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authorPatrick Williams <iawillia@us.ibm.com>2012-07-06 15:40:43 -0500
committerA. Patrick Williams III <iawillia@us.ibm.com>2012-07-11 08:18:41 -0500
commit14a2721d2c87dc13f1ef66818c41cd0848dd52db (patch)
tree66ae0220b0443f9a87d87075279ba9a5c08ba412 /src/usr/testcore
parenta23283c6facfee055c9c6d43e23a04ca02edc467 (diff)
downloadtalos-hostboot-14a2721d2c87dc13f1ef66818c41cd0848dd52db.tar.gz
talos-hostboot-14a2721d2c87dc13f1ef66818c41cd0848dd52db.zip
Live-lock issues in memory allocator.
* Debug tool for PageManager. * Support PageMgr allocations of non-2^k size. * Switch page-allocation to always be in kernel-mode. While investigating issue 44511, I noticed two problesm with the memory page allocator (PageManager). First, the allocator did not support allocations of pages which were not a power of 2, which would result in pages appearing to "leak". Second, in situations where a large allocation was requested and there was not a large chunk available, the allocation would enter a live-lock condition where coalescing would never occur. Switched the PageManager so that all allocations happen in kernel space. This allows us to force memory-release operations on the syscall path when we are out of memory and also put in place a task_yield call which will allow coalescing to eventually occur. Issue 44523 is suppose to fully resolve any of these live-lock paths. RTC: 44511 Change-Id: Ifefd5d0996ee6914e291c862fac0c7b76980717f Reviewed-on: http://gfw160.austin.ibm.com:8080/gerrit/1330 Tested-by: Jenkins Server Reviewed-by: Daniel M. Crowell <dcrowell@us.ibm.com> Reviewed-by: A. Patrick Williams III <iawillia@us.ibm.com>
Diffstat (limited to 'src/usr/testcore')
-rw-r--r--src/usr/testcore/kernel/segmenttest.H47
1 files changed, 24 insertions, 23 deletions
diff --git a/src/usr/testcore/kernel/segmenttest.H b/src/usr/testcore/kernel/segmenttest.H
index e5b9ff64a..72ae8f23a 100644
--- a/src/usr/testcore/kernel/segmenttest.H
+++ b/src/usr/testcore/kernel/segmenttest.H
@@ -1,25 +1,26 @@
-// IBM_PROLOG_BEGIN_TAG
-// This is an automatically generated prolog.
-//
-// $Source: src/usr/testcore/kernel/segmenttest.H $
-//
-// IBM CONFIDENTIAL
-//
-// COPYRIGHT International Business Machines Corp. 2011
-//
-// p1
-//
-// Object Code Only (OCO) source materials
-// Licensed Internal Code Source Materials
-// IBM HostBoot Licensed Internal Code
-//
-// The source code for this program is not published or other-
-// wise divested of its trade secrets, irrespective of what has
-// been deposited with the U.S. Copyright Office.
-//
-// Origin: 30
-//
-// IBM_PROLOG_END
+/* IBM_PROLOG_BEGIN_TAG
+ * This is an automatically generated prolog.
+ *
+ * $Source: src/usr/testcore/kernel/segmenttest.H $
+ *
+ * IBM CONFIDENTIAL
+ *
+ * COPYRIGHT International Business Machines Corp. 2011-2012
+ *
+ * p1
+ *
+ * Object Code Only (OCO) source materials
+ * Licensed Internal Code Source Materials
+ * IBM HostBoot Licensed Internal Code
+ *
+ * The source code for this program is not published or other-
+ * wise divested of its trade secrets, irrespective of what has
+ * been deposited with the U.S. Copyright Office.
+ *
+ * Origin: 30
+ *
+ * IBM_PROLOG_END_TAG
+ */
#ifndef __SEGMENTTEST_H
#define __SEGMENTTEST_H
/**
@@ -91,7 +92,7 @@ class segmenttest: public CxxTest::TestSuite
void* block = NULL;
while (reinterpret_cast<uint64_t>(block)
- < (VMM_VADDR_DEVICE_SEGMENT_FIRST + TERABYTE))
+ < (VMM_VADDR_DEVICE_SEGMENT_FIRST + VMM_SEGMENT_SIZE))
{
block = mmio_dev_map(reinterpret_cast<void*>(10 * TERABYTE),
THIRTYTWO_GB);
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