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https://github.com/tinygo-org/tinygo.git
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make spellfix (+ manual tweak)
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-1
@@ -107,7 +107,7 @@ struct AssemblerInvocation {
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EmitDwarfUnwindType EmitDwarfUnwind;
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// Whether to emit compact-unwind for non-canonical entries.
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// Note: maybe overriden by other constraints.
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// Note: maybe overridden by other constraints.
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LLVM_PREFERRED_TYPE(bool)
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unsigned EmitCompactUnwindNonCanonical : 1;
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@@ -551,7 +551,7 @@ func handleSoftDeviceEvents() {
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return // TODO: nrf51 etc
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}
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if result != 0 {
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// Some error occured. The only possible error is
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// Some error occurred. The only possible error is
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// NRF_ERROR_NOT_FOUND, which means there are no more events.
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return
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}
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@@ -309,7 +309,7 @@ func (spi *SPI) tx(tx []byte) error {
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// Make sure the read buffer stays alive until this point (in the unlikely
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// case the tx slice wasn't read after this function returns and a GC cycle
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// happened inbetween).
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// happened in the meantime).
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keepAliveNoEscape(unsafe.Pointer(unsafe.SliceData(tx)))
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// We didn't read any result values, which means the RX FIFO has likely
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@@ -76,7 +76,7 @@ func fmaximumf(x, y float32) float32 {
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return maximumFloat32(x, y)
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}
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// Create seperate copies of the function that are not exported.
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// Create separate copies of the function that are not exported.
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// This is necessary so that LLVM does not recognize them as builtins.
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// If tests called the builtins, LLVM would just override them on most platforms.
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@@ -114,7 +114,7 @@ func minimumFloat[T float, I floatInt](x, y T, minPosNaN, magMask I) T {
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// We can turn a float into a signed-comparable value by reversing the comparison order of negative values.
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// We can reverse the order by inverting the bits.
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// This also ensures that positive zero compares greater than negative zero (as required by the spec).
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// Negative NaN values will compare less than any other value, so they require no special handling to propogate.
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// Negative NaN values will compare less than any other value, so they require no special handling to propagate.
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if xBits < 0 {
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xBits ^= magMask
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}
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@@ -138,7 +138,7 @@ func maximumFloat[T float, I floatInt](x, y T, minPosNaN, magMask I) T {
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// We can turn a float into a signed-comparable value by reversing the comparison order of negative values.
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// We can reverse the order by inverting the bits.
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// This also ensures that positive zero compares greater than negative zero (as required by the spec).
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// Positive NaN values will compare greater than any other value, so they require no special handling to propogate.
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// Positive NaN values will compare greater than any other value, so they require no special handling to propagate.
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if xBits < 0 {
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xBits ^= magMask
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}
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@@ -92,7 +92,7 @@ func (layout gcLayout) scan(start, len uintptr) {
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scanSimple(start, len, size*unsafe.Alignof(start), mask)
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default:
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// The layout is stored seperately in a global object.
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// The layout is stored separately in a global object.
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// Extract the size and bitmap.
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layoutAddr := unsafe.Pointer(layout)
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size := *(*uintptr)(layoutAddr)
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+1
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@@ -6,7 +6,7 @@ MEMORY
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/* RAM consists of 8 banks, SRAM0..SRAM7 with striped mapping. */
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SRAM : ORIGIN = 0x20000000, LENGTH = 512k
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/* Banks 8 and 9 use direct mapping which can be
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specailized for applications where predictable access time is beneficial.
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specialized for applications where predictable access time is beneficial.
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i.e: Separate stacks for core0 and core1. */
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SRAM4 : ORIGIN = 0x20080000, LENGTH = 4k
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SRAM5 : ORIGIN = 0x20081000, LENGTH = 4k
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