ngx_event_pipe.c

来自「Nginx是一个高性能的HTTP和反向代理服务器」· C语言 代码 · 共 979 行 · 第 1/2 页

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/* * Copyright (C) Igor Sysoev */#include <ngx_config.h>#include <ngx_core.h>#include <ngx_event.h>#include <ngx_event_pipe.h>static ngx_int_t ngx_event_pipe_read_upstream(ngx_event_pipe_t *p);static ngx_int_t ngx_event_pipe_write_to_downstream(ngx_event_pipe_t *p);static ngx_int_t ngx_event_pipe_write_chain_to_temp_file(ngx_event_pipe_t *p);static ngx_inline void ngx_event_pipe_remove_shadow_links(ngx_buf_t *buf);static ngx_inline void ngx_event_pipe_free_shadow_raw_buf(ngx_chain_t **free,                                                          ngx_buf_t *buf);static ngx_int_t ngx_event_pipe_drain_chains(ngx_event_pipe_t *p);ngx_int_tngx_event_pipe(ngx_event_pipe_t *p, ngx_int_t do_write){    u_int         flags;    ngx_event_t  *rev, *wev;    for ( ;; ) {        if (do_write) {            p->log->action = "sending to client";            if (ngx_event_pipe_write_to_downstream(p) == NGX_ABORT) {                return NGX_ABORT;            }        }        p->read = 0;        p->upstream_blocked = 0;        p->log->action = "reading upstream";        if (ngx_event_pipe_read_upstream(p) == NGX_ABORT) {            return NGX_ABORT;        }        if (!p->read && !p->upstream_blocked) {            break;        }        do_write = 1;    }    if (p->upstream->fd != -1) {        rev = p->upstream->read;        flags = (rev->eof || rev->error) ? NGX_CLOSE_EVENT : 0;        if (ngx_handle_read_event(rev, flags) == NGX_ERROR) {            return NGX_ABORT;        }        if (rev->active && !rev->ready) {            ngx_add_timer(rev, p->read_timeout);        } else if (rev->timer_set) {            ngx_del_timer(rev);        }    }    if (p->downstream->fd != -1 && p->downstream->data == p->output_ctx) {        wev = p->downstream->write;        if (ngx_handle_write_event(wev, p->send_lowat) == NGX_ERROR) {            return NGX_ABORT;        }        if (!wev->delayed) {            if (wev->active && !wev->ready) {                ngx_add_timer(wev, p->send_timeout);            } else if (wev->timer_set) {                ngx_del_timer(wev);            }        }    }    return NGX_OK;}static ngx_int_tngx_event_pipe_read_upstream(ngx_event_pipe_t *p){    ssize_t       n, size;    ngx_int_t     rc;    ngx_buf_t    *b;    ngx_chain_t  *chain, *cl, *ln;    if (p->upstream_eof || p->upstream_error || p->upstream_done) {        return NGX_OK;    }    ngx_log_debug1(NGX_LOG_DEBUG_EVENT, p->log, 0,                   "pipe read upstream: %d", p->upstream->read->ready);    for ( ;; ) {        if (p->upstream_eof || p->upstream_error || p->upstream_done) {            break;        }        if (p->preread_bufs == NULL && !p->upstream->read->ready) {            break;        }        if (p->preread_bufs) {            /* use the pre-read bufs if they exist */            chain = p->preread_bufs;            p->preread_bufs = NULL;            n = p->preread_size;            ngx_log_debug1(NGX_LOG_DEBUG_EVENT, p->log, 0,                           "pipe preread: %z", n);            if (n) {                p->read = 1;            }        } else {#if (NGX_HAVE_KQUEUE)            /*             * kqueue notifies about the end of file or a pending error.             * This test allows not to allocate a buf on these conditions             * and not to call c->recv_chain().             */            if (p->upstream->read->available == 0                && p->upstream->read->pending_eof)            {                p->upstream->read->ready = 0;                p->upstream->read->eof = 0;                p->upstream_eof = 1;                p->read = 1;                if (p->upstream->read->kq_errno) {                    p->upstream->read->error = 1;                    p->upstream_error = 1;                    p->upstream_eof = 0;                    ngx_log_error(NGX_LOG_ERR, p->log,                                  p->upstream->read->kq_errno,                                  "kevent() reported that upstream "                                  "closed connection");                }                break;            }#endif            if (p->free_raw_bufs) {                /* use the free bufs if they exist */                chain = p->free_raw_bufs;                if (p->single_buf) {                    p->free_raw_bufs = p->free_raw_bufs->next;                    chain->next = NULL;                } else {                    p->free_raw_bufs = NULL;                }            } else if (p->allocated < p->bufs.num) {                /* allocate a new buf if it's still allowed */                b = ngx_create_temp_buf(p->pool, p->bufs.size);                if (b == NULL) {                    return NGX_ABORT;                }                p->allocated++;                chain = ngx_alloc_chain_link(p->pool);                if (chain == NULL) {                    return NGX_ABORT;                }                chain->buf = b;                chain->next = NULL;            } else if (!p->cacheable                       && p->downstream->data == p->output_ctx                       && p->downstream->write->ready                       && !p->downstream->write->delayed)            {                /*                 * if the bufs are not needed to be saved in a cache and                 * a downstream is ready then write the bufs to a downstream                 */                p->upstream_blocked = 1;                ngx_log_debug0(NGX_LOG_DEBUG_EVENT, p->log, 0,                               "pipe downstream ready");                break;            } else if (p->cacheable                       || p->temp_file->offset < p->max_temp_file_size)            {                /*                 * if it is allowed, then save some bufs from r->in                 * to a temporary file, and add them to a r->out chain                 */                rc = ngx_event_pipe_write_chain_to_temp_file(p);                ngx_log_debug1(NGX_LOG_DEBUG_EVENT, p->log, 0,                               "pipe temp offset: %O", p->temp_file->offset);                if (rc == NGX_BUSY) {                    break;                }                if (rc == NGX_AGAIN) {                    if (ngx_event_flags & NGX_USE_LEVEL_EVENT                        && p->upstream->read->active                        && p->upstream->read->ready)                    {                        if (ngx_del_event(p->upstream->read, NGX_READ_EVENT, 0)                            == NGX_ERROR)                        {                            return NGX_ABORT;                        }                    }                }                if (rc != NGX_OK) {                    return rc;                }                chain = p->free_raw_bufs;                if (p->single_buf) {                    p->free_raw_bufs = p->free_raw_bufs->next;                    chain->next = NULL;                } else {                    p->free_raw_bufs = NULL;                }            } else {                /* there are no bufs to read in */                ngx_log_debug0(NGX_LOG_DEBUG_EVENT, p->log, 0,                               "no pipe bufs to read in");                break;            }            n = p->upstream->recv_chain(p->upstream, chain);            ngx_log_debug1(NGX_LOG_DEBUG_EVENT, p->log, 0,                           "pipe recv chain: %z", n);            if (p->free_raw_bufs) {                chain->next = p->free_raw_bufs;            }            p->free_raw_bufs = chain;            if (n == NGX_ERROR) {                p->upstream_error = 1;                return NGX_ERROR;            }            if (n == NGX_AGAIN) {                if (p->single_buf) {                    ngx_event_pipe_remove_shadow_links(chain->buf);                }                break;            }            p->read = 1;            if (n == 0) {                p->upstream_eof = 1;                break;            }        }        p->read_length += n;        cl = chain;        p->free_raw_bufs = NULL;        while (cl && n > 0) {            ngx_event_pipe_remove_shadow_links(cl->buf);            size = cl->buf->end - cl->buf->last;            if (n >= size) {                cl->buf->last = cl->buf->end;                /* STUB */ cl->buf->num = p->num++;                if (p->input_filter(p, cl->buf) == NGX_ERROR) {                    return NGX_ABORT;                }                n -= size;                ln = cl;                cl = cl->next;                ngx_free_chain(p->pool, ln);            } else {                cl->buf->last += n;                n = 0;            }        }        if (cl) {            for (ln = cl; ln->next; ln = ln->next) { /* void */ }            ln->next = p->free_raw_bufs;            p->free_raw_bufs = cl;        }    }#if (NGX_DEBUG)    for (cl = p->busy; cl; cl = cl->next) {        ngx_log_debug8(NGX_LOG_DEBUG_EVENT, p->log, 0,                       "pipe buf busy s:%d t:%d f:%d "                       "%p, pos %p, size: %z "                       "file: %O, size: %z",                       (cl->buf->shadow ? 1 : 0),                       cl->buf->temporary, cl->buf->in_file,                       cl->buf->start, cl->buf->pos,                       cl->buf->last - cl->buf->pos,                       cl->buf->file_pos,                       cl->buf->file_last - cl->buf->file_pos);    }    for (cl = p->out; cl; cl = cl->next) {        ngx_log_debug8(NGX_LOG_DEBUG_EVENT, p->log, 0,                       "pipe buf out  s:%d t:%d f:%d "                       "%p, pos %p, size: %z "                       "file: %O, size: %z",                       (cl->buf->shadow ? 1 : 0),                       cl->buf->temporary, cl->buf->in_file,                       cl->buf->start, cl->buf->pos,                       cl->buf->last - cl->buf->pos,                       cl->buf->file_pos,                       cl->buf->file_last - cl->buf->file_pos);    }    for (cl = p->in; cl; cl = cl->next) {        ngx_log_debug8(NGX_LOG_DEBUG_EVENT, p->log, 0,                       "pipe buf in   s:%d t:%d f:%d "                       "%p, pos %p, size: %z "                       "file: %O, size: %z",                       (cl->buf->shadow ? 1 : 0),                       cl->buf->temporary, cl->buf->in_file,                       cl->buf->start, cl->buf->pos,                       cl->buf->last - cl->buf->pos,                       cl->buf->file_pos,                       cl->buf->file_last - cl->buf->file_pos);    }    for (cl = p->free_raw_bufs; cl; cl = cl->next) {        ngx_log_debug8(NGX_LOG_DEBUG_EVENT, p->log, 0,                       "pipe buf free s:%d t:%d f:%d "                       "%p, pos %p, size: %z "                       "file: %O, size: %z",                       (cl->buf->shadow ? 1 : 0),                       cl->buf->temporary, cl->buf->in_file,                       cl->buf->start, cl->buf->pos,                       cl->buf->last - cl->buf->pos,                       cl->buf->file_pos,                       cl->buf->file_last - cl->buf->file_pos);    }#endif    if ((p->upstream_eof || p->upstream_error) && p->free_raw_bufs) {        /* STUB */ p->free_raw_bufs->buf->num = p->num++;        if (p->input_filter(p, p->free_raw_bufs->buf) == NGX_ERROR) {            return NGX_ABORT;        }        p->free_raw_bufs = p->free_raw_bufs->next;        if (p->free_bufs) {            for (cl = p->free_raw_bufs; cl; cl = cl->next) {                if (cl->buf->shadow == NULL) {                    ngx_pfree(p->pool, cl->buf->start);                }            }        }    }    if (p->cacheable && p->in) {        if (ngx_event_pipe_write_chain_to_temp_file(p) == NGX_ABORT) {            return NGX_ABORT;        }    }    return NGX_OK;}static ngx_int_tngx_event_pipe_write_to_downstream(ngx_event_pipe_t *p){    u_char            *prev;    size_t             bsize;    ngx_int_t          rc;    ngx_uint_t         flush, prev_last_shadow;    ngx_chain_t       *out, **ll, *cl;    ngx_connection_t  *downstream;    downstream = p->downstream;    ngx_log_debug1(NGX_LOG_DEBUG_EVENT, p->log, 0,                   "pipe write downstream: %d", downstream->write->ready);    for ( ;; ) {        if (p->downstream_error) {            return ngx_event_pipe_drain_chains(p);        }        if (p->upstream_eof || p->upstream_error || p->upstream_done) {            /* pass the p->out and p->in chains to the output filter */            for (cl = p->busy; cl; cl = cl->next) {                cl->buf->recycled = 0;            }            if (p->out) {                ngx_log_debug0(NGX_LOG_DEBUG_EVENT, p->log, 0,                               "pipe write downstream flush out");                for (cl = p->out; cl; cl = cl->next) {                    cl->buf->recycled = 0;                }                rc = p->output_filter(p->output_ctx, p->out);                if (downstream->destroyed) {                    return NGX_ABORT;                }                if (rc == NGX_ERROR) {                    p->downstream_error = 1;                    return ngx_event_pipe_drain_chains(p);                }                p->out = NULL;            }            if (p->in) {                ngx_log_debug0(NGX_LOG_DEBUG_EVENT, p->log, 0,                               "pipe write downstream flush in");                for (cl = p->in; cl; cl = cl->next) {                    cl->buf->recycled = 0;                }                rc = p->output_filter(p->output_ctx, p->in);                if (downstream->destroyed) {                    return NGX_ABORT;                }                if (rc == NGX_ERROR) {                    p->downstream_error = 1;                    return ngx_event_pipe_drain_chains(p);                }                p->in = NULL;            }

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