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44 lines
2.6 KiB
Python
44 lines
2.6 KiB
Python
import volatility.framework.interfaces.plugins as plugins
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from volatility.framework.configuration import requirements
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class PsList(plugins.PluginInterface):
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@classmethod
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def get_schema(cls):
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return [requirements.TranslationLayerRequirement(name = 'primary',
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description = 'Kernel Address Space',
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constraints = {"type": "memory",
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"architecture": ["ia32", "pae"]}),
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requirements.SymbolRequirement(name = "ntkrnlmp",
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description = "Windows OS",
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constraints = {"type": "symbols",
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"os": "windows",
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"architecture": ["ia32", "pae"]}),
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requirements.IntRequirement(name = 'pid',
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description = "Process ID",
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optional = True),
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requirements.IntRequirement(name = 'offset',
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description = 'Virtual address of any process')]
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@staticmethod
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def kernel_process_from_physical_process(ctx, physical_layer, kernel_layer, offset):
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"""Return a kernel process object from physical process data."""
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# Get the process in the physical space
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flateproc = ctx.object("ntkrnlmp!_EPROCESS", physical_layer, offset = offset)
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# Determine the relative offset from the Thread head to the ThreadListEntry
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reloff = ctx.symbol_space.get_structure("ntkrnlmp!_ETHREAD").relative_child_offset("ThreadListEntry")
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# Get the thread object in kernel space from the
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ethread = ctx.object("ntkrnlmp!_ETHREAD", kernel_layer, offset = flateproc.ThreadListHead.Flink - reloff)
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# Get the process from the thread object in kernel space
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return ethread.owning_process()
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def run(self):
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# Use the primary twice until we figure out how to specify base layers of a particular translation layer
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eproc = self.kernel_process_from_physical_process(self.context,
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self.config['primary'],
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self.config['primary'],
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self.config['offset'])
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for proc in eproc.ActiveProcessLinks:
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print(proc.UniqueProcessId)
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