//: Helper for various programming environments: run arbitrary mu code and //: return some result in string form. :(scenario run_interactive_code) recipe main [ 2:address:array:character <- new [1:number <- copy 34:literal] run-interactive 2:address:array:character ] +mem: storing 34 in location 1 :(scenario run_interactive_empty) recipe main [ 1:address:array:character <- run-interactive 0:literal ] # result is null +mem: storing 0 in location 1 :(before "End Primitive Recipe Declarations") RUN_INTERACTIVE, :(before "End Primitive Recipe Numbers") Recipe_ordinal["run-interactive"] = RUN_INTERACTIVE; //? cerr << "run-interactive: " << RUN_INTERACTIVE << '\n'; //? 1 :(before "End Primitive Recipe Implementations") case RUN_INTERACTIVE: { assert(scalar(ingredients.at(0))); products.resize(1); bool new_code_pushed_to_stack = run_interactive(ingredients.at(0).at(0)); if (!new_code_pushed_to_stack) { products.at(0).push_back(0); break; // done with this instruction } else { continue; // not done with caller; don't increment current_step_index() } } :(before "End Globals") bool Running_interactive = false; :(before "End Setup") Running_interactive = false; :(code) // reads a string, tries to call it as code, saving all warnings. // returns true if successfully called (no errors found during load and transform) bool run_interactive(long long int address) { long long int size = Memory[address]; if (size == 0) return false; ostringstream tmp; for (long long int curr = address+1; curr <= address+size; ++curr) { // todo: unicode tmp << (char)(int)Memory[curr]; } if (Recipe_ordinal.find("interactive") == Recipe_ordinal.end()) Recipe_ordinal["interactive"] = Next_recipe_ordinal++; string command = trim(strip_comments(tmp.str())); if (command.empty()) return false; Recipe.erase(Recipe_ordinal["interactive"]); Hide_warnings = true; // call run(string) but without the scheduling load("recipe interactive [\n"+command+"\n]\n"); transform_all(); if (trace_count("warn") > 0) { Hide_warnings = false; return false; } Running_interactive = true; Current_routine->calls.push_front(call(Recipe_ordinal["interactive"])); return true; } :(after "Starting Reply") if (current_recipe_name() == "interactive") clean_up_interactive(); :(after "Falling Through End Of Recipe") if (current_recipe_name() == "interactive") clean_up_interactive(); :(code) void clean_up_interactive() { Hide_warnings = false; Running_interactive = false; } :(scenario "run_interactive_returns_stringified_result") recipe main [ # try to interactively add 2 and 2 1:address:array:character <- new [add 2:literal, 2:literal] 2:address:array:character <- run-interactive 1:address:array:character 10:array:character <- copy 2:address:array:character/deref ] # first letter in the output should be '4' in unicode +mem: storing 52 in location 11 :(before "End Globals") string Most_recent_results; :(before "End Setup") Most_recent_results = ""; :(before "End of Instruction") if (Running_interactive && current_instruction().products.empty()) { record_products(current_instruction(), products); } :(code) void record_products(const instruction& instruction, const vector >& products) { ostringstream out; for (long long int i = 0; i < SIZE(products); ++i) { for (long long int j = 0; j < SIZE(products.at(i)); ++j) { //? cerr << "aa: " << i << ", " << j << ": " << products.at(i).at(j) << '\n'; //? 1 out << products.at(i).at(j) << ' '; } out << '\n'; } //? cerr << "aa: {\n" << out.str() << "}\n"; //? 1 Most_recent_results = out.str(); } :(before "Complete Call Fallthrough") if (current_instruction().operation == RUN_INTERACTIVE && !current_instruction().products.empty()) { assert(SIZE(current_instruction().products) == 1); // Send the results of the most recently executed instruction, regardless of // call depth, to be converted to string and potentially printed to string. vector result; result.push_back(new_string(Most_recent_results)); write_memory(current_instruction().products.at(0), result); } :(code) string strip_comments(string in) { ostringstream result; for (long long int i = 0; i < SIZE(in); ++i) { if (in.at(i) != '#') { result << in.at(i); } else { while (i < SIZE(in) && in.at(i) != '\n') ++i; if (i < SIZE(in) && in.at(i) == '\n') ++i; } } return result.str(); } long long int stringified_value_of_location(long long int address) { // convert to string ostringstream out; //? trace(1, "foo") << "a: " << address; //? 1 out << Memory[address]; //? trace(1, "foo") << "b: " << Memory[address]; //? 1 return new_string(out.str()); } //:: debugging tool :(before "End Primitive Recipe Declarations") _RUN_DEPTH, :(before "End Primitive Recipe Numbers") Recipe_ordinal["$run-depth"] = _RUN_DEPTH; :(before "End Primitive Recipe Implementations") case _RUN_DEPTH: { cerr << Current_routine->calls.size(); break; }