arch/alpha/alpha_linux_process.cc:
Added using directive for AlphaISA namespace
arch/alpha/alpha_memory.hh:
arch/alpha/isa/branch.isa:
cpu/pc_event.hh:
Added typedefs for Addr
arch/alpha/alpha_tru64_process.cc:
arch/alpha/arguments.cc:
Added using directive for AlphaISA
arch/alpha/ev5.hh:
Added an include of arch/alpha/isa_traits.hh, and a using directive for the AlphaISA namespace.
arch/alpha/faults.hh:
Added a typedef for the Addr type, and changed the formatting of the faults slightly.
arch/alpha/isa/main.isa:
Untemplatized StaticInst, added a using for namespace AlphaISA to show up in decoder.cc and the exec.ccs, relocated makeNop to decoder.hh
arch/alpha/isa/mem.isa:
Untemplatized StaticInst and StaticInstPtr
arch/alpha/isa/pal.isa:
cpu/base_dyn_inst.cc:
Untemplatized StaticInstPtr
arch/alpha/isa_traits.hh:
Changed variables to be externs instead of static since they are part of a namespace and not a class.
arch/alpha/stacktrace.cc:
Untemplatized StaticInstPtr, and added a using directive for AlphaISA.
arch/alpha/stacktrace.hh:
Added some typedefs for Addr and MachInst, and untemplatized StaticInstPtr
arch/alpha/vtophys.cc:
Added a using directive for AlphaISA
arch/alpha/vtophys.hh:
Added the AlphaISA namespace specifier where needed
arch/isa_parser.py:
Changed the placement of the definition of the decodeInst function to be outside the namespaceInst namespace.
base/loader/object_file.hh:
cpu/o3/bpred_unit.hh:
Added a typedef for Addr
base/loader/symtab.hh:
Added a typedef for Addr, and added a TheISA to Addr in another typedef
base/remote_gdb.cc:
Added a using namespace TheISA, and untemplatized StaticInstPtr
base/remote_gdb.hh:
Added typedefs for Addr and MachInst
cpu/base.cc:
Added TheISA specifier to some variables exported from the isa.
cpu/base.hh:
Added a typedef for Addr, and TheISA to some variables from the ISA
cpu/base_dyn_inst.hh:
Untemplatized StaticInstPtr, and added TheISA specifier to some variables from the ISA.
cpu/exec_context.hh:
Added some typedefs for types from the isa, and added TheISA specifier to some variables from the isa
cpu/exetrace.hh:
Added typedefs for some types from the ISA, and untemplatized StaticInstPtr
cpu/memtest/memtest.cc:
cpu/o3/btb.cc:
dev/baddev.cc:
dev/ide_ctrl.cc:
dev/ide_disk.cc:
dev/isa_fake.cc:
dev/ns_gige.cc:
dev/pciconfigall.cc:
dev/platform.cc:
dev/sinic.cc:
dev/uart8250.cc:
kern/freebsd/freebsd_system.cc:
kern/linux/linux_system.cc:
kern/system_events.cc:
kern/tru64/dump_mbuf.cc:
kern/tru64/tru64_events.cc:
sim/process.cc:
sim/pseudo_inst.cc:
sim/system.cc:
Added using namespace TheISA
cpu/memtest/memtest.hh:
cpu/trace/opt_cpu.hh:
cpu/trace/reader/itx_reader.hh:
dev/ide_disk.hh:
dev/pcidev.hh:
dev/platform.hh:
dev/tsunami.hh:
sim/system.hh:
sim/vptr.hh:
Added typedef for Addr
cpu/o3/2bit_local_pred.hh:
Changed the include to use arch/isa_traits.hh instead of arch/alpha/isa_traits.hh. Added typedef for Addr
cpu/o3/alpha_cpu.hh:
Added typedefs for Addr and IntReg
cpu/o3/alpha_cpu_impl.hh:
Added this-> to setNextPC to fix a problem since it didn't depend on template parameters any more. Removed "typename" where it was no longer needed.
cpu/o3/alpha_dyn_inst.hh:
Cleaned up some typedefs, and untemplatized StaticInst
cpu/o3/alpha_dyn_inst_impl.hh:
untemplatized StaticInstPtr
cpu/o3/alpha_impl.hh:
Fixed up a typedef of MachInst
cpu/o3/bpred_unit_impl.hh:
Added a using TheISA::MachInst to a function
cpu/o3/btb.hh:
Changed an include from arch/alpha/isa_traits.hh to arch/isa_traits.hh, and added a typedef for Addr
cpu/o3/commit.hh:
Removed a typedef of Impl::ISA as ISA, since TheISA takes care of this now.
cpu/o3/cpu.cc:
Cleaned up namespace issues
cpu/o3/cpu.hh:
Cleaned up namespace usage
cpu/o3/decode.hh:
Removed typedef of ISA, and changed it to TheISA
cpu/o3/fetch.hh:
Fized up typedefs, and changed ISA to TheISA
cpu/o3/free_list.hh:
Changed include of arch/alpha/isa_traits.hh to arch/isa_traits.hh
cpu/o3/iew.hh:
Removed typedef of ISA
cpu/o3/iew_impl.hh:
Added TheISA namespace specifier to MachInst
cpu/o3/ras.hh:
Changed include from arch/alpha/isa_traits.hh to arch/isa_traits.hh, and added a typedef for Addr.
cpu/o3/regfile.hh:
Changed ISA to TheISA, and added some typedefs for Addr, IntReg, FloatReg, and MiscRegFile
cpu/o3/rename.hh:
Changed ISA to TheISA, and added a typedef for RegIndex
cpu/o3/rename_map.hh:
Added an include for arch/isa_traits.hh, and a typedef for RegIndex
cpu/o3/rob.hh:
Added a typedef for RegIndex
cpu/o3/store_set.hh:
cpu/o3/tournament_pred.hh:
Changed an include of arch/alpha/isa_traits.hh to arch/isa_traits.hh, and added a typedef of Addr
cpu/ozone/cpu.hh:
Changed ISA into TheISA, and untemplatized StaticInst
cpu/pc_event.cc:
Added namespace specifier TheISA to Addr types
cpu/profile.hh:
kern/kernel_stats.hh:
Added typedef for Addr, and untemplatized StaticInstPtr
cpu/simple/cpu.cc:
Changed using directive from LittleEndianGuest to AlphaISA, which will contain both namespaces. Added TheISA where needed, and untemplatized StaticInst
cpu/simple/cpu.hh:
Added a typedef for MachInst, and untemplatized StaticInst
cpu/static_inst.cc:
Untemplatized StaticInst
cpu/static_inst.hh:
Untemplatized StaticInst by using the TheISA namespace
dev/alpha_console.cc:
Added using namespace AlphaISA
dev/simple_disk.hh:
Added typedef for Addr and fixed up some formatting
dev/sinicreg.hh:
Added TheISA namespace specifier where needed
dev/tsunami.cc:
dev/tsunami_io.cc:
dev/tsunami_pchip.cc:
Added using namespace TheISA. It might be better for it to be AlphaISA
dev/tsunami_cchip.cc:
Added typedef for TheISA. It might be better for it to be AlphaISA
kern/linux/aligned.hh:
sim/pseudo_inst.hh:
Added TheISA namespace specifier to Addr
kern/linux/linux_threadinfo.hh:
Added typedef for Addr, and TheISA namespace specifier to StackPointerReg
kern/tru64/mbuf.hh:
Added TheISA to Addr type in structs
sim/process.hh:
Added typedefs of Addr, RegFile, and MachInst
sim/syscall_emul.cc:
Added using namespace TheISA, and a cast of VMPageSize to the int type
sim/syscall_emul.hh:
Added typecast for Addr, and TheISA namespace specifier for where needed
--HG--
extra : convert_revision : 91d4f6ca33a73b21c1f1771d74bfdea3b80eff45
484 lines
13 KiB
C++
484 lines
13 KiB
C++
/*
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* Copyright (c) 2001-2005 The Regents of The University of Michigan
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met: redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer;
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* redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution;
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* neither the name of the copyright holders nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef __CPU_EXEC_CONTEXT_HH__
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#define __CPU_EXEC_CONTEXT_HH__
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#include "config/full_system.hh"
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#include "mem/functional/functional.hh"
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#include "mem/mem_req.hh"
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#include "sim/host.hh"
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#include "sim/serialize.hh"
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#include "arch/isa_traits.hh"
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//#include "arch/isa_registers.hh"
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#include "sim/byteswap.hh"
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// forward declaration: see functional_memory.hh
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class FunctionalMemory;
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class PhysicalMemory;
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class BaseCPU;
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#if FULL_SYSTEM
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#include "sim/system.hh"
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#include "targetarch/alpha_memory.hh"
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class FunctionProfile;
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class ProfileNode;
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class MemoryController;
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namespace Kernel { class Binning; class Statistics; }
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#else // !FULL_SYSTEM
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#include "sim/process.hh"
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#endif // FULL_SYSTEM
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//
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// The ExecContext object represents a functional context for
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// instruction execution. It incorporates everything required for
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// architecture-level functional simulation of a single thread.
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//
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class ExecContext
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{
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protected:
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typedef TheISA::RegFile RegFile;
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typedef TheISA::Addr Addr;
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typedef TheISA::MachInst MachInst;
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typedef TheISA::MiscRegFile MiscRegFile;
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public:
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enum Status
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{
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/// Initialized but not running yet. All CPUs start in
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/// this state, but most transition to Active on cycle 1.
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/// In MP or SMT systems, non-primary contexts will stay
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/// in this state until a thread is assigned to them.
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Unallocated,
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/// Running. Instructions should be executed only when
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/// the context is in this state.
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Active,
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/// Temporarily inactive. Entered while waiting for
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/// synchronization, etc.
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Suspended,
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/// Permanently shut down. Entered when target executes
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/// m5exit pseudo-instruction. When all contexts enter
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/// this state, the simulation will terminate.
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Halted
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};
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private:
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Status _status;
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public:
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Status status() const { return _status; }
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/// Set the status to Active. Optional delay indicates number of
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/// cycles to wait before beginning execution.
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void activate(int delay = 1);
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/// Set the status to Suspended.
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void suspend();
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/// Set the status to Unallocated.
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void deallocate();
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/// Set the status to Halted.
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void halt();
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public:
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RegFile regs; // correct-path register context
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// pointer to CPU associated with this context
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BaseCPU *cpu;
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// Current instruction
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MachInst inst;
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// Index of hardware thread context on the CPU that this represents.
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int thread_num;
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// ID of this context w.r.t. the System or Process object to which
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// it belongs. For full-system mode, this is the system CPU ID.
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int cpu_id;
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#if FULL_SYSTEM
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FunctionalMemory *mem;
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AlphaITB *itb;
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AlphaDTB *dtb;
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System *system;
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// the following two fields are redundant, since we can always
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// look them up through the system pointer, but we'll leave them
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// here for now for convenience
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MemoryController *memctrl;
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PhysicalMemory *physmem;
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Kernel::Binning *kernelBinning;
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Kernel::Statistics *kernelStats;
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bool bin;
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bool fnbin;
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FunctionProfile *profile;
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ProfileNode *profileNode;
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Addr profilePC;
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void dumpFuncProfile();
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#else
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Process *process;
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FunctionalMemory *mem; // functional storage for process address space
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// Address space ID. Note that this is used for TIMING cache
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// simulation only; all functional memory accesses should use
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// one of the FunctionalMemory pointers above.
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short asid;
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#endif
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/**
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* Temporary storage to pass the source address from copy_load to
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* copy_store.
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* @todo Remove this temporary when we have a better way to do it.
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*/
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Addr copySrcAddr;
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/**
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* Temp storage for the physical source address of a copy.
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* @todo Remove this temporary when we have a better way to do it.
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*/
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Addr copySrcPhysAddr;
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/*
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* number of executed instructions, for matching with syscall trace
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* points in EIO files.
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*/
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Counter func_exe_inst;
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//
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// Count failed store conditionals so we can warn of apparent
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// application deadlock situations.
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unsigned storeCondFailures;
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// constructor: initialize context from given process structure
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#if FULL_SYSTEM
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ExecContext(BaseCPU *_cpu, int _thread_num, System *_system,
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AlphaITB *_itb, AlphaDTB *_dtb, FunctionalMemory *_dem);
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#else
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ExecContext(BaseCPU *_cpu, int _thread_num, Process *_process, int _asid);
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ExecContext(BaseCPU *_cpu, int _thread_num, FunctionalMemory *_mem,
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int _asid);
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#endif
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virtual ~ExecContext();
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virtual void takeOverFrom(ExecContext *oldContext);
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void regStats(const std::string &name);
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void serialize(std::ostream &os);
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void unserialize(Checkpoint *cp, const std::string §ion);
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#if FULL_SYSTEM
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bool validInstAddr(Addr addr) { return true; }
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bool validDataAddr(Addr addr) { return true; }
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int getInstAsid() { return regs.instAsid(); }
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int getDataAsid() { return regs.dataAsid(); }
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Fault * translateInstReq(MemReqPtr &req)
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{
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return itb->translate(req);
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}
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Fault * translateDataReadReq(MemReqPtr &req)
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{
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return dtb->translate(req, false);
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}
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Fault * translateDataWriteReq(MemReqPtr &req)
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{
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return dtb->translate(req, true);
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}
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#else
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bool validInstAddr(Addr addr)
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{ return process->validInstAddr(addr); }
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bool validDataAddr(Addr addr)
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{ return process->validDataAddr(addr); }
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int getInstAsid() { return asid; }
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int getDataAsid() { return asid; }
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Fault * dummyTranslation(MemReqPtr &req)
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{
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#if 0
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assert((req->vaddr >> 48 & 0xffff) == 0);
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#endif
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// put the asid in the upper 16 bits of the paddr
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req->paddr = req->vaddr & ~((Addr)0xffff << sizeof(Addr) * 8 - 16);
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req->paddr = req->paddr | (Addr)req->asid << sizeof(Addr) * 8 - 16;
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return NoFault;
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}
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Fault * translateInstReq(MemReqPtr &req)
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{
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return dummyTranslation(req);
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}
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Fault * translateDataReadReq(MemReqPtr &req)
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{
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return dummyTranslation(req);
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}
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Fault * translateDataWriteReq(MemReqPtr &req)
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{
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return dummyTranslation(req);
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}
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#endif
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template <class T>
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Fault * read(MemReqPtr &req, T &data)
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{
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#if FULL_SYSTEM && defined(TARGET_ALPHA)
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if (req->flags & LOCKED) {
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MiscRegFile *cregs = &req->xc->regs.miscRegs;
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cregs->lock_addr = req->paddr;
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cregs->lock_flag = true;
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}
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#endif
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Fault * error;
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error = mem->read(req, data);
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data = LittleEndianGuest::gtoh(data);
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return error;
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}
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template <class T>
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Fault * write(MemReqPtr &req, T &data)
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{
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#if FULL_SYSTEM && defined(TARGET_ALPHA)
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MiscRegFile *cregs;
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// If this is a store conditional, act appropriately
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if (req->flags & LOCKED) {
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cregs = &req->xc->regs.miscRegs;
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if (req->flags & UNCACHEABLE) {
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// Don't update result register (see stq_c in isa_desc)
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req->result = 2;
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req->xc->storeCondFailures = 0;//Needed? [RGD]
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} else {
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req->result = cregs->lock_flag;
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if (!cregs->lock_flag ||
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((cregs->lock_addr & ~0xf) != (req->paddr & ~0xf))) {
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cregs->lock_flag = false;
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if (((++req->xc->storeCondFailures) % 100000) == 0) {
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std::cerr << "Warning: "
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<< req->xc->storeCondFailures
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<< " consecutive store conditional failures "
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<< "on cpu " << req->xc->cpu_id
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<< std::endl;
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}
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return NoFault;
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}
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else req->xc->storeCondFailures = 0;
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}
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}
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// Need to clear any locked flags on other proccessors for
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// this address. Only do this for succsful Store Conditionals
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// and all other stores (WH64?). Unsuccessful Store
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// Conditionals would have returned above, and wouldn't fall
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// through.
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for (int i = 0; i < system->execContexts.size(); i++){
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cregs = &system->execContexts[i]->regs.miscRegs;
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if ((cregs->lock_addr & ~0xf) == (req->paddr & ~0xf)) {
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cregs->lock_flag = false;
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}
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}
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#endif
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return mem->write(req, (T)LittleEndianGuest::htog(data));
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}
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virtual bool misspeculating();
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MachInst getInst() { return inst; }
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void setInst(MachInst new_inst)
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{
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inst = new_inst;
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}
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Fault * instRead(MemReqPtr &req)
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{
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return mem->read(req, inst);
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}
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//
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// New accessors for new decoder.
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//
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uint64_t readIntReg(int reg_idx)
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{
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return regs.intRegFile[reg_idx];
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}
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float readFloatRegSingle(int reg_idx)
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{
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return (float)regs.floatRegFile.d[reg_idx];
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}
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double readFloatRegDouble(int reg_idx)
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{
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return regs.floatRegFile.d[reg_idx];
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}
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uint64_t readFloatRegInt(int reg_idx)
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{
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return regs.floatRegFile.q[reg_idx];
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}
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void setIntReg(int reg_idx, uint64_t val)
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{
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regs.intRegFile[reg_idx] = val;
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}
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void setFloatRegSingle(int reg_idx, float val)
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{
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regs.floatRegFile.d[reg_idx] = (double)val;
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}
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void setFloatRegDouble(int reg_idx, double val)
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{
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regs.floatRegFile.d[reg_idx] = val;
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}
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void setFloatRegInt(int reg_idx, uint64_t val)
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{
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regs.floatRegFile.q[reg_idx] = val;
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}
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uint64_t readPC()
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{
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return regs.pc;
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}
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void setNextPC(uint64_t val)
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{
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regs.npc = val;
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}
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uint64_t readUniq()
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{
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return regs.miscRegs.uniq;
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}
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void setUniq(uint64_t val)
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{
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regs.miscRegs.uniq = val;
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}
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uint64_t readFpcr()
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{
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return regs.miscRegs.fpcr;
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}
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void setFpcr(uint64_t val)
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|
{
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|
regs.miscRegs.fpcr = val;
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|
}
|
|
|
|
#if FULL_SYSTEM
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|
uint64_t readIpr(int idx, Fault * &fault);
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|
Fault * setIpr(int idx, uint64_t val);
|
|
int readIntrFlag() { return regs.intrflag; }
|
|
void setIntrFlag(int val) { regs.intrflag = val; }
|
|
Fault * hwrei();
|
|
bool inPalMode() { return AlphaISA::PcPAL(regs.pc); }
|
|
void ev5_trap(Fault * fault);
|
|
bool simPalCheck(int palFunc);
|
|
#endif
|
|
|
|
/** Meant to be more generic trap function to be
|
|
* called when an instruction faults.
|
|
* @param fault The fault generated by executing the instruction.
|
|
* @todo How to do this properly so it's dependent upon ISA only?
|
|
*/
|
|
|
|
void trap(Fault * fault);
|
|
|
|
#if !FULL_SYSTEM
|
|
TheISA::IntReg getSyscallArg(int i)
|
|
{
|
|
return regs.intRegFile[TheISA::ArgumentReg0 + i];
|
|
}
|
|
|
|
// used to shift args for indirect syscall
|
|
void setSyscallArg(int i, TheISA::IntReg val)
|
|
{
|
|
regs.intRegFile[TheISA::ArgumentReg0 + i] = val;
|
|
}
|
|
|
|
void setSyscallReturn(SyscallReturn return_value)
|
|
{
|
|
// check for error condition. Alpha syscall convention is to
|
|
// indicate success/failure in reg a3 (r19) and put the
|
|
// return value itself in the standard return value reg (v0).
|
|
const int RegA3 = 19; // only place this is used
|
|
if (return_value.successful()) {
|
|
// no error
|
|
regs.intRegFile[RegA3] = 0;
|
|
regs.intRegFile[TheISA::ReturnValueReg] = return_value.value();
|
|
} else {
|
|
// got an error, return details
|
|
regs.intRegFile[RegA3] = (TheISA::IntReg) -1;
|
|
regs.intRegFile[TheISA::ReturnValueReg] = -return_value.value();
|
|
}
|
|
}
|
|
|
|
void syscall()
|
|
{
|
|
process->syscall(this);
|
|
}
|
|
#endif
|
|
};
|
|
|
|
|
|
// for non-speculative execution context, spec_mode is always false
|
|
inline bool
|
|
ExecContext::misspeculating()
|
|
{
|
|
return false;
|
|
}
|
|
|
|
#endif // __CPU_EXEC_CONTEXT_HH__
|