refactor: use STL containers in torrent-magnet.cc (#3531)

This commit is contained in:
Charles Kerr
2022-07-27 14:15:06 -05:00
committed by GitHub
parent b7bc21cdb6
commit 62e40e88cf

View File

@@ -6,10 +6,10 @@
#include <algorithm> #include <algorithm>
#include <climits> /* INT_MAX */ #include <climits> /* INT_MAX */
#include <ctime> #include <ctime>
#include <deque>
#include <string> #include <string>
#include <string_view> #include <string_view>
#include <vector>
#include <event2/buffer.h>
#include <fmt/core.h> #include <fmt/core.h>
@@ -27,9 +27,6 @@
#include "tr-assert.h" #include "tr-assert.h"
#include "utils.h" #include "utils.h"
#include "variant.h" #include "variant.h"
#include "web-utils.h"
using namespace std::literals;
/*** /***
**** ****
@@ -40,26 +37,32 @@ static auto constexpr MinRepeatIntervalSecs = int{ 3 };
struct metadata_node struct metadata_node
{ {
time_t requestedAt; time_t requested_at = 0U;
int piece; int piece = 0;
}; };
struct tr_incomplete_metadata struct tr_incomplete_metadata
{ {
char* metadata; std::vector<char> metadata;
size_t metadata_size;
int pieceCount;
/** sorted from least to most recently requested */ /** sorted from least to most recently requested */
struct metadata_node* piecesNeeded; std::deque<metadata_node> pieces_needed;
int piecesNeededCount;
int piece_count = 0;
}; };
static void incompleteMetadataFree(struct tr_incomplete_metadata* m) static auto create_all_needed(int n_pieces)
{ {
tr_free(m->metadata); auto ret = std::deque<metadata_node>{};
tr_free(m->piecesNeeded);
tr_free(m); ret.resize(n_pieces);
for (int i = 0; i < n_pieces; ++i)
{
ret[i].piece = i;
}
return ret;
} }
bool tr_torrentSetMetadataSizeHint(tr_torrent* tor, int64_t size) bool tr_torrentSetMetadataSizeHint(tr_torrent* tor, int64_t size)
@@ -83,31 +86,23 @@ bool tr_torrentSetMetadataSizeHint(tr_torrent* tor, int64_t size)
return false; return false;
} }
auto* const m = tr_new(struct tr_incomplete_metadata, 1); auto* const m = new tr_incomplete_metadata{};
if (m == nullptr) if (m == nullptr)
{ {
return false; return false;
} }
m->pieceCount = n; m->piece_count = n;
m->metadata = tr_new(char, size); m->metadata.resize(size);
m->metadata_size = size; m->pieces_needed = create_all_needed(n);
m->piecesNeededCount = n;
m->piecesNeeded = tr_new(struct metadata_node, n);
if (m->metadata == nullptr || m->piecesNeeded == nullptr) if (std::empty(m->metadata) || std::empty(m->pieces_needed))
{ {
incompleteMetadataFree(m); delete m;
return false; return false;
} }
for (int i = 0; i < n; ++i)
{
m->piecesNeeded[i].piece = i;
m->piecesNeeded[i].requestedAt = 0;
}
tor->incompleteMetadata = m; tor->incompleteMetadata = m;
return true; return true;
} }
@@ -158,23 +153,10 @@ void* tr_torrentGetMetadataPiece(tr_torrent const* tor, int piece, size_t* len)
return ret; return ret;
} }
static int getPieceNeededIndex(struct tr_incomplete_metadata const* m, int piece)
{
for (int i = 0; i < m->piecesNeededCount; ++i)
{
if (m->piecesNeeded[i].piece == piece)
{
return i;
}
}
return -1;
}
static int getPieceLength(struct tr_incomplete_metadata const* m, int piece) static int getPieceLength(struct tr_incomplete_metadata const* m, int piece)
{ {
return piece + 1 == m->pieceCount ? // last piece return piece + 1 == m->piece_count ? // last piece
m->metadata_size - (piece * METADATA_PIECE_SIZE) : std::size(m->metadata) - (piece * METADATA_PIECE_SIZE) :
METADATA_PIECE_SIZE; METADATA_PIECE_SIZE;
} }
@@ -256,7 +238,7 @@ bool tr_torrentUseMetainfoFromFile(
if (tor->incompleteMetadata != nullptr) if (tor->incompleteMetadata != nullptr)
{ {
incompleteMetadataFree(tor->incompleteMetadata); delete tor->incompleteMetadata;
tor->incompleteMetadata = nullptr; tor->incompleteMetadata = nullptr;
} }
tor->isStopping = true; tor->isStopping = true;
@@ -273,7 +255,7 @@ bool tr_torrentUseMetainfoFromFile(
static bool useNewMetainfo(tr_torrent* tor, tr_incomplete_metadata const* m, tr_error** error) static bool useNewMetainfo(tr_torrent* tor, tr_incomplete_metadata const* m, tr_error** error)
{ {
// test the info_dict checksum // test the info_dict checksum
auto const sha1 = tr_sha1(std::string_view{ m->metadata, m->metadata_size }); auto const sha1 = tr_sha1(m->metadata);
if (bool const checksum_passed = sha1 && *sha1 == tor->infoHash(); !checksum_passed) if (bool const checksum_passed = sha1 && *sha1 == tor->infoHash(); !checksum_passed)
{ {
return false; return false;
@@ -284,7 +266,7 @@ static bool useNewMetainfo(tr_torrent* tor, tr_incomplete_metadata const* m, tr_
if (!tr_variantFromBuf( if (!tr_variantFromBuf(
&info_dict_v, &info_dict_v,
TR_VARIANT_PARSE_BENC | TR_VARIANT_PARSE_INPLACE, TR_VARIANT_PARSE_BENC | TR_VARIANT_PARSE_INPLACE,
{ m->metadata, m->metadata_size }, { std::data(m->metadata), std::size(m->metadata) },
nullptr, nullptr,
error)) error))
{ {
@@ -326,7 +308,7 @@ static void onHaveAllMetainfo(tr_torrent* tor, tr_incomplete_metadata* m)
tr_error* error = nullptr; tr_error* error = nullptr;
if (useNewMetainfo(tor, m, &error)) if (useNewMetainfo(tor, m, &error))
{ {
incompleteMetadataFree(tor->incompleteMetadata); delete tor->incompleteMetadata;
tor->incompleteMetadata = nullptr; tor->incompleteMetadata = nullptr;
tor->isStopping = true; tor->isStopping = true;
tor->magnetVerify = true; tor->magnetVerify = true;
@@ -338,15 +320,10 @@ static void onHaveAllMetainfo(tr_torrent* tor, tr_incomplete_metadata* m)
} }
else /* drat. */ else /* drat. */
{ {
int const n = m->pieceCount; int const n = m->piece_count;
for (int i = 0; i < n; ++i) m->pieces_needed = create_all_needed(n);
{
m->piecesNeeded[i].piece = i;
m->piecesNeeded[i].requestedAt = 0;
}
m->piecesNeededCount = n;
char const* const msg = error != nullptr && error->message != nullptr ? error->message : "unknown error"; char const* const msg = error != nullptr && error->message != nullptr ? error->message : "unknown error";
tr_logAddWarnTor( tr_logAddWarnTor(
tor, tor,
@@ -377,7 +354,7 @@ void tr_torrentSetMetadataPiece(tr_torrent* tor, int piece, void const* data, in
} }
// sanity test: is `piece` in range? // sanity test: is `piece` in range?
if ((piece < 0) || (piece >= m->pieceCount)) if ((piece < 0) || (piece >= m->piece_count))
{ {
return; return;
} }
@@ -389,22 +366,24 @@ void tr_torrentSetMetadataPiece(tr_torrent* tor, int piece, void const* data, in
} }
// do we need this piece? // do we need this piece?
int const idx = getPieceNeededIndex(m, piece); auto& needed = m->pieces_needed;
if (idx == -1) auto const iter = std::find_if(
std::begin(needed),
std::end(needed),
[piece](auto const& item) { return item.piece == piece; });
if (iter == std::end(needed))
{ {
return; return;
} }
size_t const offset = piece * METADATA_PIECE_SIZE; size_t const offset = piece * METADATA_PIECE_SIZE;
std::copy_n(reinterpret_cast<char const*>(data), len, m->metadata + offset); std::copy_n(reinterpret_cast<char const*>(data), len, std::begin(m->metadata) + offset);
tr_removeElementFromArray(m->piecesNeeded, idx, sizeof(struct metadata_node), m->piecesNeededCount); needed.erase(iter);
--m->piecesNeededCount; tr_logAddDebugTor(tor, fmt::format("saving metainfo piece {}... {} remain", piece, std::size(needed)));
tr_logAddDebugTor(tor, fmt::format("saving metainfo piece {}... {} remain", piece, m->piecesNeededCount)); // are we done?
if (std::empty(needed))
/* are we done? */
if (m->piecesNeededCount == 0)
{ {
tr_logAddDebugTor(tor, fmt::format("metainfo piece {} was the last one", piece)); tr_logAddDebugTor(tor, fmt::format("metainfo piece {} was the last one", piece));
onHaveAllMetainfo(tor, m); onHaveAllMetainfo(tor, m);
@@ -418,17 +397,16 @@ bool tr_torrentGetNextMetadataRequest(tr_torrent* tor, time_t now, int* setme_pi
bool have_request = false; bool have_request = false;
struct tr_incomplete_metadata* m = tor->incompleteMetadata; struct tr_incomplete_metadata* m = tor->incompleteMetadata;
if (m != nullptr && m->piecesNeededCount > 0 && m->piecesNeeded[0].requestedAt + MinRepeatIntervalSecs < now) auto& needed = m->pieces_needed;
if (m != nullptr && !std::empty(needed) && needed.front().requested_at + MinRepeatIntervalSecs < now)
{ {
int const piece = m->piecesNeeded[0].piece; auto req = needed.front();
tr_removeElementFromArray(m->piecesNeeded, 0, sizeof(struct metadata_node), m->piecesNeededCount); needed.pop_front();
req.requested_at = now;
needed.push_back(req);
int const i = m->piecesNeededCount - 1; tr_logAddDebugTor(tor, fmt::format("next piece to request: {}", req.piece));
m->piecesNeeded[i].piece = piece; *setme_piece = req.piece;
m->piecesNeeded[i].requestedAt = now;
tr_logAddDebugTor(tor, fmt::format("next piece to request: {}", piece));
*setme_piece = piece;
have_request = true; have_request = true;
} }
@@ -443,7 +421,7 @@ double tr_torrentGetMetadataPercent(tr_torrent const* tor)
} }
auto const* const m = tor->incompleteMetadata; auto const* const m = tor->incompleteMetadata;
return m == nullptr || m->pieceCount == 0 ? 0.0 : (m->pieceCount - m->piecesNeededCount) / (double)m->pieceCount; return m == nullptr || m->piece_count == 0 ? 0.0 : (m->piece_count - std::size(m->pieces_needed)) / (double)m->piece_count;
} }
char* tr_torrentGetMagnetLink(tr_torrent const* tor) char* tr_torrentGetMagnetLink(tr_torrent const* tor)