mirror of
https://github.com/jakcron/nstool.git
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135 lines
2.9 KiB
C++
135 lines
2.9 KiB
C++
#include <nx/ThreadInfoEntry.h>
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nx::ThreadInfoEntry::ThreadInfoEntry() :
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mCap(kCapId),
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mMinPriority(kDefaultPriority),
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mMaxPriority(kDefaultPriority),
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mMinCpuId(kDefaultCpuId),
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mMaxCpuId(kDefaultCpuId)
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{}
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nx::ThreadInfoEntry::ThreadInfoEntry(const KernelCapabilityEntry & kernel_cap) :
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mCap(kCapId),
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mMinPriority(kDefaultPriority),
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mMaxPriority(kDefaultPriority),
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mMinCpuId(kDefaultCpuId),
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mMaxCpuId(kDefaultCpuId)
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{
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setKernelCapability(kernel_cap);
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}
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nx::ThreadInfoEntry::ThreadInfoEntry(uint8_t min_priority, uint8_t max_priority, uint8_t min_core_number, uint8_t max_core_number) :
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mCap(kCapId),
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mMinPriority(kDefaultPriority),
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mMaxPriority(kDefaultPriority),
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mMinCpuId(kDefaultCpuId),
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mMaxCpuId(kDefaultCpuId)
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{
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setMinPriority(min_priority);
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setMaxPriority(max_priority);
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setMinCpuId(min_core_number);
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setMaxCpuId(max_core_number);
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}
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void nx::ThreadInfoEntry::operator=(const ThreadInfoEntry& other)
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{
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mMinPriority = other.mMinPriority;
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mMaxPriority = other.mMaxPriority;
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mMinCpuId = other.mMinCpuId;
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mMaxCpuId = other.mMaxCpuId;
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updateCapField();
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}
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bool nx::ThreadInfoEntry::operator==(const ThreadInfoEntry& other) const
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{
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return (mMinPriority == other.mMinPriority) \
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&& (mMaxPriority == other.mMaxPriority) \
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&& (mMinCpuId == other.mMinCpuId) \
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&& (mMaxCpuId == other.mMaxCpuId);
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}
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bool nx::ThreadInfoEntry::operator!=(const ThreadInfoEntry& other) const
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{
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return !(*this == other);
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}
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const nx::KernelCapabilityEntry & nx::ThreadInfoEntry::getKernelCapability() const
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{
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return mCap;
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}
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void nx::ThreadInfoEntry::setKernelCapability(const KernelCapabilityEntry & kernel_cap)
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{
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if (kernel_cap.getType() != kCapId)
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{
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throw fnd::Exception(kModuleName, "KernelCapabilityEntry is not type 'ThreadInfo'");
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}
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mCap = kernel_cap;
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processCapField();
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}
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uint8_t nx::ThreadInfoEntry::getMinPriority() const
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{
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return mMinPriority;
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}
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void nx::ThreadInfoEntry::setMinPriority(uint8_t priority)
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{
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if (priority > kMaxVal)
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{
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throw fnd::Exception(kModuleName, "Illegal MinPriority (range 0-63)");
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}
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mMinPriority = priority;
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updateCapField();
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}
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uint8_t nx::ThreadInfoEntry::getMaxPriority() const
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{
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return mMaxPriority;
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}
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void nx::ThreadInfoEntry::setMaxPriority(uint8_t priority)
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{
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if (priority > kMaxVal)
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{
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throw fnd::Exception(kModuleName, "Illegal MaxPriority (range 0-63)");
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}
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mMaxPriority = priority;
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updateCapField();
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}
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uint8_t nx::ThreadInfoEntry::getMinCpuId() const
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{
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return mMinCpuId;
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}
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void nx::ThreadInfoEntry::setMinCpuId(uint8_t core_num)
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{
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if (core_num > kMaxVal)
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{
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throw fnd::Exception(kModuleName, "Illegal MinCoreNumber (range 0-63)");
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}
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mMinCpuId = core_num;
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updateCapField();
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}
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uint8_t nx::ThreadInfoEntry::getMaxCpuId() const
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{
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return mMaxCpuId;
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}
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void nx::ThreadInfoEntry::setMaxCpuId(uint8_t core_num)
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{
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if (core_num > kMaxVal)
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{
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throw fnd::Exception(kModuleName, "Illegal MaxCoreNumber (range 0-63)");
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}
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mMaxCpuId = core_num;
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updateCapField();
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}
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