/* Generated by ./src/xlat/gen.sh from ./src/xlat/bpf_op_alu.in; do not edit. */ #include "gcc_compat.h" #include "static_assert.h" #if defined(BPF_ADD) || (defined(HAVE_DECL_BPF_ADD) && HAVE_DECL_BPF_ADD) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_ADD) == (0x00), "BPF_ADD != 0x00"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_ADD 0x00 #endif #if defined(BPF_SUB) || (defined(HAVE_DECL_BPF_SUB) && HAVE_DECL_BPF_SUB) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_SUB) == (0x10), "BPF_SUB != 0x10"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_SUB 0x10 #endif #if defined(BPF_MUL) || (defined(HAVE_DECL_BPF_MUL) && HAVE_DECL_BPF_MUL) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_MUL) == (0x20), "BPF_MUL != 0x20"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_MUL 0x20 #endif #if defined(BPF_DIV) || (defined(HAVE_DECL_BPF_DIV) && HAVE_DECL_BPF_DIV) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_DIV) == (0x30), "BPF_DIV != 0x30"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_DIV 0x30 #endif #if defined(BPF_OR) || (defined(HAVE_DECL_BPF_OR) && HAVE_DECL_BPF_OR) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_OR) == (0x40), "BPF_OR != 0x40"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_OR 0x40 #endif #if defined(BPF_AND) || (defined(HAVE_DECL_BPF_AND) && HAVE_DECL_BPF_AND) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_AND) == (0x50), "BPF_AND != 0x50"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_AND 0x50 #endif #if defined(BPF_LSH) || (defined(HAVE_DECL_BPF_LSH) && HAVE_DECL_BPF_LSH) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_LSH) == (0x60), "BPF_LSH != 0x60"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_LSH 0x60 #endif #if defined(BPF_RSH) || (defined(HAVE_DECL_BPF_RSH) && HAVE_DECL_BPF_RSH) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_RSH) == (0x70), "BPF_RSH != 0x70"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_RSH 0x70 #endif #if defined(BPF_NEG) || (defined(HAVE_DECL_BPF_NEG) && HAVE_DECL_BPF_NEG) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_NEG) == (0x80), "BPF_NEG != 0x80"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_NEG 0x80 #endif #if defined(BPF_MOD) || (defined(HAVE_DECL_BPF_MOD) && HAVE_DECL_BPF_MOD) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_MOD) == (0x90), "BPF_MOD != 0x90"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_MOD 0x90 #endif #if defined(BPF_XOR) || (defined(HAVE_DECL_BPF_XOR) && HAVE_DECL_BPF_XOR) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_XOR) == (0xa0), "BPF_XOR != 0xa0"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_XOR 0xa0 #endif #if defined(BPF_MOV) || (defined(HAVE_DECL_BPF_MOV) && HAVE_DECL_BPF_MOV) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_MOV) == (0xb0), "BPF_MOV != 0xb0"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_MOV 0xb0 #endif #if defined(BPF_ARSH) || (defined(HAVE_DECL_BPF_ARSH) && HAVE_DECL_BPF_ARSH) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_ARSH) == (0xc0), "BPF_ARSH != 0xc0"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_ARSH 0xc0 #endif #if defined(BPF_END) || (defined(HAVE_DECL_BPF_END) && HAVE_DECL_BPF_END) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((BPF_END) == (0xd0), "BPF_END != 0xd0"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define BPF_END 0xd0 #endif #undef XLAT_PREV_VAL #ifndef XLAT_MACROS_ONLY # ifdef IN_MPERS # error static const struct xlat bpf_op_alu in mpers mode # else DIAG_PUSH_IGNORE_TAUTOLOGICAL_CONSTANT_COMPARE static const struct xlat_data bpf_op_alu_xdata[] = { XLAT(BPF_ADD), #define XLAT_VAL_0 ((unsigned) (BPF_ADD)) #define XLAT_STR_0 STRINGIFY(BPF_ADD) XLAT(BPF_SUB), #define XLAT_VAL_1 ((unsigned) (BPF_SUB)) #define XLAT_STR_1 STRINGIFY(BPF_SUB) XLAT(BPF_MUL), #define XLAT_VAL_2 ((unsigned) (BPF_MUL)) #define XLAT_STR_2 STRINGIFY(BPF_MUL) XLAT(BPF_DIV), #define XLAT_VAL_3 ((unsigned) (BPF_DIV)) #define XLAT_STR_3 STRINGIFY(BPF_DIV) XLAT(BPF_OR), #define XLAT_VAL_4 ((unsigned) (BPF_OR)) #define XLAT_STR_4 STRINGIFY(BPF_OR) XLAT(BPF_AND), #define XLAT_VAL_5 ((unsigned) (BPF_AND)) #define XLAT_STR_5 STRINGIFY(BPF_AND) XLAT(BPF_LSH), #define XLAT_VAL_6 ((unsigned) (BPF_LSH)) #define XLAT_STR_6 STRINGIFY(BPF_LSH) XLAT(BPF_RSH), #define XLAT_VAL_7 ((unsigned) (BPF_RSH)) #define XLAT_STR_7 STRINGIFY(BPF_RSH) XLAT(BPF_NEG), #define XLAT_VAL_8 ((unsigned) (BPF_NEG)) #define XLAT_STR_8 STRINGIFY(BPF_NEG) XLAT(BPF_MOD), #define XLAT_VAL_9 ((unsigned) (BPF_MOD)) #define XLAT_STR_9 STRINGIFY(BPF_MOD) XLAT(BPF_XOR), #define XLAT_VAL_10 ((unsigned) (BPF_XOR)) #define XLAT_STR_10 STRINGIFY(BPF_XOR) XLAT(BPF_MOV), #define XLAT_VAL_11 ((unsigned) (BPF_MOV)) #define XLAT_STR_11 STRINGIFY(BPF_MOV) XLAT(BPF_ARSH), #define XLAT_VAL_12 ((unsigned) (BPF_ARSH)) #define XLAT_STR_12 STRINGIFY(BPF_ARSH) XLAT(BPF_END), #define XLAT_VAL_13 ((unsigned) (BPF_END)) #define XLAT_STR_13 STRINGIFY(BPF_END) }; static const struct xlat bpf_op_alu[1] = { { .data = bpf_op_alu_xdata, .size = ARRAY_SIZE(bpf_op_alu_xdata), .type = XT_NORMAL, .flags_mask = 0 # ifdef XLAT_VAL_0 | XLAT_VAL_0 # endif # ifdef XLAT_VAL_1 | XLAT_VAL_1 # endif # ifdef XLAT_VAL_2 | XLAT_VAL_2 # endif # ifdef XLAT_VAL_3 | XLAT_VAL_3 # endif # ifdef XLAT_VAL_4 | XLAT_VAL_4 # endif # ifdef XLAT_VAL_5 | XLAT_VAL_5 # endif # ifdef XLAT_VAL_6 | XLAT_VAL_6 # endif # ifdef XLAT_VAL_7 | XLAT_VAL_7 # endif # ifdef XLAT_VAL_8 | XLAT_VAL_8 # endif # ifdef XLAT_VAL_9 | XLAT_VAL_9 # endif # ifdef XLAT_VAL_10 | XLAT_VAL_10 # endif # ifdef XLAT_VAL_11 | XLAT_VAL_11 # endif # ifdef XLAT_VAL_12 | XLAT_VAL_12 # endif # ifdef XLAT_VAL_13 | XLAT_VAL_13 # endif , .flags_strsz = 0 # ifdef XLAT_STR_0 + sizeof(XLAT_STR_0) # endif # ifdef XLAT_STR_1 + sizeof(XLAT_STR_1) # endif # ifdef XLAT_STR_2 + sizeof(XLAT_STR_2) # endif # ifdef XLAT_STR_3 + sizeof(XLAT_STR_3) # endif # ifdef XLAT_STR_4 + sizeof(XLAT_STR_4) # endif # ifdef XLAT_STR_5 + sizeof(XLAT_STR_5) # endif # ifdef XLAT_STR_6 + sizeof(XLAT_STR_6) # endif # ifdef XLAT_STR_7 + sizeof(XLAT_STR_7) # endif # ifdef XLAT_STR_8 + sizeof(XLAT_STR_8) # endif # ifdef XLAT_STR_9 + sizeof(XLAT_STR_9) # endif # ifdef XLAT_STR_10 + sizeof(XLAT_STR_10) # endif # ifdef XLAT_STR_11 + sizeof(XLAT_STR_11) # endif # ifdef XLAT_STR_12 + sizeof(XLAT_STR_12) # endif # ifdef XLAT_STR_13 + sizeof(XLAT_STR_13) # endif , } }; DIAG_POP_IGNORE_TAUTOLOGICAL_CONSTANT_COMPARE # undef XLAT_STR_0 # undef XLAT_VAL_0 # undef XLAT_STR_1 # undef XLAT_VAL_1 # undef XLAT_STR_2 # undef XLAT_VAL_2 # undef XLAT_STR_3 # undef XLAT_VAL_3 # undef XLAT_STR_4 # undef XLAT_VAL_4 # undef XLAT_STR_5 # undef XLAT_VAL_5 # undef XLAT_STR_6 # undef XLAT_VAL_6 # undef XLAT_STR_7 # undef XLAT_VAL_7 # undef XLAT_STR_8 # undef XLAT_VAL_8 # undef XLAT_STR_9 # undef XLAT_VAL_9 # undef XLAT_STR_10 # undef XLAT_VAL_10 # undef XLAT_STR_11 # undef XLAT_VAL_11 # undef XLAT_STR_12 # undef XLAT_VAL_12 # undef XLAT_STR_13 # undef XLAT_VAL_13 # endif /* !IN_MPERS */ #endif /* !XLAT_MACROS_ONLY */