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merge bitcoin#23249: ParseByteUnits - Parse a string with suffix unit
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6
doc/release-notes-6296.md
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6
doc/release-notes-6296.md
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@ -0,0 +1,6 @@
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Updated settings
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----------------
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- `-maxuploadtarget` now allows human readable byte units [k|K|m|M|g|G|t|T].
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E.g. `-maxuploadtarget=500g`. No whitespace, +- or fractions allowed.
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Default is `M` if no suffix provided.
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10
src/init.cpp
10
src/init.cpp
@ -583,7 +583,7 @@ void SetupServerArgs(ArgsManager& argsman)
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argsman.AddArg("-maxreceivebuffer=<n>", strprintf("Maximum per-connection receive buffer, <n>*1000 bytes (default: %u)", DEFAULT_MAXRECEIVEBUFFER), ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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argsman.AddArg("-maxsendbuffer=<n>", strprintf("Maximum per-connection memory usage for the send buffer, <n>*1000 bytes (default: %u)", DEFAULT_MAXSENDBUFFER), ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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argsman.AddArg("-maxtimeadjustment", strprintf("Maximum allowed median peer time offset adjustment. Local perspective of time may be influenced by peers forward or backward by this amount. (default: %u seconds)", DEFAULT_MAX_TIME_ADJUSTMENT), ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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argsman.AddArg("-maxuploadtarget=<n>", strprintf("Tries to keep outbound traffic under the given target (in MiB per 24h). Limit does not apply to peers with 'download' permission. 0 = no limit (default: %d)", DEFAULT_MAX_UPLOAD_TARGET), ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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argsman.AddArg("-maxuploadtarget=<n>", strprintf("Tries to keep outbound traffic under the given target per 24h. Limit does not apply to peers with 'download' permission or blocks created within past week. 0 = no limit (default: %s). Optional suffix units [k|K|m|M|g|G|t|T] (default: M). Lowercase is 1000 base while uppercase is 1024 base", DEFAULT_MAX_UPLOAD_TARGET), ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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argsman.AddArg("-onion=<ip:port>", "Use separate SOCKS5 proxy to reach peers via Tor onion services, set -noonion to disable (default: -proxy)", ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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argsman.AddArg("-i2psam=<ip:port>", "I2P SAM proxy to reach I2P peers and accept I2P connections (default: none)", ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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argsman.AddArg("-i2pacceptincoming", strprintf("Whether to accept inbound I2P connections (default: %i). Ignored if -i2psam is not set. Listening for inbound I2P connections is done through the SAM proxy, not by binding to a local address and port.", DEFAULT_I2P_ACCEPT_INCOMING), ArgsManager::ALLOW_ANY, OptionsCategory::CONNECTION);
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@ -1440,6 +1440,12 @@ bool AppInitMain(NodeContext& node, interfaces::BlockAndHeaderTipInfo* tip_info)
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{
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const ArgsManager& args = *Assert(node.args);
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const CChainParams& chainparams = Params();
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auto opt_max_upload = ParseByteUnits(args.GetArg("-maxuploadtarget", DEFAULT_MAX_UPLOAD_TARGET), ByteUnit::M);
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if (!opt_max_upload) {
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return InitError(strprintf(_("Unable to parse -maxuploadtarget: '%s' (possible integer overflow?)"), args.GetArg("-maxuploadtarget", "")));
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}
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// ********************************************************* Step 4a: application initialization
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if (!CreatePidFile(args)) {
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// Detailed error printed inside CreatePidFile().
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@ -2388,7 +2394,7 @@ bool AppInitMain(NodeContext& node, interfaces::BlockAndHeaderTipInfo* tip_info)
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connOptions.nSendBufferMaxSize = 1000 * args.GetArg("-maxsendbuffer", DEFAULT_MAXSENDBUFFER);
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connOptions.nReceiveFloodSize = 1000 * args.GetArg("-maxreceivebuffer", DEFAULT_MAXRECEIVEBUFFER);
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connOptions.m_added_nodes = args.GetArgs("-addnode");
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connOptions.nMaxOutboundLimit = 1024 * 1024 * args.GetArg("-maxuploadtarget", DEFAULT_MAX_UPLOAD_TARGET);
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connOptions.nMaxOutboundLimit = *opt_max_upload;
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connOptions.m_peer_connect_timeout = peer_connect_timeout;
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// Port to bind to if `-bind=addr` is provided without a `:port` suffix.
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@ -100,7 +100,7 @@ static const bool DEFAULT_LISTEN = true;
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*/
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static const unsigned int DEFAULT_MAX_PEER_CONNECTIONS = 125;
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/** The default for -maxuploadtarget. 0 = Unlimited */
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static constexpr uint64_t DEFAULT_MAX_UPLOAD_TARGET = 0;
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static const std::string DEFAULT_MAX_UPLOAD_TARGET{"0M"};
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/** Default for blocks only*/
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static const bool DEFAULT_BLOCKSONLY = false;
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/** -peertimeout default */
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@ -2685,4 +2685,52 @@ BOOST_AUTO_TEST_CASE(remove_prefix)
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BOOST_CHECK_EQUAL(RemovePrefix("", ""), "");
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}
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BOOST_AUTO_TEST_CASE(util_ParseByteUnits)
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{
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auto noop = ByteUnit::NOOP;
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// no multiplier
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BOOST_CHECK_EQUAL(ParseByteUnits("1", noop).value(), 1);
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BOOST_CHECK_EQUAL(ParseByteUnits("0", noop).value(), 0);
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BOOST_CHECK_EQUAL(ParseByteUnits("1k", noop).value(), 1000ULL);
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BOOST_CHECK_EQUAL(ParseByteUnits("1K", noop).value(), 1ULL << 10);
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BOOST_CHECK_EQUAL(ParseByteUnits("2m", noop).value(), 2'000'000ULL);
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BOOST_CHECK_EQUAL(ParseByteUnits("2M", noop).value(), 2ULL << 20);
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BOOST_CHECK_EQUAL(ParseByteUnits("3g", noop).value(), 3'000'000'000ULL);
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BOOST_CHECK_EQUAL(ParseByteUnits("3G", noop).value(), 3ULL << 30);
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BOOST_CHECK_EQUAL(ParseByteUnits("4t", noop).value(), 4'000'000'000'000ULL);
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BOOST_CHECK_EQUAL(ParseByteUnits("4T", noop).value(), 4ULL << 40);
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// check default multiplier
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BOOST_CHECK_EQUAL(ParseByteUnits("5", ByteUnit::K).value(), 5ULL << 10);
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// NaN
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BOOST_CHECK(!ParseByteUnits("", noop));
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BOOST_CHECK(!ParseByteUnits("foo", noop));
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// whitespace
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BOOST_CHECK(!ParseByteUnits("123m ", noop));
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BOOST_CHECK(!ParseByteUnits(" 123m", noop));
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// no +-
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BOOST_CHECK(!ParseByteUnits("-123m", noop));
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BOOST_CHECK(!ParseByteUnits("+123m", noop));
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// zero padding
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BOOST_CHECK_EQUAL(ParseByteUnits("020M", noop).value(), 20ULL << 20);
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// fractions not allowed
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BOOST_CHECK(!ParseByteUnits("0.5T", noop));
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// overflow
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BOOST_CHECK(!ParseByteUnits("18446744073709551615g", noop));
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// invalid unit
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BOOST_CHECK(!ParseByteUnits("1x", noop));
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}
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BOOST_AUTO_TEST_SUITE_END()
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@ -11,6 +11,7 @@
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#include <algorithm>
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#include <cstdlib>
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#include <cstring>
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#include <limits>
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#include <optional>
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static const std::string CHARS_ALPHA_NUM = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789";
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@ -501,20 +502,6 @@ bool ParseFixedPoint(const std::string &val, int decimals, int64_t *amount_out)
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return true;
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}
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std::string HexStr(const Span<const uint8_t> s)
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{
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std::string rv(s.size() * 2, '\0');
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static constexpr char hexmap[16] = { '0', '1', '2', '3', '4', '5', '6', '7',
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'8', '9', 'a', 'b', 'c', 'd', 'e', 'f' };
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auto it = rv.begin();
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for (uint8_t v : s) {
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*it++ = hexmap[v >> 4];
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*it++ = hexmap[v & 15];
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}
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assert(it == rv.end());
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return rv;
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}
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std::string ToLower(const std::string& str)
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{
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std::string r;
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@ -535,3 +522,62 @@ std::string Capitalize(std::string str)
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str[0] = ToUpper(str.front());
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return str;
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}
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std::string HexStr(const Span<const uint8_t> s)
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{
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std::string rv(s.size() * 2, '\0');
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static constexpr char hexmap[16] = { '0', '1', '2', '3', '4', '5', '6', '7',
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'8', '9', 'a', 'b', 'c', 'd', 'e', 'f' };
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auto it = rv.begin();
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for (uint8_t v : s) {
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*it++ = hexmap[v >> 4];
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*it++ = hexmap[v & 15];
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}
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assert(it == rv.end());
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return rv;
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}
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std::optional<uint64_t> ParseByteUnits(const std::string& str, ByteUnit default_multiplier)
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{
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if (str.empty()) {
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return std::nullopt;
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}
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auto multiplier = default_multiplier;
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char unit = str.back();
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switch (unit) {
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case 'k':
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multiplier = ByteUnit::k;
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break;
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case 'K':
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multiplier = ByteUnit::K;
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break;
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case 'm':
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multiplier = ByteUnit::m;
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break;
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case 'M':
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multiplier = ByteUnit::M;
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break;
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case 'g':
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multiplier = ByteUnit::g;
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break;
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case 'G':
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multiplier = ByteUnit::G;
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break;
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case 't':
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multiplier = ByteUnit::t;
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break;
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case 'T':
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multiplier = ByteUnit::T;
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break;
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default:
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unit = 0;
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break;
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}
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uint64_t unit_amount = static_cast<uint64_t>(multiplier);
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auto parsed_num = ToIntegral<uint64_t>(unit ? str.substr(0, str.size() - 1) : str);
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if (!parsed_num || parsed_num > std::numeric_limits<uint64_t>::max() / unit_amount) { // check overflow
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return std::nullopt;
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}
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return *parsed_num * unit_amount;
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}
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@ -28,6 +28,23 @@ enum SafeChars
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SAFE_CHARS_URI, //!< Chars allowed in URIs (RFC 3986)
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};
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/**
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* Used by ParseByteUnits()
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* Lowercase base 1000
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* Uppercase base 1024
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*/
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enum class ByteUnit : uint64_t {
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NOOP = 1ULL,
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k = 1000ULL,
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K = 1024ULL,
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m = 1'000'000ULL,
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M = 1ULL << 20,
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g = 1'000'000'000ULL,
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G = 1ULL << 30,
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t = 1'000'000'000'000ULL,
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T = 1ULL << 40,
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};
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/**
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* Remove unsafe chars. Safe chars chosen to allow simple messages/URLs/email
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* addresses, but avoid anything even possibly remotely dangerous like & or >
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@ -312,4 +329,17 @@ std::string ToUpper(const std::string& str);
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*/
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std::string Capitalize(std::string str);
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/**
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* Parse a string with suffix unit [k|K|m|M|g|G|t|T].
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* Must be a whole integer, fractions not allowed (0.5t), no whitespace or +-
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* Lowercase units are 1000 base. Uppercase units are 1024 base.
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* Examples: 2m,27M,19g,41T
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*
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* @param[in] str the string to convert into bytes
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* @param[in] default_multiplier if no unit is found in str use this unit
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* @returns optional uint64_t bytes from str or nullopt
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* if ToIntegral is false, str is empty, trailing whitespace or overflow
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*/
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std::optional<uint64_t> ParseByteUnits(const std::string& str, ByteUnit default_multiplier);
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#endif // BITCOIN_UTIL_STRENCODINGS_H
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