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pg_dump produces custom-format archive files that lack data offsets
when it is unable to seek its output. Up to now that's been a hazard
for pg_restore. But if pg_restore is able to seek in the archive
file, there is no reason to throw up our hands when asked to restore
data blocks out of order. Instead, whenever we are searching for a
data block, record the locations of the blocks we passed over (that
is, fill in the missing data-offset fields in our in-memory copy of
the TOC data). Then, when we hit a case that requires going
backwards, we can just seek back.
Also track the furthest point that we've searched to, and seek back
to there when beginning a search for a new data block. This avoids
possible O(N^2) time consumption, by ensuring that each data block
is examined at most twice. (On Unix systems, that's at most twice
per parallel-restore job; but since Windows uses threads here, the
threads can share block location knowledge, reducing the amount of
duplicated work.)
We can also improve the code a bit by using fseeko() to skip over
data blocks during the search.
This is all of some use even in simple restores, but it's really
significant for parallel pg_restore. In that case, we require
seekability of the input already, and we will very probably need
to do out-of-order restores.
Back-patch to v12, as this fixes a regression introduced by commit
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