// SPDX-License-Identifier: GPL-2.0 #include #include #include "../../../include/linux/filter.h" #include #include #include "bpf_misc.h" struct { __uint(type, BPF_MAP_TYPE_ARENA); __uint(map_flags, BPF_F_MMAPABLE | BPF_F_NO_USER_CONV); __uint(max_entries, 1); } arena SEC(".maps"); extern long bpf_kfunc_call_test4(signed char a, short b, int c, long d) __ksym; /* to retain debug info for BTF generation */ void __kfunc_btf_root(void) { bpf_kfunc_call_test4(0, 0, 0, 0); bpf_arena_alloc_pages(0, 0, 0, 0, 0); bpf_rdonly_cast(0, 0); } SEC("socket") __flag(BPF_F_TEST_STATE_FREQ) __flag(BPF_F_TEST_RND_HI32) __success __retval(0) __naked void zext_lost_across_checkpoint(void) { asm volatile (" \ call %[bpf_ktime_get_ns]; \ r8 = r0; \ r6 = 0xdeadbeefcafebabe ll; /* inject some value for r6's upper half */ \ if r8 != 0 goto 1f; /* fall-through cached first, branch pruned */ \ r6 = 32; /* full 64-bit def */ \ goto 2f; \ 1: w6 = 32; /* 32-bit def, zext mark lost */ \ 2: r0 = r6; /* buggy verifier believed upper 32 bits are 0 */ \ /* and thus did not zero extended w6 = 32. */ \ r0 >>= 32; \ exit; \ " : : __imm(bpf_ktime_get_ns) : __clobber_all); } /* 32-bit ALU result read as 64-bit -> zext */ SEC("socket") __success __log_level(2) __msg("w1 = w0{{ +}}; zext") __naked void zext_alu32_hi_used(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ w1 = w0; \ r0 = r1; \ exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } /* 32-bit ALU result read only as 32-bit -> no zext */ SEC("socket") __success __log_level(2) __not_msg("; zext") __naked void no_zext_alu32_hi_unused(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ w1 = w0; /* MOV */ \ w2 = w1; \ w2 += w1; /* ALU32, BPF_X */ \ w2 += 1; /* ALU32, BPF_K */ \ w2 = w2; /* keep w2 alive for previous instruction */ \ r0 = 0; \ exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } /* 64-bit definition is never zero extended */ SEC("socket") __success __log_level(2) __not_msg("r1 = r0{{.*}}; zext") __naked void no_zext_mov64(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ r1 = r0; \ r0 = r1; \ exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } /* Narrow load result read as 64-bit -> zext */ SEC("socket") __success __log_level(2) __msg("r1 = *(u32 *)(r10 -8){{ +}}; zext") __naked void zext_narrow_load_hi_used(void) { asm volatile (" \ r0 = 0; \ *(u64 *)(r10 - 8) = r0; \ r1 = *(u32 *)(r10 - 8); \ r0 = r1; \ exit; \ " ::: __clobber_all); } /* 32-bit atomic fetch result read as 64-bit -> zext */ SEC("socket") __success __log_level(2) __msg("r1 = atomic_fetch_add((u32 *)(r10 -8), r1){{ +}}; zext") __naked void zext_atomic_fetch32_hi_used(void) { asm volatile (" \ r1 = 0; \ *(u64 *)(r10 - 8) = r1; \ w1 = 1; \ .8byte %[fetch_add32]; \ r0 = r1; \ exit; \ " : : __imm_insn(fetch_add32, BPF_ATOMIC_OP(BPF_W, BPF_ADD | BPF_FETCH, BPF_REG_10, BPF_REG_1, -8)) : __clobber_all); } /* 32-bit atomic cmpxchg result (r0) read as 64-bit -> zext */ SEC("socket") __success __log_level(2) __msg("r0 = atomic_cmpxchg((u32 *)(r10 -8), r0, r1){{ +}}; zext") __naked void zext_cmpxchg32_hi_used(void) { asm volatile (" \ r1 = 0; \ *(u64 *)(r10 - 8) = r1; \ w0 = 0; \ w1 = 1; \ .8byte %[cmpxchg32]; \ r2 = r0; \ r0 = r2; \ exit; \ " : : __imm_insn(cmpxchg32, BPF_ATOMIC_OP(BPF_W, BPF_CMPXCHG, BPF_REG_10, BPF_REG_1, -8)) : __clobber_all); } /* 32-bit def before a branch, upper half used on one branch -> zext */ SEC("socket") __success __log_level(2) __msg("w6 = 32{{ +}}; zext") __naked void zext_cfg_hi_used_one_branch(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ w6 = 32; \ if r0 == 0 goto 1f; \ r0 = r6; \ exit; \ 1: r0 = 0; \ exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } /* r1's upper half is dead, so 'w1 = 1' must NOT be marked for zero extension. */ SEC("socket") __success __log_level(2) __not_msg("w1 = 1{{.*}}; zext") __naked void no_zext_other_reg_hi_used(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ r6 = r0; \ r6 <<= 32; \ w1 = 1; \ r0 = r6; \ exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } /* LD_ABS defines r0; when r0 is read as 64-bit it must be zero extended */ SEC("socket") __success __log_level(2) __msg("r0 = *(u8 *)skb[0]{{.*}}; zext") __naked void zext_ld_abs_hi_used(void) { asm volatile (" \ r6 = r1; \ r0 = *(u8 *)skb[0]; \ r7 = r0; \ r0 = r7; \ exit; \ " ::: __clobber_all); } /* Helper parameters are read as 64-bit (call_use_mask() fallback) */ SEC("socket") __success __log_level(2) __msg("w2 = 1{{ +}}; zext") __naked void helper_param_read_as_64bit(void) { asm volatile (" \ r1 = r10; \ r1 += -8; \ w2 = 1; \ call %[bpf_trace_printk]; \ r0 = 0; \ exit; \ " : : __imm(bpf_trace_printk) : __clobber_all); } static __used __naked int subprog_reads_arg_as_64bit(void) { asm volatile (" \ r0 = r1; \ exit; \ " ::: __clobber_all); } /* subprogram parameters are conservatively read as 64-bit */ SEC("socket") __success __log_level(2) __msg("w1 = w0{{ +}}; zext") __naked void subprog_param_read_as_64bit(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ w1 = w0; \ call subprog_reads_arg_as_64bit; \ r0 = 0; \ exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } /* kfunc parameters are zero extended */ SEC("tc") __success __log_level(2) __msg("w1 = 1{{ +}}; zext") __msg("w2 = 1{{ +}}; zext") __msg("w3 = 1{{ +}}; zext") __msg("w4 = 1{{ +}}; zext") __naked void kfunc_param_read_per_btf(void) { asm volatile (" \ w1 = 1; \ w2 = 1; \ w3 = 1; \ w4 = 1; \ call bpf_kfunc_call_test4; \ r0 = 0; \ exit; \ " ::: __clobber_all); } SEC("socket") __success __log_level(2) __not_msg("; zext") __naked void alu32_and_32bit_conditional(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ w1 = w0; \ if w1 > 42 goto 1f; /* BPF_K */ \ w2 = 28; \ if w2 > w1 goto 1f; /* BPF_X */ \ r0 = 0; \ 1: exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } SEC("socket") __success __log_level(2) __msg("w1 = w0{{ +}}; zext") __naked void alu32_and_64bit_conditional(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ w1 = w0; \ if r1 > 42 goto 1f; /* BPF_K */ \ r2 = 28; \ if r2 > r1 goto 1f; /* BPF_X */ \ r0 = 0; \ 1: exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } SEC("socket") __success __log_level(2) __not_msg("; zext") __naked void alu64_and_conditionals(void) { asm volatile (" \ call %[bpf_get_prandom_u32]; \ r1 = r0; \ if w1 > 42 goto 1f; /* BPF_K */ \ if r1 > 42 goto 1f; /* BPF_K */ \ r2 = 28; \ if w2 > w1 goto 1f; /* BPF_X */ \ if r2 > r1 goto 1f; /* BPF_X */ \ r0 = 0; \ 1: exit; \ " : : __imm(bpf_get_prandom_u32) : __clobber_all); } #ifdef __BPF_FEATURE_ADDR_SPACE_CAST SEC("?fentry.s/" SYS_PREFIX "sys_getpgid") __arch_s390x __xlated("7: w1 = w0") __xlated("8: w1 = w1") __xlated("9: w1 += 8") __xlated("10: w1 = w1") __xlated("11: w2 = w1") __xlated("12: w2 = w2") __xlated("13: *(u64 *)(r1 +0) = r2") __naked void arena_ptr(void) { asm volatile (" \ r1 = %[arena] ll; \ r2 = 0; \ r3 = 1; \ r4 = 0; \ r5 = 0; \ call %[bpf_arena_alloc_pages]; \ r1 = addr_space_cast(r0, 0, 1); /* needs zext */ \ r1 += 8; /* needs zext */ \ r2 = addr_space_cast(r1, 1, 0); /* needs zext because of BPF_F_NO_USER_CONV */ \ *(u64 *)(r1 +0) = r2; \ r0 = 0; \ exit; \ " : : __imm(bpf_arena_alloc_pages), __imm_addr(arena) : __clobber_all); } #endif /* Check if probe mem loads keep their zero extension. */ SEC("socket") __success __log_level(2) __arch_s390x __xlated("3: r1 = *(u64 *)(r0 +0)") __xlated("4: r2 = *(u32 *)(r0 +0)") __xlated("5: w2 = w2") __xlated("6: r3 = *(u16 *)(r0 +0)") __xlated("7: w3 = w3") __xlated("8: r4 = *(u8 *)(r0 +0)") __xlated("9: w4 = w4") __naked void probe_mem(void) { asm volatile (" \ r1 = 0; \ r2 = 0; \ call %[bpf_rdonly_cast]; \ r1 = *(u64 *)(r0 + 0); /* BPF_PROBE_MEM */ \ r2 = *(u32 *)(r0 + 0); /* BPF_PROBE_MEM */ \ r3 = *(u16 *)(r0 + 0); /* BPF_PROBE_MEM */ \ r4 = *(u8 *)(r0 + 0); /* BPF_PROBE_MEM */ \ r0 = r1; /* make the registers used */ \ r0 += r2; \ r0 += r3; \ r0 += r4; \ 1: exit; \ " : : __imm(bpf_rdonly_cast) : __clobber_all); } char _license[] SEC("license") = "GPL";