mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-04-27 22:07:58 +00:00
c0c8d6305f
* Fixup some wrong dependencies Dev dependencies should not appear in the feature list. If features are required, they should be directly enabled for the `dev-dependency`. * More fixups * Fix fix * Remove deprecated feature * Make all work properly and nice!! * FMT * Fix formatting
902 lines
29 KiB
Rust
902 lines
29 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) 2019-2022 Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: Apache-2.0
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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use crate::{write_file_if_changed, CargoCommandVersioned, OFFLINE};
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use build_helper::rerun_if_changed;
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use cargo_metadata::{CargoOpt, Metadata, MetadataCommand};
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use std::{
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borrow::ToOwned,
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collections::HashSet,
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env, fs,
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hash::{Hash, Hasher},
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ops::Deref,
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path::{Path, PathBuf},
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process,
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};
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use strum::{EnumIter, IntoEnumIterator};
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use toml::value::Table;
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use walkdir::WalkDir;
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/// Colorize an info message.
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///
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/// Returns the colorized message.
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fn colorize_info_message(message: &str) -> String {
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if super::color_output_enabled() {
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ansi_term::Color::Yellow.bold().paint(message).to_string()
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} else {
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message.into()
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}
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}
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/// Holds the path to the bloaty WASM binary.
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pub struct WasmBinaryBloaty(PathBuf);
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impl WasmBinaryBloaty {
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/// Returns the escaped path to the bloaty wasm binary.
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pub fn wasm_binary_bloaty_path_escaped(&self) -> String {
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self.0.display().to_string().escape_default().to_string()
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}
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/// Returns the path to the wasm binary.
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pub fn wasm_binary_bloaty_path(&self) -> &Path {
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&self.0
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}
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}
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/// Holds the path to the WASM binary.
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pub struct WasmBinary(PathBuf);
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impl WasmBinary {
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/// Returns the path to the wasm binary.
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pub fn wasm_binary_path(&self) -> &Path {
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&self.0
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}
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/// Returns the escaped path to the wasm binary.
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pub fn wasm_binary_path_escaped(&self) -> String {
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self.0.display().to_string().escape_default().to_string()
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}
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}
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fn crate_metadata(cargo_manifest: &Path) -> Metadata {
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let mut cargo_lock = cargo_manifest.to_path_buf();
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cargo_lock.set_file_name("Cargo.lock");
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let cargo_lock_existed = cargo_lock.exists();
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// If we can find a `Cargo.lock`, we assume that this is the workspace root and there exists a
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// `Cargo.toml` that we can use for getting the metadata.
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let cargo_manifest = if let Some(mut cargo_lock) = find_cargo_lock(cargo_manifest) {
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cargo_lock.set_file_name("Cargo.toml");
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cargo_lock
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} else {
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cargo_manifest.to_path_buf()
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};
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let mut crate_metadata_command = create_metadata_command(cargo_manifest);
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crate_metadata_command.features(CargoOpt::AllFeatures);
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let crate_metadata = crate_metadata_command
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.exec()
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.expect("`cargo metadata` can not fail on project `Cargo.toml`; qed");
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// If the `Cargo.lock` didn't exist, we need to remove it after
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// calling `cargo metadata`. This is required to ensure that we don't change
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// the build directory outside of the `target` folder. Commands like
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// `cargo publish` require this.
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if !cargo_lock_existed {
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let _ = fs::remove_file(&cargo_lock);
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}
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crate_metadata
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}
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/// Creates the WASM project, compiles the WASM binary and compacts the WASM binary.
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///
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/// # Returns
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///
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/// The path to the compact WASM binary and the bloaty WASM binary.
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pub(crate) fn create_and_compile(
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project_cargo_toml: &Path,
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default_rustflags: &str,
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cargo_cmd: CargoCommandVersioned,
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features_to_enable: Vec<String>,
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wasm_binary_name: Option<String>,
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) -> (Option<WasmBinary>, WasmBinaryBloaty) {
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let wasm_workspace_root = get_wasm_workspace_root();
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let wasm_workspace = wasm_workspace_root.join("wbuild");
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let crate_metadata = crate_metadata(project_cargo_toml);
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let project = create_project(
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project_cargo_toml,
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&wasm_workspace,
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&crate_metadata,
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crate_metadata.workspace_root.as_ref(),
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features_to_enable,
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);
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let profile = build_project(&project, default_rustflags, cargo_cmd);
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let (wasm_binary, wasm_binary_compressed, bloaty) =
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compact_wasm_file(&project, profile, project_cargo_toml, wasm_binary_name);
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wasm_binary
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.as_ref()
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.map(|wasm_binary| copy_wasm_to_target_directory(project_cargo_toml, wasm_binary));
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wasm_binary_compressed.as_ref().map(|wasm_binary_compressed| {
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copy_wasm_to_target_directory(project_cargo_toml, wasm_binary_compressed)
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});
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let final_wasm_binary = wasm_binary_compressed.or(wasm_binary);
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generate_rerun_if_changed_instructions(
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project_cargo_toml,
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&project,
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&wasm_workspace,
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final_wasm_binary.as_ref(),
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&bloaty,
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);
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if let Err(err) = adjust_mtime(&bloaty, final_wasm_binary.as_ref()) {
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build_helper::warning!("Error while adjusting the mtime of the wasm binaries: {}", err)
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}
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(final_wasm_binary, bloaty)
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}
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/// Adjust the mtime of the bloaty and compressed/compact wasm files.
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///
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/// We add the bloaty and the compressed/compact wasm file to the `rerun-if-changed` files.
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/// Cargo/Rustc determines based on the timestamp of the `invoked.timestamp` file that can be found
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/// in the `OUT_DIR/..`, if it needs to rerun a `build.rs` script. The problem is that this
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/// `invoked.timestamp` is created when the `build.rs` is executed and the wasm binaries are created
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/// later. This leads to them having a later mtime than the `invoked.timestamp` file and thus,
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/// cargo/rustc always re-executes the `build.rs` script. To hack around this, we copy the mtime of
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/// the `invoked.timestamp` to the wasm binaries.
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fn adjust_mtime(
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bloaty_wasm: &WasmBinaryBloaty,
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compressed_or_compact_wasm: Option<&WasmBinary>,
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) -> std::io::Result<()> {
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let out_dir = build_helper::out_dir();
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let invoked_timestamp = out_dir.join("../invoked.timestamp");
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// Get the mtime of the `invoked.timestamp`
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let metadata = fs::metadata(invoked_timestamp)?;
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let mtime = filetime::FileTime::from_last_modification_time(&metadata);
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filetime::set_file_mtime(bloaty_wasm.wasm_binary_bloaty_path(), mtime)?;
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if let Some(binary) = compressed_or_compact_wasm.as_ref() {
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filetime::set_file_mtime(binary.wasm_binary_path(), mtime)?;
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}
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Ok(())
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}
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/// Find the `Cargo.lock` relative to the `OUT_DIR` environment variable.
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///
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/// If the `Cargo.lock` cannot be found, we emit a warning and return `None`.
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fn find_cargo_lock(cargo_manifest: &Path) -> Option<PathBuf> {
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fn find_impl(mut path: PathBuf) -> Option<PathBuf> {
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loop {
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if path.join("Cargo.lock").exists() {
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return Some(path.join("Cargo.lock"))
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}
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if !path.pop() {
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return None
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}
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}
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}
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if let Ok(workspace) = env::var(crate::WASM_BUILD_WORKSPACE_HINT) {
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let path = PathBuf::from(workspace);
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if path.join("Cargo.lock").exists() {
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return Some(path.join("Cargo.lock"))
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} else {
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build_helper::warning!(
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"`{}` env variable doesn't point to a directory that contains a `Cargo.lock`.",
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crate::WASM_BUILD_WORKSPACE_HINT,
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);
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}
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}
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if let Some(path) = find_impl(build_helper::out_dir()) {
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return Some(path)
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}
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build_helper::warning!(
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"Could not find `Cargo.lock` for `{}`, while searching from `{}`. \
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To fix this, point the `{}` env variable to the directory of the workspace being compiled.",
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cargo_manifest.display(),
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build_helper::out_dir().display(),
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crate::WASM_BUILD_WORKSPACE_HINT,
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);
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None
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}
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/// Extract the crate name from the given `Cargo.toml`.
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fn get_crate_name(cargo_manifest: &Path) -> String {
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let cargo_toml: Table = toml::from_str(
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&fs::read_to_string(cargo_manifest).expect("File exists as checked before; qed"),
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)
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.expect("Cargo manifest is a valid toml file; qed");
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let package = cargo_toml
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.get("package")
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.and_then(|t| t.as_table())
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.expect("`package` key exists in valid `Cargo.toml`; qed");
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package
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.get("name")
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.and_then(|p| p.as_str())
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.map(ToOwned::to_owned)
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.expect("Package name exists; qed")
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}
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/// Returns the name for the wasm binary.
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fn get_wasm_binary_name(cargo_manifest: &Path) -> String {
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get_crate_name(cargo_manifest).replace('-', "_")
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}
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/// Returns the root path of the wasm workspace.
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fn get_wasm_workspace_root() -> PathBuf {
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let mut out_dir = build_helper::out_dir();
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loop {
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match out_dir.parent() {
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Some(parent) if out_dir.ends_with("build") => return parent.to_path_buf(),
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_ =>
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if !out_dir.pop() {
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break
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},
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}
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}
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panic!("Could not find target dir in: {}", build_helper::out_dir().display())
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}
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fn create_project_cargo_toml(
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wasm_workspace: &Path,
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workspace_root_path: &Path,
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crate_name: &str,
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crate_path: &Path,
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wasm_binary: &str,
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enabled_features: impl Iterator<Item = String>,
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) {
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let mut workspace_toml: Table = toml::from_str(
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&fs::read_to_string(workspace_root_path.join("Cargo.toml"))
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.expect("Workspace root `Cargo.toml` exists; qed"),
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)
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.expect("Workspace root `Cargo.toml` is a valid toml file; qed");
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let mut wasm_workspace_toml = Table::new();
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// Add different profiles which are selected by setting `WASM_BUILD_TYPE`.
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let mut release_profile = Table::new();
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release_profile.insert("panic".into(), "abort".into());
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release_profile.insert("lto".into(), "thin".into());
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let mut production_profile = Table::new();
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production_profile.insert("inherits".into(), "release".into());
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production_profile.insert("lto".into(), "fat".into());
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production_profile.insert("codegen-units".into(), 1.into());
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let mut dev_profile = Table::new();
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dev_profile.insert("panic".into(), "abort".into());
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let mut profile = Table::new();
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profile.insert("release".into(), release_profile.into());
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profile.insert("production".into(), production_profile.into());
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profile.insert("dev".into(), dev_profile.into());
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wasm_workspace_toml.insert("profile".into(), profile.into());
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// Add patch section from the project root `Cargo.toml`
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while let Some(mut patch) =
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workspace_toml.remove("patch").and_then(|p| p.try_into::<Table>().ok())
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{
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// Iterate over all patches and make the patch path absolute from the workspace root path.
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patch
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.iter_mut()
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.filter_map(|p| {
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p.1.as_table_mut().map(|t| t.iter_mut().filter_map(|t| t.1.as_table_mut()))
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})
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.flatten()
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.for_each(|p| {
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p.iter_mut().filter(|(k, _)| k == &"path").for_each(|(_, v)| {
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if let Some(path) = v.as_str().map(PathBuf::from) {
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if path.is_relative() {
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*v = workspace_root_path.join(path).display().to_string().into();
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}
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}
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})
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});
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wasm_workspace_toml.insert("patch".into(), patch.into());
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}
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let mut package = Table::new();
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package.insert("name".into(), format!("{}-wasm", crate_name).into());
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package.insert("version".into(), "1.0.0".into());
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package.insert("edition".into(), "2021".into());
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wasm_workspace_toml.insert("package".into(), package.into());
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let mut lib = Table::new();
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lib.insert("name".into(), wasm_binary.into());
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lib.insert("crate-type".into(), vec!["cdylib".to_string()].into());
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wasm_workspace_toml.insert("lib".into(), lib.into());
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let mut dependencies = Table::new();
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let mut wasm_project = Table::new();
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wasm_project.insert("package".into(), crate_name.into());
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wasm_project.insert("path".into(), crate_path.display().to_string().into());
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wasm_project.insert("default-features".into(), false.into());
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wasm_project.insert("features".into(), enabled_features.collect::<Vec<_>>().into());
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dependencies.insert("wasm-project".into(), wasm_project.into());
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wasm_workspace_toml.insert("dependencies".into(), dependencies.into());
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wasm_workspace_toml.insert("workspace".into(), Table::new().into());
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write_file_if_changed(
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wasm_workspace.join("Cargo.toml"),
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toml::to_string_pretty(&wasm_workspace_toml).expect("Wasm workspace toml is valid; qed"),
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);
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}
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/// Find a package by the given `manifest_path` in the metadata. In case it can't be found by its
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/// manifest_path, fallback to finding it by name; this is necessary during publish because the
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/// package's manifest path will be *generated* within a specific packaging directory, thus it won't
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/// be found by its original path anymore.
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///
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/// Panics if the package could not be found.
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fn find_package_by_manifest_path<'a>(
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pkg_name: &str,
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manifest_path: &Path,
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crate_metadata: &'a cargo_metadata::Metadata,
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) -> &'a cargo_metadata::Package {
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if let Some(pkg) = crate_metadata.packages.iter().find(|p| p.manifest_path == manifest_path) {
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return pkg
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}
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let pkgs_by_name = crate_metadata
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.packages
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.iter()
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.filter(|p| p.name == pkg_name)
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.collect::<Vec<_>>();
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if let Some(pkg) = pkgs_by_name.first() {
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if pkgs_by_name.len() > 1 {
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panic!(
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"Found multiple packages matching the name {pkg_name} ({manifest_path:?}): {:?}",
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pkgs_by_name
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);
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} else {
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return pkg
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}
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} else {
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panic!("Failed to find entry for package {pkg_name} ({manifest_path:?}).");
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}
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}
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/// Get a list of enabled features for the project.
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fn project_enabled_features(
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pkg_name: &str,
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cargo_manifest: &Path,
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crate_metadata: &cargo_metadata::Metadata,
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) -> Vec<String> {
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let package = find_package_by_manifest_path(pkg_name, cargo_manifest, crate_metadata);
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let std_enabled = package.features.get("std");
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let mut enabled_features = package
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.features
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.iter()
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.filter(|(f, v)| {
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let mut feature_env = f.replace("-", "_");
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feature_env.make_ascii_uppercase();
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// If this is a feature that corresponds only to an optional dependency
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// and this feature is enabled by the `std` feature, we assume that this
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// is only done through the `std` feature. This is a bad heuristic and should
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// be removed after namespaced features are landed:
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// https://doc.rust-lang.org/cargo/reference/unstable.html#namespaced-features
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// Then we can just express this directly in the `Cargo.toml` and do not require
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// this heuristic anymore. However, for the transition phase between now and namespaced
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// features already being present in nightly, we need this code to make
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// runtimes compile with all the possible rustc versions.
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if v.len() == 1 &&
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v.get(0).map_or(false, |v| *v == format!("dep:{}", f)) &&
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std_enabled.as_ref().map(|e| e.iter().any(|ef| ef == *f)).unwrap_or(false)
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{
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return false
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}
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// We don't want to enable the `std`/`default` feature for the wasm build and
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// we need to check if the feature is enabled by checking the env variable.
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*f != "std" &&
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*f != "default" && env::var(format!("CARGO_FEATURE_{}", feature_env))
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.map(|v| v == "1")
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.unwrap_or_default()
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})
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.map(|d| d.0.clone())
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.collect::<Vec<_>>();
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enabled_features.sort();
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enabled_features
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}
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|
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/// Returns if the project has the `runtime-wasm` feature
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fn has_runtime_wasm_feature_declared(
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pkg_name: &str,
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cargo_manifest: &Path,
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crate_metadata: &cargo_metadata::Metadata,
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) -> bool {
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let package = find_package_by_manifest_path(pkg_name, cargo_manifest, crate_metadata);
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package.features.keys().any(|k| k == "runtime-wasm")
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}
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|
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/// Create the project used to build the wasm binary.
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///
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/// # Returns
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///
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/// The path to the created wasm project.
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fn create_project(
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project_cargo_toml: &Path,
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wasm_workspace: &Path,
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crate_metadata: &Metadata,
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workspace_root_path: &Path,
|
|
features_to_enable: Vec<String>,
|
|
) -> PathBuf {
|
|
let crate_name = get_crate_name(project_cargo_toml);
|
|
let crate_path = project_cargo_toml.parent().expect("Parent path exists; qed");
|
|
let wasm_binary = get_wasm_binary_name(project_cargo_toml);
|
|
let wasm_project_folder = wasm_workspace.join(&crate_name);
|
|
|
|
fs::create_dir_all(wasm_project_folder.join("src"))
|
|
.expect("Wasm project dir create can not fail; qed");
|
|
|
|
let mut enabled_features =
|
|
project_enabled_features(&crate_name, project_cargo_toml, crate_metadata);
|
|
|
|
if has_runtime_wasm_feature_declared(&crate_name, project_cargo_toml, crate_metadata) {
|
|
enabled_features.push("runtime-wasm".into());
|
|
}
|
|
|
|
let mut enabled_features = enabled_features.into_iter().collect::<HashSet<_>>();
|
|
enabled_features.extend(features_to_enable.into_iter());
|
|
|
|
create_project_cargo_toml(
|
|
&wasm_project_folder,
|
|
workspace_root_path,
|
|
&crate_name,
|
|
crate_path,
|
|
&wasm_binary,
|
|
enabled_features.into_iter(),
|
|
);
|
|
|
|
write_file_if_changed(
|
|
wasm_project_folder.join("src/lib.rs"),
|
|
"#![no_std] pub use wasm_project::*;",
|
|
);
|
|
|
|
if let Some(crate_lock_file) = find_cargo_lock(project_cargo_toml) {
|
|
// Use the `Cargo.lock` of the main project.
|
|
crate::copy_file_if_changed(crate_lock_file, wasm_project_folder.join("Cargo.lock"));
|
|
}
|
|
|
|
wasm_project_folder
|
|
}
|
|
|
|
/// The cargo profile that is used to build the wasm project.
|
|
#[derive(Debug, EnumIter)]
|
|
enum Profile {
|
|
/// The `--profile dev` profile.
|
|
Debug,
|
|
/// The `--profile release` profile.
|
|
Release,
|
|
/// The `--profile production` profile.
|
|
Production,
|
|
}
|
|
|
|
impl Profile {
|
|
/// Create a profile by detecting which profile is used for the main build.
|
|
///
|
|
/// We cannot easily determine the profile that is used by the main cargo invocation
|
|
/// because the `PROFILE` environment variable won't contain any custom profiles like
|
|
/// "production". It would only contain the builtin profile where the custom profile
|
|
/// inherits from. This is why we inspect the build path to learn which profile is used.
|
|
///
|
|
/// # Note
|
|
///
|
|
/// Can be overriden by setting [`crate::WASM_BUILD_TYPE_ENV`].
|
|
fn detect(wasm_project: &Path) -> Profile {
|
|
let (name, overriden) = if let Ok(name) = env::var(crate::WASM_BUILD_TYPE_ENV) {
|
|
(name, true)
|
|
} else {
|
|
// First go backwards to the beginning of the target directory.
|
|
// Then go forwards to find the "wbuild" directory.
|
|
// We need to go backwards first because when starting from the root there
|
|
// might be a chance that someone has a "wbuild" directory somewhere in the path.
|
|
let name = wasm_project
|
|
.components()
|
|
.rev()
|
|
.take_while(|c| c.as_os_str() != "target")
|
|
.collect::<Vec<_>>()
|
|
.iter()
|
|
.rev()
|
|
.take_while(|c| c.as_os_str() != "wbuild")
|
|
.last()
|
|
.expect("We put the wasm project within a `target/.../wbuild` path; qed")
|
|
.as_os_str()
|
|
.to_str()
|
|
.expect("All our profile directory names are ascii; qed")
|
|
.to_string();
|
|
(name, false)
|
|
};
|
|
match (Profile::iter().find(|p| p.directory() == name), overriden) {
|
|
// When not overriden by a env variable we default to using the `Release` profile
|
|
// for the wasm build even when the main build uses the debug build. This
|
|
// is because the `Debug` profile is too slow for normal development activities.
|
|
(Some(Profile::Debug), false) => Profile::Release,
|
|
// For any other profile or when overriden we take it at face value.
|
|
(Some(profile), _) => profile,
|
|
// For non overriden unknown profiles we fall back to `Release`.
|
|
// This allows us to continue building when a custom profile is used for the
|
|
// main builds cargo. When explicitly passing a profile via env variable we are
|
|
// not doing a fallback.
|
|
(None, false) => {
|
|
let profile = Profile::Release;
|
|
build_helper::warning!(
|
|
"Unknown cargo profile `{}`. Defaulted to `{:?}` for the runtime build.",
|
|
name,
|
|
profile,
|
|
);
|
|
profile
|
|
},
|
|
// Invalid profile specified.
|
|
(None, true) => {
|
|
// We use println! + exit instead of a panic in order to have a cleaner output.
|
|
println!(
|
|
"Unexpected profile name: `{}`. One of the following is expected: {:?}",
|
|
name,
|
|
Profile::iter().map(|p| p.directory()).collect::<Vec<_>>(),
|
|
);
|
|
process::exit(1);
|
|
},
|
|
}
|
|
}
|
|
|
|
/// The name of the profile as supplied to the cargo `--profile` cli option.
|
|
fn name(&self) -> &'static str {
|
|
match self {
|
|
Self::Debug => "dev",
|
|
Self::Release => "release",
|
|
Self::Production => "production",
|
|
}
|
|
}
|
|
|
|
/// The sub directory within `target` where cargo places the build output.
|
|
///
|
|
/// # Note
|
|
///
|
|
/// Usually this is the same as [`Self::name`] with the exception of the debug
|
|
/// profile which is called `dev`.
|
|
fn directory(&self) -> &'static str {
|
|
match self {
|
|
Self::Debug => "debug",
|
|
_ => self.name(),
|
|
}
|
|
}
|
|
|
|
/// Whether the resulting binary should be compacted and compressed.
|
|
fn wants_compact(&self) -> bool {
|
|
!matches!(self, Self::Debug)
|
|
}
|
|
}
|
|
|
|
/// Check environment whether we should build without network
|
|
fn offline_build() -> bool {
|
|
env::var(OFFLINE).map_or(false, |v| v == "true")
|
|
}
|
|
|
|
/// Build the project to create the WASM binary.
|
|
fn build_project(
|
|
project: &Path,
|
|
default_rustflags: &str,
|
|
cargo_cmd: CargoCommandVersioned,
|
|
) -> Profile {
|
|
let manifest_path = project.join("Cargo.toml");
|
|
let mut build_cmd = cargo_cmd.command();
|
|
|
|
let rustflags = format!(
|
|
"-C link-arg=--export-table {} {}",
|
|
default_rustflags,
|
|
env::var(crate::WASM_BUILD_RUSTFLAGS_ENV).unwrap_or_default(),
|
|
);
|
|
|
|
build_cmd
|
|
.args(&["rustc", "--target=wasm32-unknown-unknown"])
|
|
.arg(format!("--manifest-path={}", manifest_path.display()))
|
|
.env("RUSTFLAGS", rustflags)
|
|
// Unset the `CARGO_TARGET_DIR` to prevent a cargo deadlock (cargo locks a target dir
|
|
// exclusive). The runner project is created in `CARGO_TARGET_DIR` and executing it will
|
|
// create a sub target directory inside of `CARGO_TARGET_DIR`.
|
|
.env_remove("CARGO_TARGET_DIR")
|
|
// As we are being called inside a build-script, this env variable is set. However, we set
|
|
// our own `RUSTFLAGS` and thus, we need to remove this. Otherwise cargo favors this
|
|
// env variable.
|
|
.env_remove("CARGO_ENCODED_RUSTFLAGS")
|
|
// We don't want to call ourselves recursively
|
|
.env(crate::SKIP_BUILD_ENV, "");
|
|
|
|
if super::color_output_enabled() {
|
|
build_cmd.arg("--color=always");
|
|
}
|
|
|
|
let profile = Profile::detect(project);
|
|
build_cmd.arg("--profile");
|
|
build_cmd.arg(profile.name());
|
|
|
|
if offline_build() {
|
|
build_cmd.arg("--offline");
|
|
}
|
|
|
|
println!("{}", colorize_info_message("Information that should be included in a bug report."));
|
|
println!("{} {:?}", colorize_info_message("Executing build command:"), build_cmd);
|
|
println!("{} {}", colorize_info_message("Using rustc version:"), cargo_cmd.rustc_version());
|
|
|
|
match build_cmd.status().map(|s| s.success()) {
|
|
Ok(true) => profile,
|
|
// Use `process.exit(1)` to have a clean error output.
|
|
_ => process::exit(1),
|
|
}
|
|
}
|
|
|
|
/// Compact the WASM binary using `wasm-gc` and compress it using zstd.
|
|
fn compact_wasm_file(
|
|
project: &Path,
|
|
profile: Profile,
|
|
cargo_manifest: &Path,
|
|
out_name: Option<String>,
|
|
) -> (Option<WasmBinary>, Option<WasmBinary>, WasmBinaryBloaty) {
|
|
let default_out_name = get_wasm_binary_name(cargo_manifest);
|
|
let out_name = out_name.unwrap_or_else(|| default_out_name.clone());
|
|
let in_path = project
|
|
.join("target/wasm32-unknown-unknown")
|
|
.join(profile.directory())
|
|
.join(format!("{}.wasm", default_out_name));
|
|
|
|
let (wasm_compact_path, wasm_compact_compressed_path) = if profile.wants_compact() {
|
|
let wasm_compact_path = project.join(format!("{}.compact.wasm", out_name,));
|
|
wasm_opt::OptimizationOptions::new_opt_level_0()
|
|
.mvp_features_only()
|
|
.debug_info(true)
|
|
.add_pass(wasm_opt::Pass::StripDwarf)
|
|
.run(&in_path, &wasm_compact_path)
|
|
.expect("Failed to compact generated WASM binary.");
|
|
|
|
let wasm_compact_compressed_path =
|
|
project.join(format!("{}.compact.compressed.wasm", out_name));
|
|
if compress_wasm(&wasm_compact_path, &wasm_compact_compressed_path) {
|
|
(Some(WasmBinary(wasm_compact_path)), Some(WasmBinary(wasm_compact_compressed_path)))
|
|
} else {
|
|
(Some(WasmBinary(wasm_compact_path)), None)
|
|
}
|
|
} else {
|
|
(None, None)
|
|
};
|
|
|
|
let bloaty_path = project.join(format!("{}.wasm", out_name));
|
|
fs::copy(in_path, &bloaty_path).expect("Copying the bloaty file to the project dir.");
|
|
|
|
(wasm_compact_path, wasm_compact_compressed_path, WasmBinaryBloaty(bloaty_path))
|
|
}
|
|
|
|
fn compress_wasm(wasm_binary_path: &Path, compressed_binary_out_path: &Path) -> bool {
|
|
use sp_maybe_compressed_blob::CODE_BLOB_BOMB_LIMIT;
|
|
|
|
let data = fs::read(wasm_binary_path).expect("Failed to read WASM binary");
|
|
if let Some(compressed) = sp_maybe_compressed_blob::compress(&data, CODE_BLOB_BOMB_LIMIT) {
|
|
fs::write(compressed_binary_out_path, &compressed[..])
|
|
.expect("Failed to write WASM binary");
|
|
|
|
true
|
|
} else {
|
|
build_helper::warning!(
|
|
"Writing uncompressed wasm. Exceeded maximum size {}",
|
|
CODE_BLOB_BOMB_LIMIT,
|
|
);
|
|
|
|
false
|
|
}
|
|
}
|
|
|
|
/// Custom wrapper for a [`cargo_metadata::Package`] to store it in
|
|
/// a `HashSet`.
|
|
#[derive(Debug)]
|
|
struct DeduplicatePackage<'a> {
|
|
package: &'a cargo_metadata::Package,
|
|
identifier: String,
|
|
}
|
|
|
|
impl<'a> From<&'a cargo_metadata::Package> for DeduplicatePackage<'a> {
|
|
fn from(package: &'a cargo_metadata::Package) -> Self {
|
|
Self {
|
|
package,
|
|
identifier: format!("{}{}{:?}", package.name, package.version, package.source),
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<'a> Hash for DeduplicatePackage<'a> {
|
|
fn hash<H: Hasher>(&self, state: &mut H) {
|
|
self.identifier.hash(state);
|
|
}
|
|
}
|
|
|
|
impl<'a> PartialEq for DeduplicatePackage<'a> {
|
|
fn eq(&self, other: &Self) -> bool {
|
|
self.identifier == other.identifier
|
|
}
|
|
}
|
|
|
|
impl<'a> Eq for DeduplicatePackage<'a> {}
|
|
|
|
impl<'a> Deref for DeduplicatePackage<'a> {
|
|
type Target = cargo_metadata::Package;
|
|
|
|
fn deref(&self) -> &Self::Target {
|
|
self.package
|
|
}
|
|
}
|
|
|
|
fn create_metadata_command(path: impl Into<PathBuf>) -> MetadataCommand {
|
|
let mut metadata_command = MetadataCommand::new();
|
|
metadata_command.manifest_path(path);
|
|
|
|
if offline_build() {
|
|
metadata_command.other_options(vec!["--offline".to_owned()]);
|
|
}
|
|
metadata_command
|
|
}
|
|
|
|
/// Generate the `rerun-if-changed` instructions for cargo to make sure that the WASM binary is
|
|
/// rebuilt when needed.
|
|
fn generate_rerun_if_changed_instructions(
|
|
cargo_manifest: &Path,
|
|
project_folder: &Path,
|
|
wasm_workspace: &Path,
|
|
compressed_or_compact_wasm: Option<&WasmBinary>,
|
|
bloaty_wasm: &WasmBinaryBloaty,
|
|
) {
|
|
// Rerun `build.rs` if the `Cargo.lock` changes
|
|
if let Some(cargo_lock) = find_cargo_lock(cargo_manifest) {
|
|
rerun_if_changed(cargo_lock);
|
|
}
|
|
|
|
let metadata = create_metadata_command(project_folder.join("Cargo.toml"))
|
|
.exec()
|
|
.expect("`cargo metadata` can not fail!");
|
|
|
|
let package = metadata
|
|
.packages
|
|
.iter()
|
|
.find(|p| p.manifest_path == cargo_manifest)
|
|
.expect("The crate package is contained in its own metadata; qed");
|
|
|
|
// Start with the dependencies of the crate we want to compile for wasm.
|
|
let mut dependencies = package.dependencies.iter().collect::<Vec<_>>();
|
|
|
|
// Collect all packages by follow the dependencies of all packages we find.
|
|
let mut packages = HashSet::new();
|
|
packages.insert(DeduplicatePackage::from(package));
|
|
|
|
while let Some(dependency) = dependencies.pop() {
|
|
let path_or_git_dep =
|
|
dependency.source.as_ref().map(|s| s.starts_with("git+")).unwrap_or(true);
|
|
|
|
let package = metadata
|
|
.packages
|
|
.iter()
|
|
.filter(|p| !p.manifest_path.starts_with(wasm_workspace))
|
|
.find(|p| {
|
|
// Check that the name matches and that the version matches or this is
|
|
// a git or path dep. A git or path dependency can only occur once, so we don't
|
|
// need to check the version.
|
|
(path_or_git_dep || dependency.req.matches(&p.version)) && dependency.name == p.name
|
|
});
|
|
|
|
if let Some(package) = package {
|
|
if packages.insert(DeduplicatePackage::from(package)) {
|
|
dependencies.extend(package.dependencies.iter());
|
|
}
|
|
}
|
|
}
|
|
|
|
// Make sure that if any file/folder of a dependency change, we need to rerun the `build.rs`
|
|
packages.iter().for_each(package_rerun_if_changed);
|
|
|
|
compressed_or_compact_wasm.map(|w| rerun_if_changed(w.wasm_binary_path()));
|
|
rerun_if_changed(bloaty_wasm.wasm_binary_bloaty_path());
|
|
|
|
// Register our env variables
|
|
println!("cargo:rerun-if-env-changed={}", crate::SKIP_BUILD_ENV);
|
|
println!("cargo:rerun-if-env-changed={}", crate::WASM_BUILD_TYPE_ENV);
|
|
println!("cargo:rerun-if-env-changed={}", crate::WASM_BUILD_RUSTFLAGS_ENV);
|
|
println!("cargo:rerun-if-env-changed={}", crate::WASM_TARGET_DIRECTORY);
|
|
println!("cargo:rerun-if-env-changed={}", crate::WASM_BUILD_TOOLCHAIN);
|
|
}
|
|
|
|
/// Track files and paths related to the given package to rerun `build.rs` on any relevant change.
|
|
fn package_rerun_if_changed(package: &DeduplicatePackage) {
|
|
let mut manifest_path = package.manifest_path.clone();
|
|
if manifest_path.ends_with("Cargo.toml") {
|
|
manifest_path.pop();
|
|
}
|
|
|
|
WalkDir::new(&manifest_path)
|
|
.into_iter()
|
|
.filter_entry(|p| {
|
|
// Ignore this entry if it is a directory that contains a `Cargo.toml` that is not the
|
|
// `Cargo.toml` related to the current package. This is done to ignore sub-crates of a
|
|
// crate. If such a sub-crate is a dependency, it will be processed independently
|
|
// anyway.
|
|
p.path() == manifest_path || !p.path().is_dir() || !p.path().join("Cargo.toml").exists()
|
|
})
|
|
.filter_map(|p| p.ok().map(|p| p.into_path()))
|
|
.filter(|p| {
|
|
p.is_dir() || p.extension().map(|e| e == "rs" || e == "toml").unwrap_or_default()
|
|
})
|
|
.for_each(rerun_if_changed);
|
|
}
|
|
|
|
/// Copy the WASM binary to the target directory set in `WASM_TARGET_DIRECTORY` environment
|
|
/// variable. If the variable is not set, this is a no-op.
|
|
fn copy_wasm_to_target_directory(cargo_manifest: &Path, wasm_binary: &WasmBinary) {
|
|
let target_dir = match env::var(crate::WASM_TARGET_DIRECTORY) {
|
|
Ok(path) => PathBuf::from(path),
|
|
Err(_) => return,
|
|
};
|
|
|
|
if !target_dir.is_absolute() {
|
|
// We use println! + exit instead of a panic in order to have a cleaner output.
|
|
println!(
|
|
"Environment variable `{}` with `{}` is not an absolute path!",
|
|
crate::WASM_TARGET_DIRECTORY,
|
|
target_dir.display(),
|
|
);
|
|
process::exit(1);
|
|
}
|
|
|
|
fs::create_dir_all(&target_dir).expect("Creates `WASM_TARGET_DIRECTORY`.");
|
|
|
|
fs::copy(
|
|
wasm_binary.wasm_binary_path(),
|
|
target_dir.join(format!("{}.wasm", get_wasm_binary_name(cargo_manifest))),
|
|
)
|
|
.expect("Copies WASM binary to `WASM_TARGET_DIRECTORY`.");
|
|
}
|