Files
DeeJanuz--frametop/hands/track/record.h
T
DeeJanuzandClaude Opus 5.5 a533bb973a Hands: ft-hands works out which side camera is which
ft-camd tells the side cameras apart by XRService's buffer allocation order,
which some XRService starts reverse; both of 2026-10-02's starts did, so the
cutouts missed the hands. HANDS_SWAP_SIDES=auto (the default) has ft-hands
vote from hands seen in both side cameras: the landmark rays meet in front
of both cameras only under the right naming. While undecided it probes the
exchanged naming with the landmark model. It decides in about 2 s of hands
(right on all 7 recordings replayed), swaps the views in place, and publishes
sides.json. 0 and 1 still force it, with a warning when the hands disagree.

Recordings carry each part's naming and the session's decision; review,
export, validate and ft-handreplay put the names right, and takes.py sides
records a decision by hand.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-10-02 22:24:13 -06:00

73 lines
2.0 KiB
C++

// Recordings of frame sets, for replaying live sessions through the tracker offline
// (ft-handreplay). A recording is DIR/sets.bin: one record per frame set, each
// fh_set_hdr_t, then per camera fh_set_cam_t, then each camera's pixels (w x h, packed)
// in the same camera order.
#pragma once
#include <condition_variable>
#include <cstdint>
#include <cstdio>
#include <deque>
#include <mutex>
#include <string>
#include <thread>
#include <vector>
#define FH_SET_MAGIC "FHSET01"
struct fh_set_hdr_t {
char magic[8];
uint32_t ncams;
uint32_t bytes; // the whole record, this header included
};
struct fh_set_cam_t {
char name[16]; // calibration name, e.g. "slam_left"
uint32_t width, height;
uint64_t capture_ns; // CLOCK_MONOTONIC_RAW, as the ring has it
uint64_t dqbuf_ns; // CLOCK_MONOTONIC
};
struct SetFrame {
std::string name;
const uint8_t *px;
uint32_t width, height;
uint64_t capture_ns, dqbuf_ns;
};
// Writes sets on its own thread, so a slow disk never holds up tracking; drops sets
// when too many are waiting.
class Recorder {
public:
~Recorder();
bool open(const std::string &dir, std::string &err);
void add(const std::vector<SetFrame> &frames);
// Sets taken (not dropped for a full queue): the next one's place in the file, unless a
// write fails.
size_t added() const { return added_; }
size_t written() const { return written_; }
size_t dropped() const { return dropped_; }
private:
void loop();
FILE *f_ = nullptr;
std::thread thread_;
std::mutex mu_;
std::condition_variable wake_;
std::deque<std::vector<uint8_t>> queue_;
bool stop_ = false;
size_t written_ = 0, dropped_ = 0, added_ = 0;
};
// Reads a recording back one set at a time.
class SetReader {
public:
bool open(const std::string &dir, std::string &err);
// False at the end (or on a truncated last set).
bool next(std::vector<fh_set_cam_t> &cams, std::vector<std::vector<uint8_t>> &pixels);
~SetReader();
private:
FILE *f_ = nullptr;
};