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fix(linux): implement pthread-based locks for soft-preemption safety
The Linux target's sys/lock.h provided no-op inline stubs, which was safe only under the assumption of single-threaded execution. With the new FreeRTOS Linux simulator using soft preemption, an outgoing task can still run concurrently with the incoming task until it reaches a yield point, making no-op locks unsafe. Replace the no-op implementation with real pthread mutexes: - Change _lock_t from `typedef int` to `typedef void *` (pointer to a heap-allocated pthread_mutex_t). - Implement all _lock_* functions in a new lock.c, supporting both normal and recursive mutexes. - Zero-initialized locks are lazily created on first acquire using double-checked locking, preserving newlib/esp_libc semantics. - Add lock.c unconditionally to the linux component sources and link pthread.
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@@ -1,5 +1,5 @@
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/*
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* SPDX-FileCopyrightText: 2021-2022 Espressif Systems (Shanghai) CO LTD
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* SPDX-FileCopyrightText: 2021-2026 Espressif Systems (Shanghai) CO LTD
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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@@ -12,30 +12,23 @@
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extern "C" {
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#endif
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/* newlib locks implementation for CONFIG_IDF_TARGET_LINUX, single threaded.
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* Note, currently this doesn't implement the functions required
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* when _RETARGETABLE_LOCKING is defined. They should be added.
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/**
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* Lock type backed by pthread mutexes. A zero-initialized _lock_t is valid
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* and will be lazily created on first acquire (matching newlib/esp_libc
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* semantics).
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*/
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typedef void * _lock_t;
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/* Compatibility definitions for legacy newlib locking functions */
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typedef int _lock_t;
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static inline void _lock_init(_lock_t *plock) {}
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static inline void _lock_init_recursive(_lock_t *plock) {}
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static inline void _lock_close(_lock_t *plock) {}
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static inline void _lock_close_recursive(_lock_t *plock) {}
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static inline void _lock_acquire(_lock_t *plock) {}
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static inline void _lock_acquire_recursive(_lock_t *plock) {}
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static inline int _lock_try_acquire(_lock_t *plock)
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{
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return 1;
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}
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static inline int _lock_try_acquire_recursive(_lock_t *plock)
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{
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return 1;
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}
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static inline void _lock_release(_lock_t *plock) {}
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static inline void _lock_release_recursive(_lock_t *plock) {}
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void _lock_init(_lock_t *plock);
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void _lock_init_recursive(_lock_t *plock);
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void _lock_close(_lock_t *plock);
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void _lock_close_recursive(_lock_t *plock);
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void _lock_acquire(_lock_t *plock);
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void _lock_acquire_recursive(_lock_t *plock);
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int _lock_try_acquire(_lock_t *plock);
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int _lock_try_acquire_recursive(_lock_t *plock);
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void _lock_release(_lock_t *plock);
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void _lock_release_recursive(_lock_t *plock);
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#ifdef __cplusplus
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}
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