icepick workflow: detach simulator from normal flow
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57ab484995
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f09fb4dd59
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@ -107,8 +107,9 @@ pub fn do_cli_thing() {
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workflows.push((module.name.clone(), module.workflows.clone()));
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workflows.push((module.name.clone(), module.workflows.clone()));
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}
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}
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let workflows = workflows.leak();
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let workflows = workflows.leak();
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let mut workflow_command =
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let mut workflow_command = clap::Command::new("workflow")
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clap::Command::new("workflow").about("Run a pre-defined Icepick workflow");
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.about("Run a pre-defined Icepick workflow")
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.arg(clap::arg!(--"simulate-workflow").global(true));
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for module in workflows.iter() {
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for module in workflows.iter() {
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let mut module_subcommand = clap::Command::new(module.0.as_str());
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let mut module_subcommand = clap::Command::new(module.0.as_str());
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for workflow in &module.1 {
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for workflow in &module.1 {
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@ -124,12 +125,16 @@ pub fn do_cli_thing() {
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for command in commands.iter() {
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for command in commands.iter() {
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let mut subcommand = clap::Command::new(command.0.as_str());
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let mut subcommand = clap::Command::new(command.0.as_str());
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for op in &command.2 {
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for op in &command.2 {
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let mut op_command = clap::Command::new(op.name.replace('_', "-")).about(&op.description);
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let mut op_command =
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clap::Command::new(op.name.replace('_', "-")).about(&op.description);
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for arg in &op.arguments {
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for arg in &op.arguments {
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let mut op_arg = clap::Arg::new(arg.name.replace('_', "-")).help(arg.description.as_str());
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let mut op_arg =
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clap::Arg::new(arg.name.replace('_', "-")).help(arg.description.as_str());
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op_arg = match arg.r#type {
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op_arg = match arg.r#type {
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ArgumentType::Required => op_arg.required(true),
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ArgumentType::Required => op_arg.required(true),
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ArgumentType::Optional => op_arg.required(false).long(arg.name.replace('_', "-")),
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ArgumentType::Optional => {
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op_arg.required(false).long(arg.name.replace('_', "-"))
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}
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};
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};
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op_command = op_command.arg(op_arg);
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op_command = op_command.arg(op_arg);
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}
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}
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@ -82,6 +82,44 @@ impl Workflow {
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map
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map
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}
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}
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pub fn simulate_workflow(&self, mut data: HashSet<String>, operations: &[InvocableOperation]) {
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// simulate the steps by using a HashSet to traverse the inputs and outputs and ensure
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// there's no inconsistencies
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for (i, step) in self.steps.iter().enumerate() {
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// NOTE: overflow possible but unlikely
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let step_index = i + 1;
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// Find the relevant Operation
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let Some(invocable) = operations.iter().find(|op| op.name == step.r#type) else {
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panic!("Could not find operation: {}", step.r#type);
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};
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// Check if we have the keys we want to pass into the module.
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for in_memory_name in step.inputs.values() {
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if !data.contains(in_memory_name) && !step.values.contains_key(in_memory_name) {
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panic!("Failed simulation: step #{step_index}: missing value {in_memory_name}");
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}
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}
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// Check that the module accepts those keys.
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for module_input_name in step.inputs.keys() {
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if !invocable
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.operation
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.arguments
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.iter()
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.any(|arg| *module_input_name == arg.name)
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{
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eprintln!("Simulation: step #{step_index}: input value {module_input_name} will be passed through as JSON input");
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}
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}
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// Add the keys we get from the module.
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for in_memory_name in step.outputs.values() {
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data.insert(in_memory_name.clone());
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}
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}
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}
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pub fn handle(&self, matches: &clap::ArgMatches, modules: Commands) {
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pub fn handle(&self, matches: &clap::ArgMatches, modules: Commands) {
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let inputs = self.load_inputs(matches);
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let inputs = self.load_inputs(matches);
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let data: HashMap<String, Value> = inputs
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let data: HashMap<String, Value> = inputs
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@ -103,43 +141,11 @@ impl Workflow {
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}
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}
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}
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}
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// simulate the steps by using a HashSet to traverse the inputs and outputs and ensure
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if matches.get_flag("simulate-workflow") {
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// there's no inconsistencies
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self.simulate_workflow(data.into_keys().collect(), &operations);
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let mut simulated_values = data.keys().collect::<HashSet<_>>();
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return;
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for (i, step) in self.steps.iter().enumerate() {
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// NOTE: overflow possible but unlikely
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let step_index = i + 1;
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// Find the relevant Operation
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let Some(invocable) = operations.iter().find(|op| op.name == step.r#type) else {
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panic!("Could not find operation: {}", step.r#type);
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};
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// Check if we have the keys we want to pass into the module.
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for in_memory_name in step.inputs.values() {
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if !simulated_values.contains(in_memory_name)
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&& !step.values.contains_key(in_memory_name)
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{
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panic!("Failed simulation: step #{step_index}: missing value {in_memory_name}");
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}
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}
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// Check that the module accepts those keys.
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for module_input_name in step.inputs.keys() {
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if !invocable
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.operation
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.arguments
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.iter()
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.any(|arg| *module_input_name == arg.name)
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{
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eprintln!("Simulation: step #{step_index}: input value {module_input_name} will be passed through as JSON input");
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}
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}
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// Add the keys we get from the module.
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for in_memory_name in step.outputs.values() {
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simulated_values.insert(in_memory_name);
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}
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}
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}
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todo!("Unsimulated transaction!");
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}
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}
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}
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}
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