parisc: Implement new LWS CAS supporting 64 bit operations.
The current LWS cas only works correctly for 32bit. The new LWS allows for CAS operations of variable size. Signed-off-by: Guy Martin <gmsoft@tuxicoman.be> Cc: <stable@vger.kernel.org> # 3.13+ Signed-off-by: Helge Deller <deller@gmx.de>
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@ -74,7 +74,7 @@ ENTRY(linux_gateway_page)
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/* ADDRESS 0xb0 to 0xb8, lws uses two insns for entry */
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/* ADDRESS 0xb0 to 0xb8, lws uses two insns for entry */
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/* Light-weight-syscall entry must always be located at 0xb0 */
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/* Light-weight-syscall entry must always be located at 0xb0 */
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/* WARNING: Keep this number updated with table size changes */
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/* WARNING: Keep this number updated with table size changes */
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#define __NR_lws_entries (2)
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#define __NR_lws_entries (3)
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lws_entry:
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lws_entry:
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gate lws_start, %r0 /* increase privilege */
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gate lws_start, %r0 /* increase privilege */
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@ -502,7 +502,7 @@ lws_exit:
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/***************************************************
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/***************************************************
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Implementing CAS as an atomic operation:
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Implementing 32bit CAS as an atomic operation:
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%r26 - Address to examine
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%r26 - Address to examine
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%r25 - Old value to check (old)
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%r25 - Old value to check (old)
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@ -659,6 +659,230 @@ cas_action:
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ASM_EXCEPTIONTABLE_ENTRY(2b-linux_gateway_page, 3b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(2b-linux_gateway_page, 3b-linux_gateway_page)
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/***************************************************
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New CAS implementation which uses pointers and variable size
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information. The value pointed by old and new MUST NOT change
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while performing CAS. The lock only protect the value at %r26.
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%r26 - Address to examine
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%r25 - Pointer to the value to check (old)
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%r24 - Pointer to the value to set (new)
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%r23 - Size of the variable (0/1/2/3 for 8/16/32/64 bit)
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%r28 - Return non-zero on failure
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%r21 - Kernel error code
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%r21 has the following meanings:
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EAGAIN - CAS is busy, ldcw failed, try again.
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EFAULT - Read or write failed.
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Scratch: r20, r22, r28, r29, r1, fr4 (32bit for 64bit CAS only)
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****************************************************/
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/* ELF32 Process entry path */
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lws_compare_and_swap_2:
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#ifdef CONFIG_64BIT
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/* Clip the input registers */
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depdi 0, 31, 32, %r26
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depdi 0, 31, 32, %r25
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depdi 0, 31, 32, %r24
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depdi 0, 31, 32, %r23
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#endif
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/* Check the validity of the size pointer */
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subi,>>= 4, %r23, %r0
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b,n lws_exit_nosys
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/* Jump to the functions which will load the old and new values into
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registers depending on the their size */
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shlw %r23, 2, %r29
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blr %r29, %r0
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nop
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/* 8bit load */
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4: ldb 0(%sr3,%r25), %r25
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b cas2_lock_start
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5: ldb 0(%sr3,%r24), %r24
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nop
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nop
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nop
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nop
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nop
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/* 16bit load */
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6: ldh 0(%sr3,%r25), %r25
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b cas2_lock_start
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7: ldh 0(%sr3,%r24), %r24
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nop
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nop
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nop
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nop
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nop
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/* 32bit load */
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8: ldw 0(%sr3,%r25), %r25
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b cas2_lock_start
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9: ldw 0(%sr3,%r24), %r24
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nop
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nop
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nop
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nop
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nop
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/* 64bit load */
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#ifdef CONFIG_64BIT
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10: ldd 0(%sr3,%r25), %r25
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11: ldd 0(%sr3,%r24), %r24
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#else
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/* Load new value into r22/r23 - high/low */
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10: ldw 0(%sr3,%r25), %r22
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11: ldw 4(%sr3,%r25), %r23
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/* Load new value into fr4 for atomic store later */
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12: flddx 0(%sr3,%r24), %fr4
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#endif
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cas2_lock_start:
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/* Load start of lock table */
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ldil L%lws_lock_start, %r20
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ldo R%lws_lock_start(%r20), %r28
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/* Extract four bits from r26 and hash lock (Bits 4-7) */
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extru %r26, 27, 4, %r20
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/* Find lock to use, the hash is either one of 0 to
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15, multiplied by 16 (keep it 16-byte aligned)
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and add to the lock table offset. */
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shlw %r20, 4, %r20
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add %r20, %r28, %r20
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rsm PSW_SM_I, %r0 /* Disable interrupts */
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/* COW breaks can cause contention on UP systems */
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LDCW 0(%sr2,%r20), %r28 /* Try to acquire the lock */
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cmpb,<>,n %r0, %r28, cas2_action /* Did we get it? */
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cas2_wouldblock:
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ldo 2(%r0), %r28 /* 2nd case */
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ssm PSW_SM_I, %r0
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b lws_exit /* Contended... */
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ldo -EAGAIN(%r0), %r21 /* Spin in userspace */
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/*
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prev = *addr;
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if ( prev == old )
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*addr = new;
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return prev;
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*/
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/* NOTES:
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This all works becuse intr_do_signal
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and schedule both check the return iasq
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and see that we are on the kernel page
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so this process is never scheduled off
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or is ever sent any signal of any sort,
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thus it is wholly atomic from usrspaces
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perspective
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*/
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cas2_action:
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/* Jump to the correct function */
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blr %r29, %r0
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/* Set %r28 as non-zero for now */
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ldo 1(%r0),%r28
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/* 8bit CAS */
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13: ldb,ma 0(%sr3,%r26), %r29
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sub,= %r29, %r25, %r0
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b,n cas2_end
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14: stb,ma %r24, 0(%sr3,%r26)
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b cas2_end
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copy %r0, %r28
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nop
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nop
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/* 16bit CAS */
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15: ldh,ma 0(%sr3,%r26), %r29
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sub,= %r29, %r25, %r0
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b,n cas2_end
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16: sth,ma %r24, 0(%sr3,%r26)
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b cas2_end
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copy %r0, %r28
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nop
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nop
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/* 32bit CAS */
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17: ldw,ma 0(%sr3,%r26), %r29
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sub,= %r29, %r25, %r0
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b,n cas2_end
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18: stw,ma %r24, 0(%sr3,%r26)
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b cas2_end
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copy %r0, %r28
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nop
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nop
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/* 64bit CAS */
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#ifdef CONFIG_64BIT
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19: ldd,ma 0(%sr3,%r26), %r29
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sub,= %r29, %r25, %r0
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b,n cas2_end
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20: std,ma %r24, 0(%sr3,%r26)
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copy %r0, %r28
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#else
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/* Compare first word */
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19: ldw,ma 0(%sr3,%r26), %r29
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sub,= %r29, %r22, %r0
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b,n cas2_end
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/* Compare second word */
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20: ldw,ma 4(%sr3,%r26), %r29
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sub,= %r29, %r23, %r0
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b,n cas2_end
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/* Perform the store */
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21: fstdx %fr4, 0(%sr3,%r26)
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copy %r0, %r28
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#endif
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cas2_end:
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/* Free lock */
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stw,ma %r20, 0(%sr2,%r20)
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/* Enable interrupts */
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ssm PSW_SM_I, %r0
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/* Return to userspace, set no error */
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b lws_exit
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copy %r0, %r21
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22:
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/* Error occurred on load or store */
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/* Free lock */
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stw %r20, 0(%sr2,%r20)
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ssm PSW_SM_I, %r0
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ldo 1(%r0),%r28
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b lws_exit
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ldo -EFAULT(%r0),%r21 /* set errno */
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nop
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nop
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nop
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/* Exception table entries, for the load and store, return EFAULT.
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Each of the entries must be relocated. */
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ASM_EXCEPTIONTABLE_ENTRY(4b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(5b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(6b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(7b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(8b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(9b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(10b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(11b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(13b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(14b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(15b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(16b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(17b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(18b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(19b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(20b-linux_gateway_page, 22b-linux_gateway_page)
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#ifndef CONFIG_64BIT
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ASM_EXCEPTIONTABLE_ENTRY(12b-linux_gateway_page, 22b-linux_gateway_page)
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ASM_EXCEPTIONTABLE_ENTRY(21b-linux_gateway_page, 22b-linux_gateway_page)
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#endif
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/* Make sure nothing else is placed on this page */
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/* Make sure nothing else is placed on this page */
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.align PAGE_SIZE
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.align PAGE_SIZE
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END(linux_gateway_page)
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END(linux_gateway_page)
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@ -675,8 +899,9 @@ ENTRY(end_linux_gateway_page)
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/* Light-weight-syscall table */
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/* Light-weight-syscall table */
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/* Start of lws table. */
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/* Start of lws table. */
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ENTRY(lws_table)
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ENTRY(lws_table)
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LWS_ENTRY(compare_and_swap32) /* 0 - ELF32 Atomic compare and swap */
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LWS_ENTRY(compare_and_swap32) /* 0 - ELF32 Atomic 32bit CAS */
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LWS_ENTRY(compare_and_swap64) /* 1 - ELF64 Atomic compare and swap */
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LWS_ENTRY(compare_and_swap64) /* 1 - ELF64 Atomic 32bit CAS */
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LWS_ENTRY(compare_and_swap_2) /* 2 - ELF32 Atomic 64bit CAS */
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END(lws_table)
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END(lws_table)
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/* End of lws table */
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/* End of lws table */
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