/* Generated by ./src/xlat/gen.sh from ./src/xlat/adjtimex_modes.in; do not edit. */ #include "gcc_compat.h" #include "static_assert.h" #if defined(ADJ_OFFSET_SS_READ) || (defined(HAVE_DECL_ADJ_OFFSET_SS_READ) && HAVE_DECL_ADJ_OFFSET_SS_READ) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_OFFSET_SS_READ) == (0xa001), "ADJ_OFFSET_SS_READ != 0xa001"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_OFFSET_SS_READ 0xa001 #endif #if defined(ADJ_OFFSET_SINGLESHOT) || (defined(HAVE_DECL_ADJ_OFFSET_SINGLESHOT) && HAVE_DECL_ADJ_OFFSET_SINGLESHOT) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_OFFSET_SINGLESHOT) == (0x8001), "ADJ_OFFSET_SINGLESHOT != 0x8001"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_OFFSET_SINGLESHOT 0x8001 #endif #if defined(ADJ_OFFSET) || (defined(HAVE_DECL_ADJ_OFFSET) && HAVE_DECL_ADJ_OFFSET) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_OFFSET) == (0x0001), "ADJ_OFFSET != 0x0001"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_OFFSET 0x0001 #endif #if defined(ADJ_FREQUENCY) || (defined(HAVE_DECL_ADJ_FREQUENCY) && HAVE_DECL_ADJ_FREQUENCY) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_FREQUENCY) == (0x0002), "ADJ_FREQUENCY != 0x0002"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_FREQUENCY 0x0002 #endif #if defined(ADJ_MAXERROR) || (defined(HAVE_DECL_ADJ_MAXERROR) && HAVE_DECL_ADJ_MAXERROR) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_MAXERROR) == (0x0004), "ADJ_MAXERROR != 0x0004"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_MAXERROR 0x0004 #endif #if defined(ADJ_ESTERROR) || (defined(HAVE_DECL_ADJ_ESTERROR) && HAVE_DECL_ADJ_ESTERROR) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_ESTERROR) == (0x0008), "ADJ_ESTERROR != 0x0008"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_ESTERROR 0x0008 #endif #if defined(ADJ_STATUS) || (defined(HAVE_DECL_ADJ_STATUS) && HAVE_DECL_ADJ_STATUS) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_STATUS) == (0x0010), "ADJ_STATUS != 0x0010"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_STATUS 0x0010 #endif #if defined(ADJ_TIMECONST) || (defined(HAVE_DECL_ADJ_TIMECONST) && HAVE_DECL_ADJ_TIMECONST) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_TIMECONST) == (0x0020), "ADJ_TIMECONST != 0x0020"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_TIMECONST 0x0020 #endif #if defined(ADJ_TAI) || (defined(HAVE_DECL_ADJ_TAI) && HAVE_DECL_ADJ_TAI) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_TAI) == (0x0080), "ADJ_TAI != 0x0080"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_TAI 0x0080 #endif #if defined(ADJ_SETOFFSET) || (defined(HAVE_DECL_ADJ_SETOFFSET) && HAVE_DECL_ADJ_SETOFFSET) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_SETOFFSET) == (0x0100), "ADJ_SETOFFSET != 0x0100"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_SETOFFSET 0x0100 #endif #if defined(ADJ_MICRO) || (defined(HAVE_DECL_ADJ_MICRO) && HAVE_DECL_ADJ_MICRO) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_MICRO) == (0x1000), "ADJ_MICRO != 0x1000"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_MICRO 0x1000 #endif #if defined(ADJ_NANO) || (defined(HAVE_DECL_ADJ_NANO) && HAVE_DECL_ADJ_NANO) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_NANO) == (0x2000), "ADJ_NANO != 0x2000"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_NANO 0x2000 #endif #if defined(ADJ_TICK) || (defined(HAVE_DECL_ADJ_TICK) && HAVE_DECL_ADJ_TICK) DIAG_PUSH_IGNORE_TAUTOLOGICAL_COMPARE static_assert((ADJ_TICK) == (0x4000), "ADJ_TICK != 0x4000"); DIAG_POP_IGNORE_TAUTOLOGICAL_COMPARE #else # define ADJ_TICK 0x4000 #endif #undef XLAT_PREV_VAL #ifndef XLAT_MACROS_ONLY # ifdef IN_MPERS # error static const struct xlat adjtimex_modes in mpers mode # else DIAG_PUSH_IGNORE_TAUTOLOGICAL_CONSTANT_COMPARE static const struct xlat_data adjtimex_modes_xdata[] = { XLAT(ADJ_OFFSET_SS_READ), #define XLAT_VAL_0 ((unsigned) (ADJ_OFFSET_SS_READ)) #define XLAT_STR_0 STRINGIFY(ADJ_OFFSET_SS_READ) XLAT(ADJ_OFFSET_SINGLESHOT), #define XLAT_VAL_1 ((unsigned) (ADJ_OFFSET_SINGLESHOT)) #define XLAT_STR_1 STRINGIFY(ADJ_OFFSET_SINGLESHOT) XLAT(ADJ_OFFSET), #define XLAT_VAL_2 ((unsigned) (ADJ_OFFSET)) #define XLAT_STR_2 STRINGIFY(ADJ_OFFSET) XLAT(ADJ_FREQUENCY), #define XLAT_VAL_3 ((unsigned) (ADJ_FREQUENCY)) #define XLAT_STR_3 STRINGIFY(ADJ_FREQUENCY) XLAT(ADJ_MAXERROR), #define XLAT_VAL_4 ((unsigned) (ADJ_MAXERROR)) #define XLAT_STR_4 STRINGIFY(ADJ_MAXERROR) XLAT(ADJ_ESTERROR), #define XLAT_VAL_5 ((unsigned) (ADJ_ESTERROR)) #define XLAT_STR_5 STRINGIFY(ADJ_ESTERROR) XLAT(ADJ_STATUS), #define XLAT_VAL_6 ((unsigned) (ADJ_STATUS)) #define XLAT_STR_6 STRINGIFY(ADJ_STATUS) XLAT(ADJ_TIMECONST), #define XLAT_VAL_7 ((unsigned) (ADJ_TIMECONST)) #define XLAT_STR_7 STRINGIFY(ADJ_TIMECONST) XLAT(ADJ_TAI), #define XLAT_VAL_8 ((unsigned) (ADJ_TAI)) #define XLAT_STR_8 STRINGIFY(ADJ_TAI) XLAT(ADJ_SETOFFSET), #define XLAT_VAL_9 ((unsigned) (ADJ_SETOFFSET)) #define XLAT_STR_9 STRINGIFY(ADJ_SETOFFSET) XLAT(ADJ_MICRO), #define XLAT_VAL_10 ((unsigned) (ADJ_MICRO)) #define XLAT_STR_10 STRINGIFY(ADJ_MICRO) XLAT(ADJ_NANO), #define XLAT_VAL_11 ((unsigned) (ADJ_NANO)) #define XLAT_STR_11 STRINGIFY(ADJ_NANO) XLAT(ADJ_TICK), #define XLAT_VAL_12 ((unsigned) (ADJ_TICK)) #define XLAT_STR_12 STRINGIFY(ADJ_TICK) }; static const struct xlat adjtimex_modes[1] = { { .data = adjtimex_modes_xdata, .size = ARRAY_SIZE(adjtimex_modes_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 , .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 , } }; 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 # endif /* !IN_MPERS */ #endif /* !XLAT_MACROS_ONLY */