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-rw-r--r--gruel/src/swig/pmt_swig.i50
1 files changed, 19 insertions, 31 deletions
diff --git a/gruel/src/swig/pmt_swig.i b/gruel/src/swig/pmt_swig.i
index b65857167..84f48b099 100644
--- a/gruel/src/swig/pmt_swig.i
+++ b/gruel/src/swig/pmt_swig.i
@@ -212,6 +212,8 @@ bool pmt_is_complex(pmt_t obj);
//! Return a complex number constructed of the given real and imaginary parts.
pmt_t pmt_make_rectangular(double re, double im);
+pmt_t pmt_from_complex(const std::complex<double> &z);
+
/*!
* If \p z is complex, real or integer, return the closest complex<double>.
* Otherwise, raise the wrong_type exception.
@@ -441,37 +443,23 @@ void pmt_c64vector_set(pmt_t v, size_t k, std::complex<double> x);
// Return const pointers to the elements
-const void *pmt_uniform_vector_elements(pmt_t v, size_t &len); //< works with any; len is in bytes
-
-const uint8_t *pmt_u8vector_elements(pmt_t v, size_t &len); //< len is in elements
-const int8_t *pmt_s8vector_elements(pmt_t v, size_t &len); //< len is in elements
-const uint16_t *pmt_u16vector_elements(pmt_t v, size_t &len); //< len is in elements
-const int16_t *pmt_s16vector_elements(pmt_t v, size_t &len); //< len is in elements
-const uint32_t *pmt_u32vector_elements(pmt_t v, size_t &len); //< len is in elements
-const int32_t *pmt_s32vector_elements(pmt_t v, size_t &len); //< len is in elements
-const uint64_t *pmt_u64vector_elements(pmt_t v, size_t &len); //< len is in elements
-const int64_t *pmt_s64vector_elements(pmt_t v, size_t &len); //< len is in elements
-const float *pmt_f32vector_elements(pmt_t v, size_t &len); //< len is in elements
-const double *pmt_f64vector_elements(pmt_t v, size_t &len); //< len is in elements
-const std::complex<float> *pmt_c32vector_elements(pmt_t v, size_t &len); //< len is in elements
-const std::complex<double> *pmt_c64vector_elements(pmt_t v, size_t &len); //< len is in elements
-
-// Return non-const pointers to the elements
-
-void *pmt_uniform_vector_writable_elements(pmt_t v, size_t &len); //< works with any; len is in bytes
-
-uint8_t *pmt_u8vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-int8_t *pmt_s8vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-uint16_t *pmt_u16vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-int16_t *pmt_s16vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-uint32_t *pmt_u32vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-int32_t *pmt_s32vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-uint64_t *pmt_u64vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-int64_t *pmt_s64vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-float *pmt_f32vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-double *pmt_f64vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-std::complex<float> *pmt_c32vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
-std::complex<double> *pmt_c64vector_writable_elements(pmt_t v, size_t &len); //< len is in elements
+%apply size_t & INOUT { size_t &len };
+
+// works with any; len is in bytes
+// Returns an opaque Python type
+const void *pmt_uniform_vector_elements(pmt_t v, size_t &len);
+
+// Returns a Python tuple
+const std::vector<uint8_t> pmt_u8vector_elements(pmt_t v);
+const std::vector<int8_t> pmt_s8vector_elements(pmt_t v);
+const std::vector<uint16_t> pmt_u16vector_elements(pmt_t v);
+const std::vector<int16_t> pmt_s16vector_elements(pmt_t v);
+const std::vector<uint32_t> pmt_u32vector_elements(pmt_t v);
+const std::vector<int32_t> pmt_s32vector_elements(pmt_t v);
+const std::vector<float> pmt_f32vector_elements(pmt_t v);
+const std::vector<double> pmt_f64vector_elements(pmt_t v);
+const std::vector<std::complex<float> > pmt_c32vector_elements(pmt_t v);
+const std::vector<std::complex<double> > pmt_c64vector_elements(pmt_t v);
/*
* ------------------------------------------------------------------------