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author | Sze Howe Koh <szehowe.koh@gmail.com> | 2015-01-02 20:06:08 +0800 |
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committer | Sze Howe Koh <szehowe.koh@gmail.com> | 2015-01-19 10:48:03 +0100 |
commit | c49641a117356662aea31d8b4e7fdf4055cc0b4f (patch) | |
tree | 956b8f7b2d97114b5c386376bd563ce61b5402b3 /examples/corelib/threads/doc/src | |
parent | 0f5b970894718c2c38f0e3e805c4a497e8c89c65 (diff) |
Doc: Fix typos
Change-Id: I29d5576902a5d1ea25558e980081952d9157f7f0
Reviewed-by: Topi Reiniƶ <topi.reinio@digia.com>
Diffstat (limited to 'examples/corelib/threads/doc/src')
-rw-r--r-- | examples/corelib/threads/doc/src/waitconditions.qdoc | 2 |
1 files changed, 1 insertions, 1 deletions
diff --git a/examples/corelib/threads/doc/src/waitconditions.qdoc b/examples/corelib/threads/doc/src/waitconditions.qdoc index aff6997b55..3d15f0d4bf 100644 --- a/examples/corelib/threads/doc/src/waitconditions.qdoc +++ b/examples/corelib/threads/doc/src/waitconditions.qdoc @@ -136,7 +136,7 @@ byte in the buffer, \c numUsedBytes is \c BufferSize - 1 and the \c bufferNotEmpty condition is signalled. At that point, two things can happen: Either the consumer thread takes over and - reads that byte, or the consumer gets to produce a second byte. + reads that byte, or the producer gets to produce a second byte. The producer-consumer model presented in this example makes it possible to write highly concurrent multithreaded applications. |