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|
--!A cross-platform build utility based on Lua
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
--
-- Copyright (C) 2015-present, Xmake Open Source Community.
--
-- @author ruki
-- @file stream.lua
--
-- imports
import("core.base.bit")
import("core.base.object")
import("core.base.socket")
import("core.base.bytes")
import("core.compress.lz4")
import("private.service.message")
-- define module
local stream = stream or object()
-- max data buffer size
local STREAM_DATA_MAXN = 10 * 1024 * 1024
-- the header flags
local HEADER_FLAG_COMPRESS_LZ4 = 1
-- init stream
function stream:init(sock, opt)
opt = opt or {}
self._SOCK = sock
self._BUFF = bytes(65536)
self._RCACHE = bytes(8192)
self._RCACHE_SIZE = 0
self._WCACHE = bytes(8192)
self._WCACHE_SIZE = 0
self._SEND_TIMEOUT = opt.send_timeout and opt.send_timeout or -1
self._RECV_TIMEOUT = opt.recv_timeout and opt.recv_timeout or -1
end
-- get socket
function stream:sock()
return self._SOCK
end
-- get send timeout
function stream:send_timeout()
return self._SEND_TIMEOUT
end
-- get send timeout
function stream:recv_timeout()
return self._RECV_TIMEOUT
end
-- flush data
function stream:flush(opt)
opt = opt or {}
local cache = self._WCACHE
local cache_size = self._WCACHE_SIZE
if cache_size > 0 then
local sock = self._SOCK
local real = sock:send(cache, {block = true, last = cache_size, timeout = opt.timeout or self:send_timeout()})
if real > 0 then
self._WCACHE_SIZE = 0
return true
end
else
return true
end
end
-- send the given bytes (small data)
function stream:send(data, start, last, opt)
opt = opt or {}
start = start or 1
last = last or data:size()
local size = last + 1 - start
assert(size <= data:size())
-- write data to cache first
local cache = self._WCACHE
local cache_size = self._WCACHE_SIZE
local cache_maxn = cache:size()
local cache_left = cache_maxn - cache_size
if size <= cache_left then
cache:copy2(cache_size + 1, data, start, last)
cache_size = cache_size + size
self._WCACHE_SIZE = cache_size
return true
elseif cache_left > 0 then
cache:copy2(cache_size + 1, data, start, start + cache_left - 1)
cache_size = cache_size + cache_left
start = start + cache_left
size = last + 1 - start
end
assert(cache_size == cache_maxn)
-- send data to socket
local sock = self._SOCK
local real = sock:send(cache, {block = true, timeout = opt.timeout or self:send_timeout()})
if real > 0 then
-- copy left data to cache
assert(size <= cache_maxn)
cache:copy2(1, data, start, last)
self._WCACHE_SIZE = size
return true
end
end
-- send message
function stream:send_msg(msg, opt)
return self:send_object(msg:body(), opt)
end
-- send object
function stream:send_object(obj, opt)
local str, errors = string.serialize(obj, {strip = true, indent = false})
if errors then
raise(errors)
end
if str then
return self:send_string(str, opt)
end
end
-- send data header
function stream:send_header(size, flags, opt)
local buff = self._BUFF
buff:u32be_set(1, size)
buff:u8_set(5, flags or 0)
return self:send(buff, 1, 5, opt)
end
-- send data
function stream:send_data(data, opt)
opt = opt or {}
local flags = 0
if opt.compress then
flags = bit.bor(flags, HEADER_FLAG_COMPRESS_LZ4)
data = lz4.compress(data)
end
local size = data:size()
assert(size < STREAM_DATA_MAXN, "too large data size(%d)", size)
if self:send_header(size, flags, opt) then
local send = 0
local cache = self._WCACHE
local cache_maxn = cache:size()
while send < size do
local left = math.min(cache_maxn, size - send)
if self:send(data, send + 1, send + left, opt) then
send = send + left
else
break
end
end
if send == size then
return true
end
end
end
-- send string
function stream:send_string(str, opt)
return self:send_data(bytes(str), opt)
end
-- send empty data
function stream:send_emptydata(opt)
return self:send_header(0, opt)
end
-- send file
function stream:send_file(filepath, opt)
-- send header
opt = opt or {}
local flags = 0
local tmpfile
local originsize = os.filesize(filepath)
if opt.compress and originsize > 0 then
flags = bit.bor(flags, HEADER_FLAG_COMPRESS_LZ4)
tmpfile = os.tmpfile()
lz4.compress_file(filepath, tmpfile)
filepath = tmpfile
end
-- send header
local size = os.filesize(filepath)
if not self:send_header(size, flags) then
return
end
-- empty file?
if size == 0 then
return 0, 0
end
-- flush cache data first
if not self:flush() then
return
end
-- send file
local ok = false
local sock = self._SOCK
local file = io.open(filepath, 'rb')
if file then
local send = sock:sendfile(file, {block = true, timeout = opt.timeout or self:send_timeout()})
if send > 0 then
ok = true
end
file:close()
end
if tmpfile then
os.tryrm(tmpfile)
end
if ok then
return originsize, size
end
end
-- send files
function stream:send_files(filepaths, opt)
local size
local compressed_size
for _, filepath in ipairs(filepaths) do
local real, compressed_real = self:send_file(filepath, opt)
if real then
size = (size or 0) + real
compressed_size = (compressed_size or 0) + compressed_real
else
return
end
end
return size, compressed_size
end
-- recv the given bytes
function stream:recv(buff, size, opt)
opt = opt or {}
assert(size <= buff:size(), "too large size(%d)", size)
-- read data from cache first
local buffsize = 0
local cache = self._RCACHE
local cache_size = self._RCACHE_SIZE
local cache_maxn = cache:size()
if size <= cache_size then
buff:copy(cache, 1, size)
cache:move(size + 1, cache_size)
cache_size = cache_size - size
self._RCACHE_SIZE = cache_size
return buff:slice(1, size)
elseif cache_size > 0 then
buff:copy(cache, 1, cache_size)
buffsize = cache_size
cache_size = 0
end
assert(cache_size == 0)
-- recv data from socket
local real = 0
local data = nil
local wait = false
local sock = self._SOCK
while buffsize < size do
real, data = sock:recv(cache)
if real > 0 then
-- append data to buffer
local leftsize = size - buffsize
if real < leftsize then
buff:copy2(buffsize + 1, data)
buffsize = buffsize + real
else
buff:copy2(buffsize + 1, data, 1, leftsize)
buffsize = buffsize + leftsize
-- move left cache to head
cache_size = real - leftsize
if cache_size > 0 then
cache:move(leftsize + 1, real)
end
self._RCACHE_SIZE = cache_size
return buff:slice(1, buffsize)
end
wait = false
elseif real == 0 and not wait then
local ok = sock:wait(socket.EV_RECV, opt.timeout or self:recv_timeout())
if ok == socket.EV_RECV then
wait = true
else
assert(ok ~= 0, "%s: recv timeout!", self)
break
end
else
break
end
end
end
-- recv message
function stream:recv_msg(opt)
local body = self:recv_object(opt)
if body then
return message(body)
end
end
-- recv object
function stream:recv_object(opt)
local str = self:recv_string(opt)
if str then
local obj, errors = str:deserialize()
if errors then
raise(errors)
end
return obj
end
end
-- recv header
function stream:recv_header(opt)
local data = self:recv(self._BUFF, 5, opt)
if data then
local size = data:u32be(1)
local flags = data:u8(5)
return size, flags
end
end
-- recv data
function stream:recv_data(opt)
local size, flags = self:recv_header(opt)
if size then
local recv = 0
assert(size < STREAM_DATA_MAXN, "too large data size(%d)", size)
local buff = bytes(size)
while recv < size do
local data = self:recv(buff:slice(recv + 1), size - recv, opt)
if data then
recv = recv + data:size()
else
break
end
end
if recv == size then
if bit.band(flags, HEADER_FLAG_COMPRESS_LZ4) == HEADER_FLAG_COMPRESS_LZ4 then
buff = lz4.decompress(buff)
end
return buff
end
end
end
-- recv string
function stream:recv_string(opt)
local data = self:recv_data(opt)
if data then
return data:str()
end
end
-- recv file
function stream:recv_file(filepath, opt)
local size, flags = self:recv_header(opt)
if size then
-- empty file? we just create an empty file
if size == 0 then
local file = io.open(filepath, "wb")
file:close()
return size
end
local result
local tmpfile = os.tmpfile({ramdisk = false})
if bit.band(flags, HEADER_FLAG_COMPRESS_LZ4) == HEADER_FLAG_COMPRESS_LZ4 then
result = self:_recv_compressed_file(lz4.decompress_stream(), tmpfile, size, opt)
else
local buff = self._BUFF
local recv = 0
local file = io.open(tmpfile, "wb")
while recv < size do
local data = self:recv(buff, math.min(buff:size(), size - recv), opt)
if data then
file:write(data)
recv = recv + data:size()
end
end
file:close()
if recv == size then
result = recv
end
end
if result then
os.cp(tmpfile, filepath)
end
os.tryrm(tmpfile)
return result
end
end
-- recv files
function stream:recv_files(filepaths, opt)
local size, decompressed_size
for _, filepath in ipairs(filepaths) do
local real, decompressed_real = self:recv_file(filepath, opt)
if real then
size = (size or 0) + real
decompressed_size = (decompressed_size or 0) + decompressed_real
else
return
end
end
return size, decompressed_size
end
-- recv compressed file
function stream:_recv_compressed_file(lz4_stream, filepath, size, opt)
local buff = self._BUFF
local recv = 0
local file = io.open(filepath, "wb")
local decompressed_size = 0
while recv < size do
local data = self:recv(buff, math.min(buff:size(), size - recv), opt)
if data then
local write = 0
local writesize = data:size()
while write < writesize do
local blocksize = math.min(writesize - write, 8192)
local real = lz4_stream:write(data, {start = write + 1, last = write + blocksize})
if real > 0 then
while true do
local decompressed_real, decompressed_data = lz4_stream:read(buff, 8192)
if decompressed_real > 0 and decompressed_data then
file:write(decompressed_data)
decompressed_size = decompressed_size + decompressed_real
else
break
end
end
end
write = write + blocksize
end
recv = recv + data:size()
end
end
file:close()
if recv == size then
return recv, decompressed_size
end
end
function stream:__tostring()
return string.format("<stream: %s>", self:sock())
end
function main(sock, opt)
local instance = stream()
instance:init(sock, opt)
return instance
end
|