forked from OSchip/llvm-project
617 lines
20 KiB
C++
617 lines
20 KiB
C++
//===-- ABISysV_arc.cpp ---------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "ABISysV_arc.h"
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// C Includes
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// C++ Includes
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#include <array>
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#include <limits>
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#include <type_traits>
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// Other libraries and framework includes
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#include "llvm/ADT/Triple.h"
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#include "llvm/IR/DerivedTypes.h"
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#include "llvm/Support/MathExtras.h"
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#include "lldb/Core/Module.h"
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#include "lldb/Core/PluginManager.h"
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#include "lldb/Core/Value.h"
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#include "lldb/Core/ValueObjectConstResult.h"
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#include "lldb/Core/ValueObjectMemory.h"
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#include "lldb/Core/ValueObjectRegister.h"
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#include "lldb/Symbol/UnwindPlan.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Target/RegisterContext.h"
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#include "lldb/Target/StackFrame.h"
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#include "lldb/Target/Target.h"
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#include "lldb/Target/Thread.h"
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#include "lldb/Utility/ConstString.h"
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#include "lldb/Utility/RegisterValue.h"
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#include "lldb/Utility/Status.h"
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#define DEFINE_REG_NAME(reg_num) ConstString(#reg_num).GetCString()
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#define DEFINE_REG_NAME_STR(reg_name) ConstString(reg_name).GetCString()
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// The ABI is not a source of such information as size, offset, encoding, etc.
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// of a register. Just provides correct dwarf and eh_frame numbers.
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#define DEFINE_GENERIC_REGISTER_STUB(dwarf_num, str_name, generic_num) \
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{ \
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DEFINE_REG_NAME(dwarf_num), DEFINE_REG_NAME_STR(str_name), \
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0, 0, eEncodingInvalid, eFormatDefault, \
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{ dwarf_num, dwarf_num, generic_num, LLDB_INVALID_REGNUM, dwarf_num }, \
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nullptr, nullptr, nullptr, 0 \
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}
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#define DEFINE_REGISTER_STUB(dwarf_num, str_name) \
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DEFINE_GENERIC_REGISTER_STUB(dwarf_num, str_name, LLDB_INVALID_REGNUM)
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using namespace lldb;
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using namespace lldb_private;
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LLDB_PLUGIN_DEFINE_ADV(ABISysV_arc, ABIARC)
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namespace {
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namespace dwarf {
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enum regnums {
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r0, r1, r2, r3, r4, r5, r6, r7, r8, r9, r10, r11, r12, r13, r14, r15, r16,
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r17, r18, r19, r20, r21, r22, r23, r24, r25, r26,
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r27, fp = r27, r28, sp = r28, r29, r30, r31, blink = r31,
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r32, r33, r34, r35, r36, r37, r38, r39, r40, r41, r42, r43, r44, r45, r46,
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r47, r48, r49, r50, r51, r52, r53, r54, r55, r56, r57, r58, r59, r60,
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/*reserved,*/ /*limm indicator,*/ r63 = 63, pc = 70, status32 = 74
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};
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static const std::array<RegisterInfo, 64> g_register_infos = { {
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DEFINE_GENERIC_REGISTER_STUB(r0, nullptr, LLDB_REGNUM_GENERIC_ARG1),
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DEFINE_GENERIC_REGISTER_STUB(r1, nullptr, LLDB_REGNUM_GENERIC_ARG2),
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DEFINE_GENERIC_REGISTER_STUB(r2, nullptr, LLDB_REGNUM_GENERIC_ARG3),
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DEFINE_GENERIC_REGISTER_STUB(r3, nullptr, LLDB_REGNUM_GENERIC_ARG4),
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DEFINE_GENERIC_REGISTER_STUB(r4, nullptr, LLDB_REGNUM_GENERIC_ARG5),
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DEFINE_GENERIC_REGISTER_STUB(r5, nullptr, LLDB_REGNUM_GENERIC_ARG6),
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DEFINE_GENERIC_REGISTER_STUB(r6, nullptr, LLDB_REGNUM_GENERIC_ARG7),
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DEFINE_GENERIC_REGISTER_STUB(r7, nullptr, LLDB_REGNUM_GENERIC_ARG8),
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DEFINE_REGISTER_STUB(r8, nullptr),
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DEFINE_REGISTER_STUB(r9, nullptr),
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DEFINE_REGISTER_STUB(r10, nullptr),
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DEFINE_REGISTER_STUB(r11, nullptr),
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DEFINE_REGISTER_STUB(r12, nullptr),
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DEFINE_REGISTER_STUB(r13, nullptr),
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DEFINE_REGISTER_STUB(r14, nullptr),
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DEFINE_REGISTER_STUB(r15, nullptr),
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DEFINE_REGISTER_STUB(r16, nullptr),
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DEFINE_REGISTER_STUB(r17, nullptr),
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DEFINE_REGISTER_STUB(r18, nullptr),
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DEFINE_REGISTER_STUB(r19, nullptr),
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DEFINE_REGISTER_STUB(r20, nullptr),
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DEFINE_REGISTER_STUB(r21, nullptr),
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DEFINE_REGISTER_STUB(r22, nullptr),
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DEFINE_REGISTER_STUB(r23, nullptr),
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DEFINE_REGISTER_STUB(r24, nullptr),
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DEFINE_REGISTER_STUB(r25, nullptr),
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DEFINE_REGISTER_STUB(r26, "gp"),
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DEFINE_GENERIC_REGISTER_STUB(r27, "fp", LLDB_REGNUM_GENERIC_FP),
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DEFINE_GENERIC_REGISTER_STUB(r28, "sp", LLDB_REGNUM_GENERIC_SP),
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DEFINE_REGISTER_STUB(r29, "ilink"),
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DEFINE_REGISTER_STUB(r30, nullptr),
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DEFINE_GENERIC_REGISTER_STUB(r31, "blink", LLDB_REGNUM_GENERIC_RA),
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DEFINE_REGISTER_STUB(r32, nullptr),
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DEFINE_REGISTER_STUB(r33, nullptr),
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DEFINE_REGISTER_STUB(r34, nullptr),
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DEFINE_REGISTER_STUB(r35, nullptr),
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DEFINE_REGISTER_STUB(r36, nullptr),
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DEFINE_REGISTER_STUB(r37, nullptr),
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DEFINE_REGISTER_STUB(r38, nullptr),
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DEFINE_REGISTER_STUB(r39, nullptr),
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DEFINE_REGISTER_STUB(r40, nullptr),
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DEFINE_REGISTER_STUB(r41, nullptr),
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DEFINE_REGISTER_STUB(r42, nullptr),
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DEFINE_REGISTER_STUB(r43, nullptr),
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DEFINE_REGISTER_STUB(r44, nullptr),
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DEFINE_REGISTER_STUB(r45, nullptr),
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DEFINE_REGISTER_STUB(r46, nullptr),
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DEFINE_REGISTER_STUB(r47, nullptr),
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DEFINE_REGISTER_STUB(r48, nullptr),
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DEFINE_REGISTER_STUB(r49, nullptr),
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DEFINE_REGISTER_STUB(r50, nullptr),
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DEFINE_REGISTER_STUB(r51, nullptr),
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DEFINE_REGISTER_STUB(r52, nullptr),
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DEFINE_REGISTER_STUB(r53, nullptr),
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DEFINE_REGISTER_STUB(r54, nullptr),
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DEFINE_REGISTER_STUB(r55, nullptr),
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DEFINE_REGISTER_STUB(r56, nullptr),
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DEFINE_REGISTER_STUB(r57, nullptr),
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DEFINE_REGISTER_STUB(r58, "accl"),
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DEFINE_REGISTER_STUB(r59, "acch"),
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DEFINE_REGISTER_STUB(r60, "lp_count"),
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DEFINE_REGISTER_STUB(r63, "pcl"),
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DEFINE_GENERIC_REGISTER_STUB(pc, nullptr, LLDB_REGNUM_GENERIC_PC),
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DEFINE_GENERIC_REGISTER_STUB(status32, nullptr, LLDB_REGNUM_GENERIC_FLAGS)} };
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} // namespace dwarf
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} // namespace
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const RegisterInfo *ABISysV_arc::GetRegisterInfoArray(uint32_t &count) {
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count = dwarf::g_register_infos.size();
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return dwarf::g_register_infos.data();
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}
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size_t ABISysV_arc::GetRedZoneSize() const { return 0; }
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bool ABISysV_arc::IsRegisterFileReduced(RegisterContext ®_ctx) const {
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if (!m_is_reg_file_reduced) {
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const auto *const rf_build_reg = reg_ctx.GetRegisterInfoByName("rf_build");
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const auto reg_value = reg_ctx.ReadRegisterAsUnsigned(rf_build_reg,
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/*fail_value*/ 0);
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// RF_BUILD "Number of Entries" bit.
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const uint32_t rf_entries_bit = 1U << 9U;
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m_is_reg_file_reduced = (reg_value | rf_entries_bit) != 0;
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}
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return m_is_reg_file_reduced.getValueOr(false);
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}
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//------------------------------------------------------------------
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// Static Functions
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//------------------------------------------------------------------
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ABISP ABISysV_arc::CreateInstance(ProcessSP process_sp, const ArchSpec &arch) {
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return llvm::Triple::arc == arch.GetTriple().getArch() ?
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ABISP(new ABISysV_arc(std::move(process_sp), MakeMCRegisterInfo(arch))) :
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ABISP();
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}
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namespace {
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const size_t word_size = 4U;
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const size_t reg_size = word_size;
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inline size_t AugmentArgSize(size_t size_in_bytes) {
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return llvm::alignTo(size_in_bytes, word_size);
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}
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size_t TotalArgsSizeInWords(const llvm::ArrayRef<ABI::CallArgument> &args) {
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size_t total_size = 0;
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for (const auto &arg : args)
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total_size +=
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(ABI::CallArgument::TargetValue == arg.type ? AugmentArgSize(arg.size)
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: reg_size) /
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word_size;
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return total_size;
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}
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} // namespace
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bool ABISysV_arc::PrepareTrivialCall(Thread &thread, addr_t sp,
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addr_t func_addr, addr_t return_addr,
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llvm::ArrayRef<addr_t> args) const {
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// We don't use the traditional trivial call specialized for jit.
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return false;
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}
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bool ABISysV_arc::PrepareTrivialCall(Thread &thread, addr_t sp, addr_t pc,
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addr_t ra, llvm::Type &prototype,
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llvm::ArrayRef<ABI::CallArgument> args) const {
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auto reg_ctx = thread.GetRegisterContext();
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if (!reg_ctx)
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return false;
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uint32_t pc_reg = reg_ctx->ConvertRegisterKindToRegisterNumber(
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eRegisterKindGeneric, LLDB_REGNUM_GENERIC_PC);
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if (pc_reg == LLDB_INVALID_REGNUM)
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return false;
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uint32_t ra_reg = reg_ctx->ConvertRegisterKindToRegisterNumber(
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eRegisterKindGeneric, LLDB_REGNUM_GENERIC_RA);
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if (ra_reg == LLDB_INVALID_REGNUM)
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return false;
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uint32_t sp_reg = reg_ctx->ConvertRegisterKindToRegisterNumber(
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eRegisterKindGeneric, LLDB_REGNUM_GENERIC_SP);
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if (sp_reg == LLDB_INVALID_REGNUM)
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return false;
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Status error;
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ProcessSP process = thread.GetProcess();
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if (!process)
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return false;
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// Push host data onto target.
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for (const auto &arg : args) {
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// Skip over target values.
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if (arg.type == ABI::CallArgument::TargetValue)
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continue;
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// Create space on the stack for this data 4-byte aligned.
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sp -= AugmentArgSize(arg.size);
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if (process->WriteMemory(sp, arg.data_up.get(), arg.size, error) < arg.size
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|| error.Fail())
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return false;
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// Update the argument with the target pointer.
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*const_cast<addr_t *>(&arg.value) = sp;
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}
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// Make sure number of parameters matches prototype.
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assert(!prototype.isFunctionVarArg());
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assert(prototype.getFunctionNumParams() == args.size());
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const size_t regs_for_args_count = IsRegisterFileReduced(*reg_ctx) ? 4U : 8U;
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// Number of arguments passed on stack.
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auto args_size = TotalArgsSizeInWords(args);
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auto on_stack =
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args_size <= regs_for_args_count ? 0 : args_size - regs_for_args_count;
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auto offset = on_stack * word_size;
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uint8_t reg_value[reg_size];
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size_t reg_index = LLDB_REGNUM_GENERIC_ARG1;
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for (const auto &arg : args) {
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auto value = reinterpret_cast<const uint8_t *>(&arg.value);
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auto size =
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ABI::CallArgument::TargetValue == arg.type ? arg.size : reg_size;
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// Pass arguments via registers.
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while (size > 0 && reg_index < regs_for_args_count) {
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size_t byte_index = 0;
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auto end = size < reg_size ? size : reg_size;
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while (byte_index < end) {
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reg_value[byte_index++] = *(value++);
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--size;
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}
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while (byte_index < reg_size) {
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reg_value[byte_index++] = 0;
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}
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RegisterValue reg_val_obj(reg_value, reg_size, eByteOrderLittle);
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if (!reg_ctx->WriteRegister(
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reg_ctx->GetRegisterInfo(eRegisterKindGeneric, reg_index),
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reg_val_obj))
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return false;
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// NOTE: It's unsafe to iterate through LLDB_REGNUM_GENERICs.
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++reg_index;
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}
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if (reg_index < regs_for_args_count || size == 0)
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continue;
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// Remaining arguments are passed on the stack.
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if (process->WriteMemory(sp - offset, value, size, error) < size ||
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!error.Success())
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return false;
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offset -= AugmentArgSize(size);
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}
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// Set stack pointer immediately below arguments.
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sp -= on_stack * word_size;
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// Update registers with current function call state.
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reg_ctx->WriteRegisterFromUnsigned(pc_reg, pc);
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reg_ctx->WriteRegisterFromUnsigned(ra_reg, ra);
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reg_ctx->WriteRegisterFromUnsigned(sp_reg, sp);
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return true;
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}
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bool ABISysV_arc::GetArgumentValues(Thread &thread, ValueList &values) const {
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return false;
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}
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Status ABISysV_arc::SetReturnValueObject(StackFrameSP &frame_sp,
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ValueObjectSP &new_value_sp) {
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Status result;
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if (!new_value_sp) {
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result.SetErrorString("Empty value object for return value.");
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return result;
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}
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CompilerType compiler_type = new_value_sp->GetCompilerType();
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if (!compiler_type) {
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result.SetErrorString("Null clang type for return value.");
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return result;
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}
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auto ®_ctx = *frame_sp->GetThread()->GetRegisterContext();
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bool is_signed = false;
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if (!compiler_type.IsIntegerOrEnumerationType(is_signed) &&
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!compiler_type.IsPointerType()) {
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result.SetErrorString("We don't support returning other types at present");
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return result;
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}
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DataExtractor data;
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size_t num_bytes = new_value_sp->GetData(data, result);
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if (result.Fail()) {
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result.SetErrorStringWithFormat(
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"Couldn't convert return value to raw data: %s", result.AsCString());
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return result;
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}
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if (num_bytes <= 2 * reg_size) {
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offset_t offset = 0;
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uint64_t raw_value = data.GetMaxU64(&offset, num_bytes);
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auto reg_info =
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reg_ctx.GetRegisterInfo(eRegisterKindGeneric, LLDB_REGNUM_GENERIC_ARG1);
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if (!reg_ctx.WriteRegisterFromUnsigned(reg_info, raw_value)) {
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result.SetErrorStringWithFormat("Couldn't write value to register %s",
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reg_info->name);
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return result;
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}
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if (num_bytes <= reg_size)
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return result; // Successfully written.
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raw_value >>= 32;
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reg_info =
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reg_ctx.GetRegisterInfo(eRegisterKindGeneric, LLDB_REGNUM_GENERIC_ARG2);
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if (!reg_ctx.WriteRegisterFromUnsigned(reg_info, raw_value)) {
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result.SetErrorStringWithFormat("Couldn't write value to register %s",
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reg_info->name);
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}
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return result;
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}
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result.SetErrorString(
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"We don't support returning large integer values at present.");
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return result;
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}
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namespace {
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template <typename T>
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void SetInteger(Scalar &scalar, uint64_t raw_value, bool is_signed) {
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raw_value &= std::numeric_limits<T>::max();
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if (is_signed)
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scalar = static_cast<typename std::make_signed<T>::type>(raw_value);
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else
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scalar = static_cast<T>(raw_value);
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}
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bool SetSizedInteger(Scalar &scalar, uint64_t raw_value, uint8_t size_in_bytes,
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bool is_signed) {
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switch (size_in_bytes) {
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default:
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return false;
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case sizeof(uint64_t):
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SetInteger<uint64_t>(scalar, raw_value, is_signed);
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break;
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case sizeof(uint32_t):
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SetInteger<uint32_t>(scalar, raw_value, is_signed);
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break;
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case sizeof(uint16_t):
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SetInteger<uint16_t>(scalar, raw_value, is_signed);
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break;
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case sizeof(uint8_t):
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SetInteger<uint8_t>(scalar, raw_value, is_signed);
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break;
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}
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return true;
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}
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bool SetSizedFloat(Scalar &scalar, uint64_t raw_value, uint8_t size_in_bytes) {
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switch (size_in_bytes) {
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default:
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return false;
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case sizeof(uint64_t):
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scalar = *reinterpret_cast<double *>(&raw_value);
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break;
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case sizeof(uint32_t):
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scalar = *reinterpret_cast<float *>(&raw_value);
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break;
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}
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return true;
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}
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uint64_t ReadRawValue(const RegisterContextSP ®_ctx, uint8_t size_in_bytes) {
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auto reg_info_r0 =
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reg_ctx->GetRegisterInfo(eRegisterKindGeneric, LLDB_REGNUM_GENERIC_ARG1);
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// Extract the register context so we can read arguments from registers.
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uint64_t raw_value =
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reg_ctx->ReadRegisterAsUnsigned(reg_info_r0, 0) & UINT32_MAX;
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if (sizeof(uint64_t) == size_in_bytes)
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raw_value |= (reg_ctx->ReadRegisterAsUnsigned(
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reg_ctx->GetRegisterInfo(eRegisterKindGeneric,
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LLDB_REGNUM_GENERIC_ARG2), 0) &
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UINT64_MAX) << 32U;
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return raw_value;
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}
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} // namespace
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ValueObjectSP
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ABISysV_arc::GetReturnValueObjectSimple(Thread &thread,
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CompilerType &compiler_type) const {
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if (!compiler_type)
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return ValueObjectSP();
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auto reg_ctx = thread.GetRegisterContext();
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if (!reg_ctx)
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return ValueObjectSP();
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Value value;
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value.SetCompilerType(compiler_type);
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const uint32_t type_flags = compiler_type.GetTypeInfo();
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// Integer return type.
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if (type_flags & eTypeIsInteger) {
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const size_t byte_size = compiler_type.GetByteSize(nullptr).getValueOr(0);
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auto raw_value = ReadRawValue(reg_ctx, byte_size);
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const bool is_signed = (type_flags & eTypeIsSigned) != 0;
|
|
if (!SetSizedInteger(value.GetScalar(), raw_value, byte_size, is_signed))
|
|
return ValueObjectSP();
|
|
|
|
value.SetValueType(Value::eValueTypeScalar);
|
|
}
|
|
// Pointer return type.
|
|
else if (type_flags & eTypeIsPointer) {
|
|
auto reg_info_r0 = reg_ctx->GetRegisterInfo(eRegisterKindGeneric,
|
|
LLDB_REGNUM_GENERIC_ARG1);
|
|
value.GetScalar() = reg_ctx->ReadRegisterAsUnsigned(reg_info_r0, 0);
|
|
|
|
value.SetValueType(Value::eValueTypeScalar);
|
|
}
|
|
// Floating point return type.
|
|
else if (type_flags & eTypeIsFloat) {
|
|
uint32_t float_count = 0;
|
|
bool is_complex = false;
|
|
|
|
if (compiler_type.IsFloatingPointType(float_count, is_complex) &&
|
|
1 == float_count && !is_complex) {
|
|
const size_t byte_size = compiler_type.GetByteSize(nullptr).getValueOr(0);
|
|
auto raw_value = ReadRawValue(reg_ctx, byte_size);
|
|
|
|
if (!SetSizedFloat(value.GetScalar(), raw_value, byte_size))
|
|
return ValueObjectSP();
|
|
}
|
|
}
|
|
// Unsupported return type.
|
|
else
|
|
return ValueObjectSP();
|
|
|
|
return ValueObjectConstResult::Create(thread.GetStackFrameAtIndex(0).get(),
|
|
value, ConstString(""));
|
|
}
|
|
|
|
ValueObjectSP ABISysV_arc::GetReturnValueObjectImpl(
|
|
Thread &thread, CompilerType &return_compiler_type) const {
|
|
ValueObjectSP return_valobj_sp;
|
|
|
|
if (!return_compiler_type)
|
|
return return_valobj_sp;
|
|
|
|
ExecutionContext exe_ctx(thread.shared_from_this());
|
|
return GetReturnValueObjectSimple(thread, return_compiler_type);
|
|
}
|
|
|
|
ValueObjectSP ABISysV_arc::GetReturnValueObjectImpl(Thread &thread,
|
|
llvm::Type &retType) const {
|
|
auto reg_ctx = thread.GetRegisterContext();
|
|
if (!reg_ctx)
|
|
return ValueObjectSP();
|
|
|
|
Value value;
|
|
// Void return type.
|
|
if (retType.isVoidTy()) {
|
|
value.GetScalar() = 0;
|
|
}
|
|
// Integer return type.
|
|
else if (retType.isIntegerTy()) {
|
|
size_t byte_size = retType.getPrimitiveSizeInBits();
|
|
if (1 != byte_size) // For boolian type.
|
|
byte_size /= CHAR_BIT;
|
|
|
|
auto raw_value = ReadRawValue(reg_ctx, byte_size);
|
|
|
|
const bool is_signed = false; // IR Type doesn't provide this info.
|
|
if (!SetSizedInteger(value.GetScalar(), raw_value, byte_size, is_signed))
|
|
return ValueObjectSP();
|
|
}
|
|
// Pointer return type.
|
|
else if (retType.isPointerTy()) {
|
|
auto reg_info_r0 = reg_ctx->GetRegisterInfo(eRegisterKindGeneric,
|
|
LLDB_REGNUM_GENERIC_ARG1);
|
|
value.GetScalar() = reg_ctx->ReadRegisterAsUnsigned(reg_info_r0, 0);
|
|
value.SetValueType(Value::eValueTypeScalar);
|
|
}
|
|
// Floating point return type.
|
|
else if (retType.isFloatingPointTy()) {
|
|
const size_t byte_size = retType.getPrimitiveSizeInBits() / CHAR_BIT;
|
|
auto raw_value = ReadRawValue(reg_ctx, byte_size);
|
|
|
|
if (!SetSizedFloat(value.GetScalar(), raw_value, byte_size))
|
|
return ValueObjectSP();
|
|
}
|
|
// Unsupported return type.
|
|
else
|
|
return ValueObjectSP();
|
|
|
|
return ValueObjectConstResult::Create(thread.GetStackFrameAtIndex(0).get(),
|
|
value, ConstString(""));
|
|
}
|
|
|
|
bool ABISysV_arc::CreateFunctionEntryUnwindPlan(UnwindPlan &unwind_plan) {
|
|
unwind_plan.Clear();
|
|
unwind_plan.SetRegisterKind(eRegisterKindDWARF);
|
|
|
|
UnwindPlan::RowSP row(new UnwindPlan::Row);
|
|
|
|
// Our Call Frame Address is the stack pointer value.
|
|
row->GetCFAValue().SetIsRegisterPlusOffset(dwarf::sp, 0);
|
|
|
|
// The previous PC is in the BLINK.
|
|
row->SetRegisterLocationToRegister(dwarf::pc, dwarf::blink, true);
|
|
unwind_plan.AppendRow(row);
|
|
|
|
// All other registers are the same.
|
|
unwind_plan.SetSourceName("arc at-func-entry default");
|
|
unwind_plan.SetSourcedFromCompiler(eLazyBoolNo);
|
|
|
|
return true;
|
|
}
|
|
|
|
bool ABISysV_arc::CreateDefaultUnwindPlan(UnwindPlan &unwind_plan) {
|
|
return false;
|
|
}
|
|
|
|
bool ABISysV_arc::RegisterIsVolatile(const RegisterInfo *reg_info) {
|
|
if (nullptr == reg_info)
|
|
return false;
|
|
|
|
// Volatile registers are: r0..r12.
|
|
uint32_t regnum = reg_info->kinds[eRegisterKindDWARF];
|
|
if (regnum <= 12)
|
|
return true;
|
|
|
|
static const std::string ra_reg_name = "blink";
|
|
return ra_reg_name == reg_info->name;
|
|
}
|
|
|
|
void ABISysV_arc::Initialize() {
|
|
PluginManager::RegisterPlugin(GetPluginNameStatic(),
|
|
"System V ABI for ARC targets", CreateInstance);
|
|
}
|
|
|
|
void ABISysV_arc::Terminate() {
|
|
PluginManager::UnregisterPlugin(CreateInstance);
|
|
}
|
|
|
|
ConstString ABISysV_arc::GetPluginNameStatic() {
|
|
static ConstString g_name("sysv-arc");
|
|
return g_name;
|
|
}
|
|
|
|
//------------------------------------------------------------------
|
|
// PluginInterface protocol
|
|
//------------------------------------------------------------------
|
|
|
|
ConstString ABISysV_arc::GetPluginName() {
|
|
return GetPluginNameStatic();
|
|
}
|
|
|
|
uint32_t ABISysV_arc::GetPluginVersion() { return 1; }
|