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提交 86a62cf1 编写于 作者: R Richard Levitte

Implement a stateful variant if the ZLIB compression method. The old

stateless variant is kept, but isn't used anywhere.
上级 b1140572
......@@ -23,6 +23,13 @@ static COMP_METHOD zlib_method_nozlib={
#include <zlib.h>
static int zlib_stateful_init(COMP_CTX *ctx);
static void zlib_stateful_finish(COMP_CTX *ctx);
static int zlib_stateful_compress_block(COMP_CTX *ctx, unsigned char *out,
unsigned int olen, unsigned char *in, unsigned int ilen);
static int zlib_stateful_expand_block(COMP_CTX *ctx, unsigned char *out,
unsigned int olen, unsigned char *in, unsigned int ilen);
static int zlib_compress_block(COMP_CTX *ctx, unsigned char *out,
unsigned int olen, unsigned char *in, unsigned int ilen);
static int zlib_expand_block(COMP_CTX *ctx, unsigned char *out,
......@@ -31,7 +38,7 @@ static int zlib_expand_block(COMP_CTX *ctx, unsigned char *out,
static int zz_uncompress(Bytef *dest, uLongf *destLen, const Bytef *source,
uLong sourceLen);
static COMP_METHOD zlib_method={
static COMP_METHOD zlib_stateless_method={
NID_zlib_compression,
LN_zlib_compression,
NULL,
......@@ -42,6 +49,17 @@ static COMP_METHOD zlib_method={
NULL,
};
static COMP_METHOD zlib_stateful_method={
NID_zlib_compression,
LN_zlib_compression,
zlib_stateful_init,
zlib_stateful_finish,
zlib_stateful_compress_block,
zlib_stateful_expand_block,
NULL,
NULL,
};
/*
* When OpenSSL is built on Windows, we do not want to require that
* the ZLIB.DLL be available in order for the OpenSSL DLLs to
......@@ -75,10 +93,17 @@ typedef int (Z_CALLCONV *inflateEnd_ft)(z_streamp strm);
typedef int (Z_CALLCONV *inflate_ft)(z_streamp strm, int flush);
typedef int (Z_CALLCONV *inflateInit__ft)(z_streamp strm,
const char * version, int stream_size);
typedef int (Z_CALLCONV *deflateEnd_ft)(z_streamp strm);
typedef int (Z_CALLCONV *deflate_ft)(z_streamp strm, int flush);
typedef int (Z_CALLCONV *deflateInit__ft)(z_streamp strm, int level,
const char * version, int stream_size);
static compress_ft p_compress=NULL;
static inflateEnd_ft p_inflateEnd=NULL;
static inflate_ft p_inflate=NULL;
static inflateInit__ft p_inflateInit_=NULL;
static deflateEnd_ft p_deflateEnd=NULL;
static deflate_ft p_deflate=NULL;
static deflateInit__ft p_deflateInit_=NULL;
static int zlib_loaded = 0; /* only attempt to init func pts once */
static DSO *zlib_dso = NULL;
......@@ -86,11 +111,130 @@ static DSO *zlib_dso = NULL;
#define compress stub_compress
#define inflateEnd stub_inflateEnd
#define inflate stub_inflate
#define inflateInit stub_inflateInit
#define inflateInit_ stub_inflateInit_
#define deflateEnd stub_deflateEnd
#define deflate stub_deflate
#define deflateInit stub_deflateInit
#define deflateInit_ stub_deflateInit_
#endif /* ZLIB_SHARED */
struct zlib_state
{
z_stream istream;
z_stream ostream;
};
static int zlib_stateful_ex_idx = -1;
static void zlib_stateful_free_ex_data(void *obj, void *item,
CRYPTO_EX_DATA *ad, int ind,long argl, void *argp)
{
struct zlib_state *state = (struct zlib_state *)item;
inflateEnd(&state->istream);
deflateEnd(&state->ostream);
OPENSSL_free(state);
}
static int zlib_stateful_init(COMP_CTX *ctx)
{
int err;
struct zlib_state *state =
(struct zlib_state *)OPENSSL_malloc(sizeof(struct zlib_state));
if (state == NULL)
goto err;
state->istream.zalloc = Z_NULL;
state->istream.zfree = Z_NULL;
state->istream.opaque = Z_NULL;
state->istream.next_in = Z_NULL;
state->istream.next_out = Z_NULL;
state->istream.avail_in = 0;
state->istream.avail_out = 0;
err = inflateInit(&state->istream);
if (err != Z_OK)
goto err;
state->ostream.zalloc = Z_NULL;
state->ostream.zfree = Z_NULL;
state->ostream.opaque = Z_NULL;
state->ostream.next_in = Z_NULL;
state->ostream.next_out = Z_NULL;
state->ostream.avail_in = 0;
state->ostream.avail_out = 0;
err = deflateInit(&state->ostream,Z_DEFAULT_COMPRESSION);
if (err != Z_OK)
goto err;
CRYPTO_new_ex_data(CRYPTO_EX_INDEX_COMP,ctx,&ctx->ex_data);
if (zlib_stateful_ex_idx == -1)
{
zlib_stateful_ex_idx =
CRYPTO_get_ex_new_index(CRYPTO_EX_INDEX_COMP,
0,NULL,NULL,NULL,zlib_stateful_free_ex_data);
if (zlib_stateful_ex_idx == -1)
goto err;
}
CRYPTO_set_ex_data(&ctx->ex_data,zlib_stateful_ex_idx,state);
return 1;
err:
if (state) OPENSSL_free(state);
return 0;
}
static void zlib_stateful_finish(COMP_CTX *ctx)
{
CRYPTO_free_ex_data(CRYPTO_EX_INDEX_COMP,ctx,&ctx->ex_data);
}
static int zlib_stateful_compress_block(COMP_CTX *ctx, unsigned char *out,
unsigned int olen, unsigned char *in, unsigned int ilen)
{
int err = Z_OK;
struct zlib_state *state =
(struct zlib_state *)CRYPTO_get_ex_data(&ctx->ex_data,
zlib_stateful_ex_idx);
if (state == NULL)
return -1;
state->ostream.next_in = in;
state->ostream.avail_in = ilen;
state->ostream.next_out = out;
state->ostream.avail_out = olen;
if (ilen > 0)
err = deflate(&state->ostream, Z_SYNC_FLUSH);
if (err != Z_OK)
return -1;
return olen - state->ostream.avail_out;
}
static int zlib_stateful_expand_block(COMP_CTX *ctx, unsigned char *out,
unsigned int olen, unsigned char *in, unsigned int ilen)
{
int err = Z_OK;
struct zlib_state *state =
(struct zlib_state *)CRYPTO_get_ex_data(&ctx->ex_data,
zlib_stateful_ex_idx);
if (state == NULL)
return 0;
state->istream.next_in = in;
state->istream.avail_in = ilen;
state->istream.next_out = out;
state->istream.avail_out = olen;
if (ilen > 0)
err = inflate(&state->istream, Z_SYNC_FLUSH);
if (err != Z_OK)
return -1;
return olen - state->istream.avail_out;
}
static int zlib_compress_block(COMP_CTX *ctx, unsigned char *out,
unsigned int olen, unsigned char *in, unsigned int ilen)
unsigned int olen, unsigned char *in, unsigned int ilen)
{
unsigned long l;
int i;
......@@ -123,7 +267,7 @@ static int zlib_compress_block(COMP_CTX *ctx, unsigned char *out,
}
static int zlib_expand_block(COMP_CTX *ctx, unsigned char *out,
unsigned int olen, unsigned char *in, unsigned int ilen)
unsigned int olen, unsigned char *in, unsigned int ilen)
{
unsigned long l;
int i;
......@@ -207,13 +351,22 @@ COMP_METHOD *COMP_zlib(void)
p_inflateInit_
= (inflateInit__ft) DSO_bind_func(zlib_dso,
"inflateInit_");
p_deflateEnd
= (deflateEnd_ft) DSO_bind_func(zlib_dso,
"deflateEnd");
p_deflate
= (deflate_ft) DSO_bind_func(zlib_dso,
"deflate");
p_deflateInit_
= (deflateInit__ft) DSO_bind_func(zlib_dso,
"deflateInit_");
zlib_loaded++;
}
}
#endif
#if defined(ZLIB) || defined(ZLIB_SHARED)
meth = &zlib_method;
meth = &zlib_stateful_method;
#endif
return(meth);
......@@ -257,4 +410,32 @@ stub_inflateInit_(z_streamp strm, const char * version, int stream_size)
return(Z_MEM_ERROR);
}
static int
stub_deflateEnd(z_streamp strm)
{
if ( p_deflateEnd )
return(p_deflateEnd(strm));
else
return(Z_MEM_ERROR);
}
static int
stub_deflate(z_streamp strm, int flush)
{
if ( p_deflate )
return(p_deflate(strm,flush));
else
return(Z_MEM_ERROR);
}
static int
stub_deflateInit_(z_streamp strm, int level,
const char * version, int stream_size)
{
if ( p_deflateInit_ )
return(p_deflateInit_(strm,version,stream_size));
else
return(Z_MEM_ERROR);
}
#endif /* ZLIB_SHARED */
......@@ -20,17 +20,11 @@ COMP_CTX *COMP_CTX_new(COMP_METHOD *meth)
OPENSSL_free(ret);
ret=NULL;
}
#if 0
else
CRYPTO_new_ex_data(rsa_meth,(char *)ret,&ret->ex_data);
#endif
return(ret);
}
void COMP_CTX_free(COMP_CTX *ctx)
{
/* CRYPTO_free_ex_data(rsa_meth,(char *)ctx,&ctx->ex_data); */
if(ctx == NULL)
return;
......
......@@ -298,6 +298,7 @@ DECLARE_STACK_OF(CRYPTO_EX_DATA_FUNCS)
#define CRYPTO_EX_INDEX_UI 11
#define CRYPTO_EX_INDEX_ECDSA 12
#define CRYPTO_EX_INDEX_ECDH 13
#define CRYPTO_EX_INDEX_COMP 14
/* Dynamically assigned indexes start from this value (don't use directly, use
* via CRYPTO_ex_data_new_class). */
......
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