Use general instruction/stack pointer convenience method instead of manually
finding the instruction/stack pointer for exploitability rating. There was already a method that found the instruction pointer, so the files for exploitability ratings had repeated code. Also a method for finding the stack pointer is implemented in this CL. R=ivanpe@chromium.org Review URL: https://codereview.chromium.org/1210943005 git-svn-id: http://google-breakpad.googlecode.com/svn/trunk@1468 4c0a9323-5329-0410-9bdc-e9ce6186880e
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@ -140,6 +140,11 @@ typedef struct {
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MDVectorSaveAreaPPC vector_save;
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} MDRawContextPPC; /* Based on ppc_thread_state */
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/* Indices into gpr for registers with a dedicated or conventional purpose. */
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enum MDPPCRegisterNumbers {
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MD_CONTEXT_PPC_REG_SP = 1
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};
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#if defined(__SUNPRO_C) || defined(__SUNPRO_CC)
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#pragma pack(0)
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#else
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@ -112,6 +112,11 @@ typedef struct {
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MDVectorSaveAreaPPC vector_save;
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} MDRawContextPPC64; /* Based on ppc_thread_state */
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/* Indices into gpr for registers with a dedicated or conventional purpose. */
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enum MDPPC64RegisterNumbers {
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MD_CONTEXT_PPC64_REG_SP = 1
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};
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/* For (MDRawContextPPC).context_flags. These values indicate the type of
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* context stored in the structure. MD_CONTEXT_PPC is Breakpad-defined. Its
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* value was chosen to avoid likely conflicts with MD_CONTEXT_* for other
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@ -138,6 +138,11 @@ typedef struct {
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} MDRawContextSPARC; /* CONTEXT_SPARC */
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/* Indices into g_r for registers with a dedicated or conventional purpose. */
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enum MDSPARCRegisterNumbers {
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MD_CONTEXT_SPARC_REG_SP = 14
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};
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/* For (MDRawContextSPARC).context_flags. These values indicate the type of
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* context stored in the structure. MD_CONTEXT_SPARC is Breakpad-defined. Its
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* value was chosen to avoid likely conflicts with MD_CONTEXT_* for other
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@ -67,6 +67,10 @@ class DumpContext : public DumpObject {
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// MDRawContext, since it varies per-CPU architecture.
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bool GetInstructionPointer(uint64_t* ip) const;
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// Similar to the GetInstructionPointer method, this method gets the stack
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// pointer for all CPU architectures.
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bool GetStackPointer(uint64_t* sp) const;
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// Print a human-readable representation of the object to stdout.
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void Print();
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@ -185,6 +185,49 @@ bool DumpContext::GetInstructionPointer(uint64_t* ip) const {
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return true;
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}
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bool DumpContext::GetStackPointer(uint64_t* sp) const {
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BPLOG_IF(ERROR, !sp) << "DumpContext::GetStackPointer requires |sp|";
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assert(sp);
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*sp = 0;
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if (!valid_) {
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BPLOG(ERROR) << "Invalid DumpContext for GetStackPointer";
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return false;
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}
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switch (GetContextCPU()) {
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case MD_CONTEXT_AMD64:
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*sp = GetContextAMD64()->rsp;
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break;
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case MD_CONTEXT_ARM:
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*sp = GetContextARM()->iregs[MD_CONTEXT_ARM_REG_SP];
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break;
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case MD_CONTEXT_ARM64:
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*sp = GetContextARM64()->iregs[MD_CONTEXT_ARM64_REG_SP];
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break;
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case MD_CONTEXT_PPC:
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*sp = GetContextPPC()->gpr[MD_CONTEXT_PPC_REG_SP];
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break;
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case MD_CONTEXT_PPC64:
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*sp = GetContextPPC64()->gpr[MD_CONTEXT_PPC64_REG_SP];
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break;
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case MD_CONTEXT_SPARC:
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*sp = GetContextSPARC()->g_r[MD_CONTEXT_SPARC_REG_SP];
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break;
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case MD_CONTEXT_X86:
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*sp = GetContextX86()->esp;
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break;
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case MD_CONTEXT_MIPS:
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*sp = GetContextMIPS()->iregs[MD_CONTEXT_MIPS_REG_SP];
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break;
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default:
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// This should never happen.
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BPLOG(ERROR) << "Unknown CPU architecture in GetStackPointer";
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return false;
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}
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return true;
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}
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void DumpContext::SetContextFlags(uint32_t context_flags) {
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context_flags_ = context_flags;
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}
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@ -37,8 +37,8 @@
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#include "processor/exploitability_linux.h"
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#include "google_breakpad/common/minidump_exception_linux.h"
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#include "google_breakpad/processor/process_state.h"
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#include "google_breakpad/processor/call_stack.h"
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#include "google_breakpad/processor/process_state.h"
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#include "google_breakpad/processor/stack_frame.h"
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#include "processor/logging.h"
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@ -98,26 +98,9 @@ ExploitabilityRating ExploitabilityLinux::CheckPlatformExploitability() {
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return EXPLOITABILITY_ERR_PROCESSING;
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}
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// Getting instruction pointer based off architecture.
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uint32_t architecture = context->GetContextCPU();
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switch (architecture) {
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case MD_CONTEXT_X86:
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instruction_ptr = context->GetContextX86()->eip;
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break;
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case MD_CONTEXT_AMD64:
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instruction_ptr = context->GetContextAMD64()->rip;
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break;
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case MD_CONTEXT_ARM:
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instruction_ptr =
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context->GetContextARM()->iregs[MD_CONTEXT_ARM_REG_PC];
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break;
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case MD_CONTEXT_ARM64:
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instruction_ptr =
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context->GetContextARM64()->iregs[MD_CONTEXT_ARM64_REG_PC];
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break;
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default:
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BPLOG(INFO) << "Unsupported architecture.";
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return EXPLOITABILITY_ERR_PROCESSING;
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// Getting the instruction pointer.
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if (!context->GetInstructionPointer(&instruction_ptr)) {
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return EXPLOITABILITY_ERR_PROCESSING;
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}
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// Checking for the instruction pointer in a valid instruction region.
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@ -106,18 +106,14 @@ ExploitabilityRating ExploitabilityWin::CheckPlatformExploitability() {
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uint64_t stack_ptr = 0;
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uint64_t instruction_ptr = 0;
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switch (context->GetContextCPU()) {
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case MD_CONTEXT_X86:
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stack_ptr = context->GetContextX86()->esp;
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instruction_ptr = context->GetContextX86()->eip;
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break;
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case MD_CONTEXT_AMD64:
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stack_ptr = context->GetContextAMD64()->rsp;
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instruction_ptr = context->GetContextAMD64()->rip;
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break;
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default:
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BPLOG(INFO) << "Unsupported architecture.";
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return EXPLOITABILITY_ERR_PROCESSING;
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// Getting the instruction pointer.
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if (!context->GetInstructionPointer(&instruction_ptr)) {
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return EXPLOITABILITY_ERR_PROCESSING;
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}
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// Getting the stack pointer.
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if (!context->GetStackPointer(&stack_ptr)) {
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return EXPLOITABILITY_ERR_PROCESSING;
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}
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// Check if we are executing on the stack.
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