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							- /*
 
-  * Just-In-Time compiler for BPF filters on 32bit ARM
 
-  *
 
-  * Copyright (c) 2011 Mircea Gherzan <mgherzan@gmail.com>
 
-  *
 
-  * This program is free software; you can redistribute it and/or modify it
 
-  * under the terms of the GNU General Public License as published by the
 
-  * Free Software Foundation; version 2 of the License.
 
-  */
 
- #include <linux/bitops.h>
 
- #include <linux/compiler.h>
 
- #include <linux/errno.h>
 
- #include <linux/filter.h>
 
- #include <linux/moduleloader.h>
 
- #include <linux/netdevice.h>
 
- #include <linux/string.h>
 
- #include <linux/slab.h>
 
- #include <linux/if_vlan.h>
 
- #include <asm/cacheflush.h>
 
- #include <asm/hwcap.h>
 
- #include "bpf_jit_32.h"
 
- /*
 
-  * ABI:
 
-  *
 
-  * r0	scratch register
 
-  * r4	BPF register A
 
-  * r5	BPF register X
 
-  * r6	pointer to the skb
 
-  * r7	skb->data
 
-  * r8	skb_headlen(skb)
 
-  */
 
- #define r_scratch	ARM_R0
 
- /* r1-r3 are (also) used for the unaligned loads on the non-ARMv7 slowpath */
 
- #define r_off		ARM_R1
 
- #define r_A		ARM_R4
 
- #define r_X		ARM_R5
 
- #define r_skb		ARM_R6
 
- #define r_skb_data	ARM_R7
 
- #define r_skb_hl	ARM_R8
 
- #define SCRATCH_SP_OFFSET	0
 
- #define SCRATCH_OFF(k)		(SCRATCH_SP_OFFSET + 4 * (k))
 
- #define SEEN_MEM		((1 << BPF_MEMWORDS) - 1)
 
- #define SEEN_MEM_WORD(k)	(1 << (k))
 
- #define SEEN_X			(1 << BPF_MEMWORDS)
 
- #define SEEN_CALL		(1 << (BPF_MEMWORDS + 1))
 
- #define SEEN_SKB		(1 << (BPF_MEMWORDS + 2))
 
- #define SEEN_DATA		(1 << (BPF_MEMWORDS + 3))
 
- #define FLAG_NEED_X_RESET	(1 << 0)
 
- struct jit_ctx {
 
- 	const struct sk_filter *skf;
 
- 	unsigned idx;
 
- 	unsigned prologue_bytes;
 
- 	int ret0_fp_idx;
 
- 	u32 seen;
 
- 	u32 flags;
 
- 	u32 *offsets;
 
- 	u32 *target;
 
- #if __LINUX_ARM_ARCH__ < 7
 
- 	u16 epilogue_bytes;
 
- 	u16 imm_count;
 
- 	u32 *imms;
 
- #endif
 
- };
 
- int bpf_jit_enable __read_mostly;
 
- static u64 jit_get_skb_b(struct sk_buff *skb, unsigned offset)
 
- {
 
- 	u8 ret;
 
- 	int err;
 
- 	err = skb_copy_bits(skb, offset, &ret, 1);
 
- 	return (u64)err << 32 | ret;
 
- }
 
- static u64 jit_get_skb_h(struct sk_buff *skb, unsigned offset)
 
- {
 
- 	u16 ret;
 
- 	int err;
 
- 	err = skb_copy_bits(skb, offset, &ret, 2);
 
- 	return (u64)err << 32 | ntohs(ret);
 
- }
 
- static u64 jit_get_skb_w(struct sk_buff *skb, unsigned offset)
 
- {
 
- 	u32 ret;
 
- 	int err;
 
- 	err = skb_copy_bits(skb, offset, &ret, 4);
 
- 	return (u64)err << 32 | ntohl(ret);
 
- }
 
- /*
 
-  * Wrapper that handles both OABI and EABI and assures Thumb2 interworking
 
-  * (where the assembly routines like __aeabi_uidiv could cause problems).
 
-  */
 
- static u32 jit_udiv(u32 dividend, u32 divisor)
 
- {
 
- 	return dividend / divisor;
 
- }
 
- static inline void _emit(int cond, u32 inst, struct jit_ctx *ctx)
 
- {
 
- 	if (ctx->target != NULL)
 
- 		ctx->target[ctx->idx] = inst | (cond << 28);
 
- 	ctx->idx++;
 
- }
 
- /*
 
-  * Emit an instruction that will be executed unconditionally.
 
-  */
 
- static inline void emit(u32 inst, struct jit_ctx *ctx)
 
- {
 
- 	_emit(ARM_COND_AL, inst, ctx);
 
- }
 
- static u16 saved_regs(struct jit_ctx *ctx)
 
- {
 
- 	u16 ret = 0;
 
- 	if ((ctx->skf->len > 1) ||
 
- 	    (ctx->skf->insns[0].code == BPF_S_RET_A))
 
- 		ret |= 1 << r_A;
 
- #ifdef CONFIG_FRAME_POINTER
 
- 	ret |= (1 << ARM_FP) | (1 << ARM_IP) | (1 << ARM_LR) | (1 << ARM_PC);
 
- #else
 
- 	if (ctx->seen & SEEN_CALL)
 
- 		ret |= 1 << ARM_LR;
 
- #endif
 
- 	if (ctx->seen & (SEEN_DATA | SEEN_SKB))
 
- 		ret |= 1 << r_skb;
 
- 	if (ctx->seen & SEEN_DATA)
 
- 		ret |= (1 << r_skb_data) | (1 << r_skb_hl);
 
- 	if (ctx->seen & SEEN_X)
 
- 		ret |= 1 << r_X;
 
- 	return ret;
 
- }
 
- static inline int mem_words_used(struct jit_ctx *ctx)
 
- {
 
- 	/* yes, we do waste some stack space IF there are "holes" in the set" */
 
- 	return fls(ctx->seen & SEEN_MEM);
 
- }
 
- static inline bool is_load_to_a(u16 inst)
 
- {
 
- 	switch (inst) {
 
- 	case BPF_S_LD_W_LEN:
 
- 	case BPF_S_LD_W_ABS:
 
- 	case BPF_S_LD_H_ABS:
 
- 	case BPF_S_LD_B_ABS:
 
- 	case BPF_S_ANC_CPU:
 
- 	case BPF_S_ANC_IFINDEX:
 
- 	case BPF_S_ANC_MARK:
 
- 	case BPF_S_ANC_PROTOCOL:
 
- 	case BPF_S_ANC_RXHASH:
 
- 	case BPF_S_ANC_VLAN_TAG:
 
- 	case BPF_S_ANC_VLAN_TAG_PRESENT:
 
- 	case BPF_S_ANC_QUEUE:
 
- 		return true;
 
- 	default:
 
- 		return false;
 
- 	}
 
- }
 
- static void build_prologue(struct jit_ctx *ctx)
 
- {
 
- 	u16 reg_set = saved_regs(ctx);
 
- 	u16 first_inst = ctx->skf->insns[0].code;
 
- 	u16 off;
 
- #ifdef CONFIG_FRAME_POINTER
 
- 	emit(ARM_MOV_R(ARM_IP, ARM_SP), ctx);
 
- 	emit(ARM_PUSH(reg_set), ctx);
 
- 	emit(ARM_SUB_I(ARM_FP, ARM_IP, 4), ctx);
 
- #else
 
- 	if (reg_set)
 
- 		emit(ARM_PUSH(reg_set), ctx);
 
- #endif
 
- 	if (ctx->seen & (SEEN_DATA | SEEN_SKB))
 
- 		emit(ARM_MOV_R(r_skb, ARM_R0), ctx);
 
- 	if (ctx->seen & SEEN_DATA) {
 
- 		off = offsetof(struct sk_buff, data);
 
- 		emit(ARM_LDR_I(r_skb_data, r_skb, off), ctx);
 
- 		/* headlen = len - data_len */
 
- 		off = offsetof(struct sk_buff, len);
 
- 		emit(ARM_LDR_I(r_skb_hl, r_skb, off), ctx);
 
- 		off = offsetof(struct sk_buff, data_len);
 
- 		emit(ARM_LDR_I(r_scratch, r_skb, off), ctx);
 
- 		emit(ARM_SUB_R(r_skb_hl, r_skb_hl, r_scratch), ctx);
 
- 	}
 
 
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