mirror of
https://github.com/bytecodealliance/wasm-micro-runtime.git
synced 2025-02-08 16:05:07 +00:00
419 lines
12 KiB
C
419 lines
12 KiB
C
/*
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* Copyright (C) 2019 Intel Corporation. All rights reserved.
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* SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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*/
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#include <stdlib.h>
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#include <string.h>
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#include <stdbool.h>
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#include <stdio.h>
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#include "bi-inc/shared_utils.h"
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/* Serialization of request and response message
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*
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* Choices:
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* We considered a few options:
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* 1. coap
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* 2. flatbuffer
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* 3. cbor
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* 4. attr-containers of our own
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* 5. customized serialization for request/response
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*
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* Now we choose the #5 mainly because we need to quickly get the URL for dispatching
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* and sometimes we want to change the URL in the original packet. the request format:
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* fixed part: version: (1 byte), code (1 byte), fmt(2 byte), mid (4 bytes), sender_id(4 bytes), url_len(2 bytes), payload_len(4bytes)
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* dynamic part: url (bytes in url_len), payload
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*
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* response format:
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* fixed part: (1 byte), code (1 byte), fmt(2 byte), mid (4 bytes), sender_id(4 bytes), payload_len(4bytes)
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* dynamic part: payload
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*/
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#define REQUES_PACKET_VER 1
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#define REQUEST_PACKET_FIX_PART_LEN 18
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#define REQUEST_PACKET_URL_OFFSET REQUEST_PACKET_FIX_PART_LEN
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#define REQUEST_PACKET_URL_LEN *((uint16*)( (char*) buffer + 12))) //!!! to ensure little endian
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#define REQUEST_PACKET_PAYLOAD_LEN *((uint32*)( (char*) buffer + 14))) //!!! to ensure little endian
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#define REQUEST_PACKET_URL(buffer) ((char*) buffer + REQUEST_PACKET_URL_OFFSET)
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#define REQUEST_PACKET_PAYLOAD(buffer) ((char*) buffer + REQUEST_PACKET_URL_OFFSET + REQUEST_PACKET_URL_LEN(buffer))
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#define RESPONSE_PACKET_FIX_PART_LEN 16
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char * pack_request(request_t *request, int * size)
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{
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int url_len = strlen(request->url) + 1;
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int len = REQUEST_PACKET_FIX_PART_LEN + url_len + request->payload_len;
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char * packet = (char*) WA_MALLOC(len);
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if (packet == NULL)
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return NULL;
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// TODO: ensure little endian for words and dwords
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*packet = REQUES_PACKET_VER;
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*((uint8*) (packet + 1)) = request->action;
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*((uint16*) (packet + 2)) = htons(request->fmt);
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*((uint32*) (packet + 4)) = htonl(request->mid);
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*((uint32*) (packet + 8)) = htonl(request->sender);
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*((uint16*) (packet + 12)) = htons(url_len);
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*((uint32*) (packet + 14)) = htonl(request->payload_len);
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strcpy(packet + REQUEST_PACKET_URL_OFFSET, request->url);
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memcpy(packet + REQUEST_PACKET_URL_OFFSET + url_len, request->payload,
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request->payload_len);
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*size = len;
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return packet;
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}
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void free_req_resp_packet(char * packet)
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{
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WA_FREE(packet);
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}
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request_t * unpack_request(char * packet, int size, request_t * request)
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{
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if (*packet != REQUES_PACKET_VER) {
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printf("version fail\n");
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return NULL;
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}
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if (size < REQUEST_PACKET_FIX_PART_LEN) {
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printf("size error: %d\n", size);
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return NULL;
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}
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uint16 url_len = ntohs(*((uint16*) (packet + 12)));
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uint32 payload_len = ntohl(*((uint32*) (packet + 14)));
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if (size != ( REQUEST_PACKET_FIX_PART_LEN + url_len + payload_len)) {
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printf("size error: %d, expect: %d\n", size,
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REQUEST_PACKET_FIX_PART_LEN + url_len + payload_len);
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return NULL;
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}
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if (*(packet + REQUEST_PACKET_FIX_PART_LEN + url_len - 1) != 0) {
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printf("url not end with 0\n");
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return NULL;
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}
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request->action = *((uint8*) (packet + 1));
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request->fmt = ntohs(*((uint16*) (packet + 2)));
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request->mid = ntohl(*((uint32*) (packet + 4)));
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request->sender = ntohl(*((uint32*) (packet + 8)));
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request->payload_len = payload_len;
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request->url = REQUEST_PACKET_URL(packet);
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if (payload_len > 0)
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request->payload = packet + REQUEST_PACKET_URL_OFFSET + url_len;
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else
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request->payload = NULL;
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return request;
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}
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char * pack_response(response_t *response, int * size)
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{
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int len = RESPONSE_PACKET_FIX_PART_LEN + response->payload_len;
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char * packet = (char*) WA_MALLOC(len);
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if (packet == NULL)
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return NULL;
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// TODO: ensure little endian for words and dwords
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*packet = REQUES_PACKET_VER;
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*((uint8*) (packet + 1)) = response->status;
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*((uint16*) (packet + 2)) = htons(response->fmt);
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*((uint32*) (packet + 4)) = htonl(response->mid);
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*((uint32*) (packet + 8)) = htonl(response->reciever);
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*((uint32*) (packet + 12)) = htonl(response->payload_len);
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memcpy(packet + RESPONSE_PACKET_FIX_PART_LEN, response->payload,
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response->payload_len);
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*size = len;
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return packet;
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}
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response_t * unpack_response(char * packet, int size, response_t * response)
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{
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if (*packet != REQUES_PACKET_VER)
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return NULL;
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if (size < RESPONSE_PACKET_FIX_PART_LEN)
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return NULL;
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uint32 payload_len = ntohl(*((uint32*) (packet + 12)));
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if (size != ( RESPONSE_PACKET_FIX_PART_LEN + payload_len))
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return NULL;
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response->status = *((uint8*) (packet + 1));
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response->fmt = ntohs(*((uint16*) (packet + 2)));
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response->mid = ntohl(*((uint32*) (packet + 4)));
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response->reciever = ntohl(*((uint32*) (packet + 8)));
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response->payload_len = payload_len;
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if (payload_len > 0)
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response->payload = packet + RESPONSE_PACKET_FIX_PART_LEN;
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else
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response->payload = NULL;
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return response;
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}
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request_t *clone_request(request_t *request)
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{
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/* deep clone */
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request_t *req = (request_t *) WA_MALLOC(sizeof(request_t));
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if (req == NULL)
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return NULL;
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memset(req, 0, sizeof(*req));
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req->action = request->action;
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req->fmt = request->fmt;
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req->url = wa_strdup(request->url);
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req->sender = request->sender;
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req->mid = request->mid;
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if (req->url == NULL)
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goto fail;
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req->payload_len = request->payload_len;
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if (request->payload_len) {
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req->payload = (char *) WA_MALLOC(request->payload_len);
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if (!req->payload)
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goto fail;
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memcpy(req->payload, request->payload, request->payload_len);
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} else {
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// when payload_len is 0, the payload may be used for carrying some handle or integer
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req->payload = request->payload;
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}
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return req;
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fail:
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request_cleaner(req);
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return NULL;
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}
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void request_cleaner(request_t *request)
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{
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if (request->url != NULL)
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WA_FREE(request->url);
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if (request->payload != NULL && request->payload_len > 0)
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WA_FREE(request->payload);
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WA_FREE(request);
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}
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void response_cleaner(response_t * response)
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{
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if (response->payload != NULL && response->payload_len > 0)
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WA_FREE(response->payload);
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WA_FREE(response);
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}
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response_t * clone_response(response_t * response)
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{
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response_t *clone = (response_t *) WA_MALLOC(sizeof(response_t));
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if (clone == NULL)
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return NULL;
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memset(clone, 0, sizeof(*clone));
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clone->fmt = response->fmt;
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clone->mid = response->mid;
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clone->status = response->status;
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clone->reciever = response->reciever;
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clone->payload_len = response->payload_len;
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if (clone->payload_len) {
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clone->payload = (char *) WA_MALLOC(response->payload_len);
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if (!clone->payload)
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goto fail;
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memcpy(clone->payload, response->payload, response->payload_len);
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} else {
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// when payload_len is 0, the payload may be used for carrying some handle or integer
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clone->payload = response->payload;
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}
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return clone;
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fail:
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response_cleaner(clone);
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return NULL;
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}
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response_t * set_response(response_t * response, int status, int fmt,
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const char *payload, int payload_len)
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{
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response->payload = (void *)payload;
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response->payload_len = payload_len;
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response->status = status;
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response->fmt = fmt;
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return response;
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}
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response_t * make_response_for_request(request_t * request,
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response_t * response)
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{
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response->mid = request->mid;
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response->reciever = request->sender;
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return response;
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}
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request_t * init_request(request_t * request, char *url, int action, int fmt,
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void *payload, int payload_len)
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{
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static unsigned int mid = 0;
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request->url = url;
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request->action = action;
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request->fmt = fmt;
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request->payload = payload;
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request->payload_len = payload_len;
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request->mid = ++mid;
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return request;
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}
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/*
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check if the "url" is starting with "leading_str"
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return: 0 - not match; >0 - the offset of matched url, include any "/" at the end
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notes:
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1. it ensures the leading_str "/abc" can pass "/abc/cde" and "/abc/, but fail "/ab" and "/abcd".
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leading_str "/abc/" can pass "/abc"
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2. it omit the '/' at the first char
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3. it ensure the leading_str "/abc" can pass "/abc?cde
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*/
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int check_url_start(const char* url, int url_len, const char * leading_str)
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{
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int offset = 0;
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if (*leading_str == '/')
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leading_str++;
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if (url_len > 0 && *url == '/') {
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url_len--;
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url++;
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offset++;
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}
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int len = strlen(leading_str);
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if (len == 0)
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return 0;
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// ensure leading_str not end with "/"
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if (leading_str[len - 1] == '/') {
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len--;
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if (len == 0)
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return 0;
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}
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// equal length
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if (url_len == len) {
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if (memcmp(url, leading_str, url_len) == 0) {
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return (offset + len);
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} else {
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return 0;
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}
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}
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if (url_len < len)
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return 0;
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else if (memcmp(url, leading_str, len) != 0)
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return 0;
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else if (url[len] != '/' && url[len] != '?')
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return 0;
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else
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return (offset + len + 1);
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}
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// * @pattern:
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// * sample 1: /abcd, match /abcd only
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// * sample 2: /abcd/ match match "/abcd" and "/abcd/*"
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// * sample 3: /abcd*, match any url started with "/abcd"
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// * sample 4: /abcd/*, exclude "/abcd"
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bool match_url(char * pattern, char * matched)
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{
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if (*pattern == '/')
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pattern++;
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if (*matched == '/')
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matched++;
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int matched_len = strlen(matched);
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if (matched_len == 0)
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return false;
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if (matched[matched_len - 1] == '/') {
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matched_len--;
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if (matched_len == 0)
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return false;
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}
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int len = strlen(pattern);
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if (len == 0)
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return false;
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if (pattern[len - 1] == '/') {
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len--;
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if (strncmp(pattern, matched, len) != 0)
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return false;
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if (len == matched_len)
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return true;
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if (matched_len > len && matched[len] == '/')
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return true;
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return false;
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} else if (pattern[len - 1] == '*') {
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if (pattern[len - 2] == '/') {
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if (strncmp(pattern, matched, len - 1) == 0)
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return true;
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else
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return false;
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} else {
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return (strncmp(pattern, matched, len - 1) == 0);
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}
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} else {
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return (strcmp(pattern, matched) == 0);
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}
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}
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/*
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* get the value of the key from following format buffer:
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* key1=value1;key2=value2;key3=value3
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*/
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char * find_key_value(char * buffer, int buffer_len, char * key, char * value,
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int value_len, char delimiter)
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{
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char * p = buffer;
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int remaining = buffer_len;
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int key_len = strlen(key);
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while (*p != 0 && remaining > 0) {
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while (*p == ' ' || *p == delimiter) {
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p++;
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remaining--;
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}
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if (remaining <= key_len)
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return NULL;
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// find the key
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if (0 == strncmp(p, key, key_len) && p[key_len] == '=') {
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p += (key_len + 1);
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remaining -= (key_len + 1);
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char * v = value;
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memset(value, 0, value_len);
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value_len--; // ensure last char is 0
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while (*p != delimiter && remaining > 0 && value_len > 0) {
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*v++ = *p++;
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remaining--;
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value_len--;
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}
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return value;
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}
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// goto next key
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while (*p != delimiter && remaining > 0) {
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p++;
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remaining--;
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}
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}
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return NULL;
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}
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