re: recover the IDXD record-key / field-tag hash (8643/8643)
Closes the 4-byte record key. tag_hash is name_hash's shape -- byte-sum checksum in the top byte over a 24-bit modular polynomial -- with two different constants: modulus 0x00FFFFDF (2^24-33, prime) instead of 0x00FFF9D7, and no lowercasing, so tags are case-sensitive. name_hash explains 0 of 8643. Recovered from the tables rather than the executable: every inline field name is a known (name -> tag) pair, and comparing names differing in one character gives the per-position weights 1, 0x100, 0x10000, 0x21, 0x2100, ... -- a byte leaving bit 24 re-enters as 33, i.e. reduction mod 2^24-33. Holds where it is easy to get wrong (distance 8 and 9 carry correctly). A record's key is the tag of its own name: FormationSet rosters 362/362, UnitGroup rosters 281/281, S02 squadron names 111/111 -- so records can be addressed by name without reading the roster first. Implemented in Python (unitgroup.tag_hash) and Rust (sylpheed_formats::hash::tag_hash) with 3 new unit tests carrying disc-derived vectors; cargo test -p sylpheed-formats --lib hash is 8/8 green. Not settled: the guest routine is unlocated, so this uses exact modular arithmetic where the game may use a Barrett step without final fixup.
This commit is contained in:
@@ -150,3 +150,74 @@ mod tests {
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assert_eq!(name_hash(""), 0);
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}
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}
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/// Barrett modulus of the **record/field tag** hash — a different constant from
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/// [`MODULUS`], recovered separately (see below).
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const TAG_MODULUS: u32 = 0x00FF_FFDF; // 2^24 - 33
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/// Hash an IDXD **record key / field tag**.
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///
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/// This is *not* [`name_hash`]. IDXD tables key their records and name their
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/// fields with the same shape of hash — an 8-bit additive checksum in the top
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/// byte over a 24-bit modular polynomial — but with two differences:
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///
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/// * the modulus is `0x00FF_FFDF` (= 2^24 − 33, prime), not `0x00FF_F9D7`;
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/// * the bytes are **not** lowercased, so tags are case-sensitive.
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///
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/// Recovered empirically rather than from the executable. Every IDXD record in
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/// `GP_MAIN_GAME_E.pak` that carries an inline field name gives a known
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/// (name → tag) pair; there are **8643** such pairs, all with distinct names,
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/// and `name_hash` explains none of them. Comparing pairs of names differing in
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/// a single character yields the per-position weights `1, 0x100, 0x10000,
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/// 0x21, 0x2100, 0x210000, 0x441, …` — i.e. a base-256 polynomial in which
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/// shifting a byte out of bit 24 re-enters as `33`, which is reduction modulo
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/// `2^24 − 33`. The top byte is the plain sum of the bytes, exactly as in
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/// `name_hash` (8643/8643).
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///
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/// This closes the IDXD record key: a record's key is the tag of its **name**,
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/// which each table also lists in an in-table roster record.
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///
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/// ⚠️ Implemented with exact modular arithmetic. The guest routine has **not**
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/// been located, so if it uses a Barrett step without a final fixup — as
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/// `sub_82455C78` does — there could be inputs where the two disagree. All 8643
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/// known pairs agree; nothing beyond them has been checked.
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pub fn tag_hash(name: &str) -> u32 {
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let mut lo: u32 = 0;
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let mut sum: u32 = 0;
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for &byte in name.as_bytes() {
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lo = ((lo as u64 * 256 + byte as u64) % TAG_MODULUS as u64) as u32;
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sum = sum.wrapping_add(byte as u32);
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}
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((sum & 0xFF) << 24) | (lo & 0x00FF_FFFF)
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}
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#[cfg(test)]
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mod tag_tests {
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use super::tag_hash;
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#[test]
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fn known_tags_from_the_disc_tables() {
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// Field names, from IDXD records in GP_MAIN_GAME_E.pak.
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assert_eq!(tag_hash("SideID"), 0x1225_E093);
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assert_eq!(tag_hash("ID"), 0x8D00_4944);
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assert_eq!(tag_hash("Name"), 0x8161_7773);
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// Formation record keys, from FormationSet_S02.tbl.
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assert_eq!(tag_hash("Formation_4_Bird"), 0x22A5_EEED);
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assert_eq!(tag_hash("Formation_1_only"), 0x6047_EECF);
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assert_eq!(tag_hash("Formation_ADAN_Turret07_30"), 0x30CE_86BE);
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}
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#[test]
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fn tags_are_case_sensitive_unlike_name_hash() {
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// name_hash lowercases first; tag_hash must not.
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assert_ne!(tag_hash("SideID"), tag_hash("sideid"));
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}
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#[test]
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fn the_top_byte_is_the_byte_sum() {
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for s in ["ID", "Formation_4_Bird", "SideID"] {
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let sum = s.as_bytes().iter().map(|&b| b as u32).sum::<u32>() & 0xFF;
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assert_eq!(tag_hash(s) >> 24, sum, "{s}");
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}
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}
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}
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22
docs/re/data/idxd-tag-hash.txt
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22
docs/re/data/idxd-tag-hash.txt
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@@ -0,0 +1,22 @@
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# IDXD record-key / field-tag hash — verification over the whole pak
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tag_hash(s) = ((sum(bytes) & 0xff) << 24) | (base-256 polynomial mod 0x00FFFFDF)
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named fields with a unique tag in GP_MAIN_GAME_E.pak : 8643
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tag_hash exact : 8643
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wrong : 0
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name_hash exact (the OTHER hash, for contrast) : 0
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sample (name -> tag):
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AAGunShellID 31dd1a13
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AA_AxisMode_Max 80b0d604
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AA_AxisMode_Min 7eb0ddfa
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AA_PitchMinus_Max 6a133241
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AA_PitchMinus_Min 68133a37
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AA_PitchPlus_Max 028ab283
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AA_PitchPlus_Min 008aba79
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AA_Roll_Max ff8d842e
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AA_Roll_Min fd8d8c24
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AA_Yaw_Max 97182874
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AA_Yaw_Min 9518306a
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AB_AA_PitchMinus c78e8fdd
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84
docs/re/structures/idxd-tag-hash.md
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84
docs/re/structures/idxd-tag-hash.md
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@@ -0,0 +1,84 @@
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# The IDXD record-key / field-tag hash
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Status: ✅ recovered and verified 8643/8643 across `GP_MAIN_GAME_E.pak`;
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🟡 the guest routine has not been located, so the implementation is exact
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modular arithmetic rather than a transcribed op sequence.
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This closes the **4-byte record key** that had been ❔ since the squadron roster
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was decoded.
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## ✅ The function
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```python
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TAG_MODULUS = (1 << 24) - 33 # 0x00FFFFDF, prime
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def tag_hash(s):
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b = s.encode(); lo = 0
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for c in b:
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lo = (lo * 256 + c) % TAG_MODULUS
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return ((sum(b) & 0xFF) << 24) | lo
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```
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`tools/re-capture/unitgroup.py` (Python) and `sylpheed_formats::hash::tag_hash`
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(Rust) both implement it.
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## ✅ It is NOT `name_hash`, and the difference is two constants
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The IPFB TOC hash and this one share a shape — an 8-bit additive checksum of the
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bytes in the top byte over a 24-bit modular polynomial in the low 24 — but
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differ in exactly two ways:
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| | `name_hash` (IPFB TOC paths) | `tag_hash` (IDXD keys/tags) |
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|---|---|---|
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| modulus | `0x00FFF9D7` | **`0x00FFFFDF`** (2²⁴ − 33, prime) |
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| case | **lowercased** first | **case-sensitive** |
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`name_hash` explains **0 of 8643** tags, so the two are not interchangeable.
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## ✅ How it was recovered — from the tables, not the executable
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Every IDXD record that carries an *inline* field name hands over a known
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(name → tag) pair. `GP_MAIN_GAME_E.pak` yields **8643** such pairs, all with
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distinct names.
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1. **The top byte is the plain byte sum** — `(sum(bytes) & 0xff) == tag >> 24`
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for **8643 of 8643**. Same as `name_hash`.
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2. **The low 24 bits are a base-256 polynomial.** Comparing pairs of names that
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differ in a *single* character gives the weight of each position directly:
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| distance from end | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
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|---|---|---|---|---|---|---|---|---|---|
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| weight | `1` | `0x100` | `0x10000` | `0x21` | `0x2100` | `0x210000` | `0x441` | `0x44100` | `0x410084` |
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Each step is a shift left by 8, and **a byte leaving bit 24 re-enters as 33**
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— `0x21`. That is reduction modulo `2²⁴ − 33`. It continues to hold where it
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would be easy to get wrong: at distance 8, `0x044100 << 8` overflows by
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`0x04`, and `0x410000 + 0x04·0x21 = 0x410084` ✓; at distance 9,
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`0x008400 + 0x41·0x21 = 0x008C61` ✓.
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Result: **8643/8643 exact**, 0 wrong (`data/idxd-tag-hash.txt`).
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## ✅ A record's key is the tag of its own name
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Which is what makes it useful:
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| check | result |
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|---|---|
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| `FormationSet_S*` roster: `tag == tag_hash(name)` | **362 / 362** |
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| `UnitGroup_S*` roster: `tag == tag_hash(name)` | **281 / 281** |
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| S02 squadron names whose `tag_hash` is an actual record key | **111 / 111** |
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So a table's records can now be addressed **by name** without reading its roster
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first. The roster is still the honest way to *enumerate* names — hashes do not
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invert — but resolving a known name no longer needs it.
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## 🟡 What is not settled
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* **The guest routine has not been located.** `name_hash`'s low 24 bits come
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from a Barrett step with *no* final conditional subtract, which is not the
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same function as `%` on every input. `tag_hash` is written here with exact
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modular arithmetic because it matches all 8643 known pairs — but if the game
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computes it the same Barrett way, there may be inputs where the two disagree.
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Nothing outside those 8643 has been checked. Finding the routine in
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`default.xex` would settle it.
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* Whether the same hash keys IDXD tables in **other paks** is untested here.
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@@ -33,6 +33,15 @@
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# freeze_waitobj.sh boot [fly_s] boot, fly, capture `healthy`, leave running
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# freeze_waitobj.sh watch [secs] poll for the freeze, capture `frozen`
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# freeze_waitobj.sh run [fly_s] boot + healthy + watch, end to end
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# freeze_waitobj.sh repeat [n] [gap] N captures of a HEALTHY run, tags h1..hN
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# freeze_waitobj.sh stable [n] [gap] boot, then repeat
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#
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# `repeat`/`stable` exist because a one-sample-per-state diff cannot tell a
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# freeze transition from ordinary variation: run 1's "T74/T75 move off a
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# semaphore" did not reproduce, because the HEALTHY state varies between
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# instants too. Sample the healthy run several times first, and only treat a
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# frozen difference as a signature if it is not something healthy play does
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# anyway.
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#
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# `run` exists because the whole experiment does not fit one Bash call and a
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# `timeout` kills the process group -- it took the emulator down once. Launch it
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@@ -100,6 +109,17 @@ PY
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MODE="${1:-boot}"
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FLY="${2:-}"
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if [ "$MODE" = repeat ]; then
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N="${FLY:-5}"; GAP="${3:-45}"
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pgrep -x xenia_canary >/dev/null || { echo "NO EMULATOR"; exit 1; }
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for i in $(seq 1 "$N"); do
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capture "h$i"
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[ "$i" -lt "$N" ] && sleepfor "$GAP"
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done
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python3 "$SD/waitobj_report.py" --stability $(seq -f 'h%g' 1 "$N")
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echo "STABILITY DONE"; exit 0
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fi
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if [ "$MODE" = watch ]; then
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SECS="${FLY:-500}"
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pgrep -x xenia_canary >/dev/null || { echo "NO EMULATOR"; exit 1; }
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@@ -146,3 +166,7 @@ if [ "$MODE" = run ]; then
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echo "--- watching for the freeze ($(date +%T))"
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exec "$0" watch "${WATCH_S:-1500}"
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fi
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if [ "$MODE" = stable ]; then
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echo "--- sampling the HEALTHY run ($(date +%T))"
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exec "$0" repeat "${REPEAT_N:-6}" "${REPEAT_GAP:-45}"
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fi
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@@ -48,6 +48,24 @@ def name_hash(s):
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a = (a - (q * MODULUS)) & 0xFFFFFFFF
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return (((b << 24) & 0xFF000000) | (a & 0x00FFFFFF)) & 0xFFFFFFFF
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TAG_MODULUS = (1 << 24) - 33 # 0x00FFFFDF, prime
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def tag_hash(s):
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"""IDXD record key / field tag -- NOT name_hash.
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Same shape as name_hash (8-bit byte-sum checksum over a 24-bit modular
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polynomial) but modulo 0x00FFFFDF instead of 0x00FFF9D7, and NOT
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lowercased, so tags are case-sensitive. Recovered empirically from the 8643
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(name -> tag) pairs the tables themselves carry; `unitgroup.py --checktags`
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re-verifies all of them. A record's key is the tag of its own name, which
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each table lists in an in-table roster record.
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"""
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b = s.encode()
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lo = 0
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for c in b:
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lo = (lo * 256 + c) % TAG_MODULUS
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return ((sum(b) & 0xFF) << 24) | lo
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def read_entry(pak, h):
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idx = open(pak, 'rb').read()
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base = pak[:-4]
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@@ -91,7 +91,39 @@ def diff_threads(a, b):
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print(' T%-5d %-32s %-32s %s' % (t, fa, fb, '' if fa == fb else ' <-- CHANGED'))
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def stability(tags):
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"""Which thread states hold STILL across repeated samples of one healthy run?
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Written after a frozen-vs-healthy diff was read as a signature and did not
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reproduce: the healthy state varies between instants too, so a difference of
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two samples is not yet a difference of two states. Anything that moves here
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is disqualified as freeze evidence before it is ever used as such.
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"""
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snaps = [(t, per_thread(t)) for t in tags]
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snaps = [(t, d) for t, d in snaps if d]
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if len(snaps) < 2:
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print('need at least 2 usable captures, got %d' % len(snaps)); return
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threads = sorted({t for _, d in snaps for t in d}, reverse=True)
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print('=== stability across %d healthy captures: %s ===' % (
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len(snaps), ', '.join(t for t, _ in snaps)))
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stable = moved = 0
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for th in threads:
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vals = [d.get(th, '--') for _, d in snaps]
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uniq = sorted(set(vals))
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if len(uniq) == 1:
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stable += 1
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print(' T%-5d STABLE %s' % (th, uniq[0]))
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else:
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moved += 1
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print(' T%-5d VARIES %s' % (th, ' | '.join(vals)))
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print(' --- %d stable, %d vary across healthy play' % (stable, moved))
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print(' Only a thread in the STABLE set can carry a frozen-state signature;')
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print(' a VARIES thread differing when frozen proves nothing.')
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if __name__ == '__main__':
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if sys.argv[1:2] == ['--stability']:
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stability(sys.argv[2:]); sys.exit(0)
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tallies = {t: report(t) for t in (sys.argv[1:] or ['healthy'])}
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if len(tallies) > 1:
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a, b = list(tallies)
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Reference in New Issue
Block a user