第一版超时

//多源码路径
template10001000>
class CFloyd
{
public:
CFloyd(const vector& mat)
{
m_vMat = mat;
const int n = mat.size();
for (int i = 0; i < n; i++)
{//通过i中转
for (int i1 = 0; i1 < n; i1++)
{
for (int i2 = 0; i2 < n; i2++)
{
//此时:m_vMat[i1][i2] 表示通过[0,i)中转的最短距离
m_vMat[i1][i2] = min(m_vMat[i1][i2], m_vMat[i1][i] + m_vMat[i][i2]);
//m_vMat[i1][i2] 表示通过[0,i]中转的最短距离
}
}
}
};
vector m_vMat;
};

class Solution {
public:
long long minimumCost(string source, string target, vector& original, vector& changed, vector& cost) {
vector strs(original.begin(), original.end());
strs.insert(strs.end(), changed.begin(), changed.end());
sort(strs.begin(),strs.end());
strs.erase(std::unique(strs.begin(), strs.end()), strs.end());
std::unordered_map mStrToNode;
for (int i = 0; i < strs.size(); i++)
{
mStrToNode[strs[i]] = i;
}
const int iNotMay = 1000 * 1000 * 1000;
vector vMat(strs.size(), vector(strs.size(), iNotMay));
vector vOriNode;
for (int j = 0; j < original.size(); j++)
{
vOriNode.emplace_back(mStrToNode[original[j]]);
auto& n = vMat[vOriNode.back()][mStrToNode[changed[j]]];
n = min(n,cost[j]);
}
for (int i = 0; i < strs.size(); i++)
{
vMat[i][i] = 0;
}
CFloyd floyd(vMat);
vector vRet(source.length() + 1,LLONG_MAX/1000 );
vRet[0]=0;
for (int i = 0; i < source.length(); i++)
{
if (source[i] == target[i])
{
vRet[i + 1] = min(vRet[i+1],vRet[i]);
//continue; 相等也可以替换
}
for (int j = 0; j < original.size(); j++)
{
const int len = original[j].length();
if (i + len > source.length())
{
continue;
}
if (source.substr(i, len) != original[j])
{
continue;
}
string sDst = target.substr(i, len);
if (!mStrToNode.count(sDst))
{
continue;
}
const int iDest = mStrToNode[sDst];
const int iDist = floyd.m_vMat[vOriNode[j]][iDest];
if (iDist >= iNotMay)
{
continue;
}
vRet[i + len] = min(vRet[i + len],vRet[i]+iDist);
}
}
return (vRet.back() >= LLONG_MAX / 1000) ? -1 : vRet.back();
}
};

第二版超时

//多源码路径
template10001000>
class CFloyd
{
public:
CFloyd(const vector& mat)
{
m_vMat = mat;
const int n = mat.size();
for (int i = 0; i < n; i++)
{//通过i中转
for (int i1 = 0; i1 < n; i1++)
{
for (int i2 = 0; i2 < n; i2++)
{
//此时:m_vMat[i1][i2] 表示通过[0,i)中转的最短距离
m_vMat[i1][i2] = min(m_vMat[i1][i2], m_vMat[i1][i] + m_vMat[i][i2]);
//m_vMat[i1][i2] 表示通过[0,i]中转的最短距离
}
}
}
};
vector m_vMat;
};

class Solution {
public:
long long minimumCost(string source, string target, vector& original, vector& changed, vector& cost) {
vector strs(original.begin(), original.end());
strs.insert(strs.end(), changed.begin(), changed.end());
sort(strs.begin(),strs.end());
strs.erase(std::unique(strs.begin(), strs.end()), strs.end());
std::unordered_map mStrToNode;
for (int i = 0; i < strs.size(); i++)
{
mStrToNode[strs[i]] = i;
}
const int iNotMay = 1000 * 1000 * 1000;
vector vMat(strs.size(), vector(strs.size(), iNotMay));
for (int j = 0; j < original.size(); j++)
{
auto& n = vMat[mStrToNode[original[j]]][mStrToNode[changed[j]]];
n = min(n,cost[j]);
}
for (int i = 0; i < strs.size(); i++)
{
vMat[i][i] = 0;
}
CFloyd floyd(vMat);
vector vRet(source.length() + 1,LLONG_MAX/1000 );
vRet[0]=0;
for (int i = 0; i < source.length(); i++)
{
for (int len = 1; len + i <= source.length(); len++)
{
const string sSrc = source.substr(i, len);
const string sDst = target.substr(i, len);
if (sSrc == sDst)
{
vRet[i + len] = min(vRet[i + len], vRet[i] );
continue;
}
if (!mStrToNode.count(sDst)|| !mStrToNode.count(sSrc))
{
continue;
}
const int iSrc = mStrToNode[sSrc];
const int iDest = mStrToNode[sDst];
const int iDist = floyd.m_vMat[iSrc][iDest];
if (iDist >= iNotMay)
{
continue;
}
vRet[i + len] = min(vRet[i + len], vRet[i] + iDist);
}
}
return (vRet.back() >= LLONG_MAX / 1000) ? -1 : vRet.back();
}
};

第四版超时

template
class CTrie
{
public:
CTrie()
{

}
template
CTrie* Add(IT begin, IT end,const int iDebug)
{
	int iLeve = 0;
	CTrie* pNode = this;
	for (; begin != end; ++begin)
	{
		pNode = pNode->AddChar(*begin);			
		pNode->m_iLeve = iLeve++;
	}
	pNode->m_iDebug = iDebug;
	return pNode;
}
template
CTrie* Search(IT begin, IT end)
{
	if (begin == end)
	{
		return this;
	}

	if ('.' == *begin)
	{
		for (auto& ptr : m_vPChilds)
		{
			if (!ptr)
			{
				continue;
			}
			auto pSearch = ptr->Search(begin + 1, end);
			if (pSearch)
			{
				return pSearch;
			}
		}
		return nullptr;
	}

	auto ptr = GetChild(*begin);
	if (nullptr == ptr)
	{
		return nullptr;
	}
	return ptr->Search(begin + 1, end);
}
TData m_data = defData;

CTrie* AddChar(TData ele)
{
	if ((ele < cBegin) || (ele >= cBegin + iTypeNum))
	{
		return nullptr;
	}
	const int index = ele - cBegin;
	auto ptr = m_vPChilds[index];
	if (!ptr)
	{
		m_vPChilds[index] = new CTrie();
	}
	return m_vPChilds[index];
}

CTrie* GetChild(TData ele)const
{
	if ((ele < cBegin) || (ele >= cBegin + iTypeNum))
	{
		return nullptr;
	}
	return m_vPChilds[ele - cBegin];
}

int m_iDebug=-1;
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protected:
int m_iLeve=-1;
CTrie* m_vPChilds[iTypeNum] = { nullptr };
};

template
class CStrTrieHelp
{
public:
CTrie* Add(const string& s,int iDebug)
{
return m_trie.Add(s.begin(), s.begin() + s.length(), iDebug);
}
CTrie* Search(const string& s)
{
return m_trie.Search(s.begin(), s.begin() + s.length());
}
CTrie* SearchSub(const string& s,int iPos,int len)
{
return m_trie.Search(s.begin()+ iPos, s.begin() + iPos + len );
}
CTrie m_trie;
};
template
class CStrIndexs
{
public:
void Add(const string& s, int iDebug)
{
m_trie.Add(s, iDebug);
}
int Seach(const string& s)
{
auto p = m_trie.Search(s);
if (nullptr == p)
{
return -1;
}
return p->m_iDebug;
}
int SearchSub(const string& s, int iPos, int len)
{
auto p = m_trie.SearchSub(s, iPos, len);
if (nullptr == p)
{
return -1;
}
return p->m_iDebug;
}
protected:
CStrTrieHelp m_trie;
};

//多源码路径
template10001000>
class CFloyd
{
public:
CFloyd(const vector& mat)
{
m_vMat = mat;
const int n = mat.size();
for (int i = 0; i < n; i++)
{//通过i中转
for (int i1 = 0; i1 < n; i1++)
{
for (int i2 = 0; i2 < n; i2++)
{
//此时:m_vMat[i1][i2] 表示通过[0,i)中转的最短距离
m_vMat[i1][i2] = min(m_vMat[i1][i2], m_vMat[i1][i] + m_vMat[i][i2]);
//m_vMat[i1][i2] 表示通过[0,i]中转的最短距离
}
}
}
};
vector m_vMat;
};

class Solution {
public:
long long minimumCost(string source, string target, vector& original, vector& changed, vector& cost) {
vector strs(original.begin(), original.end());
strs.insert(strs.end(), changed.begin(), changed.end());
sort(strs.begin(), strs.end());
strs.erase(std::unique(strs.begin(), strs.end()), strs.end());
CStrIndexs strIndexs;
for (int i = 0; i < strs.size(); i++)
{
strIndexs.Add(strs[i], i);
}
const int iNotMay = 1000 * 1000 * 1000;
vector vMat(strs.size(), vector(strs.size(), iNotMay));
for (int j = 0; j < original.size(); j++)
{
const int iSrc = strIndexs.Seach(original[j]);
const int iDest = strIndexs.Seach(changed[j]);
auto& n = vMat[iSrc][iDest];
n = min(n, cost[j]);
}
for (int i = 0; i < strs.size(); i++)
{
vMat[i][i] = 0;
}
CFloyd floyd(vMat);
vector vRet(source.length() + 1, LLONG_MAX / 1000);
vRet[0] = 0;
for (int i = 0; i < source.length(); i++)
{
bool bSame = true;
for (int len = 1; len + i <= source.length(); len++)
{
bSame &= (source[len + i - 1] == target[len + i - 1]);
if (bSame)
{
vRet[i + len] = min(vRet[i + len], vRet[i]);
continue;
}
const int iSrc = strIndexs.SearchSub(source, i, len);
const int iDest = strIndexs.SearchSub(target, i, len);
if ((-1 == iSrc) || (-1== iDest))
{
continue;
}
const int iDist = floyd.m_vMat[iSrc][iDest];
if (iDist >= iNotMay)
{
continue;
}
vRet[i + len] = min(vRet[i + len], vRet[i] + iDist);
}
}
return (vRet.back() >= LLONG_MAX / 1000) ? -1 : vRet.back();
}
};

扩展阅读

视频课程

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如何你想快

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相关下载

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https://download.csdn.net/download/he_zhidan/88348653

class="table-box">
我想对大家说的话
闻缺陷则喜是一个美好的愿望,早发现问题,早修改问题,给老板节约钱。
子墨子言之:事无终始,无务多业。也就是我们常说的专业的人做专业的事。
如果程序是一条龙,那算法就是他的是睛

测试环境

操作系统:win7 开发环境: VS2019 C++17
或者 操作系统:win10 开发环境: VS2022 C++17
如无特殊说明,本算法C++ 实现。

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