doxygen documentation for checkpoints.{h,cpp}
All functions in src/cryptonote_core/checkpoints.h are now documented in doxygen style. checkpoints.cpp has been reviewed, one function has been marked for discussion on correctness.
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@ -84,10 +84,7 @@ namespace cryptonote
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return check_block(height, h, ignored);
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return check_block(height, h, ignored);
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}
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}
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//---------------------------------------------------------------------------
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//---------------------------------------------------------------------------
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// this basically says if the blockchain is smaller than the first
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//FIXME: is this the desired behavior?
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// checkpoint then alternate blocks are allowed. Alternatively, if the
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// last checkpoint *before* the end of the current chain is also before
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// the block to be added, then this is fine.
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bool checkpoints::is_alternative_block_allowed(uint64_t blockchain_height, uint64_t block_height) const
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bool checkpoints::is_alternative_block_allowed(uint64_t blockchain_height, uint64_t block_height) const
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{
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{
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if (0 == block_height)
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if (0 == block_height)
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@ -36,19 +36,115 @@
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namespace cryptonote
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namespace cryptonote
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{
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{
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/**
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* @brief A container for blockchain checkpoints
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*
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* A checkpoint is a pre-defined hash for the block at a given height.
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* Some of these are compiled-in, while others can be loaded at runtime
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* either from a json file or via DNS from a checkpoint-hosting server.
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*/
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class checkpoints
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class checkpoints
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{
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{
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public:
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public:
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/**
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* @brief default constructor
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*/
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checkpoints();
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checkpoints();
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/**
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* @brief adds a checkpoint to the container
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*
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* @param height the height of the block the checkpoint is for
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* @param hash_str the hash of the block, as a string
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*
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* @return false if parsing the hash fails, or if the height is a duplicate
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* AND the existing checkpoint hash does not match the new one,
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* otherwise returns true
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*/
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bool add_checkpoint(uint64_t height, const std::string& hash_str);
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bool add_checkpoint(uint64_t height, const std::string& hash_str);
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/**
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* @brief checks if there is a checkpoint in the future
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*
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* This function checks if the height passed is lower than the highest
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* checkpoint.
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*
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* @param height the height to check against
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*
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* @return false if no checkpoints, otherwise returns whether or not
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* the height passed is lower than the highest checkpoint.
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*/
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bool is_in_checkpoint_zone(uint64_t height) const;
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bool is_in_checkpoint_zone(uint64_t height) const;
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bool check_block(uint64_t height, const crypto::hash& h) const;
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/**
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* @brief checks if the given height and hash agree with the checkpoints
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*
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* This function checks if the given height and hash exist in the
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* checkpoints container. If so, it returns whether or not the passed
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* parameters match the stored values.
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*
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* @param height the height to be checked
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* @param h the hash to be checked
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* @param is_a_checkpoint return-by-reference if there is a checkpoint at the given height
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*
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* @return true if there is no checkpoint at the given height,
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* true if the passed parameters match the stored checkpoint,
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* false otherwise
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*/
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bool check_block(uint64_t height, const crypto::hash& h, bool& is_a_checkpoint) const;
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bool check_block(uint64_t height, const crypto::hash& h, bool& is_a_checkpoint) const;
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/**
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* @overload
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*/
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bool check_block(uint64_t height, const crypto::hash& h) const;
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/**
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* @brief checks if alternate chain blocks should be kept for a given height
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*
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* this basically says if the blockchain is smaller than the first
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* checkpoint then alternate blocks are allowed. Alternatively, if the
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* last checkpoint *before* the end of the current chain is also before
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* the block to be added, then this is fine.
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*
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* @param blockchain_height the current blockchain height
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* @param block_height the height of the block to be added as alternate
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*
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* @return true if alternate blocks are allowed given the parameters,
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* otherwise false
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*/
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bool is_alternative_block_allowed(uint64_t blockchain_height, uint64_t block_height) const;
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bool is_alternative_block_allowed(uint64_t blockchain_height, uint64_t block_height) const;
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/**
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* @brief gets the highest checkpoint height
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*
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* @return the height of the highest checkpoint
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*/
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uint64_t get_max_height() const;
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uint64_t get_max_height() const;
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/**
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* @brief gets the checkpoints container
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*
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* @return a const reference to the checkpoints container
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*/
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const std::map<uint64_t, crypto::hash>& get_points() const;
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const std::map<uint64_t, crypto::hash>& get_points() const;
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/**
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* @brief checks if our checkpoints container conflicts with another
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*
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* A conflict refers to a case where both checkpoint sets have a checkpoint
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* for a specific height but their hashes for that height do not match.
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*
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* @param other the other checkpoints instance to check against
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*
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* @return false if any conflict is found, otherwise true
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*/
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bool check_for_conflicts(const checkpoints& other) const;
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bool check_for_conflicts(const checkpoints& other) const;
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private:
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private:
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std::map<uint64_t, crypto::hash> m_points;
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std::map<uint64_t, crypto::hash> m_points; //!< the checkpoints container
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};
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};
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}
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}
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