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docs/en/docs/tutorial/extra-models.md
``` would result in something equivalent to: ```Python UserInDB( username="john", password="secret", email="******@****.***", full_name=None, ) ``` Or more exactly, using `user_dict` directly, with whatever contents it might have in the future: ```Python UserInDB( username = user_dict["username"], password = user_dict["password"], email = user_dict["email"],
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docs/zh/docs/tutorial/extra-models.md
```Python UserInDB(**user_dict) ``` 就会生成如下结果: ```Python UserInDB( username="john", password="secret", email="******@****.***", full_name=None, ) ``` 或更精准,直接把可能会用到的内容与 `user_dict` 一起使用: ```Python UserInDB( username = user_dict["username"], password = user_dict["password"], email = user_dict["email"], full_name = user_dict["full_name"],
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docs/de/docs/tutorial/extra-models.md
UserInDB(**user_dict) ``` dann ist das ungefähr äquivalent zu: ```Python UserInDB( username="john", password="secret", email="******@****.***", full_name=None, ) ``` Oder, präziser, `user_dict` wird direkt verwendet, welche Werte es auch immer haben mag: ```Python UserInDB( username = user_dict["username"], password = user_dict["password"], email = user_dict["email"],
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.teamcity/src/test/kotlin/PerformanceTestBuildTypeTest.kt
"\"-Porg.gradle.performance.branchName=%teamcity.build.branch%\"", "\"-Porg.gradle.performance.db.url=%performance.db.url%\"", "\"-Porg.gradle.performance.db.username=%performance.db.username%\"", "-DenableTestDistribution=%enableTestDistribution%", "-Dorg.gradle.workers.max=%maxParallelForks%", "-PmaxParallelForks=%maxParallelForks%",
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.teamcity/src/main/kotlin/configurations/PerformanceTestsPass.kt
"-Porg.gradle.performance.branchName" to "%teamcity.build.branch%", "-Porg.gradle.performance.db.url" to "%performance.db.url%", "-Porg.gradle.performance.db.username" to "%performance.db.username%", "-Porg.gradle.performance.dependencyBuildIds" to dependencyBuildIds, "-PperformanceBaselines" to dependencyBaselines
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docs/en/docs/tutorial/security/first-steps.md
So, let's review it from that simplified point of view: * The user types the `username` and `password` in the frontend, and hits `Enter`. * The frontend (running in the user's browser) sends that `username` and `password` to a specific URL in our API (declared with `tokenUrl="token"`). * The API checks that `username` and `password`, and responds with a "token" (we haven't implemented any of this yet).
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docs/pt/docs/tutorial/security/first-steps.md
Então, vamos rever de um ponto de vista simplificado: * O usuário digita o `username` e a `senha` no frontend e aperta `Enter`. * O frontend (rodando no browser do usuário) manda o `username` e a `senha` para uma URL específica na sua API (declarada com `tokenUrl="token"`). * A API checa aquele `username` e `senha`, e responde com um "token" (nós não implementamos nada disso ainda).
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docs/em/docs/tutorial/request-forms.md
{!../../../docs_src/request_forms/tutorial001.py!} ``` 🖼, 1️⃣ 🌌 Oauth2️⃣ 🔧 💪 ⚙️ (🤙 "🔐 💧") ⚫️ ✔ 📨 `username` & `password` 📨 🏑. <abbr title="specification">🔌</abbr> 🚚 🏑 ⚫️❔ 📛 `username` & `password`, & 📨 📨 🏑, 🚫 🎻. ⏮️ `Form` 👆 💪 📣 🎏 📳 ⏮️ `Body` (& `Query`, `Path`, `Cookie`), 🔌 🔬, 🖼, 📛 (✅ `user-name` ↩️ `username`), ♒️. !!! info `Form` 🎓 👈 😖 🔗 ⚪️➡️ `Body`. !!! tip
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.teamcity/src/main/kotlin/common/performance-test-extensions.kt
) + listOf( "-Porg.gradle.performance.branchName" to "%teamcity.build.branch%", "-Porg.gradle.performance.db.url" to "%performance.db.url%", "-Porg.gradle.performance.db.username" to "%performance.db.username%" ).map { (key, value) -> os.escapeKeyValuePair(key, value) } const val individualPerformanceTestArtifactRules = """ testing/*/build/test-results-*.zip => results
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docs/em/docs/tutorial/security/first-steps.md
Oauth2️⃣ 🔧 👈 👩💻 ⚖️ 🛠️ 💪 🔬 💽 👈 🔓 👩💻. ✋️ 👉 💼, 🎏 **FastAPI** 🈸 🔜 🍵 🛠️ & 🤝. , ➡️ 📄 ⚫️ ⚪️➡️ 👈 📉 ☝ 🎑: * 👩💻 🆎 `username` & `password` 🕸, & 🎯 `Enter`. * 🕸 (🏃♂ 👩💻 🖥) 📨 👈 `username` & `password` 🎯 📛 👆 🛠️ (📣 ⏮️ `tokenUrl="token"`). * 🛠️ ✅ 👈 `username` & `password`, & 📨 ⏮️ "🤝" (👥 🚫 🛠️ 🙆 👉). * "🤝" 🎻 ⏮️ 🎚 👈 👥 💪 ⚙️ ⏪ ✔ 👉 👩💻. * 🛎, 🤝 ⚒ 🕛 ⏮️ 🕰.
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