forked from lix-project/lix
640 lines
22 KiB
C++
640 lines
22 KiB
C++
#include <cstring>
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#include <fstream>
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#include <iostream>
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#include <filesystem>
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#include <regex>
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#include <sstream>
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#include <vector>
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#include <map>
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#include <nlohmann/json.hpp>
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#include "parsed-derivations.hh"
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#include "store-api.hh"
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#include "local-fs-store.hh"
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#include "globals.hh"
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#include "derivations.hh"
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#include "util.hh"
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#include "shared.hh"
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#include "path-with-outputs.hh"
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#include "eval.hh"
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#include "eval-inline.hh"
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#include "get-drvs.hh"
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#include "common-eval-args.hh"
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#include "attr-path.hh"
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#include "legacy.hh"
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using namespace nix;
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using namespace std::string_literals;
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extern char * * environ __attribute__((weak));
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/* Recreate the effect of the perl shellwords function, breaking up a
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* string into arguments like a shell word, including escapes
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*/
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static std::vector<std::string> shellwords(const std::string & s)
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{
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std::regex whitespace("^(\\s+).*");
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auto begin = s.cbegin();
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std::vector<std::string> res;
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std::string cur;
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enum state {
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sBegin,
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sQuote
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};
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state st = sBegin;
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auto it = begin;
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for (; it != s.cend(); ++it) {
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if (st == sBegin) {
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std::smatch match;
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if (regex_search(it, s.cend(), match, whitespace)) {
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cur.append(begin, it);
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res.push_back(cur);
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cur.clear();
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it = match[1].second;
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begin = it;
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}
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}
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switch (*it) {
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case '"':
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cur.append(begin, it);
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begin = it + 1;
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st = st == sBegin ? sQuote : sBegin;
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break;
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case '\\':
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/* perl shellwords mostly just treats the next char as part of the string with no special processing */
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cur.append(begin, it);
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begin = ++it;
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break;
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}
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}
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cur.append(begin, it);
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if (!cur.empty()) res.push_back(cur);
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return res;
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}
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static void main_nix_build(int argc, char * * argv)
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{
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auto dryRun = false;
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auto runEnv = std::regex_search(argv[0], std::regex("nix-shell$"));
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auto pure = false;
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auto fromArgs = false;
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auto packages = false;
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// Same condition as bash uses for interactive shells
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auto interactive = isatty(STDIN_FILENO) && isatty(STDERR_FILENO);
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Strings attrPaths;
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Strings left;
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BuildMode buildMode = bmNormal;
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bool readStdin = false;
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std::string envCommand; // interactive shell
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Strings envExclude;
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auto myName = runEnv ? "nix-shell" : "nix-build";
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auto inShebang = false;
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std::string script;
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std::vector<std::string> savedArgs;
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AutoDelete tmpDir(createTempDir("", myName));
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std::string outLink = "./result";
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// List of environment variables kept for --pure
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std::set<std::string> keepVars{
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"HOME", "XDG_RUNTIME_DIR", "USER", "LOGNAME", "DISPLAY",
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"WAYLAND_DISPLAY", "WAYLAND_SOCKET", "PATH", "TERM", "IN_NIX_SHELL",
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"NIX_SHELL_PRESERVE_PROMPT", "TZ", "PAGER", "NIX_BUILD_SHELL", "SHLVL",
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"http_proxy", "https_proxy", "ftp_proxy", "all_proxy", "no_proxy"
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};
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Strings args;
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for (int i = 1; i < argc; ++i)
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args.push_back(argv[i]);
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// Heuristic to see if we're invoked as a shebang script, namely,
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// if we have at least one argument, it's the name of an
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// executable file, and it starts with "#!".
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if (runEnv && argc > 1) {
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script = argv[1];
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try {
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auto lines = tokenizeString<Strings>(readFile(script), "\n");
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if (std::regex_search(lines.front(), std::regex("^#!"))) {
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lines.pop_front();
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inShebang = true;
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for (int i = 2; i < argc; ++i)
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savedArgs.push_back(argv[i]);
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args.clear();
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for (auto line : lines) {
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line = chomp(line);
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std::smatch match;
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if (std::regex_match(line, match, std::regex("^#!\\s*nix-shell (.*)$")))
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for (const auto & word : shellwords(match[1].str()))
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args.push_back(word);
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}
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}
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} catch (SysError &) { }
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}
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struct MyArgs : LegacyArgs, MixEvalArgs
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{
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using LegacyArgs::LegacyArgs;
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};
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MyArgs myArgs(myName, [&](Strings::iterator & arg, const Strings::iterator & end) {
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if (*arg == "--help") {
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deletePath(tmpDir);
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showManPage(myName);
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}
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else if (*arg == "--version")
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printVersion(myName);
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else if (*arg == "--add-drv-link" || *arg == "--indirect")
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; // obsolete
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else if (*arg == "--no-out-link" || *arg == "--no-link")
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outLink = (Path) tmpDir + "/result";
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else if (*arg == "--attr" || *arg == "-A")
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attrPaths.push_back(getArg(*arg, arg, end));
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else if (*arg == "--drv-link")
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getArg(*arg, arg, end); // obsolete
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else if (*arg == "--out-link" || *arg == "-o")
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outLink = getArg(*arg, arg, end);
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else if (*arg == "--dry-run")
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dryRun = true;
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else if (*arg == "--run-env") // obsolete
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runEnv = true;
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else if (runEnv && (*arg == "--command" || *arg == "--run")) {
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if (*arg == "--run")
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interactive = false;
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envCommand = getArg(*arg, arg, end) + "\nexit";
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}
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else if (*arg == "--check")
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buildMode = bmCheck;
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else if (*arg == "--exclude")
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envExclude.push_back(getArg(*arg, arg, end));
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else if (*arg == "--expr" || *arg == "-E")
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fromArgs = true;
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else if (*arg == "--pure") pure = true;
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else if (*arg == "--impure") pure = false;
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else if (runEnv && (*arg == "--packages" || *arg == "-p"))
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packages = true;
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else if (inShebang && *arg == "-i") {
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auto interpreter = getArg(*arg, arg, end);
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interactive = false;
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auto execArgs = "";
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// Überhack to support Perl. Perl examines the shebang and
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// executes it unless it contains the string "perl" or "indir",
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// or (undocumented) argv[0] does not contain "perl". Exploit
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// the latter by doing "exec -a".
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if (std::regex_search(interpreter, std::regex("perl")))
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execArgs = "-a PERL";
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std::ostringstream joined;
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for (const auto & i : savedArgs)
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joined << shellEscape(i) << ' ';
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if (std::regex_search(interpreter, std::regex("ruby"))) {
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// Hack for Ruby. Ruby also examines the shebang. It tries to
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// read the shebang to understand which packages to read from. Since
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// this is handled via nix-shell -p, we wrap our ruby script execution
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// in ruby -e 'load' which ignores the shebangs.
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envCommand = fmt("exec %1% %2% -e 'load(ARGV.shift)' -- %3% %4%", execArgs, interpreter, shellEscape(script), joined.str());
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} else {
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envCommand = fmt("exec %1% %2% %3% %4%", execArgs, interpreter, shellEscape(script), joined.str());
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}
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}
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else if (*arg == "--keep")
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keepVars.insert(getArg(*arg, arg, end));
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else if (*arg == "-")
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readStdin = true;
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else if (*arg != "" && arg->at(0) == '-')
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return false;
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else
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left.push_back(*arg);
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return true;
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});
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myArgs.parseCmdline(args);
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if (packages && fromArgs)
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throw UsageError("'-p' and '-E' are mutually exclusive");
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auto store = openStore();
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auto evalStore = myArgs.evalStoreUrl ? openStore(*myArgs.evalStoreUrl) : store;
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auto state = std::make_unique<EvalState>(myArgs.searchPath, evalStore, store);
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state->repair = myArgs.repair;
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if (myArgs.repair) buildMode = bmRepair;
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auto autoArgs = myArgs.getAutoArgs(*state);
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auto autoArgsWithInNixShell = autoArgs;
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if (runEnv) {
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auto newArgs = state->buildBindings(autoArgsWithInNixShell->size() + 1);
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newArgs.alloc("inNixShell").mkBool(true);
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for (auto & i : *autoArgs) newArgs.insert(i);
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autoArgsWithInNixShell = newArgs.finish();
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}
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if (packages) {
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std::ostringstream joined;
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joined << "{...}@args: with import <nixpkgs> args; (pkgs.runCommandCC or pkgs.runCommand) \"shell\" { buildInputs = [ ";
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for (const auto & i : left)
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joined << '(' << i << ") ";
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joined << "]; } \"\"";
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fromArgs = true;
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left = {joined.str()};
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} else if (!fromArgs) {
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if (left.empty() && runEnv && pathExists("shell.nix"))
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left = {"shell.nix"};
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if (left.empty())
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left = {"default.nix"};
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}
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if (runEnv)
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setenv("IN_NIX_SHELL", pure ? "pure" : "impure", 1);
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DrvInfos drvs;
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/* Parse the expressions. */
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std::vector<Expr *> exprs;
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if (readStdin)
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exprs = {state->parseStdin()};
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else
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for (auto i : left) {
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if (fromArgs)
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exprs.push_back(state->parseExprFromString(std::move(i), state->rootPath(CanonPath::fromCwd())));
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else {
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auto absolute = i;
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try {
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absolute = canonPath(absPath(i), true);
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} catch (Error & e) {};
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auto [path, outputNames] = parsePathWithOutputs(absolute);
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if (evalStore->isStorePath(path) && hasSuffix(path, ".drv"))
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drvs.push_back(DrvInfo(*state, evalStore, absolute));
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else
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/* If we're in a #! script, interpret filenames
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relative to the script. */
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exprs.push_back(state->parseExprFromFile(resolveExprPath(state->checkSourcePath(lookupFileArg(*state,
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inShebang && !packages ? absPath(i, absPath(dirOf(script))) : i)))));
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}
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}
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/* Evaluate them into derivations. */
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if (attrPaths.empty()) attrPaths = {""};
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for (auto e : exprs) {
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Value vRoot;
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state->eval(e, vRoot);
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std::function<bool(const Value & v)> takesNixShellAttr;
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takesNixShellAttr = [&](const Value & v) {
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if (!runEnv) {
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return false;
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}
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bool add = false;
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if (v.type() == nFunction && v.lambda.fun->hasFormals()) {
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for (auto & i : v.lambda.fun->formals->formals) {
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if (state->symbols[i.name] == "inNixShell") {
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add = true;
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break;
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}
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}
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}
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return add;
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};
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for (auto & i : attrPaths) {
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Value & v(*findAlongAttrPath(
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*state,
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i,
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takesNixShellAttr(vRoot) ? *autoArgsWithInNixShell : *autoArgs,
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vRoot
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).first);
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state->forceValue(v, [&]() { return v.determinePos(noPos); });
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getDerivations(
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*state,
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v,
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"",
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takesNixShellAttr(v) ? *autoArgsWithInNixShell : *autoArgs,
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drvs,
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false
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);
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}
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}
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state->printStats();
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auto buildPaths = [&](const std::vector<DerivedPath> & paths) {
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/* Note: we do this even when !printMissing to efficiently
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fetch binary cache data. */
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uint64_t downloadSize, narSize;
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StorePathSet willBuild, willSubstitute, unknown;
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store->queryMissing(paths,
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willBuild, willSubstitute, unknown, downloadSize, narSize);
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if (settings.printMissing)
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printMissing(ref<Store>(store), willBuild, willSubstitute, unknown, downloadSize, narSize);
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if (!dryRun)
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store->buildPaths(paths, buildMode, evalStore);
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};
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if (runEnv) {
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if (drvs.size() != 1)
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throw UsageError("nix-shell requires a single derivation");
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auto & drvInfo = drvs.front();
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auto drv = evalStore->derivationFromPath(drvInfo.requireDrvPath());
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std::vector<DerivedPath> pathsToBuild;
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RealisedPath::Set pathsToCopy;
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/* Figure out what bash shell to use. If $NIX_BUILD_SHELL
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is not set, then build bashInteractive from
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<nixpkgs>. */
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auto shell = getEnv("NIX_BUILD_SHELL");
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std::optional<StorePath> shellDrv;
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if (!shell) {
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try {
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auto expr = state->parseExprFromString(
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"(import <nixpkgs> {}).bashInteractive",
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state->rootPath(CanonPath::fromCwd()));
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Value v;
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state->eval(expr, v);
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auto drv = getDerivation(*state, v, false);
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if (!drv)
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throw Error("the 'bashInteractive' attribute in <nixpkgs> did not evaluate to a derivation");
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auto bashDrv = drv->requireDrvPath();
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pathsToBuild.push_back(DerivedPath::Built {
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.drvPath = bashDrv,
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.outputs = OutputsSpec::Names {"out"},
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});
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pathsToCopy.insert(bashDrv);
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shellDrv = bashDrv;
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} catch (Error & e) {
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logError(e.info());
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notice("will use bash from your environment");
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shell = "bash";
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}
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}
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// Build or fetch all dependencies of the derivation.
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for (const auto & [inputDrv0, inputOutputs] : drv.inputDrvs) {
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// To get around lambda capturing restrictions in the
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// standard.
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const auto & inputDrv = inputDrv0;
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if (std::all_of(envExclude.cbegin(), envExclude.cend(),
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[&](const std::string & exclude) {
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return !std::regex_search(store->printStorePath(inputDrv), std::regex(exclude));
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}))
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{
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pathsToBuild.push_back(DerivedPath::Built {
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.drvPath = inputDrv,
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.outputs = OutputsSpec::Names { inputOutputs },
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});
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pathsToCopy.insert(inputDrv);
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}
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}
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for (const auto & src : drv.inputSrcs) {
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pathsToBuild.push_back(DerivedPath::Opaque{src});
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pathsToCopy.insert(src);
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}
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buildPaths(pathsToBuild);
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if (dryRun) return;
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if (shellDrv) {
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auto shellDrvOutputs = store->queryPartialDerivationOutputMap(shellDrv.value());
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shell = store->printStorePath(shellDrvOutputs.at("out").value()) + "/bin/bash";
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}
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if (experimentalFeatureSettings.isEnabled(Xp::CaDerivations)) {
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auto resolvedDrv = drv.tryResolve(*store);
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assert(resolvedDrv && "Successfully resolved the derivation");
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drv = *resolvedDrv;
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}
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// Set the environment.
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auto env = getEnv();
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auto tmp = getEnv("TMPDIR");
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if (!tmp) tmp = getEnv("XDG_RUNTIME_DIR").value_or("/tmp");
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if (pure) {
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decltype(env) newEnv;
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for (auto & i : env)
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if (keepVars.count(i.first))
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newEnv.emplace(i);
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env = newEnv;
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// NixOS hack: prevent /etc/bashrc from sourcing /etc/profile.
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env["__ETC_PROFILE_SOURCED"] = "1";
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}
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env["NIX_BUILD_TOP"] = env["TMPDIR"] = env["TEMPDIR"] = env["TMP"] = env["TEMP"] = *tmp;
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env["NIX_STORE"] = store->storeDir;
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env["NIX_BUILD_CORES"] = std::to_string(settings.buildCores);
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auto passAsFile = tokenizeString<StringSet>(getOr(drv.env, "passAsFile", ""));
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bool keepTmp = false;
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int fileNr = 0;
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for (auto & var : drv.env)
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if (passAsFile.count(var.first)) {
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keepTmp = true;
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auto fn = ".attr-" + std::to_string(fileNr++);
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Path p = (Path) tmpDir + "/" + fn;
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writeFile(p, var.second);
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env[var.first + "Path"] = p;
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} else
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env[var.first] = var.second;
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std::string structuredAttrsRC;
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if (env.count("__json")) {
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StorePathSet inputs;
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for (auto & [depDrvPath, wantedDepOutputs] : drv.inputDrvs) {
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auto outputs = evalStore->queryPartialDerivationOutputMap(depDrvPath);
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for (auto & i : wantedDepOutputs) {
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auto o = outputs.at(i);
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store->computeFSClosure(*o, inputs);
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}
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}
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ParsedDerivation parsedDrv(drvInfo.requireDrvPath(), drv);
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if (auto structAttrs = parsedDrv.prepareStructuredAttrs(*store, inputs)) {
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auto json = structAttrs.value();
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structuredAttrsRC = writeStructuredAttrsShell(json);
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auto attrsJSON = (Path) tmpDir + "/.attrs.json";
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writeFile(attrsJSON, json.dump());
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auto attrsSH = (Path) tmpDir + "/.attrs.sh";
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writeFile(attrsSH, structuredAttrsRC);
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env["NIX_ATTRS_SH_FILE"] = attrsSH;
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env["NIX_ATTRS_JSON_FILE"] = attrsJSON;
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keepTmp = true;
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}
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}
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/* Run a shell using the derivation's environment. For
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convenience, source $stdenv/setup to setup additional
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environment variables and shell functions. Also don't
|
|
lose the current $PATH directories. */
|
|
auto rcfile = (Path) tmpDir + "/rc";
|
|
std::string rc = fmt(
|
|
R"(_nix_shell_clean_tmpdir() { command rm -rf %1%; }; )"s +
|
|
(keepTmp ?
|
|
"trap _nix_shell_clean_tmpdir EXIT; "
|
|
"exitHooks+=(_nix_shell_clean_tmpdir); "
|
|
"failureHooks+=(_nix_shell_clean_tmpdir); ":
|
|
"_nix_shell_clean_tmpdir; ") +
|
|
(pure ? "" : "[ -n \"$PS1\" ] && [ -e ~/.bashrc ] && source ~/.bashrc;") +
|
|
"%2%"
|
|
// always clear PATH.
|
|
// when nix-shell is run impure, we rehydrate it with the `p=$PATH` above
|
|
"unset PATH;"
|
|
"dontAddDisableDepTrack=1;\n"
|
|
+ structuredAttrsRC +
|
|
"\n[ -e $stdenv/setup ] && source $stdenv/setup; "
|
|
"%3%"
|
|
"PATH=%4%:\"$PATH\"; "
|
|
"SHELL=%5%; "
|
|
"BASH=%5%; "
|
|
"set +e; "
|
|
R"s([ -n "$PS1" -a -z "$NIX_SHELL_PRESERVE_PROMPT" ] && )s" +
|
|
(getuid() == 0 ? R"s(PS1='\n\[\033[1;31m\][nix-shell:\w]\$\[\033[0m\] '; )s"
|
|
: R"s(PS1='\n\[\033[1;32m\][nix-shell:\w]\$\[\033[0m\] '; )s") +
|
|
"if [ \"$(type -t runHook)\" = function ]; then runHook shellHook; fi; "
|
|
"unset NIX_ENFORCE_PURITY; "
|
|
"shopt -u nullglob; "
|
|
"unset TZ; %6%"
|
|
"shopt -s execfail;"
|
|
"%7%",
|
|
shellEscape(tmpDir),
|
|
(pure ? "" : "p=$PATH; "),
|
|
(pure ? "" : "PATH=$PATH:$p; unset p; "),
|
|
shellEscape(dirOf(*shell)),
|
|
shellEscape(*shell),
|
|
(getenv("TZ") ? (std::string("export TZ=") + shellEscape(getenv("TZ")) + "; ") : ""),
|
|
envCommand);
|
|
vomit("Sourcing nix-shell with file %s and contents:\n%s", rcfile, rc);
|
|
writeFile(rcfile, rc);
|
|
|
|
Strings envStrs;
|
|
for (auto & i : env)
|
|
envStrs.push_back(i.first + "=" + i.second);
|
|
|
|
auto args = interactive
|
|
? Strings{"bash", "--rcfile", rcfile}
|
|
: Strings{"bash", rcfile};
|
|
|
|
auto envPtrs = stringsToCharPtrs(envStrs);
|
|
|
|
environ = envPtrs.data();
|
|
|
|
auto argPtrs = stringsToCharPtrs(args);
|
|
|
|
restoreProcessContext();
|
|
|
|
logger->stop();
|
|
|
|
execvp(shell->c_str(), argPtrs.data());
|
|
|
|
throw SysError("executing shell '%s'", *shell);
|
|
}
|
|
|
|
else {
|
|
|
|
std::vector<DerivedPath> pathsToBuild;
|
|
std::vector<std::pair<StorePath, std::string>> pathsToBuildOrdered;
|
|
RealisedPath::Set drvsToCopy;
|
|
|
|
std::map<StorePath, std::pair<size_t, StringSet>> drvMap;
|
|
|
|
for (auto & drvInfo : drvs) {
|
|
auto drvPath = drvInfo.requireDrvPath();
|
|
|
|
auto outputName = drvInfo.queryOutputName();
|
|
if (outputName == "")
|
|
throw Error("derivation '%s' lacks an 'outputName' attribute", store->printStorePath(drvPath));
|
|
|
|
pathsToBuild.push_back(DerivedPath::Built{drvPath, OutputsSpec::Names{outputName}});
|
|
pathsToBuildOrdered.push_back({drvPath, {outputName}});
|
|
drvsToCopy.insert(drvPath);
|
|
|
|
auto i = drvMap.find(drvPath);
|
|
if (i != drvMap.end())
|
|
i->second.second.insert(outputName);
|
|
else
|
|
drvMap[drvPath] = {drvMap.size(), {outputName}};
|
|
}
|
|
|
|
buildPaths(pathsToBuild);
|
|
|
|
if (dryRun) return;
|
|
|
|
std::vector<StorePath> outPaths;
|
|
|
|
for (auto & [drvPath, outputName] : pathsToBuildOrdered) {
|
|
auto & [counter, _wantedOutputs] = drvMap.at({drvPath});
|
|
std::string drvPrefix = outLink;
|
|
if (counter)
|
|
drvPrefix += fmt("-%d", counter + 1);
|
|
|
|
auto builtOutputs = evalStore->queryPartialDerivationOutputMap(drvPath);
|
|
|
|
auto maybeOutputPath = builtOutputs.at(outputName);
|
|
assert(maybeOutputPath);
|
|
auto outputPath = *maybeOutputPath;
|
|
|
|
if (auto store2 = store.dynamic_pointer_cast<LocalFSStore>()) {
|
|
std::string symlink = drvPrefix;
|
|
if (outputName != "out") symlink += "-" + outputName;
|
|
store2->addPermRoot(outputPath, absPath(symlink));
|
|
}
|
|
|
|
outPaths.push_back(outputPath);
|
|
}
|
|
|
|
logger->stop();
|
|
|
|
for (auto & path : outPaths)
|
|
std::cout << store->printStorePath(path) << '\n';
|
|
}
|
|
}
|
|
|
|
static RegisterLegacyCommand r_nix_build("nix-build", main_nix_build);
|
|
static RegisterLegacyCommand r_nix_shell("nix-shell", main_nix_build);
|