Merge "Make VtsHalNeuralnetworks* tests more binder-friendly." into android12-tests-dev am: 2a04b4462f
am: 2a3972288c
am: 73754429ee
am: 5f04374bcc
am: 2c080e3d18
am: 796ff4f09d
Original change: https://android-review.googlesource.com/c/platform/hardware/interfaces/+/2194136 Change-Id: I35f8e7ced4d5c2827a9ab56d989efef5f00bd18e Signed-off-by: Automerger Merge Worker <android-build-automerger-merge-worker@system.gserviceaccount.com>
This commit is contained in:
commit
9f3ffe1271
5 changed files with 45 additions and 55 deletions
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@ -232,26 +232,24 @@ size_t sizeForBinder(const Model& model) {
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// currently 1Mb, which is shared by all transactions in progress
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// for the process."
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//
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// Will our representation fit under this limit? There are two complications:
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// Will our representation fit under this limit? There are three complications:
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// - Our representation size is just approximate (see sizeForBinder()).
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// - This object may not be the only occupant of the Binder transaction buffer.
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// - This object may not be the only occupant of the Binder transaction buffer
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// (although our VTS test suite should not be putting multiple objects in the
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// buffer at once).
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// - IBinder.MAX_IPC_SIZE recommends limiting a transaction to 64 * 1024 bytes.
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// So we'll be very conservative: We want the representation size to be no
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// larger than half the transaction buffer size.
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// larger than half the recommended limit.
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//
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// If our representation grows large enough that it still fits within
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// the transaction buffer but combined with other transactions may
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// exceed the buffer size, then we may see intermittent HAL transport
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// errors.
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static bool exceedsBinderSizeLimit(size_t representationSize) {
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// Instead of using this fixed buffer size, we might instead be able to use
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// ProcessState::self()->getMmapSize(). However, this has a potential
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// problem: The binder/mmap size of the current process does not necessarily
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// indicate the binder/mmap size of the service (i.e., the other process).
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// The only way it would be a good indication is if both the current process
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// and the service use the default size.
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static const size_t kHalfBufferSize = 1024 * 1024 / 2;
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// There is no C++ API to retrieve the value of the Java variable IBinder.MAX_IPC_SIZE.
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static const size_t kHalfMaxIPCSize = 64 * 1024 / 2;
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return representationSize > kHalfBufferSize;
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return representationSize > kHalfMaxIPCSize;
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}
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///////////////////////// VALIDATE EXECUTION ORDER ////////////////////////////
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@ -252,26 +252,24 @@ size_t sizeForBinder(const Model& model) {
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// currently 1Mb, which is shared by all transactions in progress
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// for the process."
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//
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// Will our representation fit under this limit? There are two complications:
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// Will our representation fit under this limit? There are three complications:
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// - Our representation size is just approximate (see sizeForBinder()).
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// - This object may not be the only occupant of the Binder transaction buffer.
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// - This object may not be the only occupant of the Binder transaction buffer
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// (although our VTS test suite should not be putting multiple objects in the
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// buffer at once).
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// - IBinder.MAX_IPC_SIZE recommends limiting a transaction to 64 * 1024 bytes.
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// So we'll be very conservative: We want the representation size to be no
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// larger than half the transaction buffer size.
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// larger than half the recommended limit.
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//
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// If our representation grows large enough that it still fits within
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// the transaction buffer but combined with other transactions may
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// exceed the buffer size, then we may see intermittent HAL transport
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// errors.
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static bool exceedsBinderSizeLimit(size_t representationSize) {
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// Instead of using this fixed buffer size, we might instead be able to use
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// ProcessState::self()->getMmapSize(). However, this has a potential
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// problem: The binder/mmap size of the current process does not necessarily
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// indicate the binder/mmap size of the service (i.e., the other process).
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// The only way it would be a good indication is if both the current process
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// and the service use the default size.
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static const size_t kHalfBufferSize = 1024 * 1024 / 2;
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// There is no C++ API to retrieve the value of the Java variable IBinder.MAX_IPC_SIZE.
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static const size_t kHalfMaxIPCSize = 64 * 1024 / 2;
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return representationSize > kHalfBufferSize;
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return representationSize > kHalfMaxIPCSize;
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}
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///////////////////////// VALIDATE EXECUTION ORDER ////////////////////////////
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@ -291,26 +291,24 @@ size_t sizeForBinder(const Model& model) {
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// currently 1Mb, which is shared by all transactions in progress
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// for the process."
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//
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// Will our representation fit under this limit? There are two complications:
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// Will our representation fit under this limit? There are three complications:
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// - Our representation size is just approximate (see sizeForBinder()).
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// - This object may not be the only occupant of the Binder transaction buffer.
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// - This object may not be the only occupant of the Binder transaction buffer
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// (although our VTS test suite should not be putting multiple objects in the
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// buffer at once).
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// - IBinder.MAX_IPC_SIZE recommends limiting a transaction to 64 * 1024 bytes.
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// So we'll be very conservative: We want the representation size to be no
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// larger than half the transaction buffer size.
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// larger than half the recommended limit.
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//
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// If our representation grows large enough that it still fits within
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// the transaction buffer but combined with other transactions may
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// exceed the buffer size, then we may see intermittent HAL transport
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// errors.
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static bool exceedsBinderSizeLimit(size_t representationSize) {
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// Instead of using this fixed buffer size, we might instead be able to use
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// ProcessState::self()->getMmapSize(). However, this has a potential
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// problem: The binder/mmap size of the current process does not necessarily
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// indicate the binder/mmap size of the service (i.e., the other process).
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// The only way it would be a good indication is if both the current process
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// and the service use the default size.
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static const size_t kHalfBufferSize = 1024 * 1024 / 2;
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// There is no C++ API to retrieve the value of the Java variable IBinder.MAX_IPC_SIZE.
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static const size_t kHalfMaxIPCSize = 64 * 1024 / 2;
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return representationSize > kHalfBufferSize;
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return representationSize > kHalfMaxIPCSize;
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}
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///////////////////////// VALIDATE EXECUTION ORDER ////////////////////////////
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@ -308,26 +308,24 @@ size_t sizeForBinder(const Model& model) {
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// currently 1Mb, which is shared by all transactions in progress
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// for the process."
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//
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// Will our representation fit under this limit? There are two complications:
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// Will our representation fit under this limit? There are three complications:
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// - Our representation size is just approximate (see sizeForBinder()).
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// - This object may not be the only occupant of the Binder transaction buffer.
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// - This object may not be the only occupant of the Binder transaction buffer
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// (although our VTS test suite should not be putting multiple objects in the
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// buffer at once).
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// - IBinder.MAX_IPC_SIZE recommends limiting a transaction to 64 * 1024 bytes.
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// So we'll be very conservative: We want the representation size to be no
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// larger than half the transaction buffer size.
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// larger than half the recommended limit.
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//
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// If our representation grows large enough that it still fits within
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// the transaction buffer but combined with other transactions may
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// exceed the buffer size, then we may see intermittent HAL transport
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// errors.
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static bool exceedsBinderSizeLimit(size_t representationSize) {
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// Instead of using this fixed buffer size, we might instead be able to use
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// ProcessState::self()->getMmapSize(). However, this has a potential
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// problem: The binder/mmap size of the current process does not necessarily
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// indicate the binder/mmap size of the service (i.e., the other process).
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// The only way it would be a good indication is if both the current process
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// and the service use the default size.
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static const size_t kHalfBufferSize = 1024 * 1024 / 2;
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// There is no C++ API to retrieve the value of the Java variable IBinder.MAX_IPC_SIZE.
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static const size_t kHalfMaxIPCSize = 64 * 1024 / 2;
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return representationSize > kHalfBufferSize;
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return representationSize > kHalfMaxIPCSize;
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}
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///////////////////////// VALIDATE EXECUTION ORDER ////////////////////////////
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@ -344,26 +344,24 @@ size_t sizeForBinder(const Model& model) {
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// currently 1Mb, which is shared by all transactions in progress
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// for the process."
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//
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// Will our representation fit under this limit? There are two complications:
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// Will our representation fit under this limit? There are three complications:
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// - Our representation size is just approximate (see sizeForBinder()).
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// - This object may not be the only occupant of the Binder transaction buffer.
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// - This object may not be the only occupant of the Binder transaction buffer
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// (although our VTS test suite should not be putting multiple objects in the
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// buffer at once).
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// - IBinder.MAX_IPC_SIZE recommends limiting a transaction to 64 * 1024 bytes.
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// So we'll be very conservative: We want the representation size to be no
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// larger than half the transaction buffer size.
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// larger than half the recommended limit.
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//
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// If our representation grows large enough that it still fits within
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// the transaction buffer but combined with other transactions may
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// exceed the buffer size, then we may see intermittent HAL transport
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// errors.
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static bool exceedsBinderSizeLimit(size_t representationSize) {
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// Instead of using this fixed buffer size, we might instead be able to use
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// ProcessState::self()->getMmapSize(). However, this has a potential
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// problem: The binder/mmap size of the current process does not necessarily
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// indicate the binder/mmap size of the service (i.e., the other process).
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// The only way it would be a good indication is if both the current process
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// and the service use the default size.
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static const size_t kHalfBufferSize = 1024 * 1024 / 2;
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// There is no C++ API to retrieve the value of the Java variable IBinder.MAX_IPC_SIZE.
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static const size_t kHalfMaxIPCSize = 64 * 1024 / 2;
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return representationSize > kHalfBufferSize;
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return representationSize > kHalfMaxIPCSize;
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}
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///////////////////////// VALIDATE EXECUTION ORDER ////////////////////////////
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