Use clang-format-4.0
This commit is contained in:
parent
77f7a2fa7f
commit
a584cf5a4f
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@ -78,6 +78,7 @@ PointerAlignment: Right
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ReflowComments: true
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SortIncludes: false
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SpaceAfterCStyleCast: false
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SpaceAfterTemplateKeyword: true
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SpaceBeforeAssignmentOperators: true
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SpaceBeforeParens: ControlStatements
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SpaceInEmptyParentheses: false
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@ -26,8 +26,7 @@ Coding style
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We use clang-format to format source code consistently. The
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clang-format configuration file .clang-format is located at the root
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directory. Since clang-format produces slightly different results
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between versions, we currently use clang-format which comes with
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clang-3.9.
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between versions, we currently use clang-format 4.0.
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To detect any violation to the coding style, we recommend to setup git
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pre-commit hook to check coding style of the changes you introduced.
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@ -35,7 +34,7 @@ The pre-commit file is located at the root directory. Copy it under
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.git/hooks and make sure that it is executable. The pre-commit script
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uses clang-format-diff.py to detect any style errors. If it is not in
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your PATH or it exists under different name (e.g.,
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clang-format-diff-3.9 in debian), either add it to PATH variable or
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clang-format-diff-4.0 in debian), either add it to PATH variable or
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add git option ``clangformatdiff.binary`` to point to the script.
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For emacs users, integrating clang-format to emacs is very easy.
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@ -662,9 +662,9 @@ static int hd_context_init(nghttp2_hd_context *context, nghttp2_mem *mem) {
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context->mem = mem;
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context->bad = 0;
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context->hd_table_bufsize_max = NGHTTP2_HD_DEFAULT_MAX_BUFFER_SIZE;
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rv = hd_ringbuf_init(&context->hd_table, context->hd_table_bufsize_max /
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NGHTTP2_HD_ENTRY_OVERHEAD,
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mem);
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rv = hd_ringbuf_init(
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&context->hd_table,
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context->hd_table_bufsize_max / NGHTTP2_HD_ENTRY_OVERHEAD, mem);
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if (rv != 0) {
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return rv;
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}
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@ -5590,8 +5590,8 @@ ssize_t nghttp2_session_mem_recv(nghttp2_session *session, const uint8_t *in,
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iframe->max_niv =
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iframe->frame.hd.length / NGHTTP2_FRAME_SETTINGS_ENTRY_LENGTH + 1;
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iframe->iv = nghttp2_mem_malloc(mem, sizeof(nghttp2_settings_entry) *
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iframe->max_niv);
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iframe->iv = nghttp2_mem_malloc(
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mem, sizeof(nghttp2_settings_entry) * iframe->max_niv);
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if (!iframe->iv) {
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return NGHTTP2_ERR_NOMEM;
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@ -6054,7 +6054,8 @@ ssize_t nghttp2_session_mem_recv(nghttp2_session *session, const uint8_t *in,
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/* Use promised stream ID for PUSH_PROMISE */
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rv = nghttp2_session_add_rst_stream(
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session, iframe->frame.hd.type == NGHTTP2_PUSH_PROMISE
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session,
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iframe->frame.hd.type == NGHTTP2_PUSH_PROMISE
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? iframe->frame.push_promise.promised_stream_id
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: iframe->frame.hd.stream_id,
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NGHTTP2_INTERNAL_ERROR);
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@ -2197,7 +2197,8 @@ int HttpServer::run() {
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return -1;
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}
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if (config_->verify_client) {
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SSL_CTX_set_verify(ssl_ctx, SSL_VERIFY_PEER | SSL_VERIFY_CLIENT_ONCE |
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SSL_CTX_set_verify(ssl_ctx,
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SSL_VERIFY_PEER | SSL_VERIFY_CLIENT_ONCE |
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SSL_VERIFY_FAIL_IF_NO_PEER_CERT,
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verify_callback);
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}
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@ -1859,8 +1859,9 @@ int main(int argc, char **argv) {
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{"encoder-header-table-size", required_argument, &flag, 8},
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{nullptr, 0, nullptr, 0}};
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int option_index = 0;
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auto c = getopt_long(argc, argv, "hvW:c:d:m:n:p:t:w:H:i:r:T:N:B:",
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long_options, &option_index);
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auto c =
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getopt_long(argc, argv, "hvW:c:d:m:n:p:t:w:H:i:r:T:N:B:", long_options,
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&option_index);
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if (c == -1) {
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break;
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}
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10
src/http2.cc
10
src/http2.cc
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@ -448,9 +448,9 @@ void copy_headers_to_nva(std::vector<nghttp2_nv> &nva,
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void copy_headers_to_nva_nocopy(std::vector<nghttp2_nv> &nva,
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const HeaderRefs &headers, uint32_t flags) {
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copy_headers_to_nva_internal(nva, headers, NGHTTP2_NV_FLAG_NO_COPY_NAME |
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NGHTTP2_NV_FLAG_NO_COPY_VALUE,
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flags);
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copy_headers_to_nva_internal(
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nva, headers,
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NGHTTP2_NV_FLAG_NO_COPY_NAME | NGHTTP2_NV_FLAG_NO_COPY_VALUE, flags);
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}
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void build_http1_headers_from_headers(DefaultMemchunks *buf,
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@ -1624,8 +1624,8 @@ StringRef path_join(BlockAllocator &balloc, const StringRef &base_path,
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const StringRef &base_query, const StringRef &rel_path,
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const StringRef &rel_query) {
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auto res = make_byte_ref(
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balloc, std::max(static_cast<size_t>(1), base_path.size()) +
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rel_path.size() + 1 +
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balloc,
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std::max(static_cast<size_t>(1), base_path.size()) + rel_path.size() + 1 +
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std::max(base_query.size(), rel_query.size()) + 1);
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auto p = res.base;
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@ -2791,8 +2791,9 @@ int main(int argc, char **argv) {
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{"encoder-header-table-size", required_argument, &flag, 14},
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{nullptr, 0, nullptr, 0}};
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int option_index = 0;
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int c = getopt_long(argc, argv, "M:Oab:c:d:m:np:r:hH:vst:uw:yW:",
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long_options, &option_index);
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int c =
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getopt_long(argc, argv, "M:Oab:c:d:m:np:r:hH:vst:uw:yW:", long_options,
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&option_index);
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if (c == -1) {
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break;
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}
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@ -816,9 +816,9 @@ int on_stream_close_callback(nghttp2_session *session, int32_t stream_id,
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uint32_t error_code, void *user_data) {
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auto http2session = static_cast<Http2Session *>(user_data);
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if (LOG_ENABLED(INFO)) {
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SSLOG(INFO, http2session) << "Stream stream_id=" << stream_id
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<< " is being closed with error code "
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<< error_code;
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SSLOG(INFO, http2session)
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<< "Stream stream_id=" << stream_id
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<< " is being closed with error code " << error_code;
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}
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auto sd = static_cast<StreamData *>(
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nghttp2_session_get_stream_user_data(session, stream_id));
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@ -1152,8 +1152,8 @@ int on_response_headers(Http2Session *http2session, Downstream *downstream,
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}
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downstream->set_request_state(Downstream::HEADER_COMPLETE);
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if (LOG_ENABLED(INFO)) {
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SSLOG(INFO, http2session) << "HTTP upgrade success. stream_id="
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<< frame->hd.stream_id;
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SSLOG(INFO, http2session)
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<< "HTTP upgrade success. stream_id=" << frame->hd.stream_id;
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}
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} else {
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auto content_length = resp.fs.header(http2::HD_CONTENT_LENGTH);
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@ -1006,8 +1006,8 @@ int ensure_max_header_fields(const Downstream *downstream,
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if (resp.fs.num_fields() >= httpconf.max_response_header_fields) {
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if (LOG_ENABLED(INFO)) {
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DLOG(INFO, downstream) << "Too many header field num="
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<< resp.fs.num_fields() + 1;
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DLOG(INFO, downstream)
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<< "Too many header field num=" << resp.fs.num_fields() + 1;
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}
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return -1;
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}
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@ -43,7 +43,8 @@ void test_shrpx_http_create_forwarded(void) {
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CU_ASSERT("by=\"example.com:3000\";for=\"[::1]\";host=\"www.example.com\";"
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"proto=https" ==
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http::create_forwarded(balloc, FORWARDED_BY | FORWARDED_FOR |
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http::create_forwarded(balloc,
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FORWARDED_BY | FORWARDED_FOR |
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FORWARDED_HOST | FORWARDED_PROTO,
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StringRef::from_lit("example.com:3000"),
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StringRef::from_lit("[::1]"),
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StringRef::from_lit("[::1]"), StringRef::from_lit("_hidden"),
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StringRef::from_lit(""), StringRef::from_lit("")));
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CU_ASSERT("" == http::create_forwarded(
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balloc, FORWARDED_BY | FORWARDED_FOR | FORWARDED_HOST |
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FORWARDED_PROTO,
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CU_ASSERT("" ==
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http::create_forwarded(
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balloc,
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FORWARDED_BY | FORWARDED_FOR | FORWARDED_HOST | FORWARDED_PROTO,
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StringRef::from_lit(""), StringRef::from_lit(""),
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StringRef::from_lit(""), StringRef::from_lit("")));
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}
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@ -150,8 +150,8 @@ int htp_hdr_keycb(http_parser *htp, const char *data, size_t len) {
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} else {
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if (req.fs.num_fields() >= httpconf.max_request_header_fields) {
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if (LOG_ENABLED(INFO)) {
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ULOG(INFO, upstream) << "Too many header field num="
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<< req.fs.num_fields() + 1;
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ULOG(INFO, upstream)
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<< "Too many header field num=" << req.fs.num_fields() + 1;
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}
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downstream->set_request_state(
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Downstream::HTTP1_REQUEST_HEADER_TOO_LARGE);
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} else {
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if (req.fs.num_fields() >= httpconf.max_request_header_fields) {
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if (LOG_ENABLED(INFO)) {
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ULOG(INFO, upstream) << "Too many header field num="
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<< req.fs.num_fields() + 1;
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ULOG(INFO, upstream)
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<< "Too many header field num=" << req.fs.num_fields() + 1;
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}
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return -1;
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}
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@ -62,14 +62,14 @@ using namespace nghttp2;
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// Upstream log
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#define ULOG(SEVERITY, UPSTREAM) \
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(shrpx::Log(SEVERITY, __FILE__, __LINE__) << "[UPSTREAM:" << UPSTREAM \
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<< "]" \
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(shrpx::Log(SEVERITY, __FILE__, __LINE__) \
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<< "[UPSTREAM:" << UPSTREAM << "]" \
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" ")
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// Downstream log
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#define DLOG(SEVERITY, DOWNSTREAM) \
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(shrpx::Log(SEVERITY, __FILE__, __LINE__) << "[DOWNSTREAM:" << DOWNSTREAM \
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<< "] ")
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(shrpx::Log(SEVERITY, __FILE__, __LINE__) \
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<< "[DOWNSTREAM:" << DOWNSTREAM << "] ")
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// Downstream connection log
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#define DCLOG(SEVERITY, DCONN) \
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@ -538,8 +538,8 @@ int MemcachedConnection::parse_packet() {
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if (LOG_ENABLED(INFO)) {
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if (parse_state_.status_code) {
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MCLOG(INFO, this) << "response returned error status: "
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<< parse_state_.status_code;
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MCLOG(INFO, this)
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<< "response returned error status: " << parse_state_.status_code;
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}
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}
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@ -880,8 +880,8 @@ ssize_t spdy_data_read_callback(spdylay_session *session, int32_t stream_id,
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} else {
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// For tunneling, issue RST_STREAM to finish the stream.
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if (LOG_ENABLED(INFO)) {
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ULOG(INFO, upstream) << "RST_STREAM to tunneled stream stream_id="
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<< stream_id;
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ULOG(INFO, upstream)
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<< "RST_STREAM to tunneled stream stream_id=" << stream_id;
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}
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upstream->rst_stream(
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downstream, infer_upstream_rst_stream_status_code(
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@ -857,7 +857,8 @@ SSL_CTX *create_ssl_context(const char *private_key_file, const char *cert_file,
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}
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SSL_CTX_set_client_CA_list(ssl_ctx, list);
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}
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SSL_CTX_set_verify(ssl_ctx, SSL_VERIFY_PEER | SSL_VERIFY_CLIENT_ONCE |
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SSL_CTX_set_verify(ssl_ctx,
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SSL_VERIFY_PEER | SSL_VERIFY_CLIENT_ONCE |
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SSL_VERIFY_FAIL_IF_NO_PEER_CERT,
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verify_callback);
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}
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@ -996,8 +997,8 @@ SSL_CTX *create_ssl_client_context(
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SSL_CTX_set_options(ssl_ctx, ssl_opts | tlsconf.tls_proto_mask);
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SSL_CTX_set_session_cache_mode(ssl_ctx, SSL_SESS_CACHE_CLIENT |
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SSL_SESS_CACHE_NO_INTERNAL_STORE);
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SSL_CTX_set_session_cache_mode(
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ssl_ctx, SSL_SESS_CACHE_CLIENT | SSL_SESS_CACHE_NO_INTERNAL_STORE);
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SSL_CTX_sess_set_new_cb(ssl_ctx, tls_session_client_new_cb);
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if (nghttp2::tls::ssl_ctx_set_proto_versions(
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@ -295,9 +295,10 @@ void test_nghttp2_hd_inflate_indname_inc(void) {
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assert_nv_equal(&nv, out.nva, 1, mem);
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CU_ASSERT(1 == inflater.ctx.hd_table.len);
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CU_ASSERT(62 == nghttp2_hd_inflate_get_num_table_entries(&inflater));
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assert_nv_equal(&nv, nghttp2_hd_inflate_get_table_entry(
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&inflater, NGHTTP2_STATIC_TABLE_LENGTH +
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inflater.ctx.hd_table.len),
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assert_nv_equal(
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&nv,
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nghttp2_hd_inflate_get_table_entry(
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&inflater, NGHTTP2_STATIC_TABLE_LENGTH + inflater.ctx.hd_table.len),
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1, mem);
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nva_out_reset(&out, mem);
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@ -424,9 +425,10 @@ void test_nghttp2_hd_inflate_newname_inc(void) {
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CU_ASSERT(1 == out.nvlen);
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assert_nv_equal(&nv, out.nva, 1, mem);
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CU_ASSERT(1 == inflater.ctx.hd_table.len);
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assert_nv_equal(&nv, nghttp2_hd_inflate_get_table_entry(
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&inflater, NGHTTP2_STATIC_TABLE_LENGTH +
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inflater.ctx.hd_table.len),
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assert_nv_equal(
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&nv,
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nghttp2_hd_inflate_get_table_entry(
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&inflater, NGHTTP2_STATIC_TABLE_LENGTH + inflater.ctx.hd_table.len),
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1, mem);
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nva_out_reset(&out, mem);
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@ -6484,8 +6484,8 @@ void test_nghttp2_session_flow_control_data_recv(void) {
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nghttp2_frame_pack_frame_hd(data, &hd);
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CU_ASSERT(NGHTTP2_MAX_PAYLOADLEN + NGHTTP2_FRAME_HDLEN ==
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nghttp2_session_mem_recv(session, data, NGHTTP2_MAX_PAYLOADLEN +
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NGHTTP2_FRAME_HDLEN));
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nghttp2_session_mem_recv(
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session, data, NGHTTP2_MAX_PAYLOADLEN + NGHTTP2_FRAME_HDLEN));
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item = nghttp2_session_get_next_ob_item(session);
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/* Since this is the last frame, stream-level WINDOW_UPDATE is not
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@ -6503,8 +6503,8 @@ void test_nghttp2_session_flow_control_data_recv(void) {
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sending DATA frames. Without calculating connection-level window,
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the subsequent flow control gets confused. */
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CU_ASSERT(NGHTTP2_MAX_PAYLOADLEN + NGHTTP2_FRAME_HDLEN ==
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nghttp2_session_mem_recv(session, data, NGHTTP2_MAX_PAYLOADLEN +
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NGHTTP2_FRAME_HDLEN));
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nghttp2_session_mem_recv(
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session, data, NGHTTP2_MAX_PAYLOADLEN + NGHTTP2_FRAME_HDLEN));
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item = nghttp2_session_get_next_ob_item(session);
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CU_ASSERT(NGHTTP2_WINDOW_UPDATE == item->frame.hd.type);
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