1ddecdfceSMircea Gherzan /* 239c13c20SShubham Bansal * Just-In-Time compiler for eBPF filters on 32bit ARM 3ddecdfceSMircea Gherzan * 439c13c20SShubham Bansal * Copyright (c) 2017 Shubham Bansal <illusionist.neo@gmail.com> 5ddecdfceSMircea Gherzan * Copyright (c) 2011 Mircea Gherzan <mgherzan@gmail.com> 6ddecdfceSMircea Gherzan * 7ddecdfceSMircea Gherzan * This program is free software; you can redistribute it and/or modify it 8ddecdfceSMircea Gherzan * under the terms of the GNU General Public License as published by the 9ddecdfceSMircea Gherzan * Free Software Foundation; version 2 of the License. 10ddecdfceSMircea Gherzan */ 11ddecdfceSMircea Gherzan 1239c13c20SShubham Bansal #include <linux/bpf.h> 13ddecdfceSMircea Gherzan #include <linux/bitops.h> 14ddecdfceSMircea Gherzan #include <linux/compiler.h> 15ddecdfceSMircea Gherzan #include <linux/errno.h> 16ddecdfceSMircea Gherzan #include <linux/filter.h> 17ddecdfceSMircea Gherzan #include <linux/netdevice.h> 18ddecdfceSMircea Gherzan #include <linux/string.h> 19ddecdfceSMircea Gherzan #include <linux/slab.h> 20bf0098f2SDaniel Borkmann #include <linux/if_vlan.h> 21e8b56d55SDaniel Borkmann 22ddecdfceSMircea Gherzan #include <asm/cacheflush.h> 23ddecdfceSMircea Gherzan #include <asm/hwcap.h> 243460743eSBen Dooks #include <asm/opcodes.h> 25*8c9602d3SRussell King #include <asm/system_info.h> 26ddecdfceSMircea Gherzan 27ddecdfceSMircea Gherzan #include "bpf_jit_32.h" 28ddecdfceSMircea Gherzan 2970ec3a6cSRussell King /* 300005e55aSRussell King * eBPF prog stack layout: 3170ec3a6cSRussell King * 3270ec3a6cSRussell King * high 330005e55aSRussell King * original ARM_SP => +-----+ 340005e55aSRussell King * | | callee saved registers 350005e55aSRussell King * +-----+ <= (BPF_FP + SCRATCH_SIZE) 3670ec3a6cSRussell King * | ... | eBPF JIT scratch space 370005e55aSRussell King * eBPF fp register => +-----+ 380005e55aSRussell King * (BPF_FP) | ... | eBPF prog stack 3970ec3a6cSRussell King * +-----+ 4070ec3a6cSRussell King * |RSVD | JIT scratchpad 410005e55aSRussell King * current ARM_SP => +-----+ <= (BPF_FP - STACK_SIZE + SCRATCH_SIZE) 4270ec3a6cSRussell King * | | 4370ec3a6cSRussell King * | ... | Function call stack 4470ec3a6cSRussell King * | | 4570ec3a6cSRussell King * +-----+ 4670ec3a6cSRussell King * low 470005e55aSRussell King * 480005e55aSRussell King * The callee saved registers depends on whether frame pointers are enabled. 490005e55aSRussell King * With frame pointers (to be compliant with the ABI): 500005e55aSRussell King * 510005e55aSRussell King * high 52bef8968dSRussell King * original ARM_SP => +--------------+ \ 530005e55aSRussell King * | pc | | 54bef8968dSRussell King * current ARM_FP => +--------------+ } callee saved registers 55bef8968dSRussell King * |r4-r9,fp,ip,lr| | 56bef8968dSRussell King * +--------------+ / 570005e55aSRussell King * low 580005e55aSRussell King * 590005e55aSRussell King * Without frame pointers: 600005e55aSRussell King * 610005e55aSRussell King * high 62bef8968dSRussell King * original ARM_SP => +--------------+ 63bef8968dSRussell King * | r4-r9,fp,lr | callee saved registers 64bef8968dSRussell King * current ARM_FP => +--------------+ 650005e55aSRussell King * low 6602088d9bSRussell King * 6702088d9bSRussell King * When popping registers off the stack at the end of a BPF function, we 6802088d9bSRussell King * reference them via the current ARM_FP register. 6970ec3a6cSRussell King */ 7002088d9bSRussell King #define CALLEE_MASK (1 << ARM_R4 | 1 << ARM_R5 | 1 << ARM_R6 | \ 71bef8968dSRussell King 1 << ARM_R7 | 1 << ARM_R8 | 1 << ARM_R9 | \ 7202088d9bSRussell King 1 << ARM_FP) 7302088d9bSRussell King #define CALLEE_PUSH_MASK (CALLEE_MASK | 1 << ARM_LR) 7402088d9bSRussell King #define CALLEE_POP_MASK (CALLEE_MASK | 1 << ARM_PC) 7570ec3a6cSRussell King 76d449ceb1SRussell King enum { 77d449ceb1SRussell King /* Stack layout - these are offsets from (top of stack - 4) */ 78d449ceb1SRussell King BPF_R2_HI, 79d449ceb1SRussell King BPF_R2_LO, 80d449ceb1SRussell King BPF_R3_HI, 81d449ceb1SRussell King BPF_R3_LO, 82d449ceb1SRussell King BPF_R4_HI, 83d449ceb1SRussell King BPF_R4_LO, 84d449ceb1SRussell King BPF_R5_HI, 85d449ceb1SRussell King BPF_R5_LO, 86d449ceb1SRussell King BPF_R7_HI, 87d449ceb1SRussell King BPF_R7_LO, 88d449ceb1SRussell King BPF_R8_HI, 89d449ceb1SRussell King BPF_R8_LO, 90d449ceb1SRussell King BPF_R9_HI, 91d449ceb1SRussell King BPF_R9_LO, 92d449ceb1SRussell King BPF_FP_HI, 93d449ceb1SRussell King BPF_FP_LO, 94d449ceb1SRussell King BPF_TC_HI, 95d449ceb1SRussell King BPF_TC_LO, 96d449ceb1SRussell King BPF_AX_HI, 97d449ceb1SRussell King BPF_AX_LO, 98d449ceb1SRussell King /* Stack space for BPF_REG_2, BPF_REG_3, BPF_REG_4, 99d449ceb1SRussell King * BPF_REG_5, BPF_REG_7, BPF_REG_8, BPF_REG_9, 100d449ceb1SRussell King * BPF_REG_FP and Tail call counts. 101d449ceb1SRussell King */ 102d449ceb1SRussell King BPF_JIT_SCRATCH_REGS, 103d449ceb1SRussell King }; 104d449ceb1SRussell King 1051c35ba12SRussell King /* 1061c35ba12SRussell King * Negative "register" values indicate the register is stored on the stack 1071c35ba12SRussell King * and are the offset from the top of the eBPF JIT scratch space. 1081c35ba12SRussell King */ 1091c35ba12SRussell King #define STACK_OFFSET(k) (-4 - (k) * 4) 110d449ceb1SRussell King #define SCRATCH_SIZE (BPF_JIT_SCRATCH_REGS * 4) 111d449ceb1SRussell King 11296cced4eSRussell King #ifdef CONFIG_FRAME_POINTER 11396cced4eSRussell King #define EBPF_SCRATCH_TO_ARM_FP(x) ((x) - 4 * hweight16(CALLEE_PUSH_MASK) - 4) 11496cced4eSRussell King #else 11596cced4eSRussell King #define EBPF_SCRATCH_TO_ARM_FP(x) (x) 11696cced4eSRussell King #endif 11796cced4eSRussell King 11839c13c20SShubham Bansal #define TMP_REG_1 (MAX_BPF_JIT_REG + 0) /* TEMP Register 1 */ 11939c13c20SShubham Bansal #define TMP_REG_2 (MAX_BPF_JIT_REG + 1) /* TEMP Register 2 */ 12039c13c20SShubham Bansal #define TCALL_CNT (MAX_BPF_JIT_REG + 2) /* Tail Call Count */ 12139c13c20SShubham Bansal 12239c13c20SShubham Bansal #define FLAG_IMM_OVERFLOW (1 << 0) 12339c13c20SShubham Bansal 124ddecdfceSMircea Gherzan /* 12539c13c20SShubham Bansal * Map eBPF registers to ARM 32bit registers or stack scratch space. 126ddecdfceSMircea Gherzan * 12739c13c20SShubham Bansal * 1. First argument is passed using the arm 32bit registers and rest of the 12839c13c20SShubham Bansal * arguments are passed on stack scratch space. 1292b589a7eSWang YanQing * 2. First callee-saved argument is mapped to arm 32 bit registers and rest 13039c13c20SShubham Bansal * arguments are mapped to scratch space on stack. 13139c13c20SShubham Bansal * 3. We need two 64 bit temp registers to do complex operations on eBPF 13239c13c20SShubham Bansal * registers. 13339c13c20SShubham Bansal * 13439c13c20SShubham Bansal * As the eBPF registers are all 64 bit registers and arm has only 32 bit 13539c13c20SShubham Bansal * registers, we have to map each eBPF registers with two arm 32 bit regs or 13639c13c20SShubham Bansal * scratch memory space and we have to build eBPF 64 bit register from those. 13739c13c20SShubham Bansal * 13839c13c20SShubham Bansal */ 1391c35ba12SRussell King static const s8 bpf2a32[][2] = { 14039c13c20SShubham Bansal /* return value from in-kernel function, and exit value from eBPF */ 14139c13c20SShubham Bansal [BPF_REG_0] = {ARM_R1, ARM_R0}, 14239c13c20SShubham Bansal /* arguments from eBPF program to in-kernel function */ 14339c13c20SShubham Bansal [BPF_REG_1] = {ARM_R3, ARM_R2}, 14439c13c20SShubham Bansal /* Stored on stack scratch space */ 145d449ceb1SRussell King [BPF_REG_2] = {STACK_OFFSET(BPF_R2_HI), STACK_OFFSET(BPF_R2_LO)}, 146d449ceb1SRussell King [BPF_REG_3] = {STACK_OFFSET(BPF_R3_HI), STACK_OFFSET(BPF_R3_LO)}, 147d449ceb1SRussell King [BPF_REG_4] = {STACK_OFFSET(BPF_R4_HI), STACK_OFFSET(BPF_R4_LO)}, 148d449ceb1SRussell King [BPF_REG_5] = {STACK_OFFSET(BPF_R5_HI), STACK_OFFSET(BPF_R5_LO)}, 14939c13c20SShubham Bansal /* callee saved registers that in-kernel function will preserve */ 15039c13c20SShubham Bansal [BPF_REG_6] = {ARM_R5, ARM_R4}, 15139c13c20SShubham Bansal /* Stored on stack scratch space */ 152d449ceb1SRussell King [BPF_REG_7] = {STACK_OFFSET(BPF_R7_HI), STACK_OFFSET(BPF_R7_LO)}, 153d449ceb1SRussell King [BPF_REG_8] = {STACK_OFFSET(BPF_R8_HI), STACK_OFFSET(BPF_R8_LO)}, 154d449ceb1SRussell King [BPF_REG_9] = {STACK_OFFSET(BPF_R9_HI), STACK_OFFSET(BPF_R9_LO)}, 15539c13c20SShubham Bansal /* Read only Frame Pointer to access Stack */ 156d449ceb1SRussell King [BPF_REG_FP] = {STACK_OFFSET(BPF_FP_HI), STACK_OFFSET(BPF_FP_LO)}, 15739c13c20SShubham Bansal /* Temporary Register for internal BPF JIT, can be used 15839c13c20SShubham Bansal * for constant blindings and others. 15939c13c20SShubham Bansal */ 16039c13c20SShubham Bansal [TMP_REG_1] = {ARM_R7, ARM_R6}, 161bef8968dSRussell King [TMP_REG_2] = {ARM_R9, ARM_R8}, 16239c13c20SShubham Bansal /* Tail call count. Stored on stack scratch space. */ 163d449ceb1SRussell King [TCALL_CNT] = {STACK_OFFSET(BPF_TC_HI), STACK_OFFSET(BPF_TC_LO)}, 16439c13c20SShubham Bansal /* temporary register for blinding constants. 16539c13c20SShubham Bansal * Stored on stack scratch space. 16639c13c20SShubham Bansal */ 167d449ceb1SRussell King [BPF_REG_AX] = {STACK_OFFSET(BPF_AX_HI), STACK_OFFSET(BPF_AX_LO)}, 16839c13c20SShubham Bansal }; 16939c13c20SShubham Bansal 17039c13c20SShubham Bansal #define dst_lo dst[1] 17139c13c20SShubham Bansal #define dst_hi dst[0] 17239c13c20SShubham Bansal #define src_lo src[1] 17339c13c20SShubham Bansal #define src_hi src[0] 17439c13c20SShubham Bansal 17539c13c20SShubham Bansal /* 17639c13c20SShubham Bansal * JIT Context: 17739c13c20SShubham Bansal * 17839c13c20SShubham Bansal * prog : bpf_prog 17939c13c20SShubham Bansal * idx : index of current last JITed instruction. 18039c13c20SShubham Bansal * prologue_bytes : bytes used in prologue. 18139c13c20SShubham Bansal * epilogue_offset : offset of epilogue starting. 18239c13c20SShubham Bansal * offsets : array of eBPF instruction offsets in 18339c13c20SShubham Bansal * JITed code. 18439c13c20SShubham Bansal * target : final JITed code. 18539c13c20SShubham Bansal * epilogue_bytes : no of bytes used in epilogue. 18639c13c20SShubham Bansal * imm_count : no of immediate counts used for global 18739c13c20SShubham Bansal * variables. 18839c13c20SShubham Bansal * imms : array of global variable addresses. 189ddecdfceSMircea Gherzan */ 190ddecdfceSMircea Gherzan 191ddecdfceSMircea Gherzan struct jit_ctx { 19239c13c20SShubham Bansal const struct bpf_prog *prog; 19339c13c20SShubham Bansal unsigned int idx; 19439c13c20SShubham Bansal unsigned int prologue_bytes; 19539c13c20SShubham Bansal unsigned int epilogue_offset; 196*8c9602d3SRussell King unsigned int cpu_architecture; 197ddecdfceSMircea Gherzan u32 flags; 198ddecdfceSMircea Gherzan u32 *offsets; 199ddecdfceSMircea Gherzan u32 *target; 20039c13c20SShubham Bansal u32 stack_size; 201ddecdfceSMircea Gherzan #if __LINUX_ARM_ARCH__ < 7 202ddecdfceSMircea Gherzan u16 epilogue_bytes; 203ddecdfceSMircea Gherzan u16 imm_count; 204ddecdfceSMircea Gherzan u32 *imms; 205ddecdfceSMircea Gherzan #endif 206ddecdfceSMircea Gherzan }; 207ddecdfceSMircea Gherzan 208ddecdfceSMircea Gherzan /* 2094560cdffSNicolas Schichan * Wrappers which handle both OABI and EABI and assures Thumb2 interworking 210ddecdfceSMircea Gherzan * (where the assembly routines like __aeabi_uidiv could cause problems). 211ddecdfceSMircea Gherzan */ 21239c13c20SShubham Bansal static u32 jit_udiv32(u32 dividend, u32 divisor) 213ddecdfceSMircea Gherzan { 214ddecdfceSMircea Gherzan return dividend / divisor; 215ddecdfceSMircea Gherzan } 216ddecdfceSMircea Gherzan 21739c13c20SShubham Bansal static u32 jit_mod32(u32 dividend, u32 divisor) 2184560cdffSNicolas Schichan { 2194560cdffSNicolas Schichan return dividend % divisor; 2204560cdffSNicolas Schichan } 2214560cdffSNicolas Schichan 222ddecdfceSMircea Gherzan static inline void _emit(int cond, u32 inst, struct jit_ctx *ctx) 223ddecdfceSMircea Gherzan { 2243460743eSBen Dooks inst |= (cond << 28); 2253460743eSBen Dooks inst = __opcode_to_mem_arm(inst); 2263460743eSBen Dooks 227ddecdfceSMircea Gherzan if (ctx->target != NULL) 2283460743eSBen Dooks ctx->target[ctx->idx] = inst; 229ddecdfceSMircea Gherzan 230ddecdfceSMircea Gherzan ctx->idx++; 231ddecdfceSMircea Gherzan } 232ddecdfceSMircea Gherzan 233ddecdfceSMircea Gherzan /* 234ddecdfceSMircea Gherzan * Emit an instruction that will be executed unconditionally. 235ddecdfceSMircea Gherzan */ 236ddecdfceSMircea Gherzan static inline void emit(u32 inst, struct jit_ctx *ctx) 237ddecdfceSMircea Gherzan { 238ddecdfceSMircea Gherzan _emit(ARM_COND_AL, inst, ctx); 239ddecdfceSMircea Gherzan } 240ddecdfceSMircea Gherzan 24139c13c20SShubham Bansal /* 2421ca3b17bSRussell King * This is rather horrid, but necessary to convert an integer constant 2431ca3b17bSRussell King * to an immediate operand for the opcodes, and be able to detect at 2441ca3b17bSRussell King * build time whether the constant can't be converted (iow, usable in 2451ca3b17bSRussell King * BUILD_BUG_ON()). 2461ca3b17bSRussell King */ 2471ca3b17bSRussell King #define imm12val(v, s) (rol32(v, (s)) | (s) << 7) 2481ca3b17bSRussell King #define const_imm8m(x) \ 2491ca3b17bSRussell King ({ int r; \ 2501ca3b17bSRussell King u32 v = (x); \ 2511ca3b17bSRussell King if (!(v & ~0x000000ff)) \ 2521ca3b17bSRussell King r = imm12val(v, 0); \ 2531ca3b17bSRussell King else if (!(v & ~0xc000003f)) \ 2541ca3b17bSRussell King r = imm12val(v, 2); \ 2551ca3b17bSRussell King else if (!(v & ~0xf000000f)) \ 2561ca3b17bSRussell King r = imm12val(v, 4); \ 2571ca3b17bSRussell King else if (!(v & ~0xfc000003)) \ 2581ca3b17bSRussell King r = imm12val(v, 6); \ 2591ca3b17bSRussell King else if (!(v & ~0xff000000)) \ 2601ca3b17bSRussell King r = imm12val(v, 8); \ 2611ca3b17bSRussell King else if (!(v & ~0x3fc00000)) \ 2621ca3b17bSRussell King r = imm12val(v, 10); \ 2631ca3b17bSRussell King else if (!(v & ~0x0ff00000)) \ 2641ca3b17bSRussell King r = imm12val(v, 12); \ 2651ca3b17bSRussell King else if (!(v & ~0x03fc0000)) \ 2661ca3b17bSRussell King r = imm12val(v, 14); \ 2671ca3b17bSRussell King else if (!(v & ~0x00ff0000)) \ 2681ca3b17bSRussell King r = imm12val(v, 16); \ 2691ca3b17bSRussell King else if (!(v & ~0x003fc000)) \ 2701ca3b17bSRussell King r = imm12val(v, 18); \ 2711ca3b17bSRussell King else if (!(v & ~0x000ff000)) \ 2721ca3b17bSRussell King r = imm12val(v, 20); \ 2731ca3b17bSRussell King else if (!(v & ~0x0003fc00)) \ 2741ca3b17bSRussell King r = imm12val(v, 22); \ 2751ca3b17bSRussell King else if (!(v & ~0x0000ff00)) \ 2761ca3b17bSRussell King r = imm12val(v, 24); \ 2771ca3b17bSRussell King else if (!(v & ~0x00003fc0)) \ 2781ca3b17bSRussell King r = imm12val(v, 26); \ 2791ca3b17bSRussell King else if (!(v & ~0x00000ff0)) \ 2801ca3b17bSRussell King r = imm12val(v, 28); \ 2811ca3b17bSRussell King else if (!(v & ~0x000003fc)) \ 2821ca3b17bSRussell King r = imm12val(v, 30); \ 2831ca3b17bSRussell King else \ 2841ca3b17bSRussell King r = -1; \ 2851ca3b17bSRussell King r; }) 2861ca3b17bSRussell King 2871ca3b17bSRussell King /* 28839c13c20SShubham Bansal * Checks if immediate value can be converted to imm12(12 bits) value. 28939c13c20SShubham Bansal */ 2901ca3b17bSRussell King static int imm8m(u32 x) 291ddecdfceSMircea Gherzan { 29239c13c20SShubham Bansal u32 rot; 293ddecdfceSMircea Gherzan 29439c13c20SShubham Bansal for (rot = 0; rot < 16; rot++) 29539c13c20SShubham Bansal if ((x & ~ror32(0xff, 2 * rot)) == 0) 29639c13c20SShubham Bansal return rol32(x, 2 * rot) | (rot << 8); 29739c13c20SShubham Bansal return -1; 298ddecdfceSMircea Gherzan } 299ddecdfceSMircea Gherzan 3001ca3b17bSRussell King #define imm8m(x) (__builtin_constant_p(x) ? const_imm8m(x) : imm8m(x)) 3011ca3b17bSRussell King 302a8ef95a0SRussell King static u32 arm_bpf_ldst_imm12(u32 op, u8 rt, u8 rn, s16 imm12) 303a8ef95a0SRussell King { 304a8ef95a0SRussell King op |= rt << 12 | rn << 16; 305a8ef95a0SRussell King if (imm12 >= 0) 306a8ef95a0SRussell King op |= ARM_INST_LDST__U; 307a8ef95a0SRussell King else 308a8ef95a0SRussell King imm12 = -imm12; 309828e2b90SRussell King return op | (imm12 & ARM_INST_LDST__IMM12); 310a8ef95a0SRussell King } 311a8ef95a0SRussell King 312a8ef95a0SRussell King static u32 arm_bpf_ldst_imm8(u32 op, u8 rt, u8 rn, s16 imm8) 313a8ef95a0SRussell King { 314a8ef95a0SRussell King op |= rt << 12 | rn << 16; 315a8ef95a0SRussell King if (imm8 >= 0) 316a8ef95a0SRussell King op |= ARM_INST_LDST__U; 317a8ef95a0SRussell King else 318a8ef95a0SRussell King imm8 = -imm8; 319a8ef95a0SRussell King return op | (imm8 & 0xf0) << 4 | (imm8 & 0x0f); 320a8ef95a0SRussell King } 321a8ef95a0SRussell King 322a8ef95a0SRussell King #define ARM_LDR_I(rt, rn, off) arm_bpf_ldst_imm12(ARM_INST_LDR_I, rt, rn, off) 323a8ef95a0SRussell King #define ARM_LDRB_I(rt, rn, off) arm_bpf_ldst_imm12(ARM_INST_LDRB_I, rt, rn, off) 324*8c9602d3SRussell King #define ARM_LDRD_I(rt, rn, off) arm_bpf_ldst_imm8(ARM_INST_LDRD_I, rt, rn, off) 325a8ef95a0SRussell King #define ARM_LDRH_I(rt, rn, off) arm_bpf_ldst_imm8(ARM_INST_LDRH_I, rt, rn, off) 326a8ef95a0SRussell King 327a8ef95a0SRussell King #define ARM_STR_I(rt, rn, off) arm_bpf_ldst_imm12(ARM_INST_STR_I, rt, rn, off) 328a8ef95a0SRussell King #define ARM_STRB_I(rt, rn, off) arm_bpf_ldst_imm12(ARM_INST_STRB_I, rt, rn, off) 329*8c9602d3SRussell King #define ARM_STRD_I(rt, rn, off) arm_bpf_ldst_imm8(ARM_INST_STRD_I, rt, rn, off) 330a8ef95a0SRussell King #define ARM_STRH_I(rt, rn, off) arm_bpf_ldst_imm8(ARM_INST_STRH_I, rt, rn, off) 331a8ef95a0SRussell King 33239c13c20SShubham Bansal /* 33339c13c20SShubham Bansal * Initializes the JIT space with undefined instructions. 33439c13c20SShubham Bansal */ 33555309dd3SDaniel Borkmann static void jit_fill_hole(void *area, unsigned int size) 33655309dd3SDaniel Borkmann { 337e8b56d55SDaniel Borkmann u32 *ptr; 33855309dd3SDaniel Borkmann /* We are guaranteed to have aligned memory. */ 33955309dd3SDaniel Borkmann for (ptr = area; size >= sizeof(u32); size -= sizeof(u32)) 340e8b56d55SDaniel Borkmann *ptr++ = __opcode_to_mem_arm(ARM_INST_UDF); 34155309dd3SDaniel Borkmann } 34255309dd3SDaniel Borkmann 343d1220efdSRussell King #if defined(CONFIG_AEABI) && (__LINUX_ARM_ARCH__ >= 5) 344d1220efdSRussell King /* EABI requires the stack to be aligned to 64-bit boundaries */ 345d1220efdSRussell King #define STACK_ALIGNMENT 8 346d1220efdSRussell King #else 347d1220efdSRussell King /* Stack must be aligned to 32-bit boundaries */ 348d1220efdSRussell King #define STACK_ALIGNMENT 4 349d1220efdSRussell King #endif 350ddecdfceSMircea Gherzan 35139c13c20SShubham Bansal /* total stack size used in JITed code */ 35238ca9306SDaniel Borkmann #define _STACK_SIZE (ctx->prog->aux->stack_depth + SCRATCH_SIZE) 353d1220efdSRussell King #define STACK_SIZE ALIGN(_STACK_SIZE, STACK_ALIGNMENT) 354ddecdfceSMircea Gherzan 355ddecdfceSMircea Gherzan #if __LINUX_ARM_ARCH__ < 7 356ddecdfceSMircea Gherzan 357ddecdfceSMircea Gherzan static u16 imm_offset(u32 k, struct jit_ctx *ctx) 358ddecdfceSMircea Gherzan { 35939c13c20SShubham Bansal unsigned int i = 0, offset; 360ddecdfceSMircea Gherzan u16 imm; 361ddecdfceSMircea Gherzan 362ddecdfceSMircea Gherzan /* on the "fake" run we just count them (duplicates included) */ 363ddecdfceSMircea Gherzan if (ctx->target == NULL) { 364ddecdfceSMircea Gherzan ctx->imm_count++; 365ddecdfceSMircea Gherzan return 0; 366ddecdfceSMircea Gherzan } 367ddecdfceSMircea Gherzan 368ddecdfceSMircea Gherzan while ((i < ctx->imm_count) && ctx->imms[i]) { 369ddecdfceSMircea Gherzan if (ctx->imms[i] == k) 370ddecdfceSMircea Gherzan break; 371ddecdfceSMircea Gherzan i++; 372ddecdfceSMircea Gherzan } 373ddecdfceSMircea Gherzan 374ddecdfceSMircea Gherzan if (ctx->imms[i] == 0) 375ddecdfceSMircea Gherzan ctx->imms[i] = k; 376ddecdfceSMircea Gherzan 377ddecdfceSMircea Gherzan /* constants go just after the epilogue */ 37839c13c20SShubham Bansal offset = ctx->offsets[ctx->prog->len - 1] * 4; 379ddecdfceSMircea Gherzan offset += ctx->prologue_bytes; 380ddecdfceSMircea Gherzan offset += ctx->epilogue_bytes; 381ddecdfceSMircea Gherzan offset += i * 4; 382ddecdfceSMircea Gherzan 383ddecdfceSMircea Gherzan ctx->target[offset / 4] = k; 384ddecdfceSMircea Gherzan 385ddecdfceSMircea Gherzan /* PC in ARM mode == address of the instruction + 8 */ 386ddecdfceSMircea Gherzan imm = offset - (8 + ctx->idx * 4); 387ddecdfceSMircea Gherzan 3880b59d880SNicolas Schichan if (imm & ~0xfff) { 3890b59d880SNicolas Schichan /* 3900b59d880SNicolas Schichan * literal pool is too far, signal it into flags. we 3910b59d880SNicolas Schichan * can only detect it on the second pass unfortunately. 3920b59d880SNicolas Schichan */ 3930b59d880SNicolas Schichan ctx->flags |= FLAG_IMM_OVERFLOW; 3940b59d880SNicolas Schichan return 0; 3950b59d880SNicolas Schichan } 3960b59d880SNicolas Schichan 397ddecdfceSMircea Gherzan return imm; 398ddecdfceSMircea Gherzan } 399ddecdfceSMircea Gherzan 400ddecdfceSMircea Gherzan #endif /* __LINUX_ARM_ARCH__ */ 401ddecdfceSMircea Gherzan 40239c13c20SShubham Bansal static inline int bpf2a32_offset(int bpf_to, int bpf_from, 40339c13c20SShubham Bansal const struct jit_ctx *ctx) { 40439c13c20SShubham Bansal int to, from; 40539c13c20SShubham Bansal 40639c13c20SShubham Bansal if (ctx->target == NULL) 40739c13c20SShubham Bansal return 0; 40839c13c20SShubham Bansal to = ctx->offsets[bpf_to]; 40939c13c20SShubham Bansal from = ctx->offsets[bpf_from]; 41039c13c20SShubham Bansal 41139c13c20SShubham Bansal return to - from - 1; 41239c13c20SShubham Bansal } 41339c13c20SShubham Bansal 414ddecdfceSMircea Gherzan /* 415ddecdfceSMircea Gherzan * Move an immediate that's not an imm8m to a core register. 416ddecdfceSMircea Gherzan */ 41739c13c20SShubham Bansal static inline void emit_mov_i_no8m(const u8 rd, u32 val, struct jit_ctx *ctx) 418ddecdfceSMircea Gherzan { 419ddecdfceSMircea Gherzan #if __LINUX_ARM_ARCH__ < 7 420ddecdfceSMircea Gherzan emit(ARM_LDR_I(rd, ARM_PC, imm_offset(val, ctx)), ctx); 421ddecdfceSMircea Gherzan #else 422ddecdfceSMircea Gherzan emit(ARM_MOVW(rd, val & 0xffff), ctx); 423ddecdfceSMircea Gherzan if (val > 0xffff) 424ddecdfceSMircea Gherzan emit(ARM_MOVT(rd, val >> 16), ctx); 425ddecdfceSMircea Gherzan #endif 426ddecdfceSMircea Gherzan } 427ddecdfceSMircea Gherzan 42839c13c20SShubham Bansal static inline void emit_mov_i(const u8 rd, u32 val, struct jit_ctx *ctx) 429ddecdfceSMircea Gherzan { 430ddecdfceSMircea Gherzan int imm12 = imm8m(val); 431ddecdfceSMircea Gherzan 432ddecdfceSMircea Gherzan if (imm12 >= 0) 433ddecdfceSMircea Gherzan emit(ARM_MOV_I(rd, imm12), ctx); 434ddecdfceSMircea Gherzan else 435ddecdfceSMircea Gherzan emit_mov_i_no8m(rd, val, ctx); 436ddecdfceSMircea Gherzan } 437ddecdfceSMircea Gherzan 438e9062481SRussell King static void emit_bx_r(u8 tgt_reg, struct jit_ctx *ctx) 439ddecdfceSMircea Gherzan { 440ddecdfceSMircea Gherzan if (elf_hwcap & HWCAP_THUMB) 441ddecdfceSMircea Gherzan emit(ARM_BX(tgt_reg), ctx); 442ddecdfceSMircea Gherzan else 443ddecdfceSMircea Gherzan emit(ARM_MOV_R(ARM_PC, tgt_reg), ctx); 444e9062481SRussell King } 445e9062481SRussell King 446ddecdfceSMircea Gherzan static inline void emit_blx_r(u8 tgt_reg, struct jit_ctx *ctx) 447ddecdfceSMircea Gherzan { 448ddecdfceSMircea Gherzan #if __LINUX_ARM_ARCH__ < 5 449ddecdfceSMircea Gherzan emit(ARM_MOV_R(ARM_LR, ARM_PC), ctx); 450e9062481SRussell King emit_bx_r(tgt_reg, ctx); 451ddecdfceSMircea Gherzan #else 452ddecdfceSMircea Gherzan emit(ARM_BLX_R(tgt_reg), ctx); 453ddecdfceSMircea Gherzan #endif 454ddecdfceSMircea Gherzan } 455ddecdfceSMircea Gherzan 45639c13c20SShubham Bansal static inline int epilogue_offset(const struct jit_ctx *ctx) 457ddecdfceSMircea Gherzan { 45839c13c20SShubham Bansal int to, from; 45939c13c20SShubham Bansal /* No need for 1st dummy run */ 46039c13c20SShubham Bansal if (ctx->target == NULL) 46139c13c20SShubham Bansal return 0; 46239c13c20SShubham Bansal to = ctx->epilogue_offset; 46339c13c20SShubham Bansal from = ctx->idx; 46439c13c20SShubham Bansal 46539c13c20SShubham Bansal return to - from - 2; 46639c13c20SShubham Bansal } 46739c13c20SShubham Bansal 46839c13c20SShubham Bansal static inline void emit_udivmod(u8 rd, u8 rm, u8 rn, struct jit_ctx *ctx, u8 op) 46939c13c20SShubham Bansal { 4701c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 47139c13c20SShubham Bansal 472ddecdfceSMircea Gherzan #if __LINUX_ARM_ARCH__ == 7 473ddecdfceSMircea Gherzan if (elf_hwcap & HWCAP_IDIVA) { 47439c13c20SShubham Bansal if (op == BPF_DIV) 475ddecdfceSMircea Gherzan emit(ARM_UDIV(rd, rm, rn), ctx); 4764560cdffSNicolas Schichan else { 47739c13c20SShubham Bansal emit(ARM_UDIV(ARM_IP, rm, rn), ctx); 47839c13c20SShubham Bansal emit(ARM_MLS(rd, rn, ARM_IP, rm), ctx); 4794560cdffSNicolas Schichan } 480ddecdfceSMircea Gherzan return; 481ddecdfceSMircea Gherzan } 482ddecdfceSMircea Gherzan #endif 48319fc99d0SNicolas Schichan 48419fc99d0SNicolas Schichan /* 48539c13c20SShubham Bansal * For BPF_ALU | BPF_DIV | BPF_K instructions 48639c13c20SShubham Bansal * As ARM_R1 and ARM_R0 contains 1st argument of bpf 48739c13c20SShubham Bansal * function, we need to save it on caller side to save 48839c13c20SShubham Bansal * it from getting destroyed within callee. 48939c13c20SShubham Bansal * After the return from the callee, we restore ARM_R0 49039c13c20SShubham Bansal * ARM_R1. 49119fc99d0SNicolas Schichan */ 49239c13c20SShubham Bansal if (rn != ARM_R1) { 49339c13c20SShubham Bansal emit(ARM_MOV_R(tmp[0], ARM_R1), ctx); 494ddecdfceSMircea Gherzan emit(ARM_MOV_R(ARM_R1, rn), ctx); 49539c13c20SShubham Bansal } 49639c13c20SShubham Bansal if (rm != ARM_R0) { 49739c13c20SShubham Bansal emit(ARM_MOV_R(tmp[1], ARM_R0), ctx); 49819fc99d0SNicolas Schichan emit(ARM_MOV_R(ARM_R0, rm), ctx); 49939c13c20SShubham Bansal } 500ddecdfceSMircea Gherzan 50139c13c20SShubham Bansal /* Call appropriate function */ 50239c13c20SShubham Bansal emit_mov_i(ARM_IP, op == BPF_DIV ? 50339c13c20SShubham Bansal (u32)jit_udiv32 : (u32)jit_mod32, ctx); 50439c13c20SShubham Bansal emit_blx_r(ARM_IP, ctx); 505ddecdfceSMircea Gherzan 50639c13c20SShubham Bansal /* Save return value */ 507ddecdfceSMircea Gherzan if (rd != ARM_R0) 508ddecdfceSMircea Gherzan emit(ARM_MOV_R(rd, ARM_R0), ctx); 50939c13c20SShubham Bansal 51039c13c20SShubham Bansal /* Restore ARM_R0 and ARM_R1 */ 51139c13c20SShubham Bansal if (rn != ARM_R1) 51239c13c20SShubham Bansal emit(ARM_MOV_R(ARM_R1, tmp[0]), ctx); 51339c13c20SShubham Bansal if (rm != ARM_R0) 51439c13c20SShubham Bansal emit(ARM_MOV_R(ARM_R0, tmp[1]), ctx); 515ddecdfceSMircea Gherzan } 516ddecdfceSMircea Gherzan 51747b9c3bfSRussell King /* Is the translated BPF register on stack? */ 51847b9c3bfSRussell King static bool is_stacked(s8 reg) 519ddecdfceSMircea Gherzan { 52047b9c3bfSRussell King return reg < 0; 521ddecdfceSMircea Gherzan } 522ddecdfceSMircea Gherzan 5237a987025SRussell King /* If a BPF register is on the stack (stk is true), load it to the 5247a987025SRussell King * supplied temporary register and return the temporary register 5257a987025SRussell King * for subsequent operations, otherwise just use the CPU register. 5267a987025SRussell King */ 5277a987025SRussell King static s8 arm_bpf_get_reg32(s8 reg, s8 tmp, struct jit_ctx *ctx) 5287a987025SRussell King { 5297a987025SRussell King if (is_stacked(reg)) { 53096cced4eSRussell King emit(ARM_LDR_I(tmp, ARM_FP, EBPF_SCRATCH_TO_ARM_FP(reg)), ctx); 5317a987025SRussell King reg = tmp; 5327a987025SRussell King } 5337a987025SRussell King return reg; 5347a987025SRussell King } 5357a987025SRussell King 536a6eccac5SRussell King static const s8 *arm_bpf_get_reg64(const s8 *reg, const s8 *tmp, 537a6eccac5SRussell King struct jit_ctx *ctx) 538a6eccac5SRussell King { 539a6eccac5SRussell King if (is_stacked(reg[1])) { 540*8c9602d3SRussell King if (__LINUX_ARM_ARCH__ >= 6 || 541*8c9602d3SRussell King ctx->cpu_architecture >= CPU_ARCH_ARMv5TE) { 542*8c9602d3SRussell King emit(ARM_LDRD_I(tmp[1], ARM_FP, 543*8c9602d3SRussell King EBPF_SCRATCH_TO_ARM_FP(reg[1])), ctx); 544*8c9602d3SRussell King } else { 545*8c9602d3SRussell King emit(ARM_LDR_I(tmp[1], ARM_FP, 546*8c9602d3SRussell King EBPF_SCRATCH_TO_ARM_FP(reg[1])), ctx); 547*8c9602d3SRussell King emit(ARM_LDR_I(tmp[0], ARM_FP, 548*8c9602d3SRussell King EBPF_SCRATCH_TO_ARM_FP(reg[0])), ctx); 549*8c9602d3SRussell King } 550a6eccac5SRussell King reg = tmp; 551a6eccac5SRussell King } 552a6eccac5SRussell King return reg; 553a6eccac5SRussell King } 554a6eccac5SRussell King 5557a987025SRussell King /* If a BPF register is on the stack (stk is true), save the register 5567a987025SRussell King * back to the stack. If the source register is not the same, then 5577a987025SRussell King * move it into the correct register. 5587a987025SRussell King */ 5597a987025SRussell King static void arm_bpf_put_reg32(s8 reg, s8 src, struct jit_ctx *ctx) 5607a987025SRussell King { 5617a987025SRussell King if (is_stacked(reg)) 56296cced4eSRussell King emit(ARM_STR_I(src, ARM_FP, EBPF_SCRATCH_TO_ARM_FP(reg)), ctx); 5637a987025SRussell King else if (reg != src) 5647a987025SRussell King emit(ARM_MOV_R(reg, src), ctx); 5657a987025SRussell King } 5667a987025SRussell King 567a6eccac5SRussell King static void arm_bpf_put_reg64(const s8 *reg, const s8 *src, 568a6eccac5SRussell King struct jit_ctx *ctx) 569a6eccac5SRussell King { 570a6eccac5SRussell King if (is_stacked(reg[1])) { 571*8c9602d3SRussell King if (__LINUX_ARM_ARCH__ >= 6 || 572*8c9602d3SRussell King ctx->cpu_architecture >= CPU_ARCH_ARMv5TE) { 573*8c9602d3SRussell King emit(ARM_STRD_I(src[1], ARM_FP, 574*8c9602d3SRussell King EBPF_SCRATCH_TO_ARM_FP(reg[1])), ctx); 575*8c9602d3SRussell King } else { 576*8c9602d3SRussell King emit(ARM_STR_I(src[1], ARM_FP, 577*8c9602d3SRussell King EBPF_SCRATCH_TO_ARM_FP(reg[1])), ctx); 578*8c9602d3SRussell King emit(ARM_STR_I(src[0], ARM_FP, 579*8c9602d3SRussell King EBPF_SCRATCH_TO_ARM_FP(reg[0])), ctx); 580*8c9602d3SRussell King } 581a6eccac5SRussell King } else { 582a6eccac5SRussell King if (reg[1] != src[1]) 583a6eccac5SRussell King emit(ARM_MOV_R(reg[1], src[1]), ctx); 584a6eccac5SRussell King if (reg[0] != src[0]) 585a6eccac5SRussell King emit(ARM_MOV_R(reg[0], src[0]), ctx); 586a6eccac5SRussell King } 587a6eccac5SRussell King } 588a6eccac5SRussell King 5891c35ba12SRussell King static inline void emit_a32_mov_i(const s8 dst, const u32 val, 59047b9c3bfSRussell King struct jit_ctx *ctx) 591ddecdfceSMircea Gherzan { 5921c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 593ddecdfceSMircea Gherzan 59447b9c3bfSRussell King if (is_stacked(dst)) { 59539c13c20SShubham Bansal emit_mov_i(tmp[1], val, ctx); 5967a987025SRussell King arm_bpf_put_reg32(dst, tmp[1], ctx); 59739c13c20SShubham Bansal } else { 59839c13c20SShubham Bansal emit_mov_i(dst, val, ctx); 59939c13c20SShubham Bansal } 60039c13c20SShubham Bansal } 60134805931SDaniel Borkmann 60239c13c20SShubham Bansal /* Sign extended move */ 6031c35ba12SRussell King static inline void emit_a32_mov_i64(const bool is64, const s8 dst[], 60447b9c3bfSRussell King const u32 val, struct jit_ctx *ctx) { 60539c13c20SShubham Bansal u32 hi = 0; 606ddecdfceSMircea Gherzan 60739c13c20SShubham Bansal if (is64 && (val & (1<<31))) 60839c13c20SShubham Bansal hi = (u32)~0; 60947b9c3bfSRussell King emit_a32_mov_i(dst_lo, val, ctx); 61047b9c3bfSRussell King emit_a32_mov_i(dst_hi, hi, ctx); 61139c13c20SShubham Bansal } 61239c13c20SShubham Bansal 61339c13c20SShubham Bansal static inline void emit_a32_add_r(const u8 dst, const u8 src, 61439c13c20SShubham Bansal const bool is64, const bool hi, 61539c13c20SShubham Bansal struct jit_ctx *ctx) { 61639c13c20SShubham Bansal /* 64 bit : 61739c13c20SShubham Bansal * adds dst_lo, dst_lo, src_lo 61839c13c20SShubham Bansal * adc dst_hi, dst_hi, src_hi 61939c13c20SShubham Bansal * 32 bit : 62039c13c20SShubham Bansal * add dst_lo, dst_lo, src_lo 62139c13c20SShubham Bansal */ 62239c13c20SShubham Bansal if (!hi && is64) 62339c13c20SShubham Bansal emit(ARM_ADDS_R(dst, dst, src), ctx); 62439c13c20SShubham Bansal else if (hi && is64) 62539c13c20SShubham Bansal emit(ARM_ADC_R(dst, dst, src), ctx); 62639c13c20SShubham Bansal else 62739c13c20SShubham Bansal emit(ARM_ADD_R(dst, dst, src), ctx); 62839c13c20SShubham Bansal } 62939c13c20SShubham Bansal 63039c13c20SShubham Bansal static inline void emit_a32_sub_r(const u8 dst, const u8 src, 63139c13c20SShubham Bansal const bool is64, const bool hi, 63239c13c20SShubham Bansal struct jit_ctx *ctx) { 63339c13c20SShubham Bansal /* 64 bit : 63439c13c20SShubham Bansal * subs dst_lo, dst_lo, src_lo 63539c13c20SShubham Bansal * sbc dst_hi, dst_hi, src_hi 63639c13c20SShubham Bansal * 32 bit : 63739c13c20SShubham Bansal * sub dst_lo, dst_lo, src_lo 63839c13c20SShubham Bansal */ 63939c13c20SShubham Bansal if (!hi && is64) 64039c13c20SShubham Bansal emit(ARM_SUBS_R(dst, dst, src), ctx); 64139c13c20SShubham Bansal else if (hi && is64) 64239c13c20SShubham Bansal emit(ARM_SBC_R(dst, dst, src), ctx); 64339c13c20SShubham Bansal else 64439c13c20SShubham Bansal emit(ARM_SUB_R(dst, dst, src), ctx); 64539c13c20SShubham Bansal } 64639c13c20SShubham Bansal 64739c13c20SShubham Bansal static inline void emit_alu_r(const u8 dst, const u8 src, const bool is64, 64839c13c20SShubham Bansal const bool hi, const u8 op, struct jit_ctx *ctx){ 64939c13c20SShubham Bansal switch (BPF_OP(op)) { 65039c13c20SShubham Bansal /* dst = dst + src */ 65139c13c20SShubham Bansal case BPF_ADD: 65239c13c20SShubham Bansal emit_a32_add_r(dst, src, is64, hi, ctx); 65339c13c20SShubham Bansal break; 65439c13c20SShubham Bansal /* dst = dst - src */ 65539c13c20SShubham Bansal case BPF_SUB: 65639c13c20SShubham Bansal emit_a32_sub_r(dst, src, is64, hi, ctx); 65739c13c20SShubham Bansal break; 65839c13c20SShubham Bansal /* dst = dst | src */ 65939c13c20SShubham Bansal case BPF_OR: 66039c13c20SShubham Bansal emit(ARM_ORR_R(dst, dst, src), ctx); 66139c13c20SShubham Bansal break; 66239c13c20SShubham Bansal /* dst = dst & src */ 66339c13c20SShubham Bansal case BPF_AND: 66439c13c20SShubham Bansal emit(ARM_AND_R(dst, dst, src), ctx); 66539c13c20SShubham Bansal break; 66639c13c20SShubham Bansal /* dst = dst ^ src */ 66739c13c20SShubham Bansal case BPF_XOR: 66839c13c20SShubham Bansal emit(ARM_EOR_R(dst, dst, src), ctx); 66939c13c20SShubham Bansal break; 67039c13c20SShubham Bansal /* dst = dst * src */ 67139c13c20SShubham Bansal case BPF_MUL: 67239c13c20SShubham Bansal emit(ARM_MUL(dst, dst, src), ctx); 67339c13c20SShubham Bansal break; 67439c13c20SShubham Bansal /* dst = dst << src */ 67539c13c20SShubham Bansal case BPF_LSH: 67639c13c20SShubham Bansal emit(ARM_LSL_R(dst, dst, src), ctx); 67739c13c20SShubham Bansal break; 67839c13c20SShubham Bansal /* dst = dst >> src */ 67939c13c20SShubham Bansal case BPF_RSH: 68039c13c20SShubham Bansal emit(ARM_LSR_R(dst, dst, src), ctx); 68139c13c20SShubham Bansal break; 68239c13c20SShubham Bansal /* dst = dst >> src (signed)*/ 68339c13c20SShubham Bansal case BPF_ARSH: 68439c13c20SShubham Bansal emit(ARM_MOV_SR(dst, dst, SRTYPE_ASR, src), ctx); 68539c13c20SShubham Bansal break; 68639c13c20SShubham Bansal } 68739c13c20SShubham Bansal } 68839c13c20SShubham Bansal 68939c13c20SShubham Bansal /* ALU operation (32 bit) 69039c13c20SShubham Bansal * dst = dst (op) src 69139c13c20SShubham Bansal */ 6921c35ba12SRussell King static inline void emit_a32_alu_r(const s8 dst, const s8 src, 69339c13c20SShubham Bansal struct jit_ctx *ctx, const bool is64, 69439c13c20SShubham Bansal const bool hi, const u8 op) { 6951c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 6967a987025SRussell King s8 rn, rd; 69739c13c20SShubham Bansal 6987a987025SRussell King rn = arm_bpf_get_reg32(src, tmp[1], ctx); 6997a987025SRussell King rd = arm_bpf_get_reg32(dst, tmp[0], ctx); 70039c13c20SShubham Bansal /* ALU operation */ 7017a987025SRussell King emit_alu_r(rd, rn, is64, hi, op, ctx); 7027a987025SRussell King arm_bpf_put_reg32(dst, rd, ctx); 70339c13c20SShubham Bansal } 70439c13c20SShubham Bansal 70539c13c20SShubham Bansal /* ALU operation (64 bit) */ 7061c35ba12SRussell King static inline void emit_a32_alu_r64(const bool is64, const s8 dst[], 70747b9c3bfSRussell King const s8 src[], struct jit_ctx *ctx, 70839c13c20SShubham Bansal const u8 op) { 70947b9c3bfSRussell King emit_a32_alu_r(dst_lo, src_lo, ctx, is64, false, op); 71039c13c20SShubham Bansal if (is64) 71147b9c3bfSRussell King emit_a32_alu_r(dst_hi, src_hi, ctx, is64, true, op); 71239c13c20SShubham Bansal else 71347b9c3bfSRussell King emit_a32_mov_i(dst_hi, 0, ctx); 71439c13c20SShubham Bansal } 71539c13c20SShubham Bansal 7167a987025SRussell King /* dst = src (4 bytes)*/ 7171c35ba12SRussell King static inline void emit_a32_mov_r(const s8 dst, const s8 src, 71839c13c20SShubham Bansal struct jit_ctx *ctx) { 7191c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 7207a987025SRussell King s8 rt; 72139c13c20SShubham Bansal 7227a987025SRussell King rt = arm_bpf_get_reg32(src, tmp[0], ctx); 7237a987025SRussell King arm_bpf_put_reg32(dst, rt, ctx); 72439c13c20SShubham Bansal } 72539c13c20SShubham Bansal 72639c13c20SShubham Bansal /* dst = src */ 7271c35ba12SRussell King static inline void emit_a32_mov_r64(const bool is64, const s8 dst[], 72847b9c3bfSRussell King const s8 src[], 72947b9c3bfSRussell King struct jit_ctx *ctx) { 730*8c9602d3SRussell King if (!is64) { 73147b9c3bfSRussell King emit_a32_mov_r(dst_lo, src_lo, ctx); 73239c13c20SShubham Bansal /* Zero out high 4 bytes */ 73347b9c3bfSRussell King emit_a32_mov_i(dst_hi, 0, ctx); 734*8c9602d3SRussell King } else if (__LINUX_ARM_ARCH__ < 6 && 735*8c9602d3SRussell King ctx->cpu_architecture < CPU_ARCH_ARMv5TE) { 736*8c9602d3SRussell King /* complete 8 byte move */ 737*8c9602d3SRussell King emit_a32_mov_r(dst_lo, src_lo, ctx); 738*8c9602d3SRussell King emit_a32_mov_r(dst_hi, src_hi, ctx); 739*8c9602d3SRussell King } else if (is_stacked(src_lo) && is_stacked(dst_lo)) { 740*8c9602d3SRussell King const u8 *tmp = bpf2a32[TMP_REG_1]; 741*8c9602d3SRussell King 742*8c9602d3SRussell King emit(ARM_LDRD_I(tmp[1], ARM_FP, EBPF_SCRATCH_TO_ARM_FP(src_lo)), ctx); 743*8c9602d3SRussell King emit(ARM_STRD_I(tmp[1], ARM_FP, EBPF_SCRATCH_TO_ARM_FP(dst_lo)), ctx); 744*8c9602d3SRussell King } else if (is_stacked(src_lo)) { 745*8c9602d3SRussell King emit(ARM_LDRD_I(dst[1], ARM_FP, EBPF_SCRATCH_TO_ARM_FP(src_lo)), ctx); 746*8c9602d3SRussell King } else if (is_stacked(dst_lo)) { 747*8c9602d3SRussell King emit(ARM_STRD_I(src[1], ARM_FP, EBPF_SCRATCH_TO_ARM_FP(dst_lo)), ctx); 748*8c9602d3SRussell King } else { 749*8c9602d3SRussell King emit(ARM_MOV_R(dst[0], src[0]), ctx); 750*8c9602d3SRussell King emit(ARM_MOV_R(dst[1], src[1]), ctx); 75139c13c20SShubham Bansal } 75239c13c20SShubham Bansal } 75339c13c20SShubham Bansal 75439c13c20SShubham Bansal /* Shift operations */ 75547b9c3bfSRussell King static inline void emit_a32_alu_i(const s8 dst, const u32 val, 75639c13c20SShubham Bansal struct jit_ctx *ctx, const u8 op) { 7571c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 7587a987025SRussell King s8 rd; 75939c13c20SShubham Bansal 7607a987025SRussell King rd = arm_bpf_get_reg32(dst, tmp[0], ctx); 76139c13c20SShubham Bansal 76239c13c20SShubham Bansal /* Do shift operation */ 76339c13c20SShubham Bansal switch (op) { 76439c13c20SShubham Bansal case BPF_LSH: 76539c13c20SShubham Bansal emit(ARM_LSL_I(rd, rd, val), ctx); 76639c13c20SShubham Bansal break; 76739c13c20SShubham Bansal case BPF_RSH: 76839c13c20SShubham Bansal emit(ARM_LSR_I(rd, rd, val), ctx); 76939c13c20SShubham Bansal break; 77039c13c20SShubham Bansal case BPF_NEG: 77139c13c20SShubham Bansal emit(ARM_RSB_I(rd, rd, val), ctx); 77239c13c20SShubham Bansal break; 77339c13c20SShubham Bansal } 77439c13c20SShubham Bansal 7757a987025SRussell King arm_bpf_put_reg32(dst, rd, ctx); 77639c13c20SShubham Bansal } 77739c13c20SShubham Bansal 77839c13c20SShubham Bansal /* dst = ~dst (64 bit) */ 77947b9c3bfSRussell King static inline void emit_a32_neg64(const s8 dst[], 78039c13c20SShubham Bansal struct jit_ctx *ctx){ 7811c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 782a6eccac5SRussell King const s8 *rd; 78339c13c20SShubham Bansal 78439c13c20SShubham Bansal /* Setup Operand */ 785a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 78639c13c20SShubham Bansal 78739c13c20SShubham Bansal /* Do Negate Operation */ 788a6eccac5SRussell King emit(ARM_RSBS_I(rd[1], rd[1], 0), ctx); 789a6eccac5SRussell King emit(ARM_RSC_I(rd[0], rd[0], 0), ctx); 79039c13c20SShubham Bansal 791a6eccac5SRussell King arm_bpf_put_reg64(dst, rd, ctx); 79239c13c20SShubham Bansal } 79339c13c20SShubham Bansal 79439c13c20SShubham Bansal /* dst = dst << src */ 79547b9c3bfSRussell King static inline void emit_a32_lsh_r64(const s8 dst[], const s8 src[], 79647b9c3bfSRussell King struct jit_ctx *ctx) { 7971c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 7981c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 799a6eccac5SRussell King const s8 *rd; 800a6eccac5SRussell King s8 rt; 80139c13c20SShubham Bansal 80239c13c20SShubham Bansal /* Setup Operands */ 8037a987025SRussell King rt = arm_bpf_get_reg32(src_lo, tmp2[1], ctx); 804a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 80539c13c20SShubham Bansal 80639c13c20SShubham Bansal /* Do LSH operation */ 80739c13c20SShubham Bansal emit(ARM_SUB_I(ARM_IP, rt, 32), ctx); 80839c13c20SShubham Bansal emit(ARM_RSB_I(tmp2[0], rt, 32), ctx); 809a6eccac5SRussell King emit(ARM_MOV_SR(ARM_LR, rd[0], SRTYPE_ASL, rt), ctx); 810a6eccac5SRussell King emit(ARM_ORR_SR(ARM_LR, ARM_LR, rd[1], SRTYPE_ASL, ARM_IP), ctx); 811a6eccac5SRussell King emit(ARM_ORR_SR(ARM_IP, ARM_LR, rd[1], SRTYPE_LSR, tmp2[0]), ctx); 812a6eccac5SRussell King emit(ARM_MOV_SR(ARM_LR, rd[1], SRTYPE_ASL, rt), ctx); 81339c13c20SShubham Bansal 8147a987025SRussell King arm_bpf_put_reg32(dst_lo, ARM_LR, ctx); 8157a987025SRussell King arm_bpf_put_reg32(dst_hi, ARM_IP, ctx); 81639c13c20SShubham Bansal } 81739c13c20SShubham Bansal 81839c13c20SShubham Bansal /* dst = dst >> src (signed)*/ 81947b9c3bfSRussell King static inline void emit_a32_arsh_r64(const s8 dst[], const s8 src[], 82047b9c3bfSRussell King struct jit_ctx *ctx) { 8211c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 8221c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 823a6eccac5SRussell King const s8 *rd; 824a6eccac5SRussell King s8 rt; 82539c13c20SShubham Bansal 8267a987025SRussell King /* Setup Operands */ 8277a987025SRussell King rt = arm_bpf_get_reg32(src_lo, tmp2[1], ctx); 828a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 82939c13c20SShubham Bansal 83039c13c20SShubham Bansal /* Do the ARSH operation */ 83139c13c20SShubham Bansal emit(ARM_RSB_I(ARM_IP, rt, 32), ctx); 83239c13c20SShubham Bansal emit(ARM_SUBS_I(tmp2[0], rt, 32), ctx); 833a6eccac5SRussell King emit(ARM_MOV_SR(ARM_LR, rd[1], SRTYPE_LSR, rt), ctx); 834a6eccac5SRussell King emit(ARM_ORR_SR(ARM_LR, ARM_LR, rd[0], SRTYPE_ASL, ARM_IP), ctx); 83539c13c20SShubham Bansal _emit(ARM_COND_MI, ARM_B(0), ctx); 836a6eccac5SRussell King emit(ARM_ORR_SR(ARM_LR, ARM_LR, rd[0], SRTYPE_ASR, tmp2[0]), ctx); 837a6eccac5SRussell King emit(ARM_MOV_SR(ARM_IP, rd[0], SRTYPE_ASR, rt), ctx); 8387a987025SRussell King 8397a987025SRussell King arm_bpf_put_reg32(dst_lo, ARM_LR, ctx); 8407a987025SRussell King arm_bpf_put_reg32(dst_hi, ARM_IP, ctx); 84139c13c20SShubham Bansal } 84239c13c20SShubham Bansal 84339c13c20SShubham Bansal /* dst = dst >> src */ 84447b9c3bfSRussell King static inline void emit_a32_rsh_r64(const s8 dst[], const s8 src[], 84547b9c3bfSRussell King struct jit_ctx *ctx) { 8461c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 8471c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 848a6eccac5SRussell King const s8 *rd; 849a6eccac5SRussell King s8 rt; 85039c13c20SShubham Bansal 8517a987025SRussell King /* Setup Operands */ 8527a987025SRussell King rt = arm_bpf_get_reg32(src_lo, tmp2[1], ctx); 853a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 85439c13c20SShubham Bansal 85568565a1aSWang YanQing /* Do RSH operation */ 85639c13c20SShubham Bansal emit(ARM_RSB_I(ARM_IP, rt, 32), ctx); 85739c13c20SShubham Bansal emit(ARM_SUBS_I(tmp2[0], rt, 32), ctx); 858a6eccac5SRussell King emit(ARM_MOV_SR(ARM_LR, rd[1], SRTYPE_LSR, rt), ctx); 859a6eccac5SRussell King emit(ARM_ORR_SR(ARM_LR, ARM_LR, rd[0], SRTYPE_ASL, ARM_IP), ctx); 860a6eccac5SRussell King emit(ARM_ORR_SR(ARM_LR, ARM_LR, rd[0], SRTYPE_LSR, tmp2[0]), ctx); 861a6eccac5SRussell King emit(ARM_MOV_SR(ARM_IP, rd[0], SRTYPE_LSR, rt), ctx); 8627a987025SRussell King 8637a987025SRussell King arm_bpf_put_reg32(dst_lo, ARM_LR, ctx); 8647a987025SRussell King arm_bpf_put_reg32(dst_hi, ARM_IP, ctx); 86539c13c20SShubham Bansal } 86639c13c20SShubham Bansal 86739c13c20SShubham Bansal /* dst = dst << val */ 86847b9c3bfSRussell King static inline void emit_a32_lsh_i64(const s8 dst[], 86939c13c20SShubham Bansal const u32 val, struct jit_ctx *ctx){ 8701c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 8711c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 872a6eccac5SRussell King const s8 *rd; 87339c13c20SShubham Bansal 8747a987025SRussell King /* Setup operands */ 875a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 87639c13c20SShubham Bansal 87739c13c20SShubham Bansal /* Do LSH operation */ 87839c13c20SShubham Bansal if (val < 32) { 879a6eccac5SRussell King emit(ARM_MOV_SI(tmp2[0], rd[0], SRTYPE_ASL, val), ctx); 880a6eccac5SRussell King emit(ARM_ORR_SI(rd[0], tmp2[0], rd[1], SRTYPE_LSR, 32 - val), ctx); 881a6eccac5SRussell King emit(ARM_MOV_SI(rd[1], rd[1], SRTYPE_ASL, val), ctx); 88239c13c20SShubham Bansal } else { 88339c13c20SShubham Bansal if (val == 32) 884a6eccac5SRussell King emit(ARM_MOV_R(rd[0], rd[1]), ctx); 88539c13c20SShubham Bansal else 886a6eccac5SRussell King emit(ARM_MOV_SI(rd[0], rd[1], SRTYPE_ASL, val - 32), ctx); 887a6eccac5SRussell King emit(ARM_EOR_R(rd[1], rd[1], rd[1]), ctx); 88839c13c20SShubham Bansal } 88939c13c20SShubham Bansal 890a6eccac5SRussell King arm_bpf_put_reg64(dst, rd, ctx); 89139c13c20SShubham Bansal } 89239c13c20SShubham Bansal 89339c13c20SShubham Bansal /* dst = dst >> val */ 89447b9c3bfSRussell King static inline void emit_a32_rsh_i64(const s8 dst[], 89539c13c20SShubham Bansal const u32 val, struct jit_ctx *ctx) { 8961c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 8971c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 898a6eccac5SRussell King const s8 *rd; 89939c13c20SShubham Bansal 9007a987025SRussell King /* Setup operands */ 901a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 90239c13c20SShubham Bansal 90339c13c20SShubham Bansal /* Do LSR operation */ 90439c13c20SShubham Bansal if (val < 32) { 905a6eccac5SRussell King emit(ARM_MOV_SI(tmp2[1], rd[1], SRTYPE_LSR, val), ctx); 906a6eccac5SRussell King emit(ARM_ORR_SI(rd[1], tmp2[1], rd[0], SRTYPE_ASL, 32 - val), ctx); 907a6eccac5SRussell King emit(ARM_MOV_SI(rd[0], rd[0], SRTYPE_LSR, val), ctx); 90839c13c20SShubham Bansal } else if (val == 32) { 909a6eccac5SRussell King emit(ARM_MOV_R(rd[1], rd[0]), ctx); 910a6eccac5SRussell King emit(ARM_MOV_I(rd[0], 0), ctx); 91139c13c20SShubham Bansal } else { 912a6eccac5SRussell King emit(ARM_MOV_SI(rd[1], rd[0], SRTYPE_LSR, val - 32), ctx); 913a6eccac5SRussell King emit(ARM_MOV_I(rd[0], 0), ctx); 91439c13c20SShubham Bansal } 91539c13c20SShubham Bansal 916a6eccac5SRussell King arm_bpf_put_reg64(dst, rd, ctx); 91739c13c20SShubham Bansal } 91839c13c20SShubham Bansal 91939c13c20SShubham Bansal /* dst = dst >> val (signed) */ 92047b9c3bfSRussell King static inline void emit_a32_arsh_i64(const s8 dst[], 92139c13c20SShubham Bansal const u32 val, struct jit_ctx *ctx){ 9221c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 9231c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 924a6eccac5SRussell King const s8 *rd; 92539c13c20SShubham Bansal 9267a987025SRussell King /* Setup operands */ 927a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 92839c13c20SShubham Bansal 92939c13c20SShubham Bansal /* Do ARSH operation */ 93039c13c20SShubham Bansal if (val < 32) { 931a6eccac5SRussell King emit(ARM_MOV_SI(tmp2[1], rd[1], SRTYPE_LSR, val), ctx); 932a6eccac5SRussell King emit(ARM_ORR_SI(rd[1], tmp2[1], rd[0], SRTYPE_ASL, 32 - val), ctx); 933a6eccac5SRussell King emit(ARM_MOV_SI(rd[0], rd[0], SRTYPE_ASR, val), ctx); 93439c13c20SShubham Bansal } else if (val == 32) { 935a6eccac5SRussell King emit(ARM_MOV_R(rd[1], rd[0]), ctx); 936a6eccac5SRussell King emit(ARM_MOV_SI(rd[0], rd[0], SRTYPE_ASR, 31), ctx); 93739c13c20SShubham Bansal } else { 938a6eccac5SRussell King emit(ARM_MOV_SI(rd[1], rd[0], SRTYPE_ASR, val - 32), ctx); 939a6eccac5SRussell King emit(ARM_MOV_SI(rd[0], rd[0], SRTYPE_ASR, 31), ctx); 94039c13c20SShubham Bansal } 94139c13c20SShubham Bansal 942a6eccac5SRussell King arm_bpf_put_reg64(dst, rd, ctx); 94339c13c20SShubham Bansal } 94439c13c20SShubham Bansal 94547b9c3bfSRussell King static inline void emit_a32_mul_r64(const s8 dst[], const s8 src[], 94647b9c3bfSRussell King struct jit_ctx *ctx) { 9471c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 9481c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 949a6eccac5SRussell King const s8 *rd, *rt; 95039c13c20SShubham Bansal 9517a987025SRussell King /* Setup operands for multiplication */ 952a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 953a6eccac5SRussell King rt = arm_bpf_get_reg64(src, tmp2, ctx); 95439c13c20SShubham Bansal 95539c13c20SShubham Bansal /* Do Multiplication */ 956a6eccac5SRussell King emit(ARM_MUL(ARM_IP, rd[1], rt[0]), ctx); 957a6eccac5SRussell King emit(ARM_MUL(ARM_LR, rd[0], rt[1]), ctx); 95839c13c20SShubham Bansal emit(ARM_ADD_R(ARM_LR, ARM_IP, ARM_LR), ctx); 95939c13c20SShubham Bansal 960a6eccac5SRussell King emit(ARM_UMULL(ARM_IP, rd[0], rd[1], rt[1]), ctx); 961a6eccac5SRussell King emit(ARM_ADD_R(rd[0], ARM_LR, rd[0]), ctx); 9627a987025SRussell King 9637a987025SRussell King arm_bpf_put_reg32(dst_lo, ARM_IP, ctx); 964a6eccac5SRussell King arm_bpf_put_reg32(dst_hi, rd[0], ctx); 96539c13c20SShubham Bansal } 96639c13c20SShubham Bansal 96739c13c20SShubham Bansal /* *(size *)(dst + off) = src */ 96847b9c3bfSRussell King static inline void emit_str_r(const s8 dst, const s8 src, 96939c13c20SShubham Bansal const s32 off, struct jit_ctx *ctx, const u8 sz){ 9701c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 9717a987025SRussell King s8 rd; 97239c13c20SShubham Bansal 9737a987025SRussell King rd = arm_bpf_get_reg32(dst, tmp[1], ctx); 97439c13c20SShubham Bansal if (off) { 97547b9c3bfSRussell King emit_a32_mov_i(tmp[0], off, ctx); 97639c13c20SShubham Bansal emit(ARM_ADD_R(tmp[0], rd, tmp[0]), ctx); 97739c13c20SShubham Bansal rd = tmp[0]; 97839c13c20SShubham Bansal } 97939c13c20SShubham Bansal switch (sz) { 98039c13c20SShubham Bansal case BPF_W: 98139c13c20SShubham Bansal /* Store a Word */ 98239c13c20SShubham Bansal emit(ARM_STR_I(src, rd, 0), ctx); 98339c13c20SShubham Bansal break; 98439c13c20SShubham Bansal case BPF_H: 98539c13c20SShubham Bansal /* Store a HalfWord */ 98639c13c20SShubham Bansal emit(ARM_STRH_I(src, rd, 0), ctx); 98739c13c20SShubham Bansal break; 98839c13c20SShubham Bansal case BPF_B: 98939c13c20SShubham Bansal /* Store a Byte */ 99039c13c20SShubham Bansal emit(ARM_STRB_I(src, rd, 0), ctx); 99139c13c20SShubham Bansal break; 99239c13c20SShubham Bansal } 99339c13c20SShubham Bansal } 99439c13c20SShubham Bansal 99539c13c20SShubham Bansal /* dst = *(size*)(src + off) */ 99647b9c3bfSRussell King static inline void emit_ldx_r(const s8 dst[], const s8 src, 997ec19e02bSRussell King s32 off, struct jit_ctx *ctx, const u8 sz){ 9981c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 99947b9c3bfSRussell King const s8 *rd = is_stacked(dst_lo) ? tmp : dst; 10001c35ba12SRussell King s8 rm = src; 1001ec19e02bSRussell King s32 off_max; 100239c13c20SShubham Bansal 1003ec19e02bSRussell King if (sz == BPF_H) 1004ec19e02bSRussell King off_max = 0xff; 1005ec19e02bSRussell King else 1006ec19e02bSRussell King off_max = 0xfff; 1007ec19e02bSRussell King 1008ec19e02bSRussell King if (off < 0 || off > off_max) { 100947b9c3bfSRussell King emit_a32_mov_i(tmp[0], off, ctx); 101039c13c20SShubham Bansal emit(ARM_ADD_R(tmp[0], tmp[0], src), ctx); 101139c13c20SShubham Bansal rm = tmp[0]; 1012ec19e02bSRussell King off = 0; 1013ec19e02bSRussell King } else if (rd[1] == rm) { 1014ec19e02bSRussell King emit(ARM_MOV_R(tmp[0], rm), ctx); 1015ec19e02bSRussell King rm = tmp[0]; 101639c13c20SShubham Bansal } 101739c13c20SShubham Bansal switch (sz) { 1018ec19e02bSRussell King case BPF_B: 1019ec19e02bSRussell King /* Load a Byte */ 1020ec19e02bSRussell King emit(ARM_LDRB_I(rd[1], rm, off), ctx); 1021a6eccac5SRussell King emit_a32_mov_i(rd[0], 0, ctx); 102239c13c20SShubham Bansal break; 102339c13c20SShubham Bansal case BPF_H: 102439c13c20SShubham Bansal /* Load a HalfWord */ 1025ec19e02bSRussell King emit(ARM_LDRH_I(rd[1], rm, off), ctx); 1026a6eccac5SRussell King emit_a32_mov_i(rd[0], 0, ctx); 102739c13c20SShubham Bansal break; 1028ec19e02bSRussell King case BPF_W: 1029ec19e02bSRussell King /* Load a Word */ 1030ec19e02bSRussell King emit(ARM_LDR_I(rd[1], rm, off), ctx); 1031a6eccac5SRussell King emit_a32_mov_i(rd[0], 0, ctx); 1032ec19e02bSRussell King break; 1033ec19e02bSRussell King case BPF_DW: 1034ec19e02bSRussell King /* Load a Double Word */ 1035ec19e02bSRussell King emit(ARM_LDR_I(rd[1], rm, off), ctx); 1036ec19e02bSRussell King emit(ARM_LDR_I(rd[0], rm, off + 4), ctx); 103739c13c20SShubham Bansal break; 103839c13c20SShubham Bansal } 1039a6eccac5SRussell King arm_bpf_put_reg64(dst, rd, ctx); 104039c13c20SShubham Bansal } 104139c13c20SShubham Bansal 104239c13c20SShubham Bansal /* Arithmatic Operation */ 104339c13c20SShubham Bansal static inline void emit_ar_r(const u8 rd, const u8 rt, const u8 rm, 104439c13c20SShubham Bansal const u8 rn, struct jit_ctx *ctx, u8 op) { 104539c13c20SShubham Bansal switch (op) { 104639c13c20SShubham Bansal case BPF_JSET: 104739c13c20SShubham Bansal emit(ARM_AND_R(ARM_IP, rt, rn), ctx); 104839c13c20SShubham Bansal emit(ARM_AND_R(ARM_LR, rd, rm), ctx); 104939c13c20SShubham Bansal emit(ARM_ORRS_R(ARM_IP, ARM_LR, ARM_IP), ctx); 105039c13c20SShubham Bansal break; 105139c13c20SShubham Bansal case BPF_JEQ: 105239c13c20SShubham Bansal case BPF_JNE: 105339c13c20SShubham Bansal case BPF_JGT: 105439c13c20SShubham Bansal case BPF_JGE: 105539c13c20SShubham Bansal case BPF_JLE: 105639c13c20SShubham Bansal case BPF_JLT: 105739c13c20SShubham Bansal emit(ARM_CMP_R(rd, rm), ctx); 105839c13c20SShubham Bansal _emit(ARM_COND_EQ, ARM_CMP_R(rt, rn), ctx); 105939c13c20SShubham Bansal break; 106039c13c20SShubham Bansal case BPF_JSLE: 106139c13c20SShubham Bansal case BPF_JSGT: 106239c13c20SShubham Bansal emit(ARM_CMP_R(rn, rt), ctx); 106339c13c20SShubham Bansal emit(ARM_SBCS_R(ARM_IP, rm, rd), ctx); 106439c13c20SShubham Bansal break; 106539c13c20SShubham Bansal case BPF_JSLT: 106639c13c20SShubham Bansal case BPF_JSGE: 106739c13c20SShubham Bansal emit(ARM_CMP_R(rt, rn), ctx); 106839c13c20SShubham Bansal emit(ARM_SBCS_R(ARM_IP, rd, rm), ctx); 106939c13c20SShubham Bansal break; 107039c13c20SShubham Bansal } 107139c13c20SShubham Bansal } 107239c13c20SShubham Bansal 107339c13c20SShubham Bansal static int out_offset = -1; /* initialized on the first pass of build_body() */ 107439c13c20SShubham Bansal static int emit_bpf_tail_call(struct jit_ctx *ctx) 107539c13c20SShubham Bansal { 107639c13c20SShubham Bansal 107739c13c20SShubham Bansal /* bpf_tail_call(void *prog_ctx, struct bpf_array *array, u64 index) */ 10781c35ba12SRussell King const s8 *r2 = bpf2a32[BPF_REG_2]; 10791c35ba12SRussell King const s8 *r3 = bpf2a32[BPF_REG_3]; 10801c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 10811c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 10821c35ba12SRussell King const s8 *tcc = bpf2a32[TCALL_CNT]; 1083a6eccac5SRussell King const s8 *tc; 108439c13c20SShubham Bansal const int idx0 = ctx->idx; 108539c13c20SShubham Bansal #define cur_offset (ctx->idx - idx0) 1086f4483f2cSRussell King #define jmp_offset (out_offset - (cur_offset) - 2) 1087828e2b90SRussell King u32 lo, hi; 1088a6eccac5SRussell King s8 r_array, r_index; 1089828e2b90SRussell King int off; 109039c13c20SShubham Bansal 109139c13c20SShubham Bansal /* if (index >= array->map.max_entries) 109239c13c20SShubham Bansal * goto out; 109339c13c20SShubham Bansal */ 1094828e2b90SRussell King BUILD_BUG_ON(offsetof(struct bpf_array, map.max_entries) > 1095828e2b90SRussell King ARM_INST_LDST__IMM12); 109639c13c20SShubham Bansal off = offsetof(struct bpf_array, map.max_entries); 1097b5045229SRussell King r_array = arm_bpf_get_reg32(r2[1], tmp2[0], ctx); 1098091f0248SRussell King /* index is 32-bit for arrays */ 10997a987025SRussell King r_index = arm_bpf_get_reg32(r3[1], tmp2[1], ctx); 1100b5045229SRussell King /* array->map.max_entries */ 1101b5045229SRussell King emit(ARM_LDR_I(tmp[1], r_array, off), ctx); 110239c13c20SShubham Bansal /* index >= array->map.max_entries */ 11037a987025SRussell King emit(ARM_CMP_R(r_index, tmp[1]), ctx); 110439c13c20SShubham Bansal _emit(ARM_COND_CS, ARM_B(jmp_offset), ctx); 110539c13c20SShubham Bansal 1106b5045229SRussell King /* tmp2[0] = array, tmp2[1] = index */ 1107aaffd2f5SRussell King 110839c13c20SShubham Bansal /* if (tail_call_cnt > MAX_TAIL_CALL_CNT) 110939c13c20SShubham Bansal * goto out; 111039c13c20SShubham Bansal * tail_call_cnt++; 111139c13c20SShubham Bansal */ 111239c13c20SShubham Bansal lo = (u32)MAX_TAIL_CALL_CNT; 111339c13c20SShubham Bansal hi = (u32)((u64)MAX_TAIL_CALL_CNT >> 32); 1114a6eccac5SRussell King tc = arm_bpf_get_reg64(tcc, tmp, ctx); 1115a6eccac5SRussell King emit(ARM_CMP_I(tc[0], hi), ctx); 1116a6eccac5SRussell King _emit(ARM_COND_EQ, ARM_CMP_I(tc[1], lo), ctx); 111739c13c20SShubham Bansal _emit(ARM_COND_HI, ARM_B(jmp_offset), ctx); 1118a6eccac5SRussell King emit(ARM_ADDS_I(tc[1], tc[1], 1), ctx); 1119a6eccac5SRussell King emit(ARM_ADC_I(tc[0], tc[0], 0), ctx); 1120a6eccac5SRussell King arm_bpf_put_reg64(tcc, tmp, ctx); 112139c13c20SShubham Bansal 112239c13c20SShubham Bansal /* prog = array->ptrs[index] 112339c13c20SShubham Bansal * if (prog == NULL) 112439c13c20SShubham Bansal * goto out; 112539c13c20SShubham Bansal */ 1126828e2b90SRussell King BUILD_BUG_ON(imm8m(offsetof(struct bpf_array, ptrs)) < 0); 1127828e2b90SRussell King off = imm8m(offsetof(struct bpf_array, ptrs)); 1128828e2b90SRussell King emit(ARM_ADD_I(tmp[1], r_array, off), ctx); 11292b6958efSRussell King emit(ARM_LDR_R_SI(tmp[1], tmp[1], r_index, SRTYPE_ASL, 2), ctx); 113039c13c20SShubham Bansal emit(ARM_CMP_I(tmp[1], 0), ctx); 113139c13c20SShubham Bansal _emit(ARM_COND_EQ, ARM_B(jmp_offset), ctx); 113239c13c20SShubham Bansal 113339c13c20SShubham Bansal /* goto *(prog->bpf_func + prologue_size); */ 1134828e2b90SRussell King BUILD_BUG_ON(offsetof(struct bpf_prog, bpf_func) > 1135828e2b90SRussell King ARM_INST_LDST__IMM12); 113639c13c20SShubham Bansal off = offsetof(struct bpf_prog, bpf_func); 1137828e2b90SRussell King emit(ARM_LDR_I(tmp[1], tmp[1], off), ctx); 113839c13c20SShubham Bansal emit(ARM_ADD_I(tmp[1], tmp[1], ctx->prologue_bytes), ctx); 1139e9062481SRussell King emit_bx_r(tmp[1], ctx); 114039c13c20SShubham Bansal 114139c13c20SShubham Bansal /* out: */ 114239c13c20SShubham Bansal if (out_offset == -1) 114339c13c20SShubham Bansal out_offset = cur_offset; 114439c13c20SShubham Bansal if (cur_offset != out_offset) { 114539c13c20SShubham Bansal pr_err_once("tail_call out_offset = %d, expected %d!\n", 114639c13c20SShubham Bansal cur_offset, out_offset); 114739c13c20SShubham Bansal return -1; 114839c13c20SShubham Bansal } 114939c13c20SShubham Bansal return 0; 115039c13c20SShubham Bansal #undef cur_offset 115139c13c20SShubham Bansal #undef jmp_offset 115239c13c20SShubham Bansal } 115339c13c20SShubham Bansal 115439c13c20SShubham Bansal /* 0xabcd => 0xcdab */ 115539c13c20SShubham Bansal static inline void emit_rev16(const u8 rd, const u8 rn, struct jit_ctx *ctx) 115639c13c20SShubham Bansal { 115739c13c20SShubham Bansal #if __LINUX_ARM_ARCH__ < 6 11581c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 115939c13c20SShubham Bansal 116039c13c20SShubham Bansal emit(ARM_AND_I(tmp2[1], rn, 0xff), ctx); 116139c13c20SShubham Bansal emit(ARM_MOV_SI(tmp2[0], rn, SRTYPE_LSR, 8), ctx); 116239c13c20SShubham Bansal emit(ARM_AND_I(tmp2[0], tmp2[0], 0xff), ctx); 116339c13c20SShubham Bansal emit(ARM_ORR_SI(rd, tmp2[0], tmp2[1], SRTYPE_LSL, 8), ctx); 116439c13c20SShubham Bansal #else /* ARMv6+ */ 116539c13c20SShubham Bansal emit(ARM_REV16(rd, rn), ctx); 116639c13c20SShubham Bansal #endif 116739c13c20SShubham Bansal } 116839c13c20SShubham Bansal 116939c13c20SShubham Bansal /* 0xabcdefgh => 0xghefcdab */ 117039c13c20SShubham Bansal static inline void emit_rev32(const u8 rd, const u8 rn, struct jit_ctx *ctx) 117139c13c20SShubham Bansal { 117239c13c20SShubham Bansal #if __LINUX_ARM_ARCH__ < 6 11731c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 117439c13c20SShubham Bansal 117539c13c20SShubham Bansal emit(ARM_AND_I(tmp2[1], rn, 0xff), ctx); 117639c13c20SShubham Bansal emit(ARM_MOV_SI(tmp2[0], rn, SRTYPE_LSR, 24), ctx); 117739c13c20SShubham Bansal emit(ARM_ORR_SI(ARM_IP, tmp2[0], tmp2[1], SRTYPE_LSL, 24), ctx); 117839c13c20SShubham Bansal 117939c13c20SShubham Bansal emit(ARM_MOV_SI(tmp2[1], rn, SRTYPE_LSR, 8), ctx); 118039c13c20SShubham Bansal emit(ARM_AND_I(tmp2[1], tmp2[1], 0xff), ctx); 118139c13c20SShubham Bansal emit(ARM_MOV_SI(tmp2[0], rn, SRTYPE_LSR, 16), ctx); 118239c13c20SShubham Bansal emit(ARM_AND_I(tmp2[0], tmp2[0], 0xff), ctx); 118339c13c20SShubham Bansal emit(ARM_MOV_SI(tmp2[0], tmp2[0], SRTYPE_LSL, 8), ctx); 118439c13c20SShubham Bansal emit(ARM_ORR_SI(tmp2[0], tmp2[0], tmp2[1], SRTYPE_LSL, 16), ctx); 118539c13c20SShubham Bansal emit(ARM_ORR_R(rd, ARM_IP, tmp2[0]), ctx); 118639c13c20SShubham Bansal 118739c13c20SShubham Bansal #else /* ARMv6+ */ 118839c13c20SShubham Bansal emit(ARM_REV(rd, rn), ctx); 118939c13c20SShubham Bansal #endif 119039c13c20SShubham Bansal } 119139c13c20SShubham Bansal 119239c13c20SShubham Bansal // push the scratch stack register on top of the stack 119396cced4eSRussell King static inline void emit_push_r64(const s8 src[], struct jit_ctx *ctx) 119439c13c20SShubham Bansal { 11951c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 119696cced4eSRussell King const s8 *rt; 119739c13c20SShubham Bansal u16 reg_set = 0; 119839c13c20SShubham Bansal 119996cced4eSRussell King rt = arm_bpf_get_reg64(src, tmp2, ctx); 120039c13c20SShubham Bansal 120196cced4eSRussell King reg_set = (1 << rt[1]) | (1 << rt[0]); 120239c13c20SShubham Bansal emit(ARM_PUSH(reg_set), ctx); 120339c13c20SShubham Bansal } 120439c13c20SShubham Bansal 120539c13c20SShubham Bansal static void build_prologue(struct jit_ctx *ctx) 120639c13c20SShubham Bansal { 12071c35ba12SRussell King const s8 r0 = bpf2a32[BPF_REG_0][1]; 12081c35ba12SRussell King const s8 r2 = bpf2a32[BPF_REG_1][1]; 12091c35ba12SRussell King const s8 r3 = bpf2a32[BPF_REG_1][0]; 12101c35ba12SRussell King const s8 r4 = bpf2a32[BPF_REG_6][1]; 12111c35ba12SRussell King const s8 fplo = bpf2a32[BPF_REG_FP][1]; 12121c35ba12SRussell King const s8 fphi = bpf2a32[BPF_REG_FP][0]; 12131c35ba12SRussell King const s8 *tcc = bpf2a32[TCALL_CNT]; 121439c13c20SShubham Bansal 121539c13c20SShubham Bansal /* Save callee saved registers. */ 121639c13c20SShubham Bansal #ifdef CONFIG_FRAME_POINTER 121702088d9bSRussell King u16 reg_set = CALLEE_PUSH_MASK | 1 << ARM_IP | 1 << ARM_PC; 121802088d9bSRussell King emit(ARM_MOV_R(ARM_IP, ARM_SP), ctx); 121939c13c20SShubham Bansal emit(ARM_PUSH(reg_set), ctx); 122039c13c20SShubham Bansal emit(ARM_SUB_I(ARM_FP, ARM_IP, 4), ctx); 122139c13c20SShubham Bansal #else 122202088d9bSRussell King emit(ARM_PUSH(CALLEE_PUSH_MASK), ctx); 122302088d9bSRussell King emit(ARM_MOV_R(ARM_FP, ARM_SP), ctx); 122439c13c20SShubham Bansal #endif 122539c13c20SShubham Bansal /* Save frame pointer for later */ 122602088d9bSRussell King emit(ARM_SUB_I(ARM_IP, ARM_SP, SCRATCH_SIZE), ctx); 122739c13c20SShubham Bansal 122839c13c20SShubham Bansal ctx->stack_size = imm8m(STACK_SIZE); 122939c13c20SShubham Bansal 123039c13c20SShubham Bansal /* Set up function call stack */ 123139c13c20SShubham Bansal emit(ARM_SUB_I(ARM_SP, ARM_SP, ctx->stack_size), ctx); 123239c13c20SShubham Bansal 123339c13c20SShubham Bansal /* Set up BPF prog stack base register */ 123447b9c3bfSRussell King emit_a32_mov_r(fplo, ARM_IP, ctx); 123547b9c3bfSRussell King emit_a32_mov_i(fphi, 0, ctx); 123639c13c20SShubham Bansal 123739c13c20SShubham Bansal /* mov r4, 0 */ 123839c13c20SShubham Bansal emit(ARM_MOV_I(r4, 0), ctx); 123939c13c20SShubham Bansal 124039c13c20SShubham Bansal /* Move BPF_CTX to BPF_R1 */ 124139c13c20SShubham Bansal emit(ARM_MOV_R(r3, r4), ctx); 124239c13c20SShubham Bansal emit(ARM_MOV_R(r2, r0), ctx); 124339c13c20SShubham Bansal /* Initialize Tail Count */ 124496cced4eSRussell King emit(ARM_STR_I(r4, ARM_FP, EBPF_SCRATCH_TO_ARM_FP(tcc[0])), ctx); 124596cced4eSRussell King emit(ARM_STR_I(r4, ARM_FP, EBPF_SCRATCH_TO_ARM_FP(tcc[1])), ctx); 124639c13c20SShubham Bansal /* end of prologue */ 124739c13c20SShubham Bansal } 124839c13c20SShubham Bansal 124902088d9bSRussell King /* restore callee saved registers. */ 125039c13c20SShubham Bansal static void build_epilogue(struct jit_ctx *ctx) 125139c13c20SShubham Bansal { 125239c13c20SShubham Bansal #ifdef CONFIG_FRAME_POINTER 125302088d9bSRussell King /* When using frame pointers, some additional registers need to 125402088d9bSRussell King * be loaded. */ 125502088d9bSRussell King u16 reg_set = CALLEE_POP_MASK | 1 << ARM_SP; 125602088d9bSRussell King emit(ARM_SUB_I(ARM_SP, ARM_FP, hweight16(reg_set) * 4), ctx); 125739c13c20SShubham Bansal emit(ARM_LDM(ARM_SP, reg_set), ctx); 125839c13c20SShubham Bansal #else 125939c13c20SShubham Bansal /* Restore callee saved registers. */ 126002088d9bSRussell King emit(ARM_MOV_R(ARM_SP, ARM_FP), ctx); 126102088d9bSRussell King emit(ARM_POP(CALLEE_POP_MASK), ctx); 126239c13c20SShubham Bansal #endif 126339c13c20SShubham Bansal } 126439c13c20SShubham Bansal 126539c13c20SShubham Bansal /* 126639c13c20SShubham Bansal * Convert an eBPF instruction to native instruction, i.e 126739c13c20SShubham Bansal * JITs an eBPF instruction. 126839c13c20SShubham Bansal * Returns : 126939c13c20SShubham Bansal * 0 - Successfully JITed an 8-byte eBPF instruction 127039c13c20SShubham Bansal * >0 - Successfully JITed a 16-byte eBPF instruction 127139c13c20SShubham Bansal * <0 - Failed to JIT. 127239c13c20SShubham Bansal */ 127339c13c20SShubham Bansal static int build_insn(const struct bpf_insn *insn, struct jit_ctx *ctx) 127439c13c20SShubham Bansal { 127539c13c20SShubham Bansal const u8 code = insn->code; 12761c35ba12SRussell King const s8 *dst = bpf2a32[insn->dst_reg]; 12771c35ba12SRussell King const s8 *src = bpf2a32[insn->src_reg]; 12781c35ba12SRussell King const s8 *tmp = bpf2a32[TMP_REG_1]; 12791c35ba12SRussell King const s8 *tmp2 = bpf2a32[TMP_REG_2]; 128039c13c20SShubham Bansal const s16 off = insn->off; 128139c13c20SShubham Bansal const s32 imm = insn->imm; 128239c13c20SShubham Bansal const int i = insn - ctx->prog->insnsi; 128339c13c20SShubham Bansal const bool is64 = BPF_CLASS(code) == BPF_ALU64; 1284a6eccac5SRussell King const s8 *rd, *rs; 1285a6eccac5SRussell King s8 rd_lo, rt, rm, rn; 128639c13c20SShubham Bansal s32 jmp_offset; 128739c13c20SShubham Bansal 128839c13c20SShubham Bansal #define check_imm(bits, imm) do { \ 12892b589a7eSWang YanQing if ((imm) >= (1 << ((bits) - 1)) || \ 12902b589a7eSWang YanQing (imm) < -(1 << ((bits) - 1))) { \ 129139c13c20SShubham Bansal pr_info("[%2d] imm=%d(0x%x) out of range\n", \ 129239c13c20SShubham Bansal i, imm, imm); \ 129339c13c20SShubham Bansal return -EINVAL; \ 129439c13c20SShubham Bansal } \ 129539c13c20SShubham Bansal } while (0) 129639c13c20SShubham Bansal #define check_imm24(imm) check_imm(24, imm) 1297ddecdfceSMircea Gherzan 129834805931SDaniel Borkmann switch (code) { 129939c13c20SShubham Bansal /* ALU operations */ 1300ddecdfceSMircea Gherzan 130139c13c20SShubham Bansal /* dst = src */ 130239c13c20SShubham Bansal case BPF_ALU | BPF_MOV | BPF_K: 130339c13c20SShubham Bansal case BPF_ALU | BPF_MOV | BPF_X: 130439c13c20SShubham Bansal case BPF_ALU64 | BPF_MOV | BPF_K: 130539c13c20SShubham Bansal case BPF_ALU64 | BPF_MOV | BPF_X: 130639c13c20SShubham Bansal switch (BPF_SRC(code)) { 130739c13c20SShubham Bansal case BPF_X: 130847b9c3bfSRussell King emit_a32_mov_r64(is64, dst, src, ctx); 130939c13c20SShubham Bansal break; 131039c13c20SShubham Bansal case BPF_K: 131139c13c20SShubham Bansal /* Sign-extend immediate value to destination reg */ 131247b9c3bfSRussell King emit_a32_mov_i64(is64, dst, imm, ctx); 131339c13c20SShubham Bansal break; 1314ddecdfceSMircea Gherzan } 1315ddecdfceSMircea Gherzan break; 131639c13c20SShubham Bansal /* dst = dst + src/imm */ 131739c13c20SShubham Bansal /* dst = dst - src/imm */ 131839c13c20SShubham Bansal /* dst = dst | src/imm */ 131939c13c20SShubham Bansal /* dst = dst & src/imm */ 132039c13c20SShubham Bansal /* dst = dst ^ src/imm */ 132139c13c20SShubham Bansal /* dst = dst * src/imm */ 132239c13c20SShubham Bansal /* dst = dst << src */ 132339c13c20SShubham Bansal /* dst = dst >> src */ 132434805931SDaniel Borkmann case BPF_ALU | BPF_ADD | BPF_K: 132534805931SDaniel Borkmann case BPF_ALU | BPF_ADD | BPF_X: 132634805931SDaniel Borkmann case BPF_ALU | BPF_SUB | BPF_K: 132734805931SDaniel Borkmann case BPF_ALU | BPF_SUB | BPF_X: 132834805931SDaniel Borkmann case BPF_ALU | BPF_OR | BPF_K: 132934805931SDaniel Borkmann case BPF_ALU | BPF_OR | BPF_X: 133034805931SDaniel Borkmann case BPF_ALU | BPF_AND | BPF_K: 133134805931SDaniel Borkmann case BPF_ALU | BPF_AND | BPF_X: 133239c13c20SShubham Bansal case BPF_ALU | BPF_XOR | BPF_K: 133339c13c20SShubham Bansal case BPF_ALU | BPF_XOR | BPF_X: 133439c13c20SShubham Bansal case BPF_ALU | BPF_MUL | BPF_K: 133539c13c20SShubham Bansal case BPF_ALU | BPF_MUL | BPF_X: 133634805931SDaniel Borkmann case BPF_ALU | BPF_LSH | BPF_X: 133734805931SDaniel Borkmann case BPF_ALU | BPF_RSH | BPF_X: 133839c13c20SShubham Bansal case BPF_ALU | BPF_ARSH | BPF_K: 133939c13c20SShubham Bansal case BPF_ALU | BPF_ARSH | BPF_X: 134039c13c20SShubham Bansal case BPF_ALU64 | BPF_ADD | BPF_K: 134139c13c20SShubham Bansal case BPF_ALU64 | BPF_ADD | BPF_X: 134239c13c20SShubham Bansal case BPF_ALU64 | BPF_SUB | BPF_K: 134339c13c20SShubham Bansal case BPF_ALU64 | BPF_SUB | BPF_X: 134439c13c20SShubham Bansal case BPF_ALU64 | BPF_OR | BPF_K: 134539c13c20SShubham Bansal case BPF_ALU64 | BPF_OR | BPF_X: 134639c13c20SShubham Bansal case BPF_ALU64 | BPF_AND | BPF_K: 134739c13c20SShubham Bansal case BPF_ALU64 | BPF_AND | BPF_X: 134839c13c20SShubham Bansal case BPF_ALU64 | BPF_XOR | BPF_K: 134939c13c20SShubham Bansal case BPF_ALU64 | BPF_XOR | BPF_X: 135039c13c20SShubham Bansal switch (BPF_SRC(code)) { 135139c13c20SShubham Bansal case BPF_X: 135247b9c3bfSRussell King emit_a32_alu_r64(is64, dst, src, ctx, BPF_OP(code)); 1353ddecdfceSMircea Gherzan break; 135439c13c20SShubham Bansal case BPF_K: 135539c13c20SShubham Bansal /* Move immediate value to the temporary register 135639c13c20SShubham Bansal * and then do the ALU operation on the temporary 135739c13c20SShubham Bansal * register as this will sign-extend the immediate 135839c13c20SShubham Bansal * value into temporary reg and then it would be 135939c13c20SShubham Bansal * safe to do the operation on it. 136039c13c20SShubham Bansal */ 136147b9c3bfSRussell King emit_a32_mov_i64(is64, tmp2, imm, ctx); 136247b9c3bfSRussell King emit_a32_alu_r64(is64, dst, tmp2, ctx, BPF_OP(code)); 136339c13c20SShubham Bansal break; 136439c13c20SShubham Bansal } 136539c13c20SShubham Bansal break; 136639c13c20SShubham Bansal /* dst = dst / src(imm) */ 136739c13c20SShubham Bansal /* dst = dst % src(imm) */ 136839c13c20SShubham Bansal case BPF_ALU | BPF_DIV | BPF_K: 136939c13c20SShubham Bansal case BPF_ALU | BPF_DIV | BPF_X: 137039c13c20SShubham Bansal case BPF_ALU | BPF_MOD | BPF_K: 137139c13c20SShubham Bansal case BPF_ALU | BPF_MOD | BPF_X: 1372a6eccac5SRussell King rd_lo = arm_bpf_get_reg32(dst_lo, tmp2[1], ctx); 137339c13c20SShubham Bansal switch (BPF_SRC(code)) { 137439c13c20SShubham Bansal case BPF_X: 13757a987025SRussell King rt = arm_bpf_get_reg32(src_lo, tmp2[0], ctx); 137639c13c20SShubham Bansal break; 137739c13c20SShubham Bansal case BPF_K: 137839c13c20SShubham Bansal rt = tmp2[0]; 137947b9c3bfSRussell King emit_a32_mov_i(rt, imm, ctx); 138047b9c3bfSRussell King break; 138147b9c3bfSRussell King default: 138247b9c3bfSRussell King rt = src_lo; 138339c13c20SShubham Bansal break; 138439c13c20SShubham Bansal } 1385a6eccac5SRussell King emit_udivmod(rd_lo, rd_lo, rt, ctx, BPF_OP(code)); 1386a6eccac5SRussell King arm_bpf_put_reg32(dst_lo, rd_lo, ctx); 138747b9c3bfSRussell King emit_a32_mov_i(dst_hi, 0, ctx); 138839c13c20SShubham Bansal break; 138939c13c20SShubham Bansal case BPF_ALU64 | BPF_DIV | BPF_K: 139039c13c20SShubham Bansal case BPF_ALU64 | BPF_DIV | BPF_X: 139139c13c20SShubham Bansal case BPF_ALU64 | BPF_MOD | BPF_K: 139239c13c20SShubham Bansal case BPF_ALU64 | BPF_MOD | BPF_X: 139339c13c20SShubham Bansal goto notyet; 139439c13c20SShubham Bansal /* dst = dst >> imm */ 139539c13c20SShubham Bansal /* dst = dst << imm */ 139639c13c20SShubham Bansal case BPF_ALU | BPF_RSH | BPF_K: 139739c13c20SShubham Bansal case BPF_ALU | BPF_LSH | BPF_K: 139839c13c20SShubham Bansal if (unlikely(imm > 31)) 139939c13c20SShubham Bansal return -EINVAL; 140039c13c20SShubham Bansal if (imm) 140147b9c3bfSRussell King emit_a32_alu_i(dst_lo, imm, ctx, BPF_OP(code)); 140247b9c3bfSRussell King emit_a32_mov_i(dst_hi, 0, ctx); 140339c13c20SShubham Bansal break; 140439c13c20SShubham Bansal /* dst = dst << imm */ 140539c13c20SShubham Bansal case BPF_ALU64 | BPF_LSH | BPF_K: 140639c13c20SShubham Bansal if (unlikely(imm > 63)) 140739c13c20SShubham Bansal return -EINVAL; 140847b9c3bfSRussell King emit_a32_lsh_i64(dst, imm, ctx); 140939c13c20SShubham Bansal break; 141039c13c20SShubham Bansal /* dst = dst >> imm */ 141139c13c20SShubham Bansal case BPF_ALU64 | BPF_RSH | BPF_K: 141239c13c20SShubham Bansal if (unlikely(imm > 63)) 141339c13c20SShubham Bansal return -EINVAL; 141447b9c3bfSRussell King emit_a32_rsh_i64(dst, imm, ctx); 141539c13c20SShubham Bansal break; 141639c13c20SShubham Bansal /* dst = dst << src */ 141739c13c20SShubham Bansal case BPF_ALU64 | BPF_LSH | BPF_X: 141847b9c3bfSRussell King emit_a32_lsh_r64(dst, src, ctx); 141939c13c20SShubham Bansal break; 142039c13c20SShubham Bansal /* dst = dst >> src */ 142139c13c20SShubham Bansal case BPF_ALU64 | BPF_RSH | BPF_X: 142247b9c3bfSRussell King emit_a32_rsh_r64(dst, src, ctx); 142339c13c20SShubham Bansal break; 142439c13c20SShubham Bansal /* dst = dst >> src (signed) */ 142539c13c20SShubham Bansal case BPF_ALU64 | BPF_ARSH | BPF_X: 142647b9c3bfSRussell King emit_a32_arsh_r64(dst, src, ctx); 142739c13c20SShubham Bansal break; 142839c13c20SShubham Bansal /* dst = dst >> imm (signed) */ 142939c13c20SShubham Bansal case BPF_ALU64 | BPF_ARSH | BPF_K: 143039c13c20SShubham Bansal if (unlikely(imm > 63)) 143139c13c20SShubham Bansal return -EINVAL; 143247b9c3bfSRussell King emit_a32_arsh_i64(dst, imm, ctx); 143339c13c20SShubham Bansal break; 143439c13c20SShubham Bansal /* dst = ~dst */ 143534805931SDaniel Borkmann case BPF_ALU | BPF_NEG: 143647b9c3bfSRussell King emit_a32_alu_i(dst_lo, 0, ctx, BPF_OP(code)); 143747b9c3bfSRussell King emit_a32_mov_i(dst_hi, 0, ctx); 1438ddecdfceSMircea Gherzan break; 143939c13c20SShubham Bansal /* dst = ~dst (64 bit) */ 144039c13c20SShubham Bansal case BPF_ALU64 | BPF_NEG: 144147b9c3bfSRussell King emit_a32_neg64(dst, ctx); 1442ddecdfceSMircea Gherzan break; 144339c13c20SShubham Bansal /* dst = dst * src/imm */ 144439c13c20SShubham Bansal case BPF_ALU64 | BPF_MUL | BPF_X: 144539c13c20SShubham Bansal case BPF_ALU64 | BPF_MUL | BPF_K: 144639c13c20SShubham Bansal switch (BPF_SRC(code)) { 144739c13c20SShubham Bansal case BPF_X: 144847b9c3bfSRussell King emit_a32_mul_r64(dst, src, ctx); 1449ddecdfceSMircea Gherzan break; 145039c13c20SShubham Bansal case BPF_K: 145139c13c20SShubham Bansal /* Move immediate value to the temporary register 145239c13c20SShubham Bansal * and then do the multiplication on it as this 145339c13c20SShubham Bansal * will sign-extend the immediate value into temp 145439c13c20SShubham Bansal * reg then it would be safe to do the operation 145539c13c20SShubham Bansal * on it. 14565bf705b4SNicolas Schichan */ 145747b9c3bfSRussell King emit_a32_mov_i64(is64, tmp2, imm, ctx); 145847b9c3bfSRussell King emit_a32_mul_r64(dst, tmp2, ctx); 145939c13c20SShubham Bansal break; 14605bf705b4SNicolas Schichan } 1461ddecdfceSMircea Gherzan break; 146239c13c20SShubham Bansal /* dst = htole(dst) */ 146339c13c20SShubham Bansal /* dst = htobe(dst) */ 146439c13c20SShubham Bansal case BPF_ALU | BPF_END | BPF_FROM_LE: 146539c13c20SShubham Bansal case BPF_ALU | BPF_END | BPF_FROM_BE: 1466a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 146739c13c20SShubham Bansal if (BPF_SRC(code) == BPF_FROM_LE) 146839c13c20SShubham Bansal goto emit_bswap_uxt; 146939c13c20SShubham Bansal switch (imm) { 147039c13c20SShubham Bansal case 16: 1471a6eccac5SRussell King emit_rev16(rd[1], rd[1], ctx); 147239c13c20SShubham Bansal goto emit_bswap_uxt; 147339c13c20SShubham Bansal case 32: 1474a6eccac5SRussell King emit_rev32(rd[1], rd[1], ctx); 147539c13c20SShubham Bansal goto emit_bswap_uxt; 147639c13c20SShubham Bansal case 64: 1477a6eccac5SRussell King emit_rev32(ARM_LR, rd[1], ctx); 1478a6eccac5SRussell King emit_rev32(rd[1], rd[0], ctx); 1479a6eccac5SRussell King emit(ARM_MOV_R(rd[0], ARM_LR), ctx); 1480bf0098f2SDaniel Borkmann break; 148139c13c20SShubham Bansal } 148239c13c20SShubham Bansal goto exit; 148339c13c20SShubham Bansal emit_bswap_uxt: 148439c13c20SShubham Bansal switch (imm) { 148539c13c20SShubham Bansal case 16: 148639c13c20SShubham Bansal /* zero-extend 16 bits into 64 bits */ 148739c13c20SShubham Bansal #if __LINUX_ARM_ARCH__ < 6 148847b9c3bfSRussell King emit_a32_mov_i(tmp2[1], 0xffff, ctx); 1489a6eccac5SRussell King emit(ARM_AND_R(rd[1], rd[1], tmp2[1]), ctx); 149039c13c20SShubham Bansal #else /* ARMv6+ */ 1491a6eccac5SRussell King emit(ARM_UXTH(rd[1], rd[1]), ctx); 14921447f93fSNicolas Schichan #endif 1493a6eccac5SRussell King emit(ARM_EOR_R(rd[0], rd[0], rd[0]), ctx); 14941447f93fSNicolas Schichan break; 149539c13c20SShubham Bansal case 32: 149639c13c20SShubham Bansal /* zero-extend 32 bits into 64 bits */ 1497a6eccac5SRussell King emit(ARM_EOR_R(rd[0], rd[0], rd[0]), ctx); 1498ddecdfceSMircea Gherzan break; 149939c13c20SShubham Bansal case 64: 150039c13c20SShubham Bansal /* nop */ 150139c13c20SShubham Bansal break; 150239c13c20SShubham Bansal } 150339c13c20SShubham Bansal exit: 1504a6eccac5SRussell King arm_bpf_put_reg64(dst, rd, ctx); 150539c13c20SShubham Bansal break; 150639c13c20SShubham Bansal /* dst = imm64 */ 150739c13c20SShubham Bansal case BPF_LD | BPF_IMM | BPF_DW: 150839c13c20SShubham Bansal { 150939c13c20SShubham Bansal const struct bpf_insn insn1 = insn[1]; 151039c13c20SShubham Bansal u32 hi, lo = imm; 1511303249abSNicolas Schichan 151239c13c20SShubham Bansal hi = insn1.imm; 151347b9c3bfSRussell King emit_a32_mov_i(dst_lo, lo, ctx); 151447b9c3bfSRussell King emit_a32_mov_i(dst_hi, hi, ctx); 151539c13c20SShubham Bansal 151639c13c20SShubham Bansal return 1; 151739c13c20SShubham Bansal } 151839c13c20SShubham Bansal /* LDX: dst = *(size *)(src + off) */ 151939c13c20SShubham Bansal case BPF_LDX | BPF_MEM | BPF_W: 152039c13c20SShubham Bansal case BPF_LDX | BPF_MEM | BPF_H: 152139c13c20SShubham Bansal case BPF_LDX | BPF_MEM | BPF_B: 152239c13c20SShubham Bansal case BPF_LDX | BPF_MEM | BPF_DW: 15237a987025SRussell King rn = arm_bpf_get_reg32(src_lo, tmp2[1], ctx); 152447b9c3bfSRussell King emit_ldx_r(dst, rn, off, ctx, BPF_SIZE(code)); 152539c13c20SShubham Bansal break; 152639c13c20SShubham Bansal /* ST: *(size *)(dst + off) = imm */ 152739c13c20SShubham Bansal case BPF_ST | BPF_MEM | BPF_W: 152839c13c20SShubham Bansal case BPF_ST | BPF_MEM | BPF_H: 152939c13c20SShubham Bansal case BPF_ST | BPF_MEM | BPF_B: 153039c13c20SShubham Bansal case BPF_ST | BPF_MEM | BPF_DW: 153139c13c20SShubham Bansal switch (BPF_SIZE(code)) { 153239c13c20SShubham Bansal case BPF_DW: 153339c13c20SShubham Bansal /* Sign-extend immediate value into temp reg */ 153447b9c3bfSRussell King emit_a32_mov_i64(true, tmp2, imm, ctx); 153547b9c3bfSRussell King emit_str_r(dst_lo, tmp2[1], off, ctx, BPF_W); 153647b9c3bfSRussell King emit_str_r(dst_lo, tmp2[0], off+4, ctx, BPF_W); 153739c13c20SShubham Bansal break; 153839c13c20SShubham Bansal case BPF_W: 153939c13c20SShubham Bansal case BPF_H: 154039c13c20SShubham Bansal case BPF_B: 154147b9c3bfSRussell King emit_a32_mov_i(tmp2[1], imm, ctx); 154247b9c3bfSRussell King emit_str_r(dst_lo, tmp2[1], off, ctx, BPF_SIZE(code)); 154339c13c20SShubham Bansal break; 154439c13c20SShubham Bansal } 154539c13c20SShubham Bansal break; 154639c13c20SShubham Bansal /* STX XADD: lock *(u32 *)(dst + off) += src */ 154739c13c20SShubham Bansal case BPF_STX | BPF_XADD | BPF_W: 154839c13c20SShubham Bansal /* STX XADD: lock *(u64 *)(dst + off) += src */ 154939c13c20SShubham Bansal case BPF_STX | BPF_XADD | BPF_DW: 155039c13c20SShubham Bansal goto notyet; 155139c13c20SShubham Bansal /* STX: *(size *)(dst + off) = src */ 155239c13c20SShubham Bansal case BPF_STX | BPF_MEM | BPF_W: 155339c13c20SShubham Bansal case BPF_STX | BPF_MEM | BPF_H: 155439c13c20SShubham Bansal case BPF_STX | BPF_MEM | BPF_B: 155539c13c20SShubham Bansal case BPF_STX | BPF_MEM | BPF_DW: 155639c13c20SShubham Bansal { 155739c13c20SShubham Bansal u8 sz = BPF_SIZE(code); 155839c13c20SShubham Bansal 1559a6eccac5SRussell King rs = arm_bpf_get_reg64(src, tmp2, ctx); 156039c13c20SShubham Bansal 156139c13c20SShubham Bansal /* Store the value */ 156239c13c20SShubham Bansal if (BPF_SIZE(code) == BPF_DW) { 1563a6eccac5SRussell King emit_str_r(dst_lo, rs[1], off, ctx, BPF_W); 1564a6eccac5SRussell King emit_str_r(dst_lo, rs[0], off+4, ctx, BPF_W); 156539c13c20SShubham Bansal } else { 1566a6eccac5SRussell King emit_str_r(dst_lo, rs[1], off, ctx, sz); 156739c13c20SShubham Bansal } 156839c13c20SShubham Bansal break; 156939c13c20SShubham Bansal } 157039c13c20SShubham Bansal /* PC += off if dst == src */ 157139c13c20SShubham Bansal /* PC += off if dst > src */ 157239c13c20SShubham Bansal /* PC += off if dst >= src */ 157339c13c20SShubham Bansal /* PC += off if dst < src */ 157439c13c20SShubham Bansal /* PC += off if dst <= src */ 157539c13c20SShubham Bansal /* PC += off if dst != src */ 157639c13c20SShubham Bansal /* PC += off if dst > src (signed) */ 157739c13c20SShubham Bansal /* PC += off if dst >= src (signed) */ 157839c13c20SShubham Bansal /* PC += off if dst < src (signed) */ 157939c13c20SShubham Bansal /* PC += off if dst <= src (signed) */ 158039c13c20SShubham Bansal /* PC += off if dst & src */ 158139c13c20SShubham Bansal case BPF_JMP | BPF_JEQ | BPF_X: 158239c13c20SShubham Bansal case BPF_JMP | BPF_JGT | BPF_X: 158339c13c20SShubham Bansal case BPF_JMP | BPF_JGE | BPF_X: 158439c13c20SShubham Bansal case BPF_JMP | BPF_JNE | BPF_X: 158539c13c20SShubham Bansal case BPF_JMP | BPF_JSGT | BPF_X: 158639c13c20SShubham Bansal case BPF_JMP | BPF_JSGE | BPF_X: 158739c13c20SShubham Bansal case BPF_JMP | BPF_JSET | BPF_X: 158839c13c20SShubham Bansal case BPF_JMP | BPF_JLE | BPF_X: 158939c13c20SShubham Bansal case BPF_JMP | BPF_JLT | BPF_X: 159039c13c20SShubham Bansal case BPF_JMP | BPF_JSLT | BPF_X: 159139c13c20SShubham Bansal case BPF_JMP | BPF_JSLE | BPF_X: 159239c13c20SShubham Bansal /* Setup source registers */ 15937a987025SRussell King rm = arm_bpf_get_reg32(src_hi, tmp2[0], ctx); 15947a987025SRussell King rn = arm_bpf_get_reg32(src_lo, tmp2[1], ctx); 159539c13c20SShubham Bansal goto go_jmp; 159639c13c20SShubham Bansal /* PC += off if dst == imm */ 159739c13c20SShubham Bansal /* PC += off if dst > imm */ 159839c13c20SShubham Bansal /* PC += off if dst >= imm */ 159939c13c20SShubham Bansal /* PC += off if dst < imm */ 160039c13c20SShubham Bansal /* PC += off if dst <= imm */ 160139c13c20SShubham Bansal /* PC += off if dst != imm */ 160239c13c20SShubham Bansal /* PC += off if dst > imm (signed) */ 160339c13c20SShubham Bansal /* PC += off if dst >= imm (signed) */ 160439c13c20SShubham Bansal /* PC += off if dst < imm (signed) */ 160539c13c20SShubham Bansal /* PC += off if dst <= imm (signed) */ 160639c13c20SShubham Bansal /* PC += off if dst & imm */ 160739c13c20SShubham Bansal case BPF_JMP | BPF_JEQ | BPF_K: 160839c13c20SShubham Bansal case BPF_JMP | BPF_JGT | BPF_K: 160939c13c20SShubham Bansal case BPF_JMP | BPF_JGE | BPF_K: 161039c13c20SShubham Bansal case BPF_JMP | BPF_JNE | BPF_K: 161139c13c20SShubham Bansal case BPF_JMP | BPF_JSGT | BPF_K: 161239c13c20SShubham Bansal case BPF_JMP | BPF_JSGE | BPF_K: 161339c13c20SShubham Bansal case BPF_JMP | BPF_JSET | BPF_K: 161439c13c20SShubham Bansal case BPF_JMP | BPF_JLT | BPF_K: 161539c13c20SShubham Bansal case BPF_JMP | BPF_JLE | BPF_K: 161639c13c20SShubham Bansal case BPF_JMP | BPF_JSLT | BPF_K: 161739c13c20SShubham Bansal case BPF_JMP | BPF_JSLE | BPF_K: 161839c13c20SShubham Bansal if (off == 0) 161939c13c20SShubham Bansal break; 162039c13c20SShubham Bansal rm = tmp2[0]; 162139c13c20SShubham Bansal rn = tmp2[1]; 162239c13c20SShubham Bansal /* Sign-extend immediate value */ 162347b9c3bfSRussell King emit_a32_mov_i64(true, tmp2, imm, ctx); 162439c13c20SShubham Bansal go_jmp: 162539c13c20SShubham Bansal /* Setup destination register */ 1626a6eccac5SRussell King rd = arm_bpf_get_reg64(dst, tmp, ctx); 162739c13c20SShubham Bansal 162839c13c20SShubham Bansal /* Check for the condition */ 1629a6eccac5SRussell King emit_ar_r(rd[0], rd[1], rm, rn, ctx, BPF_OP(code)); 163039c13c20SShubham Bansal 163139c13c20SShubham Bansal /* Setup JUMP instruction */ 163239c13c20SShubham Bansal jmp_offset = bpf2a32_offset(i+off, i, ctx); 163339c13c20SShubham Bansal switch (BPF_OP(code)) { 163439c13c20SShubham Bansal case BPF_JNE: 163539c13c20SShubham Bansal case BPF_JSET: 163639c13c20SShubham Bansal _emit(ARM_COND_NE, ARM_B(jmp_offset), ctx); 163739c13c20SShubham Bansal break; 163839c13c20SShubham Bansal case BPF_JEQ: 163939c13c20SShubham Bansal _emit(ARM_COND_EQ, ARM_B(jmp_offset), ctx); 164039c13c20SShubham Bansal break; 164139c13c20SShubham Bansal case BPF_JGT: 164239c13c20SShubham Bansal _emit(ARM_COND_HI, ARM_B(jmp_offset), ctx); 164339c13c20SShubham Bansal break; 164439c13c20SShubham Bansal case BPF_JGE: 164539c13c20SShubham Bansal _emit(ARM_COND_CS, ARM_B(jmp_offset), ctx); 164639c13c20SShubham Bansal break; 164739c13c20SShubham Bansal case BPF_JSGT: 164839c13c20SShubham Bansal _emit(ARM_COND_LT, ARM_B(jmp_offset), ctx); 164939c13c20SShubham Bansal break; 165039c13c20SShubham Bansal case BPF_JSGE: 165139c13c20SShubham Bansal _emit(ARM_COND_GE, ARM_B(jmp_offset), ctx); 165239c13c20SShubham Bansal break; 165339c13c20SShubham Bansal case BPF_JLE: 165439c13c20SShubham Bansal _emit(ARM_COND_LS, ARM_B(jmp_offset), ctx); 165539c13c20SShubham Bansal break; 165639c13c20SShubham Bansal case BPF_JLT: 165739c13c20SShubham Bansal _emit(ARM_COND_CC, ARM_B(jmp_offset), ctx); 165839c13c20SShubham Bansal break; 165939c13c20SShubham Bansal case BPF_JSLT: 166039c13c20SShubham Bansal _emit(ARM_COND_LT, ARM_B(jmp_offset), ctx); 166139c13c20SShubham Bansal break; 166239c13c20SShubham Bansal case BPF_JSLE: 166339c13c20SShubham Bansal _emit(ARM_COND_GE, ARM_B(jmp_offset), ctx); 166439c13c20SShubham Bansal break; 166539c13c20SShubham Bansal } 166639c13c20SShubham Bansal break; 166739c13c20SShubham Bansal /* JMP OFF */ 166839c13c20SShubham Bansal case BPF_JMP | BPF_JA: 166939c13c20SShubham Bansal { 167039c13c20SShubham Bansal if (off == 0) 167139c13c20SShubham Bansal break; 167239c13c20SShubham Bansal jmp_offset = bpf2a32_offset(i+off, i, ctx); 167339c13c20SShubham Bansal check_imm24(jmp_offset); 167439c13c20SShubham Bansal emit(ARM_B(jmp_offset), ctx); 167539c13c20SShubham Bansal break; 167639c13c20SShubham Bansal } 167739c13c20SShubham Bansal /* tail call */ 167839c13c20SShubham Bansal case BPF_JMP | BPF_TAIL_CALL: 167939c13c20SShubham Bansal if (emit_bpf_tail_call(ctx)) 168039c13c20SShubham Bansal return -EFAULT; 168139c13c20SShubham Bansal break; 168239c13c20SShubham Bansal /* function call */ 168339c13c20SShubham Bansal case BPF_JMP | BPF_CALL: 168439c13c20SShubham Bansal { 16851c35ba12SRussell King const s8 *r0 = bpf2a32[BPF_REG_0]; 16861c35ba12SRussell King const s8 *r1 = bpf2a32[BPF_REG_1]; 16871c35ba12SRussell King const s8 *r2 = bpf2a32[BPF_REG_2]; 16881c35ba12SRussell King const s8 *r3 = bpf2a32[BPF_REG_3]; 16891c35ba12SRussell King const s8 *r4 = bpf2a32[BPF_REG_4]; 16901c35ba12SRussell King const s8 *r5 = bpf2a32[BPF_REG_5]; 169139c13c20SShubham Bansal const u32 func = (u32)__bpf_call_base + (u32)imm; 169239c13c20SShubham Bansal 169347b9c3bfSRussell King emit_a32_mov_r64(true, r0, r1, ctx); 169447b9c3bfSRussell King emit_a32_mov_r64(true, r1, r2, ctx); 169596cced4eSRussell King emit_push_r64(r5, ctx); 169696cced4eSRussell King emit_push_r64(r4, ctx); 169796cced4eSRussell King emit_push_r64(r3, ctx); 169839c13c20SShubham Bansal 169947b9c3bfSRussell King emit_a32_mov_i(tmp[1], func, ctx); 170039c13c20SShubham Bansal emit_blx_r(tmp[1], ctx); 170139c13c20SShubham Bansal 170239c13c20SShubham Bansal emit(ARM_ADD_I(ARM_SP, ARM_SP, imm8m(24)), ctx); // callee clean 170339c13c20SShubham Bansal break; 170439c13c20SShubham Bansal } 170539c13c20SShubham Bansal /* function return */ 170639c13c20SShubham Bansal case BPF_JMP | BPF_EXIT: 170739c13c20SShubham Bansal /* Optimization: when last instruction is EXIT 170839c13c20SShubham Bansal * simply fallthrough to epilogue. 170939c13c20SShubham Bansal */ 171039c13c20SShubham Bansal if (i == ctx->prog->len - 1) 171139c13c20SShubham Bansal break; 171239c13c20SShubham Bansal jmp_offset = epilogue_offset(ctx); 171339c13c20SShubham Bansal check_imm24(jmp_offset); 171439c13c20SShubham Bansal emit(ARM_B(jmp_offset), ctx); 171539c13c20SShubham Bansal break; 171639c13c20SShubham Bansal notyet: 171739c13c20SShubham Bansal pr_info_once("*** NOT YET: opcode %02x ***\n", code); 171839c13c20SShubham Bansal return -EFAULT; 171939c13c20SShubham Bansal default: 172039c13c20SShubham Bansal pr_err_once("unknown opcode %02x\n", code); 172139c13c20SShubham Bansal return -EINVAL; 1722ddecdfceSMircea Gherzan } 17230b59d880SNicolas Schichan 17240b59d880SNicolas Schichan if (ctx->flags & FLAG_IMM_OVERFLOW) 17250b59d880SNicolas Schichan /* 17260b59d880SNicolas Schichan * this instruction generated an overflow when 17270b59d880SNicolas Schichan * trying to access the literal pool, so 17280b59d880SNicolas Schichan * delegate this filter to the kernel interpreter. 17290b59d880SNicolas Schichan */ 17300b59d880SNicolas Schichan return -1; 173139c13c20SShubham Bansal return 0; 1732ddecdfceSMircea Gherzan } 1733ddecdfceSMircea Gherzan 173439c13c20SShubham Bansal static int build_body(struct jit_ctx *ctx) 173539c13c20SShubham Bansal { 173639c13c20SShubham Bansal const struct bpf_prog *prog = ctx->prog; 173739c13c20SShubham Bansal unsigned int i; 173839c13c20SShubham Bansal 173939c13c20SShubham Bansal for (i = 0; i < prog->len; i++) { 174039c13c20SShubham Bansal const struct bpf_insn *insn = &(prog->insnsi[i]); 174139c13c20SShubham Bansal int ret; 174239c13c20SShubham Bansal 174339c13c20SShubham Bansal ret = build_insn(insn, ctx); 174439c13c20SShubham Bansal 174539c13c20SShubham Bansal /* It's used with loading the 64 bit immediate value. */ 174639c13c20SShubham Bansal if (ret > 0) { 174739c13c20SShubham Bansal i++; 1748ddecdfceSMircea Gherzan if (ctx->target == NULL) 174939c13c20SShubham Bansal ctx->offsets[i] = ctx->idx; 175039c13c20SShubham Bansal continue; 175139c13c20SShubham Bansal } 175239c13c20SShubham Bansal 175339c13c20SShubham Bansal if (ctx->target == NULL) 175439c13c20SShubham Bansal ctx->offsets[i] = ctx->idx; 175539c13c20SShubham Bansal 175639c13c20SShubham Bansal /* If unsuccesfull, return with error code */ 175739c13c20SShubham Bansal if (ret) 175839c13c20SShubham Bansal return ret; 175939c13c20SShubham Bansal } 176039c13c20SShubham Bansal return 0; 176139c13c20SShubham Bansal } 176239c13c20SShubham Bansal 176339c13c20SShubham Bansal static int validate_code(struct jit_ctx *ctx) 176439c13c20SShubham Bansal { 176539c13c20SShubham Bansal int i; 176639c13c20SShubham Bansal 176739c13c20SShubham Bansal for (i = 0; i < ctx->idx; i++) { 176839c13c20SShubham Bansal if (ctx->target[i] == __opcode_to_mem_arm(ARM_INST_UDF)) 176939c13c20SShubham Bansal return -1; 177039c13c20SShubham Bansal } 1771ddecdfceSMircea Gherzan 1772ddecdfceSMircea Gherzan return 0; 1773ddecdfceSMircea Gherzan } 1774ddecdfceSMircea Gherzan 177539c13c20SShubham Bansal void bpf_jit_compile(struct bpf_prog *prog) 1776ddecdfceSMircea Gherzan { 177739c13c20SShubham Bansal /* Nothing to do here. We support Internal BPF. */ 177839c13c20SShubham Bansal } 1779ddecdfceSMircea Gherzan 178039c13c20SShubham Bansal struct bpf_prog *bpf_int_jit_compile(struct bpf_prog *prog) 178139c13c20SShubham Bansal { 178239c13c20SShubham Bansal struct bpf_prog *tmp, *orig_prog = prog; 178339c13c20SShubham Bansal struct bpf_binary_header *header; 178439c13c20SShubham Bansal bool tmp_blinded = false; 178539c13c20SShubham Bansal struct jit_ctx ctx; 178639c13c20SShubham Bansal unsigned int tmp_idx; 178739c13c20SShubham Bansal unsigned int image_size; 178839c13c20SShubham Bansal u8 *image_ptr; 178939c13c20SShubham Bansal 179039c13c20SShubham Bansal /* If BPF JIT was not enabled then we must fall back to 179139c13c20SShubham Bansal * the interpreter. 179239c13c20SShubham Bansal */ 179360b58afcSAlexei Starovoitov if (!prog->jit_requested) 179439c13c20SShubham Bansal return orig_prog; 179539c13c20SShubham Bansal 179639c13c20SShubham Bansal /* If constant blinding was enabled and we failed during blinding 179739c13c20SShubham Bansal * then we must fall back to the interpreter. Otherwise, we save 179839c13c20SShubham Bansal * the new JITed code. 179939c13c20SShubham Bansal */ 180039c13c20SShubham Bansal tmp = bpf_jit_blind_constants(prog); 180139c13c20SShubham Bansal 180239c13c20SShubham Bansal if (IS_ERR(tmp)) 180339c13c20SShubham Bansal return orig_prog; 180439c13c20SShubham Bansal if (tmp != prog) { 180539c13c20SShubham Bansal tmp_blinded = true; 180639c13c20SShubham Bansal prog = tmp; 180739c13c20SShubham Bansal } 1808ddecdfceSMircea Gherzan 1809ddecdfceSMircea Gherzan memset(&ctx, 0, sizeof(ctx)); 181039c13c20SShubham Bansal ctx.prog = prog; 1811*8c9602d3SRussell King ctx.cpu_architecture = cpu_architecture(); 1812ddecdfceSMircea Gherzan 181339c13c20SShubham Bansal /* Not able to allocate memory for offsets[] , then 181439c13c20SShubham Bansal * we must fall back to the interpreter 181539c13c20SShubham Bansal */ 181639c13c20SShubham Bansal ctx.offsets = kcalloc(prog->len, sizeof(int), GFP_KERNEL); 181739c13c20SShubham Bansal if (ctx.offsets == NULL) { 181839c13c20SShubham Bansal prog = orig_prog; 1819ddecdfceSMircea Gherzan goto out; 182039c13c20SShubham Bansal } 182139c13c20SShubham Bansal 182239c13c20SShubham Bansal /* 1) fake pass to find in the length of the JITed code, 182339c13c20SShubham Bansal * to compute ctx->offsets and other context variables 182439c13c20SShubham Bansal * needed to compute final JITed code. 182539c13c20SShubham Bansal * Also, calculate random starting pointer/start of JITed code 182639c13c20SShubham Bansal * which is prefixed by random number of fault instructions. 182739c13c20SShubham Bansal * 182839c13c20SShubham Bansal * If the first pass fails then there is no chance of it 182939c13c20SShubham Bansal * being successful in the second pass, so just fall back 183039c13c20SShubham Bansal * to the interpreter. 183139c13c20SShubham Bansal */ 183239c13c20SShubham Bansal if (build_body(&ctx)) { 183339c13c20SShubham Bansal prog = orig_prog; 183439c13c20SShubham Bansal goto out_off; 183539c13c20SShubham Bansal } 1836ddecdfceSMircea Gherzan 1837ddecdfceSMircea Gherzan tmp_idx = ctx.idx; 1838ddecdfceSMircea Gherzan build_prologue(&ctx); 1839ddecdfceSMircea Gherzan ctx.prologue_bytes = (ctx.idx - tmp_idx) * 4; 1840ddecdfceSMircea Gherzan 184139c13c20SShubham Bansal ctx.epilogue_offset = ctx.idx; 184239c13c20SShubham Bansal 1843ddecdfceSMircea Gherzan #if __LINUX_ARM_ARCH__ < 7 1844ddecdfceSMircea Gherzan tmp_idx = ctx.idx; 1845ddecdfceSMircea Gherzan build_epilogue(&ctx); 1846ddecdfceSMircea Gherzan ctx.epilogue_bytes = (ctx.idx - tmp_idx) * 4; 1847ddecdfceSMircea Gherzan 1848ddecdfceSMircea Gherzan ctx.idx += ctx.imm_count; 1849ddecdfceSMircea Gherzan if (ctx.imm_count) { 185039c13c20SShubham Bansal ctx.imms = kcalloc(ctx.imm_count, sizeof(u32), GFP_KERNEL); 185139c13c20SShubham Bansal if (ctx.imms == NULL) { 185239c13c20SShubham Bansal prog = orig_prog; 185339c13c20SShubham Bansal goto out_off; 185439c13c20SShubham Bansal } 1855ddecdfceSMircea Gherzan } 1856ddecdfceSMircea Gherzan #else 185739c13c20SShubham Bansal /* there's nothing about the epilogue on ARMv7 */ 1858ddecdfceSMircea Gherzan build_epilogue(&ctx); 1859ddecdfceSMircea Gherzan #endif 186039c13c20SShubham Bansal /* Now we can get the actual image size of the JITed arm code. 186139c13c20SShubham Bansal * Currently, we are not considering the THUMB-2 instructions 186239c13c20SShubham Bansal * for jit, although it can decrease the size of the image. 186339c13c20SShubham Bansal * 186439c13c20SShubham Bansal * As each arm instruction is of length 32bit, we are translating 186539c13c20SShubham Bansal * number of JITed intructions into the size required to store these 186639c13c20SShubham Bansal * JITed code. 186739c13c20SShubham Bansal */ 186839c13c20SShubham Bansal image_size = sizeof(u32) * ctx.idx; 1869ddecdfceSMircea Gherzan 187039c13c20SShubham Bansal /* Now we know the size of the structure to make */ 187139c13c20SShubham Bansal header = bpf_jit_binary_alloc(image_size, &image_ptr, 187239c13c20SShubham Bansal sizeof(u32), jit_fill_hole); 187339c13c20SShubham Bansal /* Not able to allocate memory for the structure then 187439c13c20SShubham Bansal * we must fall back to the interpretation 187539c13c20SShubham Bansal */ 187639c13c20SShubham Bansal if (header == NULL) { 187739c13c20SShubham Bansal prog = orig_prog; 187839c13c20SShubham Bansal goto out_imms; 187939c13c20SShubham Bansal } 188039c13c20SShubham Bansal 188139c13c20SShubham Bansal /* 2.) Actual pass to generate final JIT code */ 188239c13c20SShubham Bansal ctx.target = (u32 *) image_ptr; 1883ddecdfceSMircea Gherzan ctx.idx = 0; 188455309dd3SDaniel Borkmann 1885ddecdfceSMircea Gherzan build_prologue(&ctx); 188639c13c20SShubham Bansal 188739c13c20SShubham Bansal /* If building the body of the JITed code fails somehow, 188839c13c20SShubham Bansal * we fall back to the interpretation. 188939c13c20SShubham Bansal */ 18900b59d880SNicolas Schichan if (build_body(&ctx) < 0) { 189139c13c20SShubham Bansal image_ptr = NULL; 18920b59d880SNicolas Schichan bpf_jit_binary_free(header); 189339c13c20SShubham Bansal prog = orig_prog; 189439c13c20SShubham Bansal goto out_imms; 18950b59d880SNicolas Schichan } 1896ddecdfceSMircea Gherzan build_epilogue(&ctx); 1897ddecdfceSMircea Gherzan 189839c13c20SShubham Bansal /* 3.) Extra pass to validate JITed Code */ 189939c13c20SShubham Bansal if (validate_code(&ctx)) { 190039c13c20SShubham Bansal image_ptr = NULL; 190139c13c20SShubham Bansal bpf_jit_binary_free(header); 190239c13c20SShubham Bansal prog = orig_prog; 190339c13c20SShubham Bansal goto out_imms; 190439c13c20SShubham Bansal } 1905ebaef649SDaniel Borkmann flush_icache_range((u32)header, (u32)(ctx.target + ctx.idx)); 1906ddecdfceSMircea Gherzan 190739c13c20SShubham Bansal if (bpf_jit_enable > 1) 190839c13c20SShubham Bansal /* there are 2 passes here */ 190939c13c20SShubham Bansal bpf_jit_dump(prog->len, image_size, 2, ctx.target); 191039c13c20SShubham Bansal 191118d405afSDaniel Borkmann bpf_jit_binary_lock_ro(header); 191239c13c20SShubham Bansal prog->bpf_func = (void *)ctx.target; 191339c13c20SShubham Bansal prog->jited = 1; 191439c13c20SShubham Bansal prog->jited_len = image_size; 191539c13c20SShubham Bansal 191639c13c20SShubham Bansal out_imms: 1917ddecdfceSMircea Gherzan #if __LINUX_ARM_ARCH__ < 7 1918ddecdfceSMircea Gherzan if (ctx.imm_count) 1919ddecdfceSMircea Gherzan kfree(ctx.imms); 1920ddecdfceSMircea Gherzan #endif 192139c13c20SShubham Bansal out_off: 1922ddecdfceSMircea Gherzan kfree(ctx.offsets); 192339c13c20SShubham Bansal out: 192439c13c20SShubham Bansal if (tmp_blinded) 192539c13c20SShubham Bansal bpf_jit_prog_release_other(prog, prog == orig_prog ? 192639c13c20SShubham Bansal tmp : orig_prog); 192739c13c20SShubham Bansal return prog; 1928ddecdfceSMircea Gherzan } 1929ddecdfceSMircea Gherzan 1930