VirtualBox

source: vbox/trunk/include/VBox/vmm/dbgf.h@ 46197

Last change on this file since 46197 was 46167, checked in by vboxsync, 12 years ago

Buried DBGFSym.cpp and with it loadsyms - rip.

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1/** @file
2 * DBGF - Debugger Facility.
3 */
4
5/*
6 * Copyright (C) 2006-2013 Oracle Corporation
7 *
8 * This file is part of VirtualBox Open Source Edition (OSE), as
9 * available from http://www.virtualbox.org. This file is free software;
10 * you can redistribute it and/or modify it under the terms of the GNU
11 * General Public License (GPL) as published by the Free Software
12 * Foundation, in version 2 as it comes in the "COPYING" file of the
13 * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
14 * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
15 *
16 * The contents of this file may alternatively be used under the terms
17 * of the Common Development and Distribution License Version 1.0
18 * (CDDL) only, as it comes in the "COPYING.CDDL" file of the
19 * VirtualBox OSE distribution, in which case the provisions of the
20 * CDDL are applicable instead of those of the GPL.
21 *
22 * You may elect to license modified versions of this file under the
23 * terms and conditions of either the GPL or the CDDL or both.
24 */
25
26#ifndef ___VBox_vmm_dbgf_h
27#define ___VBox_vmm_dbgf_h
28
29#include <VBox/types.h>
30#include <VBox/log.h> /* LOG_ENABLED */
31#include <VBox/vmm/vmm.h>
32#include <VBox/vmm/dbgfsel.h>
33
34#include <iprt/stdarg.h>
35#include <iprt/dbg.h>
36
37RT_C_DECLS_BEGIN
38
39
40/** @defgroup grp_dbgf The Debugger Facility API
41 * @{
42 */
43
44#if defined(IN_RC) || defined(IN_RING0)
45/** @addgroup grp_dbgf_rz The RZ DBGF API
46 * @ingroup grp_dbgf
47 * @{
48 */
49VMMRZ_INT_DECL(int) DBGFRZTrap01Handler(PVM pVM, PVMCPU pVCpu, PCPUMCTXCORE pRegFrame, RTGCUINTREG uDr6);
50VMMRZ_INT_DECL(int) DBGFRZTrap03Handler(PVM pVM, PVMCPU pVCpu, PCPUMCTXCORE pRegFrame);
51/** @} */
52#endif
53
54
55
56#ifdef IN_RING3
57
58/**
59 * Mixed address.
60 */
61typedef struct DBGFADDRESS
62{
63 /** The flat address. */
64 RTGCUINTPTR FlatPtr;
65 /** The selector offset address. */
66 RTGCUINTPTR off;
67 /** The selector. DBGF_SEL_FLAT is a legal value. */
68 RTSEL Sel;
69 /** Flags describing further details about the address. */
70 uint16_t fFlags;
71} DBGFADDRESS;
72/** Pointer to a mixed address. */
73typedef DBGFADDRESS *PDBGFADDRESS;
74/** Pointer to a const mixed address. */
75typedef const DBGFADDRESS *PCDBGFADDRESS;
76
77/** @name DBGFADDRESS Flags.
78 * @{ */
79/** A 16:16 far address. */
80#define DBGFADDRESS_FLAGS_FAR16 0
81/** A 16:32 far address. */
82#define DBGFADDRESS_FLAGS_FAR32 1
83/** A 16:64 far address. */
84#define DBGFADDRESS_FLAGS_FAR64 2
85/** A flat address. */
86#define DBGFADDRESS_FLAGS_FLAT 3
87/** A physical address. */
88#define DBGFADDRESS_FLAGS_PHYS 4
89/** A physical address. */
90#define DBGFADDRESS_FLAGS_RING0 5
91/** The address type mask. */
92#define DBGFADDRESS_FLAGS_TYPE_MASK 7
93
94/** Set if the address is valid. */
95#define DBGFADDRESS_FLAGS_VALID RT_BIT(3)
96
97/** The address is within the hypervisor memoary area (HMA).
98 * If not set, the address can be assumed to be a guest address. */
99#define DBGFADDRESS_FLAGS_HMA RT_BIT(4)
100
101/** Checks if the mixed address is flat or not. */
102#define DBGFADDRESS_IS_FLAT(pAddress) ( ((pAddress)->fFlags & DBGFADDRESS_FLAGS_TYPE_MASK) == DBGFADDRESS_FLAGS_FLAT )
103/** Checks if the mixed address is flat or not. */
104#define DBGFADDRESS_IS_PHYS(pAddress) ( ((pAddress)->fFlags & DBGFADDRESS_FLAGS_TYPE_MASK) == DBGFADDRESS_FLAGS_PHYS )
105/** Checks if the mixed address is far 16:16 or not. */
106#define DBGFADDRESS_IS_FAR16(pAddress) ( ((pAddress)->fFlags & DBGFADDRESS_FLAGS_TYPE_MASK) == DBGFADDRESS_FLAGS_FAR16 )
107/** Checks if the mixed address is far 16:32 or not. */
108#define DBGFADDRESS_IS_FAR32(pAddress) ( ((pAddress)->fFlags & DBGFADDRESS_FLAGS_TYPE_MASK) == DBGFADDRESS_FLAGS_FAR32 )
109/** Checks if the mixed address is far 16:64 or not. */
110#define DBGFADDRESS_IS_FAR64(pAddress) ( ((pAddress)->fFlags & DBGFADDRESS_FLAGS_TYPE_MASK) == DBGFADDRESS_FLAGS_FAR64 )
111/** Checks if the mixed address is valid. */
112#define DBGFADDRESS_IS_VALID(pAddress) ( !!((pAddress)->fFlags & DBGFADDRESS_FLAGS_VALID) )
113/** Checks if the address is flagged as within the HMA. */
114#define DBGFADDRESS_IS_HMA(pAddress) ( !!((pAddress)->fFlags & DBGFADDRESS_FLAGS_HMA) )
115/** @} */
116
117VMMR3DECL(int) DBGFR3AddrFromSelOff(PUVM pUVM, VMCPUID idCpu, PDBGFADDRESS pAddress, RTSEL Sel, RTUINTPTR off);
118VMMR3DECL(int) DBGFR3AddrFromSelInfoOff(PUVM pUVM, PDBGFADDRESS pAddress, PCDBGFSELINFO pSelInfo, RTUINTPTR off);
119VMMR3DECL(PDBGFADDRESS) DBGFR3AddrFromFlat(PUVM pUVM, PDBGFADDRESS pAddress, RTGCUINTPTR FlatPtr);
120VMMR3DECL(PDBGFADDRESS) DBGFR3AddrFromPhys(PUVM pUVM, PDBGFADDRESS pAddress, RTGCPHYS PhysAddr);
121VMMR3DECL(bool) DBGFR3AddrIsValid(PUVM pUVM, PCDBGFADDRESS pAddress);
122VMMR3DECL(int) DBGFR3AddrToPhys(PUVM pUVM, VMCPUID idCpu, PDBGFADDRESS pAddress, PRTGCPHYS pGCPhys);
123VMMR3DECL(int) DBGFR3AddrToHostPhys(PUVM pUVM, VMCPUID idCpu, PDBGFADDRESS pAddress, PRTHCPHYS pHCPhys);
124VMMR3DECL(int) DBGFR3AddrToVolatileR3Ptr(PUVM pUVM, VMCPUID idCpu, PDBGFADDRESS pAddress, bool fReadOnly, void **ppvR3Ptr);
125VMMR3DECL(PDBGFADDRESS) DBGFR3AddrAdd(PDBGFADDRESS pAddress, RTGCUINTPTR uAddend);
126VMMR3DECL(PDBGFADDRESS) DBGFR3AddrSub(PDBGFADDRESS pAddress, RTGCUINTPTR uSubtrahend);
127
128#endif /* IN_RING3 */
129
130
131
132/**
133 * VMM Debug Event Type.
134 */
135typedef enum DBGFEVENTTYPE
136{
137 /** Halt completed.
138 * This notifies that a halt command have been successfully completed.
139 */
140 DBGFEVENT_HALT_DONE = 0,
141 /** Detach completed.
142 * This notifies that the detach command have been successfully completed.
143 */
144 DBGFEVENT_DETACH_DONE,
145 /** The command from the debugger is not recognized.
146 * This means internal error or half implemented features.
147 */
148 DBGFEVENT_INVALID_COMMAND,
149
150
151 /** Fatal error.
152 * This notifies a fatal error in the VMM and that the debugger get's a
153 * chance to first hand information about the the problem.
154 */
155 DBGFEVENT_FATAL_ERROR = 100,
156 /** Breakpoint Hit.
157 * This notifies that a breakpoint installed by the debugger was hit. The
158 * identifier of the breakpoint can be found in the DBGFEVENT::u::Bp::iBp member.
159 */
160 DBGFEVENT_BREAKPOINT,
161 /** Breakpoint Hit in the Hypervisor.
162 * This notifies that a breakpoint installed by the debugger was hit. The
163 * identifier of the breakpoint can be found in the DBGFEVENT::u::Bp::iBp member.
164 */
165 DBGFEVENT_BREAKPOINT_HYPER,
166 /** Assertion in the Hypervisor (breakpoint instruction).
167 * This notifies that a breakpoint instruction was hit in the hypervisor context.
168 */
169 DBGFEVENT_ASSERTION_HYPER,
170 /** Single Stepped.
171 * This notifies that a single step operation was completed.
172 */
173 DBGFEVENT_STEPPED,
174 /** Single Stepped.
175 * This notifies that a hypervisor single step operation was completed.
176 */
177 DBGFEVENT_STEPPED_HYPER,
178 /** The developer have used the DBGFSTOP macro or the PDMDeviceDBGFSTOP function
179 * to bring up the debugger at a specific place.
180 */
181 DBGFEVENT_DEV_STOP,
182 /** The VM is powering off.
183 * When this notification is received, the debugger thread should detach ASAP.
184 */
185 DBGFEVENT_POWERING_OFF,
186
187 /** The usual 32-bit hack. */
188 DBGFEVENT_32BIT_HACK = 0x7fffffff
189} DBGFEVENTTYPE;
190
191
192/**
193 * The context of an event.
194 */
195typedef enum DBGFEVENTCTX
196{
197 /** The usual invalid entry. */
198 DBGFEVENTCTX_INVALID = 0,
199 /** Raw mode. */
200 DBGFEVENTCTX_RAW,
201 /** Recompiled mode. */
202 DBGFEVENTCTX_REM,
203 /** VMX / AVT mode. */
204 DBGFEVENTCTX_HM,
205 /** Hypervisor context. */
206 DBGFEVENTCTX_HYPER,
207 /** Other mode */
208 DBGFEVENTCTX_OTHER,
209
210 /** The usual 32-bit hack */
211 DBGFEVENTCTX_32BIT_HACK = 0x7fffffff
212} DBGFEVENTCTX;
213
214/**
215 * VMM Debug Event.
216 */
217typedef struct DBGFEVENT
218{
219 /** Type. */
220 DBGFEVENTTYPE enmType;
221 /** Context */
222 DBGFEVENTCTX enmCtx;
223 /** Type specific data. */
224 union
225 {
226 /** Fatal error details. */
227 struct
228 {
229 /** The GC return code. */
230 int rc;
231 } FatalError;
232
233 /** Source location. */
234 struct
235 {
236 /** File name. */
237 R3PTRTYPE(const char *) pszFile;
238 /** Function name. */
239 R3PTRTYPE(const char *) pszFunction;
240 /** Message. */
241 R3PTRTYPE(const char *) pszMessage;
242 /** Line number. */
243 unsigned uLine;
244 } Src;
245
246 /** Assertion messages. */
247 struct
248 {
249 /** The first message. */
250 R3PTRTYPE(const char *) pszMsg1;
251 /** The second message. */
252 R3PTRTYPE(const char *) pszMsg2;
253 } Assert;
254
255 /** Breakpoint. */
256 struct DBGFEVENTBP
257 {
258 /** The identifier of the breakpoint which was hit. */
259 RTUINT iBp;
260 } Bp;
261 /** Padding for ensuring that the structure is 8 byte aligned. */
262 uint64_t au64Padding[4];
263 } u;
264} DBGFEVENT;
265/** Pointer to VMM Debug Event. */
266typedef DBGFEVENT *PDBGFEVENT;
267/** Pointer to const VMM Debug Event. */
268typedef const DBGFEVENT *PCDBGFEVENT;
269
270#ifdef IN_RING3 /* The event API only works in ring-3. */
271
272/** @def DBGFSTOP
273 * Stops the debugger raising a DBGFEVENT_DEVELOPER_STOP event.
274 *
275 * @returns VBox status code which must be propagated up to EM if not VINF_SUCCESS.
276 * @param pVM VM Handle.
277 */
278# ifdef VBOX_STRICT
279# define DBGFSTOP(pVM) DBGFR3EventSrc(pVM, DBGFEVENT_DEV_STOP, __FILE__, __LINE__, __PRETTY_FUNCTION__, NULL)
280# else
281# define DBGFSTOP(pVM) VINF_SUCCESS
282# endif
283
284VMMR3_INT_DECL(int) DBGFR3Init(PVM pVM);
285VMMR3_INT_DECL(int) DBGFR3Term(PVM pVM);
286VMMR3_INT_DECL(void) DBGFR3PowerOff(PVM pVM);
287VMMR3_INT_DECL(void) DBGFR3Relocate(PVM pVM, RTGCINTPTR offDelta);
288VMMR3_INT_DECL(int) DBGFR3VMMForcedAction(PVM pVM);
289VMMR3DECL(int) DBGFR3Event(PVM pVM, DBGFEVENTTYPE enmEvent);
290VMMR3DECL(int) DBGFR3EventSrc(PVM pVM, DBGFEVENTTYPE enmEvent, const char *pszFile, unsigned uLine,
291 const char *pszFunction, const char *pszFormat, ...);
292VMMR3DECL(int) DBGFR3EventSrcV(PVM pVM, DBGFEVENTTYPE enmEvent, const char *pszFile, unsigned uLine,
293 const char *pszFunction, const char *pszFormat, va_list args);
294VMMR3_INT_DECL(int) DBGFR3EventAssertion(PVM pVM, DBGFEVENTTYPE enmEvent, const char *pszMsg1, const char *pszMsg2);
295VMMR3_INT_DECL(int) DBGFR3EventBreakpoint(PVM pVM, DBGFEVENTTYPE enmEvent);
296VMMR3_INT_DECL(int) DBGFR3PrgStep(PVMCPU pVCpu);
297
298VMMR3DECL(int) DBGFR3Attach(PUVM pUVM);
299VMMR3DECL(int) DBGFR3Detach(PUVM pUVM);
300VMMR3DECL(int) DBGFR3EventWait(PUVM pUVM, RTMSINTERVAL cMillies, PCDBGFEVENT *ppEvent);
301VMMR3DECL(int) DBGFR3Halt(PUVM pUVM);
302VMMR3DECL(bool) DBGFR3IsHalted(PUVM pUVM);
303VMMR3DECL(int) DBGFR3QueryWaitable(PUVM pUVM);
304VMMR3DECL(int) DBGFR3Resume(PUVM pUVM);
305VMMR3DECL(int) DBGFR3Step(PUVM pUVM, VMCPUID idCpu);
306VMMR3DECL(int) DBGFR3InjectNMI(PUVM pUVM, VMCPUID idCpu);
307
308#endif /* IN_RING3 */
309
310
311
312/** Breakpoint type. */
313typedef enum DBGFBPTYPE
314{
315 /** Free breakpoint entry. */
316 DBGFBPTYPE_FREE = 0,
317 /** Debug register. */
318 DBGFBPTYPE_REG,
319 /** INT 3 instruction. */
320 DBGFBPTYPE_INT3,
321 /** Recompiler. */
322 DBGFBPTYPE_REM,
323 /** ensure 32-bit size. */
324 DBGFBPTYPE_32BIT_HACK = 0x7fffffff
325} DBGFBPTYPE;
326
327
328/**
329 * A Breakpoint.
330 */
331typedef struct DBGFBP
332{
333 /** The number of breakpoint hits. */
334 uint64_t cHits;
335 /** The hit number which starts to trigger the breakpoint. */
336 uint64_t iHitTrigger;
337 /** The hit number which stops triggering the breakpoint (disables it).
338 * Use ~(uint64_t)0 if it should never stop. */
339 uint64_t iHitDisable;
340 /** The Flat GC address of the breakpoint.
341 * (PC register value if REM type?) */
342 RTGCUINTPTR GCPtr;
343 /** The breakpoint id. */
344 uint32_t iBp;
345 /** The breakpoint status - enabled or disabled. */
346 bool fEnabled;
347
348 /** The breakpoint type. */
349 DBGFBPTYPE enmType;
350
351#if GC_ARCH_BITS == 64
352 uint32_t u32Padding;
353#endif
354
355 /** Union of type specific data. */
356 union
357 {
358 /** Debug register data. */
359 struct DBGFBPREG
360 {
361 /** The debug register number. */
362 uint8_t iReg;
363 /** The access type (one of the X86_DR7_RW_* value). */
364 uint8_t fType;
365 /** The access size. */
366 uint8_t cb;
367 } Reg;
368 /** Recompiler breakpoint data. */
369 struct DBGFBPINT3
370 {
371 /** The byte value we replaced by the INT 3 instruction. */
372 uint8_t bOrg;
373 } Int3;
374
375 /** Recompiler breakpoint data. */
376 struct DBGFBPREM
377 {
378 /** nothing yet */
379 uint8_t fDummy;
380 } Rem;
381 /** Paddind to ensure that the size is identical on win32 and linux. */
382 uint64_t u64Padding;
383 } u;
384} DBGFBP;
385
386/** Pointer to a breakpoint. */
387typedef DBGFBP *PDBGFBP;
388/** Pointer to a const breakpoint. */
389typedef const DBGFBP *PCDBGFBP;
390
391#ifdef IN_RING3 /* The breakpoint management API is only available in ring-3. */
392VMMR3DECL(int) DBGFR3BpSet(PUVM pUVM, PCDBGFADDRESS pAddress, uint64_t iHitTrigger, uint64_t iHitDisable, uint32_t *piBp);
393VMMR3DECL(int) DBGFR3BpSetReg(PUVM pUVM, PCDBGFADDRESS pAddress, uint64_t iHitTrigger, uint64_t iHitDisable,
394 uint8_t fType, uint8_t cb, uint32_t *piBp);
395VMMR3DECL(int) DBGFR3BpSetREM(PUVM pUVM, PCDBGFADDRESS pAddress, uint64_t iHitTrigger, uint64_t iHitDisable, uint32_t *piBp);
396VMMR3DECL(int) DBGFR3BpClear(PUVM pUVM, uint32_t iBp);
397VMMR3DECL(int) DBGFR3BpEnable(PUVM pUVM, uint32_t iBp);
398VMMR3DECL(int) DBGFR3BpDisable(PUVM pUVM, uint32_t iBp);
399
400/**
401 * Breakpoint enumeration callback function.
402 *
403 * @returns VBox status code. Any failure will stop the enumeration.
404 * @param pUVM The user mode VM handle.
405 * @param pvUser The user argument.
406 * @param pBp Pointer to the breakpoint information. (readonly)
407 */
408typedef DECLCALLBACK(int) FNDBGFBPENUM(PUVM pUVM, void *pvUser, PCDBGFBP pBp);
409/** Pointer to a breakpoint enumeration callback function. */
410typedef FNDBGFBPENUM *PFNDBGFBPENUM;
411
412VMMR3DECL(int) DBGFR3BpEnum(PUVM pUVM, PFNDBGFBPENUM pfnCallback, void *pvUser);
413#endif /* IN_RING3 */
414
415VMM_INT_DECL(RTGCUINTREG) DBGFBpGetDR7(PVM pVM);
416VMM_INT_DECL(RTGCUINTREG) DBGFBpGetDR0(PVM pVM);
417VMM_INT_DECL(RTGCUINTREG) DBGFBpGetDR1(PVM pVM);
418VMM_INT_DECL(RTGCUINTREG) DBGFBpGetDR2(PVM pVM);
419VMM_INT_DECL(RTGCUINTREG) DBGFBpGetDR3(PVM pVM);
420VMM_INT_DECL(bool) DBGFIsStepping(PVMCPU pVCpu);
421
422
423#ifdef IN_RING3 /* The CPU mode API only works in ring-3. */
424VMMR3DECL(CPUMMODE) DBGFR3CpuGetMode(PUVM pUVM, VMCPUID idCpu);
425VMMR3DECL(VMCPUID) DBGFR3CpuGetCount(PUVM pUVM);
426#endif
427
428
429
430#ifdef IN_RING3 /* The info callbacks API only works in ring-3. */
431
432/**
433 * Info helper callback structure.
434 */
435typedef struct DBGFINFOHLP
436{
437 /**
438 * Print formatted string.
439 *
440 * @param pHlp Pointer to this structure.
441 * @param pszFormat The format string.
442 * @param ... Arguments.
443 */
444 DECLCALLBACKMEMBER(void, pfnPrintf)(PCDBGFINFOHLP pHlp, const char *pszFormat, ...);
445
446 /**
447 * Print formatted string.
448 *
449 * @param pHlp Pointer to this structure.
450 * @param pszFormat The format string.
451 * @param args Argument list.
452 */
453 DECLCALLBACKMEMBER(void, pfnPrintfV)(PCDBGFINFOHLP pHlp, const char *pszFormat, va_list args);
454} DBGFINFOHLP;
455
456
457/**
458 * Info handler, device version.
459 *
460 * @param pDevIns The device instance which registered the info.
461 * @param pHlp Callback functions for doing output.
462 * @param pszArgs Argument string. Optional and specific to the handler.
463 */
464typedef DECLCALLBACK(void) FNDBGFHANDLERDEV(PPDMDEVINS pDevIns, PCDBGFINFOHLP pHlp, const char *pszArgs);
465/** Pointer to a FNDBGFHANDLERDEV function. */
466typedef FNDBGFHANDLERDEV *PFNDBGFHANDLERDEV;
467
468/**
469 * Info handler, USB device version.
470 *
471 * @param pUsbIns The USB device instance which registered the info.
472 * @param pHlp Callback functions for doing output.
473 * @param pszArgs Argument string. Optional and specific to the handler.
474 */
475typedef DECLCALLBACK(void) FNDBGFHANDLERUSB(PPDMUSBINS pUsbIns, PCDBGFINFOHLP pHlp, const char *pszArgs);
476/** Pointer to a FNDBGFHANDLERUSB function. */
477typedef FNDBGFHANDLERUSB *PFNDBGFHANDLERUSB;
478
479/**
480 * Info handler, driver version.
481 *
482 * @param pDrvIns The driver instance which registered the info.
483 * @param pHlp Callback functions for doing output.
484 * @param pszArgs Argument string. Optional and specific to the handler.
485 */
486typedef DECLCALLBACK(void) FNDBGFHANDLERDRV(PPDMDRVINS pDrvIns, PCDBGFINFOHLP pHlp, const char *pszArgs);
487/** Pointer to a FNDBGFHANDLERDRV function. */
488typedef FNDBGFHANDLERDRV *PFNDBGFHANDLERDRV;
489
490/**
491 * Info handler, internal version.
492 *
493 * @param pVM The VM handle.
494 * @param pHlp Callback functions for doing output.
495 * @param pszArgs Argument string. Optional and specific to the handler.
496 */
497typedef DECLCALLBACK(void) FNDBGFHANDLERINT(PVM pVM, PCDBGFINFOHLP pHlp, const char *pszArgs);
498/** Pointer to a FNDBGFHANDLERINT function. */
499typedef FNDBGFHANDLERINT *PFNDBGFHANDLERINT;
500
501/**
502 * Info handler, external version.
503 *
504 * @param pvUser User argument.
505 * @param pHlp Callback functions for doing output.
506 * @param pszArgs Argument string. Optional and specific to the handler.
507 */
508typedef DECLCALLBACK(void) FNDBGFHANDLEREXT(void *pvUser, PCDBGFINFOHLP pHlp, const char *pszArgs);
509/** Pointer to a FNDBGFHANDLEREXT function. */
510typedef FNDBGFHANDLEREXT *PFNDBGFHANDLEREXT;
511
512
513/** @name Flags for the info registration functions.
514 * @{ */
515/** The handler must run on the EMT. */
516#define DBGFINFO_FLAGS_RUN_ON_EMT RT_BIT(0)
517/** @} */
518
519VMMR3_INT_DECL(int) DBGFR3InfoRegisterDevice(PVM pVM, const char *pszName, const char *pszDesc, PFNDBGFHANDLERDEV pfnHandler, PPDMDEVINS pDevIns);
520VMMR3_INT_DECL(int) DBGFR3InfoRegisterDriver(PVM pVM, const char *pszName, const char *pszDesc, PFNDBGFHANDLERDRV pfnHandler, PPDMDRVINS pDrvIns);
521VMMR3_INT_DECL(int) DBGFR3InfoRegisterInternal(PVM pVM, const char *pszName, const char *pszDesc, PFNDBGFHANDLERINT pfnHandler);
522VMMR3_INT_DECL(int) DBGFR3InfoRegisterInternalEx(PVM pVM, const char *pszName, const char *pszDesc, PFNDBGFHANDLERINT pfnHandler, uint32_t fFlags);
523VMMR3DECL(int) DBGFR3InfoRegisterExternal(PUVM pUVM, const char *pszName, const char *pszDesc, PFNDBGFHANDLEREXT pfnHandler, void *pvUser);
524VMMR3_INT_DECL(int) DBGFR3InfoDeregisterDevice(PVM pVM, PPDMDEVINS pDevIns, const char *pszName);
525VMMR3_INT_DECL(int) DBGFR3InfoDeregisterDriver(PVM pVM, PPDMDRVINS pDrvIns, const char *pszName);
526VMMR3_INT_DECL(int) DBGFR3InfoDeregisterInternal(PVM pVM, const char *pszName);
527VMMR3DECL(int) DBGFR3InfoDeregisterExternal(PUVM pUVM, const char *pszName);
528VMMR3DECL(int) DBGFR3Info(PUVM pUVM, const char *pszName, const char *pszArgs, PCDBGFINFOHLP pHlp);
529VMMR3DECL(int) DBGFR3InfoEx(PUVM pUVM, VMCPUID idCpu, const char *pszName, const char *pszArgs, PCDBGFINFOHLP pHlp);
530VMMR3DECL(int) DBGFR3InfoLogRel(PUVM pUVM, const char *pszName, const char *pszArgs);
531VMMR3DECL(int) DBGFR3InfoStdErr(PUVM pUVM, const char *pszName, const char *pszArgs);
532VMMR3_INT_DECL(int) DBGFR3InfoMulti(PVM pVM, const char *pszIncludePat, const char *pszExcludePat,
533 const char *pszSepFmt, PCDBGFINFOHLP pHlp);
534
535/** @def DBGFR3InfoLog
536 * Display a piece of info writing to the log if enabled.
537 *
538 * @param a_pVM The shared VM handle.
539 * @param a_pszName The identifier of the info to display.
540 * @param a_pszArgs Arguments to the info handler.
541 */
542#ifdef LOG_ENABLED
543# define DBGFR3_INFO_LOG(a_pVM, a_pszName, a_pszArgs) \
544 do { \
545 if (LogIsEnabled()) \
546 DBGFR3Info((a_pVM)->pUVM, a_pszName, a_pszArgs, NULL); \
547 } while (0)
548#else
549# define DBGFR3_INFO_LOG(a_pVM, a_pszName, a_pszArgs) do { } while (0)
550#endif
551
552/**
553 * Enumeration callback for use with DBGFR3InfoEnum.
554 *
555 * @returns VBox status code.
556 * A status code indicating failure will end the enumeration
557 * and DBGFR3InfoEnum will return with that status code.
558 * @param pUVM The user mode VM handle.
559 * @param pszName Info identifier name.
560 * @param pszDesc The description.
561 */
562typedef DECLCALLBACK(int) FNDBGFINFOENUM(PUVM pUVM, const char *pszName, const char *pszDesc, void *pvUser);
563/** Pointer to a FNDBGFINFOENUM function. */
564typedef FNDBGFINFOENUM *PFNDBGFINFOENUM;
565
566VMMR3DECL(int) DBGFR3InfoEnum(PUVM pUVM, PFNDBGFINFOENUM pfnCallback, void *pvUser);
567VMMR3DECL(PCDBGFINFOHLP) DBGFR3InfoLogHlp(void);
568VMMR3DECL(PCDBGFINFOHLP) DBGFR3InfoLogRelHlp(void);
569
570#endif /* IN_RING3 */
571
572
573#ifdef IN_RING3 /* The log contrl API only works in ring-3. */
574VMMR3DECL(int) DBGFR3LogModifyGroups(PUVM pUVM, const char *pszGroupSettings);
575VMMR3DECL(int) DBGFR3LogModifyFlags(PUVM pUVM, const char *pszFlagSettings);
576VMMR3DECL(int) DBGFR3LogModifyDestinations(PUVM pUVM, const char *pszDestSettings);
577#endif /* IN_RING3 */
578
579#ifdef IN_RING3 /* The debug information management APIs only works in ring-3. */
580
581/** Max length (including '\\0') of a symbol name. */
582#define DBGF_SYMBOL_NAME_LENGTH 512
583
584/**
585 * Debug symbol.
586 */
587typedef struct DBGFSYMBOL
588{
589 /** Symbol value (address). */
590 RTGCUINTPTR Value;
591 /** Symbol size. */
592 uint32_t cb;
593 /** Symbol Flags. (reserved). */
594 uint32_t fFlags;
595 /** Symbol name. */
596 char szName[DBGF_SYMBOL_NAME_LENGTH];
597} DBGFSYMBOL;
598/** Pointer to debug symbol. */
599typedef DBGFSYMBOL *PDBGFSYMBOL;
600/** Pointer to const debug symbol. */
601typedef const DBGFSYMBOL *PCDBGFSYMBOL;
602
603/**
604 * Debug line number information.
605 */
606typedef struct DBGFLINE
607{
608 /** Address. */
609 RTGCUINTPTR Address;
610 /** Line number. */
611 uint32_t uLineNo;
612 /** Filename. */
613 char szFilename[260];
614} DBGFLINE;
615/** Pointer to debug line number. */
616typedef DBGFLINE *PDBGFLINE;
617/** Pointer to const debug line number. */
618typedef const DBGFLINE *PCDBGFLINE;
619
620/** @name Address spaces aliases.
621 * @{ */
622/** The guest global address space. */
623#define DBGF_AS_GLOBAL ((RTDBGAS)-1)
624/** The guest kernel address space.
625 * This is usually resolves to the same as DBGF_AS_GLOBAL. */
626#define DBGF_AS_KERNEL ((RTDBGAS)-2)
627/** The physical address space. */
628#define DBGF_AS_PHYS ((RTDBGAS)-3)
629/** Raw-mode context. */
630#define DBGF_AS_RC ((RTDBGAS)-4)
631/** Ring-0 context. */
632#define DBGF_AS_R0 ((RTDBGAS)-5)
633/** Raw-mode context and then global guest context.
634 * When used for looking up information, it works as if the call was first made
635 * with DBGF_AS_RC and then on failure with DBGF_AS_GLOBAL. When called for
636 * making address space changes, it works as if DBGF_AS_RC was used. */
637#define DBGF_AS_RC_AND_GC_GLOBAL ((RTDBGAS)-6)
638
639/** The first special one. */
640#define DBGF_AS_FIRST DBGF_AS_RC_AND_GC_GLOBAL
641/** The last special one. */
642#define DBGF_AS_LAST DBGF_AS_GLOBAL
643#endif
644/** The number of special address space handles. */
645#define DBGF_AS_COUNT (6U)
646#ifdef IN_RING3
647/** Converts an alias handle to an array index. */
648#define DBGF_AS_ALIAS_2_INDEX(hAlias) \
649 ( (uintptr_t)(hAlias) - (uintptr_t)DBGF_AS_FIRST )
650/** Predicat macro that check if the specified handle is an alias. */
651#define DBGF_AS_IS_ALIAS(hAlias) \
652 ( DBGF_AS_ALIAS_2_INDEX(hAlias) < DBGF_AS_COUNT )
653/** Predicat macro that check if the specified alias is a fixed one or not. */
654#define DBGF_AS_IS_FIXED_ALIAS(hAlias) \
655 ( DBGF_AS_ALIAS_2_INDEX(hAlias) < (uintptr_t)DBGF_AS_PHYS - (uintptr_t)DBGF_AS_FIRST + 1U )
656
657/** @} */
658
659VMMR3DECL(RTDBGCFG) DBGFR3AsGetConfig(PUVM pUVM);
660
661VMMR3DECL(int) DBGFR3AsAdd(PUVM pUVM, RTDBGAS hDbgAs, RTPROCESS ProcId);
662VMMR3DECL(int) DBGFR3AsDelete(PUVM pUVM, RTDBGAS hDbgAs);
663VMMR3DECL(int) DBGFR3AsSetAlias(PUVM pUVM, RTDBGAS hAlias, RTDBGAS hAliasFor);
664VMMR3DECL(RTDBGAS) DBGFR3AsResolve(PUVM pUVM, RTDBGAS hAlias);
665VMMR3DECL(RTDBGAS) DBGFR3AsResolveAndRetain(PUVM pUVM, RTDBGAS hAlias);
666VMMR3DECL(RTDBGAS) DBGFR3AsQueryByName(PUVM pUVM, const char *pszName);
667VMMR3DECL(RTDBGAS) DBGFR3AsQueryByPid(PUVM pUVM, RTPROCESS ProcId);
668
669VMMR3DECL(int) DBGFR3AsLoadImage(PUVM pUVM, RTDBGAS hDbgAs, const char *pszFilename, const char *pszModName, PCDBGFADDRESS pModAddress, RTDBGSEGIDX iModSeg, uint32_t fFlags);
670VMMR3DECL(int) DBGFR3AsLoadMap(PUVM pUVM, RTDBGAS hDbgAs, const char *pszFilename, const char *pszModName, PCDBGFADDRESS pModAddress, RTDBGSEGIDX iModSeg, RTGCUINTPTR uSubtrahend, uint32_t fFlags);
671VMMR3DECL(int) DBGFR3AsLinkModule(PUVM pUVM, RTDBGAS hDbgAs, RTDBGMOD hMod, PCDBGFADDRESS pModAddress, RTDBGSEGIDX iModSeg, uint32_t fFlags);
672
673VMMR3DECL(int) DBGFR3AsSymbolByAddr(PUVM pUVM, RTDBGAS hDbgAs, PCDBGFADDRESS pAddress, uint32_t fFlags,
674 PRTGCINTPTR poffDisp, PRTDBGSYMBOL pSymbol, PRTDBGMOD phMod);
675VMMR3DECL(PRTDBGSYMBOL) DBGFR3AsSymbolByAddrA(PUVM pUVM, RTDBGAS hDbgAs, PCDBGFADDRESS pAddress, uint32_t Flags,
676 PRTGCINTPTR poffDisp, PRTDBGMOD phMod);
677VMMR3DECL(int) DBGFR3AsSymbolByName(PUVM pUVM, RTDBGAS hDbgAs, const char *pszSymbol, PRTDBGSYMBOL pSymbol, PRTDBGMOD phMod);
678
679VMMR3DECL(int) DBGFR3AsLineByAddr(PUVM pUVM, RTDBGAS hDbgAs, PCDBGFADDRESS pAddress,
680 PRTGCINTPTR poffDisp, PRTDBGLINE pLine, PRTDBGMOD phMod);
681VMMR3DECL(PRTDBGLINE) DBGFR3AsLineByAddrA(PUVM pUVM, RTDBGAS hDbgAs, PCDBGFADDRESS pAddress,
682 PRTGCINTPTR poffDisp, PRTDBGMOD phMod);
683
684#endif /* IN_RING3 */
685
686#ifdef IN_RING3 /* The stack API only works in ring-3. */
687
688/**
689 * Return type.
690 */
691typedef enum DBGFRETRUNTYPE
692{
693 /** The usual invalid 0 value. */
694 DBGFRETURNTYPE_INVALID = 0,
695 /** Near 16-bit return. */
696 DBGFRETURNTYPE_NEAR16,
697 /** Near 32-bit return. */
698 DBGFRETURNTYPE_NEAR32,
699 /** Near 64-bit return. */
700 DBGFRETURNTYPE_NEAR64,
701 /** Far 16:16 return. */
702 DBGFRETURNTYPE_FAR16,
703 /** Far 16:32 return. */
704 DBGFRETURNTYPE_FAR32,
705 /** Far 16:64 return. */
706 DBGFRETURNTYPE_FAR64,
707 /** 16-bit iret return (e.g. real or 286 protect mode). */
708 DBGFRETURNTYPE_IRET16,
709 /** 32-bit iret return. */
710 DBGFRETURNTYPE_IRET32,
711 /** 32-bit iret return. */
712 DBGFRETURNTYPE_IRET32_PRIV,
713 /** 32-bit iret return to V86 mode. */
714 DBGFRETURNTYPE_IRET32_V86,
715 /** @todo 64-bit iret return. */
716 DBGFRETURNTYPE_IRET64,
717 /** The end of the valid return types. */
718 DBGFRETURNTYPE_END,
719 /** The usual 32-bit blowup. */
720 DBGFRETURNTYPE_32BIT_HACK = 0x7fffffff
721} DBGFRETURNTYPE;
722
723/**
724 * Figures the size of the return state on the stack.
725 *
726 * @returns number of bytes. 0 if invalid parameter.
727 * @param enmRetType The type of return.
728 */
729DECLINLINE(unsigned) DBGFReturnTypeSize(DBGFRETURNTYPE enmRetType)
730{
731 switch (enmRetType)
732 {
733 case DBGFRETURNTYPE_NEAR16: return 2;
734 case DBGFRETURNTYPE_NEAR32: return 4;
735 case DBGFRETURNTYPE_NEAR64: return 8;
736 case DBGFRETURNTYPE_FAR16: return 4;
737 case DBGFRETURNTYPE_FAR32: return 4;
738 case DBGFRETURNTYPE_FAR64: return 8;
739 case DBGFRETURNTYPE_IRET16: return 6;
740 case DBGFRETURNTYPE_IRET32: return 4*3;
741 case DBGFRETURNTYPE_IRET32_PRIV: return 4*5;
742 case DBGFRETURNTYPE_IRET32_V86: return 4*9;
743 case DBGFRETURNTYPE_IRET64:
744 default:
745 return 0;
746 }
747}
748
749
750/** Pointer to stack frame info. */
751typedef struct DBGFSTACKFRAME *PDBGFSTACKFRAME;
752/** Pointer to const stack frame info. */
753typedef struct DBGFSTACKFRAME const *PCDBGFSTACKFRAME;
754/**
755 * Info about a stack frame.
756 */
757typedef struct DBGFSTACKFRAME
758{
759 /** Frame number. */
760 uint32_t iFrame;
761 /** Frame flags. */
762 uint32_t fFlags;
763 /** The frame address.
764 * The off member is [e|r]bp and the Sel member is ss. */
765 DBGFADDRESS AddrFrame;
766 /** The stack address of the frame.
767 * The off member is [e|r]sp and the Sel member is ss. */
768 DBGFADDRESS AddrStack;
769 /** The program counter (PC) address of the frame.
770 * The off member is [e|r]ip and the Sel member is cs. */
771 DBGFADDRESS AddrPC;
772 /** Pointer to the symbol nearest the program counter (PC). NULL if not found. */
773 PRTDBGSYMBOL pSymPC;
774 /** Pointer to the linnumber nearest the program counter (PC). NULL if not found. */
775 PRTDBGLINE pLinePC;
776
777 /** The return frame address.
778 * The off member is [e|r]bp and the Sel member is ss. */
779 DBGFADDRESS AddrReturnFrame;
780 /** The return stack address.
781 * The off member is [e|r]sp and the Sel member is ss. */
782 DBGFADDRESS AddrReturnStack;
783 /** The way this frame returns to the next one. */
784 DBGFRETURNTYPE enmReturnType;
785
786 /** The program counter (PC) address which the frame returns to.
787 * The off member is [e|r]ip and the Sel member is cs. */
788 DBGFADDRESS AddrReturnPC;
789 /** Pointer to the symbol nearest the return PC. NULL if not found. */
790 PRTDBGSYMBOL pSymReturnPC;
791 /** Pointer to the linnumber nearest the return PC. NULL if not found. */
792 PRTDBGLINE pLineReturnPC;
793
794 /** 32-bytes of stack arguments. */
795 union
796 {
797 /** 64-bit view */
798 uint64_t au64[4];
799 /** 32-bit view */
800 uint32_t au32[8];
801 /** 16-bit view */
802 uint16_t au16[16];
803 /** 8-bit view */
804 uint8_t au8[32];
805 } Args;
806
807 /** Pointer to the next frame.
808 * Might not be used in some cases, so consider it internal. */
809 PCDBGFSTACKFRAME pNextInternal;
810 /** Pointer to the first frame.
811 * Might not be used in some cases, so consider it internal. */
812 PCDBGFSTACKFRAME pFirstInternal;
813} DBGFSTACKFRAME;
814
815/** @name DBGFSTACKFRAME Flags.
816 * @{ */
817/** Set if the content of the frame is filled in by DBGFR3StackWalk() and can be used
818 * to construct the next frame. */
819# define DBGFSTACKFRAME_FLAGS_ALL_VALID RT_BIT(0)
820/** This is the last stack frame we can read.
821 * This flag is not set if the walk stop because of max dept or recursion. */
822# define DBGFSTACKFRAME_FLAGS_LAST RT_BIT(1)
823/** This is the last record because we detected a loop. */
824# define DBGFSTACKFRAME_FLAGS_LOOP RT_BIT(2)
825/** This is the last record because we reached the maximum depth. */
826# define DBGFSTACKFRAME_FLAGS_MAX_DEPTH RT_BIT(3)
827/** 16-bit frame. */
828# define DBGFSTACKFRAME_FLAGS_16BIT RT_BIT(4)
829/** 32-bit frame. */
830# define DBGFSTACKFRAME_FLAGS_32BIT RT_BIT(5)
831/** 64-bit frame. */
832# define DBGFSTACKFRAME_FLAGS_64BIT RT_BIT(6)
833/** @} */
834
835/** @name DBGFCODETYPE
836 * @{ */
837typedef enum DBGFCODETYPE
838{
839 /** The usual invalid 0 value. */
840 DBGFCODETYPE_INVALID = 0,
841 /** Stack walk for guest code. */
842 DBGFCODETYPE_GUEST,
843 /** Stack walk for hypervisor code. */
844 DBGFCODETYPE_HYPER,
845 /** Stack walk for ring 0 code. */
846 DBGFCODETYPE_RING0,
847 /** The usual 32-bit blowup. */
848 DBGFCODETYPE_32BIT_HACK = 0x7fffffff
849} DBGFCODETYPE;
850/** @} */
851
852VMMR3DECL(int) DBGFR3StackWalkBegin(PUVM pUVM, VMCPUID idCpu, DBGFCODETYPE enmCodeType,
853 PCDBGFSTACKFRAME *ppFirstFrame);
854VMMR3DECL(int) DBGFR3StackWalkBeginEx(PUVM pUVM, VMCPUID idCpu, DBGFCODETYPE enmCodeType, PCDBGFADDRESS pAddrFrame,
855 PCDBGFADDRESS pAddrStack,PCDBGFADDRESS pAddrPC,
856 DBGFRETURNTYPE enmReturnType, PCDBGFSTACKFRAME *ppFirstFrame);
857VMMR3DECL(PCDBGFSTACKFRAME) DBGFR3StackWalkNext(PCDBGFSTACKFRAME pCurrent);
858VMMR3DECL(void) DBGFR3StackWalkEnd(PCDBGFSTACKFRAME pFirstFrame);
859
860#endif /* IN_RING3 */
861
862
863#ifdef IN_RING3 /* The disassembly API only works in ring-3. */
864
865/** Flags to pass to DBGFR3DisasInstrEx().
866 * @{ */
867/** Disassemble the current guest instruction, with annotations. */
868#define DBGF_DISAS_FLAGS_CURRENT_GUEST RT_BIT(0)
869/** Disassemble the current hypervisor instruction, with annotations. */
870#define DBGF_DISAS_FLAGS_CURRENT_HYPER RT_BIT(1)
871/** No annotations for current context. */
872#define DBGF_DISAS_FLAGS_NO_ANNOTATION RT_BIT(2)
873/** No symbol lookup. */
874#define DBGF_DISAS_FLAGS_NO_SYMBOLS RT_BIT(3)
875/** No instruction bytes. */
876#define DBGF_DISAS_FLAGS_NO_BYTES RT_BIT(4)
877/** No address in the output. */
878#define DBGF_DISAS_FLAGS_NO_ADDRESS RT_BIT(5)
879/** Probably a hypervisor instruction. */
880#define DBGF_DISAS_FLAGS_HYPER RT_BIT(6)
881/** Disassemble original unpatched bytes (PATM). */
882#define DBGF_DISAS_FLAGS_UNPATCHED_BYTES RT_BIT(7)
883/** Annotate patched instructions. */
884#define DBGF_DISAS_FLAGS_ANNOTATE_PATCHED RT_BIT(8)
885/** Disassemble in the default mode of the specific context. */
886#define DBGF_DISAS_FLAGS_DEFAULT_MODE UINT32_C(0x00000000)
887/** Disassemble in 16-bit mode. */
888#define DBGF_DISAS_FLAGS_16BIT_MODE UINT32_C(0x10000000)
889/** Disassemble in 16-bit mode with real mode address translation. */
890#define DBGF_DISAS_FLAGS_16BIT_REAL_MODE UINT32_C(0x20000000)
891/** Disassemble in 32-bit mode. */
892#define DBGF_DISAS_FLAGS_32BIT_MODE UINT32_C(0x30000000)
893/** Disassemble in 64-bit mode. */
894#define DBGF_DISAS_FLAGS_64BIT_MODE UINT32_C(0x40000000)
895/** The disassembly mode mask. */
896#define DBGF_DISAS_FLAGS_MODE_MASK UINT32_C(0x70000000)
897/** Mask containing the valid flags. */
898#define DBGF_DISAS_FLAGS_VALID_MASK UINT32_C(0x700001ff)
899/** @} */
900
901/** Special flat selector. */
902#define DBGF_SEL_FLAT 1
903
904VMMR3DECL(int) DBGFR3DisasInstrEx(PUVM pUVM, VMCPUID idCpu, RTSEL Sel, RTGCPTR GCPtr, uint32_t fFlags,
905 char *pszOutput, uint32_t cbOutput, uint32_t *pcbInstr);
906VMMR3_INT_DECL(int) DBGFR3DisasInstrCurrent(PVMCPU pVCpu, char *pszOutput, uint32_t cbOutput);
907VMMR3DECL(int) DBGFR3DisasInstrCurrentLogInternal(PVMCPU pVCpu, const char *pszPrefix);
908
909/** @def DBGFR3DisasInstrCurrentLog
910 * Disassembles the current guest context instruction and writes it to the log.
911 * All registers and data will be displayed. Addresses will be attempted resolved to symbols.
912 */
913#ifdef LOG_ENABLED
914# define DBGFR3_DISAS_INSTR_CUR_LOG(pVCpu, pszPrefix) \
915 do { \
916 if (LogIsEnabled()) \
917 DBGFR3DisasInstrCurrentLogInternal(pVCpu, pszPrefix); \
918 } while (0)
919#else
920# define DBGFR3_DISAS_INSTR_CUR_LOG(pVCpu, pszPrefix) do { } while (0)
921#endif
922
923VMMR3DECL(int) DBGFR3DisasInstrLogInternal(PVMCPU pVCpu, RTSEL Sel, RTGCPTR GCPtr, const char *pszPrefix);
924
925/** @def DBGFR3DisasInstrLog
926 * Disassembles the specified guest context instruction and writes it to the log.
927 * Addresses will be attempted resolved to symbols.
928 * @thread Any EMT.
929 */
930# ifdef LOG_ENABLED
931# define DBGFR3_DISAS_INSTR_LOG(pVCpu, Sel, GCPtr, pszPrefix) \
932 do { \
933 if (LogIsEnabled()) \
934 DBGFR3DisasInstrLogInternal(pVCpu, Sel, GCPtr, pszPrefix); \
935 } while (0)
936# else
937# define DBGFR3_DISAS_INSTR_LOG(pVCpu, Sel, GCPtr, pszPrefix) do { } while (0)
938# endif
939#endif
940
941
942#ifdef IN_RING3
943VMMR3DECL(int) DBGFR3MemScan(PUVM pUVM, VMCPUID idCpu, PCDBGFADDRESS pAddress, RTGCUINTPTR cbRange, RTGCUINTPTR uAlign,
944 const void *pvNeedle, size_t cbNeedle, PDBGFADDRESS pHitAddress);
945VMMR3DECL(int) DBGFR3MemRead(PUVM pUVM, VMCPUID idCpu, PCDBGFADDRESS pAddress, void *pvBuf, size_t cbRead);
946VMMR3DECL(int) DBGFR3MemReadString(PUVM pUVM, VMCPUID idCpu, PCDBGFADDRESS pAddress, char *pszBuf, size_t cbBuf);
947VMMR3DECL(int) DBGFR3MemWrite(PUVM pUVM, VMCPUID idCpu, PCDBGFADDRESS pAddress, void const *pvBuf, size_t cbRead);
948#endif
949
950
951/** @name Flags for DBGFR3PagingDumpEx, PGMR3DumpHierarchyHCEx and
952 * PGMR3DumpHierarchyGCEx
953 * @{ */
954/** The CR3 from the current CPU state. */
955#define DBGFPGDMP_FLAGS_CURRENT_CR3 RT_BIT_32(0)
956/** The current CPU paging mode (PSE, PAE, LM, EPT, NX). */
957#define DBGFPGDMP_FLAGS_CURRENT_MODE RT_BIT_32(1)
958/** Whether PSE is enabled (!DBGFPGDMP_FLAGS_CURRENT_STATE).
959 * Same value as X86_CR4_PSE. */
960#define DBGFPGDMP_FLAGS_PSE RT_BIT_32(4) /* */
961/** Whether PAE is enabled (!DBGFPGDMP_FLAGS_CURRENT_STATE).
962 * Same value as X86_CR4_PAE. */
963#define DBGFPGDMP_FLAGS_PAE RT_BIT_32(5) /* */
964/** Whether LME is enabled (!DBGFPGDMP_FLAGS_CURRENT_STATE).
965 * Same value as MSR_K6_EFER_LME. */
966#define DBGFPGDMP_FLAGS_LME RT_BIT_32(8)
967/** Whether nested paging is enabled (!DBGFPGDMP_FLAGS_CURRENT_STATE). */
968#define DBGFPGDMP_FLAGS_NP RT_BIT_32(9)
969/** Whether extended nested page tables are enabled
970 * (!DBGFPGDMP_FLAGS_CURRENT_STATE). */
971#define DBGFPGDMP_FLAGS_EPT RT_BIT_32(10)
972/** Whether no-execution is enabled (!DBGFPGDMP_FLAGS_CURRENT_STATE).
973 * Same value as MSR_K6_EFER_NXE. */
974#define DBGFPGDMP_FLAGS_NXE RT_BIT_32(11)
975/** Whether to print the CR3. */
976#define DBGFPGDMP_FLAGS_PRINT_CR3 RT_BIT_32(27)
977/** Whether to print the header. */
978#define DBGFPGDMP_FLAGS_HEADER RT_BIT_32(28)
979/** Whether to dump additional page information. */
980#define DBGFPGDMP_FLAGS_PAGE_INFO RT_BIT_32(29)
981/** Dump the shadow tables if set.
982 * Cannot be used together with DBGFPGDMP_FLAGS_GUEST. */
983#define DBGFPGDMP_FLAGS_SHADOW RT_BIT_32(30)
984/** Dump the guest tables if set.
985 * Cannot be used together with DBGFPGDMP_FLAGS_SHADOW. */
986#define DBGFPGDMP_FLAGS_GUEST RT_BIT_32(31)
987/** Mask of valid bits. */
988#define DBGFPGDMP_FLAGS_VALID_MASK UINT32_C(0xf8000f33)
989/** The mask of bits controlling the paging mode. */
990#define DBGFPGDMP_FLAGS_MODE_MASK UINT32_C(0x00000f32)
991/** @} */
992VMMDECL(int) DBGFR3PagingDumpEx(PUVM pUVM, VMCPUID idCpu, uint32_t fFlags, uint64_t cr3, uint64_t u64FirstAddr,
993 uint64_t u64LastAddr, uint32_t cMaxDepth, PCDBGFINFOHLP pHlp);
994
995
996/** @name DBGFR3SelQueryInfo flags.
997 * @{ */
998/** Get the info from the guest descriptor table. */
999#define DBGFSELQI_FLAGS_DT_GUEST UINT32_C(0)
1000/** Get the info from the shadow descriptor table.
1001 * Only works in raw-mode. */
1002#define DBGFSELQI_FLAGS_DT_SHADOW UINT32_C(1)
1003/** If currently executing in in 64-bit mode, blow up data selectors. */
1004#define DBGFSELQI_FLAGS_DT_ADJ_64BIT_MODE UINT32_C(2)
1005/** @} */
1006VMMR3DECL(int) DBGFR3SelQueryInfo(PUVM pUVM, VMCPUID idCpu, RTSEL Sel, uint32_t fFlags, PDBGFSELINFO pSelInfo);
1007
1008
1009/**
1010 * Register identifiers.
1011 */
1012typedef enum DBGFREG
1013{
1014 /* General purpose registers: */
1015 DBGFREG_AL = 0,
1016 DBGFREG_AX = DBGFREG_AL,
1017 DBGFREG_EAX = DBGFREG_AL,
1018 DBGFREG_RAX = DBGFREG_AL,
1019
1020 DBGFREG_CL,
1021 DBGFREG_CX = DBGFREG_CL,
1022 DBGFREG_ECX = DBGFREG_CL,
1023 DBGFREG_RCX = DBGFREG_CL,
1024
1025 DBGFREG_DL,
1026 DBGFREG_DX = DBGFREG_DL,
1027 DBGFREG_EDX = DBGFREG_DL,
1028 DBGFREG_RDX = DBGFREG_DL,
1029
1030 DBGFREG_BL,
1031 DBGFREG_BX = DBGFREG_BL,
1032 DBGFREG_EBX = DBGFREG_BL,
1033 DBGFREG_RBX = DBGFREG_BL,
1034
1035 DBGFREG_SPL,
1036 DBGFREG_SP = DBGFREG_SPL,
1037 DBGFREG_ESP = DBGFREG_SPL,
1038 DBGFREG_RSP = DBGFREG_SPL,
1039
1040 DBGFREG_BPL,
1041 DBGFREG_BP = DBGFREG_BPL,
1042 DBGFREG_EBP = DBGFREG_BPL,
1043 DBGFREG_RBP = DBGFREG_BPL,
1044
1045 DBGFREG_SIL,
1046 DBGFREG_SI = DBGFREG_SIL,
1047 DBGFREG_ESI = DBGFREG_SIL,
1048 DBGFREG_RSI = DBGFREG_SIL,
1049
1050 DBGFREG_DIL,
1051 DBGFREG_DI = DBGFREG_DIL,
1052 DBGFREG_EDI = DBGFREG_DIL,
1053 DBGFREG_RDI = DBGFREG_DIL,
1054
1055 DBGFREG_R8,
1056 DBGFREG_R8B = DBGFREG_R8,
1057 DBGFREG_R8W = DBGFREG_R8,
1058 DBGFREG_R8D = DBGFREG_R8,
1059
1060 DBGFREG_R9,
1061 DBGFREG_R9B = DBGFREG_R9,
1062 DBGFREG_R9W = DBGFREG_R9,
1063 DBGFREG_R9D = DBGFREG_R9,
1064
1065 DBGFREG_R10,
1066 DBGFREG_R10B = DBGFREG_R10,
1067 DBGFREG_R10W = DBGFREG_R10,
1068 DBGFREG_R10D = DBGFREG_R10,
1069
1070 DBGFREG_R11,
1071 DBGFREG_R11B = DBGFREG_R11,
1072 DBGFREG_R11W = DBGFREG_R11,
1073 DBGFREG_R11D = DBGFREG_R11,
1074
1075 DBGFREG_R12,
1076 DBGFREG_R12B = DBGFREG_R12,
1077 DBGFREG_R12W = DBGFREG_R12,
1078 DBGFREG_R12D = DBGFREG_R12,
1079
1080 DBGFREG_R13,
1081 DBGFREG_R13B = DBGFREG_R13,
1082 DBGFREG_R13W = DBGFREG_R13,
1083 DBGFREG_R13D = DBGFREG_R13,
1084
1085 DBGFREG_R14,
1086 DBGFREG_R14B = DBGFREG_R14,
1087 DBGFREG_R14W = DBGFREG_R14,
1088 DBGFREG_R14D = DBGFREG_R14,
1089
1090 DBGFREG_R15,
1091 DBGFREG_R15B = DBGFREG_R15,
1092 DBGFREG_R15W = DBGFREG_R15,
1093 DBGFREG_R15D = DBGFREG_R15,
1094
1095 /* Segments and other special registers: */
1096 DBGFREG_CS,
1097 DBGFREG_CS_ATTR,
1098 DBGFREG_CS_BASE,
1099 DBGFREG_CS_LIMIT,
1100
1101 DBGFREG_DS,
1102 DBGFREG_DS_ATTR,
1103 DBGFREG_DS_BASE,
1104 DBGFREG_DS_LIMIT,
1105
1106 DBGFREG_ES,
1107 DBGFREG_ES_ATTR,
1108 DBGFREG_ES_BASE,
1109 DBGFREG_ES_LIMIT,
1110
1111 DBGFREG_FS,
1112 DBGFREG_FS_ATTR,
1113 DBGFREG_FS_BASE,
1114 DBGFREG_FS_LIMIT,
1115
1116 DBGFREG_GS,
1117 DBGFREG_GS_ATTR,
1118 DBGFREG_GS_BASE,
1119 DBGFREG_GS_LIMIT,
1120
1121 DBGFREG_SS,
1122 DBGFREG_SS_ATTR,
1123 DBGFREG_SS_BASE,
1124 DBGFREG_SS_LIMIT,
1125
1126 DBGFREG_IP,
1127 DBGFREG_EIP = DBGFREG_IP,
1128 DBGFREG_RIP = DBGFREG_IP,
1129
1130 DBGFREG_FLAGS,
1131 DBGFREG_EFLAGS = DBGFREG_FLAGS,
1132 DBGFREG_RFLAGS = DBGFREG_FLAGS,
1133
1134 /* FPU: */
1135 DBGFREG_FCW,
1136 DBGFREG_FSW,
1137 DBGFREG_FTW,
1138 DBGFREG_FOP,
1139 DBGFREG_FPUIP,
1140 DBGFREG_FPUCS,
1141 DBGFREG_FPUDP,
1142 DBGFREG_FPUDS,
1143 DBGFREG_MXCSR,
1144 DBGFREG_MXCSR_MASK,
1145
1146 DBGFREG_ST0,
1147 DBGFREG_ST1,
1148 DBGFREG_ST2,
1149 DBGFREG_ST3,
1150 DBGFREG_ST4,
1151 DBGFREG_ST5,
1152 DBGFREG_ST6,
1153 DBGFREG_ST7,
1154
1155 DBGFREG_MM0,
1156 DBGFREG_MM1,
1157 DBGFREG_MM2,
1158 DBGFREG_MM3,
1159 DBGFREG_MM4,
1160 DBGFREG_MM5,
1161 DBGFREG_MM6,
1162 DBGFREG_MM7,
1163
1164 /* SSE: */
1165 DBGFREG_XMM0,
1166 DBGFREG_XMM1,
1167 DBGFREG_XMM2,
1168 DBGFREG_XMM3,
1169 DBGFREG_XMM4,
1170 DBGFREG_XMM5,
1171 DBGFREG_XMM6,
1172 DBGFREG_XMM7,
1173 DBGFREG_XMM8,
1174 DBGFREG_XMM9,
1175 DBGFREG_XMM10,
1176 DBGFREG_XMM11,
1177 DBGFREG_XMM12,
1178 DBGFREG_XMM13,
1179 DBGFREG_XMM14,
1180 DBGFREG_XMM15,
1181 /** @todo add XMM aliases. */
1182
1183 /* System registers: */
1184 DBGFREG_GDTR_BASE,
1185 DBGFREG_GDTR_LIMIT,
1186 DBGFREG_IDTR_BASE,
1187 DBGFREG_IDTR_LIMIT,
1188 DBGFREG_LDTR,
1189 DBGFREG_LDTR_ATTR,
1190 DBGFREG_LDTR_BASE,
1191 DBGFREG_LDTR_LIMIT,
1192 DBGFREG_TR,
1193 DBGFREG_TR_ATTR,
1194 DBGFREG_TR_BASE,
1195 DBGFREG_TR_LIMIT,
1196
1197 DBGFREG_CR0,
1198 DBGFREG_CR2,
1199 DBGFREG_CR3,
1200 DBGFREG_CR4,
1201 DBGFREG_CR8,
1202
1203 DBGFREG_DR0,
1204 DBGFREG_DR1,
1205 DBGFREG_DR2,
1206 DBGFREG_DR3,
1207 DBGFREG_DR6,
1208 DBGFREG_DR7,
1209
1210 /* MSRs: */
1211 DBGFREG_MSR_IA32_APICBASE,
1212 DBGFREG_MSR_IA32_CR_PAT,
1213 DBGFREG_MSR_IA32_PERF_STATUS,
1214 DBGFREG_MSR_IA32_SYSENTER_CS,
1215 DBGFREG_MSR_IA32_SYSENTER_EIP,
1216 DBGFREG_MSR_IA32_SYSENTER_ESP,
1217 DBGFREG_MSR_IA32_TSC,
1218 DBGFREG_MSR_K6_EFER,
1219 DBGFREG_MSR_K6_STAR,
1220 DBGFREG_MSR_K8_CSTAR,
1221 DBGFREG_MSR_K8_FS_BASE,
1222 DBGFREG_MSR_K8_GS_BASE,
1223 DBGFREG_MSR_K8_KERNEL_GS_BASE,
1224 DBGFREG_MSR_K8_LSTAR,
1225 DBGFREG_MSR_K8_SF_MASK,
1226 DBGFREG_MSR_K8_TSC_AUX,
1227
1228 /** The number of registers to pass to DBGFR3RegQueryAll. */
1229 DBGFREG_ALL_COUNT,
1230
1231 /* Misc aliases that doesn't need be part of the 'all' query: */
1232 DBGFREG_AH = DBGFREG_ALL_COUNT,
1233 DBGFREG_CH,
1234 DBGFREG_DH,
1235 DBGFREG_BH,
1236 DBGFREG_GDTR,
1237 DBGFREG_IDTR,
1238
1239 /** The end of the registers. */
1240 DBGFREG_END,
1241 /** The usual 32-bit type hack. */
1242 DBGFREG_32BIT_HACK = 0x7fffffff
1243} DBGFREG;
1244/** Pointer to a register identifier. */
1245typedef DBGFREG *PDBGFREG;
1246/** Pointer to a const register identifier. */
1247typedef DBGFREG const *PCDBGFREG;
1248
1249/**
1250 * Register value type.
1251 */
1252typedef enum DBGFREGVALTYPE
1253{
1254 DBGFREGVALTYPE_INVALID = 0,
1255 /** Unsigned 8-bit register value. */
1256 DBGFREGVALTYPE_U8,
1257 /** Unsigned 16-bit register value. */
1258 DBGFREGVALTYPE_U16,
1259 /** Unsigned 32-bit register value. */
1260 DBGFREGVALTYPE_U32,
1261 /** Unsigned 64-bit register value. */
1262 DBGFREGVALTYPE_U64,
1263 /** Unsigned 128-bit register value. */
1264 DBGFREGVALTYPE_U128,
1265 /** Long double register value. */
1266 DBGFREGVALTYPE_R80,
1267 /** Descriptor table register value. */
1268 DBGFREGVALTYPE_DTR,
1269 /** End of the valid register value types. */
1270 DBGFREGVALTYPE_END,
1271 /** The usual 32-bit type hack. */
1272 DBGFREGVALTYPE_32BIT_HACK = 0x7fffffff
1273} DBGFREGVALTYPE;
1274/** Pointer to a register value type. */
1275typedef DBGFREGVALTYPE *PDBGFREGVALTYPE;
1276
1277/**
1278 * A generic register value type.
1279 */
1280typedef union DBGFREGVAL
1281{
1282 uint8_t u8; /**< The 8-bit view. */
1283 uint16_t u16; /**< The 16-bit view. */
1284 uint32_t u32; /**< The 32-bit view. */
1285 uint64_t u64; /**< The 64-bit view. */
1286 RTUINT128U u128; /**< The 128-bit view. */
1287 RTFLOAT80U r80; /**< The 80-bit floating point view. */
1288 RTFLOAT80U2 r80Ex; /**< The 80-bit floating point view v2. */
1289 /** GDTR or LDTR (DBGFREGVALTYPE_DTR). */
1290 struct
1291 {
1292 /** The table address. */
1293 uint64_t u64Base;
1294 /** The table limit (length minus 1). */
1295 uint32_t u32Limit;
1296 } dtr;
1297
1298 uint8_t au8[16]; /**< The 8-bit array view. */
1299 uint16_t au16[8]; /**< The 16-bit array view. */
1300 uint32_t au32[4]; /**< The 32-bit array view. */
1301 uint64_t au64[2]; /**< The 64-bit array view. */
1302 RTUINT128U u;
1303} DBGFREGVAL;
1304/** Pointer to a generic register value type. */
1305typedef DBGFREGVAL *PDBGFREGVAL;
1306/** Pointer to a const generic register value type. */
1307typedef DBGFREGVAL const *PCDBGFREGVAL;
1308
1309VMMDECL(ssize_t) DBGFR3RegFormatValue(char *pszBuf, size_t cbBuf, PCDBGFREGVAL pValue, DBGFREGVALTYPE enmType, bool fSpecial);
1310VMMDECL(ssize_t) DBGFR3RegFormatValueEx(char *pszBuf, size_t cbBuf, PCDBGFREGVAL pValue, DBGFREGVALTYPE enmType,
1311 unsigned uBase, signed int cchWidth, signed int cchPrecision, uint32_t fFlags);
1312
1313/**
1314 * Register sub-field descriptor.
1315 */
1316typedef struct DBGFREGSUBFIELD
1317{
1318 /** The name of the sub-field. NULL is used to terminate the array. */
1319 const char *pszName;
1320 /** The index of the first bit. Ignored if pfnGet is set. */
1321 uint8_t iFirstBit;
1322 /** The number of bits. Mandatory. */
1323 uint8_t cBits;
1324 /** The shift count. Not applied when pfnGet is set, but used to
1325 * calculate the minimum type. */
1326 int8_t cShift;
1327 /** Sub-field flags, DBGFREGSUBFIELD_FLAGS_XXX. */
1328 uint8_t fFlags;
1329 /** Getter (optional).
1330 * @remarks Does not take the device lock or anything like that.
1331 */
1332 DECLCALLBACKMEMBER(int, pfnGet)(void *pvUser, struct DBGFREGSUBFIELD const *pSubField, PRTUINT128U puValue);
1333 /** Setter (optional).
1334 * @remarks Does not take the device lock or anything like that.
1335 */
1336 DECLCALLBACKMEMBER(int, pfnSet)(void *pvUser, struct DBGFREGSUBFIELD const *pSubField, RTUINT128U uValue, RTUINT128U fMask);
1337} DBGFREGSUBFIELD;
1338/** Pointer to a const register sub-field descriptor. */
1339typedef DBGFREGSUBFIELD const *PCDBGFREGSUBFIELD;
1340
1341/** @name DBGFREGSUBFIELD_FLAGS_XXX
1342 * @{ */
1343/** The sub-field is read-only. */
1344#define DBGFREGSUBFIELD_FLAGS_READ_ONLY UINT8_C(0x01)
1345/** @} */
1346
1347/** Macro for creating a read-write sub-field entry without getters. */
1348#define DBGFREGSUBFIELD_RW(a_szName, a_iFirstBit, a_cBits, a_cShift) \
1349 { a_szName, a_iFirstBit, a_cBits, a_cShift, 0 /*fFlags*/, NULL /*pfnGet*/, NULL /*pfnSet*/ }
1350/** Macro for creating a read-write sub-field entry with getters. */
1351#define DBGFREGSUBFIELD_RW_SG(a_szName, a_cBits, a_cShift, a_pfnGet, a_pfnSet) \
1352 { a_szName, 0 /*iFirstBit*/, a_cBits, a_cShift, 0 /*fFlags*/, a_pfnGet, a_pfnSet }
1353/** Macro for creating a read-only sub-field entry without getters. */
1354#define DBGFREGSUBFIELD_RO(a_szName, a_iFirstBit, a_cBits, a_cShift) \
1355 { a_szName, a_iFirstBit, a_cBits, a_cShift, DBGFREGSUBFIELD_FLAGS_READ_ONLY, NULL /*pfnGet*/, NULL /*pfnSet*/ }
1356/** Macro for creating a terminator sub-field entry. */
1357#define DBGFREGSUBFIELD_TERMINATOR() \
1358 { NULL, 0, 0, 0, 0, NULL, NULL }
1359
1360/**
1361 * Register alias descriptor.
1362 */
1363typedef struct DBGFREGALIAS
1364{
1365 /** The alias name. NULL is used to terminate the array. */
1366 const char *pszName;
1367 /** Set to a valid type if the alias has a different type. */
1368 DBGFREGVALTYPE enmType;
1369} DBGFREGALIAS;
1370/** Pointer to a const register alias descriptor. */
1371typedef DBGFREGALIAS const *PCDBGFREGALIAS;
1372
1373/**
1374 * Register descriptor.
1375 */
1376typedef struct DBGFREGDESC
1377{
1378 /** The normal register name. */
1379 const char *pszName;
1380 /** The register identifier if this is a CPU register. */
1381 DBGFREG enmReg;
1382 /** The default register type. */
1383 DBGFREGVALTYPE enmType;
1384 /** Flags, see DBGFREG_FLAGS_XXX. */
1385 uint32_t fFlags;
1386 /** The internal register indicator.
1387 * For CPU registers this is the offset into the CPUMCTX structure,
1388 * thuse the 'off' prefix. */
1389 uint32_t offRegister;
1390 /** Getter.
1391 * @remarks Does not take the device lock or anything like that.
1392 */
1393 DECLCALLBACKMEMBER(int, pfnGet)(void *pvUser, struct DBGFREGDESC const *pDesc, PDBGFREGVAL pValue);
1394 /** Setter.
1395 * @remarks Does not take the device lock or anything like that.
1396 */
1397 DECLCALLBACKMEMBER(int, pfnSet)(void *pvUser, struct DBGFREGDESC const *pDesc, PCDBGFREGVAL pValue, PCDBGFREGVAL pfMask);
1398 /** Aliases (optional). */
1399 PCDBGFREGALIAS paAliases;
1400 /** Sub fields (optional). */
1401 PCDBGFREGSUBFIELD paSubFields;
1402} DBGFREGDESC;
1403
1404/** @name Macros for constructing DBGFREGDESC arrays.
1405 * @{ */
1406#define DBGFREGDESC_RW(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet) \
1407 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, 0 /*fFlags*/, a_offRegister, a_pfnGet, a_pfnSet, NULL /*paAlises*/, NULL /*paSubFields*/ }
1408#define DBGFREGDESC_RO(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet) \
1409 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, DBGFREG_FLAGS_READ_ONLY, a_offRegister, a_pfnGet, a_pfnSet, NULL /*paAlises*/, NULL /*paSubFields*/ }
1410#define DBGFREGDESC_RW_A(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases) \
1411 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, 0 /*fFlags*/, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases, NULL /*paSubFields*/ }
1412#define DBGFREGDESC_RO_A(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases) \
1413 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, DBGFREG_FLAGS_READ_ONLY, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases, NULL /*paSubFields*/ }
1414#define DBGFREGDESC_RW_S(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet, a_paSubFields) \
1415 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, 0 /*fFlags*/, a_offRegister, a_pfnGet, a_pfnSet, /*paAliases*/, a_paSubFields }
1416#define DBGFREGDESC_RO_S(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet, a_paSubFields) \
1417 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, DBGFREG_FLAGS_READ_ONLY, a_offRegister, a_pfnGet, a_pfnSet, /*paAliases*/, a_paSubFields }
1418#define DBGFREGDESC_RW_AS(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases, a_paSubFields) \
1419 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, 0 /*fFlags*/, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases, a_paSubFields }
1420#define DBGFREGDESC_RO_AS(a_szName, a_TypeSuff, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases, a_paSubFields) \
1421 { a_szName, DBGFREG_END, DBGFREGVALTYPE_##a_TypeSuff, DBGFREG_FLAGS_READ_ONLY, a_offRegister, a_pfnGet, a_pfnSet, a_paAliases, a_paSubFields }
1422#define DBGFREGDESC_TERMINATOR() \
1423 { NULL, DBGFREG_END, DBGFREGVALTYPE_INVALID, 0, 0, NULL, NULL, NULL, NULL }
1424/** @} */
1425
1426
1427/** @name DBGFREG_FLAGS_XXX
1428 * @{ */
1429/** The register is read-only. */
1430#define DBGFREG_FLAGS_READ_ONLY RT_BIT_32(0)
1431/** @} */
1432
1433/**
1434 * Entry in a batch query or set operation.
1435 */
1436typedef struct DBGFREGENTRY
1437{
1438 /** The register identifier. */
1439 DBGFREG enmReg;
1440 /** The size of the value in bytes. */
1441 DBGFREGVALTYPE enmType;
1442 /** The register value. The valid view is indicated by enmType. */
1443 DBGFREGVAL Val;
1444} DBGFREGENTRY;
1445/** Pointer to a register entry in a batch operation. */
1446typedef DBGFREGENTRY *PDBGFREGENTRY;
1447/** Pointer to a const register entry in a batch operation. */
1448typedef DBGFREGENTRY const *PCDBGFREGENTRY;
1449
1450/** Used with DBGFR3Reg* to indicate the hypervisor register set instead of the
1451 * guest. */
1452#define DBGFREG_HYPER_VMCPUID UINT32_C(0x01000000)
1453
1454VMMR3DECL(int) DBGFR3RegCpuQueryU8( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint8_t *pu8);
1455VMMR3DECL(int) DBGFR3RegCpuQueryU16( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint16_t *pu16);
1456VMMR3DECL(int) DBGFR3RegCpuQueryU32( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint32_t *pu32);
1457VMMR3DECL(int) DBGFR3RegCpuQueryU64( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint64_t *pu64);
1458VMMR3DECL(int) DBGFR3RegCpuQueryU128(PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint128_t *pu128);
1459VMMR3DECL(int) DBGFR3RegCpuQueryLrd( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, long double *plrd);
1460VMMR3DECL(int) DBGFR3RegCpuQueryXdtr(PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint64_t *pu64Base, uint16_t *pu16Limit);
1461#if 0
1462VMMR3DECL(int) DBGFR3RegCpuQueryBatch(PUVM pUVM,VMCPUID idCpu, PDBGFREGENTRY paRegs, size_t cRegs);
1463VMMR3DECL(int) DBGFR3RegCpuQueryAll( PUVM pUVM, VMCPUID idCpu, PDBGFREGENTRY paRegs, size_t cRegs);
1464
1465VMMR3DECL(int) DBGFR3RegCpuSetU8( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint8_t u8);
1466VMMR3DECL(int) DBGFR3RegCpuSetU16( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint16_t u16);
1467VMMR3DECL(int) DBGFR3RegCpuSetU32( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint32_t u32);
1468VMMR3DECL(int) DBGFR3RegCpuSetU64( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint64_t u64);
1469VMMR3DECL(int) DBGFR3RegCpuSetU128( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, uint128_t u128);
1470VMMR3DECL(int) DBGFR3RegCpuSetLrd( PUVM pUVM, VMCPUID idCpu, DBGFREG enmReg, long double lrd);
1471VMMR3DECL(int) DBGFR3RegCpuSetBatch( PUVM pUVM, VMCPUID idCpu, PCDBGFREGENTRY paRegs, size_t cRegs);
1472#endif
1473
1474VMMR3DECL(const char *) DBGFR3RegCpuName(PUVM pUVM, DBGFREG enmReg, DBGFREGVALTYPE enmType);
1475
1476VMMR3_INT_DECL(int) DBGFR3RegRegisterCpu(PVM pVM, PVMCPU pVCpu, PCDBGFREGDESC paRegisters, bool fGuestRegs);
1477VMMR3_INT_DECL(int) DBGFR3RegRegisterDevice(PVM pVM, PCDBGFREGDESC paRegisters, PPDMDEVINS pDevIns,
1478 const char *pszPrefix, uint32_t iInstance);
1479
1480/**
1481 * Entry in a named batch query or set operation.
1482 */
1483typedef struct DBGFREGENTRYNM
1484{
1485 /** The register name. */
1486 const char *pszName;
1487 /** The size of the value in bytes. */
1488 DBGFREGVALTYPE enmType;
1489 /** The register value. The valid view is indicated by enmType. */
1490 DBGFREGVAL Val;
1491} DBGFREGENTRYNM;
1492/** Pointer to a named register entry in a batch operation. */
1493typedef DBGFREGENTRYNM *PDBGFREGENTRYNM;
1494/** Pointer to a const named register entry in a batch operation. */
1495typedef DBGFREGENTRYNM const *PCDBGFREGENTRYNM;
1496
1497VMMR3DECL(int) DBGFR3RegNmValidate( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg);
1498
1499VMMR3DECL(int) DBGFR3RegNmQuery( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, PDBGFREGVAL pValue, PDBGFREGVALTYPE penmType);
1500VMMR3DECL(int) DBGFR3RegNmQueryU8( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint8_t *pu8);
1501VMMR3DECL(int) DBGFR3RegNmQueryU16( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint16_t *pu16);
1502VMMR3DECL(int) DBGFR3RegNmQueryU32( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint32_t *pu32);
1503VMMR3DECL(int) DBGFR3RegNmQueryU64( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint64_t *pu64);
1504VMMR3DECL(int) DBGFR3RegNmQueryU128(PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, PRTUINT128U pu128);
1505/*VMMR3DECL(int) DBGFR3RegNmQueryLrd( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, long double *plrd);*/
1506VMMR3DECL(int) DBGFR3RegNmQueryXdtr(PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint64_t *pu64Base, uint16_t *pu16Limit);
1507VMMR3DECL(int) DBGFR3RegNmQueryBatch(PUVM pUVM,VMCPUID idDefCpu, PDBGFREGENTRYNM paRegs, size_t cRegs);
1508VMMR3DECL(int) DBGFR3RegNmQueryAllCount(PUVM pUVM, size_t *pcRegs);
1509VMMR3DECL(int) DBGFR3RegNmQueryAll( PUVM pUVM, PDBGFREGENTRYNM paRegs, size_t cRegs);
1510
1511VMMR3DECL(int) DBGFR3RegNmSet( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, PCDBGFREGVAL pValue, DBGFREGVALTYPE enmType);
1512VMMR3DECL(int) DBGFR3RegNmSetU8( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint8_t u8);
1513VMMR3DECL(int) DBGFR3RegNmSetU16( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint16_t u16);
1514VMMR3DECL(int) DBGFR3RegNmSetU32( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint32_t u32);
1515VMMR3DECL(int) DBGFR3RegNmSetU64( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, uint64_t u64);
1516VMMR3DECL(int) DBGFR3RegNmSetU128( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, RTUINT128U u128);
1517VMMR3DECL(int) DBGFR3RegNmSetLrd( PUVM pUVM, VMCPUID idDefCpu, const char *pszReg, long double lrd);
1518VMMR3DECL(int) DBGFR3RegNmSetBatch( PUVM pUVM, VMCPUID idDefCpu, PCDBGFREGENTRYNM paRegs, size_t cRegs);
1519
1520/** @todo add enumeration methods. */
1521
1522VMMR3DECL(int) DBGFR3RegPrintf( PUVM pUVM, VMCPUID idDefCpu, char *pszBuf, size_t cbBuf, const char *pszFormat, ...);
1523VMMR3DECL(int) DBGFR3RegPrintfV(PUVM pUVM, VMCPUID idDefCpu, char *pszBuf, size_t cbBuf, const char *pszFormat, va_list va);
1524
1525
1526/**
1527 * Guest OS digger interface identifier.
1528 *
1529 * This is for use together with PDBGFR3QueryInterface and is used to
1530 * obtain access to optional interfaces.
1531 */
1532typedef enum DBGFOSINTERFACE
1533{
1534 /** The usual invalid entry. */
1535 DBGFOSINTERFACE_INVALID = 0,
1536 /** Process info. */
1537 DBGFOSINTERFACE_PROCESS,
1538 /** Thread info. */
1539 DBGFOSINTERFACE_THREAD,
1540 /** The end of the valid entries. */
1541 DBGFOSINTERFACE_END,
1542 /** The usual 32-bit type blowup. */
1543 DBGFOSINTERFACE_32BIT_HACK = 0x7fffffff
1544} DBGFOSINTERFACE;
1545/** Pointer to a Guest OS digger interface identifier. */
1546typedef DBGFOSINTERFACE *PDBGFOSINTERFACE;
1547/** Pointer to a const Guest OS digger interface identifier. */
1548typedef DBGFOSINTERFACE const *PCDBGFOSINTERFACE;
1549
1550
1551/**
1552 * Guest OS Digger Registration Record.
1553 *
1554 * This is used with the DBGFR3OSRegister() API.
1555 */
1556typedef struct DBGFOSREG
1557{
1558 /** Magic value (DBGFOSREG_MAGIC). */
1559 uint32_t u32Magic;
1560 /** Flags. Reserved. */
1561 uint32_t fFlags;
1562 /** The size of the instance data. */
1563 uint32_t cbData;
1564 /** Operative System name. */
1565 char szName[24];
1566
1567 /**
1568 * Constructs the instance.
1569 *
1570 * @returns VBox status code.
1571 * @param pUVM The user mode VM handle.
1572 * @param pvData Pointer to the instance data.
1573 */
1574 DECLCALLBACKMEMBER(int, pfnConstruct)(PUVM pUVM, void *pvData);
1575
1576 /**
1577 * Destroys the instance.
1578 *
1579 * @param pUVM The user mode VM handle.
1580 * @param pvData Pointer to the instance data.
1581 */
1582 DECLCALLBACKMEMBER(void, pfnDestruct)(PUVM pUVM, void *pvData);
1583
1584 /**
1585 * Probes the guest memory for OS finger prints.
1586 *
1587 * No setup or so is performed, it will be followed by a call to pfnInit
1588 * or pfnRefresh that should take care of that.
1589 *
1590 * @returns true if is an OS handled by this module, otherwise false.
1591 * @param pUVM The user mode VM handle.
1592 * @param pvData Pointer to the instance data.
1593 */
1594 DECLCALLBACKMEMBER(bool, pfnProbe)(PUVM pUVM, void *pvData);
1595
1596 /**
1597 * Initializes a fresly detected guest, loading symbols and such useful stuff.
1598 *
1599 * This is called after pfnProbe.
1600 *
1601 * @returns VBox status code.
1602 * @param pUVM The user mode VM handle.
1603 * @param pvData Pointer to the instance data.
1604 */
1605 DECLCALLBACKMEMBER(int, pfnInit)(PUVM pUVM, void *pvData);
1606
1607 /**
1608 * Refreshes symbols and stuff following a redetection of the same OS.
1609 *
1610 * This is called after pfnProbe.
1611 *
1612 * @returns VBox status code.
1613 * @param pUVM The user mode VM handle.
1614 * @param pvData Pointer to the instance data.
1615 */
1616 DECLCALLBACKMEMBER(int, pfnRefresh)(PUVM pUVM, void *pvData);
1617
1618 /**
1619 * Terminates an OS when a new (or none) OS has been detected,
1620 * and before destruction.
1621 *
1622 * This is called after pfnProbe and if needed before pfnDestruct.
1623 *
1624 * @param pUVM The user mode VM handle.
1625 * @param pvData Pointer to the instance data.
1626 */
1627 DECLCALLBACKMEMBER(void, pfnTerm)(PUVM pUVM, void *pvData);
1628
1629 /**
1630 * Queries the version of the running OS.
1631 *
1632 * This is only called after pfnInit().
1633 *
1634 * @returns VBox status code.
1635 * @param pUVM The user mode VM handle.
1636 * @param pvData Pointer to the instance data.
1637 * @param pszVersion Where to store the version string.
1638 * @param cchVersion The size of the version string buffer.
1639 */
1640 DECLCALLBACKMEMBER(int, pfnQueryVersion)(PUVM pUVM, void *pvData, char *pszVersion, size_t cchVersion);
1641
1642 /**
1643 * Queries the pointer to a interface.
1644 *
1645 * This is called after pfnProbe.
1646 *
1647 * @returns Pointer to the interface if available, NULL if not available.
1648 * @param pUVM The user mode VM handle.
1649 * @param pvData Pointer to the instance data.
1650 * @param enmIf The interface identifier.
1651 */
1652 DECLCALLBACKMEMBER(void *, pfnQueryInterface)(PUVM pUVM, void *pvData, DBGFOSINTERFACE enmIf);
1653
1654 /** Trailing magic (DBGFOSREG_MAGIC). */
1655 uint32_t u32EndMagic;
1656} DBGFOSREG;
1657/** Pointer to a Guest OS digger registration record. */
1658typedef DBGFOSREG *PDBGFOSREG;
1659/** Pointer to a const Guest OS digger registration record. */
1660typedef DBGFOSREG const *PCDBGFOSREG;
1661
1662/** Magic value for DBGFOSREG::u32Magic and DBGFOSREG::u32EndMagic. (Hitomi Kanehara) */
1663#define DBGFOSREG_MAGIC 0x19830808
1664
1665VMMR3DECL(int) DBGFR3OSRegister(PUVM pUVM, PCDBGFOSREG pReg);
1666VMMR3DECL(int) DBGFR3OSDeregister(PUVM pUVM, PCDBGFOSREG pReg);
1667VMMR3DECL(int) DBGFR3OSDetect(PUVM pUVM, char *pszName, size_t cchName);
1668VMMR3DECL(int) DBGFR3OSQueryNameAndVersion(PUVM pUVM, char *pszName, size_t cchName, char *pszVersion, size_t cchVersion);
1669VMMR3DECL(void *) DBGFR3OSQueryInterface(PUVM pUVM, DBGFOSINTERFACE enmIf);
1670
1671
1672VMMR3DECL(int) DBGFR3CoreWrite(PUVM pUVM, const char *pszFilename, bool fReplaceFile);
1673
1674/** @} */
1675
1676
1677RT_C_DECLS_END
1678
1679#endif
1680
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