forked from M-Labs/artiq
coredevice: use device endian for kernel and RPC
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parent
3832b261b1
commit
ec72eeda46
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@ -68,13 +68,13 @@ def _receive_list(kernel, embedding_map):
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return list(buffer)
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return list(buffer)
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elif tag == "i":
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elif tag == "i":
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buffer = kernel._read(4 * length)
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buffer = kernel._read(4 * length)
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return list(struct.unpack(">%sl" % length, buffer))
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return list(struct.unpack(kernel.endian + "%sl" % length, buffer))
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elif tag == "I":
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elif tag == "I":
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buffer = kernel._read(8 * length)
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buffer = kernel._read(8 * length)
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return list(struct.unpack(">%sq" % length, buffer))
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return list(struct.unpack(kernel.endian + "%sq" % length, buffer))
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elif tag == "f":
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elif tag == "f":
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buffer = kernel._read(8 * length)
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buffer = kernel._read(8 * length)
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return list(struct.unpack(">%sd" % length, buffer))
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return list(struct.unpack(kernel.endian + "%sd" % length, buffer))
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else:
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else:
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fn = receivers[tag]
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fn = receivers[tag]
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elems = []
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elems = []
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@ -98,13 +98,13 @@ def _receive_array(kernel, embedding_map):
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elems = numpy.ndarray((length, ), 'B', buffer)
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elems = numpy.ndarray((length, ), 'B', buffer)
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elif tag == "i":
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elif tag == "i":
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buffer = kernel._read(4 * length)
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buffer = kernel._read(4 * length)
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elems = numpy.ndarray((length, ), '>i4', buffer)
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elems = numpy.ndarray((length, ), kernel.endian + 'i4', buffer)
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elif tag == "I":
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elif tag == "I":
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buffer = kernel._read(8 * length)
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buffer = kernel._read(8 * length)
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elems = numpy.ndarray((length, ), '>i8', buffer)
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elems = numpy.ndarray((length, ), kernel.endian + 'i8', buffer)
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elif tag == "f":
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elif tag == "f":
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buffer = kernel._read(8 * length)
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buffer = kernel._read(8 * length)
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elems = numpy.ndarray((length, ), '>d', buffer)
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elems = numpy.ndarray((length, ), kernel.endian + 'd', buffer)
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else:
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else:
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fn = receivers[tag]
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fn = receivers[tag]
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elems = []
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elems = []
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@ -173,21 +173,22 @@ class CommKernelDummy:
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class CommKernel:
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class CommKernel:
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warned_of_mismatch = False
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warned_of_mismatch = False
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def __init__(self, host, port=1381):
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def __init__(self, host, endian='>', port=1381):
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self.endian = endian
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self._read_type = None
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self._read_type = None
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self.host = host
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self.host = host
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self.port = port
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self.port = port
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self.read_buffer = bytearray()
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self.read_buffer = bytearray()
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self.write_buffer = bytearray()
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self.write_buffer = bytearray()
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self.unpack_int32 = struct.Struct(">l").unpack
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self.unpack_int32 = struct.Struct(endian + "l").unpack
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self.unpack_int64 = struct.Struct(">q").unpack
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self.unpack_int64 = struct.Struct(endian + "q").unpack
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self.unpack_float64 = struct.Struct(">d").unpack
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self.unpack_float64 = struct.Struct(endian + "d").unpack
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self.pack_header = struct.Struct(">lB").pack
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self.pack_header = struct.Struct(endian + "lB").pack
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self.pack_int32 = struct.Struct(">l").pack
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self.pack_int32 = struct.Struct(endian + "l").pack
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self.pack_int64 = struct.Struct(">q").pack
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self.pack_int64 = struct.Struct(endian + "q").pack
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self.pack_float64 = struct.Struct(">d").pack
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self.pack_float64 = struct.Struct(endian + "d").pack
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def open(self):
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def open(self):
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if hasattr(self, "socket"):
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if hasattr(self, "socket"):
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@ -466,11 +467,14 @@ class CommKernel:
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if tag_element == "b":
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if tag_element == "b":
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self._write(bytes(value))
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self._write(bytes(value))
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elif tag_element == "i":
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elif tag_element == "i":
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self._write(struct.pack(">%sl" % len(value), *value))
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self._write(struct.pack(self.endian + "%sl" %
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len(value), *value))
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elif tag_element == "I":
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elif tag_element == "I":
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self._write(struct.pack(">%sq" % len(value), *value))
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self._write(struct.pack(self.endian + "%sq" %
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len(value), *value))
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elif tag_element == "f":
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elif tag_element == "f":
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self._write(struct.pack(">%sd" % len(value), *value))
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self._write(struct.pack(self.endian + "%sd" %
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len(value), *value))
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else:
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else:
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for elt in value:
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for elt in value:
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tags_copy = bytearray(tags)
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tags_copy = bytearray(tags)
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@ -488,13 +492,16 @@ class CommKernel:
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if tag_element == "b":
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if tag_element == "b":
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self._write(value.reshape((-1,), order="C").tobytes())
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self._write(value.reshape((-1,), order="C").tobytes())
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elif tag_element == "i":
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elif tag_element == "i":
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array = value.reshape((-1,), order="C").astype('>i4')
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array = value.reshape(
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(-1,), order="C").astype(self.endian + 'i4')
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self._write(array.tobytes())
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self._write(array.tobytes())
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elif tag_element == "I":
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elif tag_element == "I":
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array = value.reshape((-1,), order="C").astype('>i8')
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array = value.reshape(
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(-1,), order="C").astype(self.endian + 'i8')
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self._write(array.tobytes())
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self._write(array.tobytes())
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elif tag_element == "f":
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elif tag_element == "f":
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array = value.reshape((-1,), order="C").astype('>d')
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array = value.reshape(
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(-1,), order="C").astype(self.endian + 'd')
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self._write(array.tobytes())
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self._write(array.tobytes())
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else:
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else:
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for elt in value.reshape((-1,), order="C"):
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for elt in value.reshape((-1,), order="C"):
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@ -76,15 +76,17 @@ class Core:
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self.ref_multiplier = ref_multiplier
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self.ref_multiplier = ref_multiplier
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if target == "or1k":
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if target == "or1k":
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self.target_cls = OR1KTarget
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self.target_cls = OR1KTarget
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endian = ">"
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elif target == "cortexa9":
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elif target == "cortexa9":
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self.target_cls = CortexA9Target
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self.target_cls = CortexA9Target
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endian = "<"
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else:
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else:
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raise ValueError("Unsupported target")
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raise ValueError("Unsupported target")
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self.coarse_ref_period = ref_period*ref_multiplier
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self.coarse_ref_period = ref_period*ref_multiplier
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if host is None:
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if host is None:
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self.comm = CommKernelDummy()
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self.comm = CommKernelDummy()
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else:
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else:
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self.comm = CommKernel(host)
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self.comm = CommKernel(host, endian)
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self.first_run = True
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self.first_run = True
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self.dmgr = dmgr
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self.dmgr = dmgr
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