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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, TBOOX Open Source Group.
--
-- @author ruki, Arthapz
-- @file common.lua
--
-- imports
import("core.base.json")
import("core.base.option")
import("async.runjobs")
import("private.async.buildjobs")
import("core.tool.compiler")
import("core.project.config")
import("core.project.depend")
import("utils.progress")
import("compiler_support")
import("dependency_scanner")
-- build target modules
function _build_modules(target, sourcebatch, modules, opt)
local objectfiles = sourcebatch.objectfiles
for _, objectfile in ipairs(objectfiles) do
local module = modules[objectfile]
if not module then
goto continue
end
local name, _, cppfile = compiler_support.get_provided_module(module)
cppfile = cppfile or module.cppfile
local deps = {}
for _, dep in ipairs(table.keys(module.requires or {})) do
table.insert(deps, opt.batchjobs and target:name() .. dep or dep)
end
opt.build_module(deps, module, name, objectfile, cppfile)
::continue::
end
end
-- build target headerunits
function _build_headerunits(target, headerunits, opt)
local outputdir = compiler_support.headerunits_cachedir(target, {mkdir = true})
if opt.stl_headerunit then
outputdir = path.join(outputdir, "stl")
end
for _, headerunit in ipairs(headerunits) do
local outputdir = outputdir
if opt.stl_headerunit and headerunit.name:startswith("experimental/") then
outputdir = path.join(outputdir, "experimental")
end
local bmifile = path.join(outputdir, path.filename(headerunit.name) .. compiler_support.get_bmi_extension(target))
local key = path.normalize(headerunit.path)
local build = should_build(target, headerunit.path, bmifile, {key = key, headerunit = true})
if build then
mark_build(target, key)
end
opt.build_headerunit(headerunit, key, bmifile, outputdir, build)
end
end
-- check if flags are compatible for module reuse
function _are_flags_compatible(target, other, cppfile)
local compinst1 = target:compiler("cxx")
local flags1 = compinst1:compflags({sourcefile = cppfile, target = target})
local compinst2 = other:compiler("cxx")
local flags2 = compinst2:compflags({sourcefile = cppfile, target = other})
-- strip unrelevent flags
flags1 = compiler_support.strip_flags(target, flags1)
flags2 = compiler_support.strip_flags(target, flags2)
if #flags1 ~= #flags2 then
return false
end
table.sort(flags1)
table.sort(flags2)
for i = 1, #flags1 do
if flags1[i] ~= flags2[i] then
return false
end
end
return true
end
-- try to reuse modules from other target
function _try_reuse_modules(target, modules)
for _, module in pairs(modules) do
local name, provide, cppfile = compiler_support.get_provided_module(module)
if not provide then
goto continue
end
cppfile = cppfile or module.cppfile
local fileconfig = target:fileconfig(cppfile)
local public = fileconfig and (fileconfig.public or fileconfig.external)
if not public then
goto continue
end
for _, dep in ipairs(target:orderdeps()) do
if not _are_flags_compatible(target, dep, cppfile) then
goto nextdep
end
local mapped = get_from_target_mapper(dep, name)
if mapped then
compiler_support.memcache():set2(target:name() .. name, "reuse", true)
add_module_to_target_mapper(target, mapped.name, mapped.sourcefile, mapped.bmi, table.join(mapped.opt or {}, {target = dep}))
break
end
::nextdep::
end
::continue::
end
return modules
end
-- should we build this module or headerunit ?
function should_build(target, sourcefile, bmifile, opt)
opt = opt or {}
local objectfile = opt.objectfile
local compinst = compiler.load("cxx", {target = target})
local compflags = compinst:compflags({sourcefile = sourcefile, target = target})
local dependfile = target:dependfile(bmifile or objectfile)
local dependinfo = target:is_rebuilt() and {} or (depend.load(dependfile) or {})
local depvalues = {compinst:program(), compflags}
-- force rebuild a module if any of its module dependency is rebuilt
local requires = opt.requires
if requires then
for required, _ in table.orderpairs(requires) do
local m = get_from_target_mapper(target, required)
if m then
local rebuild = (m.opt and m.opt.target) and compiler_support.memcache():get2("should_build_in_" .. m.opt.target:name(), m.key)
or compiler_support.memcache():get2("should_build_in_" .. target:name(), m.key)
if rebuild then
dependinfo.files = {}
table.insert(dependinfo.files, sourcefile)
dependinfo.values = depvalues
return true, dependinfo
end
end
end
end
-- reused
if opt.name then
local m = get_from_target_mapper(target, opt.name)
if m and m.opt and m.opt.target then
local rebuild = compiler_support.memcache():get2("should_build_in_" .. m.opt.target:name(), m.key)
if rebuild then
dependinfo.files = {}
table.insert(dependinfo.files, sourcefile)
dependinfo.values = depvalues
end
return rebuild, dependinfo
end
end
-- need build this object?
local dryrun = option.get("dry-run")
local lastmtime = os.isfile(bmifile or objectfile) and os.mtime(dependfile) or 0
if dryrun or depend.is_changed(dependinfo, {lastmtime = lastmtime, values = depvalues}) then
dependinfo.files = {}
table.insert(dependinfo.files, sourcefile)
dependinfo.values = depvalues
return true, dependinfo
end
return false
end
-- generate meta module informations for package / other buildsystems import
--
-- e.g
-- {
-- "defines": ["FOO=BAR"]
-- "imports": ["std", "bar"]
-- "name": "foo"
-- "file": "foo.cppm"
-- }
function _generate_meta_module_info(target, name, sourcefile, requires)
local modulehash = compiler_support.get_modulehash(target, sourcefile)
local module_metadata = {name = name, file = path.join(modulehash, path.filename(sourcefile))}
-- add definitions
module_metadata.defines = _builder(target).get_module_required_defines(target, sourcefile)
-- add imports
if requires then
for _name, _ in table.orderpairs(requires) do
module_metadata.imports = module_metadata.imports or {}
table.append(module_metadata.imports, _name)
end
end
return module_metadata
end
function _target_module_map_cachekey(target)
local mode = config.mode()
return target:name() .. "module_mapper" .. (mode or "")
end
function _is_duplicated_headerunit(target, key)
local _, mapper_keys = get_target_module_mapper(target)
return mapper_keys[key]
end
function _builder(target)
local cachekey = tostring(target)
local builder = compiler_support.memcache():get2("builder", cachekey)
if builder == nil then
if target:has_tool("cxx", "clang", "clangxx") then
builder = import("clang.builder", {anonymous = true})
elseif target:has_tool("cxx", "gcc", "gxx") then
builder = import("gcc.builder", {anonymous = true})
elseif target:has_tool("cxx", "cl") then
builder = import("msvc.builder", {anonymous = true})
else
local _, toolname = target:tool("cxx")
raise("compiler(%s): does not support c++ module!", toolname)
end
compiler_support.memcache():set2("builder", cachekey, builder)
end
return builder
end
function mark_build(target, name)
compiler_support.memcache():set2("should_build_in_" .. target:name(), name, true)
end
-- build batchjobs for modules
function build_batchjobs_for_modules(modules, batchjobs, rootjob)
return buildjobs(modules, batchjobs, rootjob)
end
-- build modules for batchjobs
function build_modules_for_batchjobs(target, batchjobs, sourcebatch, modules, opt)
opt.rootjob = batchjobs:group_leave() or opt.rootjob
batchjobs:group_enter(target:name() .. "/build_modules", {rootjob = opt.rootjob})
-- add populate module job
local modulesjobs = {}
local populate_jobname = target:name() .. "_populate_module_map"
modulesjobs[populate_jobname] = {
name = populate_jobname,
job = batchjobs:newjob(populate_jobname, function(_, _)
_try_reuse_modules(target, modules)
_builder(target).populate_module_map(target, modules)
end)
}
-- add module jobs
_build_modules(target, sourcebatch, modules, table.join(opt, {
build_module = function(deps, module, name, objectfile, cppfile)
local job_name = name and target:name() .. name or cppfile
modulesjobs[job_name] = _builder(target).make_module_buildjobs(target, batchjobs, job_name, deps,
{module = module, objectfile = objectfile, cppfile = cppfile})
end
}))
-- build batchjobs for modules
build_batchjobs_for_modules(modulesjobs, batchjobs, opt.rootjob)
end
-- build modules for batchcmds
function build_modules_for_batchcmds(target, batchcmds, sourcebatch, modules, opt)
local depmtime = 0
opt.progress = opt.progress or 0
_try_reuse_modules(target, modules)
_builder(target).populate_module_map(target, modules)
-- build modules
_build_modules(target, sourcebatch, modules, table.join(opt, {
build_module = function(_, module, _, objectfile, cppfile)
depmtime = math.max(depmtime, _builder(target).make_module_buildcmds(target, batchcmds, {module = module, cppfile = cppfile, objectfile = objectfile, progress = opt.progress}))
end
}))
batchcmds:set_depmtime(depmtime)
end
-- generate headerunits for batchjobs
function build_headerunits_for_batchjobs(target, batchjobs, sourcebatch, modules, opt)
local user_headerunits, stl_headerunits = dependency_scanner.get_headerunits(target, sourcebatch, modules)
if not user_headerunits and not stl_headerunits then
return
end
-- we need new group(headerunits)
-- e.g. group(build_modules) -> group(headerunits)
opt.rootjob = batchjobs:group_leave() or opt.rootjob
batchjobs:group_enter(target:name() .. "/build_headerunits", {rootjob = opt.rootjob})
local build_headerunits = function(headerunits)
local modulesjobs = {}
_build_headerunits(target, headerunits, table.join(opt, {
build_headerunit = function(headerunit, key, bmifile, outputdir, build)
local job_name = target:name() .. key
local job = _builder(target).make_headerunit_buildjobs(target, job_name, batchjobs, headerunit, bmifile, outputdir, table.join(opt, {build = build}))
if job then
modulesjobs[job_name] = job
end
end
}))
build_batchjobs_for_modules(modulesjobs, batchjobs, opt.rootjob)
end
-- build stl header units first as other headerunits may need them
if stl_headerunits then
opt.stl_headerunit = true
build_headerunits(stl_headerunits)
end
if user_headerunits then
opt.stl_headerunit = false
build_headerunits(user_headerunits)
end
end
-- generate headerunits for batchcmds
function build_headerunits_for_batchcmds(target, batchcmds, sourcebatch, modules, opt)
local user_headerunits, stl_headerunits = dependency_scanner.get_headerunits(target, sourcebatch, modules)
if not user_headerunits and not stl_headerunits then
return
end
local build_headerunits = function(headerunits)
local depmtime = 0
_build_headerunits(target, headerunits, table.join(opt, {
build_headerunit = function(headerunit, _, bmifile, outputdir, build)
depmtime = math.max(depmtime, _builder(target).make_headerunit_buildcmds(target, batchcmds, headerunit, bmifile, outputdir, table.join({build = build}, opt)))
end
}))
batchcmds:set_depmtime(depmtime)
end
-- build stl header units first as other headerunits may need them
if stl_headerunits then
opt.stl_headerunit = true
build_headerunits(stl_headerunits)
end
if user_headerunits then
opt.stl_headerunit = false
build_headerunits(user_headerunits)
end
end
function generate_metadata(target, modules)
local public_modules
for _, module in table.orderpairs(modules) do
local _, _, cppfile = compiler_support.get_provided_module(module)
local fileconfig = target:fileconfig(cppfile)
local public = fileconfig and fileconfig.public
if public then
public_modules = public_modules or {}
table.insert(public_modules, module)
end
end
if not public_modules then
return
end
local jobs = option.get("jobs") or os.default_njob()
runjobs(target:name() .. "_install_modules", function(index, total, jobopt)
local module = public_modules[index]
local name, _, cppfile = compiler_support.get_provided_module(module)
local metafilepath = compiler_support.get_metafile(target, cppfile)
progress.show(jobopt.progress, "${color.build.target}<%s> generating.module.metadata %s", target:name(), name)
local metadata = _generate_meta_module_info(target, name, cppfile, module.requires)
json.savefile(metafilepath, metadata)
end, {comax = jobs, total = #public_modules})
end
-- flush target module mapper keys
function flush_target_module_mapper_keys(target)
local memcache = compiler_support.memcache()
memcache:set2(target:name(), "module_mapper_keys", nil)
end
-- get or create a target module mapper
function get_target_module_mapper(target)
local memcache = compiler_support.memcache()
local mapper = memcache:get2(target:name(), "module_mapper")
if not mapper then
mapper = {}
memcache:set2(target:name(), "module_mapper", mapper)
end
-- we generate the keys map to optimise the efficiency of _is_duplicated_headerunit
local mapper_keys = memcache:get2(target:name(), "module_mapper_keys")
if not mapper_keys then
mapper_keys = {}
for _, item in pairs(mapper) do
if item.key then
mapper_keys[item.key] = item
end
end
memcache:set2(target:name(), "module_mapper_keys", mapper_keys)
end
return mapper, mapper_keys
end
-- get a module or headerunit from target mapper
function get_from_target_mapper(target, name)
local mapper = get_target_module_mapper(target)
if mapper[name] then
return mapper[name]
end
end
-- add a module to target mapper
function add_module_to_target_mapper(target, name, sourcefile, bmifile, opt)
local mapper = get_target_module_mapper(target)
if not mapper[name] then
mapper[name] = {name = name, key = name, bmi = bmifile, sourcefile = sourcefile, opt = opt}
end
flush_target_module_mapper_keys(target)
end
-- add a headerunit to target mapper
function add_headerunit_to_target_mapper(target, headerunit, bmifile)
local mapper = get_target_module_mapper(target)
local key = hash.uuid(path.normalize(headerunit.path))
local deduplicated = _is_duplicated_headerunit(target, key)
if deduplicated then
mapper[headerunit.name] = {name = headerunit.name, key = key, aliasof = deduplicated.name, headerunit = headerunit}
else
mapper[headerunit.name] = {name = headerunit.name, key = key, headerunit = headerunit, bmi = bmifile}
end
flush_target_module_mapper_keys(target)
return deduplicated and true or false
end
|