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Full Discussion: RAM always used 100 %
Operating Systems Linux Red Hat RAM always used 100 % Post 302685319 by methyl on Sunday 12th of August 2012 07:39:18 AM
Old 08-12-2012
Please post some basic information:

1) What Operating System and version are running?

2) What is the specification of the hardware:
Make, model, RAM fitted, number of CPUs?

3) How much disc space is allocated to swap?
... and how much is used?

4) Have you changed any kernel parameters? If so, what were the old and new values and the reasoning behind the change?

5) What database software and version are you running?
Have you changed any database startup parameters? If so, what were the old and new values?
(A common problem is misunderstanding the units of database parameters and accidentally allocating more memory than you have fitted).

6) How many clients? ... and how do they connect to this server?
 

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bcopy(9F)						   Kernel Functions for Drivers 						 bcopy(9F)

NAME
bcopy - copy data between address locations in the kernel SYNOPSIS
#include <sys/types.h> #include <sys/sunddi.h> void bcopy(const void *from, void *to, size_t bcount); INTERFACE LEVEL
Architecture independent level 1 (DDI/DKI). PARAMETERS
from Source address from which the copy is made. to Destination address to which copy is made. bcount The number of bytes moved. DESCRIPTION
The bcopy() function copies bcount bytes from one kernel address to another. If the input and output addresses overlap, the command exe- cutes, but the results may not be as expected. Note that bcopy() should never be used to move data in or out of a user buffer, because it has no provision for handling page faults. The user address space can be swapped out at any time, and bcopy() always assumes that there will be no paging faults. If bcopy() attempts to access the user buffer when it is swapped out, the system will panic. It is safe to use bcopy() to move data within kernel space, since kernel space is never swapped out. CONTEXT
The bcopy() function can be called from user, interrupt, or kernel context. EXAMPLES
Example 1 Copying data between address locations in the kernel: An I/O request is made for data stored in a RAM disk. If the I/O operation is a read request, the data is copied from the RAM disk to a buffer (line 8). If it is a write request, the data is copied from a buffer to the RAM disk (line 15). bcopy() is used since both the RAM disk and the buffer are part of the kernel address space. 1 #define RAMDNBLK 1000 /* blocks in the RAM disk */ 2 #define RAMDBSIZ 512 /* bytes per block */ 3 char ramdblks[RAMDNBLK][RAMDBSIZ]; /* blocks forming RAM /* disk ... 4 5 if (bp->b_flags & B_READ) /* if read request, copy data */ 6 /* from RAM disk data block */ 7 /* to system buffer */ 8 bcopy(&ramdblks[bp->b_blkno][0], bp->b_un.b_addr, 9 bp->b_bcount); 10 11 else /* else write request, */ 12 /* copy data from a */ 13 /* system buffer to RAM disk */ 14 /* data block */ 15 bcopy(bp->b_un.b_addr, &ramdblks[bp->b_blkno][0], 16 bp->b_bcount); SEE ALSO
copyin(9F), copyout(9F) Writing Device Drivers WARNINGS
The from and to addresses must be within the kernel space. No range checking is done. If an address outside of the kernel space is selected, the driver may corrupt the system in an unpredictable way. SunOS 5.11 16 Jan 2006 bcopy(9F)
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