From bea6407b376a4e426f0b120bae569fba6ab867db Mon Sep 17 00:00:00 2001
From: chenluhua1980 <Chenluhua@qq.com>
Date: 星期六, 08 十一月 2025 17:55:47 +0800
Subject: [PATCH] 1.CMaster.cpp 第 1644/1667/1691 行在记录 SV 曲线时通过 getGlassFromSlot(0) 取玻璃,而各设备的 initSlots() 都是从 1 开始编号(例如 CBonder.cpp (line 408)、CVacuumBake.cpp (line 415) 等)。槽位 0 永远不存在,所以 pGlass 始终是 nullptr,pGlass->addSVData(...) 的分支从未执行。结果 SERVO::CGlass::m_svDatas 里没有任何曲线数据,GlassJson::ToPrettyString 生成的 pretty 字符串也就没有 sv_datas,导出 CSV 时自然读不到曲线。 同一段代码还有一个潜在 Bug:虽然判断了 channel - 1 < bonderTypes.size(),但真正索引却用的是 bonderTypes[channel]。索引偏移会导致数据类型错位,最后一个通道甚至可能越界。即使修正了槽位,这里也需要同步改成 bonderTypes[channel - 1](另外两处 vacuumbakeTypes、coolingTypes 也一样)。
---
SourceCode/Bond/Servo/CVacuumBake.cpp | 53 ++++++++++++++++++++++++++++++++++++++++++++++++++++-
1 files changed, 52 insertions(+), 1 deletions(-)
diff --git a/SourceCode/Bond/Servo/CVacuumBake.cpp b/SourceCode/Bond/Servo/CVacuumBake.cpp
index ea3bf70..3ad0dbd 100644
--- a/SourceCode/Bond/Servo/CVacuumBake.cpp
+++ b/SourceCode/Bond/Servo/CVacuumBake.cpp
@@ -482,7 +482,58 @@
int CVacuumBake::parsingProcessData(const char* pszData, size_t size, std::vector<CParam>& params)
{
- return parsingParams(pszData, size, params);
+ ASSERT(pszData);
+ if (size < 250) return 0;
+ int i = 0, v;
+
+
+ // 1.工艺参数序号
+ v = (pszData[i] & 0xff) | (pszData[i + 1] & 0xff) << 8;
+ params.push_back(CParam("工艺参数序号", "", this->getName().c_str(), v));
+ i += 2;
+
+ if (v == 1) {
+ // 2.A_腔加热时间
+ v = (pszData[i] & 0xff) | (pszData[i + 1] & 0xff) << 8;
+ params.push_back(CParam("A_腔加热时间", "", this->getName().c_str(), v * 0.1f));
+ i += 2;
+
+ // 3.A_腔破真空时间
+ v = (pszData[i] & 0xff) | (pszData[i + 1] & 0xff) << 8;
+ params.push_back(CParam("A_腔破真空时间", "", this->getName().c_str(), v * 0.01f));
+ i += 2;
+
+ // 4.A_腔真空到达值
+ params.push_back(CParam("A_腔真空到达值", "", this->getName().c_str(), (double)toFloat(&pszData[i])));
+ i += 4;
+
+ // 5.A_腔温控表主控温度设定
+ v = (pszData[i] & 0xff) | (pszData[i + 1] & 0xff) << 8 | (pszData[i + 2] & 0xff) << 16 | (pszData[i + 3] & 0xff) << 24;
+ params.push_back(CParam("A_腔温控表主控温度设定", "", this->getName().c_str(), v * 0.1f));
+ i += 4;
+ }
+ else if (v == 1) {
+ // 2.B_腔加热时间
+ v = (pszData[i] & 0xff) | (pszData[i + 1] & 0xff) << 8;
+ params.push_back(CParam("B_腔加热时间", "", this->getName().c_str(), v * 0.1f));
+ i += 2;
+
+ // 3.A_腔破真空时间
+ v = (pszData[i] & 0xff) | (pszData[i + 1] & 0xff) << 8;
+ params.push_back(CParam("B_腔破真空时间", "", this->getName().c_str(), v * 0.01f));
+ i += 2;
+
+ // 4.A_腔真空到达值
+ params.push_back(CParam("B_腔真空到达值", "", this->getName().c_str(), (double)toFloat(&pszData[i])));
+ i += 4;
+
+ // 5.A_腔温控表主控温度设定
+ v = (pszData[i] & 0xff) | (pszData[i + 1] & 0xff) << 8 | (pszData[i + 2] & 0xff) << 16 | (pszData[i + 3] & 0xff) << 24;
+ params.push_back(CParam("B_腔温控表主控温度设定", "", this->getName().c_str(), v * 0.1f));
+ i += 4;
+ }
+
+ return (int)params.size();
}
int CVacuumBake::parsingSVData(const char* pszData, size_t size, std::vector<CParam>& params)
--
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