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SystemSimulationApp/native/include/kernels.h
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5.3 KiB
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#ifndef NATIVE_KERNELS_H
#define NATIVE_KERNELS_H
#include <stddef.h>
typedef struct { double p, T, rho, u, h; } NativeGas;
typedef struct {
int velocity_index;
double lower, upper;
double lower_restitution, upper_restitution, lower_threshold, upper_threshold;
} NativeStop;
/* Constants are emitted per medium instance by the model compiler. */
typedef struct { int real_helium; double R, cp, Tref, slope, mu, muT, S; } NativeMedium;
/* Caller-owned scratch for ONE model_eval. Keys use exact values and a copy of
* every medium constant. No process/thread global cache or approximate reuse. */
enum {
NATIVE_PROPERTY_PT=1, NATIVE_PROPERTY_H=2, NATIVE_PROPERTY_RHO=4,
NATIVE_PROPERTY_MU=8, NATIVE_PROPERTY_ISENTROPIC=16
};
typedef struct {
NativeMedium medium;
double p, T, h, rho, mu, isentropic_factor, isentropic_exponent;
unsigned valid;
} NativePropertyState;
typedef struct {
NativePropertyState *states;
size_t count, capacity;
} NativePropertyCache;
void native_properties_init(NativePropertyCache *, NativePropertyState *, size_t capacity);
int native_gas_context(NativePropertyCache *, double m, double U, double V, NativeGas *);
int native_medium_gas_context(NativePropertyCache *, const NativeMedium *, double m, double U, double V, NativeGas *);
double native_temperature_ph_context(NativePropertyCache *, const NativeMedium *, double p, double h);
double native_density_context(NativePropertyCache *, const NativeMedium *, double p, double T);
int native_orifice_context(NativePropertyCache *, double p1, double p2, double h1, double h2,
double area, double opening, double *q, double *cm, double *v);
int native_medium_orifice_context(NativePropertyCache *, const NativeMedium *, double p1, double p2, double h1, double h2,
double area, double opening, double *q, double *cm, double *v);
/* One entry per pipe branch, zero-initialized for each model_eval. Never shared
* across solver trials. Exact inputs, including medium constants, form the key. */
typedef struct {
NativeMedium medium;
double p1, p2, T, diameter, length, roughness, flow;
int kind, valid;
} NativePipeCache;
typedef struct { int converged, iterations, bisections; double relative_residual; } NativePipeSolve;
/* Solve Re^2*f(Re)=K for the shared pipe resistance law. On failure returns
* NAN, with converged=0; flow_per_re converts the local stopping test to kg/s. */
double native_pipe_resistance(double K, double roughness, double flow_per_re, NativePipeSolve *status);
double native_pipe_flow_context(NativePropertyCache *, const NativeMedium *, double p1, double p2, double T,
double diameter, double length, double roughness, int kind);
double native_pipe_flow_cached_context(NativePropertyCache *, NativePipeCache *, const NativeMedium *,
double p1, double p2, double T, double diameter, double length, double roughness, int kind);
void native_pipe_diagnostics_context(NativePropertyCache *, const NativeMedium *, double q, double p, double T,
double diameter, double length, double roughness, int diagnostic, double *result);
int native_medium_init(const NativeMedium *, double p, double T, double V, int legacy_ideal_initial, double *mU);
double native_density(const NativeMedium *, double p, double T);
double native_temperature_ph(const NativeMedium *, double p, double h);
double native_viscosity(const NativeMedium *, double T, int diagnostic);
int native_medium_gas(const NativeMedium *, double m, double U, double V, NativeGas *);
int native_medium_orifice(const NativeMedium *, double p1, double p2, double h1, double h2,
double cq_area, double opening, double *q, double *cm, double *v);
double native_pipe_flow(const NativeMedium *, double p1, double p2, double T,
double diameter, double length, double roughness, int kind);
double native_pipe_flow_cached(NativePipeCache *, const NativeMedium *,
double p1, double p2, double T, double diameter,
double length, double roughness, int kind);
void native_pipe_diagnostics(const NativeMedium *, double q, double p, double T,
double diameter, double length, double roughness,
int diagnostic, double *result);
double native_limit_force(double penetration, double velocity, double stiffness,
double damping, double depth, int signed_force);
int native_gas_init(double p, double T, double volume, double *mU);
int native_gas(double m, double U, double volume, NativeGas *gas);
int native_orifice(double p1, double p2, double h1, double h2,
double cq_area, double opening, double *flow,
double *cm, double *velocity);
double native_contact(double penetration, double velocity, double stiffness,
double damping, double pdis, int signed_force);
void native_stop_motion(double x, double v, double lower, double upper,
double *acceleration, double *velocity);
double native_signal(double t, double start, int stages, int cyclic, const double *data);
double native_signal_break(double t, double end, double start, int stages,
int cyclic, const double *data);
#endif