news 2026/6/9 18:33:37

得到节点Device (P2P0)的子节点Device (S1F0)的PCI地址

作者头像

张小明

前端开发工程师

1.2k 24
文章封面图
得到节点Device (P2P0)的子节点Device (S1F0)的PCI地址

得到节点Device (P2P0)的子节点Device (S1F0)的PCI地址

第0部分:

dsdt.dsl:6096: Device (P2P0)
dsdt.dsl:6306: Device (S1F0)


Device (S1F0)
{
Name (_ADR, Zero) // _ADR: Address
Name (_SUN, 0x20) // _SUN: Slot User Number
OperationRegion (REGS, PCI_Config, 0x00, 0x04)
Field (REGS, DWordAcc, NoLock, Preserve)
{
ID, 32
}

Method (_STA, 0, NotSerialized) // _STA: Status
{
Return (BSTA (ID))
}

Device (S2F0)
{
Name (_ADR, 0x00010000) // _ADR: Address
Name (_SUN, 0x21) // _SUN: Slot User Number

第一部分:

NTSTATUS
EXPORT
PciConfigSpaceHandlerWorker(
IN PNSOBJ AcpiObject,
IN NTSTATUS CompletionStatus,
IN POBJDATA Result,
IN PVOID Context
)
{

if (!interface) {

if (!(state->Flags & PCISUPP_GOT_SLOT_INFO)) {

state->Flags |= PCISUPP_GOT_SLOT_INFO;

status = GetPciAddress(state->PciObj,
PciConfigSpaceHandlerWorker,
(PVOID)state,
&state->Bus,
&state->Slot);

1: kd> kc
#
00 ACPI!GetPciAddress
01 ACPI!PciConfigSpaceHandlerWorker

02 ACPI!GetOpRegionScopeWorker
03 ACPI!IsPciDeviceWorker
04 ACPI!IsPciDeviceWorker
05 ACPI!IsPciDeviceWorker
06 ACPI!ACPIGetWorkerForString
07 ACPI!AsyncCallBack
08 ACPI!RunContext
09 ACPI!DispatchCtxtQueue
0a ACPI!StartTimeSlicePassive
0b ACPI!ACPIWorker
0c nt!PspSystemThreadStartup
0d nt!KiThreadStartup
1: kd> dv
PciObj = 0x8996d45c
CompletionRoutine = 0xf740d62c
Context = 0x898a8a10
Bus = 0x898a8a48 ""
Slot = 0x898a8a44
1: kd> dx -r1 ((ACPI!_NSObj *)0x8996d45c)
((ACPI!_NSObj *)0x8996d45c) : 0x8996d45c [Type: _NSObj *]
[+0x000] list [Type: _List]
[+0x008] pnsParent : 0x8996cd78 [Type: _NSObj *]
[+0x00c] pnsFirstChild : 0x8996d4d4 [Type: _NSObj *]
[+0x010] dwNameSeg : 0x30463153 [Type: unsigned long]
[+0x014] hOwner : 0x899af330 [Type: void *]
[+0x018] pnsOwnedNext : 0x8996d298 [Type: _NSObj *]
[+0x01c] ObjData [Type: _ObjData]
[+0x030] Context : 0x89968c88 [Type: void *]
[+0x034] dwRefCount : 0x0 [Type: unsigned long]
1: kd> db 0x8996cd78
8996cd78 38 cc 96 89 88 4f 97 89-ac ff 9a 89 f0 cd 96 89 8....O..........
8996cd88 50 32 50 30 30 f3 9a 89-38 cc 96 89 00 00 06 00 P2P00...8.......
8996cd98 00 00 00 00 00 00 00 00-00 00 00 00 00 00 00 00 ................
8996cda8 a0 8e 96 89 00 00 00 00-48 4f 52 47 34 00 00 00 ........HORG4...
8996cdb8 00 90 96 89 00 00 00 00-04 00 00 00 02 00 00 00 ................
8996cdc8 00 00 00 00 00 00 00 00-00 00 00 00 00 00 00 00 ................
8996cdd8 00 00 00 00 00 00 00 00-00 00 00 00 48 4e 53 4f ............HNSO
8996cde8 44 00 00 00 00 90 96 89-b0 4b 97 89 b4 ce 96 89 D........K......


1: kd> kc
#
00 ACPI!GetPciAddressWorker
01 ACPI!GetPciAddress
02 ACPI!PciConfigSpaceHandlerWorker
03 ACPI!GetOpRegionScopeWorker
04 ACPI!IsPciDeviceWorker
05 ACPI!IsPciDeviceWorker
06 ACPI!IsPciDeviceWorker
07 ACPI!ACPIGetWorkerForString
08 ACPI!AsyncCallBack
09 ACPI!RunContext
0a ACPI!DispatchCtxtQueue
0b ACPI!StartTimeSlicePassive
0c ACPI!ACPIWorker
0d nt!PspSystemThreadStartup
0e nt!KiThreadStartup
1: kd> dv
AcpiObject = 0x8996d45c
Status = 0n0
Result = 0x00000000
Context = 0x899c1460
buffer = unsigned char [64] ""
1: kd> dt GET_ADDRESS_CONTEXT 0x899c1460
ACPI!GET_ADDRESS_CONTEXT
+0x000 PciObject : 0x8996d45c _NSObj
+0x004 Bus : 0x898a8a48 ""
+0x008 Slot : 0x898a8a44 _PCI_SLOT_NUMBER
+0x00c ParentBus : 0 ''
+0x010 ParentSlot : _PCI_SLOT_NUMBER
+0x014 Flags : 0
+0x018 Address : 0
+0x01c BaseBusNumber : 0
+0x020 RunCompletion : 0n-1
+0x024 CompletionRoutine : 0xf740d62c void ACPI!PciConfigSpaceHandlerWorker+0
+0x028 CompletionContext : 0x898a8a10 Void

//
// First, determine the slot number.
//
if (!(state->Flags & PCISUPP_CHECKED_ADR)) {

//
// Get the _ADR.
//
state->Flags |= PCISUPP_CHECKED_ADR;
status = ACPIGetNSAddressAsync(
state->PciObject,
GetPciAddressWorker,
(PVOID)state,
&(state->Address),
NULL
);


1: kd> kc
#
00 ACPI!ACPIGet
01 ACPI!GetPciAddressWorker
02 ACPI!GetPciAddress
03 ACPI!PciConfigSpaceHandlerWorker
04 ACPI!GetOpRegionScopeWorker
05 ACPI!IsPciDeviceWorker
06 ACPI!IsPciDeviceWorker
07 ACPI!IsPciDeviceWorker
08 ACPI!ACPIGetWorkerForString
09 ACPI!AsyncCallBack
0a ACPI!RunContext
0b ACPI!DispatchCtxtQueue
0c ACPI!StartTimeSlicePassive
0d ACPI!ACPIWorker
0e nt!PspSystemThreadStartup
0f nt!KiThreadStartup
1: kd> dv
Target = 0x8996d45c
ObjectID = 0x5244415f
Flags = 0x48040402
SimpleArgument = 0x00000000
SimpleArgumentSize = 0

1: kd> db 0x8996d45c
8996d45c 98 d2 96 89 60 d8 96 89-78 cd 96 89 d4 d4 96 89 ....`...x.......
8996d46c 53 31 46 30 30 f3 9a 89-98 d2 96 89 00 00 06 00 S1F00...........

1: kd> db 0x8996d45c
8996d45c 98 d2 96 89 60 d8 96 89-78 cd 96 89 d4 d4 96 89 ....`...x.......
8996d46c 53 31 46 30 30 f3 9a 89-98 d2 96 89 00 00 06 00 S1F00...........
8996d47c 00 00 00 00 00 00 00 00-00 00 00 00 00 00 00 00 ................
8996d48c 88 8c 96 89 00 00 00 00-48 4f 52 47 34 00 00 00 ........HORG4...
8996d49c 00 90 96 89 00 00 00 00-04 00 00 00 02 00 00 00 ................
8996d4ac 00 00 00 00 00 00 00 00-00 00 00 00 00 00 00 00 ................
8996d4bc 00 00 00 00 00 00 00 00-00 00 00 00 48 4e 53 4f ............HNSO
8996d4cc 44 00 00 00 00 90 96 89-1c d8 96 89 18 d5 96 89 D...............
1: kd> dt nsobj 0x8996d45c
ACPI!NSOBJ
+0x000 list : _List
+0x008 pnsParent : 0x8996cd78 _NSObj
+0x00c pnsFirstChild : 0x8996d4d4 _NSObj
+0x010 dwNameSeg : 0x30463153
+0x014 hOwner : 0x899af330 Void
+0x018 pnsOwnedNext : 0x8996d298 _NSObj
+0x01c ObjData : _ObjData
+0x030 Context : 0x89968c88 Void
+0x034 dwRefCount : 0
1: kd> db 0x8996cd78
8996cd78 38 cc 96 89 88 4f 97 89-ac ff 9a 89 f0 cd 96 89 8....O..........
8996cd88 50 32 50 30 30 f3 9a 89-38 cc 96 89 00 00 06 00 P2P00...8.......
8996cd98 00 00 00 00 00 00 00 00-00 00 00 00 00 00 00 00 ................

版权声明: 本文来自互联网用户投稿,该文观点仅代表作者本人,不代表本站立场。本站仅提供信息存储空间服务,不拥有所有权,不承担相关法律责任。如若内容造成侵权/违法违规/事实不符,请联系邮箱:809451989@qq.com进行投诉反馈,一经查实,立即删除!
网站建设 2026/6/7 2:20:22

我用 XinServer 解决了多端数据同步问题

我用 XinServer 解决了多端数据同步问题 最近在做一个外包项目,客户要求同时有微信小程序、管理后台,未来可能还要上App。需求一出来,我头就大了——这意味着一套数据,要服务至少三个不同的前端。按照传统做法,我得吭…

作者头像 李华
网站建设 2026/6/7 2:24:52

在IEEE-14总线系统中执行连续功率流 测试环境:MATLAB 读取IEEE14和 IEEE...

在IEEE-14总线系统中执行连续功率流 测试环境:MATLAB 读取IEEE14和 IEEE30系统数据。 连续潮流又称为延拓潮流,是电力系统电压稳定性分析的有力工具。 PV曲线由于反映了系统随着负荷的变化而引起的节点电压的变化状况,因此,已经被…

作者头像 李华
网站建设 2026/6/6 16:48:04

别只盯着那只“鹦鹉”了!Claude3.7与Sora2才是真正的生产力怪兽

在AI圈子里混久了 你会发现一个怪象 大家都只知道那个G开头的模型 其实在很多专业领域 真正的王者早就换人了 比如写代码和长文本分析 Claude系列才是永远的神 它的逻辑推理能力 简直像是一个严谨的大学教授 而不仅仅是一个会聊天的机器人 还有最近火出圈的Sora2 以…

作者头像 李华