344 lines
7.3 KiB
C
344 lines
7.3 KiB
C
// Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com) All rights reserved.
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// SPDX-License-Identifier: Apache-2.0
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#include <openssl/bio.h>
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#include <limits.h>
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#include <string.h>
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#include <openssl/buf.h>
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#include <openssl/err.h>
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#include <openssl/mem.h>
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#include "../internal.h"
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typedef struct bio_buf_mem_st {
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struct buf_mem_st *buf; /* allocated buffer */
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size_t read_off; /* read pointer offset from current buffer position */
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} BIO_BUF_MEM;
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BIO *BIO_new_mem_buf(const void *buf, ossl_ssize_t len) {
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BIO *ret;
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BUF_MEM *b;
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BIO_BUF_MEM *bbm;
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const size_t size = (len < 0) ? strlen((char *)buf) : (size_t)len;
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if (!buf && len != 0) {
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OPENSSL_PUT_ERROR(BIO, BIO_R_NULL_PARAMETER);
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return NULL;
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}
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ret = BIO_new(BIO_s_mem());
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if (ret == NULL) {
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return NULL;
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}
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bbm = (BIO_BUF_MEM *)ret->ptr;
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b = bbm->buf;
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// BIO_FLAGS_MEM_RDONLY ensures |b->data| is not written to.
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b->data = (void *)buf;
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b->length = size;
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b->max = size;
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ret->flags |= BIO_FLAGS_MEM_RDONLY;
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// |num| is used to store the value that this BIO will return when it runs
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// out of data. If it's negative then the retry flags will also be set. Since
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// this is static data, retrying wont help
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ret->num = 0;
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return ret;
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}
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static int mem_new(BIO *bio) {
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BIO_BUF_MEM *bbm = OPENSSL_zalloc(sizeof(*bbm));
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if (bbm == NULL) {
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return 0;
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}
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bbm->buf = BUF_MEM_new();
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if (bbm->buf == NULL) {
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OPENSSL_free(bbm);
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return 0;
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}
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// |shutdown| is used to store the close flag: whether the BIO has ownership
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// of the BUF_MEM.
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bbm->read_off = 0;
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bio->shutdown = 1;
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bio->init = 1;
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bio->num = -1;
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bio->ptr = (char *)bbm;
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return 1;
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}
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static int mem_buf_free(BIO *bio) {
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if (bio == NULL) {
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return 0;
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}
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if (!bio->shutdown || !bio->init || bio->ptr == NULL) {
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return 1;
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}
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *)bio->ptr;
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BUF_MEM *b = bbm->buf;
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if (bio->flags & BIO_FLAGS_MEM_RDONLY) {
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b->data = NULL;
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}
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BUF_MEM_free(b);
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return 1;
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}
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static int mem_free(BIO *bio) {
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if (bio == NULL) {
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return 0;
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}
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *)bio->ptr;
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if (!mem_buf_free(bio)) {
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return 0;
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}
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bio->ptr = NULL;
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OPENSSL_free(bbm);
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return 1;
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}
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static void mem_buf_sync(BIO *bio) {
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if (bio->init != 0 && bio->ptr != NULL) {
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *) bio->ptr;
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BUF_MEM *b = bbm->buf;
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if (b->data != NULL) {
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if (bio->flags & BIO_FLAGS_MEM_RDONLY) {
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b->data += bbm->read_off;
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} else {
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OPENSSL_memmove(b->data, &b->data[bbm->read_off], b->length);
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}
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bbm->read_off = 0;
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}
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}
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}
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static int mem_read(BIO *bio, char *out, int outl) {
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BIO_clear_retry_flags(bio);
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if (outl <= 0) {
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return 0;
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}
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *) bio->ptr;
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BUF_MEM *b = bbm->buf;
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int ret = outl;
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if ((size_t)ret > b->length) {
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ret = (int)b->length;
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}
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if (ret > 0) {
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OPENSSL_memcpy(out, &b->data[bbm->read_off], ret);
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b->length -= ret;
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bbm->read_off += ret;
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} else if (b->length == 0) {
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ret = bio->num;
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if (ret != 0) {
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BIO_set_retry_read(bio);
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}
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}
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return ret;
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}
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static int mem_write(BIO *bio, const char *in, int inl) {
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BIO_clear_retry_flags(bio);
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if (inl <= 0) {
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return 0; // Successfully write zero bytes.
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}
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if (bio->flags & BIO_FLAGS_MEM_RDONLY) {
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OPENSSL_PUT_ERROR(BIO, BIO_R_WRITE_TO_READ_ONLY_BIO);
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return -1;
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}
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *) bio->ptr;
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BUF_MEM *b = bbm->buf;
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mem_buf_sync(bio);
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if (!BUF_MEM_append(b, in, inl)) {
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return -1;
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}
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return inl;
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}
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static int mem_gets(BIO *bio, char *buf, int size) {
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BIO_clear_retry_flags(bio);
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if (size <= 0) {
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return 0;
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}
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// The buffer size includes space for the trailing NUL, so we can read at most
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// one fewer byte.
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *) bio->ptr;
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BUF_MEM *b = bbm->buf;
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int ret = size - 1;
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if ((size_t)ret > b->length) {
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ret = (int)b->length;
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}
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// Stop at the first newline.
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if (b->data != NULL) {
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char *readp = &b->data[bbm->read_off];
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const char *newline = OPENSSL_memchr(readp, '\n', ret);
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if (newline != NULL) {
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ret = (int)(newline - readp + 1);
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}
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}
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ret = mem_read(bio, buf, ret);
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if (ret >= 0) {
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buf[ret] = '\0';
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}
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return ret;
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}
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static long mem_ctrl(BIO *bio, int cmd, long num, void *ptr) {
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long ret = 1;
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *) bio->ptr;
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BUF_MEM *b = bbm->buf;
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switch (cmd) {
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case BIO_CTRL_RESET:
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if (b->data != NULL) {
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// For read only case reset to the start again
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if (bio->flags & BIO_FLAGS_MEM_RDONLY) {
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b->data -= b->max - b->length - bbm->read_off;
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b->length = b->max;
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} else {
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OPENSSL_cleanse(b->data, b->max);
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b->length = 0;
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}
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bbm->read_off = 0;
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}
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break;
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case BIO_C_FILE_SEEK:
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if (num < 0 || (size_t)num > b->max) {
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ret = -1;
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break;
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}
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if (bio->flags & BIO_FLAGS_MEM_RDONLY) {
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b->data -= b->max - b->length - bbm->read_off;
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b->length = b->max - num;
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} else {
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if ((size_t)num > bbm->read_off + b->length) {
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ret = -1;
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break;
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}
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b->length = (b->length + bbm->read_off) - num;
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}
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bbm->read_off = num;
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ret = num;
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break;
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case BIO_CTRL_EOF:
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ret = (long)(b->length == 0);
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break;
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case BIO_C_SET_BUF_MEM_EOF_RETURN:
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bio->num = (int)num;
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break;
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case BIO_CTRL_INFO:
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ret = (long)b->length;
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if (ptr != NULL) {
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char **pptr = ptr;
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*pptr = (b->data != NULL) ? &b->data[bbm->read_off] : NULL;
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}
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break;
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case BIO_C_SET_BUF_MEM:
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mem_free(bio);
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bio->shutdown = (int)num;
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bio->ptr = ptr;
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break;
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case BIO_C_GET_BUF_MEM_PTR:
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if (ptr != NULL) {
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mem_buf_sync(bio);
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BUF_MEM **pptr = ptr;
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*pptr = b;
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}
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break;
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case BIO_CTRL_GET_CLOSE:
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ret = (long)bio->shutdown;
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break;
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case BIO_CTRL_SET_CLOSE:
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bio->shutdown = (int)num;
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break;
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case BIO_CTRL_WPENDING:
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ret = 0L;
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break;
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case BIO_CTRL_PENDING:
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ret = (long)b->length;
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break;
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case BIO_CTRL_FLUSH:
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ret = 1;
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break;
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default:
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ret = 0;
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break;
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}
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return ret;
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}
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static const BIO_METHOD mem_method = {
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BIO_TYPE_MEM, "memory buffer",
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mem_write, mem_read,
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NULL /* puts */, mem_gets,
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mem_ctrl, mem_new,
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mem_free, NULL /* callback_ctrl */,
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};
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const BIO_METHOD *BIO_s_mem(void) { return &mem_method; }
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int BIO_mem_contents(const BIO *bio, const uint8_t **out_contents,
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size_t *out_len) {
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if (!bio || bio->method != &mem_method) {
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return 0;
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}
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BIO_BUF_MEM *bbm = (BIO_BUF_MEM *) bio->ptr;
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const BUF_MEM *b = bbm->buf;
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mem_buf_sync((BIO *)bio);
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if (out_contents != NULL) {
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*out_contents = (uint8_t *)b->data;
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}
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if(out_len) {
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*out_len = b->length;
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}
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return 1;
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}
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int BIO_get_mem_ptr(BIO *bio, BUF_MEM **out) {
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return (int)BIO_ctrl(bio, BIO_C_GET_BUF_MEM_PTR, 0, out);
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}
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int BIO_set_mem_buf(BIO *bio, BUF_MEM *b, int take_ownership) {
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return (int)BIO_ctrl(bio, BIO_C_SET_BUF_MEM, take_ownership, b);
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}
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int BIO_set_mem_eof_return(BIO *bio, int eof_value) {
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return (int)BIO_ctrl(bio, BIO_C_SET_BUF_MEM_EOF_RETURN, eof_value, NULL);
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}
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const BIO_METHOD *BIO_s_secmem(void) {
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return BIO_s_mem();
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}
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