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s390/bpf: Add s390x eBPF JIT compiler backend
Replace 32 bit BPF JIT backend with new 64 bit eBPF backend. Signed-off-by: Michael Holzheu <holzheu@linux.vnet.ibm.com> Signed-off-by: Martin Schwidefsky <schwidefsky@de.ibm.com>
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1c6e4b1811
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0546231057
@ -115,7 +115,7 @@ config S390
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select HAVE_ARCH_SECCOMP_FILTER
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select HAVE_ARCH_TRACEHOOK
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select HAVE_ARCH_TRANSPARENT_HUGEPAGE
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select HAVE_BPF_JIT if PACK_STACK
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select HAVE_BPF_JIT if PACK_STACK && HAVE_MARCH_Z9_109_FEATURES
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select HAVE_CMPXCHG_DOUBLE
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select HAVE_CMPXCHG_LOCAL
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select HAVE_DEBUG_KMEMLEAK
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@ -1,134 +1,115 @@
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/*
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* BPF Jit compiler for s390, help functions.
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*
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* Copyright IBM Corp. 2012
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* Copyright IBM Corp. 2012,2015
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*
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* Author(s): Martin Schwidefsky <schwidefsky@de.ibm.com>
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* Michael Holzheu <holzheu@linux.vnet.ibm.com>
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*/
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#include <linux/linkage.h>
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#include "bpf_jit.h"
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/*
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* Calling convention:
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* registers %r2, %r6-%r8, %r10-%r11, %r13, %r15 are call saved
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* %r2: skb pointer
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* %r3: offset parameter
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* %r5: BPF A accumulator
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* %r8: return address
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* %r9: save register for skb pointer
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* %r10: skb->data
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* %r11: skb->len - skb->data_len (headlen)
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* %r12: BPF X accumulator
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* registers %r7-%r10, %r11,%r13, and %r15 are call saved
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*
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* Input (64 bit):
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* %r3 (%b2) = offset into skb data
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* %r6 (%b5) = return address
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* %r7 (%b6) = skb pointer
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* %r12 = skb data pointer
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*
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* Output:
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* %r14= %b0 = return value (read skb value)
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*
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* Work registers: %r2,%r4,%r5,%r14
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*
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* skb_copy_bits takes 4 parameters:
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* %r2 = skb pointer
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* %r3 = offset into skb data
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* %r4 = pointer to temp buffer
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* %r5 = length to copy
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* Return value in %r2: 0 = ok
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*
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* bpf_internal_load_pointer_neg_helper takes 3 parameters:
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* %r2 = skb pointer
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* %r3 = offset into data
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* %r4 = length to copy
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* Return value in %r2: Pointer to data
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*/
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#define SKBDATA %r8
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/* A = *(u32 *) (skb->data+K+X) */
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ENTRY(sk_load_word_ind)
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ar %r3,%r12 # offset += X
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bmr %r8 # < 0 -> return with cc
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#define SKF_MAX_NEG_OFF -0x200000 /* SKF_LL_OFF from filter.h */
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/* A = *(u32 *) (skb->data+K) */
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ENTRY(sk_load_word)
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llgfr %r1,%r3 # extend offset
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ahi %r3,4 # offset + 4
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clr %r11,%r3 # hlen <= offset + 4 ?
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jl sk_load_word_slow
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l %r5,0(%r1,%r10) # get word from skb
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xr %r1,%r1 # set cc to zero
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br %r8
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/*
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* Load SIZE bytes from SKB
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*/
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#define sk_load_common(NAME, SIZE, LOAD) \
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ENTRY(sk_load_##NAME); \
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ltgr %r3,%r3; /* Is offset negative? */ \
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jl sk_load_##NAME##_slow_neg; \
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ENTRY(sk_load_##NAME##_pos); \
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aghi %r3,SIZE; /* Offset + SIZE */ \
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clg %r3,STK_OFF_HLEN(%r15); /* Offset + SIZE > hlen? */ \
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jh sk_load_##NAME##_slow; \
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LOAD %r14,-SIZE(%r3,%r12); /* Get data from skb */ \
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b OFF_OK(%r6); /* Return */ \
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\
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sk_load_##NAME##_slow:; \
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lgr %r2,%r7; /* Arg1 = skb pointer */ \
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aghi %r3,-SIZE; /* Arg2 = offset */ \
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la %r4,STK_OFF_TMP(%r15); /* Arg3 = temp bufffer */ \
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lghi %r5,SIZE; /* Arg4 = size */ \
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brasl %r14,skb_copy_bits; /* Get data from skb */ \
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LOAD %r14,STK_OFF_TMP(%r15); /* Load from temp bufffer */ \
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ltgr %r2,%r2; /* Set cc to (%r2 != 0) */ \
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br %r6; /* Return */
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sk_load_word_slow:
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lgr %r9,%r2 # save %r2
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lgr %r3,%r1 # offset
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la %r4,160(%r15) # pointer to temp buffer
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lghi %r5,4 # 4 bytes
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brasl %r14,skb_copy_bits # get data from skb
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l %r5,160(%r15) # load result from temp buffer
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ltgr %r2,%r2 # set cc to (%r2 != 0)
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lgr %r2,%r9 # restore %r2
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br %r8
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sk_load_common(word, 4, llgf) /* r14 = *(u32 *) (skb->data+offset) */
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sk_load_common(half, 2, llgh) /* r14 = *(u16 *) (skb->data+offset) */
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/* A = *(u16 *) (skb->data+K+X) */
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ENTRY(sk_load_half_ind)
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ar %r3,%r12 # offset += X
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bmr %r8 # < 0 -> return with cc
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/* A = *(u16 *) (skb->data+K) */
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ENTRY(sk_load_half)
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llgfr %r1,%r3 # extend offset
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ahi %r3,2 # offset + 2
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clr %r11,%r3 # hlen <= offset + 2 ?
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jl sk_load_half_slow
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llgh %r5,0(%r1,%r10) # get half from skb
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xr %r1,%r1 # set cc to zero
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br %r8
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sk_load_half_slow:
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lgr %r9,%r2 # save %r2
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lgr %r3,%r1 # offset
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la %r4,162(%r15) # pointer to temp buffer
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lghi %r5,2 # 2 bytes
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brasl %r14,skb_copy_bits # get data from skb
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xc 160(2,%r15),160(%r15)
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l %r5,160(%r15) # load result from temp buffer
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ltgr %r2,%r2 # set cc to (%r2 != 0)
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lgr %r2,%r9 # restore %r2
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br %r8
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/* A = *(u8 *) (skb->data+K+X) */
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ENTRY(sk_load_byte_ind)
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ar %r3,%r12 # offset += X
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bmr %r8 # < 0 -> return with cc
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/* A = *(u8 *) (skb->data+K) */
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/*
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* Load 1 byte from SKB (optimized version)
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*/
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/* r14 = *(u8 *) (skb->data+offset) */
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ENTRY(sk_load_byte)
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llgfr %r1,%r3 # extend offset
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clr %r11,%r3 # hlen < offset ?
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jle sk_load_byte_slow
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lhi %r5,0
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ic %r5,0(%r1,%r10) # get byte from skb
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xr %r1,%r1 # set cc to zero
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br %r8
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ltgr %r3,%r3 # Is offset negative?
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jl sk_load_byte_slow_neg
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ENTRY(sk_load_byte_pos)
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clg %r3,STK_OFF_HLEN(%r15) # Offset >= hlen?
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jnl sk_load_byte_slow
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llgc %r14,0(%r3,%r12) # Get byte from skb
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b OFF_OK(%r6) # Return OK
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sk_load_byte_slow:
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lgr %r9,%r2 # save %r2
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lgr %r3,%r1 # offset
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la %r4,163(%r15) # pointer to temp buffer
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lghi %r5,1 # 1 byte
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brasl %r14,skb_copy_bits # get data from skb
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xc 160(3,%r15),160(%r15)
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l %r5,160(%r15) # load result from temp buffer
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ltgr %r2,%r2 # set cc to (%r2 != 0)
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lgr %r2,%r9 # restore %r2
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br %r8
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lgr %r2,%r7 # Arg1 = skb pointer
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# Arg2 = offset
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la %r4,STK_OFF_TMP(%r15) # Arg3 = pointer to temp buffer
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lghi %r5,1 # Arg4 = size (1 byte)
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brasl %r14,skb_copy_bits # Get data from skb
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llgc %r14,STK_OFF_TMP(%r15) # Load result from temp buffer
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ltgr %r2,%r2 # Set cc to (%r2 != 0)
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br %r6 # Return cc
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/* X = (*(u8 *)(skb->data+K) & 0xf) << 2 */
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ENTRY(sk_load_byte_msh)
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llgfr %r1,%r3 # extend offset
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clr %r11,%r3 # hlen < offset ?
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jle sk_load_byte_msh_slow
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lhi %r12,0
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ic %r12,0(%r1,%r10) # get byte from skb
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nill %r12,0x0f
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sll %r12,2
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xr %r1,%r1 # set cc to zero
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br %r8
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#define sk_negative_common(NAME, SIZE, LOAD) \
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sk_load_##NAME##_slow_neg:; \
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cgfi %r3,SKF_MAX_NEG_OFF; \
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jl bpf_error; \
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lgr %r2,%r7; /* Arg1 = skb pointer */ \
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/* Arg2 = offset */ \
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lghi %r4,SIZE; /* Arg3 = size */ \
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brasl %r14,bpf_internal_load_pointer_neg_helper; \
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ltgr %r2,%r2; \
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jz bpf_error; \
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LOAD %r14,0(%r2); /* Get data from pointer */ \
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xr %r3,%r3; /* Set cc to zero */ \
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br %r6; /* Return cc */
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sk_load_byte_msh_slow:
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lgr %r9,%r2 # save %r2
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lgr %r3,%r1 # offset
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la %r4,163(%r15) # pointer to temp buffer
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lghi %r5,1 # 1 byte
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brasl %r14,skb_copy_bits # get data from skb
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xc 160(3,%r15),160(%r15)
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l %r12,160(%r15) # load result from temp buffer
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nill %r12,0x0f
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sll %r12,2
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ltgr %r2,%r2 # set cc to (%r2 != 0)
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lgr %r2,%r9 # restore %r2
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br %r8
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sk_negative_common(word, 4, llgf)
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sk_negative_common(half, 2, llgh)
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sk_negative_common(byte, 1, llgc)
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bpf_error:
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# force a return 0 from jit handler
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ltgr %r15,%r15 # Set condition code
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br %r6
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58
arch/s390/net/bpf_jit.h
Normal file
58
arch/s390/net/bpf_jit.h
Normal file
@ -0,0 +1,58 @@
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/*
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* BPF Jit compiler defines
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*
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* Copyright IBM Corp. 2012,2015
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*
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* Author(s): Martin Schwidefsky <schwidefsky@de.ibm.com>
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* Michael Holzheu <holzheu@linux.vnet.ibm.com>
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*/
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#ifndef __ARCH_S390_NET_BPF_JIT_H
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#define __ARCH_S390_NET_BPF_JIT_H
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#ifndef __ASSEMBLY__
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#include <linux/filter.h>
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#include <linux/types.h>
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extern u8 sk_load_word_pos[], sk_load_half_pos[], sk_load_byte_pos[];
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extern u8 sk_load_word[], sk_load_half[], sk_load_byte[];
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#endif /* __ASSEMBLY__ */
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/*
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* Stackframe layout (packed stack):
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*
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* ^ high
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* +---------------+ |
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* | old backchain | |
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* +---------------+ |
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* | r15 - r6 | |
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* BFP -> +===============+ |
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* | | |
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* | BPF stack | |
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* | | |
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* +---------------+ |
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* | 8 byte hlen | |
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* R15+168 -> +---------------+ |
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* | 4 byte align | |
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* +---------------+ |
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* | 4 byte temp | |
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* | for bpf_jit.S | |
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* R15+160 -> +---------------+ |
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* | new backchain | |
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* R15+152 -> +---------------+ |
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* | + 152 byte SA | |
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* R15 -> +---------------+ + low
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*
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* We get 160 bytes stack space from calling function, but only use
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* 11 * 8 byte (old backchain + r15 - r6) for storing registers.
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*/
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#define STK_OFF (MAX_BPF_STACK + 8 + 4 + 4 + (160 - 11 * 8))
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#define STK_OFF_TMP 160 /* Offset of tmp buffer on stack */
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#define STK_OFF_HLEN 168 /* Offset of SKB header length on stack */
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/* Offset to skip condition code check */
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#define OFF_OK 4
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#endif /* __ARCH_S390_NET_BPF_JIT_H */
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