Added samples projects for MSVC binding.

Added MSVC support to unicorn samples.
This commit is contained in:
xorstream 2015-12-08 18:21:32 +11:00
parent c08fa22550
commit c5c13e110a
20 changed files with 1199 additions and 34 deletions

3
.gitignore vendored
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@ -128,6 +128,8 @@ sparc_jump_to_zero
## files generated by popular Visual Studio add-ons.
# User-specific files
*.opensdf
*.sdf
*.suo
*.user
*.sln.docstates
@ -137,6 +139,7 @@ sparc_jump_to_zero
[Dd]ebug/
[Rr]elease/
x64/
Win32/
build/
[Bb]in/
[Oo]bj/

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@ -1,4 +1,4 @@
This directory contains bindings & test code for Python, Java, Go and .NET.
This directory contains bindings & test code for Python, Java, Go, .NET and MSVC.
See <language>/README or <language>/README.TXT for how to install each binding.
The following bindings are contributed by community.
@ -6,6 +6,7 @@ The following bindings are contributed by community.
- Java binding: by Chris Eagle.
- Go binding: by Ryan Hileman.
- .NET binding: by Antonio Parata.
- MSVC binding: by Zak Escano
More bindings created & maintained externally by community are available as follows.

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@ -1,3 +1,7 @@
:: Overview
This documentation explains how to use Unicorn with Microsoft Visual C++ (MSVC).
This will not build the Unicorn Engine itself, it just allows you to use the
prebuilt Windows binaries when writing projects in Microsoft Visual C++.
@ -8,17 +12,19 @@ heading on the following page. Be sure to use the 32bit package when making
build 64bit applications.
http://www.unicorn-engine.org/download/
It is not possible to use the prebuilt static Unicorn library, unicorn.lib,
It is not possible to use the prebuilt static Unicorn library "unicorn.lib"
with Microsoft Visual C++ because it will complain about a bunch of missing
functions, variables etc.
We therefore use the prebuilt dynamic Unicorn library, unicorn.dll.
We therefore use the prebuilt dynamic Unicorn library "unicorn.dll".
There are two ways to use this with your Microsoft Visual C++ project:
1) By dynamically linking the dll into your project.
2) By statically linking the dll into your project.
There are pre-prepared sample projects that use each method, but in the event
you wish to set up your own projects there are details to do so below.
:: 1) Dynamic Linking
@ -49,6 +55,7 @@ Now build your application as normal.
:: 2) Static Linking
To perform static linking of unicorn.dll, you need to first generate some
@ -75,3 +82,106 @@ Or by adding "unicorn_staload.lib" to your project in:
Configuration Properties -> C/C++ -> Linker -> Input -> Additional Dependencies
:: Notes about Visual Studio versions.
These solution and project files were created using Visual Studio 2012.
They should be able to be opened in newer versions of Visual Studio.
For older versions of Visual Studio you could try a little hack of changing
the line in the solution file "samples.sln" from:
Microsoft Visual Studio Solution File, Format Version 12.00
to
Microsoft Visual Studio Solution File, Format Version 11.00
Or whatever version number your Visual Studio version uses.
(Hint: Check an existing solution file you have created with your version
of Visual Studio to know what this value is expected to be.)
Also note that all instructions below are for Visual Studio 2012. So if you
are using a different version then the settings may be located in different
areas or have different names.
:: Building the pre-prepared sample projects
Some sample projects have been included in the bindings\msvc\samples directory.
The solution file in this directory is "samples.sln".
This was created with Visual Studio 2012 and once opened contains 2 projects
"dynload" and "staload".
The "dynload" project is an example of a project that uses dynamic linking.
The "satload" project is an example of a project that uses static linking.
Both projects have 32bit (win32) and 64bit (x64) target platforms.
The 32bit platform (win32) will create a 32bit app that can run on either
32bit or 64bit Windows. The 64bit platform (x64) can only run on 64bit Windows.
All variants can be built at once by using the batch build function:
Go to "Build -> Batch Build" and tick all checkboxes, or at least the ones
that you wish to build. Then click on the Build or Rebuild button.
Note that when building the "staload" projects you must first have built
the static import libraries as mentioned above.
:: Running the pre-prepared sample projects
When running the samples they will need to be able to load the unicorn dlls.
The unicorn dlls required for 32bit apps are:
libgcc_s_dw2-1.dll
libglib-2.0-0.dll
libiconv-2.dll
libintl-8.dll
libwinpthread-1.dll
unicorn.dll
The unicorn dlls required for 64bit apps are:
libgcc_s_seh-1.dll
libglib-2.0-0.dll
libiconv-2.dll
libintl-8.dll
libwinpthread-1.dll
unicorn.dll
Note that while some of the 32bit and 64bit dlls have the same filename,
they are internally different in that they are either 32bit or 64bit files
themselves. So you will have to have separate directories to store them in.
I suggest using directory names such as "unicorn32" and "unicorn64" when
installing the prebuilt windows binaries. This will make it easy to
differentiate between them.
If running the sample exe files from the command line or from Windows Explorer
then you need ensure that the exe file is in the same directory as either the
32bit or 64bit set of dlls.
To run the samples from inside Visual Studio so that you can debug them or just
easily test various changes you should set the working directory to point to a
directory that contains all of the dlls. Assuming you are running a 32bit app
and have the 32bit unicorn dlls in the directory "C:\unicorn32" then do:
1) Go to the Solution Explorer window in Visual Studio.
You can use "View -> Solution Explorer" to get to it.
2) Highlight one or more projects that you want to run/debu from in
Visual Studio. Use hold control when selecting to select multiples,
or hold Shift to select ranges of projects.
3) Right click on the selected projects and go to Properties.
4) Now go to "Configuration Properties -> Debugging -> Working Directory".
Change the value for this to "C:\unicorn32".
You will need to change this for both Debug and Release configurations.
You can change between configurations on the top left of the Property Pages
dialog box that you are currently on.
6) Click OK when done and then you are ready to run or debug the projects.
Do "Debug -> Start Debugging" or press F5 to debug the current project.
Do "Debug -> Start Without Debugging" or press Ctrl+F5 to run the current project.
You can change the current project by right clicking on a project in
Solution Explorer and selecting "Set as StartUp Project"

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@ -0,0 +1,7 @@
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//
// Simple code as an example for building apps with MSVC++ using the Unicorn Engine.
//
// Zak Escano - December 2015
//
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// Test MIPS little endian code.
// It should loop 3 times before ending.
const uint64_t addr = 0x100000;
const unsigned char loop_test_code[] = {
0x02,0x00,0x04,0x24, // 100000: li $a0, 2
// loop1
0x00,0x00,0x00,0x00, // 100004: nop
0xFE,0xFF,0x80,0x14, // 100008: bnez $a0, loop1
0xFF,0xFF,0x84,0x24, // 10000C: addiu $a0, -1
};
bool test_passed_ok = false;
int loop_count = 0;
static void mips_codehook(uc_engine *uc, uint64_t address, uint32_t size, void *user_data)
{
if( address == 0x10000C )
test_passed_ok = true;
if( address == 0x100004 )
{
printf("\nloop %d:\n", loop_count);
loop_count++;
}
printf("Code: %llX\n", address);
}
int main(int argc, char **argv, char **envp)
{
uc_engine *uc;
uc_err err;
uc_hook hhc;
uint32_t val;
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
// Initialize emulator in MIPS 32bit little endian mode
err = uc_open(UC_ARCH_MIPS, UC_MODE_MIPS32, &uc);
if (err)
{
printf("Failed on uc_open() with error returned: %u\n", err);
return err;
}
// map in a page of mem
err = uc_mem_map(uc, addr, 0x1000, UC_PROT_ALL);
if (err)
{
printf("Failed on uc_mem_map() with error returned: %u\n", err);
return err;
}
// write machine code to be emulated to memory
err = uc_mem_write(uc, addr, loop_test_code, sizeof(loop_test_code));
if( err )
{
printf("Failed on uc_mem_write() with error returned: %u\n", err);
return err;
}
// hook all instructions by having @begin > @end
uc_hook_add(uc, &hhc, UC_HOOK_CODE, mips_codehook, NULL, (uint64_t)1, (uint64_t)0);
if( err )
{
printf("Failed on uc_hook_add(code) with error returned: %u\n", err);
return err;
}
// execute code
printf("---- Executing Code ----\n");
err = uc_emu_start(uc, addr, addr + sizeof(loop_test_code), 0, 0);
if (err)
{
printf("Failed on uc_emu_start() with error returned %u: %s\n",
err, uc_strerror(err));
return err;
}
// done executing, print some reg values as a test
printf("---- Execution Complete ----\n\n");
uc_reg_read(uc, UC_MIPS_REG_PC, &val); printf("pc is %X\n", val);
uc_reg_read(uc, UC_MIPS_REG_A0, &val); printf("a0 is %X\n", val);
// free resources
uc_close(uc);
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

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@ -0,0 +1,36 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio 2012
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "dynload", "dynload\dynload.vcxproj", "{EBBC5CEA-1237-4E20-9E38-E610D3C529EB}"
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</ItemDefinitionGroup>
<ItemDefinitionGroup Condition="'$(Configuration)|$(Platform)'=='Release|Win32'">
<ClCompile>
<WarningLevel>Level3</WarningLevel>
<PrecompiledHeader>
</PrecompiledHeader>
<Optimization>MaxSpeed</Optimization>
<FunctionLevelLinking>true</FunctionLevelLinking>
<IntrinsicFunctions>true</IntrinsicFunctions>
<PreprocessorDefinitions>WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<RuntimeLibrary>MultiThreaded</RuntimeLibrary>
<AdditionalIncludeDirectories>..\..;..\..\..\..\include</AdditionalIncludeDirectories>
</ClCompile>
<Link>
<SubSystem>Console</SubSystem>
<GenerateDebugInformation>true</GenerateDebugInformation>
<EnableCOMDATFolding>true</EnableCOMDATFolding>
<OptimizeReferences>true</OptimizeReferences>
<AdditionalLibraryDirectories>..\..</AdditionalLibraryDirectories>
</Link>
</ItemDefinitionGroup>
<ItemDefinitionGroup Condition="'$(Configuration)|$(Platform)'=='Release|x64'">
<ClCompile>
<WarningLevel>Level3</WarningLevel>
<PrecompiledHeader>
</PrecompiledHeader>
<Optimization>MaxSpeed</Optimization>
<FunctionLevelLinking>true</FunctionLevelLinking>
<IntrinsicFunctions>true</IntrinsicFunctions>
<PreprocessorDefinitions>WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions)</PreprocessorDefinitions>
<RuntimeLibrary>MultiThreaded</RuntimeLibrary>
<AdditionalIncludeDirectories>..\..;..\..\..\..\include</AdditionalIncludeDirectories>
</ClCompile>
<Link>
<SubSystem>Console</SubSystem>
<GenerateDebugInformation>true</GenerateDebugInformation>
<EnableCOMDATFolding>true</EnableCOMDATFolding>
<OptimizeReferences>true</OptimizeReferences>
<AdditionalLibraryDirectories>..\..</AdditionalLibraryDirectories>
</Link>
</ItemDefinitionGroup>
<ItemGroup>
<ClCompile Include="..\main.c" />
</ItemGroup>
<Import Project="$(VCTargetsPath)\Microsoft.Cpp.targets" />
<ImportGroup Label="ExtensionTargets">
</ImportGroup>
</Project>

View File

@ -0,0 +1,6 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="4.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<ItemGroup>
<ClCompile Include="..\main.c" />
</ItemGroup>
</Project>

View File

@ -26,6 +26,9 @@
// Zak Escano - November 2015
//
// Only use this if DYNLOAD is set in preprocessor definitions
#ifdef DYNLOAD
// This is to detect whether we are loading a dll in windows or a so in linux.
#ifdef _MSC_VER
#define WINDOWS_DLL 1
@ -276,3 +279,4 @@ uc_err uc_mem_protect(uc_engine *uc, uint64_t address, size_t size, uint32_t per
return gp_uc_mem_protect(uc, address, size, perms);
}
#endif // DYNLOAD

View File

@ -19,14 +19,36 @@
*/
#define __STDC_FORMAT_MACROS
#include <inttypes.h>
#include <string.h>
// windows specific includes
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific includes
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// common includes
#include <string.h>
#include <stdlib.h>
#include <string.h>
#include <time.h>
#include <unicorn/unicorn.h>
static int insts_executed;
@ -337,9 +359,26 @@ static void unmap_test()
int main(int argc, char **argv, char **envp)
{
nx_test();
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
nx_test();
perms_test();
unmap_test();
return 0;
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

141
samples/msvc/README.TXT Normal file
View File

@ -0,0 +1,141 @@

:: Notes about Visual Studio versions.
These solution and project files were created using Visual Studio 2012.
They should be able to be opened in newer versions of Visual Studio.
For older versions of Visual Studio you could try a little hack of changing
the line in the solution file "msvc.sln" from:
Microsoft Visual Studio Solution File, Format Version 12.00
to
Microsoft Visual Studio Solution File, Format Version 11.00
Or whatever version number your Visual Studio version uses.
(Hint: Check an existing solution file you have created with your version
of Visual Studio to know what this value is expected to be.)
Also note that all instructions below are for Visual Studio 2012. So if you
are using a different version then the settings may be located in different
areas or have different names.
:: Notes about the building the sample projects
The projects have 32bit (win32) and 64bit (x64) target platforms.
The 32bit platform (win32) will create a 32bit app that can run on either
32bit or 64bit Windows. The 64bit platform (x64) can only run on 64bit Windows.
All variants can be built at once by using the batch build function:
Go to "Build -> Batch Build" and tick all checkboxes, or at least the ones
that you wish to build. Then click on the Build or Rebuild button.
Note that when building the "staload" projects you must first have built
the static import libraries as mentioned above.
The samples projects all come preset to be built using dynamic loading of
the unicorn dlls. If you wish to use static loading of the unicorn dlls
then you need see the next section.
:: Using static linking of dlls
It is possible to perform static linking of the unicorn dlls which will
load and import the dlls when the exe file itself is loaded. Personally
I prefer dynamic loading in which you load the dlls in your program code
at runtime. This way if it fails you have the opportunity to display a
more meaning error message. Dynamic loading also gives you more
advanced options for where to load the dll files from.
If you do wish to do static linking of dlls then the following changes
need to be made to each project. Note that multiple projects can be
highlighted and have their settings changed at the one time.
1) First ensure the static linking library has been built.
Run bindings\msvc\make_staload.bat to build these.
You may need to first alter this batch file to point to the correct
location of your "vcvars32.bat" file.
If successful you will now have the files "bindings\msvc\unicorn_staload.lib"
and "bindings\msvc\unicorn_staload64.lib".
2) Go to the Solution Explorer window in Visual Studio.
You can use "View -> Solution Explorer" to get to it.
3) Highlight one or more projects that you want to change to use
static linking. Use hold control when selecting to select multiples,
or hold Shift to select ranges of projects.
4) Right click on the selected projects and go to Properties.
5) Now go to "Configuration Properties -> C/C++ -> Preprocessor ->
Preprocessor Definitions". Remove the DYNLOAD entry and its preceeding
semi-colon. You will need to remove DYNLOAD for both Debug and Release
configurations. You can change between configurations on the top left
of the Property Pages dialog box that you are currently on.
6) Click OK when done and then rebuild the altered projects.
Be sure to Rebuild and not just Build to ensure that the change you
made are used.
:: Running the samples
When running the samples they will need to be able to load the unicorn dlls.
The unicorn dlls required for 32bit apps are:
libgcc_s_dw2-1.dll
libglib-2.0-0.dll
libiconv-2.dll
libintl-8.dll
libwinpthread-1.dll
unicorn.dll
The unicorn dlls required for 64bit apps are:
libgcc_s_seh-1.dll
libglib-2.0-0.dll
libiconv-2.dll
libintl-8.dll
libwinpthread-1.dll
unicorn.dll
Note that while some of the 32bit and 64bit dlls have the same filename,
they are internally different in that they are either 32bit or 64bit files
themselves. So you will have to have separate directories to store them in.
I suggest using directory names such as "unicorn32" and "unicorn64" when
installing the prebuilt windows binaries. This will make it easy to
differentiate between them.
If running the sample exe files from the command line or from Windows Explorer
then you need ensure that the exe file is in the same directory as either the
32bit or 64bit set of dlls.
To run the samples from inside Visual Studio so that you can debug them or just
easily test various changes you should set the working directory to point to a
directory that contains all of the dlls. Assuming you are running a 32bit app
and have the 32bit unicorn dlls in the directory "C:\unicorn32" then do:
1) Go to the Solution Explorer window in Visual Studio.
You can use "View -> Solution Explorer" to get to it.
2) Highlight one or more projects that you want to run/debu from in
Visual Studio. Use hold control when selecting to select multiples,
or hold Shift to select ranges of projects.
3) Right click on the selected projects and go to Properties.
4) Now go to "Configuration Properties -> Debugging -> Working Directory".
Change the value for this to "C:\unicorn32".
You will need to change this for both Debug and Release configurations.
You can change between configurations on the top left of the Property Pages
dialog box that you are currently on.
6) Click OK when done and then you are ready to run or debug the projects.
Do "Debug -> Start Debugging" or press F5 to debug the current project.
Do "Debug -> Start Without Debugging" or press Ctrl+F5 to run the current project.
You can change the current project by right clicking on a project in
Solution Explorer and selecting "Set as StartUp Project"

96
samples/msvc/msvc.sln Normal file
View File

@ -0,0 +1,96 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio 2012
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "mem_apis", "mem_apis\mem_apis.vcxproj", "{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "sample_arm", "sample_arm\sample_arm.vcxproj", "{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "sample_arm64", "sample_arm64\sample_arm64.vcxproj", "{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "sample_m68k", "sample_m68k\sample_m68k.vcxproj", "{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "sample_mips", "sample_mips\sample_mips.vcxproj", "{5E004A76-1625-44F1-A1EA-64C4FD15F642}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "sample_x86", "sample_x86\sample_x86.vcxproj", "{F8AD989E-D273-42DA-80A6-B6466EB134CA}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "sample_sparc", "sample_sparc\sample_sparc.vcxproj", "{2906001D-9B80-4400-8B3A-4445CDAED54F}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "shellcode", "shellcode\shellcode.vcxproj", "{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Win32 = Debug|Win32
Debug|x64 = Debug|x64
Release|Win32 = Release|Win32
Release|x64 = Release|x64
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Debug|Win32.ActiveCfg = Debug|Win32
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Debug|Win32.Build.0 = Debug|Win32
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Debug|x64.ActiveCfg = Debug|x64
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Debug|x64.Build.0 = Debug|x64
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Release|Win32.ActiveCfg = Release|Win32
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Release|Win32.Build.0 = Release|Win32
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Release|x64.ActiveCfg = Release|x64
{ECA2292F-FD4F-4943-B0FC-093B6D35FEBA}.Release|x64.Build.0 = Release|x64
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Debug|Win32.ActiveCfg = Debug|Win32
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Debug|Win32.Build.0 = Debug|Win32
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Debug|x64.ActiveCfg = Debug|x64
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Debug|x64.Build.0 = Debug|x64
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Release|Win32.ActiveCfg = Release|Win32
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Release|Win32.Build.0 = Release|Win32
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Release|x64.ActiveCfg = Release|x64
{8FF2F8F8-14CE-4899-998F-2C0BBE43FB6E}.Release|x64.Build.0 = Release|x64
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Debug|Win32.ActiveCfg = Debug|Win32
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Debug|Win32.Build.0 = Debug|Win32
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Debug|x64.ActiveCfg = Debug|x64
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Debug|x64.Build.0 = Debug|x64
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Release|Win32.ActiveCfg = Release|Win32
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Release|Win32.Build.0 = Release|Win32
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Release|x64.ActiveCfg = Release|x64
{43AEBCD7-BD18-4F0D-8AF8-536F62F92AAD}.Release|x64.Build.0 = Release|x64
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Debug|Win32.ActiveCfg = Debug|Win32
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Debug|Win32.Build.0 = Debug|Win32
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Debug|x64.ActiveCfg = Debug|x64
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Debug|x64.Build.0 = Debug|x64
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Release|Win32.ActiveCfg = Release|Win32
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Release|Win32.Build.0 = Release|Win32
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Release|x64.ActiveCfg = Release|x64
{39ABA118-6289-43D6-AB6C-8B3AB3CB9390}.Release|x64.Build.0 = Release|x64
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Debug|Win32.ActiveCfg = Debug|Win32
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Debug|Win32.Build.0 = Debug|Win32
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Debug|x64.ActiveCfg = Debug|x64
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Debug|x64.Build.0 = Debug|x64
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Release|Win32.ActiveCfg = Release|Win32
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Release|Win32.Build.0 = Release|Win32
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Release|x64.ActiveCfg = Release|x64
{5E004A76-1625-44F1-A1EA-64C4FD15F642}.Release|x64.Build.0 = Release|x64
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Debug|Win32.ActiveCfg = Debug|Win32
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Debug|Win32.Build.0 = Debug|Win32
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Debug|x64.ActiveCfg = Debug|x64
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Debug|x64.Build.0 = Debug|x64
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Release|Win32.ActiveCfg = Release|Win32
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Release|Win32.Build.0 = Release|Win32
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Release|x64.ActiveCfg = Release|x64
{F8AD989E-D273-42DA-80A6-B6466EB134CA}.Release|x64.Build.0 = Release|x64
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Debug|Win32.ActiveCfg = Debug|Win32
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Debug|Win32.Build.0 = Debug|Win32
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Debug|x64.ActiveCfg = Debug|x64
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Debug|x64.Build.0 = Debug|x64
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Release|Win32.ActiveCfg = Release|Win32
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Release|Win32.Build.0 = Release|Win32
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Release|x64.ActiveCfg = Release|x64
{2906001D-9B80-4400-8B3A-4445CDAED54F}.Release|x64.Build.0 = Release|x64
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Debug|Win32.ActiveCfg = Debug|Win32
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Debug|Win32.Build.0 = Debug|Win32
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Debug|x64.ActiveCfg = Debug|x64
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Debug|x64.Build.0 = Debug|x64
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Release|Win32.ActiveCfg = Release|Win32
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Release|Win32.Build.0 = Release|Win32
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Release|x64.ActiveCfg = Release|x64
{4A8F2E9A-C2D8-4A93-8451-5F3BD73A4227}.Release|x64.Build.0 = Release|x64
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
EndGlobal

View File

@ -3,9 +3,28 @@
/* Sample code to demonstrate how to emulate ARM code */
#include <inttypes.h>
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// code to be emulated
@ -132,9 +151,26 @@ static void test_thumb(void)
int main(int argc, char **argv, char **envp)
{
test_arm();
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
test_arm();
printf("==========================\n");
test_thumb();
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

View File

@ -3,9 +3,28 @@
/* Sample code to demonstrate how to emulate ARM64 code */
#include <inttypes.h>
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// code to be emulated
@ -79,7 +98,24 @@ static void test_arm64(void)
int main(int argc, char **argv, char **envp)
{
test_arm64();
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
test_arm64();
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

View File

@ -3,8 +3,28 @@
/* Sample code to demonstrate how to emulate m68k code */
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// code to be emulated
#define M68K_CODE "\x76\xed" // movq #-19, %d3
@ -140,6 +160,24 @@ static void test_m68k(void)
int main(int argc, char **argv, char **envp)
{
test_m68k();
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
test_m68k();
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

View File

@ -3,9 +3,28 @@
/* Sample code to demonstrate how to emulate Mips code (big endian) */
#include <inttypes.h>
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// code to be emulated
@ -126,8 +145,25 @@ static void test_mips_el(void)
int main(int argc, char **argv, char **envp)
{
test_mips_eb();
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
test_mips_eb();
test_mips_el();
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

View File

@ -3,9 +3,28 @@
/* Sample code to demonstrate how to emulate Sparc code */
#include <inttypes.h>
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// code to be emulated
@ -81,7 +100,24 @@ static void test_sparc(void)
int main(int argc, char **argv, char **envp)
{
test_sparc();
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
test_sparc();
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

View File

@ -3,11 +3,31 @@
/* Sample code to demonstrate how to emulate X86 code */
#include <inttypes.h>
#include <string.h>
#include <unistd.h>
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// common includes
#include <string.h>
// code to be emulated
@ -792,7 +812,19 @@ static void test_x86_16(void)
int main(int argc, char **argv, char **envp)
{
if (argc == 2) {
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
if (argc == 2) {
if (!strcmp(argv[1], "-32")) {
test_i386();
test_i386_inout();
@ -823,5 +855,10 @@ int main(int argc, char **argv, char **envp)
printf("Syntax: %s <-16|-32|-64>\n", argv[0]);
}
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}

View File

@ -3,11 +3,31 @@
/* Sample code to trace code with Linux code with syscall */
#include <inttypes.h>
#include <string.h>
#include <unistd.h>
// windows specific
#ifdef _MSC_VER
#include <io.h>
#include <windows.h>
#define PRIx64 "llX"
#ifdef DYNLOAD
#include <unicorn/unicorn_dynload.h>
#else // DYNLOAD
#include <unicorn/unicorn.h>
#ifdef _WIN64
#pragma comment(lib, "unicorn_staload64.lib")
#else // _WIN64
#pragma comment(lib, "unicorn_staload.lib")
#endif // _WIN64
#endif // DYNLOAD
// posix specific
#else // _MSC_VER
#include <unistd.h>
#include <inttypes.h>
#include <unicorn/unicorn.h>
#endif // _MSC_VER
// common includes
#include <string.h>
// code to be emulated
@ -32,7 +52,7 @@ static void hook_code(uc_engine *uc, uint64_t address, uint32_t size, void *user
size = MIN(sizeof(tmp), size);
if (!uc_mem_read(uc, address, tmp, size)) {
int i;
uint32_t i;
for (i=0; i<size; i++) {
printf("%x ", tmp[i]);
}
@ -137,7 +157,19 @@ static void test_i386(void)
int main(int argc, char **argv, char **envp)
{
if (argc == 2) {
// dynamically load shared library
#ifdef DYNLOAD
if( !uc_dyn_load(NULL, 0) )
{
printf("Error dynamically loading shared library.\n");
printf("Please check that unicorn.dll/unicorn.so is available as well as\n");
printf("any other dependent dll/so files.\n");
printf("The easiest way is to place them in the same directory as this app.\n");
return 1;
}
#endif
if (argc == 2) {
if (!strcmp(argv[1], "-32")) {
test_i386();
}
@ -145,5 +177,10 @@ int main(int argc, char **argv, char **envp)
printf("Syntax: %s <-32|-64>\n", argv[0]);
}
// dynamically free shared library
#ifdef DYNLOAD
uc_dyn_free();
#endif
return 0;
}