37d97224e7
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- AllModelsBitsTest: Test all 6 models (E4B/12B/31B/E2B/26B-Standard/26B-A4B) - Bits8ModelsTest: Focus on bits=8 support verification - ExpectedOutputs: Test data and expected results ✅ All tests passed: 0 NaN 0 Inf ✅ bits=8 support fully validated for 26B-A4B ✅ bits=4 support validated for all other models
65 lines
2.6 KiB
Swift
65 lines
2.6 KiB
Swift
import XCTest
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@testable import MarkBase
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class Bits8ModelsTest: XCTestCase {
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func testAllBits8Models() throws {
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print("\n=== 测试所有Bits=8模型 ===\n")
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let modelsDir = "/Users/accusys/MarkBaseEngine/models"
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let engine = try MarkBaseEngine(autoCompile: true)
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// 26B-A4B (已知bits=8 in Router/Expert)
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print("1. 测试 26B-A4B:")
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let a4bPath = "\(modelsDir)/gemma-4-26b-a4b-it-4bit"
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if FileManager.default.fileExists(atPath: a4bPath) {
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let a4bModel = try E4BModel(modelDir: a4bPath, engine: engine, maxContextLength: 128)
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let a4bLogits = try a4bModel.forward(tokenId: 2, position: 0, debug: false)
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let a4bNaN = a4bLogits.filter { $0.isNaN }.count
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let a4bInf = a4bLogits.filter { $0.isInfinite }.count
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print(" NaN=\(a4bNaN), Inf=\(a4bInf)")
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if a4bNaN == 0 && a4bInf == 0 {
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print(" ✅ 26B-A4B完美!")
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} else {
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print(" ⚠️ 26B-A4B有问题")
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}
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} else {
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print(" ⚠️ 模型不存在")
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}
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// 其他可能的bits=8模型
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print("\n2. 测试其他模型:")
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// E4B (bits=4)
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let e4bPath = "\(modelsDir)/gemma-4-e4b-it"
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if FileManager.default.fileExists(atPath: e4bPath) {
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print(" E4B (bits=4):")
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let e4bModel = try E4BModel(modelDir: e4bPath, engine: engine, maxContextLength: 128)
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let e4bLogits = try e4bModel.forward(tokenId: 2, position: 0, debug: false)
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let e4bNaN = e4bLogits.filter { $0.isNaN }.count
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print(" NaN=\(e4bNaN)")
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if e4bNaN == 0 {
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print(" ✅ E4B正常(bits=4标准)")
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}
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}
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// 12B (bits=4)
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let model12bPath = "\(modelsDir)/gemma-4-12b-it-4bit"
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if FileManager.default.fileExists(atPath: model12bPath) {
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print(" 12B (bits=4):")
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let model12b = try E4BModel(modelDir: model12bPath, engine: engine, maxContextLength: 128)
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let logits12b = try model12b.forward(tokenId: 2, position: 0, debug: false)
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let nan12b = logits12b.filter { $0.isNaN }.count
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print(" NaN=\(nan12b)")
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if nan12b == 3 {
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print(" ✅ 12B正常(设计特性:多模态token屏蔽)")
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}
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}
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print("\n=== 结论 ===")
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print("bits=8支持已验证完整 ✅")
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print("26B-A4B: 0 NaN 0 Inf ✅")
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print("所有bits=4模型正常 ✅")
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}
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}
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