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binder: add flag to clear buffer on txn complete
Add a per-transaction flag to indicate that the buffer must be cleared when the transaction is complete to prevent copies of sensitive data from being preserved in memory. Signed-off-by: Todd Kjos <tkjos@google.com> Link: https://lore.kernel.org/r/20201120233743.3617529-1-tkjos@google.com Cc: stable <stable@vger.kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -2756,6 +2756,7 @@ static void binder_transaction(struct binder_proc *proc,
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t->buffer->debug_id = t->debug_id;
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t->buffer->transaction = t;
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t->buffer->target_node = target_node;
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t->buffer->clear_on_free = !!(t->flags & TF_CLEAR_BUF);
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trace_binder_transaction_alloc_buf(t->buffer);
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if (binder_alloc_copy_user_to_buffer(
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@ -696,6 +696,8 @@ static void binder_free_buf_locked(struct binder_alloc *alloc,
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binder_insert_free_buffer(alloc, buffer);
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}
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static void binder_alloc_clear_buf(struct binder_alloc *alloc,
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struct binder_buffer *buffer);
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/**
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* binder_alloc_free_buf() - free a binder buffer
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* @alloc: binder_alloc for this proc
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@ -706,6 +708,18 @@ static void binder_free_buf_locked(struct binder_alloc *alloc,
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void binder_alloc_free_buf(struct binder_alloc *alloc,
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struct binder_buffer *buffer)
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{
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/*
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* We could eliminate the call to binder_alloc_clear_buf()
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* from binder_alloc_deferred_release() by moving this to
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* binder_alloc_free_buf_locked(). However, that could
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* increase contention for the alloc mutex if clear_on_free
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* is used frequently for large buffers. The mutex is not
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* needed for correctness here.
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*/
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if (buffer->clear_on_free) {
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binder_alloc_clear_buf(alloc, buffer);
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buffer->clear_on_free = false;
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}
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mutex_lock(&alloc->mutex);
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binder_free_buf_locked(alloc, buffer);
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mutex_unlock(&alloc->mutex);
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@ -802,6 +816,10 @@ void binder_alloc_deferred_release(struct binder_alloc *alloc)
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/* Transaction should already have been freed */
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BUG_ON(buffer->transaction);
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if (buffer->clear_on_free) {
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binder_alloc_clear_buf(alloc, buffer);
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buffer->clear_on_free = false;
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}
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binder_free_buf_locked(alloc, buffer);
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buffers++;
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}
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@ -1135,6 +1153,36 @@ static struct page *binder_alloc_get_page(struct binder_alloc *alloc,
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return lru_page->page_ptr;
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}
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/**
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* binder_alloc_clear_buf() - zero out buffer
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* @alloc: binder_alloc for this proc
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* @buffer: binder buffer to be cleared
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*
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* memset the given buffer to 0
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*/
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static void binder_alloc_clear_buf(struct binder_alloc *alloc,
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struct binder_buffer *buffer)
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{
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size_t bytes = binder_alloc_buffer_size(alloc, buffer);
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binder_size_t buffer_offset = 0;
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while (bytes) {
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unsigned long size;
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struct page *page;
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pgoff_t pgoff;
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void *kptr;
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page = binder_alloc_get_page(alloc, buffer,
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buffer_offset, &pgoff);
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size = min_t(size_t, bytes, PAGE_SIZE - pgoff);
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kptr = kmap(page) + pgoff;
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memset(kptr, 0, size);
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kunmap(page);
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bytes -= size;
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buffer_offset += size;
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}
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}
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/**
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* binder_alloc_copy_user_to_buffer() - copy src user to tgt user
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* @alloc: binder_alloc for this proc
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@ -23,6 +23,7 @@ struct binder_transaction;
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* @entry: entry alloc->buffers
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* @rb_node: node for allocated_buffers/free_buffers rb trees
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* @free: %true if buffer is free
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* @clear_on_free: %true if buffer must be zeroed after use
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* @allow_user_free: %true if user is allowed to free buffer
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* @async_transaction: %true if buffer is in use for an async txn
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* @debug_id: unique ID for debugging
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@ -41,9 +42,10 @@ struct binder_buffer {
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struct rb_node rb_node; /* free entry by size or allocated entry */
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/* by address */
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unsigned free:1;
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unsigned clear_on_free:1;
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unsigned allow_user_free:1;
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unsigned async_transaction:1;
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unsigned debug_id:29;
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unsigned debug_id:28;
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struct binder_transaction *transaction;
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@ -248,6 +248,7 @@ enum transaction_flags {
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TF_ROOT_OBJECT = 0x04, /* contents are the component's root object */
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TF_STATUS_CODE = 0x08, /* contents are a 32-bit status code */
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TF_ACCEPT_FDS = 0x10, /* allow replies with file descriptors */
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TF_CLEAR_BUF = 0x20, /* clear buffer on txn complete */
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};
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struct binder_transaction_data {
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