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Mujoco_WASM/include/mujoco/mjplugin.h
T
Kyle Bayes 0fd7bea973 Modernize struct and enum style in MuJoCo headers.
PiperOrigin-RevId: 936485706
Change-Id: I31864acc4bd44573127d3d04c6b1a23f9d9c4cbc
2026-06-23 00:48:11 -07:00

227 lines
9.4 KiB
C

// Copyright 2022 DeepMind Technologies Limited
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#ifndef MUJOCO_INCLUDE_MJPLUGIN_H_
#define MUJOCO_INCLUDE_MJPLUGIN_H_
#include <mujoco/mjdata.h>
#include <mujoco/mjmodel.h>
#include <mujoco/mjspec.h>
#include <mujoco/mjtype.h>
#include <mujoco/mjvisualize.h>
//---------------------------------- Resource Provider ---------------------------------------------
typedef struct mjResource_ {
char* name; // name of resource (filename, etc)
void* data; // opaque data pointer
mjVFS* vfs; // pointer to the VFS
char timestamp[512]; // timestamp of the resource
const struct mjpResourceProvider* provider; // pointer to the provider
} mjResource;
// callback for opening a resource, returns zero on failure.
// Note: If opening fails, the close callback will not be called. Therefore, the
// open callback is responsible for cleaning up any allocated memory before
// returning 0.
typedef int (*mjfOpenResource)(mjResource* resource);
// callback for reading a resource
// return number of bytes stored in buffer, return -1 if error
typedef int (*mjfReadResource)(mjResource* resource, const void** buffer);
// callback for closing a resource (responsible for freeing any allocated memory)
typedef void (*mjfCloseResource)(mjResource* resource);
// callback for mounting a resource (provider), returns zero on failure
typedef int (*mjfMountResource)(mjResource* resource);
// callback for unmounting a resource (provider), returns zero on failure
typedef int (*mjfUnmountResource)(mjResource* resource);
// callback for checking if the current resource was modified from the time
// specified by the timestamp
// returns 0 if the resource's timestamp matches the provided timestamp
// returns > 0 if the resource is younger than the given timestamp
// returns < 0 if the resource is older than the given timestamp
typedef int (*mjfResourceModified)(const mjResource* resource, const char* timestamp);
// struct describing a single resource provider
typedef struct mjpResourceProvider {
const char* prefix; // prefix for match against a resource name
mjfOpenResource open; // opening callback
mjfReadResource read; // reading callback
mjfCloseResource close; // closing callback
mjfMountResource mount; // mounting callback (optional)
mjfUnmountResource unmount; // unmounting callback (optional)
mjfResourceModified modified; // resource modified callback (optional)
void* data; // opaque data pointer (resource invariant)
} mjpResourceProvider;
//---------------------------------- Decoder -------------------------------------------------------
// function pointer types
// return an mjSpec representing the decoded resource.
typedef mjSpec* (*mjfDecode)(mjResource* resource, const mjVFS* vfs);
// return true if the given resource can be decoded.
typedef int (*mjfCanDecode)(const mjResource* resource);
// the struct defining the decoder plugin's interface
typedef struct mjpDecoder {
const char* content_type;
const char* extension;
// user-facing functions
mjfCanDecode can_decode; // quickly check if this decoder can handle the resource
mjfDecode decode; // main decoding function
// the caller takes ownership of the spec returned by decode and is responsible
// for cleaning it up
} mjpDecoder;
//---------------------------------- Encoder -------------------------------------------------------
typedef int (*mjfEncode)(const mjSpec* s, const mjModel* m, const mjVFS* vfs,
mjResource* resource);
typedef struct mjpEncoder {
const char* content_type;
const char* extension;
mjfEncode encode; // Function to encode an mjSpec and mjModel to a mjResource.
mjfCloseResource close_resource; // Function to close/free the resource.
} mjpEncoder;
//---------------------------------- Plugins -------------------------------------------------------
typedef enum mjtPluginCapabilityBit_ {
mjPLUGIN_ACTUATOR = 1<<0, // actuator forces
mjPLUGIN_SENSOR = 1<<1, // sensor measurements
mjPLUGIN_PASSIVE = 1<<2, // passive forces
mjPLUGIN_SDF = 1<<3, // signed distance fields
} mjtPluginCapabilityBit;
typedef struct mjpPlugin_ {
const char* name; // globally unique name identifying the plugin
int nattribute; // number of configuration attributes
const char* const* attributes; // name of configuration attributes
int capabilityflags; // plugin capabilities: bitfield of mjtPluginCapabilityBit
int needstage; // sensor computation stage (mjtStage)
// number of mjtNums needed to store the state of a plugin instance (required)
int (*nstate)(const mjModel* m, int instance);
// dimension of the specified sensor's output (required only for sensor plugins)
int (*nsensordata)(const mjModel* m, int instance, int sensor_id);
// called when a new mjData is being created (required), returns 0 on success or -1 on failure
int (*init)(const mjModel* m, mjData* d, int instance);
// called when an mjData is being freed (optional)
void (*destroy)(mjData* d, int instance);
// called when an mjData is being copied (optional)
void (*copy)(mjData* dest, const mjModel* m, const mjData* src, int instance);
// called when an mjData is being reset (required)
void (*reset)(const mjModel* m, mjtNum* plugin_state, void* plugin_data, int instance);
// called when the plugin needs to update its outputs (required)
void (*compute)(const mjModel* m, mjData* d, int instance, int capability_bit);
// called when time integration occurs (optional)
void (*advance)(const mjModel* m, mjData* d, int instance);
// called by mjv_updateScene (optional)
void (*visualize)(const mjModel*m, mjData* d, const mjvOption* opt, mjvScene* scn, int instance);
// methods specific to actuators (optional)
// updates the actuator plugin's entries in act_dot
// called after native act_dot is computed and before the compute callback
void (*actuator_act_dot)(const mjModel* m, mjData* d, int instance);
// methods specific to signed distance fields (optional)
// signed distance from the surface
mjtNum (*sdf_distance)(const mjtNum point[3], const mjData* d, int instance);
// gradient of distance with respect to local coordinates
void (*sdf_gradient)(mjtNum gradient[3], const mjtNum point[3], const mjData* d, int instance);
// called during compilation for marching cubes
mjtNum (*sdf_staticdistance)(const mjtNum point[3], const mjtNum* attributes);
// convert attributes and provide defaults if not present
void (*sdf_attribute)(mjtNum attribute[], const char* name[], const char* value[]);
// bounding box of implicit surface
void (*sdf_aabb)(mjtNum aabb[6], const mjtNum* attributes);
} mjpPlugin;
typedef struct mjSDF_ {
const mjpPlugin** plugin;
int* id;
mjtSDFType type;
mjtNum* relpos;
mjtNum* relmat;
mjtGeom* geomtype;
} mjSDF;
//------------------------------------ Initialization ----------------------------------------------
#if defined(__has_attribute)
#if __has_attribute(constructor)
#define mjPLUGIN_LIB_INIT(n) \
static void _mj_init_##n(void) __attribute__((constructor)); \
static void _mj_init_##n(void)
#endif
#elif defined(_MSC_VER)
// on x86, symbols are decorated with a leading underscore
#ifdef _M_IX86
#define LINKER_NAME "__mj_ptr_"
#else
#define LINKER_NAME "_mj_ptr_"
#endif
#pragma section(".CRT$XCU", read)
#if !defined(mjEXTERNC)
#if defined(__cplusplus)
#define mjEXTERNC extern "C"
#else
#define mjEXTERNC
#endif // defined(__cplusplus)
#endif // !defined(mjEXTERNC)
#define mjPLUGIN_LIB_INIT(n) \
static void __cdecl _mj_init_##n(void); \
/* use mjEXTERNC to prevent C++ name mangling */ \
/* allocate the function pointer to the .CRT$XCU section of the executable */ \
/* functions in this section are executed on startup before calling main() */ \
mjEXTERNC __declspec(allocate(".CRT$XCU")) \
void (__cdecl * _mj_ptr_##n)(void) = _mj_init_##n; \
/* Force the linker to include the pointer symbol */ \
__pragma(comment(linker, "/include:" LINKER_NAME #n)) \
static void __cdecl _mj_init_##n(void)
#else
#error "Unknown compiler: Plugin registration not supported."
#endif
// function pointer type for mj_loadAllPluginLibraries callback
typedef void (*mjfPluginLibraryLoadCallback)(const char* filename, int first, int count);
#endif // MUJOCO_INCLUDE_MJPLUGIN_H_