170 lines
4.9 KiB
C++
170 lines
4.9 KiB
C++
/*
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* PacketMatchTree.cpp
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*
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* Created on: 10.03.2015
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* Author: baetz
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*/
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#include <framework/tmtcpacket/packetmatcher/ApidMatcher.h>
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#include <framework/tmtcpacket/packetmatcher/PacketMatchTree.h>
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#include <framework/tmtcpacket/packetmatcher/ServiceMatcher.h>
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#include <framework/tmtcpacket/packetmatcher/SubserviceMatcher.h>
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PacketMatchTree::PacketMatchTree(Node* root) :
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MatchTree<TmPacketMinimal*>(root, 2), factoryBackend(0, POOL_SIZES,
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N_ELEMENTS, false, true), factory(&factoryBackend) {
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}
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PacketMatchTree::PacketMatchTree(iterator root) :
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MatchTree<TmPacketMinimal*>(root.element, 2), factoryBackend(0,
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POOL_SIZES, N_ELEMENTS, false, true), factory(&factoryBackend) {
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}
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PacketMatchTree::PacketMatchTree() :
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MatchTree<TmPacketMinimal*>((Node*) NULL, 2), factoryBackend(0,
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POOL_SIZES, N_ELEMENTS, false, true), factory(&factoryBackend) {
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}
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PacketMatchTree::~PacketMatchTree() {
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}
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ReturnValue_t PacketMatchTree::addMatch(uint16_t apid, uint8_t type,
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uint8_t subtype) {
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//We assume adding APID is always requested.
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uint8_t expectedHierarchy = 0;
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if (type != 0) {
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expectedHierarchy++;
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if (subtype != 0) {
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expectedHierarchy++;
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}
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}
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TmPacketMinimal::TmPacketMinimalPointer data;
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data.data_field.service_type = type;
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data.data_field.service_subtype = subtype;
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TmPacketMinimal testPacket((uint8_t*)&data);
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testPacket.setAPID(apid);
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uint8_t realHierarchy = 0;
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iterator lastMatch;
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bool isInTree = matchesTree(&testPacket, &lastMatch, &realHierarchy);
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if (isInTree) {
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//Matches somehow.
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//TODO: Are we interested in details?
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return RETURN_OK;
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}
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if (expectedHierarchy == realHierarchy) {
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//Add another element (of correct type) at the OR branch.
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lastMatch = addElement(OR, realHierarchy, lastMatch, &testPacket);
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if (lastMatch == this->end()) {
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return FULL;
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}
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} else if (expectedHierarchy > realHierarchy) {
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//A certain amount of downward structure does not exist. Add first element as OR, rest as AND.
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lastMatch = addElement(OR, realHierarchy, lastMatch, &testPacket);
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if (lastMatch == end()) {
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return FULL;
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}
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iterator firstOfList = lastMatch;
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while (lastMatch != end() && realHierarchy < expectedHierarchy) {
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realHierarchy++;
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lastMatch = addElement(AND, realHierarchy, lastMatch, &testPacket);
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}
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if (lastMatch == end()) {
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//At least one element could not be inserted. So delete everything.
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removeElementAndAllChildren(firstOfList);
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return FULL;
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}
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} else {
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//Might work like that.
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//Too detailed match, delete the last element and all its children.
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while (lastMatch.up() != end() && lastMatch.up().left() != lastMatch) {
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lastMatch = lastMatch.up();
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}
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removeElementAndAllChildren(lastMatch);
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}
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return RETURN_OK;
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}
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ReturnValue_t PacketMatchTree::removeMatch(uint16_t apid, uint8_t type,
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uint8_t subtype) {
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//We assume APID is always in request.
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uint8_t expectedHierarchy = 1;
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if (type != 0) {
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expectedHierarchy++;
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if (subtype != 0) {
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expectedHierarchy++;
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}
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}
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TmPacketMinimal::TmPacketMinimalPointer data;
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data.data_field.service_type = type;
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data.data_field.service_subtype = subtype;
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TmPacketMinimal testPacket((uint8_t*)&data);
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testPacket.setAPID(apid);
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uint8_t realHierarchy = 0;
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iterator lastMatch;
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bool isInTree = matchesTree(&testPacket, &lastMatch, &realHierarchy);
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if (isInTree) {
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if (expectedHierarchy == realHierarchy) {
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return removeElementAndReconnectChildren(lastMatch);
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} else {
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return TOO_DETAILED_REQUEST;
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}
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} else {
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//TODO: Maybe refine this a bit.
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return NO_MATCH;
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}
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}
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PacketMatchTree::iterator PacketMatchTree::addElement(bool andBranch,
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uint8_t level, PacketMatchTree::iterator position,
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TmPacketMinimal* content) {
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SerializeableMatcherIF<TmPacketMinimal*>* newContent = NULL;
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switch (level) {
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case 0:
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newContent = factory.generate<ApidMatcher>(content->getAPID());
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break;
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case 1:
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newContent = factory.generate<ServiceMatcher>(content->getService());
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break;
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case 2:
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newContent = factory.generate<SubServiceMatcher>(
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content->getSubService());
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break;
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default:
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break;
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}
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if (newContent == NULL) {
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return end();
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}
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Node* newNode = factory.generate<Node>(newContent);
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if (newNode == NULL) {
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return end();
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}
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return insert(andBranch, position, newNode);
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}
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ReturnValue_t PacketMatchTree::initialize() {
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return factoryBackend.initialize();
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}
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const uint16_t PacketMatchTree::POOL_SIZES[N_POOLS] = { sizeof(ServiceMatcher),
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sizeof(SubServiceMatcher), sizeof(ApidMatcher),
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sizeof(PacketMatchTree::Node) };
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//TODO: Rather arbitrary. Adjust!
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const uint16_t PacketMatchTree::N_ELEMENTS[N_POOLS] = { 10, 20, 2, 40 };
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ReturnValue_t PacketMatchTree::changeMatch(bool addToMatch, uint16_t apid,
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uint8_t type, uint8_t subtype) {
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if (addToMatch) {
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return addMatch(apid, type, subtype);
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} else {
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return removeMatch(apid, type, subtype);
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}
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}
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ReturnValue_t PacketMatchTree::cleanUpElement(iterator position) {
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//TODO: What if first deletion fails?
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factory.destroy(position.element->value);
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return factory.destroy(position.element);
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}
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