1b2441318SGreg Kroah-Hartman // SPDX-License-Identifier: GPL-2.0
26b3d4eecSDavid S. Miller #include <linux/moduleloader.h>
36b3d4eecSDavid S. Miller #include <linux/workqueue.h>
46b3d4eecSDavid S. Miller #include <linux/netdevice.h>
56b3d4eecSDavid S. Miller #include <linux/filter.h>
66b3d4eecSDavid S. Miller #include <linux/cache.h>
76b3d4eecSDavid S. Miller #include <linux/if_vlan.h>
86b3d4eecSDavid S. Miller
96b3d4eecSDavid S. Miller #include <asm/cacheflush.h>
106b3d4eecSDavid S. Miller #include <asm/ptrace.h>
116b3d4eecSDavid S. Miller
126b3d4eecSDavid S. Miller #include "bpf_jit_32.h"
136b3d4eecSDavid S. Miller
is_simm13(unsigned int value)146b3d4eecSDavid S. Miller static inline bool is_simm13(unsigned int value)
156b3d4eecSDavid S. Miller {
166b3d4eecSDavid S. Miller return value + 0x1000 < 0x2000;
176b3d4eecSDavid S. Miller }
186b3d4eecSDavid S. Miller
196b3d4eecSDavid S. Miller #define SEEN_DATAREF 1 /* might call external helpers */
206b3d4eecSDavid S. Miller #define SEEN_XREG 2 /* ebx is used */
216b3d4eecSDavid S. Miller #define SEEN_MEM 4 /* use mem[] for temporary storage */
226b3d4eecSDavid S. Miller
236b3d4eecSDavid S. Miller #define S13(X) ((X) & 0x1fff)
246b3d4eecSDavid S. Miller #define IMMED 0x00002000
256b3d4eecSDavid S. Miller #define RD(X) ((X) << 25)
266b3d4eecSDavid S. Miller #define RS1(X) ((X) << 14)
276b3d4eecSDavid S. Miller #define RS2(X) ((X))
286b3d4eecSDavid S. Miller #define OP(X) ((X) << 30)
296b3d4eecSDavid S. Miller #define OP2(X) ((X) << 22)
306b3d4eecSDavid S. Miller #define OP3(X) ((X) << 19)
316b3d4eecSDavid S. Miller #define COND(X) ((X) << 25)
326b3d4eecSDavid S. Miller #define F1(X) OP(X)
336b3d4eecSDavid S. Miller #define F2(X, Y) (OP(X) | OP2(Y))
346b3d4eecSDavid S. Miller #define F3(X, Y) (OP(X) | OP3(Y))
356b3d4eecSDavid S. Miller
366b3d4eecSDavid S. Miller #define CONDN COND(0x0)
376b3d4eecSDavid S. Miller #define CONDE COND(0x1)
386b3d4eecSDavid S. Miller #define CONDLE COND(0x2)
396b3d4eecSDavid S. Miller #define CONDL COND(0x3)
406b3d4eecSDavid S. Miller #define CONDLEU COND(0x4)
416b3d4eecSDavid S. Miller #define CONDCS COND(0x5)
426b3d4eecSDavid S. Miller #define CONDNEG COND(0x6)
436b3d4eecSDavid S. Miller #define CONDVC COND(0x7)
446b3d4eecSDavid S. Miller #define CONDA COND(0x8)
456b3d4eecSDavid S. Miller #define CONDNE COND(0x9)
466b3d4eecSDavid S. Miller #define CONDG COND(0xa)
476b3d4eecSDavid S. Miller #define CONDGE COND(0xb)
486b3d4eecSDavid S. Miller #define CONDGU COND(0xc)
496b3d4eecSDavid S. Miller #define CONDCC COND(0xd)
506b3d4eecSDavid S. Miller #define CONDPOS COND(0xe)
516b3d4eecSDavid S. Miller #define CONDVS COND(0xf)
526b3d4eecSDavid S. Miller
536b3d4eecSDavid S. Miller #define CONDGEU CONDCC
546b3d4eecSDavid S. Miller #define CONDLU CONDCS
556b3d4eecSDavid S. Miller
566b3d4eecSDavid S. Miller #define WDISP22(X) (((X) >> 2) & 0x3fffff)
576b3d4eecSDavid S. Miller
586b3d4eecSDavid S. Miller #define BA (F2(0, 2) | CONDA)
596b3d4eecSDavid S. Miller #define BGU (F2(0, 2) | CONDGU)
606b3d4eecSDavid S. Miller #define BLEU (F2(0, 2) | CONDLEU)
616b3d4eecSDavid S. Miller #define BGEU (F2(0, 2) | CONDGEU)
626b3d4eecSDavid S. Miller #define BLU (F2(0, 2) | CONDLU)
636b3d4eecSDavid S. Miller #define BE (F2(0, 2) | CONDE)
646b3d4eecSDavid S. Miller #define BNE (F2(0, 2) | CONDNE)
656b3d4eecSDavid S. Miller
666b3d4eecSDavid S. Miller #define BE_PTR BE
676b3d4eecSDavid S. Miller
686b3d4eecSDavid S. Miller #define SETHI(K, REG) \
696b3d4eecSDavid S. Miller (F2(0, 0x4) | RD(REG) | (((K) >> 10) & 0x3fffff))
706b3d4eecSDavid S. Miller #define OR_LO(K, REG) \
716b3d4eecSDavid S. Miller (F3(2, 0x02) | IMMED | RS1(REG) | ((K) & 0x3ff) | RD(REG))
726b3d4eecSDavid S. Miller
736b3d4eecSDavid S. Miller #define ADD F3(2, 0x00)
746b3d4eecSDavid S. Miller #define AND F3(2, 0x01)
756b3d4eecSDavid S. Miller #define ANDCC F3(2, 0x11)
766b3d4eecSDavid S. Miller #define OR F3(2, 0x02)
776b3d4eecSDavid S. Miller #define XOR F3(2, 0x03)
786b3d4eecSDavid S. Miller #define SUB F3(2, 0x04)
796b3d4eecSDavid S. Miller #define SUBCC F3(2, 0x14)
806b3d4eecSDavid S. Miller #define MUL F3(2, 0x0a) /* umul */
816b3d4eecSDavid S. Miller #define DIV F3(2, 0x0e) /* udiv */
826b3d4eecSDavid S. Miller #define SLL F3(2, 0x25)
836b3d4eecSDavid S. Miller #define SRL F3(2, 0x26)
846b3d4eecSDavid S. Miller #define JMPL F3(2, 0x38)
856b3d4eecSDavid S. Miller #define CALL F1(1)
866b3d4eecSDavid S. Miller #define BR F2(0, 0x01)
876b3d4eecSDavid S. Miller #define RD_Y F3(2, 0x28)
886b3d4eecSDavid S. Miller #define WR_Y F3(2, 0x30)
896b3d4eecSDavid S. Miller
906b3d4eecSDavid S. Miller #define LD32 F3(3, 0x00)
916b3d4eecSDavid S. Miller #define LD8 F3(3, 0x01)
926b3d4eecSDavid S. Miller #define LD16 F3(3, 0x02)
936b3d4eecSDavid S. Miller #define LD64 F3(3, 0x0b)
946b3d4eecSDavid S. Miller #define ST32 F3(3, 0x04)
956b3d4eecSDavid S. Miller
966b3d4eecSDavid S. Miller #define LDPTR LD32
976b3d4eecSDavid S. Miller #define BASE_STACKFRAME 96
986b3d4eecSDavid S. Miller
996b3d4eecSDavid S. Miller #define LD32I (LD32 | IMMED)
1006b3d4eecSDavid S. Miller #define LD8I (LD8 | IMMED)
1016b3d4eecSDavid S. Miller #define LD16I (LD16 | IMMED)
1026b3d4eecSDavid S. Miller #define LD64I (LD64 | IMMED)
1036b3d4eecSDavid S. Miller #define LDPTRI (LDPTR | IMMED)
1046b3d4eecSDavid S. Miller #define ST32I (ST32 | IMMED)
1056b3d4eecSDavid S. Miller
1066b3d4eecSDavid S. Miller #define emit_nop() \
1076b3d4eecSDavid S. Miller do { \
1086b3d4eecSDavid S. Miller *prog++ = SETHI(0, G0); \
1096b3d4eecSDavid S. Miller } while (0)
1106b3d4eecSDavid S. Miller
1116b3d4eecSDavid S. Miller #define emit_neg() \
1126b3d4eecSDavid S. Miller do { /* sub %g0, r_A, r_A */ \
1136b3d4eecSDavid S. Miller *prog++ = SUB | RS1(G0) | RS2(r_A) | RD(r_A); \
1146b3d4eecSDavid S. Miller } while (0)
1156b3d4eecSDavid S. Miller
1166b3d4eecSDavid S. Miller #define emit_reg_move(FROM, TO) \
1176b3d4eecSDavid S. Miller do { /* or %g0, FROM, TO */ \
1186b3d4eecSDavid S. Miller *prog++ = OR | RS1(G0) | RS2(FROM) | RD(TO); \
1196b3d4eecSDavid S. Miller } while (0)
1206b3d4eecSDavid S. Miller
1216b3d4eecSDavid S. Miller #define emit_clear(REG) \
1226b3d4eecSDavid S. Miller do { /* or %g0, %g0, REG */ \
1236b3d4eecSDavid S. Miller *prog++ = OR | RS1(G0) | RS2(G0) | RD(REG); \
1246b3d4eecSDavid S. Miller } while (0)
1256b3d4eecSDavid S. Miller
1266b3d4eecSDavid S. Miller #define emit_set_const(K, REG) \
1276b3d4eecSDavid S. Miller do { /* sethi %hi(K), REG */ \
1286b3d4eecSDavid S. Miller *prog++ = SETHI(K, REG); \
1296b3d4eecSDavid S. Miller /* or REG, %lo(K), REG */ \
1306b3d4eecSDavid S. Miller *prog++ = OR_LO(K, REG); \
1316b3d4eecSDavid S. Miller } while (0)
1326b3d4eecSDavid S. Miller
1336b3d4eecSDavid S. Miller /* Emit
1346b3d4eecSDavid S. Miller *
1356b3d4eecSDavid S. Miller * OP r_A, r_X, r_A
1366b3d4eecSDavid S. Miller */
1376b3d4eecSDavid S. Miller #define emit_alu_X(OPCODE) \
1386b3d4eecSDavid S. Miller do { \
1396b3d4eecSDavid S. Miller seen |= SEEN_XREG; \
1406b3d4eecSDavid S. Miller *prog++ = OPCODE | RS1(r_A) | RS2(r_X) | RD(r_A); \
1416b3d4eecSDavid S. Miller } while (0)
1426b3d4eecSDavid S. Miller
1436b3d4eecSDavid S. Miller /* Emit either:
1446b3d4eecSDavid S. Miller *
1456b3d4eecSDavid S. Miller * OP r_A, K, r_A
1466b3d4eecSDavid S. Miller *
1476b3d4eecSDavid S. Miller * or
1486b3d4eecSDavid S. Miller *
1496b3d4eecSDavid S. Miller * sethi %hi(K), r_TMP
1506b3d4eecSDavid S. Miller * or r_TMP, %lo(K), r_TMP
1516b3d4eecSDavid S. Miller * OP r_A, r_TMP, r_A
1526b3d4eecSDavid S. Miller *
1536b3d4eecSDavid S. Miller * depending upon whether K fits in a signed 13-bit
1546b3d4eecSDavid S. Miller * immediate instruction field. Emit nothing if K
1556b3d4eecSDavid S. Miller * is zero.
1566b3d4eecSDavid S. Miller */
1576b3d4eecSDavid S. Miller #define emit_alu_K(OPCODE, K) \
1586b3d4eecSDavid S. Miller do { \
1596b3d4eecSDavid S. Miller if (K || OPCODE == AND || OPCODE == MUL) { \
1606b3d4eecSDavid S. Miller unsigned int _insn = OPCODE; \
1616b3d4eecSDavid S. Miller _insn |= RS1(r_A) | RD(r_A); \
1626b3d4eecSDavid S. Miller if (is_simm13(K)) { \
1636b3d4eecSDavid S. Miller *prog++ = _insn | IMMED | S13(K); \
1646b3d4eecSDavid S. Miller } else { \
1656b3d4eecSDavid S. Miller emit_set_const(K, r_TMP); \
1666b3d4eecSDavid S. Miller *prog++ = _insn | RS2(r_TMP); \
1676b3d4eecSDavid S. Miller } \
1686b3d4eecSDavid S. Miller } \
1696b3d4eecSDavid S. Miller } while (0)
1706b3d4eecSDavid S. Miller
1716b3d4eecSDavid S. Miller #define emit_loadimm(K, DEST) \
1726b3d4eecSDavid S. Miller do { \
1736b3d4eecSDavid S. Miller if (is_simm13(K)) { \
1746b3d4eecSDavid S. Miller /* or %g0, K, DEST */ \
1756b3d4eecSDavid S. Miller *prog++ = OR | IMMED | RS1(G0) | S13(K) | RD(DEST); \
1766b3d4eecSDavid S. Miller } else { \
1776b3d4eecSDavid S. Miller emit_set_const(K, DEST); \
1786b3d4eecSDavid S. Miller } \
1796b3d4eecSDavid S. Miller } while (0)
1806b3d4eecSDavid S. Miller
1816b3d4eecSDavid S. Miller #define emit_loadptr(BASE, STRUCT, FIELD, DEST) \
1826b3d4eecSDavid S. Miller do { unsigned int _off = offsetof(STRUCT, FIELD); \
183c593642cSPankaj Bharadiya BUILD_BUG_ON(sizeof_field(STRUCT, FIELD) != sizeof(void *)); \
1846b3d4eecSDavid S. Miller *prog++ = LDPTRI | RS1(BASE) | S13(_off) | RD(DEST); \
1856b3d4eecSDavid S. Miller } while (0)
1866b3d4eecSDavid S. Miller
1876b3d4eecSDavid S. Miller #define emit_load32(BASE, STRUCT, FIELD, DEST) \
1886b3d4eecSDavid S. Miller do { unsigned int _off = offsetof(STRUCT, FIELD); \
189c593642cSPankaj Bharadiya BUILD_BUG_ON(sizeof_field(STRUCT, FIELD) != sizeof(u32)); \
1906b3d4eecSDavid S. Miller *prog++ = LD32I | RS1(BASE) | S13(_off) | RD(DEST); \
1916b3d4eecSDavid S. Miller } while (0)
1926b3d4eecSDavid S. Miller
1936b3d4eecSDavid S. Miller #define emit_load16(BASE, STRUCT, FIELD, DEST) \
1946b3d4eecSDavid S. Miller do { unsigned int _off = offsetof(STRUCT, FIELD); \
195c593642cSPankaj Bharadiya BUILD_BUG_ON(sizeof_field(STRUCT, FIELD) != sizeof(u16)); \
1966b3d4eecSDavid S. Miller *prog++ = LD16I | RS1(BASE) | S13(_off) | RD(DEST); \
1976b3d4eecSDavid S. Miller } while (0)
1986b3d4eecSDavid S. Miller
1996b3d4eecSDavid S. Miller #define __emit_load8(BASE, STRUCT, FIELD, DEST) \
2006b3d4eecSDavid S. Miller do { unsigned int _off = offsetof(STRUCT, FIELD); \
2016b3d4eecSDavid S. Miller *prog++ = LD8I | RS1(BASE) | S13(_off) | RD(DEST); \
2026b3d4eecSDavid S. Miller } while (0)
2036b3d4eecSDavid S. Miller
2046b3d4eecSDavid S. Miller #define emit_load8(BASE, STRUCT, FIELD, DEST) \
205c593642cSPankaj Bharadiya do { BUILD_BUG_ON(sizeof_field(STRUCT, FIELD) != sizeof(u8)); \
2066b3d4eecSDavid S. Miller __emit_load8(BASE, STRUCT, FIELD, DEST); \
2076b3d4eecSDavid S. Miller } while (0)
2086b3d4eecSDavid S. Miller
2096b3d4eecSDavid S. Miller #define BIAS (-4)
2106b3d4eecSDavid S. Miller
2116b3d4eecSDavid S. Miller #define emit_ldmem(OFF, DEST) \
2126b3d4eecSDavid S. Miller do { *prog++ = LD32I | RS1(SP) | S13(BIAS - (OFF)) | RD(DEST); \
2136b3d4eecSDavid S. Miller } while (0)
2146b3d4eecSDavid S. Miller
2156b3d4eecSDavid S. Miller #define emit_stmem(OFF, SRC) \
2166b3d4eecSDavid S. Miller do { *prog++ = ST32I | RS1(SP) | S13(BIAS - (OFF)) | RD(SRC); \
2176b3d4eecSDavid S. Miller } while (0)
2186b3d4eecSDavid S. Miller
2196b3d4eecSDavid S. Miller #ifdef CONFIG_SMP
2206b3d4eecSDavid S. Miller #define emit_load_cpu(REG) \
2216b3d4eecSDavid S. Miller emit_load32(G6, struct thread_info, cpu, REG)
2226b3d4eecSDavid S. Miller #else
2236b3d4eecSDavid S. Miller #define emit_load_cpu(REG) emit_clear(REG)
2246b3d4eecSDavid S. Miller #endif
2256b3d4eecSDavid S. Miller
2266b3d4eecSDavid S. Miller #define emit_skb_loadptr(FIELD, DEST) \
2276b3d4eecSDavid S. Miller emit_loadptr(r_SKB, struct sk_buff, FIELD, DEST)
2286b3d4eecSDavid S. Miller #define emit_skb_load32(FIELD, DEST) \
2296b3d4eecSDavid S. Miller emit_load32(r_SKB, struct sk_buff, FIELD, DEST)
2306b3d4eecSDavid S. Miller #define emit_skb_load16(FIELD, DEST) \
2316b3d4eecSDavid S. Miller emit_load16(r_SKB, struct sk_buff, FIELD, DEST)
2326b3d4eecSDavid S. Miller #define __emit_skb_load8(FIELD, DEST) \
2336b3d4eecSDavid S. Miller __emit_load8(r_SKB, struct sk_buff, FIELD, DEST)
2346b3d4eecSDavid S. Miller #define emit_skb_load8(FIELD, DEST) \
2356b3d4eecSDavid S. Miller emit_load8(r_SKB, struct sk_buff, FIELD, DEST)
2366b3d4eecSDavid S. Miller
2376b3d4eecSDavid S. Miller #define emit_jmpl(BASE, IMM_OFF, LREG) \
2386b3d4eecSDavid S. Miller *prog++ = (JMPL | IMMED | RS1(BASE) | S13(IMM_OFF) | RD(LREG))
2396b3d4eecSDavid S. Miller
2406b3d4eecSDavid S. Miller #define emit_call(FUNC) \
2416b3d4eecSDavid S. Miller do { void *_here = image + addrs[i] - 8; \
2426b3d4eecSDavid S. Miller unsigned int _off = (void *)(FUNC) - _here; \
2436b3d4eecSDavid S. Miller *prog++ = CALL | (((_off) >> 2) & 0x3fffffff); \
2446b3d4eecSDavid S. Miller emit_nop(); \
2456b3d4eecSDavid S. Miller } while (0)
2466b3d4eecSDavid S. Miller
2476b3d4eecSDavid S. Miller #define emit_branch(BR_OPC, DEST) \
2486b3d4eecSDavid S. Miller do { unsigned int _here = addrs[i] - 8; \
2496b3d4eecSDavid S. Miller *prog++ = BR_OPC | WDISP22((DEST) - _here); \
2506b3d4eecSDavid S. Miller } while (0)
2516b3d4eecSDavid S. Miller
2526b3d4eecSDavid S. Miller #define emit_branch_off(BR_OPC, OFF) \
2536b3d4eecSDavid S. Miller do { *prog++ = BR_OPC | WDISP22(OFF); \
2546b3d4eecSDavid S. Miller } while (0)
2556b3d4eecSDavid S. Miller
2566b3d4eecSDavid S. Miller #define emit_jump(DEST) emit_branch(BA, DEST)
2576b3d4eecSDavid S. Miller
2586b3d4eecSDavid S. Miller #define emit_read_y(REG) *prog++ = RD_Y | RD(REG)
2596b3d4eecSDavid S. Miller #define emit_write_y(REG) *prog++ = WR_Y | IMMED | RS1(REG) | S13(0)
2606b3d4eecSDavid S. Miller
2616b3d4eecSDavid S. Miller #define emit_cmp(R1, R2) \
2626b3d4eecSDavid S. Miller *prog++ = (SUBCC | RS1(R1) | RS2(R2) | RD(G0))
2636b3d4eecSDavid S. Miller
2646b3d4eecSDavid S. Miller #define emit_cmpi(R1, IMM) \
2656b3d4eecSDavid S. Miller *prog++ = (SUBCC | IMMED | RS1(R1) | S13(IMM) | RD(G0));
2666b3d4eecSDavid S. Miller
2676b3d4eecSDavid S. Miller #define emit_btst(R1, R2) \
2686b3d4eecSDavid S. Miller *prog++ = (ANDCC | RS1(R1) | RS2(R2) | RD(G0))
2696b3d4eecSDavid S. Miller
2706b3d4eecSDavid S. Miller #define emit_btsti(R1, IMM) \
2716b3d4eecSDavid S. Miller *prog++ = (ANDCC | IMMED | RS1(R1) | S13(IMM) | RD(G0));
2726b3d4eecSDavid S. Miller
2736b3d4eecSDavid S. Miller #define emit_sub(R1, R2, R3) \
2746b3d4eecSDavid S. Miller *prog++ = (SUB | RS1(R1) | RS2(R2) | RD(R3))
2756b3d4eecSDavid S. Miller
2766b3d4eecSDavid S. Miller #define emit_subi(R1, IMM, R3) \
2776b3d4eecSDavid S. Miller *prog++ = (SUB | IMMED | RS1(R1) | S13(IMM) | RD(R3))
2786b3d4eecSDavid S. Miller
2796b3d4eecSDavid S. Miller #define emit_add(R1, R2, R3) \
2806b3d4eecSDavid S. Miller *prog++ = (ADD | RS1(R1) | RS2(R2) | RD(R3))
2816b3d4eecSDavid S. Miller
2826b3d4eecSDavid S. Miller #define emit_addi(R1, IMM, R3) \
2836b3d4eecSDavid S. Miller *prog++ = (ADD | IMMED | RS1(R1) | S13(IMM) | RD(R3))
2846b3d4eecSDavid S. Miller
2856b3d4eecSDavid S. Miller #define emit_and(R1, R2, R3) \
2866b3d4eecSDavid S. Miller *prog++ = (AND | RS1(R1) | RS2(R2) | RD(R3))
2876b3d4eecSDavid S. Miller
2886b3d4eecSDavid S. Miller #define emit_andi(R1, IMM, R3) \
2896b3d4eecSDavid S. Miller *prog++ = (AND | IMMED | RS1(R1) | S13(IMM) | RD(R3))
2906b3d4eecSDavid S. Miller
2916b3d4eecSDavid S. Miller #define emit_alloc_stack(SZ) \
2926b3d4eecSDavid S. Miller *prog++ = (SUB | IMMED | RS1(SP) | S13(SZ) | RD(SP))
2936b3d4eecSDavid S. Miller
2946b3d4eecSDavid S. Miller #define emit_release_stack(SZ) \
2956b3d4eecSDavid S. Miller *prog++ = (ADD | IMMED | RS1(SP) | S13(SZ) | RD(SP))
2966b3d4eecSDavid S. Miller
2976b3d4eecSDavid S. Miller /* A note about branch offset calculations. The addrs[] array,
2986b3d4eecSDavid S. Miller * indexed by BPF instruction, records the address after all the
2996b3d4eecSDavid S. Miller * sparc instructions emitted for that BPF instruction.
3006b3d4eecSDavid S. Miller *
3016b3d4eecSDavid S. Miller * The most common case is to emit a branch at the end of such
3026b3d4eecSDavid S. Miller * a code sequence. So this would be two instructions, the
3036b3d4eecSDavid S. Miller * branch and it's delay slot.
3046b3d4eecSDavid S. Miller *
3056b3d4eecSDavid S. Miller * Therefore by default the branch emitters calculate the branch
3066b3d4eecSDavid S. Miller * offset field as:
3076b3d4eecSDavid S. Miller *
3086b3d4eecSDavid S. Miller * destination - (addrs[i] - 8)
3096b3d4eecSDavid S. Miller *
3106b3d4eecSDavid S. Miller * This "addrs[i] - 8" is the address of the branch itself or
3116b3d4eecSDavid S. Miller * what "." would be in assembler notation. The "8" part is
3126b3d4eecSDavid S. Miller * how we take into consideration the branch and it's delay
3136b3d4eecSDavid S. Miller * slot mentioned above.
3146b3d4eecSDavid S. Miller *
3156b3d4eecSDavid S. Miller * Sometimes we need to emit a branch earlier in the code
3166b3d4eecSDavid S. Miller * sequence. And in these situations we adjust "destination"
3176b3d4eecSDavid S. Miller * to accommodate this difference. For example, if we needed
3186b3d4eecSDavid S. Miller * to emit a branch (and it's delay slot) right before the
3196b3d4eecSDavid S. Miller * final instruction emitted for a BPF opcode, we'd use
3206b3d4eecSDavid S. Miller * "destination + 4" instead of just plain "destination" above.
3216b3d4eecSDavid S. Miller *
3226b3d4eecSDavid S. Miller * This is why you see all of these funny emit_branch() and
3236b3d4eecSDavid S. Miller * emit_jump() calls with adjusted offsets.
3246b3d4eecSDavid S. Miller */
3256b3d4eecSDavid S. Miller
bpf_jit_compile(struct bpf_prog * fp)3266b3d4eecSDavid S. Miller void bpf_jit_compile(struct bpf_prog *fp)
3276b3d4eecSDavid S. Miller {
3286b3d4eecSDavid S. Miller unsigned int cleanup_addr, proglen, oldproglen = 0;
3296b3d4eecSDavid S. Miller u32 temp[8], *prog, *func, seen = 0, pass;
3306b3d4eecSDavid S. Miller const struct sock_filter *filter = fp->insns;
3316b3d4eecSDavid S. Miller int i, flen = fp->len, pc_ret0 = -1;
3326b3d4eecSDavid S. Miller unsigned int *addrs;
3336b3d4eecSDavid S. Miller void *image;
3346b3d4eecSDavid S. Miller
3356b3d4eecSDavid S. Miller if (!bpf_jit_enable)
3366b3d4eecSDavid S. Miller return;
3376b3d4eecSDavid S. Miller
3386da2ec56SKees Cook addrs = kmalloc_array(flen, sizeof(*addrs), GFP_KERNEL);
3396b3d4eecSDavid S. Miller if (addrs == NULL)
3406b3d4eecSDavid S. Miller return;
3416b3d4eecSDavid S. Miller
3426b3d4eecSDavid S. Miller /* Before first pass, make a rough estimation of addrs[]
3436b3d4eecSDavid S. Miller * each bpf instruction is translated to less than 64 bytes
3446b3d4eecSDavid S. Miller */
3456b3d4eecSDavid S. Miller for (proglen = 0, i = 0; i < flen; i++) {
3466b3d4eecSDavid S. Miller proglen += 64;
3476b3d4eecSDavid S. Miller addrs[i] = proglen;
3486b3d4eecSDavid S. Miller }
3496b3d4eecSDavid S. Miller cleanup_addr = proglen; /* epilogue address */
3506b3d4eecSDavid S. Miller image = NULL;
3516b3d4eecSDavid S. Miller for (pass = 0; pass < 10; pass++) {
3526b3d4eecSDavid S. Miller u8 seen_or_pass0 = (pass == 0) ? (SEEN_XREG | SEEN_DATAREF | SEEN_MEM) : seen;
3536b3d4eecSDavid S. Miller
3546b3d4eecSDavid S. Miller /* no prologue/epilogue for trivial filters (RET something) */
3556b3d4eecSDavid S. Miller proglen = 0;
3566b3d4eecSDavid S. Miller prog = temp;
3576b3d4eecSDavid S. Miller
3586b3d4eecSDavid S. Miller /* Prologue */
3596b3d4eecSDavid S. Miller if (seen_or_pass0) {
3606b3d4eecSDavid S. Miller if (seen_or_pass0 & SEEN_MEM) {
3616b3d4eecSDavid S. Miller unsigned int sz = BASE_STACKFRAME;
3626b3d4eecSDavid S. Miller sz += BPF_MEMWORDS * sizeof(u32);
3636b3d4eecSDavid S. Miller emit_alloc_stack(sz);
3646b3d4eecSDavid S. Miller }
3656b3d4eecSDavid S. Miller
3666b3d4eecSDavid S. Miller /* Make sure we dont leek kernel memory. */
3676b3d4eecSDavid S. Miller if (seen_or_pass0 & SEEN_XREG)
3686b3d4eecSDavid S. Miller emit_clear(r_X);
3696b3d4eecSDavid S. Miller
3706b3d4eecSDavid S. Miller /* If this filter needs to access skb data,
3716b3d4eecSDavid S. Miller * load %o4 and %o5 with:
3726b3d4eecSDavid S. Miller * %o4 = skb->len - skb->data_len
3736b3d4eecSDavid S. Miller * %o5 = skb->data
3746b3d4eecSDavid S. Miller * And also back up %o7 into r_saved_O7 so we can
3756b3d4eecSDavid S. Miller * invoke the stubs using 'call'.
3766b3d4eecSDavid S. Miller */
3776b3d4eecSDavid S. Miller if (seen_or_pass0 & SEEN_DATAREF) {
3786b3d4eecSDavid S. Miller emit_load32(r_SKB, struct sk_buff, len, r_HEADLEN);
3796b3d4eecSDavid S. Miller emit_load32(r_SKB, struct sk_buff, data_len, r_TMP);
3806b3d4eecSDavid S. Miller emit_sub(r_HEADLEN, r_TMP, r_HEADLEN);
3816b3d4eecSDavid S. Miller emit_loadptr(r_SKB, struct sk_buff, data, r_SKB_DATA);
3826b3d4eecSDavid S. Miller }
3836b3d4eecSDavid S. Miller }
3846b3d4eecSDavid S. Miller emit_reg_move(O7, r_saved_O7);
3856b3d4eecSDavid S. Miller
3866b3d4eecSDavid S. Miller /* Make sure we dont leak kernel information to the user. */
3876b3d4eecSDavid S. Miller if (bpf_needs_clear_a(&filter[0]))
3886b3d4eecSDavid S. Miller emit_clear(r_A); /* A = 0 */
3896b3d4eecSDavid S. Miller
3906b3d4eecSDavid S. Miller for (i = 0; i < flen; i++) {
3916b3d4eecSDavid S. Miller unsigned int K = filter[i].k;
3926b3d4eecSDavid S. Miller unsigned int t_offset;
3936b3d4eecSDavid S. Miller unsigned int f_offset;
3946b3d4eecSDavid S. Miller u32 t_op, f_op;
3956b3d4eecSDavid S. Miller u16 code = bpf_anc_helper(&filter[i]);
3966b3d4eecSDavid S. Miller int ilen;
3976b3d4eecSDavid S. Miller
3986b3d4eecSDavid S. Miller switch (code) {
3996b3d4eecSDavid S. Miller case BPF_ALU | BPF_ADD | BPF_X: /* A += X; */
4006b3d4eecSDavid S. Miller emit_alu_X(ADD);
4016b3d4eecSDavid S. Miller break;
4026b3d4eecSDavid S. Miller case BPF_ALU | BPF_ADD | BPF_K: /* A += K; */
4036b3d4eecSDavid S. Miller emit_alu_K(ADD, K);
4046b3d4eecSDavid S. Miller break;
4056b3d4eecSDavid S. Miller case BPF_ALU | BPF_SUB | BPF_X: /* A -= X; */
4066b3d4eecSDavid S. Miller emit_alu_X(SUB);
4076b3d4eecSDavid S. Miller break;
4086b3d4eecSDavid S. Miller case BPF_ALU | BPF_SUB | BPF_K: /* A -= K */
4096b3d4eecSDavid S. Miller emit_alu_K(SUB, K);
4106b3d4eecSDavid S. Miller break;
4116b3d4eecSDavid S. Miller case BPF_ALU | BPF_AND | BPF_X: /* A &= X */
4126b3d4eecSDavid S. Miller emit_alu_X(AND);
4136b3d4eecSDavid S. Miller break;
4146b3d4eecSDavid S. Miller case BPF_ALU | BPF_AND | BPF_K: /* A &= K */
4156b3d4eecSDavid S. Miller emit_alu_K(AND, K);
4166b3d4eecSDavid S. Miller break;
4176b3d4eecSDavid S. Miller case BPF_ALU | BPF_OR | BPF_X: /* A |= X */
4186b3d4eecSDavid S. Miller emit_alu_X(OR);
4196b3d4eecSDavid S. Miller break;
4206b3d4eecSDavid S. Miller case BPF_ALU | BPF_OR | BPF_K: /* A |= K */
4216b3d4eecSDavid S. Miller emit_alu_K(OR, K);
4226b3d4eecSDavid S. Miller break;
4236b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_ALU_XOR_X: /* A ^= X; */
4246b3d4eecSDavid S. Miller case BPF_ALU | BPF_XOR | BPF_X:
4256b3d4eecSDavid S. Miller emit_alu_X(XOR);
4266b3d4eecSDavid S. Miller break;
4276b3d4eecSDavid S. Miller case BPF_ALU | BPF_XOR | BPF_K: /* A ^= K */
4286b3d4eecSDavid S. Miller emit_alu_K(XOR, K);
4296b3d4eecSDavid S. Miller break;
4306b3d4eecSDavid S. Miller case BPF_ALU | BPF_LSH | BPF_X: /* A <<= X */
4316b3d4eecSDavid S. Miller emit_alu_X(SLL);
4326b3d4eecSDavid S. Miller break;
4336b3d4eecSDavid S. Miller case BPF_ALU | BPF_LSH | BPF_K: /* A <<= K */
4346b3d4eecSDavid S. Miller emit_alu_K(SLL, K);
4356b3d4eecSDavid S. Miller break;
4366b3d4eecSDavid S. Miller case BPF_ALU | BPF_RSH | BPF_X: /* A >>= X */
4376b3d4eecSDavid S. Miller emit_alu_X(SRL);
4386b3d4eecSDavid S. Miller break;
4396b3d4eecSDavid S. Miller case BPF_ALU | BPF_RSH | BPF_K: /* A >>= K */
4406b3d4eecSDavid S. Miller emit_alu_K(SRL, K);
4416b3d4eecSDavid S. Miller break;
4426b3d4eecSDavid S. Miller case BPF_ALU | BPF_MUL | BPF_X: /* A *= X; */
4436b3d4eecSDavid S. Miller emit_alu_X(MUL);
4446b3d4eecSDavid S. Miller break;
4456b3d4eecSDavid S. Miller case BPF_ALU | BPF_MUL | BPF_K: /* A *= K */
4466b3d4eecSDavid S. Miller emit_alu_K(MUL, K);
4476b3d4eecSDavid S. Miller break;
4486b3d4eecSDavid S. Miller case BPF_ALU | BPF_DIV | BPF_K: /* A /= K with K != 0*/
4496b3d4eecSDavid S. Miller if (K == 1)
4506b3d4eecSDavid S. Miller break;
4516b3d4eecSDavid S. Miller emit_write_y(G0);
4526b3d4eecSDavid S. Miller /* The Sparc v8 architecture requires
4536b3d4eecSDavid S. Miller * three instructions between a %y
4546b3d4eecSDavid S. Miller * register write and the first use.
4556b3d4eecSDavid S. Miller */
4566b3d4eecSDavid S. Miller emit_nop();
4576b3d4eecSDavid S. Miller emit_nop();
4586b3d4eecSDavid S. Miller emit_nop();
4596b3d4eecSDavid S. Miller emit_alu_K(DIV, K);
4606b3d4eecSDavid S. Miller break;
4616b3d4eecSDavid S. Miller case BPF_ALU | BPF_DIV | BPF_X: /* A /= X; */
4626b3d4eecSDavid S. Miller emit_cmpi(r_X, 0);
4636b3d4eecSDavid S. Miller if (pc_ret0 > 0) {
4646b3d4eecSDavid S. Miller t_offset = addrs[pc_ret0 - 1];
4656b3d4eecSDavid S. Miller emit_branch(BE, t_offset + 20);
4666b3d4eecSDavid S. Miller emit_nop(); /* delay slot */
4676b3d4eecSDavid S. Miller } else {
4686b3d4eecSDavid S. Miller emit_branch_off(BNE, 16);
4696b3d4eecSDavid S. Miller emit_nop();
4706b3d4eecSDavid S. Miller emit_jump(cleanup_addr + 20);
4716b3d4eecSDavid S. Miller emit_clear(r_A);
4726b3d4eecSDavid S. Miller }
4736b3d4eecSDavid S. Miller emit_write_y(G0);
4746b3d4eecSDavid S. Miller /* The Sparc v8 architecture requires
4756b3d4eecSDavid S. Miller * three instructions between a %y
4766b3d4eecSDavid S. Miller * register write and the first use.
4776b3d4eecSDavid S. Miller */
4786b3d4eecSDavid S. Miller emit_nop();
4796b3d4eecSDavid S. Miller emit_nop();
4806b3d4eecSDavid S. Miller emit_nop();
4816b3d4eecSDavid S. Miller emit_alu_X(DIV);
4826b3d4eecSDavid S. Miller break;
4836b3d4eecSDavid S. Miller case BPF_ALU | BPF_NEG:
4846b3d4eecSDavid S. Miller emit_neg();
4856b3d4eecSDavid S. Miller break;
4866b3d4eecSDavid S. Miller case BPF_RET | BPF_K:
4876b3d4eecSDavid S. Miller if (!K) {
4886b3d4eecSDavid S. Miller if (pc_ret0 == -1)
4896b3d4eecSDavid S. Miller pc_ret0 = i;
4906b3d4eecSDavid S. Miller emit_clear(r_A);
4916b3d4eecSDavid S. Miller } else {
4926b3d4eecSDavid S. Miller emit_loadimm(K, r_A);
4936b3d4eecSDavid S. Miller }
494df561f66SGustavo A. R. Silva fallthrough;
4956b3d4eecSDavid S. Miller case BPF_RET | BPF_A:
4966b3d4eecSDavid S. Miller if (seen_or_pass0) {
4976b3d4eecSDavid S. Miller if (i != flen - 1) {
4986b3d4eecSDavid S. Miller emit_jump(cleanup_addr);
4996b3d4eecSDavid S. Miller emit_nop();
5006b3d4eecSDavid S. Miller break;
5016b3d4eecSDavid S. Miller }
5026b3d4eecSDavid S. Miller if (seen_or_pass0 & SEEN_MEM) {
5036b3d4eecSDavid S. Miller unsigned int sz = BASE_STACKFRAME;
5046b3d4eecSDavid S. Miller sz += BPF_MEMWORDS * sizeof(u32);
5056b3d4eecSDavid S. Miller emit_release_stack(sz);
5066b3d4eecSDavid S. Miller }
5076b3d4eecSDavid S. Miller }
5086b3d4eecSDavid S. Miller /* jmpl %r_saved_O7 + 8, %g0 */
5096b3d4eecSDavid S. Miller emit_jmpl(r_saved_O7, 8, G0);
5106b3d4eecSDavid S. Miller emit_reg_move(r_A, O0); /* delay slot */
5116b3d4eecSDavid S. Miller break;
5126b3d4eecSDavid S. Miller case BPF_MISC | BPF_TAX:
5136b3d4eecSDavid S. Miller seen |= SEEN_XREG;
5146b3d4eecSDavid S. Miller emit_reg_move(r_A, r_X);
5156b3d4eecSDavid S. Miller break;
5166b3d4eecSDavid S. Miller case BPF_MISC | BPF_TXA:
5176b3d4eecSDavid S. Miller seen |= SEEN_XREG;
5186b3d4eecSDavid S. Miller emit_reg_move(r_X, r_A);
5196b3d4eecSDavid S. Miller break;
5206b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_CPU:
5216b3d4eecSDavid S. Miller emit_load_cpu(r_A);
5226b3d4eecSDavid S. Miller break;
5236b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_PROTOCOL:
5246b3d4eecSDavid S. Miller emit_skb_load16(protocol, r_A);
5256b3d4eecSDavid S. Miller break;
5266b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_PKTTYPE:
5276b3d4eecSDavid S. Miller __emit_skb_load8(__pkt_type_offset, r_A);
5286b3d4eecSDavid S. Miller emit_andi(r_A, PKT_TYPE_MAX, r_A);
5296b3d4eecSDavid S. Miller emit_alu_K(SRL, 5);
5306b3d4eecSDavid S. Miller break;
5316b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_IFINDEX:
5326b3d4eecSDavid S. Miller emit_skb_loadptr(dev, r_A);
5336b3d4eecSDavid S. Miller emit_cmpi(r_A, 0);
5346b3d4eecSDavid S. Miller emit_branch(BE_PTR, cleanup_addr + 4);
5356b3d4eecSDavid S. Miller emit_nop();
5366b3d4eecSDavid S. Miller emit_load32(r_A, struct net_device, ifindex, r_A);
5376b3d4eecSDavid S. Miller break;
5386b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_MARK:
5396b3d4eecSDavid S. Miller emit_skb_load32(mark, r_A);
5406b3d4eecSDavid S. Miller break;
5416b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_QUEUE:
5426b3d4eecSDavid S. Miller emit_skb_load16(queue_mapping, r_A);
5436b3d4eecSDavid S. Miller break;
5446b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_HATYPE:
5456b3d4eecSDavid S. Miller emit_skb_loadptr(dev, r_A);
5466b3d4eecSDavid S. Miller emit_cmpi(r_A, 0);
5476b3d4eecSDavid S. Miller emit_branch(BE_PTR, cleanup_addr + 4);
5486b3d4eecSDavid S. Miller emit_nop();
5496b3d4eecSDavid S. Miller emit_load16(r_A, struct net_device, type, r_A);
5506b3d4eecSDavid S. Miller break;
5516b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_RXHASH:
5526b3d4eecSDavid S. Miller emit_skb_load32(hash, r_A);
5536b3d4eecSDavid S. Miller break;
5546b3d4eecSDavid S. Miller case BPF_ANC | SKF_AD_VLAN_TAG:
5556b3d4eecSDavid S. Miller emit_skb_load16(vlan_tci, r_A);
5564b50d231SMichał Mirosław break;
5574b50d231SMichał Mirosław case BPF_ANC | SKF_AD_VLAN_TAG_PRESENT:
558*354259faSEric Dumazet emit_skb_load32(vlan_all, r_A);
559*354259faSEric Dumazet emit_cmpi(r_A, 0);
560*354259faSEric Dumazet emit_branch_off(BE, 12);
561*354259faSEric Dumazet emit_nop();
562*354259faSEric Dumazet emit_loadimm(1, r_A);
5636b3d4eecSDavid S. Miller break;
5646b3d4eecSDavid S. Miller case BPF_LD | BPF_W | BPF_LEN:
5656b3d4eecSDavid S. Miller emit_skb_load32(len, r_A);
5666b3d4eecSDavid S. Miller break;
5676b3d4eecSDavid S. Miller case BPF_LDX | BPF_W | BPF_LEN:
5686b3d4eecSDavid S. Miller emit_skb_load32(len, r_X);
5696b3d4eecSDavid S. Miller break;
5706b3d4eecSDavid S. Miller case BPF_LD | BPF_IMM:
5716b3d4eecSDavid S. Miller emit_loadimm(K, r_A);
5726b3d4eecSDavid S. Miller break;
5736b3d4eecSDavid S. Miller case BPF_LDX | BPF_IMM:
5746b3d4eecSDavid S. Miller emit_loadimm(K, r_X);
5756b3d4eecSDavid S. Miller break;
5766b3d4eecSDavid S. Miller case BPF_LD | BPF_MEM:
5776b3d4eecSDavid S. Miller seen |= SEEN_MEM;
5786b3d4eecSDavid S. Miller emit_ldmem(K * 4, r_A);
5796b3d4eecSDavid S. Miller break;
5806b3d4eecSDavid S. Miller case BPF_LDX | BPF_MEM:
5816b3d4eecSDavid S. Miller seen |= SEEN_MEM | SEEN_XREG;
5826b3d4eecSDavid S. Miller emit_ldmem(K * 4, r_X);
5836b3d4eecSDavid S. Miller break;
5846b3d4eecSDavid S. Miller case BPF_ST:
5856b3d4eecSDavid S. Miller seen |= SEEN_MEM;
5866b3d4eecSDavid S. Miller emit_stmem(K * 4, r_A);
5876b3d4eecSDavid S. Miller break;
5886b3d4eecSDavid S. Miller case BPF_STX:
5896b3d4eecSDavid S. Miller seen |= SEEN_MEM | SEEN_XREG;
5906b3d4eecSDavid S. Miller emit_stmem(K * 4, r_X);
5916b3d4eecSDavid S. Miller break;
5926b3d4eecSDavid S. Miller
5936b3d4eecSDavid S. Miller #define CHOOSE_LOAD_FUNC(K, func) \
5946b3d4eecSDavid S. Miller ((int)K < 0 ? ((int)K >= SKF_LL_OFF ? func##_negative_offset : func) : func##_positive_offset)
5956b3d4eecSDavid S. Miller
5966b3d4eecSDavid S. Miller case BPF_LD | BPF_W | BPF_ABS:
5976b3d4eecSDavid S. Miller func = CHOOSE_LOAD_FUNC(K, bpf_jit_load_word);
5986b3d4eecSDavid S. Miller common_load: seen |= SEEN_DATAREF;
5996b3d4eecSDavid S. Miller emit_loadimm(K, r_OFF);
6006b3d4eecSDavid S. Miller emit_call(func);
6016b3d4eecSDavid S. Miller break;
6026b3d4eecSDavid S. Miller case BPF_LD | BPF_H | BPF_ABS:
6036b3d4eecSDavid S. Miller func = CHOOSE_LOAD_FUNC(K, bpf_jit_load_half);
6046b3d4eecSDavid S. Miller goto common_load;
6056b3d4eecSDavid S. Miller case BPF_LD | BPF_B | BPF_ABS:
6066b3d4eecSDavid S. Miller func = CHOOSE_LOAD_FUNC(K, bpf_jit_load_byte);
6076b3d4eecSDavid S. Miller goto common_load;
6086b3d4eecSDavid S. Miller case BPF_LDX | BPF_B | BPF_MSH:
6096b3d4eecSDavid S. Miller func = CHOOSE_LOAD_FUNC(K, bpf_jit_load_byte_msh);
6106b3d4eecSDavid S. Miller goto common_load;
6116b3d4eecSDavid S. Miller case BPF_LD | BPF_W | BPF_IND:
6126b3d4eecSDavid S. Miller func = bpf_jit_load_word;
6136b3d4eecSDavid S. Miller common_load_ind: seen |= SEEN_DATAREF | SEEN_XREG;
6146b3d4eecSDavid S. Miller if (K) {
6156b3d4eecSDavid S. Miller if (is_simm13(K)) {
6166b3d4eecSDavid S. Miller emit_addi(r_X, K, r_OFF);
6176b3d4eecSDavid S. Miller } else {
6186b3d4eecSDavid S. Miller emit_loadimm(K, r_TMP);
6196b3d4eecSDavid S. Miller emit_add(r_X, r_TMP, r_OFF);
6206b3d4eecSDavid S. Miller }
6216b3d4eecSDavid S. Miller } else {
6226b3d4eecSDavid S. Miller emit_reg_move(r_X, r_OFF);
6236b3d4eecSDavid S. Miller }
6246b3d4eecSDavid S. Miller emit_call(func);
6256b3d4eecSDavid S. Miller break;
6266b3d4eecSDavid S. Miller case BPF_LD | BPF_H | BPF_IND:
6276b3d4eecSDavid S. Miller func = bpf_jit_load_half;
6286b3d4eecSDavid S. Miller goto common_load_ind;
6296b3d4eecSDavid S. Miller case BPF_LD | BPF_B | BPF_IND:
6306b3d4eecSDavid S. Miller func = bpf_jit_load_byte;
6316b3d4eecSDavid S. Miller goto common_load_ind;
6326b3d4eecSDavid S. Miller case BPF_JMP | BPF_JA:
6336b3d4eecSDavid S. Miller emit_jump(addrs[i + K]);
6346b3d4eecSDavid S. Miller emit_nop();
6356b3d4eecSDavid S. Miller break;
6366b3d4eecSDavid S. Miller
6376b3d4eecSDavid S. Miller #define COND_SEL(CODE, TOP, FOP) \
6386b3d4eecSDavid S. Miller case CODE: \
6396b3d4eecSDavid S. Miller t_op = TOP; \
6406b3d4eecSDavid S. Miller f_op = FOP; \
6416b3d4eecSDavid S. Miller goto cond_branch
6426b3d4eecSDavid S. Miller
6436b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JGT | BPF_K, BGU, BLEU);
6446b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JGE | BPF_K, BGEU, BLU);
6456b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JEQ | BPF_K, BE, BNE);
6466b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JSET | BPF_K, BNE, BE);
6476b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JGT | BPF_X, BGU, BLEU);
6486b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JGE | BPF_X, BGEU, BLU);
6496b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JEQ | BPF_X, BE, BNE);
6506b3d4eecSDavid S. Miller COND_SEL(BPF_JMP | BPF_JSET | BPF_X, BNE, BE);
6516b3d4eecSDavid S. Miller
6526b3d4eecSDavid S. Miller cond_branch: f_offset = addrs[i + filter[i].jf];
6536b3d4eecSDavid S. Miller t_offset = addrs[i + filter[i].jt];
6546b3d4eecSDavid S. Miller
6556b3d4eecSDavid S. Miller /* same targets, can avoid doing the test :) */
6566b3d4eecSDavid S. Miller if (filter[i].jt == filter[i].jf) {
6576b3d4eecSDavid S. Miller emit_jump(t_offset);
6586b3d4eecSDavid S. Miller emit_nop();
6596b3d4eecSDavid S. Miller break;
6606b3d4eecSDavid S. Miller }
6616b3d4eecSDavid S. Miller
6626b3d4eecSDavid S. Miller switch (code) {
6636b3d4eecSDavid S. Miller case BPF_JMP | BPF_JGT | BPF_X:
6646b3d4eecSDavid S. Miller case BPF_JMP | BPF_JGE | BPF_X:
6656b3d4eecSDavid S. Miller case BPF_JMP | BPF_JEQ | BPF_X:
6666b3d4eecSDavid S. Miller seen |= SEEN_XREG;
6676b3d4eecSDavid S. Miller emit_cmp(r_A, r_X);
6686b3d4eecSDavid S. Miller break;
6696b3d4eecSDavid S. Miller case BPF_JMP | BPF_JSET | BPF_X:
6706b3d4eecSDavid S. Miller seen |= SEEN_XREG;
6716b3d4eecSDavid S. Miller emit_btst(r_A, r_X);
6726b3d4eecSDavid S. Miller break;
6736b3d4eecSDavid S. Miller case BPF_JMP | BPF_JEQ | BPF_K:
6746b3d4eecSDavid S. Miller case BPF_JMP | BPF_JGT | BPF_K:
6756b3d4eecSDavid S. Miller case BPF_JMP | BPF_JGE | BPF_K:
6766b3d4eecSDavid S. Miller if (is_simm13(K)) {
6776b3d4eecSDavid S. Miller emit_cmpi(r_A, K);
6786b3d4eecSDavid S. Miller } else {
6796b3d4eecSDavid S. Miller emit_loadimm(K, r_TMP);
6806b3d4eecSDavid S. Miller emit_cmp(r_A, r_TMP);
6816b3d4eecSDavid S. Miller }
6826b3d4eecSDavid S. Miller break;
6836b3d4eecSDavid S. Miller case BPF_JMP | BPF_JSET | BPF_K:
6846b3d4eecSDavid S. Miller if (is_simm13(K)) {
6856b3d4eecSDavid S. Miller emit_btsti(r_A, K);
6866b3d4eecSDavid S. Miller } else {
6876b3d4eecSDavid S. Miller emit_loadimm(K, r_TMP);
6886b3d4eecSDavid S. Miller emit_btst(r_A, r_TMP);
6896b3d4eecSDavid S. Miller }
6906b3d4eecSDavid S. Miller break;
6916b3d4eecSDavid S. Miller }
6926b3d4eecSDavid S. Miller if (filter[i].jt != 0) {
6936b3d4eecSDavid S. Miller if (filter[i].jf)
6946b3d4eecSDavid S. Miller t_offset += 8;
6956b3d4eecSDavid S. Miller emit_branch(t_op, t_offset);
6966b3d4eecSDavid S. Miller emit_nop(); /* delay slot */
6976b3d4eecSDavid S. Miller if (filter[i].jf) {
6986b3d4eecSDavid S. Miller emit_jump(f_offset);
6996b3d4eecSDavid S. Miller emit_nop();
7006b3d4eecSDavid S. Miller }
7016b3d4eecSDavid S. Miller break;
7026b3d4eecSDavid S. Miller }
7036b3d4eecSDavid S. Miller emit_branch(f_op, f_offset);
7046b3d4eecSDavid S. Miller emit_nop(); /* delay slot */
7056b3d4eecSDavid S. Miller break;
7066b3d4eecSDavid S. Miller
7076b3d4eecSDavid S. Miller default:
7086b3d4eecSDavid S. Miller /* hmm, too complex filter, give up with jit compiler */
7096b3d4eecSDavid S. Miller goto out;
7106b3d4eecSDavid S. Miller }
7116b3d4eecSDavid S. Miller ilen = (void *) prog - (void *) temp;
7126b3d4eecSDavid S. Miller if (image) {
7136b3d4eecSDavid S. Miller if (unlikely(proglen + ilen > oldproglen)) {
7146b3d4eecSDavid S. Miller pr_err("bpb_jit_compile fatal error\n");
7156b3d4eecSDavid S. Miller kfree(addrs);
7166b3d4eecSDavid S. Miller module_memfree(image);
7176b3d4eecSDavid S. Miller return;
7186b3d4eecSDavid S. Miller }
7196b3d4eecSDavid S. Miller memcpy(image + proglen, temp, ilen);
7206b3d4eecSDavid S. Miller }
7216b3d4eecSDavid S. Miller proglen += ilen;
7226b3d4eecSDavid S. Miller addrs[i] = proglen;
7236b3d4eecSDavid S. Miller prog = temp;
7246b3d4eecSDavid S. Miller }
7256b3d4eecSDavid S. Miller /* last bpf instruction is always a RET :
7266b3d4eecSDavid S. Miller * use it to give the cleanup instruction(s) addr
7276b3d4eecSDavid S. Miller */
7286b3d4eecSDavid S. Miller cleanup_addr = proglen - 8; /* jmpl; mov r_A,%o0; */
7296b3d4eecSDavid S. Miller if (seen_or_pass0 & SEEN_MEM)
7306b3d4eecSDavid S. Miller cleanup_addr -= 4; /* add %sp, X, %sp; */
7316b3d4eecSDavid S. Miller
7326b3d4eecSDavid S. Miller if (image) {
7336b3d4eecSDavid S. Miller if (proglen != oldproglen)
7346b3d4eecSDavid S. Miller pr_err("bpb_jit_compile proglen=%u != oldproglen=%u\n",
7356b3d4eecSDavid S. Miller proglen, oldproglen);
7366b3d4eecSDavid S. Miller break;
7376b3d4eecSDavid S. Miller }
7386b3d4eecSDavid S. Miller if (proglen == oldproglen) {
7396b3d4eecSDavid S. Miller image = module_alloc(proglen);
7406b3d4eecSDavid S. Miller if (!image)
7416b3d4eecSDavid S. Miller goto out;
7426b3d4eecSDavid S. Miller }
7436b3d4eecSDavid S. Miller oldproglen = proglen;
7446b3d4eecSDavid S. Miller }
7456b3d4eecSDavid S. Miller
7466b3d4eecSDavid S. Miller if (bpf_jit_enable > 1)
7476b3d4eecSDavid S. Miller bpf_jit_dump(flen, proglen, pass + 1, image);
7486b3d4eecSDavid S. Miller
7496b3d4eecSDavid S. Miller if (image) {
7506b3d4eecSDavid S. Miller fp->bpf_func = (void *)image;
7516b3d4eecSDavid S. Miller fp->jited = 1;
7526b3d4eecSDavid S. Miller }
7536b3d4eecSDavid S. Miller out:
7546b3d4eecSDavid S. Miller kfree(addrs);
7556b3d4eecSDavid S. Miller return;
7566b3d4eecSDavid S. Miller }
7576b3d4eecSDavid S. Miller
bpf_jit_free(struct bpf_prog * fp)7586b3d4eecSDavid S. Miller void bpf_jit_free(struct bpf_prog *fp)
7596b3d4eecSDavid S. Miller {
7606b3d4eecSDavid S. Miller if (fp->jited)
7616b3d4eecSDavid S. Miller module_memfree(fp->bpf_func);
7626b3d4eecSDavid S. Miller
7636b3d4eecSDavid S. Miller bpf_prog_unlock_free(fp);
7646b3d4eecSDavid S. Miller }
765