C APIs for registering a Node-API module exporting interfaces for invoking binary numerical functions.
var headerDir = require( '@stdlib/math/base/napi/binary' );Absolute file path for the directory containing header files for C APIs.
var dir = headerDir;
// returns <string>var headerDir = require( '@stdlib/math/base/napi/binary' );
console.log( headerDir );
// => <string>#include "stdlib/math/base/napi/binary.h"Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning unsigned 8-bit integers.
#include <stdint.h>
static uint8_t add( const uint8_t x, const uint8_t y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_BB_B( add );The macro expects the following arguments:
- fcn:
uint8_t (*fcn)( uint8_t, uint8_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning unsigned 8-bit integers.
#include <node_api.h>
#include <stdint.h>
// ...
static uint8_t add( const uint8_t x, const uint8_t y ) {
return x + y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_bb_b( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] uint8_t (*fcn)( uint8_t, uint8_t )binary function.
void stdlib_math_base_napi_bb_b( napi_env env, napi_callback_info info, uint8_t (*fcn)( uint8_t, uint8_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning single-precision complex floating-point numbers.
#include "stdlib/complex/float32/ctor.h"
#include "stdlib/complex/float32/reim.h"
static stdlib_complex64_t add( const stdlib_complex64_t x, const stdlib_complex64_t y ) {
float xre;
float xim;
float yre;
float yim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
stdlib_complex64_reim( y, &yre, &yim );
re = xre + yre;
im = xim + yim;
return stdlib_complex64( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_CC_C( add );The macro expects the following arguments:
- fcn:
stdlib_complex64_t (*fcn)( stdlib_complex64_t, stdlib_complex64_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning single-precision complex floating-point numbers.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
#include <node_api.h>
// ...
static stdlib_complex64_t add( const stdlib_complex64_t x, const stdlib_complex64_t y ) {
float xre;
float xim;
float yre;
float yim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
stdlib_complex64_reim( y, &yre, &yim );
re = xre + yre;
im = xim + yim;
return stdlib_complex64( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_cc_c( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex64_t (*fcn)( stdlib_complex64_t, stdlib_complex64_t )binary function.
void stdlib_math_base_napi_cc_c( napi_env env, napi_callback_info info, stdlib_complex64_t (*fcn)( stdlib_complex64_t, stdlib_complex64_t ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a single-precision complex floating-point number and a single-precision floating-point number and returning a single-precision complex floating-point number.
#include "stdlib/complex/float32/ctor.h"
#include "stdlib/complex/float32/reim.h"
static stdlib_complex64_t add( const stdlib_complex64_t x, const float y ) {
float xre;
float xim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex64( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_CF_C( add );The macro expects the following arguments:
- fcn:
stdlib_complex64_t (*fcn)( stdlib_complex64_t, float )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a single-precision complex floating-point number and a single-precision floating-point number and returning a single-precision complex floating-point number.
#include "stdlib/complex/float32/ctor.h"
#include "stdlib/complex/float32/reim.h"
#include <node_api.h>
// ...
static stdlib_complex64_t mul( const stdlib_complex64_t x, const float y ) {
float xre;
float xim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex64( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_cf_c( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex64_t (*fcn)( stdlib_complex64_t, float )binary function.
void stdlib_math_base_napi_cf_c( napi_env env, napi_callback_info info, stdlib_complex64_t (*fcn)( stdlib_complex64_t, float ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a single-precision complex floating-point number and a signed 32-bit integer and returning a single-precision complex floating-point number.
#include "stdlib/complex/float32/ctor.h"
#include "stdlib/complex/float32/reim.h"
#include <stdint.h>
static stdlib_complex64_t add( const stdlib_complex64_t x, const int32_t y ) {
float xre;
float xim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex64( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_CI_C( add );The macro expects the following arguments:
- fcn:
stdlib_complex64_t (*fcn)( stdlib_complex64_t, int32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a single-precision complex floating-point number and a signed 32-bit integer and returning a single-precision complex floating-point number.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float32/reim.h"
#include <node_api.h>
#include <stdint.h>
// ...
static stdlib_complex64_t mul( const stdlib_complex64_t x, const int32_t y ) {
float xre;
float xim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex64( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_ci_c( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex64_t (*fcn)( stdlib_complex64_t, int32_t )binary function.
void stdlib_math_base_napi_ci_c( napi_env env, napi_callback_info info, stdlib_complex64_t (*fcn)( stdlib_complex64_t, int32_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning double-precision floating-point numbers.
static double add( const double x, const double y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_DD_D( add );The macro expects the following arguments:
- fcn:
double (*fcn)( double, double )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning double-precision floating-point numbers.
#include <node_api.h>
// ...
static double add( const double x, const double y ) {
return x + y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_dd_d( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] double (*fcn)( double, double )binary function.
void stdlib_math_base_napi_dd_d( napi_env env, napi_callback_info info, double (*fcn)( double, double ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a double-precision floating-point number and a signed 32-bit integer and returning a double-precision floating-point number.
#include <stdint.h>
static double mul( const double x, const int32_t y ) {
return x * y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_DI_D( mul );The macro expects the following arguments:
- fcn:
double (*fcn)( double, int32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a double-precision floating-point number and a signed 32-bit integer and returning a double-precision floating-point number.
#include <node_api.h>
#include <stdint.h>
// ...
static double mul( const double x, const int32_t y ) {
return x * y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_di_d( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] double (*fcn)( double, int32_t )binary function.
void stdlib_math_base_napi_di_d( napi_env env, napi_callback_info info, double (*fcn)( double, int32_t ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a double-precision complex floating-point number and a double-precision floating-point number and returning a double-precision complex floating-point number.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
static stdlib_complex128_t mul( const double y, const stdlib_complex128_t x ) {
double xre;
double xim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex128( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_DZ_Z( mul );The macro expects the following arguments:
- fcn:
stdlib_complex128_t (*fcn)( double, stdlib_complex128_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a double-precision floating-point number and a double-precision complex floating-point number and returning a double-precision complex floating-point number.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
#include <node_api.h>
// ...
static stdlib_complex128_t mul( const double y, const stdlib_complex128_t x ) {
double xre;
double xim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex128( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_dz_z( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex128_t (*fcn)( double, stdlib_complex128_t )binary function.
void stdlib_math_base_napi_dz_z( napi_env env, napi_callback_info info, stdlib_complex128_t (*fcn)( double, stdlib_complex128_t ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a single-precision complex floating-point number and a single-precision floating-point number and returning a single-precision complex floating-point number.
#include "stdlib/complex/float32/ctor.h"
#include "stdlib/complex/float32/reim.h"
static stdlib_complex64_t mul( const float y, const stdlib_complex64_t x ) {
float xre;
float xim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex64( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_FC_C( mul );The macro expects the following arguments:
- fcn:
stdlib_complex64_t (*fcn)( float, stdlib_complex64_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a single-precision floating-point number and a single-precision complex floating-point number and returning a single-precision complex floating-point number.
#include "stdlib/complex/float32/ctor.h"
#include "stdlib/complex/float32/reim.h"
#include <node_api.h>
// ...
static stdlib_complex64_t mul( const float y, const stdlib_complex64_t x ) {
float xre;
float xim;
float re;
float im;
stdlib_complex64_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex64( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_fc_c( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex64_t (*fcn)( float, stdlib_complex64_t )binary function.
void stdlib_math_base_napi_fc_c( napi_env env, napi_callback_info info, stdlib_complex64_t (*fcn)( float, stdlib_complex64_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning single-precision floating-point numbers.
static float addf( const float x, const float y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_FF_F( addf );The macro expects the following arguments:
- fcn:
float (*fcn)( float, float )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning single-precision floating-point numbers.
#include <node_api.h>
// ...
static float addf( const float x, const float y ) {
return x + y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_ff_f( env, info, addf );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] float (*fcn)( float, float )binary function.
void stdlib_math_base_napi_ff_f( napi_env env, napi_callback_info info, float (*fcn)( float, float ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a single-precision floating-point number and a signed 32-bit integer and returning a single-precision floating-point number.
#include <stdint.h>
static float mulf( const float x, const int32_t y ) {
return x * y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_FI_F( mulf );The macro expects the following arguments:
- fcn:
float (*fcn)( float, int32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a single-precision floating-point number and a signed 32-bit integer and returning a single-precision floating-point number.
#include <node_api.h>
#include <stdint.h>
// ...
static float mulf( const float x, const int32_t y ) {
return x * y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_fi_f( env, info, mulf );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] float (*fcn)( float, int32_t )binary function.
void stdlib_math_base_napi_fi_f( napi_env env, napi_callback_info info, float (*fcn)( float, int32_t ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a signed 32-bit integer and a double-precision floating-point number and returning a double-precision floating-point number.
#include <stdint.h>
static double mul( const int32_t x, const double y ) {
return x * y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_ID_D( mul );The macro expects the following arguments:
- fcn:
double (*fcn)( int32_t, double )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a signed 32-bit integer and a double-precision floating-point number and returning a double-precision floating-point number.
#include <node_api.h>
#include <stdint.h>
// ...
static double mul( const int32_t x, const double y ) {
return x * y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_id_d( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] double (*fcn)( int32_t, double )binary function.
void stdlib_math_base_napi_id_d( napi_env env, napi_callback_info info, double (*fcn)( int32_t, double ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting signed 32-bit integers and returning a double-precision floating-point number.
#include <stdint.h>
static double add( const int32_t x, const int32_t y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_II_D( add );The macro expects the following arguments:
- fcn:
double (*fcn)( int32_t, int32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting signed 32-bit integers and returning a double-precision floating-point number.
#include <node_api.h>
#include <stdint.h>
// ...
static double mul( const int32_t x, const int32_t y ) {
return x * y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_ii_d( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] double (*fcn)( int32_t, int32_t )binary function.
void stdlib_math_base_napi_ii_d( napi_env env, napi_callback_info info, double (*fcn)( int32_t, int32_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting signed 32-bit integers and returning a single-precision floating-point number.
#include <stdint.h>
static float fcn( const int32_t x, const int32_t y ) {
// ...
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_II_F( fcn );The macro expects the following arguments:
- fcn:
float (*fcn)( int32_t, int32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting signed 32-bit integers and returning a single-precision floating-point number.
#include <node_api.h>
#include <stdint.h>
// ...
static float fcn( const int32_t x, const int32_t y ) {
// ...
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_ii_f( env, info, fcn );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] float (*fcn)( int32_t, int32_t )binary function.
void stdlib_math_base_napi_ii_f( napi_env env, napi_callback_info info, float (*fcn)( int32_t, int32_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning signed 32-bit integers.
#include <stdint.h>
static int32_t add( const int32_t x, const int32_t y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_II_I( add );The macro expects the following arguments:
- fcn:
int32_t (*fcn)( int32_t, int32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning signed 32-bit integers.
#include <node_api.h>
#include <stdint.h>
// ...
static int32_t mul( const int32_t x, const int32_t y ) {
return x * y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_ii_i( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] int32_t (*fcn)( int32_t, int32_t )binary function.
void stdlib_math_base_napi_ii_i( napi_env env, napi_callback_info info, int32_t (*fcn)( int32_t, int32_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning signed 16-bit integers.
#include <stdint.h>
static int16_t add( const int16_t x, const int16_t y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_KK_K( add );The macro expects the following arguments:
- fcn:
int16_t (*fcn)( int16_t, int16_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning signed 16-bit integers.
#include <node_api.h>
#include <stdint.h>
// ...
static int16_t add( const int16_t x, const int16_t y ) {
return x + y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_kk_k( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] int16_t (*fcn)( int16_t, int16_t )binary function.
void stdlib_math_base_napi_kk_k( napi_env env, napi_callback_info info, int16_t (*fcn)( int16_t, int16_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting signed 64-bit integers and returning a double-precision floating-point number.
#include <stdint.h>
static double fcn( const int64_t x, const int64_t y ) {
// ...
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_LL_D( fcn );The macro expects the following arguments:
- fcn:
double (*fcn)( int64_t, int64_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting signed 64-bit integers and returning a double-precision floating-point number.
#include <node_api.h>
#include <stdint.h>
// ...
static double fcn( const int64_t x, const int64_t y ) {
// ...
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_ll_d( env, info, fcn );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] double (*fcn)( int64_t, int64_t )binary function.
void stdlib_math_base_napi_ll_d( napi_env env, napi_callback_info info, double (*fcn)( int64_t, int64_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning signed 8-bit integers.
#include <stdint.h>
static int8_t add( const int8_t x, const int8_t y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_SS_S( add );The macro expects the following arguments:
- fcn:
int8_t (*fcn)( int8_t, int8_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning signed 8-bit integers.
#include <node_api.h>
#include <stdint.h>
// ...
static int8_t add( const int8_t x, const int8_t y ) {
return x + y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_ss_s( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] int8_t (*fcn)( int8_t, int8_t )binary function.
void stdlib_math_base_napi_ss_s( napi_env env, napi_callback_info info, int8_t (*fcn)( int8_t, int8_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning unsigned 16-bit integers.
#include <stdint.h>
static uint16_t add( const uint16_t x, const uint16_t y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_TT_T( add );The macro expects the following arguments:
- fcn:
uint16_t (*fcn)( uint16_t, uint16_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning unsigned 16-bit integers.
#include <node_api.h>
#include <stdint.h>
// ...
static uint16_t add( const uint16_t x, const uint16_t y ) {
return x + y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_tt_t( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] uint16_t (*fcn)( uint16_t, uint16_t )binary function.
void stdlib_math_base_napi_tt_t( napi_env env, napi_callback_info info, uint16_t (*fcn)( uint16_t, uint16_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning unsigned 32-bit integers.
#include <stdint.h>
static uint32_t add( const uint32_t x, const uint32_t y ) {
return x + y;
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_UU_U( add );The macro expects the following arguments:
- fcn:
uint32_t (*fcn)( uint32_t, uint32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning unsigned 32-bit integers.
#include <node_api.h>
#include <stdint.h>
// ...
static uint32_t add( const uint32_t x, const uint32_t y ) {
return x + y;
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_uu_u( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] uint32_t (*fcn)( uint32_t, uint32_t )binary function.
void stdlib_math_base_napi_uu_u( napi_env env, napi_callback_info info, uint32_t (*fcn)( uint32_t, uint32_t ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a double-precision complex floating-point number and a double-precision floating-point number and returning a double-precision complex floating-point number.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
static stdlib_complex128_t mul( const stdlib_complex128_t x, const double y ) {
double xre;
double xim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex128( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_ZD_Z( mul );The macro expects the following arguments:
- fcn:
stdlib_complex128_t (*fcn)( stdlib_complex128_t, double )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a double-precision complex floating-point number and a double-precision floating-point number and returning a double-precision complex floating-point number.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
#include <node_api.h>
// ...
static stdlib_complex128_t mul( const stdlib_complex128_t x, const double y ) {
double xre;
double xim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex128( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_zd_z( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex128_t (*fcn)( stdlib_complex128_t, double )binary function.
void stdlib_math_base_napi_zd_z( napi_env env, napi_callback_info info, stdlib_complex128_t (*fcn)( stdlib_complex128_t, double ) );Macro for registering a Node-API module exporting an interface invoking a binary function accepting a double-precision complex floating-point number and a signed 32-bit and returning a double-precision complex floating-point number.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
#include <stdint.h>
static stdlib_complex128_t mul( const stdlib_complex128_t x, const int32_t y ) {
double xre;
double xim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex128( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_ZI_Z( mul );The macro expects the following arguments:
- fcn:
stdlib_complex128_t (*fcn)( stdlib_complex128_t, int32_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting a double-precision complex floating-point number and a signed 32-bit integer and returning a double-precision complex floating-point number.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
#include <node_api.h>
#include <stdint.h>
// ...
static stdlib_complex128_t mul( const stdlib_complex128_t x, const int32_t y ) {
double xre;
double xim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
re = xre * y;
im = xim * y;
return stdlib_complex128( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_zi_z( env, info, mul );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex128_t (*fcn)( stdlib_complex128_t, int32_t )binary function.
void stdlib_math_base_napi_zi_z( napi_env env, napi_callback_info info, stdlib_complex128_t (*fcn)( stdlib_complex128_t, int32_t ) );Macro for registering a Node-API module exporting an interface for invoking a binary function accepting and returning double-precision complex floating-point numbers.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
static stdlib_complex128_t add( const stdlib_complex128_t x, const stdlib_complex128_t y ) {
double xre;
double xim;
double yre;
double yim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
stdlib_complex128_reim( y, &yre, &yim );
re = xre + yre;
im = xim + yim;
return stdlib_complex128( re, im );
}
// ...
// Register a Node-API module:
STDLIB_MATH_BASE_NAPI_MODULE_ZZ_Z( add );The macro expects the following arguments:
- fcn:
stdlib_complex128_t (*fcn)( stdlib_complex128_t, stdlib_complex128_t )binary function.
When used, this macro should be used instead of NAPI_MODULE. The macro includes NAPI_MODULE, thus ensuring Node-API module registration.
Invokes a binary function accepting and returning double-precision complex floating-point numbers.
#include "stdlib/complex/float64/ctor.h"
#include "stdlib/complex/float64/reim.h"
#include <node_api.h>
// ...
static stdlib_complex128_t add( const stdlib_complex128_t x, const stdlib_complex128_t y ) {
double xre;
double xim;
double yre;
double yim;
double re;
double im;
stdlib_complex128_reim( x, &xre, &xim );
stdlib_complex128_reim( y, &yre, &yim );
re = xre + yre;
im = xim + yim;
return stdlib_complex128( re, im );
}
// ...
/**
* Receives JavaScript callback invocation data.
*
* @param env environment under which the function is invoked
* @param info callback data
* @return Node-API value
*/
napi_value addon( napi_env env, napi_callback_info info ) {
return stdlib_math_base_napi_zz_z( env, info, add );
}
// ...The function accepts the following arguments:
- env:
[in] napi_envenvironment under which the function is invoked. - info:
[in] napi_callback_infocallback data. - fcn:
[in] stdlib_complex128_t (*fcn)( stdlib_complex128_t, stdlib_complex128_t )binary function.
void stdlib_math_base_napi_zz_z( napi_env env, napi_callback_info info, stdlib_complex128_t (*fcn)( stdlib_complex128_t, stdlib_complex128_t ) );-
The C-API functions expect that the callback
infoargument provides access to the following JavaScript arguments:x: input value.y: input value.