a1afa23bc4
This has three major changes to SourcePawn. First, the API now supports the concept of "exceptions". The exception state is a global property of an instance of the SourcePawn VM. Exceptions can be caught or suppressed. Many places in SourceMod have been updated to check exceptions instead of errors. The new API obsoletes major parts of the embedder API - all but one method of invoking functions is obsoleted, and the debug interface has been scrapped. Extensions using the native API will not be affected, however, ThrowNativeError has been deprecated in favor of ReportError. Second, the SourcePawn concept of a "stack" has been unified at the API level. A stack frame iterator now iterates over all SourcePawn invocations, rather than the topmost plugin. This makes error handling more consistent and removes another dependency on context-per-plugin. Finally, the implementation of stack frames has been changed dramatically. Rather than maintain a complicated and expensive return pointer stack, we now rely on the implicit one provided by the CPU. The stack frame iterator now walks the JIT stack directly. This removes many unnecessary bookkeeping instructions from the generated code, in particular making the CALL instruction 40% faster. These changes required some fair surgery to the JIT. Its error paths are now slightly more complicated, as they have to throw an exception rather than return an error code. In addition, any path that can throw an exception is now responsible for creating an "exit frame", which exists to tell the stack frame iterator about transitions from the JIT to the VM.
228 lines
5.4 KiB
C++
228 lines
5.4 KiB
C++
// vim: set sts=2 ts=8 sw=2 tw=99 et:
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//
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// Copyright (C) 2006-2015 AlliedModders LLC
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//
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// This file is part of SourcePawn. SourcePawn is free software: you can
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// redistribute it and/or modify it under the terms of the GNU General Public
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// License as published by the Free Software Foundation, either version 3 of
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// the License, or (at your option) any later version.
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//
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// You should have received a copy of the GNU General Public License along with
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// SourcePawn. If not, see http://www.gnu.org/licenses/.
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//
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#include "environment.h"
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#include "plugin-runtime.h"
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#include "plugin-context.h"
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#include "stack-frames.h"
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#include "x86/frames-x86.h"
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#include "compiled-function.h"
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using namespace ke;
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using namespace sp;
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using namespace SourcePawn;
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InvokeFrame::InvokeFrame(PluginContext *cx, cell_t entry_cip)
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: prev_(Environment::get()->top()),
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cx_(cx),
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prev_exit_frame_(Environment::get()->exit_frame()),
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entry_cip_(0),
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entry_sp_(nullptr)
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{
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Environment::get()->enterInvoke(this);
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}
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InvokeFrame::~InvokeFrame()
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{
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assert(Environment::get()->top() == this);
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Environment::get()->leaveInvoke();
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}
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FrameIterator::FrameIterator()
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: ivk_(Environment::get()->top()),
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exit_frame_(Environment::get()->exit_frame()),
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runtime_(nullptr),
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sp_iter_(nullptr),
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sp_stop_(nullptr),
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function_cip_(kInvalidCip),
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cip_(kInvalidCip),
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pc_(nullptr)
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{
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if (!ivk_)
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return;
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nextInvokeFrame();
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}
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void
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FrameIterator::nextInvokeFrame()
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{
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assert(exit_frame_.exit_sp());
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sp_iter_ = exit_frame_.exit_sp();
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// Inside an exit frame, the stack looks like this:
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// .. C++ ..
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// ----------- <-- entry_sp
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// return addr to C++
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// entry cip for frame #0
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// alignment
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// -----------
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// return addr to frame #0
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// entry cip for frame #1
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// alignment
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// ----------- <-- exit sp
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// saved regs
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// return addr
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// .. InvokeNativeBoundHelper() ..
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//
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// We are guaranteed to always have one frame. We subtract one frame from
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// the entry sp so we hit the stopping point correctly.
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assert(ivk_->entry_sp());
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assert(ke::IsAligned(sizeof(JitFrame), sizeof(intptr_t)));
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sp_stop_ = ivk_->entry_sp() - (sizeof(JitFrame) / sizeof(intptr_t));
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assert(sp_stop_ >= sp_iter_);
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runtime_ = ivk_->cx()->runtime();
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function_cip_ = -1;
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pc_ = nullptr;
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cip_ = kInvalidCip;
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if (!exit_frame_.has_exit_native()) {
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// We have an exit frame, but it's not for natives. automatically advance
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// to the most recent scripted frame.
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const JitExitFrameForHelper *exit =
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JitExitFrameForHelper::FromExitSp(exit_frame_.exit_sp());
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exit_frame_ = ExitFrame();
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// If we haven't compiled the function yet, but threw an error, then the
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// return address will be null.
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pc_ = exit->return_address;
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assert(pc_ || exit->isCompileFunction());
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// The function owning pc_ is in the previous frame.
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const JitFrame *frame = exit->prev();
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function_cip_ = frame->function_cip;
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sp_iter_ = reinterpret_cast<const intptr_t *>(frame);
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return;
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}
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}
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void
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FrameIterator::Next()
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{
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void *pc = nullptr;
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if (exit_frame_.has_exit_native()) {
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// If we're at an exit frame, the return address will yield the current pc.
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const JitExitFrameForNative *exit =
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JitExitFrameForNative::FromExitSp(exit_frame_.exit_sp());
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exit_frame_ = ExitFrame();
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pc_ = exit->return_address;
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cip_ = kInvalidCip;
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// The function owning pc_ is in the previous frame.
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const JitFrame *frame = JitFrame::FromSp(sp_iter_);
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function_cip_ = frame->function_cip;
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return;
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}
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if (sp_iter_ >= sp_stop_) {
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// Jump to the next invoke frame.
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exit_frame_ = ivk_->prev_exit_frame();
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ivk_ = ivk_->prev();
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if (!ivk_)
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return;
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nextInvokeFrame();
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return;
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}
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pc_ = JitFrame::FromSp(sp_iter_)->return_address;
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assert(pc_);
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// Advance, and find the function cip the pc belongs to.
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sp_iter_ = reinterpret_cast<const intptr_t *>(JitFrame::FromSp(sp_iter_) + 1);
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function_cip_ = JitFrame::FromSp(sp_iter_)->function_cip;
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cip_ = kInvalidCip;
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}
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void
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FrameIterator::Reset()
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{
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*this = FrameIterator();
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}
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cell_t
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FrameIterator::findCip() const
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{
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CompiledFunction *fn = runtime_->GetJittedFunctionByOffset(function_cip_);
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if (!fn)
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return 0;
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if (cip_ == kInvalidCip) {
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if (pc_)
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cip_ = fn->FindCipByPc(pc_);
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else
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cip_ = function_cip_;
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}
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return cip_;
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}
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unsigned
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FrameIterator::LineNumber() const
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{
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cell_t cip = findCip();
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if (cip == kInvalidCip)
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return 0;
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uint32_t line;
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if (!runtime_->image()->LookupLine(cip, &line))
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return 0;
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return line;
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}
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const char *
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FrameIterator::FilePath() const
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{
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cell_t cip = findCip();
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if (cip == kInvalidCip)
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return runtime_->image()->LookupFile(function_cip_);
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return runtime_->image()->LookupFile(cip);
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}
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const char *
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FrameIterator::FunctionName() const
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{
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assert(ivk_);
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if (exit_frame_.has_exit_native()) {
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uint32_t native_index = exit_frame_.exit_native();
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const sp_native_t *native = runtime_->GetNative(native_index);
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if (!native)
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return nullptr;
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return native->name;
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}
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return runtime_->image()->LookupFunction(function_cip_);
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}
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bool
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FrameIterator::IsNativeFrame() const
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{
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return exit_frame_.has_exit_native();
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}
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bool
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FrameIterator::IsScriptedFrame() const
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{
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return !IsNativeFrame() && ivk_;
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}
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IPluginContext *
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FrameIterator::Context() const
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{
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if (!ivk_)
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return nullptr;
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return ivk_->cx();
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}
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