# global dictionary of opcodes
opcodes = {}
-def opcode(name, opcode_gfx7 = -1, opcode_gfx9 = -1, opcode_gfx10 = -1, format = Format.PSEUDO, input_mod = False, output_mod = False, is_atomic = True):
+def opcode(name, opcode_gfx7 = -1, opcode_gfx9 = -1, opcode_gfx10 = -1, format = Format.PSEUDO, input_mod = False, output_mod = False, is_atomic = False):
assert name not in opcodes
opcodes[name] = Opcode(name, opcode_gfx7, opcode_gfx9, opcode_gfx10, format, input_mod, output_mod, is_atomic)
( -1, -1, -1, 0xac, 0xac, "s_atomic_dec_x2"),
}
for (gfx6, gfx7, gfx8, gfx9, gfx10, name) in SMEM:
- opcode(name, gfx7, gfx9, gfx10, Format.SMEM, is_atomic = "atomic" not in name)
+ opcode(name, gfx7, gfx9, gfx10, Format.SMEM, is_atomic = "atomic" in name)
# VOP2 instructions: 2 inputs, 1 output (+ optional vcc)
( -1, -1, -1, -1, 0x72, "buffer_gl1_inv"),
}
for (gfx6, gfx7, gfx8, gfx9, gfx10, name) in MUBUF:
- opcode(name, gfx7, gfx9, gfx10, Format.MUBUF, is_atomic = "atomic" not in name)
+ opcode(name, gfx7, gfx9, gfx10, Format.MUBUF, is_atomic = "atomic" in name)
MTBUF = {
(0x00, 0x00, 0x00, 0x00, 0x00, "tbuffer_load_format_x"),
# (gfx6, gfx7, gfx8, gfx9, gfx10, name) = (gfx6, gfx7, gfx89, gfx89, ???, name)
# gfx7 and gfx10 opcodes are the same here
for (gfx6, gfx7, gfx89, name) in IMAGE_ATOMIC:
- opcode(name, gfx7, gfx89, gfx7, Format.MIMG, is_atomic = False)
+ opcode(name, gfx7, gfx89, gfx7, Format.MIMG, is_atomic = True)
IMAGE_SAMPLE = {
(0x20, "image_sample"),
(0x60, -1, 0x60, "flat_atomic_fmax_x2"),
}
for (gfx7, gfx8, gfx10, name) in FLAT:
- opcode(name, gfx7, gfx8, gfx10, Format.FLAT, is_atomic = "atomic" not in name)
+ opcode(name, gfx7, gfx8, gfx10, Format.FLAT, is_atomic = "atomic" in name)
GLOBAL = {
#GFX8_9, GFX10
( -1, 0x60, "global_atomic_fmax_x2"),
}
for (gfx8, gfx10, name) in GLOBAL:
- opcode(name, -1, gfx8, gfx10, Format.GLOBAL, is_atomic = "atomic" not in name)
+ opcode(name, -1, gfx8, gfx10, Format.GLOBAL, is_atomic = "atomic" in name)
SCRATCH = {
#GFX8_9, GFX10