Sodium::Kdf keep SecureBuffer in noaccess state except when in use.
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@ -1,6 +1,9 @@
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require "../spec_helper"
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require "../../src/sodium/secure_buffer"
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class FakeError < Exception
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end
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describe Sodium::SecureBuffer do
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it "allocates empty" do
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buf = Sodium::SecureBuffer.new 5
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@ -58,11 +61,22 @@ describe Sodium::SecureBuffer do
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buf.readwrite
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buf.@state.should eq Sodium::SecureBuffer::State::Readwrite
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buf.readonly { }
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buf.@state.should eq Sodium::SecureBuffer::State::Readwrite
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buf.wipe
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buf.@state.should eq Sodium::SecureBuffer::State::Wiped
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end
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it "temporarily transitions correctly with exceptions" do
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buf = Sodium::SecureBuffer.new(5).noaccess
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begin
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buf.readonly { raise FakeError.new }
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rescue FakeError
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end
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buf.@state.should eq Sodium::SecureBuffer::State::Noaccess
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end
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it "can wipe more than once" do
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buf = Sodium::SecureBuffer.new 5
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3.times { buf.wipe }
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@ -11,6 +11,10 @@ module Sodium
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# subkey_id = 0
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# output_size = 16
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# subkey = kdf.derive "8bytectx", subkey_id, output_size
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#
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# Memory for this class is held in a sodium guarded page with noaccess.
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# Readonly access is temporarily enabled when deriving keys.
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# Calling #to_slice marks the page readonly permanently.
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# ```
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class Kdf
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include Wipe
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@ -30,7 +34,7 @@ module Sodium
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raise ArgumentError.new("bytes must be #{KEY_SIZE}, got #{bytes.bytesize}")
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end
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@sbuf = SecureBuffer.new bytes, erase
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@sbuf = SecureBuffer.new(bytes, erase).noaccess
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end
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# Use an existing KDF SecureBuffer key.
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@ -38,14 +42,14 @@ module Sodium
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if @sbuf.bytesize != KEY_SIZE
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raise ArgumentError.new("bytes must be #{KEY_SIZE}, got #{sbuf.bytesize}")
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end
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@sbuf.readonly
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@sbuf.noaccess
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end
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# Generate a new random KDF key.
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#
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# Make sure to save kdf.to_slice before kdf goes out of scope.
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def initialize
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@sbuf = SecureBuffer.random KEY_SIZE
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@sbuf = SecureBuffer.random(KEY_SIZE).noaccess
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end
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# Derive a consistent subkey based on `context` and `subkey_id`.
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@ -62,9 +66,12 @@ module Sodium
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end
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subkey = SecureBuffer.new subkey_size
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if (ret = LibSodium.crypto_kdf_derive_from_key(subkey, subkey.bytesize, subkey_id, context, self.to_slice)) != 0
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raise Sodium::Error.new("crypto_kdf_derive_from_key returned #{ret} (subkey size is probably out of range)")
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@sbuf.readonly do
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if (ret = LibSodium.crypto_kdf_derive_from_key(subkey, subkey.bytesize, subkey_id, context, self.to_slice)) != 0
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raise Sodium::Error.new("crypto_kdf_derive_from_key returned #{ret} (subkey size is probably out of range)")
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end
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end
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subkey
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end
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@ -327,7 +327,11 @@ module Sodium
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true
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end
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def self.memzero(bytes : Bytes)
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def self.memzero(bytes : Bytes) : Nil
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LibSodium.sodium_memzero bytes, bytes.bytesize
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end
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def self.memzero(str : String) : Nil
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memzero str.to_slice
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end
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end
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@ -13,10 +13,10 @@ module Sodium
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end
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enum State
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Readwrite
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Readonly
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Noaccess
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Wiped
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Noaccess
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Readonly
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Readwrite
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end
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@state = State::Readwrite
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@ -154,11 +154,18 @@ module Sodium
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end
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private def with_state(new_state : State)
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old_state = @state
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set_state new_state
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yield
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ensure
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set_state old_state if old_state
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# Only change when new_state needs more access than @state.
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if new_state >= @state
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yield
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else
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begin
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old_state = @state
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set_state new_state
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yield
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ensure
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set_state old_state if old_state
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end
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end
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end
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end
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end
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