Move most StreamBuffer code into base-buffer.hpp
This commit is contained in:
@@ -93,7 +93,7 @@
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#include "wrap-deque.hpp"
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#include "wrap-unordered-map.hpp"
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#include "base-writer.hpp"
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#include "base-buffer.hpp"
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#include "luastack.hpp"
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#include "streambuffer.hpp"
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#include "debugcollector.hpp"
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@@ -3,6 +3,7 @@
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#include "util.hpp"
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#include "drivenengine.hpp"
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#include "world.hpp"
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#include "base-buffer.hpp"
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#include <string_view>
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#include <utility>
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@@ -481,7 +482,7 @@ void DrivenEngine::drv_invoke_event_update(double clock) {
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}
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void DrivenEngine::drv_set_lua_source(uint32_t srcpklen, const char *srcpk) {
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StreamBuffer sb(srcpk, srcpklen);
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StreamBuffer sb(std::string_view(srcpk, srcpklen));
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uint32_t nfiles = sb.read_uint32();
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lua_source_.reset(new util::LuaSourceVec);
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lua_source_->resize(nfiles);
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@@ -204,10 +204,7 @@ public:
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int64_t nactor = world_->patch_everything(sb, &dbc);
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if (nactor != actor_id_) change_actor_id(nactor);
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dbc.dump(stdostream());
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} catch (const StreamEof &seof) {
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abandon_server();
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return;
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} catch (const StreamCorruption &scorr) {
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} catch (const StreamException &sexcept) {
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abandon_server();
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return;
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}
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@@ -222,7 +219,8 @@ public:
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sb->unread_to(tr_before);
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return false;
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}
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StreamBuffer body(sb->read_bytes(message_body_len), message_body_len);
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const char *message_body = sb->read_bytes(message_body_len);
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StreamBuffer body(std::string_view(message_body, message_body_len));
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if (message_type == util::MSG_ACK) {
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receive_ack_from_server(&body);
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} else if (message_type == util::MSG_DIFF) {
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@@ -146,7 +146,7 @@ public:
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return false;
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}
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inv.deserialize(sb);
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} catch (const StreamEof &seof) {
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} catch (const StreamEofOnRead &seof) {
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sb->unread_to(tr_before);
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return false;
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} catch (const StreamCorruption &scorr) {
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@@ -116,7 +116,7 @@ public:
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}
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uint8_t b = sb_->read_uint8();
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deserialize_r(b, val);
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} catch (const StreamEof &e) {
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} catch (const StreamException &e) {
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error_ = "EOF reached while deserializing data";
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lua_settop(LS_.state(), top);
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LS_.set(val, LuaNil);
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@@ -7,320 +7,6 @@
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#include <cassert>
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#include <cstring>
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void StreamBuffer::init(bool fixed, bool owned, char *buf, int64_t size) {
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buf_lo_ = buf;
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buf_hi_ = buf_lo_ + size;
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read_cursor_ = buf_lo_;
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write_cursor_ = buf_lo_;
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pre_read_count_ = 0;
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owned_ = owned;
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fixed_size_ = fixed;
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}
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StreamBuffer::StreamBuffer() {
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init(false, true, 0, 0);
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}
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StreamBuffer::StreamBuffer(int64_t size, bool fixed) {
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assert(size >= 0);
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init(fixed, true, (char*)eng::malloc(size), size);
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}
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StreamBuffer::StreamBuffer(const char *s, int64_t size) {
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assert(size >= 0);
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init(true, false, const_cast<char *>(s), size);
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write_cursor_ = buf_hi_;
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}
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StreamBuffer::StreamBuffer(std::string_view data) {
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init(true, false, const_cast<char *>(data.data()), data.size());
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write_cursor_ = buf_hi_;
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}
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StreamBuffer::~StreamBuffer() {
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if (owned_ && (buf_lo_ != 0)) eng::free(buf_lo_);
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}
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int64_t StreamBuffer::total_reads() const {
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return (read_cursor_ - buf_lo_) + pre_read_count_;
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}
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int64_t StreamBuffer::total_writes() const {
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return (write_cursor_ - buf_lo_) + pre_read_count_;
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}
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int64_t StreamBuffer::fill() const {
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return write_cursor_ - read_cursor_;
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}
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const char *StreamBuffer::data() const {
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return read_cursor_;
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}
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std::string_view StreamBuffer::view() const {
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return std::string_view(read_cursor_, write_cursor_ - read_cursor_);
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}
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bool StreamBuffer::layout_is(int64_t a, int64_t b, int64_t c) {
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if (read_cursor_ - buf_lo_ != a) return false;
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if (write_cursor_ - read_cursor_ != b) return false;
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if (buf_hi_ - write_cursor_ != c) return false;
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return true;
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}
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void StreamBuffer::make_space_slow(int64_t bytes) {
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assert(owned_ && "We don't own this buffer, can't grow it");
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// Decide whether the current buffer is big enough.
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int64_t data_size = (write_cursor_ - read_cursor_);
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int64_t existing_size = (buf_hi_ - buf_lo_);
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int64_t desired_size = 8192 + ((data_size + bytes) * 2);
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// Update some simple things.
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pre_read_count_ += (read_cursor_ - buf_lo_);
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// Move the data to the beginning of the buffer, or to
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// the beginning of a new buffer.
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if (fixed_size_) {
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assert((data_size + bytes <= existing_size) && "Not enough space in fixed-size buffer");
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if (data_size > 0) memcpy(buf_lo_, read_cursor_, data_size);
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} else if (existing_size >= desired_size) {
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if (data_size > 0) memcpy(buf_lo_, read_cursor_, data_size);
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} else {
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char *nbuf = (char *)eng::malloc(desired_size);
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if (data_size > 0) memcpy(nbuf, read_cursor_, data_size);
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if (buf_lo_ != nullptr) eng::free(buf_lo_);
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buf_lo_ = nbuf;
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buf_hi_ = nbuf + desired_size;
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}
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// Update the pointers to the data region.
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read_cursor_ = buf_lo_;
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write_cursor_ = buf_lo_ + data_size;
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}
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void StreamBuffer::wrote_space(int64_t bytes) {
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int64_t available = buf_hi_ - write_cursor_;
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assert(bytes >= 0);
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assert(available >= bytes);
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write_cursor_ += bytes;
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}
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char *StreamBuffer::get_overwrite(int64_t size, int64_t write_count_after) {
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int64_t write_count_before = write_count_after - size;
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assert(write_count_before >= total_reads());
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assert(write_count_after <= total_writes());
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return buf_lo_ + (write_count_before - pre_read_count_);
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}
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void StreamBuffer::clear() {
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assert(owned_);
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if (!fixed_size_) {
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if (buf_lo_ != nullptr) eng::free(buf_lo_);
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buf_lo_ = 0;
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buf_hi_ = 0;
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}
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owned_ = true;
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read_cursor_ = buf_lo_;
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write_cursor_ = buf_lo_;
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pre_read_count_ = 0;
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}
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eng::string StreamBuffer::readline() {
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char *p = read_cursor_;
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while ((p < write_cursor_) && (*p != '\n')) p++;
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if (p == write_cursor_) {
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return "";
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} else {
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p++;
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eng::string result(read_cursor_, p - read_cursor_);
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read_cursor_ = p;
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return result;
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}
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}
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void StreamBuffer::write_bytes(const char *s, int64_t len) {
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make_space(len);
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memcpy(write_cursor_, s, len);
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write_cursor_ += len;
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}
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void StreamBuffer::write_bytes(std::string_view s) {
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write_bytes(s.data(), s.size());
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}
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const char *StreamBuffer::read_bytes(int64_t bytes) {
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check_available(bytes);
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char *data = read_cursor_;
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read_cursor_ += bytes;
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return data;
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}
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void StreamBuffer::read_bytes_into(char *data, int64_t size) {
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check_available(size);
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memcpy(data, read_cursor_, size);
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read_cursor_ += size;
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}
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std::string_view StreamBuffer::read_string_view_limit(uint64_t limit) {
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uint64_t length = read_length();
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if (length > limit) throw StreamCorruption();
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check_available(length);
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std::string_view result(read_cursor_, length);
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read_cursor_ += length;
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return result;
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}
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void StreamBuffer::write_xyz(const util::XYZ &xyz) {
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make_space(12);
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memcpy(write_cursor_, &xyz.x, 4);
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write_cursor_ += 4;
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memcpy(write_cursor_, &xyz.y, 4);
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write_cursor_ += 4;
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memcpy(write_cursor_, &xyz.z, 4);
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write_cursor_ += 4;
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}
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void StreamBuffer::write_dxyz(const util::DXYZ &xyz) {
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make_space(24);
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memcpy(write_cursor_, &xyz.x, 8);
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write_cursor_ += 8;
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memcpy(write_cursor_, &xyz.y, 8);
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write_cursor_ += 8;
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memcpy(write_cursor_, &xyz.z, 8);
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write_cursor_ += 8;
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}
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util::XYZ StreamBuffer::read_xyz() {
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check_available(12);
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util::XYZ result;
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memcpy(&result.x, read_cursor_, 4);
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read_cursor_ += 4;
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memcpy(&result.y, read_cursor_, 4);
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read_cursor_ += 4;
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memcpy(&result.z, read_cursor_, 4);
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read_cursor_ += 4;
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return result;
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}
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util::DXYZ StreamBuffer::read_dxyz() {
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check_available(24);
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util::DXYZ result;
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memcpy(&result.x, read_cursor_, 8);
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read_cursor_ += 8;
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memcpy(&result.y, read_cursor_, 8);
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read_cursor_ += 8;
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memcpy(&result.z, read_cursor_, 8);
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read_cursor_ += 8;
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return result;
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}
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void StreamBuffer::write_hashvalue(const util::HashValue &hv) {
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write_uint64(hv.first);
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write_uint64(hv.second);
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}
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util::HashValue StreamBuffer::read_hashvalue() {
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uint64_t f = read_uint64();
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uint64_t s = read_uint64();
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return util::HashValue(f,s);
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}
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void StreamBuffer::overwrite_int8(int64_t write_count_after, int64_t vv) {
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int8_t v = vv;
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assert(int64_t(v) == vv);
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char *target = get_overwrite(1, write_count_after);
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memcpy(target, &v, 1);
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}
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void StreamBuffer::overwrite_int16(int64_t write_count_after, int64_t vv) {
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int16_t v = vv;
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assert(int64_t(v) == vv);
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char *target = get_overwrite(2, write_count_after);
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memcpy(target, &v, 2);
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}
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void StreamBuffer::overwrite_int32(int64_t write_count_after, int64_t vv) {
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int32_t v = vv;
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assert(int64_t(v) == vv);
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char *target = get_overwrite(4, write_count_after);
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memcpy(target, &v, 4);
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}
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void StreamBuffer::overwrite_int64(int64_t write_count_after, int64_t vv) {
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int64_t v = vv;
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assert(int64_t(v) == vv);
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char *target = get_overwrite(8, write_count_after);
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memcpy(target, &v, 8);
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}
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void StreamBuffer::overwrite_uint8(int64_t write_count_after, uint64_t vv) {
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uint8_t v = vv;
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assert(uint64_t(v) == vv);
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char *target = get_overwrite(1, write_count_after);
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memcpy(target, &v, 1);
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}
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void StreamBuffer::overwrite_uint16(int64_t write_count_after, uint64_t vv) {
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uint16_t v = vv;
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assert(uint64_t(v) == vv);
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char *target = get_overwrite(2, write_count_after);
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memcpy(target, &v, 2);
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}
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void StreamBuffer::overwrite_uint32(int64_t write_count_after, uint64_t vv) {
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uint32_t v = vv;
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assert(uint64_t(v) == vv);
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char *target = get_overwrite(4, write_count_after);
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memcpy(target, &v, 4);
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}
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void StreamBuffer::overwrite_uint64(int64_t write_count_after, uint64_t vv) {
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uint64_t v = vv;
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assert(uint64_t(v) == vv);
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char *target = get_overwrite(8, write_count_after);
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memcpy(target, &v, 8);
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}
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bool StreamBuffer::empty() {
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return (read_cursor_ == write_cursor_);
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}
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void StreamBuffer::verify_empty() {
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if (read_cursor_ != write_cursor_) {
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throw StreamCorruption();
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}
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}
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void StreamBuffer::unread_to(int64_t rd_count) {
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assert(rd_count >= pre_read_count_);
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assert(rd_count <= total_reads());
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read_cursor_ = buf_lo_ + (rd_count - pre_read_count_);
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}
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void StreamBuffer::unwrite_to(int64_t wr_count) {
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assert(wr_count >= total_reads());
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assert(wr_count <= total_writes());
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write_cursor_ = buf_lo_ + (wr_count - pre_read_count_);
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}
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void StreamBuffer::copy_into(StreamBuffer *sb) {
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sb->write_bytes(read_cursor_, write_cursor_ - read_cursor_);
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}
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void StreamBuffer::transfer_into(StreamBuffer *sb) {
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sb->write_bytes(read_cursor_, write_cursor_ - read_cursor_);
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read_cursor_ = write_cursor_;
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}
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bool StreamBuffer::contents_equal(const StreamBuffer *other) const {
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int64_t len = fill();
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if (len != other->fill()) {
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return false;
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}
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return memcmp(read_cursor_, other->read_cursor_, len) == 0;
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}
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int lua_writer_into_streambuffer(lua_State *L, const void* bytes, size_t sz, void* sbv) {
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StreamBuffer *sb = (StreamBuffer *)sbv;
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@@ -334,10 +20,6 @@ static bool streq(const char *str, const char *data) {
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return memcmp(str, data, len) == 0;
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}
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static void write_ztbytes(StreamBuffer *sb, const char *bytes) {
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sb->write_bytes(bytes, strlen(bytes));
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}
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LuaDefine(unittests_streambuffer, "", "some unit tests") {
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// An 11-byte fixed-size stream buffer.
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StreamBuffer sb11(11, true);
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@@ -346,7 +28,7 @@ LuaDefine(unittests_streambuffer, "", "some unit tests") {
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LuaAssert(L, sb11.layout_is(0, 0, 11));
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// Write a few bytes.
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write_ztbytes(&sb11, "abcdef");
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sb11.write_bytes("abcdef");
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LuaAssert(L, sb11.layout_is(0, 6, 5));
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// Try reading some bytes.
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@@ -365,17 +47,17 @@ LuaDefine(unittests_streambuffer, "", "some unit tests") {
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try {
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sb11.read_bytes(1);
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LuaAssert(L, false && "This should have thrown an exception");
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} catch (const StreamEof &) {}
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} catch (const StreamEofOnRead &) {}
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LuaAssert(L, sb11.layout_is(6, 0, 5));
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// Write some more bytes into the stream, forcing a shift-left
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write_ztbytes(&sb11, "ghijkl");
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sb11.write_bytes("ghijkl");
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LuaAssert(L, sb11.layout_is(0, 6, 5));
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// Test buffer wrapping a little more.
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LuaAssert(L, streq("ghi", sb11.read_bytes(3)));
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LuaAssert(L, sb11.layout_is(3, 3, 5));
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write_ztbytes(&sb11, "mnopqr");
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sb11.write_bytes("mnopqr");
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LuaAssert(L, sb11.layout_is(0, 9, 2));
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LuaAssert(L, streq("jklmnopqr", sb11.read_bytes(9)));
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LuaAssert(L, sb11.layout_is(9, 0, 2));
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@@ -184,27 +184,17 @@
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//
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// You can use a streambuffer as a lua_Writer, as follows:
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//
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||||
// lua_dump(L, stream.lua_writer(), stream.lua_writer_ud());
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// lua_dump(L, lua_writer_into_streambuffer, &sb);
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//
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||||
// Anything written to the lua_writer gets appended to the streambuffer, the
|
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// same as if it had been written using write_bytes.
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//
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||||
// You can use a streambuffer as a lua_Reader, as follows:
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||||
// You can't use streambuffer as a lua_Reader directly, but you can get a
|
||||
// string_view out of it and then use that to construct a lua_Reader, as
|
||||
// follows:
|
||||
//
|
||||
// lua_load (L, stream.lua_reader(), stream.lua_reader_ud(nbytes), ...)
|
||||
//
|
||||
// The exact semantics of the lua_reader are tricky, so be careful:
|
||||
// lua_reader_ud calls 'read_bytes' immediately, and it stores the bytes in a
|
||||
// "cache of bytes for lua." Then, when the lua_reader gets invoked, the reader
|
||||
// returns the entire contents of the cache, and it clears the cache. Here are
|
||||
// some consequences of this design:
|
||||
//
|
||||
// 1. The number of bytes read from the stream is always exactly equal to
|
||||
// nbytes, even if lua never calls the lua_reader.
|
||||
//
|
||||
// 2. If the stream doesn't contain nbytes, a StreamEof exception gets thrown
|
||||
// from lua_reader_ud, not from the lua_Reader. This is good, because it
|
||||
// means exceptions don't get thrown from inside the lua runtime.
|
||||
// LuaStringViewReader svr(mystreambuffer.view());
|
||||
// lua_load (L, svr.lua_reader(), svr.lua_reader_userdata());
|
||||
//
|
||||
//////////////////////////////////////////////////////////////
|
||||
|
||||
@@ -219,7 +209,7 @@
|
||||
#include <cstdint>
|
||||
#include <cassert>
|
||||
|
||||
#include "base-writer.hpp"
|
||||
#include "base-buffer.hpp"
|
||||
#include "luastack.hpp"
|
||||
#include "util.hpp"
|
||||
|
||||
@@ -229,188 +219,88 @@ public:
|
||||
virtual char const *what() const { return "General stream exception"; }
|
||||
};
|
||||
|
||||
class StreamEof : public StreamException
|
||||
class StreamEofOnRead : public StreamException
|
||||
{
|
||||
public:
|
||||
virtual char const *what() const { return "Stream ran out of data"; }
|
||||
};
|
||||
|
||||
class StreamCorruption : public StreamException
|
||||
class StreamStringTooLong: public StreamException
|
||||
{
|
||||
public:
|
||||
virtual char const *what() const { return "Stream contained invalid data"; }
|
||||
virtual char const *what() const { return "Stream contained a string that was too long"; }
|
||||
};
|
||||
|
||||
class StreamBuffer : public eng::nevernew, public BaseReader<StreamBuffer>, public BaseWriter<StreamBuffer> {
|
||||
class StreamIntegerTruncated: public StreamException
|
||||
{
|
||||
public:
|
||||
using read_string_type = eng::string;
|
||||
virtual char const *what() const { return "You truncated an integer when writing to a stream"; }
|
||||
};
|
||||
|
||||
// Construct an empty buffer.
|
||||
StreamBuffer();
|
||||
class StreamCorruption: public StreamException
|
||||
{
|
||||
public:
|
||||
virtual char const *what() const { return "Stream Corruption"; }
|
||||
};
|
||||
|
||||
// Construct an empty buffer, preallocate the specified amount of space.
|
||||
StreamBuffer(int64_t size, bool fixed_size);
|
||||
class StreamBufferCore {
|
||||
protected:
|
||||
void *basebuffer_malloc(size_t size) { return eng::malloc(size); }
|
||||
void basebuffer_free(void *p) { eng::free(p); }
|
||||
void clear_error_flags() { }
|
||||
void raise_eof_on_read() { throw StreamEofOnRead(); }
|
||||
void raise_string_too_long() { throw StreamStringTooLong(); }
|
||||
void raise_integer_truncated() { throw StreamIntegerTruncated(); }
|
||||
};
|
||||
|
||||
// Construct a streambuffer that reads from an external block of bytes.
|
||||
StreamBuffer(const char *s, int64_t len);
|
||||
class StreamBuffer : public eng::nevernew, public BaseBuffer<StreamBufferCore, eng::string> {
|
||||
public:
|
||||
using BaseBuffer::BaseBuffer;
|
||||
|
||||
// Construct a streambuffer that reads from an external block of bytes.
|
||||
StreamBuffer(std::string_view data);
|
||||
|
||||
// Delete a StreamBuffer.
|
||||
~StreamBuffer();
|
||||
|
||||
// Get the total number of bytes ever read from this buffer.
|
||||
int64_t total_reads() const;
|
||||
|
||||
// Get the total number of bytes ever written to this buffer.
|
||||
int64_t total_writes() const;
|
||||
|
||||
// Make the specified amount of space in the buffer for writing.
|
||||
// Return a pointer to the space.
|
||||
char *make_space(int64_t bytes) {
|
||||
int64_t available = buf_hi_ - write_cursor_;
|
||||
if (available < bytes) make_space_slow(bytes);
|
||||
return write_cursor_;
|
||||
void write_xyz(const util::XYZ &xyz) {
|
||||
write_float(xyz.x);
|
||||
write_float(xyz.y);
|
||||
write_float(xyz.z);
|
||||
}
|
||||
|
||||
// Used after calling make_space then filling the space.
|
||||
void wrote_space(int64_t bytes);
|
||||
|
||||
// Amount of data inside the buffer.
|
||||
int64_t fill() const;
|
||||
|
||||
// Get a pointer to the data.
|
||||
const char *data() const;
|
||||
|
||||
// Get entire contents as a string_view
|
||||
std::string_view view() const;
|
||||
|
||||
// Discard all data. Reset total read and write counts.
|
||||
// Frees up as much space as possible.
|
||||
void clear();
|
||||
|
||||
// Attempt to do a "readline". If there is no newline in
|
||||
// the buffer, returns empty string. If there is a newline,
|
||||
// returns a block of text that ends in newline.
|
||||
eng::string readline();
|
||||
|
||||
// Write block of bytes into the buffer.
|
||||
//
|
||||
// Caution: this function doesn't write the length!
|
||||
// It just writes the bytes.
|
||||
//
|
||||
void write_bytes(const char *bytes, int64_t len);
|
||||
void write_bytes(std::string_view s);
|
||||
|
||||
// Read a block of bytes from the buffer.
|
||||
//
|
||||
// Caution: the pointer returned is a pointer to the stream's buffer. It is
|
||||
// only valid until you mutate the buffer. Throws StreamEof if the specified
|
||||
// number of bytes aren't present.
|
||||
//
|
||||
const char *read_bytes(int64_t bytes);
|
||||
|
||||
// Copy bytes from the StreamBuffer into an external buffer.
|
||||
//
|
||||
// Returns true if the bytes were successfully read.
|
||||
//
|
||||
void read_bytes_into(char *target, int64_t len);
|
||||
|
||||
// Read a string as a string_view.
|
||||
//
|
||||
std::string_view read_string_view_limit(uint64_t limit);
|
||||
std::string_view read_string_view() { return read_string_view_limit(0x1000000); }
|
||||
|
||||
// Read and write larger types.
|
||||
//
|
||||
// Throws StreamEof if the specified number of bytes aren't present.
|
||||
// Read string with a length limit will throw 'StreamCorruption' if the
|
||||
// length is too long.
|
||||
//
|
||||
void write_xyz(const util::XYZ &xyz);
|
||||
void write_dxyz(const util::DXYZ &xyz);
|
||||
util::XYZ read_xyz();
|
||||
util::DXYZ read_dxyz();
|
||||
|
||||
void write_hashvalue(const util::HashValue &hv);
|
||||
util::HashValue read_hashvalue();
|
||||
|
||||
// Overwrite values previously written to the buffer.
|
||||
//
|
||||
// See the comment at the top of this file for an explanation.
|
||||
//
|
||||
void overwrite_int8(int64_t write_count_after, int64_t v);
|
||||
void overwrite_int16(int64_t write_count_after, int64_t v);
|
||||
void overwrite_int32(int64_t write_count_after, int64_t v);
|
||||
void overwrite_int64(int64_t write_count_after, int64_t v);
|
||||
void overwrite_uint8(int64_t write_count_after, uint64_t v);
|
||||
void overwrite_uint16(int64_t write_count_after, uint64_t v);
|
||||
void overwrite_uint32(int64_t write_count_after, uint64_t v);
|
||||
void overwrite_uint64(int64_t write_count_after, uint64_t v);
|
||||
|
||||
// This function checks to see if the buffer is empty.
|
||||
bool empty();
|
||||
|
||||
// Verify that the buffer is empty, if not, throw StreamCorruption.
|
||||
void verify_empty();
|
||||
|
||||
// Make sure the specified number of bytes are available to read.
|
||||
void check_available(int64_t bytes) {
|
||||
int64_t avail = write_cursor_ - read_cursor_;
|
||||
if (avail < bytes) {
|
||||
throw StreamEof();
|
||||
}
|
||||
void write_dxyz(const util::DXYZ &xyz) {
|
||||
write_double(xyz.x);
|
||||
write_double(xyz.y);
|
||||
write_double(xyz.z);
|
||||
}
|
||||
|
||||
// Rewind the read cursor to a previous position.
|
||||
void unread_to(int64_t total_reads);
|
||||
|
||||
// Rewind the write cursor to a previous position.
|
||||
void unwrite_to(int64_t total_writes);
|
||||
|
||||
// Copy the entire contents of this streambuffer into another one.
|
||||
void copy_into(StreamBuffer *sb);
|
||||
void write_hashvalue(const util::HashValue &h) {
|
||||
write_uint64(h.first);
|
||||
write_uint64(h.second);
|
||||
}
|
||||
|
||||
// Transfer the entire contents of this streambuffer into another one.
|
||||
void transfer_into(StreamBuffer *sb);
|
||||
util::XYZ read_xyz() {
|
||||
float x = read_float();
|
||||
float y = read_float();
|
||||
float z = read_float();
|
||||
return util::XYZ(x, y, z);
|
||||
}
|
||||
|
||||
// Compare the contents of this streambuffer to another one.
|
||||
bool contents_equal(const StreamBuffer *sb) const;
|
||||
util::DXYZ read_dxyz() {
|
||||
double x = read_double();
|
||||
double y = read_double();
|
||||
double z = read_double();
|
||||
return util::DXYZ(x, y, z);
|
||||
}
|
||||
|
||||
// Throw a StreamCorruption exception.
|
||||
void raise_truncated() { throw StreamCorruption(); }
|
||||
void raise_string_too_long() { throw StreamCorruption(); }
|
||||
|
||||
// This is for unit testing.
|
||||
bool layout_is(int64_t a, int64_t b, int64_t c);
|
||||
util::HashValue read_hashvalue() {
|
||||
uint64_t f = read_uint64();
|
||||
uint64_t s = read_uint64();
|
||||
return util::HashValue(f, s);
|
||||
}
|
||||
|
||||
private:
|
||||
// Start and end of the allocated block.
|
||||
char *buf_lo_;
|
||||
char *buf_hi_;
|
||||
bool contents_equal(const StreamBuffer *sb) {
|
||||
return view() == sb->view();
|
||||
}
|
||||
|
||||
// The write and read cursors.
|
||||
char *write_cursor_;
|
||||
char *read_cursor_;
|
||||
|
||||
// Number of bytes read before buffer was last aligned.
|
||||
int64_t pre_read_count_;
|
||||
|
||||
// True if we own this buffer.
|
||||
bool owned_;
|
||||
|
||||
// True if we're not allowed to expand this buffer.
|
||||
bool fixed_size_;
|
||||
|
||||
// Initialize with a new buffer.
|
||||
void init(bool fixed, bool owned, char *buf, int64_t size);
|
||||
|
||||
// Function that resizes the buffer during make_space operations.
|
||||
void make_space_slow(int64_t bytes);
|
||||
|
||||
// Implementation for the overwrite_int functions.
|
||||
char *get_overwrite(int64_t size, int64_t write_count_after);
|
||||
void copy_into(StreamBuffer *sb) {
|
||||
sb->write_bytes(view());
|
||||
}
|
||||
};
|
||||
|
||||
// Use a streambuffer as a lua_writer.
|
||||
|
||||
Reference in New Issue
Block a user