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/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
 * Copyright by The HDF Group.                                               *
 * Copyright by the Board of Trustees of the University of Illinois.         *
 * All rights reserved.                                                      *
 *                                                                           *
 * This file is part of HDF5.  The full HDF5 copyright notice, including     *
 * terms governing use, modification, and redistribution, is contained in    *
 * the COPYING file, which can be found at the root of the source code       *
 * distribution tree, or in https://support.hdfgroup.org/ftp/HDF5/releases.  *
 * If you do not have access to either file, you may request a copy from     *
 * help@hdfgroup.org.                                                        *
 * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */

/*
 * Programmer:	Quincey Koziol <koziol@ncsa.uiuc.edu>
 *		Thursday, September 28, 2000
 *
 * Purpose:	This file contains declarations which are visible only within
 *		the H5S package.  Source files outside the H5S package should
 *		include H5Sprivate.h instead.
 */
#if !(defined H5S_FRIEND || defined H5S_MODULE)
#error "Do not include this file outside the H5S package!"
#endif

#ifndef _H5Spkg_H
#define _H5Spkg_H

/* Get package's private header */
#include "H5Sprivate.h"

/* Other private headers needed by this file */
#include "H5Oprivate.h"		/* Object headers		  	*/

/* Flags to indicate special dataspace features are active */
#define H5S_VALID_MAX	0x01
#define H5S_VALID_PERM	0x02

/* Flags for serialization of selections */
#define H5S_HYPER_REGULAR       0x01
#define H5S_SELECT_FLAG_BITS    (H5S_HYPER_REGULAR)

/* Versions for H5S_SEL_HYPER selection info */
#define H5S_HYPER_VERSION_1     1
#define H5S_HYPER_VERSION_2     2
#define H5S_HYPER_VERSION_3     3

/* Versions for H5S_SEL_POINTS selection info */
#define H5S_POINT_VERSION_1     1
#define H5S_POINT_VERSION_2     2

/* Versions for H5S_SEL_NONE selection info */
#define H5S_NONE_VERSION_1      1

/* Versions for H5S_SEL_ALL selection info */
#define H5S_ALL_VERSION_1       1

/* Encoded size of selection info for H5S_SEL_POINTS/H5S_SEL_HYPER */
#define H5S_SELECT_INFO_ENC_SIZE_2 0x02        /* 2 bytes: 16 bits */
#define H5S_SELECT_INFO_ENC_SIZE_4 0x04        /* 4 bytes: 32 bits */
#define H5S_SELECT_INFO_ENC_SIZE_8 0x08        /* 8 bytes: 64 bits */
#define H5S_SELECT_INFO_ENC_SIZE_BITS   ( H5S_SELECT_INFO_ENC_SIZE_2 |    \
                                          H5S_SELECT_INFO_ENC_SIZE_4 |    \
                                          H5S_SELECT_INFO_ENC_SIZE_8 )

#define H5S_UINT16_MAX      0x0000FFFF  /* 2^16 - 1 = 65,535                            */
#define H5S_UINT32_MAX      0xFFFFFFFF  /* 2^32 - 1 = 4,294,967,295                     */
#define H5S_UINT64_MAX      ((hsize_t)(-1L))   /* 2^64 - 1 = 18,446,744,073,709,551,615 */

/* Length of stack-allocated sequences for "project intersect" routines */
#define H5S_PROJECT_INTERSECT_NSEQS 256

/* Internal flags for initializing selection iterators */
#define H5S_SEL_ITER_API_CALL   0x1000 /* Selection iterator created from API call */


/* Initial version of the dataspace information */
#define H5O_SDSPACE_VERSION_1	1

/* This version adds support for "null" dataspaces, encodes the type of the
 *      dataspace in the message and eliminated the rest of the "reserved"
 *      bytes.
 */
#define H5O_SDSPACE_VERSION_2	2

/* The latest version of the format.  Look through the 'encode'
 *      and 'size' callbacks for places to change when updating this. */
#define H5O_SDSPACE_VERSION_LATEST H5O_SDSPACE_VERSION_2

/* Maximum dimension size (highest value that is not a special value e.g.
 * H5S_UNLIMITED) */
#define H5S_MAX_SIZE            ((hsize_t)(hssize_t)(-2))

/* Macro for checking if two ranges overlap one another */
/*
 * Check for the inverse of whether the ranges are disjoint.  If they are
 * disjoint, then the low bound of one of the ranges must be greater than the
 * high bound of the other.
 */
/* (Assumes that low & high bounds are _inclusive_) */
#define H5S_RANGE_OVERLAP(L1, H1, L2, H2)       (!((L1) > (H2) || (L2) > (H1)))


/*
 * Dataspace extent information
 */
/* Extent container */
struct H5S_extent_t {
    H5O_shared_t sh_loc;        /* Shared message info (must be first) */

    H5S_class_t	type;           /* Type of extent */
    unsigned version;           /* Version of object header message to encode this object with */
    hsize_t nelem;              /* Number of elements in extent */

    unsigned rank;              /* Number of dimensions */
    hsize_t *size;              /* Current size of the dimensions */
    hsize_t *max;               /* Maximum size of the dimensions */
};

/*
 * Dataspace selection information
 */

/* Node in point selection list (typedef'd in H5Sprivate.h) */
struct H5S_pnt_node_t {
    struct H5S_pnt_node_t *next; /* Pointer to next point in list */
    hsize_t pnt[];              /* Selected point */
                                /* (NOTE: This uses the C99 "flexible array member" feature) */
};

/* Information about point selection list (typedef'd in H5Sprivate.h) */
struct H5S_pnt_list_t {
    /* The following two fields defines the bounding box of the whole set of points, relative to the offset */
    hsize_t low_bounds[H5S_MAX_RANK];   /* The smallest element selected in each dimension */
    hsize_t high_bounds[H5S_MAX_RANK];  /* The largest element selected in each dimension */

    H5S_pnt_node_t *head;   /* Pointer to head of point list */
    H5S_pnt_node_t *tail;   /* Pointer to tail of point list */
};

/* Information about hyperslab spans */

/* Information a particular hyperslab span (typedef'd in H5Sprivate.h) */
struct H5S_hyper_span_t {
    hsize_t low, high;  /* Low & high bounds of elements selected for span, inclusive */
    struct H5S_hyper_span_info_t *down; /* Pointer to list of spans in next dimension down */
    struct H5S_hyper_span_t *next;      /* Pointer to next span in list */
};

/* Information about a list of hyperslab spans in one dimension (typedef'd in H5Sprivate.h) */
struct H5S_hyper_span_info_t {
    unsigned count;     /* Ref. count of number of spans which share this span */

    /* The following two fields define the bounding box of this set of spans
     *  and all lower dimensions, relative to the offset.
     */
    /* (NOTE: The bounds arrays are _relative_ to the depth of the span_info
     *          node in the span tree, so the top node in a 5-D span tree will
     *          use indices 0-4 in the arrays to store it's bounds information,
     *          but the next level down in the span tree will use indices 0-3.
     *          So, each level in the span tree will have the 0th index in the
     *          arrays correspond to the bounds in "this" dimension, even if
     *          it's not the highest level in the span tree.
     */
    hsize_t *low_bounds;        /* The smallest element selected in each dimension */
    hsize_t *high_bounds;       /* The largest element selected in each dimension */

    /* "Operation generation" fields */
    /* (Used during copies, 'adjust', 'nelem', and 'rebuild' operations) */
    uint64_t op_gen;            /* Generation of the scratch info */
    union {
        struct H5S_hyper_span_info_t *copied;  /* Pointer to already copied span tree */
        hsize_t nelmts;         /* # of elements */
        hsize_t nblocks;        /* # of blocks */
#ifdef H5_HAVE_PARALLEL
        MPI_Datatype down_type; /* MPI datatype for span tree */
#endif  /* H5_HAVE_PARALLEL */
    }u;

    struct H5S_hyper_span_t *head;  /* Pointer to the first span of list of spans in the current dimension */
    struct H5S_hyper_span_t *tail;  /* Pointer to the last span of list of spans in the current dimension */
    hsize_t bounds[];           /* Array for storing low & high bounds */
                                /* (NOTE: This uses the C99 "flexible array member" feature) */
};

/* Enum for diminfo_valid field in H5S_hyper_sel_t */
typedef enum {
    H5S_DIMINFO_VALID_IMPOSSIBLE, /* 0: diminfo is not valid and can never be valid with the current selection */
    H5S_DIMINFO_VALID_NO,       /* 1: diminfo is not valid but may or may not be possible to constuct */
    H5S_DIMINFO_VALID_YES       /* 2: diminfo is valid */
} H5S_diminfo_valid_t;

/* Information about 'diminfo' form of hyperslab selection */
typedef struct {
    /* 'opt' points to a [potentially] optimized version of the user's
     * regular hyperslab information.  'app' points to the actual parameters
     * that the application used for setting the hyperslab selection.
     *
     * The 'app' values are only used for regurgitating the original values
     * used to set the hyperslab to the application when it queries the
     * hyperslab selection information.
     */
    H5S_hyper_dim_t app[H5S_MAX_RANK];  /* Application-set per-dim selection info */
    H5S_hyper_dim_t opt[H5S_MAX_RANK];  /* Optimized per-dim selection info */

    /* The following two fields defines the bounding box of the diminfo selection */
    /* (relative to the offset) */
    hsize_t low_bounds[H5S_MAX_RANK];   /* The smallest element selected in each dimension */
    hsize_t high_bounds[H5S_MAX_RANK];  /* The largest element selected in each dimension */
} H5S_hyper_diminfo_t;

/* Information about hyperslab selection */
typedef struct {
    H5S_diminfo_valid_t diminfo_valid;  /* Whether the dataset has valid diminfo */

    H5S_hyper_diminfo_t diminfo;        /* Dimension info form of hyperslab selection */
    int unlim_dim;                      /* Dimension where selection is unlimited, or -1 if none */
    hsize_t num_elem_non_unlim;         /* # of elements in a "slice" excluding the unlimited dimension */
    H5S_hyper_span_info_t *span_lst;    /* List of hyperslab span information of all dimensions */
} H5S_hyper_sel_t;

/* Selection information methods */
/* Method to copy a selection */
typedef herr_t (*H5S_sel_copy_func_t)(H5S_t *dst, const H5S_t *src, hbool_t share_selection);
/* Method to release current selection */
typedef herr_t (*H5S_sel_release_func_t)(H5S_t *space);
/* Method to determine if current selection is valid for dataspace */
typedef htri_t (*H5S_sel_is_valid_func_t)(const H5S_t *space);
/* Method to determine number of bytes required to store current selection */
typedef hssize_t (*H5S_sel_serial_size_func_t)(const H5S_t *space);
/* Method to store current selection in "serialized" form (a byte sequence suitable for storing on disk) */
typedef herr_t (*H5S_sel_serialize_func_t)(const H5S_t *space, uint8_t **p);
/* Method to create selection from "serialized" form (a byte sequence suitable for storing on disk) */
typedef herr_t (*H5S_sel_deserialize_func_t)(H5S_t **space, const uint8_t **p);
/* Method to determine smallest n-D bounding box containing the current selection */
typedef herr_t (*H5S_sel_bounds_func_t)(const H5S_t *space, hsize_t *start, hsize_t *end);
/* Method to determine linear offset of initial element in selection within dataspace */
typedef herr_t (*H5S_sel_offset_func_t)(const H5S_t *space, hsize_t *offset);
/* Method to get unlimited dimension of selection (or -1 for none) */
typedef int (*H5S_sel_unlim_dim_func_t)(const H5S_t *space);
/* Method to get the number of elements in a slice through the unlimited dimension */
typedef herr_t (*H5S_sel_num_elem_non_unlim_func_t)(const H5S_t *space,
    hsize_t *num_elem_non_unlim);
/* Method to determine if current selection is contiguous */
typedef htri_t (*H5S_sel_is_contiguous_func_t)(const H5S_t *space);
/* Method to determine if current selection is a single block */
typedef htri_t (*H5S_sel_is_single_func_t)(const H5S_t *space);
/* Method to determine if current selection is "regular" */
typedef htri_t (*H5S_sel_is_regular_func_t)(const H5S_t *space);
/* Method to determine if two dataspaces' selections are the same shape */
typedef htri_t (*H5S_sel_shape_same_func_t)(const H5S_t *space1, const H5S_t *space2);
/* Method to determine if selection intersects a block */
typedef htri_t (*H5S_sel_intersect_block_func_t)(const H5S_t *space, const hsize_t *start, const hsize_t *end);
/* Method to adjust a selection by an offset */
typedef herr_t (*H5S_sel_adjust_u_func_t)(H5S_t *space, const hsize_t *offset);
/* Method to construct single element projection onto scalar dataspace */
typedef herr_t (*H5S_sel_project_scalar)(const H5S_t *space, hsize_t *offset);
/* Method to construct selection projection onto/into simple dataspace */
typedef herr_t (*H5S_sel_project_simple)(const H5S_t *space, H5S_t *new_space, hsize_t *offset);
/* Method to initialize iterator for current selection */
typedef herr_t (*H5S_sel_iter_init_func_t)(const H5S_t *space, H5S_sel_iter_t *sel_iter);

/* Selection class information */
typedef struct {
    H5S_sel_type type;                          /* Type of selection (all, none, points or hyperslab) */

    /* Methods */
    H5S_sel_copy_func_t copy;                   /* Method to make a copy of a selection */
    H5S_sel_release_func_t release;             /* Method to release current selection */
    H5S_sel_is_valid_func_t is_valid;           /* Method to determine if current selection is valid for dataspace */
    H5S_sel_serial_size_func_t serial_size;     /* Method to determine number of bytes required to store current selection */
    H5S_sel_serialize_func_t serialize;         /* Method to store current selection in "serialized" form (a byte sequence suitable for storing on disk) */
    H5S_sel_deserialize_func_t deserialize;     /* Method to store create selection from "serialized" form (a byte sequence suitable for storing on disk) */
    H5S_sel_bounds_func_t bounds;               /* Method to determine to smallest n-D bounding box containing the current selection */
    H5S_sel_offset_func_t offset;               /* Method to determine linear offset of initial element in selection within dataspace */
    H5S_sel_unlim_dim_func_t unlim_dim;         /* Method to get unlimited dimension of selection (or -1 for none) */
    H5S_sel_num_elem_non_unlim_func_t num_elem_non_unlim; /* Method to get the number of elements in a slice through the unlimited dimension */
    H5S_sel_is_contiguous_func_t is_contiguous; /* Method to determine if current selection is contiguous */
    H5S_sel_is_single_func_t is_single;         /* Method to determine if current selection is a single block */
    H5S_sel_is_regular_func_t is_regular;       /* Method to determine if current selection is "regular" */
    H5S_sel_shape_same_func_t shape_same;       /* Method to determine if two dataspaces' selections are the same shape */
    H5S_sel_intersect_block_func_t intersect_block; /* Method to determine if a dataspaces' selection intersects a block */
    H5S_sel_adjust_u_func_t adjust_u;           /* Method to adjust a selection by an offset */
    H5S_sel_project_scalar project_scalar;      /* Method to construct scalar dataspace projection */
    H5S_sel_project_simple project_simple;      /* Method to construct simple dataspace projection */
    H5S_sel_iter_init_func_t iter_init;         /* Method to initialize iterator for current selection */
} H5S_select_class_t;

/* Selection information object */
typedef struct {
    const H5S_select_class_t *type;     /* Pointer to selection's class info */

    hbool_t offset_changed;             /* Indicate that the offset for the selection has been changed */
    hssize_t offset[H5S_MAX_RANK];      /* Offset within the extent */

    hsize_t num_elem;                   /* Number of elements in selection */

    union {
        H5S_pnt_list_t *pnt_lst;        /* Info about list of selected points (order is important) */
        H5S_hyper_sel_t *hslab;         /* Info about hyperslab selection */
    } sel_info;
} H5S_select_t;

/* Main dataspace structure (typedef'd in H5Sprivate.h) */
struct H5S_t {
    H5S_extent_t extent;                /* Dataspace extent (must stay first) */
    H5S_select_t select;		/* Dataspace selection */
};

/* Selection iteration methods */
/* Method to retrieve the current coordinates of iterator for current selection */
typedef herr_t (*H5S_sel_iter_coords_func_t)(const H5S_sel_iter_t *iter,
    hsize_t *coords);
/* Method to retrieve the current block of iterator for current selection */
typedef herr_t (*H5S_sel_iter_block_func_t)(const H5S_sel_iter_t *iter,
    hsize_t *start, hsize_t *end);
/* Method to determine number of elements left in iterator for current selection */
typedef hsize_t (*H5S_sel_iter_nelmts_func_t)(const H5S_sel_iter_t *iter);
/* Method to determine if there are more blocks left in the current selection */
typedef htri_t (*H5S_sel_iter_has_next_block_func_t)(const H5S_sel_iter_t *iter);
/* Method to move selection iterator to the next element in the selection */
typedef herr_t (*H5S_sel_iter_next_func_t)(H5S_sel_iter_t *iter, size_t nelem);
/* Method to move selection iterator to the next block in the selection */
typedef herr_t (*H5S_sel_iter_next_block_func_t)(H5S_sel_iter_t *iter);
/* Method to retrieve a list of offset/length sequences for selection iterator */
typedef herr_t (*H5S_sel_iter_get_seq_list_func_t)(H5S_sel_iter_t *iter,
    size_t maxseq, size_t maxbytes, size_t *nseq, size_t *nbytes, hsize_t *off,
    size_t *len);
/* Method to release iterator for current selection */
typedef herr_t (*H5S_sel_iter_release_func_t)(H5S_sel_iter_t *iter);

/* Selection iteration class */
typedef struct H5S_sel_iter_class_t {
    H5S_sel_type type;                          /* Type of selection (all, none, points or hyperslab) */

    /* Methods on selections */
    H5S_sel_iter_coords_func_t iter_coords;     /* Method to retrieve the current coordinates of iterator for current selection */
    H5S_sel_iter_block_func_t iter_block;       /* Method to retrieve the current block of iterator for current selection */
    H5S_sel_iter_nelmts_func_t iter_nelmts;     /* Method to determine number of elements left in iterator for current selection */
    H5S_sel_iter_has_next_block_func_t iter_has_next_block;         /* Method to query if there is another block left in the selection */
    H5S_sel_iter_next_func_t iter_next;         /* Method to move selection iterator to the next element in the selection */
    H5S_sel_iter_next_block_func_t iter_next_block;     /* Method to move selection iterator to the next block in the selection */
    H5S_sel_iter_get_seq_list_func_t iter_get_seq_list; /* Method to retrieve a list of offset/length sequences for selection iterator */
    H5S_sel_iter_release_func_t iter_release;   /* Method to release iterator for current selection */
} H5S_sel_iter_class_t;

/*
 * All selection class methods.
 */
H5_DLLVAR const H5S_select_class_t H5S_sel_all[1];

/*
 * Hyperslab selection class methods.
 */
H5_DLLVAR const H5S_select_class_t H5S_sel_hyper[1];

/*
 * None selection class methods.
 */
H5_DLLVAR const H5S_select_class_t H5S_sel_none[1];

/*
 * Pointer selection class methods.
 */
H5_DLLVAR const H5S_select_class_t H5S_sel_point[1];

/* Array of versions for Dataspace */
H5_DLLVAR const unsigned H5O_sdspace_ver_bounds[H5F_LIBVER_NBOUNDS];

/* Extent functions */
H5_DLL herr_t H5S__extent_release(H5S_extent_t *extent);
H5_DLL herr_t H5S__extent_copy_real(H5S_extent_t *dst, const H5S_extent_t *src,
    hbool_t copy_max);

/* Operations on hyperslab selections */
H5_DLL uint64_t H5S__hyper_get_op_gen(void);
H5_DLL void H5S__hyper_rebuild(H5S_t *space);
H5_DLL herr_t H5S__modify_select(H5S_t *space1, H5S_seloper_t op, H5S_t *space2);
H5_DLL herr_t H5S__hyper_project_intersection(const H5S_t *src_space,
    const H5S_t *dst_space, const H5S_t *src_intersect_space, H5S_t *proj_space);

/* Testing functions */
#ifdef H5S_TESTING
H5_DLL herr_t H5S__get_rebuild_status_test(hid_t space_id,
    H5S_diminfo_valid_t *status1, H5S_diminfo_valid_t *status2);
H5_DLL herr_t H5S__get_diminfo_status_test(hid_t space_id,
    H5S_diminfo_valid_t *status);
H5_DLL htri_t H5S__internal_consistency_test(hid_t space_id);
#endif /* H5S_TESTING */

#endif /*_H5Spkg_H*/

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/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
 * Copyright by The HDF Group.                                               *
 * Copyright by the Board of Trustees of the University of Illinois.         *
 * All rights reserved.                                                      *
 *                                                                           *
 * This file is part of HDF5.  The full HDF5 copyright notice, including     *
 * terms governing use, modification, and redistribution, is contained in    *
 * the COPYING file, which can be found at the root of the source code       *
 * distribution tree, or in https://support.hdfgroup.org/ftp/HDF5/releases.  *
 * If you do not have access to either file, you may request a copy from     *
 * help@hdfgroup.org.                                                        *
 * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */

/*
 * Module Info: This module contains most of the "core" functionality of
 *      the H5T interface, including the API initialization code, etc.
 *      Many routines that are infrequently used, or are specialized for
 *      one particular datatype class are in another module.
 */

/****************/
/* Module Setup */
/****************/

#include "H5Tmodule.h"      /* This source code file is part of the H5T module */


/***********/
/* Headers */
/***********/
#include "H5private.h"          /* Generic Functions                        */
#include "H5ACprivate.h"        /* Metadata cache                           */
#include "H5CXprivate.h"        /* API Contexts                             */
#include "H5Dprivate.h"         /* Datasets                                 */
#include "H5Eprivate.h"         /* Error handling                           */
#include "H5Fprivate.h"         /* Files                                    */
#include "H5FLprivate.h"        /* Free Lists                               */
#include "H5FOprivate.h"        /* File objects                             */
#include "H5Gprivate.h"         /* Groups                                   */
#include "H5Iprivate.h"         /* IDs                                      */
#include "H5MMprivate.h"        /* Memory management                        */
#include "H5Pprivate.h"         /* Property lists                           */
#include "H5Tpkg.h"             /* Datatypes                                */
#include "H5VLprivate.h"        /* Virtual Object Layer                     */


/****************/
/* Local Macros */
/****************/

#define H5T_ENCODE_VERSION      0

/*
 * Type initialization macros
 *
 * These use the "template macro" technique to reduce the amount of gratuitous
 * duplicated code when initializing the datatypes for the library.  The main
 * template macro is the H5T_INIT_TYPE() macro below.
 *
 */

/* Define the code template for bitfields for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_BITFIELD_CORE {                       \
    dt->shared->type = H5T_BITFIELD;                        \
}

#define H5T_INIT_TYPE_BITFIELD_COMMON(ENDIANNESS) {            \
    H5T_INIT_TYPE_NUM_COMMON(ENDIANNESS)                       \
    H5T_INIT_TYPE_BITFIELD_CORE;                               \
}

#define H5T_INIT_TYPE_BITFIELDLE_CORE {                        \
    H5T_INIT_TYPE_BITFIELD_COMMON(H5T_ORDER_LE)                \
}

#define H5T_INIT_TYPE_BITFIELDBE_CORE {                        \
    H5T_INIT_TYPE_BITFIELD_COMMON(H5T_ORDER_BE)                \
}

/* Define the code template for times for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_TIME_CORE {                           \
    dt->shared->type = H5T_TIME;                            \
}

/* Define the code template for types which reset the offset for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_OFFSET_CORE {                         \
    dt->shared->u.atomic.offset = 0;                        \
}

/* Define common code for all numeric types (floating-point & int, signed & unsigned) */
#define H5T_INIT_TYPE_NUM_COMMON(ENDIANNESS) {              \
    dt->shared->u.atomic.order = ENDIANNESS;                \
    dt->shared->u.atomic.offset = 0;                        \
    dt->shared->u.atomic.lsb_pad = H5T_PAD_ZERO;            \
    dt->shared->u.atomic.msb_pad = H5T_PAD_ZERO;            \
}

/* Define the code templates for standard floats for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_FLOAT_COMMON(ENDIANNESS) {            \
    H5T_INIT_TYPE_NUM_COMMON(ENDIANNESS)                    \
    dt->shared->u.atomic.u.f.sign = 31;                     \
    dt->shared->u.atomic.u.f.epos = 23;                     \
    dt->shared->u.atomic.u.f.esize = 8;                     \
    dt->shared->u.atomic.u.f.ebias = 0x7f;                  \
    dt->shared->u.atomic.u.f.mpos = 0;                      \
    dt->shared->u.atomic.u.f.msize = 23;                    \
    dt->shared->u.atomic.u.f.norm = H5T_NORM_IMPLIED;       \
    dt->shared->u.atomic.u.f.pad = H5T_PAD_ZERO;            \
}

#define H5T_INIT_TYPE_FLOATLE_CORE {                        \
    H5T_INIT_TYPE_FLOAT_COMMON(H5T_ORDER_LE)                \
}

#define H5T_INIT_TYPE_FLOATBE_CORE {                        \
    H5T_INIT_TYPE_FLOAT_COMMON(H5T_ORDER_BE)                \
}

/* Define the code templates for standard doubles for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_DOUBLE_COMMON(ENDIANNESS) {           \
    H5T_INIT_TYPE_NUM_COMMON(ENDIANNESS)                    \
    dt->shared->u.atomic.u.f.sign = 63;                     \
    dt->shared->u.atomic.u.f.epos = 52;                     \
    dt->shared->u.atomic.u.f.esize = 11;                    \
    dt->shared->u.atomic.u.f.ebias = 0x03ff;                \
    dt->shared->u.atomic.u.f.mpos = 0;                      \
    dt->shared->u.atomic.u.f.msize = 52;                    \
    dt->shared->u.atomic.u.f.norm = H5T_NORM_IMPLIED;       \
    dt->shared->u.atomic.u.f.pad = H5T_PAD_ZERO;            \
}

#define H5T_INIT_TYPE_DOUBLELE_CORE {                       \
    H5T_INIT_TYPE_DOUBLE_COMMON(H5T_ORDER_LE)               \
}

#define H5T_INIT_TYPE_DOUBLEBE_CORE {                       \
    H5T_INIT_TYPE_DOUBLE_COMMON(H5T_ORDER_BE)               \
}

/* Define the code templates for VAX float for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_FLOATVAX_CORE {                       \
    H5T_INIT_TYPE_NUM_COMMON(H5T_ORDER_VAX)                 \
    dt->shared->u.atomic.u.f.sign = 31;                     \
    dt->shared->u.atomic.u.f.epos = 23;                     \
    dt->shared->u.atomic.u.f.esize = 8;                     \
    dt->shared->u.atomic.u.f.ebias = 0x81;                  \
    dt->shared->u.atomic.u.f.mpos = 0;                      \
    dt->shared->u.atomic.u.f.msize = 23;                    \
    dt->shared->u.atomic.u.f.norm = H5T_NORM_IMPLIED;       \
    dt->shared->u.atomic.u.f.pad = H5T_PAD_ZERO;            \
    dt->shared->version = H5O_DTYPE_VERSION_3;              \
}

/* Define the code templates for VAX double for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_DOUBLEVAX_CORE {                      \
    H5T_INIT_TYPE_NUM_COMMON(H5T_ORDER_VAX)                 \
    dt->shared->u.atomic.u.f.sign = 63;                     \
    dt->shared->u.atomic.u.f.epos = 52;                     \
    dt->shared->u.atomic.u.f.esize = 11;                    \
    dt->shared->u.atomic.u.f.ebias = 0x0401;                \
    dt->shared->u.atomic.u.f.mpos = 0;                      \
    dt->shared->u.atomic.u.f.msize = 52;                    \
    dt->shared->u.atomic.u.f.norm = H5T_NORM_IMPLIED;       \
    dt->shared->u.atomic.u.f.pad = H5T_PAD_ZERO;            \
    dt->shared->version = H5O_DTYPE_VERSION_3;              \
}

/* Define the code templates for standard signed integers for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_SINT_COMMON(ENDIANNESS) {             \
    H5T_INIT_TYPE_NUM_COMMON(ENDIANNESS)                    \
    dt->shared->u.atomic.u.i.sign = H5T_SGN_2;              \
}

#define H5T_INIT_TYPE_SINTLE_CORE {                         \
    H5T_INIT_TYPE_SINT_COMMON(H5T_ORDER_LE)                 \
}

#define H5T_INIT_TYPE_SINTBE_CORE {                         \
    H5T_INIT_TYPE_SINT_COMMON(H5T_ORDER_BE)                 \
}

/* Define the code templates for standard unsigned integers for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_UINT_COMMON(ENDIANNESS) {             \
    H5T_INIT_TYPE_NUM_COMMON(ENDIANNESS)                    \
    dt->shared->u.atomic.u.i.sign = H5T_SGN_NONE;           \
}

#define H5T_INIT_TYPE_UINTLE_CORE {                         \
    H5T_INIT_TYPE_UINT_COMMON(H5T_ORDER_LE)                 \
}

#define H5T_INIT_TYPE_UINTBE_CORE {                         \
    H5T_INIT_TYPE_UINT_COMMON(H5T_ORDER_BE)                 \
}

/* Define a macro for common code for all newly allocate datatypes */
#define H5T_INIT_TYPE_ALLOC_COMMON(TYPE) {                  \
    dt->sh_loc.type = H5O_SHARE_TYPE_UNSHARED;              \
    dt->shared->type = TYPE;                                \
}

/* Define the code templates for opaque for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_OPAQ_CORE {                           \
    H5T_INIT_TYPE_ALLOC_COMMON(H5T_OPAQUE)                  \
    dt->shared->u.opaque.tag = H5MM_xstrdup("");            \
}

/* Define the code templates for strings for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_STRING_COMMON {                       \
    H5T_INIT_TYPE_ALLOC_COMMON(H5T_STRING)                  \
    H5T_INIT_TYPE_NUM_COMMON(H5T_ORDER_NONE)                \
    dt->shared->u.atomic.u.s.cset = H5F_DEFAULT_CSET;       \
}

#define H5T_INIT_TYPE_CSTRING_CORE {                        \
    H5T_INIT_TYPE_STRING_COMMON                             \
    dt->shared->u.atomic.u.s.pad = H5T_STR_NULLTERM;        \
}

#define H5T_INIT_TYPE_FORSTRING_CORE {                      \
    H5T_INIT_TYPE_STRING_COMMON                             \
    dt->shared->u.atomic.u.s.pad = H5T_STR_SPACEPAD;        \
}

/* Define the code templates for references for the "GUTS" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_REF_COMMON {                          \
    H5T_INIT_TYPE_ALLOC_COMMON(H5T_REFERENCE)               \
    H5T_INIT_TYPE_NUM_COMMON(H5T_ORDER_NONE)                \
}

#define H5T_INIT_TYPE_OBJREF_CORE {                         \
    H5T_INIT_TYPE_REF_COMMON                                \
    dt->shared->force_conv = TRUE;                          \
    dt->shared->u.atomic.u.r.rtype = H5R_OBJECT;            \
    dt->shared->u.atomic.u.r.loc = H5T_LOC_MEMORY;          \
}

#define H5T_INIT_TYPE_REGREF_CORE {                         \
    H5T_INIT_TYPE_REF_COMMON                                \
    dt->shared->u.atomic.u.r.rtype = H5R_DATASET_REGION;    \
}

/* Define the code templates for the "SIZE_TMPL" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_SET_SIZE(SIZE) {                      \
    dt->shared->size = SIZE;                                \
    dt->shared->u.atomic.prec = 8 * SIZE;                   \
}

#define H5T_INIT_TYPE_NOSET_SIZE(SIZE) {                    \
}

/* Define the code templates for the "CRT_TMPL" in the H5T_INIT_TYPE macro */
#define H5T_INIT_TYPE_COPY_CREATE(BASE) {                   \
    /* Base off of existing datatype */                     \
    if(NULL == (dt = H5T_copy(BASE, H5T_COPY_TRANSIENT)))   \
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTCOPY, FAIL, "duplicating base type failed") \
}

#define H5T_INIT_TYPE_ALLOC_CREATE(BASE) {                  \
    /* Allocate new datatype info */                        \
    if(NULL == (dt = H5T__alloc()))                         \
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTALLOC, FAIL, "memory allocation failed") \
}


#define H5T_INIT_TYPE(GUTS,GLOBAL,CRT_TMPL,BASE,SIZE_TMPL,SIZE) { \
    /* Get new datatype struct */                           \
    H5_GLUE3(H5T_INIT_TYPE_,CRT_TMPL,_CREATE)(BASE)         \
                                                            \
    /* Adjust information for all types */                  \
    dt->shared->state = H5T_STATE_IMMUTABLE;                \
    H5_GLUE3(H5T_INIT_TYPE_,SIZE_TMPL,_SIZE)(SIZE)          \
                                                            \
    /* Adjust information for this type */                  \
    H5_GLUE3(H5T_INIT_TYPE_, GUTS, _CORE)                   \
                                                            \
    /* Atomize result */                                    \
    if((GLOBAL = H5I_register(H5I_DATATYPE, dt, FALSE)) < 0)  \
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTREGISTER, FAIL, "unable to register datatype atom") \
}


/******************/
/* Local Typedefs */
/******************/


/********************/
/* Local Prototypes */
/********************/
static herr_t H5T__register_int(H5T_pers_t pers, const char *name, H5T_t *src, H5T_t *dst, H5T_lib_conv_t func);
static herr_t H5T__register(H5T_pers_t pers, const char *name, H5T_t *src, H5T_t *dst, H5T_conv_func_t *conv);
static herr_t H5T__unregister(H5T_pers_t pers, const char *name, H5T_t *src, H5T_t *dst, H5T_conv_t func);
static htri_t H5T__compiler_conv(H5T_t *src, H5T_t *dst);
static herr_t H5T__set_size(H5T_t *dt, size_t size);
static herr_t H5T__close_cb(H5T_t *dt);
static H5T_path_t *H5T__path_find_real(const H5T_t *src, const H5T_t *dst, const char *name, H5T_conv_func_t *conv);
static hbool_t H5T__detect_reg_ref(const H5T_t *dt);


/*****************************/
/* Library Private Variables */
/*****************************/

/* The native endianness of the platform */
H5T_order_t H5T_native_order_g = H5T_ORDER_ERROR;


/*********************/
/* Package Variables */
/*********************/

/* Package initialization variable */
hbool_t H5_PKG_INIT_VAR = FALSE;

/*
 * Predefined data types. These are initialized at runtime in H5Tinit.c and
 * by H5T__init_package() in this source file.
 *
 * If more of these are added, the new ones must be added to the list of
 * types to reset in H5T_term_package().
 */
hid_t H5T_IEEE_F32BE_g          = FAIL;
hid_t H5T_IEEE_F32LE_g          = FAIL;
hid_t H5T_IEEE_F64BE_g          = FAIL;
hid_t H5T_IEEE_F64LE_g          = FAIL;

hid_t H5T_VAX_F32_g             = FAIL;
hid_t H5T_VAX_F64_g             = FAIL;

hid_t H5T_STD_I8BE_g            = FAIL;
hid_t H5T_STD_I8LE_g            = FAIL;
hid_t H5T_STD_I16BE_g           = FAIL;
hid_t H5T_STD_I16LE_g           = FAIL;
hid_t H5T_STD_I32BE_g           = FAIL;
hid_t H5T_STD_I32LE_g           = FAIL;
hid_t H5T_STD_I64BE_g           = FAIL;
hid_t H5T_STD_I64LE_g           = FAIL;
hid_t H5T_STD_U8BE_g            = FAIL;
hid_t H5T_STD_U8LE_g            = FAIL;
hid_t H5T_STD_U16BE_g           = FAIL;
hid_t H5T_STD_U16LE_g           = FAIL;
hid_t H5T_STD_U32BE_g           = FAIL;
hid_t H5T_STD_U32LE_g           = FAIL;
hid_t H5T_STD_U64BE_g           = FAIL;
hid_t H5T_STD_U64LE_g           = FAIL;
hid_t H5T_STD_B8BE_g            = FAIL;
hid_t H5T_STD_B8LE_g            = FAIL;
hid_t H5T_STD_B16BE_g           = FAIL;
hid_t H5T_STD_B16LE_g           = FAIL;
hid_t H5T_STD_B32BE_g           = FAIL;
hid_t H5T_STD_B32LE_g           = FAIL;
hid_t H5T_STD_B64BE_g           = FAIL;
hid_t H5T_STD_B64LE_g           = FAIL;
hid_t H5T_STD_REF_OBJ_g         = FAIL;
hid_t H5T_STD_REF_DSETREG_g     = FAIL;

hid_t H5T_UNIX_D32BE_g          = FAIL;
hid_t H5T_UNIX_D32LE_g          = FAIL;
hid_t H5T_UNIX_D64BE_g          = FAIL;
hid_t H5T_UNIX_D64LE_g          = FAIL;

hid_t H5T_C_S1_g                = FAIL;

hid_t H5T_FORTRAN_S1_g          = FAIL;

hid_t H5T_NATIVE_SCHAR_g        = FAIL;
hid_t H5T_NATIVE_UCHAR_g        = FAIL;
hid_t H5T_NATIVE_SHORT_g        = FAIL;
hid_t H5T_NATIVE_USHORT_g       = FAIL;
hid_t H5T_NATIVE_INT_g          = FAIL;
hid_t H5T_NATIVE_UINT_g         = FAIL;
hid_t H5T_NATIVE_LONG_g         = FAIL;
hid_t H5T_NATIVE_ULONG_g        = FAIL;
hid_t H5T_NATIVE_LLONG_g        = FAIL;
hid_t H5T_NATIVE_ULLONG_g       = FAIL;
hid_t H5T_NATIVE_FLOAT_g        = FAIL;
hid_t H5T_NATIVE_DOUBLE_g       = FAIL;
#if H5_SIZEOF_LONG_DOUBLE !=0
hid_t H5T_NATIVE_LDOUBLE_g      = FAIL;
#endif
hid_t H5T_NATIVE_B8_g           = FAIL;
hid_t H5T_NATIVE_B16_g          = FAIL;
hid_t H5T_NATIVE_B32_g          = FAIL;
hid_t H5T_NATIVE_B64_g          = FAIL;
hid_t H5T_NATIVE_OPAQUE_g       = FAIL;
hid_t H5T_NATIVE_HADDR_g        = FAIL;
hid_t H5T_NATIVE_HSIZE_g        = FAIL;
hid_t H5T_NATIVE_HSSIZE_g       = FAIL;
hid_t H5T_NATIVE_HERR_g         = FAIL;
hid_t H5T_NATIVE_HBOOL_g        = FAIL;

hid_t H5T_NATIVE_INT8_g         = FAIL;
hid_t H5T_NATIVE_UINT8_g        = FAIL;
hid_t H5T_NATIVE_INT_LEAST8_g   = FAIL;
hid_t H5T_NATIVE_UINT_LEAST8_g  = FAIL;
hid_t H5T_NATIVE_INT_FAST8_g    = FAIL;
hid_t H5T_NATIVE_UINT_FAST8_g   = FAIL;

hid_t H5T_NATIVE_INT16_g        = FAIL;
hid_t H5T_NATIVE_UINT16_g       = FAIL;
hid_t H5T_NATIVE_INT_LEAST16_g  = FAIL;
hid_t H5T_NATIVE_UINT_LEAST16_g = FAIL;
hid_t H5T_NATIVE_INT_FAST16_g   = FAIL;
hid_t H5T_NATIVE_UINT_FAST16_g  = FAIL;

hid_t H5T_NATIVE_INT32_g        = FAIL;
hid_t H5T_NATIVE_UINT32_g       = FAIL;
hid_t H5T_NATIVE_INT_LEAST32_g  = FAIL;
hid_t H5T_NATIVE_UINT_LEAST32_g = FAIL;
hid_t H5T_NATIVE_INT_FAST32_g   = FAIL;
hid_t H5T_NATIVE_UINT_FAST32_g  = FAIL;

hid_t H5T_NATIVE_INT64_g        = FAIL;
hid_t H5T_NATIVE_UINT64_g       = FAIL;
hid_t H5T_NATIVE_INT_LEAST64_g  = FAIL;
hid_t H5T_NATIVE_UINT_LEAST64_g = FAIL;
hid_t H5T_NATIVE_INT_FAST64_g   = FAIL;
hid_t H5T_NATIVE_UINT_FAST64_g  = FAIL;

/*
 * Alignment constraints for native types. These are initialized at run time
 * in H5Tinit.c.  These alignments are mainly for offsets in HDF5 compound
 * datatype or C structures, which are different from the alignments for memory
 * address below this group of variables.
 */
size_t H5T_NATIVE_SCHAR_COMP_ALIGN_g        = 0;
size_t H5T_NATIVE_UCHAR_COMP_ALIGN_g        = 0;
size_t H5T_NATIVE_SHORT_COMP_ALIGN_g        = 0;
size_t H5T_NATIVE_USHORT_COMP_ALIGN_g       = 0;
size_t H5T_NATIVE_INT_COMP_ALIGN_g          = 0;
size_t H5T_NATIVE_UINT_COMP_ALIGN_g         = 0;
size_t H5T_NATIVE_LONG_COMP_ALIGN_g         = 0;
size_t H5T_NATIVE_ULONG_COMP_ALIGN_g        = 0;
size_t H5T_NATIVE_LLONG_COMP_ALIGN_g        = 0;
size_t H5T_NATIVE_ULLONG_COMP_ALIGN_g       = 0;
size_t H5T_NATIVE_FLOAT_COMP_ALIGN_g        = 0;
size_t H5T_NATIVE_DOUBLE_COMP_ALIGN_g       = 0;
#if H5_SIZEOF_LONG_DOUBLE !=0
size_t H5T_NATIVE_LDOUBLE_COMP_ALIGN_g      = 0;
#endif

size_t H5T_POINTER_COMP_ALIGN_g             = 0;
size_t H5T_HVL_COMP_ALIGN_g                 = 0;
size_t H5T_HOBJREF_COMP_ALIGN_g             = 0;
size_t H5T_HDSETREGREF_COMP_ALIGN_g         = 0;

/*
 * Alignment constraints for native types. These are initialized at run time
 * in H5Tinit.c
 */
size_t H5T_NATIVE_SCHAR_ALIGN_g             = 0;
size_t H5T_NATIVE_UCHAR_ALIGN_g             = 0;
size_t H5T_NATIVE_SHORT_ALIGN_g             = 0;
size_t H5T_NATIVE_USHORT_ALIGN_g            = 0;
size_t H5T_NATIVE_INT_ALIGN_g               = 0;
size_t H5T_NATIVE_UINT_ALIGN_g              = 0;
size_t H5T_NATIVE_LONG_ALIGN_g              = 0;
size_t H5T_NATIVE_ULONG_ALIGN_g             = 0;
size_t H5T_NATIVE_LLONG_ALIGN_g             = 0;
size_t H5T_NATIVE_ULLONG_ALIGN_g            = 0;
size_t H5T_NATIVE_FLOAT_ALIGN_g             = 0;
size_t H5T_NATIVE_DOUBLE_ALIGN_g            = 0;
#if H5_SIZEOF_LONG_DOUBLE !=0
size_t H5T_NATIVE_LDOUBLE_ALIGN_g           = 0;
#endif

/*
 * Alignment constraints for C9x types. These are initialized at run time in
 * H5Tinit.c if the types are provided by the system. Otherwise we set their
 * values to 0 here (no alignment calculated).
 */
size_t H5T_NATIVE_INT8_ALIGN_g              = 0;
size_t H5T_NATIVE_UINT8_ALIGN_g             = 0;
size_t H5T_NATIVE_INT_LEAST8_ALIGN_g        = 0;
size_t H5T_NATIVE_UINT_LEAST8_ALIGN_g       = 0;
size_t H5T_NATIVE_INT_FAST8_ALIGN_g         = 0;
size_t H5T_NATIVE_UINT_FAST8_ALIGN_g        = 0;

size_t H5T_NATIVE_INT16_ALIGN_g             = 0;
size_t H5T_NATIVE_UINT16_ALIGN_g            = 0;
size_t H5T_NATIVE_INT_LEAST16_ALIGN_g       = 0;
size_t H5T_NATIVE_UINT_LEAST16_ALIGN_g      = 0;
size_t H5T_NATIVE_INT_FAST16_ALIGN_g        = 0;
size_t H5T_NATIVE_UINT_FAST16_ALIGN_g       = 0;

size_t H5T_NATIVE_INT32_ALIGN_g             = 0;
size_t H5T_NATIVE_UINT32_ALIGN_g            = 0;
size_t H5T_NATIVE_INT_LEAST32_ALIGN_g       = 0;
size_t H5T_NATIVE_UINT_LEAST32_ALIGN_g      = 0;
size_t H5T_NATIVE_INT_FAST32_ALIGN_g        = 0;
size_t H5T_NATIVE_UINT_FAST32_ALIGN_g       = 0;

size_t H5T_NATIVE_INT64_ALIGN_g             = 0;
size_t H5T_NATIVE_UINT64_ALIGN_g            = 0;
size_t H5T_NATIVE_INT_LEAST64_ALIGN_g       = 0;
size_t H5T_NATIVE_UINT_LEAST64_ALIGN_g      = 0;
size_t H5T_NATIVE_INT_FAST64_ALIGN_g        = 0;
size_t H5T_NATIVE_UINT_FAST64_ALIGN_g       = 0;

/* Useful floating-point values for conversion routines */
/* (+/- Inf for all floating-point types) */
float H5T_NATIVE_FLOAT_POS_INF_g            = 0.0f;
float H5T_NATIVE_FLOAT_NEG_INF_g            = 0.0f;
double H5T_NATIVE_DOUBLE_POS_INF_g          = (double)0.0f;
double H5T_NATIVE_DOUBLE_NEG_INF_g          = (double)0.0f;

/* Declare the free list for H5T_t's and H5T_shared_t's */
H5FL_DEFINE(H5T_t);
H5FL_DEFINE(H5T_shared_t);

/* Format version bounds for datatype */
const unsigned H5O_dtype_ver_bounds[] = {
    H5O_DTYPE_VERSION_1,        /* H5F_LIBVER_EARLIEST */
    H5O_DTYPE_VERSION_3,        /* H5F_LIBVER_V18 */
    H5O_DTYPE_VERSION_3,        /* H5F_LIBVER_V110 */
    H5O_DTYPE_VERSION_3,        /* H5F_LIBVER_V112 */
    H5O_DTYPE_VERSION_LATEST    /* H5F_LIBVER_LATEST */
};

/*******************/
/* Local Variables */
/*******************/

/*
 * The path database. Each path has a source and destination data type pair
 * which is used as the key by which the `entries' array is sorted.
 */
static struct {
    int            npaths;        /*number of paths defined               */
    size_t         apaths;        /*number of paths allocated             */
    H5T_path_t   **path;          /*sorted array of path pointers         */
    int            nsoft;         /*number of soft conversions defined    */
    size_t         asoft;         /*number of soft conversions allocated  */
    H5T_soft_t    *soft;          /*unsorted array of soft conversions    */
} H5T_g;

/* Declare the free list for H5T_path_t's */
H5FL_DEFINE_STATIC(H5T_path_t);

/* Datatype ID class */
static const H5I_class_t H5I_DATATYPE_CLS[1] = {{
    H5I_DATATYPE,               /* ID class value */
    0,                          /* Class flags    */
    8,                          /* # of reserved IDs for class */
    (H5I_free_t)H5T__close_cb   /* Callback routine for closing objects of this class */
}};


/* Flag indicating "top" of interface has been initialized */
static hbool_t H5T_top_package_initialize_s = FALSE;



/*-------------------------------------------------------------------------
 * Function:    H5T_init
 *
 * Purpose:    Initialize the interface from some other package.
 *
 * Return:    Success:    non-negative
 *            Failure:    negative
 *
 * Programmer:    Robb Matzke
 *              Wednesday, December 16, 1998
 *
 *-------------------------------------------------------------------------
 */
herr_t
H5T_init(void)
{
    herr_t ret_value = SUCCEED;   /* Return value */

    FUNC_ENTER_NOAPI(FAIL)
    /* FUNC_ENTER() does all the work */

done:
    FUNC_LEAVE_NOAPI(ret_value)
} /* end H5T_init() */


/*-------------------------------------------------------------------------
 * Function:    H5T__init_inf
 *
 * Purpose:    Initialize the +/- Infinity floating-poing values for type
 *              conversion.
 *
 * Return:    Success:    non-negative
 *            Failure:    negative
 *
 * Programmer:    Quincey Koziol
 *              Saturday, November 22, 2003
 *
 *-------------------------------------------------------------------------
 */
static herr_t
H5T__init_inf(void)
{
    H5T_t        *dst_p;        /* Datatype type operate on */
    H5T_atomic_t *dst;          /* Datatype's atomic info   */
    uint8_t      *d;            /* Pointer to value to set  */
    size_t        half_size;    /* Half the type size       */
    size_t        u;            /* Local index value        */
    herr_t ret_value = SUCCEED; /* Return value             */

    FUNC_ENTER_STATIC

    /* Get the float datatype */
    if(NULL == (dst_p = (H5T_t *)H5I_object(H5T_NATIVE_FLOAT_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    dst = &dst_p->shared->u.atomic;

    /* Check that we can re-order the bytes correctly */
    if(H5T_ORDER_LE != H5T_native_order_g && H5T_ORDER_BE != H5T_native_order_g)
        HGOTO_ERROR(H5E_DATATYPE, H5E_UNSUPPORTED, FAIL, "unsupported byte order")

    /* +Inf */
    d = (uint8_t *)&H5T_NATIVE_FLOAT_POS_INF_g;
    H5T__bit_set(d, dst->u.f.sign, (size_t)1, FALSE);
    H5T__bit_set(d, dst->u.f.epos, dst->u.f.esize, TRUE);
    H5T__bit_set(d, dst->u.f.mpos, dst->u.f.msize, FALSE);

    /* Swap the bytes if the machine architecture is big-endian */
    if (H5T_ORDER_BE == H5T_native_order_g) {
        half_size = dst_p->shared->size / 2;
        for(u = 0; u < half_size; u++) {
            uint8_t tmp = d[dst_p->shared->size - (u + 1)];
            d[dst_p->shared->size - (u + 1)] = d[u];
            d[u] = tmp;
        } /* end for */
    } /* end if */

    /* -Inf */
    d = (uint8_t *)&H5T_NATIVE_FLOAT_NEG_INF_g;
    H5T__bit_set(d, dst->u.f.sign, (size_t)1, TRUE);
    H5T__bit_set(d, dst->u.f.epos, dst->u.f.esize, TRUE);
    H5T__bit_set(d, dst->u.f.mpos, dst->u.f.msize, FALSE);

    /* Swap the bytes if the machine architecture is big-endian */
    if(H5T_ORDER_BE == H5T_native_order_g) {
        half_size = dst_p->shared->size / 2;
        for(u = 0; u < half_size; u++) {
            uint8_t tmp = d[dst_p->shared->size - (u + 1)];
            d[dst_p->shared->size - (u + 1)] = d[u];
            d[u] = tmp;
        } /* end for */
    } /* end if */

    /* Get the double datatype */
    if(NULL == (dst_p = (H5T_t *)H5I_object(H5T_NATIVE_DOUBLE_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    dst = &dst_p->shared->u.atomic;

    /* Check that we can re-order the bytes correctly */
    if(H5T_ORDER_LE != H5T_native_order_g && H5T_ORDER_BE != H5T_native_order_g)
        HGOTO_ERROR(H5E_DATATYPE, H5E_UNSUPPORTED, FAIL, "unsupported byte order")

    /* +Inf */
    d = (uint8_t *)&H5T_NATIVE_DOUBLE_POS_INF_g;
    H5T__bit_set(d, dst->u.f.sign, (size_t)1, FALSE);
    H5T__bit_set(d, dst->u.f.epos, dst->u.f.esize, TRUE);
    H5T__bit_set(d, dst->u.f.mpos, dst->u.f.msize, FALSE);

    /* Swap the bytes if the machine architecture is big-endian */
    if(H5T_ORDER_BE == H5T_native_order_g) {
        half_size = dst_p->shared->size / 2;
        for(u = 0; u < half_size; u++) {
            uint8_t tmp = d[dst_p->shared->size - (u + 1)];
            d[dst_p->shared->size - (u + 1)] = d[u];
            d[u] = tmp;
        } /* end for */
    } /* end if */

    /* -Inf */
    d = (uint8_t *)&H5T_NATIVE_DOUBLE_NEG_INF_g;
    H5T__bit_set(d, dst->u.f.sign, (size_t)1, TRUE);
    H5T__bit_set(d, dst->u.f.epos, dst->u.f.esize, TRUE);
    H5T__bit_set(d, dst->u.f.mpos, dst->u.f.msize, FALSE);

    /* Swap the bytes if the machine architecture is big-endian */
    if(H5T_ORDER_BE == H5T_native_order_g) {
        half_size = dst_p->shared->size / 2;
        for(u = 0; u < half_size; u++) {
            uint8_t tmp = d[dst_p->shared->size - (u + 1)];
            d[dst_p->shared->size - (u + 1)] = d[u];
            d[u] = tmp;
        } /* end for */
    } /* end if */

done:
    FUNC_LEAVE_NOAPI(ret_value)
} /* end H5T__init_inf() */


/*--------------------------------------------------------------------------
NAME
   H5T__init_package -- Initialize interface-specific information
USAGE
    herr__t H5T_init_package()
RETURNS
    Non-negative on success/Negative on failure
DESCRIPTION
    Initializes any interface-specific data or routines.

--------------------------------------------------------------------------*/
herr_t
H5T__init_package(void)
{
    H5T_t       *native_schar=NULL;     /* Datatype structure for native signed char */
    H5T_t       *native_uchar=NULL;     /* Datatype structure for native unsigned char */
    H5T_t       *native_short=NULL;     /* Datatype structure for native short */
    H5T_t       *native_ushort=NULL;    /* Datatype structure for native unsigned short */
    H5T_t       *native_int=NULL;       /* Datatype structure for native int */
    H5T_t       *native_uint=NULL;      /* Datatype structure for native unsigned int */
    H5T_t       *native_long=NULL;      /* Datatype structure for native long */
    H5T_t       *native_ulong=NULL;     /* Datatype structure for native unsigned long */
    H5T_t       *native_llong=NULL;     /* Datatype structure for native long long */
    H5T_t       *native_ullong=NULL;    /* Datatype structure for native unsigned long long */
    H5T_t       *native_float=NULL;     /* Datatype structure for native float */
    H5T_t       *native_double=NULL;    /* Datatype structure for native double */
#if H5_SIZEOF_LONG_DOUBLE !=0
    H5T_t       *native_ldouble=NULL;   /* Datatype structure for native long double */
#endif
    H5T_t       *std_u8le=NULL;         /* Datatype structure for unsigned 8-bit little-endian integer */
    H5T_t       *std_u8be=NULL;         /* Datatype structure for unsigned 8-bit big-endian integer */
    H5T_t       *std_u16le=NULL;        /* Datatype structure for unsigned 16-bit little-endian integer */
    H5T_t       *std_u16be=NULL;        /* Datatype structure for unsigned 16-bit big-endian integer */
    H5T_t       *std_u32le=NULL;        /* Datatype structure for unsigned 32-bit little-endian integer */
    H5T_t       *std_u32be=NULL;        /* Datatype structure for unsigned 32-bit big-endian integer */
    H5T_t       *std_u64le=NULL;        /* Datatype structure for unsigned 64-bit little-endian integer */
    H5T_t       *std_u64be=NULL;        /* Datatype structure for unsigned 64-bit big-endian integer */
    H5T_t       *dt = NULL;
    H5T_t       *fixedpt=NULL;          /* Datatype structure for native int */
    H5T_t       *floatpt=NULL;          /* Datatype structure for native float */
    H5T_t       *string=NULL;           /* Datatype structure for C string */
    H5T_t       *bitfield=NULL;         /* Datatype structure for bitfield */
    H5T_t       *compound=NULL;         /* Datatype structure for compound objects */
    H5T_t       *enum_type=NULL;        /* Datatype structure for enum objects */
    H5T_t       *vlen=NULL;             /* Datatype structure for vlen objects */
    H5T_t       *array=NULL;            /* Datatype structure for array objects */
    H5T_t       *objref=NULL;           /* Datatype structure for object reference objects */
    hsize_t     dim[1]={1};             /* Dimension info for array datatype */
    herr_t      status;
    hbool_t     copied_dtype = TRUE;    /* Flag to indicate whether datatype was copied or allocated (for error cleanup) */
    herr_t      ret_value = SUCCEED;    /* Return value */

    FUNC_ENTER_NOAPI_NOINIT

    /* Initialize the atom group for the file IDs */
    if(H5I_register_type(H5I_DATATYPE_CLS) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to initialize interface")

    /* Make certain there aren't too many classes of datatypes defined */
    /* Only 16 (numbered 0-15) are supported in the current file format */
    HDcompile_assert(H5T_NCLASSES < 16);

    /*
     * Initialize pre-defined native datatypes from code generated during
     * the library configuration by H5detect.
     */
    if(H5T__init_native() < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to initialize interface")

    /* Get the atomic datatype structures needed by the initialization code below */
    if(NULL == (native_schar = (H5T_t *)H5I_object(H5T_NATIVE_SCHAR_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_uchar = (H5T_t *)H5I_object(H5T_NATIVE_UCHAR_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_short = (H5T_t *)H5I_object(H5T_NATIVE_SHORT_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_ushort = (H5T_t *)H5I_object(H5T_NATIVE_USHORT_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_int = (H5T_t *)H5I_object(H5T_NATIVE_INT_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_uint = (H5T_t *)H5I_object(H5T_NATIVE_UINT_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_long = (H5T_t *)H5I_object(H5T_NATIVE_LONG_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_ulong = (H5T_t *)H5I_object(H5T_NATIVE_ULONG_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_llong = (H5T_t *)H5I_object(H5T_NATIVE_LLONG_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_ullong = (H5T_t *)H5I_object(H5T_NATIVE_ULLONG_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_float = (H5T_t *)H5I_object(H5T_NATIVE_FLOAT_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
    if(NULL == (native_double = (H5T_t *)H5I_object(H5T_NATIVE_DOUBLE_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
#if H5_SIZEOF_LONG_DOUBLE !=0
    if(NULL == (native_ldouble = (H5T_t *)H5I_object(H5T_NATIVE_LDOUBLE_g)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype object")
#endif

    /*------------------------------------------------------------
     * Derived native types
     *------------------------------------------------------------
     */

    /* 1-byte bit field */
    H5T_INIT_TYPE(BITFIELD,H5T_NATIVE_B8_g,COPY,native_uint,SET,1)

    /* 2-byte bit field */
    H5T_INIT_TYPE(BITFIELD,H5T_NATIVE_B16_g,COPY,native_uint,SET,2)

    /* 4-byte bit field */
    H5T_INIT_TYPE(BITFIELD,H5T_NATIVE_B32_g,COPY,native_uint,SET,4)

    /* 8-byte bit field */
    H5T_INIT_TYPE(BITFIELD,H5T_NATIVE_B64_g,COPY,native_uint,SET,8)

    /* haddr_t */
    H5T_INIT_TYPE(OFFSET,H5T_NATIVE_HADDR_g,COPY,native_uint,SET,sizeof(haddr_t))

    /* hsize_t */
    H5T_INIT_TYPE(OFFSET,H5T_NATIVE_HSIZE_g,COPY,native_uint,SET,sizeof(hsize_t))

    /* hssize_t */
    H5T_INIT_TYPE(OFFSET,H5T_NATIVE_HSSIZE_g,COPY,native_int,SET,sizeof(hssize_t))

    /* herr_t */
    H5T_INIT_TYPE(OFFSET,H5T_NATIVE_HERR_g,COPY,native_int,SET,sizeof(herr_t))

    /* hbool_t */
    H5T_INIT_TYPE(OFFSET,H5T_NATIVE_HBOOL_g,COPY,native_uint,SET,sizeof(hbool_t))

    /*------------------------------------------------------------
     * IEEE Types
     *------------------------------------------------------------
     */

    /* IEEE 4-byte little-endian float */
    H5T_INIT_TYPE(FLOATLE,H5T_IEEE_F32LE_g,COPY,native_double,SET,4)

    /* IEEE 4-byte big-endian float */
    H5T_INIT_TYPE(FLOATBE,H5T_IEEE_F32BE_g,COPY,native_double,SET,4)

    /* IEEE 8-byte little-endian float */
    H5T_INIT_TYPE(DOUBLELE,H5T_IEEE_F64LE_g,COPY,native_double,SET,8)

    /* IEEE 8-byte big-endian float */
    H5T_INIT_TYPE(DOUBLEBE,H5T_IEEE_F64BE_g,COPY,native_double,SET,8)

    /*------------------------------------------------------------
     * VAX Types
     *------------------------------------------------------------
     */

    /* VAX 4-byte float */
    H5T_INIT_TYPE(FLOATVAX,H5T_VAX_F32_g,COPY,native_double,SET,4)

    /* VAX 8-byte double */
    H5T_INIT_TYPE(DOUBLEVAX,H5T_VAX_F64_g,COPY,native_double,SET,8)

    /*------------------------------------------------------------
     * C99 types
     *------------------------------------------------------------
     */

    /* 1-byte little-endian (endianness is irrelevant) signed integer */
    H5T_INIT_TYPE(SINTLE,H5T_STD_I8LE_g,COPY,native_int,SET,1)

    /* 1-byte big-endian (endianness is irrelevant) signed integer */
    H5T_INIT_TYPE(SINTBE,H5T_STD_I8BE_g,COPY,native_int,SET,1)

    /* 2-byte little-endian signed integer */
    H5T_INIT_TYPE(SINTLE,H5T_STD_I16LE_g,COPY,native_int,SET,2)

    /* 2-byte big-endian signed integer */
    H5T_INIT_TYPE(SINTBE,H5T_STD_I16BE_g,COPY,native_int,SET,2)

    /* 4-byte little-endian signed integer */
    H5T_INIT_TYPE(SINTLE,H5T_STD_I32LE_g,COPY,native_int,SET,4)

    /* 4-byte big-endian signed integer */
    H5T_INIT_TYPE(SINTBE,H5T_STD_I32BE_g,COPY,native_int,SET,4)

    /* 8-byte little-endian signed integer */
    H5T_INIT_TYPE(SINTLE,H5T_STD_I64LE_g,COPY,native_int,SET,8)

    /* 8-byte big-endian signed integer */
    H5T_INIT_TYPE(SINTBE,H5T_STD_I64BE_g,COPY,native_int,SET,8)

    /* 1-byte little-endian (endianness is irrelevant) unsigned integer */
    H5T_INIT_TYPE(UINTLE,H5T_STD_U8LE_g,COPY,native_uint,SET,1)
    std_u8le=dt;    /* Keep type for later */

    /* 1-byte big-endian (endianness is irrelevant) unsigned integer */
    H5T_INIT_TYPE(UINTBE,H5T_STD_U8BE_g,COPY,native_uint,SET,1)
    std_u8be=dt;    /* Keep type for later */

    /* 2-byte little-endian unsigned integer */
    H5T_INIT_TYPE(UINTLE,H5T_STD_U16LE_g,COPY,native_uint,SET,2)
    std_u16le=dt;    /* Keep type for later */

    /* 2-byte big-endian unsigned integer */
    H5T_INIT_TYPE(UINTBE,H5T_STD_U16BE_g,COPY,native_uint,SET,2)
    std_u16be=dt;    /* Keep type for later */

    /* 4-byte little-endian unsigned integer */
    H5T_INIT_TYPE(UINTLE,H5T_STD_U32LE_g,COPY,native_uint,SET,4)
    std_u32le=dt;    /* Keep type for later */

    /* 4-byte big-endian unsigned integer */
    H5T_INIT_TYPE(UINTBE,H5T_STD_U32BE_g,COPY,native_uint,SET,4)
    std_u32be=dt;    /* Keep type for later */

    /* 8-byte little-endian unsigned integer */
    H5T_INIT_TYPE(UINTLE,H5T_STD_U64LE_g,COPY,native_uint,SET,8)
    std_u64le=dt;    /* Keep type for later */

    /* 8-byte big-endian unsigned integer */
    H5T_INIT_TYPE(UINTBE,H5T_STD_U64BE_g,COPY,native_uint,SET,8)
    std_u64be=dt;    /* Keep type for later */

    /*------------------------------------------------------------
     * Native, Little- & Big-endian bitfields
     *------------------------------------------------------------
     */

    /* little-endian (order is irrelevant) 8-bit bitfield */
    H5T_INIT_TYPE(BITFIELDLE, H5T_STD_B8LE_g, COPY, std_u8le, NOSET, -)
    bitfield=dt;    /* Keep type for later */

    /* big-endian (order is irrelevant) 8-bit bitfield */
    H5T_INIT_TYPE(BITFIELDBE, H5T_STD_B8BE_g, COPY, std_u8be, NOSET, -)

    /* Little-endian 16-bit bitfield */
    H5T_INIT_TYPE(BITFIELDLE, H5T_STD_B16LE_g, COPY, std_u16le, NOSET, -)

    /* Big-endian 16-bit bitfield */
    H5T_INIT_TYPE(BITFIELDBE, H5T_STD_B16BE_g, COPY, std_u16be, NOSET, -)

    /* Little-endian 32-bit bitfield */
    H5T_INIT_TYPE(BITFIELDLE, H5T_STD_B32LE_g, COPY, std_u32le, NOSET, -)

    /* Big-endian 32-bit bitfield */
    H5T_INIT_TYPE(BITFIELDBE, H5T_STD_B32BE_g, COPY, std_u32be, NOSET, -)

    /* Little-endian 64-bit bitfield */
    H5T_INIT_TYPE(BITFIELDLE, H5T_STD_B64LE_g, COPY, std_u64le, NOSET, -)

    /* Big-endian 64-bit bitfield */
    H5T_INIT_TYPE(BITFIELDBE, H5T_STD_B64BE_g, COPY, std_u64be, NOSET, -)

    /*------------------------------------------------------------
     * The Unix architecture for dates and times.
     *------------------------------------------------------------
     */

    /* Little-endian 32-bit UNIX time_t */
    H5T_INIT_TYPE(TIME, H5T_UNIX_D32LE_g, COPY, std_u32le, NOSET, -)

    /* Big-endian 32-bit UNIX time_t */
    H5T_INIT_TYPE(TIME, H5T_UNIX_D32BE_g, COPY, std_u32be, NOSET, -)

    /* Little-endian 64-bit UNIX time_t */
    H5T_INIT_TYPE(TIME, H5T_UNIX_D64LE_g, COPY, std_u64le, NOSET, -)

    /* Big-endian 64-bit UNIX time_t */
    H5T_INIT_TYPE(TIME, H5T_UNIX_D64BE_g, COPY, std_u64be, NOSET, -)


    /* Indicate that the types that are created from here down are allocated
     * H5FL_ALLOC(), not copied with H5T_copy()
     */
    copied_dtype = FALSE;

    /* Opaque data */
    H5T_INIT_TYPE(OPAQ, H5T_NATIVE_OPAQUE_g, ALLOC, -, SET, 1)

    /*------------------------------------------------------------
     * The `C' architecture
     *------------------------------------------------------------
     */

    /* One-byte character string */
    H5T_INIT_TYPE(CSTRING, H5T_C_S1_g, ALLOC, -, SET, 1)
    string = dt;    /* Keep type for later */

    /*------------------------------------------------------------
     * The `Fortran' architecture
     *------------------------------------------------------------
     */

    /* One-byte character string */
    H5T_INIT_TYPE(FORSTRING, H5T_FORTRAN_S1_g, ALLOC, -, SET, 1)

    /*------------------------------------------------------------
     * Reference types
     *------------------------------------------------------------
     */

    /* Object reference (i.e. object header address in file) */
    H5T_INIT_TYPE(OBJREF, H5T_STD_REF_OBJ_g, ALLOC, -, SET, H5R_OBJ_REF_BUF_SIZE)
    objref = dt;    /* Keep type for later */

    /* Dataset Region reference (i.e. selection inside a dataset) */
    H5T_INIT_TYPE(REGREF, H5T_STD_REF_DSETREG_g, ALLOC, -, SET, H5R_DSET_REG_REF_BUF_SIZE)

    /*
     * Register conversion functions beginning with the most general and
     * ending with the most specific.
     */
    fixedpt = native_int;
    floatpt = native_float;
    if (NULL == (compound = H5T__create(H5T_COMPOUND, (size_t)1)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    if (NULL == (enum_type = H5T__create(H5T_ENUM, (size_t)1)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    if (NULL == (vlen = H5T__vlen_create(native_int)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    if (NULL == (array = H5T__array_create(native_int, 1, dim)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    status = 0;

    status |= H5T__register_int(H5T_PERS_SOFT, "i_i", fixedpt, fixedpt, H5T__conv_i_i);
    status |= H5T__register_int(H5T_PERS_SOFT, "i_f", fixedpt, floatpt, H5T__conv_i_f);
    status |= H5T__register_int(H5T_PERS_SOFT, "f_f", floatpt, floatpt, H5T__conv_f_f);
    status |= H5T__register_int(H5T_PERS_SOFT, "f_i", floatpt, fixedpt, H5T__conv_f_i);
    status |= H5T__register_int(H5T_PERS_SOFT, "s_s", string, string, H5T__conv_s_s);
    status |= H5T__register_int(H5T_PERS_SOFT, "b_b", bitfield, bitfield, H5T__conv_b_b);
    status |= H5T__register_int(H5T_PERS_SOFT, "ibo", fixedpt, fixedpt, H5T__conv_order);
    status |= H5T__register_int(H5T_PERS_SOFT, "ibo(opt)", fixedpt, fixedpt, H5T__conv_order_opt);
    status |= H5T__register_int(H5T_PERS_SOFT, "fbo", floatpt, floatpt, H5T__conv_order);
    status |= H5T__register_int(H5T_PERS_SOFT, "fbo(opt)", floatpt, floatpt, H5T__conv_order_opt);
    status |= H5T__register_int(H5T_PERS_SOFT, "struct(no-opt)", compound, compound, H5T__conv_struct);
    status |= H5T__register_int(H5T_PERS_SOFT, "struct(opt)", compound, compound, H5T__conv_struct_opt);
    status |= H5T__register_int(H5T_PERS_SOFT, "enum", enum_type, enum_type, H5T__conv_enum);
    status |= H5T__register_int(H5T_PERS_SOFT, "enum_i", enum_type, fixedpt, H5T__conv_enum_numeric);
    status |= H5T__register_int(H5T_PERS_SOFT, "enum_f", enum_type, floatpt, H5T__conv_enum_numeric);
    status |= H5T__register_int(H5T_PERS_SOFT, "vlen", vlen, vlen, H5T__conv_vlen);
    status |= H5T__register_int(H5T_PERS_SOFT, "array", array, array, H5T__conv_array);
    status |= H5T__register_int(H5T_PERS_SOFT, "objref", objref, objref, H5T__conv_order_opt);

    /*
     * Native conversions should be listed last since we can use hardware to
     * perform the conversion.  We list the odd types like `llong', `long',
     * and `short' before the usual types like `int' and `char' so that when
     * diagnostics are printed we favor the usual names over the odd names
     * when two or more types are the same size.
     */

    /* floating point */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_dbl", native_float, native_double, H5T__conv_float_double);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_flt", native_double, native_float, H5T__conv_double_float);
#if H5_SIZEOF_LONG_DOUBLE != 0
    status |= H5T__register_int(H5T_PERS_HARD, "flt_ldbl", native_float, native_ldouble, H5T__conv_float_ldouble);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_ldbl", native_double, native_ldouble, H5T__conv_double_ldouble);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_flt", native_ldouble, native_float, H5T__conv_ldouble_float);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_dbl", native_ldouble, native_double, H5T__conv_ldouble_double);
#endif /* H5_SIZEOF_LONG_DOUBLE != 0 */

    /* from long long */
    status |= H5T__register_int(H5T_PERS_HARD, "llong_ullong", native_llong, native_ullong, H5T__conv_llong_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_llong", native_ullong, native_llong, H5T__conv_ullong_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_long", native_llong, native_long, H5T__conv_llong_long);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_ulong", native_llong, native_ulong, H5T__conv_llong_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_long", native_ullong, native_long, H5T__conv_ullong_long);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_ulong", native_ullong, native_ulong, H5T__conv_ullong_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_short", native_llong, native_short, H5T__conv_llong_short);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_ushort", native_llong, native_ushort, H5T__conv_llong_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_short", native_ullong, native_short, H5T__conv_ullong_short);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_ushort", native_ullong, native_ushort, H5T__conv_ullong_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_int", native_llong, native_int, H5T__conv_llong_int);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_uint", native_llong, native_uint, H5T__conv_llong_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_int", native_ullong, native_int, H5T__conv_ullong_int);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_uint", native_ullong, native_uint, H5T__conv_ullong_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_schar", native_llong, native_schar, H5T__conv_llong_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_uchar", native_llong, native_uchar, H5T__conv_llong_uchar);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_schar", native_ullong, native_schar, H5T__conv_ullong_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_uchar", native_ullong, native_uchar, H5T__conv_ullong_uchar);

    /* From long */
    status |= H5T__register_int(H5T_PERS_HARD, "long_llong", native_long, native_llong, H5T__conv_long_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "long_ullong", native_long, native_ullong, H5T__conv_long_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_llong", native_ulong, native_llong, H5T__conv_ulong_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_ullong", native_ulong, native_ullong, H5T__conv_ulong_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "long_ulong", native_long, native_ulong, H5T__conv_long_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_long", native_ulong, native_long, H5T__conv_ulong_long);
    status |= H5T__register_int(H5T_PERS_HARD, "long_short", native_long, native_short, H5T__conv_long_short);
    status |= H5T__register_int(H5T_PERS_HARD, "long_ushort", native_long, native_ushort, H5T__conv_long_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_short", native_ulong, native_short, H5T__conv_ulong_short);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_ushort", native_ulong, native_ushort, H5T__conv_ulong_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "long_int", native_long, native_int, H5T__conv_long_int);
    status |= H5T__register_int(H5T_PERS_HARD, "long_uint", native_long, native_uint, H5T__conv_long_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_int", native_ulong, native_int, H5T__conv_ulong_int);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_uint", native_ulong, native_uint, H5T__conv_ulong_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "long_schar", native_long, native_schar, H5T__conv_long_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "long_uchar", native_long, native_uchar, H5T__conv_long_uchar);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_schar", native_ulong, native_schar, H5T__conv_ulong_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_uchar", native_ulong, native_uchar, H5T__conv_ulong_uchar);

    /* From short */
    status |= H5T__register_int(H5T_PERS_HARD, "short_llong", native_short, native_llong, H5T__conv_short_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "short_ullong", native_short, native_ullong, H5T__conv_short_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_llong", native_ushort, native_llong, H5T__conv_ushort_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_ullong", native_ushort, native_ullong, H5T__conv_ushort_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "short_long", native_short, native_long, H5T__conv_short_long);
    status |= H5T__register_int(H5T_PERS_HARD, "short_ulong", native_short, native_ulong, H5T__conv_short_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_long", native_ushort, native_long, H5T__conv_ushort_long);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_ulong", native_ushort, native_ulong, H5T__conv_ushort_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "short_ushort", native_short, native_ushort, H5T__conv_short_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_short", native_ushort, native_short, H5T__conv_ushort_short);
    status |= H5T__register_int(H5T_PERS_HARD, "short_int", native_short, native_int, H5T__conv_short_int);
    status |= H5T__register_int(H5T_PERS_HARD, "short_uint", native_short, native_uint, H5T__conv_short_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_int", native_ushort, native_int, H5T__conv_ushort_int);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_uint", native_ushort, native_uint, H5T__conv_ushort_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "short_schar", native_short, native_schar, H5T__conv_short_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "short_uchar", native_short, native_uchar, H5T__conv_short_uchar);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_schar", native_ushort, native_schar, H5T__conv_ushort_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_uchar", native_ushort, native_uchar, H5T__conv_ushort_uchar);

    /* From int */
    status |= H5T__register_int(H5T_PERS_HARD, "int_llong", native_int, native_llong, H5T__conv_int_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "int_ullong", native_int, native_ullong, H5T__conv_int_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_llong", native_uint, native_llong, H5T__conv_uint_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_ullong", native_uint, native_ullong, H5T__conv_uint_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "int_long", native_int, native_long, H5T__conv_int_long);
    status |= H5T__register_int(H5T_PERS_HARD, "int_ulong", native_int, native_ulong, H5T__conv_int_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_long", native_uint, native_long, H5T__conv_uint_long);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_ulong", native_uint, native_ulong, H5T__conv_uint_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "int_short", native_int, native_short, H5T__conv_int_short);
    status |= H5T__register_int(H5T_PERS_HARD, "int_ushort", native_int, native_ushort, H5T__conv_int_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_short", native_uint, native_short, H5T__conv_uint_short);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_ushort", native_uint, native_ushort, H5T__conv_uint_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "int_uint", native_int, native_uint, H5T__conv_int_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_int", native_uint, native_int, H5T__conv_uint_int);
    status |= H5T__register_int(H5T_PERS_HARD, "int_schar", native_int, native_schar, H5T__conv_int_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "int_uchar", native_int, native_uchar, H5T__conv_int_uchar);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_schar", native_uint, native_schar, H5T__conv_uint_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_uchar", native_uint, native_uchar, H5T__conv_uint_uchar);

    /* From char */
    status |= H5T__register_int(H5T_PERS_HARD, "schar_llong", native_schar, native_llong, H5T__conv_schar_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_ullong", native_schar, native_ullong, H5T__conv_schar_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_llong", native_uchar, native_llong, H5T__conv_uchar_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_ullong", native_uchar, native_ullong, H5T__conv_uchar_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_long", native_schar, native_long, H5T__conv_schar_long);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_ulong", native_schar, native_ulong, H5T__conv_schar_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_long", native_uchar, native_long, H5T__conv_uchar_long);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_ulong", native_uchar, native_ulong, H5T__conv_uchar_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_short", native_schar, native_short, H5T__conv_schar_short);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_ushort", native_schar, native_ushort, H5T__conv_schar_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_short", native_uchar, native_short, H5T__conv_uchar_short);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_ushort", native_uchar, native_ushort, H5T__conv_uchar_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_int", native_schar, native_int, H5T__conv_schar_int);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_uint", native_schar, native_uint, H5T__conv_schar_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_int", native_uchar, native_int, H5T__conv_uchar_int);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_uint", native_uchar, native_uint, H5T__conv_uchar_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_uchar", native_schar, native_uchar, H5T__conv_schar_uchar);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_schar", native_uchar, native_schar, H5T__conv_uchar_schar);

    /* From char to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "schar_flt", native_schar, native_float, H5T__conv_schar_float);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_dbl", native_schar, native_double, H5T__conv_schar_double);
    status |= H5T__register_int(H5T_PERS_HARD, "schar_ldbl", native_schar, native_ldouble, H5T__conv_schar_ldouble);

    /* From unsigned char to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_flt", native_uchar, native_float, H5T__conv_uchar_float);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_dbl", native_uchar, native_double, H5T__conv_uchar_double);
    status |= H5T__register_int(H5T_PERS_HARD, "uchar_ldbl", native_uchar, native_ldouble, H5T__conv_uchar_ldouble);

    /* From short to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "short_flt", native_short, native_float, H5T__conv_short_float);
    status |= H5T__register_int(H5T_PERS_HARD, "short_dbl", native_short, native_double, H5T__conv_short_double);
    status |= H5T__register_int(H5T_PERS_HARD, "short_ldbl", native_short, native_ldouble, H5T__conv_short_ldouble);

    /* From unsigned short to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_flt", native_ushort, native_float, H5T__conv_ushort_float);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_dbl", native_ushort, native_double, H5T__conv_ushort_double);
    status |= H5T__register_int(H5T_PERS_HARD, "ushort_ldbl", native_ushort, native_ldouble, H5T__conv_ushort_ldouble);

    /* From int to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "int_flt", native_int, native_float, H5T__conv_int_float);
    status |= H5T__register_int(H5T_PERS_HARD, "int_dbl", native_int, native_double, H5T__conv_int_double);
    status |= H5T__register_int(H5T_PERS_HARD, "int_ldbl", native_int, native_ldouble, H5T__conv_int_ldouble);

    /* From unsigned int to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "uint_flt", native_uint, native_float, H5T__conv_uint_float);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_dbl", native_uint, native_double, H5T__conv_uint_double);
    status |= H5T__register_int(H5T_PERS_HARD, "uint_ldbl", native_uint, native_ldouble, H5T__conv_uint_ldouble);

    /* From long to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "long_flt", native_long, native_float, H5T__conv_long_float);
    status |= H5T__register_int(H5T_PERS_HARD, "long_dbl", native_long, native_double, H5T__conv_long_double);
    status |= H5T__register_int(H5T_PERS_HARD, "long_ldbl", native_long, native_ldouble, H5T__conv_long_ldouble);

    /* From unsigned long to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_flt", native_ulong, native_float, H5T__conv_ulong_float);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_dbl", native_ulong, native_double, H5T__conv_ulong_double);
    status |= H5T__register_int(H5T_PERS_HARD, "ulong_ldbl", native_ulong, native_ldouble, H5T__conv_ulong_ldouble);

    /* From long long to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "llong_flt", native_llong, native_float, H5T__conv_llong_float);
    status |= H5T__register_int(H5T_PERS_HARD, "llong_dbl", native_llong, native_double, H5T__conv_llong_double);
#ifdef H5T_CONV_INTERNAL_LLONG_LDOUBLE
    status |= H5T__register_int(H5T_PERS_HARD, "llong_ldbl", native_llong, native_ldouble, H5T__conv_llong_ldouble);
#endif /* H5T_CONV_INTERNAL_LLONG_LDOUBLE */

    /* From unsigned long long to floats */
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_flt", native_ullong, native_float, H5T__conv_ullong_float);
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_dbl", native_ullong, native_double, H5T__conv_ullong_double);
#ifdef H5T_CONV_INTERNAL_ULLONG_LDOUBLE
    status |= H5T__register_int(H5T_PERS_HARD, "ullong_ldbl", native_ullong, native_ldouble, H5T__conv_ullong_ldouble);
#endif /* H5T_CONV_INTERNAL_ULLONG_LDOUBLE */

    /* From floats to char */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_schar", native_float, native_schar, H5T__conv_float_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_schar", native_double, native_schar, H5T__conv_double_schar);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_schar", native_ldouble, native_schar, H5T__conv_ldouble_schar);

    /* From floats to unsigned char */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_uchar", native_float, native_uchar, H5T__conv_float_uchar);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_uchar", native_double, native_uchar, H5T__conv_double_uchar);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_uchar", native_ldouble, native_uchar, H5T__conv_ldouble_uchar);

    /* From floats to short */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_short", native_float, native_short, H5T__conv_float_short);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_short", native_double, native_short, H5T__conv_double_short);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_short", native_ldouble, native_short, H5T__conv_ldouble_short);

    /* From floats to unsigned short */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_ushort", native_float, native_ushort, H5T__conv_float_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_ushort", native_double, native_ushort, H5T__conv_double_ushort);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_ushort", native_ldouble, native_ushort, H5T__conv_ldouble_ushort);

    /* From floats to int */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_int", native_float, native_int, H5T__conv_float_int);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_int", native_double, native_int, H5T__conv_double_int);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_int", native_ldouble, native_int, H5T__conv_ldouble_int);

    /* From floats to unsigned int */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_uint", native_float, native_uint, H5T__conv_float_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_uint", native_double, native_uint, H5T__conv_double_uint);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_uint", native_ldouble, native_uint, H5T__conv_ldouble_uint);

    /* From floats to long */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_long", native_float, native_long, H5T__conv_float_long);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_long", native_double, native_long, H5T__conv_double_long);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_long", native_ldouble, native_long, H5T__conv_ldouble_long);

    /* From floats to unsigned long */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_ulong", native_float, native_ulong, H5T__conv_float_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_ulong", native_double, native_ulong, H5T__conv_double_ulong);
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_ulong", native_ldouble, native_ulong, H5T__conv_ldouble_ulong);

    /* From floats to long long */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_llong", native_float, native_llong, H5T__conv_float_llong);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_llong", native_double, native_llong, H5T__conv_double_llong);
#ifdef H5T_CONV_INTERNAL_LDOUBLE_LLONG
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_llong", native_ldouble, native_llong, H5T__conv_ldouble_llong);
#endif /* H5T_CONV_INTERNAL_LDOUBLE_LLONG */

    /* From floats to unsigned long long */
    status |= H5T__register_int(H5T_PERS_HARD, "flt_ullong", native_float, native_ullong, H5T__conv_float_ullong);
    status |= H5T__register_int(H5T_PERS_HARD, "dbl_ullong", native_double, native_ullong, H5T__conv_double_ullong);
#if H5T_CONV_INTERNAL_LDOUBLE_ULLONG
    status |= H5T__register_int(H5T_PERS_HARD, "ldbl_ullong", native_ldouble, native_ullong, H5T__conv_ldouble_ullong);
#endif /* H5T_CONV_INTERNAL_LDOUBLE_ULLONG */

    /*
     * The special no-op conversion is the fastest, so we list it last. The
     * data types we use are not important as long as the source and
     * destination are equal.
     */
    status |= H5T__register_int(H5T_PERS_HARD, "no-op", native_int, native_int, H5T__conv_noop);

    /* Initialize the +/- Infinity values for floating-point types */
    status |= H5T__init_inf();

    if(status < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to register conversion function(s)")

    /* Register datatype creation property class properties here.  See similar
     * code in H5D__init_package(), etc. for example.
     */

    /* Only register the default property list if it hasn't been created yet */
    if(H5P_LST_DATATYPE_CREATE_ID_g == (-1)) {
        /* ========== Datatype Creation Property Class Initialization ============*/
        HDassert(H5P_CLS_DATATYPE_CREATE_g != NULL);

        /* Register the default datatype creation property list */
        if((H5P_LST_DATATYPE_CREATE_ID_g = H5P_create_id(H5P_CLS_DATATYPE_CREATE_g, FALSE)) < 0)
             HGOTO_ERROR(H5E_PLIST, H5E_CANTREGISTER, FAIL, "can't insert property into class")
    } /* end if */

    /* Mark "top" of interface as initialized, too */
    H5T_top_package_initialize_s = TRUE;

done:
    /* General cleanup */
    if(compound != NULL)
        (void)H5T_close_real(compound);
    if(enum_type != NULL)
        (void)H5T_close_real(enum_type);
    if(vlen != NULL)
        (void)H5T_close_real(vlen);
    if(array != NULL)
        (void)H5T_close_real(array);

    /* Error cleanup */
    if(ret_value < 0) {
        if(dt) {
            /* Check if we should call H5T_close_real or H5FL_FREE */
            if(copied_dtype)
                (void)H5T_close_real(dt);
            else {
                dt->shared = H5FL_FREE(H5T_shared_t, dt->shared);
                dt = H5FL_FREE(H5T_t, dt);
            } /* end else */
        } /* end if */
    } /* end if */

    FUNC_LEAVE_NOAPI(ret_value)
} /* end H5T__init_package() */


/*-------------------------------------------------------------------------
 * Function:   H5T__unlock_cb
 *
 * Purpose:    Clear the immutable flag for a datatype.  This function is
 *             called when the library is closing in order to unlock all
 *             registered datatypes and thus make them free-able.
 *
 * Return:     Non-negative on success/Negative on failure
 *
 * Programmer:  Robb Matzke
 *              Monday, April 27, 1998
 *
 *-------------------------------------------------------------------------
 */
static int
H5T__unlock_cb(void *_dt, hid_t H5_ATTR_UNUSED id, void *_udata)
{
    H5T_t    *dt = (H5T_t *)_dt;
    int      *n = (int *)_udata;

    FUNC_ENTER_STATIC_NOERR

    HDassert(dt && dt->shared);

    if(H5T_STATE_IMMUTABLE==dt->shared->state) {
        dt->shared->state = H5T_STATE_RDONLY;
        (*n)++;
    } /* end if */

    FUNC_LEAVE_NOAPI(SUCCEED)
} /* end H5T__unlock_cb() */


/*-------------------------------------------------------------------------
 * Function:   H5T_top_term_package
 *
 * Purpose:    Close the "top" of the interface, releasing IDs, etc.
 *
 * Return:     Success:    Positive if any action might have caused a
 *                            change in some other interface; zero otherwise.
 *             Failure:    Negative
 *
 * Programmer:  Quincey Koziol
 *              Thursday, September 10, 2015
 *
 *-------------------------------------------------------------------------
 */
int
H5T_top_term_package(void)
{
    int    n = 0;

    FUNC_ENTER_NOAPI_NOINIT_NOERR

    if(H5T_top_package_initialize_s) {
        /* Unregister all conversion functions */
        if(H5T_g.path) {
            int i, nprint = 0;

            for(i = 0; i < H5T_g.npaths; i++) {
                H5T_path_t *path;

                path = H5T_g.path[i];
                HDassert(path);
                if(path->conv.u.app_func) {
                    H5T__print_stats(path, &nprint/*in,out*/);
                    path->cdata.command = H5T_CONV_FREE;
                    if(path->conv.is_app) {
                        if((path->conv.u.app_func)((hid_t)FAIL, (hid_t)FAIL, &(path->cdata), (size_t)0, (size_t)0, (size_t)0, NULL, NULL, H5CX_get_dxpl()) < 0) {
#ifdef H5T_DEBUG
                            if (H5DEBUG(T)) {
                                HDfprintf(H5DEBUG(T), "H5T: conversion function "
                                        "0x%08lx failed to free private data for "
                                        "%s (ignored)\n",
                                        (unsigned long)(path->conv.u.app_func), path->name);
                            } /* end if */
#endif
                            H5E_clear_stack(NULL); /*ignore the error*/
                        } /* end if */
                    } /* end if */
                    else {
                        if((path->conv.u.lib_func)((hid_t)FAIL, (hid_t)FAIL, &(path->cdata), (size_t)0, (size_t)0, (size_t)0, NULL, NULL) < 0) {
#ifdef H5T_DEBUG
                            if (H5DEBUG(T)) {
                                HDfprintf(H5DEBUG(T), "H5T: conversion function "
                                        "0x%08lx failed to free private data for "
                                        "%s (ignored)\n",
                                        (unsigned long)(path->conv.u.lib_func), path->name);
                            } /* end if */
#endif
                            H5E_clear_stack(NULL); /*ignore the error*/
                        } /* end if */
                    } /* end else */
                } /* end if */

                if(path->src)
                    (void)H5T_close_real(path->src);
                if(path->dst)
                    (void)H5T_close_real(path->dst);
                path = H5FL_FREE(H5T_path_t, path);
                H5T_g.path[i] = NULL;
            } /* end for */

            /* Clear conversion tables */
            H5T_g.path = (H5T_path_t **)H5MM_xfree(H5T_g.path);
            H5T_g.npaths = 0;
            H5T_g.apaths = 0;
            H5T_g.soft = (H5T_soft_t *)H5MM_xfree(H5T_g.soft);
            H5T_g.nsoft = 0;
            H5T_g.asoft = 0;

            n++;
        } /* end if */

        /* Unlock all datatypes, then free them */
        /* note that we are ignoring the return value from H5I_iterate() */
        /* Also note that we are incrementing 'n' in the callback */
        H5I_iterate(H5I_DATATYPE, H5T__unlock_cb, &n, FALSE);

        /* Release all datatype IDs */
        if(H5I_nmembers(H5I_DATATYPE) > 0) {
            (void)H5I_clear_type(H5I_DATATYPE, FALSE, FALSE);
            n++; /*H5I*/
        } /* end if */

        /* Reset all the datatype IDs */
        if(H5T_IEEE_F32BE_g > 0) {
            H5T_IEEE_F32BE_g            = FAIL;
            H5T_IEEE_F32LE_g            = FAIL;
            H5T_IEEE_F64BE_g            = FAIL;
            H5T_IEEE_F64LE_g            = FAIL;

            H5T_STD_I8BE_g              = FAIL;
            H5T_STD_I8LE_g              = FAIL;
            H5T_STD_I16BE_g             = FAIL;
            H5T_STD_I16LE_g             = FAIL;
            H5T_STD_I32BE_g             = FAIL;
            H5T_STD_I32LE_g             = FAIL;
            H5T_STD_I64BE_g             = FAIL;
            H5T_STD_I64LE_g             = FAIL;
            H5T_STD_U8BE_g              = FAIL;
            H5T_STD_U8LE_g              = FAIL;
            H5T_STD_U16BE_g             = FAIL;
            H5T_STD_U16LE_g             = FAIL;
            H5T_STD_U32BE_g             = FAIL;
            H5T_STD_U32LE_g             = FAIL;
            H5T_STD_U64BE_g             = FAIL;
            H5T_STD_U64LE_g             = FAIL;
            H5T_STD_B8BE_g              = FAIL;
            H5T_STD_B8LE_g              = FAIL;
            H5T_STD_B16BE_g             = FAIL;
            H5T_STD_B16LE_g             = FAIL;
            H5T_STD_B32BE_g             = FAIL;
            H5T_STD_B32LE_g             = FAIL;
            H5T_STD_B64BE_g             = FAIL;
            H5T_STD_B64LE_g             = FAIL;
            H5T_STD_REF_OBJ_g           = FAIL;
            H5T_STD_REF_DSETREG_g       = FAIL;

            H5T_UNIX_D32BE_g            = FAIL;
            H5T_UNIX_D32LE_g            = FAIL;
            H5T_UNIX_D64BE_g            = FAIL;
            H5T_UNIX_D64LE_g            = FAIL;

            H5T_C_S1_g                  = FAIL;

            H5T_FORTRAN_S1_g            = FAIL;

            H5T_NATIVE_SCHAR_g          = FAIL;
            H5T_NATIVE_UCHAR_g          = FAIL;
            H5T_NATIVE_SHORT_g          = FAIL;
            H5T_NATIVE_USHORT_g         = FAIL;
            H5T_NATIVE_INT_g            = FAIL;
            H5T_NATIVE_UINT_g           = FAIL;
            H5T_NATIVE_LONG_g           = FAIL;
            H5T_NATIVE_ULONG_g          = FAIL;
            H5T_NATIVE_LLONG_g          = FAIL;
            H5T_NATIVE_ULLONG_g         = FAIL;
            H5T_NATIVE_FLOAT_g          = FAIL;
            H5T_NATIVE_DOUBLE_g         = FAIL;
#if H5_SIZEOF_LONG_DOUBLE !=0
            H5T_NATIVE_LDOUBLE_g        = FAIL;
#endif
            H5T_NATIVE_B8_g             = FAIL;
            H5T_NATIVE_B16_g            = FAIL;
            H5T_NATIVE_B32_g            = FAIL;
            H5T_NATIVE_B64_g            = FAIL;
            H5T_NATIVE_OPAQUE_g         = FAIL;
            H5T_NATIVE_HADDR_g          = FAIL;
            H5T_NATIVE_HSIZE_g          = FAIL;
            H5T_NATIVE_HSSIZE_g         = FAIL;
            H5T_NATIVE_HERR_g           = FAIL;
            H5T_NATIVE_HBOOL_g          = FAIL;

            H5T_NATIVE_INT8_g           = FAIL;
            H5T_NATIVE_UINT8_g          = FAIL;
            H5T_NATIVE_INT_LEAST8_g     = FAIL;
            H5T_NATIVE_UINT_LEAST8_g    = FAIL;
            H5T_NATIVE_INT_FAST8_g      = FAIL;
            H5T_NATIVE_UINT_FAST8_g     = FAIL;

            H5T_NATIVE_INT16_g          = FAIL;
            H5T_NATIVE_UINT16_g         = FAIL;
            H5T_NATIVE_INT_LEAST16_g    = FAIL;
            H5T_NATIVE_UINT_LEAST16_g   = FAIL;
            H5T_NATIVE_INT_FAST16_g     = FAIL;
            H5T_NATIVE_UINT_FAST16_g    = FAIL;

            H5T_NATIVE_INT32_g          = FAIL;
            H5T_NATIVE_UINT32_g         = FAIL;
            H5T_NATIVE_INT_LEAST32_g    = FAIL;
            H5T_NATIVE_UINT_LEAST32_g   = FAIL;
            H5T_NATIVE_INT_FAST32_g     = FAIL;
            H5T_NATIVE_UINT_FAST32_g    = FAIL;

            H5T_NATIVE_INT64_g          = FAIL;
            H5T_NATIVE_UINT64_g         = FAIL;
            H5T_NATIVE_INT_LEAST64_g    = FAIL;
            H5T_NATIVE_UINT_LEAST64_g   = FAIL;
            H5T_NATIVE_INT_FAST64_g     = FAIL;
            H5T_NATIVE_UINT_FAST64_g    = FAIL;

            n++;
        } /* end if */

    /* Mark "top" of interface as closed */
        if(0 == n)
            H5T_top_package_initialize_s = FALSE;
    } /* end if */

    FUNC_LEAVE_NOAPI(n)
} /* end H5T_top_term_package() */


/*-------------------------------------------------------------------------
 * Function:   H5T_term_package
 *
 * Purpose:    Close this interface.
 *
 * Note:    Finishes shutting down the interface, after
 *          H5T_top_term_package() is called
 *
 * Return:   Success:    Positive if any action might have caused a
 *                change in some other interface; zero
 *                otherwise.
 *           Failure:    Negative
 *
 * Programmer:  Robb Matzke
 *              Friday, November 20, 1998
 *
 *-------------------------------------------------------------------------
 */
int
H5T_term_package(void)
{
    int    n = 0;

    FUNC_ENTER_NOAPI_NOINIT_NOERR

    if(H5_PKG_INIT_VAR) {
        /* Sanity check */
        HDassert(0 == H5I_nmembers(H5I_DATATYPE));
        HDassert(FALSE == H5T_top_package_initialize_s);

        /* Destroy the datatype object id group */
        n += (H5I_dec_type_ref(H5I_DATATYPE) > 0);

        /* Mark interface as closed */
        if(0 == n)
            H5_PKG_INIT_VAR = FALSE;
    } /* end if */

    FUNC_LEAVE_NOAPI(n)
} /* end H5T_term_package() */


/*-------------------------------------------------------------------------
 * Function:    H5T__close_cb
 *
 * Purpose:     Called when the ref count reaches zero on the datatype's ID
 *
 * Return:      SUCCEED/FAIL
 *
 *-------------------------------------------------------------------------
 */
static herr_t
H5T__close_cb(H5T_t *dt)
{
    herr_t  ret_value = SUCCEED;                /* Return value */

    FUNC_ENTER_STATIC

    /* Sanity check */
    HDassert(dt);
    HDassert(dt->shared);

    /* If this datatype is VOL-managed (i.e.: has a VOL object),
     * close it through the VOL connector.
     */
    if(NULL != dt->vol_obj) {
        /* Close the connector-managed datatype data */
        if(H5VL_datatype_close(dt->vol_obj, H5P_DATASET_XFER_DEFAULT, H5_REQUEST_NULL) < 0)
            HGOTO_ERROR(H5E_DATATYPE, H5E_CLOSEERROR, FAIL, "unable to close datatype")

        /* Free the VOL object */
        if(H5VL_free_object(dt->vol_obj) < 0)
            HGOTO_ERROR(H5E_ATTR, H5E_CANTDEC, FAIL, "unable to free VOL object")
        dt->vol_obj = NULL;
    } /* end if */

    /* Close the datatype */
    if(H5T_close(dt) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CLOSEERROR, FAIL, "unable to close datatype")

done:
    FUNC_LEAVE_NOAPI(ret_value)
} /* end H5T__close_cb() */


/*-------------------------------------------------------------------------
 * Function:   H5Tcreate
 *
 * Purpose:    Create a new type and initialize it to reasonable values.
 *             The type is a member of type class TYPE and is SIZE bytes.
 *
 * Return:    Success:    A new type identifier.
 *
 *            Failure:    Negative
 *
 * Errors:
 *        ARGS      BADVALUE    Invalid size.
 *        DATATYPE  CANTINIT    Can't create type.
 *        DATATYPE  CANTREGISTER    Can't register datatype atom.
 *
 * Programmer:    Robb Matzke
 *        Friday, December  5, 1997
 *-------------------------------------------------------------------------
 */
hid_t
H5Tcreate(H5T_class_t type, size_t size)
{
    H5T_t    *dt = NULL;     /* New datatype constructed */
    hid_t    ret_value;      /* Return value */

    FUNC_ENTER_API(FAIL)
    H5TRACE2("i", "Ttz", type, size);

    /* check args. We support string (fixed-size or variable-length) now. */
    if(size <= 0 && size != H5T_VARIABLE)
        HGOTO_ERROR(H5E_ARGS, H5E_BADVALUE, FAIL, "size must be positive")

    /* create the type */
    if(NULL == (dt = H5T__create(type, size)))
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to create type")

    /* Get an ID for the datatype */
    if((ret_value = H5I_register(H5I_DATATYPE, dt, TRUE)) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTREGISTER, FAIL, "unable to register datatype ID")

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tcreate() */


/*-------------------------------------------------------------------------
 * Function:    H5Tcopy
 *
 * Purpose:     Copies a datatype.  The resulting datatype is not locked.
 *              The datatype should be closed when no longer needed by
 *              calling H5Tclose().
 *
 * Return:      Success:    The ID of a new datatype
 *
 *              Failure:    H5I_INVALID_HID
 *
 * Note:        The returned type is always transient and unlocked. If the
 *              TYPE_ID argument is a dataset instead of a datatype then
 *              this function returns a transient, modifiable datatype
 *              which is a copy of the dataset's datatype.
 *
 *-------------------------------------------------------------------------
 */
hid_t
H5Tcopy(hid_t obj_id)
{
    H5T_t  *dt          = NULL;     /* Pointer to the datatype to copy */
    H5T_t  *new_dt      = NULL;     /* Pointer to the new datatype */
    hid_t   dset_tid    = H5I_INVALID_HID;  /* Datatype ID from dataset */
    hid_t   ret_value   = H5I_INVALID_HID;  /* Return value */

    FUNC_ENTER_API(H5I_INVALID_HID)
    H5TRACE1("i", "i", obj_id);

    switch(H5I_get_type(obj_id)) {
        case H5I_DATATYPE:
            if(NULL == (dt = (H5T_t *)H5I_object(obj_id)))
                HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, H5I_INVALID_HID, "type_id is not a datatype ID")
            break;

        case H5I_DATASET:
        {
            H5VL_object_t  *vol_obj     = NULL;             /* Dataset structure */

            /* Check args */
            if(NULL == (vol_obj = (H5VL_object_t *)H5I_object_verify(obj_id, H5I_DATASET)))
                HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, H5I_INVALID_HID, "type_id is not a dataset ID")

            /* Get the datatype from the dataset
             * NOTE: This will have to be closed after we're done with it.
             */
            if(H5VL_dataset_get(vol_obj, H5VL_DATASET_GET_TYPE, H5P_DATASET_XFER_DEFAULT, H5_REQUEST_NULL, &dset_tid) < 0)
                HGOTO_ERROR(H5E_DATATYPE, H5E_CANTGET, H5I_INVALID_HID, "unable to get datatype from the dataset")

            /* Unwrap the type ID */
            if(NULL == (dt = (H5T_t *)H5I_object(dset_tid)))
                HGOTO_ERROR(H5E_DATATYPE, H5E_BADTYPE, H5I_INVALID_HID, "received invalid datatype from the dataset")

            break;
        }

        case H5I_UNINIT:
        case H5I_BADID:
        case H5I_FILE:
        case H5I_GROUP:
        case H5I_DATASPACE:
        case H5I_ATTR:
        case H5I_MAP:
        case H5I_VFL:
        case H5I_VOL:
        case H5I_GENPROP_CLS:
        case H5I_GENPROP_LST:
        case H5I_ERROR_CLASS:
        case H5I_ERROR_MSG:
        case H5I_ERROR_STACK:
        case H5I_SPACE_SEL_ITER:
        case H5I_NTYPES:
        default:
            HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, H5I_INVALID_HID, "not a datatype or dataset")
    } /* end switch */

    /* Copy datatype */
    if(NULL == (new_dt = H5T_copy(dt, H5T_COPY_TRANSIENT)))
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, H5I_INVALID_HID, "unable to copy")

    /* Get an ID for the copied datatype */
    if((ret_value = H5I_register(H5I_DATATYPE, new_dt, TRUE)) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTREGISTER, H5I_INVALID_HID, "unable to register datatype atom")

done:

    /* If we got a type ID from a passed-in dataset, we need to close that */
    if(dset_tid != H5I_INVALID_HID)
        if(H5I_dec_app_ref(dset_tid) < 0)
            HGOTO_ERROR(H5E_DATATYPE, H5E_BADATOM, FAIL, "problem freeing temporary dataset type ID")

    /* Close the new datatype on errors */
    if(H5I_INVALID_HID == ret_value)
        if(new_dt && H5T_close_real(new_dt) < 0)
            HDONE_ERROR(H5E_DATATYPE, H5E_CANTRELEASE, H5I_INVALID_HID, "unable to release datatype info")

    FUNC_LEAVE_API(ret_value)
} /* end H5Tcopy() */


/*-------------------------------------------------------------------------
 * Function:    H5Tclose
 *
 * Purpose:    Frees a datatype and all associated memory.
 *
 * Return:    Non-negative on success/Negative on failure
 *
 * Programmer:    Robb Matzke
 *        Tuesday, December  9, 1997
 *-------------------------------------------------------------------------
 */
herr_t
H5Tclose(hid_t type_id)
{
    H5T_t    *dt;                    /* Pointer to datatype to close */
    herr_t      ret_value = SUCCEED;       /* Return value */

    FUNC_ENTER_API(FAIL)
    H5TRACE1("e", "i", type_id);

    /* Check args */
    if(NULL == (dt = (H5T_t *)H5I_object_verify(type_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    if(H5T_STATE_IMMUTABLE == dt->shared->state)
        HGOTO_ERROR(H5E_ARGS, H5E_BADVALUE, FAIL, "immutable datatype")

    /* When the reference count reaches zero the resources are freed */
    if(H5I_dec_app_ref(type_id) < 0)
        HGOTO_ERROR(H5E_ATOM, H5E_BADATOM, FAIL, "problem freeing id")

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tclose() */


/*-------------------------------------------------------------------------
 * Function:  H5Tequal
 *
 * Purpose:   Determines if two datatypes are equal.
 *
 * Return:    Success:    TRUE if equal, FALSE if unequal
 *
 *            Failure:    Negative
 *
 * Programmer:    Robb Matzke
 *        Wednesday, December 10, 1997
 *
 *-------------------------------------------------------------------------
 */
htri_t
H5Tequal(hid_t type1_id, hid_t type2_id)
{
    const H5T_t    *dt1;           /* Pointer to first datatype */
    const H5T_t    *dt2;           /* Pointer to second datatype */
    htri_t         ret_value;      /* Return value */

    FUNC_ENTER_API(FAIL)
    H5TRACE2("t", "ii", type1_id, type2_id);

    /* check args */
    if(NULL == (dt1 = (H5T_t *)H5I_object_verify(type1_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    if(NULL == (dt2 = (H5T_t *)H5I_object_verify(type2_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")

    ret_value = (0 == H5T_cmp(dt1, dt2, FALSE)) ? TRUE : FALSE;

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tequal() */


/*-------------------------------------------------------------------------
 * Function:    H5Tlock
 *
 * Purpose:    Locks a type, making it read only and non-destructable.
 *        This is normally done by the library for predefined datatypes so
 *        the application doesn't inadvertently change or delete a
 *        predefined type.
 *
 *        Once a datatype is locked it can never be unlocked unless
 *        the entire library is closed.
 *
 * Return:    Non-negative on success/Negative on failure
 *
 * Programmer:    Robb Matzke
 *        Friday, January     9, 1998
 *
 * Modifications:
 *
 *     Robb Matzke, 1 Jun 1998
 *    It is illegal to lock a named datatype since we must allow named
 *    types to be closed (to release file resources) but locking a type
 *    prevents that.
 *-------------------------------------------------------------------------
 */
herr_t
H5Tlock(hid_t type_id)
{
    H5T_t       *dt;                    /* Datatype to operate on */
    herr_t      ret_value = SUCCEED;    /* Return value */

    FUNC_ENTER_API(FAIL)
    H5TRACE1("e", "i", type_id);

    /* Check args */
    if(NULL == (dt = (H5T_t *)H5I_object_verify(type_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    if(H5T_STATE_NAMED == dt->shared->state || H5T_STATE_OPEN == dt->shared->state)
        HGOTO_ERROR(H5E_ARGS, H5E_BADVALUE, FAIL, "unable to lock named datatype")

    if(H5T_lock(dt, TRUE) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to lock transient datatype")

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tlock() */


/*-------------------------------------------------------------------------
 * Function:  H5Tget_class
 *
 * Purpose:   Returns the datatype class identifier for datatype TYPE_ID.
 *
 * Return:    Success:    One of the non-negative datatype class constants.
 *
 *            Failure:    H5T_NO_CLASS (Negative)
 *
 * Programmer:    Robb Matzke
 *        Monday, December  8, 1997
 *
 *-------------------------------------------------------------------------
 */
H5T_class_t
H5Tget_class(hid_t type_id)
{
    H5T_t       *dt;            /* Pointer to datatype */
    H5T_class_t ret_value;      /* Return value */

    FUNC_ENTER_API(H5T_NO_CLASS)
    H5TRACE1("Tt", "i", type_id);

    /* Check args */
    if(NULL == (dt = (H5T_t *)H5I_object_verify(type_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, H5T_NO_CLASS, "not a datatype")

    /* Set return value */
    ret_value = H5T_get_class(dt, FALSE);

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tget_class() */


/*-------------------------------------------------------------------------
 * Function:  H5T_get_class
 *
 * Purpose:   Returns the data type class identifier for a datatype ptr.
 *
 * Return:    Success:    One of the non-negative data type class constants.
 *
 *            Failure:    H5T_NO_CLASS (Negative)
 *
 * Programmer:    Robb Matzke
 *        Monday, December  8, 1997
 *
 * Modifications:
 *      Broke out from H5Tget_class - QAK - 6/4/99
 *
 *-------------------------------------------------------------------------
 */
H5T_class_t
H5T_get_class(const H5T_t *dt, htri_t internal)
{
    H5T_class_t ret_value = H5T_NO_CLASS;       /* Return value */

    FUNC_ENTER_NOAPI(H5T_NO_CLASS)

    HDassert(dt);

    /* Externally, a VL string is a string; internally, a VL string is a VL. */
    if(internal) {
        ret_value=dt->shared->type;
    }
    else {
        if(H5T_IS_VL_STRING(dt->shared))
            ret_value=H5T_STRING;
        else
            ret_value=dt->shared->type;
    }

done:
    FUNC_LEAVE_NOAPI(ret_value)
}   /* end H5T_get_class() */


/*-------------------------------------------------------------------------
 * Function:   H5Tdetect_class
 *
 * Purpose:    Check whether a datatype contains (or is) a certain type of
 *             datatype.
 *
 * Return:     TRUE (1) or FALSE (0) on success/Negative on failure
 *
 * Programmer:    Quincey Koziol
 *        Wednesday, November 29, 2000
 *-------------------------------------------------------------------------
 */
htri_t
H5Tdetect_class(hid_t type, H5T_class_t cls)
{
    H5T_t       *dt;            /* Datatype to query */
    htri_t      ret_value;      /* Return value */

    FUNC_ENTER_API(FAIL)
    H5TRACE2("t", "iTt", type, cls);

    /* Check args */
    if(NULL == (dt = (H5T_t *)H5I_object_verify(type,H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, H5T_NO_CLASS, "not a datatype")
    if(!(cls > H5T_NO_CLASS && cls < H5T_NCLASSES))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, H5T_NO_CLASS, "not a datatype class")

    /* Set return value */
    if((ret_value = H5T_detect_class(dt, cls, TRUE)) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTGET, H5T_NO_CLASS, "can't get datatype class")

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tdetect_class() */


/*-------------------------------------------------------------------------
 * Function:   H5T_detect_class
 *
 * Purpose:    Check whether a datatype contains (or is) a certain type of
 *             datatype.
 *
 * Return:     TRUE (1) or FALSE (0) on success/Negative on failure
 *
 * Programmer:    Quincey Koziol
 *        Wednesday, November 29, 2000
 *
 *-------------------------------------------------------------------------
 */
htri_t
H5T_detect_class(const H5T_t *dt, H5T_class_t cls, hbool_t from_api)
{
    unsigned    i;
    htri_t      ret_value = FALSE;        /* Return value */

    FUNC_ENTER_NOAPI(FAIL)

    HDassert(dt);
    HDassert(cls > H5T_NO_CLASS && cls < H5T_NCLASSES);

    /* Consider VL string as a string for API, as a VL for internal use. */
    /* (note that this check must be performed before checking if the VL
     *  string belongs to the H5T_VLEN class, which would otherwise return
     *  true. -QAK)
     */
    if(from_api && H5T_IS_VL_STRING(dt->shared))
        HGOTO_DONE(H5T_STRING == cls);

    /* Check if this type is the correct type */
    if(dt->shared->type == cls)
        HGOTO_DONE(TRUE);

    /* check for types that might have the correct type as a component */
    switch(dt->shared->type) {
        case H5T_COMPOUND:
            for(i = 0; i < dt->shared->u.compnd.nmembs; i++) {
                htri_t nested_ret;      /* Return value from nested call */

                /* Check if this field's type is the correct type */
                if(dt->shared->u.compnd.memb[i].type->shared->type == cls)
                    HGOTO_DONE(TRUE);

                /* Recurse if it's VL, compound, enum or array */
                if(H5T_IS_COMPLEX(dt->shared->u.compnd.memb[i].type->shared->type))
                    if((nested_ret = H5T_detect_class(dt->shared->u.compnd.memb[i].type, cls, from_api)) != FALSE)
                        HGOTO_DONE(nested_ret);
            } /* end for */
            break;

        case H5T_ARRAY:
        case H5T_VLEN:
        case H5T_ENUM:
            HGOTO_DONE(H5T_detect_class(dt->shared->parent, cls, from_api));
            break;
        case H5T_NO_CLASS:
        case H5T_INTEGER:
        case H5T_FLOAT:
        case H5T_TIME:
        case H5T_STRING:
        case H5T_BITFIELD:
        case H5T_OPAQUE:
        case H5T_REFERENCE:
        case H5T_NCLASSES:
        default:
            break;
    } /* end if */

done:
    FUNC_LEAVE_NOAPI(ret_value)
} /* end H5T_detect_class() */


/*-------------------------------------------------------------------------
 * Function:  H5Tis_variable_str
 *
 * Purpose:   Check whether a datatype is a variable-length string
 *
 * Return:    TRUE (1) or FALSE (0) on success/Negative on failure
 *
 * Programmer:    Raymond Lu
 *        November 4, 2002
 *
 *-------------------------------------------------------------------------
 */
htri_t
H5Tis_variable_str(hid_t dtype_id)
{
    H5T_t       *dt;            /* Datatype to query */
    htri_t      ret_value;      /* Return value */

    FUNC_ENTER_API(FAIL)
    H5TRACE1("t", "i", dtype_id);

    /* Check args */
    if(NULL == (dt = (H5T_t *)H5I_object_verify(dtype_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")

    /* Set return value */
    if((ret_value = H5T_is_variable_str(dt)) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_UNSUPPORTED, FAIL, "can't determine if datatype is VL-string")

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tis_variable_str() */


/*-------------------------------------------------------------------------
 * Function:  H5T_is_variable_str
 *
 * Purpose:   Check whether a datatype is a variable-length string
 *
 * Return:    TRUE (1) or FALSE (0) on success/Negative on failure
 *
 * Programmer:    Quincey Koziol
 *        October 17, 2007
 *
 *-------------------------------------------------------------------------
 */
htri_t
H5T_is_variable_str(const H5T_t *dt)
{
    FUNC_ENTER_NOAPI_NOINIT_NOERR

    FUNC_LEAVE_NOAPI(H5T_IS_VL_STRING(dt->shared))
} /* end H5T_is_variable_str() */


/*-------------------------------------------------------------------------
 * Function:  H5Tget_size
 *
 * Purpose:   Determines the total size of a datatype in bytes.
 *
 * Return:    Success:    Size of the datatype in bytes.     The size of
 *                datatype is the size of an instance of that
 *                datatype.
 *
 *            Failure:    0 (valid datatypes are never zero size)
 *
 * Programmer:    Robb Matzke
 *        Monday, December  8, 1997
 *
 *-------------------------------------------------------------------------
 */
size_t
H5Tget_size(hid_t type_id)
{
    H5T_t     *dt;            /* Datatype to query */
    size_t    ret_value;      /* Return value */

    FUNC_ENTER_API(0)
    H5TRACE1("z", "i", type_id);

    /* Check args */
    if(NULL == (dt = (H5T_t *)H5I_object_verify(type_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, 0, "not a datatype")

    /* size */
    ret_value = H5T_GET_SIZE(dt);

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tget_size() */


/*-------------------------------------------------------------------------
 * Function:    H5Tset_size
 *
 * Purpose:    Sets the total size in bytes for a datatype (this operation
 *        is not permitted on reference datatypes).  If the size is
 *        decreased so that the significant bits of the datatype
 *        extend beyond the edge of the new size, then the `offset'
 *        property is decreased toward zero.  If the `offset' becomes
 *        zero and the significant bits of the datatype still hang
 *        over the edge of the new size, then the number of significant
 *        bits is decreased.
 *
 *        Adjusting the size of an H5T_STRING automatically sets the
 *        precision to 8*size.
 *
 *        All datatypes have a positive size.
 *
 * Return:    Non-negative on success/Negative on failure
 *
 * Programmer:    Robb Matzke
 *        Wednesday, January  7, 1998
 *
 *-------------------------------------------------------------------------
 */
herr_t
H5Tset_size(hid_t type_id, size_t size)
{
    H5T_t       *dt;                    /* Datatype to modify */
    herr_t      ret_value = SUCCEED;    /* Return value */

    FUNC_ENTER_API(FAIL)
    H5TRACE2("e", "iz", type_id, size);

    /* Check args */
    if(NULL == (dt = (H5T_t *)H5I_object_verify(type_id, H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, FAIL, "not a datatype")
    if(H5T_STATE_TRANSIENT!=dt->shared->state)
        HGOTO_ERROR(H5E_ARGS, H5E_CANTINIT, FAIL, "datatype is read-only")
    if(size <= 0 && size != H5T_VARIABLE)
        HGOTO_ERROR(H5E_ARGS, H5E_BADVALUE, FAIL, "size must be positive")
    if(size == H5T_VARIABLE && !H5T_IS_STRING(dt->shared))
        HGOTO_ERROR(H5E_ARGS, H5E_BADVALUE, FAIL, "only strings may be variable length")
    if(H5T_ENUM == dt->shared->type && dt->shared->u.enumer.nmembs > 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "operation not allowed after members are defined")
    if(H5T_REFERENCE == dt->shared->type)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "operation not defined for this datatype")

    /* Modify the datatype */
    if(H5T__set_size(dt, size) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to set size for datatype")

done:
    FUNC_LEAVE_API(ret_value)
} /* end H5Tset_size() */


/*-------------------------------------------------------------------------
 * Function:  H5Tget_super
 *
 * Purpose:   Returns the type from which TYPE is derived. In the case of
 *            an enumeration type the return value is an integer type.
 *
 * Return:    Success:    Type ID for base datatype.
 *
 *            Failure:    negative
 *
 * Programmer:    Robb Matzke
 *              Wednesday, December 23, 1998
 *-------------------------------------------------------------------------
 */
hid_t
H5Tget_super(hid_t type)
{
    H5T_t    *dt;            /* Datatype to query */
    H5T_t    *super = NULL;  /* Supertype */
    hid_t    ret_value = H5I_INVALID_HID;      /* Return value */

    FUNC_ENTER_API(H5I_INVALID_HID)
    H5TRACE1("i", "i", type);

    if(NULL == (dt = (H5T_t *)H5I_object_verify(type,H5I_DATATYPE)))
        HGOTO_ERROR(H5E_ARGS, H5E_BADTYPE, H5I_INVALID_HID, "not a datatype")
    if(NULL == (super = H5T_get_super(dt)))
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, H5I_INVALID_HID, "not a datatype")
    if((ret_value = H5I_register(H5I_DATATYPE, super, TRUE)) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTREGISTER, H5I_INVALID_HID, "unable to register parent datatype")

done:
    if(H5I_INVALID_HID == ret_value)
        if(super && H5T_close_real(super) < 0)
            HDONE_ERROR(H5E_DATATYPE, H5E_CANTRELEASE, H5I_INVALID_HID, "unable to release super datatype info")

    FUNC_LEAVE_API(ret_value)
} /* end H5Tget_super() */


/*-------------------------------------------------------------------------
 * Function:  H5T_get_super
 *
 * Purpose:   Private function for H5Tget_super.  Returns the type from
 *            which TYPE is derived. In the case of an enumeration type
 *            the return value is an integer type.
 *
 * Return:    Success:    Data type for base data type.
 *            Failure:        NULL
 *
 * Programmer:    Raymond Lu
 *                October 9, 2002
 *
 *-------------------------------------------------------------------------
 */
H5T_t *
H5T_get_super(const H5T_t *dt)
{
    H5T_t *ret_value = NULL;

    FUNC_ENTER_NOAPI(NULL)

    HDassert(dt);

    if(!dt->shared->parent)
        HGOTO_ERROR(H5E_ARGS, H5E_BADVALUE, NULL, "not a derived data type")
    if(NULL == (ret_value = H5T_copy(dt->shared->parent, H5T_COPY_ALL)))
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, NULL, "unable to copy parent data type")

done:
    FUNC_LEAVE_NOAPI(ret_value)
} /* end H5T_get_super() */


/*-------------------------------------------------------------------------
 * Function:    H5T__register_int
 *
 * Purpose:    Register a library internal datatype conversion routine.
 *
 * Return:    Non-negative on success/Negative on failure
 *
 * Programmer:  Quincey Koziol
 *              Wednesday, March 7, 1998
 *-------------------------------------------------------------------------
 */
static herr_t
H5T__register_int(H5T_pers_t pers, const char *name, H5T_t *src, H5T_t *dst,
    H5T_lib_conv_t func)
{
    H5T_conv_func_t conv_func;          /* Conversion function wrapper */
    herr_t ret_value = SUCCEED;         /* Return value */

    FUNC_ENTER_STATIC

    /* Check args */
    HDassert(H5T_PERS_HARD == pers || H5T_PERS_SOFT == pers);
    HDassert(name && *name);
    HDassert(src);
    HDassert(dst);
    HDassert(func);

    /* Set up conversion function wrapper */
    conv_func.is_app = FALSE;
    conv_func.u.lib_func = func;

    /* Register conversion */
    if(H5T__register(pers, name, src, dst, &conv_func) < 0)
        HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to register internal datatype conversion routine")

done:
    FUNC_LEAVE_NOAPI(ret_value)
} /* end H5T__register_int() */


/*-------------------------------------------------------------------------
 * Function:    H5T__register
 *
 * Purpose:    Register a hard or soft conversion function for a data type
 *        conversion path.  The path is specified by the source and
 *        destination data types SRC_ID and DST_ID (for soft functions
 *        only the class of these types is important). If FUNC is a
 *        hard function then it replaces any previous path; if it's a
 *        soft function then it replaces all existing paths to which it
 *        applies and is used for any new path to which it applies as
 *        long as that path doesn't have a hard function.
 *
 * Return:    Non-negative on success/Negative on failure
 *
 * Programmer:    Robb Matzke
 *        Friday, January     9, 1998
 *-------------------------------------------------------------------------
 */
static herr_t
H5T__register(H5T_pers_t pers, const char *name, H5T_t *src, H5T_t *dst,
    H5T_conv_func_t *conv)
{
    hid_t         tmp_sid = -1, tmp_did = -1; /*temporary data type IDs    */
    H5T_path_t    *old_path = NULL;           /*existing conversion path   */
    H5T_path_t    *new_path = NULL;           /*new conversion path        */
    H5T_cdata_t   cdata;                      /*temporary conversion data  */
    int           nprint=0;                   /*number of paths shut down  */
    int           i;                          /*counter                    */
    herr_t        ret_value = SUCCEED;        /*return value               */

    FUNC_ENTER_STATIC

    /* Check args */
    HDassert(src);
    HDassert(dst);
    HDassert(conv);
    HDassert(H5T_PERS_HARD==pers || H5T_PERS_SOFT==pers);
    HDassert(name && *name);

    if(H5T_PERS_HARD == pers) {
        /* Only bother to register the path if it's not a no-op path (for this machine) */
        if(H5T_cmp(src, dst, FALSE)) {
            /* Locate or create a new conversion path */
            if(NULL == (new_path = H5T__path_find_real(src, dst, name, conv)))
                HGOTO_ERROR(H5E_DATATYPE, H5E_CANTINIT, FAIL, "unable to locate/allocate conversion path")

            /* Notify all other functions to recalculate private data since some
             * functions might cache a list of conversion functions.  For
             * instance, the compound type converter caches a list of conversion
             * functions for the members, so adding a new function should cause
             * the list to be recalculated to use the new function.
             */
            for(i = 0; i < H5T_g.npaths; i++)
                if(new_path != H5T_g.path[i])
                    H5T_g.path[i]->cdata.recalc = TRUE;
        } /* end if */
    } /* end if */
    else {
        /* Add function to end of soft list */
        if((size_t)H5T_g.nsoft >= H5T_g.asoft) {
            size_t na = MAX(32, 2 * H5T_g.asoft);
            H5T_soft_t *x;

            if(NULL == (x = (H5T_soft_t *)H5MM_realloc(H5T_g.soft, na * sizeof(H5T_soft_t))))
                HGOTO_ERROR(H5E_RESOURCE, H5E_NOSPACE, FAIL, "memory allocation failed")
            H5T_g.asoft = na;
            H5T_g.soft = x;
        } /* end if */
        HDstrncpy(H5T_g.soft[H5T_g.nsoft].name, name, (size_t)H5T_NAMELEN);
        H5T_g.soft[H5T_g.nsoft].name[H5T_NAMELEN - 1] = '\0';
        H5T_g.soft[H5T_g.nsoft].src = src->shared->type;
        H5T_g.soft[H5T_g.nsoft].dst = dst->shared->type;
        H5T_g.soft[H5T_g.nsoft].conv = *conv;
        H5T_g.nsoft++;

        /*
         * Any existing path (except the no-op path) to which this new soft
         * conversion function applies should be replaced by a new path that
         * uses this function.
         */
        for(i = 1; i < H5T_g.npaths; i++) {
            old_path = H5T_g.path[i];
            HDassert(old_path);

            /* Does the new soft conversion function apply to this path? */
            if(old_path->is_hard ||
                    old_path->src->shared->type != src->shared->type ||
                    old_path->dst->shared->type != dst->shared->type)
                continue;

            if((tmp_sid = H5I_register(H5I_DATATYPE, H5T_copy(old_path->src, H5T_COPY_ALL), FALSE)) < 0 ||
                    (tmp_did = H5I_register(H5I_DATATYPE, H5T_copy(old_path->dst, H5T_COPY_ALL), FALSE)) < 0)
                HGOTO_ERROR(H5E_DATATYPE, H5E_CANTREGISTER, FAIL, "unable to register data types for conv query")
            HDmemset(&cdata, 0, sizeof cdata);
            cdata.command = H5T_CONV_INIT;