# SRAS Scan Binary Format — Version 6 / 7 Each `.sras` file contains **one complete scan**: all GR rotation angles and all Y rows. Files are named `{prefix}.sras`. Starting in v6, each angle only scans the **bounding box of the nominal ROI rotated by that specific angle** — not the worst case across all angles — so `x_start`, `x_delta` (and therefore `n_frames`, the points/row count) and `n_rows` all vary per angle. A 0°/180° scan of a wide, short ROI needs far fewer rows than a 45° scan of the same ROI, and the file format reflects that instead of forcing every angle to the largest bounding box. v7 is byte-identical to v6 (same header, angle table, geometry table, row table, preamble blocks, background block, waveform data) plus an optional trailing **Cache Tail** holding precomputed per-angle DC and/or FFT images (see [Cache Tail (v7)](#cache-tail-v7) below) — only the header's `version` field and the presence of that trailing section differ. Scans come off the scope as v6; `sras_viewer.py`'s "Convert" menu batch actions convert a file to v7 **in place** the first time either cache block is computed and stored. --- ## File Layout ``` [Global Header — 49 bytes] [Angle Table — n_angles × 4 bytes (float32 per angle, degrees)] [Per-Angle Geometry Table— n_angles × 14 bytes (x_start f32, x_delta f32, n_frames u32, n_rows u16)] [Row Table (ragged) — sum(n_rows) × 4 bytes (float32 per row, angle-major)] [Preamble Blocks — n_channels × (uint16 length + UTF-8 WFMOutpre string)] [Background Block — uint32 n_bg_samples + n_bg_samples × int8 bytes] [Waveform Data (ragged) — per angle: n_rows[a] × n_channels × n_frames[a] × samples_per_frame × bps bytes] [Cache Tail (optional) — "CACH" + DC block (optional) + FFT block (optional); v7 only] ``` All multi-byte integers and floats use **big-endian** byte order (`>` in Python's `struct` module). --- ## Global Header (49 bytes) | Offset | Size | Type | Field | Description | |--------|------|-----------|--------------------|--------------------------------------------------| | 0 | 4 | `4s` | `magic` | Always `SRAS` (0x53 0x52 0x41 0x53) | | 4 | 1 | `uint8` | `version` | Format version — `6` | | 5 | 2 | `uint16` | `n_angles` | Number of GR rotation angles | | 7 | 4 | `float32` | `x_start_nominal` | Nominal (pre-rotation) X scan start, mm | | 11 | 4 | `float32` | `y_start_nominal` | Nominal (pre-rotation) Y scan start, mm | | 15 | 4 | `float32` | `x_delta_nominal` | Nominal (pre-rotation) X scan width, mm | | 19 | 4 | `float32` | `y_delta_nominal` | Nominal (pre-rotation) Y scan height, mm | | 23 | 4 | `float32` | `row_spacing_mm` | Y spacing between rows, mm | | 27 | 4 | `float32` | `velocity_mm_s` | Stage scan velocity in mm/s | | 31 | 4 | `float32` | `laser_freq_hz` | Laser repetition rate in Hz | | 35 | 4 | `uint32` | `samples_per_frame`| Time samples per waveform | | 39 | 8 | `float64` | `sample_rate_hz` | Oscilloscope sample rate in Hz (e.g. 6.25e9) | | 47 | 1 | `uint8` | `bytes_per_sample` | Bytes per ADC sample: `1` = int8, `2` = int16 | | 48 | 1 | `uint8` | `n_channels` | Number of channels recorded (currently `3`) | **Total header size:** 49 bytes — verified: `struct.calcsize(">4sBHfffffffIdBB") == 49`. The `*_nominal` fields describe the ROI as originally entered on the New Scan page (XS/YS/XD/YD), **before** per-angle bounding-box expansion. They are for reference/reconstruction only — the actual per-angle scan geometry used for acquisition is in the Per-Angle Geometry Table below. --- ## Angle Table Immediately after the header: **n_angles** big-endian float32 values, one per GR angle (degrees, 0–180). ``` angle[0], angle[1], …, angle[n_angles - 1] ``` --- ## Per-Angle Geometry Table Immediately after the angle table: **n_angles** fixed-size records, one per angle (same order as the angle table), each 14 bytes: | Size | Type | Field | Description | |------|-----------|------------|-------------------------------------------------------| | 4 | `float32` | `x_start` | X scan start for this angle's bounding box, mm | | 4 | `float32` | `x_delta` | X scan width for this angle's bounding box, mm | | 4 | `uint32` | `n_frames` | A-scans per row for this angle (FastFrame count) | | 2 | `uint16` | `n_rows` | Number of Y rows scanned for this angle | Format string per record: `">ffIH"`. --- ## Row Table (ragged) Immediately after the per-angle geometry table: for each angle in order, that angle's `n_rows` big-endian float32 Y positions (mm), concatenated with no padding between angles. ``` # angle 0's rows, then angle 1's rows, … y_mm[0][0], …, y_mm[0][n_rows[0]-1], y_mm[1][0], …, y_mm[n_angles-1][n_rows[-1]-1] ``` Row-table boundaries for angle *a* are derived from the per-angle geometry table: `sum(n_rows[0:a])` gives the starting index into the flattened array. --- ## Preamble Blocks Immediately after the row table: **n_channels** length-prefixed UTF-8 strings, one per channel in `SCAN_CHANNELS` order (CH1, CH3, CH4). Each block is: ``` uint16 length — byte length of the following UTF-8 string bytes preamble — WFMOutpre response string from the oscilloscope ``` The preamble captures per-channel scaling constants (YMULT, YOFF, YZERO) needed to convert raw ADC values to volts. --- ## Background Block Immediately after the preamble blocks: a single CH1 waveform captured with the **Helios (generation) laser enabled** and the **Genesis (detection) laser disabled**. This provides a noise/background reference for subtraction during post-processing. ``` uint32 n_bg_samples — number of samples in the background waveform int8[] bg_data — raw ADC samples (same encoding as waveform data) ``` `n_bg_samples` equals `samples_per_frame` under normal acquisition settings. --- ## Waveform Data (ragged) Immediately after the background block. Data is stored in **angle-major, row-minor** order, but unlike earlier versions each angle contributes a different number of rows (`n_rows[a]`) and a different number of frames per row (`n_frames[a]`), both taken from that angle's Per-Angle Geometry Table entry. Within each row, channels are interleaved in ascending channel-index order, with each channel's FastFrame data written in frame order. ``` for angle a in 0 … n_angles-1: for row in 0 … n_rows[a]-1: for channel in [CH1, CH3, CH4]: # 3 channels, fixed order for frame in 0 … n_frames[a]-1: samples[0 … samples_per_frame-1] # bps bytes each ``` Each sample is a raw signed ADC value. With `bytes_per_sample = 1` this is **int8** (−128 … +127). With `bytes_per_sample = 2` this is **big-endian int16**. Total data size: ``` sum over angles a of: n_rows[a] × 3 × n_frames[a] × samples_per_frame × bytes_per_sample ``` > **Incomplete files:** If a scan is aborted the file is closed immediately and > the data block will be shorter than the expected size. Readers should > reconstruct the expected per-angle byte offsets from the Per-Angle Geometry > Table and check `file_size` against the running total before reshaping — > a fixed `(n_angles, n_rows, ...)` reshape (as in pre-v6 readers) will not > work since row/frame counts are no longer uniform across angles. --- ## Spatial Mapping The *k*-th waveform (frame) in a row corresponds to the *k*-th laser pulse that hit the sample. For a row belonging to angle *a*, the physical X position of that pulse is: ``` x_k = x_start[a] + k * (velocity_mm_s / laser_freq_hz) ``` using that angle's `x_start` from the Per-Angle Geometry Table (not `x_start_nominal`). --- ## Cache Tail (v7) Present iff `version == 7` and `file_size > cache_offset`, where: ``` cache_offset = data_offset + Σ over angles a of: n_rows[a] × n_channels × n_frames[a] × samples_per_frame × bytes_per_sample ``` i.e. exactly `data_offset + waveform_bytes` — the same "Total data size" formula as Waveform Data above. This offset is derivable from the header and Per-Angle Geometry Table alone and does **not** depend on which cache block(s) are present, so a writer can always seek straight there without reading or touching any waveform byte before it. Unlike the (removed) v5 `PREC` section, which stored one omnibus per-angle entry (FFT + both DC channels together) in a dense, uniform-geometry array, the v7 Cache Tail splits DC and FFT into two **independent** sub-blocks — each sized per-angle from the Per-Angle Geometry Table, each independently present, and each independently updatable in any order, any number of times, without disturbing the other. This matches `sras_viewer.py`'s "Convert" menu, which exposes DC and FFT store as two separate batch actions. ### CACH outer header (6 bytes, `">4sBB"`) | Offset | Size | Type | Field | Description | |--------|------|------|-------|-------------| | 0 | 4 | `char[4]` | `cach_magic` | `CACH` (ASCII). Missing/wrong magic → treat file as having no cache. | | 4 | 1 | `u8` | `cach_version` | Cache format version. Currently `1`. Readers must treat the file as uncached if this is not a version they understand (unlike v5's `PREC` section, which read but never validated its version byte). | | 5 | 1 | `u8` | `block_flags` | Bit 0 = DC block (`SDCB`) follows. Bit 1 = FFT block (`SFFT`) follows, immediately after the DC block if both are present. Bits 2–7 reserved, must be zero on write. | ### DC block `SDCB` (present iff `block_flags & 0x01`) 7-byte block header, format `">4sBH"`: | Offset (rel) | Size | Type | Field | Description | |--------------|------|------|-------|-------------| | 0 | 4 | `char[4]` | `magic` | `SDCB` | | 4 | 1 | `u8` | `reserved` | `0`, reserved for future use | | 5 | 2 | `u16` | `n_stored` | Number of angle entries that follow, `0 ≤ n_stored ≤ n_angles` | followed by `n_stored` entries, each: ``` u16 angle_idx — index into the angle table (0-based) f32[n_rows[angle_idx] × n_frames[angle_idx]] dc3_mv — CH3 waveform mean, mV, row-major f32[n_rows[angle_idx] × n_frames[angle_idx]] dc4_mv — CH4 waveform mean, mV, row-major ``` Entries may appear in any order and need not be contiguous from angle 0 — this supports storing (or re-storing) a subset of angles, or an interrupted batch run leaving only some angles cached. Readers bounds-check `angle_idx < n_angles` on each entry and stop parsing on an out-of-range value, same as v5's `PREC` section. ### FFT block `SFFT` (present iff `block_flags & 0x02`) 7-byte block header, format `">4sBH"`: | Offset (rel) | Size | Type | Field | Description | |--------------|------|------|-------|-------------| | 0 | 4 | `char[4]` | `magic` | `SFFT` | | 4 | 1 | `u8` | `flags` | Bit 0 = `bg_sub_applied` — background waveform was subtracted from CH1 before the FFT when these images were computed. Bits 1–7 reserved. | | 5 | 2 | `u16` | `n_stored` | Number of angle entries that follow | followed by `n_stored` entries, each: ``` u16 angle_idx — index into the angle table (0-based) f32[n_rows[angle_idx] × n_frames[angle_idx]] peak_freq_mhz — CH1 FFT peak frequency, MHz, row-major ``` **`peak_freq_mhz`** is computed without any DC-threshold masking (i.e. the FFT is run on every pixel unconditionally, same as v5's `PREC` convention). Readers apply the DC4 threshold at display time: ``` pixel is valid ⟺ dc4_mv[r][f] ≥ threshold_mv display_value = peak_freq_mhz[r][f] if valid, else 0 ``` using the DC4 image from the DC block if that angle is also cached there, else computed on demand. Readers must fall back to real-time FFT computation (ignoring stored `peak_freq_mhz`) under the same conditions as v5's PREC fast path: time-domain gating is active, zero-padding (`n_fft ≠ samples_per_frame`) is requested, or the reader's background-subtraction setting doesn't match `flags.bg_sub_applied`. ### In-place write ordering A writer updating a file's Cache Tail must write the payload (CACH header + whichever block(s) are present) **before** flipping the header's `version` byte to `7`, and `truncate()` the file to the new payload's end immediately after writing it. If the process is interrupted between the payload write and the version-byte flip, the file is still valid v6 — v6 parsing only bounds-checks each angle's `offset + nbytes ≤ file_size`, it never asserts exactly how many bytes follow the last angle's waveform block — so the interrupted write leaves harmless trailing bytes rather than a corrupt file, and the next successful write overwrites them via the same deterministic `cache_offset`. --- ## Acquisition Settings (fixed by sc3_aui_app.py) | Parameter | Value | |-----------------------|------------------------------| | Oscilloscope trigger | CH2, rising edge, 1.24 V | | Trigger offset | 0 % (trigger at left edge) | | Sample rate | 6.25 GS/s (160 ps/sample) | | Channels recorded | CH1, CH3, CH4 | | Stage X velocity | 100 mm/s | | Stage X acceleration | 1500 mm/s² | | Stage X trigger out | Logic-high at max velocity | | Acquisition mode | FastFrame, Normal trigger | --- ## Version History | Version | Change | |---------|--------| | 1 | One file per row; header included `angle_idx`, `row_idx`, `angle_deg`, `y_mm`. | | 2 | One file per scan; global header with `n_angles`/`n_rows`; separate angle and row tables; three channels (CH1, CH3, CH4) per row. | | 3 | Added preamble blocks (WFMOutpre strings) after the row table, one length-prefixed UTF-8 block per channel. | | 4 | Added background waveform block (CH1, Helios ON / Genesis OFF) after the preamble blocks; stored as `uint32` sample count followed by raw `int8` ADC bytes. | | 5 | (skipped) | | 6 | Each angle now scans only the bounding box of the nominal ROI rotated by that angle instead of the AABB-expanded worst case across all angles. Header no longer carries a single global `x_start`/`x_delta`/`n_rows` — replaced with `*_nominal` reference fields plus a new Per-Angle Geometry Table (`x_start`, `x_delta`, `n_frames`, `n_rows` per angle) and a ragged Row Table / Waveform Data block sized per angle. **Not compatible with pre-v6 readers** that assume uniform geometry. `sras_viewer.py` reads v6 natively (per-angle `n_rows`/`n_frames`/`x_start`). | | 7 | Adds an optional trailing **Cache Tail** (`CACH` section, see [Cache Tail (v7)](#cache-tail-v7)) after the ragged waveform data, holding independently-present, independently-updatable per-angle DC (`SDCB`: dc3_mv + dc4_mv) and FFT (`SFFT`: peak_freq_mhz) blocks, so previously-computed images redisplay instantly instead of being recomputed. Header / angle table / geometry table / row table / preamble blocks / background block / waveform data are byte-identical to v6 — only the version byte and the optional Cache Tail differ. Scans still come off the scope as v6; `sras_viewer.py`'s "Convert" menu ("Batch Compute DC and Store" / "Batch Compute FFT and Store") converts a file to v7 **in place** on first use, or updates an existing v7 file's cache blocks, without rewriting any waveform bytes. Supersedes the removed "Pre-process and Save as v5" workflow, which was never available for v6 sources since the flat v5 `PREC` layout can't represent per-angle geometry. |