}
uint64_t MCAsmLayout::getSectionAddressSize(const MCSectionData *SD) const {
- // Empty sections have no size.
- if (SD->getFragmentList().empty())
- return 0;
-
// Otherwise, the size is the last fragment's end offset.
const MCFragment &F = SD->getFragmentList().back();
return getFragmentOffset(&F) + getFragmentEffectiveSize(&F);
}
uint64_t MCAsmLayout::getSectionSize(const MCSectionData *SD) const {
- // Empty sections have no size.
- if (SD->getFragmentList().empty())
- return 0;
-
// The logical size is the address space size minus any tail padding.
uint64_t Size = getSectionAddressSize(SD);
const MCAlignFragment *AF =
unsigned SectionIndex = 0;
unsigned FragmentIndex = 0;
for (MCAssembler::iterator it = begin(), ie = end(); it != ie; ++it) {
+ // Create dummy fragments to eliminate any empty sections, this simplifies
+ // layout.
+ if (it->getFragmentList().empty()) {
+ unsigned ValueSize = 1;
+ if (getBackend().isVirtualSection(it->getSection()))
+ ValueSize = 1;
+ new MCFillFragment(0, 1, 0, it);
+ }
+
it->setOrdinal(SectionIndex++);
for (MCSectionData::iterator it2 = it->begin(),