99a04b8060
It tests independent functionality and may need to be skipped for a given port.
67 lines
1.9 KiB
Python
67 lines
1.9 KiB
Python
# Test VfsFat class and its finaliser
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try:
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import uerrno, uos
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uos.VfsFat
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except (ImportError, AttributeError):
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print("SKIP")
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raise SystemExit
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class RAMBlockDevice:
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def __init__(self, blocks, sec_size=512):
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self.sec_size = sec_size
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self.data = bytearray(blocks * self.sec_size)
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def readblocks(self, n, buf):
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for i in range(len(buf)):
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buf[i] = self.data[n * self.sec_size + i]
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def writeblocks(self, n, buf):
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for i in range(len(buf)):
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self.data[n * self.sec_size + i] = buf[i]
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def ioctl(self, op, arg):
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if op == 4: # MP_BLOCKDEV_IOCTL_BLOCK_COUNT
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return len(self.data) // self.sec_size
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if op == 5: # MP_BLOCKDEV_IOCTL_BLOCK_SIZE
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return self.sec_size
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# Create block device, and skip test if not enough RAM
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try:
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bdev = RAMBlockDevice(50)
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except MemoryError:
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print("SKIP")
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raise SystemExit
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# Format block device and create VFS object
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uos.VfsFat.mkfs(bdev)
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vfs = uos.VfsFat(bdev)
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# Here we test that opening a file with the heap locked fails correctly. This
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# is a special case because file objects use a finaliser and allocating with a
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# finaliser is a different path to normal allocation. It would be better to
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# test this in the core tests but there are no core objects that use finaliser.
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import micropython
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micropython.heap_lock()
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try:
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vfs.open('x', 'r')
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except MemoryError:
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print('MemoryError')
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micropython.heap_unlock()
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# Here we test that the finaliser is actually called during a garbage collection.
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import gc
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N = 4
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for i in range(N):
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n = 'x%d' % i
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f = vfs.open(n, 'w')
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f.write(n)
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f = None # release f without closing
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[0, 1, 2, 3] # use up Python stack so f is really gone
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gc.collect() # should finalise all N files by closing them
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for i in range(N):
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with vfs.open('x%d' % i, 'r') as f:
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print(f.read())
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