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target-mips: Use local float status pointer across MSA macros
Reduce line wrapping throughout MSA helper macros by using a local float status pointer rather than referring to the float status through the environment each time. No functional change. Signed-off-by: Maciej W. Rozycki <macro@codesourcery.com> Reviewed-by: Leon Alrae <leon.alrae@imgtec.com> Signed-off-by: Leon Alrae <leon.alrae@imgtec.com>
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@ -1782,15 +1782,14 @@ static inline int32 float64_to_q32(float64 a STATUS_PARAM)
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#define MSA_FLOAT_COND(DEST, OP, ARG1, ARG2, BITS, QUIET) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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int64_t cond; \
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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set_float_exception_flags(0, status); \
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if (!QUIET) { \
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cond = float ## BITS ## _ ## OP(ARG1, ARG2, \
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&env->active_tc.msa_fp_status); \
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cond = float ## BITS ## _ ## OP(ARG1, ARG2, status); \
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} else { \
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cond = float ## BITS ## _ ## OP ## _quiet(ARG1, ARG2, \
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&env->active_tc.msa_fp_status); \
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cond = float ## BITS ## _ ## OP ## _quiet(ARG1, ARG2, status); \
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} \
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DEST = cond ? M_MAX_UINT(BITS) : 0; \
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c = update_msacsr(env, CLEAR_IS_INEXACT, 0); \
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@ -2375,11 +2374,11 @@ void helper_msa_fsne_df(CPUMIPSState *env, uint32_t df, uint32_t wd,
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#define MSA_FLOAT_BINOP(DEST, OP, ARG1, ARG2, BITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## OP(ARG1, ARG2, \
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&env->active_tc.msa_fp_status); \
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set_float_exception_flags(0, status); \
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DEST = float ## BITS ## _ ## OP(ARG1, ARG2, status); \
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c = update_msacsr(env, 0, IS_DENORMAL(DEST, BITS)); \
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\
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if (get_enabled_exceptions(env, c)) { \
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@ -2511,11 +2510,11 @@ void helper_msa_fdiv_df(CPUMIPSState *env, uint32_t df, uint32_t wd,
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#define MSA_FLOAT_MULADD(DEST, ARG1, ARG2, ARG3, NEGATE, BITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _muladd(ARG2, ARG3, ARG1, NEGATE, \
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&env->active_tc.msa_fp_status); \
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set_float_exception_flags(0, status); \
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DEST = float ## BITS ## _muladd(ARG2, ARG3, ARG1, NEGATE, status); \
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c = update_msacsr(env, 0, IS_DENORMAL(DEST, BITS)); \
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\
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if (get_enabled_exceptions(env, c)) { \
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@ -2630,10 +2629,11 @@ void helper_msa_fexp2_df(CPUMIPSState *env, uint32_t df, uint32_t wd,
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#define MSA_FLOAT_UNOP(DEST, OP, ARG, BITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## OP(ARG, &env->active_tc.msa_fp_status);\
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set_float_exception_flags(0, status); \
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DEST = float ## BITS ## _ ## OP(ARG, status); \
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c = update_msacsr(env, 0, IS_DENORMAL(DEST, BITS)); \
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\
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if (get_enabled_exceptions(env, c)) { \
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@ -2678,10 +2678,11 @@ void helper_msa_fexdo_df(CPUMIPSState *env, uint32_t df, uint32_t wd,
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#define MSA_FLOAT_UNOP_XD(DEST, OP, ARG, BITS, XBITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## OP(ARG, &env->active_tc.msa_fp_status);\
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set_float_exception_flags(0, status); \
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DEST = float ## BITS ## _ ## OP(ARG, status); \
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c = update_msacsr(env, CLEAR_FS_UNDERFLOW, 0); \
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\
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if (get_enabled_exceptions(env, c)) { \
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@ -2728,11 +2729,11 @@ void helper_msa_ftq_df(CPUMIPSState *env, uint32_t df, uint32_t wd,
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#define MSA_FLOAT_MAXOP(DEST, OP, ARG1, ARG2, BITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## OP(ARG1, ARG2, \
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&env->active_tc.msa_fp_status); \
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set_float_exception_flags(0, status); \
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DEST = float ## BITS ## _ ## OP(ARG1, ARG2, status); \
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c = update_msacsr(env, 0, 0); \
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\
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if (get_enabled_exceptions(env, c)) { \
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@ -2924,10 +2925,11 @@ void helper_msa_fclass_df(CPUMIPSState *env, uint32_t df,
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#define MSA_FLOAT_UNOP0(DEST, OP, ARG, BITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## OP(ARG, &env->active_tc.msa_fp_status);\
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set_float_exception_flags(0, status); \
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DEST = float ## BITS ## _ ## OP(ARG, status); \
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c = update_msacsr(env, CLEAR_FS_UNDERFLOW, 0); \
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\
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if (get_enabled_exceptions(env, c)) { \
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@ -3029,11 +3031,11 @@ void helper_msa_fsqrt_df(CPUMIPSState *env, uint32_t df, uint32_t wd,
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#define MSA_FLOAT_RECIPROCAL(DEST, ARG, BITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## div(FLOAT_ONE ## BITS, ARG, \
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&env->active_tc.msa_fp_status); \
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set_float_exception_flags(0, status); \
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DEST = float ## BITS ## _ ## div(FLOAT_ONE ## BITS, ARG, status); \
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c = update_msacsr(env, float ## BITS ## _is_infinity(ARG) || \
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float ## BITS ## _is_quiet_nan(DEST) ? \
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0 : RECIPROCAL_INEXACT, \
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@ -3138,23 +3140,20 @@ void helper_msa_frint_df(CPUMIPSState *env, uint32_t df, uint32_t wd,
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#define MSA_FLOAT_LOGB(DEST, ARG, BITS) \
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do { \
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float_status *status = &env->active_tc.msa_fp_status; \
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int c; \
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\
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set_float_exception_flags(0, &env->active_tc.msa_fp_status); \
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set_float_rounding_mode(float_round_down, \
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&env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## log2(ARG, \
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&env->active_tc.msa_fp_status); \
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DEST = float ## BITS ## _ ## round_to_int(DEST, \
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&env->active_tc.msa_fp_status); \
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set_float_exception_flags(0, status); \
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set_float_rounding_mode(float_round_down, status); \
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DEST = float ## BITS ## _ ## log2(ARG, status); \
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DEST = float ## BITS ## _ ## round_to_int(DEST, status); \
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set_float_rounding_mode(ieee_rm[(env->active_tc.msacsr & \
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MSACSR_RM_MASK) >> MSACSR_RM], \
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&env->active_tc.msa_fp_status); \
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status); \
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\
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set_float_exception_flags( \
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get_float_exception_flags(&env->active_tc.msa_fp_status) \
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& (~float_flag_inexact), \
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&env->active_tc.msa_fp_status); \
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set_float_exception_flags(get_float_exception_flags(status) & \
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(~float_flag_inexact), \
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status); \
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\
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c = update_msacsr(env, 0, IS_DENORMAL(DEST, BITS)); \
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\
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