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959ccb23 1/** @file\r
959ccb23 2 Root include file for Mde Package Base type modules\r
3\r
818ff8c2 4 This is the include file for any module of type base. Base modules only use\r
5 types defined via this include file and can be ported easily to any\r
959ccb23 6 environment. There are a set of base libraries in the Mde Package that can\r
7 be used to implement base modules.\r
8\r
9095d37b 9Copyright (c) 2006 - 2018, Intel Corporation. All rights reserved.<BR>\r
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10Portions copyright (c) 2008 - 2009, Apple Inc. All rights reserved.<BR>\r
11This program and the accompanying materials\r
959ccb23 12are licensed and made available under the terms and conditions of the BSD License\r
13which accompanies this distribution. The full text of the license may be found at\r
af2dc6a7 14http://opensource.org/licenses/bsd-license.php.\r
959ccb23 15\r
16THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
17WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
18\r
19**/\r
20\r
21\r
22#ifndef __BASE_H__\r
23#define __BASE_H__\r
24\r
25//\r
26// Include processor specific binding\r
27//\r
28#include <ProcessorBind.h>\r
29\r
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30#if defined(_MSC_EXTENSIONS)\r
31//\r
32// Disable warning when last field of data structure is a zero sized array.\r
33//\r
34#pragma warning ( disable : 4200 )\r
35#endif\r
6c3fa13c 36\r
37/**\r
38 Verifies the storage size of a given data type.\r
818ff8c2 39\r
6c3fa13c 40 This macro generates a divide by zero error or a zero size array declaration in\r
41 the preprocessor if the size is incorrect. These are declared as "extern" so\r
42 the space for these arrays will not be in the modules.\r
43\r
44 @param TYPE The date type to determine the size of.\r
45 @param Size The expected size for the TYPE.\r
46\r
47**/\r
48#define VERIFY_SIZE_OF(TYPE, Size) extern UINT8 _VerifySizeof##TYPE[(sizeof(TYPE) == (Size)) / (sizeof(TYPE) == (Size))]\r
49\r
52aa9e13 50//\r
818ff8c2 51// Verify that ProcessorBind.h produced UEFI Data Types that are compliant with\r
52// Section 2.3.1 of the UEFI 2.3 Specification.\r
52aa9e13 53//\r
6c3fa13c 54VERIFY_SIZE_OF (BOOLEAN, 1);\r
55VERIFY_SIZE_OF (INT8, 1);\r
56VERIFY_SIZE_OF (UINT8, 1);\r
57VERIFY_SIZE_OF (INT16, 2);\r
58VERIFY_SIZE_OF (UINT16, 2);\r
59VERIFY_SIZE_OF (INT32, 4);\r
60VERIFY_SIZE_OF (UINT32, 4);\r
61VERIFY_SIZE_OF (INT64, 8);\r
62VERIFY_SIZE_OF (UINT64, 8);\r
63VERIFY_SIZE_OF (CHAR8, 1);\r
64VERIFY_SIZE_OF (CHAR16, 2);\r
52aa9e13 65\r
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66//\r
67// The following three enum types are used to verify that the compiler\r
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68// configuration for enum types is compliant with Section 2.3.1 of the\r
69// UEFI 2.3 Specification. These enum types and enum values are not\r
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70// intended to be used. A prefix of '__' is used avoid conflicts with\r
71// other types.\r
72//\r
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73typedef enum {\r
74 __VerifyUint8EnumValue = 0xff\r
75} __VERIFY_UINT8_ENUM_SIZE;\r
76\r
77typedef enum {\r
78 __VerifyUint16EnumValue = 0xffff\r
79} __VERIFY_UINT16_ENUM_SIZE;\r
80\r
81typedef enum {\r
82 __VerifyUint32EnumValue = 0xffffffff\r
83} __VERIFY_UINT32_ENUM_SIZE;\r
84\r
85VERIFY_SIZE_OF (__VERIFY_UINT8_ENUM_SIZE, 4);\r
86VERIFY_SIZE_OF (__VERIFY_UINT16_ENUM_SIZE, 4);\r
87VERIFY_SIZE_OF (__VERIFY_UINT32_ENUM_SIZE, 4);\r
88\r
dda3a6ce 89//\r
90// The Microsoft* C compiler can removed references to unreferenced data items\r
818ff8c2 91// if the /OPT:REF linker option is used. We defined a macro as this is a\r
dda3a6ce 92// a non standard extension\r
93//\r
b243ead0 94#if defined(_MSC_EXTENSIONS) && _MSC_VER < 1800 && !defined (MDE_CPU_EBC)\r
dda3a6ce 95 ///\r
818ff8c2 96 /// Remove global variable from the linked image if there are no references to\r
dda3a6ce 97 /// it after all compiler and linker optimizations have been performed.\r
98 ///\r
99 ///\r
100 #define GLOBAL_REMOVE_IF_UNREFERENCED __declspec(selectany)\r
101#else\r
102 ///\r
818ff8c2 103 /// Remove the global variable from the linked image if there are no references\r
af2dc6a7 104 /// to it after all compiler and linker optimizations have been performed.\r
dda3a6ce 105 ///\r
106 ///\r
107 #define GLOBAL_REMOVE_IF_UNREFERENCED\r
108#endif\r
109\r
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110//\r
111// Should be used in combination with NORETURN to avoid 'noreturn' returns\r
112// warnings.\r
113//\r
114#ifndef UNREACHABLE\r
357cec38 115 #if __GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ > 4)\r
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116 ///\r
117 /// Signal compilers and analyzers that this call is not reachable. It is\r
118 /// up to the compiler to remove any code past that point.\r
357cec38 119 /// Not implemented by GCC 4.4 or earlier.\r
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120 ///\r
121 #define UNREACHABLE() __builtin_unreachable ()\r
122 #elif defined (__has_feature)\r
123 #if __has_builtin (__builtin_unreachable)\r
124 ///\r
125 /// Signal compilers and analyzers that this call is not reachable. It is\r
126 /// up to the compiler to remove any code past that point.\r
127 ///\r
128 #define UNREACHABLE() __builtin_unreachable ()\r
129 #endif\r
130 #endif\r
131\r
132 #ifndef UNREACHABLE\r
133 ///\r
134 /// Signal compilers and analyzers that this call is not reachable. It is\r
135 /// up to the compiler to remove any code past that point.\r
136 ///\r
137 #define UNREACHABLE()\r
138 #endif\r
139#endif\r
140\r
141//\r
142// Signaling compilers and analyzers that a certain function cannot return may\r
143// remove all following code and thus lead to better optimization and less\r
144// false positives.\r
145//\r
146#ifndef NORETURN\r
147 #if defined (__GNUC__) || defined (__clang__)\r
148 ///\r
149 /// Signal compilers and analyzers that the function cannot return.\r
150 /// It is up to the compiler to remove any code past a call to functions\r
151 /// flagged with this attribute.\r
152 ///\r
153 #define NORETURN __attribute__((noreturn))\r
154 #elif defined(_MSC_EXTENSIONS) && !defined(MDE_CPU_EBC)\r
155 ///\r
156 /// Signal compilers and analyzers that the function cannot return.\r
157 /// It is up to the compiler to remove any code past a call to functions\r
158 /// flagged with this attribute.\r
159 ///\r
160 #define NORETURN __declspec(noreturn)\r
161 #else\r
162 ///\r
163 /// Signal compilers and analyzers that the function cannot return.\r
164 /// It is up to the compiler to remove any code past a call to functions\r
165 /// flagged with this attribute.\r
166 ///\r
167 #define NORETURN\r
168 #endif\r
169#endif\r
170\r
171//\r
172// Should be used in combination with ANALYZER_NORETURN to avoid 'noreturn'\r
173// returns warnings.\r
174//\r
175#ifndef ANALYZER_UNREACHABLE\r
176 #ifdef __clang_analyzer__\r
177 #if __has_builtin (__builtin_unreachable)\r
178 ///\r
179 /// Signal the analyzer that this call is not reachable.\r
180 /// This excludes compilers.\r
181 ///\r
182 #define ANALYZER_UNREACHABLE() __builtin_unreachable ()\r
183 #endif\r
184 #endif\r
185\r
186 #ifndef ANALYZER_UNREACHABLE\r
187 ///\r
188 /// Signal the analyzer that this call is not reachable.\r
189 /// This excludes compilers.\r
190 ///\r
191 #define ANALYZER_UNREACHABLE()\r
192 #endif\r
193#endif\r
194\r
195//\r
196// Static Analyzers may issue errors about potential NULL-dereferences when\r
197// dereferencing a pointer, that has been checked before, outside of a\r
198// NULL-check. This may lead to false positives, such as when using ASSERT()\r
199// for verification.\r
200//\r
201#ifndef ANALYZER_NORETURN\r
202 #ifdef __has_feature\r
203 #if __has_feature (attribute_analyzer_noreturn)\r
204 ///\r
205 /// Signal analyzers that the function cannot return.\r
206 /// This excludes compilers.\r
207 ///\r
208 #define ANALYZER_NORETURN __attribute__((analyzer_noreturn))\r
209 #endif\r
210 #endif\r
211\r
212 #ifndef ANALYZER_NORETURN\r
213 ///\r
214 /// Signal the analyzer that the function cannot return.\r
215 /// This excludes compilers.\r
216 ///\r
217 #define ANALYZER_NORETURN\r
218 #endif\r
219#endif\r
220\r
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221///\r
222/// Tell the code optimizer that the function will return twice.\r
223/// This prevents wrong optimizations which can cause bugs.\r
224///\r
225#ifndef RETURNS_TWICE\r
226 #if defined (__GNUC__) || defined (__clang__)\r
227 ///\r
228 /// Tell the code optimizer that the function will return twice.\r
229 /// This prevents wrong optimizations which can cause bugs.\r
230 ///\r
231 #define RETURNS_TWICE __attribute__((returns_twice))\r
232 #else\r
233 ///\r
234 /// Tell the code optimizer that the function will return twice.\r
235 /// This prevents wrong optimizations which can cause bugs.\r
236 ///\r
237 #define RETURNS_TWICE\r
238 #endif\r
239#endif\r
240\r
dda3a6ce 241//\r
02eef553 242// For symbol name in assembly code, an extra "_" is sometimes necessary\r
dda3a6ce 243//\r
dda3a6ce 244\r
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245///\r
246/// Private worker functions for ASM_PFX()\r
247///\r
248#define _CONCATENATE(a, b) __CONCATENATE(a, b)\r
249#define __CONCATENATE(a, b) a ## b\r
250\r
251///\r
252/// The __USER_LABEL_PREFIX__ macro predefined by GNUC represents the prefix\r
253/// on symbols in assembly language.\r
254///\r
255#define ASM_PFX(name) _CONCATENATE (__USER_LABEL_PREFIX__, name)\r
dda3a6ce 256\r
257#if __APPLE__\r
258 //\r
818ff8c2 259 // Apple extension that is used by the linker to optimize code size\r
dda3a6ce 260 // with assembly functions. Put at the end of your .S files\r
261 //\r
262 #define ASM_FUNCTION_REMOVE_IF_UNREFERENCED .subsections_via_symbols\r
263#else\r
264 #define ASM_FUNCTION_REMOVE_IF_UNREFERENCED\r
265#endif\r
266\r
267#ifdef __CC_ARM\r
268 //\r
818ff8c2 269 // Older RVCT ARM compilers don't fully support #pragma pack and require __packed\r
dda3a6ce 270 // as a prefix for the structure.\r
271 //\r
272 #define PACKED __packed\r
273#else\r
274 #define PACKED\r
275#endif\r
276\r
f4ec40ab 277///\r
818ff8c2 278/// 128 bit buffer containing a unique identifier value.\r
f4ec40ab 279/// Unless otherwise specified, aligned on a 64 bit boundary.\r
280///\r
959ccb23 281typedef struct {\r
282 UINT32 Data1;\r
283 UINT16 Data2;\r
284 UINT16 Data3;\r
285 UINT8 Data4[8];\r
286} GUID;\r
287\r
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288///\r
289/// 4-byte buffer. An IPv4 internet protocol address.\r
290///\r
291typedef struct {\r
292 UINT8 Addr[4];\r
293} IPv4_ADDRESS;\r
294\r
295///\r
296/// 16-byte buffer. An IPv6 internet protocol address.\r
297///\r
298typedef struct {\r
299 UINT8 Addr[16];\r
300} IPv6_ADDRESS;\r
301\r
3963c4bf 302//\r
303// 8-bytes unsigned value that represents a physical system address.\r
304//\r
959ccb23 305typedef UINT64 PHYSICAL_ADDRESS;\r
306\r
62991af2 307///\r
f4ec40ab 308/// LIST_ENTRY structure definition.\r
62991af2 309///\r
959ccb23 310typedef struct _LIST_ENTRY LIST_ENTRY;\r
311\r
f4ec40ab 312///\r
313/// _LIST_ENTRY structure definition.\r
314///\r
959ccb23 315struct _LIST_ENTRY {\r
316 LIST_ENTRY *ForwardLink;\r
317 LIST_ENTRY *BackLink;\r
318};\r
319\r
320//\r
3963c4bf 321// Modifiers to abstract standard types to aid in debug of problems\r
959ccb23 322//\r
f4ec40ab 323\r
324///\r
af2dc6a7 325/// Datum is read-only.\r
f4ec40ab 326///\r
959ccb23 327#define CONST const\r
f4ec40ab 328\r
329///\r
af2dc6a7 330/// Datum is scoped to the current file or function.\r
f4ec40ab 331///\r
959ccb23 332#define STATIC static\r
f4ec40ab 333\r
334///\r
af2dc6a7 335/// Undeclared type.\r
f4ec40ab 336///\r
959ccb23 337#define VOID void\r
338\r
339//\r
340// Modifiers for Data Types used to self document code.\r
341// This concept is borrowed for UEFI specification.\r
342//\r
f4ec40ab 343\r
344///\r
af2dc6a7 345/// Datum is passed to the function.\r
f4ec40ab 346///\r
959ccb23 347#define IN\r
f4ec40ab 348\r
349///\r
af2dc6a7 350/// Datum is returned from the function.\r
f4ec40ab 351///\r
959ccb23 352#define OUT\r
f4ec40ab 353\r
354///\r
355/// Passing the datum to the function is optional, and a NULL\r
af2dc6a7 356/// is passed if the value is not supplied.\r
f4ec40ab 357///\r
959ccb23 358#define OPTIONAL\r
959ccb23 359\r
959ccb23 360//\r
818ff8c2 361// UEFI specification claims 1 and 0. We are concerned about the\r
00b7cc0f 362// compiler portability so we did it this way.\r
959ccb23 363//\r
f4ec40ab 364\r
365///\r
366/// Boolean true value. UEFI Specification defines this value to be 1,\r
367/// but this form is more portable.\r
368///\r
959ccb23 369#define TRUE ((BOOLEAN)(1==1))\r
f4ec40ab 370\r
371///\r
372/// Boolean false value. UEFI Specification defines this value to be 0,\r
373/// but this form is more portable.\r
374///\r
959ccb23 375#define FALSE ((BOOLEAN)(0==1))\r
959ccb23 376\r
f4ec40ab 377///\r
378/// NULL pointer (VOID *)\r
379///\r
959ccb23 380#define NULL ((VOID *) 0)\r
959ccb23 381\r
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382//\r
383// Null character\r
384//\r
385#define CHAR_NULL 0x0000\r
386\r
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387///\r
388/// Maximum values for common UEFI Data Types\r
389///\r
390#define MAX_INT8 ((INT8)0x7F)\r
391#define MAX_UINT8 ((UINT8)0xFF)\r
392#define MAX_INT16 ((INT16)0x7FFF)\r
393#define MAX_UINT16 ((UINT16)0xFFFF)\r
394#define MAX_INT32 ((INT32)0x7FFFFFFF)\r
395#define MAX_UINT32 ((UINT32)0xFFFFFFFF)\r
396#define MAX_INT64 ((INT64)0x7FFFFFFFFFFFFFFFULL)\r
397#define MAX_UINT64 ((UINT64)0xFFFFFFFFFFFFFFFFULL)\r
3963c4bf 398\r
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399///\r
400/// Minimum values for the signed UEFI Data Types\r
401///\r
402#define MIN_INT8 (((INT8) -127) - 1)\r
403#define MIN_INT16 (((INT16) -32767) - 1)\r
404#define MIN_INT32 (((INT32) -2147483647) - 1)\r
405#define MIN_INT64 (((INT64) -9223372036854775807LL) - 1)\r
406\r
959ccb23 407#define BIT0 0x00000001\r
408#define BIT1 0x00000002\r
409#define BIT2 0x00000004\r
410#define BIT3 0x00000008\r
411#define BIT4 0x00000010\r
412#define BIT5 0x00000020\r
413#define BIT6 0x00000040\r
414#define BIT7 0x00000080\r
415#define BIT8 0x00000100\r
416#define BIT9 0x00000200\r
417#define BIT10 0x00000400\r
418#define BIT11 0x00000800\r
419#define BIT12 0x00001000\r
420#define BIT13 0x00002000\r
421#define BIT14 0x00004000\r
422#define BIT15 0x00008000\r
423#define BIT16 0x00010000\r
424#define BIT17 0x00020000\r
425#define BIT18 0x00040000\r
426#define BIT19 0x00080000\r
427#define BIT20 0x00100000\r
428#define BIT21 0x00200000\r
429#define BIT22 0x00400000\r
430#define BIT23 0x00800000\r
431#define BIT24 0x01000000\r
432#define BIT25 0x02000000\r
433#define BIT26 0x04000000\r
434#define BIT27 0x08000000\r
435#define BIT28 0x10000000\r
436#define BIT29 0x20000000\r
437#define BIT30 0x40000000\r
438#define BIT31 0x80000000\r
4d24730c 439#define BIT32 0x0000000100000000ULL\r
440#define BIT33 0x0000000200000000ULL\r
441#define BIT34 0x0000000400000000ULL\r
442#define BIT35 0x0000000800000000ULL\r
443#define BIT36 0x0000001000000000ULL\r
444#define BIT37 0x0000002000000000ULL\r
445#define BIT38 0x0000004000000000ULL\r
446#define BIT39 0x0000008000000000ULL\r
447#define BIT40 0x0000010000000000ULL\r
448#define BIT41 0x0000020000000000ULL\r
449#define BIT42 0x0000040000000000ULL\r
450#define BIT43 0x0000080000000000ULL\r
451#define BIT44 0x0000100000000000ULL\r
452#define BIT45 0x0000200000000000ULL\r
453#define BIT46 0x0000400000000000ULL\r
454#define BIT47 0x0000800000000000ULL\r
455#define BIT48 0x0001000000000000ULL\r
456#define BIT49 0x0002000000000000ULL\r
457#define BIT50 0x0004000000000000ULL\r
458#define BIT51 0x0008000000000000ULL\r
459#define BIT52 0x0010000000000000ULL\r
460#define BIT53 0x0020000000000000ULL\r
461#define BIT54 0x0040000000000000ULL\r
462#define BIT55 0x0080000000000000ULL\r
463#define BIT56 0x0100000000000000ULL\r
464#define BIT57 0x0200000000000000ULL\r
465#define BIT58 0x0400000000000000ULL\r
466#define BIT59 0x0800000000000000ULL\r
467#define BIT60 0x1000000000000000ULL\r
468#define BIT61 0x2000000000000000ULL\r
469#define BIT62 0x4000000000000000ULL\r
470#define BIT63 0x8000000000000000ULL\r
959ccb23 471\r
2e121e9a 472#define SIZE_1KB 0x00000400\r
473#define SIZE_2KB 0x00000800\r
474#define SIZE_4KB 0x00001000\r
475#define SIZE_8KB 0x00002000\r
476#define SIZE_16KB 0x00004000\r
477#define SIZE_32KB 0x00008000\r
478#define SIZE_64KB 0x00010000\r
479#define SIZE_128KB 0x00020000\r
480#define SIZE_256KB 0x00040000\r
481#define SIZE_512KB 0x00080000\r
482#define SIZE_1MB 0x00100000\r
483#define SIZE_2MB 0x00200000\r
484#define SIZE_4MB 0x00400000\r
485#define SIZE_8MB 0x00800000\r
486#define SIZE_16MB 0x01000000\r
487#define SIZE_32MB 0x02000000\r
488#define SIZE_64MB 0x04000000\r
489#define SIZE_128MB 0x08000000\r
490#define SIZE_256MB 0x10000000\r
491#define SIZE_512MB 0x20000000\r
492#define SIZE_1GB 0x40000000\r
493#define SIZE_2GB 0x80000000\r
494#define SIZE_4GB 0x0000000100000000ULL\r
495#define SIZE_8GB 0x0000000200000000ULL\r
496#define SIZE_16GB 0x0000000400000000ULL\r
497#define SIZE_32GB 0x0000000800000000ULL\r
498#define SIZE_64GB 0x0000001000000000ULL\r
499#define SIZE_128GB 0x0000002000000000ULL\r
500#define SIZE_256GB 0x0000004000000000ULL\r
501#define SIZE_512GB 0x0000008000000000ULL\r
502#define SIZE_1TB 0x0000010000000000ULL\r
503#define SIZE_2TB 0x0000020000000000ULL\r
504#define SIZE_4TB 0x0000040000000000ULL\r
505#define SIZE_8TB 0x0000080000000000ULL\r
506#define SIZE_16TB 0x0000100000000000ULL\r
507#define SIZE_32TB 0x0000200000000000ULL\r
508#define SIZE_64TB 0x0000400000000000ULL\r
509#define SIZE_128TB 0x0000800000000000ULL\r
510#define SIZE_256TB 0x0001000000000000ULL\r
511#define SIZE_512TB 0x0002000000000000ULL\r
512#define SIZE_1PB 0x0004000000000000ULL\r
513#define SIZE_2PB 0x0008000000000000ULL\r
514#define SIZE_4PB 0x0010000000000000ULL\r
515#define SIZE_8PB 0x0020000000000000ULL\r
516#define SIZE_16PB 0x0040000000000000ULL\r
517#define SIZE_32PB 0x0080000000000000ULL\r
518#define SIZE_64PB 0x0100000000000000ULL\r
519#define SIZE_128PB 0x0200000000000000ULL\r
520#define SIZE_256PB 0x0400000000000000ULL\r
521#define SIZE_512PB 0x0800000000000000ULL\r
522#define SIZE_1EB 0x1000000000000000ULL\r
523#define SIZE_2EB 0x2000000000000000ULL\r
524#define SIZE_4EB 0x4000000000000000ULL\r
525#define SIZE_8EB 0x8000000000000000ULL\r
818ff8c2 526\r
2e121e9a 527#define BASE_1KB 0x00000400\r
528#define BASE_2KB 0x00000800\r
529#define BASE_4KB 0x00001000\r
530#define BASE_8KB 0x00002000\r
531#define BASE_16KB 0x00004000\r
532#define BASE_32KB 0x00008000\r
533#define BASE_64KB 0x00010000\r
534#define BASE_128KB 0x00020000\r
535#define BASE_256KB 0x00040000\r
536#define BASE_512KB 0x00080000\r
537#define BASE_1MB 0x00100000\r
538#define BASE_2MB 0x00200000\r
539#define BASE_4MB 0x00400000\r
540#define BASE_8MB 0x00800000\r
541#define BASE_16MB 0x01000000\r
542#define BASE_32MB 0x02000000\r
543#define BASE_64MB 0x04000000\r
544#define BASE_128MB 0x08000000\r
545#define BASE_256MB 0x10000000\r
546#define BASE_512MB 0x20000000\r
547#define BASE_1GB 0x40000000\r
548#define BASE_2GB 0x80000000\r
549#define BASE_4GB 0x0000000100000000ULL\r
550#define BASE_8GB 0x0000000200000000ULL\r
551#define BASE_16GB 0x0000000400000000ULL\r
552#define BASE_32GB 0x0000000800000000ULL\r
553#define BASE_64GB 0x0000001000000000ULL\r
554#define BASE_128GB 0x0000002000000000ULL\r
555#define BASE_256GB 0x0000004000000000ULL\r
556#define BASE_512GB 0x0000008000000000ULL\r
557#define BASE_1TB 0x0000010000000000ULL\r
558#define BASE_2TB 0x0000020000000000ULL\r
559#define BASE_4TB 0x0000040000000000ULL\r
560#define BASE_8TB 0x0000080000000000ULL\r
561#define BASE_16TB 0x0000100000000000ULL\r
562#define BASE_32TB 0x0000200000000000ULL\r
563#define BASE_64TB 0x0000400000000000ULL\r
564#define BASE_128TB 0x0000800000000000ULL\r
565#define BASE_256TB 0x0001000000000000ULL\r
566#define BASE_512TB 0x0002000000000000ULL\r
567#define BASE_1PB 0x0004000000000000ULL\r
568#define BASE_2PB 0x0008000000000000ULL\r
569#define BASE_4PB 0x0010000000000000ULL\r
570#define BASE_8PB 0x0020000000000000ULL\r
571#define BASE_16PB 0x0040000000000000ULL\r
572#define BASE_32PB 0x0080000000000000ULL\r
573#define BASE_64PB 0x0100000000000000ULL\r
574#define BASE_128PB 0x0200000000000000ULL\r
575#define BASE_256PB 0x0400000000000000ULL\r
576#define BASE_512PB 0x0800000000000000ULL\r
577#define BASE_1EB 0x1000000000000000ULL\r
578#define BASE_2EB 0x2000000000000000ULL\r
579#define BASE_4EB 0x4000000000000000ULL\r
580#define BASE_8EB 0x8000000000000000ULL\r
581\r
959ccb23 582//\r
e3e40c83 583// Support for variable argument lists in freestanding edk2 modules.\r
818ff8c2 584//\r
e3e40c83
Z
585// For modules that use the ISO C library interfaces for variable\r
586// argument lists, refer to "StdLib/Include/stdarg.h".\r
959ccb23 587//\r
588// VA_LIST - typedef for argument list.\r
589// VA_START (VA_LIST Marker, argument before the ...) - Init Marker for use.\r
590// VA_END (VA_LIST Marker) - Clear Marker\r
e3e40c83
Z
591// VA_ARG (VA_LIST Marker, var arg type) - Use Marker to get an argument from\r
592// the ... list. You must know the type and pass it in this macro. Type\r
593// must be compatible with the type of the actual next argument (as promoted\r
594// according to the default argument promotions.)\r
265fa9fa 595// VA_COPY (VA_LIST Dest, VA_LIST Start) - Initialize Dest as a copy of Start.\r
959ccb23 596//\r
e3e40c83 597// Example:\r
959ccb23 598//\r
599// UINTN\r
e3e40c83 600// EFIAPI\r
959ccb23 601// ExampleVarArg (\r
602// IN UINTN NumberOfArgs,\r
603// ...\r
604// )\r
605// {\r
606// VA_LIST Marker;\r
607// UINTN Index;\r
608// UINTN Result;\r
609//\r
610// //\r
611// // Initialize the Marker\r
612// //\r
613// VA_START (Marker, NumberOfArgs);\r
614// for (Index = 0, Result = 0; Index < NumberOfArgs; Index++) {\r
615// //\r
e3e40c83 616// // The ... list is a series of UINTN values, so sum them up.\r
959ccb23 617// //\r
618// Result += VA_ARG (Marker, UINTN);\r
619// }\r
620//\r
621// VA_END (Marker);\r
e3e40c83 622// return Result;\r
959ccb23 623// }\r
624//\r
e3e40c83
Z
625// Notes:\r
626// - Functions that call VA_START() / VA_END() must have a variable\r
627// argument list and must be declared EFIAPI.\r
628// - Functions that call VA_COPY() / VA_END() must be declared EFIAPI.\r
629// - Functions that only use VA_LIST and VA_ARG() need not be EFIAPI.\r
630//\r
0dcec411 631\r
68167fed 632/**\r
633 Return the size of argument that has been aligned to sizeof (UINTN).\r
634\r
af2dc6a7 635 @param n The parameter size to be aligned.\r
68167fed 636\r
af2dc6a7 637 @return The aligned size.\r
68167fed 638**/\r
639#define _INT_SIZE_OF(n) ((sizeof (n) + sizeof (UINTN) - 1) &~(sizeof (UINTN) - 1))\r
640\r
dda3a6ce 641#if defined(__CC_ARM)\r
642//\r
643// RVCT ARM variable argument list support.\r
644//\r
645\r
646///\r
818ff8c2 647/// Variable used to traverse the list of arguments. This type can vary by\r
648/// implementation and could be an array or structure.\r
dda3a6ce 649///\r
650#ifdef __APCS_ADSABI\r
651 typedef int *va_list[1];\r
652 #define VA_LIST va_list\r
653#else\r
654 typedef struct __va_list { void *__ap; } va_list;\r
655 #define VA_LIST va_list\r
656#endif\r
657\r
658#define VA_START(Marker, Parameter) __va_start(Marker, Parameter)\r
659\r
660#define VA_ARG(Marker, TYPE) __va_arg(Marker, TYPE)\r
661\r
662#define VA_END(Marker) ((void)0)\r
663\r
7bbc624a 664// For some ARM RVCT compilers, __va_copy is not defined\r
665#ifndef __va_copy\r
666 #define __va_copy(dest, src) ((void)((dest) = (src)))\r
667#endif\r
668\r
265fa9fa 669#define VA_COPY(Dest, Start) __va_copy (Dest, Start)\r
670\r
c41100f0 671#elif defined(_M_ARM) || defined(_M_ARM64)\r
79195517
PB
672//\r
673// MSFT ARM variable argument list support.\r
79195517
PB
674//\r
675\r
676typedef char* VA_LIST;\r
677\r
c41100f0
PB
678#define VA_START(Marker, Parameter) __va_start (&Marker, &Parameter, _INT_SIZE_OF (Parameter), __alignof(Parameter), &Parameter)\r
679#define VA_ARG(Marker, TYPE) (*(TYPE *) ((Marker += _INT_SIZE_OF (TYPE) + ((-(INTN)Marker) & (sizeof(TYPE) - 1))) - _INT_SIZE_OF (TYPE)))\r
79195517
PB
680#define VA_END(Marker) (Marker = (VA_LIST) 0)\r
681#define VA_COPY(Dest, Start) ((void)((Dest) = (Start)))\r
682\r
17ab1ec5 683#elif defined(__GNUC__)\r
48d5f9a5
SS
684\r
685#if defined(MDE_CPU_X64) && !defined(NO_MSABI_VA_FUNCS)\r
686//\r
687// X64 only. Use MS ABI version of GCC built-in macros for variable argument lists.\r
688//\r
689///\r
690/// Both GCC and LLVM 3.8 for X64 support new variable argument intrinsics for Microsoft ABI\r
691///\r
692\r
693///\r
694/// Variable used to traverse the list of arguments. This type can vary by\r
695/// implementation and could be an array or structure.\r
696///\r
697typedef __builtin_ms_va_list VA_LIST;\r
698\r
699#define VA_START(Marker, Parameter) __builtin_ms_va_start (Marker, Parameter)\r
700\r
701#define VA_ARG(Marker, TYPE) ((sizeof (TYPE) < sizeof (UINTN)) ? (TYPE)(__builtin_va_arg (Marker, UINTN)) : (TYPE)(__builtin_va_arg (Marker, TYPE)))\r
702\r
703#define VA_END(Marker) __builtin_ms_va_end (Marker)\r
704\r
705#define VA_COPY(Dest, Start) __builtin_ms_va_copy (Dest, Start)\r
706\r
707#else\r
130a2eec 708//\r
1a2f870c 709// Use GCC built-in macros for variable argument lists.\r
130a2eec 710//\r
dda3a6ce 711\r
712///\r
818ff8c2 713/// Variable used to traverse the list of arguments. This type can vary by\r
714/// implementation and could be an array or structure.\r
dda3a6ce 715///\r
130a2eec 716typedef __builtin_va_list VA_LIST;\r
717\r
6ed623e4 718#define VA_START(Marker, Parameter) __builtin_va_start (Marker, Parameter)\r
959ccb23 719\r
6ed623e4 720#define VA_ARG(Marker, TYPE) ((sizeof (TYPE) < sizeof (UINTN)) ? (TYPE)(__builtin_va_arg (Marker, UINTN)) : (TYPE)(__builtin_va_arg (Marker, TYPE)))\r
130a2eec 721\r
6ed623e4 722#define VA_END(Marker) __builtin_va_end (Marker)\r
130a2eec 723\r
265fa9fa 724#define VA_COPY(Dest, Start) __builtin_va_copy (Dest, Start)\r
725\r
48d5f9a5
SS
726#endif\r
727\r
130a2eec 728#else\r
f4ec40ab 729///\r
818ff8c2 730/// Variable used to traverse the list of arguments. This type can vary by\r
731/// implementation and could be an array or structure.\r
f4ec40ab 732///\r
959ccb23 733typedef CHAR8 *VA_LIST;\r
959ccb23 734\r
3963c4bf 735/**\r
818ff8c2 736 Retrieves a pointer to the beginning of a variable argument list, based on\r
737 the name of the parameter that immediately precedes the variable argument list.\r
3963c4bf 738\r
818ff8c2 739 This function initializes Marker to point to the beginning of the variable\r
740 argument list that immediately follows Parameter. The method for computing the\r
741 pointer to the next argument in the argument list is CPU-specific following the\r
af2dc6a7 742 EFIAPI ABI.\r
3963c4bf 743\r
af2dc6a7 744 @param Marker The VA_LIST used to traverse the list of arguments.\r
818ff8c2 745 @param Parameter The name of the parameter that immediately precedes\r
3963c4bf 746 the variable argument list.\r
818ff8c2 747\r
3963c4bf 748 @return A pointer to the beginning of a variable argument list.\r
749\r
750**/\r
a58b9d96 751#define VA_START(Marker, Parameter) (Marker = (VA_LIST) ((UINTN) & (Parameter) + _INT_SIZE_OF (Parameter)))\r
3963c4bf 752\r
753/**\r
818ff8c2 754 Returns an argument of a specified type from a variable argument list and updates\r
755 the pointer to the variable argument list to point to the next argument.\r
3963c4bf 756\r
818ff8c2 757 This function returns an argument of the type specified by TYPE from the beginning\r
758 of the variable argument list specified by Marker. Marker is then updated to point\r
759 to the next argument in the variable argument list. The method for computing the\r
af2dc6a7 760 pointer to the next argument in the argument list is CPU-specific following the EFIAPI ABI.\r
3963c4bf 761\r
dda3a6ce 762 @param Marker VA_LIST used to traverse the list of arguments.\r
818ff8c2 763 @param TYPE The type of argument to retrieve from the beginning\r
3963c4bf 764 of the variable argument list.\r
818ff8c2 765\r
3963c4bf 766 @return An argument of the type specified by TYPE.\r
767\r
768**/\r
769#define VA_ARG(Marker, TYPE) (*(TYPE *) ((Marker += _INT_SIZE_OF (TYPE)) - _INT_SIZE_OF (TYPE)))\r
770\r
771/**\r
772 Terminates the use of a variable argument list.\r
773\r
818ff8c2 774 This function initializes Marker so it can no longer be used with VA_ARG().\r
775 After this macro is used, the only way to access the variable argument list is\r
3963c4bf 776 by using VA_START() again.\r
777\r
dda3a6ce 778 @param Marker VA_LIST used to traverse the list of arguments.\r
818ff8c2 779\r
3963c4bf 780**/\r
781#define VA_END(Marker) (Marker = (VA_LIST) 0)\r
782\r
265fa9fa 783/**\r
784 Initializes a VA_LIST as a copy of an existing VA_LIST.\r
785\r
786 This macro initializes Dest as a copy of Start, as if the VA_START macro had been applied to Dest\r
787 followed by the same sequence of uses of the VA_ARG macro as had previously been used to reach\r
9095d37b 788 the present state of Start.\r
265fa9fa 789\r
790 @param Dest VA_LIST used to traverse the list of arguments.\r
791 @param Start VA_LIST used to traverse the list of arguments.\r
792\r
793**/\r
794#define VA_COPY(Dest, Start) ((void)((Dest) = (Start)))\r
795\r
130a2eec 796#endif\r
797\r
68167fed 798///\r
799/// Pointer to the start of a variable argument list stored in a memory buffer. Same as UINT8 *.\r
800///\r
801typedef UINTN *BASE_LIST;\r
802\r
2229029a 803/**\r
804 Returns the size of a data type in sizeof(UINTN) units rounded up to the nearest UINTN boundary.\r
805\r
806 @param TYPE The date type to determine the size of.\r
807\r
808 @return The size of TYPE in sizeof (UINTN) units rounded up to the nearest UINTN boundary.\r
809**/\r
810#define _BASE_INT_SIZE_OF(TYPE) ((sizeof (TYPE) + sizeof (UINTN) - 1) / sizeof (UINTN))\r
811\r
68167fed 812/**\r
818ff8c2 813 Returns an argument of a specified type from a variable argument list and updates\r
814 the pointer to the variable argument list to point to the next argument.\r
68167fed 815\r
818ff8c2 816 This function returns an argument of the type specified by TYPE from the beginning\r
817 of the variable argument list specified by Marker. Marker is then updated to point\r
818 to the next argument in the variable argument list. The method for computing the\r
68167fed 819 pointer to the next argument in the argument list is CPU specific following the EFIAPI ABI.\r
820\r
af2dc6a7 821 @param Marker The pointer to the beginning of a variable argument list.\r
818ff8c2 822 @param TYPE The type of argument to retrieve from the beginning\r
68167fed 823 of the variable argument list.\r
818ff8c2 824\r
68167fed 825 @return An argument of the type specified by TYPE.\r
826\r
827**/\r
2229029a 828#define BASE_ARG(Marker, TYPE) (*(TYPE *) ((Marker += _BASE_INT_SIZE_OF (TYPE)) - _BASE_INT_SIZE_OF (TYPE)))\r
68167fed 829\r
3963c4bf 830/**\r
818ff8c2 831 The macro that returns the byte offset of a field in a data structure.\r
3963c4bf 832\r
818ff8c2 833 This function returns the offset, in bytes, of field specified by Field from the\r
834 beginning of the data structure specified by TYPE. If TYPE does not contain Field,\r
835 the module will not compile.\r
3963c4bf 836\r
818ff8c2 837 @param TYPE The name of the data structure that contains the field specified by Field.\r
3963c4bf 838 @param Field The name of the field in the data structure.\r
818ff8c2 839\r
3963c4bf 840 @return Offset, in bytes, of field.\r
818ff8c2 841\r
3963c4bf 842**/\r
818ff8c2 843#ifdef __GNUC__\r
844#if __GNUC__ >= 4\r
845#define OFFSET_OF(TYPE, Field) ((UINTN) __builtin_offsetof(TYPE, Field))\r
846#endif\r
847#endif\r
848\r
849#ifndef OFFSET_OF\r
959ccb23 850#define OFFSET_OF(TYPE, Field) ((UINTN) &(((TYPE *)0)->Field))\r
818ff8c2 851#endif\r
959ccb23 852\r
3963c4bf 853/**\r
818ff8c2 854 Macro that returns a pointer to the data structure that contains a specified field of\r
855 that data structure. This is a lightweight method to hide information by placing a\r
856 public data structure inside a larger private data structure and using a pointer to\r
3963c4bf 857 the public data structure to retrieve a pointer to the private data structure.\r
858\r
818ff8c2 859 This function computes the offset, in bytes, of field specified by Field from the beginning\r
860 of the data structure specified by TYPE. This offset is subtracted from Record, and is\r
861 used to return a pointer to a data structure of the type specified by TYPE. If the data type\r
862 specified by TYPE does not contain the field specified by Field, then the module will not compile.\r
863\r
864 @param Record Pointer to the field specified by Field within a data structure of type TYPE.\r
865 @param TYPE The name of the data structure type to return. This data structure must\r
866 contain the field specified by Field.\r
3963c4bf 867 @param Field The name of the field in the data structure specified by TYPE to which Record points.\r
818ff8c2 868\r
3963c4bf 869 @return A pointer to the structure from one of it's elements.\r
818ff8c2 870\r
3963c4bf 871**/\r
498cb29d 872#define BASE_CR(Record, TYPE, Field) ((TYPE *) ((CHAR8 *) (Record) - OFFSET_OF (TYPE, Field)))\r
959ccb23 873\r
3963c4bf 874/**\r
818ff8c2 875 Rounds a value up to the next boundary using a specified alignment.\r
3963c4bf 876\r
818ff8c2 877 This function rounds Value up to the next boundary using the specified Alignment.\r
878 This aligned value is returned.\r
3963c4bf 879\r
880 @param Value The value to round up.\r
881 @param Alignment The alignment boundary used to return the aligned value.\r
818ff8c2 882\r
3963c4bf 883 @return A value up to the next boundary.\r
818ff8c2 884\r
3963c4bf 885**/\r
3fef0f51 886#define ALIGN_VALUE(Value, Alignment) ((Value) + (((Alignment) - (Value)) & ((Alignment) - 1)))\r
887\r
3963c4bf 888/**\r
818ff8c2 889 Adjust a pointer by adding the minimum offset required for it to be aligned on\r
890 a specified alignment boundary.\r
3963c4bf 891\r
818ff8c2 892 This function rounds the pointer specified by Pointer to the next alignment boundary\r
893 specified by Alignment. The pointer to the aligned address is returned.\r
3963c4bf 894\r
f754f721 895 @param Pointer The pointer to round up.\r
3963c4bf 896 @param Alignment The alignment boundary to use to return an aligned pointer.\r
818ff8c2 897\r
3963c4bf 898 @return Pointer to the aligned address.\r
818ff8c2 899\r
3963c4bf 900**/\r
3fef0f51 901#define ALIGN_POINTER(Pointer, Alignment) ((VOID *) (ALIGN_VALUE ((UINTN)(Pointer), (Alignment))))\r
959ccb23 902\r
3963c4bf 903/**\r
818ff8c2 904 Rounds a value up to the next natural boundary for the current CPU.\r
905 This is 4-bytes for 32-bit CPUs and 8-bytes for 64-bit CPUs.\r
3963c4bf 906\r
818ff8c2 907 This function rounds the value specified by Value up to the next natural boundary for the\r
908 current CPU. This rounded value is returned.\r
3963c4bf 909\r
910 @param Value The value to round up.\r
911\r
912 @return Rounded value specified by Value.\r
818ff8c2 913\r
3963c4bf 914**/\r
3fef0f51 915#define ALIGN_VARIABLE(Value) ALIGN_VALUE ((Value), sizeof (UINTN))\r
818ff8c2 916\r
959ccb23 917\r
3963c4bf 918/**\r
818ff8c2 919 Return the maximum of two operands.\r
3963c4bf 920\r
818ff8c2 921 This macro returns the maximum of two operand specified by a and b.\r
3963c4bf 922 Both a and b must be the same numerical types, signed or unsigned.\r
923\r
3963c4bf 924 @param a The first operand with any numerical type.\r
818ff8c2 925 @param b The second operand. Can be any numerical type as long as is\r
a89fa50c 926 the same type as a.\r
818ff8c2 927\r
3963c4bf 928 @return Maximum of two operands.\r
818ff8c2 929\r
3963c4bf 930**/\r
959ccb23 931#define MAX(a, b) \\r
932 (((a) > (b)) ? (a) : (b))\r
933\r
3963c4bf 934/**\r
818ff8c2 935 Return the minimum of two operands.\r
3963c4bf 936\r
818ff8c2 937 This macro returns the minimal of two operand specified by a and b.\r
3963c4bf 938 Both a and b must be the same numerical types, signed or unsigned.\r
939\r
3963c4bf 940 @param a The first operand with any numerical type.\r
941 @param b The second operand. It should be the same any numerical type with a.\r
818ff8c2 942\r
3963c4bf 943 @return Minimum of two operands.\r
818ff8c2 944\r
3963c4bf 945**/\r
959ccb23 946#define MIN(a, b) \\r
947 (((a) < (b)) ? (a) : (b))\r
948\r
8b157410 949/**\r
950 Return the absolute value of a signed operand.\r
951\r
952 This macro returns the absolute value of the signed operand specified by a.\r
953\r
954 @param a The signed operand.\r
955\r
956 @return The absolute value of the signed operand.\r
957\r
958**/\r
959#define ABS(a) \\r
960 (((a) < 0) ? (-(a)) : (a))\r
961\r
959ccb23 962//\r
f4ec40ab 963// Status codes common to all execution phases\r
959ccb23 964//\r
6f906c39 965typedef UINTN RETURN_STATUS;\r
959ccb23 966\r
f4ec40ab 967/**\r
818ff8c2 968 Produces a RETURN_STATUS code with the highest bit set.\r
959ccb23 969\r
818ff8c2 970 @param StatusCode The status code value to convert into a warning code.\r
f4ec40ab 971 StatusCode must be in the range 0x00000000..0x7FFFFFFF.\r
972\r
973 @return The value specified by StatusCode with the highest bit set.\r
974\r
975**/\r
262ffea8 976#define ENCODE_ERROR(StatusCode) ((RETURN_STATUS)(MAX_BIT | (StatusCode)))\r
959ccb23 977\r
f4ec40ab 978/**\r
818ff8c2 979 Produces a RETURN_STATUS code with the highest bit clear.\r
f4ec40ab 980\r
818ff8c2 981 @param StatusCode The status code value to convert into a warning code.\r
f4ec40ab 982 StatusCode must be in the range 0x00000000..0x7FFFFFFF.\r
983\r
984 @return The value specified by StatusCode with the highest bit clear.\r
985\r
986**/\r
262ffea8 987#define ENCODE_WARNING(StatusCode) ((RETURN_STATUS)(StatusCode))\r
f4ec40ab 988\r
989/**\r
818ff8c2 990 Returns TRUE if a specified RETURN_STATUS code is an error code.\r
991\r
992 This function returns TRUE if StatusCode has the high bit set. Otherwise, FALSE is returned.\r
f4ec40ab 993\r
40731047 994 @param StatusCode The status code value to evaluate.\r
f4ec40ab 995\r
996 @retval TRUE The high bit of StatusCode is set.\r
997 @retval FALSE The high bit of StatusCode is clear.\r
998\r
999**/\r
6f906c39 1000#define RETURN_ERROR(StatusCode) (((INTN)(RETURN_STATUS)(StatusCode)) < 0)\r
f4ec40ab 1001\r
1002///\r
1003/// The operation completed successfully.\r
1004///\r
959ccb23 1005#define RETURN_SUCCESS 0\r
f4ec40ab 1006\r
1007///\r
1008/// The image failed to load.\r
1009///\r
959ccb23 1010#define RETURN_LOAD_ERROR ENCODE_ERROR (1)\r
f4ec40ab 1011\r
1012///\r
1013/// The parameter was incorrect.\r
1014///\r
959ccb23 1015#define RETURN_INVALID_PARAMETER ENCODE_ERROR (2)\r
f4ec40ab 1016\r
1017///\r
1018/// The operation is not supported.\r
1019///\r
959ccb23 1020#define RETURN_UNSUPPORTED ENCODE_ERROR (3)\r
f4ec40ab 1021\r
1022///\r
1023/// The buffer was not the proper size for the request.\r
1024///\r
959ccb23 1025#define RETURN_BAD_BUFFER_SIZE ENCODE_ERROR (4)\r
f4ec40ab 1026\r
1027///\r
1028/// The buffer was not large enough to hold the requested data.\r
1029/// The required buffer size is returned in the appropriate\r
1030/// parameter when this error occurs.\r
1031///\r
959ccb23 1032#define RETURN_BUFFER_TOO_SMALL ENCODE_ERROR (5)\r
f4ec40ab 1033\r
1034///\r
80619162 1035/// There is no data pending upon return.\r
f4ec40ab 1036///\r
959ccb23 1037#define RETURN_NOT_READY ENCODE_ERROR (6)\r
f4ec40ab 1038\r
1039///\r
1040/// The physical device reported an error while attempting the\r
1041/// operation.\r
1042///\r
959ccb23 1043#define RETURN_DEVICE_ERROR ENCODE_ERROR (7)\r
f4ec40ab 1044\r
1045///\r
1046/// The device can not be written to.\r
1047///\r
959ccb23 1048#define RETURN_WRITE_PROTECTED ENCODE_ERROR (8)\r
f4ec40ab 1049\r
1050///\r
1051/// The resource has run out.\r
1052///\r
959ccb23 1053#define RETURN_OUT_OF_RESOURCES ENCODE_ERROR (9)\r
f4ec40ab 1054\r
1055///\r
818ff8c2 1056/// An inconsistency was detected on the file system causing the\r
f4ec40ab 1057/// operation to fail.\r
1058///\r
959ccb23 1059#define RETURN_VOLUME_CORRUPTED ENCODE_ERROR (10)\r
f4ec40ab 1060\r
1061///\r
1062/// There is no more space on the file system.\r
1063///\r
959ccb23 1064#define RETURN_VOLUME_FULL ENCODE_ERROR (11)\r
f4ec40ab 1065\r
1066///\r
818ff8c2 1067/// The device does not contain any medium to perform the\r
f4ec40ab 1068/// operation.\r
1069///\r
959ccb23 1070#define RETURN_NO_MEDIA ENCODE_ERROR (12)\r
f4ec40ab 1071\r
1072///\r
1073/// The medium in the device has changed since the last\r
1074/// access.\r
1075///\r
959ccb23 1076#define RETURN_MEDIA_CHANGED ENCODE_ERROR (13)\r
f4ec40ab 1077\r
1078///\r
1079/// The item was not found.\r
1080///\r
959ccb23 1081#define RETURN_NOT_FOUND ENCODE_ERROR (14)\r
f4ec40ab 1082\r
1083///\r
1084/// Access was denied.\r
1085///\r
959ccb23 1086#define RETURN_ACCESS_DENIED ENCODE_ERROR (15)\r
f4ec40ab 1087\r
1088///\r
1089/// The server was not found or did not respond to the request.\r
1090///\r
959ccb23 1091#define RETURN_NO_RESPONSE ENCODE_ERROR (16)\r
f4ec40ab 1092\r
1093///\r
1094/// A mapping to the device does not exist.\r
1095///\r
959ccb23 1096#define RETURN_NO_MAPPING ENCODE_ERROR (17)\r
f4ec40ab 1097\r
1098///\r
1099/// A timeout time expired.\r
1100///\r
959ccb23 1101#define RETURN_TIMEOUT ENCODE_ERROR (18)\r
f4ec40ab 1102\r
1103///\r
1104/// The protocol has not been started.\r
1105///\r
959ccb23 1106#define RETURN_NOT_STARTED ENCODE_ERROR (19)\r
f4ec40ab 1107\r
1108///\r
1109/// The protocol has already been started.\r
1110///\r
959ccb23 1111#define RETURN_ALREADY_STARTED ENCODE_ERROR (20)\r
f4ec40ab 1112\r
1113///\r
1114/// The operation was aborted.\r
1115///\r
959ccb23 1116#define RETURN_ABORTED ENCODE_ERROR (21)\r
f4ec40ab 1117\r
1118///\r
727501bb 1119/// An ICMP error occurred during the network operation.\r
f4ec40ab 1120///\r
959ccb23 1121#define RETURN_ICMP_ERROR ENCODE_ERROR (22)\r
f4ec40ab 1122\r
1123///\r
727501bb 1124/// A TFTP error occurred during the network operation.\r
f4ec40ab 1125///\r
959ccb23 1126#define RETURN_TFTP_ERROR ENCODE_ERROR (23)\r
f4ec40ab 1127\r
1128///\r
727501bb 1129/// A protocol error occurred during the network operation.\r
f4ec40ab 1130///\r
959ccb23 1131#define RETURN_PROTOCOL_ERROR ENCODE_ERROR (24)\r
f4ec40ab 1132\r
1133///\r
1134/// A function encountered an internal version that was\r
727501bb 1135/// incompatible with a version requested by the caller.\r
f4ec40ab 1136///\r
959ccb23 1137#define RETURN_INCOMPATIBLE_VERSION ENCODE_ERROR (25)\r
f4ec40ab 1138\r
1139///\r
1140/// The function was not performed due to a security violation.\r
1141///\r
959ccb23 1142#define RETURN_SECURITY_VIOLATION ENCODE_ERROR (26)\r
f4ec40ab 1143\r
1144///\r
1145/// A CRC error was detected.\r
1146///\r
959ccb23 1147#define RETURN_CRC_ERROR ENCODE_ERROR (27)\r
f4ec40ab 1148\r
1149///\r
af2dc6a7 1150/// The beginning or end of media was reached.\r
f4ec40ab 1151///\r
959ccb23 1152#define RETURN_END_OF_MEDIA ENCODE_ERROR (28)\r
f4ec40ab 1153\r
1154///\r
1155/// The end of the file was reached.\r
1156///\r
959ccb23 1157#define RETURN_END_OF_FILE ENCODE_ERROR (31)\r
f4ec40ab 1158\r
1159///\r
1160/// The language specified was invalid.\r
1161///\r
54cf8780 1162#define RETURN_INVALID_LANGUAGE ENCODE_ERROR (32)\r
1163\r
76336e4e
SZ
1164///\r
1165/// The security status of the data is unknown or compromised\r
1166/// and the data must be updated or replaced to restore a valid\r
1167/// security status.\r
1168///\r
1169#define RETURN_COMPROMISED_DATA ENCODE_ERROR (33)\r
959ccb23 1170\r
10a3840f
ZL
1171///\r
1172/// A HTTP error occurred during the network operation.\r
1173///\r
1174#define RETURN_HTTP_ERROR ENCODE_ERROR (35)\r
1175\r
f4ec40ab 1176///\r
fbf926ad 1177/// The string contained one or more characters that\r
f4ec40ab 1178/// the device could not render and were skipped.\r
1179///\r
959ccb23 1180#define RETURN_WARN_UNKNOWN_GLYPH ENCODE_WARNING (1)\r
f4ec40ab 1181\r
1182///\r
1183/// The handle was closed, but the file was not deleted.\r
1184///\r
959ccb23 1185#define RETURN_WARN_DELETE_FAILURE ENCODE_WARNING (2)\r
f4ec40ab 1186\r
1187///\r
1188/// The handle was closed, but the data to the file was not\r
1189/// flushed properly.\r
1190///\r
959ccb23 1191#define RETURN_WARN_WRITE_FAILURE ENCODE_WARNING (3)\r
f4ec40ab 1192\r
1193///\r
818ff8c2 1194/// The resulting buffer was too small, and the data was\r
f4ec40ab 1195/// truncated to the buffer size.\r
1196///\r
959ccb23 1197#define RETURN_WARN_BUFFER_TOO_SMALL ENCODE_WARNING (4)\r
1198\r
76336e4e
SZ
1199///\r
1200/// The data has not been updated within the timeframe set by\r
1201/// local policy for this type of data.\r
1202///\r
1203#define RETURN_WARN_STALE_DATA ENCODE_WARNING (5)\r
1204\r
fed5f447
FS
1205///\r
1206/// The resulting buffer contains UEFI-compliant file system.\r
1207///\r
1208#define RETURN_WARN_FILE_SYSTEM ENCODE_WARNING (6)\r
1209\r
1210\r
a7cc3d26 1211/**\r
1212 Returns a 16-bit signature built from 2 ASCII characters.\r
818ff8c2 1213\r
1214 This macro returns a 16-bit value built from the two ASCII characters specified\r
3963c4bf 1215 by A and B.\r
818ff8c2 1216\r
ee6c452c 1217 @param A The first ASCII character.\r
1218 @param B The second ASCII character.\r
a7cc3d26 1219\r
1220 @return A 16-bit value built from the two ASCII characters specified by A and B.\r
1221\r
1222**/\r
13c31065 1223#define SIGNATURE_16(A, B) ((A) | (B << 8))\r
a7cc3d26 1224\r
1225/**\r
1226 Returns a 32-bit signature built from 4 ASCII characters.\r
818ff8c2 1227\r
1228 This macro returns a 32-bit value built from the four ASCII characters specified\r
3963c4bf 1229 by A, B, C, and D.\r
818ff8c2 1230\r
ee6c452c 1231 @param A The first ASCII character.\r
1232 @param B The second ASCII character.\r
1233 @param C The third ASCII character.\r
1234 @param D The fourth ASCII character.\r
a7cc3d26 1235\r
1236 @return A 32-bit value built from the two ASCII characters specified by A, B,\r
1237 C and D.\r
1238\r
1239**/\r
13c31065 1240#define SIGNATURE_32(A, B, C, D) (SIGNATURE_16 (A, B) | (SIGNATURE_16 (C, D) << 16))\r
a7cc3d26 1241\r
1242/**\r
1243 Returns a 64-bit signature built from 8 ASCII characters.\r
818ff8c2 1244\r
1245 This macro returns a 64-bit value built from the eight ASCII characters specified\r
3963c4bf 1246 by A, B, C, D, E, F, G,and H.\r
818ff8c2 1247\r
ee6c452c 1248 @param A The first ASCII character.\r
1249 @param B The second ASCII character.\r
1250 @param C The third ASCII character.\r
1251 @param D The fourth ASCII character.\r
1252 @param E The fifth ASCII character.\r
1253 @param F The sixth ASCII character.\r
1254 @param G The seventh ASCII character.\r
1255 @param H The eighth ASCII character.\r
a7cc3d26 1256\r
1257 @return A 64-bit value built from the two ASCII characters specified by A, B,\r
1258 C, D, E, F, G and H.\r
1259\r
1260**/\r
13c31065 1261#define SIGNATURE_64(A, B, C, D, E, F, G, H) \\r
1262 (SIGNATURE_32 (A, B, C, D) | ((UINT64) (SIGNATURE_32 (E, F, G, H)) << 32))\r
1263\r
62ec4a5e 1264#if defined(_MSC_EXTENSIONS) && !defined (__INTEL_COMPILER) && !defined (MDE_CPU_EBC)\r
ed6da357 1265 void * _ReturnAddress(void);\r
dad83a8c 1266 #pragma intrinsic(_ReturnAddress)\r
1db55d6a 1267 /**\r
2a3a91eb 1268 Get the return address of the calling function.\r
1db55d6a
SZ
1269\r
1270 Based on intrinsic function _ReturnAddress that provides the address of\r
1271 the instruction in the calling function that will be executed after\r
1272 control returns to the caller.\r
1273\r
1274 @param L Return Level.\r
1275\r
2a3a91eb 1276 @return The return address of the calling function or 0 if L != 0.\r
1db55d6a
SZ
1277\r
1278 **/\r
dad83a8c
SZ
1279 #define RETURN_ADDRESS(L) ((L == 0) ? _ReturnAddress() : (VOID *) 0)\r
1280#elif defined(__GNUC__)\r
dad83a8c 1281 void * __builtin_return_address (unsigned int level);\r
1db55d6a 1282 /**\r
2a3a91eb 1283 Get the return address of the calling function.\r
1db55d6a
SZ
1284\r
1285 Based on built-in Function __builtin_return_address that returns\r
1286 the return address of the current function, or of one of its callers.\r
1287\r
1288 @param L Return Level.\r
1289\r
2a3a91eb 1290 @return The return address of the calling function.\r
1db55d6a
SZ
1291\r
1292 **/\r
dad83a8c
SZ
1293 #define RETURN_ADDRESS(L) __builtin_return_address (L)\r
1294#else\r
1db55d6a 1295 /**\r
2a3a91eb 1296 Get the return address of the calling function.\r
1db55d6a
SZ
1297\r
1298 @param L Return Level.\r
1299\r
1300 @return 0 as compilers don't support this feature.\r
1301\r
1302 **/\r
dad83a8c
SZ
1303 #define RETURN_ADDRESS(L) ((VOID *) 0)\r
1304#endif\r
1305\r
c3ead528
LE
1306/**\r
1307 Return the number of elements in an array.\r
1308\r
1309 @param Array An object of array type. Array is only used as an argument to\r
1310 the sizeof operator, therefore Array is never evaluated. The\r
1311 caller is responsible for ensuring that Array's type is not\r
1312 incomplete; that is, Array must have known constant size.\r
1313\r
1314 @return The number of elements in Array. The result has type UINTN.\r
1315\r
1316**/\r
1317#define ARRAY_SIZE(Array) (sizeof (Array) / sizeof ((Array)[0]))\r
1318\r
959ccb23 1319#endif\r
1320\r