332 lines
13 KiB
Groff
332 lines
13 KiB
Groff
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.\" ========================================================================
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.\"
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.IX Title "OPENSSL_MALLOC 3"
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.TH OPENSSL_MALLOC 3 "2020-03-02" "3.0.0-dev" "OpenSSL"
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.\" For nroff, turn off justification. Always turn off hyphenation; it makes
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.\" way too many mistakes in technical documents.
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.if n .ad l
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.nh
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.SH "NAME"
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OPENSSL_malloc_init,
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OPENSSL_malloc, OPENSSL_zalloc, OPENSSL_realloc, OPENSSL_free,
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OPENSSL_clear_realloc, OPENSSL_clear_free, OPENSSL_cleanse,
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CRYPTO_malloc, CRYPTO_zalloc, CRYPTO_realloc, CRYPTO_free,
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OPENSSL_strdup, OPENSSL_strndup,
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OPENSSL_memdup, OPENSSL_strlcpy, OPENSSL_strlcat,
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CRYPTO_strdup, CRYPTO_strndup,
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OPENSSL_mem_debug_push, OPENSSL_mem_debug_pop,
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CRYPTO_mem_debug_push, CRYPTO_mem_debug_pop,
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CRYPTO_clear_realloc, CRYPTO_clear_free,
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CRYPTO_malloc_fn, CRYPTO_realloc_fn, CRYPTO_free_fn,
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CRYPTO_get_mem_functions, CRYPTO_set_mem_functions,
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CRYPTO_get_alloc_counts,
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CRYPTO_set_mem_debug, CRYPTO_mem_ctrl,
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CRYPTO_mem_leaks, CRYPTO_mem_leaks_fp, CRYPTO_mem_leaks_cb,
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OPENSSL_MALLOC_FAILURES,
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OPENSSL_MALLOC_FD
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\&\- Memory allocation functions
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.SH "SYNOPSIS"
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.IX Header "SYNOPSIS"
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.Vb 1
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\& #include <openssl/crypto.h>
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\&
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\& int OPENSSL_malloc_init(void);
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\&
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\& void *OPENSSL_malloc(size_t num);
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\& void *OPENSSL_zalloc(size_t num);
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\& void *OPENSSL_realloc(void *addr, size_t num);
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\& void OPENSSL_free(void *addr);
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\& char *OPENSSL_strdup(const char *str);
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\& char *OPENSSL_strndup(const char *str, size_t s);
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\& size_t OPENSSL_strlcat(char *dst, const char *src, size_t size);
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\& size_t OPENSSL_strlcpy(char *dst, const char *src, size_t size);
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\& void *OPENSSL_memdup(void *data, size_t s);
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\& void *OPENSSL_clear_realloc(void *p, size_t old_len, size_t num);
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\& void OPENSSL_clear_free(void *str, size_t num);
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\& void OPENSSL_cleanse(void *ptr, size_t len);
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\&
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\& void *CRYPTO_malloc(size_t num, const char *file, int line);
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\& void *CRYPTO_zalloc(size_t num, const char *file, int line);
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\& void *CRYPTO_realloc(void *p, size_t num, const char *file, int line);
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\& void CRYPTO_free(void *str, const char *, int);
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\& char *CRYPTO_strdup(const char *p, const char *file, int line);
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\& char *CRYPTO_strndup(const char *p, size_t num, const char *file, int line);
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\& void *CRYPTO_clear_realloc(void *p, size_t old_len, size_t num,
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\& const char *file, int line);
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\& void CRYPTO_clear_free(void *str, size_t num, const char *, int)
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\&
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\& typedef void *(*CRYPTO_malloc_fn)(size_t num, const char *file, int line);
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\& typedef void *(*CRYPTO_realloc_fn)(void *addr, size_t num, const char *file,
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\& int line);
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\& typedef void (*CRYPTO_free_fn)(void *addr, const char *file, int line);
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\& void CRYPTO_get_mem_functions(CRYPTO_malloc_fn *malloc_fn,
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\& CRYPTO_realloc_fn *realloc_fn,
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\& CRYPTO_free_fn *free_fn);
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\& int CRYPTO_set_mem_functions(CRYPTO_malloc_fn malloc_fn,
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\& CRYPTO_realloc_fn realloc_fn,
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\& CRYPTO_free_fn free_fn);
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\&
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\& void CRYPTO_get_alloc_counts(int *mcount, int *rcount, int *fcount);
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\&
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\& env OPENSSL_MALLOC_FAILURES=... <application>
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\& env OPENSSL_MALLOC_FD=... <application>
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.Ve
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.PP
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Deprecated:
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.PP
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.Vb 4
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\& int CRYPTO_mem_leaks(BIO *b);
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\& int CRYPTO_mem_leaks_fp(FILE *fp);
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\& int CRYPTO_mem_leaks_cb(int (*cb)(const char *str, size_t len, void *u),
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\& void *u);
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\&
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\& int CRYPTO_set_mem_debug(int onoff)
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\& int CRYPTO_mem_ctrl(int mode);
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\& int OPENSSL_mem_debug_push(const char *info)
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\& int OPENSSL_mem_debug_pop(void);
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\& int CRYPTO_mem_debug_push(const char *info, const char *file, int line);
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\& int CRYPTO_mem_debug_pop(void);
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.Ve
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.SH "DESCRIPTION"
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.IX Header "DESCRIPTION"
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OpenSSL memory allocation is handled by the \fBOPENSSL_xxx\fR \s-1API\s0. These are
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generally macro's that add the standard C \fB_\|_FILE_\|_\fR and \fB_\|_LINE_\|_\fR
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parameters and call a lower-level \fBCRYPTO_xxx\fR \s-1API\s0.
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Some functions do not add those parameters, but exist for consistency.
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.PP
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\&\fIOPENSSL_malloc_init()\fR does nothing and does not need to be called. It is
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included for compatibility with older versions of OpenSSL.
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.PP
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\&\fIOPENSSL_malloc()\fR, \fIOPENSSL_realloc()\fR, and \fIOPENSSL_free()\fR are like the
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C \fImalloc()\fR, \fIrealloc()\fR, and \fIfree()\fR functions.
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\&\fIOPENSSL_zalloc()\fR calls \fImemset()\fR to zero the memory before returning.
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.PP
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\&\fIOPENSSL_clear_realloc()\fR and \fIOPENSSL_clear_free()\fR should be used
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when the buffer at \fBaddr\fR holds sensitive information.
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The old buffer is filled with zero's by calling \fIOPENSSL_cleanse()\fR
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before ultimately calling \fIOPENSSL_free()\fR.
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.PP
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\&\fIOPENSSL_cleanse()\fR fills \fBptr\fR of size \fBlen\fR with a string of 0's.
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Use \fIOPENSSL_cleanse()\fR with care if the memory is a mapping of a file.
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If the storage controller uses write compression, then its possible
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that sensitive tail bytes will survive zeroization because the block of
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zeros will be compressed. If the storage controller uses wear leveling,
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then the old sensitive data will not be overwritten; rather, a block of
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0's will be written at a new physical location.
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.PP
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\&\fIOPENSSL_strdup()\fR, \fIOPENSSL_strndup()\fR and \fIOPENSSL_memdup()\fR are like the
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equivalent C functions, except that memory is allocated by calling the
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\&\fIOPENSSL_malloc()\fR and should be released by calling \fIOPENSSL_free()\fR.
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.PP
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\&\fIOPENSSL_strlcpy()\fR,
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\&\fIOPENSSL_strlcat()\fR and \fIOPENSSL_strnlen()\fR are equivalents of the common C
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library functions and are provided for portability.
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.PP
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If no allocations have been done, it is possible to \*(L"swap out\*(R" the default
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implementations for \fIOPENSSL_malloc()\fR, \fIOPENSSL_realloc()\fR and \fIOPENSSL_free()\fR
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and replace them with alternate versions.
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\&\fICRYPTO_get_mem_functions()\fR function fills in the given arguments with the
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function pointers for the current implementations.
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With \fICRYPTO_set_mem_functions()\fR, you can specify a different set of functions.
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If any of \fBmalloc_fn\fR, \fBrealloc_fn\fR, or \fBfree_fn\fR are \s-1NULL\s0, then
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the function is not changed.
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While it's permitted to swap out only a few and not all the functions
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with \fICRYPTO_set_mem_functions()\fR, it's recommended to swap them all out
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at once.
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.PP
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If the library is built with the \f(CW\*(C`crypto\-mdebug\*(C'\fR option, then one
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function, \fICRYPTO_get_alloc_counts()\fR, and two additional environment
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variables, \fB\s-1OPENSSL_MALLOC_FAILURES\s0\fR and \fB\s-1OPENSSL_MALLOC_FD\s0\fR,
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are available.
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.PP
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The function \fICRYPTO_get_alloc_counts()\fR fills in the number of times
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each of \fICRYPTO_malloc()\fR, \fICRYPTO_realloc()\fR, and \fICRYPTO_free()\fR have been
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called, into the values pointed to by \fBmcount\fR, \fBrcount\fR, and \fBfcount\fR,
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respectively. If a pointer is \s-1NULL\s0, then the corresponding count is not stored.
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.PP
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The variable
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\&\fB\s-1OPENSSL_MALLOC_FAILURES\s0\fR controls how often allocations should fail.
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It is a set of fields separated by semicolons, which each field is a count
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(defaulting to zero) and an optional atsign and percentage (defaulting
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to 100). If the count is zero, then it lasts forever. For example,
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\&\f(CW\*(C`100;@25\*(C'\fR or \f(CW\*(C`100@0;0@25\*(C'\fR means the first 100 allocations pass, then all
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other allocations (until the program exits or crashes) have a 25% chance of
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failing.
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.PP
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If the variable \fB\s-1OPENSSL_MALLOC_FD\s0\fR is parsed as a positive integer, then
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it is taken as an open file descriptor, and a record of all allocations is
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written to that descriptor. If an allocation will fail, and the platform
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supports it, then a backtrace will be written to the descriptor. This can
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be useful because a malloc may fail but not be checked, and problems will
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only occur later. The following example in classic shell syntax shows how
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to use this (will not work on all platforms):
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.PP
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.Vb 5
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\& OPENSSL_MALLOC_FAILURES=\*(Aq200;@10\*(Aq
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\& export OPENSSL_MALLOC_FAILURES
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\& OPENSSL_MALLOC_FD=3
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\& export OPENSSL_MALLOC_FD
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\& ...app invocation... 3>/tmp/log$$
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.Ve
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.SH "RETURN VALUES"
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.IX Header "RETURN VALUES"
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\&\fIOPENSSL_malloc_init()\fR, \fIOPENSSL_free()\fR, \fIOPENSSL_clear_free()\fR
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\&\fICRYPTO_free()\fR, \fICRYPTO_clear_free()\fR and \fICRYPTO_get_mem_functions()\fR
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return no value.
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.PP
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\&\fIOPENSSL_malloc()\fR, \fIOPENSSL_zalloc()\fR, \fIOPENSSL_realloc()\fR,
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\&\fIOPENSSL_clear_realloc()\fR,
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\&\fICRYPTO_malloc()\fR, \fICRYPTO_zalloc()\fR, \fICRYPTO_realloc()\fR,
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\&\fICRYPTO_clear_realloc()\fR,
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\&\fIOPENSSL_strdup()\fR, and \fIOPENSSL_strndup()\fR
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return a pointer to allocated memory or \s-1NULL\s0 on error.
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.PP
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\&\fICRYPTO_set_mem_functions()\fR returns 1 on success or 0 on failure (almost
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always because allocations have already happened).
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.PP
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\&\fICRYPTO_mem_leaks()\fR, \fICRYPTO_mem_leaks_fp()\fR, \fICRYPTO_mem_leaks_cb()\fR,
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\&\fICRYPTO_set_mem_debug()\fR, and \fICRYPTO_mem_ctrl()\fR are deprecated and return \-1.
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\&\fIOPENSSL_mem_debug_push()\fR, \fIOPENSSL_mem_debug_pop()\fR,
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\&\fICRYPTO_mem_debug_push()\fR, and \fICRYPTO_mem_debug_pop()\fR
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are deprecated and return 0.
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.SH "HISTORY"
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.IX Header "HISTORY"
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\&\fIOPENSSL_mem_debug_push()\fR, \fIOPENSSL_mem_debug_pop()\fR,
|
||
|
\&\fICRYPTO_mem_debug_push()\fR, \fICRYPTO_mem_debug_pop()\fR,
|
||
|
\&\fICRYPTO_mem_leaks()\fR, \fICRYPTO_mem_leaks_fp()\fR,
|
||
|
\&\fICRYPTO_mem_leaks_cb()\fR, \fICRYPTO_set_mem_debug()\fR, \fICRYPTO_mem_ctrl()\fR
|
||
|
were deprecated in OpenSSL 3.0.
|
||
|
The memory-leak checking has been deprecated in OpenSSL 3.0 in favor of
|
||
|
clang's memory and leak sanitizer.
|
||
|
.SH "COPYRIGHT"
|
||
|
.IX Header "COPYRIGHT"
|
||
|
Copyright 2016\-2018 The OpenSSL Project Authors. All Rights Reserved.
|
||
|
.PP
|
||
|
Licensed under the Apache License 2.0 (the \*(L"License\*(R"). You may not use
|
||
|
this file except in compliance with the License. You can obtain a copy
|
||
|
in the file \s-1LICENSE\s0 in the source distribution or at
|
||
|
<https://www.openssl.org/source/license.html>.
|