blob: 9476e7f061a1cc6ad65e775f7b2385c49116f52e [file] [log] [blame]
Markos Chandrasc6610de2014-04-08 12:47:14 +01001/*
2 * Just-In-Time compiler for BPF filters on MIPS
3 *
4 * Copyright (c) 2014 Imagination Technologies Ltd.
5 * Author: Markos Chandras <markos.chandras@imgtec.com>
6 *
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License as published by the
9 * Free Software Foundation; version 2 of the License.
10 */
11
12#include <linux/bitops.h>
13#include <linux/compiler.h>
14#include <linux/errno.h>
15#include <linux/filter.h>
16#include <linux/if_vlan.h>
17#include <linux/kconfig.h>
18#include <linux/moduleloader.h>
19#include <linux/netdevice.h>
20#include <linux/string.h>
21#include <linux/slab.h>
22#include <linux/types.h>
23#include <asm/bitops.h>
24#include <asm/cacheflush.h>
25#include <asm/cpu-features.h>
26#include <asm/uasm.h>
27
28#include "bpf_jit.h"
29
30/* ABI
31 *
32 * s0 1st scratch register
33 * s1 2nd scratch register
34 * s2 offset register
35 * s3 BPF register A
36 * s4 BPF register X
37 * s5 *skb
38 * s6 *scratch memory
39 *
40 * On entry (*bpf_func)(*skb, *filter)
41 * a0 = MIPS_R_A0 = skb;
42 * a1 = MIPS_R_A1 = filter;
43 *
44 * Stack
45 * ...
46 * M[15]
47 * M[14]
48 * M[13]
49 * ...
50 * M[0] <-- r_M
51 * saved reg k-1
52 * saved reg k-2
53 * ...
54 * saved reg 0 <-- r_sp
55 * <no argument area>
56 *
57 * Packet layout
58 *
59 * <--------------------- len ------------------------>
60 * <--skb-len(r_skb_hl)-->< ----- skb->data_len ------>
61 * ----------------------------------------------------
62 * | skb->data |
63 * ----------------------------------------------------
64 */
65
66#define RSIZE (sizeof(unsigned long))
67#define ptr typeof(unsigned long)
68
69/* ABI specific return values */
70#ifdef CONFIG_32BIT /* O32 */
71#ifdef CONFIG_CPU_LITTLE_ENDIAN
72#define r_err MIPS_R_V1
73#define r_val MIPS_R_V0
74#else /* CONFIG_CPU_LITTLE_ENDIAN */
75#define r_err MIPS_R_V0
76#define r_val MIPS_R_V1
77#endif
78#else /* N64 */
79#define r_err MIPS_R_V0
80#define r_val MIPS_R_V0
81#endif
82
83#define r_ret MIPS_R_V0
84
85/*
86 * Use 2 scratch registers to avoid pipeline interlocks.
87 * There is no overhead during epilogue and prologue since
88 * any of the $s0-$s6 registers will only be preserved if
89 * they are going to actually be used.
90 */
91#define r_s0 MIPS_R_S0 /* scratch reg 1 */
92#define r_s1 MIPS_R_S1 /* scratch reg 2 */
93#define r_off MIPS_R_S2
94#define r_A MIPS_R_S3
95#define r_X MIPS_R_S4
96#define r_skb MIPS_R_S5
97#define r_M MIPS_R_S6
98#define r_tmp_imm MIPS_R_T6 /* No need to preserve this */
99#define r_tmp MIPS_R_T7 /* No need to preserve this */
100#define r_zero MIPS_R_ZERO
101#define r_sp MIPS_R_SP
102#define r_ra MIPS_R_RA
103
104#define SCRATCH_OFF(k) (4 * (k))
105
106/* JIT flags */
107#define SEEN_CALL (1 << BPF_MEMWORDS)
108#define SEEN_SREG_SFT (BPF_MEMWORDS + 1)
109#define SEEN_SREG_BASE (1 << SEEN_SREG_SFT)
110#define SEEN_SREG(x) (SEEN_SREG_BASE << (x))
111#define SEEN_S0 SEEN_SREG(0)
112#define SEEN_S1 SEEN_SREG(1)
113#define SEEN_OFF SEEN_SREG(2)
114#define SEEN_A SEEN_SREG(3)
115#define SEEN_X SEEN_SREG(4)
116#define SEEN_SKB SEEN_SREG(5)
117#define SEEN_MEM SEEN_SREG(6)
118
119/* Arguments used by JIT */
120#define ARGS_USED_BY_JIT 2 /* only applicable to 64-bit */
121
Markos Chandrasc6610de2014-04-08 12:47:14 +0100122#define SBIT(x) (1 << (x)) /* Signed version of BIT() */
123
124/**
125 * struct jit_ctx - JIT context
126 * @skf: The sk_filter
127 * @prologue_bytes: Number of bytes for prologue
128 * @idx: Instruction index
129 * @flags: JIT flags
130 * @offsets: Instruction offsets
131 * @target: Memory location for the compiled filter
132 */
133struct jit_ctx {
134 const struct sk_filter *skf;
135 unsigned int prologue_bytes;
136 u32 idx;
137 u32 flags;
138 u32 *offsets;
139 u32 *target;
140};
141
142
143static inline int optimize_div(u32 *k)
144{
145 /* power of 2 divides can be implemented with right shift */
146 if (!(*k & (*k-1))) {
147 *k = ilog2(*k);
148 return 1;
149 }
150
151 return 0;
152}
153
Markos Chandras95782bf2014-06-25 09:37:21 +0100154static inline void emit_jit_reg_move(ptr dst, ptr src, struct jit_ctx *ctx);
155
Markos Chandrasc6610de2014-04-08 12:47:14 +0100156/* Simply emit the instruction if the JIT memory space has been allocated */
157#define emit_instr(ctx, func, ...) \
158do { \
159 if ((ctx)->target != NULL) { \
160 u32 *p = &(ctx)->target[ctx->idx]; \
161 uasm_i_##func(&p, ##__VA_ARGS__); \
162 } \
163 (ctx)->idx++; \
164} while (0)
165
166/* Determine if immediate is within the 16-bit signed range */
167static inline bool is_range16(s32 imm)
168{
Markos Chandras10c4d612014-06-23 10:38:55 +0100169 return !(imm >= SBIT(15) || imm < -SBIT(15));
Markos Chandrasc6610de2014-04-08 12:47:14 +0100170}
171
172static inline void emit_addu(unsigned int dst, unsigned int src1,
173 unsigned int src2, struct jit_ctx *ctx)
174{
175 emit_instr(ctx, addu, dst, src1, src2);
176}
177
178static inline void emit_nop(struct jit_ctx *ctx)
179{
180 emit_instr(ctx, nop);
181}
182
183/* Load a u32 immediate to a register */
184static inline void emit_load_imm(unsigned int dst, u32 imm, struct jit_ctx *ctx)
185{
186 if (ctx->target != NULL) {
187 /* addiu can only handle s16 */
Markos Chandras10c4d612014-06-23 10:38:55 +0100188 if (!is_range16(imm)) {
Markos Chandrasc6610de2014-04-08 12:47:14 +0100189 u32 *p = &ctx->target[ctx->idx];
190 uasm_i_lui(&p, r_tmp_imm, (s32)imm >> 16);
191 p = &ctx->target[ctx->idx + 1];
192 uasm_i_ori(&p, dst, r_tmp_imm, imm & 0xffff);
193 } else {
194 u32 *p = &ctx->target[ctx->idx];
195 uasm_i_addiu(&p, dst, r_zero, imm);
196 }
197 }
198 ctx->idx++;
199
Markos Chandras10c4d612014-06-23 10:38:55 +0100200 if (!is_range16(imm))
Markos Chandrasc6610de2014-04-08 12:47:14 +0100201 ctx->idx++;
202}
203
204static inline void emit_or(unsigned int dst, unsigned int src1,
205 unsigned int src2, struct jit_ctx *ctx)
206{
207 emit_instr(ctx, or, dst, src1, src2);
208}
209
210static inline void emit_ori(unsigned int dst, unsigned src, u32 imm,
211 struct jit_ctx *ctx)
212{
213 if (imm >= BIT(16)) {
214 emit_load_imm(r_tmp, imm, ctx);
215 emit_or(dst, src, r_tmp, ctx);
216 } else {
217 emit_instr(ctx, ori, dst, src, imm);
218 }
219}
220
221
222static inline void emit_daddu(unsigned int dst, unsigned int src1,
223 unsigned int src2, struct jit_ctx *ctx)
224{
225 emit_instr(ctx, daddu, dst, src1, src2);
226}
227
228static inline void emit_daddiu(unsigned int dst, unsigned int src,
229 int imm, struct jit_ctx *ctx)
230{
231 /*
232 * Only used for stack, so the imm is relatively small
233 * and it fits in 15-bits
234 */
235 emit_instr(ctx, daddiu, dst, src, imm);
236}
237
238static inline void emit_addiu(unsigned int dst, unsigned int src,
239 u32 imm, struct jit_ctx *ctx)
240{
Markos Chandras10c4d612014-06-23 10:38:55 +0100241 if (!is_range16(imm)) {
Markos Chandrasc6610de2014-04-08 12:47:14 +0100242 emit_load_imm(r_tmp, imm, ctx);
243 emit_addu(dst, r_tmp, src, ctx);
244 } else {
245 emit_instr(ctx, addiu, dst, src, imm);
246 }
247}
248
249static inline void emit_and(unsigned int dst, unsigned int src1,
250 unsigned int src2, struct jit_ctx *ctx)
251{
252 emit_instr(ctx, and, dst, src1, src2);
253}
254
255static inline void emit_andi(unsigned int dst, unsigned int src,
256 u32 imm, struct jit_ctx *ctx)
257{
258 /* If imm does not fit in u16 then load it to register */
259 if (imm >= BIT(16)) {
260 emit_load_imm(r_tmp, imm, ctx);
261 emit_and(dst, src, r_tmp, ctx);
262 } else {
263 emit_instr(ctx, andi, dst, src, imm);
264 }
265}
266
267static inline void emit_xor(unsigned int dst, unsigned int src1,
268 unsigned int src2, struct jit_ctx *ctx)
269{
270 emit_instr(ctx, xor, dst, src1, src2);
271}
272
273static inline void emit_xori(ptr dst, ptr src, u32 imm, struct jit_ctx *ctx)
274{
275 /* If imm does not fit in u16 then load it to register */
276 if (imm >= BIT(16)) {
277 emit_load_imm(r_tmp, imm, ctx);
278 emit_xor(dst, src, r_tmp, ctx);
279 } else {
280 emit_instr(ctx, xori, dst, src, imm);
281 }
282}
283
284static inline void emit_stack_offset(int offset, struct jit_ctx *ctx)
285{
286 if (config_enabled(CONFIG_64BIT))
287 emit_instr(ctx, daddiu, r_sp, r_sp, offset);
288 else
289 emit_instr(ctx, addiu, r_sp, r_sp, offset);
290
291}
292
293static inline void emit_subu(unsigned int dst, unsigned int src1,
294 unsigned int src2, struct jit_ctx *ctx)
295{
296 emit_instr(ctx, subu, dst, src1, src2);
297}
298
299static inline void emit_neg(unsigned int reg, struct jit_ctx *ctx)
300{
301 emit_subu(reg, r_zero, reg, ctx);
302}
303
304static inline void emit_sllv(unsigned int dst, unsigned int src,
305 unsigned int sa, struct jit_ctx *ctx)
306{
307 emit_instr(ctx, sllv, dst, src, sa);
308}
309
310static inline void emit_sll(unsigned int dst, unsigned int src,
311 unsigned int sa, struct jit_ctx *ctx)
312{
313 /* sa is 5-bits long */
Markos Chandras95782bf2014-06-25 09:37:21 +0100314 if (sa >= BIT(5))
315 /* Shifting >= 32 results in zero */
316 emit_jit_reg_move(dst, r_zero, ctx);
317 else
318 emit_instr(ctx, sll, dst, src, sa);
Markos Chandrasc6610de2014-04-08 12:47:14 +0100319}
320
321static inline void emit_srlv(unsigned int dst, unsigned int src,
322 unsigned int sa, struct jit_ctx *ctx)
323{
324 emit_instr(ctx, srlv, dst, src, sa);
325}
326
327static inline void emit_srl(unsigned int dst, unsigned int src,
328 unsigned int sa, struct jit_ctx *ctx)
329{
330 /* sa is 5-bits long */
Markos Chandras95782bf2014-06-25 09:37:21 +0100331 if (sa >= BIT(5))
332 /* Shifting >= 32 results in zero */
333 emit_jit_reg_move(dst, r_zero, ctx);
334 else
335 emit_instr(ctx, srl, dst, src, sa);
Markos Chandrasc6610de2014-04-08 12:47:14 +0100336}
337
Markos Chandras55393ee2014-06-23 10:38:48 +0100338static inline void emit_slt(unsigned int dst, unsigned int src1,
339 unsigned int src2, struct jit_ctx *ctx)
340{
341 emit_instr(ctx, slt, dst, src1, src2);
342}
343
Markos Chandrasc6610de2014-04-08 12:47:14 +0100344static inline void emit_sltu(unsigned int dst, unsigned int src1,
345 unsigned int src2, struct jit_ctx *ctx)
346{
347 emit_instr(ctx, sltu, dst, src1, src2);
348}
349
350static inline void emit_sltiu(unsigned dst, unsigned int src,
351 unsigned int imm, struct jit_ctx *ctx)
352{
353 /* 16 bit immediate */
Markos Chandras10c4d612014-06-23 10:38:55 +0100354 if (!is_range16((s32)imm)) {
Markos Chandrasc6610de2014-04-08 12:47:14 +0100355 emit_load_imm(r_tmp, imm, ctx);
356 emit_sltu(dst, src, r_tmp, ctx);
357 } else {
358 emit_instr(ctx, sltiu, dst, src, imm);
359 }
360
361}
362
363/* Store register on the stack */
364static inline void emit_store_stack_reg(ptr reg, ptr base,
365 unsigned int offset,
366 struct jit_ctx *ctx)
367{
368 if (config_enabled(CONFIG_64BIT))
369 emit_instr(ctx, sd, reg, offset, base);
370 else
371 emit_instr(ctx, sw, reg, offset, base);
372}
373
374static inline void emit_store(ptr reg, ptr base, unsigned int offset,
375 struct jit_ctx *ctx)
376{
377 emit_instr(ctx, sw, reg, offset, base);
378}
379
380static inline void emit_load_stack_reg(ptr reg, ptr base,
381 unsigned int offset,
382 struct jit_ctx *ctx)
383{
384 if (config_enabled(CONFIG_64BIT))
385 emit_instr(ctx, ld, reg, offset, base);
386 else
387 emit_instr(ctx, lw, reg, offset, base);
388}
389
390static inline void emit_load(unsigned int reg, unsigned int base,
391 unsigned int offset, struct jit_ctx *ctx)
392{
393 emit_instr(ctx, lw, reg, offset, base);
394}
395
396static inline void emit_load_byte(unsigned int reg, unsigned int base,
397 unsigned int offset, struct jit_ctx *ctx)
398{
399 emit_instr(ctx, lb, reg, offset, base);
400}
401
402static inline void emit_half_load(unsigned int reg, unsigned int base,
403 unsigned int offset, struct jit_ctx *ctx)
404{
405 emit_instr(ctx, lh, reg, offset, base);
406}
407
408static inline void emit_mul(unsigned int dst, unsigned int src1,
409 unsigned int src2, struct jit_ctx *ctx)
410{
411 emit_instr(ctx, mul, dst, src1, src2);
412}
413
414static inline void emit_div(unsigned int dst, unsigned int src,
415 struct jit_ctx *ctx)
416{
417 if (ctx->target != NULL) {
418 u32 *p = &ctx->target[ctx->idx];
419 uasm_i_divu(&p, dst, src);
420 p = &ctx->target[ctx->idx + 1];
Markos Chandras35a8e162014-06-23 10:38:47 +0100421 uasm_i_mflo(&p, dst);
Markos Chandrasc6610de2014-04-08 12:47:14 +0100422 }
423 ctx->idx += 2; /* 2 insts */
424}
425
426static inline void emit_mod(unsigned int dst, unsigned int src,
427 struct jit_ctx *ctx)
428{
429 if (ctx->target != NULL) {
430 u32 *p = &ctx->target[ctx->idx];
431 uasm_i_divu(&p, dst, src);
432 p = &ctx->target[ctx->idx + 1];
433 uasm_i_mflo(&p, dst);
434 }
435 ctx->idx += 2; /* 2 insts */
436}
437
438static inline void emit_dsll(unsigned int dst, unsigned int src,
439 unsigned int sa, struct jit_ctx *ctx)
440{
441 emit_instr(ctx, dsll, dst, src, sa);
442}
443
444static inline void emit_dsrl32(unsigned int dst, unsigned int src,
445 unsigned int sa, struct jit_ctx *ctx)
446{
447 emit_instr(ctx, dsrl32, dst, src, sa);
448}
449
450static inline void emit_wsbh(unsigned int dst, unsigned int src,
451 struct jit_ctx *ctx)
452{
453 emit_instr(ctx, wsbh, dst, src);
454}
455
456/* load a function pointer to register */
457static inline void emit_load_func(unsigned int reg, ptr imm,
458 struct jit_ctx *ctx)
459{
460 if (config_enabled(CONFIG_64BIT)) {
461 /* At this point imm is always 64-bit */
462 emit_load_imm(r_tmp, (u64)imm >> 32, ctx);
463 emit_dsll(r_tmp_imm, r_tmp, 16, ctx); /* left shift by 16 */
464 emit_ori(r_tmp, r_tmp_imm, (imm >> 16) & 0xffff, ctx);
465 emit_dsll(r_tmp_imm, r_tmp, 16, ctx); /* left shift by 16 */
466 emit_ori(reg, r_tmp_imm, imm & 0xffff, ctx);
467 } else {
468 emit_load_imm(reg, imm, ctx);
469 }
470}
471
472/* Move to real MIPS register */
473static inline void emit_reg_move(ptr dst, ptr src, struct jit_ctx *ctx)
474{
475 if (config_enabled(CONFIG_64BIT))
476 emit_daddu(dst, src, r_zero, ctx);
477 else
478 emit_addu(dst, src, r_zero, ctx);
479}
480
481/* Move to JIT (32-bit) register */
482static inline void emit_jit_reg_move(ptr dst, ptr src, struct jit_ctx *ctx)
483{
484 emit_addu(dst, src, r_zero, ctx);
485}
486
487/* Compute the immediate value for PC-relative branches. */
488static inline u32 b_imm(unsigned int tgt, struct jit_ctx *ctx)
489{
490 if (ctx->target == NULL)
491 return 0;
492
493 /*
494 * We want a pc-relative branch. We only do forward branches
495 * so tgt is always after pc. tgt is the instruction offset
496 * we want to jump to.
497
498 * Branch on MIPS:
499 * I: target_offset <- sign_extend(offset)
500 * I+1: PC += target_offset (delay slot)
501 *
502 * ctx->idx currently points to the branch instruction
503 * but the offset is added to the delay slot so we need
504 * to subtract 4.
505 */
506 return ctx->offsets[tgt] -
507 (ctx->idx * 4 - ctx->prologue_bytes) - 4;
508}
509
510static inline void emit_bcond(int cond, unsigned int reg1, unsigned int reg2,
511 unsigned int imm, struct jit_ctx *ctx)
512{
513 if (ctx->target != NULL) {
514 u32 *p = &ctx->target[ctx->idx];
515
516 switch (cond) {
517 case MIPS_COND_EQ:
518 uasm_i_beq(&p, reg1, reg2, imm);
519 break;
520 case MIPS_COND_NE:
521 uasm_i_bne(&p, reg1, reg2, imm);
522 break;
523 case MIPS_COND_ALL:
524 uasm_i_b(&p, imm);
525 break;
526 default:
527 pr_warn("%s: Unhandled branch conditional: %d\n",
528 __func__, cond);
529 }
530 }
531 ctx->idx++;
532}
533
534static inline void emit_b(unsigned int imm, struct jit_ctx *ctx)
535{
536 emit_bcond(MIPS_COND_ALL, r_zero, r_zero, imm, ctx);
537}
538
539static inline void emit_jalr(unsigned int link, unsigned int reg,
540 struct jit_ctx *ctx)
541{
542 emit_instr(ctx, jalr, link, reg);
543}
544
545static inline void emit_jr(unsigned int reg, struct jit_ctx *ctx)
546{
547 emit_instr(ctx, jr, reg);
548}
549
550static inline u16 align_sp(unsigned int num)
551{
552 /* Double word alignment for 32-bit, quadword for 64-bit */
553 unsigned int align = config_enabled(CONFIG_64BIT) ? 16 : 8;
554 num = (num + (align - 1)) & -align;
555 return num;
556}
557
Markos Chandrasc6610de2014-04-08 12:47:14 +0100558static bool is_load_to_a(u16 inst)
559{
560 switch (inst) {
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200561 case BPF_LD | BPF_W | BPF_LEN:
562 case BPF_LD | BPF_W | BPF_ABS:
563 case BPF_LD | BPF_H | BPF_ABS:
564 case BPF_LD | BPF_B | BPF_ABS:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100565 return true;
566 default:
567 return false;
568 }
569}
570
571static void save_bpf_jit_regs(struct jit_ctx *ctx, unsigned offset)
572{
573 int i = 0, real_off = 0;
574 u32 sflags, tmp_flags;
575
576 /* Adjust the stack pointer */
577 emit_stack_offset(-align_sp(offset), ctx);
578
579 if (ctx->flags & SEEN_CALL) {
580 /* Argument save area */
581 if (config_enabled(CONFIG_64BIT))
582 /* Bottom of current frame */
583 real_off = align_sp(offset) - RSIZE;
584 else
585 /* Top of previous frame */
586 real_off = align_sp(offset) + RSIZE;
587 emit_store_stack_reg(MIPS_R_A0, r_sp, real_off, ctx);
588 emit_store_stack_reg(MIPS_R_A1, r_sp, real_off + RSIZE, ctx);
589
590 real_off = 0;
591 }
592
593 tmp_flags = sflags = ctx->flags >> SEEN_SREG_SFT;
594 /* sflags is essentially a bitmap */
595 while (tmp_flags) {
596 if ((sflags >> i) & 0x1) {
597 emit_store_stack_reg(MIPS_R_S0 + i, r_sp, real_off,
598 ctx);
599 real_off += RSIZE;
600 }
601 i++;
602 tmp_flags >>= 1;
603 }
604
605 /* save return address */
606 if (ctx->flags & SEEN_CALL) {
607 emit_store_stack_reg(r_ra, r_sp, real_off, ctx);
608 real_off += RSIZE;
609 }
610
611 /* Setup r_M leaving the alignment gap if necessary */
612 if (ctx->flags & SEEN_MEM) {
613 if (real_off % (RSIZE * 2))
614 real_off += RSIZE;
615 emit_addiu(r_M, r_sp, real_off, ctx);
616 }
617}
618
619static void restore_bpf_jit_regs(struct jit_ctx *ctx,
620 unsigned int offset)
621{
622 int i, real_off = 0;
623 u32 sflags, tmp_flags;
624
625 if (ctx->flags & SEEN_CALL) {
626 if (config_enabled(CONFIG_64BIT))
627 /* Bottom of current frame */
628 real_off = align_sp(offset) - RSIZE;
629 else
630 /* Top of previous frame */
631 real_off = align_sp(offset) + RSIZE;
632 emit_load_stack_reg(MIPS_R_A0, r_sp, real_off, ctx);
633 emit_load_stack_reg(MIPS_R_A1, r_sp, real_off + RSIZE, ctx);
634
635 real_off = 0;
636 }
637
638 tmp_flags = sflags = ctx->flags >> SEEN_SREG_SFT;
639 /* sflags is a bitmap */
640 i = 0;
641 while (tmp_flags) {
642 if ((sflags >> i) & 0x1) {
643 emit_load_stack_reg(MIPS_R_S0 + i, r_sp, real_off,
644 ctx);
645 real_off += RSIZE;
646 }
647 i++;
648 tmp_flags >>= 1;
649 }
650
651 /* restore return address */
652 if (ctx->flags & SEEN_CALL)
653 emit_load_stack_reg(r_ra, r_sp, real_off, ctx);
654
655 /* Restore the sp and discard the scrach memory */
656 emit_stack_offset(align_sp(offset), ctx);
657}
658
659static unsigned int get_stack_depth(struct jit_ctx *ctx)
660{
661 int sp_off = 0;
662
663
664 /* How may s* regs do we need to preserved? */
665 sp_off += hweight32(ctx->flags >> SEEN_SREG_SFT) * RSIZE;
666
667 if (ctx->flags & SEEN_MEM)
668 sp_off += 4 * BPF_MEMWORDS; /* BPF_MEMWORDS are 32-bit */
669
670 if (ctx->flags & SEEN_CALL)
671 /*
672 * The JIT code make calls to external functions using 2
673 * arguments. Therefore, for o32 we don't need to allocate
674 * space because we don't care if the argumetns are lost
675 * across calls. We do need however to preserve incoming
676 * arguments but the space is already allocated for us by
677 * the caller. On the other hand, for n64, we need to allocate
678 * this space ourselves. We need to preserve $ra as well.
679 */
680 sp_off += config_enabled(CONFIG_64BIT) ?
681 (ARGS_USED_BY_JIT + 1) * RSIZE : RSIZE;
682
683 /*
684 * Subtract the bytes for the last registers since we only care about
685 * the location on the stack pointer.
686 */
687 return sp_off - RSIZE;
688}
689
690static void build_prologue(struct jit_ctx *ctx)
691{
692 u16 first_inst = ctx->skf->insns[0].code;
693 int sp_off;
694
695 /* Calculate the total offset for the stack pointer */
696 sp_off = get_stack_depth(ctx);
697 save_bpf_jit_regs(ctx, sp_off);
698
699 if (ctx->flags & SEEN_SKB)
700 emit_reg_move(r_skb, MIPS_R_A0, ctx);
701
Markos Chandrase5bb48b2014-06-23 10:38:56 +0100702 if (ctx->flags & SEEN_X)
Markos Chandrasc6610de2014-04-08 12:47:14 +0100703 emit_jit_reg_move(r_X, r_zero, ctx);
704
705 /* Do not leak kernel data to userspace */
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200706 if ((first_inst != (BPF_RET | BPF_K)) && !(is_load_to_a(first_inst)))
Markos Chandrasc6610de2014-04-08 12:47:14 +0100707 emit_jit_reg_move(r_A, r_zero, ctx);
708}
709
710static void build_epilogue(struct jit_ctx *ctx)
711{
712 unsigned int sp_off;
713
714 /* Calculate the total offset for the stack pointer */
715
716 sp_off = get_stack_depth(ctx);
717 restore_bpf_jit_regs(ctx, sp_off);
718
719 /* Return */
720 emit_jr(r_ra, ctx);
721 emit_nop(ctx);
722}
723
724static u64 jit_get_skb_b(struct sk_buff *skb, unsigned offset)
725{
726 u8 ret;
727 int err;
728
729 err = skb_copy_bits(skb, offset, &ret, 1);
730
731 return (u64)err << 32 | ret;
732}
733
734static u64 jit_get_skb_h(struct sk_buff *skb, unsigned offset)
735{
736 u16 ret;
737 int err;
738
739 err = skb_copy_bits(skb, offset, &ret, 2);
740
741 return (u64)err << 32 | ntohs(ret);
742}
743
744static u64 jit_get_skb_w(struct sk_buff *skb, unsigned offset)
745{
746 u32 ret;
747 int err;
748
749 err = skb_copy_bits(skb, offset, &ret, 4);
750
751 return (u64)err << 32 | ntohl(ret);
752}
753
754#define PKT_TYPE_MAX 7
755static int pkt_type_offset(void)
756{
757 struct sk_buff skb_probe = {
758 .pkt_type = ~0,
759 };
760 char *ct = (char *)&skb_probe;
761 unsigned int off;
762
763 for (off = 0; off < sizeof(struct sk_buff); off++) {
764 if (ct[off] == PKT_TYPE_MAX)
765 return off;
766 }
767 pr_err_once("Please fix pkt_type_offset(), as pkt_type couldn't be found\n");
768 return -1;
769}
770
771static int build_body(struct jit_ctx *ctx)
772{
773 void *load_func[] = {jit_get_skb_b, jit_get_skb_h, jit_get_skb_w};
774 const struct sk_filter *prog = ctx->skf;
775 const struct sock_filter *inst;
776 unsigned int i, off, load_order, condt;
777 u32 k, b_off __maybe_unused;
778
779 for (i = 0; i < prog->len; i++) {
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200780 u16 code;
781
Markos Chandrasc6610de2014-04-08 12:47:14 +0100782 inst = &(prog->insns[i]);
783 pr_debug("%s: code->0x%02x, jt->0x%x, jf->0x%x, k->0x%x\n",
784 __func__, inst->code, inst->jt, inst->jf, inst->k);
785 k = inst->k;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200786 code = bpf_anc_helper(inst);
Markos Chandrasc6610de2014-04-08 12:47:14 +0100787
788 if (ctx->target == NULL)
789 ctx->offsets[i] = ctx->idx * 4;
790
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200791 switch (code) {
792 case BPF_LD | BPF_IMM:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100793 /* A <- k ==> li r_A, k */
794 ctx->flags |= SEEN_A;
795 emit_load_imm(r_A, k, ctx);
796 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200797 case BPF_LD | BPF_W | BPF_LEN:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100798 BUILD_BUG_ON(FIELD_SIZEOF(struct sk_buff, len) != 4);
799 /* A <- len ==> lw r_A, offset(skb) */
800 ctx->flags |= SEEN_SKB | SEEN_A;
801 off = offsetof(struct sk_buff, len);
802 emit_load(r_A, r_skb, off, ctx);
803 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200804 case BPF_LD | BPF_MEM:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100805 /* A <- M[k] ==> lw r_A, offset(M) */
806 ctx->flags |= SEEN_MEM | SEEN_A;
807 emit_load(r_A, r_M, SCRATCH_OFF(k), ctx);
808 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200809 case BPF_LD | BPF_W | BPF_ABS:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100810 /* A <- P[k:4] */
811 load_order = 2;
812 goto load;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200813 case BPF_LD | BPF_H | BPF_ABS:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100814 /* A <- P[k:2] */
815 load_order = 1;
816 goto load;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200817 case BPF_LD | BPF_B | BPF_ABS:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100818 /* A <- P[k:1] */
819 load_order = 0;
820load:
Markos Chandras55393ee2014-06-23 10:38:48 +0100821 /* the interpreter will deal with the negative K */
822 if ((int)k < 0)
823 return -ENOTSUPP;
824
Markos Chandrasc6610de2014-04-08 12:47:14 +0100825 emit_load_imm(r_off, k, ctx);
826load_common:
Markos Chandras55393ee2014-06-23 10:38:48 +0100827 /*
828 * We may got here from the indirect loads so
829 * return if offset is negative.
830 */
831 emit_slt(r_s0, r_off, r_zero, ctx);
832 emit_bcond(MIPS_COND_NE, r_s0, r_zero,
833 b_imm(prog->len, ctx), ctx);
834 emit_reg_move(r_ret, r_zero, ctx);
835
Markos Chandrasc6610de2014-04-08 12:47:14 +0100836 ctx->flags |= SEEN_CALL | SEEN_OFF | SEEN_S0 |
837 SEEN_SKB | SEEN_A;
838
839 emit_load_func(r_s0, (ptr)load_func[load_order],
840 ctx);
841 emit_reg_move(MIPS_R_A0, r_skb, ctx);
842 emit_jalr(MIPS_R_RA, r_s0, ctx);
843 /* Load second argument to delay slot */
844 emit_reg_move(MIPS_R_A1, r_off, ctx);
845 /* Check the error value */
846 if (config_enabled(CONFIG_64BIT)) {
847 /* Get error code from the top 32-bits */
848 emit_dsrl32(r_s0, r_val, 0, ctx);
849 /* Branch to 3 instructions ahead */
850 emit_bcond(MIPS_COND_NE, r_s0, r_zero, 3 << 2,
851 ctx);
852 } else {
853 /* Branch to 3 instructions ahead */
854 emit_bcond(MIPS_COND_NE, r_err, r_zero, 3 << 2,
855 ctx);
856 }
857 emit_nop(ctx);
858 /* We are good */
859 emit_b(b_imm(i + 1, ctx), ctx);
860 emit_jit_reg_move(r_A, r_val, ctx);
861 /* Return with error */
862 emit_b(b_imm(prog->len, ctx), ctx);
863 emit_reg_move(r_ret, r_zero, ctx);
864 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200865 case BPF_LD | BPF_W | BPF_IND:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100866 /* A <- P[X + k:4] */
867 load_order = 2;
868 goto load_ind;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200869 case BPF_LD | BPF_H | BPF_IND:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100870 /* A <- P[X + k:2] */
871 load_order = 1;
872 goto load_ind;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200873 case BPF_LD | BPF_B | BPF_IND:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100874 /* A <- P[X + k:1] */
875 load_order = 0;
876load_ind:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100877 ctx->flags |= SEEN_OFF | SEEN_X;
878 emit_addiu(r_off, r_X, k, ctx);
879 goto load_common;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200880 case BPF_LDX | BPF_IMM:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100881 /* X <- k */
882 ctx->flags |= SEEN_X;
883 emit_load_imm(r_X, k, ctx);
884 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200885 case BPF_LDX | BPF_MEM:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100886 /* X <- M[k] */
887 ctx->flags |= SEEN_X | SEEN_MEM;
888 emit_load(r_X, r_M, SCRATCH_OFF(k), ctx);
889 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200890 case BPF_LDX | BPF_W | BPF_LEN:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100891 /* X <- len */
892 ctx->flags |= SEEN_X | SEEN_SKB;
893 off = offsetof(struct sk_buff, len);
894 emit_load(r_X, r_skb, off, ctx);
895 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200896 case BPF_LDX | BPF_B | BPF_MSH:
Markos Chandras55393ee2014-06-23 10:38:48 +0100897 /* the interpreter will deal with the negative K */
898 if ((int)k < 0)
899 return -ENOTSUPP;
900
Markos Chandrasc6610de2014-04-08 12:47:14 +0100901 /* X <- 4 * (P[k:1] & 0xf) */
902 ctx->flags |= SEEN_X | SEEN_CALL | SEEN_S0 | SEEN_SKB;
903 /* Load offset to a1 */
904 emit_load_func(r_s0, (ptr)jit_get_skb_b, ctx);
905 /*
906 * This may emit two instructions so it may not fit
907 * in the delay slot. So use a0 in the delay slot.
908 */
909 emit_load_imm(MIPS_R_A1, k, ctx);
910 emit_jalr(MIPS_R_RA, r_s0, ctx);
911 emit_reg_move(MIPS_R_A0, r_skb, ctx); /* delay slot */
912 /* Check the error value */
913 if (config_enabled(CONFIG_64BIT)) {
914 /* Top 32-bits of $v0 on 64-bit */
915 emit_dsrl32(r_s0, r_val, 0, ctx);
916 emit_bcond(MIPS_COND_NE, r_s0, r_zero,
917 3 << 2, ctx);
918 } else {
919 emit_bcond(MIPS_COND_NE, r_err, r_zero,
920 3 << 2, ctx);
921 }
922 /* No need for delay slot */
923 /* We are good */
924 /* X <- P[1:K] & 0xf */
925 emit_andi(r_X, r_val, 0xf, ctx);
926 /* X << 2 */
927 emit_b(b_imm(i + 1, ctx), ctx);
928 emit_sll(r_X, r_X, 2, ctx); /* delay slot */
929 /* Return with error */
930 emit_b(b_imm(prog->len, ctx), ctx);
931 emit_load_imm(r_ret, 0, ctx); /* delay slot */
932 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200933 case BPF_ST:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100934 /* M[k] <- A */
935 ctx->flags |= SEEN_MEM | SEEN_A;
936 emit_store(r_A, r_M, SCRATCH_OFF(k), ctx);
937 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200938 case BPF_STX:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100939 /* M[k] <- X */
940 ctx->flags |= SEEN_MEM | SEEN_X;
941 emit_store(r_X, r_M, SCRATCH_OFF(k), ctx);
942 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200943 case BPF_ALU | BPF_ADD | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100944 /* A += K */
945 ctx->flags |= SEEN_A;
946 emit_addiu(r_A, r_A, k, ctx);
947 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200948 case BPF_ALU | BPF_ADD | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100949 /* A += X */
950 ctx->flags |= SEEN_A | SEEN_X;
951 emit_addu(r_A, r_A, r_X, ctx);
952 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200953 case BPF_ALU | BPF_SUB | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100954 /* A -= K */
955 ctx->flags |= SEEN_A;
956 emit_addiu(r_A, r_A, -k, ctx);
957 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200958 case BPF_ALU | BPF_SUB | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100959 /* A -= X */
960 ctx->flags |= SEEN_A | SEEN_X;
961 emit_subu(r_A, r_A, r_X, ctx);
962 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200963 case BPF_ALU | BPF_MUL | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100964 /* A *= K */
965 /* Load K to scratch register before MUL */
966 ctx->flags |= SEEN_A | SEEN_S0;
967 emit_load_imm(r_s0, k, ctx);
968 emit_mul(r_A, r_A, r_s0, ctx);
969 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200970 case BPF_ALU | BPF_MUL | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100971 /* A *= X */
Markos Chandrasc6610de2014-04-08 12:47:14 +0100972 ctx->flags |= SEEN_A | SEEN_X;
973 emit_mul(r_A, r_A, r_X, ctx);
974 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200975 case BPF_ALU | BPF_DIV | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100976 /* A /= k */
977 if (k == 1)
978 break;
979 if (optimize_div(&k)) {
980 ctx->flags |= SEEN_A;
981 emit_srl(r_A, r_A, k, ctx);
982 break;
983 }
984 ctx->flags |= SEEN_A | SEEN_S0;
985 emit_load_imm(r_s0, k, ctx);
986 emit_div(r_A, r_s0, ctx);
987 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200988 case BPF_ALU | BPF_MOD | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +0100989 /* A %= k */
990 if (k == 1 || optimize_div(&k)) {
991 ctx->flags |= SEEN_A;
992 emit_jit_reg_move(r_A, r_zero, ctx);
993 } else {
994 ctx->flags |= SEEN_A | SEEN_S0;
995 emit_load_imm(r_s0, k, ctx);
996 emit_mod(r_A, r_s0, ctx);
997 }
998 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +0200999 case BPF_ALU | BPF_DIV | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001000 /* A /= X */
Markos Chandrasc6610de2014-04-08 12:47:14 +01001001 ctx->flags |= SEEN_X | SEEN_A;
1002 /* Check if r_X is zero */
1003 emit_bcond(MIPS_COND_EQ, r_X, r_zero,
1004 b_imm(prog->len, ctx), ctx);
1005 emit_load_imm(r_val, 0, ctx); /* delay slot */
1006 emit_div(r_A, r_X, ctx);
1007 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001008 case BPF_ALU | BPF_MOD | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001009 /* A %= X */
Markos Chandrasc6610de2014-04-08 12:47:14 +01001010 ctx->flags |= SEEN_X | SEEN_A;
1011 /* Check if r_X is zero */
1012 emit_bcond(MIPS_COND_EQ, r_X, r_zero,
1013 b_imm(prog->len, ctx), ctx);
1014 emit_load_imm(r_val, 0, ctx); /* delay slot */
1015 emit_mod(r_A, r_X, ctx);
1016 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001017 case BPF_ALU | BPF_OR | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001018 /* A |= K */
1019 ctx->flags |= SEEN_A;
1020 emit_ori(r_A, r_A, k, ctx);
1021 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001022 case BPF_ALU | BPF_OR | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001023 /* A |= X */
Markos Chandrasc6610de2014-04-08 12:47:14 +01001024 ctx->flags |= SEEN_A;
1025 emit_ori(r_A, r_A, r_X, ctx);
1026 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001027 case BPF_ALU | BPF_XOR | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001028 /* A ^= k */
1029 ctx->flags |= SEEN_A;
1030 emit_xori(r_A, r_A, k, ctx);
1031 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001032 case BPF_ANC | SKF_AD_ALU_XOR_X:
1033 case BPF_ALU | BPF_XOR | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001034 /* A ^= X */
Markos Chandrasc6610de2014-04-08 12:47:14 +01001035 ctx->flags |= SEEN_A;
1036 emit_xor(r_A, r_A, r_X, ctx);
1037 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001038 case BPF_ALU | BPF_AND | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001039 /* A &= K */
1040 ctx->flags |= SEEN_A;
1041 emit_andi(r_A, r_A, k, ctx);
1042 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001043 case BPF_ALU | BPF_AND | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001044 /* A &= X */
Markos Chandrasc6610de2014-04-08 12:47:14 +01001045 ctx->flags |= SEEN_A | SEEN_X;
1046 emit_and(r_A, r_A, r_X, ctx);
1047 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001048 case BPF_ALU | BPF_LSH | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001049 /* A <<= K */
1050 ctx->flags |= SEEN_A;
1051 emit_sll(r_A, r_A, k, ctx);
1052 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001053 case BPF_ALU | BPF_LSH | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001054 /* A <<= X */
1055 ctx->flags |= SEEN_A | SEEN_X;
Markos Chandrasc6610de2014-04-08 12:47:14 +01001056 emit_sllv(r_A, r_A, r_X, ctx);
1057 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001058 case BPF_ALU | BPF_RSH | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001059 /* A >>= K */
1060 ctx->flags |= SEEN_A;
1061 emit_srl(r_A, r_A, k, ctx);
1062 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001063 case BPF_ALU | BPF_RSH | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001064 ctx->flags |= SEEN_A | SEEN_X;
Markos Chandrasc6610de2014-04-08 12:47:14 +01001065 emit_srlv(r_A, r_A, r_X, ctx);
1066 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001067 case BPF_ALU | BPF_NEG:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001068 /* A = -A */
1069 ctx->flags |= SEEN_A;
1070 emit_neg(r_A, ctx);
1071 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001072 case BPF_JMP | BPF_JA:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001073 /* pc += K */
1074 emit_b(b_imm(i + k + 1, ctx), ctx);
1075 emit_nop(ctx);
1076 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001077 case BPF_JMP | BPF_JEQ | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001078 /* pc += ( A == K ) ? pc->jt : pc->jf */
1079 condt = MIPS_COND_EQ | MIPS_COND_K;
1080 goto jmp_cmp;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001081 case BPF_JMP | BPF_JEQ | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001082 ctx->flags |= SEEN_X;
1083 /* pc += ( A == X ) ? pc->jt : pc->jf */
1084 condt = MIPS_COND_EQ | MIPS_COND_X;
1085 goto jmp_cmp;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001086 case BPF_JMP | BPF_JGE | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001087 /* pc += ( A >= K ) ? pc->jt : pc->jf */
1088 condt = MIPS_COND_GE | MIPS_COND_K;
1089 goto jmp_cmp;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001090 case BPF_JMP | BPF_JGE | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001091 ctx->flags |= SEEN_X;
1092 /* pc += ( A >= X ) ? pc->jt : pc->jf */
1093 condt = MIPS_COND_GE | MIPS_COND_X;
1094 goto jmp_cmp;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001095 case BPF_JMP | BPF_JGT | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001096 /* pc += ( A > K ) ? pc->jt : pc->jf */
1097 condt = MIPS_COND_GT | MIPS_COND_K;
1098 goto jmp_cmp;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001099 case BPF_JMP | BPF_JGT | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001100 ctx->flags |= SEEN_X;
1101 /* pc += ( A > X ) ? pc->jt : pc->jf */
1102 condt = MIPS_COND_GT | MIPS_COND_X;
1103jmp_cmp:
1104 /* Greater or Equal */
1105 if ((condt & MIPS_COND_GE) ||
1106 (condt & MIPS_COND_GT)) {
1107 if (condt & MIPS_COND_K) { /* K */
1108 ctx->flags |= SEEN_S0 | SEEN_A;
1109 emit_sltiu(r_s0, r_A, k, ctx);
1110 } else { /* X */
1111 ctx->flags |= SEEN_S0 | SEEN_A |
1112 SEEN_X;
1113 emit_sltu(r_s0, r_A, r_X, ctx);
1114 }
1115 /* A < (K|X) ? r_scrach = 1 */
1116 b_off = b_imm(i + inst->jf + 1, ctx);
Markos Chandras1ab24a42014-06-23 10:38:51 +01001117 emit_bcond(MIPS_COND_NE, r_s0, r_zero, b_off,
Markos Chandrasc6610de2014-04-08 12:47:14 +01001118 ctx);
1119 emit_nop(ctx);
1120 /* A > (K|X) ? scratch = 0 */
1121 if (condt & MIPS_COND_GT) {
1122 /* Checking for equality */
1123 ctx->flags |= SEEN_S0 | SEEN_A | SEEN_X;
1124 if (condt & MIPS_COND_K)
1125 emit_load_imm(r_s0, k, ctx);
1126 else
1127 emit_jit_reg_move(r_s0, r_X,
1128 ctx);
1129 b_off = b_imm(i + inst->jf + 1, ctx);
1130 emit_bcond(MIPS_COND_EQ, r_A, r_s0,
1131 b_off, ctx);
1132 emit_nop(ctx);
1133 /* Finally, A > K|X */
1134 b_off = b_imm(i + inst->jt + 1, ctx);
1135 emit_b(b_off, ctx);
1136 emit_nop(ctx);
1137 } else {
1138 /* A >= (K|X) so jump */
1139 b_off = b_imm(i + inst->jt + 1, ctx);
1140 emit_b(b_off, ctx);
1141 emit_nop(ctx);
1142 }
1143 } else {
1144 /* A == K|X */
1145 if (condt & MIPS_COND_K) { /* K */
1146 ctx->flags |= SEEN_S0 | SEEN_A;
1147 emit_load_imm(r_s0, k, ctx);
1148 /* jump true */
1149 b_off = b_imm(i + inst->jt + 1, ctx);
1150 emit_bcond(MIPS_COND_EQ, r_A, r_s0,
1151 b_off, ctx);
1152 emit_nop(ctx);
1153 /* jump false */
1154 b_off = b_imm(i + inst->jf + 1,
1155 ctx);
1156 emit_bcond(MIPS_COND_NE, r_A, r_s0,
1157 b_off, ctx);
1158 emit_nop(ctx);
1159 } else { /* X */
1160 /* jump true */
1161 ctx->flags |= SEEN_A | SEEN_X;
1162 b_off = b_imm(i + inst->jt + 1,
1163 ctx);
1164 emit_bcond(MIPS_COND_EQ, r_A, r_X,
1165 b_off, ctx);
1166 emit_nop(ctx);
1167 /* jump false */
1168 b_off = b_imm(i + inst->jf + 1, ctx);
1169 emit_bcond(MIPS_COND_NE, r_A, r_X,
1170 b_off, ctx);
1171 emit_nop(ctx);
1172 }
1173 }
1174 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001175 case BPF_JMP | BPF_JSET | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001176 ctx->flags |= SEEN_S0 | SEEN_S1 | SEEN_A;
1177 /* pc += (A & K) ? pc -> jt : pc -> jf */
1178 emit_load_imm(r_s1, k, ctx);
1179 emit_and(r_s0, r_A, r_s1, ctx);
1180 /* jump true */
1181 b_off = b_imm(i + inst->jt + 1, ctx);
1182 emit_bcond(MIPS_COND_NE, r_s0, r_zero, b_off, ctx);
1183 emit_nop(ctx);
1184 /* jump false */
1185 b_off = b_imm(i + inst->jf + 1, ctx);
1186 emit_b(b_off, ctx);
1187 emit_nop(ctx);
1188 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001189 case BPF_JMP | BPF_JSET | BPF_X:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001190 ctx->flags |= SEEN_S0 | SEEN_X | SEEN_A;
1191 /* pc += (A & X) ? pc -> jt : pc -> jf */
1192 emit_and(r_s0, r_A, r_X, ctx);
1193 /* jump true */
1194 b_off = b_imm(i + inst->jt + 1, ctx);
1195 emit_bcond(MIPS_COND_NE, r_s0, r_zero, b_off, ctx);
1196 emit_nop(ctx);
1197 /* jump false */
1198 b_off = b_imm(i + inst->jf + 1, ctx);
1199 emit_b(b_off, ctx);
1200 emit_nop(ctx);
1201 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001202 case BPF_RET | BPF_A:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001203 ctx->flags |= SEEN_A;
1204 if (i != prog->len - 1)
1205 /*
1206 * If this is not the last instruction
1207 * then jump to the epilogue
1208 */
1209 emit_b(b_imm(prog->len, ctx), ctx);
1210 emit_reg_move(r_ret, r_A, ctx); /* delay slot */
1211 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001212 case BPF_RET | BPF_K:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001213 /*
1214 * It can emit two instructions so it does not fit on
1215 * the delay slot.
1216 */
1217 emit_load_imm(r_ret, k, ctx);
1218 if (i != prog->len - 1) {
1219 /*
1220 * If this is not the last instruction
1221 * then jump to the epilogue
1222 */
1223 emit_b(b_imm(prog->len, ctx), ctx);
1224 emit_nop(ctx);
1225 }
1226 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001227 case BPF_MISC | BPF_TAX:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001228 /* X = A */
1229 ctx->flags |= SEEN_X | SEEN_A;
1230 emit_jit_reg_move(r_X, r_A, ctx);
1231 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001232 case BPF_MISC | BPF_TXA:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001233 /* A = X */
1234 ctx->flags |= SEEN_A | SEEN_X;
Markos Chandrasc6610de2014-04-08 12:47:14 +01001235 emit_jit_reg_move(r_A, r_X, ctx);
1236 break;
1237 /* AUX */
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001238 case BPF_ANC | SKF_AD_PROTOCOL:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001239 /* A = ntohs(skb->protocol */
1240 ctx->flags |= SEEN_SKB | SEEN_OFF | SEEN_A;
1241 BUILD_BUG_ON(FIELD_SIZEOF(struct sk_buff,
1242 protocol) != 2);
1243 off = offsetof(struct sk_buff, protocol);
1244 emit_half_load(r_A, r_skb, off, ctx);
1245#ifdef CONFIG_CPU_LITTLE_ENDIAN
1246 /* This needs little endian fixup */
Ralf Baechleb4f16c92014-06-03 13:05:55 +02001247 if (cpu_has_mips_r2) {
1248 /* R2 and later have the wsbh instruction */
1249 emit_wsbh(r_A, r_A, ctx);
1250 } else {
Markos Chandrasc6610de2014-04-08 12:47:14 +01001251 /* Get first byte */
1252 emit_andi(r_tmp_imm, r_A, 0xff, ctx);
1253 /* Shift it */
1254 emit_sll(r_tmp, r_tmp_imm, 8, ctx);
1255 /* Get second byte */
1256 emit_srl(r_tmp_imm, r_A, 8, ctx);
1257 emit_andi(r_tmp_imm, r_tmp_imm, 0xff, ctx);
1258 /* Put everyting together in r_A */
1259 emit_or(r_A, r_tmp, r_tmp_imm, ctx);
Markos Chandrasc6610de2014-04-08 12:47:14 +01001260 }
1261#endif
1262 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001263 case BPF_ANC | SKF_AD_CPU:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001264 ctx->flags |= SEEN_A | SEEN_OFF;
1265 /* A = current_thread_info()->cpu */
1266 BUILD_BUG_ON(FIELD_SIZEOF(struct thread_info,
1267 cpu) != 4);
1268 off = offsetof(struct thread_info, cpu);
1269 /* $28/gp points to the thread_info struct */
1270 emit_load(r_A, 28, off, ctx);
1271 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001272 case BPF_ANC | SKF_AD_IFINDEX:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001273 /* A = skb->dev->ifindex */
1274 ctx->flags |= SEEN_SKB | SEEN_A | SEEN_S0;
1275 off = offsetof(struct sk_buff, dev);
1276 emit_load(r_s0, r_skb, off, ctx);
1277 /* error (0) in the delay slot */
1278 emit_bcond(MIPS_COND_EQ, r_s0, r_zero,
1279 b_imm(prog->len, ctx), ctx);
1280 emit_reg_move(r_ret, r_zero, ctx);
1281 BUILD_BUG_ON(FIELD_SIZEOF(struct net_device,
1282 ifindex) != 4);
1283 off = offsetof(struct net_device, ifindex);
1284 emit_load(r_A, r_s0, off, ctx);
1285 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001286 case BPF_ANC | SKF_AD_MARK:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001287 ctx->flags |= SEEN_SKB | SEEN_A;
1288 BUILD_BUG_ON(FIELD_SIZEOF(struct sk_buff, mark) != 4);
1289 off = offsetof(struct sk_buff, mark);
1290 emit_load(r_A, r_skb, off, ctx);
1291 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001292 case BPF_ANC | SKF_AD_RXHASH:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001293 ctx->flags |= SEEN_SKB | SEEN_A;
1294 BUILD_BUG_ON(FIELD_SIZEOF(struct sk_buff, hash) != 4);
1295 off = offsetof(struct sk_buff, hash);
1296 emit_load(r_A, r_skb, off, ctx);
1297 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001298 case BPF_ANC | SKF_AD_VLAN_TAG:
1299 case BPF_ANC | SKF_AD_VLAN_TAG_PRESENT:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001300 ctx->flags |= SEEN_SKB | SEEN_S0 | SEEN_A;
1301 BUILD_BUG_ON(FIELD_SIZEOF(struct sk_buff,
1302 vlan_tci) != 2);
1303 off = offsetof(struct sk_buff, vlan_tci);
1304 emit_half_load(r_s0, r_skb, off, ctx);
Markos Chandras91a41d72014-06-23 10:38:53 +01001305 if (code == (BPF_ANC | SKF_AD_VLAN_TAG)) {
Markos Chandras6e86c592014-06-23 10:38:52 +01001306 emit_andi(r_A, r_s0, (u16)~VLAN_TAG_PRESENT, ctx);
Markos Chandras91a41d72014-06-23 10:38:53 +01001307 } else {
Markos Chandras9ee16062014-06-23 10:38:49 +01001308 emit_andi(r_A, r_s0, VLAN_TAG_PRESENT, ctx);
Markos Chandras91a41d72014-06-23 10:38:53 +01001309 /* return 1 if present */
1310 emit_sltu(r_A, r_zero, r_A, ctx);
1311 }
Markos Chandrasc6610de2014-04-08 12:47:14 +01001312 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001313 case BPF_ANC | SKF_AD_PKTTYPE:
Markos Chandras9eebfe42014-06-23 10:38:50 +01001314 ctx->flags |= SEEN_SKB;
1315
Markos Chandrasc6610de2014-04-08 12:47:14 +01001316 off = pkt_type_offset();
1317
1318 if (off < 0)
1319 return -1;
1320 emit_load_byte(r_tmp, r_skb, off, ctx);
1321 /* Keep only the last 3 bits */
1322 emit_andi(r_A, r_tmp, PKT_TYPE_MAX, ctx);
1323 break;
Daniel Borkmanna83d0812014-06-17 12:16:18 +02001324 case BPF_ANC | SKF_AD_QUEUE:
Markos Chandrasc6610de2014-04-08 12:47:14 +01001325 ctx->flags |= SEEN_SKB | SEEN_A;
1326 BUILD_BUG_ON(FIELD_SIZEOF(struct sk_buff,
1327 queue_mapping) != 2);
1328 BUILD_BUG_ON(offsetof(struct sk_buff,
1329 queue_mapping) > 0xff);
1330 off = offsetof(struct sk_buff, queue_mapping);
1331 emit_half_load(r_A, r_skb, off, ctx);
1332 break;
1333 default:
Markos Chandras78b95b62014-06-23 10:38:54 +01001334 pr_debug("%s: Unhandled opcode: 0x%02x\n", __FILE__,
1335 inst->code);
Markos Chandrasc6610de2014-04-08 12:47:14 +01001336 return -1;
1337 }
1338 }
1339
1340 /* compute offsets only during the first pass */
1341 if (ctx->target == NULL)
1342 ctx->offsets[i] = ctx->idx * 4;
1343
1344 return 0;
1345}
1346
1347int bpf_jit_enable __read_mostly;
1348
1349void bpf_jit_compile(struct sk_filter *fp)
1350{
1351 struct jit_ctx ctx;
1352 unsigned int alloc_size, tmp_idx;
1353
1354 if (!bpf_jit_enable)
1355 return;
1356
1357 memset(&ctx, 0, sizeof(ctx));
1358
1359 ctx.offsets = kcalloc(fp->len, sizeof(*ctx.offsets), GFP_KERNEL);
1360 if (ctx.offsets == NULL)
1361 return;
1362
1363 ctx.skf = fp;
1364
1365 if (build_body(&ctx))
1366 goto out;
1367
1368 tmp_idx = ctx.idx;
1369 build_prologue(&ctx);
1370 ctx.prologue_bytes = (ctx.idx - tmp_idx) * 4;
1371 /* just to complete the ctx.idx count */
1372 build_epilogue(&ctx);
1373
1374 alloc_size = 4 * ctx.idx;
1375 ctx.target = module_alloc(alloc_size);
1376 if (ctx.target == NULL)
1377 goto out;
1378
1379 /* Clean it */
1380 memset(ctx.target, 0, alloc_size);
1381
1382 ctx.idx = 0;
1383
1384 /* Generate the actual JIT code */
1385 build_prologue(&ctx);
1386 build_body(&ctx);
1387 build_epilogue(&ctx);
1388
1389 /* Update the icache */
1390 flush_icache_range((ptr)ctx.target, (ptr)(ctx.target + ctx.idx));
1391
1392 if (bpf_jit_enable > 1)
1393 /* Dump JIT code */
1394 bpf_jit_dump(fp->len, alloc_size, 2, ctx.target);
1395
1396 fp->bpf_func = (void *)ctx.target;
1397 fp->jited = 1;
1398
1399out:
1400 kfree(ctx.offsets);
1401}
1402
1403void bpf_jit_free(struct sk_filter *fp)
1404{
1405 if (fp->jited)
1406 module_free(NULL, fp->bpf_func);
1407 kfree(fp);
1408}