PM: hibernate: Enforce ordering during image compression/decompression
commit 71cd7e80cfde548959952eac7063aeaea1f2e1c6 upstream.
An S4 (suspend to disk) test on the LoongArch 3A6000 platform sometimes
fails with the following error messaged in the dmesg log:
Invalid LZO compressed length
That happens because when compressing/decompressing the image, the
synchronization between the control thread and the compress/decompress/crc
thread is based on a relaxed ordering interface, which is unreliable, and the
following situation may occur:
CPU 0 CPU 1
save_image_lzo lzo_compress_threadfn
atomic_set(&d->stop, 1);
atomic_read(&data[thr].stop)
data[thr].cmp = data[thr].cmp_len;
WRITE data[thr].cmp_len
Then CPU0 gets a stale cmp_len and writes it to disk. During resume from S4,
wrong cmp_len is loaded.
To maintain data consistency between the two threads, use the acquire/release
variants of atomic set and read operations.
Fixes: 081a9d043c
("PM / Hibernate: Improve performance of LZO/plain hibernation, checksum image")
Cc: All applicable <stable@vger.kernel.org>
Signed-off-by: Hongchen Zhang <zhanghongchen@loongson.cn>
Co-developed-by: Weihao Li <liweihao@loongson.cn>
Signed-off-by: Weihao Li <liweihao@loongson.cn>
[ rjw: Subject rewrite and changelog edits ]
Signed-off-by: Rafael J. Wysocki <rafael.j.wysocki@intel.com>
Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
parent
680eb0a993
commit
3a081586c7
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@ -605,11 +605,11 @@ static int crc32_threadfn(void *data)
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unsigned i;
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while (1) {
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wait_event(d->go, atomic_read(&d->ready) ||
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wait_event(d->go, atomic_read_acquire(&d->ready) ||
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kthread_should_stop());
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if (kthread_should_stop()) {
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d->thr = NULL;
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atomic_set(&d->stop, 1);
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atomic_set_release(&d->stop, 1);
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wake_up(&d->done);
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break;
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}
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@ -618,7 +618,7 @@ static int crc32_threadfn(void *data)
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for (i = 0; i < d->run_threads; i++)
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*d->crc32 = crc32_le(*d->crc32,
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d->unc[i], *d->unc_len[i]);
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atomic_set(&d->stop, 1);
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atomic_set_release(&d->stop, 1);
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wake_up(&d->done);
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}
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return 0;
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@ -648,12 +648,12 @@ static int lzo_compress_threadfn(void *data)
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struct cmp_data *d = data;
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while (1) {
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wait_event(d->go, atomic_read(&d->ready) ||
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wait_event(d->go, atomic_read_acquire(&d->ready) ||
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kthread_should_stop());
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if (kthread_should_stop()) {
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d->thr = NULL;
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d->ret = -1;
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atomic_set(&d->stop, 1);
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atomic_set_release(&d->stop, 1);
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wake_up(&d->done);
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break;
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}
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@ -662,7 +662,7 @@ static int lzo_compress_threadfn(void *data)
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d->ret = lzo1x_1_compress(d->unc, d->unc_len,
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d->cmp + LZO_HEADER, &d->cmp_len,
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d->wrk);
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atomic_set(&d->stop, 1);
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atomic_set_release(&d->stop, 1);
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wake_up(&d->done);
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}
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return 0;
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@ -797,7 +797,7 @@ static int save_image_lzo(struct swap_map_handle *handle,
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data[thr].unc_len = off;
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atomic_set(&data[thr].ready, 1);
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atomic_set_release(&data[thr].ready, 1);
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wake_up(&data[thr].go);
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}
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@ -805,12 +805,12 @@ static int save_image_lzo(struct swap_map_handle *handle,
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break;
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crc->run_threads = thr;
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atomic_set(&crc->ready, 1);
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atomic_set_release(&crc->ready, 1);
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wake_up(&crc->go);
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for (run_threads = thr, thr = 0; thr < run_threads; thr++) {
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wait_event(data[thr].done,
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atomic_read(&data[thr].stop));
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atomic_read_acquire(&data[thr].stop));
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atomic_set(&data[thr].stop, 0);
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ret = data[thr].ret;
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@ -849,7 +849,7 @@ static int save_image_lzo(struct swap_map_handle *handle,
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}
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}
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wait_event(crc->done, atomic_read(&crc->stop));
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wait_event(crc->done, atomic_read_acquire(&crc->stop));
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atomic_set(&crc->stop, 0);
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}
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@ -1131,12 +1131,12 @@ static int lzo_decompress_threadfn(void *data)
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struct dec_data *d = data;
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while (1) {
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wait_event(d->go, atomic_read(&d->ready) ||
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wait_event(d->go, atomic_read_acquire(&d->ready) ||
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kthread_should_stop());
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if (kthread_should_stop()) {
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d->thr = NULL;
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d->ret = -1;
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atomic_set(&d->stop, 1);
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atomic_set_release(&d->stop, 1);
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wake_up(&d->done);
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break;
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}
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@ -1149,7 +1149,7 @@ static int lzo_decompress_threadfn(void *data)
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flush_icache_range((unsigned long)d->unc,
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(unsigned long)d->unc + d->unc_len);
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atomic_set(&d->stop, 1);
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atomic_set_release(&d->stop, 1);
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wake_up(&d->done);
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}
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return 0;
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@ -1334,7 +1334,7 @@ static int load_image_lzo(struct swap_map_handle *handle,
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}
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if (crc->run_threads) {
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wait_event(crc->done, atomic_read(&crc->stop));
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wait_event(crc->done, atomic_read_acquire(&crc->stop));
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atomic_set(&crc->stop, 0);
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crc->run_threads = 0;
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}
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@ -1370,7 +1370,7 @@ static int load_image_lzo(struct swap_map_handle *handle,
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pg = 0;
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}
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atomic_set(&data[thr].ready, 1);
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atomic_set_release(&data[thr].ready, 1);
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wake_up(&data[thr].go);
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}
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@ -1389,7 +1389,7 @@ static int load_image_lzo(struct swap_map_handle *handle,
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for (run_threads = thr, thr = 0; thr < run_threads; thr++) {
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wait_event(data[thr].done,
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atomic_read(&data[thr].stop));
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atomic_read_acquire(&data[thr].stop));
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atomic_set(&data[thr].stop, 0);
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ret = data[thr].ret;
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@ -1420,7 +1420,7 @@ static int load_image_lzo(struct swap_map_handle *handle,
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ret = snapshot_write_next(snapshot);
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if (ret <= 0) {
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crc->run_threads = thr + 1;
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atomic_set(&crc->ready, 1);
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atomic_set_release(&crc->ready, 1);
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wake_up(&crc->go);
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goto out_finish;
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}
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@ -1428,13 +1428,13 @@ static int load_image_lzo(struct swap_map_handle *handle,
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}
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crc->run_threads = thr;
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atomic_set(&crc->ready, 1);
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atomic_set_release(&crc->ready, 1);
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wake_up(&crc->go);
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}
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out_finish:
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if (crc->run_threads) {
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wait_event(crc->done, atomic_read(&crc->stop));
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wait_event(crc->done, atomic_read_acquire(&crc->stop));
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atomic_set(&crc->stop, 0);
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}
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stop = ktime_get();
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