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4 commits

Author SHA1 Message Date
Dave Collins
9cdc1b8afd
blockchain: Remove isMajorityVersion code.
Now that all softforking is done via BIP0009 versionbits, replace the
old isMajorityVersion deployment mechanism with hard coded historical
block heights at which they became active.

Since the activation heights vary per network, this adds new parameters
to the chaincfg.Params struct for them and sets the correct heights at
which each softfork became active on each chain.

It should be noted that this is a technically hard fork since the
behavior of alternate chain history is different with these hard-coded
activation heights as opposed to the old isMajorityVersion code.  In
particular, an alternate chain history could activate one of the soft
forks earlier than these hard-coded heights which means the old code
would reject blocks which violate the new soft fork rules whereas this
new code would not.

However, all of the soft forks this refers to were activated so far in
the chain history there is there is no way a reorg that long could
happen and checkpoints reject alternate chains before the most recent
checkpoint anyways.  Furthermore, the same change was made in Bitcoin
Core so this needs to be changed to be consistent anyways.
2016-11-30 14:26:13 -06:00
Dave Collins
f6ad7eb2c9
wire: Make NewMsgTx accept the tx version.
This modifies the NewMsgTx function to accept the transaction version as
a parameter and updates all callers.

The reason for this change is so the transaction version can be bumped
in wire without breaking existing tests and to provide the caller with
the flexibility to create the specific transaction version they desire.
2016-10-27 14:09:29 -05:00
Dave Collins
9634a8cb0d
fullblocktests: Add missing doc.go file. 2016-10-23 13:31:26 -05:00
Dave Collins
f21410e47c
blockchain: Add block validation infrastructure.
This adds a full-blown testing infrastructure in order to test consensus
validation rules.  It is built around the idea of dynamically generating
full blocks that target specific rules linked together to form a block
chain.  In order to properly test the rules, each test instance starts
with a valid block that is then modified in the specific way needed to
test a specific rule.

Blocks which exercise following rules have been added for this initial
version.  These tests were largely ported from the original Java-based
'official' block acceptance tests as well as some additional tests
available in the Core python port.  It is expected that further tests
can be added over time as consensus rules change.

* Enough valid blocks to have a stable base of mature coinbases to spend
  for futher tests
* Basic forking and chain reorganization
* Double spends on forks
* Too much proof-of-work coinbase (extending main chain, in block that
  forces a reorg, and in a valid fork)
* Max and too many signature operations via various combinations of
  OP_CHECKSIG, OP_MULTISIG, OP_CHECKSIGVERIFY, and OP_MULTISIGVERIFY
* Too many and max signature operations with offending sigop after
  invalid data push
* Max and too many signature operations via pay-to-script-hash redeem
  scripts
* Attempt to spend tx created on a different fork
* Attempt to spend immature coinbase (on main chain and fork)
* Max size block and block that exceeds the max size
* Children of rejected blocks are either orphans or rejected
* Coinbase script too small and too large
* Max length coinbase script
* Attempt to spend tx in blocks that failed to connect
* Valid non-coinbase tx in place of coinbase
* Block with no transactions
* Invalid proof-of-work
* Block with a timestamp too far in the future
* Invalid merkle root
* Invalid proof-of-work limit (bits header field)
* Negative proof-of-work limit (bits header field)
* Two coinbase transactions
* Duplicate transactions
* Spend from transaction that does not exist
* Timestamp exactly at and one second after the median time
* Blocks with same hash via merkle root tricks
* Spend from transaction index that is out of range
* Transaction that spends more that its inputs provide
* Transaction with same hash as an existing tx that has not been
  fully spent (BIP0030)
* Non-final coinbase and non-coinbase txns
* Max size block with canonical encoding which exceeds max size with
  non-canonical encoding
* Spend from transaction earlier in same block
* Spend from transaction later in same block
* Double spend transaction from earlier in same block
* Coinbase that pays more than subsidy + fees
* Coinbase that includes subsidy + fees
* Invalid opcode in dead execution path
* Reorganization of txns with OP_RETURN outputs
* Spend of an OP_RETURN output
* Transaction with multiple OP_RETURN outputs
* Large max-sized block reorganization test (disabled by default since
  it takes a long time and a lot of memory to run)

Finally, the README.md files in the main and docs directories have been
updated to reflect the use of the new testing framework.
2016-10-17 12:16:53 -05:00