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When we open a monitor session, we send an initial AUTH message listing the auth protocols we support, our entity name, and (possibly) a previously assigned global_id. The monitor chooses a protocol and responds with an initial message. Initially implement AUTH_NONE, a dummy protocol that provides no security, but works within the new framework. It generates 'authorizers' that are used when connecting to (mds, osd) services that simply state our entity name and global_id. This is a wire protocol change. Signed-off-by: Sage Weil <sage@newdream.net>
160 lines
3.3 KiB
C
160 lines
3.3 KiB
C
#ifndef __CEPH_DECODE_H
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#define __CEPH_DECODE_H
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#include <asm/unaligned.h>
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#include "types.h"
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/*
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* in all cases,
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* void **p pointer to position pointer
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* void *end pointer to end of buffer (last byte + 1)
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*/
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static inline u64 ceph_decode_64(void **p)
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{
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u64 v = get_unaligned_le64(*p);
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*p += sizeof(u64);
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return v;
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}
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static inline u32 ceph_decode_32(void **p)
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{
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u32 v = get_unaligned_le32(*p);
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*p += sizeof(u32);
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return v;
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}
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static inline u16 ceph_decode_16(void **p)
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{
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u16 v = get_unaligned_le16(*p);
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*p += sizeof(u16);
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return v;
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}
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static inline u8 ceph_decode_8(void **p)
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{
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u8 v = *(u8 *)*p;
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(*p)++;
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return v;
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}
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static inline void ceph_decode_copy(void **p, void *pv, size_t n)
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{
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memcpy(pv, *p, n);
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*p += n;
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}
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/*
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* bounds check input.
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*/
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#define ceph_decode_need(p, end, n, bad) \
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do { \
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if (unlikely(*(p) + (n) > (end))) \
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goto bad; \
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} while (0)
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#define ceph_decode_64_safe(p, end, v, bad) \
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do { \
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ceph_decode_need(p, end, sizeof(u64), bad); \
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v = ceph_decode_64(p); \
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} while (0)
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#define ceph_decode_32_safe(p, end, v, bad) \
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do { \
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ceph_decode_need(p, end, sizeof(u32), bad); \
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v = ceph_decode_32(p); \
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} while (0)
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#define ceph_decode_16_safe(p, end, v, bad) \
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do { \
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ceph_decode_need(p, end, sizeof(u16), bad); \
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v = ceph_decode_16(p); \
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} while (0)
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#define ceph_decode_copy_safe(p, end, pv, n, bad) \
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do { \
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ceph_decode_need(p, end, n, bad); \
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ceph_decode_copy(p, pv, n); \
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} while (0)
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/*
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* struct ceph_timespec <-> struct timespec
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*/
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static inline void ceph_decode_timespec(struct timespec *ts,
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const struct ceph_timespec *tv)
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{
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ts->tv_sec = le32_to_cpu(tv->tv_sec);
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ts->tv_nsec = le32_to_cpu(tv->tv_nsec);
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}
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static inline void ceph_encode_timespec(struct ceph_timespec *tv,
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const struct timespec *ts)
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{
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tv->tv_sec = cpu_to_le32(ts->tv_sec);
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tv->tv_nsec = cpu_to_le32(ts->tv_nsec);
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}
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/*
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* sockaddr_storage <-> ceph_sockaddr
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*/
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static inline void ceph_encode_addr(struct ceph_entity_addr *a)
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{
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a->in_addr.ss_family = htons(a->in_addr.ss_family);
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}
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static inline void ceph_decode_addr(struct ceph_entity_addr *a)
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{
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a->in_addr.ss_family = ntohs(a->in_addr.ss_family);
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WARN_ON(a->in_addr.ss_family == 512);
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}
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/*
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* encoders
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*/
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static inline void ceph_encode_64(void **p, u64 v)
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{
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put_unaligned_le64(v, (__le64 *)*p);
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*p += sizeof(u64);
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}
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static inline void ceph_encode_32(void **p, u32 v)
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{
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put_unaligned_le32(v, (__le32 *)*p);
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*p += sizeof(u32);
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}
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static inline void ceph_encode_16(void **p, u16 v)
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{
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put_unaligned_le16(v, (__le16 *)*p);
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*p += sizeof(u16);
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}
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static inline void ceph_encode_8(void **p, u8 v)
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{
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*(u8 *)*p = v;
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(*p)++;
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}
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static inline void ceph_encode_copy(void **p, const void *s, int len)
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{
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memcpy(*p, s, len);
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*p += len;
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}
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/*
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* filepath, string encoders
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*/
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static inline void ceph_encode_filepath(void **p, void *end,
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u64 ino, const char *path)
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{
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u32 len = path ? strlen(path) : 0;
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BUG_ON(*p + sizeof(ino) + sizeof(len) + len > end);
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ceph_encode_64(p, ino);
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ceph_encode_32(p, len);
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if (len)
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memcpy(*p, path, len);
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*p += len;
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}
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static inline void ceph_encode_string(void **p, void *end,
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const char *s, u32 len)
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{
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BUG_ON(*p + sizeof(len) + len > end);
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ceph_encode_32(p, len);
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if (len)
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memcpy(*p, s, len);
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*p += len;
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}
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#endif
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