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58 lines
2.2 KiB
Groff
58 lines
2.2 KiB
Groff
.TH array_allocate 3
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.SH NAME
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array_allocate \- make sure array has at least n elements allocated
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.SH SYNTAX
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.B #include <array.h>
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void* \fBarray_allocate\fP(array* \fIx\fR, uint64 \fImembersize\fR, int64 \fIpos\fR);
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array \fIx\fR;
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int64 \fIpos\fR;
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\fIt\fR* p = array_allocate(&\fIx\fR,sizeof(\fIt\fR),\fIpos\fR);
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.SH DESCRIPTION
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array_allocate makes sure that enough bytes are allocated in \fIx\fR for
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at least \fIpos\fR+1 objects of type \fIt\fR. (The size of \fIt\fR must
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be positive; otherwise the effects are undefined.) If not enough bytes
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are allocated (or \fIx\fR is unallocated), array_allocate allocates more
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bytes, moving the dynamically allocated region if necessary.
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array_allocate often allocates somewhat more bytes than necessary, to
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save time later.
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array_allocate then makes sure that the number of bytes initialized
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covers at least those \fIpos\fR+1 objects. If not enough bytes are
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initialized, array_allocate initializes more bytes (setting them to 0),
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up to exactly the end of the \fIpos\fR+1st object.
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array_allocate then returns a pointer to the \fIpos\fR+1st object; i.e.,
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object number \fIpos\fR, with objects numbered starting at 0. This
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pointer can be used to change or inspect the object. The pointer can
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continue to be used through subsequent calls to array_get, array_start,
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array_length, and array_bytes, but it must not be used after any other
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operations on this array.
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If something goes wrong, array_allocate returns 0, setting \fBerrno\fR
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appropriately, without touching \fIx\fR. In particular, array_allocate
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returns 0 if
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.sp 1
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.IP \(bu
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\fIx\fR has failed, or
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.IP \(bu
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\fIpos\fR is negative, or
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.IP \(bu
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not enough memory is available.
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.PP
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array_allocate does \fInot\fR change \fIx\fR to have failed; if you want
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to do that, use array_fail.
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.SH PERFORMANCE
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This function can call realloc when the array needs to be enlarged.
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Under exceptional circumstances, this can lead to blocking the current thread.
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It will also zero-fill the newly enlarged part of the array, leading to
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all pages being mapped in by the operating system. If a small array is
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enlarged to a very large array, this can lead to swapping and blocking.
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.SH "SEE ALSO"
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array_get(3), array_start(3), array_fail(3)
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