void GCArguments::initialize() { if (FullGCALot && FLAG_IS_DEFAULT(MarkSweepAlwaysCompactCount)) {
MarkSweepAlwaysCompactCount = 1; // Move objects every gc.
}
if (!UseParallelGC && FLAG_IS_DEFAULT(ScavengeBeforeFullGC)) {
FLAG_SET_DEFAULT(ScavengeBeforeFullGC, false);
}
if (GCTimeLimit == 100) { // Turn off gc-overhead-limit-exceeded checks
FLAG_SET_DEFAULT(UseGCOverheadLimit, false);
}
if (MinHeapFreeRatio == 100) { // Keeping the heap 100% free is hard ;-) so limit it to 99%.
FLAG_SET_ERGO(MinHeapFreeRatio, 99);
}
if (!ClassUnloading) { // If class unloading is disabled, also disable concurrent class unloading.
FLAG_SET_CMDLINE(ClassUnloadingWithConcurrentMark, false);
}
}
size_t GCArguments::compute_heap_alignment() { // The card marking array and the offset arrays for old generations are // committed in os pages as well. Make sure they are entirely full (to // avoid partial page problems), e.g. if 512 bytes heap corresponds to 1 // byte entry and the os page size is 4096, the maximum heap size should // be 512*4096 = 2MB aligned.
if (UseLargePages) { // In presence of large pages we have to make sure that our // alignment is large page aware.
alignment = lcm(os::large_page_size(), alignment);
}
void GCArguments::initialize_heap_flags_and_sizes() {
assert(SpaceAlignment != 0, "Space alignment not set up properly");
assert(HeapAlignment != 0, "Heap alignment not set up properly");
assert(HeapAlignment >= SpaceAlignment, "HeapAlignment: " SIZE_FORMAT " less than SpaceAlignment: " SIZE_FORMAT,
HeapAlignment, SpaceAlignment);
assert(HeapAlignment % SpaceAlignment == 0, "HeapAlignment: " SIZE_FORMAT " not aligned by SpaceAlignment: " SIZE_FORMAT,
HeapAlignment, SpaceAlignment);
if (FLAG_IS_CMDLINE(MaxHeapSize)) { if (FLAG_IS_CMDLINE(InitialHeapSize) && InitialHeapSize > MaxHeapSize) {
vm_exit_during_initialization("Initial heap size set to a larger value than the maximum heap size");
} if (FLAG_IS_CMDLINE(MinHeapSize) && MaxHeapSize < MinHeapSize) {
vm_exit_during_initialization("Incompatible minimum and maximum heap sizes specified");
}
}
// Check heap parameter properties if (MaxHeapSize < 2 * M) {
vm_exit_during_initialization("Too small maximum heap");
} if (InitialHeapSize < M) {
vm_exit_during_initialization("Too small initial heap");
} if (MinHeapSize < M) {
vm_exit_during_initialization("Too small minimum heap");
}
// User inputs from -Xmx and -Xms must be aligned // Write back to flags if the values changed if (!is_aligned(MinHeapSize, HeapAlignment)) {
FLAG_SET_ERGO(MinHeapSize, align_up(MinHeapSize, HeapAlignment));
} if (!is_aligned(InitialHeapSize, HeapAlignment)) {
FLAG_SET_ERGO(InitialHeapSize, align_up(InitialHeapSize, HeapAlignment));
} if (!is_aligned(MaxHeapSize, HeapAlignment)) {
FLAG_SET_ERGO(MaxHeapSize, align_up(MaxHeapSize, HeapAlignment));
}
if (FLAG_IS_CMDLINE(InitialHeapSize) && FLAG_IS_CMDLINE(MinHeapSize) &&
InitialHeapSize < MinHeapSize) {
vm_exit_during_initialization("Incompatible minimum and initial heap sizes specified");
}
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