feat: piv-summary
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@@ -10,11 +10,15 @@ use yubikey::piv::{metadata, SlotId};
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use crate::pivutil::{get_algorithm_id, ToStr};
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const NA: &str = "N/A";
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#[derive(Tabled)]
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struct PivSlot {
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name: String,
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id: String,
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algorithm: String,
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origin: String,
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retries: String,
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subject: String,
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pin_policy: String,
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touch_policy: String,
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@@ -75,12 +79,20 @@ impl Command for CommandImpl {
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fn print_summary_info(yubikey: &mut YubiKey, slot: SlotId, piv_slots: &mut Vec<PivSlot>, show_all: bool, show_table: bool) -> XResult<()> {
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let slot_id: u8 = slot.into();
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let mut pin_policy = Some("N/A".to_string());
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let mut touch_policy = Some("N/A".to_string());
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let mut origin = NA.to_string();
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let mut retries = NA.to_string();
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let mut pin_policy = NA.to_string();
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let mut touch_policy = NA.to_string();
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if let Ok(metadata) = metadata(yubikey, slot) {
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if let Some((p_policy, t_policy)) = &metadata.policy {
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pin_policy = Some(p_policy.to_str().to_string());
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touch_policy = Some(t_policy.to_str().to_string());
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pin_policy = p_policy.to_str().to_string();
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touch_policy = t_policy.to_str().to_string();
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}
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if let Some(o) = &metadata.origin {
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origin = o.to_str().to_string();
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}
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if let Some(r) = &metadata.retries {
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retries = format!("{}/{}", r.retry_count, r.remaining_count);
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}
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}
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let cert = match Certificate::read(yubikey, slot) {
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@@ -91,10 +103,12 @@ fn print_summary_info(yubikey: &mut YubiKey, slot: SlotId, piv_slots: &mut Vec<P
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piv_slots.push(PivSlot {
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name: slot.to_string(),
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id: format!("{:x}", slot_id),
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algorithm: "N/A".to_string(),
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subject: "N/A".to_string(),
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pin_policy: pin_policy.as_ref().unwrap().to_string(),
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touch_policy: touch_policy.as_ref().unwrap().to_string(),
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algorithm: NA.to_string(),
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origin: origin.to_string(),
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retries: retries.to_string(),
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subject: NA.to_string(),
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pin_policy: pin_policy.to_string(),
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touch_policy: touch_policy.to_string(),
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});
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} else {
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warning!("Slot: {:?}, id: {:x}, certificate not found", slot, slot_id);
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@@ -116,18 +130,21 @@ fn print_summary_info(yubikey: &mut YubiKey, slot: SlotId, piv_slots: &mut Vec<P
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name: slot.to_string(),
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id: format!("{:x}", slot_id),
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algorithm: algorithm_id,
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origin: origin.to_string(),
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retries: retries.to_string(),
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subject: cert_subject,
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pin_policy: pin_policy.as_ref().unwrap().to_string(),
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touch_policy: touch_policy.as_ref().unwrap().to_string(),
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pin_policy: pin_policy.to_string(),
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touch_policy: touch_policy.to_string(),
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});
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} else {
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success!("Slot: {:x}, algorithm: {}, name: {:?}, subject: {}, pin policy: {}, touch policy: {}",
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success!("Slot: {:x}, algorithm: {}, name: {:?}, origin: {}, subject: {}, pin policy: {}, touch policy: {}",
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slot_id,
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algorithm_id,
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slot,
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cert_subject,
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pin_policy.as_ref().unwrap(),
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touch_policy.as_ref().unwrap(),
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&origin,
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&cert_subject,
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&pin_policy,
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&touch_policy,
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);
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}
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@@ -4,7 +4,7 @@ use spki::der::{Decode, Encode};
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use x509_parser::prelude::FromDer;
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use x509_parser::public_key::RSAPublicKey;
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use yubikey::{PinPolicy, TouchPolicy};
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use yubikey::piv::{AlgorithmId, ManagementAlgorithmId, RetiredSlotId};
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use yubikey::piv::{AlgorithmId, ManagementAlgorithmId, Origin, RetiredSlotId};
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use yubikey::piv::SlotId;
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const RSA: ObjectIdentifier = ObjectIdentifier::new_unwrap("1.2.840.113549.1.1.1");
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@@ -67,6 +67,15 @@ impl ToStr for ManagementAlgorithmId {
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}
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}
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impl ToStr for Origin {
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fn to_str(&self) -> &str {
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match self {
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Origin::Imported => "imported",
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Origin::Generated => "generated",
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}
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}
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}
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pub fn get_algorithm_id(public_key_info: &SubjectPublicKeyInfoOwned) -> XResult<AlgorithmId> {
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if public_key_info.algorithm.oid == RSA {
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let rsa_public_key = opt_result!(
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