5 changed files with 42 additions and 31 deletions
+2 -2
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@@ -16,8 +16,8 @@ All functions in the standard library should follow the following outline:
; Arguments: <which register contains what argument> ; Arguments: <which register contains what argument>
; Result: <what is the result, and where is it stored> ; Result: <what is the result, and where is it stored>
; Clobbers: <list of registers that are clobbered> ; Clobbers: <list of registers that are clobbered>
<label>: <;SHOULD BE INLINED> fn_label: <;SHOULD BE INLINED>
<CODE> CODE
``` ```
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@@ -0,0 +1,21 @@
# Memory Map
To not have to allocate a ton of things at run time the Standard Library uses a static memory map for some purposes
## Overview
| Start | Use |
| ---- | ---- |
| `0x0` | Reset Vector |
| `0x16` | Zero Page |
| `0x100` | User Code |
| `?` | Library Code |
| `0x1_0000` | LUTs |
| `?` | heap |
| `0xXXF0_0000` | Stack |
| `0xXXFF_0000` | quick access |
## Zero Page
Some values are needed not often enough to get their own special register, but often enough that it makes sense to keep them at a quickly accessible location.
This is what the zero page is for. its position in memory allows us to load them into a register with a single instruction.
+1
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@@ -4,6 +4,7 @@ This is a standard library for symphony.
It is both intended as a practical toolkit to develop more complex software as well as a teaching resource. It is both intended as a practical toolkit to develop more complex software as well as a teaching resource.
If you just want to use the standard library [[stdlib.asm]] is your main header, include it after your code. If you just want to use the standard library [[stdlib.asm]] is your main header, include it after your code.
You also need to include [[globals.asm]] as the first line in your assembly file.
If you are using it as a learning resource have a look at the [teaching folder](teaching). If you are using it as a learning resource have a look at the [teaching folder](teaching).
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@@ -0,0 +1,10 @@
jmp 0x100
@0x10
screen:
frambuffer_ptr: U32 0x0
size: U32 0x0
position_xy: U32 0x0
mode: U32 0x0
@0x100
+8 -29
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@@ -1,15 +1,8 @@
; Multiplies r1 and r2, returning the lower part of the result
; Arguments:
; r1 - The first value
; r2 - The second value
; Result:
; r1 - The lower 32 bits of the result
; Clobbers: r2, r3, r4, r5
pub mul_low: pub mul_low:
mov r3, 0 ; result mov r3, 0 ; result
mov r4, 31 ; loop counter mov r4, 31 ; loop counter
mul_low_loop: mull_loop:
asr r5, r2, 31 asr r5, r2, 31
and r5, r5, r1 and r5, r5, r1
lsl r5, r5, r4 lsl r5, r5, r4
@@ -17,18 +10,14 @@ pub mul_low:
lsl r2, r2, 1 lsl r2, r2, 1
sub r4, r4, 1 sub r4, r4, 1
cmp r4, 0 cmp r4, 0
jge mul_low_loop jge mull_loop
mov r1, r3 mov r1, r3
jmp r13 jmp r13
; Calculates the absolute value of the value provided in the r1 register ; Calculates the absolute value of the value provided in the r1 register
; Arguments: ; Based on Stanford's BitHacks
; r1 - The value for which we want the absolute value ; Clobbers r2
; Result:
; r1 - The calculated absolute value
; Clobbers: r2
; Info: Based on Stanford's BitHacks
pub abs: ; SHOULD BE INLINED pub abs: ; SHOULD BE INLINED
; mask = v >> 31 ; mask = v >> 31
asr r2, r1, 31 asr r2, r1, 31
@@ -39,13 +28,8 @@ pub abs: ; SHOULD BE INLINED
jmp r13 jmp r13
; Calculates the minimum value of the two values provided in the r1 and r2 registers ; Calculates the minimum value of the two values provided in the r1 and r2 registers
; Arguments: ; Based on Stanford's BitHacks
; r1 - The first value ; Clobbers flags
; r2 - The second value
; Result:
; r1 - The smaller value
; Clobbers: Nothing
; Info: Based on Stanford's BitHacks
pub min: ; SHOULD BE INLINED pub min: ; SHOULD BE INLINED
; x < y ; x < y
cmp r1, r2 cmp r1, r2
@@ -61,13 +45,8 @@ pub min: ; SHOULD BE INLINED
jmp r13 jmp r13
; Calculates the maximum value of the two values provided in the r1 and r2 registers ; Calculates the maximum value of the two values provided in the r1 and r2 registers
; Arguments: ; Based on Stanford's BitHacks
; r1 - The first value ; Clobbers r2 and flags
; r2 - The second value
; Result:
; r1 - The smaller value
; Clobbers: r2
; Info: Based on Stanford's BitHacks
pub max: ; SHOULD BE INLINED pub max: ; SHOULD BE INLINED
; x < y ; x < y
cmp r1, r2 cmp r1, r2