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@@ -455,46 +455,6 @@ set_default_state(struct radeon_device *rdev)
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radeon_ring_write(ring, sq_stack_resource_mgmt_2);
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}
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-#define I2F_MAX_BITS 15
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-#define I2F_MAX_INPUT ((1 << I2F_MAX_BITS) - 1)
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-#define I2F_SHIFT (24 - I2F_MAX_BITS)
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-
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-/*
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- * Converts unsigned integer into 32-bit IEEE floating point representation.
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- * Conversion is not universal and only works for the range from 0
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- * to 2^I2F_MAX_BITS-1. Currently we only use it with inputs between
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- * 0 and 16384 (inclusive), so I2F_MAX_BITS=15 is enough. If necessary,
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- * I2F_MAX_BITS can be increased, but that will add to the loop iterations
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- * and slow us down. Conversion is done by shifting the input and counting
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- * down until the first 1 reaches bit position 23. The resulting counter
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- * and the shifted input are, respectively, the exponent and the fraction.
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- * The sign is always zero.
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- */
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-static uint32_t i2f(uint32_t input)
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-{
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- u32 result, i, exponent, fraction;
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-
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- WARN_ON_ONCE(input > I2F_MAX_INPUT);
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-
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- if ((input & I2F_MAX_INPUT) == 0)
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- result = 0;
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- else {
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- exponent = 126 + I2F_MAX_BITS;
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- fraction = (input & I2F_MAX_INPUT) << I2F_SHIFT;
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-
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- for (i = 0; i < I2F_MAX_BITS; i++) {
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- if (fraction & 0x800000)
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- break;
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- else {
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- fraction = fraction << 1;
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- exponent = exponent - 1;
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- }
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- }
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- result = exponent << 23 | (fraction & 0x7fffff);
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- }
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- return result;
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-}
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-
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int r600_blit_init(struct radeon_device *rdev)
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{
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u32 obj_size;
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@@ -766,14 +726,14 @@ void r600_kms_blit_copy(struct radeon_device *rdev,
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vb_cpu_addr[3] = 0;
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vb_cpu_addr[4] = 0;
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- vb_cpu_addr[5] = i2f(h);
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+ vb_cpu_addr[5] = int2float(h);
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vb_cpu_addr[6] = 0;
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- vb_cpu_addr[7] = i2f(h);
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+ vb_cpu_addr[7] = int2float(h);
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- vb_cpu_addr[8] = i2f(w);
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- vb_cpu_addr[9] = i2f(h);
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- vb_cpu_addr[10] = i2f(w);
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- vb_cpu_addr[11] = i2f(h);
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+ vb_cpu_addr[8] = int2float(w);
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+ vb_cpu_addr[9] = int2float(h);
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+ vb_cpu_addr[10] = int2float(w);
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+ vb_cpu_addr[11] = int2float(h);
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rdev->r600_blit.primitives.set_tex_resource(rdev, FMT_8_8_8_8,
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w, h, w, src_gpu_addr, size_in_bytes);
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