500 lines
15 KiB
C++
500 lines
15 KiB
C++
//: Comparison primitives
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:(before "End Primitive Recipe Declarations")
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EQUAL,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "equal", EQUAL);
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:(before "End Primitive Recipe Checks")
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case EQUAL: {
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if (SIZE(inst.ingredients) <= 1) {
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raise << maybe(get(Recipe, r).name) << "'equal' needs at least two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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const reagent& exemplar = inst.ingredients.at(0);
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for (int i = /*skip exemplar*/1; i < SIZE(inst.ingredients); ++i) {
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if (!types_match(inst.ingredients.at(i), exemplar) && !types_match(exemplar, inst.ingredients.at(i))) {
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raise << maybe(get(Recipe, r).name) << "'equal' expects ingredients to be all of the same type, but got '" << to_original_string(inst) << "'\n" << end();
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goto finish_checking_instruction;
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}
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}
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if (SIZE(inst.products) > 1) {
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raise << maybe(get(Recipe, r).name) << "'equal' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_boolean(inst.products.at(0))) {
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raise << maybe(get(Recipe, r).name) << "'equal' should yield a boolean, but got '" << inst.products.at(0).original_string << "'\n" << end();
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break;
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}
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break;
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}
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:(before "End Primitive Recipe Implementations")
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case EQUAL: {
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vector<double>& exemplar = ingredients.at(0);
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bool result = true;
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for (int i = /*skip exemplar*/1; i < SIZE(ingredients); ++i) {
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if (SIZE(ingredients.at(i)) != SIZE(exemplar)) {
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result = false;
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break;
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}
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if (!equal(ingredients.at(i).begin(), ingredients.at(i).end(), exemplar.begin())) {
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result = false;
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break;
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}
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}
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products.resize(1);
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products.at(0).push_back(result);
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break;
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}
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:(scenario equal)
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def main [
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1:num <- copy 34
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2:num <- copy 33
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3:bool <- equal 1:num, 2:num
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]
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+mem: location 1 is 34
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+mem: location 2 is 33
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+mem: storing 0 in location 3
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:(scenario equal_2)
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def main [
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1:num <- copy 34
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2:num <- copy 34
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3:bool <- equal 1:num, 2:num
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]
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+mem: location 1 is 34
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+mem: location 2 is 34
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+mem: storing 1 in location 3
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:(scenario equal_multiple)
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def main [
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1:bool <- equal 34, 34, 34
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]
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+mem: storing 1 in location 1
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:(scenario equal_multiple_2)
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def main [
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1:bool <- equal 34, 34, 35
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]
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+mem: storing 0 in location 1
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:(before "End Primitive Recipe Declarations")
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NOT_EQUAL,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "not-equal", NOT_EQUAL);
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:(before "End Primitive Recipe Checks")
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case NOT_EQUAL: {
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if (SIZE(inst.ingredients) != 2) {
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raise << maybe(get(Recipe, r).name) << "'equal' needs two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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const reagent& exemplar = inst.ingredients.at(0);
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if (!types_match(inst.ingredients.at(1), exemplar) && !types_match(exemplar, inst.ingredients.at(1))) {
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raise << maybe(get(Recipe, r).name) << "'equal' expects ingredients to be all of the same type, but got '" << to_original_string(inst) << "'\n" << end();
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goto finish_checking_instruction;
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}
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if (SIZE(inst.products) > 1) {
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raise << maybe(get(Recipe, r).name) << "'equal' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_boolean(inst.products.at(0))) {
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raise << maybe(get(Recipe, r).name) << "'equal' should yield a boolean, but got '" << inst.products.at(0).original_string << "'\n" << end();
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break;
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}
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break;
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}
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:(before "End Primitive Recipe Implementations")
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case NOT_EQUAL: {
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vector<double>& exemplar = ingredients.at(0);
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products.resize(1);
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if (SIZE(ingredients.at(1)) != SIZE(exemplar)) {
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products.at(0).push_back(true);
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break;
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}
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bool equal_ingredients = equal(ingredients.at(1).begin(), ingredients.at(1).end(), exemplar.begin());
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products.at(0).push_back(!equal_ingredients);
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break;
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}
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:(scenario not_equal)
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def main [
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1:num <- copy 34
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2:num <- copy 33
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3:bool <- not-equal 1:num, 2:num
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]
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+mem: location 1 is 34
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+mem: location 2 is 33
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+mem: storing 1 in location 3
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:(scenario not_equal_2)
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def main [
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1:num <- copy 34
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2:num <- copy 34
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3:bool <- not-equal 1:num, 2:num
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]
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+mem: location 1 is 34
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+mem: location 2 is 34
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+mem: storing 0 in location 3
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:(before "End Primitive Recipe Declarations")
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GREATER_THAN,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "greater-than", GREATER_THAN);
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:(before "End Primitive Recipe Checks")
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case GREATER_THAN: {
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if (SIZE(inst.ingredients) <= 1) {
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raise << maybe(get(Recipe, r).name) << "'greater-than' needs at least two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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for (int i = 0; i < SIZE(inst.ingredients); ++i) {
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if (!is_mu_number(inst.ingredients.at(i))) {
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raise << maybe(get(Recipe, r).name) << "'greater-than' can only compare numbers; got '" << inst.ingredients.at(i).original_string << "'\n" << end();
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goto finish_checking_instruction;
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}
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}
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if (SIZE(inst.products) > 1) {
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raise << maybe(get(Recipe, r).name) << "'greater-than' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_boolean(inst.products.at(0))) {
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raise << maybe(get(Recipe, r).name) << "'greater-than' should yield a boolean, but got '" << inst.products.at(0).original_string << "'\n" << end();
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break;
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}
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break;
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}
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:(before "End Primitive Recipe Implementations")
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case GREATER_THAN: {
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bool result = true;
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for (int i = /**/1; i < SIZE(ingredients); ++i) {
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if (ingredients.at(i-1).at(0) <= ingredients.at(i).at(0)) {
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result = false;
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}
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}
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products.resize(1);
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products.at(0).push_back(result);
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break;
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}
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:(scenario greater_than)
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def main [
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1:num <- copy 34
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2:num <- copy 33
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3:bool <- greater-than 1:num, 2:num
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]
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+mem: storing 1 in location 3
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:(scenario greater_than_2)
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def main [
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1:num <- copy 34
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2:num <- copy 34
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3:bool <- greater-than 1:num, 2:num
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]
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+mem: storing 0 in location 3
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:(scenario greater_than_multiple)
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def main [
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1:bool <- greater-than 36, 35, 34
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]
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+mem: storing 1 in location 1
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:(scenario greater_than_multiple_2)
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def main [
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1:bool <- greater-than 36, 35, 35
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]
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+mem: storing 0 in location 1
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:(before "End Primitive Recipe Declarations")
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LESSER_THAN,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "lesser-than", LESSER_THAN);
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:(before "End Primitive Recipe Checks")
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case LESSER_THAN: {
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if (SIZE(inst.ingredients) <= 1) {
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raise << maybe(get(Recipe, r).name) << "'lesser-than' needs at least two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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for (int i = 0; i < SIZE(inst.ingredients); ++i) {
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if (!is_mu_number(inst.ingredients.at(i))) {
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raise << maybe(get(Recipe, r).name) << "'lesser-than' can only compare numbers; got '" << inst.ingredients.at(i).original_string << "'\n" << end();
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goto finish_checking_instruction;
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}
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}
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if (SIZE(inst.products) > 1) {
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raise << maybe(get(Recipe, r).name) << "'lesser-than' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_boolean(inst.products.at(0))) {
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raise << maybe(get(Recipe, r).name) << "'lesser-than' should yield a boolean, but got '" << inst.products.at(0).original_string << "'\n" << end();
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break;
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}
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break;
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}
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:(before "End Primitive Recipe Implementations")
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case LESSER_THAN: {
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bool result = true;
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for (int i = /**/1; i < SIZE(ingredients); ++i) {
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if (ingredients.at(i-1).at(0) >= ingredients.at(i).at(0)) {
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result = false;
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}
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}
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products.resize(1);
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products.at(0).push_back(result);
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break;
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}
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:(scenario lesser_than)
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def main [
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1:num <- copy 32
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2:num <- copy 33
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3:bool <- lesser-than 1:num, 2:num
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]
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+mem: storing 1 in location 3
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:(scenario lesser_than_2)
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def main [
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1:num <- copy 34
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2:num <- copy 33
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3:bool <- lesser-than 1:num, 2:num
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]
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+mem: storing 0 in location 3
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:(scenario lesser_than_multiple)
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def main [
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1:bool <- lesser-than 34, 35, 36
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]
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+mem: storing 1 in location 1
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:(scenario lesser_than_multiple_2)
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def main [
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1:bool <- lesser-than 34, 35, 35
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]
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+mem: storing 0 in location 1
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:(before "End Primitive Recipe Declarations")
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GREATER_OR_EQUAL,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "greater-or-equal", GREATER_OR_EQUAL);
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:(before "End Primitive Recipe Checks")
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case GREATER_OR_EQUAL: {
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if (SIZE(inst.ingredients) <= 1) {
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raise << maybe(get(Recipe, r).name) << "'greater-or-equal' needs at least two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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for (int i = 0; i < SIZE(inst.ingredients); ++i) {
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if (!is_mu_number(inst.ingredients.at(i))) {
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raise << maybe(get(Recipe, r).name) << "'greater-or-equal' can only compare numbers; got '" << inst.ingredients.at(i).original_string << "'\n" << end();
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goto finish_checking_instruction;
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}
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}
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if (SIZE(inst.products) > 1) {
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raise << maybe(get(Recipe, r).name) << "'greater-or-equal' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_boolean(inst.products.at(0))) {
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raise << maybe(get(Recipe, r).name) << "'greater-or-equal' should yield a boolean, but got '" << inst.products.at(0).original_string << "'\n" << end();
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break;
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}
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break;
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}
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:(before "End Primitive Recipe Implementations")
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case GREATER_OR_EQUAL: {
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bool result = true;
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for (int i = /**/1; i < SIZE(ingredients); ++i) {
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if (ingredients.at(i-1).at(0) < ingredients.at(i).at(0)) {
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result = false;
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}
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}
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products.resize(1);
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products.at(0).push_back(result);
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break;
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}
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:(scenario greater_or_equal)
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def main [
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1:num <- copy 34
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2:num <- copy 33
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3:bool <- greater-or-equal 1:num, 2:num
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]
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+mem: storing 1 in location 3
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:(scenario greater_or_equal_2)
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def main [
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1:num <- copy 34
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2:num <- copy 34
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3:bool <- greater-or-equal 1:num, 2:num
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]
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+mem: storing 1 in location 3
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:(scenario greater_or_equal_3)
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def main [
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1:num <- copy 34
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2:num <- copy 35
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3:bool <- greater-or-equal 1:num, 2:num
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]
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+mem: storing 0 in location 3
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:(scenario greater_or_equal_multiple)
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def main [
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1:bool <- greater-or-equal 36, 35, 35
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]
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+mem: storing 1 in location 1
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:(scenario greater_or_equal_multiple_2)
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def main [
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1:bool <- greater-or-equal 36, 35, 36
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]
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+mem: storing 0 in location 1
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:(before "End Primitive Recipe Declarations")
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LESSER_OR_EQUAL,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "lesser-or-equal", LESSER_OR_EQUAL);
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:(before "End Primitive Recipe Checks")
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case LESSER_OR_EQUAL: {
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if (SIZE(inst.ingredients) <= 1) {
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raise << maybe(get(Recipe, r).name) << "'lesser-or-equal' needs at least two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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for (int i = 0; i < SIZE(inst.ingredients); ++i) {
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if (!is_mu_number(inst.ingredients.at(i))) {
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raise << maybe(get(Recipe, r).name) << "'lesser-or-equal' can only compare numbers; got '" << inst.ingredients.at(i).original_string << "'\n" << end();
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goto finish_checking_instruction;
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}
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}
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if (SIZE(inst.products) > 1) {
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raise << maybe(get(Recipe, r).name) << "'greater-or-equal' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_boolean(inst.products.at(0))) {
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raise << maybe(get(Recipe, r).name) << "'greater-or-equal' should yield a boolean, but got '" << inst.products.at(0).original_string << "'\n" << end();
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break;
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}
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break;
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}
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:(before "End Primitive Recipe Implementations")
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case LESSER_OR_EQUAL: {
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bool result = true;
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for (int i = /**/1; i < SIZE(ingredients); ++i) {
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if (ingredients.at(i-1).at(0) > ingredients.at(i).at(0)) {
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result = false;
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}
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}
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products.resize(1);
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products.at(0).push_back(result);
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break;
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}
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:(scenario lesser_or_equal)
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def main [
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1:num <- copy 32
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2:num <- copy 33
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3:bool <- lesser-or-equal 1:num, 2:num
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]
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+mem: storing 1 in location 3
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:(scenario lesser_or_equal_2)
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def main [
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1:num <- copy 33
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2:num <- copy 33
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3:bool <- lesser-or-equal 1:num, 2:num
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]
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+mem: storing 1 in location 3
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:(scenario lesser_or_equal_3)
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def main [
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1:num <- copy 34
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2:num <- copy 33
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3:bool <- lesser-or-equal 1:num, 2:num
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]
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+mem: storing 0 in location 3
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:(scenario lesser_or_equal_multiple)
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def main [
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1:bool <- lesser-or-equal 34, 35, 35
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]
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+mem: storing 1 in location 1
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:(scenario lesser_or_equal_multiple_2)
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def main [
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1:bool <- lesser-or-equal 34, 35, 34
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]
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+mem: storing 0 in location 1
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:(before "End Primitive Recipe Declarations")
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MAX,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "max", MAX);
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:(before "End Primitive Recipe Checks")
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case MAX: {
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if (SIZE(inst.ingredients) <= 1) {
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raise << maybe(get(Recipe, r).name) << "'max' needs at least two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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for (int i = 0; i < SIZE(inst.ingredients); ++i) {
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if (!is_mu_number(inst.ingredients.at(i))) {
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raise << maybe(get(Recipe, r).name) << "'max' can only compare numbers; got '" << inst.ingredients.at(i).original_string << "'\n" << end();
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goto finish_checking_instruction;
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}
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}
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if (SIZE(inst.products) > 1) {
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raise << maybe(get(Recipe, r).name) << "'max' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
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break;
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}
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if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_number(inst.products.at(0))) {
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raise << maybe(get(Recipe, r).name) << "'max' should yield a number, but got '" << inst.products.at(0).original_string << "'\n" << end();
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break;
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}
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break;
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}
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:(before "End Primitive Recipe Implementations")
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case MAX: {
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int result = ingredients.at(0).at(0);
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for (int i = /**/1; i < SIZE(ingredients); ++i) {
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if (ingredients.at(i).at(0) > result) {
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result = ingredients.at(i).at(0);
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}
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}
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products.resize(1);
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products.at(0).push_back(result);
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break;
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}
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:(before "End Primitive Recipe Declarations")
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MIN,
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:(before "End Primitive Recipe Numbers")
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put(Recipe_ordinal, "min", MIN);
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:(before "End Primitive Recipe Checks")
|
|
case MIN: {
|
|
if (SIZE(inst.ingredients) <= 1) {
|
|
raise << maybe(get(Recipe, r).name) << "'min' needs at least two ingredients to compare in '" << to_original_string(inst) << "'\n" << end();
|
|
break;
|
|
}
|
|
for (int i = 0; i < SIZE(inst.ingredients); ++i) {
|
|
if (!is_mu_number(inst.ingredients.at(i))) {
|
|
raise << maybe(get(Recipe, r).name) << "'min' can only compare numbers; got '" << inst.ingredients.at(i).original_string << "'\n" << end();
|
|
goto finish_checking_instruction;
|
|
}
|
|
}
|
|
if (SIZE(inst.products) > 1) {
|
|
raise << maybe(get(Recipe, r).name) << "'min' yields exactly one product in '" << to_original_string(inst) << "'\n" << end();
|
|
break;
|
|
}
|
|
if (!inst.products.empty() && !is_dummy(inst.products.at(0)) && !is_mu_number(inst.products.at(0))) {
|
|
raise << maybe(get(Recipe, r).name) << "'min' should yield a number, but got '" << inst.products.at(0).original_string << "'\n" << end();
|
|
break;
|
|
}
|
|
break;
|
|
}
|
|
:(before "End Primitive Recipe Implementations")
|
|
case MIN: {
|
|
int result = ingredients.at(0).at(0);
|
|
for (int i = /**/1; i < SIZE(ingredients); ++i) {
|
|
if (ingredients.at(i).at(0) < result) {
|
|
result = ingredients.at(i).at(0);
|
|
}
|
|
}
|
|
products.resize(1);
|
|
products.at(0).push_back(result);
|
|
break;
|
|
}
|