Files
roro9stack/lib/files/src/file_views.cpp
T
twislaandClaude Opus 5.5 b7aed8e91c F1 steps 2-6: the Storage App, its viewers, and Maintenance moved in (#3)
The Storage App browses the SD card: folders first with sizes and dates,
three sorts, one item at a time with a clipboard (c, x, v), rename, delete
after counting what's inside, new folder, details. A listing holds 256
entries and says when a folder has more.

FileOps does the card's work for the App and the console alike, one
operation at a time on the storage task in turns of about 150 ms, so Logs
and Captures are still written during a long copy. A copy shows progress,
can be cancelled (what it wrote is taken back) and compares sizes after.
The read-only rules are checked there: the firmware's top-level folders,
/gemini/cache, and files being written (a Track, a Capture, an upload,
today's IRC Logs). A listing reads the folder straight from FatFs: through
the Arduino File, 329 entries took over two seconds.

Viewers by type: text read a screen at a time whatever the file's size
(logs open at the end), a hex dump, a Capture's packets as the LoRa Scanner
lists them, a Track's summary, and an Update File checked as an install
would check it, without writing anything. Tab shows any file as hex or text.

Settings > Storage is gone: usage, Storage Clean-up and Erase are the App's
Maintenance, behind a warning. The Storage Warning points there.

The Clock sets the system time whatever its source, so files are dated
correctly with a GNSS Fix alone (Q137).

Console: cp, mv, mkdir, du, cancel; rm takes folders and follows the rules;
ls shows dates; Debug Builds get `sd fill`.

424 host tests. Checked on the device: docs/milestones/F1.md.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
2026-10-06 08:45:43 +02:00

144 lines
5.0 KiB
C++

#include "file_views.h"
#include <cstdio>
#include <cstdlib>
#include <cstring>
#include "file_list.h"
#include "track.h"
namespace roro::files {
std::string hexRow(uint32_t offset, const uint8_t* data, size_t len) {
char head[8];
std::snprintf(head, sizeof head, "%05X", static_cast<unsigned>(offset));
std::string row = head, text;
for (size_t i = 0; i < 8; i++) {
if (i % 2 == 0) row += ' ';
char hex[3] = " ";
if (i < len) {
std::snprintf(hex, sizeof hex, "%02x", data[i]);
text += data[i] >= 0x20 && data[i] < 0x7F ? static_cast<char>(data[i]) : '.';
}
row += hex;
}
return row + " " + text;
}
namespace {
// Days since 1970-01-01 (Howard Hinnant's days_from_civil): no timegm() everywhere.
int64_t daysFromCivil(int y, int m, int d) {
y -= m <= 2;
int64_t era = (y >= 0 ? y : y - 399) / 400;
int yoe = static_cast<int>(y - era * 400);
int doy = (153 * (m + (m > 2 ? -3 : 9)) + 2) / 5 + d - 1;
int doe = yoe * 365 + yoe / 4 - yoe / 100 + doy;
return era * 146097 + doe - 719468;
}
bool attribute(const std::string& element, const char* name, double& out) {
size_t at = element.find(name);
if (at == std::string::npos) return false;
const char* from = element.c_str() + at + std::strlen(name);
char* end = nullptr;
out = std::strtod(from, &end);
return end != from;
}
} // namespace
void GpxSummary::point(const std::string& element) {
double lat, lon;
if (!attribute(element, "lat=\"", lat) || !attribute(element, "lon=\"", lon)) return;
if (points_ > 0) meters_ += gnss::distanceMeters(lat_, lon_, lat, lon);
lat_ = lat;
lon_ = lon;
points_++;
size_t at = element.find("<time>");
int y, mo, d, h, mi, s;
if (at != std::string::npos && std::sscanf(element.c_str() + at + 6, "%d-%d-%dT%d:%d:%d", &y, &mo, &d, &h, &mi, &s) == 6) {
int64_t t = daysFromCivil(y, mo, d) * 86400 + h * 3600 + mi * 60 + s;
if (first_ == 0) first_ = t;
last_ = t;
}
}
void GpxSummary::feed(const char* data, size_t len) {
carry_.append(data, len);
size_t done = 0;
for (;;) {
size_t open = carry_.find("<trkpt", done);
if (open == std::string::npos) {
// Nothing begun, except perhaps the first letters of a tag at the very end.
done = carry_.size() > 6 ? carry_.size() - 6 : done;
break;
}
size_t close = carry_.find("</trkpt>", open);
size_t next = carry_.find("<trkpt", open + 6); // a point with nothing inside: <trkpt .../>
if (close == std::string::npos && next == std::string::npos) {
done = open;
break;
}
size_t end = close != std::string::npos && (next == std::string::npos || close < next) ? close + 8 : next;
point(carry_.substr(open, end - open));
done = end;
}
carry_.erase(0, done);
if (carry_.size() > 2048) carry_.erase(0, carry_.size() - 6); // not a GPX point: don't keep it
}
std::string formatDuration(int64_t seconds) {
char s[24];
if (seconds < 60) std::snprintf(s, sizeof s, "%d s", static_cast<int>(seconds));
else if (seconds < 3600) std::snprintf(s, sizeof s, "%d min %02d s", static_cast<int>(seconds / 60), static_cast<int>(seconds % 60));
else std::snprintf(s, sizeof s, "%d h %02d min", static_cast<int>(seconds / 3600), static_cast<int>(seconds % 3600 / 60));
return s;
}
std::vector<std::string> GpxSummary::lines() const {
std::vector<std::string> out;
out.push_back(std::to_string(points_) + (points_ == 1 ? " point" : " points"));
if (first_ > 0) {
out.push_back("Started " + formatStamp(static_cast<uint32_t>(first_)));
out.push_back("Lasted " + formatDuration(last_ - first_));
}
char s[32];
if (meters_ < 1000) std::snprintf(s, sizeof s, "Distance %.0f m", meters_);
else std::snprintf(s, sizeof s, "Distance %.2f km", meters_ / 1000);
out.push_back(s);
return out;
}
namespace {
uint32_t le32(const uint8_t* p) { return p[0] | p[1] << 8 | p[2] << 16 | static_cast<uint32_t>(p[3]) << 24; }
} // namespace
PcapHeader parsePcapHeader(const uint8_t* data, size_t len) {
PcapHeader h;
if (len < kPcapHeaderSize || le32(data) != 0xA1B2C3D4) return h; // little-endian, microseconds: what we write
h.ok = true;
h.linkType = le32(data + 20);
return h;
}
bool parsePcapRecord(const uint8_t* data, size_t len, PcapRecord& out) {
if (len < kPcapRecordSize) return false;
out.seconds = le32(data);
out.micros = le32(data + 4);
out.length = le32(data + 8);
return out.length <= 65535;
}
bool parseLoraTap(const uint8_t* d, size_t len, lora::RxInfo& out) {
if (len < lora::kLoraTapSize || d[0] != 0) return false;
out.frequencyHz = static_cast<uint32_t>(d[4]) << 24 | d[5] << 16 | d[6] << 8 | d[7];
out.bandwidthKHz = d[8] * 125.0f;
out.spreadingFactor = d[9];
out.rssi = d[10] - 139.0f;
out.noiseFloor = d[12] - 139.0f;
out.snr = static_cast<int8_t>(d[13]) / 4.0f;
out.syncWord = d[14];
return true;
}
} // namespace roro::files