uint_t aubio_batchnorm_set_beta(aubio_batchnorm_t *t, fvec_t *beta)
{
- AUBIO_ASSERT(t && t->beta);
- AUBIO_ASSERT(beta);
- if (t->beta->length != beta->length) return AUBIO_FAIL;
+ AUBIO_ASSERT(t && t->beta && beta);
+ if (t->beta->length != beta->length)
+ return AUBIO_FAIL;
fvec_copy(beta, t->beta);
return AUBIO_OK;
}
-uint_t aubio_batchnorm_set_moving_mean(aubio_batchnorm_t *t, fvec_t *moving_mean)
+uint_t aubio_batchnorm_set_moving_mean(aubio_batchnorm_t *t,
+ fvec_t *moving_mean)
{
AUBIO_ASSERT(t && t->moving_mean);
AUBIO_ASSERT(moving_mean);
- if (t->moving_mean->length != moving_mean->length) return AUBIO_FAIL;
+ if (t->moving_mean->length != moving_mean->length)
+ return AUBIO_FAIL;
fvec_copy(moving_mean, t->moving_mean);
return AUBIO_OK;
}
-uint_t aubio_batchnorm_set_moving_variance(aubio_batchnorm_t *t, fvec_t *moving_variance)
+uint_t aubio_batchnorm_set_moving_variance(aubio_batchnorm_t *t,
+ fvec_t *moving_variance)
{
AUBIO_ASSERT(t && t->moving_variance);
AUBIO_ASSERT(moving_variance);
- if (t->moving_variance->length != moving_variance->length) return AUBIO_FAIL;
+ if (t->moving_variance->length != moving_variance->length)
+ return AUBIO_FAIL;
fvec_copy(moving_variance, t->moving_variance);
return AUBIO_OK;
}