212 lines
5.6 KiB
V
212 lines
5.6 KiB
V
// Copyright (c) 2019-2020 Alexander Medvednikov. All rights reserved.
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// Use of this source code is governed by an MIT license
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// that can be found in the LICENSE file.
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module compiler
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import (
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filepath
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os
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v.pref
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)
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pub const (
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v_modules_path = pref.default_module_path
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)
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// Holds import information scoped to the parsed file
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struct ImportTable {
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mut:
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imports map[string]string // alias => module
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used_imports []string // alias
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import_tok_idx map[string]int // module => idx
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}
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// Once we have a module format we can read from module file instead
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// this is not optimal
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fn (table &Table) qualify_module(mod string, file_path string) string {
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for m in table.imports {
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if m.contains('.') && m.contains(mod) {
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m_parts := m.split('.')
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m_path := m_parts.join(os.path_separator)
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if mod == m_parts[m_parts.len - 1] && file_path.contains(m_path) {
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return m
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}
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}
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}
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return mod
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}
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fn new_import_table() ImportTable {
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return ImportTable{
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imports: map[string]string
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}
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}
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fn (p mut Parser) register_import(mod string, tok_idx int) {
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p.register_import_alias(mod, mod, tok_idx)
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}
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fn (p mut Parser) register_import_alias(alias string, mod string, tok_idx int) {
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// NOTE: come back here
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// if alias in it.imports && it.imports[alias] == mod {}
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if alias in p.import_table.imports && p.import_table.imports[alias] != mod {
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p.error('cannot import $mod as $alias: import name $alias already in use')
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}
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if mod.contains('.internal.') && !p.is_vgen {
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mod_parts := mod.split('.')
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mut internal_mod_parts := []string
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for part in mod_parts {
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if part == 'internal' {
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break
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}
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internal_mod_parts << part
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}
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internal_parent := internal_mod_parts.join('.')
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if !p.mod.starts_with(internal_parent) {
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p.error('module $mod can only be imported internally by libs')
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}
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}
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p.import_table.imports[alias] = mod
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p.import_table.import_tok_idx[mod] = tok_idx
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}
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fn (it &ImportTable) get_import_tok_idx(mod string) int {
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return it.import_tok_idx[mod]
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}
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fn (it &ImportTable) known_import(mod string) bool {
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return mod in it.imports || it.is_aliased(mod)
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}
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fn (it &ImportTable) known_alias(alias string) bool {
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return alias in it.imports
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}
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fn (it &ImportTable) is_aliased(mod string) bool {
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for _, val in it.imports {
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if val == mod {
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return true
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}
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}
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return false
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}
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fn (it &ImportTable) resolve_alias(alias string) string {
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return it.imports[alias]
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}
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fn (it mut ImportTable) register_used_import(alias string) {
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if !(alias in it.used_imports) {
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it.used_imports << alias
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}
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}
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fn (it &ImportTable) is_used_import(alias string) bool {
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return alias in it.used_imports
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}
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// should module be accessable
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pub fn (p &Parser) is_mod_in_scope(mod string) bool {
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mut mods_in_scope := ['', 'builtin', 'main', p.mod]
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for _, m in p.import_table.imports {
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mods_in_scope << m
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}
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return mod in mods_in_scope
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}
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// return resolved dep graph (order deps)
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pub fn (v &V) resolve_deps() &DepGraph {
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graph := v.import_graph()
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deps_resolved := graph.resolve()
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if !deps_resolved.acyclic {
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verror('import cycle detected between the following modules: \n' + deps_resolved.display_cycles())
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}
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return deps_resolved
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}
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// graph of all imported modules
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pub fn (v &V) import_graph() &DepGraph {
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mut graph := new_dep_graph()
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for p in v.parsers {
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mut deps := []string
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for _, m in p.import_table.imports {
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deps << m
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}
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graph.add(p.mod, deps)
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}
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return graph
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}
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// get ordered imports (module speficic dag method)
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pub fn (graph &DepGraph) imports() []string {
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mut mods := []string
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for node in graph.nodes {
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mods << node.name
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}
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return mods
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}
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[inline]
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fn (v &V) module_path(mod string) string {
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// submodule support
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return mod.replace('.', os.path_separator)
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}
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// 'strings' => 'VROOT/vlib/strings'
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// 'installed_mod' => '~/.vmodules/installed_mod'
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// 'local_mod' => '/path/to/current/dir/local_mod'
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fn (v mut V) set_module_lookup_paths() {
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mlookup_path := if v.pref.vpath.len > 0 { v.pref.vpath } else { v_modules_path }
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// Module search order:
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// 0) V test files are very commonly located right inside the folder of the
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// module, which they test. Adding the parent folder of the module folder
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// with the _test.v files, *guarantees* that the tested module can be found
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// without needing to set custom options/flags.
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// 1) search in the *same* directory, as the compiled final v program source
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// (i.e. the . in `v .` or file.v in `v file.v`)
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// 2) search in the modules/ in the same directory.
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// 3) search in vlib/
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// 4.1) search in -vpath (if given)
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// 4.2) search in ~/.vmodules/ (i.e. modules installed with vpm) (no -vpath)
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v.module_lookup_paths = []
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if v.pref.is_test {
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v.module_lookup_paths << filepath.basedir(v.compiled_dir) // pdir of _test.v
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}
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v.module_lookup_paths << v.compiled_dir
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v.module_lookup_paths << filepath.join(v.compiled_dir,'modules')
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v.module_lookup_paths << v.pref.vlib_path
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v.module_lookup_paths << mlookup_path
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if v.pref.user_mod_path.len > 0 {
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v.module_lookup_paths << v.pref.user_mod_path
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}
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if v.pref.is_verbose {
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v.log('v.module_lookup_paths: $v.module_lookup_paths')
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}
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}
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fn (v &V) find_module_path(mod string) ?string {
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mod_path := v.module_path(mod)
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for lookup_path in v.module_lookup_paths {
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try_path := filepath.join(lookup_path,mod_path)
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if v.pref.is_verbose {
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println(' >> trying to find $mod in $try_path ...')
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}
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if os.is_dir(try_path) {
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if v.pref.is_verbose {
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println(' << found $try_path .')
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}
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return try_path
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}
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}
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return error('module "$mod" not found')
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}
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[inline]
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fn mod_gen_name(mod string) string {
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return mod.replace('.', '_dot_')
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}
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[inline]
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fn mod_gen_name_rev(mod string) string {
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return mod.replace('_dot_', '.')
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}
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