorthand taking fourteen parameters. */
4063#define RT_NOREF14(var1, var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13, var14) \
4064 RT_NOREF_PV(var1); RT_NOREF13(var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13, var14)
4065/** @def RT_NOREF15
4066 * RT_NOREF_PV shorthand taking fifteen parameters. */
4067#define RT_NOREF15(var1, var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13, var14, var15) \
4068 RT_NOREF_PV(var1); RT_NOREF14(var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13, var14, var15)
4069/** @def RT_NOREF16
4070 * RT_NOREF_PV shorthand taking fifteen parameters. */
4071#define RT_NOREF16(var1, var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13, var14, var15, var16) \
4072 RT_NOREF_PV(var1); RT_NOREF15(var2, var3, var4, var5, var6, var7, var8, var9, var10, var11, var12, var13, var14, var15, var16)
4073/** @def RT_NOREF17
4074 * RT_NOREF_PV shorthand taking seventeen parameters. */
4075#define RT_NOREF17(v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17) \
4076 RT_NOREF_PV(v1); RT_NOREF16(v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17)
4077/** @def RT_NOREF18
4078 * RT_NOREF_PV shorthand taking eighteen parameters. */
4079#define RT_NOREF18(v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18) \
4080 RT_NOREF_PV(v1); RT_NOREF17(v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18)
4081/** @def RT_NOREF19
4082 * RT_NOREF_PV shorthand taking nineteen parameters. */
4083#define RT_NOREF19(v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19) \
4084 RT_NOREF_PV(v1); RT_NOREF18(v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19)
4085/** @def RT_NOREF20
4086 * RT_NOREF_PV shorthand taking twenty parameters. */
4087#define RT_NOREF20(v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19, v20) \
4088 RT_NOREF_PV(v1); RT_NOREF19(v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19, v20)
4089/** @def RT_NOREF21
4090 * RT_NOREF_PV shorthand taking twentyone parameters. */
4091#define RT_NOREF21(v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19, v20, v21) \
4092 RT_NOREF_PV(v1); RT_NOREF20(v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19, v20, v21)
4093/** @def RT_NOREF22
4094 * RT_NOREF_PV shorthand taking twentytwo parameters. */
4095#define RT_NOREF22(v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19, v20, v21, v22) \
4096 RT_NOREF_PV(v1); RT_NOREF21(v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16, v17, v18, v19, v20, v21, v22)
4097
4098/** @def RT_NOREF
4099 * RT_NOREF_PV variant using the variadic macro feature of C99.
4100 * @remarks Only use this in sources */
4101#ifdef RT_COMPILER_SUPPORTS_VA_ARGS
4102# define RT_NOREF(...) \
4103 RT_UNPACK_CALL(RT_CONCAT(RT_NOREF, RT_EXPAND(RT_COUNT_VA_ARGS(__VA_ARGS__))),(__VA_ARGS__))
4104#endif
4105
4106
4107/** @def RT_BREAKPOINT
4108 * Emit a debug breakpoint instruction.
4109 *
4110 * @remarks In the x86/amd64 gnu world we add a nop instruction after the int3
4111 * to force gdb to remain at the int3 source line.
4112 * @remarks The L4 kernel will try make sense of the breakpoint, thus the jmp on
4113 * x86/amd64.
4114 */
4115#ifdef __GNUC__
4116# if defined(RT_ARCH_AMD64) || defined(RT_ARCH_X86)
4117# if !defined(__L4ENV__)
4118# define RT_BREAKPOINT() __asm__ __volatile__("int $3\n\tnop\n\t")
4119# else
4120# define RT_BREAKPOINT() __asm__ __volatile__("int3; jmp 1f; 1:\n\t")
4121# endif
4122# elif defined(RT_ARCH_SPARC64)
4123# define RT_BREAKPOINT() __asm__ __volatile__("illtrap 0\n\t") /** @todo Sparc64: this is just a wild guess. */
4124# elif defined(RT_ARCH_SPARC)
4125# define RT_BREAKPOINT() __asm__ __volatile__("unimp 0\n\t") /** @todo Sparc: this is just a wild guess (same as Sparc64, just different name). */
4126# elif defined(RT_ARCH_ARM32) || defined(RT_ARCH_ARM64)
4127# define RT_BREAKPOINT() __asm__ __volatile__("brk #0xf000\n\t")
4128# endif
4129#endif
4130#ifdef _MSC_VER
4131# define RT_BREAKPOINT() __debugbreak()
4132#endif
4133#if defined(__IBMC__) || defined(__IBMCPP__)
4134# define RT_BREAKPOINT() __interrupt(3)
4135#endif
4136#if defined(__WATCOMC__)
4137# define RT_BREAKPOINT() _asm { int 3 }
4138#endif
4139#ifndef RT_BREAKPOINT
4140# error "This compiler/arch is not supported!"
4141#endif
4142
4143
4144/** @defgroup grp_rt_cdefs_size Size Constants
4145 * (Of course, these are binary computer terms, not SI.)
4146 * @{
4147 */
4148/** 1 K (Kilo) (1 024). */
4149#define _1K 0x00000400
4150/** 2 K (Kilo) (2 048). */
4151#define _2K 0x00000800
4152/** 4 K (Kilo) (4 096). */
4153#define _4K 0x00001000
4154/** 8 K (Kilo) (8 192). */
4155#define _8K 0x00002000
4156/** 16 K (Kilo) (16 384). */
4157#define _16K 0x00004000
4158/** 32 K (Kilo) (32 768). */
4159#define _32K 0x00008000
4160/** 64 K (Kilo) (65 536). */
4161#if ARCH_BITS != 16
4162# define _64K 0x00010000
4163#else
4164# define _64K UINT32_C(0x00010000)
4165#endif
4166/** 128 K (Kilo) (131 072). */
4167#if ARCH_BITS != 16
4168# define _128K 0x00020000
4169#else
4170# define _128K UINT32_C(0x00020000)
4171#endif
4172/** 256 K (Kilo) (262 144). */
4173#if ARCH_BITS != 16
4174# define _256K 0x00040000
4175#else
4176# define _256K UINT32_C(0x00040000)
4177#endif
4178/** 512 K (Kilo) (524 288). */
4179#if ARCH_BITS != 16
4180# define _512K 0x00080000
4181#else
4182# define _512K UINT32_C(0x00080000)
4183#endif
4184/** 1 M (Mega) (1 048 576). */
4185#if ARCH_BITS != 16
4186# define _1M 0x00100000
4187#else
4188# define _1M UINT32_C(0x00100000)
4189#endif
4190/** 2 M (Mega) (2 097 152). */
4191#if ARCH_BITS != 16
4192# define _2M 0x00200000
4193#else
4194# define _2M UINT32_C(0x00200000)
4195#endif
4196/** 4 M (Mega) (4 194 304). */
4197#if ARCH_BITS != 16
4198# define _4M 0x00400000
4199#else
4200# define _4M UINT32_C(0x00400000)
4201#endif
4202/** 8 M (Mega) (8 388 608). */
4203#define _8M UINT32_C(0x00800000)
4204/** 16 M (Mega) (16 777 216). */
4205#define _16M UINT32_C(0x01000000)
4206/** 32 M (Mega) (33 554 432). */
4207#define _32M UINT32_C(0x02000000)
4208/** 64 M (Mega) (67 108 864). */
4209#define _64M UINT32_C(0x04000000)
4210/** 128 M (Mega) (134 217 728). */
4211#define _128M UINT32_C(0x08000000)
4212/** 256 M (Mega) (268 435 456). */
4213#define _256M UINT32_C(0x10000000)
4214/** 512 M (Mega) (536 870 912). */
4215#define _512M UINT32_C(0x20000000)
4216/** 1 G (Giga) (1 073 741 824). (32-bit) */
4217#if ARCH_BITS != 16
4218# define _1G 0x40000000
4219#else
4220# define _1G UINT32_C(0x40000000)
4221#endif
4222/** 1 G (Giga) (1 073 741 824). (64-bit) */
4223#if ARCH_BITS != 16
4224# define _1G64 0x40000000LL
4225#else
4226# define _1G64 UINT64_C(0x40000000)
4227#endif
4228/** 2 G (Giga) (2 147 483 648). (32-bit) */
4229#define _2G32 UINT32_C(0x80000000)
4230/** 2 G (Giga) (2 147 483 648). (64-bit) */
4231#if ARCH_BITS != 16
4232# define _2G 0x0000000080000000LL
4233#else
4234# define _2G UINT64_C(0x0000000080000000)
4235#endif
4236/** 4 G (Giga) (4 294 967 296). */
4237#if ARCH_BITS != 16
4238# define _4G 0x0000000100000000LL
4239#else
4240# define _4G UINT64_C(0x0000000100000000)
4241#endif
4242/** 1 T (Tera) (1 099 511 627 776). */
4243#if ARCH_BITS != 16
4244# define _1T 0x0000010000000000LL
4245#else
4246# define _1T UINT64_C(0x0000010000000000)
4247#endif
4248/** 1 P (Peta) (1 125 899 906 842 624). */
4249#if ARCH_BITS != 16
4250# define _1P 0x0004000000000000LL
4251#else
4252# define _1P UINT64_C(0x0004000000000000)
4253#endif
4254/** 1 E (Exa) (1 152 921 504 606 846 976). */
4255#if ARCH_BITS != 16
4256# define _1E 0x1000000000000000LL
4257#else
4258# define _1E UINT64_C(0x1000000000000000)
4259#endif
4260/** 2 E (Exa) (2 305 843 009 213 693 952). */
4261#if ARCH_BITS != 16
4262# define _2E 0x2000000000000000ULL
4263#else
4264# define _2E UINT64_C(0x2000000000000000)
4265#endif
4266/** @} */
4267
4268/** @defgroup grp_rt_cdefs_decimal_grouping Decimal Constant Grouping Macros
4269 * @{ */
4270#define RT_D1(g1) g1
4271#define RT_D2(g1, g2) g1#g2
4272#define RT_D3(g1, g2, g3) g1#g2#g3
4273#define RT_D4(g1, g2, g3, g4) g1#g2#g3#g4
4274#define RT_D5(g1, g2, g3, g4, g5) g1#g2#g3#g4#g5
4275#define RT_D6(g1, g2, g3, g4, g5, g6) g1#g2#g3#g4#g5#g6
4276#define RT_D7(g1, g2, g3, g4, g5, g6, g7) g1#g2#g3#g4#g5#g6#g7
4277
4278#define RT_D1_U(g1) UINT32_C(g1)
4279#define RT_D2_U(g1, g2) UINT32_C(g1#g2)
4280#define RT_D3_U(g1, g2, g3) UINT32_C(g1#g2#g3)
4281#define RT_D4_U(g1, g2, g3, g4) UINT64_C(g1#g2#g3#g4)
4282#define RT_D5_U(g1, g2, g3, g4, g5) UINT64_C(g1#g2#g3#g4#g5)
4283#define RT_D6_U(g1, g2, g3, g4, g5, g6) UINT64_C(g1#g2#g3#g4#g5#g6)
4284#define RT_D7_U(g1, g2, g3, g4, g5, g6, g7) UINT64_C(g1#g2#g3#g4#g5#g6#g7)
4285
4286#define RT_D1_S(g1) INT32_C(g1)
4287#define RT_D2_S(g1, g2) INT32_C(g1#g2)
4288#define RT_D3_S(g1, g2, g3) INT32_C(g1#g2#g3)
4289#define RT_D4_S(g1, g2, g3, g4) INT64_C(g1#g2#g3#g4)
4290#define RT_D5_S(g1, g2, g3, g4, g5) INT64_C(g1#g2#g3#g4#g5)
4291#define RT_D6_S(g1, g2, g3, g4, g5, g6) INT64_C(g1#g2#g3#g4#g5#g6)
4292#define RT_D7_S(g1, g2, g3, g4, g5, g6, g7) INT64_C(g1#g2#g3#g4#g5#g6#g7)
4293
4294#define RT_D1_U32(g1) UINT32_C(g1)
4295#define RT_D2_U32(g1, g2) UINT32_C(g1#g2)
4296#define RT_D3_U32(g1, g2, g3) UINT32_C(g1#g2#g3)
4297#define RT_D4_U32(g1, g2, g3, g4) UINT32_C(g1#g2#g3#g4)
4298
4299#define RT_D1_S32(g1) INT32_C(g1)
4300#define RT_D2_S32(g1, g2) INT32_C(g1#g2)
4301#define RT_D3_S32(g1, g2, g3) INT32_C(g1#g2#g3)
4302#define RT_D4_S32(g1, g2, g3, g4) INT32_C(g1#g2#g3#g4)
4303
4304#define RT_D1_U64(g1) UINT64_C(g1)
4305#define RT_D2_U64(g1, g2) UINT64_C(g1#g2)
4306#define RT_D3_U64(g1, g2, g3) UINT64_C(g1#g2#g3)
4307#define RT_D4_U64(g1, g2, g3, g4) UINT64_C(g1#g2#g3#g4)
4308#define RT_D5_U64(g1, g2, g3, g4, g5) UINT64_C(g1#g2#g3#g4#g5)
4309#define RT_D6_U64(g1, g2, g3, g4, g5, g6) UINT64_C(g1#g2#g3#g4#g5#g6)
4310#define RT_D7_U64(g1, g2, g3, g4, g5, g6, g7) UINT64_C(g1#g2#g3#g4#g5#g6#g7)
4311
4312#define RT_D1_S64(g1) INT64_C(g1)
4313#define RT_D2_S64(g1, g2) INT64_C(g1#g2)
4314#define RT_D3_S64(g1, g2, g3) INT64_C(g1#g2#g3)
4315#define RT_D4_S64(g1, g2, g3, g4) INT64_C(g1#g2#g3#g4)
4316#define RT_D5_S64(g1, g2, g3, g4, g5) INT64_C(g1#g2#g3#g4#g5)
4317#define RT_D6_S64(g1, g2, g3, g4, g5, g6) INT64_C(g1#g2#g3#g4#g5#g6)
4318#define RT_D7_S64(g1, g2, g3, g4, g5, g6, g7) INT64_C(g1#g2#g3#g4#g5#g6#g7)
4319/** @} */
4320
4321
4322/** @defgroup grp_rt_cdefs_time Time Constants
4323 * @{
4324 */
4325/** 1 week expressed in nanoseconds (64-bit). */
4326#define RT_NS_1WEEK UINT64_C(604800000000000)
4327/** 1 day expressed in nanoseconds (64-bit). */
4328#define RT_NS_1DAY UINT64_C(86400000000000)
4329/** 1 hour expressed in nanoseconds (64-bit). */
4330#define RT_NS_1HOUR UINT64_C(3600000000000)
4331/** 30 minutes expressed in nanoseconds (64-bit). */
4332#define RT_NS_30MIN UINT64_C(1800000000000)
4333/** 5 minutes expressed in nanoseconds (64-bit). */
4334#define RT_NS_5MIN UINT64_C(300000000000)
4335/** 1 minute expressed in nanoseconds (64-bit). */
4336#define RT_NS_1MIN UINT64_C(60000000000)
4337/** 45 seconds expressed in nanoseconds (64-bit). */
4338#define RT_NS_45SEC UINT64_C(45000000000)
4339/** 30 seconds expressed in nanoseconds (64-bit). */
4340#define RT_NS_30SEC UINT64_C(30000000000)
4341/** 20 seconds expressed in nanoseconds (64-bit). */
4342#define RT_NS_20SEC UINT64_C(20000000000)
4343/** 15 seconds expressed in nanoseconds (64-bit). */
4344#define RT_NS_15SEC UINT64_C(15000000000)
4345/** 10 seconds expressed in nanoseconds (64-bit). */
4346#define RT_NS_10SEC UINT64_C(10000000000)
4347/** 1 second expressed in nanoseconds. */
4348#define RT_NS_1SEC UINT32_C(1000000000)
4349/** 100 millsecond expressed in nanoseconds. */
4350#define RT_NS_100MS UINT32_C(100000000)
4351/** 10 millsecond expressed in nanoseconds. */
4352#define RT_NS_10MS UINT32_C(10000000)
4353/** 8 millsecond expressed in nanoseconds. */
4354#define RT_NS_8MS UINT32_C(8000000)
4355/** 2 millsecond expressed in nanoseconds. */
4356#define RT_NS_2MS UINT32_C(2000000)
4357/** 1 millsecond expressed in nanoseconds. */
4358#define RT_NS_1MS UINT32_C(1000000)
4359/** 100 microseconds expressed in nanoseconds. */
4360#define RT_NS_100US UINT32_C(100000)
4361/** 10 microseconds expressed in nanoseconds. */
4362#define RT_NS_10US UINT32_C(10000)
4363/** 1 microsecond expressed in nanoseconds. */
4364#define RT_NS_1US UINT32_C(1000)
4365
4366/** 1 second expressed in nanoseconds - 64-bit type. */
4367#define RT_NS_1SEC_64 UINT64_C(1000000000)
4368/** 100 millsecond expressed in nanoseconds - 64-bit type. */
4369#define RT_NS_100MS_64 UINT64_C(100000000)
4370/** 10 millsecond expressed in nanoseconds - 64-bit type. */
4371#define RT_NS_10MS_64 UINT64_C(10000000)
4372/** 1 millsecond expressed in nanoseconds - 64-bit type. */
4373#define RT_NS_1MS_64 UINT64_C(1000000)
4374/** 100 microseconds expressed in nanoseconds - 64-bit type. */
4375#define RT_NS_100US_64 UINT64_C(100000)
4376/** 10 microseconds expressed in nanoseconds - 64-bit type. */
4377#define RT_NS_10US_64 UINT64_C(10000)
4378/** 1 microsecond expressed in nanoseconds - 64-bit type. */
4379#define RT_NS_1US_64 UINT64_C(1000)
4380
4381/** 1 week expressed in microseconds (64-bit). */
4382#define RT_US_1WEEK UINT64_C(604800000000)
4383/** 1 day expressed in microseconds (64-bit). */
4384#define RT_US_1DAY UINT64_C(86400000000)
4385/** 1 hour expressed in microseconds. */
4386#define RT_US_1HOUR UINT32_C(3600000000)
4387/** 30 minutes expressed in microseconds. */
4388#define RT_US_30MIN UINT32_C(1800000000)
4389/** 5 minutes expressed in microseconds. */
4390#define RT_US_5MIN UINT32_C(300000000)
4391/** 1 minute expressed in microseconds. */
4392#define RT_US_1MIN UINT32_C(60000000)
4393/** 45 seconds expressed in microseconds. */
4394#define RT_US_45SEC UINT32_C(45000000)
4395/** 30 seconds expressed in microseconds. */
4396#define RT_US_30SEC UINT32_C(30000000)
4397/** 20 seconds expressed in microseconds. */
4398#define RT_US_20SEC UINT32_C(20000000)
4399/** 15 seconds expressed in microseconds. */
4400#define RT_US_15SEC UINT32_C(15000000)
4401/** 10 seconds expressed in microseconds. */
4402#define RT_US_10SEC UINT32_C(10000000)
4403/** 5 seconds expressed in microseconds. */
4404#define RT_US_5SEC UINT32_C(5000000)
4405/** 1 second expressed in microseconds. */
4406#define RT_US_1SEC UINT32_C(1000000)
4407/** 100 millsecond expressed in microseconds. */
4408#define RT_US_100MS UINT32_C(100000)
4409/** 10 millsecond expressed in microseconds. */
4410#define RT_US_10MS UINT32_C(10000)
4411/** 1 millsecond expressed in microseconds. */
4412#define RT_US_1MS UINT32_C(1000)
4413
4414/** 1 hour expressed in microseconds - 64-bit type. */
4415#define RT_US_1HOUR_64 UINT64_C(3600000000)
4416/** 30 minutes expressed in microseconds - 64-bit type. */
4417#define RT_US_30MIN_64 UINT64_C(1800000000)
4418/** 5 minutes expressed in microseconds - 64-bit type. */
4419#define RT_US_5MIN_64 UINT64_C(300000000)
4420/** 1 minute expressed in microseconds - 64-bit type. */
4421#define RT_US_1MIN_64 UINT64_C(60000000)
4422/** 45 seconds expressed in microseconds - 64-bit type. */
4423#define RT_US_45SEC_64 UINT64_C(45000000)
4424/** 30 seconds expressed in microseconds - 64-bit type. */
4425#define RT_US_30SEC_64 UINT64_C(30000000)
4426/** 20 seconds expressed in microseconds - 64-bit type. */
4427#define RT_US_20SEC_64 UINT64_C(20000000)
4428/** 15 seconds expressed in microseconds - 64-bit type. */
4429#define RT_US_15SEC_64 UINT64_C(15000000)
4430/** 10 seconds expressed in microseconds - 64-bit type. */
4431#define RT_US_10SEC_64 UINT64_C(10000000)
4432/** 5 seconds expressed in microseconds - 64-bit type. */
4433#define RT_US_5SEC_64 UINT64_C(5000000)
4434/** 1 second expressed in microseconds - 64-bit type. */
4435#define RT_US_1SEC_64 UINT64_C(1000000)
4436/** 100 millsecond expressed in microseconds - 64-bit type. */
4437#define RT_US_100MS_64 UINT64_C(100000)
4438/** 10 millsecond expressed in microseconds - 64-bit type. */
4439#define RT_US_10MS_64 UINT64_C(10000)
4440/** 1 millsecond expressed in microseconds - 64-bit type. */
4441#define RT_US_1MS_64 UINT64_C(1000)
4442
4443/** 1 week expressed in milliseconds. */
4444#define RT_MS_1WEEK UINT32_C(604800000)
4445/** 1 day expressed in milliseconds. */
4446#define RT_MS_1DAY UINT32_C(86400000)
4447/** 1 hour expressed in milliseconds. */
4448#define RT_MS_1HOUR UINT32_C(3600000)
4449/** 30 minutes expressed in milliseconds. */
4450#define RT_MS_30MIN UINT32_C(1800000)
4451/** 5 minutes expressed in milliseconds. */
4452#define RT_MS_5MIN UINT32_C(300000)
4453/** 1 minute expressed in milliseconds. */
4454#define RT_MS_1MIN UINT32_C(60000)
4455/** 45 seconds expressed in milliseconds. */
4456#define RT_MS_45SEC UINT32_C(45000)
4457/** 30 seconds expressed in milliseconds. */
4458#define RT_MS_30SEC UINT32_C(30000)
4459/** 20 seconds expressed in milliseconds. */
4460#define RT_MS_20SEC UINT32_C(20000)
4461/** 15 seconds expressed in milliseconds. */
4462#define RT_MS_15SEC UINT32_C(15000)
4463/** 10 seconds expressed in milliseconds. */
4464#define RT_MS_10SEC UINT32_C(10000)
4465/** 5 seconds expressed in milliseconds. */
4466#define RT_MS_5SEC UINT32_C(5000)
4467/** 1 second expressed in milliseconds. */
4468#define RT_MS_1SEC UINT32_C(1000)
4469
4470/** 1 week expressed in milliseconds - 64-bit type. */
4471#define RT_MS_1WEEK_64 UINT64_C(604800000)
4472/** 1 day expressed in milliseconds - 64-bit type. */
4473#define RT_MS_1DAY_64 UINT64_C(86400000)
4474/** 1 hour expressed in milliseconds - 64-bit type. */
4475#define RT_MS_1HOUR_64 UINT64_C(3600000)
4476/** 30 minutes expressed in milliseconds - 64-bit type. */
4477#define RT_MS_30MIN_64 UINT64_C(1800000)
4478/** 5 minutes expressed in milliseconds - 64-bit type. */
4479#define RT_MS_5MIN_64 UINT64_C(300000)
4480/** 1 minute expressed in milliseconds - 64-bit type. */
4481#define RT_MS_1MIN_64 UINT64_C(60000)
4482/** 45 seconds expressed in milliseconds - 64-bit type. */
4483#define RT_MS_45SEC_64 UINT64_C(45000)
4484/** 30 seconds expressed in milliseconds - 64-bit type. */
4485#define RT_MS_30SEC_64 UINT64_C(30000)
4486/** 20 seconds expressed in milliseconds - 64-bit type. */
4487#define RT_MS_20SEC_64 UINT64_C(20000)
4488/** 15 seconds expressed in milliseconds - 64-bit type. */
4489#define RT_MS_15SEC_64 UINT64_C(15000)
4490/** 10 seconds expressed in milliseconds - 64-bit type. */
4491#define RT_MS_10SEC_64 UINT64_C(10000)
4492/** 5 seconds expressed in milliseconds - 64-bit type. */
4493#define RT_MS_5SEC_64 UINT64_C(5000)
4494/** 1 second expressed in milliseconds - 64-bit type. */
4495#define RT_MS_1SEC_64 UINT64_C(1000)
4496
4497/** The number of seconds per week. */
4498#define RT_SEC_1WEEK UINT32_C(604800)
4499/** The number of seconds per day. */
4500#define RT_SEC_1DAY UINT32_C(86400)
4501/** The number of seconds per hour. */
4502#define RT_SEC_1HOUR UINT32_C(3600)
4503
4504/** The number of seconds per week - 64-bit type. */
4505#define RT_SEC_1WEEK_64 UINT64_C(604800)
4506/** The number of seconds per day - 64-bit type. */
4507#define RT_SEC_1DAY_64 UINT64_C(86400)
4508/** The number of seconds per hour - 64-bit type. */
4509#define RT_SEC_1HOUR_64 UINT64_C(3600)
4510/** @} */
4511
4512
4513/** @defgroup grp_rt_cdefs_dbgtype Debug Info Types
4514 * @{ */
4515/** Other format. */
4516#define RT_DBGTYPE_OTHER RT_BIT_32(0)
4517/** Stabs. */
4518#define RT_DBGTYPE_STABS RT_BIT_32(1)
4519/** Debug With Arbitrary Record Format (DWARF). */
4520#define RT_DBGTYPE_DWARF RT_BIT_32(2)
4521/** Microsoft Codeview debug info. */
4522#define RT_DBGTYPE_CODEVIEW RT_BIT_32(3)
4523/** Watcom debug info. */
4524#define RT_DBGTYPE_WATCOM RT_BIT_32(4)
4525/** IBM High Level Language debug info. */
4526#define RT_DBGTYPE_HLL RT_BIT_32(5)
4527/** Old OS/2 and Windows symbol file. */
4528#define RT_DBGTYPE_SYM RT_BIT_32(6)
4529/** Map file. */
4530#define RT_DBGTYPE_MAP RT_BIT_32(7)
4531/** @} */
4532
4533
4534/** @defgroup grp_rt_cdefs_exetype Executable Image Types
4535 * @{ */
4536/** Some other format. */
4537#define RT_EXETYPE_OTHER RT_BIT_32(0)
4538/** Portable Executable. */
4539#define RT_EXETYPE_PE RT_BIT_32(1)
4540/** Linear eXecutable. */
4541#define RT_EXETYPE_LX RT_BIT_32(2)
4542/** Linear Executable. */
4543#define RT_EXETYPE_LE RT_BIT_32(3)
4544/** New Executable. */
4545#define RT_EXETYPE_NE RT_BIT_32(4)
4546/** DOS Executable (Mark Zbikowski). */
4547#define RT_EXETYPE_MZ RT_BIT_32(5)
4548/** COM Executable. */
4549#define RT_EXETYPE_COM RT_BIT_32(6)
4550/** a.out Executable. */
4551#define RT_EXETYPE_AOUT RT_BIT_32(7)
4552/** Executable and Linkable Format. */
4553#define RT_EXETYPE_ELF RT_BIT_32(8)
4554/** Mach-O Executable (including FAT ones). */
4555#define RT_EXETYPE_MACHO RT_BIT_32(9)
4556/** TE from UEFI. */
4557#define RT_EXETYPE_TE RT_BIT_32(9)
4558/** @} */
4559
4560
4561/** @def RT_VALID_PTR
4562 * Pointer validation macro.
4563 * @param ptr The pointer.
4564 */
4565#ifdef VBOX_WITH_PARFAIT
4566/*
4567 * Parfait will report memory leaks when something returns after a memory allocation
4568 * using a check containing RT_VALID_PTR() (AssertPtrReturn and friends for example).
4569 * To avoid those false positives the macro will just check for the pointer being != NULL.
4570 */
4571# define RT_VALID_PTR(ptr) (ptr != NULL)
4572#else
4573#if defined(RT_ARCH_AMD64)
4574# ifdef IN_RING3
4575# if defined(RT_OS_DARWIN) /* first 4GB is reserved for legacy kernel. */
4576# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) >= _4G \
4577 && !((uintptr_t)(ptr) & 0xffff800000000000ULL) )
4578# elif defined(RT_OS_SOLARIS) /* The kernel only used the top 2TB, but keep it simple. */
4579# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x1000U >= 0x2000U \
4580 && ( ((uintptr_t)(ptr) & 0xffff800000000000ULL) == 0xffff800000000000ULL \
4581 || ((uintptr_t)(ptr) & 0xffff800000000000ULL) == 0) )
4582# elif defined(RT_OS_LINUX) /* May use 5-level paging (see Documentation/x86/x86_64/mm.rst). */
4583# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) >= 0x1000U /* one invalid page at the bottom */ \
4584 && !((uintptr_t)(ptr) & 0xff00000000000000ULL) )
4585# else
4586# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) >= 0x1000U \
4587 && !((uintptr_t)(ptr) & 0xffff800000000000ULL) )
4588# endif
4589# else /* !IN_RING3 */
4590# if defined(RT_OS_LINUX) /* May use 5-level paging (see Documentation/x86/x86_64/mm.rst). */
4591# if 1 /* User address are no longer considered valid in kernel mode (SMAP, etc). */
4592# define RT_VALID_PTR(ptr) ((uintptr_t)(ptr) - 0xff00000000000000ULL < 0x00ffffffffe00000ULL) /* 2MB invalid space at the top */
4593# else
4594# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x200000 >= 0x201000U /* one invalid page at the bottom and 2MB at the top */ \
4595 && ( ((uintptr_t)(ptr) & 0xff00000000000000ULL) == 0xff00000000000000ULL \
4596 || ((uintptr_t)(ptr) & 0xff00000000000000ULL) == 0) )
4597# endif
4598# else
4599# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x1000U >= 0x2000U \
4600 && ( ((uintptr_t)(ptr) & 0xffff800000000000ULL) == 0xffff800000000000ULL \
4601 || ((uintptr_t)(ptr) & 0xffff800000000000ULL) == 0) )
4602# endif
4603# endif /* !IN_RING3 */
4604
4605# elif defined(RT_ARCH_X86)
4606# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x1000U >= 0x2000U )
4607
4608# elif defined(RT_ARCH_SPARC64)
4609# ifdef IN_RING3
4610# if defined(RT_OS_SOLARIS)
4611/** Sparc64 user mode: According to Figure 9.4 in solaris internals */
4612/** @todo # define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x80004000U >= 0x80004000U + 0x100000000ULL ) - figure this. */
4613# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x80000000U >= 0x80000000U + 0x100000000ULL )
4614# else
4615# error "Port me"
4616# endif
4617# else /* !IN_RING3 */
4618# if defined(RT_OS_SOLARIS)
4619/** @todo Sparc64 kernel mode: This is according to Figure 11.1 in solaris
4620 * internals. Verify in sources. */
4621# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) >= 0x01000000U )
4622# else
4623# error "Port me"
4624# endif
4625# endif /* !IN_RING3 */
4626
4627# elif defined(RT_ARCH_SPARC)
4628# ifdef IN_RING3
4629# ifdef RT_OS_SOLARIS
4630/** Sparc user mode: According to
4631 * http://cvs.opensolaris.org/source/xref/onnv/onnv-gate/usr/src/uts/sun4/os/startup.c#510 */
4632# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x400000U >= 0x400000U + 0x2000U )
4633
4634# else
4635# error "Port me"
4636# endif
4637# else /* !IN_RING3 */
4638# ifdef RT_OS_SOLARIS
4639/** @todo Sparc kernel mode: Check the sources! */
4640# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x1000U >= 0x2000U )
4641# else
4642# error "Port me"
4643# endif
4644# endif /* !IN_RING3 */
4645
4646# elif defined(RT_ARCH_ARM32) || defined(RT_ARCH_ARM64)
4647/* ASSUMES that at least the last and first 4K are out of bounds. */
4648# define RT_VALID_PTR(ptr) ( (uintptr_t)(ptr) + 0x1000U >= 0x2000U )
4649
4650# else
4651# error "Architecture identifier missing / not implemented."
4652# endif
4653#endif /*!VBOX_WITH_PARFAIT*/
4654
4655/** @def RT_VALID_ALIGNED_PTR
4656 * Pointer validation macro that also checks the alignment.
4657 * @param ptr The pointer.
4658 * @param align The alignment, must be a power of two.
4659 */
4660#define RT_VALID_ALIGNED_PTR(ptr, align) \
4661 ( !((uintptr_t)(ptr) & (uintptr_t)((align) - 1)) \
4662 && RT_VALID_PTR(ptr) )
4663
4664
4665/** @def VALID_PHYS32
4666 * 32 bits physical address validation macro.
4667 * @param Phys The RTGCPHYS address.
4668 */
4669#define VALID_PHYS32(Phys) ( (uint64_t)(Phys) < (uint64_t)_4G )
4670
4671/** @def N_
4672 * The \#define N_ is used to mark a string for translation. This is usable in
4673 * any part of the code, as it is only used by the tools that create message
4674 * catalogs. This macro is a no-op as far as the compiler and code generation
4675 * is concerned.
4676 *
4677 * If you want to both mark a string for translation and translate it, use _().
4678 */
4679#define N_(s) (s)
4680
4681/** @def _
4682 * The \#define _ is used to mark a string for translation and to translate it
4683 * in one step.
4684 *
4685 * If you want to only mark a string for translation, use N_().
4686 */
4687#define _(s) gettext(s)
4688
4689
4690#if (!defined(__GNUC__) && !defined(__PRETTY_FUNCTION__)) || defined(DOXYGEN_RUNNING)
4691# if defined(_MSC_VER) || defined(DOXYGEN_RUNNING)
4692/** With GNU C we'd like to use the builtin __PRETTY_FUNCTION__, so define that
4693 * for the other compilers. */
4694# define __PRETTY_FUNCTION__ __FUNCSIG__
4695# else
4696# define __PRETTY_FUNCTION__ __FUNCTION__
4697# endif
4698#endif
4699
4700
4701/** @def RT_STRICT
4702 * The \#define RT_STRICT controls whether or not assertions and other runtime
4703 * checks should be compiled in or not. This is defined when DEBUG is defined.
4704 * If RT_NO_STRICT is defined, it will unconditionally be undefined.
4705 *
4706 * If you want assertions which are not subject to compile time options use
4707 * the AssertRelease*() flavors.
4708 */
4709#if !defined(RT_STRICT) && defined(DEBUG)
4710# define RT_STRICT
4711#endif
4712#ifdef RT_NO_STRICT
4713# undef RT_STRICT
4714#endif
4715
4716/** @todo remove this: */
4717#if !defined(RT_LOCK_STRICT) && !defined(DEBUG_bird)
4718# define RT_LOCK_NO_STRICT
4719#endif
4720#if !defined(RT_LOCK_STRICT_ORDER) && !defined(DEBUG_bird)
4721# define RT_LOCK_NO_STRICT_ORDER
4722#endif
4723
4724/** @def RT_LOCK_STRICT
4725 * The \#define RT_LOCK_STRICT controls whether deadlock detection and related
4726 * checks are done in the lock and semaphore code. It is by default enabled in
4727 * RT_STRICT builds, but this behavior can be overridden by defining
4728 * RT_LOCK_NO_STRICT. */
4729#if !defined(RT_LOCK_STRICT) && !defined(RT_LOCK_NO_STRICT) && defined(RT_STRICT)
4730# define RT_LOCK_STRICT
4731#endif
4732/** @def RT_LOCK_NO_STRICT
4733 * The \#define RT_LOCK_NO_STRICT disables RT_LOCK_STRICT. */
4734#if defined(RT_LOCK_NO_STRICT) && defined(RT_LOCK_STRICT)
4735# undef RT_LOCK_STRICT
4736#endif
4737
4738/** @def RT_LOCK_STRICT_ORDER
4739 * The \#define RT_LOCK_STRICT_ORDER controls whether locking order is checked
4740 * by the lock and semaphore code. It is by default enabled in RT_STRICT
4741 * builds, but this behavior can be overridden by defining
4742 * RT_LOCK_NO_STRICT_ORDER. */
4743#if !defined(RT_LOCK_STRICT_ORDER) && !defined(RT_LOCK_NO_STRICT_ORDER) && defined(RT_STRICT)
4744# define RT_LOCK_STRICT_ORDER
4745#endif
4746/** @def RT_LOCK_NO_STRICT_ORDER
4747 * The \#define RT_LOCK_NO_STRICT_ORDER disables RT_LOCK_STRICT_ORDER. */
4748#if defined(RT_LOCK_NO_STRICT_ORDER) && defined(RT_LOCK_STRICT_ORDER)
4749# undef RT_LOCK_STRICT_ORDER
4750#endif
4751
4752
4753/** Source position. */
4754#define RT_SRC_POS __FILE__, __LINE__, RT_GCC_EXTENSION __PRETTY_FUNCTION__
4755
4756/** Source position declaration. */
4757#define RT_SRC_POS_DECL const char *pszFile, unsigned iLine, const char *pszFunction
4758
4759/** Source position arguments. */
4760#define RT_SRC_POS_ARGS pszFile, iLine, pszFunction
4761
4762/** Applies NOREF() to the source position arguments. */
4763#define RT_SRC_POS_NOREF() do { NOREF(pszFile); NOREF(iLine); NOREF(pszFunction); } while (0)
4764
4765
4766/** @def RT_INLINE_ASM_EXTERNAL
4767 * Defined as 1 if the compiler does not support inline assembly.
4768 * The ASM* functions will then be implemented in external .asm files.
4769 */
4770#if (defined(_MSC_VER) && defined(RT_ARCH_AMD64)) \
4771 || (!defined(RT_ARCH_AMD64) && !defined(RT_ARCH_X86) && !defined(RT_ARCH_ARM64) && !defined(RT_ARCH_ARM32)) \
4772 || defined(__WATCOMC__)
4773# define RT_INLINE_ASM_EXTERNAL 1
4774#else
4775# define RT_INLINE_ASM_EXTERNAL 0
4776#endif
4777
4778/** @def RT_INLINE_ASM_EXTERNAL_TMP_ARM
4779 * Temporary version of RT_INLINE_ASM_EXTERNAL that excludes ARM. */
4780#if RT_INLINE_ASM_EXTERNAL && !(defined(RT_ARCH_ARM64) || defined(RT_ARCH_ARM32))
4781# define RT_INLINE_ASM_EXTERNAL_TMP_ARM 1
4782#else
4783# define RT_INLINE_ASM_EXTERNAL_TMP_ARM 0
4784#endif
4785
4786/** @def RT_INLINE_ASM_GNU_STYLE
4787 * Defined as 1 if the compiler understands GNU style inline assembly.
4788 */
4789#if defined(_MSC_VER) || defined(__WATCOMC__)
4790# define RT_INLINE_ASM_GNU_STYLE 0
4791#else
4792# define RT_INLINE_ASM_GNU_STYLE 1
4793#endif
4794
4795/** @def RT_INLINE_ASM_USES_INTRIN
4796 * Defined as one of the RT_MSC_VER_XXX MSC version values if the compiler have
4797 * and uses intrin.h. Otherwise it is 0. */
4798#ifdef _MSC_VER
4799# if _MSC_VER >= RT_MSC_VER_VS2019 /* Visual C++ v14.2 */
4800# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2019
4801# elif _MSC_VER >= RT_MSC_VER_VS2017 /* Visual C++ v14.1 */
4802# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2017
4803# elif _MSC_VER >= RT_MSC_VER_VS2015 /* Visual C++ v14.0 */
4804# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2015
4805# elif _MSC_VER >= RT_MSC_VER_VS2013 /* Visual C++ v12.0 */
4806# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2013
4807# elif _MSC_VER >= RT_MSC_VER_VS2012 /* Visual C++ v11.0 */
4808# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2012
4809# elif _MSC_VER >= RT_MSC_VER_VS2010 /* Visual C++ v10.0 */
4810# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2010
4811# elif _MSC_VER >= RT_MSC_VER_VS2008 /* Visual C++ v9.0 */
4812# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2008
4813# elif _MSC_VER >= RT_MSC_VER_VS2005 /* Visual C++ v8.0 */
4814# define RT_INLINE_ASM_USES_INTRIN RT_MSC_VER_VS2005
4815# endif
4816#endif
4817#ifndef RT_INLINE_ASM_USES_INTRIN
4818# define RT_INLINE_ASM_USES_INTRIN 0
4819#endif
4820
4821#define RT_MSC_VER_VS2012 (1700) /**< Visual Studio 2012. */
4822#define RT_MSC_VER_VC110 RT_MSC_VER_VS2012 /**< Visual C++ 11.0, aka Visual Studio 2012. */
4823#define RT_MSC_VER_VS2013 (1800) /**< Visual Studio 2013. */
4824#define RT_MSC_VER_VC120 RT_MSC_VER_VS2013 /**< Visual C++ 12.0, aka Visual Studio 2013. */
4825#define RT_MSC_VER_VS2015 (1900) /**< Visual Studio 2015. */
4826#define RT_MSC_VER_VC140 RT_MSC_VER_VS2015 /**< Visual C++ 14.0, aka Visual Studio 2015. */
4827#define RT_MSC_VER_VS2017 (1910) /**< Visual Studio 2017. */
4828#define RT_MSC_VER_VC141 RT_MSC_VER_VS2017 /**< Visual C++ 14.1, aka Visual Studio 2017. */
4829#define RT_MSC_VER_VS2019 (1920) /**< Visual Studio 2017. */
4830#define RT_MSC_VER_VC142 RT_MSC_VER_VS2019 /**< Visual C++ 14.2, aka Visual Studio 2019. */
4831
4832/** @def RT_COMPILER_SUPPORTS_LAMBDA
4833 * If the defined, the compiler supports lambda expressions. These expressions
4834 * are useful for embedding assertions and type checks into macros. */
4835#if defined(_MSC_VER) && defined(__cplusplus)
4836# if _MSC_VER >= 1600 /* Visual C++ v10.0 / 2010 */
4837# define RT_COMPILER_SUPPORTS_LAMBDA
4838# endif
4839#elif defined(__GNUC__) && defined(__cplusplus)
4840/* 4.5 or later, I think, if in ++11 mode... */
4841#endif
4842
4843/** @def RT_DATA_IS_FAR
4844 * Set to 1 if we're in 16-bit mode and use far pointers.
4845 */
4846#if ARCH_BITS == 16 && defined(__WATCOMC__) \
4847 && (defined(__COMPACT__) || defined(__LARGE__))
4848# define RT_DATA_IS_FAR 1
4849#else
4850# define RT_DATA_IS_FAR 0
4851#endif
4852
4853/** @def RT_FAR
4854 * For indicating far pointers in 16-bit code.
4855 * Does nothing in 32-bit and 64-bit code. */
4856/** @def RT_NEAR
4857 * For indicating near pointers in 16-bit code.
4858 * Does nothing in 32-bit and 64-bit code. */
4859/** @def RT_FAR_CODE
4860 * For indicating far 16-bit functions.
4861 * Does nothing in 32-bit and 64-bit code. */
4862/** @def RT_NEAR_CODE
4863 * For indicating near 16-bit functions.
4864 * Does nothing in 32-bit and 64-bit code. */
4865/** @def RT_FAR_DATA
4866 * For indicating far 16-bit external data, i.e. in a segment other than DATA16.
4867 * Does nothing in 32-bit and 64-bit code. */
4868#if ARCH_BITS == 16
4869# define RT_FAR __far
4870# define RT_NEAR __near
4871# define RT_FAR_CODE __far
4872# define RT_NEAR_CODE __near
4873# define RT_FAR_DATA __far
4874#else
4875# define RT_FAR
4876# define RT_NEAR
4877# define RT_FAR_CODE
4878# define RT_NEAR_CODE
4879# define RT_FAR_DATA
4880#endif
4881
4882
4883/** @} */
4884
4885
4886/** @defgroup grp_rt_cdefs_cpp Special Macros for C++
4887 * @ingroup grp_rt_cdefs
4888 * @{
4889 */
4890
4891#ifdef __cplusplus
4892
4893/** @def DECLEXPORT_CLASS
4894 * How to declare an exported class. Place this macro after the 'class'
4895 * keyword in the declaration of every class you want to export.
4896 *
4897 * @note It is necessary to use this macro even for inner classes declared
4898 * inside the already exported classes. This is a GCC specific requirement,
4899 * but it seems not to harm other compilers.
4900 */
4901#if defined(_MSC_VER) || defined(RT_OS_OS2)
4902# define DECLEXPORT_CLASS __declspec(dllexport)
4903#elif defined(RT_USE_VISIBILITY_DEFAULT)
4904# define DECLEXPORT_CLASS __attribute__((visibility("default")))
4905#else
4906# define DECLEXPORT_CLASS
4907#endif
4908
4909/** @def DECLIMPORT_CLASS
4910 * How to declare an imported class Place this macro after the 'class'
4911 * keyword in the declaration of every class you want to export.
4912 *
4913 * @note It is necessary to use this macro even for inner classes declared
4914 * inside the already exported classes. This is a GCC specific requirement,
4915 * but it seems not to harm other compilers.
4916 */
4917#if defined(_MSC_VER) || (defined(RT_OS_OS2) && !defined(__IBMC__) && !defined(__IBMCPP__))
4918# define DECLIMPORT_CLASS __declspec(dllimport)
4919#elif defined(RT_USE_VISIBILITY_DEFAULT)
4920# define DECLIMPORT_CLASS __attribute__((visibility("default")))
4921#else
4922# define DECLIMPORT_CLASS
4923#endif
4924
4925/** @def WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP
4926 * Macro to work around error C2593 of the not-so-smart MSVC 7.x ambiguity
4927 * resolver. The following snippet clearly demonstrates the code causing this
4928 * error:
4929 * @code
4930 * class A
4931 * {
4932 * public:
4933 * operator bool() const { return false; }
4934 * operator int*() const { return NULL; }
4935 * };
4936 * int main()
4937 * {
4938 * A a;
4939 * if (!a);
4940 * if (a && 0);
4941 * return 0;
4942 * }
4943 * @endcode
4944 * The code itself seems pretty valid to me and GCC thinks the same.
4945 *
4946 * This macro fixes the compiler error by explicitly overloading implicit
4947 * global operators !, && and || that take the given class instance as one of
4948 * their arguments.
4949 *
4950 * The best is to use this macro right after the class declaration.
4951 *
4952 * @note The macro expands to nothing for compilers other than MSVC.
4953 *
4954 * @param Cls Class to apply the workaround to
4955 */
4956#if defined(_MSC_VER)
4957# define WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP(Cls) \
4958 inline bool operator! (const Cls &that) { return !bool (that); } \
4959 inline bool operator&& (const Cls &that, bool b) { return bool (that) && b; } \
4960 inline bool operator|| (const Cls &that, bool b) { return bool (that) || b; } \
4961 inline bool operator&& (bool b, const Cls &that) { return b && bool (that); } \
4962 inline bool operator|| (bool b, const Cls &that) { return b || bool (that); }
4963#else
4964# define WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP(Cls)
4965#endif
4966
4967/** @def WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP_TPL
4968 * Version of WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP for template classes.
4969 *
4970 * @param Tpl Name of the template class to apply the workaround to
4971 * @param ArgsDecl arguments of the template, as declared in |<>| after the
4972 * |template| keyword, including |<>|
4973 * @param Args arguments of the template, as specified in |<>| after the
4974 * template class name when using the, including |<>|
4975 *
4976 * Example:
4977 * @code
4978 * // template class declaration
4979 * template <class C>
4980 * class Foo { ... };
4981 * // applied workaround
4982 * WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP_TPL (Foo, <class C>, <C>)
4983 * @endcode
4984 */
4985#if defined(_MSC_VER)
4986# define WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP_TPL(Tpl, ArgsDecl, Args) \
4987 template ArgsDecl \
4988 inline bool operator! (const Tpl Args &that) { return !bool (that); } \
4989 template ArgsDecl \
4990 inline bool operator&& (const Tpl Args &that, bool b) { return bool (that) && b; } \
4991 template ArgsDecl \
4992 inline bool operator|| (const Tpl Args &that, bool b) { return bool (that) || b; } \
4993 template ArgsDecl \
4994 inline bool operator&& (bool b, const Tpl Args &that) { return b && bool (that); } \
4995 template ArgsDecl \
4996 inline bool operator|| (bool b, const Tpl Args &that) { return b || bool (that); }
4997#else
4998# define WORKAROUND_MSVC7_ERROR_C2593_FOR_BOOL_OP_TPL(Tpl, ArgsDecl, Args)
4999#endif
5000
5001
5002/** @def DECLARE_CLS_COPY_CTOR_ASSIGN_NOOP
5003 * Declares the copy constructor and the assignment operation as inlined no-ops
5004 * (non-existent functions) for the given class. Use this macro inside the
5005 * private section if you want to effectively disable these operations for your
5006 * class.
5007 *
5008 * @param Cls class name to declare for
5009 */
5010#define DECLARE_CLS_COPY_CTOR_ASSIGN_NOOP(Cls) \
5011 inline Cls(const Cls &); \
5012 inline Cls &operator= (const Cls &)
5013
5014
5015/** @def DECLARE_CLS_NEW_DELETE_NOOP
5016 * Declares the new and delete operations as no-ops (non-existent functions)
5017 * for the given class. Use this macro inside the private section if you want
5018 * to effectively limit creating class instances on the stack only.
5019 *
5020 * @note The destructor of the given class must not be virtual, otherwise a
5021 * compile time error will occur. Note that this is not a drawback: having
5022 * the virtual destructor for a stack-based class is absolutely useless
5023 * (the real class of the stack-based instance is always known to the compiler
5024 * at compile time, so it will always call the correct destructor).
5025 *
5026 * @param Cls class name to declare for
5027 */
5028#define DECLARE_CLS_NEW_DELETE_NOOP(Cls) \
5029 inline static void *operator new (size_t); \
5030 inline static void operator delete (void *)
5031
5032#endif /* __cplusplus */
5033
5034/** @} */
5035
5036#endif /* !IPRT_INCLUDED_cdefs_h */
5037
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