SETTLEMENT TELEMETRY
Inference Logs
| Created / MID / TS | Tx MID | Alias | object_type | Mode / Proto / Fixregs | Vendor/LLM | Flags | Status | Est. Tokens | Tokens | Price | Contract | Cost | Token Usage | Stop / Error | Latency | Summary | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
gtixrCU09Rtw9uG1tx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 223 C: - O: 4,096 T: 4,319 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:谈谈分治策略的优势。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。动态规划与递归密切相关,它通过缓存子问题的结果来避免重复计算,提升效率。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。递归是一种通过函数调用自身来解决问题的方法,它将大问题分解为结构相",
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gtixUqLscI0pJllvtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 175 C: - O: 4,096 T: 4,271 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136595115de824baea9702e17bffa39e9c3bdc4f62c22e0\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 66ms | {
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"text": "请详细回答:描述二叉树的遍历方式。递归的深度过大会导致栈溢出,因此实际工程中常用迭代或尾递归优化。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。",
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} | |||
gtixTUSKkxHFKAx3tx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 175 C: - O: 4,096 T: 4,271 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
"user_message": "error[upstream_error]",
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136591869de824baea9702e17bffa39e9c3bdc4f64981a2\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 62ms | {
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"text": "请详细回答:描述二叉树的遍历方式。递归的深度过大会导致栈溢出,因此实际工程中常用迭代或尾递归优化。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。",
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} | |||
gtix78SCG4upzaEVtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 314 C: - O: 4,096 T: 4,410 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
"user_message": "error[upstream_error]",
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136528614de824baea9702e17bffa39e9c3bdc4f69886aa\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 69ms | {
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"text": "请详细回答:介绍快速排序的原理。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。JSON数据结构的解析也可以递归进行,因为JSON本身支持任意层级的嵌套。斐波那契数列中每个数字是前两个数字之和,用递归实现时需要注意重复计算问题。动态规划与递归密切相关,它通过缓存子问题的结果来避",
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} | |||
gtix63CyX804UMbptx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 314 C: - O: 4,096 T: 4,410 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
"user_message": "error[upstream_error]",
"user_status": 502,
"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136525370de824baea9702e17bffa39e9c3bdc4f6f516a5\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 76ms | {
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"text": "请详细回答:介绍快速排序的原理。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。JSON数据结构的解析也可以递归进行,因为JSON本身支持任意层级的嵌套。斐波那契数列中每个数字是前两个数字之和,用递归实现时需要注意重复计算问题。动态规划与递归密切相关,它通过缓存子问题的结果来避",
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},
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} | |||
gtiwjhAB1USlJvIltx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 426 C: - O: 4,096 T: 4,522 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136462112de824baea9702e17bffa39e9c3bdc4f6153659\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 65ms | {
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"text": "请详细回答:解释回溯算法的应用场景。回溯算法本质上是在递归搜索树上进行深度优先遍历,遇到死路就回退。JSON数据结构的解析也可以递归进行,因为JSON本身支持任意层级的嵌套。理解递归的关键在于信任递归调用会正确工作,只需要关注当前层的逻辑。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。",
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} | |||
gtiwiLMcRMsCxUJ3tx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 426 C: - O: 4,096 T: 4,522 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
"user_message": "error[upstream_error]",
"user_status": 502,
"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136458879de824baea9702e17bffa39e9c3bdc4f696b3b8\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 63ms | {
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"text": "请详细回答:解释回溯算法的应用场景。回溯算法本质上是在递归搜索树上进行深度优先遍历,遇到死路就回退。JSON数据结构的解析也可以递归进行,因为JSON本身支持任意层级的嵌套。理解递归的关键在于信任递归调用会正确工作,只需要关注当前层的逻辑。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。",
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} | |||
gtiwLzOThYtTVHWttx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 650 C: - O: 4,096 T: 4,746 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136395636de824baea9702e17bffa39e9c3bdc4f69770f0\",\"type\":\"Forbidden\"}}",
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"text": "请详细回答:介绍快速排序的原理。快速排序算法使用分治策略,先选定基准元素,再将数组分成小于和大于基准的两部分。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。机器学习中的决策树构建过程也涉及递归,不断对数",
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} | |||
gtiwKuBaMWkzrBAftx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 650 C: - O: 4,096 T: 4,746 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"vendor_status": 403
} | 64ms | {
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"text": "请详细回答:介绍快速排序的原理。快速排序算法使用分治策略,先选定基准元素,再将数组分成小于和大于基准的两部分。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。机器学习中的决策树构建过程也涉及递归,不断对数",
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gtivyYFm0dYYG5extx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 275 C: - O: 4,096 T: 4,371 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136329160de824baea9702e17bffa39e9c3bdc4f6ceec22\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 69ms | {
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"text": "请详细回答:说明归并排序的时间复杂度。递归是一种通过函数调用自身来解决问题的方法,它将大问题分解为结构相同的子问题。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。动态规划与递归密切相关,它通过缓存子问题的",
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},
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"text": null,
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} | |||
gtivxCKtdvEWLZXptx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 275 C: - O: 4,096 T: 4,371 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
"user_message": "error[upstream_error]",
"user_status": 502,
"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136325907de824baea9702e17bffa39e9c3bdc4f66d0e2c\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 68ms | {
"system_prefix": null,
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"user_summary": {
"text": "请详细回答:说明归并排序的时间复杂度。递归是一种通过函数调用自身来解决问题的方法,它将大问题分解为结构相同的子问题。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。动态规划与递归密切相关,它通过缓存子问题的",
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gtivaqGR03i9HTcRtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 224 C: - O: 4,096 T: 4,320 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136262644de824baea9702e17bffa39e9c3bdc4f6651c78\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
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"text": "请详细回答:谈谈分治策略的优势。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。二叉树的遍历包括前序、中序和后序三种方式,它们都可以用递归简洁地实现。",
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} | |||
gtivZktYrffIFRYHtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 224 C: - O: 4,096 T: 4,320 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"vendor_message": "{\"error\":{\"code\":\"AccountOverdueError\",\"message\":\"The request failed because your account has an overdue balance. Request id: 021788136259376de824baea9702e17bffa39e9c3bdc4f6b47ebb\",\"type\":\"Forbidden\"}}",
"vendor_status": 403
} | 64ms | {
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"text": "请详细回答:谈谈分治策略的优势。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。分治算法将问题拆分为更小的子问题,分别求解后再合并结果,与递归天然契合。二叉树的遍历包括前序、中序和后序三种方式,它们都可以用递归简洁地实现。",
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} | |||
gtivDOyPlTG4boghtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 462 C: - O: 4,096 T: 4,558 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:说明动态规划的核心思想。JSON数据结构的解析也可以递归进行,因为JSON本身支持任意层级的嵌套。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。图的深度优先搜索使用递归或显式栈实现,用于遍历或检测连通性。快速排序算法使用分治策略,先选定基准元素,再将数组分成小于和",
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gtivC38rQHHqMzkbtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 462 C: - O: 4,096 T: 4,558 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:说明动态规划的核心思想。JSON数据结构的解析也可以递归进行,因为JSON本身支持任意层级的嵌套。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。图的深度优先搜索使用递归或显式栈实现,用于遍历或检测连通性。快速排序算法使用分治策略,先选定基准元素,再将数组分成小于和",
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gtiuphBiZ0Uwqywdtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 663 C: - O: 4,096 T: 4,759 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:介绍汉诺塔问题的解法。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。递归的深度过大会导致栈溢出,因此实际工程中常用迭代或尾递归优化。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。图的深度优先搜索使用递",
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gtiuoc0oz2k95GWntx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 663 C: - O: 4,096 T: 4,759 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:介绍汉诺塔问题的解法。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。递归的深度过大会导致栈溢出,因此实际工程中常用迭代或尾递归优化。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。图的深度优先搜索使用递",
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gtiuSG40kcLrXz2ttx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 264 C: - O: 4,096 T: 4,360 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:说明归并排序的时间复杂度。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。递归是一种通过函数调用自身来解决问题的方法,它将大问题分解为结构相同的子问题。使用递归时要注意参数传递的方式,避免不必要的对象复制造成性能开销。递归的深度过大会导致栈溢出,因此实际工程中常用迭",
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gtiuQuIRvZ8z3vzZtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 264 C: - O: 4,096 T: 4,360 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:说明归并排序的时间复杂度。归并排序先递归地排序两半,再线性合并,时间复杂度稳定为nlog(n)。递归是一种通过函数调用自身来解决问题的方法,它将大问题分解为结构相同的子问题。使用递归时要注意参数传递的方式,避免不必要的对象复制造成性能开销。递归的深度过大会导致栈溢出,因此实际工程中常用迭",
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gtiu4YMIwpXvU79ntx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 117 C: - O: 4,096 T: 4,213 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:解释深度优先搜索的实现。递归是一种通过函数调用自身来解决问题的方法,它将大问题分解为结构相同的子问题。使用递归时要注意参数传递的方式,避免不必要的对象复制造成性能开销。",
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gtiu3T45aH3eAJcXtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 117 C: - O: 4,096 T: 4,213 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:解释深度优先搜索的实现。递归是一种通过函数调用自身来解决问题的方法,它将大问题分解为结构相同的子问题。使用递归时要注意参数传递的方式,避免不必要的对象复制造成性能开销。",
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gtith71I4dWKzsJTtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 679 C: - O: 4,096 T: 4,775 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:谈谈分治策略的优势。汉诺塔问题是经典的递归教学案例,移动n个盘子需要先将n-1个盘子移到辅助柱。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。回溯算法本质上是在递归搜索树上进行深度优先遍历,遇到死路就回退。汉诺塔问题是经典的递归教学案例,移动n个盘子需要先将n-1个盘子移到",
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gtitfl9PLWlotw6vtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 679 C: - O: 4,096 T: 4,775 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:谈谈分治策略的优势。汉诺塔问题是经典的递归教学案例,移动n个盘子需要先将n-1个盘子移到辅助柱。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。回溯算法本质上是在递归搜索树上进行深度优先遍历,遇到死路就回退。汉诺塔问题是经典的递归教学案例,移动n个盘子需要先将n-1个盘子移到",
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gtitJOtdOvkcWzBLtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 635 C: - O: 4,096 T: 4,731 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:解释为什么递归可能导致栈溢出。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。动态规划与递归密切相关,它通过缓存子问题的结果来避免重复计算,提升效率。回溯算法本质上是在递归搜索树上进行深度优先遍历,遇到死路就回退。汉诺塔问题是经典的递归教学案例,移动n个盘子需要先将n-1个盘",
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gtitIJcPuuSB9NcHtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 635 C: - O: 4,096 T: 4,731 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:解释为什么递归可能导致栈溢出。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。动态规划与递归密切相关,它通过缓存子问题的结果来避免重复计算,提升效率。回溯算法本质上是在递归搜索树上进行深度优先遍历,遇到死路就回退。汉诺塔问题是经典的递归教学案例,移动n个盘子需要先将n-1个盘",
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gtisvxcHQ25lomtjtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 500 C: - O: 4,096 T: 4,596 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:说明动态规划的核心思想。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。机器学习中的决策树构建过程也涉及递归,不断对数据子集进行划分。图的深度优先搜索使用递归或显式栈实现,用于遍历或检测连通性。动态规划与递归密切相关",
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gtisubm3p9KJcVJVtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 500 C: - O: 4,096 T: 4,596 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:说明动态规划的核心思想。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。机器学习中的决策树构建过程也涉及递归,不断对数据子集进行划分。图的深度优先搜索使用递归或显式栈实现,用于遍历或检测连通性。动态规划与递归密切相关",
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gtisYFpFaiw25Dpbtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 315 C: - O: 4,096 T: 4,411 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:介绍汉诺塔问题的解法。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。理解递归的关键在于信任递归调用会正确工作,只需要关注当前层的逻辑。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。二叉树的遍历包括前序、中序和后序三种方式,它们都可以用递归简洁地实现。递归是一种",
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gtisXAbh000KTepFtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-flash-ga-260731gtMyXDcWcENHaJLE/gtMyXDlq9tUR0mP7 | — | Error | I: 315 C: - O: 4,096 T: 4,411 | I: 0 C: 0 O: 0 T: 0 | 0 × 1.8 = 0.000000 0 × 0.06 = 0.000000 0 × 5.4 = 0.000000 CNY 0.000000 | — | 0 × 1.2 = 0.000000 0 × 0.04 = 0.000000 0 × 3.6 = 0.000000 CNY 0.000000 | — | {
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"vendor_status": 403
} | 65ms | {
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"text": "请详细回答:介绍汉诺塔问题的解法。编译器解析嵌套的表达式时,递归下降解析器是最常用的实现方式。理解递归的关键在于信任递归调用会正确工作,只需要关注当前层的逻辑。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。二叉树的遍历包括前序、中序和后序三种方式,它们都可以用递归简洁地实现。递归是一种",
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gtisAoZYk3GFGgAJtx | chat_completion | req-v1-chatcmplopenai-chatcmpl | volcengine-bizplan-dtx/deepseek-v4-pro-ga-260813gtMyXDcWcENHaJLE/gtMyXDnAfH4svhhO | — | Error | I: 323 C: - O: 4,096 T: 4,419 | I: 0 C: 0 O: 0 T: 0 | 0 × 5.4 = 0.000000 0 × 0.18 = 0.000000 0 × 16.2 = 0.000000 CNY 0.000000 | — | 0 × 3.6 = 0.000000 0 × 0.12 = 0.000000 0 × 10.8 = 0.000000 CNY 0.000000 | — | {
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"text": "请详细回答:谈谈分治策略的优势。斐波那契数列中每个数字是前两个数字之和,用递归实现时需要注意重复计算问题。在计算机科学中,递归通常包含两个部分:基线条件和递归步骤,缺一不可。好的递归设计应该保证每次调用都向基线条件靠近,避免无限递归。递归思维在算法设计中无处不在,掌握它对理解复杂问题至关重要。二叉树",
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} |
* Settlement log sourced from pgtk_inference_logs (ADR 211).Showing 30 of 30 entries